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* [PATCH] staging: rtl8723bs: apply clang-format cleanup
@ 2026-07-27  4:06 Aryan Krishnan
  2026-07-27  4:35 ` Greg KH
  0 siblings, 1 reply; 3+ messages in thread
From: Aryan Krishnan @ 2026-07-27  4:06 UTC (permalink / raw)
  To: gregkh; +Cc: linux-staging, Aryan

From: Aryan <aryankrishnan4b@gmail.com>

This patch formats the drivers/staging/rtl8723bs directory using
clang-format, hence reducing the number of errors by 2, warnings by 66,
and CHECKs by 4,685.

This is a purely mechanical, whitespace/formatting-only change with
no functional impact.

Signed-off-by: Aryan <aryankrishnan4b@gmail.com>
---
Hey everyone, this is my first Linux Kernel patch, and I specifically wanted
to focus on the rtl8723bs driver. When seeing some of the CHECKs and
specifically points regarding formatting, I thought about running clang-format
to see if that would help. In this case it reduced the CHECKs by over 50%.

For now this is all in one big patch, do let me know if you'd like me to
split this by directory or file instead. I felt this was decently mechanical
overall however and decided to keep it as one patch.

I am 16 and looking to improve and be active in the community. I have some
experience with chromium and PDFium although I am aware that this will
not fully carry over. Do let me know if there are any general style conventions
I missed as well as any other additional tips to improve in the repo.

Thanks!
 - Aryan

 drivers/staging/rtl8723bs/core/rtw_ap.c       |  433 +--
 drivers/staging/rtl8723bs/core/rtw_btcoex.c   |    3 +-
 drivers/staging/rtl8723bs/core/rtw_cmd.c      |  754 +++---
 drivers/staging/rtl8723bs/core/rtw_efuse.c    |   58 +-
 .../staging/rtl8723bs/core/rtw_ieee80211.c    |  198 +-
 drivers/staging/rtl8723bs/core/rtw_io.c       |    3 +-
 .../staging/rtl8723bs/core/rtw_ioctl_set.c    |  120 +-
 drivers/staging/rtl8723bs/core/rtw_mlme.c     |  930 ++++---
 drivers/staging/rtl8723bs/core/rtw_mlme_ext.c | 2338 ++++++++++-------
 drivers/staging/rtl8723bs/core/rtw_pwrctrl.c  |  127 +-
 drivers/staging/rtl8723bs/core/rtw_recv.c     |  551 ++--
 drivers/staging/rtl8723bs/core/rtw_security.c |  824 +++---
 drivers/staging/rtl8723bs/core/rtw_sta_mgt.c  |  103 +-
 .../staging/rtl8723bs/core/rtw_wlan_util.c    |  409 +--
 drivers/staging/rtl8723bs/core/rtw_xmit.c     |  573 ++--
 drivers/staging/rtl8723bs/hal/Hal8723BReg.h   |   28 +-
 .../staging/rtl8723bs/hal/HalBtc8723b1Ant.c   | 1585 ++++++-----
 .../staging/rtl8723bs/hal/HalBtc8723b1Ant.h   |   94 +-
 .../staging/rtl8723bs/hal/HalBtc8723b2Ant.c   | 1694 ++++++------
 .../staging/rtl8723bs/hal/HalBtc8723b2Ant.h   |   74 +-
 drivers/staging/rtl8723bs/hal/HalBtcOutSrc.h  |  248 +-
 .../staging/rtl8723bs/hal/HalHWImg8723B_BB.c  |  508 ++--
 .../staging/rtl8723bs/hal/HalHWImg8723B_BB.h  |   18 +-
 .../staging/rtl8723bs/hal/HalHWImg8723B_MAC.c |  195 +-
 .../staging/rtl8723bs/hal/HalHWImg8723B_MAC.h |    6 +-
 .../staging/rtl8723bs/hal/HalHWImg8723B_RF.c  |  632 ++---
 .../staging/rtl8723bs/hal/HalHWImg8723B_RF.h  |   18 +-
 drivers/staging/rtl8723bs/hal/HalPhyRf.c      |  161 +-
 drivers/staging/rtl8723bs/hal/HalPhyRf.h      |   15 +-
 .../staging/rtl8723bs/hal/HalPhyRf_8723B.c    | 1382 ++++++----
 .../staging/rtl8723bs/hal/HalPhyRf_8723B.h    |   49 +-
 drivers/staging/rtl8723bs/hal/HalPwrSeqCmd.c  |   70 +-
 drivers/staging/rtl8723bs/hal/Mp_Precomp.h    |    2 +-
 drivers/staging/rtl8723bs/hal/hal_btcoex.c    |  130 +-
 drivers/staging/rtl8723bs/hal/hal_com.c       |  253 +-
 .../staging/rtl8723bs/hal/hal_com_phycfg.c    |  404 +--
 drivers/staging/rtl8723bs/hal/hal_intf.c      |   50 +-
 drivers/staging/rtl8723bs/hal/hal_pwr_seq.c   |  121 +-
 drivers/staging/rtl8723bs/hal/hal_sdio.c      |   32 +-
 drivers/staging/rtl8723bs/hal/odm.c           |  302 ++-
 drivers/staging/rtl8723bs/hal/odm.h           |  551 ++--
 .../staging/rtl8723bs/hal/odm_CfoTracking.c   |   59 +-
 .../staging/rtl8723bs/hal/odm_CfoTracking.h   |   13 +-
 drivers/staging/rtl8723bs/hal/odm_DIG.c       |  328 +--
 drivers/staging/rtl8723bs/hal/odm_DIG.h       |   75 +-
 .../rtl8723bs/hal/odm_DynamicBBPowerSaving.c  |   54 +-
 .../rtl8723bs/hal/odm_DynamicBBPowerSaving.h  |    5 +-
 .../rtl8723bs/hal/odm_DynamicTxPower.h        |   32 +-
 .../rtl8723bs/hal/odm_EdcaTurboCheck.c        |   39 +-
 drivers/staging/rtl8723bs/hal/odm_HWConfig.c  |  207 +-
 drivers/staging/rtl8723bs/hal/odm_HWConfig.h  |   71 +-
 .../rtl8723bs/hal/odm_RegConfig8723B.c        |  121 +-
 .../rtl8723bs/hal/odm_RegConfig8723B.h        |   43 +-
 .../staging/rtl8723bs/hal/odm_RegDefine11N.h  |  270 +-
 drivers/staging/rtl8723bs/hal/odm_interface.h |   20 +-
 drivers/staging/rtl8723bs/hal/odm_precomp.h   |   18 +-
 drivers/staging/rtl8723bs/hal/odm_reg.h       |  122 +-
 drivers/staging/rtl8723bs/hal/odm_types.h     |   44 +-
 drivers/staging/rtl8723bs/hal/rtl8723b_cmd.c  |  405 +--
 drivers/staging/rtl8723bs/hal/rtl8723b_dm.c   |   94 +-
 .../staging/rtl8723bs/hal/rtl8723b_hal_init.c | 1445 +++++-----
 .../staging/rtl8723bs/hal/rtl8723b_phycfg.c   |  334 +--
 .../staging/rtl8723bs/hal/rtl8723b_rf6052.c   |   53 +-
 .../staging/rtl8723bs/hal/rtl8723b_rxdesc.c   |   15 +-
 .../staging/rtl8723bs/hal/rtl8723bs_recv.c    |  131 +-
 .../staging/rtl8723bs/hal/rtl8723bs_xmit.c    |  175 +-
 drivers/staging/rtl8723bs/hal/sdio_halinit.c  |  256 +-
 drivers/staging/rtl8723bs/hal/sdio_ops.c      |  138 +-
 .../rtl8723bs/include/Hal8192CPhyReg.h        |  234 +-
 .../staging/rtl8723bs/include/HalPwrSeqCmd.h  |  117 +-
 .../staging/rtl8723bs/include/basic_types.h   |  155 +-
 drivers/staging/rtl8723bs/include/cmd_osdep.h |    8 +-
 drivers/staging/rtl8723bs/include/drv_types.h |  183 +-
 .../rtl8723bs/include/drv_types_sdio.h        |   12 +-
 .../staging/rtl8723bs/include/hal_btcoex.h    |    2 +-
 drivers/staging/rtl8723bs/include/hal_com.h   |  148 +-
 .../staging/rtl8723bs/include/hal_com_h2c.h   |   12 +-
 .../rtl8723bs/include/hal_com_phycfg.h        |   50 +-
 .../staging/rtl8723bs/include/hal_com_reg.h   |  684 +++--
 drivers/staging/rtl8723bs/include/hal_data.h  |  214 +-
 drivers/staging/rtl8723bs/include/hal_intf.h  |  119 +-
 drivers/staging/rtl8723bs/include/hal_pg.h    |   51 +-
 drivers/staging/rtl8723bs/include/hal_phy.h   |   53 +-
 .../staging/rtl8723bs/include/hal_phy_cfg.h   |   37 +-
 .../staging/rtl8723bs/include/hal_phy_reg.h   |    2 +-
 .../staging/rtl8723bs/include/hal_pwr_seq.h   | 1023 ++++++--
 drivers/staging/rtl8723bs/include/hal_sdio.h  |   11 +-
 drivers/staging/rtl8723bs/include/ieee80211.h |  515 ++--
 .../rtl8723bs/include/ioctl_cfg80211.h        |   37 +-
 .../staging/rtl8723bs/include/osdep_intf.h    |    2 +-
 .../staging/rtl8723bs/include/osdep_service.h |    9 +-
 .../rtl8723bs/include/osdep_service_linux.h   |   18 +-
 .../staging/rtl8723bs/include/rtl8192c_recv.h |    8 +-
 .../staging/rtl8723bs/include/rtl8723b_cmd.h  |  191 +-
 .../staging/rtl8723bs/include/rtl8723b_hal.h  |   66 +-
 .../staging/rtl8723bs/include/rtl8723b_recv.h |  117 +-
 .../staging/rtl8723bs/include/rtl8723b_rf.h   |    8 +-
 .../staging/rtl8723bs/include/rtl8723b_spec.h |  219 +-
 .../staging/rtl8723bs/include/rtl8723b_xmit.h |  728 ++---
 drivers/staging/rtl8723bs/include/rtw_ap.h    |   11 +-
 .../staging/rtl8723bs/include/rtw_btcoex.h    |   11 +-
 .../staging/rtl8723bs/include/rtw_byteorder.h |    2 +-
 drivers/staging/rtl8723bs/include/rtw_cmd.h   |  295 ++-
 .../staging/rtl8723bs/include/rtw_eeprom.h    |   63 +-
 drivers/staging/rtl8723bs/include/rtw_efuse.h |   41 +-
 drivers/staging/rtl8723bs/include/rtw_event.h |   34 +-
 drivers/staging/rtl8723bs/include/rtw_ht.h    |   45 +-
 drivers/staging/rtl8723bs/include/rtw_io.h    |   29 +-
 .../staging/rtl8723bs/include/rtw_ioctl_set.h |   17 +-
 drivers/staging/rtl8723bs/include/rtw_mlme.h  |  203 +-
 .../staging/rtl8723bs/include/rtw_mlme_ext.h  |  407 +--
 .../staging/rtl8723bs/include/rtw_pwrctrl.h   |  143 +-
 drivers/staging/rtl8723bs/include/rtw_qos.h   |   11 +-
 drivers/staging/rtl8723bs/include/rtw_recv.h  |  196 +-
 drivers/staging/rtl8723bs/include/rtw_rf.h    |   87 +-
 .../staging/rtl8723bs/include/rtw_security.h  |  302 +--
 .../staging/rtl8723bs/include/rtw_version.h   |    4 +-
 drivers/staging/rtl8723bs/include/rtw_xmit.h  |  327 +--
 drivers/staging/rtl8723bs/include/sdio_ops.h  |    7 +-
 .../rtl8723bs/include/sdio_ops_linux.h        |    6 +-
 drivers/staging/rtl8723bs/include/sta_info.h  |  184 +-
 drivers/staging/rtl8723bs/include/wifi.h      |  430 ++-
 .../staging/rtl8723bs/include/wlan_bssdef.h   |  149 +-
 .../staging/rtl8723bs/include/xmit_osdep.h    |   14 +-
 .../staging/rtl8723bs/os_dep/ioctl_cfg80211.c |  993 ++++---
 drivers/staging/rtl8723bs/os_dep/os_intfs.c   |  145 +-
 .../staging/rtl8723bs/os_dep/osdep_service.c  |    9 +-
 drivers/staging/rtl8723bs/os_dep/sdio_intf.c  |   67 +-
 .../staging/rtl8723bs/os_dep/sdio_ops_linux.c |   11 +-
 drivers/staging/rtl8723bs/os_dep/wifi_regd.c  |   34 +-
 drivers/staging/rtl8723bs/os_dep/xmit_linux.c |   30 +-
 131 files changed, 16439 insertions(+), 13514 deletions(-)

diff --git a/drivers/staging/rtl8723bs/core/rtw_ap.c b/drivers/staging/rtl8723bs/core/rtw_ap.c
index 065850a9e8947..cc7167862033d 100644
--- a/drivers/staging/rtl8723bs/core/rtw_ap.c
+++ b/drivers/staging/rtl8723bs/core/rtw_ap.c
@@ -60,11 +60,8 @@ static void update_BCNTIM(struct adapter *padapter)
 
 	tim_bitmap_le = cpu_to_le16(pstapriv->tim_bitmap);
 
-	p = rtw_get_ie(pie + _FIXED_IE_LENGTH_,
-		       WLAN_EID_TIM,
-		       &tim_ielen,
-		       pnetwork_mlmeext->ie_length - _FIXED_IE_LENGTH_
-	);
+	p = rtw_get_ie(pie + _FIXED_IE_LENGTH_, WLAN_EID_TIM, &tim_ielen,
+		       pnetwork_mlmeext->ie_length - _FIXED_IE_LENGTH_);
 	if (p && tim_ielen > 0) {
 		tim_ielen += 2;
 
@@ -72,7 +69,8 @@ static void update_BCNTIM(struct adapter *padapter)
 
 		tim_ie_offset = (signed int)(p - pie);
 
-		remainder_ielen = pnetwork_mlmeext->ie_length - tim_ie_offset - tim_ielen;
+		remainder_ielen =
+			pnetwork_mlmeext->ie_length - tim_ie_offset - tim_ielen;
 
 		/* append TIM IE from dst_ie offset */
 		dst_ie = p;
@@ -83,19 +81,16 @@ static void update_BCNTIM(struct adapter *padapter)
 		offset = _FIXED_IE_LENGTH_;
 
 		/* get ssid_ie len */
-		p = rtw_get_ie(pie + _BEACON_IE_OFFSET_,
-			       WLAN_EID_SSID,
-			       &tmp_len,
-			       (pnetwork_mlmeext->ie_length - _BEACON_IE_OFFSET_)
-		);
+		p = rtw_get_ie(
+			pie + _BEACON_IE_OFFSET_, WLAN_EID_SSID, &tmp_len,
+			(pnetwork_mlmeext->ie_length - _BEACON_IE_OFFSET_));
 		if (p)
 			offset += tmp_len + 2;
 
 		/*  get supported rates len */
-		p = rtw_get_ie(pie + _BEACON_IE_OFFSET_,
-			       WLAN_EID_SUPP_RATES, &tmp_len,
-			       (pnetwork_mlmeext->ie_length - _BEACON_IE_OFFSET_)
-		);
+		p = rtw_get_ie(
+			pie + _BEACON_IE_OFFSET_, WLAN_EID_SUPP_RATES, &tmp_len,
+			(pnetwork_mlmeext->ie_length - _BEACON_IE_OFFSET_));
 		if (p)
 			offset += tmp_len + 2;
 
@@ -104,14 +99,16 @@ static void update_BCNTIM(struct adapter *padapter)
 
 		premainder_ie = pie + offset;
 
-		remainder_ielen = pnetwork_mlmeext->ie_length - offset - tim_ielen;
+		remainder_ielen =
+			pnetwork_mlmeext->ie_length - offset - tim_ielen;
 
 		/* append TIM IE from offset */
 		dst_ie = pie + offset;
 	}
 
 	if (premainder_ie && remainder_ielen)
-		pbackup_remainder_ie = kmemdup(premainder_ie, remainder_ielen, GFP_ATOMIC);
+		pbackup_remainder_ie =
+			kmemdup(premainder_ie, remainder_ielen, GFP_ATOMIC);
 
 	*dst_ie++ = WLAN_EID_TIM;
 
@@ -122,11 +119,11 @@ static void update_BCNTIM(struct adapter *padapter)
 
 	*dst_ie++ = tim_ielen;
 
-	*dst_ie++ = 0;/* DTIM count */
-	*dst_ie++ = 1;/* DTIM period */
+	*dst_ie++ = 0; /* DTIM count */
+	*dst_ie++ = 1; /* DTIM period */
 
-	if (pstapriv->tim_bitmap & BIT(0))/* for bc/mc frames */
-		*dst_ie++ = BIT(0);/* bitmap ctrl */
+	if (pstapriv->tim_bitmap & BIT(0)) /* for bc/mc frames */
+		*dst_ie++ = BIT(0); /* bitmap ctrl */
 	else
 		*dst_ie++ = 0;
 
@@ -152,7 +149,7 @@ static void update_BCNTIM(struct adapter *padapter)
 		kfree(pbackup_remainder_ie);
 	}
 
-	offset =  (unsigned int)(dst_ie - pie);
+	offset = (unsigned int)(dst_ie - pie);
 	pnetwork_mlmeext->ie_length = offset + remainder_ielen;
 }
 
@@ -232,7 +229,8 @@ void expire_timeout_chk(struct adapter *padapter)
 
 					/* to update bcn with tim_bitmap for this station */
 					pstapriv->tim_bitmap |= BIT(psta->aid);
-					update_beacon(padapter, WLAN_EID_TIM, NULL, true);
+					update_beacon(padapter, WLAN_EID_TIM,
+						      NULL, true);
 
 					if (!pmlmeext->active_keep_alive_check)
 						continue;
@@ -241,21 +239,26 @@ void expire_timeout_chk(struct adapter *padapter)
 			if (pmlmeext->active_keep_alive_check) {
 				int stainfo_offset;
 
-				stainfo_offset = rtw_stainfo_offset(pstapriv, psta);
+				stainfo_offset =
+					rtw_stainfo_offset(pstapriv, psta);
 				if (stainfo_offset_valid(stainfo_offset))
-					chk_alive_list[chk_alive_num++] = stainfo_offset;
+					chk_alive_list[chk_alive_num++] =
+						stainfo_offset;
 
 				continue;
 			}
 			list_del_init(&psta->asoc_list);
 			pstapriv->asoc_list_cnt--;
-			updated = ap_free_sta(padapter, psta, false, WLAN_REASON_DEAUTH_LEAVING);
+			updated = ap_free_sta(padapter, psta, false,
+					      WLAN_REASON_DEAUTH_LEAVING);
 		} else {
 			/* TODO: Aging mechanism to digest frames in sleep_q to */
 			/* avoid running out of xmitframe */
-			if (psta->sleepq_len > (NR_XMITFRAME / pstapriv->asoc_list_cnt) &&
+			if (psta->sleepq_len >
+				    (NR_XMITFRAME / pstapriv->asoc_list_cnt) &&
 			    padapter->xmitpriv.free_xmitframe_cnt <
-					((NR_XMITFRAME / pstapriv->asoc_list_cnt) / 2))
+				    ((NR_XMITFRAME / pstapriv->asoc_list_cnt) /
+				     2))
 				wakeup_sta_to_xmit(padapter, psta);
 		}
 	}
@@ -276,14 +279,17 @@ void expire_timeout_chk(struct adapter *padapter)
 		for (i = 0; i < chk_alive_num; i++) {
 			int ret = _FAIL;
 
-			psta = rtw_get_stainfo_by_offset(pstapriv, chk_alive_list[i]);
+			psta = rtw_get_stainfo_by_offset(pstapriv,
+							 chk_alive_list[i]);
 			if (!(psta->state & _FW_LINKED))
 				continue;
 
 			if (psta->state & WIFI_SLEEP_STATE)
-				ret = issue_nulldata(padapter, psta->hwaddr, 0, 1, 50);
+				ret = issue_nulldata(padapter, psta->hwaddr, 0,
+						     1, 50);
 			else
-				ret = issue_nulldata(padapter, psta->hwaddr, 0, 3, 50);
+				ret = issue_nulldata(padapter, psta->hwaddr, 0,
+						     3, 50);
 
 			psta->keep_alive_trycnt++;
 			if (ret == _SUCCESS) {
@@ -300,13 +306,15 @@ void expire_timeout_chk(struct adapter *padapter)
 			if (!list_empty(&psta->asoc_list)) {
 				list_del_init(&psta->asoc_list);
 				pstapriv->asoc_list_cnt--;
-				updated = ap_free_sta(padapter, psta, false,
-						      WLAN_REASON_DEAUTH_LEAVING);
+				updated =
+					ap_free_sta(padapter, psta, false,
+						    WLAN_REASON_DEAUTH_LEAVING);
 			}
 			spin_unlock_bh(&pstapriv->asoc_list_lock);
 		}
 
-		if (backup_oper_channel > 0) /* back to the original operation channel */
+		if (backup_oper_channel >
+		    0) /* back to the original operation channel */
 			r8723bs_select_channel(padapter, backup_oper_channel);
 	}
 
@@ -318,8 +326,8 @@ void add_ratid(struct adapter *padapter, struct sta_info *psta, u8 rssi_level)
 	unsigned char sta_band = 0, short_gi_rate = false;
 	unsigned int tx_ra_bitmap = 0;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
-	struct wlan_bssid_ex
-		*pcur_network = (struct wlan_bssid_ex *)&pmlmepriv->cur_network.network;
+	struct wlan_bssid_ex *pcur_network =
+		(struct wlan_bssid_ex *)&pmlmepriv->cur_network.network;
 
 	if (!psta)
 		return;
@@ -349,7 +357,7 @@ void add_ratid(struct adapter *padapter, struct sta_info *psta, u8 rssi_level)
 	psta->raid = networktype_to_raid_ex(padapter, psta);
 
 	if (psta->aid < NUM_STA) {
-		u8 arg[4] = {0};
+		u8 arg[4] = { 0 };
 
 		arg[0] = psta->mac_id;
 		arg[1] = psta->raid;
@@ -367,13 +375,13 @@ void update_bmc_sta(struct adapter *padapter)
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex
-		*pcur_network = (struct wlan_bssid_ex *)&pmlmepriv->cur_network.network;
+	struct wlan_bssid_ex *pcur_network =
+		(struct wlan_bssid_ex *)&pmlmepriv->cur_network.network;
 	struct sta_info *psta = rtw_get_bcmc_stainfo(padapter);
 
 	if (psta) {
-		psta->aid = 0;/* default set to 0 */
-		psta->mac_id = psta->aid + 1;/* mac_id = 1 for bc/mc stainfo */
+		psta->aid = 0; /* default set to 0 */
+		psta->mac_id = psta->aid + 1; /* mac_id = 1 for bc/mc stainfo */
 
 		pmlmeinfo->FW_sta_info[psta->mac_id].psta = psta;
 
@@ -385,12 +393,13 @@ void update_bmc_sta(struct adapter *padapter)
 		memset(&psta->sta_stats, 0, sizeof(struct stainfo_stats));
 
 		/* prepare for add_ratid */
-		network_type = rtw_check_network_type((u8 *)&pcur_network->supported_rates,
-						      pcur_network->configuration.ds_config
-		);
+		network_type = rtw_check_network_type(
+			(u8 *)&pcur_network->supported_rates,
+			pcur_network->configuration.ds_config);
 		if (is_supported_tx_cck(network_type)) {
 			network_type = WIRELESS_11B;
-		} else if (network_type == WIRELESS_INVALID) { /*  error handling */
+		} else if (network_type ==
+			   WIRELESS_INVALID) { /*  error handling */
 
 			if (pcur_network->configuration.ds_config > 14)
 				network_type = WIRELESS_INVALID;
@@ -410,7 +419,7 @@ void update_bmc_sta(struct adapter *padapter)
 
 		/* if (pHalData->fw_ractrl == true) */
 		{
-			u8 arg[4] = {0};
+			u8 arg[4] = { 0 };
 
 			arg[0] = psta->mac_id;
 			arg[1] = psta->raid;
@@ -464,7 +473,8 @@ void update_sta_info_apmode(struct adapter *padapter, struct sta_info *psta)
 
 		phtpriv_sta->rx_ampdu_min_spacing =
 			(phtpriv_sta->ht_cap.ampdu_params_info &
-			 IEEE80211_HT_CAP_AMPDU_DENSITY) >> 2;
+			 IEEE80211_HT_CAP_AMPDU_DENSITY) >>
+			2;
 
 		/*  bwmode */
 		if ((phtpriv_sta->ht_cap.cap_info &
@@ -489,7 +499,8 @@ void update_sta_info_apmode(struct adapter *padapter, struct sta_info *psta)
 		if ((phtpriv_sta->ht_cap.cap_info &
 		     phtpriv_ap->ht_cap.cap_info) &
 		    cpu_to_le16(IEEE80211_HT_CAP_SGI_40)) {
-			if (psta->bw_mode == CHANNEL_WIDTH_40) /* according to psta->bw_mode */
+			if (psta->bw_mode ==
+			    CHANNEL_WIDTH_40) /* according to psta->bw_mode */
 				phtpriv_sta->sgi_40m = true;
 			else
 				phtpriv_sta->sgi_40m = false;
@@ -499,13 +510,16 @@ void update_sta_info_apmode(struct adapter *padapter, struct sta_info *psta)
 
 		/*  B0 Config LDPC Coding Capability */
 		if (TEST_FLAG(phtpriv_ap->ldpc_cap, LDPC_HT_ENABLE_TX) &&
-		    GET_HT_CAPABILITY_ELE_LDPC_CAP((u8 *)(&phtpriv_sta->ht_cap)))
-			SET_FLAG(cur_ldpc_cap, (LDPC_HT_ENABLE_TX | LDPC_HT_CAP_TX));
+		    GET_HT_CAPABILITY_ELE_LDPC_CAP(
+			    (u8 *)(&phtpriv_sta->ht_cap)))
+			SET_FLAG(cur_ldpc_cap,
+				 (LDPC_HT_ENABLE_TX | LDPC_HT_CAP_TX));
 
 		/*  B7 B8 B9 Config STBC setting */
 		if (TEST_FLAG(phtpriv_ap->stbc_cap, STBC_HT_ENABLE_TX) &&
 		    GET_HT_CAPABILITY_ELE_RX_STBC((u8 *)(&phtpriv_sta->ht_cap)))
-			SET_FLAG(cur_stbc_cap, (STBC_HT_ENABLE_TX | STBC_HT_CAP_TX));
+			SET_FLAG(cur_stbc_cap,
+				 (STBC_HT_ENABLE_TX | STBC_HT_CAP_TX));
 	} else {
 		phtpriv_sta->ampdu_enable = false;
 
@@ -520,12 +534,12 @@ void update_sta_info_apmode(struct adapter *padapter, struct sta_info *psta)
 	phtpriv_sta->beamform_cap = cur_beamform_cap;
 
 	/* Rx AMPDU */
-	send_delba(padapter, 0, psta->hwaddr);/*  recipient */
+	send_delba(padapter, 0, psta->hwaddr); /*  recipient */
 
 	/* TX AMPDU */
-	send_delba(padapter, 1, psta->hwaddr);/* originator */
-	phtpriv_sta->agg_enable_bitmap = 0x0;/* reset */
-	phtpriv_sta->candidate_tid_bitmap = 0x0;/* reset */
+	send_delba(padapter, 1, psta->hwaddr); /* originator */
+	phtpriv_sta->agg_enable_bitmap = 0x0; /* reset */
+	phtpriv_sta->candidate_tid_bitmap = 0x0; /* reset */
 
 	update_ldpc_stbc_cap(psta);
 
@@ -541,8 +555,8 @@ void update_sta_info_apmode(struct adapter *padapter, struct sta_info *psta)
 static void update_ap_info(struct adapter *padapter, struct sta_info *psta)
 {
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
-	struct wlan_bssid_ex
-		*pnetwork = (struct wlan_bssid_ex *)&pmlmepriv->cur_network.network;
+	struct wlan_bssid_ex *pnetwork =
+		(struct wlan_bssid_ex *)&pmlmepriv->cur_network.network;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct ht_priv *phtpriv_ap = &pmlmepriv->htpriv;
 
@@ -554,11 +568,13 @@ static void update_ap_info(struct adapter *padapter, struct sta_info *psta)
 	/* HT related cap */
 	if (phtpriv_ap->ht_option) {
 		/* check if sta support s Short GI 20M */
-		if ((phtpriv_ap->ht_cap.cap_info) & cpu_to_le16(IEEE80211_HT_CAP_SGI_20))
+		if ((phtpriv_ap->ht_cap.cap_info) &
+		    cpu_to_le16(IEEE80211_HT_CAP_SGI_20))
 			phtpriv_ap->sgi_20m = true;
 
 		/* check if sta support s Short GI 40M */
-		if ((phtpriv_ap->ht_cap.cap_info) & cpu_to_le16(IEEE80211_HT_CAP_SGI_40))
+		if ((phtpriv_ap->ht_cap.cap_info) &
+		    cpu_to_le16(IEEE80211_HT_CAP_SGI_40))
 			phtpriv_ap->sgi_40m = true;
 
 		psta->qos_option = true;
@@ -572,8 +588,8 @@ static void update_ap_info(struct adapter *padapter, struct sta_info *psta)
 	psta->bw_mode = pmlmeext->cur_bwmode;
 	phtpriv_ap->ch_offset = pmlmeext->cur_ch_offset;
 
-	phtpriv_ap->agg_enable_bitmap = 0x0;/* reset */
-	phtpriv_ap->candidate_tid_bitmap = 0x0;/* reset */
+	phtpriv_ap->agg_enable_bitmap = 0x0; /* reset */
+	phtpriv_ap->candidate_tid_bitmap = 0x0; /* reset */
 
 	memcpy(&psta->htpriv, &pmlmepriv->htpriv, sizeof(struct ht_priv));
 }
@@ -592,18 +608,22 @@ static void update_hw_ht_param(struct adapter *padapter)
 	 */
 	max_AMPDU_len = pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x03;
 
-	min_MPDU_spacing = (pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x1c) >> 2;
+	min_MPDU_spacing =
+		(pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x1c) >> 2;
 
-	rtw_hal_set_hwreg(padapter, HW_VAR_AMPDU_MIN_SPACE, (u8 *)(&min_MPDU_spacing));
+	rtw_hal_set_hwreg(padapter, HW_VAR_AMPDU_MIN_SPACE,
+			  (u8 *)(&min_MPDU_spacing));
 
-	rtw_hal_set_hwreg(padapter, HW_VAR_AMPDU_FACTOR, (u8 *)(&max_AMPDU_len));
+	rtw_hal_set_hwreg(padapter, HW_VAR_AMPDU_FACTOR,
+			  (u8 *)(&max_AMPDU_len));
 
 	/*  */
 	/*  Config SM Power Save setting */
 	/*  */
 	pmlmeinfo->SM_PS =
 		(le16_to_cpu(pmlmeinfo->HT_caps.u.HT_cap_element.HT_caps_info) &
-		 0x0C) >> 2;
+		 0x0C) >>
+		2;
 }
 
 void start_bss_network(struct adapter *padapter)
@@ -612,12 +632,12 @@ void start_bss_network(struct adapter *padapter)
 	u8 val8, cur_channel, cur_bwmode, cur_ch_offset;
 	u16 bcn_interval;
 	u32 acparm;
-	int	ie_len;
-	struct registry_priv  *pregpriv = &padapter->registrypriv;
+	int ie_len;
+	struct registry_priv *pregpriv = &padapter->registrypriv;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
-	struct wlan_bssid_ex
-		*pnetwork = (struct wlan_bssid_ex *)&pmlmepriv->cur_network.network;
+	struct wlan_bssid_ex *pnetwork =
+		(struct wlan_bssid_ex *)&pmlmepriv->cur_network.network;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 	struct wlan_bssid_ex *pnetwork_mlmeext = &pmlmeinfo->network;
@@ -636,7 +656,8 @@ void start_bss_network(struct adapter *padapter)
 	 * and at first time the security ie (RSN/WPA IE) will not include in beacon.
 	 */
 	if (!rtw_get_wps_ie(pnetwork->ies + _FIXED_IE_LENGTH_,
-			    pnetwork->ie_length - _FIXED_IE_LENGTH_, NULL, NULL))
+			    pnetwork->ie_length - _FIXED_IE_LENGTH_, NULL,
+			    NULL))
 		pmlmeext->bstart_bss = true;
 
 	/* todo: update wmm, ht cap */
@@ -653,7 +674,7 @@ void start_bss_network(struct adapter *padapter)
 		/* WEP Key will be set before this function, do not clear CAM. */
 		if ((psecuritypriv->dot11PrivacyAlgrthm != _WEP40_) &&
 		    (psecuritypriv->dot11PrivacyAlgrthm != _WEP104_))
-			flush_all_cam_entry(padapter);	/* clear CAM */
+			flush_all_cam_entry(padapter); /* clear CAM */
 	}
 
 	/* set MSR to AP_Mode */
@@ -673,12 +694,14 @@ void start_bss_network(struct adapter *padapter)
 	rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_BK, (u8 *)(&acparm));
 
 	/* Set Security */
-	val8 = (psecuritypriv->dot11AuthAlgrthm ==
-		dot11AuthAlgrthm_8021X) ? 0xcc : 0xcf;
+	val8 = (psecuritypriv->dot11AuthAlgrthm == dot11AuthAlgrthm_8021X) ?
+		       0xcc :
+		       0xcf;
 	rtw_hal_set_hwreg(padapter, HW_VAR_SEC_CFG, (u8 *)(&val8));
 
 	/* Beacon Control related register */
-	rtw_hal_set_hwreg(padapter, HW_VAR_BEACON_INTERVAL, (u8 *)(&bcn_interval));
+	rtw_hal_set_hwreg(padapter, HW_VAR_BEACON_INTERVAL,
+			  (u8 *)(&bcn_interval));
 
 	rtw_hal_set_hwreg(padapter, HW_VAR_DO_IQK, NULL);
 
@@ -688,18 +711,17 @@ void start_bss_network(struct adapter *padapter)
 	}
 
 	/* set channel, bwmode */
-	p = rtw_get_ie((pnetwork->ies + sizeof(struct ndis_802_11_fix_ie)),
-		       WLAN_EID_HT_OPERATION,
-		       &ie_len,
-		       (pnetwork->ie_length - sizeof(struct ndis_802_11_fix_ie))
-	);
+	p = rtw_get_ie(
+		(pnetwork->ies + sizeof(struct ndis_802_11_fix_ie)),
+		WLAN_EID_HT_OPERATION, &ie_len,
+		(pnetwork->ie_length - sizeof(struct ndis_802_11_fix_ie)));
 	if (p && ie_len) {
 		pht_info = (struct HT_info_element *)(p + 2);
 
 		if ((pregpriv->bw_mode & 0x0f) > 0)
 			cbw40_enable = 1;
 
-		if ((cbw40_enable) &&	 (pht_info->infos[0] & BIT(2))) {
+		if ((cbw40_enable) && (pht_info->infos[0] & BIT(2))) {
 			/* switch to the 40M Hz mode */
 			cur_bwmode = CHANNEL_WIDTH_40;
 			switch (pht_info->infos[0] & 0x3) {
@@ -732,7 +754,8 @@ void start_bss_network(struct adapter *padapter)
 
 	/* update RRSR after set channel and bandwidth */
 	update_basic_rate_table(padapter, pnetwork->supported_rates);
-	rtw_hal_set_hwreg(padapter, HW_VAR_BASIC_RATE, pnetwork->supported_rates);
+	rtw_hal_set_hwreg(padapter, HW_VAR_BASIC_RATE,
+			  pnetwork->supported_rates);
 
 	/* update capability after cur_wireless_mode updated */
 	update_capinfo(padapter,
@@ -749,7 +772,7 @@ void start_bss_network(struct adapter *padapter)
 	update_bmc_sta(padapter);
 }
 
-int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
+int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf, int len)
 {
 	int ret = _SUCCESS;
 	u8 *p;
@@ -761,13 +784,13 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 	int group_cipher, pairwise_cipher;
 	u8 channel, network_type, support_rate[NDIS_802_11_LENGTH_RATES_EX];
 	int support_rate_num = 0;
-	u8 OUI1[] = {0x00, 0x50, 0xf2, 0x01};
-	u8 WMM_PARA_IE[] = {0x00, 0x50, 0xf2, 0x02, 0x01, 0x01};
+	u8 OUI1[] = { 0x00, 0x50, 0xf2, 0x01 };
+	u8 WMM_PARA_IE[] = { 0x00, 0x50, 0xf2, 0x02, 0x01, 0x01 };
 	struct registry_priv *pregistrypriv = &padapter->registrypriv;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
-	struct wlan_bssid_ex
-		*pbss_network = (struct wlan_bssid_ex *)&pmlmepriv->cur_network.network;
+	struct wlan_bssid_ex *pbss_network =
+		(struct wlan_bssid_ex *)&pmlmepriv->cur_network.network;
 	u8 *ie = pbss_network->ies;
 
 	if (!check_fwstate(pmlmepriv, WIFI_AP_STATE))
@@ -787,7 +810,8 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 
 	pbss_network->rssi = 0;
 
-	memcpy(pbss_network->mac_address, myid(&padapter->eeprompriv), ETH_ALEN);
+	memcpy(pbss_network->mac_address, myid(&padapter->eeprompriv),
+	       ETH_ALEN);
 
 	/* beacon interval */
 	/* ie + 8;	8: TimeStamp, 2: Beacon Interval 2:Capability */
@@ -798,9 +822,7 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 	cap = get_unaligned_le16(ie);
 
 	/* SSID */
-	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_,
-		       WLAN_EID_SSID,
-		       &ie_len,
+	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_, WLAN_EID_SSID, &ie_len,
 		       (pbss_network->ie_length - _BEACON_IE_OFFSET_));
 	if (p && ie_len > 0) {
 		memset(&pbss_network->ssid, 0, sizeof(struct ndis_802_11_ssid));
@@ -811,8 +833,7 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 	/* channel */
 	channel = 0;
 	pbss_network->configuration.length = 0;
-	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_,
-		       WLAN_EID_DS_PARAMS, &ie_len,
+	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_, WLAN_EID_DS_PARAMS, &ie_len,
 		       (pbss_network->ie_length - _BEACON_IE_OFFSET_));
 	if (p && ie_len > 0)
 		channel = *(p + 2);
@@ -821,9 +842,7 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 
 	memset(support_rate, 0, NDIS_802_11_LENGTH_RATES_EX);
 	/*  get supported rates */
-	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_,
-		       WLAN_EID_SUPP_RATES,
-		       &ie_len,
+	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_, WLAN_EID_SUPP_RATES, &ie_len,
 		       (pbss_network->ie_length - _BEACON_IE_OFFSET_));
 	if (p) {
 		memcpy(support_rate, p + 2, ie_len);
@@ -831,10 +850,8 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 	}
 
 	/* get ext_supported rates */
-	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_,
-		       WLAN_EID_EXT_SUPP_RATES,
-		       &ie_len,
-		       pbss_network->ie_length - _BEACON_IE_OFFSET_);
+	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_, WLAN_EID_EXT_SUPP_RATES,
+		       &ie_len, pbss_network->ie_length - _BEACON_IE_OFFSET_);
 	if (p)
 		memcpy(support_rate + support_rate_num, p + 2, ie_len);
 
@@ -843,9 +860,7 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 	rtw_set_supported_rate(pbss_network->supported_rates, network_type);
 
 	/* parsing ERP_IE */
-	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_,
-		       WLAN_EID_ERP_INFO,
-		       &ie_len,
+	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_, WLAN_EID_ERP_INFO, &ie_len,
 		       (pbss_network->ie_length - _BEACON_IE_OFFSET_));
 	if (p && ie_len > 0)
 		ERP_IE_handler(padapter, (struct ndis_80211_var_ie *)p);
@@ -859,22 +874,19 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 	psecuritypriv->wpa_psk = 0;
 
 	/* wpa2 */
-	group_cipher = 0; pairwise_cipher = 0;
+	group_cipher = 0;
+	pairwise_cipher = 0;
 	psecuritypriv->wpa2_group_cipher = _NO_PRIVACY_;
 	psecuritypriv->wpa2_pairwise_cipher = _NO_PRIVACY_;
-	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_,
-		       WLAN_EID_RSN,
-		       &ie_len,
+	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_, WLAN_EID_RSN, &ie_len,
 		       (pbss_network->ie_length - _BEACON_IE_OFFSET_));
 	if (p && ie_len > 0) {
-		if (rtw_parse_wpa2_ie(p,
-				      ie_len + 2,
-				      &group_cipher,
-				      &pairwise_cipher,
-				      NULL) == _SUCCESS) {
-			psecuritypriv->dot11AuthAlgrthm = dot11AuthAlgrthm_8021X;
-
-			psecuritypriv->dot8021xalg = 1;/* psk,  todo:802.1x */
+		if (rtw_parse_wpa2_ie(p, ie_len + 2, &group_cipher,
+				      &pairwise_cipher, NULL) == _SUCCESS) {
+			psecuritypriv->dot11AuthAlgrthm =
+				dot11AuthAlgrthm_8021X;
+
+			psecuritypriv->dot8021xalg = 1; /* psk,  todo:802.1x */
 			psecuritypriv->wpa_psk |= BIT(1);
 
 			psecuritypriv->wpa2_group_cipher = group_cipher;
@@ -884,28 +896,29 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 
 	/* wpa */
 	ie_len = 0;
-	group_cipher = 0; pairwise_cipher = 0;
+	group_cipher = 0;
+	pairwise_cipher = 0;
 	psecuritypriv->wpa_group_cipher = _NO_PRIVACY_;
 	psecuritypriv->wpa_pairwise_cipher = _NO_PRIVACY_;
-	for (p = ie + _BEACON_IE_OFFSET_; ; p += (ie_len + 2)) {
-		p = rtw_get_ie(p,
-			       WLAN_EID_VENDOR_SPECIFIC,
-			       &ie_len,
-			       (pbss_network->ie_length - _BEACON_IE_OFFSET_ - (ie_len + 2)));
+	for (p = ie + _BEACON_IE_OFFSET_;; p += (ie_len + 2)) {
+		p = rtw_get_ie(p, WLAN_EID_VENDOR_SPECIFIC, &ie_len,
+			       (pbss_network->ie_length - _BEACON_IE_OFFSET_ -
+				(ie_len + 2)));
 		if ((p) && (!memcmp(p + 2, OUI1, 4))) {
-			if (rtw_parse_wpa_ie(p,
-					     ie_len + 2,
-					     &group_cipher,
+			if (rtw_parse_wpa_ie(p, ie_len + 2, &group_cipher,
 					     &pairwise_cipher,
 					     NULL) == _SUCCESS) {
-				psecuritypriv->dot11AuthAlgrthm = dot11AuthAlgrthm_8021X;
+				psecuritypriv->dot11AuthAlgrthm =
+					dot11AuthAlgrthm_8021X;
 
-				psecuritypriv->dot8021xalg = 1;/* psk,  todo:802.1x */
+				psecuritypriv->dot8021xalg =
+					1; /* psk,  todo:802.1x */
 
 				psecuritypriv->wpa_psk |= BIT(0);
 
 				psecuritypriv->wpa_group_cipher = group_cipher;
-				psecuritypriv->wpa_pairwise_cipher = pairwise_cipher;
+				psecuritypriv->wpa_pairwise_cipher =
+					pairwise_cipher;
 			}
 
 			break;
@@ -919,16 +932,15 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 	ie_len = 0;
 	pmlmepriv->qospriv.qos_option = 0;
 	if (pregistrypriv->wmm_enable) {
-		for (p = ie + _BEACON_IE_OFFSET_; ; p += (ie_len + 2)) {
-			p = rtw_get_ie(p,
-				       WLAN_EID_VENDOR_SPECIFIC,
-				       &ie_len,
+		for (p = ie + _BEACON_IE_OFFSET_;; p += (ie_len + 2)) {
+			p = rtw_get_ie(p, WLAN_EID_VENDOR_SPECIFIC, &ie_len,
 				       (pbss_network->ie_length -
 					_BEACON_IE_OFFSET_ - (ie_len + 2)));
 			if ((p) && !memcmp(p + 2, WMM_PARA_IE, 6)) {
 				pmlmepriv->qospriv.qos_option = 1;
 
-				*(p + 8) |= BIT(7);/* QoS Info, support U-APSD */
+				*(p + 8) |=
+					BIT(7); /* QoS Info, support U-APSD */
 
 				/* disable all ACM bits since the WMM admission */
 				/* control is not supported */
@@ -946,13 +958,12 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 	}
 
 	/* parsing HT_CAP_IE */
-	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_,
-		       WLAN_EID_HT_CAPABILITY,
-		       &ie_len,
+	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_, WLAN_EID_HT_CAPABILITY, &ie_len,
 		       (pbss_network->ie_length - _BEACON_IE_OFFSET_));
 	if (p && ie_len > 0) {
 		u8 max_rx_ampdu_factor = 0;
-		struct ieee80211_ht_cap *pht_cap = (struct ieee80211_ht_cap *)(p + 2);
+		struct ieee80211_ht_cap *pht_cap =
+			(struct ieee80211_ht_cap *)(p + 2);
 
 		ht_caps_ie = p;
 
@@ -962,38 +973,42 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 		rtw_ht_use_default_setting(padapter);
 
 		if (!pmlmepriv->htpriv.sgi_20m)
-			pht_cap->cap_info &= cpu_to_le16(~(IEEE80211_HT_CAP_SGI_20));
+			pht_cap->cap_info &=
+				cpu_to_le16(~(IEEE80211_HT_CAP_SGI_20));
 
 		if (!pmlmepriv->htpriv.sgi_40m)
-			pht_cap->cap_info &= cpu_to_le16(~(IEEE80211_HT_CAP_SGI_40));
+			pht_cap->cap_info &=
+				cpu_to_le16(~(IEEE80211_HT_CAP_SGI_40));
 
 		if (!TEST_FLAG(pmlmepriv->htpriv.ldpc_cap, LDPC_HT_ENABLE_RX))
-			pht_cap->cap_info &= cpu_to_le16(~(IEEE80211_HT_CAP_LDPC_CODING));
+			pht_cap->cap_info &=
+				cpu_to_le16(~(IEEE80211_HT_CAP_LDPC_CODING));
 
 		if (!TEST_FLAG(pmlmepriv->htpriv.stbc_cap, STBC_HT_ENABLE_TX))
-			pht_cap->cap_info &= cpu_to_le16(~(IEEE80211_HT_CAP_TX_STBC));
+			pht_cap->cap_info &=
+				cpu_to_le16(~(IEEE80211_HT_CAP_TX_STBC));
 
 		if (!TEST_FLAG(pmlmepriv->htpriv.stbc_cap, STBC_HT_ENABLE_RX))
-			pht_cap->cap_info &= cpu_to_le16(~(IEEE80211_HT_CAP_RX_STBC_3R));
+			pht_cap->cap_info &=
+				cpu_to_le16(~(IEEE80211_HT_CAP_RX_STBC_3R));
 
 		pht_cap->ampdu_params_info &= ~(IEEE80211_HT_CAP_AMPDU_FACTOR |
 						IEEE80211_HT_CAP_AMPDU_DENSITY);
 
 		if ((psecuritypriv->wpa_pairwise_cipher & WPA_CIPHER_CCMP) ||
 		    (psecuritypriv->wpa2_pairwise_cipher & WPA_CIPHER_CCMP)) {
-			pht_cap->ampdu_params_info |= (IEEE80211_HT_CAP_AMPDU_DENSITY &
-						       (0x07 << 2));
+			pht_cap->ampdu_params_info |=
+				(IEEE80211_HT_CAP_AMPDU_DENSITY & (0x07 << 2));
 		} else {
-			pht_cap->ampdu_params_info |= (IEEE80211_HT_CAP_AMPDU_DENSITY &
-						       0x00);
+			pht_cap->ampdu_params_info |=
+				(IEEE80211_HT_CAP_AMPDU_DENSITY & 0x00);
 		}
 
-		rtw_hal_get_def_var(padapter,
-				    HW_VAR_MAX_RX_AMPDU_FACTOR,
+		rtw_hal_get_def_var(padapter, HW_VAR_MAX_RX_AMPDU_FACTOR,
 				    &max_rx_ampdu_factor);
 		/* set Max Rx AMPDU size to 64K */
-		pht_cap->ampdu_params_info |= (IEEE80211_HT_CAP_AMPDU_FACTOR &
-					       max_rx_ampdu_factor);
+		pht_cap->ampdu_params_info |=
+			(IEEE80211_HT_CAP_AMPDU_FACTOR & max_rx_ampdu_factor);
 
 		pht_cap->mcs.rx_mask[0] = 0xff;
 		pht_cap->mcs.rx_mask[1] = 0x0;
@@ -1002,9 +1017,7 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 	}
 
 	/* parsing HT_INFO_IE */
-	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_,
-		       WLAN_EID_HT_OPERATION,
-		       &ie_len,
+	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_, WLAN_EID_HT_OPERATION, &ie_len,
 		       (pbss_network->ie_length - _BEACON_IE_OFFSET_));
 	if (p && ie_len > 0)
 		ht_info_ie = p;
@@ -1036,9 +1049,11 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 		if (pregistrypriv->ampdu_enable == 1)
 			pmlmepriv->htpriv.ampdu_enable = true;
 
-		HT_caps_handler(padapter, (struct ndis_80211_var_ie *)ht_caps_ie);
+		HT_caps_handler(padapter,
+				(struct ndis_80211_var_ie *)ht_caps_ie);
 
-		HT_info_handler(padapter, (struct ndis_80211_var_ie *)ht_info_ie);
+		HT_info_handler(padapter,
+				(struct ndis_80211_var_ie *)ht_info_ie);
 	}
 
 	pbss_network->length =
@@ -1050,7 +1065,8 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 	/* alloc sta_info for ap itself */
 	psta = rtw_get_stainfo(&padapter->stapriv, pbss_network->mac_address);
 	if (!psta) {
-		psta = rtw_alloc_stainfo(&padapter->stapriv, pbss_network->mac_address);
+		psta = rtw_alloc_stainfo(&padapter->stapriv,
+					 pbss_network->mac_address);
 		if (!psta)
 			return _FAIL;
 	}
@@ -1061,7 +1077,8 @@ int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len)
 	psta->state |= WIFI_AP_STATE;
 	rtw_indicate_connect(padapter);
 
-	pmlmepriv->cur_network.join_res = true;/* for check if already set beacon */
+	pmlmepriv->cur_network.join_res =
+		true; /* for check if already set beacon */
 
 	return ret;
 }
@@ -1076,13 +1093,13 @@ void rtw_set_macaddr_acl(struct adapter *padapter, int mode)
 
 int rtw_acl_add_sta(struct adapter *padapter, u8 *addr)
 {
-	struct list_head	*plist, *phead;
+	struct list_head *plist, *phead;
 	u8 added = false;
 	int i, ret = 0;
 	struct rtw_wlan_acl_node *paclnode;
 	struct sta_priv *pstapriv = &padapter->stapriv;
 	struct wlan_acl_pool *pacl_list = &pstapriv->acl_list;
-	struct __queue	*pacl_node_q = &pacl_list->acl_node_q;
+	struct __queue *pacl_node_q = &pacl_list->acl_node_q;
 
 	if ((NUM_ACL - 1) < pacl_list->num)
 		return (-1);
@@ -1118,7 +1135,8 @@ int rtw_acl_add_sta(struct adapter *padapter, u8 *addr)
 
 			paclnode->valid = true;
 
-			list_add_tail(&paclnode->list, get_list_head(pacl_node_q));
+			list_add_tail(&paclnode->list,
+				      get_list_head(pacl_node_q));
 
 			pacl_list->num++;
 
@@ -1137,7 +1155,7 @@ void rtw_acl_remove_sta(struct adapter *padapter, u8 *addr)
 	struct rtw_wlan_acl_node *paclnode;
 	struct sta_priv *pstapriv = &padapter->stapriv;
 	struct wlan_acl_pool *pacl_list = &pstapriv->acl_list;
-	struct __queue	*pacl_node_q = &pacl_list->acl_node_q;
+	struct __queue *pacl_node_q = &pacl_list->acl_node_q;
 
 	spin_lock_bh(&pacl_node_q->lock);
 
@@ -1163,7 +1181,7 @@ void rtw_acl_remove_sta(struct adapter *padapter, u8 *addr)
 u8 rtw_ap_set_pairwise_key(struct adapter *padapter, struct sta_info *psta)
 {
 	struct cmd_obj *ph2c;
-	struct set_stakey_parm	*psetstakey_para;
+	struct set_stakey_parm *psetstakey_para;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	u8 res = _SUCCESS;
 
@@ -1195,10 +1213,7 @@ u8 rtw_ap_set_pairwise_key(struct adapter *padapter, struct sta_info *psta)
 	return res;
 }
 
-static int rtw_ap_set_key(struct adapter *padapter,
-			  u8 *key,
-			  u8 alg,
-			  int keyid,
+static int rtw_ap_set_key(struct adapter *padapter, u8 *key, u8 alg, int keyid,
 			  u8 set_tx)
 {
 	u8 keylen;
@@ -1245,7 +1260,7 @@ static int rtw_ap_set_key(struct adapter *padapter,
 
 	pcmd->cmdcode = _SetKey_CMD_;
 	pcmd->parmbuf = (u8 *)psetkeyparm;
-	pcmd->cmdsz =  (sizeof(struct setkey_parm));
+	pcmd->cmdsz = (sizeof(struct setkey_parm));
 	pcmd->rsp = NULL;
 	pcmd->rspsz = 0;
 
@@ -1263,10 +1278,7 @@ int rtw_ap_set_group_key(struct adapter *padapter, u8 *key, u8 alg, int keyid)
 	return rtw_ap_set_key(padapter, key, alg, keyid, 1);
 }
 
-int rtw_ap_set_wep_key(struct adapter *padapter,
-		       u8 *key,
-		       u8 keylen,
-		       int keyid,
+int rtw_ap_set_wep_key(struct adapter *padapter, u8 *key, u8 keylen, int keyid,
 		       u8 set_tx)
 {
 	u8 alg;
@@ -1302,18 +1314,17 @@ static void update_bcn_erpinfo_ie(struct adapter *padapter)
 		return;
 
 	/* parsing ERP_IE */
-	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_,
-		       WLAN_EID_ERP_INFO,
-		       &len,
+	p = rtw_get_ie(ie + _BEACON_IE_OFFSET_, WLAN_EID_ERP_INFO, &len,
 		       (pnetwork->ie_length - _BEACON_IE_OFFSET_));
 	if (p && len > 0) {
 		struct ndis_80211_var_ie *ie = (struct ndis_80211_var_ie *)p;
 
 		if (pmlmepriv->num_sta_non_erp == 1)
-			ie->data[0] |= RTW_ERP_INFO_NON_ERP_PRESENT | RTW_ERP_INFO_USE_PROTECTION;
+			ie->data[0] |= RTW_ERP_INFO_NON_ERP_PRESENT |
+				       RTW_ERP_INFO_USE_PROTECTION;
 		else
 			ie->data[0] &= ~(RTW_ERP_INFO_NON_ERP_PRESENT |
-					  RTW_ERP_INFO_USE_PROTECTION);
+					 RTW_ERP_INFO_USE_PROTECTION);
 
 		if (pmlmepriv->num_sta_no_short_preamble > 0)
 			ie->data[0] |= RTW_ERP_INFO_BARKER_PREAMBLE_MODE;
@@ -1360,9 +1371,7 @@ static void update_bcn_wps_ie(struct adapter *padapter)
 	u32 ielen = pnetwork->ie_length;
 
 	pwps_ie = rtw_get_wps_ie(ie + _FIXED_IE_LENGTH_,
-				 ielen - _FIXED_IE_LENGTH_,
-				 NULL,
-				 &wps_ielen);
+				 ielen - _FIXED_IE_LENGTH_, NULL, &wps_ielen);
 
 	if (!pwps_ie || wps_ielen == 0)
 		return;
@@ -1378,9 +1387,10 @@ static void update_bcn_wps_ie(struct adapter *padapter)
 	remainder_ielen = ielen - wps_offset - wps_ielen;
 
 	if (remainder_ielen)
-		pbackup_remainder_ie = kmemdup(premainder_ie, remainder_ielen, GFP_ATOMIC);
+		pbackup_remainder_ie =
+			kmemdup(premainder_ie, remainder_ielen, GFP_ATOMIC);
 
-	wps_ielen = (unsigned int)pwps_ie_src[1];/* to get ie data len */
+	wps_ielen = (unsigned int)pwps_ie_src[1]; /* to get ie data len */
 	if ((wps_offset + wps_ielen + 2 + remainder_ielen) <= MAX_IE_SZ) {
 		memcpy(pwps_ie, pwps_ie_src, wps_ielen + 2);
 		pwps_ie += (wps_ielen + 2);
@@ -1389,7 +1399,8 @@ static void update_bcn_wps_ie(struct adapter *padapter)
 			memcpy(pwps_ie, pbackup_remainder_ie, remainder_ielen);
 
 		/* update ie_length */
-		pnetwork->ie_length = wps_offset + (wps_ielen + 2) + remainder_ielen;
+		pnetwork->ie_length =
+			wps_offset + (wps_ielen + 2) + remainder_ielen;
 	}
 
 	kfree(pbackup_remainder_ie);
@@ -1433,7 +1444,8 @@ void update_beacon(struct adapter *padapter, u8 ie_id, u8 *oui, u8 tx)
 	switch (ie_id) {
 	case 0xFF:
 
-		update_bcn_fixed_ie(padapter);/* 8: TimeStamp, 2: Beacon Interval 2:Capability */
+		update_bcn_fixed_ie(
+			padapter); /* 8: TimeStamp, 2: Beacon Interval 2:Capability */
 
 		break;
 
@@ -1509,14 +1521,12 @@ static int rtw_ht_operation_update(struct adapter *padapter)
 
 	if (!(pmlmepriv->ht_op_mode & IEEE80211_HT_OP_MODE_NON_GF_STA_PRSNT) &&
 	    pmlmepriv->num_sta_ht_no_gf) {
-		pmlmepriv->ht_op_mode |=
-			IEEE80211_HT_OP_MODE_NON_GF_STA_PRSNT;
+		pmlmepriv->ht_op_mode |= IEEE80211_HT_OP_MODE_NON_GF_STA_PRSNT;
 		op_mode_changes++;
 	} else if ((pmlmepriv->ht_op_mode &
 		    IEEE80211_HT_OP_MODE_NON_GF_STA_PRSNT) &&
 		   pmlmepriv->num_sta_ht_no_gf == 0) {
-		pmlmepriv->ht_op_mode &=
-			~IEEE80211_HT_OP_MODE_NON_GF_STA_PRSNT;
+		pmlmepriv->ht_op_mode &= ~IEEE80211_HT_OP_MODE_NON_GF_STA_PRSNT;
 		op_mode_changes++;
 	}
 
@@ -1527,8 +1537,7 @@ static int rtw_ht_operation_update(struct adapter *padapter)
 	} else if ((pmlmepriv->ht_op_mode &
 		    IEEE80211_HT_OP_MODE_NON_HT_STA_PRSNT) &&
 		   (pmlmepriv->num_sta_no_ht == 0 && !pmlmepriv->olbc_ht)) {
-		pmlmepriv->ht_op_mode &=
-			~IEEE80211_HT_OP_MODE_NON_HT_STA_PRSNT;
+		pmlmepriv->ht_op_mode &= ~IEEE80211_HT_OP_MODE_NON_HT_STA_PRSNT;
 		op_mode_changes++;
 	}
 
@@ -1563,7 +1572,7 @@ void associated_clients_update(struct adapter *padapter, u8 updated)
 {
 	/* update associated stations cap. */
 	if (updated) {
-		struct list_head	*phead, *plist;
+		struct list_head *phead, *plist;
 		struct sta_info *psta = NULL;
 		struct sta_priv *pstapriv = &padapter->stapriv;
 
@@ -1622,7 +1631,8 @@ void bss_cap_update_on_sta_join(struct adapter *padapter, struct sta_info *psta)
 
 			if (pmlmepriv->num_sta_non_erp == 1) {
 				beacon_updated = true;
-				update_beacon(padapter, WLAN_EID_ERP_INFO, NULL, true);
+				update_beacon(padapter, WLAN_EID_ERP_INFO, NULL,
+					      true);
 			}
 		}
 	} else {
@@ -1633,7 +1643,8 @@ void bss_cap_update_on_sta_join(struct adapter *padapter, struct sta_info *psta)
 
 			if (pmlmepriv->num_sta_non_erp == 0) {
 				beacon_updated = true;
-				update_beacon(padapter, WLAN_EID_ERP_INFO, NULL, true);
+				update_beacon(padapter, WLAN_EID_ERP_INFO, NULL,
+					      true);
 			}
 		}
 	}
@@ -1699,7 +1710,7 @@ void bss_cap_update_on_sta_join(struct adapter *padapter, struct sta_info *psta)
 	}
 
 	/* update associated stations cap. */
-	associated_clients_update(padapter,  beacon_updated);
+	associated_clients_update(padapter, beacon_updated);
 }
 
 u8 bss_cap_update_on_sta_leave(struct adapter *padapter, struct sta_info *psta)
@@ -1715,7 +1726,7 @@ u8 bss_cap_update_on_sta_leave(struct adapter *padapter, struct sta_info *psta)
 		psta->no_short_preamble_set = 0;
 		pmlmepriv->num_sta_no_short_preamble--;
 		if (pmlmeext->cur_wireless_mode > WIRELESS_11B &&
-		    pmlmepriv->num_sta_no_short_preamble == 0){
+		    pmlmepriv->num_sta_no_short_preamble == 0) {
 			beacon_updated = true;
 			update_beacon(padapter, 0xFF, NULL, true);
 		}
@@ -1734,7 +1745,7 @@ u8 bss_cap_update_on_sta_leave(struct adapter *padapter, struct sta_info *psta)
 		psta->no_short_slot_time_set = 0;
 		pmlmepriv->num_sta_no_short_slot_time--;
 		if (pmlmeext->cur_wireless_mode > WIRELESS_11B &&
-		    pmlmepriv->num_sta_no_short_slot_time == 0){
+		    pmlmepriv->num_sta_no_short_slot_time == 0) {
 			beacon_updated = true;
 			update_beacon(padapter, 0xFF, NULL, true);
 		}
@@ -1763,9 +1774,7 @@ u8 bss_cap_update_on_sta_leave(struct adapter *padapter, struct sta_info *psta)
 	return beacon_updated;
 }
 
-u8 ap_free_sta(struct adapter *padapter,
-	       struct sta_info *psta,
-	       bool active,
+u8 ap_free_sta(struct adapter *padapter, struct sta_info *psta, bool active,
 	       u16 reason)
 {
 	u8 beacon_updated = false;
@@ -1775,16 +1784,16 @@ u8 ap_free_sta(struct adapter *padapter,
 
 	if (active) {
 		/* tear down Rx AMPDU */
-		send_delba(padapter, 0, psta->hwaddr);/*  recipient */
+		send_delba(padapter, 0, psta->hwaddr); /*  recipient */
 
 		/* tear down TX AMPDU */
-		send_delba(padapter, 1, psta->hwaddr);/*  // originator */
+		send_delba(padapter, 1, psta->hwaddr); /*  // originator */
 
 		issue_deauth(padapter, psta->hwaddr, reason);
 	}
 
-	psta->htpriv.agg_enable_bitmap = 0x0;/* reset */
-	psta->htpriv.candidate_tid_bitmap = 0x0;/* reset */
+	psta->htpriv.agg_enable_bitmap = 0x0; /* reset */
+	psta->htpriv.candidate_tid_bitmap = 0x0; /* reset */
 
 	/* clear cam entry / key */
 	rtw_clearstakey_cmd(padapter, psta, true);
@@ -1811,7 +1820,7 @@ void rtw_sta_flush(struct adapter *padapter)
 	struct sta_priv *pstapriv = &padapter->stapriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	u8 bc_addr[ETH_ALEN] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
+	u8 bc_addr[ETH_ALEN] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
 
 	if ((pmlmeinfo->state & 0x03) != WIFI_FW_AP_STATE)
 		return;
@@ -1873,7 +1882,7 @@ void ap_sta_info_defer_update(struct adapter *padapter, struct sta_info *psta)
 		pmlmeinfo->FW_sta_info[psta->mac_id].psta = psta;
 
 		/* add ratid */
-		add_ratid(padapter, psta, 0);/* DM_RATR_STA_INIT */
+		add_ratid(padapter, psta, 0); /* DM_RATR_STA_INIT */
 	}
 }
 
@@ -1884,28 +1893,23 @@ void rtw_ap_restore_network(struct adapter *padapter)
 	struct sta_priv *pstapriv = &padapter->stapriv;
 	struct sta_info *psta;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
-	struct list_head	*phead, *plist;
+	struct list_head *phead, *plist;
 	u8 chk_alive_num = 0;
 	char chk_alive_list[NUM_STA];
 	int i;
 
 	rtw_setopmode_cmd(padapter, Ndis802_11APMode, false);
 
-	set_channel_bwmode(padapter,
-			   pmlmeext->cur_channel,
-			   pmlmeext->cur_ch_offset,
-			   pmlmeext->cur_bwmode);
+	set_channel_bwmode(padapter, pmlmeext->cur_channel,
+			   pmlmeext->cur_ch_offset, pmlmeext->cur_bwmode);
 
 	start_bss_network(padapter);
 
 	if ((padapter->securitypriv.dot11PrivacyAlgrthm == _TKIP_) ||
 	    (padapter->securitypriv.dot11PrivacyAlgrthm == _AES_)) {
 		/* restore group key, WEP keys is restored in ips_leave() */
-		rtw_set_key(padapter,
-			    psecuritypriv,
-			    psecuritypriv->dot118021XGrpKeyid,
-			    0,
-			    false);
+		rtw_set_key(padapter, psecuritypriv,
+			    psecuritypriv->dot118021XGrpKeyid, 0, false);
 	}
 
 	spin_lock_bh(&pstapriv->asoc_list_lock);
@@ -1999,14 +2003,13 @@ void stop_ap_mode(struct adapter *padapter)
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct wlan_acl_pool *pacl_list = &pstapriv->acl_list;
-	struct __queue	*pacl_node_q = &pacl_list->acl_node_q;
+	struct __queue *pacl_node_q = &pacl_list->acl_node_q;
 
 	pmlmepriv->update_bcn = false;
 	pmlmeext->bstart_bss = false;
 
 	/* reset and init security priv , this can refine with rtw_reset_securitypriv */
-	memset((unsigned char *)&padapter->securitypriv,
-	       0,
+	memset((unsigned char *)&padapter->securitypriv, 0,
 	       sizeof(struct security_priv));
 	padapter->securitypriv.ndisauthtype = Ndis802_11AuthModeOpen;
 	padapter->securitypriv.ndisencryptstatus = Ndis802_11WEPDisabled;
diff --git a/drivers/staging/rtl8723bs/core/rtw_btcoex.c b/drivers/staging/rtl8723bs/core/rtw_btcoex.c
index 9e00424d00bdd..5eafc13286304 100644
--- a/drivers/staging/rtl8723bs/core/rtw_btcoex.c
+++ b/drivers/staging/rtl8723bs/core/rtw_btcoex.c
@@ -38,7 +38,8 @@ void rtw_btcoex_reject_ap_aggregated_packet(struct adapter *padapter, u8 enable)
 	struct sta_info *psta;
 
 	pmlmeinfo = &padapter->mlmeextpriv.mlmext_info;
-	psta = rtw_get_stainfo(&padapter->stapriv, get_bssid(&padapter->mlmepriv));
+	psta = rtw_get_stainfo(&padapter->stapriv,
+			       get_bssid(&padapter->mlmepriv));
 
 	if (enable) {
 		pmlmeinfo->accept_addba_req = false;
diff --git a/drivers/staging/rtl8723bs/core/rtw_cmd.c b/drivers/staging/rtl8723bs/core/rtw_cmd.c
index b932670f5d63a..c2117d103d832 100644
--- a/drivers/staging/rtl8723bs/core/rtw_cmd.c
+++ b/drivers/staging/rtl8723bs/core/rtw_cmd.c
@@ -11,148 +11,159 @@
 #include <linux/delay.h>
 
 static struct _cmd_callback rtw_cmd_callback[] = {
-	{GEN_CMD_CODE(_Read_MACREG), NULL}, /*0*/
-	{GEN_CMD_CODE(_Write_MACREG), NULL},
-	{GEN_CMD_CODE(_Read_BBREG), &rtw_getbbrfreg_cmdrsp_callback},
-	{GEN_CMD_CODE(_Write_BBREG), NULL},
-	{GEN_CMD_CODE(_Read_RFREG), &rtw_getbbrfreg_cmdrsp_callback},
-	{GEN_CMD_CODE(_Write_RFREG), NULL}, /*5*/
-	{GEN_CMD_CODE(_Read_EEPROM), NULL},
-	{GEN_CMD_CODE(_Write_EEPROM), NULL},
-	{GEN_CMD_CODE(_Read_EFUSE), NULL},
-	{GEN_CMD_CODE(_Write_EFUSE), NULL},
-
-	{GEN_CMD_CODE(_Read_CAM),	NULL},	/*10*/
-	{GEN_CMD_CODE(_Write_CAM),	 NULL},
-	{GEN_CMD_CODE(_setBCNITV), NULL},
-	{GEN_CMD_CODE(_setMBIDCFG), NULL},
-	{GEN_CMD_CODE(_JoinBss), &rtw_joinbss_cmd_callback},  /*14*/
-	{GEN_CMD_CODE(_DisConnect), &rtw_disassoc_cmd_callback}, /*15*/
-	{GEN_CMD_CODE(_CreateBss), &rtw_createbss_cmd_callback},
-	{GEN_CMD_CODE(_SetOpMode), NULL},
-	{GEN_CMD_CODE(_SiteSurvey), &rtw_survey_cmd_callback}, /*18*/
-	{GEN_CMD_CODE(_SetAuth), NULL},
-
-	{GEN_CMD_CODE(_SetKey), NULL},	/*20*/
-	{GEN_CMD_CODE(_SetStaKey), &rtw_setstaKey_cmdrsp_callback},
-	{GEN_CMD_CODE(_SetAssocSta), &rtw_setassocsta_cmdrsp_callback},
-	{GEN_CMD_CODE(_DelAssocSta), NULL},
-	{GEN_CMD_CODE(_SetStaPwrState), NULL},
-	{GEN_CMD_CODE(_SetBasicRate), NULL}, /*25*/
-	{GEN_CMD_CODE(_GetBasicRate), NULL},
-	{GEN_CMD_CODE(_SetDataRate), NULL},
-	{GEN_CMD_CODE(_GetDataRate), NULL},
-	{GEN_CMD_CODE(_SetPhyInfo), NULL},
-
-	{GEN_CMD_CODE(_GetPhyInfo), NULL}, /*30*/
-	{GEN_CMD_CODE(_SetPhy), NULL},
-	{GEN_CMD_CODE(_GetPhy), NULL},
-	{GEN_CMD_CODE(_readRssi), NULL},
-	{GEN_CMD_CODE(_readGain), NULL},
-	{GEN_CMD_CODE(_SetAtim), NULL}, /*35*/
-	{GEN_CMD_CODE(_SetPwrMode), NULL},
-	{GEN_CMD_CODE(_JoinbssRpt), NULL},
-	{GEN_CMD_CODE(_SetRaTable), NULL},
-	{GEN_CMD_CODE(_GetRaTable), NULL},
-
-	{GEN_CMD_CODE(_GetCCXReport), NULL}, /*40*/
-	{GEN_CMD_CODE(_GetDTMReport),	NULL},
-	{GEN_CMD_CODE(_GetTXRateStatistics), NULL},
-	{GEN_CMD_CODE(_SetUsbSuspend), NULL},
-	{GEN_CMD_CODE(_SetH2cLbk), NULL},
-	{GEN_CMD_CODE(_AddBAReq), NULL}, /*45*/
-	{GEN_CMD_CODE(_SetChannel), NULL},		/*46*/
-	{GEN_CMD_CODE(_SetTxPower), NULL},
-	{GEN_CMD_CODE(_SwitchAntenna), NULL},
-	{GEN_CMD_CODE(_SetCrystalCap), NULL},
-	{GEN_CMD_CODE(_SetSingleCarrierTx), NULL},	/*50*/
-
-	{GEN_CMD_CODE(_SetSingleToneTx), NULL}, /*51*/
-	{GEN_CMD_CODE(_SetCarrierSuppressionTx), NULL},
-	{GEN_CMD_CODE(_SetContinuousTx), NULL},
-	{GEN_CMD_CODE(_SwitchBandwidth), NULL},		/*54*/
-	{GEN_CMD_CODE(_TX_Beacon), NULL},/*55*/
-
-	{GEN_CMD_CODE(_Set_MLME_EVT), NULL},/*56*/
-	{GEN_CMD_CODE(_Set_Drv_Extra), NULL},/*57*/
-	{GEN_CMD_CODE(_Set_H2C_MSG), NULL},/*58*/
-	{GEN_CMD_CODE(_SetChannelPlan), NULL},/*59*/
-
-	{GEN_CMD_CODE(_SetChannelSwitch), NULL},/*60*/
-	{GEN_CMD_CODE(_TDLS), NULL},/*61*/
-	{GEN_CMD_CODE(_ChkBMCSleepq), NULL}, /*62*/
-
-	{GEN_CMD_CODE(_RunInThreadCMD), NULL},/*63*/
+	{ GEN_CMD_CODE(_Read_MACREG), NULL }, /*0*/
+	{ GEN_CMD_CODE(_Write_MACREG), NULL },
+	{ GEN_CMD_CODE(_Read_BBREG), &rtw_getbbrfreg_cmdrsp_callback },
+	{ GEN_CMD_CODE(_Write_BBREG), NULL },
+	{ GEN_CMD_CODE(_Read_RFREG), &rtw_getbbrfreg_cmdrsp_callback },
+	{ GEN_CMD_CODE(_Write_RFREG), NULL }, /*5*/
+	{ GEN_CMD_CODE(_Read_EEPROM), NULL },
+	{ GEN_CMD_CODE(_Write_EEPROM), NULL },
+	{ GEN_CMD_CODE(_Read_EFUSE), NULL },
+	{ GEN_CMD_CODE(_Write_EFUSE), NULL },
+
+	{ GEN_CMD_CODE(_Read_CAM), NULL }, /*10*/
+	{ GEN_CMD_CODE(_Write_CAM), NULL },
+	{ GEN_CMD_CODE(_setBCNITV), NULL },
+	{ GEN_CMD_CODE(_setMBIDCFG), NULL },
+	{ GEN_CMD_CODE(_JoinBss), &rtw_joinbss_cmd_callback }, /*14*/
+	{ GEN_CMD_CODE(_DisConnect), &rtw_disassoc_cmd_callback }, /*15*/
+	{ GEN_CMD_CODE(_CreateBss), &rtw_createbss_cmd_callback },
+	{ GEN_CMD_CODE(_SetOpMode), NULL },
+	{ GEN_CMD_CODE(_SiteSurvey), &rtw_survey_cmd_callback }, /*18*/
+	{ GEN_CMD_CODE(_SetAuth), NULL },
+
+	{ GEN_CMD_CODE(_SetKey), NULL }, /*20*/
+	{ GEN_CMD_CODE(_SetStaKey), &rtw_setstaKey_cmdrsp_callback },
+	{ GEN_CMD_CODE(_SetAssocSta), &rtw_setassocsta_cmdrsp_callback },
+	{ GEN_CMD_CODE(_DelAssocSta), NULL },
+	{ GEN_CMD_CODE(_SetStaPwrState), NULL },
+	{ GEN_CMD_CODE(_SetBasicRate), NULL }, /*25*/
+	{ GEN_CMD_CODE(_GetBasicRate), NULL },
+	{ GEN_CMD_CODE(_SetDataRate), NULL },
+	{ GEN_CMD_CODE(_GetDataRate), NULL },
+	{ GEN_CMD_CODE(_SetPhyInfo), NULL },
+
+	{ GEN_CMD_CODE(_GetPhyInfo), NULL }, /*30*/
+	{ GEN_CMD_CODE(_SetPhy), NULL },
+	{ GEN_CMD_CODE(_GetPhy), NULL },
+	{ GEN_CMD_CODE(_readRssi), NULL },
+	{ GEN_CMD_CODE(_readGain), NULL },
+	{ GEN_CMD_CODE(_SetAtim), NULL }, /*35*/
+	{ GEN_CMD_CODE(_SetPwrMode), NULL },
+	{ GEN_CMD_CODE(_JoinbssRpt), NULL },
+	{ GEN_CMD_CODE(_SetRaTable), NULL },
+	{ GEN_CMD_CODE(_GetRaTable), NULL },
+
+	{ GEN_CMD_CODE(_GetCCXReport), NULL }, /*40*/
+	{ GEN_CMD_CODE(_GetDTMReport), NULL },
+	{ GEN_CMD_CODE(_GetTXRateStatistics), NULL },
+	{ GEN_CMD_CODE(_SetUsbSuspend), NULL },
+	{ GEN_CMD_CODE(_SetH2cLbk), NULL },
+	{ GEN_CMD_CODE(_AddBAReq), NULL }, /*45*/
+	{ GEN_CMD_CODE(_SetChannel), NULL }, /*46*/
+	{ GEN_CMD_CODE(_SetTxPower), NULL },
+	{ GEN_CMD_CODE(_SwitchAntenna), NULL },
+	{ GEN_CMD_CODE(_SetCrystalCap), NULL },
+	{ GEN_CMD_CODE(_SetSingleCarrierTx), NULL }, /*50*/
+
+	{ GEN_CMD_CODE(_SetSingleToneTx), NULL }, /*51*/
+	{ GEN_CMD_CODE(_SetCarrierSuppressionTx), NULL },
+	{ GEN_CMD_CODE(_SetContinuousTx), NULL },
+	{ GEN_CMD_CODE(_SwitchBandwidth), NULL }, /*54*/
+	{ GEN_CMD_CODE(_TX_Beacon), NULL }, /*55*/
+
+	{ GEN_CMD_CODE(_Set_MLME_EVT), NULL }, /*56*/
+	{ GEN_CMD_CODE(_Set_Drv_Extra), NULL }, /*57*/
+	{ GEN_CMD_CODE(_Set_H2C_MSG), NULL }, /*58*/
+	{ GEN_CMD_CODE(_SetChannelPlan), NULL }, /*59*/
+
+	{ GEN_CMD_CODE(_SetChannelSwitch), NULL }, /*60*/
+	{ GEN_CMD_CODE(_TDLS), NULL }, /*61*/
+	{ GEN_CMD_CODE(_ChkBMCSleepq), NULL }, /*62*/
+
+	{ GEN_CMD_CODE(_RunInThreadCMD), NULL }, /*63*/
 };
 
 static struct cmd_hdl wlancmds[] = {
 	GEN_DRV_CMD_HANDLER(0, NULL) /*0*/
-	GEN_DRV_CMD_HANDLER(0, NULL)
-	GEN_DRV_CMD_HANDLER(0, NULL)
-	GEN_DRV_CMD_HANDLER(0, NULL)
-	GEN_DRV_CMD_HANDLER(0, NULL)
-	GEN_DRV_CMD_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL) /*10*/
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct joinbss_parm), join_cmd_hdl) /*14*/
+	GEN_DRV_CMD_HANDLER(0, NULL) GEN_DRV_CMD_HANDLER(0, NULL)
+		GEN_DRV_CMD_HANDLER(0, NULL) GEN_DRV_CMD_HANDLER(
+			0, NULL) GEN_DRV_CMD_HANDLER(0, NULL)
+			GEN_MLME_EXT_HANDLER(0, NULL) GEN_MLME_EXT_HANDLER(
+				0, NULL) GEN_MLME_EXT_HANDLER(0, NULL)
+				GEN_MLME_EXT_HANDLER(0, NULL)
+					GEN_MLME_EXT_HANDLER(0, NULL) /*10*/
+	GEN_MLME_EXT_HANDLER(0, NULL) GEN_MLME_EXT_HANDLER(0, NULL)
+		GEN_MLME_EXT_HANDLER(0, NULL) GEN_MLME_EXT_HANDLER(
+			sizeof(struct joinbss_parm), join_cmd_hdl) /*14*/
 	GEN_MLME_EXT_HANDLER(sizeof(struct disconnect_parm), disconnect_hdl)
-	GEN_MLME_EXT_HANDLER(sizeof(struct createbss_parm), createbss_hdl)
-	GEN_MLME_EXT_HANDLER(sizeof(struct setopmode_parm), setopmode_hdl)
-	GEN_MLME_EXT_HANDLER(sizeof(struct sitesurvey_parm), sitesurvey_cmd_hdl) /*18*/
+		GEN_MLME_EXT_HANDLER(sizeof(struct createbss_parm),
+				     createbss_hdl)
+			GEN_MLME_EXT_HANDLER(sizeof(struct setopmode_parm),
+					     setopmode_hdl)
+				GEN_MLME_EXT_HANDLER(
+					sizeof(struct sitesurvey_parm),
+					sitesurvey_cmd_hdl) /*18*/
 	GEN_MLME_EXT_HANDLER(sizeof(struct setauth_parm), setauth_hdl)
-	GEN_MLME_EXT_HANDLER(sizeof(struct setkey_parm), setkey_hdl) /*20*/
-	GEN_MLME_EXT_HANDLER(sizeof(struct set_stakey_parm), set_stakey_hdl)
-	GEN_MLME_EXT_HANDLER(sizeof(struct set_assocsta_parm), NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct del_assocsta_parm), NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct setstapwrstate_parm), NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct setbasicrate_parm), NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct getbasicrate_parm), NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct setdatarate_parm), NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct getdatarate_parm), NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct setphyinfo_parm), NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct getphyinfo_parm), NULL)  /*30*/
-	GEN_MLME_EXT_HANDLER(sizeof(struct setphy_parm), NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct getphy_parm), NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)	/*40*/
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct addBaReq_parm), add_ba_hdl)
-	GEN_MLME_EXT_HANDLER(sizeof(struct set_ch_parm), set_ch_hdl) /* 46 */
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL) /*50*/
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(0, NULL)
-	GEN_MLME_EXT_HANDLER(sizeof(struct Tx_Beacon_param), tx_beacon_hdl) /*55*/
+		GEN_MLME_EXT_HANDLER(sizeof(struct setkey_parm),
+				     setkey_hdl) /*20*/
+	GEN_MLME_EXT_HANDLER(sizeof(struct set_stakey_parm), set_stakey_hdl) GEN_MLME_EXT_HANDLER(
+		sizeof(struct set_assocsta_parm),
+		NULL) GEN_MLME_EXT_HANDLER(sizeof(struct del_assocsta_parm),
+					   NULL)
+		GEN_MLME_EXT_HANDLER(
+			sizeof(struct setstapwrstate_parm),
+			NULL) GEN_MLME_EXT_HANDLER(sizeof(struct setbasicrate_parm),
+						   NULL)
+			GEN_MLME_EXT_HANDLER(
+				sizeof(struct getbasicrate_parm),
+				NULL) GEN_MLME_EXT_HANDLER(sizeof(struct setdatarate_parm),
+							   NULL)
+				GEN_MLME_EXT_HANDLER(
+					sizeof(struct getdatarate_parm), NULL)
+					GEN_MLME_EXT_HANDLER(
+						sizeof(struct setphyinfo_parm),
+						NULL)
+						GEN_MLME_EXT_HANDLER(
+							sizeof(struct getphyinfo_parm),
+							NULL) /*30*/
+	GEN_MLME_EXT_HANDLER(
+		sizeof(struct setphy_parm),
+		NULL) GEN_MLME_EXT_HANDLER(sizeof(struct getphy_parm),
+					   NULL) GEN_MLME_EXT_HANDLER(0, NULL)
+		GEN_MLME_EXT_HANDLER(0, NULL) GEN_MLME_EXT_HANDLER(0, NULL)
+			GEN_MLME_EXT_HANDLER(0, NULL) GEN_MLME_EXT_HANDLER(
+				0, NULL) GEN_MLME_EXT_HANDLER(0, NULL)
+				GEN_MLME_EXT_HANDLER(0, NULL)
+					GEN_MLME_EXT_HANDLER(0, NULL) /*40*/
+	GEN_MLME_EXT_HANDLER(0, NULL) GEN_MLME_EXT_HANDLER(0, NULL)
+		GEN_MLME_EXT_HANDLER(0, NULL) GEN_MLME_EXT_HANDLER(0, NULL)
+			GEN_MLME_EXT_HANDLER(sizeof(struct addBaReq_parm),
+					     add_ba_hdl)
+				GEN_MLME_EXT_HANDLER(sizeof(struct set_ch_parm),
+						     set_ch_hdl) /* 46 */
+	GEN_MLME_EXT_HANDLER(0, NULL) GEN_MLME_EXT_HANDLER(0, NULL)
+		GEN_MLME_EXT_HANDLER(0, NULL)
+			GEN_MLME_EXT_HANDLER(0, NULL) /*50*/
+	GEN_MLME_EXT_HANDLER(0, NULL) GEN_MLME_EXT_HANDLER(0, NULL)
+		GEN_MLME_EXT_HANDLER(0, NULL) GEN_MLME_EXT_HANDLER(0, NULL)
+			GEN_MLME_EXT_HANDLER(sizeof(struct Tx_Beacon_param),
+					     tx_beacon_hdl) /*55*/
 
 	GEN_MLME_EXT_HANDLER(0, mlme_evt_hdl) /*56*/
 	GEN_MLME_EXT_HANDLER(0, rtw_drvextra_cmd_hdl) /*57*/
 
 	GEN_MLME_EXT_HANDLER(0, h2c_msg_hdl) /*58*/
-	GEN_MLME_EXT_HANDLER(sizeof(struct SetChannelPlan_param), set_chplan_hdl) /*59*/
+	GEN_MLME_EXT_HANDLER(sizeof(struct SetChannelPlan_param),
+			     set_chplan_hdl) /*59*/
 
-	GEN_MLME_EXT_HANDLER(sizeof(struct SetChannelSwitch_param), set_csa_hdl) /*60*/
+	GEN_MLME_EXT_HANDLER(sizeof(struct SetChannelSwitch_param),
+			     set_csa_hdl) /*60*/
 	GEN_MLME_EXT_HANDLER(sizeof(struct TDLSoption_param), tdls_hdl) /*61*/
 	GEN_MLME_EXT_HANDLER(0, chk_bmc_sleepq_hdl) /*62*/
-	GEN_MLME_EXT_HANDLER(sizeof(struct RunInThread_param), run_in_thread_hdl) /*63*/
+	GEN_MLME_EXT_HANDLER(sizeof(struct RunInThread_param),
+			     run_in_thread_hdl) /*63*/
 };
 
 /*
@@ -160,7 +171,7 @@ static struct cmd_hdl wlancmds[] = {
  * No irqsave is necessary.
  */
 
-int rtw_init_cmd_priv(struct	cmd_priv *pcmdpriv)
+int rtw_init_cmd_priv(struct cmd_priv *pcmdpriv)
 {
 	init_completion(&pcmdpriv->cmd_queue_comp);
 	init_completion(&pcmdpriv->terminate_cmdthread_comp);
@@ -172,11 +183,13 @@ int rtw_init_cmd_priv(struct	cmd_priv *pcmdpriv)
 
 	pcmdpriv->cmd_seq = 1;
 
-	pcmdpriv->cmd_allocated_buf = kzalloc(MAX_CMDSZ + CMDBUFF_ALIGN_SZ, GFP_ATOMIC);
+	pcmdpriv->cmd_allocated_buf =
+		kzalloc(MAX_CMDSZ + CMDBUFF_ALIGN_SZ, GFP_ATOMIC);
 	if (!pcmdpriv->cmd_allocated_buf)
 		return -ENOMEM;
 
-	pcmdpriv->cmd_buf = PTR_ALIGN(pcmdpriv->cmd_allocated_buf, CMDBUFF_ALIGN_SZ);
+	pcmdpriv->cmd_buf =
+		PTR_ALIGN(pcmdpriv->cmd_allocated_buf, CMDBUFF_ALIGN_SZ);
 
 	pcmdpriv->rsp_allocated_buf = kzalloc(MAX_RSPSZ + 4, GFP_ATOMIC);
 	if (!pcmdpriv->rsp_allocated_buf) {
@@ -185,7 +198,7 @@ int rtw_init_cmd_priv(struct	cmd_priv *pcmdpriv)
 	}
 
 	pcmdpriv->rsp_buf = pcmdpriv->rsp_allocated_buf + 4 -
-		((SIZE_PTR)(pcmdpriv->rsp_allocated_buf) & 3);
+			    ((SIZE_PTR)(pcmdpriv->rsp_allocated_buf) & 3);
 
 	pcmdpriv->cmd_issued_cnt = 0;
 	pcmdpriv->cmd_done_cnt = 0;
@@ -212,7 +225,7 @@ int rtw_init_evt_priv(struct evt_priv *pevtpriv)
 	return 0;
 }
 
-void _rtw_free_evt_priv(struct	evt_priv *pevtpriv)
+void _rtw_free_evt_priv(struct evt_priv *pevtpriv)
 {
 	_cancel_workitem_sync(&pevtpriv->c2h_wk);
 	while (pevtpriv->c2h_wk_alive)
@@ -227,7 +240,7 @@ void _rtw_free_evt_priv(struct	evt_priv *pevtpriv)
 	kfree(pevtpriv->c2h_queue);
 }
 
-void _rtw_free_cmd_priv(struct	cmd_priv *pcmdpriv)
+void _rtw_free_cmd_priv(struct cmd_priv *pcmdpriv)
 {
 	if (pcmdpriv) {
 		kfree(pcmdpriv->cmd_allocated_buf);
@@ -266,7 +279,7 @@ static int _rtw_enqueue_cmd(struct __queue *queue, struct cmd_obj *obj)
 	return 0;
 }
 
-struct	cmd_obj	*_rtw_dequeue_cmd(struct __queue *queue)
+struct cmd_obj *_rtw_dequeue_cmd(struct __queue *queue)
 {
 	unsigned long irqL;
 	struct cmd_obj *obj;
@@ -276,7 +289,8 @@ struct	cmd_obj	*_rtw_dequeue_cmd(struct __queue *queue)
 	if (list_empty(&queue->queue)) {
 		obj = NULL;
 	} else {
-		obj = container_of(get_next(&queue->queue), struct cmd_obj, list);
+		obj = container_of(get_next(&queue->queue), struct cmd_obj,
+				   list);
 		list_del_init(&obj->list);
 	}
 
@@ -286,12 +300,12 @@ struct	cmd_obj	*_rtw_dequeue_cmd(struct __queue *queue)
 	return obj;
 }
 
-void rtw_free_evt_priv(struct	evt_priv *pevtpriv)
+void rtw_free_evt_priv(struct evt_priv *pevtpriv)
 {
 	_rtw_free_evt_priv(pevtpriv);
 }
 
-void rtw_free_cmd_priv(struct	cmd_priv *pcmdpriv)
+void rtw_free_cmd_priv(struct cmd_priv *pcmdpriv)
 {
 	_rtw_free_cmd_priv(pcmdpriv);
 }
@@ -299,13 +313,15 @@ void rtw_free_cmd_priv(struct	cmd_priv *pcmdpriv)
 int rtw_cmd_filter(struct cmd_priv *pcmdpriv, struct cmd_obj *cmd_obj);
 int rtw_cmd_filter(struct cmd_priv *pcmdpriv, struct cmd_obj *cmd_obj)
 {
-	u8 bAllow = false; /* set to true to allow enqueuing cmd when hw_init_completed is false */
+	u8 bAllow =
+		false; /* set to true to allow enqueuing cmd when hw_init_completed is false */
 
 	if (cmd_obj->cmdcode == GEN_CMD_CODE(_SetChannelPlan))
 		bAllow = true;
 
 	if ((!pcmdpriv->padapter->hw_init_completed && !bAllow) ||
-	    !atomic_read(&pcmdpriv->cmdthd_running))	/* com_thread not running */
+	    !atomic_read(
+		    &pcmdpriv->cmdthd_running)) /* com_thread not running */
 		return _FAIL;
 
 	return _SUCCESS;
@@ -337,7 +353,7 @@ int rtw_enqueue_cmd(struct cmd_priv *pcmdpriv, struct cmd_obj *cmd_obj)
 	return _FAIL;
 }
 
-struct	cmd_obj	*rtw_dequeue_cmd(struct cmd_priv *pcmdpriv)
+struct cmd_obj *rtw_dequeue_cmd(struct cmd_priv *pcmdpriv)
 {
 	return _rtw_dequeue_cmd(&pcmdpriv->cmd_queue);
 }
@@ -365,7 +381,7 @@ void rtw_stop_cmd_thread(struct adapter *adapter)
 {
 	if (adapter->cmdThread &&
 	    atomic_read(&adapter->cmdpriv.cmdthd_running) &&
-		adapter->cmdpriv.stop_req == 0) {
+	    adapter->cmdpriv.stop_req == 0) {
 		adapter->cmdpriv.stop_req = 1;
 		complete(&adapter->cmdpriv.cmd_queue_comp);
 		wait_for_completion(&adapter->cmdpriv.terminate_cmdthread_comp);
@@ -392,26 +408,29 @@ int rtw_cmd_thread(void *context)
 	complete(&pcmdpriv->terminate_cmdthread_comp);
 
 	while (1) {
-		if (wait_for_completion_interruptible(&pcmdpriv->cmd_queue_comp)) {
-			netdev_dbg(padapter->pnetdev,
-				   FUNC_ADPT_FMT " wait_for_completion_interruptible(&pcmdpriv->cmd_queue_comp) return != 0, break\n",
-				   FUNC_ADPT_ARG(padapter));
+		if (wait_for_completion_interruptible(
+			    &pcmdpriv->cmd_queue_comp)) {
+			netdev_dbg(
+				padapter->pnetdev,
+				FUNC_ADPT_FMT
+				" wait_for_completion_interruptible(&pcmdpriv->cmd_queue_comp) return != 0, break\n",
+				FUNC_ADPT_ARG(padapter));
 			break;
 		}
 
 		if (padapter->bDriverStopped || padapter->bSurpriseRemoved) {
-			netdev_dbg(padapter->pnetdev,
-				   "%s: DriverStopped(%d) SurpriseRemoved(%d) break at line %d\n",
-				   __func__, padapter->bDriverStopped,
-				   padapter->bSurpriseRemoved, __LINE__);
+			netdev_dbg(
+				padapter->pnetdev,
+				"%s: DriverStopped(%d) SurpriseRemoved(%d) break at line %d\n",
+				__func__, padapter->bDriverStopped,
+				padapter->bSurpriseRemoved, __LINE__);
 			break;
 		}
 
 		if (pcmdpriv->stop_req) {
 			netdev_dbg(padapter->pnetdev,
 				   FUNC_ADPT_FMT " stop_req:%u, break\n",
-				   FUNC_ADPT_ARG(padapter),
-				   pcmdpriv->stop_req);
+				   FUNC_ADPT_ARG(padapter), pcmdpriv->stop_req);
 			break;
 		}
 
@@ -423,10 +442,11 @@ int rtw_cmd_thread(void *context)
 
 _next:
 		if (padapter->bDriverStopped || padapter->bSurpriseRemoved) {
-			netdev_dbg(padapter->pnetdev,
-				   "%s: DriverStopped(%d) SurpriseRemoved(%d) break at line %d\n",
-				   __func__, padapter->bDriverStopped,
-				   padapter->bSurpriseRemoved, __LINE__);
+			netdev_dbg(
+				padapter->pnetdev,
+				"%s: DriverStopped(%d) SurpriseRemoved(%d) break at line %d\n",
+				__func__, padapter->bDriverStopped,
+				padapter->bSurpriseRemoved, __LINE__);
 			break;
 		}
 
@@ -464,7 +484,8 @@ int rtw_cmd_thread(void *context)
 
 post_process:
 
-		if (mutex_lock_interruptible(&pcmd->padapter->cmdpriv.sctx_mutex) == 0) {
+		if (mutex_lock_interruptible(
+			    &pcmd->padapter->cmdpriv.sctx_mutex) == 0) {
 			if (pcmd->sctx) {
 				netdev_dbg(padapter->pnetdev,
 					   FUNC_ADPT_FMT " pcmd->sctx\n",
@@ -473,19 +494,24 @@ int rtw_cmd_thread(void *context)
 				if (pcmd->res == H2C_SUCCESS)
 					rtw_sctx_done(&pcmd->sctx);
 				else
-					rtw_sctx_done_err(&pcmd->sctx, RTW_SCTX_DONE_CMD_ERROR);
+					rtw_sctx_done_err(
+						&pcmd->sctx,
+						RTW_SCTX_DONE_CMD_ERROR);
 			}
 			mutex_unlock(&pcmd->padapter->cmdpriv.sctx_mutex);
 		}
 
 		/* call callback function for post-processed */
 		if (pcmd->cmdcode < ARRAY_SIZE(rtw_cmd_callback)) {
-			pcmd_callback = rtw_cmd_callback[pcmd->cmdcode].callback;
+			pcmd_callback =
+				rtw_cmd_callback[pcmd->cmdcode].callback;
 			if (!pcmd_callback) {
 				rtw_free_cmd_obj(pcmd);
 			} else {
 				/* todo: !!! fill rsp_buf to pcmd->rsp if (pcmd->rsp!= NULL) */
-				pcmd_callback(pcmd->padapter, pcmd);/* need consider that free cmd_obj in rtw_cmd_callback */
+				pcmd_callback(
+					pcmd->padapter,
+					pcmd); /* need consider that free cmd_obj in rtw_cmd_callback */
 			}
 		} else {
 			rtw_free_cmd_obj(pcmd);
@@ -523,8 +549,9 @@ int rtw_cmd_thread(void *context)
  *	MUST TAKE CARE THAT BEFORE CALLING THIS FUNC, YOU SHOULD HAVE LOCKED pmlmepriv->lock
  */
 
-u8 rtw_sitesurvey_cmd(struct adapter  *padapter, struct ndis_802_11_ssid *ssid, int ssid_num,
-		      struct rtw_ieee80211_channel *ch, int ch_num)
+u8 rtw_sitesurvey_cmd(struct adapter *padapter, struct ndis_802_11_ssid *ssid,
+		      int ssid_num, struct rtw_ieee80211_channel *ch,
+		      int ch_num)
 {
 	u8 res = _FAIL;
 	struct cmd_obj *ph2c;
@@ -547,7 +574,8 @@ u8 rtw_sitesurvey_cmd(struct adapter  *padapter, struct ndis_802_11_ssid *ssid,
 
 	rtw_free_network_queue(padapter, false);
 
-	init_h2fwcmd_w_parm_no_rsp(ph2c, psurveyPara, GEN_CMD_CODE(_SiteSurvey));
+	init_h2fwcmd_w_parm_no_rsp(ph2c, psurveyPara,
+				   GEN_CMD_CODE(_SiteSurvey));
 
 	/* psurveyPara->bsslimit = 48; */
 	psurveyPara->scan_mode = pmlmepriv->scan_mode;
@@ -558,7 +586,8 @@ u8 rtw_sitesurvey_cmd(struct adapter  *padapter, struct ndis_802_11_ssid *ssid,
 
 		for (i = 0; i < ssid_num && i < RTW_SSID_SCAN_AMOUNT; i++) {
 			if (ssid[i].ssid_length) {
-				memcpy(&psurveyPara->ssid[i], &ssid[i], sizeof(struct ndis_802_11_ssid));
+				memcpy(&psurveyPara->ssid[i], &ssid[i],
+				       sizeof(struct ndis_802_11_ssid));
 				psurveyPara->ssid_num++;
 			}
 		}
@@ -569,8 +598,10 @@ u8 rtw_sitesurvey_cmd(struct adapter  *padapter, struct ndis_802_11_ssid *ssid,
 		int i;
 
 		for (i = 0; i < ch_num && i < RTW_CHANNEL_SCAN_AMOUNT; i++) {
-			if (ch[i].hw_value && !(ch[i].flags & RTW_IEEE80211_CHAN_DISABLED)) {
-				memcpy(&psurveyPara->ch[i], &ch[i], sizeof(struct rtw_ieee80211_channel));
+			if (ch[i].hw_value &&
+			    !(ch[i].flags & RTW_IEEE80211_CHAN_DISABLED)) {
+				memcpy(&psurveyPara->ch[i], &ch[i],
+				       sizeof(struct rtw_ieee80211_channel));
 				psurveyPara->ch_num++;
 			}
 		}
@@ -589,18 +620,20 @@ u8 rtw_sitesurvey_cmd(struct adapter  *padapter, struct ndis_802_11_ssid *ssid,
 	return res;
 }
 
-void rtw_getbbrfreg_cmdrsp_callback(struct adapter *padapter,  struct cmd_obj *pcmd)
+void rtw_getbbrfreg_cmdrsp_callback(struct adapter *padapter,
+				    struct cmd_obj *pcmd)
 {
 	/* rtw_free_cmd_obj(pcmd); */
 	kfree(pcmd->parmbuf);
 	kfree(pcmd);
 }
 
-u8 rtw_createbss_cmd(struct adapter  *padapter)
+u8 rtw_createbss_cmd(struct adapter *padapter)
 {
 	struct cmd_obj *pcmd;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
-	struct wlan_bssid_ex *pdev_network = &padapter->registrypriv.dev_network;
+	struct wlan_bssid_ex *pdev_network =
+		&padapter->registrypriv.dev_network;
 	u8 res = _SUCCESS;
 
 	pcmd = kzalloc_obj(*pcmd, GFP_ATOMIC);
@@ -612,7 +645,8 @@ u8 rtw_createbss_cmd(struct adapter  *padapter)
 	INIT_LIST_HEAD(&pcmd->list);
 	pcmd->cmdcode = _CreateBss_CMD_;
 	pcmd->parmbuf = (unsigned char *)pdev_network;
-	pcmd->cmdsz = get_wlan_bssid_ex_sz((struct wlan_bssid_ex *)pdev_network);
+	pcmd->cmdsz =
+		get_wlan_bssid_ex_sz((struct wlan_bssid_ex *)pdev_network);
 	pcmd->rsp = NULL;
 	pcmd->rspsz = 0;
 
@@ -624,10 +658,10 @@ u8 rtw_createbss_cmd(struct adapter  *padapter)
 	return res;
 }
 
-int rtw_startbss_cmd(struct adapter  *padapter, int flags)
+int rtw_startbss_cmd(struct adapter *padapter, int flags)
 {
 	struct cmd_obj *pcmd;
-	struct cmd_priv  *pcmdpriv = &padapter->cmdpriv;
+	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	struct submit_ctx sctx;
 	int res = _SUCCESS;
 
@@ -645,7 +679,7 @@ int rtw_startbss_cmd(struct adapter  *padapter, int flags)
 		INIT_LIST_HEAD(&pcmd->list);
 		pcmd->cmdcode = GEN_CMD_CODE(_CreateBss);
 		pcmd->parmbuf = NULL;
-		pcmd->cmdsz =  0;
+		pcmd->cmdsz = 0;
 		pcmd->rsp = NULL;
 		pcmd->rspsz = 0;
 
@@ -658,7 +692,8 @@ int rtw_startbss_cmd(struct adapter  *padapter, int flags)
 
 		if (res == _SUCCESS && (flags & RTW_CMDF_WAIT_ACK)) {
 			rtw_sctx_wait(&sctx);
-			if (mutex_lock_interruptible(&pcmdpriv->sctx_mutex) == 0) {
+			if (mutex_lock_interruptible(&pcmdpriv->sctx_mutex) ==
+			    0) {
 				if (sctx.status == RTW_SCTX_SUBMITTED)
 					pcmd->sctx = NULL;
 				mutex_unlock(&pcmdpriv->sctx_mutex);
@@ -670,7 +705,7 @@ int rtw_startbss_cmd(struct adapter  *padapter, int flags)
 	return res;
 }
 
-u8 rtw_joinbss_cmd(struct adapter  *padapter, struct wlan_network *pnetwork)
+u8 rtw_joinbss_cmd(struct adapter *padapter, struct wlan_network *pnetwork)
 {
 	u8 res = _SUCCESS;
 	unsigned int t_len = 0;
@@ -682,7 +717,8 @@ u8 rtw_joinbss_cmd(struct adapter  *padapter, struct wlan_network *pnetwork)
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	struct registry_priv *pregistrypriv = &padapter->registrypriv;
 	struct ht_priv *phtpriv = &pmlmepriv->htpriv;
-	enum ndis_802_11_network_infrastructure ndis_network_mode = pnetwork->network.infrastructure_mode;
+	enum ndis_802_11_network_infrastructure ndis_network_mode =
+		pnetwork->network.infrastructure_mode;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 	u32 tmp_len;
@@ -718,14 +754,18 @@ u8 rtw_joinbss_cmd(struct adapter  *padapter, struct wlan_network *pnetwork)
 
 	memset(psecnetwork, 0, t_len);
 
-	memcpy(psecnetwork, &pnetwork->network, get_wlan_bssid_ex_sz(&pnetwork->network));
+	memcpy(psecnetwork, &pnetwork->network,
+	       get_wlan_bssid_ex_sz(&pnetwork->network));
 
-	psecuritypriv->authenticator_ie[0] = (unsigned char)psecnetwork->ie_length;
+	psecuritypriv->authenticator_ie[0] =
+		(unsigned char)psecnetwork->ie_length;
 
 	if ((psecnetwork->ie_length - 12) < (256 - 1))
-		memcpy(&psecuritypriv->authenticator_ie[1], &psecnetwork->ies[12], psecnetwork->ie_length - 12);
+		memcpy(&psecuritypriv->authenticator_ie[1],
+		       &psecnetwork->ies[12], psecnetwork->ie_length - 12);
 	else
-		memcpy(&psecuritypriv->authenticator_ie[1], &psecnetwork->ies[12], (256 - 1));
+		memcpy(&psecuritypriv->authenticator_ie[1],
+		       &psecnetwork->ies[12], (256 - 1));
 
 	psecnetwork->ie_length = 0;
 	/*  Added by Albert 2009/02/18 */
@@ -734,12 +774,12 @@ u8 rtw_joinbss_cmd(struct adapter  *padapter, struct wlan_network *pnetwork)
 	/*  the driver just has the bssid information for PMKIDList searching. */
 
 	if (!pmlmepriv->assoc_by_bssid)
-		memcpy(&pmlmepriv->assoc_bssid[0], &pnetwork->network.mac_address[0], ETH_ALEN);
+		memcpy(&pmlmepriv->assoc_bssid[0],
+		       &pnetwork->network.mac_address[0], ETH_ALEN);
 
-	psecnetwork->ie_length = rtw_restruct_sec_ie(padapter,
-						     &pnetwork->network.ies[0],
-						     &psecnetwork->ies[0],
-						     pnetwork->network.ie_length);
+	psecnetwork->ie_length = rtw_restruct_sec_ie(
+		padapter, &pnetwork->network.ies[0], &psecnetwork->ies[0],
+		pnetwork->network.ie_length);
 
 	pqospriv->qos_option = 0;
 
@@ -752,14 +792,17 @@ u8 rtw_joinbss_cmd(struct adapter  *padapter, struct wlan_network *pnetwork)
 
 		if (psecnetwork->ie_length != tmp_len) {
 			psecnetwork->ie_length = tmp_len;
-			pqospriv->qos_option = 1; /* There is WMM IE in this corresp. beacon */
+			pqospriv->qos_option =
+				1; /* There is WMM IE in this corresp. beacon */
 		} else {
-			pqospriv->qos_option = 0;/* There is no WMM IE in this corresp. beacon */
+			pqospriv->qos_option =
+				0; /* There is no WMM IE in this corresp. beacon */
 		}
 	}
 
 	phtpriv->ht_option = false;
-	ptmp = rtw_get_ie(&pnetwork->network.ies[12], WLAN_EID_HT_CAPABILITY, &tmp_len, pnetwork->network.ie_length - 12);
+	ptmp = rtw_get_ie(&pnetwork->network.ies[12], WLAN_EID_HT_CAPABILITY,
+			  &tmp_len, pnetwork->network.ie_length - 12);
 	if (pregistrypriv->ht_enable && ptmp && tmp_len > 0) {
 		/* Added by Albert 2010/06/23 */
 		/* For the WEP mode, we will use the bg mode to do the connection to avoid some IOT issue. */
@@ -769,23 +812,30 @@ u8 rtw_joinbss_cmd(struct adapter  *padapter, struct wlan_network *pnetwork)
 		    (padapter->securitypriv.dot11PrivacyAlgrthm != _TKIP_)) {
 			rtw_ht_use_default_setting(padapter);
 
-			rtw_build_wmm_ie_ht(padapter, &psecnetwork->ies[12], &psecnetwork->ie_length);
+			rtw_build_wmm_ie_ht(padapter, &psecnetwork->ies[12],
+					    &psecnetwork->ie_length);
 
 			/* rtw_restructure_ht_ie */
-			rtw_restructure_ht_ie(padapter, &pnetwork->network.ies[12], &psecnetwork->ies[0],
-					      pnetwork->network.ie_length - 12, &psecnetwork->ie_length,
-					      pnetwork->network.configuration.ds_config);
+			rtw_restructure_ht_ie(
+				padapter, &pnetwork->network.ies[12],
+				&psecnetwork->ies[0],
+				pnetwork->network.ie_length - 12,
+				&psecnetwork->ie_length,
+				pnetwork->network.configuration.ds_config);
 		}
 	}
 
-	rtw_append_exented_cap(padapter, &psecnetwork->ies[0], &psecnetwork->ie_length);
+	rtw_append_exented_cap(padapter, &psecnetwork->ies[0],
+			       &psecnetwork->ie_length);
 
-	pmlmeinfo->assoc_AP_vendor = check_assoc_AP(pnetwork->network.ies, pnetwork->network.ie_length);
+	pmlmeinfo->assoc_AP_vendor = check_assoc_AP(
+		pnetwork->network.ies, pnetwork->network.ie_length);
 
-	pcmd->cmdsz = get_wlan_bssid_ex_sz(psecnetwork);/* get cmdsz before endian conversion */
+	pcmd->cmdsz = get_wlan_bssid_ex_sz(
+		psecnetwork); /* get cmdsz before endian conversion */
 
 	INIT_LIST_HEAD(&pcmd->list);
-	pcmd->cmdcode = _JoinBss_CMD_;/* GEN_CMD_CODE(_JoinBss) */
+	pcmd->cmdcode = _JoinBss_CMD_; /* GEN_CMD_CODE(_JoinBss) */
 	pcmd->parmbuf = (unsigned char *)psecnetwork;
 	pcmd->rsp = NULL;
 	pcmd->rspsz = 0;
@@ -796,7 +846,8 @@ u8 rtw_joinbss_cmd(struct adapter  *padapter, struct wlan_network *pnetwork)
 	return res;
 }
 
-u8 rtw_disassoc_cmd(struct adapter *padapter, u32 deauth_timeout_ms, bool enqueue) /* for sta_mode */
+u8 rtw_disassoc_cmd(struct adapter *padapter, u32 deauth_timeout_ms,
+		    bool enqueue) /* for sta_mode */
 {
 	struct cmd_obj *cmdobj = NULL;
 	struct disconnect_parm *param = NULL;
@@ -832,12 +883,14 @@ u8 rtw_disassoc_cmd(struct adapter *padapter, u32 deauth_timeout_ms, bool enqueu
 	return res;
 }
 
-u8 rtw_setopmode_cmd(struct adapter  *padapter, enum ndis_802_11_network_infrastructure networktype, bool enqueue)
+u8 rtw_setopmode_cmd(struct adapter *padapter,
+		     enum ndis_802_11_network_infrastructure networktype,
+		     bool enqueue)
 {
-	struct	cmd_obj *ph2c;
-	struct	setopmode_parm *psetop;
+	struct cmd_obj *ph2c;
+	struct setopmode_parm *psetop;
 
-	struct	cmd_priv   *pcmdpriv = &padapter->cmdpriv;
+	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	u8 res = _SUCCESS;
 
 	psetop = kzalloc_obj(*psetop);
@@ -865,7 +918,8 @@ u8 rtw_setopmode_cmd(struct adapter  *padapter, enum ndis_802_11_network_infrast
 	return res;
 }
 
-u8 rtw_setstakey_cmd(struct adapter *padapter, struct sta_info *sta, u8 unicast_key, bool enqueue)
+u8 rtw_setstakey_cmd(struct adapter *padapter, struct sta_info *sta,
+		     u8 unicast_key, bool enqueue)
 {
 	struct cmd_obj *ph2c;
 	struct set_stakey_parm *psetstakey_para;
@@ -884,14 +938,21 @@ u8 rtw_setstakey_cmd(struct adapter *padapter, struct sta_info *sta, u8 unicast_
 	memcpy(psetstakey_para->addr, sta->hwaddr, ETH_ALEN);
 
 	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE))
-		psetstakey_para->algorithm = (unsigned char)psecuritypriv->dot11PrivacyAlgrthm;
+		psetstakey_para->algorithm =
+			(unsigned char)psecuritypriv->dot11PrivacyAlgrthm;
 	else
-		GET_ENCRY_ALGO(psecuritypriv, sta, psetstakey_para->algorithm, false);
+		GET_ENCRY_ALGO(psecuritypriv, sta, psetstakey_para->algorithm,
+			       false);
 
 	if (unicast_key)
 		memcpy(&psetstakey_para->key, &sta->dot118021x_UncstKey, 16);
 	else
-		memcpy(&psetstakey_para->key, &psecuritypriv->dot118021XGrpKey[psecuritypriv->dot118021XGrpKeyid].skey, 16);
+		memcpy(&psetstakey_para->key,
+		       &psecuritypriv
+				->dot118021XGrpKey[psecuritypriv
+							   ->dot118021XGrpKeyid]
+				.skey,
+		       16);
 
 	/* jeff: set this because at least sw key is ready */
 	padapter->securitypriv.busetkipkey = true;
@@ -912,7 +973,8 @@ u8 rtw_setstakey_cmd(struct adapter *padapter, struct sta_info *sta, u8 unicast_
 			goto exit;
 		}
 
-		init_h2fwcmd_w_parm_no_rsp(ph2c, psetstakey_para, _SetStaKey_CMD_);
+		init_h2fwcmd_w_parm_no_rsp(ph2c, psetstakey_para,
+					   _SetStaKey_CMD_);
 		ph2c->rsp = (u8 *)psetstakey_rsp;
 		ph2c->rspsz = sizeof(struct set_stakey_rsp);
 		res = rtw_enqueue_cmd(pcmdpriv, ph2c);
@@ -924,7 +986,8 @@ u8 rtw_setstakey_cmd(struct adapter *padapter, struct sta_info *sta, u8 unicast_
 	return res;
 }
 
-u8 rtw_clearstakey_cmd(struct adapter *padapter, struct sta_info *sta, u8 enqueue)
+u8 rtw_clearstakey_cmd(struct adapter *padapter, struct sta_info *sta,
+		       u8 enqueue)
 {
 	struct cmd_obj *ph2c;
 	struct set_stakey_parm *psetstakey_para;
@@ -934,7 +997,8 @@ u8 rtw_clearstakey_cmd(struct adapter *padapter, struct sta_info *sta, u8 enqueu
 	u8 res = _SUCCESS;
 
 	if (!enqueue) {
-		while ((cam_id = rtw_camid_search(padapter, sta->hwaddr, -1)) >= 0) {
+		while ((cam_id = rtw_camid_search(padapter, sta->hwaddr, -1)) >=
+		       0) {
 			netdev_dbg(padapter->pnetdev,
 				   "clear key for addr:%pM, camid:%d\n",
 				   sta->hwaddr, cam_id);
@@ -963,7 +1027,8 @@ u8 rtw_clearstakey_cmd(struct adapter *padapter, struct sta_info *sta, u8 enqueu
 			goto exit;
 		}
 
-		init_h2fwcmd_w_parm_no_rsp(ph2c, psetstakey_para, _SetStaKey_CMD_);
+		init_h2fwcmd_w_parm_no_rsp(ph2c, psetstakey_para,
+					   _SetStaKey_CMD_);
 		ph2c->rsp = (u8 *)psetstakey_rsp;
 		ph2c->rspsz = sizeof(struct set_stakey_rsp);
 
@@ -1001,7 +1066,8 @@ u8 rtw_addbareq_cmd(struct adapter *padapter, u8 tid, u8 *addr)
 	paddbareq_parm->tid = tid;
 	memcpy(paddbareq_parm->addr, addr, ETH_ALEN);
 
-	init_h2fwcmd_w_parm_no_rsp(ph2c, paddbareq_parm, GEN_CMD_CODE(_AddBAReq));
+	init_h2fwcmd_w_parm_no_rsp(ph2c, paddbareq_parm,
+				   GEN_CMD_CODE(_AddBAReq));
 
 	/* rtw_enqueue_cmd(pcmdpriv, ph2c); */
 	res = rtw_enqueue_cmd(pcmdpriv, ph2c);
@@ -1014,7 +1080,7 @@ u8 rtw_addbareq_cmd(struct adapter *padapter, u8 tid, u8 *addr)
 u8 rtw_reset_securitypriv_cmd(struct adapter *padapter)
 {
 	struct cmd_obj *ph2c;
-	struct drvextra_cmd_parm  *pdrvextra_cmd_parm;
+	struct drvextra_cmd_parm *pdrvextra_cmd_parm;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	u8 res = _SUCCESS;
 
@@ -1036,7 +1102,8 @@ u8 rtw_reset_securitypriv_cmd(struct adapter *padapter)
 	pdrvextra_cmd_parm->size = 0;
 	pdrvextra_cmd_parm->pbuf = NULL;
 
-	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm, GEN_CMD_CODE(_Set_Drv_Extra));
+	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm,
+				   GEN_CMD_CODE(_Set_Drv_Extra));
 
 	/* rtw_enqueue_cmd(pcmdpriv, ph2c); */
 	res = rtw_enqueue_cmd(pcmdpriv, ph2c);
@@ -1047,7 +1114,7 @@ u8 rtw_reset_securitypriv_cmd(struct adapter *padapter)
 u8 rtw_free_assoc_resources_cmd(struct adapter *padapter)
 {
 	struct cmd_obj *ph2c;
-	struct drvextra_cmd_parm  *pdrvextra_cmd_parm;
+	struct drvextra_cmd_parm *pdrvextra_cmd_parm;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	u8 res = _SUCCESS;
 
@@ -1069,7 +1136,8 @@ u8 rtw_free_assoc_resources_cmd(struct adapter *padapter)
 	pdrvextra_cmd_parm->size = 0;
 	pdrvextra_cmd_parm->pbuf = NULL;
 
-	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm, GEN_CMD_CODE(_Set_Drv_Extra));
+	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm,
+				   GEN_CMD_CODE(_Set_Drv_Extra));
 
 	/* rtw_enqueue_cmd(pcmdpriv, ph2c); */
 	res = rtw_enqueue_cmd(pcmdpriv, ph2c);
@@ -1080,7 +1148,7 @@ u8 rtw_free_assoc_resources_cmd(struct adapter *padapter)
 u8 rtw_dynamic_chk_wk_cmd(struct adapter *padapter)
 {
 	struct cmd_obj *ph2c;
-	struct drvextra_cmd_parm  *pdrvextra_cmd_parm;
+	struct drvextra_cmd_parm *pdrvextra_cmd_parm;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	u8 res = _SUCCESS;
 
@@ -1102,7 +1170,8 @@ u8 rtw_dynamic_chk_wk_cmd(struct adapter *padapter)
 	pdrvextra_cmd_parm->type = 0;
 	pdrvextra_cmd_parm->size = 0;
 	pdrvextra_cmd_parm->pbuf = NULL;
-	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm, GEN_CMD_CODE(_Set_Drv_Extra));
+	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm,
+				   GEN_CMD_CODE(_Set_Drv_Extra));
 
 	/* rtw_enqueue_cmd(pcmdpriv, ph2c); */
 	res = rtw_enqueue_cmd(pcmdpriv, ph2c);
@@ -1125,13 +1194,23 @@ static void collect_traffic_statistics(struct adapter *padapter)
 	pdvobjpriv->traffic_stat.rx_drop = padapter->recvpriv.rx_drop;
 
 	/*  Calculate throughput in last interval */
-	pdvobjpriv->traffic_stat.cur_tx_bytes = pdvobjpriv->traffic_stat.tx_bytes - pdvobjpriv->traffic_stat.last_tx_bytes;
-	pdvobjpriv->traffic_stat.cur_rx_bytes = pdvobjpriv->traffic_stat.rx_bytes - pdvobjpriv->traffic_stat.last_rx_bytes;
-	pdvobjpriv->traffic_stat.last_tx_bytes = pdvobjpriv->traffic_stat.tx_bytes;
-	pdvobjpriv->traffic_stat.last_rx_bytes = pdvobjpriv->traffic_stat.rx_bytes;
-
-	pdvobjpriv->traffic_stat.cur_tx_tp = (u32)(pdvobjpriv->traffic_stat.cur_tx_bytes * 8 / 2 / 1024 / 1024);
-	pdvobjpriv->traffic_stat.cur_rx_tp = (u32)(pdvobjpriv->traffic_stat.cur_rx_bytes * 8 / 2 / 1024 / 1024);
+	pdvobjpriv->traffic_stat.cur_tx_bytes =
+		pdvobjpriv->traffic_stat.tx_bytes -
+		pdvobjpriv->traffic_stat.last_tx_bytes;
+	pdvobjpriv->traffic_stat.cur_rx_bytes =
+		pdvobjpriv->traffic_stat.rx_bytes -
+		pdvobjpriv->traffic_stat.last_rx_bytes;
+	pdvobjpriv->traffic_stat.last_tx_bytes =
+		pdvobjpriv->traffic_stat.tx_bytes;
+	pdvobjpriv->traffic_stat.last_rx_bytes =
+		pdvobjpriv->traffic_stat.rx_bytes;
+
+	pdvobjpriv->traffic_stat.cur_tx_tp =
+		(u32)(pdvobjpriv->traffic_stat.cur_tx_bytes * 8 / 2 / 1024 /
+		      1024);
+	pdvobjpriv->traffic_stat.cur_rx_tp =
+		(u32)(pdvobjpriv->traffic_stat.cur_rx_bytes * 8 / 2 / 1024 /
+		      1024);
 }
 
 bool traffic_status_watchdog(struct adapter *padapter, bool from_timer)
@@ -1154,13 +1233,15 @@ bool traffic_status_watchdog(struct adapter *padapter, bool from_timer)
 	/*  Determine if our traffic is busy now */
 	/*  */
 	if ((check_fwstate(pmlmepriv, _FW_LINKED))
-		/*&& !MgntInitAdapterInProgress(pMgntInfo)*/) {
+	    /*&& !MgntInitAdapterInProgress(pMgntInfo)*/) {
 		/*  if we raise busy_traffic in last watchdog, using lower threshold. */
 		if (pmlmepriv->link_detect_info.busy_traffic)
 			busy_threshold = busy_threshold_low;
 
-		if (pmlmepriv->link_detect_info.num_rx_ok_in_period > busy_threshold ||
-		    pmlmepriv->link_detect_info.num_tx_ok_in_period > busy_threshold) {
+		if (pmlmepriv->link_detect_info.num_rx_ok_in_period >
+			    busy_threshold ||
+		    pmlmepriv->link_detect_info.num_tx_ok_in_period >
+			    busy_threshold) {
 			busy_traffic = true;
 
 			if (pmlmepriv->link_detect_info.num_rx_ok_in_period >
@@ -1185,25 +1266,35 @@ bool traffic_status_watchdog(struct adapter *padapter, bool from_timer)
 		/*  check traffic for  powersaving. */
 		if (((pmlmepriv->link_detect_info.num_rx_unicast_ok_in_period +
 		      pmlmepriv->link_detect_info.num_tx_ok_in_period) > 8) ||
-		    (pmlmepriv->link_detect_info.num_rx_unicast_ok_in_period > 2)) {
+		    (pmlmepriv->link_detect_info.num_rx_unicast_ok_in_period >
+		     2)) {
 			should_enter_ps = false;
 
 			if (busy_traffic) {
-				if (pmlmepriv->link_detect_info.traffic_transition_count <= 4)
-					pmlmepriv->link_detect_info.traffic_transition_count = 4;
-
-				pmlmepriv->link_detect_info.traffic_transition_count++;
-
-				if (pmlmepriv->link_detect_info.traffic_transition_count > 30)
-					pmlmepriv->link_detect_info.traffic_transition_count = 30;
+				if (pmlmepriv->link_detect_info
+					    .traffic_transition_count <= 4)
+					pmlmepriv->link_detect_info
+						.traffic_transition_count = 4;
+
+				pmlmepriv->link_detect_info
+					.traffic_transition_count++;
+
+				if (pmlmepriv->link_detect_info
+					    .traffic_transition_count > 30)
+					pmlmepriv->link_detect_info
+						.traffic_transition_count = 30;
 			}
 		} else {
-			if (pmlmepriv->link_detect_info.traffic_transition_count >= 2)
-				pmlmepriv->link_detect_info.traffic_transition_count -= 2;
+			if (pmlmepriv->link_detect_info
+				    .traffic_transition_count >= 2)
+				pmlmepriv->link_detect_info
+					.traffic_transition_count -= 2;
 			else
-				pmlmepriv->link_detect_info.traffic_transition_count = 0;
+				pmlmepriv->link_detect_info
+					.traffic_transition_count = 0;
 
-			if (pmlmepriv->link_detect_info.traffic_transition_count == 0)
+			if (pmlmepriv->link_detect_info
+				    .traffic_transition_count == 0)
 				should_enter_ps = true;
 		}
 
@@ -1215,7 +1306,8 @@ bool traffic_status_watchdog(struct adapter *padapter, bool from_timer)
 			if (!from_timer)
 				LPS_Leave(padapter, "TRAFFIC_BUSY");
 			else
-				rtw_lps_ctrl_wk_cmd(padapter, LPS_CTRL_TRAFFIC_BUSY, 1);
+				rtw_lps_ctrl_wk_cmd(padapter,
+						    LPS_CTRL_TRAFFIC_BUSY, 1);
 		}
 	} else {
 		struct dvobj_priv *dvobj = adapter_to_dvobj(padapter);
@@ -1235,8 +1327,10 @@ bool traffic_status_watchdog(struct adapter *padapter, bool from_timer)
 	pmlmepriv->link_detect_info.tx_busy_traffic = tx_busy_traffic;
 	pmlmepriv->link_detect_info.rx_busy_traffic = rx_busy_traffic;
 	pmlmepriv->link_detect_info.higher_busy_traffic = higher_busy_traffic;
-	pmlmepriv->link_detect_info.higher_busy_rx_traffic = higher_busy_rx_traffic;
-	pmlmepriv->link_detect_info.higher_busy_tx_traffic = higher_busy_tx_traffic;
+	pmlmepriv->link_detect_info.higher_busy_rx_traffic =
+		higher_busy_rx_traffic;
+	pmlmepriv->link_detect_info.higher_busy_tx_traffic =
+		higher_busy_tx_traffic;
 
 	return should_enter_ps;
 }
@@ -1295,17 +1389,19 @@ void lps_ctrl_wk_hdl(struct adapter *padapter, u8 lps_ctrl_type)
 		LPS_Leave(padapter, "LPS_CTRL_JOINBSS");
 		break;
 	case LPS_CTRL_CONNECT:
-		mstatus = 1;/* connect */
+		mstatus = 1; /* connect */
 		/*  Reset LPS Setting */
 		pwrpriv->LpsIdleCount = 0;
-		rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_JOINBSSRPT, (u8 *)(&mstatus));
+		rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_JOINBSSRPT,
+				  (u8 *)(&mstatus));
 		rtw_btcoex_media_status_notify(padapter, mstatus);
 		break;
 	case LPS_CTRL_DISCONNECT:
-		mstatus = 0;/* disconnect */
+		mstatus = 0; /* disconnect */
 		rtw_btcoex_media_status_notify(padapter, mstatus);
 		LPS_Leave(padapter, "LPS_CTRL_DISCONNECT");
-		rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_JOINBSSRPT, (u8 *)(&mstatus));
+		rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_JOINBSSRPT,
+				  (u8 *)(&mstatus));
 		break;
 	case LPS_CTRL_SPECIAL_PACKET:
 		pwrpriv->delay_lps_last_time_stamp = jiffies;
@@ -1325,7 +1421,7 @@ void lps_ctrl_wk_hdl(struct adapter *padapter, u8 lps_ctrl_type)
 
 u8 rtw_lps_ctrl_wk_cmd(struct adapter *padapter, u8 lps_ctrl_type, u8 enqueue)
 {
-	struct cmd_obj	*ph2c;
+	struct cmd_obj *ph2c;
 	struct drvextra_cmd_parm *pdrvextra_cmd_parm;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	/* struct pwrctrl_priv *pwrctrlpriv = adapter_to_pwrctl(padapter); */
@@ -1338,8 +1434,8 @@ u8 rtw_lps_ctrl_wk_cmd(struct adapter *padapter, u8 lps_ctrl_type, u8 enqueue)
 			goto exit;
 		}
 
-		pdrvextra_cmd_parm = kzalloc_obj(*pdrvextra_cmd_parm,
-						 GFP_ATOMIC);
+		pdrvextra_cmd_parm =
+			kzalloc_obj(*pdrvextra_cmd_parm, GFP_ATOMIC);
 		if (!pdrvextra_cmd_parm) {
 			kfree(ph2c);
 			res = _FAIL;
@@ -1351,7 +1447,8 @@ u8 rtw_lps_ctrl_wk_cmd(struct adapter *padapter, u8 lps_ctrl_type, u8 enqueue)
 		pdrvextra_cmd_parm->size = 0;
 		pdrvextra_cmd_parm->pbuf = NULL;
 
-		init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm, GEN_CMD_CODE(_Set_Drv_Extra));
+		init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm,
+					   GEN_CMD_CODE(_Set_Drv_Extra));
 
 		res = rtw_enqueue_cmd(pcmdpriv, ph2c);
 	} else {
@@ -1369,8 +1466,8 @@ static void rtw_dm_in_lps_hdl(struct adapter *padapter)
 
 u8 rtw_dm_in_lps_wk_cmd(struct adapter *padapter)
 {
-	struct cmd_obj	*ph2c;
-	struct drvextra_cmd_parm	*pdrvextra_cmd_parm;
+	struct cmd_obj *ph2c;
+	struct drvextra_cmd_parm *pdrvextra_cmd_parm;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	u8 res = _SUCCESS;
 
@@ -1392,7 +1489,8 @@ u8 rtw_dm_in_lps_wk_cmd(struct adapter *padapter)
 	pdrvextra_cmd_parm->size = 0;
 	pdrvextra_cmd_parm->pbuf = NULL;
 
-	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm, GEN_CMD_CODE(_Set_Drv_Extra));
+	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm,
+				   GEN_CMD_CODE(_Set_Drv_Extra));
 
 	res = rtw_enqueue_cmd(pcmdpriv, ph2c);
 
@@ -1414,10 +1512,12 @@ static void rtw_lps_change_dtim_hdl(struct adapter *padapter, u8 dtim)
 
 	pwrpriv->dtim = dtim;
 
-	if (pwrpriv->fw_current_in_ps_mode && (pwrpriv->pwr_mode > PS_MODE_ACTIVE)) {
+	if (pwrpriv->fw_current_in_ps_mode &&
+	    (pwrpriv->pwr_mode > PS_MODE_ACTIVE)) {
 		u8 ps_mode = pwrpriv->pwr_mode;
 
-		rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_PWRMODE, (u8 *)(&ps_mode));
+		rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_PWRMODE,
+				  (u8 *)(&ps_mode));
 	}
 
 	mutex_unlock(&pwrpriv->lock);
@@ -1431,8 +1531,8 @@ static void rtw_dm_ra_mask_hdl(struct adapter *padapter, struct sta_info *psta)
 
 u8 rtw_dm_ra_mask_wk_cmd(struct adapter *padapter, u8 *psta)
 {
-	struct cmd_obj	*ph2c;
-	struct drvextra_cmd_parm	*pdrvextra_cmd_parm;
+	struct cmd_obj *ph2c;
+	struct drvextra_cmd_parm *pdrvextra_cmd_parm;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	u8 res = _SUCCESS;
 
@@ -1454,7 +1554,8 @@ u8 rtw_dm_ra_mask_wk_cmd(struct adapter *padapter, u8 *psta)
 	pdrvextra_cmd_parm->size = 0;
 	pdrvextra_cmd_parm->pbuf = psta;
 
-	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm, GEN_CMD_CODE(_Set_Drv_Extra));
+	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm,
+				   GEN_CMD_CODE(_Set_Drv_Extra));
 
 	res = rtw_enqueue_cmd(pcmdpriv, ph2c);
 
@@ -1465,8 +1566,8 @@ u8 rtw_dm_ra_mask_wk_cmd(struct adapter *padapter, u8 *psta)
 
 u8 rtw_ps_cmd(struct adapter *padapter)
 {
-	struct cmd_obj		*ppscmd;
-	struct drvextra_cmd_parm	*pdrvextra_cmd_parm;
+	struct cmd_obj *ppscmd;
+	struct drvextra_cmd_parm *pdrvextra_cmd_parm;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	u8 res = _SUCCESS;
 
@@ -1487,7 +1588,8 @@ u8 rtw_ps_cmd(struct adapter *padapter)
 	pdrvextra_cmd_parm->type = 0;
 	pdrvextra_cmd_parm->size = 0;
 	pdrvextra_cmd_parm->pbuf = NULL;
-	init_h2fwcmd_w_parm_no_rsp(ppscmd, pdrvextra_cmd_parm, GEN_CMD_CODE(_Set_Drv_Extra));
+	init_h2fwcmd_w_parm_no_rsp(ppscmd, pdrvextra_cmd_parm,
+				   GEN_CMD_CODE(_Set_Drv_Extra));
 
 	res = rtw_enqueue_cmd(pcmdpriv, ppscmd);
 
@@ -1526,8 +1628,9 @@ static void rtw_chk_hi_queue_hdl(struct adapter *padapter)
 			pstapriv->sta_dz_bitmap &= ~BIT(0);
 
 			if (update_tim)
-				update_beacon(padapter, WLAN_EID_TIM, NULL, true);
-		} else {/* re check again */
+				update_beacon(padapter, WLAN_EID_TIM, NULL,
+					      true);
+		} else { /* re check again */
 			rtw_chk_hi_queue_cmd(padapter);
 		}
 	}
@@ -1535,8 +1638,8 @@ static void rtw_chk_hi_queue_hdl(struct adapter *padapter)
 
 u8 rtw_chk_hi_queue_cmd(struct adapter *padapter)
 {
-	struct cmd_obj	*ph2c;
-	struct drvextra_cmd_parm	*pdrvextra_cmd_parm;
+	struct cmd_obj *ph2c;
+	struct drvextra_cmd_parm *pdrvextra_cmd_parm;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	u8 res = _SUCCESS;
 
@@ -1558,7 +1661,8 @@ u8 rtw_chk_hi_queue_cmd(struct adapter *padapter)
 	pdrvextra_cmd_parm->size = 0;
 	pdrvextra_cmd_parm->pbuf = NULL;
 
-	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm, GEN_CMD_CODE(_Set_Drv_Extra));
+	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm,
+				   GEN_CMD_CODE(_Set_Drv_Extra));
 
 	res = rtw_enqueue_cmd(pcmdpriv, ph2c);
 
@@ -1570,31 +1674,31 @@ struct btinfo {
 	u8 cid;
 	u8 len;
 
-	u8 bConnection:1;
-	u8 bSCOeSCO:1;
-	u8 bInQPage:1;
-	u8 bACLBusy:1;
-	u8 bSCOBusy:1;
-	u8 bHID:1;
-	u8 bA2DP:1;
-	u8 bFTP:1;
-
-	u8 retry_cnt:4;
-	u8 rsvd_34:1;
-	u8 rsvd_35:1;
-	u8 rsvd_36:1;
-	u8 rsvd_37:1;
+	u8 bConnection : 1;
+	u8 bSCOeSCO : 1;
+	u8 bInQPage : 1;
+	u8 bACLBusy : 1;
+	u8 bSCOBusy : 1;
+	u8 bHID : 1;
+	u8 bA2DP : 1;
+	u8 bFTP : 1;
+
+	u8 retry_cnt : 4;
+	u8 rsvd_34 : 1;
+	u8 rsvd_35 : 1;
+	u8 rsvd_36 : 1;
+	u8 rsvd_37 : 1;
 
 	u8 rssi;
 
-	u8 rsvd_50:1;
-	u8 rsvd_51:1;
-	u8 rsvd_52:1;
-	u8 rsvd_53:1;
-	u8 rsvd_54:1;
-	u8 rsvd_55:1;
-	u8 eSCO_SCO:1;
-	u8 Master_Slave:1;
+	u8 rsvd_50 : 1;
+	u8 rsvd_51 : 1;
+	u8 rsvd_52 : 1;
+	u8 rsvd_53 : 1;
+	u8 rsvd_54 : 1;
+	u8 rsvd_55 : 1;
+	u8 eSCO_SCO : 1;
+	u8 Master_Slave : 1;
 
 	u8 rsvd_6;
 	u8 rsvd_7;
@@ -1602,8 +1706,8 @@ struct btinfo {
 
 static void rtw_btinfo_hdl(struct adapter *adapter, u8 *buf, u16 buf_len)
 {
-	#define BTINFO_WIFI_FETCH 0x23
-	#define BTINFO_BT_AUTO_RPT 0x27
+#define BTINFO_WIFI_FETCH 0x23
+#define BTINFO_BT_AUTO_RPT 0x27
 	struct btinfo *info = (struct btinfo *)buf;
 	u8 cmd_idx;
 	u8 len;
@@ -1650,7 +1754,8 @@ u8 rtw_c2h_packet_wk_cmd(struct adapter *padapter, u8 *pbuf, u16 length)
 	pdrvextra_cmd_parm->size = length;
 	pdrvextra_cmd_parm->pbuf = pbuf;
 
-	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm, GEN_CMD_CODE(_Set_Drv_Extra));
+	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm,
+				   GEN_CMD_CODE(_Set_Drv_Extra));
 
 	res = rtw_enqueue_cmd(pcmdpriv, ph2c);
 
@@ -1682,10 +1787,11 @@ u8 rtw_c2h_wk_cmd(struct adapter *padapter, u8 *c2h_evt)
 
 	pdrvextra_cmd_parm->ec_id = C2H_WK_CID;
 	pdrvextra_cmd_parm->type = 0;
-	pdrvextra_cmd_parm->size =  c2h_evt ? 16 : 0;
+	pdrvextra_cmd_parm->size = c2h_evt ? 16 : 0;
 	pdrvextra_cmd_parm->pbuf = c2h_evt;
 
-	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm, GEN_CMD_CODE(_Set_Drv_Extra));
+	init_h2fwcmd_w_parm_no_rsp(ph2c, pdrvextra_cmd_parm,
+				   GEN_CMD_CODE(_Set_Drv_Extra));
 
 	res = rtw_enqueue_cmd(pcmdpriv, ph2c);
 
@@ -1697,7 +1803,8 @@ u8 rtw_c2h_wk_cmd(struct adapter *padapter, u8 *c2h_evt)
 static void c2h_wk_callback(struct work_struct *work)
 {
 	struct evt_priv *evtpriv = container_of(work, struct evt_priv, c2h_wk);
-	struct adapter *adapter = container_of(evtpriv, struct adapter, evtpriv);
+	struct adapter *adapter =
+		container_of(evtpriv, struct adapter, evtpriv);
 	u8 *c2h_evt;
 	c2h_id_filter ccx_id_filter = rtw_hal_c2h_id_filter_ccx(adapter);
 
@@ -1712,7 +1819,8 @@ static void c2h_wk_callback(struct work_struct *work)
 			c2h_evt = kmalloc(16, GFP_ATOMIC);
 			if (c2h_evt) {
 				/* This C2H event is not read, read & clear now */
-				if (c2h_evt_read_88xx(adapter, c2h_evt) != _SUCCESS) {
+				if (c2h_evt_read_88xx(adapter, c2h_evt) !=
+				    _SUCCESS) {
 					kfree(c2h_evt);
 					continue;
 				}
@@ -1751,7 +1859,7 @@ u8 rtw_drvextra_cmd_hdl(struct adapter *padapter, unsigned char *pbuf)
 	pdrvextra_cmd = (struct drvextra_cmd_parm *)pbuf;
 
 	switch (pdrvextra_cmd->ec_id) {
-	case DYNAMIC_CHK_WK_CID:/* only  primary padapter go to this cmd, but execute dynamic_chk_wk_hdl() for two interfaces */
+	case DYNAMIC_CHK_WK_CID: /* only  primary padapter go to this cmd, but execute dynamic_chk_wk_hdl() for two interfaces */
 		dynamic_chk_wk_hdl(padapter);
 		break;
 	case POWER_SAVING_CTRL_WK_CID:
@@ -1778,13 +1886,16 @@ u8 rtw_drvextra_cmd_hdl(struct adapter *padapter, unsigned char *pbuf)
 		break;
 	case C2H_WK_CID:
 		rtw_hal_set_hwreg_with_buf(padapter, HW_VAR_C2H_HANDLE,
-					   pdrvextra_cmd->pbuf, pdrvextra_cmd->size);
+					   pdrvextra_cmd->pbuf,
+					   pdrvextra_cmd->size);
 		break;
 	case DM_RA_MSK_WK_CID:
-		rtw_dm_ra_mask_hdl(padapter, (struct sta_info *)pdrvextra_cmd->pbuf);
+		rtw_dm_ra_mask_hdl(padapter,
+				   (struct sta_info *)pdrvextra_cmd->pbuf);
 		break;
 	case BTINFO_WK_CID:
-		rtw_btinfo_hdl(padapter, pdrvextra_cmd->pbuf, pdrvextra_cmd->size);
+		rtw_btinfo_hdl(padapter, pdrvextra_cmd->pbuf,
+			       pdrvextra_cmd->size);
 		break;
 	default:
 		break;
@@ -1796,9 +1907,9 @@ u8 rtw_drvextra_cmd_hdl(struct adapter *padapter, unsigned char *pbuf)
 	return H2C_SUCCESS;
 }
 
-void rtw_survey_cmd_callback(struct adapter *padapter,  struct cmd_obj *pcmd)
+void rtw_survey_cmd_callback(struct adapter *padapter, struct cmd_obj *pcmd)
 {
-	struct	mlme_priv *pmlmepriv = &padapter->mlmepriv;
+	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 
 	if (pcmd->res != H2C_SUCCESS) {
 		/* TODO: cancel timer and do timeout handler directly... */
@@ -1809,9 +1920,9 @@ void rtw_survey_cmd_callback(struct adapter *padapter,  struct cmd_obj *pcmd)
 	rtw_free_cmd_obj(pcmd);
 }
 
-void rtw_disassoc_cmd_callback(struct adapter *padapter,  struct cmd_obj *pcmd)
+void rtw_disassoc_cmd_callback(struct adapter *padapter, struct cmd_obj *pcmd)
 {
-	struct	mlme_priv *pmlmepriv = &padapter->mlmepriv;
+	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 
 	if (pcmd->res != H2C_SUCCESS) {
 		spin_lock_bh(&pmlmepriv->lock);
@@ -1824,9 +1935,9 @@ void rtw_disassoc_cmd_callback(struct adapter *padapter,  struct cmd_obj *pcmd)
 	rtw_free_cmd_obj(pcmd);
 }
 
-void rtw_joinbss_cmd_callback(struct adapter *padapter,  struct cmd_obj *pcmd)
+void rtw_joinbss_cmd_callback(struct adapter *padapter, struct cmd_obj *pcmd)
 {
-	struct	mlme_priv *pmlmepriv = &padapter->mlmepriv;
+	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 
 	if (pcmd->res != H2C_SUCCESS) {
 		/* TODO: cancel timer and do timeout handler directly... */
@@ -1840,7 +1951,7 @@ void rtw_createbss_cmd_callback(struct adapter *padapter, struct cmd_obj *pcmd)
 {
 	struct sta_info *psta = NULL;
 	struct wlan_network *pwlan = NULL;
-	struct	mlme_priv *pmlmepriv = &padapter->mlmepriv;
+	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct wlan_bssid_ex *pnetwork = (struct wlan_bssid_ex *)pcmd->parmbuf;
 	struct wlan_network *tgt_network = &pmlmepriv->cur_network;
 
@@ -1855,9 +1966,11 @@ void rtw_createbss_cmd_callback(struct adapter *padapter, struct cmd_obj *pcmd)
 	spin_lock_bh(&pmlmepriv->lock);
 
 	if (check_fwstate(pmlmepriv, WIFI_AP_STATE)) {
-		psta = rtw_get_stainfo(&padapter->stapriv, pnetwork->mac_address);
+		psta = rtw_get_stainfo(&padapter->stapriv,
+				       pnetwork->mac_address);
 		if (!psta) {
-			psta = rtw_alloc_stainfo(&padapter->stapriv, pnetwork->mac_address);
+			psta = rtw_alloc_stainfo(&padapter->stapriv,
+						 pnetwork->mac_address);
 			if (!psta)
 				goto createbss_cmd_fail;
 		}
@@ -1867,14 +1980,16 @@ void rtw_createbss_cmd_callback(struct adapter *padapter, struct cmd_obj *pcmd)
 		pwlan = rtw_alloc_network(pmlmepriv);
 		spin_lock_bh(&pmlmepriv->scanned_queue.lock);
 		if (!pwlan) {
-			pwlan = rtw_get_oldest_wlan_network(&pmlmepriv->scanned_queue);
+			pwlan = rtw_get_oldest_wlan_network(
+				&pmlmepriv->scanned_queue);
 			if (!pwlan) {
 				spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
 				goto createbss_cmd_fail;
 			}
 			pwlan->last_scanned = jiffies;
 		} else {
-			list_add_tail(&pwlan->list, &pmlmepriv->scanned_queue.queue);
+			list_add_tail(&pwlan->list,
+				      &pmlmepriv->scanned_queue.queue);
 		}
 
 		pnetwork->length = get_wlan_bssid_ex_sz(pnetwork);
@@ -1884,7 +1999,8 @@ void rtw_createbss_cmd_callback(struct adapter *padapter, struct cmd_obj *pcmd)
 		/* list_add_tail(&(pwlan->list), &pmlmepriv->scanned_queue.queue); */
 
 		/*  copy pdev_network information to	pmlmepriv->cur_network */
-		memcpy(&tgt_network->network, pnetwork, (get_wlan_bssid_ex_sz(pnetwork)));
+		memcpy(&tgt_network->network, pnetwork,
+		       (get_wlan_bssid_ex_sz(pnetwork)));
 
 		_clr_fwstate_(pmlmepriv, _FW_UNDER_LINKING);
 
@@ -1899,10 +2015,12 @@ void rtw_createbss_cmd_callback(struct adapter *padapter, struct cmd_obj *pcmd)
 	rtw_free_cmd_obj(pcmd);
 }
 
-void rtw_setstaKey_cmdrsp_callback(struct adapter *padapter,  struct cmd_obj *pcmd)
+void rtw_setstaKey_cmdrsp_callback(struct adapter *padapter,
+				   struct cmd_obj *pcmd)
 {
 	struct sta_priv *pstapriv = &padapter->stapriv;
-	struct set_stakey_rsp *psetstakey_rsp = (struct set_stakey_rsp *)(pcmd->rsp);
+	struct set_stakey_rsp *psetstakey_rsp =
+		(struct set_stakey_rsp *)(pcmd->rsp);
 	struct sta_info *psta = rtw_get_stainfo(pstapriv, psetstakey_rsp->addr);
 
 	if (!psta)
@@ -1912,12 +2030,15 @@ void rtw_setstaKey_cmdrsp_callback(struct adapter *padapter,  struct cmd_obj *pc
 	rtw_free_cmd_obj(pcmd);
 }
 
-void rtw_setassocsta_cmdrsp_callback(struct adapter *padapter,  struct cmd_obj *pcmd)
+void rtw_setassocsta_cmdrsp_callback(struct adapter *padapter,
+				     struct cmd_obj *pcmd)
 {
 	struct sta_priv *pstapriv = &padapter->stapriv;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
-	struct set_assocsta_parm *passocsta_parm = (struct set_assocsta_parm *)(pcmd->parmbuf);
-	struct set_assocsta_rsp *passocsta_rsp = (struct set_assocsta_rsp *)(pcmd->rsp);
+	struct set_assocsta_parm *passocsta_parm =
+		(struct set_assocsta_parm *)(pcmd->parmbuf);
+	struct set_assocsta_rsp *passocsta_rsp =
+		(struct set_assocsta_rsp *)(pcmd->rsp);
 	struct sta_info *psta = rtw_get_stainfo(pstapriv, passocsta_parm->addr);
 
 	if (!psta)
@@ -1928,7 +2049,8 @@ void rtw_setassocsta_cmdrsp_callback(struct adapter *padapter,  struct cmd_obj *
 
 	spin_lock_bh(&pmlmepriv->lock);
 
-	if (check_fwstate(pmlmepriv, WIFI_MP_STATE) && check_fwstate(pmlmepriv, _FW_UNDER_LINKING))
+	if (check_fwstate(pmlmepriv, WIFI_MP_STATE) &&
+	    check_fwstate(pmlmepriv, _FW_UNDER_LINKING))
 		_clr_fwstate_(pmlmepriv, _FW_UNDER_LINKING);
 
 	set_fwstate(pmlmepriv, _FW_LINKED);
diff --git a/drivers/staging/rtl8723bs/core/rtw_efuse.c b/drivers/staging/rtl8723bs/core/rtw_efuse.c
index a40d6eab72496..384c0caca393c 100644
--- a/drivers/staging/rtl8723bs/core/rtw_efuse.c
+++ b/drivers/staging/rtl8723bs/core/rtw_efuse.c
@@ -9,8 +9,7 @@
 #include <linux/jiffies.h>
 
 /*  11/16/2008 MH Add description. Get current efuse area enabled word!!. */
-u8
-rtw_efuse_calculate_word_counts(u8 word_en)
+u8 rtw_efuse_calculate_word_counts(u8 word_en)
 {
 	u8 word_cnts = 0;
 
@@ -41,19 +40,17 @@ rtw_efuse_calculate_word_counts(u8 word_en)
  * 09/23/2008	MHC		Copy from WMAC.
  *
  */
-u8
-rtw_efuse_read_1_byte(
-struct adapter *Adapter,
-u16		Address)
+u8 rtw_efuse_read_1_byte(struct adapter *Adapter, u16 Address)
 {
-	u8 Bytetemp = {0x00};
-	u8 temp = {0x00};
+	u8 Bytetemp = { 0x00 };
+	u8 temp = { 0x00 };
 	u32 k = 0;
 	u16 contentLen = 0;
 
-	Hal_GetEfuseDefinition(Adapter, EFUSE_WIFI, TYPE_EFUSE_REAL_CONTENT_LEN, &contentLen);
+	Hal_GetEfuseDefinition(Adapter, EFUSE_WIFI, TYPE_EFUSE_REAL_CONTENT_LEN,
+			       &contentLen);
 
-	if (Address < contentLen) {/* E-fuse 512Byte */
+	if (Address < contentLen) { /* E-fuse 512Byte */
 		/* Write E-fuse Register address bit0~7 */
 		temp = Address & 0xFF;
 		rtw_write8(Adapter, EFUSE_CTRL + 1, temp);
@@ -82,11 +79,7 @@ u16		Address)
 } /* rtw_efuse_read_1_byte */
 
 /*  11/16/2008 MH Read one byte from real Efuse. */
-u8
-rtw_efuse_one_byte_read(
-struct adapter *padapter,
-u16	addr,
-u8	*data)
+u8 rtw_efuse_one_byte_read(struct adapter *padapter, u16 addr, u8 *data)
 {
 	u32 tmpidx = 0;
 	u8 bResult;
@@ -100,15 +93,17 @@ u8	*data)
 	/*  -----------------e-fuse reg ctrl --------------------------------- */
 	/* address */
 	rtw_write8(padapter, EFUSE_CTRL + 1, (u8)(addr & 0xff));
-	rtw_write8(padapter, EFUSE_CTRL + 2, ((u8)((addr >> 8) & 0x03)) |
-	(rtw_read8(padapter, EFUSE_CTRL + 2) & 0xFC));
+	rtw_write8(padapter, EFUSE_CTRL + 2,
+		   ((u8)((addr >> 8) & 0x03)) |
+			   (rtw_read8(padapter, EFUSE_CTRL + 2) & 0xFC));
 
 	/* rtw_write8(padapter, EFUSE_CTRL+3,  0x72); read cmd */
 	/* Write bit 32 0 */
 	readbyte = rtw_read8(padapter, EFUSE_CTRL + 3);
 	rtw_write8(padapter, EFUSE_CTRL + 3, (readbyte & 0x7f));
 
-	while (!(0x80 & rtw_read8(padapter, EFUSE_CTRL + 3)) && (tmpidx < 1000)) {
+	while (!(0x80 & rtw_read8(padapter, EFUSE_CTRL + 3)) &&
+	       (tmpidx < 1000)) {
 		mdelay(1);
 		tmpidx++;
 	}
@@ -145,7 +140,8 @@ static void Efuse_ReadAllMap(struct adapter *padapter, u8 efuseType, u8 *Efuse)
 
 	Hal_EfusePowerSwitch(padapter, true);
 
-	Hal_GetEfuseDefinition(padapter, efuseType, TYPE_EFUSE_MAP_LEN, &mapLen);
+	Hal_GetEfuseDefinition(padapter, efuseType, TYPE_EFUSE_MAP_LEN,
+			       &mapLen);
 
 	Hal_ReadEFuse(padapter, efuseType, 0, mapLen, Efuse);
 
@@ -170,26 +166,29 @@ static void Efuse_ReadAllMap(struct adapter *padapter, u8 efuseType, u8 *Efuse)
  * 11/12/2008	MHC		Create Version 0.
  *
  */
-static void efuse_ShadowRead1Byte(struct adapter *padapter, u16 Offset, u8 *Value)
+static void efuse_ShadowRead1Byte(struct adapter *padapter, u16 Offset,
+				  u8 *Value)
 {
 	struct eeprom_priv *pEEPROM = GET_EEPROM_EFUSE_PRIV(padapter);
 
 	*Value = pEEPROM->efuse_eeprom_data[Offset];
 
-}	/*  EFUSE_ShadowRead1Byte */
+} /*  EFUSE_ShadowRead1Byte */
 
 /* Read Two Bytes */
-static void efuse_ShadowRead2Byte(struct adapter *padapter, u16 Offset, u16 *Value)
+static void efuse_ShadowRead2Byte(struct adapter *padapter, u16 Offset,
+				  u16 *Value)
 {
 	struct eeprom_priv *pEEPROM = GET_EEPROM_EFUSE_PRIV(padapter);
 
 	*Value = pEEPROM->efuse_eeprom_data[Offset];
 	*Value |= pEEPROM->efuse_eeprom_data[Offset + 1] << 8;
 
-}	/*  EFUSE_ShadowRead2Byte */
+} /*  EFUSE_ShadowRead2Byte */
 
 /* Read Four Bytes */
-static void efuse_ShadowRead4Byte(struct adapter *padapter, u16 Offset, u32 *Value)
+static void efuse_ShadowRead4Byte(struct adapter *padapter, u16 Offset,
+				  u32 *Value)
 {
 	struct eeprom_priv *pEEPROM = GET_EEPROM_EFUSE_PRIV(padapter);
 
@@ -198,7 +197,7 @@ static void efuse_ShadowRead4Byte(struct adapter *padapter, u16 Offset, u32 *Val
 	*Value |= pEEPROM->efuse_eeprom_data[Offset + 2] << 16;
 	*Value |= pEEPROM->efuse_eeprom_data[Offset + 3] << 24;
 
-}	/*  efuse_ShadowRead4Byte */
+} /*  efuse_ShadowRead4Byte */
 
 /*-----------------------------------------------------------------------------
  * Function:	rtw_efuse_shadow_map_update
@@ -221,12 +220,14 @@ void rtw_efuse_shadow_map_update(struct adapter *padapter, u8 efuseType)
 	struct eeprom_priv *pEEPROM = GET_EEPROM_EFUSE_PRIV(padapter);
 	u16 mapLen = 0;
 
-	Hal_GetEfuseDefinition(padapter, efuseType, TYPE_EFUSE_MAP_LEN, &mapLen);
+	Hal_GetEfuseDefinition(padapter, efuseType, TYPE_EFUSE_MAP_LEN,
+			       &mapLen);
 
 	if (pEEPROM->bautoload_fail_flag)
 		memset(pEEPROM->efuse_eeprom_data, 0xFF, mapLen);
 	else
-		Efuse_ReadAllMap(padapter, efuseType, pEEPROM->efuse_eeprom_data);
+		Efuse_ReadAllMap(padapter, efuseType,
+				 pEEPROM->efuse_eeprom_data);
 
 	/* PlatformMoveMemory((void *)&pHalData->EfuseMap[EFUSE_MODIFY_MAP][0], */
 	/* void *)&pHalData->EfuseMap[EFUSE_INIT_MAP][0], mapLen); */
@@ -248,7 +249,8 @@ void rtw_efuse_shadow_map_update(struct adapter *padapter, u8 efuseType)
  * 11/12/2008	MHC		Create Version 0.
  *
  */
-void rtw_efuse_shadow_read(struct adapter *padapter, u8 Type, u16 Offset, u32 *Value)
+void rtw_efuse_shadow_read(struct adapter *padapter, u8 Type, u16 Offset,
+			   u32 *Value)
 {
 	if (Type == 1)
 		efuse_ShadowRead1Byte(padapter, Offset, (u8 *)Value);
diff --git a/drivers/staging/rtl8723bs/core/rtw_ieee80211.c b/drivers/staging/rtl8723bs/core/rtw_ieee80211.c
index 54f805a6b5ce5..3665126d03e24 100644
--- a/drivers/staging/rtl8723bs/core/rtw_ieee80211.c
+++ b/drivers/staging/rtl8723bs/core/rtw_ieee80211.c
@@ -36,21 +36,17 @@ u8 RSN_CIPHER_SUITE_WEP104[] = { 0x00, 0x0f, 0xac, 5 };
 /*  */
 
 static u8 WIFI_CCKRATES[] = {
-		(IEEE80211_CCK_RATE_1MB | IEEE80211_BASIC_RATE_MASK),
-		(IEEE80211_CCK_RATE_2MB | IEEE80211_BASIC_RATE_MASK),
-		(IEEE80211_CCK_RATE_5MB | IEEE80211_BASIC_RATE_MASK),
-		(IEEE80211_CCK_RATE_11MB | IEEE80211_BASIC_RATE_MASK)
+	(IEEE80211_CCK_RATE_1MB | IEEE80211_BASIC_RATE_MASK),
+	(IEEE80211_CCK_RATE_2MB | IEEE80211_BASIC_RATE_MASK),
+	(IEEE80211_CCK_RATE_5MB | IEEE80211_BASIC_RATE_MASK),
+	(IEEE80211_CCK_RATE_11MB | IEEE80211_BASIC_RATE_MASK)
 };
 
 static u8 WIFI_OFDMRATES[] = {
-		(IEEE80211_OFDM_RATE_6MB),
-		(IEEE80211_OFDM_RATE_9MB),
-		(IEEE80211_OFDM_RATE_12MB),
-		(IEEE80211_OFDM_RATE_18MB),
-		(IEEE80211_OFDM_RATE_24MB),
-		IEEE80211_OFDM_RATE_36MB,
-		IEEE80211_OFDM_RATE_48MB,
-		IEEE80211_OFDM_RATE_54MB
+	(IEEE80211_OFDM_RATE_6MB),  (IEEE80211_OFDM_RATE_9MB),
+	(IEEE80211_OFDM_RATE_12MB), (IEEE80211_OFDM_RATE_18MB),
+	(IEEE80211_OFDM_RATE_24MB), IEEE80211_OFDM_RATE_36MB,
+	IEEE80211_OFDM_RATE_48MB,   IEEE80211_OFDM_RATE_54MB
 };
 
 int rtw_get_bit_value_from_ieee_value(u8 val)
@@ -106,8 +102,8 @@ int rtw_check_network_type(unsigned char *rate, int channel)
 	return WIRELESS_11G;
 }
 
-u8 *rtw_set_fixed_ie(unsigned char *pbuf, unsigned int len, unsigned char *source,
-				unsigned int *frlen)
+u8 *rtw_set_fixed_ie(unsigned char *pbuf, unsigned int len,
+		     unsigned char *source, unsigned int *frlen)
 {
 	memcpy(pbuf, source, len);
 	*frlen = *frlen + len;
@@ -115,10 +111,7 @@ u8 *rtw_set_fixed_ie(unsigned char *pbuf, unsigned int len, unsigned char *sourc
 }
 
 /*  rtw_set_ie will update frame length */
-u8 *rtw_set_ie(u8 *pbuf,
-	       signed int index,
-	       uint len,
-	       u8 *source,
+u8 *rtw_set_ie(u8 *pbuf, signed int index, uint len, u8 *source,
 	       uint *frlen) /* frame length */
 {
 	*pbuf = (u8)index;
@@ -173,7 +166,8 @@ u8 *rtw_get_ie(u8 *pbuf, signed int index, signed int *len, signed int limit)
  *
  * Returns: The address of the specific IE found, or NULL
  */
-u8 *rtw_get_ie_ex(u8 *in_ie, uint in_len, u8 eid, u8 *oui, u8 oui_len, u8 *ie, uint *ielen)
+u8 *rtw_get_ie_ex(u8 *in_ie, uint in_len, u8 eid, u8 *oui, u8 oui_len, u8 *ie,
+		  uint *ielen)
 {
 	uint cnt;
 	u8 *target_ie = NULL;
@@ -193,7 +187,8 @@ u8 *rtw_get_ie_ex(u8 *in_ie, uint in_len, u8 eid, u8 *oui, u8 oui_len, u8 *ie, u
 			break;
 
 		if (eid == in_ie[cnt] &&
-		    (!oui || (ie_len >= oui_len && !memcmp(&in_ie[cnt + 2], oui, oui_len)))) {
+		    (!oui || (ie_len >= oui_len &&
+			      !memcmp(&in_ie[cnt + 2], oui, oui_len)))) {
 			target_ie = &in_ie[cnt];
 
 			if (ie)
@@ -221,7 +216,8 @@ u8 *rtw_get_ie_ex(u8 *in_ie, uint in_len, u8 eid, u8 *oui, u8 oui_len, u8 *ie, u
  *
  * Returns: _SUCCESS: ies is updated, _FAIL: not updated
  */
-int rtw_ies_remove_ie(u8 *ies, uint *ies_len, uint offset, u8 eid, u8 *oui, u8 oui_len)
+int rtw_ies_remove_ie(u8 *ies, uint *ies_len, uint offset, u8 eid, u8 *oui,
+		      u8 oui_len)
 {
 	int ret = _FAIL;
 	u8 *target_ie;
@@ -236,7 +232,8 @@ int rtw_ies_remove_ie(u8 *ies, uint *ies_len, uint offset, u8 eid, u8 *oui, u8 o
 	search_len = *ies_len - offset;
 
 	while (1) {
-		target_ie = rtw_get_ie_ex(start, search_len, eid, oui, oui_len, NULL, &target_ielen);
+		target_ie = rtw_get_ie_ex(start, search_len, eid, oui, oui_len,
+					  NULL, &target_ielen);
 		if (target_ie && target_ielen) {
 			u8 *remain_ies = target_ie + target_ielen;
 			uint remain_len = search_len - (remain_ies - start);
@@ -265,7 +262,8 @@ void rtw_set_supported_rate(u8 *supported_rates, uint mode)
 		break;
 
 	case WIRELESS_11G:
-		memcpy(supported_rates, WIFI_OFDMRATES, IEEE80211_NUM_OFDM_RATESLEN);
+		memcpy(supported_rates, WIFI_OFDMRATES,
+		       IEEE80211_NUM_OFDM_RATESLEN);
 		break;
 
 	case WIRELESS_11BG:
@@ -273,7 +271,8 @@ void rtw_set_supported_rate(u8 *supported_rates, uint mode)
 	case WIRELESS_11_24N:
 	case WIRELESS_11BG_24N:
 		memcpy(supported_rates, WIFI_CCKRATES, IEEE80211_CCK_RATE_LEN);
-		memcpy(supported_rates + IEEE80211_CCK_RATE_LEN, WIFI_OFDMRATES, IEEE80211_NUM_OFDM_RATESLEN);
+		memcpy(supported_rates + IEEE80211_CCK_RATE_LEN, WIFI_OFDMRATES,
+		       IEEE80211_NUM_OFDM_RATESLEN);
 		break;
 	}
 }
@@ -291,7 +290,7 @@ uint rtw_get_rateset_len(u8 *rateset)
 int rtw_generate_ie(struct registry_priv *pregistrypriv)
 {
 	u8 wireless_mode;
-	int	sz = 0, rate_len;
+	int sz = 0, rate_len;
 	struct wlan_bssid_ex *pdev_network = &pregistrypriv->dev_network;
 	u8 *ie = pdev_network->ies;
 
@@ -300,7 +299,8 @@ int rtw_generate_ie(struct registry_priv *pregistrypriv)
 	ie += sz;
 
 	/* beacon interval : 2bytes */
-	*(__le16 *)ie = cpu_to_le16((u16)pdev_network->configuration.beacon_period);/* BCN_INTERVAL; */
+	*(__le16 *)ie = cpu_to_le16((u16)pdev_network->configuration
+					    .beacon_period); /* BCN_INTERVAL; */
 	sz += 2;
 	ie += 2;
 
@@ -319,7 +319,8 @@ int rtw_generate_ie(struct registry_priv *pregistrypriv)
 	ie += 2;
 
 	/* SSID */
-	ie = rtw_set_ie(ie, WLAN_EID_SSID, pdev_network->ssid.ssid_length, pdev_network->ssid.ssid, &sz);
+	ie = rtw_set_ie(ie, WLAN_EID_SSID, pdev_network->ssid.ssid_length,
+			pdev_network->ssid.ssid, &sz);
 
 	/* supported rates */
 	wireless_mode = pregistrypriv->wireless_mode;
@@ -329,21 +330,26 @@ int rtw_generate_ie(struct registry_priv *pregistrypriv)
 	rate_len = rtw_get_rateset_len(pdev_network->supported_rates);
 
 	if (rate_len > 8) {
-		ie = rtw_set_ie(ie, WLAN_EID_SUPP_RATES, 8, pdev_network->supported_rates, &sz);
+		ie = rtw_set_ie(ie, WLAN_EID_SUPP_RATES, 8,
+				pdev_network->supported_rates, &sz);
 		/* ie = rtw_set_ie(ie, WLAN_EID_EXT_SUPP_RATES, (rate_len - 8), (pdev_network->supported_rates + 8), &sz); */
 	} else {
-		ie = rtw_set_ie(ie, WLAN_EID_SUPP_RATES, rate_len, pdev_network->supported_rates, &sz);
+		ie = rtw_set_ie(ie, WLAN_EID_SUPP_RATES, rate_len,
+				pdev_network->supported_rates, &sz);
 	}
 
 	/* DS parameter set */
-	ie = rtw_set_ie(ie, WLAN_EID_DS_PARAMS, 1, (u8 *)&(pdev_network->configuration.ds_config), &sz);
+	ie = rtw_set_ie(ie, WLAN_EID_DS_PARAMS, 1,
+			(u8 *)&(pdev_network->configuration.ds_config), &sz);
 
 	/* IBSS Parameter Set */
 
-	ie = rtw_set_ie(ie, WLAN_EID_IBSS_PARAMS, 2, (u8 *)&(pdev_network->configuration.atim_window), &sz);
+	ie = rtw_set_ie(ie, WLAN_EID_IBSS_PARAMS, 2,
+			(u8 *)&(pdev_network->configuration.atim_window), &sz);
 
 	if (rate_len > 8)
-		ie = rtw_set_ie(ie, WLAN_EID_EXT_SUPP_RATES, (rate_len - 8), (pdev_network->supported_rates + 8), &sz);
+		ie = rtw_set_ie(ie, WLAN_EID_EXT_SUPP_RATES, (rate_len - 8),
+				(pdev_network->supported_rates + 8), &sz);
 
 	/* HT Cap. */
 	if ((pregistrypriv->wireless_mode & WIRELESS_11_24N) &&
@@ -362,17 +368,19 @@ unsigned char *rtw_get_wpa_ie(unsigned char *pie, int *wpa_ie_len, int limit)
 {
 	int len;
 	u16 val16;
-	unsigned char wpa_oui_type[] = {0x00, 0x50, 0xf2, 0x01};
+	unsigned char wpa_oui_type[] = { 0x00, 0x50, 0xf2, 0x01 };
 	u8 *pbuf = pie;
 	int limit_new = limit;
 	__le16 le_tmp;
 
 	while (1) {
-		pbuf = rtw_get_ie(pbuf, WLAN_EID_VENDOR_SPECIFIC, &len, limit_new);
+		pbuf = rtw_get_ie(pbuf, WLAN_EID_VENDOR_SPECIFIC, &len,
+				  limit_new);
 
 		if (pbuf) {
 			/* check if oui matches... */
-			if (memcmp((pbuf + 2), wpa_oui_type, sizeof(wpa_oui_type)))
+			if (memcmp((pbuf + 2), wpa_oui_type,
+				   sizeof(wpa_oui_type)))
 				goto check_next_ie;
 
 			/* check version... */
@@ -443,12 +451,13 @@ int rtw_get_wpa2_cipher_suite(u8 *s)
 	return 0;
 }
 
-int rtw_parse_wpa_ie(u8 *wpa_ie, int wpa_ie_len, int *group_cipher, int *pairwise_cipher, int *is_8021x)
+int rtw_parse_wpa_ie(u8 *wpa_ie, int wpa_ie_len, int *group_cipher,
+		     int *pairwise_cipher, int *is_8021x)
 {
 	int i, ret = _SUCCESS;
 	int left, count;
 	u8 *pos;
-	u8 SUITE_1X[4] = {0x00, 0x50, 0xf2, 1};
+	u8 SUITE_1X[4] = { 0x00, 0x50, 0xf2, 1 };
 
 	if (wpa_ie_len <= 0) {
 		/* No WPA IE - fail silently */
@@ -506,19 +515,21 @@ int rtw_parse_wpa_ie(u8 *wpa_ie, int wpa_ie_len, int *group_cipher, int *pairwis
 	return ret;
 }
 
-int rtw_parse_wpa2_ie(u8 *rsn_ie, int rsn_ie_len, int *group_cipher, int *pairwise_cipher, int *is_8021x)
+int rtw_parse_wpa2_ie(u8 *rsn_ie, int rsn_ie_len, int *group_cipher,
+		      int *pairwise_cipher, int *is_8021x)
 {
 	int i, ret = _SUCCESS;
 	int left, count;
 	u8 *pos;
-	u8 SUITE_1X[4] = {0x00, 0x0f, 0xac, 0x01};
+	u8 SUITE_1X[4] = { 0x00, 0x0f, 0xac, 0x01 };
 
 	if (rsn_ie_len <= 0) {
 		/* No RSN IE - fail silently */
 		return _FAIL;
 	}
 
-	if ((*rsn_ie != WLAN_EID_RSN) || (*(rsn_ie + 1) != (u8)(rsn_ie_len - 2)))
+	if ((*rsn_ie != WLAN_EID_RSN) ||
+	    (*(rsn_ie + 1) != (u8)(rsn_ie_len - 2)))
 		return _FAIL;
 
 	pos = rsn_ie;
@@ -537,7 +548,7 @@ int rtw_parse_wpa2_ie(u8 *rsn_ie, int rsn_ie_len, int *group_cipher, int *pairwi
 
 	/* pairwise_cipher */
 	if (left >= 2) {
-	  /* count = le16_to_cpu(*(u16*)pos); */
+		/* count = le16_to_cpu(*(u16*)pos); */
 		count = get_unaligned_le16(pos);
 		pos += 2;
 		left -= 2;
@@ -570,9 +581,9 @@ int rtw_get_wapi_ie(u8 *in_ie, uint in_len, u8 *wapi_ie, u16 *wapi_len)
 {
 	int len = 0;
 	u8 authmode;
-	uint	cnt;
-	u8 wapi_oui1[4] = {0x0, 0x14, 0x72, 0x01};
-	u8 wapi_oui2[4] = {0x0, 0x14, 0x72, 0x02};
+	uint cnt;
+	u8 wapi_oui1[4] = { 0x0, 0x14, 0x72, 0x01 };
+	u8 wapi_oui2[4] = { 0x0, 0x14, 0x72, 0x02 };
 
 	if (wapi_len)
 		*wapi_len = 0;
@@ -594,13 +605,14 @@ int rtw_get_wapi_ie(u8 *in_ie, uint in_len, u8 *wapi_ie, u16 *wapi_len)
 		    (!memcmp(&in_ie[cnt + 6], wapi_oui1, 4) ||
 		     !memcmp(&in_ie[cnt + 6], wapi_oui2, 4))) {
 			if (wapi_ie)
-				memcpy(wapi_ie, &in_ie[cnt], in_ie[cnt + 1] + 2);
+				memcpy(wapi_ie, &in_ie[cnt],
+				       in_ie[cnt + 1] + 2);
 
 			if (wapi_len)
 				*wapi_len = in_ie[cnt + 1] + 2;
 		}
 
-		cnt += in_ie[cnt + 1] + 2;   /* get next */
+		cnt += in_ie[cnt + 1] + 2; /* get next */
 	}
 
 	if (wapi_len)
@@ -609,11 +621,12 @@ int rtw_get_wapi_ie(u8 *in_ie, uint in_len, u8 *wapi_ie, u16 *wapi_len)
 	return len;
 }
 
-void rtw_get_sec_ie(u8 *in_ie, uint in_len, u8 *rsn_ie, u16 *rsn_len, u8 *wpa_ie, u16 *wpa_len)
+void rtw_get_sec_ie(u8 *in_ie, uint in_len, u8 *rsn_ie, u16 *rsn_len,
+		    u8 *wpa_ie, u16 *wpa_len)
 {
 	u8 authmode;
-	u8 wpa_oui[4] = {0x0, 0x50, 0xf2, 0x01};
-	uint	cnt;
+	u8 wpa_oui[4] = { 0x0, 0x50, 0xf2, 0x01 };
+	uint cnt;
 
 	/* Search required WPA or WPA2 IE and copy to sec_ie[ ] */
 
@@ -640,7 +653,7 @@ void rtw_get_sec_ie(u8 *in_ie, uint in_len, u8 *rsn_ie, u16 *rsn_len, u8 *wpa_ie
 			*rsn_len = in_ie[cnt + 1] + 2;
 		}
 
-		cnt += in_ie[cnt + 1] + 2;   /* get next */
+		cnt += in_ie[cnt + 1] + 2; /* get next */
 	}
 }
 
@@ -657,7 +670,7 @@ u8 *rtw_get_wps_ie(u8 *in_ie, uint in_len, u8 *wps_ie, uint *wps_ielen)
 {
 	uint cnt;
 	u8 *wpsie_ptr = NULL;
-	u8 eid, wps_oui[4] = {0x0, 0x50, 0xf2, 0x04};
+	u8 eid, wps_oui[4] = { 0x0, 0x50, 0xf2, 0x04 };
 
 	if (wps_ielen)
 		*wps_ielen = 0;
@@ -670,7 +683,8 @@ u8 *rtw_get_wps_ie(u8 *in_ie, uint in_len, u8 *wps_ie, uint *wps_ielen)
 	while (cnt < in_len) {
 		eid = in_ie[cnt];
 
-		if ((eid == WLAN_EID_VENDOR_SPECIFIC) && (!memcmp(&in_ie[cnt + 2], wps_oui, 4))) {
+		if ((eid == WLAN_EID_VENDOR_SPECIFIC) &&
+		    (!memcmp(&in_ie[cnt + 2], wps_oui, 4))) {
 			wpsie_ptr = &in_ie[cnt];
 
 			if (wps_ie)
@@ -699,11 +713,12 @@ u8 *rtw_get_wps_ie(u8 *in_ie, uint in_len, u8 *wps_ie, uint *wps_ielen)
  *
  * Returns: the address of the specific WPS attribute found, or NULL
  */
-u8 *rtw_get_wps_attr(u8 *wps_ie, uint wps_ielen, u16 target_attr_id, u8 *buf_attr, u32 *len_attr)
+u8 *rtw_get_wps_attr(u8 *wps_ie, uint wps_ielen, u16 target_attr_id,
+		     u8 *buf_attr, u32 *len_attr)
 {
 	u8 *attr_ptr = NULL;
 	u8 *target_attr_ptr = NULL;
-	u8 wps_oui[4] = {0x00, 0x50, 0xF2, 0x04};
+	u8 wps_oui[4] = { 0x00, 0x50, 0xF2, 0x04 };
 
 	if (len_attr)
 		*len_attr = 0;
@@ -712,7 +727,7 @@ u8 *rtw_get_wps_attr(u8 *wps_ie, uint wps_ielen, u16 target_attr_id, u8 *buf_att
 		return attr_ptr;
 
 	if ((wps_ie[0] != WLAN_EID_VENDOR_SPECIFIC) ||
-		(memcmp(wps_ie + 2, wps_oui, 4))) {
+	    (memcmp(wps_ie + 2, wps_oui, 4))) {
 		return attr_ptr;
 	}
 
@@ -754,7 +769,8 @@ u8 *rtw_get_wps_attr(u8 *wps_ie, uint wps_ielen, u16 target_attr_id, u8 *buf_att
  *
  * Returns: the address of the specific WPS attribute content found, or NULL
  */
-u8 *rtw_get_wps_attr_content(u8 *wps_ie, uint wps_ielen, u16 target_attr_id, u8 *buf_content, uint *len_content)
+u8 *rtw_get_wps_attr_content(u8 *wps_ie, uint wps_ielen, u16 target_attr_id,
+			     u8 *buf_content, uint *len_content)
 {
 	u8 *attr_ptr;
 	u32 attr_len;
@@ -762,7 +778,8 @@ u8 *rtw_get_wps_attr_content(u8 *wps_ie, uint wps_ielen, u16 target_attr_id, u8
 	if (len_content)
 		*len_content = 0;
 
-	attr_ptr = rtw_get_wps_attr(wps_ie, wps_ielen, target_attr_id, NULL, &attr_len);
+	attr_ptr = rtw_get_wps_attr(wps_ie, wps_ielen, target_attr_id, NULL,
+				    &attr_len);
 
 	if (attr_ptr && attr_len) {
 		if (buf_content)
@@ -777,9 +794,8 @@ u8 *rtw_get_wps_attr_content(u8 *wps_ie, uint wps_ielen, u16 target_attr_id, u8
 	return NULL;
 }
 
-static int rtw_ieee802_11_parse_vendor_specific(u8 *pos, uint elen,
-					    struct rtw_ieee802_11_elems *elems,
-					    int show_errors)
+static int rtw_ieee802_11_parse_vendor_specific(
+	u8 *pos, uint elen, struct rtw_ieee802_11_elems *elems, int show_errors)
 {
 	unsigned int oui;
 
@@ -923,9 +939,8 @@ enum parse_result rtw_ieee802_11_parse_elems(u8 *start, uint len,
 			elems->ext_supp_rates_len = elen;
 			break;
 		case WLAN_EID_VENDOR_SPECIFIC:
-			if (rtw_ieee802_11_parse_vendor_specific(pos, elen,
-							     elems,
-							     show_errors))
+			if (rtw_ieee802_11_parse_vendor_specific(
+				    pos, elen, elems, show_errors))
 				unknown++;
 			break;
 		case WLAN_EID_RSN:
@@ -1022,8 +1037,7 @@ static int rtw_get_cipher_info(struct wlan_network *pnetwork)
 	int group_cipher = 0, pairwise_cipher = 0, is8021x = 0;
 	int ret = _FAIL;
 
-	pbuf = rtw_get_wpa_ie(&pnetwork->network.ies[12],
-			      &wpa_ielen,
+	pbuf = rtw_get_wpa_ie(&pnetwork->network.ies[12], &wpa_ielen,
 			      pnetwork->network.ie_length - 12);
 
 	if (pbuf && (wpa_ielen > 0)) {
@@ -1039,9 +1053,11 @@ static int rtw_get_cipher_info(struct wlan_network *pnetwork)
 				       pnetwork->network.ie_length - 12);
 
 		if (pbuf && (wpa_ielen > 0)) {
-			if (rtw_parse_wpa2_ie(pbuf, wpa_ielen + 2, &group_cipher,
-					      &pairwise_cipher, &is8021x) == _SUCCESS) {
-				pnetwork->bcn_info.pairwise_cipher = pairwise_cipher;
+			if (rtw_parse_wpa2_ie(pbuf, wpa_ielen + 2,
+					      &group_cipher, &pairwise_cipher,
+					      &is8021x) == _SUCCESS) {
+				pnetwork->bcn_info.pairwise_cipher =
+					pairwise_cipher;
 				pnetwork->bcn_info.group_cipher = group_cipher;
 				pnetwork->bcn_info.is_8021x = is8021x;
 				ret = _SUCCESS;
@@ -1064,7 +1080,8 @@ void rtw_get_bcn_info(struct wlan_network *pnetwork)
 	unsigned char *p;
 	__le16 le_cap;
 
-	memcpy((u8 *)&le_cap, rtw_get_capability_from_ie(pnetwork->network.ies), 2);
+	memcpy((u8 *)&le_cap, rtw_get_capability_from_ie(pnetwork->network.ies),
+	       2);
 	cap = le16_to_cpu(le_cap);
 	if (cap & WLAN_CAPABILITY_PRIVACY) {
 		bencrypt = 1;
@@ -1072,7 +1089,8 @@ void rtw_get_bcn_info(struct wlan_network *pnetwork)
 	} else {
 		pnetwork->bcn_info.encryp_protocol = ENCRYP_PROTOCOL_OPENSYS;
 	}
-	rtw_get_sec_ie(pnetwork->network.ies, pnetwork->network.ie_length, NULL, &rsn_len, NULL, &wpa_len);
+	rtw_get_sec_ie(pnetwork->network.ies, pnetwork->network.ie_length, NULL,
+		       &rsn_len, NULL, &wpa_len);
 
 	if (rsn_len > 0) {
 		pnetwork->bcn_info.encryp_protocol = ENCRYP_PROTOCOL_WPA2;
@@ -1080,13 +1098,16 @@ void rtw_get_bcn_info(struct wlan_network *pnetwork)
 		pnetwork->bcn_info.encryp_protocol = ENCRYP_PROTOCOL_WPA;
 	} else {
 		if (bencrypt)
-			pnetwork->bcn_info.encryp_protocol = ENCRYP_PROTOCOL_WEP;
+			pnetwork->bcn_info.encryp_protocol =
+				ENCRYP_PROTOCOL_WEP;
 	}
 	rtw_get_cipher_info(pnetwork);
 
 	/* get bwmode and ch_offset */
 	/* parsing HT_CAP_IE */
-	p = rtw_get_ie(pnetwork->network.ies + _FIXED_IE_LENGTH_, WLAN_EID_HT_CAPABILITY, &len, pnetwork->network.ie_length - _FIXED_IE_LENGTH_);
+	p = rtw_get_ie(pnetwork->network.ies + _FIXED_IE_LENGTH_,
+		       WLAN_EID_HT_CAPABILITY, &len,
+		       pnetwork->network.ie_length - _FIXED_IE_LENGTH_);
 	if (p && len > 0) {
 		pht_cap = (struct ieee80211_ht_cap *)(p + 2);
 		pnetwork->bcn_info.ht_cap_info = le16_to_cpu(pht_cap->cap_info);
@@ -1094,7 +1115,9 @@ void rtw_get_bcn_info(struct wlan_network *pnetwork)
 		pnetwork->bcn_info.ht_cap_info = 0;
 	}
 	/* parsing HT_INFO_IE */
-	p = rtw_get_ie(pnetwork->network.ies + _FIXED_IE_LENGTH_, WLAN_EID_HT_OPERATION, &len, pnetwork->network.ie_length - _FIXED_IE_LENGTH_);
+	p = rtw_get_ie(pnetwork->network.ies + _FIXED_IE_LENGTH_,
+		       WLAN_EID_HT_OPERATION, &len,
+		       pnetwork->network.ie_length - _FIXED_IE_LENGTH_);
 	if (p && len > 0) {
 		pht_info = (struct HT_info_element *)(p + 2);
 		pnetwork->bcn_info.ht_info_infos_0 = pht_info->infos[0];
@@ -1109,26 +1132,35 @@ u16 rtw_mcs_rate(u8 bw_40MHz, u8 short_GI, unsigned char *MCS_rate)
 	u16 max_rate = 0;
 
 	if (MCS_rate[0] & BIT(7))
-		max_rate = (bw_40MHz) ? ((short_GI) ? 1500 : 1350) : ((short_GI) ? 722 : 650);
+		max_rate = (bw_40MHz) ? ((short_GI) ? 1500 : 1350) :
+					((short_GI) ? 722 : 650);
 	else if (MCS_rate[0] & BIT(6))
-		max_rate = (bw_40MHz) ? ((short_GI) ? 1350 : 1215) : ((short_GI) ? 650 : 585);
+		max_rate = (bw_40MHz) ? ((short_GI) ? 1350 : 1215) :
+					((short_GI) ? 650 : 585);
 	else if (MCS_rate[0] & BIT(5))
-		max_rate = (bw_40MHz) ? ((short_GI) ? 1200 : 1080) : ((short_GI) ? 578 : 520);
+		max_rate = (bw_40MHz) ? ((short_GI) ? 1200 : 1080) :
+					((short_GI) ? 578 : 520);
 	else if (MCS_rate[0] & BIT(4))
-		max_rate = (bw_40MHz) ? ((short_GI) ? 900 : 810) : ((short_GI) ? 433 : 390);
+		max_rate = (bw_40MHz) ? ((short_GI) ? 900 : 810) :
+					((short_GI) ? 433 : 390);
 	else if (MCS_rate[0] & BIT(3))
-		max_rate = (bw_40MHz) ? ((short_GI) ? 600 : 540) : ((short_GI) ? 289 : 260);
+		max_rate = (bw_40MHz) ? ((short_GI) ? 600 : 540) :
+					((short_GI) ? 289 : 260);
 	else if (MCS_rate[0] & BIT(2))
-		max_rate = (bw_40MHz) ? ((short_GI) ? 450 : 405) : ((short_GI) ? 217 : 195);
+		max_rate = (bw_40MHz) ? ((short_GI) ? 450 : 405) :
+					((short_GI) ? 217 : 195);
 	else if (MCS_rate[0] & BIT(1))
-		max_rate = (bw_40MHz) ? ((short_GI) ? 300 : 270) : ((short_GI) ? 144 : 130);
+		max_rate = (bw_40MHz) ? ((short_GI) ? 300 : 270) :
+					((short_GI) ? 144 : 130);
 	else if (MCS_rate[0] & BIT(0))
-		max_rate = (bw_40MHz) ? ((short_GI) ? 150 : 135) : ((short_GI) ? 72 : 65);
+		max_rate = (bw_40MHz) ? ((short_GI) ? 150 : 135) :
+					((short_GI) ? 72 : 65);
 
 	return max_rate;
 }
 
-int rtw_action_frame_parse(const u8 *frame, u32 frame_len, u8 *category, u8 *action)
+int rtw_action_frame_parse(const u8 *frame, u32 frame_len, u8 *category,
+			   u8 *action)
 {
 	const u8 *frame_body = frame + sizeof(struct ieee80211_hdr_3addr);
 	u16 fc;
@@ -1158,7 +1190,7 @@ int rtw_action_frame_parse(const u8 *frame, u32 frame_len, u8 *category, u8 *act
 	return true;
 }
 
-static const char * const _action_public_str[] = {
+static const char *const _action_public_str[] = {
 	"ACT_PUB_BSSCOEXIST",
 	"ACT_PUB_DSE_ENABLE",
 	"ACT_PUB_DSE_DEENABLE",
diff --git a/drivers/staging/rtl8723bs/core/rtw_io.c b/drivers/staging/rtl8723bs/core/rtw_io.c
index c793ae7ea5c46..47f0f8a241d78 100644
--- a/drivers/staging/rtl8723bs/core/rtw_io.c
+++ b/drivers/staging/rtl8723bs/core/rtw_io.c
@@ -101,7 +101,8 @@ int rtw_write32(struct adapter *adapter, u32 addr, u32 val)
 
 u32 rtw_write_port(struct adapter *adapter, u32 addr, u32 cnt, u8 *pmem)
 {
-	u32 (*_write_port)(struct intf_hdl *pintfhdl, u32 addr, u32 cnt, u8 *pmem);
+	u32 (*_write_port)(struct intf_hdl *pintfhdl, u32 addr, u32 cnt,
+			   u8 *pmem);
 	struct io_priv *pio_priv = &adapter->iopriv;
 	struct intf_hdl *pintfhdl = &pio_priv->intf;
 
diff --git a/drivers/staging/rtl8723bs/core/rtw_ioctl_set.c b/drivers/staging/rtl8723bs/core/rtw_ioctl_set.c
index 12bf7780bea59..8e2096cdeb975 100644
--- a/drivers/staging/rtl8723bs/core/rtw_ioctl_set.c
+++ b/drivers/staging/rtl8723bs/core/rtw_ioctl_set.c
@@ -11,8 +11,7 @@ u8 rtw_validate_bssid(u8 *bssid)
 {
 	u8 ret = true;
 
-	if (is_zero_ether_addr(bssid) ||
-	    is_broadcast_ether_addr(bssid) ||
+	if (is_zero_ether_addr(bssid) || is_broadcast_ether_addr(bssid) ||
 	    is_multicast_ether_addr(bssid))
 		ret = false;
 
@@ -34,10 +33,10 @@ u8 rtw_validate_ssid(struct ndis_802_11_ssid *ssid)
 
 u8 rtw_do_join(struct adapter *padapter)
 {
-	struct list_head	*plist, *phead;
+	struct list_head *plist, *phead;
 	u8 *pibss = NULL;
-	struct	mlme_priv *pmlmepriv = &(padapter->mlmepriv);
-	struct __queue	*queue	= &(pmlmepriv->scanned_queue);
+	struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
+	struct __queue *queue = &(pmlmepriv->scanned_queue);
 	u8 ret = _SUCCESS;
 
 	spin_lock_bh(&(pmlmepriv->scanned_queue.lock));
@@ -59,9 +58,11 @@ u8 rtw_do_join(struct adapter *padapter)
 		/* when set_ssid/set_bssid for rtw_do_join(), but scanning queue is empty */
 		/* we try to issue sitesurvey firstly */
 
-		if (!pmlmepriv->link_detect_info.busy_traffic || rtw_to_roam(padapter) > 0) {
+		if (!pmlmepriv->link_detect_info.busy_traffic ||
+		    rtw_to_roam(padapter) > 0) {
 			/*  submit site_survey_cmd */
-			ret = rtw_sitesurvey_cmd(padapter, &pmlmepriv->assoc_ssid, 1, NULL, 0);
+			ret = rtw_sitesurvey_cmd(
+				padapter, &pmlmepriv->assoc_ssid, 1, NULL, 0);
 			if (ret != _SUCCESS)
 				pmlmepriv->to_join = false;
 
@@ -84,20 +85,24 @@ u8 rtw_do_join(struct adapter *padapter)
 				/*  submit createbss_cmd to change to a ADHOC_MASTER */
 
 				/* pmlmepriv->lock has been acquired by caller... */
-				struct wlan_bssid_ex    *pdev_network = &(padapter->registrypriv.dev_network);
+				struct wlan_bssid_ex *pdev_network =
+					&(padapter->registrypriv.dev_network);
 
 				pmlmepriv->fw_state = WIFI_ADHOC_MASTER_STATE;
 
-				pibss = padapter->registrypriv.dev_network.mac_address;
+				pibss = padapter->registrypriv.dev_network
+						.mac_address;
 
-				memcpy(&pdev_network->ssid, &pmlmepriv->assoc_ssid, sizeof(struct ndis_802_11_ssid));
+				memcpy(&pdev_network->ssid,
+				       &pmlmepriv->assoc_ssid,
+				       sizeof(struct ndis_802_11_ssid));
 
 				rtw_update_registrypriv_dev_network(padapter);
 
 				rtw_generate_random_ibss(pibss);
 
 				if (rtw_createbss_cmd(padapter) != _SUCCESS) {
-					ret =  false;
+					ret = false;
 					goto exit;
 				}
 
@@ -111,7 +116,10 @@ u8 rtw_do_join(struct adapter *padapter)
 				/* we try to issue sitesurvey firstly */
 				if (!pmlmepriv->link_detect_info.busy_traffic ||
 				    rtw_to_roam(padapter) > 0) {
-					ret = rtw_sitesurvey_cmd(padapter, &pmlmepriv->assoc_ssid, 1, NULL, 0);
+					ret = rtw_sitesurvey_cmd(
+						padapter,
+						&pmlmepriv->assoc_ssid, 1, NULL,
+						0);
 					if (ret != _SUCCESS)
 						pmlmepriv->to_join = false;
 
@@ -151,26 +159,35 @@ u8 rtw_set_802_11_ssid(struct adapter *padapter, struct ndis_802_11_ssid *ssid)
 
 	if (check_fwstate(pmlmepriv, _FW_LINKED | WIFI_ADHOC_MASTER_STATE)) {
 		if ((pmlmepriv->assoc_ssid.ssid_length == ssid->ssid_length) &&
-		    (!memcmp(&pmlmepriv->assoc_ssid.ssid, ssid->ssid, ssid->ssid_length))) {
+		    (!memcmp(&pmlmepriv->assoc_ssid.ssid, ssid->ssid,
+			     ssid->ssid_length))) {
 			if (!check_fwstate(pmlmepriv, WIFI_STATION_STATE)) {
 				if (!rtw_is_same_ibss(padapter, pnetwork)) {
 					/* if in WIFI_ADHOC_MASTER_STATE | WIFI_ADHOC_STATE, create bss or rejoin again */
 					rtw_disassoc_cmd(padapter, 0, true);
 
-					if (check_fwstate(pmlmepriv, _FW_LINKED))
-						rtw_indicate_disconnect(padapter);
+					if (check_fwstate(pmlmepriv,
+							  _FW_LINKED))
+						rtw_indicate_disconnect(
+							padapter);
 
 					rtw_free_assoc_resources(padapter, 1);
 
-					if (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE)) {
-						_clr_fwstate_(pmlmepriv, WIFI_ADHOC_MASTER_STATE);
-						set_fwstate(pmlmepriv, WIFI_ADHOC_STATE);
+					if (check_fwstate(
+						    pmlmepriv,
+						    WIFI_ADHOC_MASTER_STATE)) {
+						_clr_fwstate_(
+							pmlmepriv,
+							WIFI_ADHOC_MASTER_STATE);
+						set_fwstate(pmlmepriv,
+							    WIFI_ADHOC_STATE);
 					}
 				} else {
-					goto release_mlme_lock;/* it means driver is in WIFI_ADHOC_MASTER_STATE, we needn't create bss again. */
+					goto release_mlme_lock; /* it means driver is in WIFI_ADHOC_MASTER_STATE, we needn't create bss again. */
 				}
 			} else {
-				rtw_lps_ctrl_wk_cmd(padapter, LPS_CTRL_JOINBSS, 1);
+				rtw_lps_ctrl_wk_cmd(padapter, LPS_CTRL_JOINBSS,
+						    1);
 			}
 		} else {
 			rtw_disassoc_cmd(padapter, 0, true);
@@ -181,7 +198,8 @@ u8 rtw_set_802_11_ssid(struct adapter *padapter, struct ndis_802_11_ssid *ssid)
 			rtw_free_assoc_resources(padapter, 1);
 
 			if (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE)) {
-				_clr_fwstate_(pmlmepriv, WIFI_ADHOC_MASTER_STATE);
+				_clr_fwstate_(pmlmepriv,
+					      WIFI_ADHOC_MASTER_STATE);
 				set_fwstate(pmlmepriv, WIFI_ADHOC_STATE);
 			}
 		}
@@ -214,7 +232,8 @@ u8 rtw_set_802_11_ssid(struct adapter *padapter, struct ndis_802_11_ssid *ssid)
 	return status;
 }
 
-u8 rtw_set_802_11_connect(struct adapter *padapter, u8 *bssid, struct ndis_802_11_ssid *ssid)
+u8 rtw_set_802_11_connect(struct adapter *padapter, u8 *bssid,
+			  struct ndis_802_11_ssid *ssid)
 {
 	u8 status = _SUCCESS;
 	bool bssid_valid = true;
@@ -254,9 +273,11 @@ u8 rtw_set_802_11_connect(struct adapter *padapter, u8 *bssid, struct ndis_802_1
 	}
 
 	if (ssid && ssid_valid)
-		memcpy(&pmlmepriv->assoc_ssid, ssid, sizeof(struct ndis_802_11_ssid));
+		memcpy(&pmlmepriv->assoc_ssid, ssid,
+		       sizeof(struct ndis_802_11_ssid));
 	else
-		memset(&pmlmepriv->assoc_ssid, 0, sizeof(struct ndis_802_11_ssid));
+		memset(&pmlmepriv->assoc_ssid, 0,
+		       sizeof(struct ndis_802_11_ssid));
 
 	if (bssid && bssid_valid) {
 		memcpy(&pmlmepriv->assoc_bssid, bssid, ETH_ALEN);
@@ -277,12 +298,14 @@ u8 rtw_set_802_11_connect(struct adapter *padapter, u8 *bssid, struct ndis_802_1
 	return status;
 }
 
-u8 rtw_set_802_11_infrastructure_mode(struct adapter *padapter,
+u8 rtw_set_802_11_infrastructure_mode(
+	struct adapter *padapter,
 	enum ndis_802_11_network_infrastructure networktype)
 {
-	struct	mlme_priv *pmlmepriv = &padapter->mlmepriv;
-	struct	wlan_network	*cur_network = &pmlmepriv->cur_network;
-	enum ndis_802_11_network_infrastructure *pold_state = &(cur_network->network.infrastructure_mode);
+	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
+	struct wlan_network *cur_network = &pmlmepriv->cur_network;
+	enum ndis_802_11_network_infrastructure *pold_state =
+		&(cur_network->network.infrastructure_mode);
 
 	if (*pold_state != networktype) {
 		if (*pold_state == Ndis802_11APMode) {
@@ -294,16 +317,19 @@ u8 rtw_set_802_11_infrastructure_mode(struct adapter *padapter,
 
 		spin_lock_bh(&pmlmepriv->lock);
 
-		if (check_fwstate(pmlmepriv, _FW_LINKED) || (*pold_state == Ndis802_11IBSS))
+		if (check_fwstate(pmlmepriv, _FW_LINKED) ||
+		    (*pold_state == Ndis802_11IBSS))
 			rtw_disassoc_cmd(padapter, 0, true);
 
 		if (check_fwstate(pmlmepriv, _FW_LINKED) ||
 		    check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE))
 			rtw_free_assoc_resources(padapter, 1);
 
-		if ((*pold_state == Ndis802_11Infrastructure) || (*pold_state == Ndis802_11IBSS)) {
+		if ((*pold_state == Ndis802_11Infrastructure) ||
+		    (*pold_state == Ndis802_11IBSS)) {
 			if (check_fwstate(pmlmepriv, _FW_LINKED))
-				rtw_indicate_disconnect(padapter); /* will clr Linked_state; before this function, we must have checked whether issue dis-assoc_cmd or not */
+				rtw_indicate_disconnect(
+					padapter); /* will clr Linked_state; before this function, we must have checked whether issue dis-assoc_cmd or not */
 		}
 
 		*pold_state = networktype;
@@ -357,7 +383,9 @@ u8 rtw_set_802_11_disassociate(struct adapter *padapter)
 	return true;
 }
 
-u8 rtw_set_802_11_bssid_list_scan(struct adapter *padapter, struct ndis_802_11_ssid *pssid, int ssid_max_num)
+u8 rtw_set_802_11_bssid_list_scan(struct adapter *padapter,
+				  struct ndis_802_11_ssid *pssid,
+				  int ssid_max_num)
 {
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	u8 res = true;
@@ -382,7 +410,8 @@ u8 rtw_set_802_11_bssid_list_scan(struct adapter *padapter, struct ndis_802_11_s
 
 		spin_lock_bh(&pmlmepriv->lock);
 
-		res = rtw_sitesurvey_cmd(padapter, pssid, ssid_max_num, NULL, 0);
+		res = rtw_sitesurvey_cmd(padapter, pssid, ssid_max_num, NULL,
+					 0);
 
 		spin_unlock_bh(&pmlmepriv->lock);
 	}
@@ -391,7 +420,8 @@ u8 rtw_set_802_11_bssid_list_scan(struct adapter *padapter, struct ndis_802_11_s
 	return res;
 }
 
-u8 rtw_set_802_11_authentication_mode(struct adapter *padapter, enum ndis_802_11_authentication_mode authmode)
+u8 rtw_set_802_11_authentication_mode(
+	struct adapter *padapter, enum ndis_802_11_authentication_mode authmode)
 {
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	int res;
@@ -414,7 +444,7 @@ u8 rtw_set_802_11_authentication_mode(struct adapter *padapter, enum ndis_802_11
 
 u8 rtw_set_802_11_add_wep(struct adapter *padapter, struct ndis_802_11_wep *wep)
 {
-	signed int		keyid, res;
+	signed int keyid, res;
 	struct security_priv *psecuritypriv = &(padapter->securitypriv);
 	u8 ret = _SUCCESS;
 
@@ -437,7 +467,8 @@ u8 rtw_set_802_11_add_wep(struct adapter *padapter, struct ndis_802_11_wep *wep)
 		break;
 	}
 
-	memcpy(&(psecuritypriv->dot11DefKey[keyid].skey[0]), &(wep->key_material), wep->key_length);
+	memcpy(&(psecuritypriv->dot11DefKey[keyid].skey[0]),
+	       &(wep->key_material), wep->key_length);
 
 	psecuritypriv->dot11DefKeylen[keyid] = wep->key_length;
 
@@ -460,10 +491,10 @@ u8 rtw_set_802_11_add_wep(struct adapter *padapter, struct ndis_802_11_wep *wep)
  */
 u16 rtw_get_cur_max_rate(struct adapter *adapter)
 {
-	int	i = 0;
+	int i = 0;
 	u16 rate = 0, max_rate = 0;
 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
-	struct wlan_bssid_ex	*pcur_bss = &pmlmepriv->cur_network.network;
+	struct wlan_bssid_ex *pcur_bss = &pmlmepriv->cur_network.network;
 	struct sta_info *psta = NULL;
 	u8 short_GI = 0;
 
@@ -478,18 +509,19 @@ u16 rtw_get_cur_max_rate(struct adapter *adapter)
 	short_GI = query_ra_short_GI(psta);
 
 	if (is_supported_ht(psta->wireless_mode)) {
-		max_rate = rtw_mcs_rate(psta->bw_mode == CHANNEL_WIDTH_40 ? 1 : 0,
-					short_GI,
-					psta->htpriv.ht_cap.mcs.rx_mask);
+		max_rate =
+			rtw_mcs_rate(psta->bw_mode == CHANNEL_WIDTH_40 ? 1 : 0,
+				     short_GI, psta->htpriv.ht_cap.mcs.rx_mask);
 	} else {
-		while ((pcur_bss->supported_rates[i] != 0) && (pcur_bss->supported_rates[i] != 0xFF)) {
-			rate = pcur_bss->supported_rates[i]&0x7F;
+		while ((pcur_bss->supported_rates[i] != 0) &&
+		       (pcur_bss->supported_rates[i] != 0xFF)) {
+			rate = pcur_bss->supported_rates[i] & 0x7F;
 			if (rate > max_rate)
 				max_rate = rate;
 			i++;
 		}
 
-		max_rate = max_rate*10/2;
+		max_rate = max_rate * 10 / 2;
 	}
 
 	return max_rate;
diff --git a/drivers/staging/rtl8723bs/core/rtw_mlme.c b/drivers/staging/rtl8723bs/core/rtw_mlme.c
index 1196ec011455b..6a8a67206a88f 100644
--- a/drivers/staging/rtl8723bs/core/rtw_mlme.c
+++ b/drivers/staging/rtl8723bs/core/rtw_mlme.c
@@ -29,30 +29,33 @@ static void _rtw_set_scan_deny_timer_hdl(struct timer_list *t)
 
 static void rtw_init_mlme_timer(struct adapter *padapter)
 {
-	struct	mlme_priv *pmlmepriv = &padapter->mlmepriv;
+	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 
 	timer_setup(&pmlmepriv->assoc_timer, _rtw_join_timeout_handler, 0);
 	timer_setup(&pmlmepriv->scan_to_timer, rtw_scan_timeout_handler, 0);
-	timer_setup(&pmlmepriv->dynamic_chk_timer,
-		    _dynamic_check_timer_handler, 0);
+	timer_setup(&pmlmepriv->dynamic_chk_timer, _dynamic_check_timer_handler,
+		    0);
 	timer_setup(&pmlmepriv->set_scan_deny_timer,
 		    _rtw_set_scan_deny_timer_hdl, 0);
 }
 
-int	rtw_init_mlme_priv(struct adapter *padapter)
+int rtw_init_mlme_priv(struct adapter *padapter)
 {
-	int	i;
+	int i;
 	u8 *pbuf;
-	struct wlan_network	*pnetwork;
-	struct mlme_priv	*pmlmepriv = &padapter->mlmepriv;
-	int	res = _SUCCESS;
+	struct wlan_network *pnetwork;
+	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
+	int res = _SUCCESS;
 
 	pmlmepriv->nic_hdl = (u8 *)padapter;
 
 	pmlmepriv->pscanned = NULL;
-	pmlmepriv->fw_state = WIFI_STATION_STATE; /*  Must sync with rtw_wdev_alloc() */
-	pmlmepriv->cur_network.network.infrastructure_mode = Ndis802_11AutoUnknown;
-	pmlmepriv->scan_mode = SCAN_ACTIVE;/*  1: active, 0: passive. Maybe someday we should rename this varable to "active_mode" (Jeff) */
+	pmlmepriv->fw_state =
+		WIFI_STATION_STATE; /*  Must sync with rtw_wdev_alloc() */
+	pmlmepriv->cur_network.network.infrastructure_mode =
+		Ndis802_11AutoUnknown;
+	pmlmepriv->scan_mode =
+		SCAN_ACTIVE; /*  1: active, 0: passive. Maybe someday we should rename this varable to "active_mode" (Jeff) */
 
 	spin_lock_init(&pmlmepriv->lock);
 	INIT_LIST_HEAD(&pmlmepriv->free_bss_pool.queue);
@@ -84,14 +87,11 @@ int	rtw_init_mlme_priv(struct adapter *padapter)
 
 	rtw_clear_scan_deny(padapter);
 
-	#define RTW_ROAM_SCAN_RESULT_EXP_MS 5000
-	#define RTW_ROAM_RSSI_DIFF_TH 10
-	#define RTW_ROAM_SCAN_INTERVAL_MS 10000
+#define RTW_ROAM_SCAN_RESULT_EXP_MS 5000
+#define RTW_ROAM_RSSI_DIFF_TH 10
+#define RTW_ROAM_SCAN_INTERVAL_MS 10000
 
-	pmlmepriv->roam_flags = 0
-		| RTW_ROAM_ON_EXPIRED
-		| RTW_ROAM_ON_RESUME
-		;
+	pmlmepriv->roam_flags = 0 | RTW_ROAM_ON_EXPIRED | RTW_ROAM_ON_RESUME;
 
 	pmlmepriv->roam_scanr_exp_ms = RTW_ROAM_SCAN_RESULT_EXP_MS;
 	pmlmepriv->roam_rssi_diff_th = RTW_ROAM_RSSI_DIFF_TH;
@@ -117,16 +117,25 @@ void rtw_free_mlme_priv_ie_data(struct mlme_priv *pmlmepriv)
 {
 	rtw_buf_free(&pmlmepriv->assoc_req, &pmlmepriv->assoc_req_len);
 	rtw_buf_free(&pmlmepriv->assoc_rsp, &pmlmepriv->assoc_rsp_len);
-	rtw_free_mlme_ie_data(&pmlmepriv->wps_beacon_ie, &pmlmepriv->wps_beacon_ie_len);
-	rtw_free_mlme_ie_data(&pmlmepriv->wps_probe_req_ie, &pmlmepriv->wps_probe_req_ie_len);
-	rtw_free_mlme_ie_data(&pmlmepriv->wps_probe_resp_ie, &pmlmepriv->wps_probe_resp_ie_len);
-	rtw_free_mlme_ie_data(&pmlmepriv->wps_assoc_resp_ie, &pmlmepriv->wps_assoc_resp_ie_len);
-
-	rtw_free_mlme_ie_data(&pmlmepriv->p2p_beacon_ie, &pmlmepriv->p2p_beacon_ie_len);
-	rtw_free_mlme_ie_data(&pmlmepriv->p2p_probe_req_ie, &pmlmepriv->p2p_probe_req_ie_len);
-	rtw_free_mlme_ie_data(&pmlmepriv->p2p_probe_resp_ie, &pmlmepriv->p2p_probe_resp_ie_len);
-	rtw_free_mlme_ie_data(&pmlmepriv->p2p_go_probe_resp_ie, &pmlmepriv->p2p_go_probe_resp_ie_len);
-	rtw_free_mlme_ie_data(&pmlmepriv->p2p_assoc_req_ie, &pmlmepriv->p2p_assoc_req_ie_len);
+	rtw_free_mlme_ie_data(&pmlmepriv->wps_beacon_ie,
+			      &pmlmepriv->wps_beacon_ie_len);
+	rtw_free_mlme_ie_data(&pmlmepriv->wps_probe_req_ie,
+			      &pmlmepriv->wps_probe_req_ie_len);
+	rtw_free_mlme_ie_data(&pmlmepriv->wps_probe_resp_ie,
+			      &pmlmepriv->wps_probe_resp_ie_len);
+	rtw_free_mlme_ie_data(&pmlmepriv->wps_assoc_resp_ie,
+			      &pmlmepriv->wps_assoc_resp_ie_len);
+
+	rtw_free_mlme_ie_data(&pmlmepriv->p2p_beacon_ie,
+			      &pmlmepriv->p2p_beacon_ie_len);
+	rtw_free_mlme_ie_data(&pmlmepriv->p2p_probe_req_ie,
+			      &pmlmepriv->p2p_probe_req_ie_len);
+	rtw_free_mlme_ie_data(&pmlmepriv->p2p_probe_resp_ie,
+			      &pmlmepriv->p2p_probe_resp_ie_len);
+	rtw_free_mlme_ie_data(&pmlmepriv->p2p_go_probe_resp_ie,
+			      &pmlmepriv->p2p_go_probe_resp_ie_len);
+	rtw_free_mlme_ie_data(&pmlmepriv->p2p_assoc_req_ie,
+			      &pmlmepriv->p2p_assoc_req_ie_len);
 }
 
 void _rtw_free_mlme_priv(struct mlme_priv *pmlmepriv)
@@ -137,9 +146,9 @@ void _rtw_free_mlme_priv(struct mlme_priv *pmlmepriv)
 	}
 }
 
-struct	wlan_network *rtw_alloc_network(struct	mlme_priv *pmlmepriv)
+struct wlan_network *rtw_alloc_network(struct mlme_priv *pmlmepriv)
 {
-	struct	wlan_network	*pnetwork;
+	struct wlan_network *pnetwork;
 	struct __queue *free_queue = &pmlmepriv->free_bss_pool;
 	struct list_head *plist = NULL;
 
@@ -167,7 +176,8 @@ struct	wlan_network *rtw_alloc_network(struct	mlme_priv *pmlmepriv)
 	return pnetwork;
 }
 
-void _rtw_free_network(struct	mlme_priv *pmlmepriv, struct wlan_network *pnetwork, u8 isfreeall)
+void _rtw_free_network(struct mlme_priv *pmlmepriv,
+		       struct wlan_network *pnetwork, u8 isfreeall)
 {
 	unsigned int delta_time;
 	u32 lifetime = SCANQUEUE_LIFETIME;
@@ -185,7 +195,7 @@ void _rtw_free_network(struct	mlme_priv *pmlmepriv, struct wlan_network *pnetwor
 
 	if (!isfreeall) {
 		delta_time = jiffies_to_msecs(jiffies - pnetwork->last_scanned);
-		if (delta_time < lifetime)/*  unit:msec */
+		if (delta_time < lifetime) /*  unit:msec */
 			return;
 	}
 
@@ -198,7 +208,8 @@ void _rtw_free_network(struct	mlme_priv *pmlmepriv, struct wlan_network *pnetwor
 	spin_unlock_bh(&free_queue->lock);
 }
 
-void _rtw_free_network_nolock(struct	mlme_priv *pmlmepriv, struct wlan_network *pnetwork)
+void _rtw_free_network_nolock(struct mlme_priv *pmlmepriv,
+			      struct wlan_network *pnetwork)
 {
 	struct __queue *free_queue = &pmlmepriv->free_bss_pool;
 
@@ -220,8 +231,8 @@ void _rtw_free_network_nolock(struct	mlme_priv *pmlmepriv, struct wlan_network *
  */
 struct wlan_network *_rtw_find_network(struct __queue *scanned_queue, u8 *addr)
 {
-	struct list_head	*phead, *plist;
-	struct	wlan_network *pnetwork = NULL;
+	struct list_head *phead, *plist;
+	struct wlan_network *pnetwork = NULL;
 
 	if (is_zero_ether_addr(addr)) {
 		pnetwork = NULL;
@@ -265,7 +276,7 @@ void rtw_free_network_queue(struct adapter *padapter, u8 isfreeall)
 bool rtw_if_up(struct adapter *padapter)
 {
 	if (padapter->bDriverStopped || padapter->bSurpriseRemoved ||
-		!check_fwstate(&padapter->mlmepriv, _FW_LINKED))
+	    !check_fwstate(&padapter->mlmepriv, _FW_LINKED))
 		return false;
 
 	return true;
@@ -275,12 +286,12 @@ void rtw_generate_random_ibss(u8 *pibss)
 {
 	unsigned long curtime = jiffies;
 
-	pibss[0] = 0x02;  /* in ad-hoc mode bit1 must set to 1 */
+	pibss[0] = 0x02; /* in ad-hoc mode bit1 must set to 1 */
 	pibss[1] = 0x11;
 	pibss[2] = 0x87;
-	pibss[3] = (u8)(curtime & 0xff) ;/* p[0]; */
-	pibss[4] = (u8)((curtime >> 8) & 0xff) ;/* p[1]; */
-	pibss[5] = (u8)((curtime >> 16) & 0xff) ;/* p[2]; */
+	pibss[3] = (u8)(curtime & 0xff); /* p[0]; */
+	pibss[4] = (u8)((curtime >> 8) & 0xff); /* p[1]; */
+	pibss[5] = (u8)((curtime >> 16) & 0xff); /* p[2]; */
 }
 
 u8 *rtw_get_capability_from_ie(u8 *ie)
@@ -290,7 +301,7 @@ u8 *rtw_get_capability_from_ie(u8 *ie)
 
 u16 rtw_get_capability(struct wlan_bssid_ex *bss)
 {
-	__le16	val;
+	__le16 val;
 
 	memcpy((u8 *)&val, rtw_get_capability_from_ie(bss->ies), 2);
 
@@ -307,8 +318,10 @@ void rtw_free_mlme_priv(struct mlme_priv *pmlmepriv)
 	_rtw_free_mlme_priv(pmlmepriv);
 }
 
-void rtw_free_network_nolock(struct adapter *padapter, struct wlan_network *pnetwork);
-void rtw_free_network_nolock(struct adapter *padapter, struct wlan_network *pnetwork)
+void rtw_free_network_nolock(struct adapter *padapter,
+			     struct wlan_network *pnetwork);
+void rtw_free_network_nolock(struct adapter *padapter,
+			     struct wlan_network *pnetwork)
 {
 	_rtw_free_network_nolock(&padapter->mlmepriv, pnetwork);
 	rtw_cfg80211_unlink_bss(padapter, pnetwork);
@@ -319,9 +332,9 @@ void rtw_free_network_nolock(struct adapter *padapter, struct wlan_network *pnet
  *
  * Shall be called under atomic context... to avoid possible racing condition...
  */
-struct	wlan_network *rtw_find_network(struct __queue *scanned_queue, u8 *addr)
+struct wlan_network *rtw_find_network(struct __queue *scanned_queue, u8 *addr)
 {
-	struct	wlan_network *pnetwork = _rtw_find_network(scanned_queue, addr);
+	struct wlan_network *pnetwork = _rtw_find_network(scanned_queue, addr);
 
 	return pnetwork;
 }
@@ -331,7 +344,7 @@ bool rtw_is_same_ibss(struct adapter *adapter, struct wlan_network *pnetwork)
 	struct security_priv *psecuritypriv = &adapter->securitypriv;
 
 	if ((psecuritypriv->dot11PrivacyAlgrthm != _NO_PRIVACY_) &&
-		    (pnetwork->network.privacy == 0))
+	    (pnetwork->network.privacy == 0))
 		return false;
 	else if ((psecuritypriv->dot11PrivacyAlgrthm == _NO_PRIVACY_) &&
 		 (pnetwork->network.privacy == 1))
@@ -342,11 +355,12 @@ bool rtw_is_same_ibss(struct adapter *adapter, struct wlan_network *pnetwork)
 
 inline int is_same_ess(struct wlan_bssid_ex *a, struct wlan_bssid_ex *b)
 {
-	return (a->ssid.ssid_length == b->ssid.ssid_length)
-		&&  !memcmp(a->ssid.ssid, b->ssid.ssid, a->ssid.ssid_length);
+	return (a->ssid.ssid_length == b->ssid.ssid_length) &&
+	       !memcmp(a->ssid.ssid, b->ssid.ssid, a->ssid.ssid_length);
 }
 
-int is_same_network(struct wlan_bssid_ex *src, struct wlan_bssid_ex *dst, u8 feature)
+int is_same_network(struct wlan_bssid_ex *src, struct wlan_bssid_ex *dst,
+		    u8 feature)
 {
 	u16 s_cap, d_cap;
 	__le16 tmps, tmpd;
@@ -358,15 +372,16 @@ int is_same_network(struct wlan_bssid_ex *src, struct wlan_bssid_ex *dst, u8 fea
 	d_cap = le16_to_cpu(tmpd);
 
 	return (src->ssid.ssid_length == dst->ssid.ssid_length) &&
-			((!memcmp(src->mac_address, dst->mac_address, ETH_ALEN))) &&
-			((!memcmp(src->ssid.ssid, dst->ssid.ssid, src->ssid.ssid_length))) &&
-			((s_cap & WLAN_CAPABILITY_IBSS) ==
-			(d_cap & WLAN_CAPABILITY_IBSS)) &&
-			((s_cap & WLAN_CAPABILITY_ESS) ==
-			(d_cap & WLAN_CAPABILITY_ESS));
+	       ((!memcmp(src->mac_address, dst->mac_address, ETH_ALEN))) &&
+	       ((!memcmp(src->ssid.ssid, dst->ssid.ssid,
+			 src->ssid.ssid_length))) &&
+	       ((s_cap & WLAN_CAPABILITY_IBSS) ==
+		(d_cap & WLAN_CAPABILITY_IBSS)) &&
+	       ((s_cap & WLAN_CAPABILITY_ESS) == (d_cap & WLAN_CAPABILITY_ESS));
 }
 
-struct wlan_network *_rtw_find_same_network(struct __queue *scanned_queue, struct wlan_network *network)
+struct wlan_network *_rtw_find_same_network(struct __queue *scanned_queue,
+					    struct wlan_network *network)
 {
 	struct list_head *phead, *plist;
 	struct wlan_network *found = NULL;
@@ -385,12 +400,12 @@ struct wlan_network *_rtw_find_same_network(struct __queue *scanned_queue, struc
 	return found;
 }
 
-struct	wlan_network	*rtw_get_oldest_wlan_network(struct __queue *scanned_queue)
+struct wlan_network *rtw_get_oldest_wlan_network(struct __queue *scanned_queue)
 {
-	struct list_head	*plist, *phead;
+	struct list_head *plist, *phead;
 
-	struct	wlan_network	*pwlan = NULL;
-	struct	wlan_network	*oldest = NULL;
+	struct wlan_network *pwlan = NULL;
+	struct wlan_network *oldest = NULL;
 
 	phead = get_list_head(scanned_queue);
 
@@ -398,7 +413,8 @@ struct	wlan_network	*rtw_get_oldest_wlan_network(struct __queue *scanned_queue)
 		pwlan = list_entry(plist, struct wlan_network, list);
 
 		if (!pwlan->fixed) {
-			if (!oldest || time_after(oldest->last_scanned, pwlan->last_scanned))
+			if (!oldest || time_after(oldest->last_scanned,
+						  pwlan->last_scanned))
 				oldest = pwlan;
 		}
 	}
@@ -406,7 +422,7 @@ struct	wlan_network	*rtw_get_oldest_wlan_network(struct __queue *scanned_queue)
 }
 
 void update_network(struct wlan_bssid_ex *dst, struct wlan_bssid_ex *src,
-	struct adapter *padapter, bool update_ie)
+		    struct adapter *padapter, bool update_ie)
 {
 	long rssi_ori = dst->rssi;
 
@@ -417,7 +433,8 @@ void update_network(struct wlan_bssid_ex *dst, struct wlan_bssid_ex *src,
 	long rssi_final;
 
 	/* The rule below is 1/5 for sample value, 4/5 for history value */
-	if (check_fwstate(&padapter->mlmepriv, _FW_LINKED) && is_same_network(&padapter->mlmepriv.cur_network.network, src, 0)) {
+	if (check_fwstate(&padapter->mlmepriv, _FW_LINKED) &&
+	    is_same_network(&padapter->mlmepriv.cur_network.network, src, 0)) {
 		/* Take the recvpriv's value for the connected AP*/
 		ss_final = padapter->recvpriv.signal_strength;
 		sq_final = padapter->recvpriv.signal_qual;
@@ -428,8 +445,12 @@ void update_network(struct wlan_bssid_ex *dst, struct wlan_bssid_ex *src,
 			rssi_final = rssi_ori;
 	} else {
 		if (sq_smp != 101) { /* from the right channel */
-			ss_final = ((u32)(src->phy_info.signal_strength) + (u32)(dst->phy_info.signal_strength) * 4) / 5;
-			sq_final = ((u32)(src->phy_info.signal_quality) + (u32)(dst->phy_info.signal_quality) * 4) / 5;
+			ss_final = ((u32)(src->phy_info.signal_strength) +
+				    (u32)(dst->phy_info.signal_strength) * 4) /
+				   5;
+			sq_final = ((u32)(src->phy_info.signal_quality) +
+				    (u32)(dst->phy_info.signal_quality) * 4) /
+				   5;
 			rssi_final = (src->rssi + dst->rssi * 4) / 5;
 		} else {
 			/* bss info not receiving from the right channel, use the original RX signal infos */
@@ -450,29 +471,38 @@ void update_network(struct wlan_bssid_ex *dst, struct wlan_bssid_ex *src,
 	dst->rssi = rssi_final;
 }
 
-static void update_current_network(struct adapter *adapter, struct wlan_bssid_ex *pnetwork)
+static void update_current_network(struct adapter *adapter,
+				   struct wlan_bssid_ex *pnetwork)
 {
-	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
+	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
 
-	if (check_fwstate(pmlmepriv, _FW_LINKED) && (is_same_network(&pmlmepriv->cur_network.network, pnetwork, 0))) {
-		update_network(&pmlmepriv->cur_network.network, pnetwork, adapter, true);
-		if (pmlmepriv->cur_network.network.ie_length < sizeof(struct ndis_802_11_fix_ie))
+	if (check_fwstate(pmlmepriv, _FW_LINKED) &&
+	    (is_same_network(&pmlmepriv->cur_network.network, pnetwork, 0))) {
+		update_network(&pmlmepriv->cur_network.network, pnetwork,
+			       adapter, true);
+		if (pmlmepriv->cur_network.network.ie_length <
+		    sizeof(struct ndis_802_11_fix_ie))
 			return;
 
-		rtw_update_protection(adapter, (pmlmepriv->cur_network.network.ies) + sizeof(struct ndis_802_11_fix_ie),
-								pmlmepriv->cur_network.network.ie_length - sizeof(struct ndis_802_11_fix_ie));
+		rtw_update_protection(
+			adapter,
+			(pmlmepriv->cur_network.network.ies) +
+				sizeof(struct ndis_802_11_fix_ie),
+			pmlmepriv->cur_network.network.ie_length -
+				sizeof(struct ndis_802_11_fix_ie));
 	}
 }
 
 /* Caller must hold pmlmepriv->lock first. */
-void rtw_update_scanned_network(struct adapter *adapter, struct wlan_bssid_ex *target)
+void rtw_update_scanned_network(struct adapter *adapter,
+				struct wlan_bssid_ex *target)
 {
-	struct list_head	*plist, *phead;
+	struct list_head *plist, *phead;
 	u32 bssid_ex_sz;
 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
-	struct __queue	*queue	= &pmlmepriv->scanned_queue;
-	struct wlan_network	*pnetwork = NULL;
-	struct wlan_network	*oldest = NULL;
+	struct __queue *queue = &pmlmepriv->scanned_queue;
+	struct wlan_network *pnetwork = NULL;
+	struct wlan_network *oldest = NULL;
 	int target_find = 0;
 	u8 feature = 0;
 
@@ -490,7 +520,8 @@ void rtw_update_scanned_network(struct adapter *adapter, struct wlan_bssid_ex *t
 			/* TODO: don't select network in the same ess as oldest if it's new enough*/
 		}
 
-		if (!oldest || time_after(oldest->last_scanned, pnetwork->last_scanned))
+		if (!oldest ||
+		    time_after(oldest->last_scanned, pnetwork->last_scanned))
 			oldest = pnetwork;
 	}
 
@@ -506,7 +537,8 @@ void rtw_update_scanned_network(struct adapter *adapter, struct wlan_bssid_ex *t
 			if (!pnetwork)
 				goto exit;
 
-			memcpy(&pnetwork->network, target,  get_wlan_bssid_ex_sz(target));
+			memcpy(&pnetwork->network, target,
+			       get_wlan_bssid_ex_sz(target));
 			/*  variable initialize */
 			pnetwork->fixed = false;
 			pnetwork->last_scanned = jiffies;
@@ -521,7 +553,8 @@ void rtw_update_scanned_network(struct adapter *adapter, struct wlan_bssid_ex *t
 		} else {
 			/* Otherwise just pull from the free list */
 
-			pnetwork = rtw_alloc_network(pmlmepriv); /*  will update scan_time */
+			pnetwork = rtw_alloc_network(
+				pmlmepriv); /*  will update scan_time */
 
 			if (!pnetwork)
 				goto exit;
@@ -548,7 +581,8 @@ void rtw_update_scanned_network(struct adapter *adapter, struct wlan_bssid_ex *t
 		pnetwork->last_scanned = jiffies;
 
 		/* target.reserved[0]== 1, means that scanned network is a bcn frame. */
-		if (pnetwork->network.ie_length > target->ie_length && target->reserved[0] == 1)
+		if (pnetwork->network.ie_length > target->ie_length &&
+		    target->reserved[0] == 1)
 			update_ie = false;
 
 		/*  probe resp(3) > beacon(1) > probe req(2) */
@@ -581,7 +615,8 @@ void rtw_add_network(struct adapter *adapter, struct wlan_bssid_ex *pnetwork)
  * (4) HT
  * (5) others
  */
-static bool rtw_is_desired_network(struct adapter *adapter, struct wlan_network *pnetwork)
+static bool rtw_is_desired_network(struct adapter *adapter,
+				   struct wlan_network *pnetwork)
 {
 	struct security_priv *psecuritypriv = &adapter->securitypriv;
 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
@@ -596,24 +631,33 @@ static bool rtw_is_desired_network(struct adapter *adapter, struct wlan_network
 	if (check_fwstate(pmlmepriv, WIFI_UNDER_WPS)) {
 		if (pnetwork->network.ie_length < _FIXED_IE_LENGTH_)
 			return false;
-		if (rtw_get_wps_ie(pnetwork->network.ies + _FIXED_IE_LENGTH_, pnetwork->network.ie_length - _FIXED_IE_LENGTH_, NULL, &wps_ielen))
+		if (rtw_get_wps_ie(pnetwork->network.ies + _FIXED_IE_LENGTH_,
+				   pnetwork->network.ie_length -
+					   _FIXED_IE_LENGTH_,
+				   NULL, &wps_ielen))
 			return true;
 		else
 			return false;
 	}
 
-	if (adapter->registrypriv.wifi_spec == 1) { /* for  correct flow of 8021X  to do.... */
+	if (adapter->registrypriv.wifi_spec ==
+	    1) { /* for  correct flow of 8021X  to do.... */
 		u8 *p = NULL;
 		uint ie_len = 0;
 
-		if ((desired_encmode == Ndis802_11EncryptionDisabled) && (privacy != 0))
+		if ((desired_encmode == Ndis802_11EncryptionDisabled) &&
+		    (privacy != 0))
 			bselected = false;
 
 		if (psecuritypriv->ndisauthtype == Ndis802_11AuthModeWPA2PSK) {
 			if (pnetwork->network.ie_length < _BEACON_IE_OFFSET_) {
 				bselected = false;
 			} else {
-				p = rtw_get_ie(pnetwork->network.ies + _BEACON_IE_OFFSET_, WLAN_EID_RSN, &ie_len, (pnetwork->network.ie_length - _BEACON_IE_OFFSET_));
+				p = rtw_get_ie(pnetwork->network.ies +
+						       _BEACON_IE_OFFSET_,
+					       WLAN_EID_RSN, &ie_len,
+					       (pnetwork->network.ie_length -
+						_BEACON_IE_OFFSET_));
 				if (p && ie_len > 0)
 					bselected = true;
 				else
@@ -626,7 +670,8 @@ static bool rtw_is_desired_network(struct adapter *adapter, struct wlan_network
 		bselected = false;
 
 	if (check_fwstate(pmlmepriv, WIFI_ADHOC_STATE)) {
-		if (pnetwork->network.infrastructure_mode != pmlmepriv->cur_network.network.infrastructure_mode)
+		if (pnetwork->network.infrastructure_mode !=
+		    pmlmepriv->cur_network.network.infrastructure_mode)
 			bselected = false;
 	}
 
@@ -634,15 +679,15 @@ static bool rtw_is_desired_network(struct adapter *adapter, struct wlan_network
 }
 
 /* TODO: Perry : For Power Management */
-void rtw_atimdone_event_callback(struct adapter	*adapter, u8 *pbuf)
+void rtw_atimdone_event_callback(struct adapter *adapter, u8 *pbuf)
 {
 }
 
-void rtw_survey_event_callback(struct adapter	*adapter, u8 *pbuf)
+void rtw_survey_event_callback(struct adapter *adapter, u8 *pbuf)
 {
 	u32 len;
 	struct wlan_bssid_ex *pnetwork;
-	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
+	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
 
 	pnetwork = (struct wlan_bssid_ex *)pbuf;
 
@@ -654,14 +699,18 @@ void rtw_survey_event_callback(struct adapter	*adapter, u8 *pbuf)
 
 	/*  update IBSS_network 's timestamp */
 	if (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE)) {
-		if (!memcmp(&pmlmepriv->cur_network.network.mac_address, pnetwork->mac_address, ETH_ALEN)) {
+		if (!memcmp(&pmlmepriv->cur_network.network.mac_address,
+			    pnetwork->mac_address, ETH_ALEN)) {
 			struct wlan_network *ibss_wlan = NULL;
 
-			memcpy(pmlmepriv->cur_network.network.ies, pnetwork->ies, 8);
+			memcpy(pmlmepriv->cur_network.network.ies,
+			       pnetwork->ies, 8);
 			spin_lock_bh(&pmlmepriv->scanned_queue.lock);
-			ibss_wlan = rtw_find_network(&pmlmepriv->scanned_queue,  pnetwork->mac_address);
+			ibss_wlan = rtw_find_network(&pmlmepriv->scanned_queue,
+						     pnetwork->mac_address);
 			if (ibss_wlan) {
-				memcpy(ibss_wlan->network.ies, pnetwork->ies, 8);
+				memcpy(ibss_wlan->network.ies, pnetwork->ies,
+				       8);
 				spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
 				goto exit;
 			}
@@ -681,9 +730,9 @@ void rtw_survey_event_callback(struct adapter	*adapter, u8 *pbuf)
 	spin_unlock_bh(&pmlmepriv->lock);
 }
 
-void rtw_surveydone_event_callback(struct adapter	*adapter, u8 *pbuf)
+void rtw_surveydone_event_callback(struct adapter *adapter, u8 *pbuf)
 {
-	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
+	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
 
 	spin_lock_bh(&pmlmepriv->lock);
 	if (pmlmepriv->wps_probe_req_ie) {
@@ -706,22 +755,33 @@ void rtw_surveydone_event_callback(struct adapter	*adapter, u8 *pbuf)
 			if (!check_fwstate(pmlmepriv, _FW_LINKED)) {
 				set_fwstate(pmlmepriv, _FW_UNDER_LINKING);
 
-				if (rtw_select_and_join_from_scanned_queue(pmlmepriv) == _SUCCESS) {
-					_set_timer(&pmlmepriv->assoc_timer, MAX_JOIN_TIMEOUT);
+				if (rtw_select_and_join_from_scanned_queue(
+					    pmlmepriv) == _SUCCESS) {
+					_set_timer(&pmlmepriv->assoc_timer,
+						   MAX_JOIN_TIMEOUT);
 				} else {
 					u8 ret = _SUCCESS;
-					struct wlan_bssid_ex    *pdev_network = &adapter->registrypriv.dev_network;
-					u8 *pibss = adapter->registrypriv.dev_network.mac_address;
+					struct wlan_bssid_ex *pdev_network =
+						&adapter->registrypriv
+							 .dev_network;
+					u8 *pibss =
+						adapter->registrypriv
+							.dev_network.mac_address;
 
 					/* pmlmepriv->fw_state ^= _FW_UNDER_SURVEY;because don't set assoc_timer */
-					_clr_fwstate_(pmlmepriv, _FW_UNDER_SURVEY);
+					_clr_fwstate_(pmlmepriv,
+						      _FW_UNDER_SURVEY);
 
-					memcpy(&pdev_network->ssid, &pmlmepriv->assoc_ssid, sizeof(struct ndis_802_11_ssid));
+					memcpy(&pdev_network->ssid,
+					       &pmlmepriv->assoc_ssid,
+					       sizeof(struct ndis_802_11_ssid));
 
-					rtw_update_registrypriv_dev_network(adapter);
+					rtw_update_registrypriv_dev_network(
+						adapter);
 					rtw_generate_random_ibss(pibss);
 
-					pmlmepriv->fw_state = WIFI_ADHOC_MASTER_STATE;
+					pmlmepriv->fw_state =
+						WIFI_ADHOC_MASTER_STATE;
 
 					pmlmepriv->to_join = false;
 
@@ -735,20 +795,27 @@ void rtw_surveydone_event_callback(struct adapter	*adapter, u8 *pbuf)
 
 			set_fwstate(pmlmepriv, _FW_UNDER_LINKING);
 			pmlmepriv->to_join = false;
-			s_ret = rtw_select_and_join_from_scanned_queue(pmlmepriv);
+			s_ret = rtw_select_and_join_from_scanned_queue(
+				pmlmepriv);
 			if (s_ret == _SUCCESS) {
-				_set_timer(&pmlmepriv->assoc_timer, MAX_JOIN_TIMEOUT);
-			} else if (s_ret == 2) {/* there is no need to wait for join */
+				_set_timer(&pmlmepriv->assoc_timer,
+					   MAX_JOIN_TIMEOUT);
+			} else if (s_ret ==
+				   2) { /* there is no need to wait for join */
 				_clr_fwstate_(pmlmepriv, _FW_UNDER_LINKING);
 				rtw_indicate_connect(adapter);
 			} else {
 				if (rtw_to_roam(adapter) != 0) {
 					if (rtw_dec_to_roam(adapter) == 0 ||
-					    rtw_sitesurvey_cmd(adapter, &pmlmepriv->assoc_ssid,
-							       1, NULL, 0) != _SUCCESS) {
+					    rtw_sitesurvey_cmd(
+						    adapter,
+						    &pmlmepriv->assoc_ssid, 1,
+						    NULL, 0) != _SUCCESS) {
 						rtw_set_to_roam(adapter, 0);
-						rtw_free_assoc_resources(adapter, 1);
-						rtw_indicate_disconnect(adapter);
+						rtw_free_assoc_resources(
+							adapter, 1);
+						rtw_indicate_disconnect(
+							adapter);
 					} else {
 						pmlmepriv->to_join = true;
 					}
@@ -760,11 +827,15 @@ void rtw_surveydone_event_callback(struct adapter	*adapter, u8 *pbuf)
 		}
 	} else {
 		if (rtw_chk_roam_flags(adapter, RTW_ROAM_ACTIVE)) {
-			if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)
-				&& check_fwstate(pmlmepriv, _FW_LINKED)) {
-				if (rtw_select_roaming_candidate(pmlmepriv) == _SUCCESS) {
-					receive_disconnect(adapter, pmlmepriv->cur_network.network.mac_address
-						, WLAN_REASON_ACTIVE_ROAM);
+			if (check_fwstate(pmlmepriv, WIFI_STATION_STATE) &&
+			    check_fwstate(pmlmepriv, _FW_LINKED)) {
+				if (rtw_select_roaming_candidate(pmlmepriv) ==
+				    _SUCCESS) {
+					receive_disconnect(
+						adapter,
+						pmlmepriv->cur_network.network
+							.mac_address,
+						WLAN_REASON_ACTIVE_ROAM);
 				}
 			}
 		}
@@ -788,11 +859,11 @@ void rtw_fwdbg_event_callback(struct adapter *adapter, u8 *pbuf)
 {
 }
 
-static void free_scanqueue(struct	mlme_priv *pmlmepriv)
+static void free_scanqueue(struct mlme_priv *pmlmepriv)
 {
 	struct __queue *free_queue = &pmlmepriv->free_bss_pool;
 	struct __queue *scan_queue = &pmlmepriv->scanned_queue;
-	struct list_head	*plist, *phead, *ptemp;
+	struct list_head *plist, *phead, *ptemp;
 
 	spin_lock_bh(&scan_queue->lock);
 	spin_lock_bh(&free_queue->lock);
@@ -814,10 +885,11 @@ static void free_scanqueue(struct	mlme_priv *pmlmepriv)
 static void find_network(struct adapter *adapter)
 {
 	struct wlan_network *pwlan = NULL;
-	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
+	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
 	struct wlan_network *tgt_network = &pmlmepriv->cur_network;
 
-	pwlan = rtw_find_network(&pmlmepriv->scanned_queue, tgt_network->network.mac_address);
+	pwlan = rtw_find_network(&pmlmepriv->scanned_queue,
+				 tgt_network->network.mac_address);
 	if (!pwlan)
 		return;
 
@@ -831,17 +903,20 @@ static void find_network(struct adapter *adapter)
 /* rtw_free_assoc_resources: the caller has to lock pmlmepriv->lock */
 void rtw_free_assoc_resources(struct adapter *adapter, int lock_scanned_queue)
 {
-	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
+	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
 	struct wlan_network *tgt_network = &pmlmepriv->cur_network;
 
 	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE | WIFI_AP_STATE)) {
 		struct sta_info *psta;
 
-		psta = rtw_get_stainfo(&adapter->stapriv, tgt_network->network.mac_address);
-		rtw_free_stainfo(adapter,  psta);
+		psta = rtw_get_stainfo(&adapter->stapriv,
+				       tgt_network->network.mac_address);
+		rtw_free_stainfo(adapter, psta);
 	}
 
-	if (check_fwstate(pmlmepriv, WIFI_ADHOC_STATE | WIFI_ADHOC_MASTER_STATE | WIFI_AP_STATE)) {
+	if (check_fwstate(pmlmepriv, WIFI_ADHOC_STATE |
+					     WIFI_ADHOC_MASTER_STATE |
+					     WIFI_AP_STATE)) {
 		struct sta_info *psta;
 
 		rtw_free_all_stainfo(adapter);
@@ -887,14 +962,15 @@ void rtw_indicate_connect(struct adapter *padapter)
 /* rtw_indicate_disconnect: the caller has to lock pmlmepriv->lock */
 void rtw_indicate_disconnect(struct adapter *padapter)
 {
-	struct	mlme_priv *pmlmepriv = &padapter->mlmepriv;
+	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 
 	_clr_fwstate_(pmlmepriv, _FW_UNDER_LINKING | WIFI_UNDER_WPS);
 
 	if (rtw_to_roam(padapter) > 0)
 		_clr_fwstate_(pmlmepriv, _FW_LINKED);
 
-	if (check_fwstate(&padapter->mlmepriv, _FW_LINKED) || rtw_to_roam(padapter) <= 0) {
+	if (check_fwstate(&padapter->mlmepriv, _FW_LINKED) ||
+	    rtw_to_roam(padapter) <= 0) {
 		/*  Do it first for tx broadcast pkt after disconnection issue! */
 		netif_carrier_off(padapter->pnetdev);
 
@@ -934,8 +1010,8 @@ void rtw_scan_abort(struct adapter *adapter)
 
 	start = jiffies;
 	pmlmeext->scan_abort = true;
-	while (check_fwstate(pmlmepriv, _FW_UNDER_SURVEY)
-		&& jiffies_to_msecs(start) <= 200) {
+	while (check_fwstate(pmlmepriv, _FW_UNDER_SURVEY) &&
+	       jiffies_to_msecs(start) <= 200) {
 		if (adapter->bDriverStopped || adapter->bSurpriseRemoved)
 			break;
 
@@ -948,7 +1024,9 @@ void rtw_scan_abort(struct adapter *adapter)
 	pmlmeext->scan_abort = false;
 }
 
-static struct sta_info *rtw_joinbss_update_stainfo(struct adapter *padapter, struct wlan_network *pnetwork)
+static struct sta_info *
+rtw_joinbss_update_stainfo(struct adapter *padapter,
+			   struct wlan_network *pnetwork)
 {
 	int i;
 	struct sta_info *bmc_sta, *psta = NULL;
@@ -958,17 +1036,20 @@ static struct sta_info *rtw_joinbss_update_stainfo(struct adapter *padapter, str
 
 	psta = rtw_get_stainfo(pstapriv, pnetwork->network.mac_address);
 	if (!psta)
-		psta = rtw_alloc_stainfo(pstapriv, pnetwork->network.mac_address);
+		psta = rtw_alloc_stainfo(pstapriv,
+					 pnetwork->network.mac_address);
 
 	if (psta) { /* update ptarget_sta */
 
-		psta->aid  = pnetwork->join_res;
+		psta->aid = pnetwork->join_res;
 
 		update_sta_info(padapter, psta);
 
 		/* update station supportRate */
-		psta->bssratelen = rtw_get_rateset_len(pnetwork->network.supported_rates);
-		memcpy(psta->bssrateset, pnetwork->network.supported_rates, psta->bssratelen);
+		psta->bssratelen =
+			rtw_get_rateset_len(pnetwork->network.supported_rates);
+		memcpy(psta->bssrateset, pnetwork->network.supported_rates,
+		       psta->bssratelen);
 		rtw_hal_update_sta_rate_mask(padapter, psta);
 
 		psta->wireless_mode = pmlmeext->cur_wireless_mode;
@@ -978,18 +1059,23 @@ static struct sta_info *rtw_joinbss_update_stainfo(struct adapter *padapter, str
 		rtw_hal_set_odm_var(padapter, HAL_ODM_STA_INFO, psta, true);
 
 		/* security related */
-		if (padapter->securitypriv.dot11AuthAlgrthm == dot11AuthAlgrthm_8021X) {
+		if (padapter->securitypriv.dot11AuthAlgrthm ==
+		    dot11AuthAlgrthm_8021X) {
 			padapter->securitypriv.binstallGrpkey = false;
 			padapter->securitypriv.busetkipkey = false;
 			padapter->securitypriv.bgrpkey_handshake = false;
 
 			psta->ieee8021x_blocked = true;
-			psta->dot118021XPrivacy = padapter->securitypriv.dot11PrivacyAlgrthm;
+			psta->dot118021XPrivacy =
+				padapter->securitypriv.dot11PrivacyAlgrthm;
 
-			memset((u8 *)&psta->dot118021x_UncstKey, 0, sizeof(union Keytype));
+			memset((u8 *)&psta->dot118021x_UncstKey, 0,
+			       sizeof(union Keytype));
 
-			memset((u8 *)&psta->dot11tkiprxmickey, 0, sizeof(union Keytype));
-			memset((u8 *)&psta->dot11tkiptxmickey, 0, sizeof(union Keytype));
+			memset((u8 *)&psta->dot11tkiprxmickey, 0,
+			       sizeof(union Keytype));
+			memset((u8 *)&psta->dot11tkiptxmickey, 0,
+			       sizeof(union Keytype));
 
 			memset((u8 *)&psta->dot11txpn, 0, sizeof(union pn48));
 			psta->dot11txpn.val = psta->dot11txpn.val + 1;
@@ -1007,22 +1093,24 @@ static struct sta_info *rtw_joinbss_update_stainfo(struct adapter *padapter, str
 		/* for A-MPDU Rx reordering buffer control for bmc_sta & sta_info */
 		/* if A-MPDU Rx is enabled, resetting  rx_ordering_ctrl wstart_b(indicate_seq) to default value = 0xffff */
 		/* todo: check if AP can send A-MPDU packets */
-		for (i = 0; i < 16 ; i++) {
+		for (i = 0; i < 16; i++) {
 			preorder_ctrl = &psta->recvreorder_ctrl[i];
 			preorder_ctrl->enable = false;
 			preorder_ctrl->indicate_seq = 0xffff;
 			preorder_ctrl->wend_b = 0xffff;
-			preorder_ctrl->wsize_b = 64;/* max_ampdu_sz;ex. 32(kbytes) -> wsize_b =32 */
+			preorder_ctrl->wsize_b =
+				64; /* max_ampdu_sz;ex. 32(kbytes) -> wsize_b =32 */
 		}
 
 		bmc_sta = rtw_get_bcmc_stainfo(padapter);
 		if (bmc_sta) {
-			for (i = 0; i < 16 ; i++) {
+			for (i = 0; i < 16; i++) {
 				preorder_ctrl = &bmc_sta->recvreorder_ctrl[i];
 				preorder_ctrl->enable = false;
 				preorder_ctrl->indicate_seq = 0xffff;
 				preorder_ctrl->wend_b = 0xffff;
-				preorder_ctrl->wsize_b = 64;/* max_ampdu_sz;ex. 32(kbytes) -> wsize_b =32 */
+				preorder_ctrl->wsize_b =
+					64; /* max_ampdu_sz;ex. 32(kbytes) -> wsize_b =32 */
 			}
 		}
 	}
@@ -1032,25 +1120,32 @@ static struct sta_info *rtw_joinbss_update_stainfo(struct adapter *padapter, str
 
 /* pnetwork : returns from rtw_joinbss_event_callback */
 /* ptarget_wlan: found from scanned_queue */
-static void rtw_joinbss_update_network(struct adapter *padapter, struct wlan_network *ptarget_wlan, struct wlan_network  *pnetwork)
+static void rtw_joinbss_update_network(struct adapter *padapter,
+				       struct wlan_network *ptarget_wlan,
+				       struct wlan_network *pnetwork)
 {
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
-	struct wlan_network  *cur_network = &pmlmepriv->cur_network;
+	struct wlan_network *cur_network = &pmlmepriv->cur_network;
 
 	/*  why not use ptarget_wlan?? */
-	memcpy(&cur_network->network, &pnetwork->network, pnetwork->network.length);
+	memcpy(&cur_network->network, &pnetwork->network,
+	       pnetwork->network.length);
 	/*  some ies in pnetwork is wrong, so we should use ptarget_wlan ies */
 	cur_network->network.ie_length = ptarget_wlan->network.ie_length;
-	memcpy(&cur_network->network.ies[0], &ptarget_wlan->network.ies[0], MAX_IE_SZ);
+	memcpy(&cur_network->network.ies[0], &ptarget_wlan->network.ies[0],
+	       MAX_IE_SZ);
 
 	cur_network->aid = pnetwork->join_res;
 
 	rtw_set_signal_stat_timer(&padapter->recvpriv);
 
-	padapter->recvpriv.signal_strength = ptarget_wlan->network.phy_info.signal_strength;
-	padapter->recvpriv.signal_qual = ptarget_wlan->network.phy_info.signal_quality;
+	padapter->recvpriv.signal_strength =
+		ptarget_wlan->network.phy_info.signal_strength;
+	padapter->recvpriv.signal_qual =
+		ptarget_wlan->network.phy_info.signal_quality;
 	/* the ptarget_wlan->network.rssi is raw data, we use ptarget_wlan->network.phy_info.signal_strength instead (has scaled) */
-	padapter->recvpriv.rssi = translate_percentage_to_dbm(ptarget_wlan->network.phy_info.signal_strength);
+	padapter->recvpriv.rssi = translate_percentage_to_dbm(
+		ptarget_wlan->network.phy_info.signal_strength);
 
 	rtw_set_signal_stat_timer(&padapter->recvpriv);
 
@@ -1058,30 +1153,36 @@ static void rtw_joinbss_update_network(struct adapter *padapter, struct wlan_net
 	switch (pnetwork->network.infrastructure_mode) {
 	case Ndis802_11Infrastructure:
 
-			if (pmlmepriv->fw_state & WIFI_UNDER_WPS)
-				pmlmepriv->fw_state = WIFI_STATION_STATE | WIFI_UNDER_WPS;
-			else
-				pmlmepriv->fw_state = WIFI_STATION_STATE;
+		if (pmlmepriv->fw_state & WIFI_UNDER_WPS)
+			pmlmepriv->fw_state = WIFI_STATION_STATE |
+					      WIFI_UNDER_WPS;
+		else
+			pmlmepriv->fw_state = WIFI_STATION_STATE;
 
-			break;
+		break;
 	case Ndis802_11IBSS:
-			pmlmepriv->fw_state = WIFI_ADHOC_STATE;
-			break;
+		pmlmepriv->fw_state = WIFI_ADHOC_STATE;
+		break;
 	default:
-			pmlmepriv->fw_state = WIFI_NULL_STATE;
-			break;
+		pmlmepriv->fw_state = WIFI_NULL_STATE;
+		break;
 	}
 
 	if (cur_network->network.ie_length < sizeof(struct ndis_802_11_fix_ie))
 		return;
 
-	rtw_update_protection(padapter, (cur_network->network.ies) + sizeof(struct ndis_802_11_fix_ie),
-									(cur_network->network.ie_length - sizeof(struct ndis_802_11_fix_ie)));
+	rtw_update_protection(padapter,
+			      (cur_network->network.ies) +
+				      sizeof(struct ndis_802_11_fix_ie),
+			      (cur_network->network.ie_length -
+			       sizeof(struct ndis_802_11_fix_ie)));
 
-	rtw_update_ht_cap(padapter, cur_network->network.ies, cur_network->network.ie_length, (u8) cur_network->network.configuration.ds_config);
+	rtw_update_ht_cap(padapter, cur_network->network.ies,
+			  cur_network->network.ie_length,
+			  (u8)cur_network->network.configuration.ds_config);
 }
 
-static struct rt_pmkid_list   backupPMKIDList[NUM_PMKID_CACHE];
+static struct rt_pmkid_list backupPMKIDList[NUM_PMKID_CACHE];
 void rtw_reset_securitypriv(struct adapter *adapter)
 {
 	u8 backupPMKIDIndex = 0;
@@ -1100,22 +1201,29 @@ void rtw_reset_securitypriv(struct adapter *adapter)
 		/*  Backup the btkip_countermeasure information. */
 		/*  When the countermeasure is trigger, the driver have to disconnect with AP for 60 seconds. */
 
-		memcpy(&backupPMKIDList[0], &adapter->securitypriv.PMKIDList[0], sizeof(struct rt_pmkid_list) * NUM_PMKID_CACHE);
+		memcpy(&backupPMKIDList[0], &adapter->securitypriv.PMKIDList[0],
+		       sizeof(struct rt_pmkid_list) * NUM_PMKID_CACHE);
 		backupPMKIDIndex = adapter->securitypriv.PMKIDIndex;
-		backupTKIPCountermeasure = adapter->securitypriv.btkip_countermeasure;
-		backupTKIPcountermeasure_time = adapter->securitypriv.btkip_countermeasure_time;
+		backupTKIPCountermeasure =
+			adapter->securitypriv.btkip_countermeasure;
+		backupTKIPcountermeasure_time =
+			adapter->securitypriv.btkip_countermeasure_time;
 
 		/* reset RX BIP packet number */
 		pmlmeext->mgnt_80211w_IPN_rx = 0;
 
-		memset((unsigned char *)&adapter->securitypriv, 0, sizeof(struct security_priv));
+		memset((unsigned char *)&adapter->securitypriv, 0,
+		       sizeof(struct security_priv));
 
 		/*  Added by Albert 2009/02/18 */
 		/*  Restore the PMK information to securitypriv structure for the following connection. */
-		memcpy(&adapter->securitypriv.PMKIDList[0], &backupPMKIDList[0], sizeof(struct rt_pmkid_list) * NUM_PMKID_CACHE);
+		memcpy(&adapter->securitypriv.PMKIDList[0], &backupPMKIDList[0],
+		       sizeof(struct rt_pmkid_list) * NUM_PMKID_CACHE);
 		adapter->securitypriv.PMKIDIndex = backupPMKIDIndex;
-		adapter->securitypriv.btkip_countermeasure = backupTKIPCountermeasure;
-		adapter->securitypriv.btkip_countermeasure_time = backupTKIPcountermeasure_time;
+		adapter->securitypriv.btkip_countermeasure =
+			backupTKIPCountermeasure;
+		adapter->securitypriv.btkip_countermeasure_time =
+			backupTKIPcountermeasure_time;
 
 		adapter->securitypriv.ndisauthtype = Ndis802_11AuthModeOpen;
 		adapter->securitypriv.ndisencryptstatus = Ndis802_11WEPDisabled;
@@ -1126,7 +1234,8 @@ void rtw_reset_securitypriv(struct adapter *adapter)
 		/*  */
 		struct security_priv *psec_priv = &adapter->securitypriv;
 
-		psec_priv->dot11AuthAlgrthm = dot11AuthAlgrthm_Open;  /* open system */
+		psec_priv->dot11AuthAlgrthm =
+			dot11AuthAlgrthm_Open; /* open system */
 		psec_priv->dot11PrivacyAlgrthm = _NO_PRIVACY_;
 		psec_priv->dot11PrivacyKeyIndex = 0;
 
@@ -1151,14 +1260,15 @@ void rtw_reset_securitypriv(struct adapter *adapter)
 void rtw_joinbss_event_prehandle(struct adapter *adapter, u8 *pbuf)
 {
 	struct sta_info *ptarget_sta = NULL, *pcur_sta = NULL;
-	struct	sta_priv *pstapriv = &adapter->stapriv;
-	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
-	struct wlan_network	*pnetwork	= (struct wlan_network *)pbuf;
-	struct wlan_network	*cur_network = &pmlmepriv->cur_network;
-	struct wlan_network	*pcur_wlan = NULL, *ptarget_wlan = NULL;
-	unsigned int		the_same_macaddr = false;
+	struct sta_priv *pstapriv = &adapter->stapriv;
+	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
+	struct wlan_network *pnetwork = (struct wlan_network *)pbuf;
+	struct wlan_network *cur_network = &pmlmepriv->cur_network;
+	struct wlan_network *pcur_wlan = NULL, *ptarget_wlan = NULL;
+	unsigned int the_same_macaddr = false;
 
-	the_same_macaddr = !memcmp(pnetwork->network.mac_address, cur_network->network.mac_address, ETH_ALEN);
+	the_same_macaddr = !memcmp(pnetwork->network.mac_address,
+				   cur_network->network.mac_address, ETH_ALEN);
 
 	pnetwork->network.length = get_wlan_bssid_ex_sz(&pnetwork->network);
 	if (pnetwork->network.length > sizeof(struct wlan_bssid_ex))
@@ -1180,7 +1290,8 @@ void rtw_joinbss_event_prehandle(struct adapter *adapter, u8 *pbuf)
 		return;
 	}
 
-	if (pnetwork->join_res <= 0) { /* if join_res < 0 (join fails), then try again */
+	if (pnetwork->join_res <=
+	    0) { /* if join_res < 0 (join fails), then try again */
 		_set_timer(&pmlmepriv->assoc_timer, 1);
 		_clr_fwstate_(pmlmepriv, _FW_UNDER_LINKING);
 		spin_unlock_bh(&pmlmepriv->lock);
@@ -1198,24 +1309,32 @@ void rtw_joinbss_event_prehandle(struct adapter *adapter, u8 *pbuf)
 	/* s1. find ptarget_wlan */
 	if (check_fwstate(pmlmepriv, _FW_LINKED)) {
 		if (the_same_macaddr) {
-			ptarget_wlan = rtw_find_network(&pmlmepriv->scanned_queue, cur_network->network.mac_address);
+			ptarget_wlan = rtw_find_network(
+				&pmlmepriv->scanned_queue,
+				cur_network->network.mac_address);
 		} else {
-			pcur_wlan = rtw_find_network(&pmlmepriv->scanned_queue, cur_network->network.mac_address);
+			pcur_wlan = rtw_find_network(
+				&pmlmepriv->scanned_queue,
+				cur_network->network.mac_address);
 			if (pcur_wlan)
 				pcur_wlan->fixed = false;
 
-			pcur_sta = rtw_get_stainfo(pstapriv, cur_network->network.mac_address);
+			pcur_sta = rtw_get_stainfo(
+				pstapriv, cur_network->network.mac_address);
 			if (pcur_sta)
 				rtw_free_stainfo(adapter, pcur_sta);
 
-			ptarget_wlan = rtw_find_network(&pmlmepriv->scanned_queue, pnetwork->network.mac_address);
+			ptarget_wlan =
+				rtw_find_network(&pmlmepriv->scanned_queue,
+						 pnetwork->network.mac_address);
 			if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)) {
 				if (ptarget_wlan)
 					ptarget_wlan->fixed = true;
 			}
 		}
 	} else {
-		ptarget_wlan = _rtw_find_same_network(&pmlmepriv->scanned_queue, pnetwork);
+		ptarget_wlan = _rtw_find_same_network(&pmlmepriv->scanned_queue,
+						      pnetwork);
 		if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)) {
 			if (ptarget_wlan)
 				ptarget_wlan->fixed = true;
@@ -1224,8 +1343,9 @@ void rtw_joinbss_event_prehandle(struct adapter *adapter, u8 *pbuf)
 
 	/* s2. update cur_network */
 	if (!ptarget_wlan) {
-		netdev_dbg(adapter->pnetdev,
-			   "Can't find ptarget_wlan when joinbss_event callback\n");
+		netdev_dbg(
+			adapter->pnetdev,
+			"Can't find ptarget_wlan when joinbss_event callback\n");
 		spin_unlock_bh(&pmlmepriv->scanned_queue.lock);
 		spin_unlock_bh(&pmlmepriv->lock);
 		return;
@@ -1258,7 +1378,7 @@ void rtw_joinbss_event_prehandle(struct adapter *adapter, u8 *pbuf)
 
 void rtw_joinbss_event_callback(struct adapter *adapter, u8 *pbuf)
 {
-	struct wlan_network	*pnetwork	= (struct wlan_network *)pbuf;
+	struct wlan_network *pnetwork = (struct wlan_network *)pbuf;
 
 	mlmeext_joinbss_event_callback(adapter, pnetwork->join_res);
 
@@ -1266,24 +1386,27 @@ void rtw_joinbss_event_callback(struct adapter *adapter, u8 *pbuf)
 }
 
 /* FOR STA, AP , AD-HOC mode */
-void rtw_sta_media_status_rpt(struct adapter *adapter, struct sta_info *psta, u32 mstatus)
+void rtw_sta_media_status_rpt(struct adapter *adapter, struct sta_info *psta,
+			      u32 mstatus)
 {
 	u16 media_status_rpt;
 
 	if (!psta)
 		return;
 
-	media_status_rpt = (u16)((psta->mac_id << 8) | mstatus); /*   MACID|OPMODE:1 connect */
-	rtw_hal_set_hwreg(adapter, HW_VAR_H2C_MEDIA_STATUS_RPT, (u8 *)&media_status_rpt);
+	media_status_rpt = (u16)((psta->mac_id << 8) |
+				 mstatus); /*   MACID|OPMODE:1 connect */
+	rtw_hal_set_hwreg(adapter, HW_VAR_H2C_MEDIA_STATUS_RPT,
+			  (u8 *)&media_status_rpt);
 }
 
 void rtw_stassoc_event_callback(struct adapter *adapter, u8 *pbuf)
 {
 	struct sta_info *psta;
 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
-	struct stassoc_event	*pstassoc	= (struct stassoc_event *)pbuf;
-	struct wlan_network	*cur_network = &pmlmepriv->cur_network;
-	struct wlan_network	*ptarget_wlan = NULL;
+	struct stassoc_event *pstassoc = (struct stassoc_event *)pbuf;
+	struct wlan_network *cur_network = &pmlmepriv->cur_network;
+	struct wlan_network *ptarget_wlan = NULL;
 
 	if (!rtw_access_ctrl(adapter, pstassoc->macaddr))
 		return;
@@ -1301,7 +1424,9 @@ void rtw_stassoc_event_callback(struct adapter *adapter, u8 *pbuf)
 			/* report to upper layer */
 			spin_lock_bh(&psta->lock);
 			if (psta->passoc_req && psta->assoc_req_len > 0) {
-				passoc_req = kmemdup(psta->passoc_req, psta->assoc_req_len, GFP_ATOMIC);
+				passoc_req = kmemdup(psta->passoc_req,
+						     psta->assoc_req_len,
+						     GFP_ATOMIC);
 				if (passoc_req) {
 					assoc_req_len = psta->assoc_req_len;
 
@@ -1313,7 +1438,8 @@ void rtw_stassoc_event_callback(struct adapter *adapter, u8 *pbuf)
 			spin_unlock_bh(&psta->lock);
 
 			if (passoc_req && assoc_req_len > 0) {
-				rtw_cfg80211_indicate_sta_assoc(adapter, passoc_req, assoc_req_len);
+				rtw_cfg80211_indicate_sta_assoc(
+					adapter, passoc_req, assoc_req_len);
 
 				kfree(passoc_req);
 			}
@@ -1343,7 +1469,8 @@ void rtw_stassoc_event_callback(struct adapter *adapter, u8 *pbuf)
 	rtw_sta_media_status_rpt(adapter, psta, 1);
 
 	if (adapter->securitypriv.dot11AuthAlgrthm == dot11AuthAlgrthm_8021X)
-		psta->dot118021XPrivacy = adapter->securitypriv.dot11PrivacyAlgrthm;
+		psta->dot118021XPrivacy =
+			adapter->securitypriv.dot11PrivacyAlgrthm;
 
 	psta->ieee8021x_blocked = false;
 
@@ -1353,7 +1480,9 @@ void rtw_stassoc_event_callback(struct adapter *adapter, u8 *pbuf)
 	    check_fwstate(pmlmepriv, WIFI_ADHOC_STATE)) {
 		if (adapter->stapriv.asoc_sta_count == 2) {
 			spin_lock_bh(&pmlmepriv->scanned_queue.lock);
-			ptarget_wlan = rtw_find_network(&pmlmepriv->scanned_queue, cur_network->network.mac_address);
+			ptarget_wlan = rtw_find_network(
+				&pmlmepriv->scanned_queue,
+				cur_network->network.mac_address);
 			pmlmepriv->cur_network_scanned = ptarget_wlan;
 			if (ptarget_wlan)
 				ptarget_wlan->fixed = true;
@@ -1373,10 +1502,10 @@ void rtw_stadel_event_callback(struct adapter *adapter, u8 *pbuf)
 	int mac_id = (-1);
 	struct sta_info *psta;
 	struct wlan_network *pwlan = NULL;
-	struct wlan_bssid_ex    *pdev_network = NULL;
+	struct wlan_bssid_ex *pdev_network = NULL;
 	u8 *pibss = NULL;
-	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
-	struct	stadel_event *pstadel	= (struct stadel_event *)pbuf;
+	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
+	struct stadel_event *pstadel = (struct stadel_event *)pbuf;
 	struct wlan_network *tgt_network = &pmlmepriv->cur_network;
 	struct mlme_ext_priv *pmlmeext = &adapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
@@ -1390,9 +1519,11 @@ void rtw_stadel_event_callback(struct adapter *adapter, u8 *pbuf)
 	if (mac_id >= 0) {
 		u16 media_status;
 
-		media_status = (mac_id << 8) | 0; /*   MACID|OPMODE:0 means disconnect */
+		media_status = (mac_id << 8) |
+			       0; /*   MACID|OPMODE:0 means disconnect */
 		/* for STA, AP, ADHOC mode, report disconnect status to FW */
-		rtw_hal_set_hwreg(adapter, HW_VAR_H2C_MEDIA_STATUS_RPT, (u8 *)&media_status);
+		rtw_hal_set_hwreg(adapter, HW_VAR_H2C_MEDIA_STATUS_RPT,
+				  (u8 *)&media_status);
 	}
 
 	/* if (check_fwstate(pmlmepriv, WIFI_AP_STATE)) */
@@ -1410,18 +1541,23 @@ void rtw_stadel_event_callback(struct adapter *adapter, u8 *pbuf)
 
 		if (adapter->registrypriv.wifi_spec == 1) {
 			roam = false;
-		} else if (reason == WLAN_REASON_EXPIRATION_CHK && rtw_chk_roam_flags(adapter, RTW_ROAM_ON_EXPIRED)) {
+		} else if (reason == WLAN_REASON_EXPIRATION_CHK &&
+			   rtw_chk_roam_flags(adapter, RTW_ROAM_ON_EXPIRED)) {
 			roam = true;
-		} else if (reason == WLAN_REASON_ACTIVE_ROAM && rtw_chk_roam_flags(adapter, RTW_ROAM_ACTIVE)) {
+		} else if (reason == WLAN_REASON_ACTIVE_ROAM &&
+			   rtw_chk_roam_flags(adapter, RTW_ROAM_ACTIVE)) {
 			roam = true;
 			roam_target = pmlmepriv->roam_network;
 		}
 
 		if (roam) {
 			if (rtw_to_roam(adapter) > 0)
-				rtw_dec_to_roam(adapter); /* this stadel_event is caused by roaming, decrease to_roam */
+				rtw_dec_to_roam(
+					adapter); /* this stadel_event is caused by roaming, decrease to_roam */
 			else if (rtw_to_roam(adapter) == 0)
-				rtw_set_to_roam(adapter, adapter->registrypriv.max_roaming_times);
+				rtw_set_to_roam(
+					adapter,
+					adapter->registrypriv.max_roaming_times);
 		} else {
 			rtw_set_to_roam(adapter, 0);
 		}
@@ -1433,7 +1569,8 @@ void rtw_stadel_event_callback(struct adapter *adapter, u8 *pbuf)
 
 		spin_lock_bh(&pmlmepriv->scanned_queue.lock);
 		/*  remove the network entry in scanned_queue */
-		pwlan = rtw_find_network(&pmlmepriv->scanned_queue, tgt_network->network.mac_address);
+		pwlan = rtw_find_network(&pmlmepriv->scanned_queue,
+					 tgt_network->network.mac_address);
 		if (pwlan) {
 			pwlan->fixed = false;
 			rtw_free_network_nolock(adapter, pwlan);
@@ -1444,15 +1581,18 @@ void rtw_stadel_event_callback(struct adapter *adapter, u8 *pbuf)
 	}
 
 	if (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE) ||
-	      check_fwstate(pmlmepriv, WIFI_ADHOC_STATE)) {
-		rtw_free_stainfo(adapter,  psta);
+	    check_fwstate(pmlmepriv, WIFI_ADHOC_STATE)) {
+		rtw_free_stainfo(adapter, psta);
 
-		if (adapter->stapriv.asoc_sta_count == 1) {/* a sta + bc/mc_stainfo (not Ibss_stainfo) */
+		if (adapter->stapriv.asoc_sta_count ==
+		    1) { /* a sta + bc/mc_stainfo (not Ibss_stainfo) */
 			u8 ret = _SUCCESS;
 
 			spin_lock_bh(&pmlmepriv->scanned_queue.lock);
 			/* free old ibss network */
-			pwlan = rtw_find_network(&pmlmepriv->scanned_queue, tgt_network->network.mac_address);
+			pwlan = rtw_find_network(
+				&pmlmepriv->scanned_queue,
+				tgt_network->network.mac_address);
 			if (pwlan) {
 				pwlan->fixed = false;
 				rtw_free_network_nolock(adapter, pwlan);
@@ -1462,9 +1602,11 @@ void rtw_stadel_event_callback(struct adapter *adapter, u8 *pbuf)
 			pdev_network = &adapter->registrypriv.dev_network;
 			pibss = adapter->registrypriv.dev_network.mac_address;
 
-			memcpy(pdev_network, &tgt_network->network, get_wlan_bssid_ex_sz(&tgt_network->network));
+			memcpy(pdev_network, &tgt_network->network,
+			       get_wlan_bssid_ex_sz(&tgt_network->network));
 
-			memcpy(&pdev_network->ssid, &pmlmepriv->assoc_ssid, sizeof(struct ndis_802_11_ssid));
+			memcpy(&pdev_network->ssid, &pmlmepriv->assoc_ssid,
+			       sizeof(struct ndis_802_11_ssid));
 
 			rtw_update_registrypriv_dev_network(adapter);
 
@@ -1490,7 +1632,8 @@ void rtw_cpwm_event_callback(struct adapter *padapter, u8 *pbuf)
 	struct reportpwrstate_parm *preportpwrstate;
 
 	preportpwrstate = (struct reportpwrstate_parm *)pbuf;
-	preportpwrstate->state |= (u8)(adapter_to_pwrctl(padapter)->cpwm_tog + 0x80);
+	preportpwrstate->state |=
+		(u8)(adapter_to_pwrctl(padapter)->cpwm_tog + 0x80);
 	cpwm_int_hdl(padapter, preportpwrstate);
 }
 
@@ -1505,9 +1648,9 @@ void rtw_wmm_event_callback(struct adapter *padapter, u8 *pbuf)
  */
 void _rtw_join_timeout_handler(struct timer_list *t)
 {
-	struct adapter *adapter = timer_container_of(adapter, t,
-						     mlmepriv.assoc_timer);
-	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
+	struct adapter *adapter =
+		timer_container_of(adapter, t, mlmepriv.assoc_timer);
+	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
 
 	if (adapter->bDriverStopped || adapter->bSurpriseRemoved)
 		return;
@@ -1533,7 +1676,7 @@ void _rtw_join_timeout_handler(struct timer_list *t)
 
 	} else {
 		rtw_indicate_disconnect(adapter);
-		free_scanqueue(pmlmepriv);/*  */
+		free_scanqueue(pmlmepriv); /*  */
 
 		/* indicate disconnect for the case that join_timeout and check_fwstate != FW_LINKED */
 		rtw_cfg80211_indicate_disconnect(adapter);
@@ -1548,9 +1691,9 @@ void _rtw_join_timeout_handler(struct timer_list *t)
  */
 void rtw_scan_timeout_handler(struct timer_list *t)
 {
-	struct adapter *adapter = timer_container_of(adapter, t,
-						     mlmepriv.scan_to_timer);
-	struct	mlme_priv *pmlmepriv = &adapter->mlmepriv;
+	struct adapter *adapter =
+		timer_container_of(adapter, t, mlmepriv.scan_to_timer);
+	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
 
 	spin_lock_bh(&pmlmepriv->lock);
 
@@ -1570,10 +1713,12 @@ void rtw_mlme_reset_auto_scan_int(struct adapter *adapter)
 	if (pmlmeinfo->VHT_enable) {
 		/* disable auto scan when connect to 11AC AP */
 		mlme->auto_scan_int_ms = 0;
-	} else if (adapter->registrypriv.wifi_spec && is_client_associated_to_ap(adapter)) {
+	} else if (adapter->registrypriv.wifi_spec &&
+		   is_client_associated_to_ap(adapter)) {
 		mlme->auto_scan_int_ms = 60 * 1000;
 	} else if (rtw_chk_roam_flags(adapter, RTW_ROAM_ACTIVE)) {
-		if (check_fwstate(mlme, WIFI_STATION_STATE) && check_fwstate(mlme, _FW_LINKED))
+		if (check_fwstate(mlme, WIFI_STATION_STATE) &&
+		    check_fwstate(mlme, _FW_LINKED))
 			mlme->auto_scan_int_ms = mlme->roam_scan_int_ms;
 	} else {
 		mlme->auto_scan_int_ms = 0; /* disabled */
@@ -1586,10 +1731,12 @@ static void rtw_auto_scan_handler(struct adapter *padapter)
 
 	rtw_mlme_reset_auto_scan_int(padapter);
 
-	if (pmlmepriv->auto_scan_int_ms != 0
-		&& jiffies_to_msecs(jiffies - pmlmepriv->scan_start_time) > pmlmepriv->auto_scan_int_ms) {
+	if (pmlmepriv->auto_scan_int_ms != 0 &&
+	    jiffies_to_msecs(jiffies - pmlmepriv->scan_start_time) >
+		    pmlmepriv->auto_scan_int_ms) {
 		if (!padapter->registrypriv.wifi_spec) {
-			if (check_fwstate(pmlmepriv, _FW_UNDER_SURVEY | _FW_UNDER_LINKING))
+			if (check_fwstate(pmlmepriv,
+					  _FW_UNDER_SURVEY | _FW_UNDER_LINKING))
 				goto exit;
 
 			if (pmlmepriv->link_detect_info.busy_traffic)
@@ -1617,9 +1764,8 @@ void rtw_dynamic_check_timer_handler(struct adapter *adapter)
 	if (adapter->net_closed)
 		return;
 
-	if ((adapter_to_pwrctl(adapter)->fw_current_in_ps_mode)
-		&& !(hal_btcoex_IsBtControlLps(adapter))
-		) {
+	if ((adapter_to_pwrctl(adapter)->fw_current_in_ps_mode) &&
+	    !(hal_btcoex_IsBtControlLps(adapter))) {
 		bool should_enter_ps;
 
 		linked_status_chk(adapter);
@@ -1667,8 +1813,9 @@ void rtw_set_scan_deny(struct adapter *adapter, u32 ms)
  * @return true: candidate is updated
  * @return false: candidate is not updated
  */
-static int rtw_check_roaming_candidate(struct mlme_priv *mlme
-	, struct wlan_network **candidate, struct wlan_network *competitor)
+static int rtw_check_roaming_candidate(struct mlme_priv *mlme,
+				       struct wlan_network **candidate,
+				       struct wlan_network *competitor)
 {
 	int updated = false;
 	struct adapter *adapter = container_of(mlme, struct adapter, mlmepriv);
@@ -1681,18 +1828,22 @@ static int rtw_check_roaming_candidate(struct mlme_priv *mlme
 
 	/* got specific addr to roam */
 	if (!is_zero_ether_addr(mlme->roam_tgt_addr)) {
-		if (!memcmp(mlme->roam_tgt_addr, competitor->network.mac_address, ETH_ALEN))
+		if (!memcmp(mlme->roam_tgt_addr,
+			    competitor->network.mac_address, ETH_ALEN))
 			goto update;
 		else
 			goto exit;
 	}
-	if (jiffies_to_msecs(jiffies - competitor->last_scanned) >= mlme->roam_scanr_exp_ms)
+	if (jiffies_to_msecs(jiffies - competitor->last_scanned) >=
+	    mlme->roam_scanr_exp_ms)
 		goto exit;
 
-	if (competitor->network.rssi - mlme->cur_network_scanned->network.rssi < mlme->roam_rssi_diff_th)
+	if (competitor->network.rssi - mlme->cur_network_scanned->network.rssi <
+	    mlme->roam_rssi_diff_th)
 		goto exit;
 
-	if (*candidate && (*candidate)->network.rssi >= competitor->network.rssi)
+	if (*candidate &&
+	    (*candidate)->network.rssi >= competitor->network.rssi)
 		goto exit;
 
 update:
@@ -1706,10 +1857,10 @@ static int rtw_check_roaming_candidate(struct mlme_priv *mlme
 int rtw_select_roaming_candidate(struct mlme_priv *mlme)
 {
 	int ret = _FAIL;
-	struct list_head	*phead;
-	struct __queue	*queue	= &mlme->scanned_queue;
-	struct	wlan_network	*pnetwork = NULL;
-	struct	wlan_network	*candidate = NULL;
+	struct list_head *phead;
+	struct __queue *queue = &mlme->scanned_queue;
+	struct wlan_network *pnetwork = NULL;
+	struct wlan_network *candidate = NULL;
 
 	if (!mlme->cur_network_scanned) {
 		WARN_ON(1);
@@ -1720,8 +1871,8 @@ int rtw_select_roaming_candidate(struct mlme_priv *mlme)
 	phead = get_list_head(queue);
 
 	list_for_each(mlme->pscanned, phead) {
-		pnetwork = list_entry(mlme->pscanned, struct wlan_network,
-				      list);
+		pnetwork =
+			list_entry(mlme->pscanned, struct wlan_network, list);
 
 		rtw_check_roaming_candidate(mlme, &candidate, pnetwork);
 	}
@@ -1732,7 +1883,8 @@ int rtw_select_roaming_candidate(struct mlme_priv *mlme)
 	} else {
 		mlme->roam_network = candidate;
 
-		if (!memcmp(candidate->network.mac_address, mlme->roam_tgt_addr, ETH_ALEN))
+		if (!memcmp(candidate->network.mac_address, mlme->roam_tgt_addr,
+			    ETH_ALEN))
 			eth_zero_addr(mlme->roam_tgt_addr);
 	}
 
@@ -1748,23 +1900,26 @@ int rtw_select_roaming_candidate(struct mlme_priv *mlme)
  * @return true: candidate is updated
  * @return false: candidate is not updated
  */
-static int rtw_check_join_candidate(struct mlme_priv *mlme
-	, struct wlan_network **candidate, struct wlan_network *competitor)
+static int rtw_check_join_candidate(struct mlme_priv *mlme,
+				    struct wlan_network **candidate,
+				    struct wlan_network *competitor)
 {
 	int updated = false;
 	struct adapter *adapter = container_of(mlme, struct adapter, mlmepriv);
 
 	/* check bssid, if needed */
 	if (mlme->assoc_by_bssid) {
-		if (memcmp(competitor->network.mac_address, mlme->assoc_bssid, ETH_ALEN))
+		if (memcmp(competitor->network.mac_address, mlme->assoc_bssid,
+			   ETH_ALEN))
 			goto exit;
 	}
 
 	/* check ssid, if needed */
 	if (mlme->assoc_ssid.ssid[0] && mlme->assoc_ssid.ssid_length) {
-		if (competitor->network.ssid.ssid_length != mlme->assoc_ssid.ssid_length
-			|| memcmp(competitor->network.ssid.ssid, mlme->assoc_ssid.ssid, mlme->assoc_ssid.ssid_length)
-		)
+		if (competitor->network.ssid.ssid_length !=
+			    mlme->assoc_ssid.ssid_length ||
+		    memcmp(competitor->network.ssid.ssid, mlme->assoc_ssid.ssid,
+			   mlme->assoc_ssid.ssid_length))
 			goto exit;
 	}
 
@@ -1773,12 +1928,14 @@ static int rtw_check_join_candidate(struct mlme_priv *mlme
 
 	if (rtw_to_roam(adapter) > 0) {
 		if (jiffies_to_msecs(jiffies - competitor->last_scanned) >=
-		    mlme->roam_scanr_exp_ms ||
-		    !is_same_ess(&competitor->network, &mlme->cur_network.network))
+			    mlme->roam_scanr_exp_ms ||
+		    !is_same_ess(&competitor->network,
+				 &mlme->cur_network.network))
 			goto exit;
 	}
 
-	if (!*candidate || (*candidate)->network.rssi < competitor->network.rssi) {
+	if (!*candidate ||
+	    (*candidate)->network.rssi < competitor->network.rssi) {
 		*candidate = competitor;
 		updated = true;
 	}
@@ -1797,11 +1954,11 @@ static int rtw_check_join_candidate(struct mlme_priv *mlme
 int rtw_select_and_join_from_scanned_queue(struct mlme_priv *pmlmepriv)
 {
 	int ret;
-	struct list_head	*phead;
+	struct list_head *phead;
 	struct adapter *adapter;
-	struct __queue	*queue	= &pmlmepriv->scanned_queue;
-	struct	wlan_network	*pnetwork = NULL;
-	struct	wlan_network	*candidate = NULL;
+	struct __queue *queue = &pmlmepriv->scanned_queue;
+	struct wlan_network *pnetwork = NULL;
+	struct wlan_network *candidate = NULL;
 
 	adapter = (struct adapter *)pmlmepriv->nic_hdl;
 
@@ -1815,8 +1972,8 @@ int rtw_select_and_join_from_scanned_queue(struct mlme_priv *pmlmepriv)
 
 	phead = get_list_head(queue);
 	list_for_each(pmlmepriv->pscanned, phead) {
-		pnetwork = list_entry(pmlmepriv->pscanned,
-				      struct wlan_network, list);
+		pnetwork = list_entry(pmlmepriv->pscanned, struct wlan_network,
+				      list);
 
 		rtw_check_join_candidate(pmlmepriv, &candidate, pnetwork);
 	}
@@ -1845,16 +2002,17 @@ int rtw_select_and_join_from_scanned_queue(struct mlme_priv *pmlmepriv)
 	return ret;
 }
 
-signed int rtw_set_auth(struct adapter *adapter, struct security_priv *psecuritypriv)
+signed int rtw_set_auth(struct adapter *adapter,
+			struct security_priv *psecuritypriv)
 {
-	struct	cmd_obj *pcmd;
-	struct	setauth_parm *psetauthparm;
-	struct	cmd_priv *pcmdpriv = &adapter->cmdpriv;
-	signed int		res = _SUCCESS;
+	struct cmd_obj *pcmd;
+	struct setauth_parm *psetauthparm;
+	struct cmd_priv *pcmdpriv = &adapter->cmdpriv;
+	signed int res = _SUCCESS;
 
 	pcmd = kzalloc_obj(*pcmd);
 	if (!pcmd) {
-		res = _FAIL;  /* try again */
+		res = _FAIL; /* try again */
 		goto exit;
 	}
 
@@ -1869,7 +2027,7 @@ signed int rtw_set_auth(struct adapter *adapter, struct security_priv *psecurity
 
 	pcmd->cmdcode = _SetAuth_CMD_;
 	pcmd->parmbuf = (unsigned char *)psetauthparm;
-	pcmd->cmdsz =  (sizeof(struct setauth_parm));
+	pcmd->cmdsz = (sizeof(struct setauth_parm));
 	pcmd->rsp = NULL;
 	pcmd->rspsz = 0;
 
@@ -1881,13 +2039,15 @@ signed int rtw_set_auth(struct adapter *adapter, struct security_priv *psecurity
 	return res;
 }
 
-signed int rtw_set_key(struct adapter *adapter, struct security_priv *psecuritypriv, signed int keyid, u8 set_tx, bool enqueue)
+signed int rtw_set_key(struct adapter *adapter,
+		       struct security_priv *psecuritypriv, signed int keyid,
+		       u8 set_tx, bool enqueue)
 {
 	u8 keylen;
 	struct cmd_obj *pcmd;
-	struct setkey_parm	*psetkeyparm;
+	struct setkey_parm *psetkeyparm;
 	struct cmd_priv *pcmdpriv = &adapter->cmdpriv;
-	signed int	res = _SUCCESS;
+	signed int res = _SUCCESS;
 
 	psetkeyparm = kzalloc_obj(*psetkeyparm);
 	if (!psetkeyparm) {
@@ -1896,11 +2056,12 @@ signed int rtw_set_key(struct adapter *adapter, struct security_priv *psecurityp
 	}
 
 	if (psecuritypriv->dot11AuthAlgrthm == dot11AuthAlgrthm_8021X)
-		psetkeyparm->algorithm = (unsigned char)psecuritypriv->dot118021XGrpPrivacy;
+		psetkeyparm->algorithm =
+			(unsigned char)psecuritypriv->dot118021XGrpPrivacy;
 	else
 		psetkeyparm->algorithm = (u8)psecuritypriv->dot11PrivacyAlgrthm;
 
-	psetkeyparm->keyid = (u8)keyid;/* 0~3 */
+	psetkeyparm->keyid = (u8)keyid; /* 0~3 */
 	psetkeyparm->set_tx = set_tx;
 	if (is_wep_enc(psetkeyparm->algorithm))
 		adapter->securitypriv.key_mask |= BIT(psetkeyparm->keyid);
@@ -1908,20 +2069,24 @@ signed int rtw_set_key(struct adapter *adapter, struct security_priv *psecurityp
 	switch (psetkeyparm->algorithm) {
 	case _WEP40_:
 		keylen = 5;
-		memcpy(&psetkeyparm->key[0], &psecuritypriv->dot11DefKey[keyid].skey[0], keylen);
+		memcpy(&psetkeyparm->key[0],
+		       &psecuritypriv->dot11DefKey[keyid].skey[0], keylen);
 		break;
 	case _WEP104_:
 		keylen = 13;
-		memcpy(&psetkeyparm->key[0], &psecuritypriv->dot11DefKey[keyid].skey[0], keylen);
+		memcpy(&psetkeyparm->key[0],
+		       &psecuritypriv->dot11DefKey[keyid].skey[0], keylen);
 		break;
 	case _TKIP_:
 		keylen = 16;
-		memcpy(&psetkeyparm->key, &psecuritypriv->dot118021XGrpKey[keyid], keylen);
+		memcpy(&psetkeyparm->key,
+		       &psecuritypriv->dot118021XGrpKey[keyid], keylen);
 		psetkeyparm->grpkey = 1;
 		break;
 	case _AES_:
 		keylen = 16;
-		memcpy(&psetkeyparm->key, &psecuritypriv->dot118021XGrpKey[keyid], keylen);
+		memcpy(&psetkeyparm->key,
+		       &psecuritypriv->dot118021XGrpKey[keyid], keylen);
 		psetkeyparm->grpkey = 1;
 		break;
 	default:
@@ -1934,13 +2099,13 @@ signed int rtw_set_key(struct adapter *adapter, struct security_priv *psecurityp
 		pcmd = kzalloc_obj(*pcmd);
 		if (!pcmd) {
 			kfree(psetkeyparm);
-			res = _FAIL;  /* try again */
+			res = _FAIL; /* try again */
 			goto exit;
 		}
 
 		pcmd->cmdcode = _SetKey_CMD_;
 		pcmd->parmbuf = (u8 *)psetkeyparm;
-		pcmd->cmdsz =  (sizeof(struct setkey_parm));
+		pcmd->cmdsz = (sizeof(struct setkey_parm));
 		pcmd->rsp = NULL;
 		pcmd->rspsz = 0;
 
@@ -1956,19 +2121,19 @@ signed int rtw_set_key(struct adapter *adapter, struct security_priv *psecurityp
 }
 
 /* adjust ies for rtw_joinbss_cmd in WMM */
-int rtw_restruct_wmm_ie(struct adapter *adapter, u8 *in_ie, u8 *out_ie, uint in_len, uint initial_out_len)
+int rtw_restruct_wmm_ie(struct adapter *adapter, u8 *in_ie, u8 *out_ie,
+			uint in_len, uint initial_out_len)
 {
-	unsigned	int ielength = 0;
+	unsigned int ielength = 0;
 	unsigned int i, j;
 
 	i = 12; /* after the fixed IE */
 	while (i < in_len) {
 		ielength = initial_out_len;
 
-		if (i + 5 < in_len &&
-		    in_ie[i] == 0xDD && in_ie[i + 2] == 0x00 &&
-		    in_ie[i + 3] == 0x50 && in_ie[i + 4] == 0xF2 &&
-		    in_ie[i + 5] == 0x02) {
+		if (i + 5 < in_len && in_ie[i] == 0xDD &&
+		    in_ie[i + 2] == 0x00 && in_ie[i + 3] == 0x50 &&
+		    in_ie[i + 4] == 0xF2 && in_ie[i + 5] == 0x02) {
 			for (j = i; j < i + 9; j++) {
 				out_ie[ielength] = in_ie[j];
 				ielength++;
@@ -2003,7 +2168,7 @@ static int SecIsInPMKIDList(struct adapter *Adapter, u8 *bssid)
 
 	for (i = 0; i < NUM_PMKID_CACHE; i++)
 		if ((p->PMKIDList[i].bUsed) &&
-				(!memcmp(p->PMKIDList[i].Bssid, bssid, ETH_ALEN)))
+		    (!memcmp(p->PMKIDList[i].Bssid, bssid, ETH_ALEN)))
 			return i;
 	return -1;
 }
@@ -2016,7 +2181,8 @@ static int SecIsInPMKIDList(struct adapter *Adapter, u8 *bssid)
 /*  13th element in the array is the IE length */
 /*  */
 
-static int rtw_append_pmkid(struct adapter *Adapter, int iEntry, u8 *ie, uint ie_len)
+static int rtw_append_pmkid(struct adapter *Adapter, int iEntry, u8 *ie,
+			    uint ie_len)
 {
 	struct security_priv *psecuritypriv = &Adapter->securitypriv;
 
@@ -2024,18 +2190,19 @@ static int rtw_append_pmkid(struct adapter *Adapter, int iEntry, u8 *ie, uint ie
 		/*  The RSN IE didn't include the PMK ID, append the PMK information */
 		ie[ie_len] = 1;
 		ie_len++;
-		ie[ie_len] = 0;	/* PMKID count = 0x0100 */
+		ie[ie_len] = 0; /* PMKID count = 0x0100 */
 		ie_len++;
-		memcpy(&ie[ie_len], &psecuritypriv->PMKIDList[iEntry].PMKID, 16);
+		memcpy(&ie[ie_len], &psecuritypriv->PMKIDList[iEntry].PMKID,
+		       16);
 		ie_len += 16;
-		ie[13] += 18;/* PMKID length = 2+16 */
+		ie[13] += 18; /* PMKID length = 2+16 */
 	}
 	return ie_len;
 }
 
 static void rtw_report_sec_ie(struct adapter *adapter, u8 authmode, u8 *sec_ie)
 {
-	uint	len;
+	uint len;
 	u8 *buff, *p;
 	union iwreq_data wrqu;
 
@@ -2047,12 +2214,14 @@ static void rtw_report_sec_ie(struct adapter *adapter, u8 authmode, u8 *sec_ie)
 
 		p = buff;
 
-		p += scnprintf(p, IW_CUSTOM_MAX - (p - buff), "ASSOCINFO(ReqIEs =");
+		p += scnprintf(p, IW_CUSTOM_MAX - (p - buff),
+			       "ASSOCINFO(ReqIEs =");
 
 		len = sec_ie[1] + 2;
 		len = (len < IW_CUSTOM_MAX) ? len : IW_CUSTOM_MAX;
 
-		p += scnprintf(p, IW_CUSTOM_MAX - (p - buff), " %*ph", len, sec_ie);
+		p += scnprintf(p, IW_CUSTOM_MAX - (p - buff), " %*ph", len,
+			       sec_ie);
 
 		p += scnprintf(p, IW_CUSTOM_MAX - (p - buff), ")");
 
@@ -2060,39 +2229,48 @@ static void rtw_report_sec_ie(struct adapter *adapter, u8 authmode, u8 *sec_ie)
 
 		wrqu.data.length = p - buff;
 
-		wrqu.data.length = (wrqu.data.length < IW_CUSTOM_MAX) ? wrqu.data.length : IW_CUSTOM_MAX;
+		wrqu.data.length = (wrqu.data.length < IW_CUSTOM_MAX) ?
+					   wrqu.data.length :
+					   IW_CUSTOM_MAX;
 
 		kfree(buff);
 	}
 }
 
-signed int rtw_restruct_sec_ie(struct adapter *adapter, u8 *in_ie, u8 *out_ie, uint in_len)
+signed int rtw_restruct_sec_ie(struct adapter *adapter, u8 *in_ie, u8 *out_ie,
+			       uint in_len)
 {
 	u8 authmode = 0x0;
-	uint	ielength;
+	uint ielength;
 	int iEntry;
 
 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
 	struct security_priv *psecuritypriv = &adapter->securitypriv;
-	uint	ndisauthmode = psecuritypriv->ndisauthtype;
+	uint ndisauthmode = psecuritypriv->ndisauthtype;
 
 	/* copy fixed ie only */
 	memcpy(out_ie, in_ie, 12);
 	ielength = 12;
-	if ((ndisauthmode == Ndis802_11AuthModeWPA) || (ndisauthmode == Ndis802_11AuthModeWPAPSK))
+	if ((ndisauthmode == Ndis802_11AuthModeWPA) ||
+	    (ndisauthmode == Ndis802_11AuthModeWPAPSK))
 		authmode = WLAN_EID_VENDOR_SPECIFIC;
-	if ((ndisauthmode == Ndis802_11AuthModeWPA2) || (ndisauthmode == Ndis802_11AuthModeWPA2PSK))
+	if ((ndisauthmode == Ndis802_11AuthModeWPA2) ||
+	    (ndisauthmode == Ndis802_11AuthModeWPA2PSK))
 		authmode = WLAN_EID_RSN;
 
 	if (check_fwstate(pmlmepriv, WIFI_UNDER_WPS)) {
-		memcpy(out_ie + ielength, psecuritypriv->wps_ie, psecuritypriv->wps_ie_len);
+		memcpy(out_ie + ielength, psecuritypriv->wps_ie,
+		       psecuritypriv->wps_ie_len);
 
 		ielength += psecuritypriv->wps_ie_len;
-	} else if ((authmode == WLAN_EID_VENDOR_SPECIFIC) || (authmode == WLAN_EID_RSN)) {
+	} else if ((authmode == WLAN_EID_VENDOR_SPECIFIC) ||
+		   (authmode == WLAN_EID_RSN)) {
 		/* copy RSN or SSN */
-		memcpy(&out_ie[ielength], &psecuritypriv->supplicant_ie[0], psecuritypriv->supplicant_ie[1] + 2);
+		memcpy(&out_ie[ielength], &psecuritypriv->supplicant_ie[0],
+		       psecuritypriv->supplicant_ie[1] + 2);
 		ielength += psecuritypriv->supplicant_ie[1] + 2;
-		rtw_report_sec_ie(adapter, authmode, psecuritypriv->supplicant_ie);
+		rtw_report_sec_ie(adapter, authmode,
+				  psecuritypriv->supplicant_ie);
 	}
 
 	iEntry = SecIsInPMKIDList(adapter, pmlmepriv->assoc_bssid);
@@ -2109,12 +2287,13 @@ void rtw_init_registrypriv_dev_network(struct adapter *adapter)
 {
 	struct registry_priv *pregistrypriv = &adapter->registrypriv;
 	struct eeprom_priv *peepriv = &adapter->eeprompriv;
-	struct wlan_bssid_ex    *pdev_network = &pregistrypriv->dev_network;
+	struct wlan_bssid_ex *pdev_network = &pregistrypriv->dev_network;
 	u8 *myhwaddr = myid(peepriv);
 
 	memcpy(pdev_network->mac_address, myhwaddr, ETH_ALEN);
 
-	memcpy(&pdev_network->ssid, &pregistrypriv->ssid, sizeof(struct ndis_802_11_ssid));
+	memcpy(&pdev_network->ssid, &pregistrypriv->ssid,
+	       sizeof(struct ndis_802_11_ssid));
 
 	pdev_network->configuration.length = sizeof(struct ndis_802_11_conf);
 	pdev_network->configuration.beacon_period = 100;
@@ -2124,11 +2303,13 @@ void rtw_update_registrypriv_dev_network(struct adapter *adapter)
 {
 	int sz = 0;
 	struct registry_priv *pregistrypriv = &adapter->registrypriv;
-	struct wlan_bssid_ex    *pdev_network = &pregistrypriv->dev_network;
-	struct	security_priv *psecuritypriv = &adapter->securitypriv;
-	struct	wlan_network	*cur_network = &adapter->mlmepriv.cur_network;
+	struct wlan_bssid_ex *pdev_network = &pregistrypriv->dev_network;
+	struct security_priv *psecuritypriv = &adapter->securitypriv;
+	struct wlan_network *cur_network = &adapter->mlmepriv.cur_network;
 
-	pdev_network->privacy = (psecuritypriv->dot11PrivacyAlgrthm > 0 ? 1 : 0) ; /*  adhoc no 802.1x */
+	pdev_network->privacy = (psecuritypriv->dot11PrivacyAlgrthm > 0 ?
+					 1 :
+					 0); /*  adhoc no 802.1x */
 
 	pdev_network->rssi = 0;
 
@@ -2153,7 +2334,8 @@ void rtw_update_registrypriv_dev_network(struct adapter *adapter)
 	if (cur_network->network.infrastructure_mode == Ndis802_11IBSS)
 		pdev_network->configuration.atim_window = (0);
 
-	pdev_network->infrastructure_mode = (cur_network->network.infrastructure_mode);
+	pdev_network->infrastructure_mode =
+		(cur_network->network.infrastructure_mode);
 
 	/*  1. Supported rates */
 	/*  2. IE */
@@ -2163,7 +2345,8 @@ void rtw_update_registrypriv_dev_network(struct adapter *adapter)
 
 	pdev_network->ie_length = sz;
 
-	pdev_network->length = get_wlan_bssid_ex_sz((struct wlan_bssid_ex  *)pdev_network);
+	pdev_network->length =
+		get_wlan_bssid_ex_sz((struct wlan_bssid_ex *)pdev_network);
 
 	/* notes: translate ie_length & length after assign the length to cmdsz in createbss_cmd(); */
 	/* pdev_network->ie_length = cpu_to_le32(sz); */
@@ -2183,7 +2366,7 @@ void rtw_joinbss_reset(struct adapter *padapter)
 
 	pmlmepriv->num_sta_no_ht = 0;
 
-	phtpriv->ampdu_enable = false;/* reset to disabled */
+	phtpriv->ampdu_enable = false; /* reset to disabled */
 
 	/*  TH = 1 => means that invalidate usb rx aggregation */
 	/*  TH = 0 => means that validate usb rx aggregation, use init value. */
@@ -2192,10 +2375,12 @@ void rtw_joinbss_reset(struct adapter *padapter)
 			threshold = 1;
 		else
 			threshold = 0;
-		rtw_hal_set_hwreg(padapter, HW_VAR_RXDMA_AGG_PG_TH, (u8 *)(&threshold));
+		rtw_hal_set_hwreg(padapter, HW_VAR_RXDMA_AGG_PG_TH,
+				  (u8 *)(&threshold));
 	} else {
 		threshold = 1;
-		rtw_hal_set_hwreg(padapter, HW_VAR_RXDMA_AGG_PG_TH, (u8 *)(&threshold));
+		rtw_hal_set_hwreg(padapter, HW_VAR_RXDMA_AGG_PG_TH,
+				  (u8 *)(&threshold));
 	}
 }
 
@@ -2204,16 +2389,18 @@ void rtw_ht_use_default_setting(struct adapter *padapter)
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct ht_priv *phtpriv = &pmlmepriv->htpriv;
 	struct registry_priv *pregistrypriv = &padapter->registrypriv;
-	bool		bHwLDPCSupport = false, bHwSTBCSupport = false;
-	bool		bHwSupportBeamformer = false, bHwSupportBeamformee = false;
+	bool bHwLDPCSupport = false, bHwSTBCSupport = false;
+	bool bHwSupportBeamformer = false, bHwSupportBeamformee = false;
 
 	if (pregistrypriv->wifi_spec)
 		phtpriv->bss_coexist = 1;
 	else
 		phtpriv->bss_coexist = 0;
 
-	phtpriv->sgi_40m = TEST_FLAG(pregistrypriv->short_gi, BIT(1)) ? true : false;
-	phtpriv->sgi_20m = TEST_FLAG(pregistrypriv->short_gi, BIT(0)) ? true : false;
+	phtpriv->sgi_40m = TEST_FLAG(pregistrypriv->short_gi, BIT(1)) ? true :
+									false;
+	phtpriv->sgi_20m = TEST_FLAG(pregistrypriv->short_gi, BIT(0)) ? true :
+									false;
 
 	/*  LDPC support */
 	rtw_hal_get_def_var(padapter, HAL_DEF_RX_LDPC, (u8 *)&bHwLDPCSupport);
@@ -2242,19 +2429,25 @@ void rtw_ht_use_default_setting(struct adapter *padapter)
 	}
 
 	/*  Beamforming setting */
-	rtw_hal_get_def_var(padapter, HAL_DEF_EXPLICIT_BEAMFORMER, (u8 *)&bHwSupportBeamformer);
-	rtw_hal_get_def_var(padapter, HAL_DEF_EXPLICIT_BEAMFORMEE, (u8 *)&bHwSupportBeamformee);
+	rtw_hal_get_def_var(padapter, HAL_DEF_EXPLICIT_BEAMFORMER,
+			    (u8 *)&bHwSupportBeamformer);
+	rtw_hal_get_def_var(padapter, HAL_DEF_EXPLICIT_BEAMFORMEE,
+			    (u8 *)&bHwSupportBeamformee);
 	CLEAR_FLAGS(phtpriv->beamform_cap);
-	if (TEST_FLAG(pregistrypriv->beamform_cap, BIT(4)) && bHwSupportBeamformer)
-		SET_FLAG(phtpriv->beamform_cap, BEAMFORMING_HT_BEAMFORMER_ENABLE);
+	if (TEST_FLAG(pregistrypriv->beamform_cap, BIT(4)) &&
+	    bHwSupportBeamformer)
+		SET_FLAG(phtpriv->beamform_cap,
+			 BEAMFORMING_HT_BEAMFORMER_ENABLE);
 
-	if (TEST_FLAG(pregistrypriv->beamform_cap, BIT(5)) && bHwSupportBeamformee)
-		SET_FLAG(phtpriv->beamform_cap, BEAMFORMING_HT_BEAMFORMEE_ENABLE);
+	if (TEST_FLAG(pregistrypriv->beamform_cap, BIT(5)) &&
+	    bHwSupportBeamformee)
+		SET_FLAG(phtpriv->beamform_cap,
+			 BEAMFORMING_HT_BEAMFORMEE_ENABLE);
 }
 
 void rtw_build_wmm_ie_ht(struct adapter *padapter, u8 *out_ie, uint *pout_len)
 {
-	unsigned char WMM_IE[] = {0x00, 0x50, 0xf2, 0x02, 0x00, 0x01, 0x00};
+	unsigned char WMM_IE[] = { 0x00, 0x50, 0xf2, 0x02, 0x00, 0x01, 0x00 };
 	int out_len;
 
 	if (padapter->mlmepriv.qospriv.qos_option == 0) {
@@ -2267,7 +2460,9 @@ void rtw_build_wmm_ie_ht(struct adapter *padapter, u8 *out_ie, uint *pout_len)
 }
 
 /* the function is >= passive_level */
-unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie, u8 *out_ie, uint in_len, uint *pout_len, u8 channel)
+unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie,
+				   u8 *out_ie, uint in_len, uint *pout_len,
+				   u8 channel)
 {
 	u32 ielen, out_len;
 	enum ieee80211_max_ampdu_length_exp max_rx_ampdu_factor;
@@ -2304,7 +2499,8 @@ unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie, u8 *out_
 	} else {
 		p = rtw_get_ie(in_ie, WLAN_EID_HT_OPERATION, &ielen, in_len);
 		if (p && (ielen == sizeof(struct ieee80211_ht_addt_info))) {
-			struct HT_info_element *pht_info = (struct HT_info_element *)(p + 2);
+			struct HT_info_element *pht_info =
+				(struct HT_info_element *)(p + 2);
 
 			if (pht_info->infos[0] & BIT(2)) {
 				switch (pht_info->infos[0] & 0x3) {
@@ -2329,7 +2525,8 @@ unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie, u8 *out_
 	if ((cbw40_enable == 1) && (operation_bw == CHANNEL_WIDTH_40)) {
 		ht_capie.cap_info |= cpu_to_le16(IEEE80211_HT_CAP_SUP_WIDTH);
 		if (phtpriv->sgi_40m)
-			ht_capie.cap_info |= cpu_to_le16(IEEE80211_HT_CAP_SGI_40);
+			ht_capie.cap_info |=
+				cpu_to_le16(IEEE80211_HT_CAP_SGI_40);
 	}
 
 	if (TEST_FLAG(phtpriv->stbc_cap, STBC_HT_ENABLE_TX))
@@ -2339,8 +2536,9 @@ unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie, u8 *out_
 	ht_capie.cap_info |= cpu_to_le16(IEEE80211_HT_CAP_SM_PS);
 
 	if (TEST_FLAG(phtpriv->stbc_cap, STBC_HT_ENABLE_RX)) {
-		if ((channel <= 14 && pregistrypriv->rx_stbc == 0x1) ||	/* enable for 2.4GHz */
-			(pregistrypriv->wifi_spec == 1))
+		if ((channel <= 14 &&
+		     pregistrypriv->rx_stbc == 0x1) || /* enable for 2.4GHz */
+		    (pregistrypriv->wifi_spec == 1))
 			stbc_rx_enable = 1;
 	}
 
@@ -2349,20 +2547,23 @@ unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie, u8 *out_
 
 	/* update default supported_mcs_set */
 	if (stbc_rx_enable)
-		ht_capie.cap_info |= cpu_to_le16(IEEE80211_HT_CAP_RX_STBC_1R);/* RX STBC One spatial stream */
+		ht_capie.cap_info |= cpu_to_le16(
+			IEEE80211_HT_CAP_RX_STBC_1R); /* RX STBC One spatial stream */
 
 	set_mcs_rate_by_mask(ht_capie.mcs.rx_mask, MCS_RATE_1R);
 
 	{
 		u32 rx_packet_offset, max_recvbuf_sz;
 
-		rtw_hal_get_def_var(padapter, HAL_DEF_RX_PACKET_OFFSET, &rx_packet_offset);
-		rtw_hal_get_def_var(padapter, HAL_DEF_MAX_RECVBUF_SZ, &max_recvbuf_sz);
+		rtw_hal_get_def_var(padapter, HAL_DEF_RX_PACKET_OFFSET,
+				    &rx_packet_offset);
+		rtw_hal_get_def_var(padapter, HAL_DEF_MAX_RECVBUF_SZ,
+				    &max_recvbuf_sz);
 	}
 
 	if (padapter->driver_rx_ampdu_factor != 0xFF)
-		max_rx_ampdu_factor =
-		  (enum ieee80211_max_ampdu_length_exp)padapter->driver_rx_ampdu_factor;
+		max_rx_ampdu_factor = (enum ieee80211_max_ampdu_length_exp)
+					      padapter->driver_rx_ampdu_factor;
 	else
 		rtw_hal_get_def_var(padapter, HW_VAR_MAX_RX_AMPDU_FACTOR,
 				    &max_rx_ampdu_factor);
@@ -2370,12 +2571,15 @@ unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie, u8 *out_
 	ht_capie.ampdu_params_info = (max_rx_ampdu_factor & 0x03);
 
 	if (padapter->securitypriv.dot11PrivacyAlgrthm == _AES_)
-		ht_capie.ampdu_params_info |= (IEEE80211_HT_CAP_AMPDU_DENSITY & (0x07 << 2));
+		ht_capie.ampdu_params_info |=
+			(IEEE80211_HT_CAP_AMPDU_DENSITY & (0x07 << 2));
 	else
-		ht_capie.ampdu_params_info |= (IEEE80211_HT_CAP_AMPDU_DENSITY & 0x00);
+		ht_capie.ampdu_params_info |=
+			(IEEE80211_HT_CAP_AMPDU_DENSITY & 0x00);
 
 	rtw_set_ie(out_ie + out_len, WLAN_EID_HT_CAPABILITY,
-		   sizeof(struct ieee80211_ht_cap), (unsigned char *)&ht_capie, pout_len);
+		   sizeof(struct ieee80211_ht_cap), (unsigned char *)&ht_capie,
+		   pout_len);
 
 	phtpriv->ht_option = true;
 
@@ -2383,7 +2587,8 @@ unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie, u8 *out_
 		p = rtw_get_ie(in_ie, WLAN_EID_HT_OPERATION, &ielen, in_len);
 		if (p && (ielen == sizeof(struct ieee80211_ht_addt_info))) {
 			out_len = *pout_len;
-			rtw_set_ie(out_ie + out_len, WLAN_EID_HT_OPERATION, ielen, p + 2, pout_len);
+			rtw_set_ie(out_ie + out_len, WLAN_EID_HT_OPERATION,
+				   ielen, p + 2, pout_len);
 		}
 	}
 
@@ -2391,7 +2596,8 @@ unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie, u8 *out_
 }
 
 /* the function is > passive_level (in critical_section) */
-void rtw_update_ht_cap(struct adapter *padapter, u8 *pie, uint ie_len, u8 channel)
+void rtw_update_ht_cap(struct adapter *padapter, u8 *pie, uint ie_len,
+		       u8 channel)
 {
 	u8 *p, max_ampdu_sz;
 	int len;
@@ -2415,17 +2621,23 @@ void rtw_update_ht_cap(struct adapter *padapter, u8 *pie, uint ie_len, u8 channe
 
 	/* check Max Rx A-MPDU Size */
 	len = 0;
-	p = rtw_get_ie(pie + sizeof(struct ndis_802_11_fix_ie), WLAN_EID_HT_CAPABILITY, &len, ie_len - sizeof(struct ndis_802_11_fix_ie));
+	p = rtw_get_ie(pie + sizeof(struct ndis_802_11_fix_ie),
+		       WLAN_EID_HT_CAPABILITY, &len,
+		       ie_len - sizeof(struct ndis_802_11_fix_ie));
 	if (p && len > 0) {
 		pht_capie = (struct ieee80211_ht_cap *)(p + 2);
-		max_ampdu_sz = (pht_capie->ampdu_params_info & IEEE80211_HT_CAP_AMPDU_FACTOR);
-		max_ampdu_sz = 1 << (max_ampdu_sz + 3); /*  max_ampdu_sz (kbytes); */
+		max_ampdu_sz = (pht_capie->ampdu_params_info &
+				IEEE80211_HT_CAP_AMPDU_FACTOR);
+		max_ampdu_sz =
+			1 << (max_ampdu_sz + 3); /*  max_ampdu_sz (kbytes); */
 
 		phtpriv->rx_ampdu_maxlen = max_ampdu_sz;
 	}
 
 	len = 0;
-	p = rtw_get_ie(pie + sizeof(struct ndis_802_11_fix_ie), WLAN_EID_HT_OPERATION, &len, ie_len - sizeof(struct ndis_802_11_fix_ie));
+	p = rtw_get_ie(pie + sizeof(struct ndis_802_11_fix_ie),
+		       WLAN_EID_HT_OPERATION, &len,
+		       ie_len - sizeof(struct ndis_802_11_fix_ie));
 	if (p && len > 0) {
 		/* todo: */
 	}
@@ -2436,15 +2648,19 @@ void rtw_update_ht_cap(struct adapter *padapter, u8 *pie, uint ie_len, u8 channe
 	/* update cur_bwmode & cur_ch_offset */
 	if ((cbw40_enable) &&
 	    (le16_to_cpu(pmlmeinfo->HT_caps.u.HT_cap_element.HT_caps_info) &
-	      BIT(1)) && (pmlmeinfo->HT_info.infos[0] & BIT(2))) {
+	     BIT(1)) &&
+	    (pmlmeinfo->HT_info.infos[0] & BIT(2))) {
 		int i;
 
 		/* update the MCS set */
 		for (i = 0; i < 16; i++)
-			pmlmeinfo->HT_caps.u.HT_cap_element.MCS_rate[i] &= pmlmeext->default_supported_mcs_set[i];
+			pmlmeinfo->HT_caps.u.HT_cap_element.MCS_rate[i] &=
+				pmlmeext->default_supported_mcs_set[i];
 
 		/* update the MCS rates */
-		set_mcs_rate_by_mask(pmlmeinfo->HT_caps.u.HT_cap_element.MCS_rate, MCS_RATE_1R);
+		set_mcs_rate_by_mask(
+			pmlmeinfo->HT_caps.u.HT_cap_element.MCS_rate,
+			MCS_RATE_1R);
 
 		/* switch to the 40M Hz mode according to the AP */
 		/* pmlmeext->cur_bwmode = CHANNEL_WIDTH_40; */
@@ -2458,7 +2674,8 @@ void rtw_update_ht_cap(struct adapter *padapter, u8 *pie, uint ie_len, u8 channe
 			break;
 
 		default:
-			pmlmeext->cur_ch_offset = HAL_PRIME_CHNL_OFFSET_DONT_CARE;
+			pmlmeext->cur_ch_offset =
+				HAL_PRIME_CHNL_OFFSET_DONT_CARE;
 			break;
 		}
 	}
@@ -2468,7 +2685,8 @@ void rtw_update_ht_cap(struct adapter *padapter, u8 *pie, uint ie_len, u8 channe
 	/*  */
 	pmlmeinfo->SM_PS =
 		(le16_to_cpu(pmlmeinfo->HT_caps.u.HT_cap_element.HT_caps_info) &
-		 0x0C) >> 2;
+		 0x0C) >>
+		2;
 
 	/*  */
 	/*  Config current HT Protection mode. */
@@ -2476,7 +2694,8 @@ void rtw_update_ht_cap(struct adapter *padapter, u8 *pie, uint ie_len, u8 channe
 	pmlmeinfo->HT_protection = pmlmeinfo->HT_info.infos[1] & 0x3;
 }
 
-void rtw_issue_addbareq_cmd(struct adapter *padapter, struct xmit_frame *pxmitframe)
+void rtw_issue_addbareq_cmd(struct adapter *padapter,
+			    struct xmit_frame *pxmitframe)
 {
 	u8 issued;
 	int priority;
@@ -2485,7 +2704,8 @@ void rtw_issue_addbareq_cmd(struct adapter *padapter, struct xmit_frame *pxmitfr
 	struct pkt_attrib *pattrib = &pxmitframe->attrib;
 	s32 bmcst = is_multicast_ether_addr(pattrib->ra);
 
-	if (bmcst || (padapter->mlmepriv.link_detect_info.num_tx_ok_in_period < 100))
+	if (bmcst ||
+	    (padapter->mlmepriv.link_detect_info.num_tx_ok_in_period < 100))
 		return;
 
 	priority = pattrib->priority;
@@ -2508,21 +2728,23 @@ void rtw_issue_addbareq_cmd(struct adapter *padapter, struct xmit_frame *pxmitfr
 
 		if (issued == 0) {
 			psta->htpriv.candidate_tid_bitmap |= BIT((u8)priority);
-			rtw_addbareq_cmd(padapter, (u8) priority, pattrib->ra);
+			rtw_addbareq_cmd(padapter, (u8)priority, pattrib->ra);
 		}
 	}
 }
 
-void rtw_append_exented_cap(struct adapter *padapter, u8 *out_ie, uint *pout_len)
+void rtw_append_exented_cap(struct adapter *padapter, u8 *out_ie,
+			    uint *pout_len)
 {
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct ht_priv *phtpriv = &pmlmepriv->htpriv;
-	u8 cap_content[8] = {0};
+	u8 cap_content[8] = { 0 };
 
 	if (phtpriv->bss_coexist)
 		SET_EXT_CAPABILITY_ELE_BSS_COEXIST(cap_content, 1);
 
-	rtw_set_ie(out_ie + *pout_len, WLAN_EID_EXT_CAPABILITY, 8, cap_content, pout_len);
+	rtw_set_ie(out_ie + *pout_len, WLAN_EID_EXT_CAPABILITY, 8, cap_content,
+		   pout_len);
 }
 
 inline void rtw_set_to_roam(struct adapter *adapter, u8 to_roam)
@@ -2558,7 +2780,8 @@ void _rtw_roaming(struct adapter *padapter, struct wlan_network *tgt_network)
 	struct wlan_network *cur_network = &pmlmepriv->cur_network;
 
 	if (rtw_to_roam(padapter) > 0) {
-		memcpy(&pmlmepriv->assoc_ssid, &cur_network->network.ssid, sizeof(struct ndis_802_11_ssid));
+		memcpy(&pmlmepriv->assoc_ssid, &cur_network->network.ssid,
+		       sizeof(struct ndis_802_11_ssid));
 
 		pmlmepriv->assoc_by_bssid = false;
 
@@ -2575,10 +2798,11 @@ void _rtw_roaming(struct adapter *padapter, struct wlan_network *tgt_network)
 bool rtw_linked_check(struct adapter *padapter)
 {
 	if (check_fwstate(&padapter->mlmepriv, WIFI_AP_STATE) ||
-	    check_fwstate(&padapter->mlmepriv, WIFI_ADHOC_STATE | WIFI_ADHOC_MASTER_STATE)) {
+	    check_fwstate(&padapter->mlmepriv,
+			  WIFI_ADHOC_STATE | WIFI_ADHOC_MASTER_STATE)) {
 		if (padapter->stapriv.asoc_sta_count > 2)
 			return true;
-	} else {	/* Station mode */
+	} else { /* Station mode */
 		if (check_fwstate(&padapter->mlmepriv, _FW_LINKED))
 			return true;
 	}
diff --git a/drivers/staging/rtl8723bs/core/rtw_mlme_ext.c b/drivers/staging/rtl8723bs/core/rtw_mlme_ext.c
index a443b3530fb98..bc1850f745138 100644
--- a/drivers/staging/rtl8723bs/core/rtw_mlme_ext.c
+++ b/drivers/staging/rtl8723bs/core/rtw_mlme_ext.c
@@ -12,155 +12,164 @@
 #include <linux/unaligned.h>
 
 static struct mlme_handler mlme_sta_tbl[] = {
-	{WIFI_ASSOCREQ,		"OnAssocReq",	&OnAssocReq},
-	{WIFI_ASSOCRSP,		"OnAssocRsp",	&OnAssocRsp},
-	{WIFI_REASSOCREQ,	"OnReAssocReq",	&OnAssocReq},
-	{WIFI_REASSOCRSP,	"OnReAssocRsp",	&OnAssocRsp},
-	{WIFI_PROBEREQ,		"OnProbeReq",	&OnProbeReq},
-	{WIFI_PROBERSP,		"OnProbeRsp",		&OnProbeRsp},
+	{ WIFI_ASSOCREQ, "OnAssocReq", &OnAssocReq },
+	{ WIFI_ASSOCRSP, "OnAssocRsp", &OnAssocRsp },
+	{ WIFI_REASSOCREQ, "OnReAssocReq", &OnAssocReq },
+	{ WIFI_REASSOCRSP, "OnReAssocRsp", &OnAssocRsp },
+	{ WIFI_PROBEREQ, "OnProbeReq", &OnProbeReq },
+	{ WIFI_PROBERSP, "OnProbeRsp", &OnProbeRsp },
 
 	/* below 2 are reserved */
-	{0,					"DoReserved",		&DoReserved},
-	{0,					"DoReserved",		&DoReserved},
-	{WIFI_BEACON,		"OnBeacon",		&OnBeacon},
-	{WIFI_ATIM,			"OnATIM",		&OnAtim},
-	{WIFI_DISASSOC,		"OnDisassoc",		&OnDisassoc},
-	{WIFI_AUTH,			"OnAuth",		&OnAuthClient},
-	{WIFI_DEAUTH,		"OnDeAuth",		&OnDeAuth},
-	{WIFI_ACTION,		"OnAction",		&OnAction},
-	{WIFI_ACTION_NOACK, "OnActionNoAck",	&OnAction},
+	{ 0, "DoReserved", &DoReserved },
+	{ 0, "DoReserved", &DoReserved },
+	{ WIFI_BEACON, "OnBeacon", &OnBeacon },
+	{ WIFI_ATIM, "OnATIM", &OnAtim },
+	{ WIFI_DISASSOC, "OnDisassoc", &OnDisassoc },
+	{ WIFI_AUTH, "OnAuth", &OnAuthClient },
+	{ WIFI_DEAUTH, "OnDeAuth", &OnDeAuth },
+	{ WIFI_ACTION, "OnAction", &OnAction },
+	{ WIFI_ACTION_NOACK, "OnActionNoAck", &OnAction },
 };
 
 static struct action_handler OnAction_tbl[] = {
-	{RTW_WLAN_CATEGORY_SPECTRUM_MGMT,	 "ACTION_SPECTRUM_MGMT", on_action_spct},
-	{RTW_WLAN_CATEGORY_QOS, "ACTION_QOS", &DoReserved},
-	{RTW_WLAN_CATEGORY_DLS, "ACTION_DLS", &DoReserved},
-	{RTW_WLAN_CATEGORY_BACK, "ACTION_BACK", &OnAction_back},
-	{RTW_WLAN_CATEGORY_PUBLIC, "ACTION_PUBLIC", on_action_public},
-	{RTW_WLAN_CATEGORY_RADIO_MEASUREMENT, "ACTION_RADIO_MEASUREMENT", &DoReserved},
-	{RTW_WLAN_CATEGORY_FT, "ACTION_FT",	&DoReserved},
-	{RTW_WLAN_CATEGORY_HT,	"ACTION_HT",	&OnAction_ht},
-	{RTW_WLAN_CATEGORY_SA_QUERY, "ACTION_SA_QUERY", &OnAction_sa_query},
-	{RTW_WLAN_CATEGORY_UNPROTECTED_WNM, "ACTION_UNPROTECTED_WNM", &DoReserved},
-	{RTW_WLAN_CATEGORY_SELF_PROTECTED, "ACTION_SELF_PROTECTED", &DoReserved},
-	{RTW_WLAN_CATEGORY_WMM, "ACTION_WMM", &DoReserved},
-	{RTW_WLAN_CATEGORY_P2P, "ACTION_P2P", &DoReserved},
+	{ RTW_WLAN_CATEGORY_SPECTRUM_MGMT, "ACTION_SPECTRUM_MGMT",
+	  on_action_spct },
+	{ RTW_WLAN_CATEGORY_QOS, "ACTION_QOS", &DoReserved },
+	{ RTW_WLAN_CATEGORY_DLS, "ACTION_DLS", &DoReserved },
+	{ RTW_WLAN_CATEGORY_BACK, "ACTION_BACK", &OnAction_back },
+	{ RTW_WLAN_CATEGORY_PUBLIC, "ACTION_PUBLIC", on_action_public },
+	{ RTW_WLAN_CATEGORY_RADIO_MEASUREMENT, "ACTION_RADIO_MEASUREMENT",
+	  &DoReserved },
+	{ RTW_WLAN_CATEGORY_FT, "ACTION_FT", &DoReserved },
+	{ RTW_WLAN_CATEGORY_HT, "ACTION_HT", &OnAction_ht },
+	{ RTW_WLAN_CATEGORY_SA_QUERY, "ACTION_SA_QUERY", &OnAction_sa_query },
+	{ RTW_WLAN_CATEGORY_UNPROTECTED_WNM, "ACTION_UNPROTECTED_WNM",
+	  &DoReserved },
+	{ RTW_WLAN_CATEGORY_SELF_PROTECTED, "ACTION_SELF_PROTECTED",
+	  &DoReserved },
+	{ RTW_WLAN_CATEGORY_WMM, "ACTION_WMM", &DoReserved },
+	{ RTW_WLAN_CATEGORY_P2P, "ACTION_P2P", &DoReserved },
 };
 
-static u8 null_addr[ETH_ALEN] = {0, 0, 0, 0, 0, 0};
+static u8 null_addr[ETH_ALEN] = { 0, 0, 0, 0, 0, 0 };
 
 /* OUI definitions for the vendor specific IE */
-unsigned char RTW_WPA_OUI[] = {0x00, 0x50, 0xf2, 0x01};
-unsigned char WMM_OUI[] = {0x00, 0x50, 0xf2, 0x02};
-unsigned char WPS_OUI[] = {0x00, 0x50, 0xf2, 0x04};
-unsigned char P2P_OUI[] = {0x50, 0x6F, 0x9A, 0x09};
-unsigned char WFD_OUI[] = {0x50, 0x6F, 0x9A, 0x0A};
+unsigned char RTW_WPA_OUI[] = { 0x00, 0x50, 0xf2, 0x01 };
+unsigned char WMM_OUI[] = { 0x00, 0x50, 0xf2, 0x02 };
+unsigned char WPS_OUI[] = { 0x00, 0x50, 0xf2, 0x04 };
+unsigned char P2P_OUI[] = { 0x50, 0x6F, 0x9A, 0x09 };
+unsigned char WFD_OUI[] = { 0x50, 0x6F, 0x9A, 0x0A };
 
-unsigned char WMM_INFO_OUI[] = {0x00, 0x50, 0xf2, 0x02, 0x00, 0x01};
-unsigned char WMM_PARA_OUI[] = {0x00, 0x50, 0xf2, 0x02, 0x01, 0x01};
+unsigned char WMM_INFO_OUI[] = { 0x00, 0x50, 0xf2, 0x02, 0x00, 0x01 };
+unsigned char WMM_PARA_OUI[] = { 0x00, 0x50, 0xf2, 0x02, 0x01, 0x01 };
 
-static unsigned char REALTEK_96B_IE[] = {0x00, 0xe0, 0x4c, 0x02, 0x01, 0x20};
+static unsigned char REALTEK_96B_IE[] = { 0x00, 0xe0, 0x4c, 0x02, 0x01, 0x20 };
 
 /* ChannelPlan definitions */
-static struct rt_channel_plan_2g	RTW_ChannelPlan2G[RT_CHANNEL_DOMAIN_2G_MAX] = {
-	{{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13}, 13},		/*  0x00, RT_CHANNEL_DOMAIN_2G_WORLD , Passive scan CH 12, 13 */
-	{{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13}, 13},		/*  0x01, RT_CHANNEL_DOMAIN_2G_ETSI1 */
-	{{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11}, 11},			/*  0x02, RT_CHANNEL_DOMAIN_2G_FCC1 */
-	{{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14}, 14},	/*  0x03, RT_CHANNEL_DOMAIN_2G_MIKK1 */
-	{{10, 11, 12, 13}, 4},						/*  0x04, RT_CHANNEL_DOMAIN_2G_ETSI2 */
-	{{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14}, 14},	/*  0x05, RT_CHANNEL_DOMAIN_2G_GLOBAL , Passive scan CH 12, 13, 14 */
-	{{}, 0},								/*  0x06, RT_CHANNEL_DOMAIN_2G_NULL */
+static struct rt_channel_plan_2g RTW_ChannelPlan2G[RT_CHANNEL_DOMAIN_2G_MAX] = {
+	{ { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13 },
+	  13 }, /*  0x00, RT_CHANNEL_DOMAIN_2G_WORLD , Passive scan CH 12, 13 */
+	{ { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13 },
+	  13 }, /*  0x01, RT_CHANNEL_DOMAIN_2G_ETSI1 */
+	{ { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11 },
+	  11 }, /*  0x02, RT_CHANNEL_DOMAIN_2G_FCC1 */
+	{ { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14 },
+	  14 }, /*  0x03, RT_CHANNEL_DOMAIN_2G_MIKK1 */
+	{ { 10, 11, 12, 13 }, 4 }, /*  0x04, RT_CHANNEL_DOMAIN_2G_ETSI2 */
+	{ { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14 },
+	  14 }, /*  0x05, RT_CHANNEL_DOMAIN_2G_GLOBAL , Passive scan CH 12, 13, 14 */
+	{ {}, 0 }, /*  0x06, RT_CHANNEL_DOMAIN_2G_NULL */
 };
 
-static struct rt_channel_plan_map	RTW_ChannelPlanMap[RT_CHANNEL_DOMAIN_MAX] = {
+static struct rt_channel_plan_map RTW_ChannelPlanMap[RT_CHANNEL_DOMAIN_MAX] = {
 	/*  0x00 ~ 0x1F , Old Define ===== */
-	{0x02},	/* 0x00, RT_CHANNEL_DOMAIN_FCC */
-	{0x02},	/* 0x01, RT_CHANNEL_DOMAIN_IC */
-	{0x01},	/* 0x02, RT_CHANNEL_DOMAIN_ETSI */
-	{0x01},	/* 0x03, RT_CHANNEL_DOMAIN_SPAIN */
-	{0x01},	/* 0x04, RT_CHANNEL_DOMAIN_FRANCE */
-	{0x03},	/* 0x05, RT_CHANNEL_DOMAIN_MKK */
-	{0x03},	/* 0x06, RT_CHANNEL_DOMAIN_MKK1 */
-	{0x01},	/* 0x07, RT_CHANNEL_DOMAIN_ISRAEL */
-	{0x03},	/* 0x08, RT_CHANNEL_DOMAIN_TELEC */
-	{0x03},	/* 0x09, RT_CHANNEL_DOMAIN_GLOBAL_DOAMIN */
-	{0x00},	/* 0x0A, RT_CHANNEL_DOMAIN_WORLD_WIDE_13 */
-	{0x02},	/* 0x0B, RT_CHANNEL_DOMAIN_TAIWAN */
-	{0x01},	/* 0x0C, RT_CHANNEL_DOMAIN_CHINA */
-	{0x02},	/* 0x0D, RT_CHANNEL_DOMAIN_SINGAPORE_INDIA_MEXICO */
-	{0x02},	/* 0x0E, RT_CHANNEL_DOMAIN_KOREA */
-	{0x02},	/* 0x0F, RT_CHANNEL_DOMAIN_TURKEY */
-	{0x01},	/* 0x10, RT_CHANNEL_DOMAIN_JAPAN */
-	{0x02},	/* 0x11, RT_CHANNEL_DOMAIN_FCC_NO_DFS */
-	{0x01},	/* 0x12, RT_CHANNEL_DOMAIN_JAPAN_NO_DFS */
-	{0x00},	/* 0x13, RT_CHANNEL_DOMAIN_WORLD_WIDE_5G */
-	{0x02},	/* 0x14, RT_CHANNEL_DOMAIN_TAIWAN_NO_DFS */
-	{0x00},	/* 0x15, RT_CHANNEL_DOMAIN_ETSI_NO_DFS */
-	{0x00},	/* 0x16, RT_CHANNEL_DOMAIN_KOREA_NO_DFS */
-	{0x03},	/* 0x17, RT_CHANNEL_DOMAIN_JAPAN_NO_DFS */
-	{0x06},	/* 0x18, RT_CHANNEL_DOMAIN_PAKISTAN_NO_DFS */
-	{0x02},	/* 0x19, RT_CHANNEL_DOMAIN_TAIWAN2_NO_DFS */
-	{0x00},	/* 0x1A, */
-	{0x00},	/* 0x1B, */
-	{0x00},	/* 0x1C, */
-	{0x00},	/* 0x1D, */
-	{0x00},	/* 0x1E, */
-	{0x06},	/* 0x1F, RT_CHANNEL_DOMAIN_WORLD_WIDE_ONLY_5G */
+	{ 0x02 }, /* 0x00, RT_CHANNEL_DOMAIN_FCC */
+	{ 0x02 }, /* 0x01, RT_CHANNEL_DOMAIN_IC */
+	{ 0x01 }, /* 0x02, RT_CHANNEL_DOMAIN_ETSI */
+	{ 0x01 }, /* 0x03, RT_CHANNEL_DOMAIN_SPAIN */
+	{ 0x01 }, /* 0x04, RT_CHANNEL_DOMAIN_FRANCE */
+	{ 0x03 }, /* 0x05, RT_CHANNEL_DOMAIN_MKK */
+	{ 0x03 }, /* 0x06, RT_CHANNEL_DOMAIN_MKK1 */
+	{ 0x01 }, /* 0x07, RT_CHANNEL_DOMAIN_ISRAEL */
+	{ 0x03 }, /* 0x08, RT_CHANNEL_DOMAIN_TELEC */
+	{ 0x03 }, /* 0x09, RT_CHANNEL_DOMAIN_GLOBAL_DOAMIN */
+	{ 0x00 }, /* 0x0A, RT_CHANNEL_DOMAIN_WORLD_WIDE_13 */
+	{ 0x02 }, /* 0x0B, RT_CHANNEL_DOMAIN_TAIWAN */
+	{ 0x01 }, /* 0x0C, RT_CHANNEL_DOMAIN_CHINA */
+	{ 0x02 }, /* 0x0D, RT_CHANNEL_DOMAIN_SINGAPORE_INDIA_MEXICO */
+	{ 0x02 }, /* 0x0E, RT_CHANNEL_DOMAIN_KOREA */
+	{ 0x02 }, /* 0x0F, RT_CHANNEL_DOMAIN_TURKEY */
+	{ 0x01 }, /* 0x10, RT_CHANNEL_DOMAIN_JAPAN */
+	{ 0x02 }, /* 0x11, RT_CHANNEL_DOMAIN_FCC_NO_DFS */
+	{ 0x01 }, /* 0x12, RT_CHANNEL_DOMAIN_JAPAN_NO_DFS */
+	{ 0x00 }, /* 0x13, RT_CHANNEL_DOMAIN_WORLD_WIDE_5G */
+	{ 0x02 }, /* 0x14, RT_CHANNEL_DOMAIN_TAIWAN_NO_DFS */
+	{ 0x00 }, /* 0x15, RT_CHANNEL_DOMAIN_ETSI_NO_DFS */
+	{ 0x00 }, /* 0x16, RT_CHANNEL_DOMAIN_KOREA_NO_DFS */
+	{ 0x03 }, /* 0x17, RT_CHANNEL_DOMAIN_JAPAN_NO_DFS */
+	{ 0x06 }, /* 0x18, RT_CHANNEL_DOMAIN_PAKISTAN_NO_DFS */
+	{ 0x02 }, /* 0x19, RT_CHANNEL_DOMAIN_TAIWAN2_NO_DFS */
+	{ 0x00 }, /* 0x1A, */
+	{ 0x00 }, /* 0x1B, */
+	{ 0x00 }, /* 0x1C, */
+	{ 0x00 }, /* 0x1D, */
+	{ 0x00 }, /* 0x1E, */
+	{ 0x06 }, /* 0x1F, RT_CHANNEL_DOMAIN_WORLD_WIDE_ONLY_5G */
 	/*  0x20 ~ 0x7F , New Define ===== */
-	{0x00},	/* 0x20, RT_CHANNEL_DOMAIN_WORLD_NULL */
-	{0x01},	/* 0x21, RT_CHANNEL_DOMAIN_ETSI1_NULL */
-	{0x02},	/* 0x22, RT_CHANNEL_DOMAIN_FCC1_NULL */
-	{0x03},	/* 0x23, RT_CHANNEL_DOMAIN_MKK1_NULL */
-	{0x04},	/* 0x24, RT_CHANNEL_DOMAIN_ETSI2_NULL */
-	{0x02},	/* 0x25, RT_CHANNEL_DOMAIN_FCC1_FCC1 */
-	{0x00},	/* 0x26, RT_CHANNEL_DOMAIN_WORLD_ETSI1 */
-	{0x03},	/* 0x27, RT_CHANNEL_DOMAIN_MKK1_MKK1 */
-	{0x00},	/* 0x28, RT_CHANNEL_DOMAIN_WORLD_KCC1 */
-	{0x00},	/* 0x29, RT_CHANNEL_DOMAIN_WORLD_FCC2 */
-	{0x00},	/* 0x2A, */
-	{0x00},	/* 0x2B, */
-	{0x00},	/* 0x2C, */
-	{0x00},	/* 0x2D, */
-	{0x00},	/* 0x2E, */
-	{0x00},	/* 0x2F, */
-	{0x00},	/* 0x30, RT_CHANNEL_DOMAIN_WORLD_FCC3 */
-	{0x00},	/* 0x31, RT_CHANNEL_DOMAIN_WORLD_FCC4 */
-	{0x00},	/* 0x32, RT_CHANNEL_DOMAIN_WORLD_FCC5 */
-	{0x00},	/* 0x33, RT_CHANNEL_DOMAIN_WORLD_FCC6 */
-	{0x02},	/* 0x34, RT_CHANNEL_DOMAIN_FCC1_FCC7 */
-	{0x00},	/* 0x35, RT_CHANNEL_DOMAIN_WORLD_ETSI2 */
-	{0x00},	/* 0x36, RT_CHANNEL_DOMAIN_WORLD_ETSI3 */
-	{0x03},	/* 0x37, RT_CHANNEL_DOMAIN_MKK1_MKK2 */
-	{0x03},	/* 0x38, RT_CHANNEL_DOMAIN_MKK1_MKK3 */
-	{0x02},	/* 0x39, RT_CHANNEL_DOMAIN_FCC1_NCC1 */
-	{0x00},	/* 0x3A, */
-	{0x00},	/* 0x3B, */
-	{0x00},	/* 0x3C, */
-	{0x00},	/* 0x3D, */
-	{0x00},	/* 0x3E, */
-	{0x00},	/* 0x3F, */
-	{0x02},	/* 0x40, RT_CHANNEL_DOMAIN_FCC1_NCC2 */
-	{0x05},	/* 0x41, RT_CHANNEL_DOMAIN_GLOBAL_NULL */
-	{0x01},	/* 0x42, RT_CHANNEL_DOMAIN_ETSI1_ETSI4 */
-	{0x02},	/* 0x43, RT_CHANNEL_DOMAIN_FCC1_FCC2 */
-	{0x02},	/* 0x44, RT_CHANNEL_DOMAIN_FCC1_NCC3 */
-	{0x00},	/* 0x45, RT_CHANNEL_DOMAIN_WORLD_ETSI5 */
-	{0x02},	/* 0x46, RT_CHANNEL_DOMAIN_FCC1_FCC8 */
-	{0x00},	/* 0x47, RT_CHANNEL_DOMAIN_WORLD_ETSI6 */
-	{0x00},	/* 0x48, RT_CHANNEL_DOMAIN_WORLD_ETSI7 */
-	{0x00},	/* 0x49, RT_CHANNEL_DOMAIN_WORLD_ETSI8 */
-	{0x00},	/* 0x50, RT_CHANNEL_DOMAIN_WORLD_ETSI9 */
-	{0x00},	/* 0x51, RT_CHANNEL_DOMAIN_WORLD_ETSI10 */
-	{0x00},	/* 0x52, RT_CHANNEL_DOMAIN_WORLD_ETSI11 */
-	{0x02},	/* 0x53, RT_CHANNEL_DOMAIN_FCC1_NCC4 */
-	{0x00},	/* 0x54, RT_CHANNEL_DOMAIN_WORLD_ETSI12 */
-	{0x02},	/* 0x55, RT_CHANNEL_DOMAIN_FCC1_FCC9 */
-	{0x00},	/* 0x56, RT_CHANNEL_DOMAIN_WORLD_ETSI13 */
-	{0x02},	/* 0x57, RT_CHANNEL_DOMAIN_FCC1_FCC10 */
+	{ 0x00 }, /* 0x20, RT_CHANNEL_DOMAIN_WORLD_NULL */
+	{ 0x01 }, /* 0x21, RT_CHANNEL_DOMAIN_ETSI1_NULL */
+	{ 0x02 }, /* 0x22, RT_CHANNEL_DOMAIN_FCC1_NULL */
+	{ 0x03 }, /* 0x23, RT_CHANNEL_DOMAIN_MKK1_NULL */
+	{ 0x04 }, /* 0x24, RT_CHANNEL_DOMAIN_ETSI2_NULL */
+	{ 0x02 }, /* 0x25, RT_CHANNEL_DOMAIN_FCC1_FCC1 */
+	{ 0x00 }, /* 0x26, RT_CHANNEL_DOMAIN_WORLD_ETSI1 */
+	{ 0x03 }, /* 0x27, RT_CHANNEL_DOMAIN_MKK1_MKK1 */
+	{ 0x00 }, /* 0x28, RT_CHANNEL_DOMAIN_WORLD_KCC1 */
+	{ 0x00 }, /* 0x29, RT_CHANNEL_DOMAIN_WORLD_FCC2 */
+	{ 0x00 }, /* 0x2A, */
+	{ 0x00 }, /* 0x2B, */
+	{ 0x00 }, /* 0x2C, */
+	{ 0x00 }, /* 0x2D, */
+	{ 0x00 }, /* 0x2E, */
+	{ 0x00 }, /* 0x2F, */
+	{ 0x00 }, /* 0x30, RT_CHANNEL_DOMAIN_WORLD_FCC3 */
+	{ 0x00 }, /* 0x31, RT_CHANNEL_DOMAIN_WORLD_FCC4 */
+	{ 0x00 }, /* 0x32, RT_CHANNEL_DOMAIN_WORLD_FCC5 */
+	{ 0x00 }, /* 0x33, RT_CHANNEL_DOMAIN_WORLD_FCC6 */
+	{ 0x02 }, /* 0x34, RT_CHANNEL_DOMAIN_FCC1_FCC7 */
+	{ 0x00 }, /* 0x35, RT_CHANNEL_DOMAIN_WORLD_ETSI2 */
+	{ 0x00 }, /* 0x36, RT_CHANNEL_DOMAIN_WORLD_ETSI3 */
+	{ 0x03 }, /* 0x37, RT_CHANNEL_DOMAIN_MKK1_MKK2 */
+	{ 0x03 }, /* 0x38, RT_CHANNEL_DOMAIN_MKK1_MKK3 */
+	{ 0x02 }, /* 0x39, RT_CHANNEL_DOMAIN_FCC1_NCC1 */
+	{ 0x00 }, /* 0x3A, */
+	{ 0x00 }, /* 0x3B, */
+	{ 0x00 }, /* 0x3C, */
+	{ 0x00 }, /* 0x3D, */
+	{ 0x00 }, /* 0x3E, */
+	{ 0x00 }, /* 0x3F, */
+	{ 0x02 }, /* 0x40, RT_CHANNEL_DOMAIN_FCC1_NCC2 */
+	{ 0x05 }, /* 0x41, RT_CHANNEL_DOMAIN_GLOBAL_NULL */
+	{ 0x01 }, /* 0x42, RT_CHANNEL_DOMAIN_ETSI1_ETSI4 */
+	{ 0x02 }, /* 0x43, RT_CHANNEL_DOMAIN_FCC1_FCC2 */
+	{ 0x02 }, /* 0x44, RT_CHANNEL_DOMAIN_FCC1_NCC3 */
+	{ 0x00 }, /* 0x45, RT_CHANNEL_DOMAIN_WORLD_ETSI5 */
+	{ 0x02 }, /* 0x46, RT_CHANNEL_DOMAIN_FCC1_FCC8 */
+	{ 0x00 }, /* 0x47, RT_CHANNEL_DOMAIN_WORLD_ETSI6 */
+	{ 0x00 }, /* 0x48, RT_CHANNEL_DOMAIN_WORLD_ETSI7 */
+	{ 0x00 }, /* 0x49, RT_CHANNEL_DOMAIN_WORLD_ETSI8 */
+	{ 0x00 }, /* 0x50, RT_CHANNEL_DOMAIN_WORLD_ETSI9 */
+	{ 0x00 }, /* 0x51, RT_CHANNEL_DOMAIN_WORLD_ETSI10 */
+	{ 0x00 }, /* 0x52, RT_CHANNEL_DOMAIN_WORLD_ETSI11 */
+	{ 0x02 }, /* 0x53, RT_CHANNEL_DOMAIN_FCC1_NCC4 */
+	{ 0x00 }, /* 0x54, RT_CHANNEL_DOMAIN_WORLD_ETSI12 */
+	{ 0x02 }, /* 0x55, RT_CHANNEL_DOMAIN_FCC1_FCC9 */
+	{ 0x00 }, /* 0x56, RT_CHANNEL_DOMAIN_WORLD_ETSI13 */
+	{ 0x02 }, /* 0x57, RT_CHANNEL_DOMAIN_FCC1_FCC10 */
 };
 
- /* use the combination for max channel numbers */
-static struct rt_channel_plan_map RTW_CHANNEL_PLAN_MAP_REALTEK_DEFINE = {0x03};
+/* use the combination for max channel numbers */
+static struct rt_channel_plan_map RTW_CHANNEL_PLAN_MAP_REALTEK_DEFINE = { 0x03 };
 
 /* Search the @param ch in given @param ch_set
  * @ch_set: the given channel set
@@ -196,14 +205,25 @@ void init_mlme_default_rate_set(struct adapter *padapter)
 {
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 
-	unsigned char mixed_datarate[NumRates] = {_1M_RATE_, _2M_RATE_, _5M_RATE_, _11M_RATE_, _6M_RATE_, _9M_RATE_, _12M_RATE_, _18M_RATE_, _24M_RATE_, _36M_RATE_, _48M_RATE_, _54M_RATE_, 0xff};
-	unsigned char mixed_basicrate[NumRates] = {_1M_RATE_, _2M_RATE_, _5M_RATE_, _11M_RATE_, _6M_RATE_, _12M_RATE_, _24M_RATE_, 0xff,};
-	unsigned char supported_mcs_set[16] = {0xff, 0xff, 0x00, 0x00, 0x01, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
+	unsigned char mixed_datarate[NumRates] = {
+		_1M_RATE_,  _2M_RATE_,	_5M_RATE_,  _11M_RATE_, _6M_RATE_,
+		_9M_RATE_,  _12M_RATE_, _18M_RATE_, _24M_RATE_, _36M_RATE_,
+		_48M_RATE_, _54M_RATE_, 0xff
+	};
+	unsigned char mixed_basicrate[NumRates] = {
+		_1M_RATE_, _2M_RATE_,  _5M_RATE_,  _11M_RATE_,
+		_6M_RATE_, _12M_RATE_, _24M_RATE_, 0xff,
+	};
+	unsigned char supported_mcs_set[16] = { 0xff, 0xff, 0x00, 0x00,
+						0x01, 0x0,  0x0,  0x0,
+						0x0,  0x0,  0x0,  0x0,
+						0x0,  0x0,  0x0,  0x0 };
 
 	memcpy(pmlmeext->datarate, mixed_datarate, NumRates);
 	memcpy(pmlmeext->basicrate, mixed_basicrate, NumRates);
 
-	memcpy(pmlmeext->default_supported_mcs_set, supported_mcs_set, sizeof(pmlmeext->default_supported_mcs_set));
+	memcpy(pmlmeext->default_supported_mcs_set, supported_mcs_set,
+	       sizeof(pmlmeext->default_supported_mcs_set));
 }
 
 static void init_mlme_ext_priv_value(struct adapter *padapter)
@@ -212,7 +232,8 @@ static void init_mlme_ext_priv_value(struct adapter *padapter)
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 
 	atomic_set(&pmlmeext->event_seq, 0);
-	pmlmeext->mgnt_seq = 0;/* reset to zero when disconnect at client mode */
+	pmlmeext->mgnt_seq =
+		0; /* reset to zero when disconnect at client mode */
 	pmlmeext->sa_query_seq = 0;
 	pmlmeext->mgnt_80211w_IPN = 0;
 	pmlmeext->mgnt_80211w_IPN_rx = 0;
@@ -255,9 +276,8 @@ static void init_mlme_ext_priv_value(struct adapter *padapter)
 	pmlmeext->action_public_dialog_token = 0xff;
 }
 
-static int has_channel(struct rt_channel_info *channel_set,
-					   u8 chanset_size,
-					   u8 chan)
+static int has_channel(struct rt_channel_info *channel_set, u8 chanset_size,
+		       u8 chan)
 {
 	int i;
 
@@ -268,20 +288,21 @@ static int has_channel(struct rt_channel_info *channel_set,
 	return 0;
 }
 
-static void init_channel_list(struct adapter *padapter, struct rt_channel_info *channel_set,
-							  u8 chanset_size,
-							  struct p2p_channels *channel_list)
+static void init_channel_list(struct adapter *padapter,
+			      struct rt_channel_info *channel_set,
+			      u8 chanset_size,
+			      struct p2p_channels *channel_list)
 {
 	static const struct p2p_oper_class_map op_class[] = {
-		{ IEEE80211G,  81,   1,  13,  1, BW20 },
-		{ IEEE80211G,  82,  14,  14,  1, BW20 },
-		{ IEEE80211A, 115,  36,  48,  4, BW20 },
-		{ IEEE80211A, 116,  36,  44,  8, BW40PLUS },
-		{ IEEE80211A, 117,  40,  48,  8, BW40MINUS },
-		{ IEEE80211A, 124, 149, 161,  4, BW20 },
-		{ IEEE80211A, 125, 149, 169,  4, BW20 },
-		{ IEEE80211A, 126, 149, 157,  8, BW40PLUS },
-		{ IEEE80211A, 127, 153, 161,  8, BW40MINUS },
+		{ IEEE80211G, 81, 1, 13, 1, BW20 },
+		{ IEEE80211G, 82, 14, 14, 1, BW20 },
+		{ IEEE80211A, 115, 36, 48, 4, BW20 },
+		{ IEEE80211A, 116, 36, 44, 8, BW40PLUS },
+		{ IEEE80211A, 117, 40, 48, 8, BW40MINUS },
+		{ IEEE80211A, 124, 149, 161, 4, BW20 },
+		{ IEEE80211A, 125, 149, 169, 4, BW20 },
+		{ IEEE80211A, 126, 149, 157, 8, BW40PLUS },
+		{ IEEE80211A, 127, 153, 161, 8, BW40MINUS },
 		{ -1, 0, 0, 0, 0, BW20 }
 	};
 
@@ -298,11 +319,12 @@ static void init_channel_list(struct adapter *padapter, struct rt_channel_info *
 			if (!has_channel(channel_set, chanset_size, ch))
 				continue;
 
-			if ((padapter->registrypriv.ht_enable == 0) && (o->inc == 8))
+			if ((padapter->registrypriv.ht_enable == 0) &&
+			    (o->inc == 8))
 				continue;
 
 			if ((0 < (padapter->registrypriv.bw_mode & 0xf0)) &&
-				((o->bw == BW40MINUS) || (o->bw == BW40PLUS)))
+			    ((o->bw == BW40MINUS) || (o->bw == BW40PLUS)))
 				continue;
 
 			if (!reg) {
@@ -318,15 +340,18 @@ static void init_channel_list(struct adapter *padapter, struct rt_channel_info *
 	channel_list->reg_classes = cla;
 }
 
-static u8 init_channel_set(struct adapter *padapter, u8 ChannelPlan, struct rt_channel_info *channel_set)
+static u8 init_channel_set(struct adapter *padapter, u8 ChannelPlan,
+			   struct rt_channel_info *channel_set)
 {
 	u8 index, chanset_size = 0;
 	u8 b2_4GBand = false;
 	u8 Index2G = 0;
 
-	memset(channel_set, 0, sizeof(struct rt_channel_info)*MAX_CHANNEL_NUM);
+	memset(channel_set, 0,
+	       sizeof(struct rt_channel_info) * MAX_CHANNEL_NUM);
 
-	if (ChannelPlan >= RT_CHANNEL_DOMAIN_MAX && ChannelPlan != RT_CHANNEL_DOMAIN_REALTEK_DEFINE)
+	if (ChannelPlan >= RT_CHANNEL_DOMAIN_MAX &&
+	    ChannelPlan != RT_CHANNEL_DOMAIN_REALTEK_DEFINE)
 		return chanset_size;
 
 	if (is_supported_24g(padapter->registrypriv.wireless_mode)) {
@@ -338,23 +363,37 @@ static u8 init_channel_set(struct adapter *padapter, u8 ChannelPlan, struct rt_c
 	}
 
 	if (b2_4GBand) {
-		for (index = 0; index < RTW_ChannelPlan2G[Index2G].Len; index++) {
-			channel_set[chanset_size].ChannelNum = RTW_ChannelPlan2G[Index2G].Channel[index];
-
-			if ((ChannelPlan == RT_CHANNEL_DOMAIN_GLOBAL_DOAMIN) ||/* Channel 1~11 is active, and 12~14 is passive */
-				(ChannelPlan == RT_CHANNEL_DOMAIN_GLOBAL_NULL)) {
-				if (channel_set[chanset_size].ChannelNum >= 1 && channel_set[chanset_size].ChannelNum <= 11)
-					channel_set[chanset_size].ScanType = SCAN_ACTIVE;
-				else if ((channel_set[chanset_size].ChannelNum  >= 12 && channel_set[chanset_size].ChannelNum  <= 14))
-					channel_set[chanset_size].ScanType  = SCAN_PASSIVE;
-			} else if (ChannelPlan == RT_CHANNEL_DOMAIN_WORLD_WIDE_13 ||
-				 Index2G == RT_CHANNEL_DOMAIN_2G_WORLD) { /*  channel 12~13, passive scan */
+		for (index = 0; index < RTW_ChannelPlan2G[Index2G].Len;
+		     index++) {
+			channel_set[chanset_size].ChannelNum =
+				RTW_ChannelPlan2G[Index2G].Channel[index];
+
+			if ((ChannelPlan ==
+			     RT_CHANNEL_DOMAIN_GLOBAL_DOAMIN) || /* Channel 1~11 is active, and 12~14 is passive */
+			    (ChannelPlan == RT_CHANNEL_DOMAIN_GLOBAL_NULL)) {
+				if (channel_set[chanset_size].ChannelNum >= 1 &&
+				    channel_set[chanset_size].ChannelNum <= 11)
+					channel_set[chanset_size].ScanType =
+						SCAN_ACTIVE;
+				else if ((channel_set[chanset_size].ChannelNum >=
+						  12 &&
+					  channel_set[chanset_size].ChannelNum <=
+						  14))
+					channel_set[chanset_size].ScanType =
+						SCAN_PASSIVE;
+			} else if (ChannelPlan ==
+					   RT_CHANNEL_DOMAIN_WORLD_WIDE_13 ||
+				   Index2G ==
+					   RT_CHANNEL_DOMAIN_2G_WORLD) { /*  channel 12~13, passive scan */
 				if (channel_set[chanset_size].ChannelNum <= 11)
-					channel_set[chanset_size].ScanType = SCAN_ACTIVE;
+					channel_set[chanset_size].ScanType =
+						SCAN_ACTIVE;
 				else
-					channel_set[chanset_size].ScanType = SCAN_PASSIVE;
+					channel_set[chanset_size].ScanType =
+						SCAN_PASSIVE;
 			} else
-				channel_set[chanset_size].ScanType = SCAN_ACTIVE;
+				channel_set[chanset_size].ScanType =
+					SCAN_ACTIVE;
 
 			chanset_size++;
 		}
@@ -365,7 +404,7 @@ static u8 init_channel_set(struct adapter *padapter, u8 ChannelPlan, struct rt_c
 
 static void init_mlme_ext_timer(struct adapter *padapter)
 {
-	struct	mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
+	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 
 	timer_setup(&pmlmeext->survey_timer, survey_timer_hdl, 0);
 	timer_setup(&pmlmeext->link_timer, link_timer_hdl, 0);
@@ -390,8 +429,10 @@ void init_mlme_ext_priv(struct adapter *padapter)
 
 	init_mlme_ap_info(padapter);
 
-	pmlmeext->max_chan_nums = init_channel_set(padapter, pmlmepriv->ChannelPlan, pmlmeext->channel_set);
-	init_channel_list(padapter, pmlmeext->channel_set, pmlmeext->max_chan_nums, &pmlmeext->channel_list);
+	pmlmeext->max_chan_nums = init_channel_set(
+		padapter, pmlmepriv->ChannelPlan, pmlmeext->channel_set);
+	init_channel_list(padapter, pmlmeext->channel_set,
+			  pmlmeext->max_chan_nums, &pmlmeext->channel_list);
 	pmlmeext->last_scan_time = 0;
 	pmlmeext->chan_scan_time = SURVEY_TO;
 	pmlmeext->mlmeext_init = true;
@@ -412,13 +453,16 @@ void free_mlme_ext_priv(struct mlme_ext_priv *pmlmeext)
 	}
 }
 
-static void _mgt_dispatcher(struct adapter *padapter, struct mlme_handler *ptable, union recv_frame *precv_frame)
+static void _mgt_dispatcher(struct adapter *padapter,
+			    struct mlme_handler *ptable,
+			    union recv_frame *precv_frame)
 {
 	u8 *pframe = precv_frame->u.hdr.rx_data;
 
 	if (ptable->func) {
 		/* receive the frames that ra(a1) is my address or ra(a1) is bc address. */
-		if (memcmp(GetAddr1Ptr(pframe), myid(&padapter->eeprompriv), ETH_ALEN) &&
+		if (memcmp(GetAddr1Ptr(pframe), myid(&padapter->eeprompriv),
+			   ETH_ALEN) &&
 		    !is_broadcast_ether_addr(GetAddr1Ptr(pframe)))
 			return;
 
@@ -432,13 +476,15 @@ void mgt_dispatcher(struct adapter *padapter, union recv_frame *precv_frame)
 	struct mlme_handler *ptable;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	u8 *pframe = precv_frame->u.hdr.rx_data;
-	struct sta_info *psta = rtw_get_stainfo(&padapter->stapriv, GetAddr2Ptr(pframe));
+	struct sta_info *psta =
+		rtw_get_stainfo(&padapter->stapriv, GetAddr2Ptr(pframe));
 
 	if (GetFrameType(pframe) != WIFI_MGT_TYPE)
 		return;
 
 	/* receive the frames that ra(a1) is my address or ra(a1) is bc address. */
-	if (memcmp(GetAddr1Ptr(pframe), myid(&padapter->eeprompriv), ETH_ALEN) &&
+	if (memcmp(GetAddr1Ptr(pframe), myid(&padapter->eeprompriv),
+		   ETH_ALEN) &&
 	    !is_broadcast_ether_addr(GetAddr1Ptr(pframe))) {
 		return;
 	}
@@ -454,7 +500,8 @@ void mgt_dispatcher(struct adapter *padapter, union recv_frame *precv_frame)
 
 	if (psta) {
 		if (GetRetry(pframe)) {
-			if (precv_frame->u.hdr.attrib.seq_num == psta->RxMgmtFrameSeqNum) {
+			if (precv_frame->u.hdr.attrib.seq_num ==
+			    psta->RxMgmtFrameSeqNum) {
 				/* drop the duplicate management frame */
 				return;
 			}
@@ -493,12 +540,12 @@ void mgt_dispatcher(struct adapter *padapter, union recv_frame *precv_frame)
 
 unsigned int OnProbeReq(struct adapter *padapter, union recv_frame *precv_frame)
 {
-	unsigned int	ielen;
+	unsigned int ielen;
 	unsigned char *p;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex	*cur = &pmlmeinfo->network;
+	struct wlan_bssid_ex *cur = &pmlmeinfo->network;
 	u8 *pframe = precv_frame->u.hdr.rx_data;
 	uint len = precv_frame->u.hdr.len;
 	u8 is_valid_p2p_probereq = false;
@@ -507,28 +554,31 @@ unsigned int OnProbeReq(struct adapter *padapter, union recv_frame *precv_frame)
 		return _SUCCESS;
 
 	if (!check_fwstate(pmlmepriv, _FW_LINKED) &&
-	    !check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE | WIFI_AP_STATE)) {
+	    !check_fwstate(pmlmepriv,
+			   WIFI_ADHOC_MASTER_STATE | WIFI_AP_STATE)) {
 		return _SUCCESS;
 	}
 
-	p = rtw_get_ie(pframe + WLAN_HDR_A3_LEN + _PROBEREQ_IE_OFFSET_, WLAN_EID_SSID, (int *)&ielen,
-			len - WLAN_HDR_A3_LEN - _PROBEREQ_IE_OFFSET_);
+	p = rtw_get_ie(pframe + WLAN_HDR_A3_LEN + _PROBEREQ_IE_OFFSET_,
+		       WLAN_EID_SSID, (int *)&ielen,
+		       len - WLAN_HDR_A3_LEN - _PROBEREQ_IE_OFFSET_);
 
 	/* check (wildcard) SSID */
 	if (p) {
 		if (is_valid_p2p_probereq)
 			goto _issue_probersp;
 
-		if ((ielen != 0 && false == !memcmp((p+2), cur->ssid.ssid, cur->ssid.ssid_length))
-			|| (ielen == 0 && pmlmeinfo->hidden_ssid_mode)
-		)
+		if ((ielen != 0 && false == !memcmp((p + 2), cur->ssid.ssid,
+						    cur->ssid.ssid_length)) ||
+		    (ielen == 0 && pmlmeinfo->hidden_ssid_mode))
 			return _SUCCESS;
 
 _issue_probersp:
 		if ((check_fwstate(pmlmepriv, _FW_LINKED) &&
 		     pmlmepriv->cur_network.join_res) ||
 		    check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE))
-			issue_probersp(padapter, get_sa(pframe), is_valid_p2p_probereq);
+			issue_probersp(padapter, get_sa(pframe),
+				       is_valid_p2p_probereq);
 	}
 
 	return _SUCCESS;
@@ -561,10 +611,16 @@ unsigned int OnBeacon(struct adapter *padapter, union recv_frame *precv_frame)
 	u8 *p = NULL;
 	u32 ielen = 0;
 
-	p = rtw_get_ie(pframe + sizeof(struct ieee80211_hdr_3addr) + _BEACON_IE_OFFSET_, WLAN_EID_EXT_SUPP_RATES, &ielen, precv_frame->u.hdr.len - sizeof(struct ieee80211_hdr_3addr) - _BEACON_IE_OFFSET_);
+	p = rtw_get_ie(pframe + sizeof(struct ieee80211_hdr_3addr) +
+			       _BEACON_IE_OFFSET_,
+		       WLAN_EID_EXT_SUPP_RATES, &ielen,
+		       precv_frame->u.hdr.len -
+			       sizeof(struct ieee80211_hdr_3addr) -
+			       _BEACON_IE_OFFSET_);
 	if (p && ielen > 0) {
 		if (p + 2 + ielen < pframe + len) {
-			if ((*(p + 1 + ielen) == 0x2D) && (*(p + 2 + ielen) != 0x2D))
+			if ((*(p + 1 + ielen) == 0x2D) &&
+			    (*(p + 2 + ielen) != 0x2D))
 				/* Invalid value 0x2D is detected in Extended Supported Rates (ESR) IE. Try to fix the IE length to avoid failed Beacon parsing. */
 				*(p + 1) = ielen - 1;
 		}
@@ -575,20 +631,27 @@ unsigned int OnBeacon(struct adapter *padapter, union recv_frame *precv_frame)
 		return _SUCCESS;
 	}
 
-	if (!memcmp(GetAddr3Ptr(pframe), get_my_bssid(&pmlmeinfo->network), ETH_ALEN)) {
+	if (!memcmp(GetAddr3Ptr(pframe), get_my_bssid(&pmlmeinfo->network),
+		    ETH_ALEN)) {
 		if (pmlmeinfo->state & WIFI_FW_AUTH_NULL) {
 			/* we should update current network before auth, or some IE is wrong */
 			pbss = kmalloc_obj(*pbss, GFP_ATOMIC);
 			if (pbss) {
-				if (collect_bss_info(padapter, precv_frame, pbss) == _SUCCESS) {
-					update_network(&(pmlmepriv->cur_network.network), pbss, padapter, true);
-					rtw_get_bcn_info(&(pmlmepriv->cur_network));
+				if (collect_bss_info(padapter, precv_frame,
+						     pbss) == _SUCCESS) {
+					update_network(&(pmlmepriv->cur_network
+								 .network),
+						       pbss, padapter, true);
+					rtw_get_bcn_info(
+						&(pmlmepriv->cur_network));
 				}
 				kfree(pbss);
 			}
 
 			/* check the vendor of the assoc AP */
-			pmlmeinfo->assoc_AP_vendor = check_assoc_AP(pframe+sizeof(struct ieee80211_hdr_3addr), len-sizeof(struct ieee80211_hdr_3addr));
+			pmlmeinfo->assoc_AP_vendor = check_assoc_AP(
+				pframe + sizeof(struct ieee80211_hdr_3addr),
+				len - sizeof(struct ieee80211_hdr_3addr));
 
 			/* update TSF Value */
 			update_TSF(pmlmeext, pframe, len);
@@ -598,8 +661,10 @@ unsigned int OnBeacon(struct adapter *padapter, union recv_frame *precv_frame)
 			pmlmeext->DrvBcnEarly = 0xff;
 			pmlmeext->DrvBcnTimeOut = 0xff;
 			pmlmeext->bcn_cnt = 0;
-			memset(pmlmeext->bcn_delay_cnt, 0, sizeof(pmlmeext->bcn_delay_cnt));
-			memset(pmlmeext->bcn_delay_ratio, 0, sizeof(pmlmeext->bcn_delay_ratio));
+			memset(pmlmeext->bcn_delay_cnt, 0,
+			       sizeof(pmlmeext->bcn_delay_cnt));
+			memset(pmlmeext->bcn_delay_ratio, 0,
+			       sizeof(pmlmeext->bcn_delay_ratio));
 
 			/* start auth */
 			start_clnt_auth(padapter);
@@ -607,31 +672,37 @@ unsigned int OnBeacon(struct adapter *padapter, union recv_frame *precv_frame)
 			return _SUCCESS;
 		}
 
-		if (((pmlmeinfo->state&0x03) == WIFI_FW_STATION_STATE) && (pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS)) {
+		if (((pmlmeinfo->state & 0x03) == WIFI_FW_STATION_STATE) &&
+		    (pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS)) {
 			psta = rtw_get_stainfo(pstapriv, GetAddr2Ptr(pframe));
 			if (psta) {
 				ret = rtw_check_bcn_info(padapter, pframe, len);
 				if (!ret) {
-					netdev_dbg(padapter->pnetdev,
-						   "ap has changed, disconnect now\n");
-					receive_disconnect(padapter,
-							   pmlmeinfo->network.mac_address, 0);
+					netdev_dbg(
+						padapter->pnetdev,
+						"ap has changed, disconnect now\n");
+					receive_disconnect(
+						padapter,
+						pmlmeinfo->network.mac_address,
+						0);
 					return _SUCCESS;
 				}
 				/* update WMM, ERP in the beacon */
 				/* todo: the timer is used instead of the number of the beacon received */
 				if ((sta_rx_pkts(psta) & 0xf) == 0)
-					update_beacon_info(padapter, pframe, len, psta);
+					update_beacon_info(padapter, pframe,
+							   len, psta);
 
 				adaptive_early_32k(pmlmeext, pframe, len);
 			}
-		} else if ((pmlmeinfo->state&0x03) == WIFI_FW_ADHOC_STATE) {
+		} else if ((pmlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE) {
 			psta = rtw_get_stainfo(pstapriv, GetAddr2Ptr(pframe));
 			if (psta) {
 				/* update WMM, ERP in the beacon */
 				/* todo: the timer is used instead of the number of the beacon received */
 				if ((sta_rx_pkts(psta) & 0xf) == 0)
-					update_beacon_info(padapter, pframe, len, psta);
+					update_beacon_info(padapter, pframe,
+							   len, psta);
 			} else {
 				/* allocate a new CAM entry for IBSS station */
 				cam_idx = allocate_fw_sta_entry(padapter);
@@ -639,8 +710,15 @@ unsigned int OnBeacon(struct adapter *padapter, union recv_frame *precv_frame)
 					goto _END_ONBEACON_;
 
 				/* get supported rate */
-				if (update_sta_support_rate(padapter, (pframe + WLAN_HDR_A3_LEN + _BEACON_IE_OFFSET_), (len - WLAN_HDR_A3_LEN - _BEACON_IE_OFFSET_), cam_idx) == _FAIL) {
-					pmlmeinfo->FW_sta_info[cam_idx].status = 0;
+				if (update_sta_support_rate(
+					    padapter,
+					    (pframe + WLAN_HDR_A3_LEN +
+					     _BEACON_IE_OFFSET_),
+					    (len - WLAN_HDR_A3_LEN -
+					     _BEACON_IE_OFFSET_),
+					    cam_idx) == _FAIL) {
+					pmlmeinfo->FW_sta_info[cam_idx].status =
+						0;
 					goto _END_ONBEACON_;
 				}
 
@@ -648,7 +726,8 @@ unsigned int OnBeacon(struct adapter *padapter, union recv_frame *precv_frame)
 				update_TSF(pmlmeext, pframe, len);
 
 				/* report sta add event */
-				report_add_sta_event(padapter, GetAddr2Ptr(pframe), cam_idx);
+				report_add_sta_event(
+					padapter, GetAddr2Ptr(pframe), cam_idx);
 			}
 		}
 	}
@@ -660,13 +739,13 @@ unsigned int OnBeacon(struct adapter *padapter, union recv_frame *precv_frame)
 
 unsigned int OnAuth(struct adapter *padapter, union recv_frame *precv_frame)
 {
-	unsigned int	auth_mode, seq, ie_len;
+	unsigned int auth_mode, seq, ie_len;
 	unsigned char *sa, *p;
 	u16 algorithm;
-	int	status;
+	int status;
 	static struct sta_info stat;
-	struct	sta_info *pstat = NULL;
-	struct	sta_priv *pstapriv = &padapter->stapriv;
+	struct sta_info *pstat = NULL;
+	struct sta_priv *pstapriv = &padapter->stapriv;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
@@ -674,7 +753,7 @@ unsigned int OnAuth(struct adapter *padapter, union recv_frame *precv_frame)
 	uint len = precv_frame->u.hdr.len;
 	u8 offset = 0;
 
-	if ((pmlmeinfo->state&0x03) != WIFI_FW_AP_STATE)
+	if ((pmlmeinfo->state & 0x03) != WIFI_FW_AP_STATE)
 		return _FAIL;
 
 	if (len < WLAN_HDR_A3_LEN)
@@ -686,7 +765,7 @@ unsigned int OnAuth(struct adapter *padapter, union recv_frame *precv_frame)
 
 	if (GetPrivacy(pframe)) {
 		u8 *iv;
-		struct rx_pkt_attrib	 *prxattrib = &(precv_frame->u.hdr.attrib);
+		struct rx_pkt_attrib *prxattrib = &(precv_frame->u.hdr.attrib);
 
 		prxattrib->hdrlen = WLAN_HDR_A3_LEN;
 		prxattrib->encrypt = _WEP40_;
@@ -694,8 +773,8 @@ unsigned int OnAuth(struct adapter *padapter, union recv_frame *precv_frame)
 		if (len < WLAN_HDR_A3_LEN + 8)
 			return _FAIL;
 
-		iv = pframe+prxattrib->hdrlen;
-		prxattrib->key_index = ((iv[3]>>6)&0x3);
+		iv = pframe + prxattrib->hdrlen;
+		prxattrib->key_index = ((iv[3] >> 6) & 0x3);
 
 		prxattrib->iv_len = 4;
 		prxattrib->icv_len = 4;
@@ -705,16 +784,21 @@ unsigned int OnAuth(struct adapter *padapter, union recv_frame *precv_frame)
 		offset = 4;
 	}
 
-	algorithm = le16_to_cpu(*(__le16 *)((SIZE_PTR)pframe + WLAN_HDR_A3_LEN + offset));
-	seq	= le16_to_cpu(*(__le16 *)((SIZE_PTR)pframe + WLAN_HDR_A3_LEN + offset + 2));
+	algorithm = le16_to_cpu(
+		*(__le16 *)((SIZE_PTR)pframe + WLAN_HDR_A3_LEN + offset));
+	seq = le16_to_cpu(
+		*(__le16 *)((SIZE_PTR)pframe + WLAN_HDR_A3_LEN + offset + 2));
 
-	if (auth_mode == 2 &&
-			psecuritypriv->dot11PrivacyAlgrthm != _WEP40_ &&
-			psecuritypriv->dot11PrivacyAlgrthm != _WEP104_)
+	if (auth_mode == 2 && psecuritypriv->dot11PrivacyAlgrthm != _WEP40_ &&
+	    psecuritypriv->dot11PrivacyAlgrthm != _WEP104_)
 		auth_mode = 0;
 
-	if ((algorithm > 0 && auth_mode == 0) ||	/*  rx a shared-key auth but shared not enabled */
-		(algorithm == 0 && auth_mode == 1)) {	/*  rx a open-system auth but shared-key is enabled */
+	if ((algorithm > 0 &&
+	     auth_mode ==
+		     0) || /*  rx a shared-key auth but shared not enabled */
+	    (algorithm == 0 &&
+	     auth_mode ==
+		     1)) { /*  rx a open-system auth but shared-key is enabled */
 
 		status = WLAN_STATUS_NOT_SUPPORTED_AUTH_ALG;
 
@@ -771,7 +855,8 @@ unsigned int OnAuth(struct adapter *padapter, union recv_frame *precv_frame)
 		goto auth_fail;
 	}
 
-	if (algorithm == 0 && (auth_mode == 0 || auth_mode == 2 || auth_mode == 3)) {
+	if (algorithm == 0 &&
+	    (auth_mode == 0 || auth_mode == 2 || auth_mode == 3)) {
 		if (seq == 1) {
 			pstat->state &= ~WIFI_FW_AUTH_NULL;
 			pstat->state |= WIFI_FW_AUTH_SUCCESS;
@@ -790,8 +875,10 @@ unsigned int OnAuth(struct adapter *padapter, union recv_frame *precv_frame)
 			pstat->state |= WIFI_FW_AUTH_STATE;
 			pstat->authalg = algorithm;
 		} else if (seq == 3) {
-			p = rtw_get_ie(pframe + WLAN_HDR_A3_LEN + 4 + _AUTH_IE_OFFSET_, WLAN_EID_CHALLENGE, (int *)&ie_len,
-					len - WLAN_HDR_A3_LEN - _AUTH_IE_OFFSET_ - 4);
+			p = rtw_get_ie(
+				pframe + WLAN_HDR_A3_LEN + 4 + _AUTH_IE_OFFSET_,
+				WLAN_EID_CHALLENGE, (int *)&ie_len,
+				len - WLAN_HDR_A3_LEN - _AUTH_IE_OFFSET_ - 4);
 
 			if (!p || ie_len != 128) {
 				status = WLAN_STATUS_CHALLENGE_FAIL;
@@ -802,7 +889,7 @@ unsigned int OnAuth(struct adapter *padapter, union recv_frame *precv_frame)
 				pstat->state &= (~WIFI_FW_AUTH_STATE);
 				pstat->state |= WIFI_FW_AUTH_SUCCESS;
 				/*  challenging txt is correct... */
-				pstat->expire_to =  pstapriv->assoc_to;
+				pstat->expire_to = pstapriv->assoc_to;
 			} else {
 				status = WLAN_STATUS_CHALLENGE_FAIL;
 				goto auth_fail;
@@ -838,11 +925,12 @@ unsigned int OnAuth(struct adapter *padapter, union recv_frame *precv_frame)
 	return _FAIL;
 }
 
-unsigned int OnAuthClient(struct adapter *padapter, union recv_frame *precv_frame)
+unsigned int OnAuthClient(struct adapter *padapter,
+			  union recv_frame *precv_frame)
 {
-	unsigned int	seq, len, status, offset;
+	unsigned int seq, len, status, offset;
 	unsigned char *p;
-	unsigned int	go2asoc = 0;
+	unsigned int go2asoc = 0;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 	u8 *pframe = precv_frame->u.hdr.rx_data;
@@ -857,11 +945,14 @@ unsigned int OnAuthClient(struct adapter *padapter, union recv_frame *precv_fram
 
 	offset = (GetPrivacy(pframe)) ? 4 : 0;
 
-	seq	= le16_to_cpu(*(__le16 *)((SIZE_PTR)pframe + WLAN_HDR_A3_LEN + offset + 2));
-	status	= le16_to_cpu(*(__le16 *)((SIZE_PTR)pframe + WLAN_HDR_A3_LEN + offset + 4));
+	seq = le16_to_cpu(
+		*(__le16 *)((SIZE_PTR)pframe + WLAN_HDR_A3_LEN + offset + 2));
+	status = le16_to_cpu(
+		*(__le16 *)((SIZE_PTR)pframe + WLAN_HDR_A3_LEN + offset + 4));
 
 	if (status != 0) {
-		if (status == 13) { /*  pmlmeinfo->auth_algo == dot11AuthAlgrthm_Auto) */
+		if (status ==
+		    13) { /*  pmlmeinfo->auth_algo == dot11AuthAlgrthm_Auto) */
 			if (pmlmeinfo->auth_algo == dot11AuthAlgrthm_Shared)
 				pmlmeinfo->auth_algo = dot11AuthAlgrthm_Open;
 			else
@@ -875,8 +966,10 @@ unsigned int OnAuthClient(struct adapter *padapter, union recv_frame *precv_fram
 
 	if (seq == 2) {
 		if (pmlmeinfo->auth_algo == dot11AuthAlgrthm_Shared) {
-			 /*  legendary shared system */
-			p = rtw_get_ie(pframe + WLAN_HDR_A3_LEN + _AUTH_IE_OFFSET_, WLAN_EID_CHALLENGE, (int *)&len,
+			/*  legendary shared system */
+			p = rtw_get_ie(
+				pframe + WLAN_HDR_A3_LEN + _AUTH_IE_OFFSET_,
+				WLAN_EID_CHALLENGE, (int *)&len,
 				pkt_len - WLAN_HDR_A3_LEN - _AUTH_IE_OFFSET_);
 
 			if (!p)
@@ -920,23 +1013,23 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 	struct rtw_ieee802_11_elems elems;
 	struct sta_info *pstat;
 	unsigned char *p, *pos, *wpa_ie;
-	unsigned char WMM_IE[] = {0x00, 0x50, 0xf2, 0x02, 0x00, 0x01};
-	int		i, ie_len, left;
+	unsigned char WMM_IE[] = { 0x00, 0x50, 0xf2, 0x02, 0x00, 0x01 };
+	int i, ie_len, left;
 	u8 wpa_ie_len;
 	unsigned char supportRate[16];
-	int					support_rate_num;
-	unsigned short		status = WLAN_STATUS_SUCCESS;
-	unsigned short		frame_type, ie_offset = 0;
+	int support_rate_num;
+	unsigned short status = WLAN_STATUS_SUCCESS;
+	unsigned short frame_type, ie_offset = 0;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex	*cur = &(pmlmeinfo->network);
+	struct wlan_bssid_ex *cur = &(pmlmeinfo->network);
 	struct sta_priv *pstapriv = &padapter->stapriv;
 	u8 *pframe = precv_frame->u.hdr.rx_data;
 	uint pkt_len = precv_frame->u.hdr.len;
 
-	if ((pmlmeinfo->state&0x03) != WIFI_FW_AP_STATE)
+	if ((pmlmeinfo->state & 0x03) != WIFI_FW_AP_STATE)
 		return _FAIL;
 
 	frame_type = GetFrameSubType(pframe);
@@ -985,8 +1078,8 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 
 	/*  now we should check all the fields... */
 	/*  checking SSID */
-	p = rtw_get_ie(pframe + WLAN_HDR_A3_LEN + ie_offset, WLAN_EID_SSID, &ie_len,
-		pkt_len - WLAN_HDR_A3_LEN - ie_offset);
+	p = rtw_get_ie(pframe + WLAN_HDR_A3_LEN + ie_offset, WLAN_EID_SSID,
+		       &ie_len, pkt_len - WLAN_HDR_A3_LEN - ie_offset);
 
 	if (!p || ie_len == 0) {
 		/*  broadcast ssid, however it is not allowed in assocreq */
@@ -994,7 +1087,7 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 		goto OnAssocReqFail;
 	} else {
 		/*  check if ssid match */
-		if (memcmp(p+2, cur->ssid.ssid, cur->ssid.ssid_length))
+		if (memcmp(p + 2, cur->ssid.ssid, cur->ssid.ssid_length))
 			status = WLAN_STATUS_CHALLENGE_FAIL;
 
 		if (ie_len != cur->ssid.ssid_length)
@@ -1005,7 +1098,9 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 		goto OnAssocReqFail;
 
 	/*  check if the supported rate is ok */
-	p = rtw_get_ie(pframe + WLAN_HDR_A3_LEN + ie_offset, WLAN_EID_SUPP_RATES, &ie_len, pkt_len - WLAN_HDR_A3_LEN - ie_offset);
+	p = rtw_get_ie(pframe + WLAN_HDR_A3_LEN + ie_offset,
+		       WLAN_EID_SUPP_RATES, &ie_len,
+		       pkt_len - WLAN_HDR_A3_LEN - ie_offset);
 	if (!p) {
 		/*  use our own rate set as statoin used */
 		/* memcpy(supportRate, AP_BSSRATE, AP_BSSRATE_LEN); */
@@ -1017,14 +1112,16 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 		if (ie_len > sizeof(supportRate))
 			ie_len = sizeof(supportRate);
 
-		memcpy(supportRate, p+2, ie_len);
+		memcpy(supportRate, p + 2, ie_len);
 		support_rate_num = ie_len;
 
-		p = rtw_get_ie(pframe + WLAN_HDR_A3_LEN + ie_offset, WLAN_EID_EXT_SUPP_RATES, &ie_len,
-				pkt_len - WLAN_HDR_A3_LEN - ie_offset);
+		p = rtw_get_ie(pframe + WLAN_HDR_A3_LEN + ie_offset,
+			       WLAN_EID_EXT_SUPP_RATES, &ie_len,
+			       pkt_len - WLAN_HDR_A3_LEN - ie_offset);
 		if (p) {
 			if (support_rate_num + ie_len <= sizeof(supportRate)) {
-				memcpy(supportRate + support_rate_num, p + 2, ie_len);
+				memcpy(supportRate + support_rate_num, p + 2,
+				       ie_len);
 				support_rate_num += ie_len;
 			}
 		}
@@ -1052,12 +1149,16 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 		wpa_ie = elems.rsn_ie;
 		wpa_ie_len = elems.rsn_ie_len;
 
-		if (rtw_parse_wpa2_ie(wpa_ie-2, wpa_ie_len+2, &group_cipher, &pairwise_cipher, NULL) == _SUCCESS) {
-			pstat->dot8021xalg = 1;/* psk,  todo:802.1x */
+		if (rtw_parse_wpa2_ie(wpa_ie - 2, wpa_ie_len + 2, &group_cipher,
+				      &pairwise_cipher, NULL) == _SUCCESS) {
+			pstat->dot8021xalg = 1; /* psk,  todo:802.1x */
 			pstat->wpa_psk |= BIT(1);
 
-			pstat->wpa2_group_cipher = group_cipher&psecuritypriv->wpa2_group_cipher;
-			pstat->wpa2_pairwise_cipher = pairwise_cipher&psecuritypriv->wpa2_pairwise_cipher;
+			pstat->wpa2_group_cipher =
+				group_cipher & psecuritypriv->wpa2_group_cipher;
+			pstat->wpa2_pairwise_cipher =
+				pairwise_cipher &
+				psecuritypriv->wpa2_pairwise_cipher;
 
 			if (!pstat->wpa2_group_cipher)
 				status = WLAN_STATUS_INVALID_GROUP_CIPHER;
@@ -1074,12 +1175,16 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 		wpa_ie = elems.wpa_ie;
 		wpa_ie_len = elems.wpa_ie_len;
 
-		if (rtw_parse_wpa_ie(wpa_ie-2, wpa_ie_len+2, &group_cipher, &pairwise_cipher, NULL) == _SUCCESS) {
-			pstat->dot8021xalg = 1;/* psk,  todo:802.1x */
+		if (rtw_parse_wpa_ie(wpa_ie - 2, wpa_ie_len + 2, &group_cipher,
+				     &pairwise_cipher, NULL) == _SUCCESS) {
+			pstat->dot8021xalg = 1; /* psk,  todo:802.1x */
 			pstat->wpa_psk |= BIT(0);
 
-			pstat->wpa_group_cipher = group_cipher&psecuritypriv->wpa_group_cipher;
-			pstat->wpa_pairwise_cipher = pairwise_cipher&psecuritypriv->wpa_pairwise_cipher;
+			pstat->wpa_group_cipher =
+				group_cipher & psecuritypriv->wpa_group_cipher;
+			pstat->wpa_pairwise_cipher =
+				pairwise_cipher &
+				psecuritypriv->wpa_pairwise_cipher;
 
 			if (!pstat->wpa_group_cipher)
 				status = WLAN_STATUS_INVALID_GROUP_CIPHER;
@@ -1108,15 +1213,20 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 
 		/*  AP support WPA/RSN, and sta is going to do WPS, but AP is not ready */
 		/*  that the selected registrar of AP is _FLASE */
-		if ((psecuritypriv->wpa_psk > 0)
-			&& (pstat->flags & (WLAN_STA_WPS|WLAN_STA_MAYBE_WPS))) {
+		if ((psecuritypriv->wpa_psk > 0) &&
+		    (pstat->flags & (WLAN_STA_WPS | WLAN_STA_MAYBE_WPS))) {
 			if (pmlmepriv->wps_beacon_ie) {
 				u8 selected_registrar = 0;
 
-				rtw_get_wps_attr_content(pmlmepriv->wps_beacon_ie, pmlmepriv->wps_beacon_ie_len, WPS_ATTR_SELECTED_REGISTRAR, &selected_registrar, NULL);
+				rtw_get_wps_attr_content(
+					pmlmepriv->wps_beacon_ie,
+					pmlmepriv->wps_beacon_ie_len,
+					WPS_ATTR_SELECTED_REGISTRAR,
+					&selected_registrar, NULL);
 
 				if (!selected_registrar) {
-					status = WLAN_STATUS_AP_UNABLE_TO_HANDLE_NEW_STA;
+					status =
+						WLAN_STATUS_AP_UNABLE_TO_HANDLE_NEW_STA;
 
 					goto OnAssocReqFail;
 				}
@@ -1140,7 +1250,7 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 		}
 
 		if (copy_len > 0)
-			memcpy(pstat->wpa_ie, wpa_ie-2, copy_len);
+			memcpy(pstat->wpa_ie, wpa_ie - 2, copy_len);
 	}
 
 	/*  check if there is WMM IE & support WWM-PS */
@@ -1153,13 +1263,15 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 	pstat->uapsd_be = 0;
 	pstat->uapsd_bk = 0;
 	if (pmlmepriv->qospriv.qos_option) {
-		p = pframe + WLAN_HDR_A3_LEN + ie_offset; ie_len = 0;
+		p = pframe + WLAN_HDR_A3_LEN + ie_offset;
+		ie_len = 0;
 		for (;;) {
-			p = rtw_get_ie(p, WLAN_EID_VENDOR_SPECIFIC, &ie_len, pkt_len - WLAN_HDR_A3_LEN - ie_offset);
+			p = rtw_get_ie(p, WLAN_EID_VENDOR_SPECIFIC, &ie_len,
+				       pkt_len - WLAN_HDR_A3_LEN - ie_offset);
 			if (!p)
 				break;
 
-			if (memcmp(p+2, WMM_IE, 6)) {
+			if (memcmp(p + 2, WMM_IE, 6)) {
 				p = p + ie_len + 2;
 				continue;
 			}
@@ -1167,33 +1279,33 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 			pstat->flags |= WLAN_STA_WME;
 
 			pstat->qos_option = 1;
-			pstat->qos_info = *(p+8);
+			pstat->qos_info = *(p + 8);
 
-			pstat->max_sp_len = (pstat->qos_info>>5)&0x3;
+			pstat->max_sp_len = (pstat->qos_info >> 5) & 0x3;
 
-			if ((pstat->qos_info&0xf) != 0xf)
+			if ((pstat->qos_info & 0xf) != 0xf)
 				pstat->has_legacy_ac = true;
 			else
 				pstat->has_legacy_ac = false;
 
-			if (pstat->qos_info&0xf) {
-				if (pstat->qos_info&BIT(0))
-					pstat->uapsd_vo = BIT(0)|BIT(1);
+			if (pstat->qos_info & 0xf) {
+				if (pstat->qos_info & BIT(0))
+					pstat->uapsd_vo = BIT(0) | BIT(1);
 				else
 					pstat->uapsd_vo = 0;
 
-				if (pstat->qos_info&BIT(1))
-					pstat->uapsd_vi = BIT(0)|BIT(1);
+				if (pstat->qos_info & BIT(1))
+					pstat->uapsd_vi = BIT(0) | BIT(1);
 				else
 					pstat->uapsd_vi = 0;
 
-				if (pstat->qos_info&BIT(2))
-					pstat->uapsd_bk = BIT(0)|BIT(1);
+				if (pstat->qos_info & BIT(2))
+					pstat->uapsd_bk = BIT(0) | BIT(1);
 				else
 					pstat->uapsd_bk = 0;
 
-				if (pstat->qos_info&BIT(3))
-					pstat->uapsd_be = BIT(0)|BIT(1);
+				if (pstat->qos_info & BIT(3))
+					pstat->uapsd_be = BIT(0) | BIT(1);
 				else
 					pstat->uapsd_be = 0;
 			}
@@ -1204,24 +1316,26 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 
 	/* save HT capabilities in the sta object */
 	memset(&pstat->htpriv.ht_cap, 0, sizeof(struct ieee80211_ht_cap));
-	if (elems.ht_capabilities && elems.ht_capabilities_len >= sizeof(struct ieee80211_ht_cap)) {
+	if (elems.ht_capabilities &&
+	    elems.ht_capabilities_len >= sizeof(struct ieee80211_ht_cap)) {
 		pstat->flags |= WLAN_STA_HT;
 
 		pstat->flags |= WLAN_STA_WME;
 
-		memcpy(&pstat->htpriv.ht_cap, elems.ht_capabilities, sizeof(struct ieee80211_ht_cap));
+		memcpy(&pstat->htpriv.ht_cap, elems.ht_capabilities,
+		       sizeof(struct ieee80211_ht_cap));
 
 	} else
 		pstat->flags &= ~WLAN_STA_HT;
 
-	if (!pmlmepriv->htpriv.ht_option && (pstat->flags&WLAN_STA_HT)) {
+	if (!pmlmepriv->htpriv.ht_option && (pstat->flags & WLAN_STA_HT)) {
 		status = WLAN_STATUS_CHALLENGE_FAIL;
 		goto OnAssocReqFail;
 	}
 
 	if ((pstat->flags & WLAN_STA_HT) &&
-		    ((pstat->wpa2_pairwise_cipher&WPA_CIPHER_TKIP) ||
-		      (pstat->wpa_pairwise_cipher&WPA_CIPHER_TKIP))) {
+	    ((pstat->wpa2_pairwise_cipher & WPA_CIPHER_TKIP) ||
+	     (pstat->wpa_pairwise_cipher & WPA_CIPHER_TKIP))) {
 		/* status = WLAN_STATUS_CIPHER_SUITE_REJECTED; */
 		/* goto OnAssocReqFail; */
 	}
@@ -1282,7 +1396,8 @@ unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame)
 	spin_unlock_bh(&pstapriv->asoc_list_lock);
 
 	/*  now the station is qualified to join our BSS... */
-	if (pstat && (pstat->state & WIFI_FW_ASSOC_SUCCESS) && (status == WLAN_STATUS_SUCCESS)) {
+	if (pstat && (pstat->state & WIFI_FW_ASSOC_SUCCESS) &&
+	    (status == WLAN_STATUS_SUCCESS)) {
 		/* 1 bss_cap_update & sta_info_update */
 		bss_cap_update_on_sta_join(padapter, pstat);
 		sta_info_update(padapter, pstat);
@@ -1329,7 +1444,7 @@ unsigned int OnAssocRsp(struct adapter *padapter, union recv_frame *precv_frame)
 {
 	uint i;
 	int res;
-	unsigned short	status;
+	unsigned short status;
 	struct ndis_80211_var_ie *pIE;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
@@ -1359,13 +1474,16 @@ unsigned int OnAssocRsp(struct adapter *padapter, union recv_frame *precv_frame)
 	}
 
 	/* get capabilities */
-	pmlmeinfo->capability = le16_to_cpu(*(__le16 *)(pframe + WLAN_HDR_A3_LEN));
+	pmlmeinfo->capability =
+		le16_to_cpu(*(__le16 *)(pframe + WLAN_HDR_A3_LEN));
 
 	/* set slot time */
 	pmlmeinfo->slotTime = (pmlmeinfo->capability & BIT(10)) ? 9 : 20;
 
 	/* AID */
-	res = pmlmeinfo->aid = (int)(le16_to_cpu(*(__le16 *)(pframe + WLAN_HDR_A3_LEN + 4))&0x3fff);
+	res = pmlmeinfo->aid =
+		(int)(le16_to_cpu(*(__le16 *)(pframe + WLAN_HDR_A3_LEN + 4)) &
+		      0x3fff);
 
 	/* following are moved to join event callback function */
 	/* to handle HT, WMM, rate adaptive, update MAC reg */
@@ -1379,15 +1497,15 @@ unsigned int OnAssocRsp(struct adapter *padapter, union recv_frame *precv_frame)
 
 		switch (pIE->element_id) {
 		case WLAN_EID_VENDOR_SPECIFIC:
-			if (!memcmp(pIE->data, WMM_PARA_OUI, 6))	/* WMM */
+			if (!memcmp(pIE->data, WMM_PARA_OUI, 6)) /* WMM */
 				WMM_param_handler(padapter, pIE);
 			break;
 
-		case WLAN_EID_HT_CAPABILITY:	/* HT caps */
+		case WLAN_EID_HT_CAPABILITY: /* HT caps */
 			HT_caps_handler(padapter, pIE);
 			break;
 
-		case WLAN_EID_HT_OPERATION:	/* HT info */
+		case WLAN_EID_HT_OPERATION: /* HT info */
 			HT_info_handler(padapter, pIE);
 			break;
 
@@ -1410,7 +1528,8 @@ unsigned int OnAssocRsp(struct adapter *padapter, union recv_frame *precv_frame)
 
 report_assoc_result:
 	if (res > 0)
-		rtw_buf_update(&pmlmepriv->assoc_rsp, &pmlmepriv->assoc_rsp_len, pframe, pkt_len);
+		rtw_buf_update(&pmlmepriv->assoc_rsp, &pmlmepriv->assoc_rsp_len,
+			       pframe, pkt_len);
 	else
 		rtw_buf_free(&pmlmepriv->assoc_rsp, &pmlmepriv->assoc_rsp_len);
 
@@ -1421,7 +1540,7 @@ unsigned int OnAssocRsp(struct adapter *padapter, union recv_frame *precv_frame)
 
 unsigned int OnDeAuth(struct adapter *padapter, union recv_frame *precv_frame)
 {
-	unsigned short	reason;
+	unsigned short reason;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
@@ -1429,7 +1548,8 @@ unsigned int OnDeAuth(struct adapter *padapter, union recv_frame *precv_frame)
 	int ignore_received_deauth = 0;
 
 	/* check A3 */
-	if (memcmp(GetAddr3Ptr(pframe), get_my_bssid(&pmlmeinfo->network), ETH_ALEN))
+	if (memcmp(GetAddr3Ptr(pframe), get_my_bssid(&pmlmeinfo->network),
+		   ETH_ALEN))
 		return _SUCCESS;
 
 	reason = le16_to_cpu(*(__le16 *)(pframe + WLAN_HDR_A3_LEN));
@@ -1452,7 +1572,8 @@ unsigned int OnDeAuth(struct adapter *padapter, union recv_frame *precv_frame)
 			if (!list_empty(&psta->asoc_list)) {
 				list_del_init(&psta->asoc_list);
 				pstapriv->asoc_list_cnt--;
-				updated = ap_free_sta(padapter, psta, false, reason);
+				updated = ap_free_sta(padapter, psta, false,
+						      reason);
 			}
 			spin_unlock_bh(&pstapriv->asoc_list_lock);
 
@@ -1480,8 +1601,7 @@ unsigned int OnDeAuth(struct adapter *padapter, union recv_frame *precv_frame)
 
 	netdev_dbg(padapter->pnetdev,
 		   "sta recv deauth reason code(%d) sta:%pM, ignore = %d\n",
-		   reason, GetAddr3Ptr(pframe),
-		   ignore_received_deauth);
+		   reason, GetAddr3Ptr(pframe), ignore_received_deauth);
 
 	if (ignore_received_deauth == 0)
 		receive_disconnect(padapter, GetAddr3Ptr(pframe), reason);
@@ -1492,14 +1612,15 @@ unsigned int OnDeAuth(struct adapter *padapter, union recv_frame *precv_frame)
 
 unsigned int OnDisassoc(struct adapter *padapter, union recv_frame *precv_frame)
 {
-	unsigned short	reason;
+	unsigned short reason;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 	u8 *pframe = precv_frame->u.hdr.rx_data;
 
 	/* check A3 */
-	if (memcmp(GetAddr3Ptr(pframe), get_my_bssid(&pmlmeinfo->network), ETH_ALEN))
+	if (memcmp(GetAddr3Ptr(pframe), get_my_bssid(&pmlmeinfo->network),
+		   ETH_ALEN))
 		return _SUCCESS;
 
 	reason = le16_to_cpu(*(__le16 *)(pframe + WLAN_HDR_A3_LEN));
@@ -1511,8 +1632,8 @@ unsigned int OnDisassoc(struct adapter *padapter, union recv_frame *precv_frame)
 		/* rtw_free_stainfo(padapter, psta); */
 
 		netdev_dbg(padapter->pnetdev,
-			   "ap recv disassoc reason code(%d) sta:%pM\n",
-			   reason, GetAddr2Ptr(pframe));
+			   "ap recv disassoc reason code(%d) sta:%pM\n", reason,
+			   GetAddr2Ptr(pframe));
 
 		psta = rtw_get_stainfo(pstapriv, GetAddr2Ptr(pframe));
 		if (psta) {
@@ -1522,7 +1643,8 @@ unsigned int OnDisassoc(struct adapter *padapter, union recv_frame *precv_frame)
 			if (!list_empty(&psta->asoc_list)) {
 				list_del_init(&psta->asoc_list);
 				pstapriv->asoc_list_cnt--;
-				updated = ap_free_sta(padapter, psta, false, reason);
+				updated = ap_free_sta(padapter, psta, false,
+						      reason);
 			}
 			spin_unlock_bh(&pstapriv->asoc_list_lock);
 
@@ -1532,8 +1654,8 @@ unsigned int OnDisassoc(struct adapter *padapter, union recv_frame *precv_frame)
 		return _SUCCESS;
 	}
 	netdev_dbg(padapter->pnetdev,
-		   "sta recv disassoc reason code(%d) sta:%pM\n",
-		   reason, GetAddr3Ptr(pframe));
+		   "sta recv disassoc reason code(%d) sta:%pM\n", reason,
+		   GetAddr3Ptr(pframe));
 
 	receive_disconnect(padapter, GetAddr3Ptr(pframe), reason);
 
@@ -1546,7 +1668,8 @@ unsigned int OnAtim(struct adapter *padapter, union recv_frame *precv_frame)
 	return _SUCCESS;
 }
 
-unsigned int on_action_spct(struct adapter *padapter, union recv_frame *precv_frame)
+unsigned int on_action_spct(struct adapter *padapter,
+			    union recv_frame *precv_frame)
 {
 	struct sta_info *psta = NULL;
 	struct sta_priv *pstapriv = &padapter->stapriv;
@@ -1580,24 +1703,26 @@ unsigned int on_action_spct(struct adapter *padapter, union recv_frame *precv_fr
 	return _FAIL;
 }
 
-unsigned int OnAction_back(struct adapter *padapter, union recv_frame *precv_frame)
+unsigned int OnAction_back(struct adapter *padapter,
+			   union recv_frame *precv_frame)
 {
 	u8 *addr;
 	struct sta_info *psta = NULL;
 	struct recv_reorder_ctrl *preorder_ctrl;
 	unsigned char *frame_body;
 	unsigned char category, action;
-	unsigned short	tid, status;
+	unsigned short tid, status;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 	u8 *pframe = precv_frame->u.hdr.rx_data;
 	struct sta_priv *pstapriv = &padapter->stapriv;
 
 	/* check RA matches or not */
-	if (memcmp(myid(&(padapter->eeprompriv)), GetAddr1Ptr(pframe), ETH_ALEN))/* for if1, sta/ap mode */
+	if (memcmp(myid(&(padapter->eeprompriv)), GetAddr1Ptr(pframe),
+		   ETH_ALEN)) /* for if1, sta/ap mode */
 		return _SUCCESS;
 
-	if ((pmlmeinfo->state&0x03) != WIFI_FW_AP_STATE)
+	if ((pmlmeinfo->state & 0x03) != WIFI_FW_AP_STATE)
 		if (!(pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS))
 			return _SUCCESS;
 
@@ -1607,10 +1732,11 @@ unsigned int OnAction_back(struct adapter *padapter, union recv_frame *precv_fra
 	if (!psta)
 		return _SUCCESS;
 
-	frame_body = (unsigned char *)(pframe + sizeof(struct ieee80211_hdr_3addr));
+	frame_body =
+		(unsigned char *)(pframe + sizeof(struct ieee80211_hdr_3addr));
 
 	category = frame_body[0];
-	if (category == RTW_WLAN_CATEGORY_BACK) {/*  representing Block Ack */
+	if (category == RTW_WLAN_CATEGORY_BACK) { /*  representing Block Ack */
 		if (!pmlmeinfo->HT_enable)
 			return _SUCCESS;
 
@@ -1618,14 +1744,19 @@ unsigned int OnAction_back(struct adapter *padapter, union recv_frame *precv_fra
 		switch (action) {
 		case WLAN_ACTION_ADDBA_REQ: /* ADDBA request */
 
-			memcpy(&(pmlmeinfo->ADDBA_req), &(frame_body[2]), sizeof(struct ADDBA_request));
+			memcpy(&(pmlmeinfo->ADDBA_req), &(frame_body[2]),
+			       sizeof(struct ADDBA_request));
 			/* process_addba_req(padapter, (u8 *)&(pmlmeinfo->ADDBA_req), GetAddr3Ptr(pframe)); */
-			process_addba_req(padapter, (u8 *)&(pmlmeinfo->ADDBA_req), addr);
+			process_addba_req(padapter,
+					  (u8 *)&(pmlmeinfo->ADDBA_req), addr);
 
 			if (pmlmeinfo->accept_addba_req)
-				issue_action_BA(padapter, addr, WLAN_ACTION_ADDBA_RESP, 0);
+				issue_action_BA(padapter, addr,
+						WLAN_ACTION_ADDBA_RESP, 0);
 			else
-				issue_action_BA(padapter, addr, WLAN_ACTION_ADDBA_RESP, 37);/* reject ADDBA Req */
+				issue_action_BA(padapter, addr,
+						WLAN_ACTION_ADDBA_RESP,
+						37); /* reject ADDBA Req */
 
 			break;
 
@@ -1658,7 +1789,7 @@ unsigned int OnAction_back(struct adapter *padapter, union recv_frame *precv_fra
 			} else if ((frame_body[3] & BIT(3)) == BIT(3)) {
 				tid = (frame_body[3] >> 4) & 0x0F;
 
-				preorder_ctrl =  &psta->recvreorder_ctrl[tid];
+				preorder_ctrl = &psta->recvreorder_ctrl[tid];
 				preorder_ctrl->enable = false;
 				preorder_ctrl->indicate_seq = 0xffff;
 			}
@@ -1677,13 +1808,13 @@ static s32 rtw_action_public_decache(union recv_frame *recv_frame, s32 token)
 	struct adapter *adapter = recv_frame->u.hdr.adapter;
 	struct mlme_ext_priv *mlmeext = &(adapter->mlmeextpriv);
 	u8 *frame = recv_frame->u.hdr.rx_data;
-	u16 seq_ctrl = ((recv_frame->u.hdr.attrib.seq_num&0xffff) << 4) |
-		(recv_frame->u.hdr.attrib.frag_num & 0xf);
+	u16 seq_ctrl = ((recv_frame->u.hdr.attrib.seq_num & 0xffff) << 4) |
+		       (recv_frame->u.hdr.attrib.frag_num & 0xf);
 
 	if (GetRetry(frame)) {
 		if (token >= 0) {
-			if ((seq_ctrl == mlmeext->action_public_rxseq)
-				&& (token == mlmeext->action_public_dialog_token))
+			if ((seq_ctrl == mlmeext->action_public_rxseq) &&
+			    (token == mlmeext->action_public_dialog_token))
 				return _FAIL;
 		} else {
 			if (seq_ctrl == mlmeext->action_public_rxseq)
@@ -1705,7 +1836,8 @@ static unsigned int on_action_public_p2p(union recv_frame *precv_frame)
 	u8 *frame_body;
 	u8 dialogToken = 0;
 
-	frame_body = (unsigned char *)(pframe + sizeof(struct ieee80211_hdr_3addr));
+	frame_body =
+		(unsigned char *)(pframe + sizeof(struct ieee80211_hdr_3addr));
 
 	dialogToken = frame_body[7];
 
@@ -1727,7 +1859,8 @@ static unsigned int on_action_public_vendor(union recv_frame *precv_frame)
 	return ret;
 }
 
-static unsigned int on_action_public_default(union recv_frame *precv_frame, u8 action)
+static unsigned int on_action_public_default(union recv_frame *precv_frame,
+					     u8 action)
 {
 	unsigned int ret = _FAIL;
 	u8 *pframe = precv_frame->u.hdr.rx_data;
@@ -1742,7 +1875,8 @@ static unsigned int on_action_public_default(union recv_frame *precv_frame, u8 a
 	if (rtw_action_public_decache(precv_frame, token) == _FAIL)
 		goto exit;
 
-	scnprintf(msg, sizeof(msg), "%s(token:%u)", action_public_str(action), token);
+	scnprintf(msg, sizeof(msg), "%s(token:%u)", action_public_str(action),
+		  token);
 	rtw_cfg80211_rx_action(adapter, pframe, frame_len, msg);
 
 	ret = _SUCCESS;
@@ -1751,7 +1885,8 @@ static unsigned int on_action_public_default(union recv_frame *precv_frame, u8 a
 	return ret;
 }
 
-unsigned int on_action_public(struct adapter *padapter, union recv_frame *precv_frame)
+unsigned int on_action_public(struct adapter *padapter,
+			      union recv_frame *precv_frame)
 {
 	unsigned int ret = _FAIL;
 	u8 *pframe = precv_frame->u.hdr.rx_data;
@@ -1759,7 +1894,8 @@ unsigned int on_action_public(struct adapter *padapter, union recv_frame *precv_
 	u8 category, action;
 
 	/* check RA matches or not */
-	if (memcmp(myid(&(padapter->eeprompriv)), GetAddr1Ptr(pframe), ETH_ALEN))
+	if (memcmp(myid(&(padapter->eeprompriv)), GetAddr1Ptr(pframe),
+		   ETH_ALEN))
 		goto exit;
 
 	category = frame_body[0];
@@ -1780,14 +1916,16 @@ unsigned int on_action_public(struct adapter *padapter, union recv_frame *precv_
 	return ret;
 }
 
-unsigned int OnAction_ht(struct adapter *padapter, union recv_frame *precv_frame)
+unsigned int OnAction_ht(struct adapter *padapter,
+			 union recv_frame *precv_frame)
 {
 	u8 *pframe = precv_frame->u.hdr.rx_data;
 	u8 *frame_body = pframe + sizeof(struct ieee80211_hdr_3addr);
 	u8 category, action;
 
 	/* check RA matches or not */
-	if (memcmp(myid(&(padapter->eeprompriv)), GetAddr1Ptr(pframe), ETH_ALEN))
+	if (memcmp(myid(&(padapter->eeprompriv)), GetAddr1Ptr(pframe),
+		   ETH_ALEN))
 		goto exit;
 
 	category = frame_body[0];
@@ -1807,15 +1945,17 @@ unsigned int OnAction_ht(struct adapter *padapter, union recv_frame *precv_frame
 	return _SUCCESS;
 }
 
-unsigned int OnAction_sa_query(struct adapter *padapter, union recv_frame *precv_frame)
+unsigned int OnAction_sa_query(struct adapter *padapter,
+			       union recv_frame *precv_frame)
 {
 	u8 *pframe = precv_frame->u.hdr.rx_data;
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
 	unsigned short tid;
 
-	switch (pframe[WLAN_HDR_A3_LEN+1]) {
+	switch (pframe[WLAN_HDR_A3_LEN + 1]) {
 	case 0: /* SA Query req */
-		memcpy(&tid, &pframe[WLAN_HDR_A3_LEN+2], sizeof(unsigned short));
+		memcpy(&tid, &pframe[WLAN_HDR_A3_LEN + 2],
+		       sizeof(unsigned short));
 		issue_action_SA_Query(padapter, GetAddr2Ptr(pframe), 1, tid);
 		break;
 
@@ -1837,7 +1977,8 @@ unsigned int OnAction(struct adapter *padapter, union recv_frame *precv_frame)
 	unsigned char *frame_body;
 	u8 *pframe = precv_frame->u.hdr.rx_data;
 
-	frame_body = (unsigned char *)(pframe + sizeof(struct ieee80211_hdr_3addr));
+	frame_body =
+		(unsigned char *)(pframe + sizeof(struct ieee80211_hdr_3addr));
 
 	category = frame_body[0];
 
@@ -1856,7 +1997,8 @@ unsigned int DoReserved(struct adapter *padapter, union recv_frame *precv_frame)
 	return _SUCCESS;
 }
 
-static struct xmit_frame *_alloc_mgtxmitframe(struct xmit_priv *pxmitpriv, bool once)
+static struct xmit_frame *_alloc_mgtxmitframe(struct xmit_priv *pxmitpriv,
+					      bool once)
 {
 	struct xmit_frame *pmgntframe;
 	struct xmit_buf *pxmitbuf;
@@ -1899,7 +2041,8 @@ void update_mgnt_tx_rate(struct adapter *padapter, u8 rate)
 	pmlmeext->tx_rate = rate;
 }
 
-void update_mgntframe_attrib(struct adapter *padapter, struct pkt_attrib *pattrib)
+void update_mgntframe_attrib(struct adapter *padapter,
+			     struct pkt_attrib *pattrib)
 {
 	u8 wireless_mode;
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
@@ -1918,7 +2061,7 @@ void update_mgntframe_attrib(struct adapter *padapter, struct pkt_attrib *pattri
 		wireless_mode = WIRELESS_11B;
 	else
 		wireless_mode = WIRELESS_11G;
-	pattrib->raid =  rtw_get_mgntframe_raid(padapter, wireless_mode);
+	pattrib->raid = rtw_get_mgntframe_raid(padapter, wireless_mode);
 	pattrib->rate = pmlmeext->tx_rate;
 
 	pattrib->encrypt = _NO_PRIVACY_;
@@ -1937,10 +2080,11 @@ void update_mgntframe_attrib(struct adapter *padapter, struct pkt_attrib *pattri
 	pattrib->mbssid = 0;
 }
 
-void update_mgntframe_attrib_addr(struct adapter *padapter, struct xmit_frame *pmgntframe)
+void update_mgntframe_attrib_addr(struct adapter *padapter,
+				  struct xmit_frame *pmgntframe)
 {
 	u8 *pframe;
-	struct pkt_attrib	*pattrib = &pmgntframe->attrib;
+	struct pkt_attrib *pattrib = &pmgntframe->attrib;
 
 	pframe = (u8 *)(pmgntframe->buf_addr) + TXDESC_OFFSET;
 
@@ -1950,8 +2094,7 @@ void update_mgntframe_attrib_addr(struct adapter *padapter, struct xmit_frame *p
 
 void dump_mgntframe(struct adapter *padapter, struct xmit_frame *pmgntframe)
 {
-	if (padapter->bSurpriseRemoved ||
-		padapter->bDriverStopped) {
+	if (padapter->bSurpriseRemoved || padapter->bDriverStopped) {
 		rtw_free_xmitbuf(&padapter->xmitpriv, pmgntframe->pxmitbuf);
 		rtw_free_xmitframe(&padapter->xmitpriv, pmgntframe);
 		return;
@@ -1960,7 +2103,8 @@ void dump_mgntframe(struct adapter *padapter, struct xmit_frame *pmgntframe)
 	rtw_hal_mgnt_xmit(padapter, pmgntframe);
 }
 
-s32 dump_mgntframe_and_wait(struct adapter *padapter, struct xmit_frame *pmgntframe, int timeout_ms)
+s32 dump_mgntframe_and_wait(struct adapter *padapter,
+			    struct xmit_frame *pmgntframe, int timeout_ms)
 {
 	s32 ret = _FAIL;
 	unsigned long irqL;
@@ -1968,8 +2112,7 @@ s32 dump_mgntframe_and_wait(struct adapter *padapter, struct xmit_frame *pmgntfr
 	struct xmit_buf *pxmitbuf = pmgntframe->pxmitbuf;
 	struct submit_ctx sctx;
 
-	if (padapter->bSurpriseRemoved ||
-		padapter->bDriverStopped) {
+	if (padapter->bSurpriseRemoved || padapter->bDriverStopped) {
 		rtw_free_xmitbuf(&padapter->xmitpriv, pmgntframe->pxmitbuf);
 		rtw_free_xmitframe(&padapter->xmitpriv, pmgntframe);
 		return ret;
@@ -1990,15 +2133,15 @@ s32 dump_mgntframe_and_wait(struct adapter *padapter, struct xmit_frame *pmgntfr
 	return ret;
 }
 
-s32 dump_mgntframe_and_wait_ack(struct adapter *padapter, struct xmit_frame *pmgntframe)
+s32 dump_mgntframe_and_wait_ack(struct adapter *padapter,
+				struct xmit_frame *pmgntframe)
 {
 	static u8 seq_no;
 	s32 ret = _FAIL;
-	u32 timeout_ms = 500;/*   500ms */
+	u32 timeout_ms = 500; /*   500ms */
 	struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
 
-	if (padapter->bSurpriseRemoved ||
-		padapter->bDriverStopped) {
+	if (padapter->bSurpriseRemoved || padapter->bDriverStopped) {
 		rtw_free_xmitbuf(&padapter->xmitpriv, pmgntframe->pxmitbuf);
 		rtw_free_xmitframe(&padapter->xmitpriv, pmgntframe);
 		return -1;
@@ -2024,19 +2167,18 @@ static int update_hidden_ssid(u8 *ies, u32 ies_len, u8 hidden_ssid_mode)
 	signed int ssid_len_ori;
 	int len_diff = 0;
 
-	ssid_ie = rtw_get_ie(ies,  WLAN_EID_SSID, &ssid_len_ori, ies_len);
+	ssid_ie = rtw_get_ie(ies, WLAN_EID_SSID, &ssid_len_ori, ies_len);
 
 	if (ssid_ie && ssid_len_ori > 0) {
 		switch (hidden_ssid_mode) {
-		case 1:
-		{
+		case 1: {
 			u8 *next_ie = ssid_ie + 2 + ssid_len_ori;
 			u32 remain_len = 0;
 
-			remain_len = ies_len - (next_ie-ies);
+			remain_len = ies_len - (next_ie - ies);
 
 			ssid_ie[1] = 0;
-			memcpy(ssid_ie+2, next_ie, remain_len);
+			memcpy(ssid_ie + 2, next_ie, remain_len);
 			len_diff -= ssid_len_ori;
 
 			break;
@@ -2046,7 +2188,7 @@ static int update_hidden_ssid(u8 *ies, u32 ies_len, u8 hidden_ssid_mode)
 			break;
 		default:
 			break;
-	}
+		}
 	}
 
 	return len_diff;
@@ -2054,17 +2196,17 @@ static int update_hidden_ssid(u8 *ies, u32 ies_len, u8 hidden_ssid_mode)
 
 void issue_beacon(struct adapter *padapter, int timeout_ms)
 {
-	struct xmit_frame	*pmgntframe;
-	struct pkt_attrib	*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	unsigned char *pframe;
 	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
-	unsigned int	rate_len;
+	unsigned int rate_len;
 	struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
 	struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex		*cur_network = &(pmlmeinfo->network);
+	struct wlan_bssid_ex *cur_network = &(pmlmeinfo->network);
 
 	pmgntframe = alloc_mgtxmitframe(pxmitpriv);
 	if (!pmgntframe)
@@ -2089,23 +2231,25 @@ void issue_beacon(struct adapter *padapter, int timeout_ms)
 	memcpy(pwlanhdr->addr2, myid(&(padapter->eeprompriv)), ETH_ALEN);
 	memcpy(pwlanhdr->addr3, get_my_bssid(cur_network), ETH_ALEN);
 
-	SetSeqNum(pwlanhdr, 0/*pmlmeext->mgnt_seq*/);
+	SetSeqNum(pwlanhdr, 0 /*pmlmeext->mgnt_seq*/);
 	/* pmlmeext->mgnt_seq++; */
 	SetFrameSubType(pframe, WIFI_BEACON);
 
 	pframe += sizeof(struct ieee80211_hdr_3addr);
 	pattrib->pktlen = sizeof(struct ieee80211_hdr_3addr);
 
-	if ((pmlmeinfo->state&0x03) == WIFI_FW_AP_STATE) {
+	if ((pmlmeinfo->state & 0x03) == WIFI_FW_AP_STATE) {
 		{
 			int len_diff;
 
-			memcpy(pframe, cur_network->ies, cur_network->ie_length);
-			len_diff = update_hidden_ssid(pframe+_BEACON_IE_OFFSET_,
-						      cur_network->ie_length-_BEACON_IE_OFFSET_,
-						      pmlmeinfo->hidden_ssid_mode);
-			pframe += (cur_network->ie_length+len_diff);
-			pattrib->pktlen += (cur_network->ie_length+len_diff);
+			memcpy(pframe, cur_network->ies,
+			       cur_network->ie_length);
+			len_diff = update_hidden_ssid(
+				pframe + _BEACON_IE_OFFSET_,
+				cur_network->ie_length - _BEACON_IE_OFFSET_,
+				pmlmeinfo->hidden_ssid_mode);
+			pframe += (cur_network->ie_length + len_diff);
+			pattrib->pktlen += (cur_network->ie_length + len_diff);
 		}
 
 		{
@@ -2113,10 +2257,19 @@ void issue_beacon(struct adapter *padapter, int timeout_ms)
 			uint wps_ielen;
 			u8 sr = 0;
 
-			wps_ie = rtw_get_wps_ie(pmgntframe->buf_addr+TXDESC_OFFSET+sizeof(struct ieee80211_hdr_3addr)+_BEACON_IE_OFFSET_,
-				pattrib->pktlen-sizeof(struct ieee80211_hdr_3addr)-_BEACON_IE_OFFSET_, NULL, &wps_ielen);
+			wps_ie = rtw_get_wps_ie(
+				pmgntframe->buf_addr + TXDESC_OFFSET +
+					sizeof(struct ieee80211_hdr_3addr) +
+					_BEACON_IE_OFFSET_,
+				pattrib->pktlen -
+					sizeof(struct ieee80211_hdr_3addr) -
+					_BEACON_IE_OFFSET_,
+				NULL, &wps_ielen);
 			if (wps_ie && wps_ielen > 0)
-				rtw_get_wps_attr_content(wps_ie,  wps_ielen, WPS_ATTR_SELECTED_REGISTRAR, (u8 *)(&sr), NULL);
+				rtw_get_wps_attr_content(
+					wps_ie, wps_ielen,
+					WPS_ATTR_SELECTED_REGISTRAR,
+					(u8 *)(&sr), NULL);
 			if (sr != 0)
 				set_fwstate(pmlmepriv, WIFI_UNDER_WPS);
 			else
@@ -2134,27 +2287,39 @@ void issue_beacon(struct adapter *padapter, int timeout_ms)
 
 	/*  beacon interval: 2 bytes */
 
-	memcpy(pframe, (unsigned char *)(rtw_get_beacon_interval_from_ie(cur_network->ies)), 2);
+	memcpy(pframe,
+	       (unsigned char *)(rtw_get_beacon_interval_from_ie(
+		       cur_network->ies)),
+	       2);
 
 	pframe += 2;
 	pattrib->pktlen += 2;
 
 	/*  capability info: 2 bytes */
 
-	memcpy(pframe, (unsigned char *)(rtw_get_capability_from_ie(cur_network->ies)), 2);
+	memcpy(pframe,
+	       (unsigned char *)(rtw_get_capability_from_ie(cur_network->ies)),
+	       2);
 
 	pframe += 2;
 	pattrib->pktlen += 2;
 
 	/*  SSID */
-	pframe = rtw_set_ie(pframe, WLAN_EID_SSID, cur_network->ssid.ssid_length, cur_network->ssid.ssid, &pattrib->pktlen);
+	pframe = rtw_set_ie(pframe, WLAN_EID_SSID,
+			    cur_network->ssid.ssid_length,
+			    cur_network->ssid.ssid, &pattrib->pktlen);
 
 	/*  supported rates... */
 	rate_len = rtw_get_rateset_len(cur_network->supported_rates);
-	pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, ((rate_len > 8) ? 8 : rate_len), cur_network->supported_rates, &pattrib->pktlen);
+	pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES,
+			    ((rate_len > 8) ? 8 : rate_len),
+			    cur_network->supported_rates, &pattrib->pktlen);
 
 	/*  DS parameter set */
-	pframe = rtw_set_ie(pframe, WLAN_EID_DS_PARAMS, 1, (unsigned char *)&(cur_network->configuration.ds_config), &pattrib->pktlen);
+	pframe = rtw_set_ie(
+		pframe, WLAN_EID_DS_PARAMS, 1,
+		(unsigned char *)&(cur_network->configuration.ds_config),
+		&pattrib->pktlen);
 
 	/* if ((pmlmeinfo->state&0x03) == WIFI_FW_ADHOC_STATE) */
 	{
@@ -2163,15 +2328,21 @@ void issue_beacon(struct adapter *padapter, int timeout_ms)
 		/*  IBSS Parameter Set... */
 		/* ATIMWindow = cur->configuration.ATIMWindow; */
 		ATIMWindow = 0;
-		pframe = rtw_set_ie(pframe, WLAN_EID_IBSS_PARAMS, 2, (unsigned char *)(&ATIMWindow), &pattrib->pktlen);
+		pframe = rtw_set_ie(pframe, WLAN_EID_IBSS_PARAMS, 2,
+				    (unsigned char *)(&ATIMWindow),
+				    &pattrib->pktlen);
 
 		/* ERP IE */
-		pframe = rtw_set_ie(pframe, WLAN_EID_ERP_INFO, 1, &erpinfo, &pattrib->pktlen);
+		pframe = rtw_set_ie(pframe, WLAN_EID_ERP_INFO, 1, &erpinfo,
+				    &pattrib->pktlen);
 	}
 
 	/*  EXTERNDED SUPPORTED RATE */
 	if (rate_len > 8)
-		pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES, (rate_len - 8), (cur_network->supported_rates + 8), &pattrib->pktlen);
+		pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES,
+				    (rate_len - 8),
+				    (cur_network->supported_rates + 8),
+				    &pattrib->pktlen);
 
 	/* todo:HT for adhoc */
 
@@ -2192,12 +2363,13 @@ void issue_beacon(struct adapter *padapter, int timeout_ms)
 		dump_mgntframe(padapter, pmgntframe);
 }
 
-void issue_probersp(struct adapter *padapter, unsigned char *da, u8 is_valid_p2p_probereq)
+void issue_probersp(struct adapter *padapter, unsigned char *da,
+		    u8 is_valid_p2p_probereq)
 {
-	struct xmit_frame			*pmgntframe;
-	struct pkt_attrib			*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	unsigned char *pframe;
-	struct ieee80211_hdr	*pwlanhdr;
+	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
 	unsigned char *mac, *bssid;
 	struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
@@ -2207,8 +2379,8 @@ void issue_probersp(struct adapter *padapter, unsigned char *da, u8 is_valid_p2p
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex		*cur_network = &(pmlmeinfo->network);
-	unsigned int	rate_len;
+	struct wlan_bssid_ex *cur_network = &(pmlmeinfo->network);
+	unsigned int rate_len;
 
 	if (!da)
 		return;
@@ -2246,8 +2418,11 @@ void issue_probersp(struct adapter *padapter, unsigned char *da, u8 is_valid_p2p
 	if (cur_network->ie_length > MAX_IE_SZ)
 		return;
 
-	if ((pmlmeinfo->state&0x03) == WIFI_FW_AP_STATE) {
-		pwps_ie = rtw_get_wps_ie(cur_network->ies+_FIXED_IE_LENGTH_, cur_network->ie_length-_FIXED_IE_LENGTH_, NULL, &wps_ielen);
+	if ((pmlmeinfo->state & 0x03) == WIFI_FW_AP_STATE) {
+		pwps_ie = rtw_get_wps_ie(cur_network->ies + _FIXED_IE_LENGTH_,
+					 cur_network->ie_length -
+						 _FIXED_IE_LENGTH_,
+					 NULL, &wps_ielen);
 
 		/* inerset & update wps_probe_resp_ie */
 		if (pmlmepriv->wps_probe_resp_ie && pwps_ie && wps_ielen > 0) {
@@ -2258,26 +2433,31 @@ void issue_probersp(struct adapter *padapter, unsigned char *da, u8 is_valid_p2p
 
 			premainder_ie = pwps_ie + wps_ielen;
 
-			remainder_ielen = cur_network->ie_length - wps_offset - wps_ielen;
+			remainder_ielen =
+				cur_network->ie_length - wps_offset - wps_ielen;
 
 			memcpy(pframe, cur_network->ies, wps_offset);
 			pframe += wps_offset;
 			pattrib->pktlen += wps_offset;
 
-			wps_ielen = (uint)pmlmepriv->wps_probe_resp_ie[1];/* to get ie data len */
-			if ((wps_offset+wps_ielen+2) <= MAX_IE_SZ) {
-				memcpy(pframe, pmlmepriv->wps_probe_resp_ie, wps_ielen+2);
-				pframe += wps_ielen+2;
-				pattrib->pktlen += wps_ielen+2;
+			wps_ielen = (uint)pmlmepriv->wps_probe_resp_ie
+					    [1]; /* to get ie data len */
+			if ((wps_offset + wps_ielen + 2) <= MAX_IE_SZ) {
+				memcpy(pframe, pmlmepriv->wps_probe_resp_ie,
+				       wps_ielen + 2);
+				pframe += wps_ielen + 2;
+				pattrib->pktlen += wps_ielen + 2;
 			}
 
-			if ((wps_offset+wps_ielen+2+remainder_ielen) <= MAX_IE_SZ) {
+			if ((wps_offset + wps_ielen + 2 + remainder_ielen) <=
+			    MAX_IE_SZ) {
 				memcpy(pframe, premainder_ie, remainder_ielen);
 				pframe += remainder_ielen;
 				pattrib->pktlen += remainder_ielen;
 			}
 		} else {
-			memcpy(pframe, cur_network->ies, cur_network->ie_length);
+			memcpy(pframe, cur_network->ies,
+			       cur_network->ie_length);
 			pframe += cur_network->ie_length;
 			pattrib->pktlen += cur_network->ie_length;
 		}
@@ -2288,35 +2468,43 @@ void issue_probersp(struct adapter *padapter, unsigned char *da, u8 is_valid_p2p
 			signed int ssid_ielen;
 			signed int ssid_ielen_diff;
 			u8 *buf;
-			u8 *ies = pmgntframe->buf_addr+TXDESC_OFFSET+sizeof(struct ieee80211_hdr_3addr);
+			u8 *ies = pmgntframe->buf_addr + TXDESC_OFFSET +
+				  sizeof(struct ieee80211_hdr_3addr);
 
 			buf = kzalloc(MAX_IE_SZ, GFP_ATOMIC);
 			if (!buf)
 				return;
 
-			ssid_ie = rtw_get_ie(ies+_FIXED_IE_LENGTH_, WLAN_EID_SSID, &ssid_ielen,
-				(pframe-ies)-_FIXED_IE_LENGTH_);
+			ssid_ie =
+				rtw_get_ie(ies + _FIXED_IE_LENGTH_,
+					   WLAN_EID_SSID, &ssid_ielen,
+					   (pframe - ies) - _FIXED_IE_LENGTH_);
 
-			ssid_ielen_diff = cur_network->ssid.ssid_length - ssid_ielen;
+			ssid_ielen_diff =
+				cur_network->ssid.ssid_length - ssid_ielen;
 
-			if (ssid_ie &&  cur_network->ssid.ssid_length) {
+			if (ssid_ie && cur_network->ssid.ssid_length) {
 				uint remainder_ielen;
 				u8 *remainder_ie;
 
-				remainder_ie = ssid_ie+2;
-				remainder_ielen = (pframe-remainder_ie);
+				remainder_ie = ssid_ie + 2;
+				remainder_ielen = (pframe - remainder_ie);
 
 				if (remainder_ielen > MAX_IE_SZ) {
-					netdev_warn(padapter->pnetdev,
-						    FUNC_ADPT_FMT " remainder_ielen > MAX_IE_SZ\n",
-						    FUNC_ADPT_ARG(padapter));
+					netdev_warn(
+						padapter->pnetdev,
+						FUNC_ADPT_FMT
+						" remainder_ielen > MAX_IE_SZ\n",
+						FUNC_ADPT_ARG(padapter));
 					remainder_ielen = MAX_IE_SZ;
 				}
 
 				memcpy(buf, remainder_ie, remainder_ielen);
-				memcpy(remainder_ie+ssid_ielen_diff, buf, remainder_ielen);
-				*(ssid_ie+1) = cur_network->ssid.ssid_length;
-				memcpy(ssid_ie+2, cur_network->ssid.ssid, cur_network->ssid.ssid_length);
+				memcpy(remainder_ie + ssid_ielen_diff, buf,
+				       remainder_ielen);
+				*(ssid_ie + 1) = cur_network->ssid.ssid_length;
+				memcpy(ssid_ie + 2, cur_network->ssid.ssid,
+				       cur_network->ssid.ssid_length);
 
 				pframe += ssid_ielen_diff;
 				pattrib->pktlen += ssid_ielen_diff;
@@ -2330,14 +2518,20 @@ void issue_probersp(struct adapter *padapter, unsigned char *da, u8 is_valid_p2p
 
 		/*  beacon interval: 2 bytes */
 
-		memcpy(pframe, (unsigned char *)(rtw_get_beacon_interval_from_ie(cur_network->ies)), 2);
+		memcpy(pframe,
+		       (unsigned char *)(rtw_get_beacon_interval_from_ie(
+			       cur_network->ies)),
+		       2);
 
 		pframe += 2;
 		pattrib->pktlen += 2;
 
 		/*  capability info: 2 bytes */
 
-		memcpy(pframe, (unsigned char *)(rtw_get_capability_from_ie(cur_network->ies)), 2);
+		memcpy(pframe,
+		       (unsigned char *)(rtw_get_capability_from_ie(
+			       cur_network->ies)),
+		       2);
 
 		pframe += 2;
 		pattrib->pktlen += 2;
@@ -2345,30 +2539,45 @@ void issue_probersp(struct adapter *padapter, unsigned char *da, u8 is_valid_p2p
 		/* below for ad-hoc mode */
 
 		/*  SSID */
-		pframe = rtw_set_ie(pframe, WLAN_EID_SSID, cur_network->ssid.ssid_length, cur_network->ssid.ssid, &pattrib->pktlen);
+		pframe = rtw_set_ie(pframe, WLAN_EID_SSID,
+				    cur_network->ssid.ssid_length,
+				    cur_network->ssid.ssid, &pattrib->pktlen);
 
 		/*  supported rates... */
 		rate_len = rtw_get_rateset_len(cur_network->supported_rates);
-		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, ((rate_len > 8) ? 8 : rate_len), cur_network->supported_rates, &pattrib->pktlen);
+		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES,
+				    ((rate_len > 8) ? 8 : rate_len),
+				    cur_network->supported_rates,
+				    &pattrib->pktlen);
 
 		/*  DS parameter set */
-		pframe = rtw_set_ie(pframe, WLAN_EID_DS_PARAMS, 1, (unsigned char *)&(cur_network->configuration.ds_config), &pattrib->pktlen);
+		pframe = rtw_set_ie(
+			pframe, WLAN_EID_DS_PARAMS, 1,
+			(unsigned char *)&(
+				cur_network->configuration.ds_config),
+			&pattrib->pktlen);
 
-		if ((pmlmeinfo->state&0x03) == WIFI_FW_ADHOC_STATE) {
+		if ((pmlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE) {
 			u8 erpinfo = 0;
 			u32 ATIMWindow;
 			/*  IBSS Parameter Set... */
 			/* ATIMWindow = cur->configuration.ATIMWindow; */
 			ATIMWindow = 0;
-			pframe = rtw_set_ie(pframe, WLAN_EID_IBSS_PARAMS, 2, (unsigned char *)(&ATIMWindow), &pattrib->pktlen);
+			pframe = rtw_set_ie(pframe, WLAN_EID_IBSS_PARAMS, 2,
+					    (unsigned char *)(&ATIMWindow),
+					    &pattrib->pktlen);
 
 			/* ERP IE */
-			pframe = rtw_set_ie(pframe, WLAN_EID_ERP_INFO, 1, &erpinfo, &pattrib->pktlen);
+			pframe = rtw_set_ie(pframe, WLAN_EID_ERP_INFO, 1,
+					    &erpinfo, &pattrib->pktlen);
 		}
 
 		/*  EXTERNDED SUPPORTED RATE */
 		if (rate_len > 8)
-			pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES, (rate_len - 8), (cur_network->supported_rates + 8), &pattrib->pktlen);
+			pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES,
+					    (rate_len - 8),
+					    (cur_network->supported_rates + 8),
+					    &pattrib->pktlen);
 
 		/* todo:HT for adhoc */
 	}
@@ -2379,21 +2588,21 @@ void issue_probersp(struct adapter *padapter, unsigned char *da, u8 is_valid_p2p
 }
 
 static int _issue_probereq(struct adapter *padapter,
-			   struct ndis_802_11_ssid *pssid,
-			   u8 *da, u8 ch, bool append_wps, bool wait_ack)
+			   struct ndis_802_11_ssid *pssid, u8 *da, u8 ch,
+			   bool append_wps, bool wait_ack)
 {
 	int ret = _FAIL;
-	struct xmit_frame		*pmgntframe;
-	struct pkt_attrib		*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	unsigned char *pframe;
-	struct ieee80211_hdr	*pwlanhdr;
+	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
 	unsigned char *mac;
 	unsigned char bssrate[NumRates];
 	struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
 	struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
-	int	bssrate_len = 0;
+	int bssrate_len = 0;
 
 	pmgntframe = alloc_mgtxmitframe(pxmitpriv);
 	if (!pmgntframe)
@@ -2433,26 +2642,35 @@ static int _issue_probereq(struct adapter *padapter,
 	pattrib->pktlen = sizeof(struct ieee80211_hdr_3addr);
 
 	if (pssid)
-		pframe = rtw_set_ie(pframe, WLAN_EID_SSID, pssid->ssid_length, pssid->ssid, &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_SSID, pssid->ssid_length,
+				    pssid->ssid, &(pattrib->pktlen));
 	else
-		pframe = rtw_set_ie(pframe, WLAN_EID_SSID, 0, NULL, &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_SSID, 0, NULL,
+				    &(pattrib->pktlen));
 
 	get_rate_set(padapter, bssrate, &bssrate_len);
 
 	if (bssrate_len > 8) {
-		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, 8, bssrate, &(pattrib->pktlen));
-		pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES, (bssrate_len - 8), (bssrate + 8), &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, 8, bssrate,
+				    &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES,
+				    (bssrate_len - 8), (bssrate + 8),
+				    &(pattrib->pktlen));
 	} else {
-		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, bssrate_len, bssrate, &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, bssrate_len,
+				    bssrate, &(pattrib->pktlen));
 	}
 
 	if (ch)
-		pframe = rtw_set_ie(pframe, WLAN_EID_DS_PARAMS, 1, &ch, &pattrib->pktlen);
+		pframe = rtw_set_ie(pframe, WLAN_EID_DS_PARAMS, 1, &ch,
+				    &pattrib->pktlen);
 
 	if (append_wps) {
 		/* add wps_ie for wps2.0 */
-		if (pmlmepriv->wps_probe_req_ie_len > 0 && pmlmepriv->wps_probe_req_ie) {
-			memcpy(pframe, pmlmepriv->wps_probe_req_ie, pmlmepriv->wps_probe_req_ie_len);
+		if (pmlmepriv->wps_probe_req_ie_len > 0 &&
+		    pmlmepriv->wps_probe_req_ie) {
+			memcpy(pframe, pmlmepriv->wps_probe_req_ie,
+			       pmlmepriv->wps_probe_req_ie_len);
 			pframe += pmlmepriv->wps_probe_req_ie_len;
 			pattrib->pktlen += pmlmepriv->wps_probe_req_ie_len;
 		}
@@ -2471,13 +2689,14 @@ static int _issue_probereq(struct adapter *padapter,
 	return ret;
 }
 
-inline void issue_probereq(struct adapter *padapter, struct ndis_802_11_ssid *pssid, u8 *da)
+inline void issue_probereq(struct adapter *padapter,
+			   struct ndis_802_11_ssid *pssid, u8 *da)
 {
 	_issue_probereq(padapter, pssid, da, 0, 1, false);
 }
 
-int issue_probereq_ex(struct adapter *padapter, struct ndis_802_11_ssid *pssid, u8 *da, u8 ch, bool append_wps,
-	int try_cnt, int wait_ms)
+int issue_probereq_ex(struct adapter *padapter, struct ndis_802_11_ssid *pssid,
+		      u8 *da, u8 ch, bool append_wps, int try_cnt, int wait_ms)
 {
 	int ret;
 	int i = 0;
@@ -2498,9 +2717,9 @@ int issue_probereq_ex(struct adapter *padapter, struct ndis_802_11_ssid *pssid,
 
 	if (ret != _FAIL) {
 		ret = _SUCCESS;
-		#ifndef DBG_XMIT_ACK
+#ifndef DBG_XMIT_ACK
 		goto exit;
-		#endif
+#endif
 	}
 
 exit:
@@ -2508,15 +2727,16 @@ int issue_probereq_ex(struct adapter *padapter, struct ndis_802_11_ssid *pssid,
 }
 
 /*  if psta == NULL, indicate we are station(client) now... */
-void issue_auth(struct adapter *padapter, struct sta_info *psta, unsigned short status)
+void issue_auth(struct adapter *padapter, struct sta_info *psta,
+		unsigned short status)
 {
-	struct xmit_frame			*pmgntframe;
-	struct pkt_attrib			*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	unsigned char *pframe;
-	struct ieee80211_hdr	*pwlanhdr;
+	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
-	unsigned int					val32;
-	unsigned short				val16;
+	unsigned int val32;
+	unsigned short val16;
 	int use_shared_key = 0;
 	struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
@@ -2548,8 +2768,10 @@ void issue_auth(struct adapter *padapter, struct sta_info *psta, unsigned short
 
 	if (psta) { /*  for AP mode */
 		memcpy(pwlanhdr->addr1, psta->hwaddr, ETH_ALEN);
-		memcpy(pwlanhdr->addr2, myid(&(padapter->eeprompriv)), ETH_ALEN);
-		memcpy(pwlanhdr->addr3, myid(&(padapter->eeprompriv)), ETH_ALEN);
+		memcpy(pwlanhdr->addr2, myid(&(padapter->eeprompriv)),
+		       ETH_ALEN);
+		memcpy(pwlanhdr->addr3, myid(&(padapter->eeprompriv)),
+		       ETH_ALEN);
 
 		/*  setting auth algo number */
 		val16 = (u16)psta->authalg;
@@ -2562,57 +2784,84 @@ void issue_auth(struct adapter *padapter, struct sta_info *psta, unsigned short
 
 		le_tmp = cpu_to_le16(val16);
 
-		pframe = rtw_set_fixed_ie(pframe, _AUTH_ALGM_NUM_, (unsigned char *)&le_tmp, &(pattrib->pktlen));
+		pframe = rtw_set_fixed_ie(pframe, _AUTH_ALGM_NUM_,
+					  (unsigned char *)&le_tmp,
+					  &(pattrib->pktlen));
 
 		/*  setting auth seq number */
 		val16 = (u16)psta->auth_seq;
 		le_tmp = cpu_to_le16(val16);
-		pframe = rtw_set_fixed_ie(pframe, _AUTH_SEQ_NUM_, (unsigned char *)&le_tmp, &(pattrib->pktlen));
+		pframe = rtw_set_fixed_ie(pframe, _AUTH_SEQ_NUM_,
+					  (unsigned char *)&le_tmp,
+					  &(pattrib->pktlen));
 
 		/*  setting status code... */
 		val16 = status;
 		le_tmp = cpu_to_le16(val16);
-		pframe = rtw_set_fixed_ie(pframe, _STATUS_CODE_, (unsigned char *)&le_tmp, &(pattrib->pktlen));
+		pframe = rtw_set_fixed_ie(pframe, _STATUS_CODE_,
+					  (unsigned char *)&le_tmp,
+					  &(pattrib->pktlen));
 
 		/*  added challenging text... */
-		if ((psta->auth_seq == 2) && (psta->state & WIFI_FW_AUTH_STATE) && (use_shared_key == 1))
-			pframe = rtw_set_ie(pframe, WLAN_EID_CHALLENGE, 128, psta->chg_txt, &(pattrib->pktlen));
+		if ((psta->auth_seq == 2) &&
+		    (psta->state & WIFI_FW_AUTH_STATE) && (use_shared_key == 1))
+			pframe = rtw_set_ie(pframe, WLAN_EID_CHALLENGE, 128,
+					    psta->chg_txt, &(pattrib->pktlen));
 
 	} else {
-		memcpy(pwlanhdr->addr1, get_my_bssid(&pmlmeinfo->network), ETH_ALEN);
+		memcpy(pwlanhdr->addr1, get_my_bssid(&pmlmeinfo->network),
+		       ETH_ALEN);
 		memcpy(pwlanhdr->addr2, myid(&padapter->eeprompriv), ETH_ALEN);
-		memcpy(pwlanhdr->addr3, get_my_bssid(&pmlmeinfo->network), ETH_ALEN);
+		memcpy(pwlanhdr->addr3, get_my_bssid(&pmlmeinfo->network),
+		       ETH_ALEN);
 
 		/*  setting auth algo number */
-		val16 = (pmlmeinfo->auth_algo == dot11AuthAlgrthm_Shared) ? 1 : 0;/*  0:OPEN System, 1:Shared key */
+		val16 = (pmlmeinfo->auth_algo == dot11AuthAlgrthm_Shared) ?
+				1 :
+				0; /*  0:OPEN System, 1:Shared key */
 		if (val16)
 			use_shared_key = 1;
 		le_tmp = cpu_to_le16(val16);
 
 		/* setting IV for auth seq #3 */
-		if ((pmlmeinfo->auth_seq == 3) && (pmlmeinfo->state & WIFI_FW_AUTH_STATE) && (use_shared_key == 1)) {
+		if ((pmlmeinfo->auth_seq == 3) &&
+		    (pmlmeinfo->state & WIFI_FW_AUTH_STATE) &&
+		    (use_shared_key == 1)) {
 			__le32 le_tmp32;
 
-			val32 = ((pmlmeinfo->iv++) | (pmlmeinfo->key_index << 30));
+			val32 = ((pmlmeinfo->iv++) |
+				 (pmlmeinfo->key_index << 30));
 			le_tmp32 = cpu_to_le32(val32);
-			pframe = rtw_set_fixed_ie(pframe, 4, (unsigned char *)&le_tmp32, &(pattrib->pktlen));
+			pframe = rtw_set_fixed_ie(pframe, 4,
+						  (unsigned char *)&le_tmp32,
+						  &(pattrib->pktlen));
 
 			pattrib->iv_len = 4;
 		}
 
-		pframe = rtw_set_fixed_ie(pframe, _AUTH_ALGM_NUM_, (unsigned char *)&le_tmp, &(pattrib->pktlen));
+		pframe = rtw_set_fixed_ie(pframe, _AUTH_ALGM_NUM_,
+					  (unsigned char *)&le_tmp,
+					  &(pattrib->pktlen));
 
 		/*  setting auth seq number */
 		le_tmp = cpu_to_le16(pmlmeinfo->auth_seq);
-		pframe = rtw_set_fixed_ie(pframe, _AUTH_SEQ_NUM_, (unsigned char *)&le_tmp, &(pattrib->pktlen));
+		pframe = rtw_set_fixed_ie(pframe, _AUTH_SEQ_NUM_,
+					  (unsigned char *)&le_tmp,
+					  &(pattrib->pktlen));
 
 		/*  setting status code... */
 		le_tmp = cpu_to_le16(status);
-		pframe = rtw_set_fixed_ie(pframe, _STATUS_CODE_, (unsigned char *)&le_tmp, &(pattrib->pktlen));
+		pframe = rtw_set_fixed_ie(pframe, _STATUS_CODE_,
+					  (unsigned char *)&le_tmp,
+					  &(pattrib->pktlen));
 
 		/*  then checking to see if sending challenging text... */
-		if ((pmlmeinfo->auth_seq == 3) && (pmlmeinfo->state & WIFI_FW_AUTH_STATE) && (use_shared_key == 1)) {
-			pframe = rtw_set_ie(pframe, WLAN_EID_CHALLENGE, 128, pmlmeinfo->chg_txt, &(pattrib->pktlen));
+		if ((pmlmeinfo->auth_seq == 3) &&
+		    (pmlmeinfo->state & WIFI_FW_AUTH_STATE) &&
+		    (use_shared_key == 1)) {
+			pframe = rtw_set_ie(pframe, WLAN_EID_CHALLENGE, 128,
+					    pmlmeinfo->chg_txt,
+					    &(pattrib->pktlen));
 
 			SetPrivacy(fctrl);
 
@@ -2632,10 +2881,11 @@ void issue_auth(struct adapter *padapter, struct sta_info *psta, unsigned short
 	dump_mgntframe(padapter, pmgntframe);
 }
 
-void issue_asocrsp(struct adapter *padapter, unsigned short status, struct sta_info *pstat, int pkt_type)
+void issue_asocrsp(struct adapter *padapter, unsigned short status,
+		   struct sta_info *pstat, int pkt_type)
 {
-	struct xmit_frame	*pmgntframe;
-	struct ieee80211_hdr	*pwlanhdr;
+	struct xmit_frame *pmgntframe;
+	struct ieee80211_hdr *pwlanhdr;
 	struct pkt_attrib *pattrib;
 	unsigned char *pbuf, *pframe;
 	unsigned short val;
@@ -2666,7 +2916,8 @@ void issue_asocrsp(struct adapter *padapter, unsigned short status, struct sta_i
 
 	memcpy(GetAddr1Ptr(pwlanhdr), pstat->hwaddr, ETH_ALEN);
 	memcpy(GetAddr2Ptr(pwlanhdr), myid(&(padapter->eeprompriv)), ETH_ALEN);
-	memcpy(GetAddr3Ptr(pwlanhdr), get_my_bssid(&(pmlmeinfo->network)), ETH_ALEN);
+	memcpy(GetAddr3Ptr(pwlanhdr), get_my_bssid(&(pmlmeinfo->network)),
+	       ETH_ALEN);
 
 	SetSeqNum(pwlanhdr, pmlmeext->mgnt_seq);
 	pmlmeext->mgnt_seq++;
@@ -2682,19 +2933,28 @@ void issue_asocrsp(struct adapter *padapter, unsigned short status, struct sta_i
 	/* capability */
 	val = *(unsigned short *)rtw_get_capability_from_ie(ie);
 
-	pframe = rtw_set_fixed_ie(pframe, _CAPABILITY_, (unsigned char *)&val, &(pattrib->pktlen));
+	pframe = rtw_set_fixed_ie(pframe, _CAPABILITY_, (unsigned char *)&val,
+				  &(pattrib->pktlen));
 
 	lestatus = cpu_to_le16(status);
-	pframe = rtw_set_fixed_ie(pframe, _STATUS_CODE_, (unsigned char *)&lestatus, &(pattrib->pktlen));
+	pframe = rtw_set_fixed_ie(pframe, _STATUS_CODE_,
+				  (unsigned char *)&lestatus,
+				  &(pattrib->pktlen));
 
 	le_tmp = cpu_to_le16(pstat->aid | BIT(14) | BIT(15));
-	pframe = rtw_set_fixed_ie(pframe, _ASOC_ID_, (unsigned char *)&le_tmp, &(pattrib->pktlen));
+	pframe = rtw_set_fixed_ie(pframe, _ASOC_ID_, (unsigned char *)&le_tmp,
+				  &(pattrib->pktlen));
 
 	if (pstat->bssratelen <= 8) {
-		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, pstat->bssratelen, pstat->bssrateset, &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES,
+				    pstat->bssratelen, pstat->bssrateset,
+				    &(pattrib->pktlen));
 	} else {
-		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, 8, pstat->bssrateset, &(pattrib->pktlen));
-		pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES, (pstat->bssratelen-8), pstat->bssrateset+8, &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, 8,
+				    pstat->bssrateset, &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES,
+				    (pstat->bssratelen - 8),
+				    pstat->bssrateset + 8, &(pattrib->pktlen));
 	}
 
 	if ((pstat->flags & WLAN_STA_HT) && (pmlmepriv->htpriv.ht_option)) {
@@ -2702,34 +2962,42 @@ void issue_asocrsp(struct adapter *padapter, unsigned short status, struct sta_i
 
 		/* FILL HT CAP INFO IE */
 		/* p = hostapd_eid_ht_capabilities_info(hapd, p); */
-		pbuf = rtw_get_ie(ie + _BEACON_IE_OFFSET_, WLAN_EID_HT_CAPABILITY, &ie_len, (pnetwork->ie_length - _BEACON_IE_OFFSET_));
+		pbuf = rtw_get_ie(ie + _BEACON_IE_OFFSET_,
+				  WLAN_EID_HT_CAPABILITY, &ie_len,
+				  (pnetwork->ie_length - _BEACON_IE_OFFSET_));
 		if (pbuf && ie_len > 0) {
-			memcpy(pframe, pbuf, ie_len+2);
-			pframe += (ie_len+2);
-			pattrib->pktlen += (ie_len+2);
+			memcpy(pframe, pbuf, ie_len + 2);
+			pframe += (ie_len + 2);
+			pattrib->pktlen += (ie_len + 2);
 		}
 
 		/* FILL HT ADD INFO IE */
 		/* p = hostapd_eid_ht_operation(hapd, p); */
-		pbuf = rtw_get_ie(ie + _BEACON_IE_OFFSET_, WLAN_EID_HT_OPERATION, &ie_len, (pnetwork->ie_length - _BEACON_IE_OFFSET_));
+		pbuf = rtw_get_ie(ie + _BEACON_IE_OFFSET_,
+				  WLAN_EID_HT_OPERATION, &ie_len,
+				  (pnetwork->ie_length - _BEACON_IE_OFFSET_));
 		if (pbuf && ie_len > 0) {
-			memcpy(pframe, pbuf, ie_len+2);
-			pframe += (ie_len+2);
-			pattrib->pktlen += (ie_len+2);
+			memcpy(pframe, pbuf, ie_len + 2);
+			pframe += (ie_len + 2);
+			pattrib->pktlen += (ie_len + 2);
 		}
 	}
 
 	/* FILL WMM IE */
 	if ((pstat->flags & WLAN_STA_WME) && (pmlmepriv->qospriv.qos_option)) {
 		uint ie_len = 0;
-		unsigned char WMM_PARA_IE[] = {0x00, 0x50, 0xf2, 0x02, 0x01, 0x01};
-
-		for (pbuf = ie + _BEACON_IE_OFFSET_; ; pbuf += (ie_len + 2)) {
-			pbuf = rtw_get_ie(pbuf, WLAN_EID_VENDOR_SPECIFIC, &ie_len, (pnetwork->ie_length - _BEACON_IE_OFFSET_ - (ie_len + 2)));
-			if (pbuf && !memcmp(pbuf+2, WMM_PARA_IE, 6)) {
-				memcpy(pframe, pbuf, ie_len+2);
-				pframe += (ie_len+2);
-				pattrib->pktlen += (ie_len+2);
+		unsigned char WMM_PARA_IE[] = { 0x00, 0x50, 0xf2,
+						0x02, 0x01, 0x01 };
+
+		for (pbuf = ie + _BEACON_IE_OFFSET_;; pbuf += (ie_len + 2)) {
+			pbuf = rtw_get_ie(pbuf, WLAN_EID_VENDOR_SPECIFIC,
+					  &ie_len,
+					  (pnetwork->ie_length -
+					   _BEACON_IE_OFFSET_ - (ie_len + 2)));
+			if (pbuf && !memcmp(pbuf + 2, WMM_PARA_IE, 6)) {
+				memcpy(pframe, pbuf, ie_len + 2);
+				pframe += (ie_len + 2);
+				pattrib->pktlen += (ie_len + 2);
 
 				break;
 			}
@@ -2740,11 +3008,14 @@ void issue_asocrsp(struct adapter *padapter, unsigned short status, struct sta_i
 	}
 
 	if (pmlmeinfo->assoc_AP_vendor == HT_IOT_PEER_REALTEK)
-		pframe = rtw_set_ie(pframe, WLAN_EID_VENDOR_SPECIFIC, 6, REALTEK_96B_IE, &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_VENDOR_SPECIFIC, 6,
+				    REALTEK_96B_IE, &(pattrib->pktlen));
 
 	/* add WPS IE ie for wps 2.0 */
-	if (pmlmepriv->wps_assoc_resp_ie && pmlmepriv->wps_assoc_resp_ie_len > 0) {
-		memcpy(pframe, pmlmepriv->wps_assoc_resp_ie, pmlmepriv->wps_assoc_resp_ie_len);
+	if (pmlmepriv->wps_assoc_resp_ie &&
+	    pmlmepriv->wps_assoc_resp_ie_len > 0) {
+		memcpy(pframe, pmlmepriv->wps_assoc_resp_ie,
+		       pmlmepriv->wps_assoc_resp_ie_len);
 
 		pframe += pmlmepriv->wps_assoc_resp_ie_len;
 		pattrib->pktlen += pmlmepriv->wps_assoc_resp_ie_len;
@@ -2758,20 +3029,20 @@ void issue_asocrsp(struct adapter *padapter, unsigned short status, struct sta_i
 void issue_assocreq(struct adapter *padapter)
 {
 	int ret = _FAIL;
-	struct xmit_frame				*pmgntframe;
-	struct pkt_attrib				*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	unsigned char *pframe;
-	struct ieee80211_hdr			*pwlanhdr;
+	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
 	__le16 val16;
-	unsigned int					i, j, index = 0;
+	unsigned int i, j, index = 0;
 	unsigned char bssrate[NumRates], sta_bssrate[NumRates];
 	struct ndis_80211_var_ie *pIE;
 	struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
 	struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	int	bssrate_len = 0, sta_bssrate_len = 0;
+	int bssrate_len = 0, sta_bssrate_len = 0;
 	u8 vs_ie_length = 0;
 
 	pmgntframe = alloc_mgtxmitframe(pxmitpriv);
@@ -2814,14 +3085,17 @@ void issue_assocreq(struct adapter *padapter)
 	pattrib->pktlen += 2;
 
 	/* SSID */
-	pframe = rtw_set_ie(pframe, WLAN_EID_SSID,  pmlmeinfo->network.ssid.ssid_length, pmlmeinfo->network.ssid.ssid, &(pattrib->pktlen));
+	pframe = rtw_set_ie(pframe, WLAN_EID_SSID,
+			    pmlmeinfo->network.ssid.ssid_length,
+			    pmlmeinfo->network.ssid.ssid, &(pattrib->pktlen));
 
 	/* supported rate & extended supported rate */
 
 	/*  Check if the AP's supported rates are also supported by STA. */
 	get_rate_set(padapter, sta_bssrate, &sta_bssrate_len);
 
-	if (pmlmeext->cur_channel == 14) /*  for JAPAN, channel 14 can only uses B Mode(CCK) */
+	if (pmlmeext->cur_channel ==
+	    14) /*  for JAPAN, channel 14 can only uses B Mode(CCK) */
 		sta_bssrate_len = 4;
 
 	/* for (i = 0; i < sta_bssrate_len; i++) { */
@@ -2838,15 +3112,17 @@ void issue_assocreq(struct adapter *padapter)
 
 		/*  Check if the AP's supported rates are also supported by STA. */
 		for (j = 0; j < sta_bssrate_len; j++) {
-			 /*  Avoid the proprietary data rate (22Mbps) of Handlink WSG-4000 AP */
-			if ((pmlmeinfo->network.supported_rates[i] | IEEE80211_BASIC_RATE_MASK)
-					== (sta_bssrate[j] | IEEE80211_BASIC_RATE_MASK))
+			/*  Avoid the proprietary data rate (22Mbps) of Handlink WSG-4000 AP */
+			if ((pmlmeinfo->network.supported_rates[i] |
+			     IEEE80211_BASIC_RATE_MASK) ==
+			    (sta_bssrate[j] | IEEE80211_BASIC_RATE_MASK))
 				break;
 		}
 
 		if (j != sta_bssrate_len)
 			/*  the rate is supported by STA */
-			bssrate[index++] = pmlmeinfo->network.supported_rates[i];
+			bssrate[index++] =
+				pmlmeinfo->network.supported_rates[i];
 	}
 
 	bssrate_len = index;
@@ -2858,26 +3134,33 @@ void issue_assocreq(struct adapter *padapter)
 	}
 
 	if (bssrate_len > 8) {
-		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, 8, bssrate, &(pattrib->pktlen));
-		pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES, (bssrate_len - 8), (bssrate + 8), &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, 8, bssrate,
+				    &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES,
+				    (bssrate_len - 8), (bssrate + 8),
+				    &(pattrib->pktlen));
 	} else
-		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, bssrate_len, bssrate, &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, bssrate_len,
+				    bssrate, &(pattrib->pktlen));
 
 	/* vendor specific IE, such as WPA, WMM, WPS */
-	for (i = sizeof(struct ndis_802_11_fix_ie); i < pmlmeinfo->network.ie_length;) {
+	for (i = sizeof(struct ndis_802_11_fix_ie);
+	     i < pmlmeinfo->network.ie_length;) {
 		if (i + sizeof(*pIE) > pmlmeinfo->network.ie_length)
 			break;
 		pIE = (struct ndis_80211_var_ie *)(pmlmeinfo->network.ies + i);
-		if (i + sizeof(*pIE) + pIE->length > pmlmeinfo->network.ie_length)
+		if (i + sizeof(*pIE) + pIE->length >
+		    pmlmeinfo->network.ie_length)
 			break;
 
 		switch (pIE->element_id) {
 		case WLAN_EID_VENDOR_SPECIFIC:
 			if ((!memcmp(pIE->data, RTW_WPA_OUI, 4)) ||
-					(!memcmp(pIE->data, WMM_OUI, 4)) ||
-					(!memcmp(pIE->data, WPS_OUI, 4))) {
+			    (!memcmp(pIE->data, WMM_OUI, 4)) ||
+			    (!memcmp(pIE->data, WPS_OUI, 4))) {
 				vs_ie_length = pIE->length;
-				if ((!padapter->registrypriv.wifi_spec) && (!memcmp(pIE->data, WPS_OUI, 4))) {
+				if ((!padapter->registrypriv.wifi_spec) &&
+				    (!memcmp(pIE->data, WPS_OUI, 4))) {
 					/* Commented by Kurt 20110629
 					 * In some older APs, WPS handshake
 					 * would be fail if we append vendor
@@ -2887,25 +3170,37 @@ void issue_assocreq(struct adapter *padapter)
 					vs_ie_length = 14;
 				}
 
-				pframe = rtw_set_ie(pframe, WLAN_EID_VENDOR_SPECIFIC, vs_ie_length, pIE->data, &(pattrib->pktlen));
+				pframe = rtw_set_ie(pframe,
+						    WLAN_EID_VENDOR_SPECIFIC,
+						    vs_ie_length, pIE->data,
+						    &(pattrib->pktlen));
 			}
 			break;
 
 		case WLAN_EID_RSN:
-			pframe = rtw_set_ie(pframe, WLAN_EID_RSN, pIE->length, pIE->data, &(pattrib->pktlen));
+			pframe = rtw_set_ie(pframe, WLAN_EID_RSN, pIE->length,
+					    pIE->data, &(pattrib->pktlen));
 			break;
 		case WLAN_EID_HT_CAPABILITY:
 			if (padapter->mlmepriv.htpriv.ht_option) {
 				if (!(is_ap_in_tkip(padapter))) {
-					memcpy(&(pmlmeinfo->HT_caps), pIE->data, sizeof(struct HT_caps_element));
-					pframe = rtw_set_ie(pframe, WLAN_EID_HT_CAPABILITY, pIE->length, (u8 *)(&(pmlmeinfo->HT_caps)), &(pattrib->pktlen));
+					memcpy(&(pmlmeinfo->HT_caps), pIE->data,
+					       sizeof(struct HT_caps_element));
+					pframe = rtw_set_ie(
+						pframe, WLAN_EID_HT_CAPABILITY,
+						pIE->length,
+						(u8 *)(&(pmlmeinfo->HT_caps)),
+						&(pattrib->pktlen));
 				}
 			}
 			break;
 
 		case WLAN_EID_EXT_CAPABILITY:
 			if (padapter->mlmepriv.htpriv.ht_option)
-				pframe = rtw_set_ie(pframe, WLAN_EID_EXT_CAPABILITY, pIE->length, pIE->data, &(pattrib->pktlen));
+				pframe = rtw_set_ie(pframe,
+						    WLAN_EID_EXT_CAPABILITY,
+						    pIE->length, pIE->data,
+						    &(pattrib->pktlen));
 			break;
 		default:
 			break;
@@ -2915,7 +3210,8 @@ void issue_assocreq(struct adapter *padapter)
 	}
 
 	if (pmlmeinfo->assoc_AP_vendor == HT_IOT_PEER_REALTEK)
-		pframe = rtw_set_ie(pframe, WLAN_EID_VENDOR_SPECIFIC, 6, REALTEK_96B_IE, &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_VENDOR_SPECIFIC, 6,
+				    REALTEK_96B_IE, &(pattrib->pktlen));
 
 	pattrib->last_txcmdsz = pattrib->pktlen;
 	dump_mgntframe(padapter, pmgntframe);
@@ -2924,7 +3220,8 @@ void issue_assocreq(struct adapter *padapter)
 
 exit:
 	if (ret == _SUCCESS)
-		rtw_buf_update(&pmlmepriv->assoc_req, &pmlmepriv->assoc_req_len, (u8 *)pwlanhdr, pattrib->pktlen);
+		rtw_buf_update(&pmlmepriv->assoc_req, &pmlmepriv->assoc_req_len,
+			       (u8 *)pwlanhdr, pattrib->pktlen);
 	else
 		rtw_buf_free(&pmlmepriv->assoc_req, &pmlmepriv->assoc_req_len);
 }
@@ -2934,10 +3231,10 @@ static int _issue_nulldata(struct adapter *padapter, unsigned char *da,
 			   unsigned int power_mode, bool wait_ack)
 {
 	int ret = _FAIL;
-	struct xmit_frame			*pmgntframe;
-	struct pkt_attrib			*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	unsigned char *pframe;
-	struct ieee80211_hdr	*pwlanhdr;
+	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
 	struct xmit_priv *pxmitpriv;
 	struct mlme_ext_priv *pmlmeext;
@@ -2967,9 +3264,9 @@ static int _issue_nulldata(struct adapter *padapter, unsigned char *da,
 	fctrl = &(pwlanhdr->frame_control);
 	*(fctrl) = 0;
 
-	if ((pmlmeinfo->state&0x03) == WIFI_FW_AP_STATE)
+	if ((pmlmeinfo->state & 0x03) == WIFI_FW_AP_STATE)
 		SetFrDs(fctrl);
-	else if ((pmlmeinfo->state&0x03) == WIFI_FW_STATION_STATE)
+	else if ((pmlmeinfo->state & 0x03) == WIFI_FW_STATION_STATE)
 		SetToDs(fctrl);
 
 	if (power_mode)
@@ -3005,7 +3302,8 @@ static int _issue_nulldata(struct adapter *padapter, unsigned char *da,
  * When wait_ms > 0, this function should be called at process context
  * da == NULL for station mode
  */
-int issue_nulldata(struct adapter *padapter, unsigned char *da, unsigned int power_mode, int try_cnt, int wait_ms)
+int issue_nulldata(struct adapter *padapter, unsigned char *da,
+		   unsigned int power_mode, int try_cnt, int wait_ms)
 {
 	int ret;
 	int i = 0;
@@ -3042,9 +3340,9 @@ int issue_nulldata(struct adapter *padapter, unsigned char *da, unsigned int pow
 
 	if (ret != _FAIL) {
 		ret = _SUCCESS;
-		#ifndef DBG_XMIT_ACK
+#ifndef DBG_XMIT_ACK
 		goto exit;
-		#endif
+#endif
 	}
 
 exit:
@@ -3077,10 +3375,10 @@ static int _issue_qos_nulldata(struct adapter *padapter, unsigned char *da,
 			       u16 tid, bool wait_ack)
 {
 	int ret = _FAIL;
-	struct xmit_frame			*pmgntframe;
-	struct pkt_attrib			*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	unsigned char *pframe;
-	struct ieee80211_hdr	*pwlanhdr;
+	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
 	u16 *qc;
 	struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
@@ -3109,9 +3407,9 @@ static int _issue_qos_nulldata(struct adapter *padapter, unsigned char *da,
 	fctrl = &(pwlanhdr->frame_control);
 	*(fctrl) = 0;
 
-	if ((pmlmeinfo->state&0x03) == WIFI_FW_AP_STATE)
+	if ((pmlmeinfo->state & 0x03) == WIFI_FW_AP_STATE)
 		SetFrDs(fctrl);
-	else if ((pmlmeinfo->state&0x03) == WIFI_FW_STATION_STATE)
+	else if ((pmlmeinfo->state & 0x03) == WIFI_FW_STATION_STATE)
 		SetToDs(fctrl);
 
 	qc = (unsigned short *)(pframe + pattrib->hdrlen - 2);
@@ -3148,7 +3446,8 @@ static int _issue_qos_nulldata(struct adapter *padapter, unsigned char *da,
 
 /* when wait_ms >0 , this function should be called at process context */
 /* da == NULL for station mode */
-int issue_qos_nulldata(struct adapter *padapter, unsigned char *da, u16 tid, int try_cnt, int wait_ms)
+int issue_qos_nulldata(struct adapter *padapter, unsigned char *da, u16 tid,
+		       int try_cnt, int wait_ms)
 {
 	int ret;
 	int i = 0;
@@ -3174,9 +3473,9 @@ int issue_qos_nulldata(struct adapter *padapter, unsigned char *da, u16 tid, int
 
 	if (ret != _FAIL) {
 		ret = _SUCCESS;
-		#ifndef DBG_XMIT_ACK
+#ifndef DBG_XMIT_ACK
 		goto exit;
-		#endif
+#endif
 	}
 
 exit:
@@ -3186,10 +3485,10 @@ int issue_qos_nulldata(struct adapter *padapter, unsigned char *da, u16 tid, int
 static int _issue_deauth(struct adapter *padapter, unsigned char *da,
 			 unsigned short reason, bool wait_ack)
 {
-	struct xmit_frame			*pmgntframe;
-	struct pkt_attrib			*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	unsigned char *pframe;
-	struct ieee80211_hdr	*pwlanhdr;
+	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
 	struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
@@ -3226,7 +3525,8 @@ static int _issue_deauth(struct adapter *padapter, unsigned char *da,
 	pattrib->pktlen = sizeof(struct ieee80211_hdr_3addr);
 
 	le_tmp = cpu_to_le16(reason);
-	pframe = rtw_set_fixed_ie(pframe, _RSON_CODE_, (unsigned char *)&le_tmp, &(pattrib->pktlen));
+	pframe = rtw_set_fixed_ie(pframe, _RSON_CODE_, (unsigned char *)&le_tmp,
+				  &(pattrib->pktlen));
 
 	pattrib->last_txcmdsz = pattrib->pktlen;
 
@@ -3241,13 +3541,14 @@ static int _issue_deauth(struct adapter *padapter, unsigned char *da,
 	return ret;
 }
 
-int issue_deauth(struct adapter *padapter, unsigned char *da, unsigned short reason)
+int issue_deauth(struct adapter *padapter, unsigned char *da,
+		 unsigned short reason)
 {
 	return _issue_deauth(padapter, da, reason, false);
 }
 
-int issue_deauth_ex(struct adapter *padapter, u8 *da, unsigned short reason, int try_cnt,
-	int wait_ms)
+int issue_deauth_ex(struct adapter *padapter, u8 *da, unsigned short reason,
+		    int try_cnt, int wait_ms)
 {
 	int ret;
 	int i = 0;
@@ -3267,22 +3568,23 @@ int issue_deauth_ex(struct adapter *padapter, u8 *da, unsigned short reason, int
 
 	if (ret != _FAIL) {
 		ret = _SUCCESS;
-		#ifndef DBG_XMIT_ACK
+#ifndef DBG_XMIT_ACK
 		goto exit;
-		#endif
+#endif
 	}
 
 exit:
 	return ret;
 }
 
-void issue_action_SA_Query(struct adapter *padapter, unsigned char *raddr, unsigned char action, unsigned short tid)
+void issue_action_SA_Query(struct adapter *padapter, unsigned char *raddr,
+			   unsigned char action, unsigned short tid)
 {
 	u8 category = RTW_WLAN_CATEGORY_SA_QUERY;
-	struct xmit_frame		*pmgntframe;
-	struct pkt_attrib		*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	u8 *pframe;
-	struct ieee80211_hdr	*pwlanhdr;
+	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
 	struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
@@ -3308,7 +3610,8 @@ void issue_action_SA_Query(struct adapter *padapter, unsigned char *raddr, unsig
 	if (raddr)
 		memcpy(pwlanhdr->addr1, raddr, ETH_ALEN);
 	else
-		memcpy(pwlanhdr->addr1, get_my_bssid(&(pmlmeinfo->network)), ETH_ALEN);
+		memcpy(pwlanhdr->addr1, get_my_bssid(&(pmlmeinfo->network)),
+		       ETH_ALEN);
 	memcpy(pwlanhdr->addr2, myid(&(padapter->eeprompriv)), ETH_ALEN);
 	memcpy(pwlanhdr->addr3, get_my_bssid(&(pmlmeinfo->network)), ETH_ALEN);
 
@@ -3324,7 +3627,9 @@ void issue_action_SA_Query(struct adapter *padapter, unsigned char *raddr, unsig
 
 	switch (action) {
 	case 0: /* SA Query req */
-		pframe = rtw_set_fixed_ie(pframe, 2, (unsigned char *)&pmlmeext->sa_query_seq, &pattrib->pktlen);
+		pframe = rtw_set_fixed_ie(
+			pframe, 2, (unsigned char *)&pmlmeext->sa_query_seq,
+			&pattrib->pktlen);
 		pmlmeext->sa_query_seq++;
 		/* send sa query request to AP, AP should reply sa query response in 1 second */
 		set_sa_query_timer(pmlmeext, 1000);
@@ -3332,7 +3637,8 @@ void issue_action_SA_Query(struct adapter *padapter, unsigned char *raddr, unsig
 
 	case 1: /* SA Query rsp */
 		le_tmp = cpu_to_le16(tid);
-		pframe = rtw_set_fixed_ie(pframe, 2, (unsigned char *)&le_tmp, &pattrib->pktlen);
+		pframe = rtw_set_fixed_ie(pframe, 2, (unsigned char *)&le_tmp,
+					  &pattrib->pktlen);
 		break;
 	default:
 		break;
@@ -3343,7 +3649,8 @@ void issue_action_SA_Query(struct adapter *padapter, unsigned char *raddr, unsig
 	dump_mgntframe(padapter, pmgntframe);
 }
 
-void issue_action_BA(struct adapter *padapter, unsigned char *raddr, unsigned char action, unsigned short status)
+void issue_action_BA(struct adapter *padapter, unsigned char *raddr,
+		     unsigned char action, unsigned short status)
 {
 	u8 category = RTW_WLAN_CATEGORY_BACK;
 	u16 start_seq;
@@ -3352,10 +3659,10 @@ void issue_action_BA(struct adapter *padapter, unsigned char *raddr, unsigned ch
 	u16 BA_timeout_value;
 	u16 BA_starting_seqctrl = 0;
 	enum ieee80211_max_ampdu_length_exp max_rx_ampdu_factor;
-	struct xmit_frame		*pmgntframe;
-	struct pkt_attrib		*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	u8 *pframe;
-	struct ieee80211_hdr	*pwlanhdr;
+	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
 	struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
@@ -3402,87 +3709,149 @@ void issue_action_BA(struct adapter *padapter, unsigned char *raddr, unsigned ch
 			do {
 				pmlmeinfo->dialogToken++;
 			} while (pmlmeinfo->dialogToken == 0);
-			pframe = rtw_set_fixed_ie(pframe, 1, &(pmlmeinfo->dialogToken), &(pattrib->pktlen));
+			pframe = rtw_set_fixed_ie(pframe, 1,
+						  &(pmlmeinfo->dialogToken),
+						  &(pattrib->pktlen));
 
 			if (hal_btcoex_IsBTCoexCtrlAMPDUSize(padapter)) {
 				/*  A-MSDU NOT Supported */
 				BA_para_set = 0;
 				/*  immediate Block Ack */
-				BA_para_set |= BIT(1) & IEEE80211_ADDBA_PARAM_POLICY_MASK;
+				BA_para_set |=
+					BIT(1) &
+					IEEE80211_ADDBA_PARAM_POLICY_MASK;
 				/*  TID */
-				BA_para_set |= (status << 2) & IEEE80211_ADDBA_PARAM_TID_MASK;
+				BA_para_set |= (status << 2) &
+					       IEEE80211_ADDBA_PARAM_TID_MASK;
 				/*  max buffer size is 8 MSDU */
-				BA_para_set |= (8 << 6) & IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK;
+				BA_para_set |=
+					(8 << 6) &
+					IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK;
 			} else {
-				BA_para_set = (0x1002 | ((status & 0xf) << 2)); /* immediate ack & 64 buffer size */
+				BA_para_set =
+					(0x1002 |
+					 ((status & 0xf)
+					  << 2)); /* immediate ack & 64 buffer size */
 			}
 			le_tmp = cpu_to_le16(BA_para_set);
-			pframe = rtw_set_fixed_ie(pframe, 2, (unsigned char *)(&(le_tmp)), &(pattrib->pktlen));
+			pframe = rtw_set_fixed_ie(pframe, 2,
+						  (unsigned char *)(&(le_tmp)),
+						  &(pattrib->pktlen));
 
-			BA_timeout_value = 5000;/*  5ms */
+			BA_timeout_value = 5000; /*  5ms */
 			le_tmp = cpu_to_le16(BA_timeout_value);
-			pframe = rtw_set_fixed_ie(pframe, 2, (unsigned char *)(&(le_tmp)), &(pattrib->pktlen));
+			pframe = rtw_set_fixed_ie(pframe, 2,
+						  (unsigned char *)(&(le_tmp)),
+						  &(pattrib->pktlen));
 
 			/* if ((psta = rtw_get_stainfo(pstapriv, pmlmeinfo->network.mac_address)) != NULL) */
 			psta = rtw_get_stainfo(pstapriv, raddr);
 			if (psta) {
-				start_seq = (psta->sta_xmitpriv.txseq_tid[status & 0x07] % 4096u) + 1;
+				start_seq = (psta->sta_xmitpriv
+						     .txseq_tid[status & 0x07] %
+					     4096u) +
+					    1;
 
-				psta->BA_starting_seqctrl[status & 0x07] = start_seq;
+				psta->BA_starting_seqctrl[status & 0x07] =
+					start_seq;
 
 				BA_starting_seqctrl = start_seq << 4;
 			}
 
 			le_tmp = cpu_to_le16(BA_starting_seqctrl);
-			pframe = rtw_set_fixed_ie(pframe, 2, (unsigned char *)(&(le_tmp)), &(pattrib->pktlen));
+			pframe = rtw_set_fixed_ie(pframe, 2,
+						  (unsigned char *)(&(le_tmp)),
+						  &(pattrib->pktlen));
 			break;
 
 		case 1: /* ADDBA rsp */
-			pframe = rtw_set_fixed_ie(pframe, 1, &(pmlmeinfo->ADDBA_req.dialog_token), &(pattrib->pktlen));
-			pframe = rtw_set_fixed_ie(pframe, 2, (unsigned char *)(&status), &(pattrib->pktlen));
+			pframe = rtw_set_fixed_ie(
+				pframe, 1, &(pmlmeinfo->ADDBA_req.dialog_token),
+				&(pattrib->pktlen));
+			pframe = rtw_set_fixed_ie(pframe, 2,
+						  (unsigned char *)(&status),
+						  &(pattrib->pktlen));
 			if (padapter->driver_rx_ampdu_factor != 0xFF)
 				max_rx_ampdu_factor =
-				  (enum ieee80211_max_ampdu_length_exp)padapter->driver_rx_ampdu_factor;
+					(enum ieee80211_max_ampdu_length_exp)
+						padapter->driver_rx_ampdu_factor;
 			else
 				rtw_hal_get_def_var(padapter,
-						    HW_VAR_MAX_RX_AMPDU_FACTOR, &max_rx_ampdu_factor);
+						    HW_VAR_MAX_RX_AMPDU_FACTOR,
+						    &max_rx_ampdu_factor);
 
 			if (max_rx_ampdu_factor == IEEE80211_HT_MAX_AMPDU_64K)
-				BA_para_set = ((le16_to_cpu(pmlmeinfo->ADDBA_req.BA_para_set) & 0x3f) | 0x1000); /* 64 buffer size */
-			else if (max_rx_ampdu_factor == IEEE80211_HT_MAX_AMPDU_32K)
-				BA_para_set = ((le16_to_cpu(pmlmeinfo->ADDBA_req.BA_para_set) & 0x3f) | 0x0800); /* 32 buffer size */
-			else if (max_rx_ampdu_factor == IEEE80211_HT_MAX_AMPDU_16K)
-				BA_para_set = ((le16_to_cpu(pmlmeinfo->ADDBA_req.BA_para_set) & 0x3f) | 0x0400); /* 16 buffer size */
-			else if (max_rx_ampdu_factor == IEEE80211_HT_MAX_AMPDU_8K)
-				BA_para_set = ((le16_to_cpu(pmlmeinfo->ADDBA_req.BA_para_set) & 0x3f) | 0x0200); /* 8 buffer size */
+				BA_para_set =
+					((le16_to_cpu(pmlmeinfo->ADDBA_req
+							      .BA_para_set) &
+					  0x3f) |
+					 0x1000); /* 64 buffer size */
+			else if (max_rx_ampdu_factor ==
+				 IEEE80211_HT_MAX_AMPDU_32K)
+				BA_para_set =
+					((le16_to_cpu(pmlmeinfo->ADDBA_req
+							      .BA_para_set) &
+					  0x3f) |
+					 0x0800); /* 32 buffer size */
+			else if (max_rx_ampdu_factor ==
+				 IEEE80211_HT_MAX_AMPDU_16K)
+				BA_para_set =
+					((le16_to_cpu(pmlmeinfo->ADDBA_req
+							      .BA_para_set) &
+					  0x3f) |
+					 0x0400); /* 16 buffer size */
+			else if (max_rx_ampdu_factor ==
+				 IEEE80211_HT_MAX_AMPDU_8K)
+				BA_para_set =
+					((le16_to_cpu(pmlmeinfo->ADDBA_req
+							      .BA_para_set) &
+					  0x3f) |
+					 0x0200); /* 8 buffer size */
 			else
-				BA_para_set = ((le16_to_cpu(pmlmeinfo->ADDBA_req.BA_para_set) & 0x3f) | 0x1000); /* 64 buffer size */
+				BA_para_set =
+					((le16_to_cpu(pmlmeinfo->ADDBA_req
+							      .BA_para_set) &
+					  0x3f) |
+					 0x1000); /* 64 buffer size */
 
 			if (hal_btcoex_IsBTCoexCtrlAMPDUSize(padapter) &&
 			    padapter->driver_rx_ampdu_factor == 0xFF) {
 				/*  max buffer size is 8 MSDU */
-				BA_para_set &= ~IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK;
-				BA_para_set |= (8 << 6) & IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK;
+				BA_para_set &=
+					~IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK;
+				BA_para_set |=
+					(8 << 6) &
+					IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK;
 			}
 
-			if (pregpriv->ampdu_amsdu == 0)/* disabled */
+			if (pregpriv->ampdu_amsdu == 0) /* disabled */
 				le_tmp = cpu_to_le16(BA_para_set & ~BIT(0));
-			else if (pregpriv->ampdu_amsdu == 1)/* enabled */
+			else if (pregpriv->ampdu_amsdu == 1) /* enabled */
 				le_tmp = cpu_to_le16(BA_para_set | BIT(0));
 			else /* auto */
 				le_tmp = cpu_to_le16(BA_para_set);
 
-			pframe = rtw_set_fixed_ie(pframe, 2, (unsigned char *)(&(le_tmp)), &(pattrib->pktlen));
-			pframe = rtw_set_fixed_ie(pframe, 2, (unsigned char *)(&(pmlmeinfo->ADDBA_req.BA_timeout_value)), &(pattrib->pktlen));
+			pframe = rtw_set_fixed_ie(pframe, 2,
+						  (unsigned char *)(&(le_tmp)),
+						  &(pattrib->pktlen));
+			pframe = rtw_set_fixed_ie(
+				pframe, 2,
+				(unsigned char *)(&(
+					pmlmeinfo->ADDBA_req.BA_timeout_value)),
+				&(pattrib->pktlen));
 			break;
-		case 2:/* DELBA */
+		case 2: /* DELBA */
 			BA_para_set = (status & 0x1F) << 3;
 			le_tmp = cpu_to_le16(BA_para_set);
-			pframe = rtw_set_fixed_ie(pframe, 2, (unsigned char *)(&(le_tmp)), &(pattrib->pktlen));
+			pframe = rtw_set_fixed_ie(pframe, 2,
+						  (unsigned char *)(&(le_tmp)),
+						  &(pattrib->pktlen));
 
 			reason_code = 37;
 			le_tmp = cpu_to_le16(reason_code);
-			pframe = rtw_set_fixed_ie(pframe, 2, (unsigned char *)(&(le_tmp)), &(pattrib->pktlen));
+			pframe = rtw_set_fixed_ie(pframe, 2,
+						  (unsigned char *)(&(le_tmp)),
+						  &(pattrib->pktlen));
 			break;
 		default:
 			break;
@@ -3496,23 +3865,24 @@ void issue_action_BA(struct adapter *padapter, unsigned char *raddr, unsigned ch
 
 static void issue_action_BSSCoexistPacket(struct adapter *padapter)
 {
-	struct list_head		*plist, *phead;
+	struct list_head *plist, *phead;
 	unsigned char category, action;
-	struct xmit_frame			*pmgntframe;
-	struct pkt_attrib			*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	unsigned char *pframe;
-	struct ieee80211_hdr	*pwlanhdr;
+	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
-	struct	wlan_network	*pnetwork = NULL;
+	struct wlan_network *pnetwork = NULL;
 	struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct __queue		*queue	= &(pmlmepriv->scanned_queue);
-	u8 InfoContent[16] = {0};
+	struct __queue *queue = &(pmlmepriv->scanned_queue);
+	u8 InfoContent[16] = { 0 };
 	u8 ICS[8][15];
 
-	if ((pmlmepriv->num_FortyMHzIntolerant == 0) || (pmlmepriv->num_sta_no_ht == 0))
+	if ((pmlmepriv->num_FortyMHzIntolerant == 0) ||
+	    (pmlmepriv->num_sta_no_ht == 0))
 		return;
 
 	if (true == pmlmeinfo->bwmode_updated)
@@ -3555,9 +3925,10 @@ static void issue_action_BSSCoexistPacket(struct adapter *padapter)
 	if (pmlmepriv->num_FortyMHzIntolerant > 0) {
 		u8 iedata = 0;
 
-		iedata |= BIT(2);/* 20 MHz BSS Width Request */
+		iedata |= BIT(2); /* 20 MHz BSS Width Request */
 
-		pframe = rtw_set_ie(pframe, WLAN_EID_BSS_COEX_2040,  1, &iedata, &(pattrib->pktlen));
+		pframe = rtw_set_ie(pframe, WLAN_EID_BSS_COEX_2040, 1, &iedata,
+				    &(pattrib->pktlen));
 	}
 
 	/*  */
@@ -3578,19 +3949,25 @@ static void issue_action_BSSCoexistPacket(struct adapter *padapter)
 			if (phead == plist)
 				break;
 
-			pnetwork = container_of(plist, struct wlan_network, list);
+			pnetwork =
+				container_of(plist, struct wlan_network, list);
 
 			plist = get_next(plist);
 
-			pbss_network = (struct wlan_bssid_ex *)&pnetwork->network;
+			pbss_network =
+				(struct wlan_bssid_ex *)&pnetwork->network;
 
-			p = rtw_get_ie(pbss_network->ies + _FIXED_IE_LENGTH_, WLAN_EID_HT_CAPABILITY, &len, pbss_network->ie_length - _FIXED_IE_LENGTH_);
-			if (!p || len == 0) {/* non-HT */
+			p = rtw_get_ie(pbss_network->ies + _FIXED_IE_LENGTH_,
+				       WLAN_EID_HT_CAPABILITY, &len,
+				       pbss_network->ie_length -
+					       _FIXED_IE_LENGTH_);
+			if (!p || len == 0) { /* non-HT */
 
 				if (pbss_network->configuration.ds_config <= 0)
 					continue;
 
-				ICS[0][pbss_network->configuration.ds_config] = 1;
+				ICS[0][pbss_network->configuration.ds_config] =
+					1;
 
 				if (ICS[0][0] == 0)
 					ICS[0][0] = 1;
@@ -3620,7 +3997,9 @@ static void issue_action_BSSCoexistPacket(struct adapter *padapter)
 				}
 			}
 
-			pframe = rtw_set_ie(pframe, WLAN_EID_BSS_INTOLERANT_CHL_REPORT, k, InfoContent, &(pattrib->pktlen));
+			pframe = rtw_set_ie(pframe,
+					    WLAN_EID_BSS_INTOLERANT_CHL_REPORT,
+					    k, InfoContent, &(pattrib->pktlen));
 		}
 	}
 
@@ -3638,7 +4017,7 @@ unsigned int send_delba(struct adapter *padapter, u8 initiator, u8 *addr)
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 	u16 tid;
 
-	if ((pmlmeinfo->state&0x03) != WIFI_FW_AP_STATE)
+	if ((pmlmeinfo->state & 0x03) != WIFI_FW_AP_STATE)
 		if (!(pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS))
 			return _SUCCESS;
 
@@ -3646,18 +4025,23 @@ unsigned int send_delba(struct adapter *padapter, u8 initiator, u8 *addr)
 	if (!psta)
 		return _SUCCESS;
 
-	if (initiator == 0) {/*  recipient */
+	if (initiator == 0) { /*  recipient */
 		for (tid = 0; tid < MAXTID; tid++) {
 			if (psta->recvreorder_ctrl[tid].enable) {
-				issue_action_BA(padapter, addr, WLAN_ACTION_DELBA, (((tid << 1) | initiator)&0x1F));
+				issue_action_BA(
+					padapter, addr, WLAN_ACTION_DELBA,
+					(((tid << 1) | initiator) & 0x1F));
 				psta->recvreorder_ctrl[tid].enable = false;
-				psta->recvreorder_ctrl[tid].indicate_seq = 0xffff;
+				psta->recvreorder_ctrl[tid].indicate_seq =
+					0xffff;
 			}
 		}
-	} else if (initiator == 1) {/*  originator */
+	} else if (initiator == 1) { /*  originator */
 		for (tid = 0; tid < MAXTID; tid++) {
 			if (psta->htpriv.agg_enable_bitmap & BIT(tid)) {
-				issue_action_BA(padapter, addr, WLAN_ACTION_DELBA, (((tid << 1) | initiator)&0x1F));
+				issue_action_BA(
+					padapter, addr, WLAN_ACTION_DELBA,
+					(((tid << 1) | initiator) & 0x1F));
 				psta->htpriv.agg_enable_bitmap &= ~BIT(tid);
 				psta->htpriv.candidate_tid_bitmap &= ~BIT(tid);
 			}
@@ -3670,7 +4054,7 @@ unsigned int send_delba(struct adapter *padapter, u8 initiator, u8 *addr)
 unsigned int send_beacon(struct adapter *padapter)
 {
 	u8 bxmitok = false;
-	int	issue = 0;
+	int issue = 0;
 	int poll = 0;
 
 	rtw_hal_set_hwreg(padapter, HW_VAR_BCN_VALID, NULL);
@@ -3680,11 +4064,15 @@ unsigned int send_beacon(struct adapter *padapter)
 		issue++;
 		do {
 			cond_resched();
-			rtw_hal_get_hwreg(padapter, HW_VAR_BCN_VALID, (u8 *)(&bxmitok));
+			rtw_hal_get_hwreg(padapter, HW_VAR_BCN_VALID,
+					  (u8 *)(&bxmitok));
 			poll++;
-		} while ((poll%10) != 0 && false == bxmitok && !padapter->bSurpriseRemoved && !padapter->bDriverStopped);
+		} while ((poll % 10) != 0 && false == bxmitok &&
+			 !padapter->bSurpriseRemoved &&
+			 !padapter->bDriverStopped);
 
-	} while (false == bxmitok && issue < 100 && !padapter->bSurpriseRemoved && !padapter->bDriverStopped);
+	} while (false == bxmitok && issue < 100 &&
+		 !padapter->bSurpriseRemoved && !padapter->bDriverStopped);
 
 	if (padapter->bSurpriseRemoved || padapter->bDriverStopped)
 		return _FAIL;
@@ -3700,7 +4088,7 @@ unsigned int send_beacon(struct adapter *padapter)
 void site_survey(struct adapter *padapter)
 {
 	unsigned char survey_channel = 0, val8;
-	enum rt_scan_type	ScanType = SCAN_PASSIVE;
+	enum rt_scan_type ScanType = SCAN_PASSIVE;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 	u32 initialgain = 0;
@@ -3709,43 +4097,67 @@ void site_survey(struct adapter *padapter)
 	{
 		struct rtw_ieee80211_channel *ch;
 
-		if (pmlmeext->sitesurvey_res.channel_idx < pmlmeext->sitesurvey_res.ch_num) {
-			ch = &pmlmeext->sitesurvey_res.ch[pmlmeext->sitesurvey_res.channel_idx];
+		if (pmlmeext->sitesurvey_res.channel_idx <
+		    pmlmeext->sitesurvey_res.ch_num) {
+			ch = &pmlmeext->sitesurvey_res
+				      .ch[pmlmeext->sitesurvey_res.channel_idx];
 			survey_channel = ch->hw_value;
-			ScanType = (ch->flags & RTW_IEEE80211_CHAN_PASSIVE_SCAN) ? SCAN_PASSIVE : SCAN_ACTIVE;
+			ScanType =
+				(ch->flags & RTW_IEEE80211_CHAN_PASSIVE_SCAN) ?
+					SCAN_PASSIVE :
+					SCAN_ACTIVE;
 		}
 	}
 
 	if (survey_channel != 0) {
 		if (pmlmeext->sitesurvey_res.channel_idx == 0)
 			set_channel_bwmode(padapter, survey_channel,
-					   HAL_PRIME_CHNL_OFFSET_DONT_CARE, CHANNEL_WIDTH_20);
+					   HAL_PRIME_CHNL_OFFSET_DONT_CARE,
+					   CHANNEL_WIDTH_20);
 		else
 			r8723bs_select_channel(padapter, survey_channel);
 
-		if (ScanType == SCAN_ACTIVE) { /* obey the channel plan setting... */
+		if (ScanType ==
+		    SCAN_ACTIVE) { /* obey the channel plan setting... */
 			{
 				int i;
 
 				for (i = 0; i < RTW_SSID_SCAN_AMOUNT; i++) {
-					if (!pmlmeext->sitesurvey_res.ssid[i].ssid_length)
+					if (!pmlmeext->sitesurvey_res.ssid[i]
+						     .ssid_length)
 						continue;
 
 					/* IOT issue, When wifi_spec is not set, send one probe req without WPS IE. */
 					if (padapter->registrypriv.wifi_spec)
-						issue_probereq(padapter, &(pmlmeext->sitesurvey_res.ssid[i]), NULL);
+						issue_probereq(
+							padapter,
+							&(pmlmeext->sitesurvey_res
+								  .ssid[i]),
+							NULL);
 					else
-						issue_probereq_ex(padapter, &(pmlmeext->sitesurvey_res.ssid[i]), NULL, 0, 0, 0, 0);
-
-					issue_probereq(padapter, &(pmlmeext->sitesurvey_res.ssid[i]), NULL);
+						issue_probereq_ex(
+							padapter,
+							&(pmlmeext->sitesurvey_res
+								  .ssid[i]),
+							NULL, 0, 0, 0, 0);
+
+					issue_probereq(
+						padapter,
+						&(pmlmeext->sitesurvey_res
+							  .ssid[i]),
+						NULL);
 				}
 
-				if (pmlmeext->sitesurvey_res.scan_mode == SCAN_ACTIVE) {
+				if (pmlmeext->sitesurvey_res.scan_mode ==
+				    SCAN_ACTIVE) {
 					/* IOT issue, When wifi_spec is not set, send one probe req without WPS IE. */
 					if (padapter->registrypriv.wifi_spec)
-						issue_probereq(padapter, NULL, NULL);
+						issue_probereq(padapter, NULL,
+							       NULL);
 					else
-						issue_probereq_ex(padapter, NULL, NULL, 0, 0, 0, 0);
+						issue_probereq_ex(padapter,
+								  NULL, NULL, 0,
+								  0, 0, 0);
 					issue_probereq(padapter, NULL, NULL);
 				}
 			}
@@ -3763,7 +4175,9 @@ void site_survey(struct adapter *padapter)
 			/* switch back to the original channel */
 			/* SelectChannel(padapter, pmlmeext->cur_channel, pmlmeext->cur_ch_offset); */
 
-			set_channel_bwmode(padapter, pmlmeext->cur_channel, pmlmeext->cur_ch_offset, pmlmeext->cur_bwmode);
+			set_channel_bwmode(padapter, pmlmeext->cur_channel,
+					   pmlmeext->cur_ch_offset,
+					   pmlmeext->cur_bwmode);
 
 			/* flush 4-AC Queue after site_survey */
 			/* val8 = 0; */
@@ -3773,7 +4187,8 @@ void site_survey(struct adapter *padapter)
 			set_msr(padapter, (pmlmeinfo->state & 0x3));
 
 			initialgain = 0xff; /* restore RX GAIN */
-			rtw_hal_set_hwreg(padapter, HW_VAR_INITIAL_GAIN, (u8 *)(&initialgain));
+			rtw_hal_set_hwreg(padapter, HW_VAR_INITIAL_GAIN,
+					  (u8 *)(&initialgain));
 			/* turn on dynamic functions */
 			Restore_DM_Func_Flag(padapter);
 			/* Switch_DM_Func(padapter, DYNAMIC_ALL_FUNC_ENABLE, true); */
@@ -3782,7 +4197,8 @@ void site_survey(struct adapter *padapter)
 				issue_nulldata(padapter, NULL, 0, 3, 500);
 
 			val8 = 0; /* survey done */
-			rtw_hal_set_hwreg(padapter, HW_VAR_MLME_SITESURVEY, (u8 *)(&val8));
+			rtw_hal_set_hwreg(padapter, HW_VAR_MLME_SITESURVEY,
+					  (u8 *)(&val8));
 
 			report_surveydone_event(padapter);
 
@@ -3797,9 +4213,10 @@ void site_survey(struct adapter *padapter)
 }
 
 /* collect bss info from Beacon and Probe request/response frames. */
-u8 collect_bss_info(struct adapter *padapter, union recv_frame *precv_frame, struct wlan_bssid_ex *bssid)
+u8 collect_bss_info(struct adapter *padapter, union recv_frame *precv_frame,
+		    struct wlan_bssid_ex *bssid)
 {
-	int	i;
+	int i;
 	u32 len;
 	u8 *p;
 	u16 val16, subtype;
@@ -3841,15 +4258,22 @@ u8 collect_bss_info(struct adapter *padapter, union recv_frame *precv_frame, str
 
 	/* below is to copy the information element */
 	bssid->ie_length = len;
-	memcpy(bssid->ies, (pframe + sizeof(struct ieee80211_hdr_3addr)), bssid->ie_length);
+	memcpy(bssid->ies, (pframe + sizeof(struct ieee80211_hdr_3addr)),
+	       bssid->ie_length);
 
 	/* get the signal strength */
-	bssid->rssi = precv_frame->u.hdr.attrib.phy_info.RecvSignalPower; /*  in dBM.raw data */
-	bssid->phy_info.signal_quality = precv_frame->u.hdr.attrib.phy_info.SignalQuality;/* in percentage */
-	bssid->phy_info.signal_strength = precv_frame->u.hdr.attrib.phy_info.SignalStrength;/* in percentage */
+	bssid->rssi = precv_frame->u.hdr.attrib.phy_info
+			      .RecvSignalPower; /*  in dBM.raw data */
+	bssid->phy_info.signal_quality =
+		precv_frame->u.hdr.attrib.phy_info
+			.SignalQuality; /* in percentage */
+	bssid->phy_info.signal_strength =
+		precv_frame->u.hdr.attrib.phy_info
+			.SignalStrength; /* in percentage */
 
 	/*  checking SSID */
-	p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_SSID, &len, bssid->ie_length - ie_offset);
+	p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_SSID, &len,
+		       bssid->ie_length - ie_offset);
 	if (!p)
 		return _FAIL;
 
@@ -3866,7 +4290,8 @@ u8 collect_bss_info(struct adapter *padapter, union recv_frame *precv_frame, str
 
 	/* checking rate info... */
 	i = 0;
-	p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_SUPP_RATES, &len, bssid->ie_length - ie_offset);
+	p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_SUPP_RATES, &len,
+		       bssid->ie_length - ie_offset);
 	if (p) {
 		if (len > NDIS_802_11_LENGTH_RATES_EX)
 			return _FAIL;
@@ -3875,9 +4300,10 @@ u8 collect_bss_info(struct adapter *padapter, union recv_frame *precv_frame, str
 		i = len;
 	}
 
-	p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_EXT_SUPP_RATES, &len, bssid->ie_length - ie_offset);
+	p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_EXT_SUPP_RATES, &len,
+		       bssid->ie_length - ie_offset);
 	if (p) {
-		if (len > (NDIS_802_11_LENGTH_RATES_EX-i))
+		if (len > (NDIS_802_11_LENGTH_RATES_EX - i))
 			return _FAIL;
 
 		memcpy(bssid->supported_rates + i, (p + 2), len);
@@ -3889,7 +4315,8 @@ u8 collect_bss_info(struct adapter *padapter, union recv_frame *precv_frame, str
 		return _FAIL;
 
 	/*  Checking for ds_config */
-	p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_DS_PARAMS, &len, bssid->ie_length - ie_offset);
+	p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_DS_PARAMS, &len,
+		       bssid->ie_length - ie_offset);
 
 	bssid->configuration.ds_config = 0;
 	bssid->configuration.length = 0;
@@ -3899,13 +4326,17 @@ u8 collect_bss_info(struct adapter *padapter, union recv_frame *precv_frame, str
 	} else {
 		/*  In 5G, some ap do not have DSSET IE */
 		/*  checking HT info for channel */
-		p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_HT_OPERATION, &len, bssid->ie_length - ie_offset);
+		p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_HT_OPERATION,
+			       &len, bssid->ie_length - ie_offset);
 		if (p) {
-			struct HT_info_element *HT_info = (struct HT_info_element *)(p + 2);
+			struct HT_info_element *HT_info =
+				(struct HT_info_element *)(p + 2);
 
-			bssid->configuration.ds_config = HT_info->primary_channel;
+			bssid->configuration.ds_config =
+				HT_info->primary_channel;
 		} else { /*  use current channel */
-			bssid->configuration.ds_config = rtw_get_oper_ch(padapter);
+			bssid->configuration.ds_config =
+				rtw_get_oper_ch(padapter);
 		}
 	}
 
@@ -3930,16 +4361,20 @@ u8 collect_bss_info(struct adapter *padapter, union recv_frame *precv_frame, str
 	bssid->configuration.atim_window = 0;
 
 	/* 20/40 BSS Coexistence check */
-	if ((pregistrypriv->wifi_spec == 1) && (false == pmlmeinfo->bwmode_updated)) {
+	if ((pregistrypriv->wifi_spec == 1) &&
+	    (false == pmlmeinfo->bwmode_updated)) {
 		struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 
-		p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_HT_CAPABILITY, &len, bssid->ie_length - ie_offset);
+		p = rtw_get_ie(bssid->ies + ie_offset, WLAN_EID_HT_CAPABILITY,
+			       &len, bssid->ie_length - ie_offset);
 		if (p && len > 0) {
-			struct HT_caps_element	*pHT_caps;
+			struct HT_caps_element *pHT_caps;
 
-			pHT_caps = (struct HT_caps_element	*)(p + 2);
+			pHT_caps = (struct HT_caps_element *)(p + 2);
 
-			if (le16_to_cpu(pHT_caps->u.HT_cap_element.HT_caps_info) & BIT(14))
+			if (le16_to_cpu(
+				    pHT_caps->u.HT_cap_element.HT_caps_info) &
+			    BIT(14))
 				pmlmepriv->num_FortyMHzIntolerant++;
 		} else
 			pmlmepriv->num_sta_no_ht++;
@@ -3954,12 +4389,13 @@ u8 collect_bss_info(struct adapter *padapter, union recv_frame *precv_frame, str
 
 void start_create_ibss(struct adapter *padapter)
 {
-	unsigned short	caps;
+	unsigned short caps;
 	u8 val8;
 	u8 join_type;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex		*pnetwork = (struct wlan_bssid_ex *)(&(pmlmeinfo->network));
+	struct wlan_bssid_ex *pnetwork =
+		(struct wlan_bssid_ex *)(&(pmlmeinfo->network));
 
 	pmlmeext->cur_channel = (u8)pnetwork->configuration.ds_config;
 	pmlmeinfo->bcn_interval = get_beacon_interval(pnetwork);
@@ -3970,7 +4406,7 @@ void start_create_ibss(struct adapter *padapter)
 	/* update capability */
 	caps = rtw_get_capability((struct wlan_bssid_ex *)pnetwork);
 	update_capinfo(padapter, caps);
-	if (caps&WLAN_CAPABILITY_IBSS) {/* adhoc master */
+	if (caps & WLAN_CAPABILITY_IBSS) { /* adhoc master */
 		val8 = 0xcf;
 		rtw_hal_set_hwreg(padapter, HW_VAR_SEC_CFG, (u8 *)(&val8));
 
@@ -3978,7 +4414,9 @@ void start_create_ibss(struct adapter *padapter)
 
 		/* switch channel */
 		/* SelectChannel(padapter, pmlmeext->cur_channel, HAL_PRIME_CHNL_OFFSET_DONT_CARE); */
-		set_channel_bwmode(padapter, pmlmeext->cur_channel, HAL_PRIME_CHNL_OFFSET_DONT_CARE, CHANNEL_WIDTH_20);
+		set_channel_bwmode(padapter, pmlmeext->cur_channel,
+				   HAL_PRIME_CHNL_OFFSET_DONT_CARE,
+				   CHANNEL_WIDTH_20);
 
 		beacon_timing_control(padapter);
 
@@ -3991,9 +4429,12 @@ void start_create_ibss(struct adapter *padapter)
 			report_join_res(padapter, -1);
 			pmlmeinfo->state = WIFI_FW_NULL_STATE;
 		} else {
-			rtw_hal_set_hwreg(padapter, HW_VAR_BSSID, padapter->registrypriv.dev_network.mac_address);
+			rtw_hal_set_hwreg(
+				padapter, HW_VAR_BSSID,
+				padapter->registrypriv.dev_network.mac_address);
 			join_type = 0;
-			rtw_hal_set_hwreg(padapter, HW_VAR_MLME_JOIN, (u8 *)(&join_type));
+			rtw_hal_set_hwreg(padapter, HW_VAR_MLME_JOIN,
+					  (u8 *)(&join_type));
 
 			report_join_res(padapter, 1);
 			pmlmeinfo->state |= WIFI_FW_ASSOC_SUCCESS;
@@ -4008,11 +4449,12 @@ void start_create_ibss(struct adapter *padapter)
 
 void start_clnt_join(struct adapter *padapter)
 {
-	unsigned short	caps;
+	unsigned short caps;
 	u8 val8;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex		*pnetwork = (struct wlan_bssid_ex *)(&(pmlmeinfo->network));
+	struct wlan_bssid_ex *pnetwork =
+		(struct wlan_bssid_ex *)(&(pmlmeinfo->network));
 	int beacon_timeout;
 
 	/* update wireless mode */
@@ -4021,10 +4463,11 @@ void start_clnt_join(struct adapter *padapter)
 	/* update capability */
 	caps = rtw_get_capability((struct wlan_bssid_ex *)pnetwork);
 	update_capinfo(padapter, caps);
-	if (caps&WLAN_CAPABILITY_ESS) {
+	if (caps & WLAN_CAPABILITY_ESS) {
 		set_msr(padapter, WIFI_FW_STATION_STATE);
 
-		val8 = (pmlmeinfo->auth_algo == dot11AuthAlgrthm_8021X) ? 0xcc : 0xcf;
+		val8 = (pmlmeinfo->auth_algo == dot11AuthAlgrthm_8021X) ? 0xcc :
+									  0xcf;
 
 		rtw_hal_set_hwreg(padapter, HW_VAR_SEC_CFG, (u8 *)(&val8));
 
@@ -4036,19 +4479,23 @@ void start_clnt_join(struct adapter *padapter)
 		 * For the Win8 P2P connection, it will be hard to have a successful connection if this Wi-Fi doesn't connect to it.
 		 */
 		{
-				/* To avoid connecting to AP fail during resume process, change retry count from 5 to 1 */
-				issue_deauth_ex(padapter, pnetwork->mac_address, WLAN_REASON_DEAUTH_LEAVING, 1, 100);
+			/* To avoid connecting to AP fail during resume process, change retry count from 5 to 1 */
+			issue_deauth_ex(padapter, pnetwork->mac_address,
+					WLAN_REASON_DEAUTH_LEAVING, 1, 100);
 		}
 
 		/* here wait for receiving the beacon to start auth */
 		/* and enable a timer */
-		beacon_timeout = decide_wait_for_beacon_timeout(pmlmeinfo->bcn_interval);
+		beacon_timeout =
+			decide_wait_for_beacon_timeout(pmlmeinfo->bcn_interval);
 		set_link_timer(pmlmeext, beacon_timeout);
 		_set_timer(&padapter->mlmepriv.assoc_timer,
-			(REAUTH_TO * REAUTH_LIMIT) + (REASSOC_TO*REASSOC_LIMIT) + beacon_timeout);
+			   (REAUTH_TO * REAUTH_LIMIT) +
+				   (REASSOC_TO * REASSOC_LIMIT) +
+				   beacon_timeout);
 
 		pmlmeinfo->state = WIFI_FW_AUTH_NULL | WIFI_FW_STATION_STATE;
-	} else if (caps&WLAN_CAPABILITY_IBSS) { /* adhoc client */
+	} else if (caps & WLAN_CAPABILITY_IBSS) { /* adhoc client */
 		set_msr(padapter, WIFI_FW_ADHOC_STATE);
 
 		val8 = 0xcf;
@@ -4101,7 +4548,8 @@ void start_clnt_assoc(struct adapter *padapter)
 	set_link_timer(pmlmeext, REASSOC_TO);
 }
 
-unsigned int receive_disconnect(struct adapter *padapter, unsigned char *MacAddr, unsigned short reason)
+unsigned int receive_disconnect(struct adapter *padapter,
+				unsigned char *MacAddr, unsigned short reason)
 {
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
@@ -4110,7 +4558,7 @@ unsigned int receive_disconnect(struct adapter *padapter, unsigned char *MacAddr
 	if (!(!memcmp(MacAddr, get_my_bssid(&pmlmeinfo->network), ETH_ALEN)))
 		return _SUCCESS;
 
-	if ((pmlmeinfo->state&0x03) == WIFI_FW_STATION_STATE) {
+	if ((pmlmeinfo->state & 0x03) == WIFI_FW_STATION_STATE) {
 		if (pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS) {
 			pmlmeinfo->state = WIFI_FW_NULL_STATE;
 			report_del_sta_event(padapter, MacAddr, reason);
@@ -4124,7 +4572,8 @@ unsigned int receive_disconnect(struct adapter *padapter, unsigned char *MacAddr
 	return _SUCCESS;
 }
 
-static void process_80211d(struct adapter *padapter, struct wlan_bssid_ex *bssid)
+static void process_80211d(struct adapter *padapter,
+			   struct wlan_bssid_ex *bssid)
 {
 	struct registry_priv *pregistrypriv;
 	struct mlme_ext_priv *pmlmeext;
@@ -4137,7 +4586,7 @@ static void process_80211d(struct adapter *padapter, struct wlan_bssid_ex *bssid
 
 	/*  Adjust channel plan by AP Country IE */
 	if (pregistrypriv->enable80211d &&
-		(!pmlmeext->update_channel_plan_by_ap_done)) {
+	    (!pmlmeext->update_channel_plan_by_ap_done)) {
 		u8 *ie, *p;
 		u32 len;
 		struct rt_channel_plan chplan_ap;
@@ -4147,7 +4596,9 @@ static void process_80211d(struct adapter *padapter, struct wlan_bssid_ex *bssid
 		u8 noc; /*  number of channel */
 		u8 j, k;
 
-		ie = rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_, WLAN_EID_COUNTRY, &len, bssid->ie_length - _FIXED_IE_LENGTH_);
+		ie = rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_,
+				WLAN_EID_COUNTRY, &len,
+				bssid->ie_length - _FIXED_IE_LENGTH_);
 		if (!ie)
 			return;
 		if (len < 6)
@@ -4171,7 +4622,7 @@ static void process_80211d(struct adapter *padapter, struct wlan_bssid_ex *bssid
 				if (fcn <= 14)
 					channel = fcn + j; /*  2.4 GHz */
 				else
-					channel = fcn + j*4; /*  5 GHz */
+					channel = fcn + j * 4; /*  5 GHz */
 
 				chplan_ap.Channel[i++] = channel;
 			}
@@ -4187,26 +4638,33 @@ static void process_80211d(struct adapter *padapter, struct wlan_bssid_ex *bssid
 		if (pregistrypriv->wireless_mode & WIRELESS_11G) {
 			do {
 				if ((i == MAX_CHANNEL_NUM) ||
-					(chplan_sta[i].ChannelNum == 0) ||
-					(chplan_sta[i].ChannelNum > 14))
+				    (chplan_sta[i].ChannelNum == 0) ||
+				    (chplan_sta[i].ChannelNum > 14))
 					break;
 
-				if ((j == chplan_ap.Len) || (chplan_ap.Channel[j] > 14))
+				if ((j == chplan_ap.Len) ||
+				    (chplan_ap.Channel[j] > 14))
 					break;
 
-				if (chplan_sta[i].ChannelNum == chplan_ap.Channel[j]) {
-					chplan_new[k].ChannelNum = chplan_ap.Channel[j];
+				if (chplan_sta[i].ChannelNum ==
+				    chplan_ap.Channel[j]) {
+					chplan_new[k].ChannelNum =
+						chplan_ap.Channel[j];
 					chplan_new[k].ScanType = SCAN_ACTIVE;
 					i++;
 					j++;
 					k++;
-				} else if (chplan_sta[i].ChannelNum < chplan_ap.Channel[j]) {
-					chplan_new[k].ChannelNum = chplan_sta[i].ChannelNum;
+				} else if (chplan_sta[i].ChannelNum <
+					   chplan_ap.Channel[j]) {
+					chplan_new[k].ChannelNum =
+						chplan_sta[i].ChannelNum;
 					chplan_new[k].ScanType = SCAN_PASSIVE;
 					i++;
 					k++;
-				} else if (chplan_sta[i].ChannelNum > chplan_ap.Channel[j]) {
-					chplan_new[k].ChannelNum = chplan_ap.Channel[j];
+				} else if (chplan_sta[i].ChannelNum >
+					   chplan_ap.Channel[j]) {
+					chplan_new[k].ChannelNum =
+						chplan_ap.Channel[j];
 					chplan_new[k].ScanType = SCAN_ACTIVE;
 					j++;
 					k++;
@@ -4215,16 +4673,18 @@ static void process_80211d(struct adapter *padapter, struct wlan_bssid_ex *bssid
 
 			/*  change AP not support channel to Passive scan */
 			while ((i < MAX_CHANNEL_NUM) &&
-				(chplan_sta[i].ChannelNum != 0) &&
-				(chplan_sta[i].ChannelNum <= 14)) {
-				chplan_new[k].ChannelNum = chplan_sta[i].ChannelNum;
+			       (chplan_sta[i].ChannelNum != 0) &&
+			       (chplan_sta[i].ChannelNum <= 14)) {
+				chplan_new[k].ChannelNum =
+					chplan_sta[i].ChannelNum;
 				chplan_new[k].ScanType = SCAN_PASSIVE;
 				i++;
 				k++;
 			}
 
 			/*  add channel AP supported */
-			while ((j < chplan_ap.Len) && (chplan_ap.Channel[j] <= 14)) {
+			while ((j < chplan_ap.Len) &&
+			       (chplan_ap.Channel[j] <= 14)) {
 				chplan_new[k].ChannelNum = chplan_ap.Channel[j];
 				chplan_new[k].ScanType = SCAN_ACTIVE;
 				j++;
@@ -4233,16 +4693,18 @@ static void process_80211d(struct adapter *padapter, struct wlan_bssid_ex *bssid
 		} else {
 			/*  keep original STA 2.4G channel plan */
 			while ((i < MAX_CHANNEL_NUM) &&
-				(chplan_sta[i].ChannelNum != 0) &&
-				(chplan_sta[i].ChannelNum <= 14)) {
-				chplan_new[k].ChannelNum = chplan_sta[i].ChannelNum;
+			       (chplan_sta[i].ChannelNum != 0) &&
+			       (chplan_sta[i].ChannelNum <= 14)) {
+				chplan_new[k].ChannelNum =
+					chplan_sta[i].ChannelNum;
 				chplan_new[k].ScanType = chplan_sta[i].ScanType;
 				i++;
 				k++;
 			}
 
 			/*  skip AP 2.4G channel plan */
-			while ((j < chplan_ap.Len) && (chplan_ap.Channel[j] <= 14))
+			while ((j < chplan_ap.Len) &&
+			       (chplan_ap.Channel[j] <= 14))
 				j++;
 		}
 
@@ -4265,12 +4727,13 @@ static void process_80211d(struct adapter *padapter, struct wlan_bssid_ex *bssid
 
 /* Following are the functions to report events */
 
-void report_survey_event(struct adapter *padapter, union recv_frame *precv_frame)
+void report_survey_event(struct adapter *padapter,
+			 union recv_frame *precv_frame)
 {
 	struct cmd_obj *pcmd_obj;
 	u8 *pevtcmd;
 	u32 cmdsz;
-	struct survey_event	*psurvey_evt;
+	struct survey_event *psurvey_evt;
 	struct C2HEvent_Header *pc2h_evt_hdr;
 	struct mlme_ext_priv *pmlmeext;
 	struct cmd_priv *pcmdpriv;
@@ -4301,16 +4764,19 @@ void report_survey_event(struct adapter *padapter, union recv_frame *precv_frame
 	pcmd_obj->parmbuf = pevtcmd;
 
 	pcmd_obj->rsp = NULL;
-	pcmd_obj->rspsz  = 0;
+	pcmd_obj->rspsz = 0;
 
 	pc2h_evt_hdr = (struct C2HEvent_Header *)(pevtcmd);
 	pc2h_evt_hdr->len = sizeof(struct survey_event);
 	pc2h_evt_hdr->ID = GEN_EVT_CODE(_Survey);
 	pc2h_evt_hdr->seq = atomic_inc_return(&pmlmeext->event_seq);
 
-	psurvey_evt = (struct survey_event *)(pevtcmd + sizeof(struct C2HEvent_Header));
+	psurvey_evt = (struct survey_event *)(pevtcmd +
+					      sizeof(struct C2HEvent_Header));
 
-	if (collect_bss_info(padapter, precv_frame, (struct wlan_bssid_ex *)&psurvey_evt->bss) == _FAIL) {
+	if (collect_bss_info(padapter, precv_frame,
+			     (struct wlan_bssid_ex *)&psurvey_evt->bss) ==
+	    _FAIL) {
 		kfree(pcmd_obj);
 		kfree(pevtcmd);
 		return;
@@ -4329,7 +4795,7 @@ void report_surveydone_event(struct adapter *padapter)
 	u8 *pevtcmd;
 	u32 cmdsz;
 	struct surveydone_event *psurveydone_evt;
-	struct C2HEvent_Header	*pc2h_evt_hdr;
+	struct C2HEvent_Header *pc2h_evt_hdr;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 
@@ -4337,7 +4803,8 @@ void report_surveydone_event(struct adapter *padapter)
 	if (!pcmd_obj)
 		return;
 
-	cmdsz = (sizeof(struct surveydone_event) + sizeof(struct C2HEvent_Header));
+	cmdsz = (sizeof(struct surveydone_event) +
+		 sizeof(struct C2HEvent_Header));
 	pevtcmd = kzalloc(cmdsz, GFP_ATOMIC);
 	if (!pevtcmd) {
 		kfree(pcmd_obj);
@@ -4351,14 +4818,16 @@ void report_surveydone_event(struct adapter *padapter)
 	pcmd_obj->parmbuf = pevtcmd;
 
 	pcmd_obj->rsp = NULL;
-	pcmd_obj->rspsz  = 0;
+	pcmd_obj->rspsz = 0;
 
 	pc2h_evt_hdr = (struct C2HEvent_Header *)(pevtcmd);
 	pc2h_evt_hdr->len = sizeof(struct surveydone_event);
 	pc2h_evt_hdr->ID = GEN_EVT_CODE(_SurveyDone);
 	pc2h_evt_hdr->seq = atomic_inc_return(&pmlmeext->event_seq);
 
-	psurveydone_evt = (struct surveydone_event *)(pevtcmd + sizeof(struct C2HEvent_Header));
+	psurveydone_evt =
+		(struct surveydone_event *)(pevtcmd +
+					    sizeof(struct C2HEvent_Header));
 	psurveydone_evt->bss_cnt = pmlmeext->sitesurvey_res.bss_cnt;
 
 	rtw_enqueue_cmd(pcmdpriv, pcmd_obj);
@@ -4369,8 +4838,8 @@ void report_join_res(struct adapter *padapter, int res)
 	struct cmd_obj *pcmd_obj;
 	u8 *pevtcmd;
 	u32 cmdsz;
-	struct joinbss_event		*pjoinbss_evt;
-	struct C2HEvent_Header	*pc2h_evt_hdr;
+	struct joinbss_event *pjoinbss_evt;
+	struct C2HEvent_Header *pc2h_evt_hdr;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
@@ -4393,16 +4862,18 @@ void report_join_res(struct adapter *padapter, int res)
 	pcmd_obj->parmbuf = pevtcmd;
 
 	pcmd_obj->rsp = NULL;
-	pcmd_obj->rspsz  = 0;
+	pcmd_obj->rspsz = 0;
 
 	pc2h_evt_hdr = (struct C2HEvent_Header *)(pevtcmd);
 	pc2h_evt_hdr->len = sizeof(struct joinbss_event);
 	pc2h_evt_hdr->ID = GEN_EVT_CODE(_JoinBss);
 	pc2h_evt_hdr->seq = atomic_inc_return(&pmlmeext->event_seq);
 
-	pjoinbss_evt = (struct joinbss_event *)(pevtcmd + sizeof(struct C2HEvent_Header));
-	memcpy((unsigned char *)(&(pjoinbss_evt->network.network)), &(pmlmeinfo->network), sizeof(struct wlan_bssid_ex));
-	pjoinbss_evt->network.join_res	= pjoinbss_evt->network.aid = res;
+	pjoinbss_evt = (struct joinbss_event *)(pevtcmd +
+						sizeof(struct C2HEvent_Header));
+	memcpy((unsigned char *)(&(pjoinbss_evt->network.network)),
+	       &(pmlmeinfo->network), sizeof(struct wlan_bssid_ex));
+	pjoinbss_evt->network.join_res = pjoinbss_evt->network.aid = res;
 
 	rtw_joinbss_event_prehandle(padapter, (u8 *)&pjoinbss_evt->network);
 
@@ -4414,8 +4885,8 @@ void report_wmm_edca_update(struct adapter *padapter)
 	struct cmd_obj *pcmd_obj;
 	u8 *pevtcmd;
 	u32 cmdsz;
-	struct wmm_event		*pwmm_event;
-	struct C2HEvent_Header	*pc2h_evt_hdr;
+	struct wmm_event *pwmm_event;
+	struct C2HEvent_Header *pc2h_evt_hdr;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 
@@ -4437,28 +4908,30 @@ void report_wmm_edca_update(struct adapter *padapter)
 	pcmd_obj->parmbuf = pevtcmd;
 
 	pcmd_obj->rsp = NULL;
-	pcmd_obj->rspsz  = 0;
+	pcmd_obj->rspsz = 0;
 
 	pc2h_evt_hdr = (struct C2HEvent_Header *)(pevtcmd);
 	pc2h_evt_hdr->len = sizeof(struct wmm_event);
 	pc2h_evt_hdr->ID = GEN_EVT_CODE(_WMM);
 	pc2h_evt_hdr->seq = atomic_inc_return(&pmlmeext->event_seq);
 
-	pwmm_event = (struct wmm_event *)(pevtcmd + sizeof(struct C2HEvent_Header));
+	pwmm_event =
+		(struct wmm_event *)(pevtcmd + sizeof(struct C2HEvent_Header));
 	pwmm_event->wmm = 0;
 
 	rtw_enqueue_cmd(pcmdpriv, pcmd_obj);
 }
 
-void report_del_sta_event(struct adapter *padapter, unsigned char *MacAddr, unsigned short reason)
+void report_del_sta_event(struct adapter *padapter, unsigned char *MacAddr,
+			  unsigned short reason)
 {
 	struct cmd_obj *pcmd_obj;
 	u8 *pevtcmd;
 	u32 cmdsz;
 	struct sta_info *psta;
-	int	mac_id;
-	struct stadel_event			*pdel_sta_evt;
-	struct C2HEvent_Header	*pc2h_evt_hdr;
+	int mac_id;
+	struct stadel_event *pdel_sta_evt;
+	struct C2HEvent_Header *pc2h_evt_hdr;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 
@@ -4480,16 +4953,18 @@ void report_del_sta_event(struct adapter *padapter, unsigned char *MacAddr, unsi
 	pcmd_obj->parmbuf = pevtcmd;
 
 	pcmd_obj->rsp = NULL;
-	pcmd_obj->rspsz  = 0;
+	pcmd_obj->rspsz = 0;
 
 	pc2h_evt_hdr = (struct C2HEvent_Header *)(pevtcmd);
 	pc2h_evt_hdr->len = sizeof(struct stadel_event);
 	pc2h_evt_hdr->ID = GEN_EVT_CODE(_DelSTA);
 	pc2h_evt_hdr->seq = atomic_inc_return(&pmlmeext->event_seq);
 
-	pdel_sta_evt = (struct stadel_event *)(pevtcmd + sizeof(struct C2HEvent_Header));
+	pdel_sta_evt = (struct stadel_event *)(pevtcmd +
+					       sizeof(struct C2HEvent_Header));
 	memcpy((unsigned char *)(&(pdel_sta_evt->macaddr)), MacAddr, ETH_ALEN);
-	memcpy((unsigned char *)(pdel_sta_evt->rsvd), (unsigned char *)(&reason), 2);
+	memcpy((unsigned char *)(pdel_sta_evt->rsvd),
+	       (unsigned char *)(&reason), 2);
 
 	psta = rtw_get_stainfo(&padapter->stapriv, MacAddr);
 	if (psta)
@@ -4502,13 +4977,14 @@ void report_del_sta_event(struct adapter *padapter, unsigned char *MacAddr, unsi
 	rtw_enqueue_cmd(pcmdpriv, pcmd_obj);
 }
 
-void report_add_sta_event(struct adapter *padapter, unsigned char *MacAddr, int cam_idx)
+void report_add_sta_event(struct adapter *padapter, unsigned char *MacAddr,
+			  int cam_idx)
 {
 	struct cmd_obj *pcmd_obj;
 	u8 *pevtcmd;
 	u32 cmdsz;
-	struct stassoc_event		*padd_sta_evt;
-	struct C2HEvent_Header	*pc2h_evt_hdr;
+	struct stassoc_event *padd_sta_evt;
+	struct C2HEvent_Header *pc2h_evt_hdr;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 
@@ -4530,14 +5006,15 @@ void report_add_sta_event(struct adapter *padapter, unsigned char *MacAddr, int
 	pcmd_obj->parmbuf = pevtcmd;
 
 	pcmd_obj->rsp = NULL;
-	pcmd_obj->rspsz  = 0;
+	pcmd_obj->rspsz = 0;
 
 	pc2h_evt_hdr = (struct C2HEvent_Header *)(pevtcmd);
 	pc2h_evt_hdr->len = sizeof(struct stassoc_event);
 	pc2h_evt_hdr->ID = GEN_EVT_CODE(_AddSTA);
 	pc2h_evt_hdr->seq = atomic_inc_return(&pmlmeext->event_seq);
 
-	padd_sta_evt = (struct stassoc_event *)(pevtcmd + sizeof(struct C2HEvent_Header));
+	padd_sta_evt = (struct stassoc_event *)(pevtcmd +
+						sizeof(struct C2HEvent_Header));
 	memcpy((unsigned char *)(&(padd_sta_evt->macaddr)), MacAddr, ETH_ALEN);
 	padd_sta_evt->cam_id = cam_idx;
 
@@ -4562,12 +5039,17 @@ void update_sta_info(struct adapter *padapter, struct sta_info *psta)
 
 		psta->htpriv.ampdu_enable = pmlmepriv->htpriv.ampdu_enable;
 
-		psta->htpriv.rx_ampdu_min_spacing = (pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para&IEEE80211_HT_CAP_AMPDU_DENSITY)>>2;
+		psta->htpriv.rx_ampdu_min_spacing =
+			(pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para &
+			 IEEE80211_HT_CAP_AMPDU_DENSITY) >>
+			2;
 
-		if (support_short_GI(padapter, &(pmlmeinfo->HT_caps), CHANNEL_WIDTH_20))
+		if (support_short_GI(padapter, &(pmlmeinfo->HT_caps),
+				     CHANNEL_WIDTH_20))
 			psta->htpriv.sgi_20m = true;
 
-		if (support_short_GI(padapter, &(pmlmeinfo->HT_caps), CHANNEL_WIDTH_40))
+		if (support_short_GI(padapter, &(pmlmeinfo->HT_caps),
+				     CHANNEL_WIDTH_40))
 			psta->htpriv.sgi_40m = true;
 
 		psta->qos_option = true;
@@ -4576,7 +5058,8 @@ void update_sta_info(struct adapter *padapter, struct sta_info *psta)
 		psta->htpriv.stbc_cap = pmlmepriv->htpriv.stbc_cap;
 		psta->htpriv.beamform_cap = pmlmepriv->htpriv.beamform_cap;
 
-		memcpy(&psta->htpriv.ht_cap, &pmlmeinfo->HT_caps, sizeof(struct ieee80211_ht_cap));
+		memcpy(&psta->htpriv.ht_cap, &pmlmeinfo->HT_caps,
+		       sizeof(struct ieee80211_ht_cap));
 	} else {
 		psta->htpriv.ht_option = false;
 
@@ -4589,8 +5072,8 @@ void update_sta_info(struct adapter *padapter, struct sta_info *psta)
 
 	psta->htpriv.ch_offset = pmlmeext->cur_ch_offset;
 
-	psta->htpriv.agg_enable_bitmap = 0x0;/* reset */
-	psta->htpriv.candidate_tid_bitmap = 0x0;/* reset */
+	psta->htpriv.agg_enable_bitmap = 0x0; /* reset */
+	psta->htpriv.candidate_tid_bitmap = 0x0; /* reset */
 
 	psta->bw_mode = pmlmeext->cur_bwmode;
 
@@ -4610,7 +5093,8 @@ static void rtw_mlmeext_disconnect(struct adapter *padapter)
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex		*pnetwork = (struct wlan_bssid_ex *)(&(pmlmeinfo->network));
+	struct wlan_bssid_ex *pnetwork =
+		(struct wlan_bssid_ex *)(&(pmlmeinfo->network));
 
 	/* set_opmode_cmd(padapter, infra_client_with_mlme); */
 
@@ -4623,7 +5107,8 @@ static void rtw_mlmeext_disconnect(struct adapter *padapter)
 	{
 		struct sta_info *psta;
 
-		psta = rtw_get_stainfo(&padapter->stapriv, get_my_bssid(pnetwork));
+		psta = rtw_get_stainfo(&padapter->stapriv,
+				       get_my_bssid(pnetwork));
 		if (psta)
 			rtw_hal_macid_wakeup(padapter, psta->mac_id);
 	}
@@ -4640,7 +5125,8 @@ static void rtw_mlmeext_disconnect(struct adapter *padapter)
 	pmlmeext->cur_bwmode = CHANNEL_WIDTH_20;
 	pmlmeext->cur_ch_offset = HAL_PRIME_CHNL_OFFSET_DONT_CARE;
 
-	set_channel_bwmode(padapter, pmlmeext->cur_channel, pmlmeext->cur_ch_offset, pmlmeext->cur_bwmode);
+	set_channel_bwmode(padapter, pmlmeext->cur_channel,
+			   pmlmeext->cur_ch_offset, pmlmeext->cur_bwmode);
 
 	flush_all_cam_entry(padapter);
 
@@ -4654,20 +5140,21 @@ void mlmeext_joinbss_event_callback(struct adapter *padapter, int join_res)
 {
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex		*cur_network = &(pmlmeinfo->network);
+	struct wlan_bssid_ex *cur_network = &(pmlmeinfo->network);
 	struct sta_priv *pstapriv = &padapter->stapriv;
 	u8 join_type;
 	struct sta_info *psta;
 
 	if (join_res < 0) {
 		join_type = 1;
-		rtw_hal_set_hwreg(padapter, HW_VAR_MLME_JOIN, (u8 *)(&join_type));
+		rtw_hal_set_hwreg(padapter, HW_VAR_MLME_JOIN,
+				  (u8 *)(&join_type));
 		rtw_hal_set_hwreg(padapter, HW_VAR_BSSID, null_addr);
 
 		return;
 	}
 
-	if ((pmlmeinfo->state&0x03) == WIFI_FW_ADHOC_STATE)
+	if ((pmlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE)
 		/* update bc/mc sta_info */
 		update_bmc_sta(padapter);
 
@@ -4677,10 +5164,12 @@ void mlmeext_joinbss_event_callback(struct adapter *padapter, int join_res)
 	/*  update IOT-related issue */
 	update_IOT_info(padapter);
 
-	rtw_hal_set_hwreg(padapter, HW_VAR_BASIC_RATE, cur_network->supported_rates);
+	rtw_hal_set_hwreg(padapter, HW_VAR_BASIC_RATE,
+			  cur_network->supported_rates);
 
 	/* BCN interval */
-	rtw_hal_set_hwreg(padapter, HW_VAR_BEACON_INTERVAL, (u8 *)(&pmlmeinfo->bcn_interval));
+	rtw_hal_set_hwreg(padapter, HW_VAR_BEACON_INTERVAL,
+			  (u8 *)(&pmlmeinfo->bcn_interval));
 
 	/* update capability */
 	update_capinfo(padapter, pmlmeinfo->capability);
@@ -4692,7 +5181,8 @@ void mlmeext_joinbss_event_callback(struct adapter *padapter, int join_res)
 	HTOnAssocRsp(padapter);
 
 	/* Set cur_channel&cur_bwmode&cur_ch_offset */
-	set_channel_bwmode(padapter, pmlmeext->cur_channel, pmlmeext->cur_ch_offset, pmlmeext->cur_bwmode);
+	set_channel_bwmode(padapter, pmlmeext->cur_channel,
+			   pmlmeext->cur_ch_offset, pmlmeext->cur_bwmode);
 
 	psta = rtw_get_stainfo(pstapriv, cur_network->mac_address);
 	if (psta) { /* only for infra. mode */
@@ -4716,7 +5206,7 @@ void mlmeext_joinbss_event_callback(struct adapter *padapter, int join_res)
 	join_type = 2;
 	rtw_hal_set_hwreg(padapter, HW_VAR_MLME_JOIN, (u8 *)(&join_type));
 
-	if ((pmlmeinfo->state&0x03) == WIFI_FW_STATION_STATE) {
+	if ((pmlmeinfo->state & 0x03) == WIFI_FW_STATION_STATE) {
 		/*  correcting TSF */
 		correct_TSF(padapter, pmlmeext);
 
@@ -4727,14 +5217,16 @@ void mlmeext_joinbss_event_callback(struct adapter *padapter, int join_res)
 }
 
 /* currently only adhoc mode will go here */
-void mlmeext_sta_add_event_callback(struct adapter *padapter, struct sta_info *psta)
+void mlmeext_sta_add_event_callback(struct adapter *padapter,
+				    struct sta_info *psta)
 {
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 	u8 join_type;
 
-	if ((pmlmeinfo->state&0x03) == WIFI_FW_ADHOC_STATE) {
-		if (pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS) { /* adhoc master or sta_count>1 */
+	if ((pmlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE) {
+		if (pmlmeinfo->state &
+		    WIFI_FW_ASSOC_SUCCESS) { /* adhoc master or sta_count>1 */
 
 			/* nothing to do */
 		} else { /* adhoc client */
@@ -4757,13 +5249,17 @@ void mlmeext_sta_add_event_callback(struct adapter *padapter, struct sta_info *p
 		}
 
 		join_type = 2;
-		rtw_hal_set_hwreg(padapter, HW_VAR_MLME_JOIN, (u8 *)(&join_type));
+		rtw_hal_set_hwreg(padapter, HW_VAR_MLME_JOIN,
+				  (u8 *)(&join_type));
 	}
 
 	pmlmeinfo->FW_sta_info[psta->mac_id].psta = psta;
 
-	psta->bssratelen = rtw_get_rateset_len(pmlmeinfo->FW_sta_info[psta->mac_id].SupportedRates);
-	memcpy(psta->bssrateset, pmlmeinfo->FW_sta_info[psta->mac_id].SupportedRates, psta->bssratelen);
+	psta->bssratelen = rtw_get_rateset_len(
+		pmlmeinfo->FW_sta_info[psta->mac_id].SupportedRates);
+	memcpy(psta->bssrateset,
+	       pmlmeinfo->FW_sta_info[psta->mac_id].SupportedRates,
+	       psta->bssratelen);
 
 	/* update adhoc sta_info */
 	update_sta_info(padapter, psta);
@@ -4771,7 +5267,8 @@ void mlmeext_sta_add_event_callback(struct adapter *padapter, struct sta_info *p
 	rtw_hal_update_sta_rate_mask(padapter, psta);
 
 	/*  ToDo: HT for Ad-hoc */
-	psta->wireless_mode = rtw_check_network_type(psta->bssrateset, pmlmeext->cur_channel);
+	psta->wireless_mode =
+		rtw_check_network_type(psta->bssrateset, pmlmeext->cur_channel);
 	psta->raid = networktype_to_raid_ex(padapter, psta);
 
 	/* rate radaptive */
@@ -4789,13 +5286,13 @@ void mlmeext_sta_del_event_callback(struct adapter *padapter)
 void _linked_info_dump(struct adapter *padapter)
 {
 	int i;
-	struct mlme_ext_priv    *pmlmeext = &padapter->mlmeextpriv;
-	struct mlme_ext_info    *pmlmeinfo = &pmlmeext->mlmext_info;
+	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
+	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 	int UndecoratedSmoothedPWDB;
 	struct dvobj_priv *pdvobj = adapter_to_dvobj(padapter);
 
 	if (padapter->bLinkInfoDump) {
-		if ((pmlmeinfo->state&0x03) == WIFI_FW_STATION_STATE)
+		if ((pmlmeinfo->state & 0x03) == WIFI_FW_STATION_STATE)
 			rtw_hal_get_def_var(padapter,
 					    HAL_DEF_UNDERCORATEDSMOOTHEDPWDB,
 					    &UndecoratedSmoothedPWDB);
@@ -4804,7 +5301,9 @@ void _linked_info_dump(struct adapter *padapter)
 			if (pdvobj->macid[i]) {
 				if (i != 1) /* skip bc/mc sta */
 					/*   tx info ============ */
-					rtw_hal_get_def_var(padapter, HW_DEF_RA_INFO_DUMP, &i);
+					rtw_hal_get_def_var(padapter,
+							    HW_DEF_RA_INFO_DUMP,
+							    &i);
 			}
 		}
 	}
@@ -4814,10 +5313,9 @@ static u8 chk_ap_is_alive(struct adapter *padapter, struct sta_info *psta)
 {
 	u8 ret = false;
 
-	if ((sta_rx_data_pkts(psta) == sta_last_rx_data_pkts(psta))
-		&& sta_rx_beacon_pkts(psta) == sta_last_rx_beacon_pkts(psta)
-		&& sta_rx_probersp_pkts(psta) == sta_last_rx_probersp_pkts(psta)
-	) {
+	if ((sta_rx_data_pkts(psta) == sta_last_rx_data_pkts(psta)) &&
+	    sta_rx_beacon_pkts(psta) == sta_last_rx_beacon_pkts(psta) &&
+	    sta_rx_probersp_pkts(psta) == sta_last_rx_probersp_pkts(psta)) {
 		ret = false;
 	} else {
 		ret = true;
@@ -4844,18 +5342,19 @@ void linked_status_chk(struct adapter *padapter)
 		int rx_chk_limit;
 		int link_count_limit;
 
-		#if defined(DBG_ROAMING_TEST)
+#if defined(DBG_ROAMING_TEST)
 		rx_chk_limit = 1;
-		#else
+#else
 		rx_chk_limit = 8;
-		#endif
+#endif
 		link_count_limit = 7; /*  16 sec */
 
 		/*  Marked by Kurt 20130715 */
 		/*  For WiDi 3.5 and latered on, they don't ask WiDi sink to do roaming, */
 		/* so we could not check rx limit that strictly. */
 		/*  todo: To check why we under miracast session, rx_chk would be false */
-		psta = rtw_get_stainfo(pstapriv, pmlmeinfo->network.mac_address);
+		psta = rtw_get_stainfo(pstapriv,
+				       pmlmeinfo->network.mac_address);
 		if (psta) {
 			if (!chk_ap_is_alive(padapter, psta))
 				rx_chk = _FAIL;
@@ -4866,34 +5365,44 @@ void linked_status_chk(struct adapter *padapter)
 			{
 				if (rx_chk != _SUCCESS) {
 					if (pmlmeext->retry == 0) {
-						issue_probereq_ex(padapter,
-								  &pmlmeinfo->network.ssid,
-								  pmlmeinfo->network.mac_address,
-								  0, 0, 0, 0);
-						issue_probereq_ex(padapter,
-								  &pmlmeinfo->network.ssid,
-								  pmlmeinfo->network.mac_address,
-								  0, 0, 0, 0);
-						issue_probereq_ex(padapter,
-								  &pmlmeinfo->network.ssid,
-								  pmlmeinfo->network.mac_address,
-								  0, 0, 0, 0);
+						issue_probereq_ex(
+							padapter,
+							&pmlmeinfo->network.ssid,
+							pmlmeinfo->network
+								.mac_address,
+							0, 0, 0, 0);
+						issue_probereq_ex(
+							padapter,
+							&pmlmeinfo->network.ssid,
+							pmlmeinfo->network
+								.mac_address,
+							0, 0, 0, 0);
+						issue_probereq_ex(
+							padapter,
+							&pmlmeinfo->network.ssid,
+							pmlmeinfo->network
+								.mac_address,
+							0, 0, 0, 0);
 					}
 				}
 
 				if (tx_chk != _SUCCESS &&
 				    pmlmeinfo->link_count++ == link_count_limit)
-					tx_chk = issue_nulldata_in_interrupt(padapter, NULL);
+					tx_chk = issue_nulldata_in_interrupt(
+						padapter, NULL);
 			}
 
 			if (rx_chk == _FAIL) {
 				pmlmeext->retry++;
 				if (pmlmeext->retry > rx_chk_limit) {
 					netdev_dbg(padapter->pnetdev,
-						   FUNC_ADPT_FMT " disconnect or roaming\n",
+						   FUNC_ADPT_FMT
+						   " disconnect or roaming\n",
 						   FUNC_ADPT_ARG(padapter));
-					receive_disconnect(padapter, pmlmeinfo->network.mac_address
-						, WLAN_REASON_EXPIRATION_CHK);
+					receive_disconnect(
+						padapter,
+						pmlmeinfo->network.mac_address,
+						WLAN_REASON_EXPIRATION_CHK);
 					return;
 				}
 			} else {
@@ -4918,19 +5427,26 @@ void linked_status_chk(struct adapter *padapter)
 				if (psta == NULL)
 					continue;
 
-				if (pmlmeinfo->FW_sta_info[i].rx_pkt == sta_rx_pkts(psta)) {
-					if (pmlmeinfo->FW_sta_info[i].retry < 3) {
-						pmlmeinfo->FW_sta_info[i].retry++;
+				if (pmlmeinfo->FW_sta_info[i].rx_pkt ==
+				    sta_rx_pkts(psta)) {
+					if (pmlmeinfo->FW_sta_info[i].retry <
+					    3) {
+						pmlmeinfo->FW_sta_info[i]
+							.retry++;
 					} else {
-						pmlmeinfo->FW_sta_info[i].retry = 0;
-						pmlmeinfo->FW_sta_info[i].status = 0;
-						report_del_sta_event(padapter, psta->hwaddr
-							, 65535/*  indicate disconnect caused by no rx */
+						pmlmeinfo->FW_sta_info[i].retry =
+							0;
+						pmlmeinfo->FW_sta_info[i]
+							.status = 0;
+						report_del_sta_event(
+							padapter, psta->hwaddr,
+							65535 /*  indicate disconnect caused by no rx */
 						);
 					}
 				} else {
 					pmlmeinfo->FW_sta_info[i].retry = 0;
-					pmlmeinfo->FW_sta_info[i].rx_pkt = (u32)sta_rx_pkts(psta);
+					pmlmeinfo->FW_sta_info[i].rx_pkt =
+						(u32)sta_rx_pkts(psta);
 				}
 			}
 		}
@@ -4943,20 +5459,21 @@ void survey_timer_hdl(struct timer_list *t)
 {
 	struct adapter *padapter =
 		timer_container_of(padapter, t, mlmeextpriv.survey_timer);
-	struct cmd_obj	*ph2c;
-	struct sitesurvey_parm	*psurveyPara;
+	struct cmd_obj *ph2c;
+	struct sitesurvey_parm *psurveyPara;
 	struct cmd_priv *pcmdpriv = &padapter->cmdpriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 
 	/* issue rtw_sitesurvey_cmd */
 	if (pmlmeext->sitesurvey_res.state > SCAN_START) {
-		if (pmlmeext->sitesurvey_res.state ==  SCAN_PROCESS)
+		if (pmlmeext->sitesurvey_res.state == SCAN_PROCESS)
 			pmlmeext->sitesurvey_res.channel_idx++;
 
 		if (pmlmeext->scan_abort) {
-			pmlmeext->sitesurvey_res.channel_idx = pmlmeext->sitesurvey_res.ch_num;
+			pmlmeext->sitesurvey_res.channel_idx =
+				pmlmeext->sitesurvey_res.ch_num;
 
-			pmlmeext->scan_abort = false;/* reset */
+			pmlmeext->scan_abort = false; /* reset */
 		}
 
 		ph2c = kzalloc_obj(*ph2c, GFP_ATOMIC);
@@ -4969,7 +5486,8 @@ void survey_timer_hdl(struct timer_list *t)
 			return;
 		}
 
-		init_h2fwcmd_w_parm_no_rsp(ph2c, psurveyPara, GEN_CMD_CODE(_SiteSurvey));
+		init_h2fwcmd_w_parm_no_rsp(ph2c, psurveyPara,
+					   GEN_CMD_CODE(_SiteSurvey));
 		rtw_enqueue_cmd(pcmdpriv, ph2c);
 	}
 }
@@ -5058,8 +5576,9 @@ u8 setopmode_hdl(struct adapter *padapter, u8 *pbuf)
 		type = _HW_STATE_AP_;
 		/* start_ap_mode(padapter); */
 	} else if (psetop->mode == Ndis802_11Infrastructure) {
-		pmlmeinfo->state &= ~(BIT(0) | BIT(1));/*  clear state */
-		pmlmeinfo->state |= WIFI_FW_STATION_STATE;/* set to	STATION_STATE */
+		pmlmeinfo->state &= ~(BIT(0) | BIT(1)); /*  clear state */
+		pmlmeinfo->state |=
+			WIFI_FW_STATION_STATE; /* set to	STATION_STATE */
 		type = _HW_STATE_STATION_;
 	} else if (psetop->mode == Ndis802_11IBSS) {
 		type = _HW_STATE_ADHOC_;
@@ -5083,7 +5602,8 @@ u8 createbss_hdl(struct adapter *padapter, u8 *pbuf)
 {
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex	*pnetwork = (struct wlan_bssid_ex *)(&(pmlmeinfo->network));
+	struct wlan_bssid_ex *pnetwork =
+		(struct wlan_bssid_ex *)(&(pmlmeinfo->network));
 	struct joinbss_parm *pparm = (struct joinbss_parm *)pbuf;
 	/* u32 initialgain; */
 
@@ -5120,13 +5640,15 @@ u8 createbss_hdl(struct adapter *padapter, u8 *pbuf)
 		/* clear CAM */
 		flush_all_cam_entry(padapter);
 
-		memcpy(pnetwork, pbuf, offsetof(struct wlan_bssid_ex, ie_length));
+		memcpy(pnetwork, pbuf,
+		       offsetof(struct wlan_bssid_ex, ie_length));
 		pnetwork->ie_length = ((struct wlan_bssid_ex *)pbuf)->ie_length;
 
-		if (pnetwork->ie_length > MAX_IE_SZ)/* Check pbuf->ie_length */
+		if (pnetwork->ie_length > MAX_IE_SZ) /* Check pbuf->ie_length */
 			return H2C_PARAMETERS_ERROR;
 
-		memcpy(pnetwork->ies, ((struct wlan_bssid_ex *)pbuf)->ies, pnetwork->ie_length);
+		memcpy(pnetwork->ies, ((struct wlan_bssid_ex *)pbuf)->ies,
+		       pnetwork->ie_length);
 
 		start_create_ibss(padapter);
 	}
@@ -5141,7 +5663,8 @@ u8 join_cmd_hdl(struct adapter *padapter, u8 *pbuf)
 	struct registry_priv *pregpriv = &padapter->registrypriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex		*pnetwork = (struct wlan_bssid_ex *)(&(pmlmeinfo->network));
+	struct wlan_bssid_ex *pnetwork =
+		(struct wlan_bssid_ex *)(&(pmlmeinfo->network));
 	u32 i;
 	u8 cbw40_enable = 0;
 	/* u32 initialgain; */
@@ -5151,7 +5674,8 @@ u8 join_cmd_hdl(struct adapter *padapter, u8 *pbuf)
 	/* check already connecting to AP or not */
 	if (pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS) {
 		if (pmlmeinfo->state & WIFI_FW_STATION_STATE)
-			issue_deauth_ex(padapter, pnetwork->mac_address, WLAN_REASON_DEAUTH_LEAVING, 1, 100);
+			issue_deauth_ex(padapter, pnetwork->mac_address,
+					WLAN_REASON_DEAUTH_LEAVING, 1, 100);
 		pmlmeinfo->state = WIFI_FW_NULL_STATE;
 
 		/* clear CAM */
@@ -5184,10 +5708,11 @@ u8 join_cmd_hdl(struct adapter *padapter, u8 *pbuf)
 	memcpy(pnetwork, pbuf, offsetof(struct wlan_bssid_ex, ie_length));
 	pnetwork->ie_length = ((struct wlan_bssid_ex *)pbuf)->ie_length;
 
-	if (pnetwork->ie_length > MAX_IE_SZ)/* Check pbuf->ie_length */
+	if (pnetwork->ie_length > MAX_IE_SZ) /* Check pbuf->ie_length */
 		return H2C_PARAMETERS_ERROR;
 
-	memcpy(pnetwork->ies, ((struct wlan_bssid_ex *)pbuf)->ies, pnetwork->ie_length);
+	memcpy(pnetwork->ies, ((struct wlan_bssid_ex *)pbuf)->ies,
+	       pnetwork->ie_length);
 
 	pmlmeext->cur_channel = (u8)pnetwork->configuration.ds_config;
 	pmlmeinfo->bcn_interval = get_beacon_interval(pnetwork);
@@ -5204,42 +5729,49 @@ u8 join_cmd_hdl(struct adapter *padapter, u8 *pbuf)
 			break;
 
 		switch (pIE->element_id) {
-		case WLAN_EID_VENDOR_SPECIFIC:/* Get WMM IE. */
+		case WLAN_EID_VENDOR_SPECIFIC: /* Get WMM IE. */
 			if (!memcmp(pIE->data, WMM_OUI, 4))
 				WMM_param_handler(padapter, pIE);
 			break;
 
-		case WLAN_EID_HT_CAPABILITY:	/* Get HT Cap IE. */
+		case WLAN_EID_HT_CAPABILITY: /* Get HT Cap IE. */
 			pmlmeinfo->HT_caps_enable = 1;
 			break;
 
-		case WLAN_EID_HT_OPERATION:	/* Get HT Info IE. */
+		case WLAN_EID_HT_OPERATION: /* Get HT Info IE. */
 			pmlmeinfo->HT_info_enable = 1;
 
 			/* spec case only for cisco's ap because cisco's ap issue assoc rsp using mcs rate @40MHz or @20MHz */
 			{
-				struct HT_info_element *pht_info = (struct HT_info_element *)(pIE->data);
+				struct HT_info_element *pht_info =
+					(struct HT_info_element *)(pIE->data);
 
 				if (pnetwork->configuration.ds_config <= 14) {
-					if ((pregpriv->bw_mode & 0x0f) > CHANNEL_WIDTH_20)
+					if ((pregpriv->bw_mode & 0x0f) >
+					    CHANNEL_WIDTH_20)
 						cbw40_enable = 1;
 				}
 
-				if ((cbw40_enable) && (pht_info->infos[0] & BIT(2))) {
+				if ((cbw40_enable) &&
+				    (pht_info->infos[0] & BIT(2))) {
 					/* switch to the 40M Hz mode according to the AP */
 					pmlmeext->cur_bwmode = CHANNEL_WIDTH_40;
 					switch (pht_info->infos[0] & 0x3) {
 					case 1:
-						pmlmeext->cur_ch_offset = HAL_PRIME_CHNL_OFFSET_LOWER;
+						pmlmeext->cur_ch_offset =
+							HAL_PRIME_CHNL_OFFSET_LOWER;
 						break;
 
 					case 3:
-						pmlmeext->cur_ch_offset = HAL_PRIME_CHNL_OFFSET_UPPER;
+						pmlmeext->cur_ch_offset =
+							HAL_PRIME_CHNL_OFFSET_UPPER;
 						break;
 
 					default:
-						pmlmeext->cur_ch_offset = HAL_PRIME_CHNL_OFFSET_DONT_CARE;
-						pmlmeext->cur_bwmode = CHANNEL_WIDTH_20;
+						pmlmeext->cur_ch_offset =
+							HAL_PRIME_CHNL_OFFSET_DONT_CARE;
+						pmlmeext->cur_bwmode =
+							CHANNEL_WIDTH_20;
 						break;
 					}
 				}
@@ -5265,7 +5797,8 @@ u8 join_cmd_hdl(struct adapter *padapter, u8 *pbuf)
 	/* initialgain = 0x1E; */
 	/* rtw_hal_set_hwreg(padapter, HW_VAR_INITIAL_GAIN, (u8 *)(&initialgain)); */
 
-	rtw_hal_set_hwreg(padapter, HW_VAR_BSSID, pmlmeinfo->network.mac_address);
+	rtw_hal_set_hwreg(padapter, HW_VAR_BSSID,
+			  pmlmeinfo->network.mac_address);
 	join_type = 0;
 	rtw_hal_set_hwreg(padapter, HW_VAR_MLME_JOIN, (u8 *)(&join_type));
 	rtw_hal_set_hwreg(padapter, HW_VAR_DO_IQK, NULL);
@@ -5285,13 +5818,17 @@ u8 disconnect_hdl(struct adapter *padapter, unsigned char *pbuf)
 	struct disconnect_parm *param = (struct disconnect_parm *)pbuf;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct wlan_bssid_ex		*pnetwork = (struct wlan_bssid_ex *)(&(pmlmeinfo->network));
+	struct wlan_bssid_ex *pnetwork =
+		(struct wlan_bssid_ex *)(&(pmlmeinfo->network));
 	u8 val8;
 
 	if (is_client_associated_to_ap(padapter))
-		issue_deauth_ex(padapter, pnetwork->mac_address, WLAN_REASON_DEAUTH_LEAVING, param->deauth_timeout_ms/100, 100);
+		issue_deauth_ex(padapter, pnetwork->mac_address,
+				WLAN_REASON_DEAUTH_LEAVING,
+				param->deauth_timeout_ms / 100, 100);
 
-	if (((pmlmeinfo->state&0x03) == WIFI_FW_ADHOC_STATE) || ((pmlmeinfo->state&0x03) == WIFI_FW_AP_STATE)) {
+	if (((pmlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE) ||
+	    ((pmlmeinfo->state & 0x03) == WIFI_FW_AP_STATE)) {
 		/* Stop BCN */
 		val8 = 0;
 		rtw_hal_set_hwreg(padapter, HW_VAR_BCN_FUNC, (u8 *)(&val8));
@@ -5301,36 +5838,41 @@ u8 disconnect_hdl(struct adapter *padapter, unsigned char *pbuf)
 
 	rtw_free_uc_swdec_pending_queue(padapter);
 
-	return	H2C_SUCCESS;
+	return H2C_SUCCESS;
 }
 
-static int rtw_scan_ch_decision(struct adapter *padapter, struct rtw_ieee80211_channel *out,
-	u32 out_num, struct rtw_ieee80211_channel *in, u32 in_num)
+static int rtw_scan_ch_decision(struct adapter *padapter,
+				struct rtw_ieee80211_channel *out, u32 out_num,
+				struct rtw_ieee80211_channel *in, u32 in_num)
 {
 	int i, j;
 	int set_idx;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 
 	/* clear first */
-	memset(out, 0, sizeof(struct rtw_ieee80211_channel)*out_num);
+	memset(out, 0, sizeof(struct rtw_ieee80211_channel) * out_num);
 
 	/* acquire channels from in */
 	j = 0;
 	for (i = 0; i < in_num; i++) {
-		set_idx = rtw_ch_set_search_ch(pmlmeext->channel_set, in[i].hw_value);
-		if (in[i].hw_value && !(in[i].flags & RTW_IEEE80211_CHAN_DISABLED)
-			&& set_idx >= 0
-		) {
+		set_idx = rtw_ch_set_search_ch(pmlmeext->channel_set,
+					       in[i].hw_value);
+		if (in[i].hw_value &&
+		    !(in[i].flags & RTW_IEEE80211_CHAN_DISABLED) &&
+		    set_idx >= 0) {
 			if (j >= out_num) {
 				netdev_dbg(padapter->pnetdev,
-					   FUNC_ADPT_FMT " out_num:%u not enough\n",
+					   FUNC_ADPT_FMT
+					   " out_num:%u not enough\n",
 					   FUNC_ADPT_ARG(padapter), out_num);
 				break;
 			}
 
-			memcpy(&out[j], &in[i], sizeof(struct rtw_ieee80211_channel));
+			memcpy(&out[j], &in[i],
+			       sizeof(struct rtw_ieee80211_channel));
 
-			if (pmlmeext->channel_set[set_idx].ScanType == SCAN_PASSIVE)
+			if (pmlmeext->channel_set[set_idx].ScanType ==
+			    SCAN_PASSIVE)
 				out[j].flags |= RTW_IEEE80211_CHAN_PASSIVE_SCAN;
 
 			j++;
@@ -5344,9 +5886,9 @@ static int rtw_scan_ch_decision(struct adapter *padapter, struct rtw_ieee80211_c
 		for (i = 0; i < pmlmeext->max_chan_nums; i++) {
 			if (j >= out_num) {
 				netdev_dbg(padapter->pnetdev,
-					   FUNC_ADPT_FMT " out_num:%u not enough\n",
-					   FUNC_ADPT_ARG(padapter),
-					   out_num);
+					   FUNC_ADPT_FMT
+					   " out_num:%u not enough\n",
+					   FUNC_ADPT_ARG(padapter), out_num);
 				break;
 			}
 
@@ -5365,7 +5907,7 @@ static int rtw_scan_ch_decision(struct adapter *padapter, struct rtw_ieee80211_c
 u8 sitesurvey_cmd_hdl(struct adapter *padapter, u8 *pbuf)
 {
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
-	struct sitesurvey_parm	*pparm = (struct sitesurvey_parm *)pbuf;
+	struct sitesurvey_parm *pparm = (struct sitesurvey_parm *)pbuf;
 	u8 bdelayscan = false;
 	u8 val8;
 	u32 initialgain;
@@ -5379,19 +5921,18 @@ u8 sitesurvey_cmd_hdl(struct adapter *padapter, u8 *pbuf)
 		for (i = 0; i < RTW_SSID_SCAN_AMOUNT; i++) {
 			if (pparm->ssid[i].ssid_length) {
 				memcpy(pmlmeext->sitesurvey_res.ssid[i].ssid,
-				       pparm->ssid[i].ssid,
-				       IW_ESSID_MAX_SIZE);
+				       pparm->ssid[i].ssid, IW_ESSID_MAX_SIZE);
 				pmlmeext->sitesurvey_res.ssid[i].ssid_length =
 					pparm->ssid[i].ssid_length;
 			} else {
-				pmlmeext->sitesurvey_res.ssid[i].ssid_length = 0;
+				pmlmeext->sitesurvey_res.ssid[i].ssid_length =
+					0;
 			}
 		}
 
-		pmlmeext->sitesurvey_res.ch_num = rtw_scan_ch_decision(padapter
-			, pmlmeext->sitesurvey_res.ch, RTW_CHANNEL_SCAN_AMOUNT
-			, pparm->ch, pparm->ch_num
-		);
+		pmlmeext->sitesurvey_res.ch_num = rtw_scan_ch_decision(
+			padapter, pmlmeext->sitesurvey_res.ch,
+			RTW_CHANNEL_SCAN_AMOUNT, pparm->ch, pparm->ch_num);
 
 		pmlmeext->sitesurvey_res.scan_mode = pparm->scan_mode;
 
@@ -5421,13 +5962,15 @@ u8 sitesurvey_cmd_hdl(struct adapter *padapter, u8 *pbuf)
 		 */
 		initialgain = 0x1e;
 
-		rtw_hal_set_hwreg(padapter, HW_VAR_INITIAL_GAIN, (u8 *)(&initialgain));
+		rtw_hal_set_hwreg(padapter, HW_VAR_INITIAL_GAIN,
+				  (u8 *)(&initialgain));
 
 		/* set MSR to no link state */
 		set_msr(padapter, _HW_STATE_NOLINK_);
 
 		val8 = 1; /* under site survey */
-		rtw_hal_set_hwreg(padapter, HW_VAR_MLME_SITESURVEY, (u8 *)(&val8));
+		rtw_hal_set_hwreg(padapter, HW_VAR_MLME_SITESURVEY,
+				  (u8 *)(&val8));
 
 		pmlmeext->sitesurvey_res.state = SCAN_PROCESS;
 	}
@@ -5439,24 +5982,24 @@ u8 sitesurvey_cmd_hdl(struct adapter *padapter, u8 *pbuf)
 
 u8 setauth_hdl(struct adapter *padapter, unsigned char *pbuf)
 {
-	struct setauth_parm		*pparm = (struct setauth_parm *)pbuf;
+	struct setauth_parm *pparm = (struct setauth_parm *)pbuf;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 
 	if (pparm->mode < 4)
 		pmlmeinfo->auth_algo = pparm->mode;
 
-	return	H2C_SUCCESS;
+	return H2C_SUCCESS;
 }
 
 u8 setkey_hdl(struct adapter *padapter, u8 *pbuf)
 {
 	u16 ctrl = 0;
 	s16 cam_id = 0;
-	struct setkey_parm		*pparm = (struct setkey_parm *)pbuf;
+	struct setkey_parm *pparm = (struct setkey_parm *)pbuf;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	unsigned char null_addr[] = {0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
+	unsigned char null_addr[] = { 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
 	u8 *addr;
 
 	/* main tx key for wep. */
@@ -5472,12 +6015,14 @@ u8 setkey_hdl(struct adapter *padapter, u8 *pbuf)
 		else
 			addr = null_addr;
 
-		ctrl = BIT(15) | BIT(6) | ((pparm->algorithm) << 2) | pparm->keyid;
+		ctrl = BIT(15) | BIT(6) | ((pparm->algorithm) << 2) |
+		       pparm->keyid;
 		write_cam(padapter, cam_id, ctrl, addr, pparm->key);
-		netdev_dbg(padapter->pnetdev,
-			   "set group key camid:%d, addr:%pM, kid:%d, type:%s\n",
-			   cam_id, addr, pparm->keyid,
-			   security_type_str(pparm->algorithm));
+		netdev_dbg(
+			padapter->pnetdev,
+			"set group key camid:%d, addr:%pM, kid:%d, type:%s\n",
+			cam_id, addr, pparm->keyid,
+			security_type_str(pparm->algorithm));
 	}
 
 	if (cam_id >= 0 && cam_id <= 3)
@@ -5496,7 +6041,7 @@ u8 set_stakey_hdl(struct adapter *padapter, u8 *pbuf)
 	u8 ret = H2C_SUCCESS;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
-	struct set_stakey_parm	*pparm = (struct set_stakey_parm *)pbuf;
+	struct set_stakey_parm *pparm = (struct set_stakey_parm *)pbuf;
 	struct sta_priv *pstapriv = &padapter->stapriv;
 	struct sta_info *psta;
 
@@ -5518,7 +6063,8 @@ u8 set_stakey_hdl(struct adapter *padapter, u8 *pbuf)
 
 write_to_cam:
 	if (pparm->algorithm == _NO_PRIVACY_) {
-		while ((cam_id = rtw_camid_search(padapter, pparm->addr, -1)) >= 0) {
+		while ((cam_id = rtw_camid_search(padapter, pparm->addr, -1)) >=
+		       0) {
 			netdev_dbg(padapter->pnetdev,
 				   "clear key for addr:%pM, camid:%d\n",
 				   pparm->addr, cam_id);
@@ -5526,10 +6072,11 @@ u8 set_stakey_hdl(struct adapter *padapter, u8 *pbuf)
 			rtw_camid_free(padapter, cam_id);
 		}
 	} else {
-		netdev_dbg(padapter->pnetdev,
-			   "set pairwise key camid:%d, addr:%pM, kid:%d, type:%s\n",
-			   cam_id, pparm->addr, pparm->keyid,
-			   security_type_str(pparm->algorithm));
+		netdev_dbg(
+			padapter->pnetdev,
+			"set pairwise key camid:%d, addr:%pM, kid:%d, type:%s\n",
+			cam_id, pparm->addr, pparm->keyid,
+			security_type_str(pparm->algorithm));
 		ctrl = BIT(15) | ((pparm->algorithm) << 2) | pparm->keyid;
 		write_cam(padapter, cam_id, ctrl, pparm->addr, pparm->key);
 	}
@@ -5541,27 +6088,30 @@ u8 set_stakey_hdl(struct adapter *padapter, u8 *pbuf)
 
 u8 add_ba_hdl(struct adapter *padapter, unsigned char *pbuf)
 {
-	struct addBaReq_parm	*pparm = (struct addBaReq_parm *)pbuf;
+	struct addBaReq_parm *pparm = (struct addBaReq_parm *)pbuf;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 
-	struct sta_info *psta = rtw_get_stainfo(&padapter->stapriv, pparm->addr);
+	struct sta_info *psta =
+		rtw_get_stainfo(&padapter->stapriv, pparm->addr);
 
 	if (!psta)
-		return	H2C_SUCCESS;
+		return H2C_SUCCESS;
 
-	if (((pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS) && (pmlmeinfo->HT_enable)) ||
-		((pmlmeinfo->state&0x03) == WIFI_FW_AP_STATE)) {
+	if (((pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS) &&
+	     (pmlmeinfo->HT_enable)) ||
+	    ((pmlmeinfo->state & 0x03) == WIFI_FW_AP_STATE)) {
 		/* pmlmeinfo->ADDBA_retry_count = 0; */
 		/* pmlmeinfo->candidate_tid_bitmap |= (0x1 << pparm->tid); */
 		/* psta->htpriv.candidate_tid_bitmap |= BIT(pparm->tid); */
-		issue_action_BA(padapter, pparm->addr, WLAN_ACTION_ADDBA_REQ, (u16)pparm->tid);
+		issue_action_BA(padapter, pparm->addr, WLAN_ACTION_ADDBA_REQ,
+				(u16)pparm->tid);
 		/* _set_timer(&pmlmeext->ADDBA_timer, ADDBA_TO); */
 		_set_timer(&psta->addba_retry_timer, ADDBA_TO);
 	} else {
 		psta->htpriv.candidate_tid_bitmap &= ~BIT(pparm->tid);
 	}
-	return	H2C_SUCCESS;
+	return H2C_SUCCESS;
 }
 
 u8 chk_bmc_sleepq_cmd(struct adapter *padapter)
@@ -5586,8 +6136,8 @@ u8 chk_bmc_sleepq_cmd(struct adapter *padapter)
 
 u8 set_tx_beacon_cmd(struct adapter *padapter)
 {
-	struct cmd_obj	*ph2c;
-	struct Tx_Beacon_param	*ptxBeacon_parm;
+	struct cmd_obj *ph2c;
+	struct Tx_Beacon_param *ptxBeacon_parm;
 	struct cmd_priv *pcmdpriv = &(padapter->cmdpriv);
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
@@ -5607,14 +6157,17 @@ u8 set_tx_beacon_cmd(struct adapter *padapter)
 		goto exit;
 	}
 
-	memcpy(&(ptxBeacon_parm->network), &(pmlmeinfo->network), sizeof(struct wlan_bssid_ex));
+	memcpy(&(ptxBeacon_parm->network), &(pmlmeinfo->network),
+	       sizeof(struct wlan_bssid_ex));
 
-	len_diff = update_hidden_ssid(ptxBeacon_parm->network.ies + _BEACON_IE_OFFSET_,
-				      ptxBeacon_parm->network.ie_length - _BEACON_IE_OFFSET_,
-				      pmlmeinfo->hidden_ssid_mode);
+	len_diff = update_hidden_ssid(
+		ptxBeacon_parm->network.ies + _BEACON_IE_OFFSET_,
+		ptxBeacon_parm->network.ie_length - _BEACON_IE_OFFSET_,
+		pmlmeinfo->hidden_ssid_mode);
 	ptxBeacon_parm->network.ie_length += len_diff;
 
-	init_h2fwcmd_w_parm_no_rsp(ph2c, ptxBeacon_parm, GEN_CMD_CODE(_TX_Beacon));
+	init_h2fwcmd_w_parm_no_rsp(ph2c, ptxBeacon_parm,
+				   GEN_CMD_CODE(_TX_Beacon));
 
 	res = rtw_enqueue_cmd(pcmdpriv, ph2c);
 
@@ -5623,33 +6176,34 @@ u8 set_tx_beacon_cmd(struct adapter *padapter)
 }
 
 static struct fwevent wlanevents[] = {
-	{0, rtw_dummy_event_callback},	/*0*/
-	{0, NULL},
-	{0, NULL},
-	{0, NULL},
-	{0, NULL},
-	{0, NULL},
-	{0, NULL},
-	{0, NULL},
-	{0, &rtw_survey_event_callback},		/*8*/
-	{sizeof(struct surveydone_event), &rtw_surveydone_event_callback},	/*9*/
-
-	{0, &rtw_joinbss_event_callback},		/*10*/
-	{sizeof(struct stassoc_event), &rtw_stassoc_event_callback},
-	{sizeof(struct stadel_event), &rtw_stadel_event_callback},
-	{0, &rtw_atimdone_event_callback},
-	{0, rtw_dummy_event_callback},
-	{0, NULL},	/*15*/
-	{0, NULL},
-	{0, NULL},
-	{0, NULL},
-	{0, rtw_fwdbg_event_callback},
-	{0, NULL},	 /*20*/
-	{0, NULL},
-	{0, NULL},
-	{0, &rtw_cpwm_event_callback},
-	{0, NULL},
-	{0, &rtw_wmm_event_callback},
+	{ 0, rtw_dummy_event_callback }, /*0*/
+	{ 0, NULL },
+	{ 0, NULL },
+	{ 0, NULL },
+	{ 0, NULL },
+	{ 0, NULL },
+	{ 0, NULL },
+	{ 0, NULL },
+	{ 0, &rtw_survey_event_callback }, /*8*/
+	{ sizeof(struct surveydone_event),
+	  &rtw_surveydone_event_callback }, /*9*/
+
+	{ 0, &rtw_joinbss_event_callback }, /*10*/
+	{ sizeof(struct stassoc_event), &rtw_stassoc_event_callback },
+	{ sizeof(struct stadel_event), &rtw_stadel_event_callback },
+	{ 0, &rtw_atimdone_event_callback },
+	{ 0, rtw_dummy_event_callback },
+	{ 0, NULL }, /*15*/
+	{ 0, NULL },
+	{ 0, NULL },
+	{ 0, NULL },
+	{ 0, rtw_fwdbg_event_callback },
+	{ 0, NULL }, /*20*/
+	{ 0, NULL },
+	{ 0, NULL },
+	{ 0, &rtw_cpwm_event_callback },
+	{ 0, NULL },
+	{ 0, &rtw_wmm_event_callback },
 
 };
 
@@ -5657,7 +6211,7 @@ u8 mlme_evt_hdl(struct adapter *padapter, unsigned char *pbuf)
 {
 	u8 evt_code;
 	u16 evt_sz;
-	uint	*peventbuf;
+	uint *peventbuf;
 	void (*event_callback)(struct adapter *dev, u8 *pbuf);
 	struct evt_priv *pevt_priv = &(padapter->evtpriv);
 
@@ -5706,7 +6260,7 @@ u8 chk_bmc_sleepq_hdl(struct adapter *padapter, unsigned char *pbuf)
 	struct list_head *xmitframe_plist, *xmitframe_phead, *tmp;
 	struct xmit_frame *pxmitframe = NULL;
 	struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
-	struct sta_priv  *pstapriv = &padapter->stapriv;
+	struct sta_priv *pstapriv = &padapter->stapriv;
 
 	/* for BC/MC Frames */
 	psta_bmc = rtw_get_bcmc_stainfo(padapter);
@@ -5714,7 +6268,7 @@ u8 chk_bmc_sleepq_hdl(struct adapter *padapter, unsigned char *pbuf)
 		return H2C_SUCCESS;
 
 	if ((pstapriv->tim_bitmap & BIT(0)) && (psta_bmc->sleepq_len > 0)) {
-		msleep(10);/*  10ms, ATIM(HIQ) Windows */
+		msleep(10); /*  10ms, ATIM(HIQ) Windows */
 
 		/* spin_lock_bh(&psta_bmc->sleep_q.lock); */
 		spin_lock_bh(&pxmitpriv->lock);
@@ -5735,7 +6289,7 @@ u8 chk_bmc_sleepq_hdl(struct adapter *padapter, unsigned char *pbuf)
 			pxmitframe->attrib.triggered = 1;
 
 			if (xmitframe_hiq_filter(pxmitframe))
-				pxmitframe->attrib.qsel = 0x11;/* HIQ */
+				pxmitframe->attrib.qsel = 0x11; /* HIQ */
 
 			rtw_hal_xmitframe_enqueue(padapter, pxmitframe);
 		}
@@ -5761,7 +6315,8 @@ u8 tx_beacon_hdl(struct adapter *padapter, unsigned char *pbuf)
 	return H2C_SUCCESS;
 }
 
-int rtw_chk_start_clnt_join(struct adapter *padapter, u8 *ch, u8 *bw, u8 *offset)
+int rtw_chk_start_clnt_join(struct adapter *padapter, u8 *ch, u8 *bw,
+			    u8 *offset)
 {
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	unsigned char cur_ch = pmlmeext->cur_channel;
@@ -5797,9 +6352,10 @@ u8 set_ch_hdl(struct adapter *padapter, u8 *pbuf)
 	pmlmeext->cur_ch_offset = set_ch_parm->ch_offset;
 	pmlmeext->cur_bwmode = set_ch_parm->bw;
 
-	set_channel_bwmode(padapter, set_ch_parm->ch, set_ch_parm->ch_offset, set_ch_parm->bw);
+	set_channel_bwmode(padapter, set_ch_parm->ch, set_ch_parm->ch_offset,
+			   set_ch_parm->bw);
 
-	return	H2C_SUCCESS;
+	return H2C_SUCCESS;
 }
 
 u8 set_chplan_hdl(struct adapter *padapter, unsigned char *pbuf)
@@ -5812,13 +6368,11 @@ u8 set_chplan_hdl(struct adapter *padapter, unsigned char *pbuf)
 
 	setChannelPlan_param = (struct SetChannelPlan_param *)pbuf;
 
-	pmlmeext->max_chan_nums = init_channel_set(padapter,
-						   setChannelPlan_param->channel_plan,
-						   pmlmeext->channel_set);
-	init_channel_list(padapter,
-			  pmlmeext->channel_set,
-			  pmlmeext->max_chan_nums,
-			  &pmlmeext->channel_list);
+	pmlmeext->max_chan_nums =
+		init_channel_set(padapter, setChannelPlan_param->channel_plan,
+				 pmlmeext->channel_set);
+	init_channel_list(padapter, pmlmeext->channel_set,
+			  pmlmeext->max_chan_nums, &pmlmeext->channel_list);
 
 	if (padapter->rtw_wdev && padapter->rtw_wdev->wiphy) {
 		struct regulatory_request request;
@@ -5827,12 +6381,12 @@ u8 set_chplan_hdl(struct adapter *padapter, unsigned char *pbuf)
 		rtw_reg_notifier(padapter->rtw_wdev->wiphy, &request);
 	}
 
-	return	H2C_SUCCESS;
+	return H2C_SUCCESS;
 }
 
 u8 set_csa_hdl(struct adapter *padapter, unsigned char *pbuf)
 {
-	return	H2C_REJECTED;
+	return H2C_REJECTED;
 }
 
 /*  TDLS_ESTABLISHED	: write RCR DATA BIT */
diff --git a/drivers/staging/rtl8723bs/core/rtw_pwrctrl.c b/drivers/staging/rtl8723bs/core/rtw_pwrctrl.c
index b9f8cf1014ede..d62dc1daa1f87 100644
--- a/drivers/staging/rtl8723bs/core/rtw_pwrctrl.c
+++ b/drivers/staging/rtl8723bs/core/rtw_pwrctrl.c
@@ -96,19 +96,21 @@ static bool rtw_pwr_unassociated_idle(struct adapter *adapter)
 	if (check_fwstate(pmlmepriv, WIFI_ASOC_STATE | WIFI_SITE_MONITOR) ||
 	    check_fwstate(pmlmepriv, WIFI_UNDER_LINKING | WIFI_UNDER_WPS) ||
 	    check_fwstate(pmlmepriv, WIFI_AP_STATE) ||
-	    check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE | WIFI_ADHOC_STATE)
-	)
+	    check_fwstate(pmlmepriv,
+			  WIFI_ADHOC_MASTER_STATE | WIFI_ADHOC_STATE))
 		goto exit;
 
 	/* consider buddy, if exist */
 	if (buddy) {
 		struct mlme_priv *b_pmlmepriv = &buddy->mlmepriv;
 
-		if (check_fwstate(b_pmlmepriv, WIFI_ASOC_STATE | WIFI_SITE_MONITOR) ||
-		    check_fwstate(b_pmlmepriv, WIFI_UNDER_LINKING | WIFI_UNDER_WPS) ||
+		if (check_fwstate(b_pmlmepriv,
+				  WIFI_ASOC_STATE | WIFI_SITE_MONITOR) ||
+		    check_fwstate(b_pmlmepriv,
+				  WIFI_UNDER_LINKING | WIFI_UNDER_WPS) ||
 		    check_fwstate(b_pmlmepriv, WIFI_AP_STATE) ||
-		    check_fwstate(b_pmlmepriv, WIFI_ADHOC_MASTER_STATE | WIFI_ADHOC_STATE)
-		)
+		    check_fwstate(b_pmlmepriv,
+				  WIFI_ADHOC_MASTER_STATE | WIFI_ADHOC_STATE))
 			goto exit;
 	}
 
@@ -155,7 +157,8 @@ void rtw_ps_processor(struct adapter *padapter)
 	if (!rtw_pwr_unassociated_idle(padapter))
 		goto exit;
 
-	if ((pwrpriv->rf_pwrstate == rf_on) && ((pwrpriv->pwr_state_check_cnts % 4) == 0)) {
+	if ((pwrpriv->rf_pwrstate == rf_on) &&
+	    ((pwrpriv->pwr_state_check_cnts % 4) == 0)) {
 		pwrpriv->change_rfpwrstate = rf_off;
 		{
 			ips_enter(padapter);
@@ -174,7 +177,8 @@ static void pwr_state_check_handler(struct timer_list *t)
 	rtw_ps_cmd(padapter);
 }
 
-void traffic_check_for_leave_lps(struct adapter *padapter, u8 tx, u32 tx_packets)
+void traffic_check_for_leave_lps(struct adapter *padapter, u8 tx,
+				 u32 tx_packets)
 {
 	static unsigned long start_time;
 	static u32 xmit_cnt;
@@ -187,10 +191,12 @@ void traffic_check_for_leave_lps(struct adapter *padapter, u8 tx, u32 tx_packets
 		if (start_time == 0)
 			start_time = jiffies;
 
-		if (jiffies_to_msecs(jiffies - start_time) > 2000) { /*  2 sec == watch dog timer */
+		if (jiffies_to_msecs(jiffies - start_time) >
+		    2000) { /*  2 sec == watch dog timer */
 			if (xmit_cnt > 8) {
 				if (adapter_to_pwrctl(padapter)->bLeisurePs &&
-				    (adapter_to_pwrctl(padapter)->pwr_mode != PS_MODE_ACTIVE) &&
+				    (adapter_to_pwrctl(padapter)->pwr_mode !=
+				     PS_MODE_ACTIVE) &&
 				    !(hal_btcoex_IsBtControlLps(padapter))) {
 					bLeaveLPS = true;
 				}
@@ -201,9 +207,11 @@ void traffic_check_for_leave_lps(struct adapter *padapter, u8 tx, u32 tx_packets
 		}
 
 	} else { /*  from rx path */
-		if (pmlmepriv->link_detect_info.num_rx_unicast_ok_in_period > 4) {
+		if (pmlmepriv->link_detect_info.num_rx_unicast_ok_in_period >
+		    4) {
 			if (adapter_to_pwrctl(padapter)->bLeisurePs &&
-			    (adapter_to_pwrctl(padapter)->pwr_mode != PS_MODE_ACTIVE) &&
+			    (adapter_to_pwrctl(padapter)->pwr_mode !=
+			     PS_MODE_ACTIVE) &&
 			    !(hal_btcoex_IsBtControlLps(padapter)))
 				bLeaveLPS = true;
 		}
@@ -281,7 +289,8 @@ void rtw_set_rpwm(struct adapter *padapter, u8 pslv)
 				break;
 			}
 
-			if (jiffies_to_msecs(jiffies - start_time) > LPS_RPWM_WAIT_MS) {
+			if (jiffies_to_msecs(jiffies - start_time) >
+			    LPS_RPWM_WAIT_MS) {
 				_set_timer(&pwrpriv->pwr_rpwm_timer, 1);
 				break;
 			}
@@ -310,9 +319,9 @@ static u8 PS_RDY_CHECK(struct adapter *padapter)
 	if (check_fwstate(pmlmepriv, WIFI_SITE_MONITOR) ||
 	    check_fwstate(pmlmepriv, WIFI_UNDER_LINKING | WIFI_UNDER_WPS) ||
 	    check_fwstate(pmlmepriv, WIFI_AP_STATE) ||
-	    check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE | WIFI_ADHOC_STATE) ||
-	    rtw_is_scan_deny(padapter)
-	)
+	    check_fwstate(pmlmepriv,
+			  WIFI_ADHOC_MASTER_STATE | WIFI_ADHOC_STATE) ||
+	    rtw_is_scan_deny(padapter))
 		return false;
 
 	if (padapter->securitypriv.dot11AuthAlgrthm == dot11AuthAlgrthm_8021X &&
@@ -325,8 +334,8 @@ static u8 PS_RDY_CHECK(struct adapter *padapter)
 	return true;
 }
 
-void rtw_set_ps_mode(struct adapter *padapter, u8 ps_mode,
-		     u8 smart_ps, u8 bcn_ant_mode, const char *msg)
+void rtw_set_ps_mode(struct adapter *padapter, u8 ps_mode, u8 smart_ps,
+		     u8 bcn_ant_mode, const char *msg)
 {
 	struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
 
@@ -343,11 +352,12 @@ void rtw_set_ps_mode(struct adapter *padapter, u8 ps_mode,
 	if (ps_mode == PS_MODE_ACTIVE) {
 		if (!(hal_btcoex_IsBtControlLps(padapter)) ||
 		    (hal_btcoex_IsBtControlLps(padapter) &&
-		    !(hal_btcoex_IsLpsOn(padapter)))) {
+		     !(hal_btcoex_IsLpsOn(padapter)))) {
 			pwrpriv->pwr_mode = ps_mode;
 			rtw_set_rpwm(padapter, PS_STATE_S4);
 
-			rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_PWRMODE, (u8 *)(&ps_mode));
+			rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_PWRMODE,
+					  (u8 *)(&ps_mode));
 			pwrpriv->fw_current_in_ps_mode = false;
 
 			hal_btcoex_LpsNotify(padapter, ps_mode);
@@ -355,8 +365,8 @@ void rtw_set_ps_mode(struct adapter *padapter, u8 ps_mode,
 	} else {
 		if ((PS_RDY_CHECK(padapter) &&
 		     check_fwstate(&padapter->mlmepriv, WIFI_ASOC_STATE)) ||
-		    ((hal_btcoex_IsBtControlLps(padapter)) && (hal_btcoex_IsLpsOn(padapter)))
-			) {
+		    ((hal_btcoex_IsBtControlLps(padapter)) &&
+		     (hal_btcoex_IsLpsOn(padapter)))) {
 			u8 pslv;
 
 			hal_btcoex_LpsNotify(padapter, ps_mode);
@@ -365,7 +375,8 @@ void rtw_set_ps_mode(struct adapter *padapter, u8 ps_mode,
 			pwrpriv->pwr_mode = ps_mode;
 			pwrpriv->smart_ps = smart_ps;
 			pwrpriv->bcn_ant_mode = bcn_ant_mode;
-			rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_PWRMODE, (u8 *)(&ps_mode));
+			rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_PWRMODE,
+					  (u8 *)(&ps_mode));
 
 			pslv = PS_STATE_S2;
 			if (pwrpriv->alives == 0)
@@ -426,7 +437,7 @@ void LPS_Enter(struct adapter *padapter, const char *msg)
 	struct dvobj_priv *dvobj = adapter_to_dvobj(padapter);
 	struct pwrctrl_priv *pwrpriv = dvobj_to_pwrctl(dvobj);
 	int n_assoc_iface = 0;
-	char buf[32] = {0};
+	char buf[32] = { 0 };
 
 	if (hal_btcoex_IsBtControlLps(padapter))
 		return;
@@ -447,7 +458,8 @@ void LPS_Enter(struct adapter *padapter, const char *msg)
 				scnprintf(buf, sizeof(buf), "WIFI-%s", msg);
 				pwrpriv->bpower_saving = true;
 				rtw_set_ps_mode(padapter, pwrpriv->power_mgnt,
-						padapter->registrypriv.smart_ps, 0, buf);
+						padapter->registrypriv.smart_ps,
+						0, buf);
 			}
 		} else {
 			pwrpriv->LpsIdleCount++;
@@ -462,7 +474,7 @@ void LPS_Leave(struct adapter *padapter, const char *msg)
 
 	struct dvobj_priv *dvobj = adapter_to_dvobj(padapter);
 	struct pwrctrl_priv *pwrpriv = dvobj_to_pwrctl(dvobj);
-	char buf[32] = {0};
+	char buf[32] = { 0 };
 
 	if (hal_btcoex_IsBtControlLps(padapter))
 		return;
@@ -541,7 +553,7 @@ void LeaveAllPowerSaveMode(struct adapter *Adapter)
 void LPS_Leave_check(struct adapter *padapter)
 {
 	struct pwrctrl_priv *pwrpriv;
-	unsigned long	start_time;
+	unsigned long start_time;
 	u8 bReady;
 
 	pwrpriv = adapter_to_pwrctl(padapter);
@@ -578,7 +590,8 @@ void LPS_Leave_check(struct adapter *padapter)
  *
  * using to update cpwn of drv; and drv will make a decision to up or down pwr level
  */
-void cpwm_int_hdl(struct adapter *padapter, struct reportpwrstate_parm *preportpwrstate)
+void cpwm_int_hdl(struct adapter *padapter,
+		  struct reportpwrstate_parm *preportpwrstate)
 {
 	struct pwrctrl_priv *pwrpriv;
 
@@ -606,7 +619,8 @@ void cpwm_int_hdl(struct adapter *padapter, struct reportpwrstate_parm *preportp
 
 static void cpwm_event_callback(struct work_struct *work)
 {
-	struct pwrctrl_priv *pwrpriv = container_of(work, struct pwrctrl_priv, cpwm_event);
+	struct pwrctrl_priv *pwrpriv =
+		container_of(work, struct pwrctrl_priv, cpwm_event);
 	struct dvobj_priv *dvobj = pwrctl_to_dvobj(pwrpriv);
 	struct adapter *adapter = dvobj->if1;
 	struct reportpwrstate_parm report;
@@ -658,8 +672,8 @@ static void rpwmtimeout_workitem_callback(struct work_struct *work)
  */
 static void pwr_rpwm_timeout_handler(struct timer_list *t)
 {
-	struct pwrctrl_priv *pwrpriv = timer_container_of(pwrpriv, t,
-							  pwr_rpwm_timer);
+	struct pwrctrl_priv *pwrpriv =
+		timer_container_of(pwrpriv, t, pwr_rpwm_timer);
 
 	if ((pwrpriv->rpwm == pwrpriv->cpwm) || (pwrpriv->cpwm >= PS_STATE_S2))
 		return;
@@ -742,7 +756,8 @@ void rtw_unregister_task_alive(struct adapter *padapter, u32 task)
 	pwrctrl = adapter_to_pwrctl(padapter);
 	pslv = PS_STATE_S0;
 
-	if (!(hal_btcoex_IsBtDisabled(padapter)) && hal_btcoex_IsBtControlLps(padapter)) {
+	if (!(hal_btcoex_IsBtDisabled(padapter)) &&
+	    hal_btcoex_IsBtControlLps(padapter)) {
 		u8 val8;
 
 		val8 = hal_btcoex_LpsVal(padapter);
@@ -754,7 +769,8 @@ void rtw_unregister_task_alive(struct adapter *padapter, u32 task)
 
 	unregister_task_alive(pwrctrl, task);
 
-	if ((pwrctrl->pwr_mode != PS_MODE_ACTIVE) && pwrctrl->fw_current_in_ps_mode) {
+	if ((pwrctrl->pwr_mode != PS_MODE_ACTIVE) &&
+	    pwrctrl->fw_current_in_ps_mode) {
 		if (pwrctrl->cpwm > pslv) {
 			if ((pslv >= PS_STATE_S2) || (pwrctrl->alives == 0))
 				rtw_set_rpwm(padapter, pslv);
@@ -869,7 +885,8 @@ void rtw_unregister_tx_alive(struct adapter *padapter)
 	pwrctrl = adapter_to_pwrctl(padapter);
 	pslv = PS_STATE_S0;
 
-	if (!(hal_btcoex_IsBtDisabled(padapter)) && hal_btcoex_IsBtControlLps(padapter)) {
+	if (!(hal_btcoex_IsBtDisabled(padapter)) &&
+	    hal_btcoex_IsBtControlLps(padapter)) {
 		u8 val8;
 
 		val8 = hal_btcoex_LpsVal(padapter);
@@ -881,7 +898,8 @@ void rtw_unregister_tx_alive(struct adapter *padapter)
 
 	unregister_task_alive(pwrctrl, XMIT_ALIVE);
 
-	if ((pwrctrl->pwr_mode != PS_MODE_ACTIVE) && pwrctrl->fw_current_in_ps_mode) {
+	if ((pwrctrl->pwr_mode != PS_MODE_ACTIVE) &&
+	    pwrctrl->fw_current_in_ps_mode) {
 		if (pwrctrl->cpwm > pslv)
 			if ((pslv >= PS_STATE_S2) || (pwrctrl->alives == 0))
 				rtw_set_rpwm(padapter, pslv);
@@ -905,7 +923,8 @@ void rtw_unregister_cmd_alive(struct adapter *padapter)
 	pwrctrl = adapter_to_pwrctl(padapter);
 	pslv = PS_STATE_S0;
 
-	if (!(hal_btcoex_IsBtDisabled(padapter)) && hal_btcoex_IsBtControlLps(padapter)) {
+	if (!(hal_btcoex_IsBtDisabled(padapter)) &&
+	    hal_btcoex_IsBtControlLps(padapter)) {
 		u8 val8;
 
 		val8 = hal_btcoex_LpsVal(padapter);
@@ -917,7 +936,8 @@ void rtw_unregister_cmd_alive(struct adapter *padapter)
 
 	unregister_task_alive(pwrctrl, CMD_ALIVE);
 
-	if ((pwrctrl->pwr_mode != PS_MODE_ACTIVE) && pwrctrl->fw_current_in_ps_mode) {
+	if ((pwrctrl->pwr_mode != PS_MODE_ACTIVE) &&
+	    pwrctrl->fw_current_in_ps_mode) {
 		if (pwrctrl->cpwm > pslv) {
 			if ((pslv >= PS_STATE_S2) || (pwrctrl->alives == 0))
 				rtw_set_rpwm(padapter, pslv);
@@ -947,7 +967,8 @@ void rtw_init_pwrctrl_priv(struct adapter *padapter)
 	pwrctrlpriv->bkeepfwalive = false;
 
 	pwrctrlpriv->LpsIdleCount = 0;
-	pwrctrlpriv->power_mgnt = padapter->registrypriv.power_mgnt;/*  PS_MODE_MIN; */
+	pwrctrlpriv->power_mgnt =
+		padapter->registrypriv.power_mgnt; /*  PS_MODE_MIN; */
 	pwrctrlpriv->bLeisurePs = pwrctrlpriv->power_mgnt != PS_MODE_ACTIVE;
 
 	pwrctrlpriv->fw_current_in_ps_mode = false;
@@ -962,13 +983,15 @@ void rtw_init_pwrctrl_priv(struct adapter *padapter)
 
 	pwrctrlpriv->tog = 0x80;
 
-	rtw_hal_set_hwreg(padapter, HW_VAR_SET_RPWM, (u8 *)(&pwrctrlpriv->rpwm));
+	rtw_hal_set_hwreg(padapter, HW_VAR_SET_RPWM,
+			  (u8 *)(&pwrctrlpriv->rpwm));
 
 	_init_workitem(&pwrctrlpriv->cpwm_event, cpwm_event_callback, NULL);
 
 	pwrctrlpriv->brpwmtimeout = false;
 	pwrctrlpriv->adapter = padapter;
-	_init_workitem(&pwrctrlpriv->rpwmtimeoutwi, rpwmtimeout_workitem_callback, NULL);
+	_init_workitem(&pwrctrlpriv->rpwmtimeoutwi,
+		       rpwmtimeout_workitem_callback, NULL);
 	timer_setup(&pwrctrlpriv->pwr_rpwm_timer, pwr_rpwm_timeout_handler, 0);
 	timer_setup(&pwrctrlpriv->pwr_state_check_timer,
 		    pwr_state_check_handler, 0);
@@ -995,7 +1018,8 @@ inline void rtw_set_ips_deny(struct adapter *padapter, u32 ms)
  * Return _SUCCESS or _FAIL
  */
 
-int _rtw_pwr_wakeup(struct adapter *padapter, u32 ips_deffer_ms, const char *caller)
+int _rtw_pwr_wakeup(struct adapter *padapter, u32 ips_deffer_ms,
+		    const char *caller)
 {
 	struct dvobj_priv *dvobj = adapter_to_dvobj(padapter);
 	struct pwrctrl_priv *pwrpriv = dvobj_to_pwrctl(dvobj);
@@ -1015,12 +1039,13 @@ int _rtw_pwr_wakeup(struct adapter *padapter, u32 ips_deffer_ms, const char *cal
 		pwrpriv->ips_deny_time = deny_time;
 
 	if (pwrpriv->ps_processing)
-		while (pwrpriv->ps_processing && jiffies_to_msecs(jiffies - start) <= 3000)
+		while (pwrpriv->ps_processing &&
+		       jiffies_to_msecs(jiffies - start) <= 3000)
 			mdelay(10);
 
 	if (!(pwrpriv->bInternalAutoSuspend) && pwrpriv->bInSuspend)
-		while (pwrpriv->bInSuspend && jiffies_to_msecs(jiffies - start) <= 3000
-		)
+		while (pwrpriv->bInSuspend &&
+		       jiffies_to_msecs(jiffies - start) <= 3000)
 			mdelay(10);
 
 	/* System suspend is not allowed to wakeup */
@@ -1030,7 +1055,7 @@ int _rtw_pwr_wakeup(struct adapter *padapter, u32 ips_deffer_ms, const char *cal
 	}
 
 	/* block??? */
-	if (pwrpriv->bInternalAutoSuspend  && padapter->net_closed) {
+	if (pwrpriv->bInternalAutoSuspend && padapter->net_closed) {
 		ret = _FAIL;
 		goto exit;
 	}
@@ -1051,7 +1076,8 @@ int _rtw_pwr_wakeup(struct adapter *padapter, u32 ips_deffer_ms, const char *cal
 	}
 
 	/* TODO: the following checking need to be merged... */
-	if (padapter->bDriverStopped || !padapter->bup || !padapter->hw_init_completed) {
+	if (padapter->bDriverStopped || !padapter->bup ||
+	    !padapter->hw_init_completed) {
 		ret = false;
 		goto exit;
 	}
@@ -1065,7 +1091,7 @@ int _rtw_pwr_wakeup(struct adapter *padapter, u32 ips_deffer_ms, const char *cal
 
 int rtw_pm_set_lps(struct adapter *padapter, u8 mode)
 {
-	int	ret = 0;
+	int ret = 0;
 	struct pwrctrl_priv *pwrctrlpriv = adapter_to_pwrctl(padapter);
 
 	if (mode < PS_MODE_NUM) {
@@ -1076,8 +1102,8 @@ int rtw_pm_set_lps(struct adapter *padapter, u8 mode)
 				pwrctrlpriv->LpsIdleCount = 2;
 
 			pwrctrlpriv->power_mgnt = mode;
-			pwrctrlpriv->bLeisurePs =
-				pwrctrlpriv->power_mgnt != PS_MODE_ACTIVE;
+			pwrctrlpriv->bLeisurePs = pwrctrlpriv->power_mgnt !=
+						  PS_MODE_ACTIVE;
 		}
 	} else {
 		ret = -EINVAL;
@@ -1095,7 +1121,8 @@ int rtw_pm_set_ips(struct adapter *padapter, u8 mode)
 		return 0;
 	} else if (mode == IPS_NONE) {
 		rtw_ips_mode_req(pwrctrlpriv, mode);
-		if ((padapter->bSurpriseRemoved == 0) && (rtw_pwr_wakeup(padapter) == _FAIL))
+		if ((padapter->bSurpriseRemoved == 0) &&
+		    (rtw_pwr_wakeup(padapter) == _FAIL))
 			return -EFAULT;
 	} else {
 		return -EINVAL;
diff --git a/drivers/staging/rtl8723bs/core/rtw_recv.c b/drivers/staging/rtl8723bs/core/rtw_recv.c
index 86c5e2c4e7ddd..19d5af75cc95e 100644
--- a/drivers/staging/rtl8723bs/core/rtw_recv.c
+++ b/drivers/staging/rtl8723bs/core/rtw_recv.c
@@ -10,8 +10,8 @@
 #include <net/cfg80211.h>
 #include <linux/unaligned.h>
 
-static u8 SNAP_ETH_TYPE_IPX[2] = {0x81, 0x37};
-static u8 SNAP_ETH_TYPE_APPLETALK_AARP[2] = {0x80, 0xf3};
+static u8 SNAP_ETH_TYPE_IPX[2] = { 0x81, 0x37 };
+static u8 SNAP_ETH_TYPE_APPLETALK_AARP[2] = { 0x80, 0xf3 };
 
 static void rtw_signal_stat_timer_hdl(struct timer_list *t);
 
@@ -25,11 +25,12 @@ void _rtw_init_sta_recv_priv(struct sta_recv_priv *psta_recvpriv)
 	spin_lock_init(&psta_recvpriv->defrag_q.lock);
 }
 
-signed int _rtw_init_recv_priv(struct recv_priv *precvpriv, struct adapter *padapter)
+signed int _rtw_init_recv_priv(struct recv_priv *precvpriv,
+			       struct adapter *padapter)
 {
 	signed int i;
 	union recv_frame *precvframe;
-	signed int	res = _SUCCESS;
+	signed int res = _SUCCESS;
 
 	spin_lock_init(&precvpriv->lock);
 
@@ -44,23 +45,26 @@ signed int _rtw_init_recv_priv(struct recv_priv *precvpriv, struct adapter *pada
 
 	precvpriv->free_recvframe_cnt = NR_RECVFRAME;
 
-	precvpriv->pallocated_frame_buf = vzalloc(NR_RECVFRAME * sizeof(union recv_frame) + RXFRAME_ALIGN_SZ);
+	precvpriv->pallocated_frame_buf = vzalloc(
+		NR_RECVFRAME * sizeof(union recv_frame) + RXFRAME_ALIGN_SZ);
 
 	if (!precvpriv->pallocated_frame_buf) {
 		res = _FAIL;
 		goto exit;
 	}
 
-	precvpriv->precv_frame_buf = (u8 *)N_BYTE_ALIGMENT((SIZE_PTR)(precvpriv->pallocated_frame_buf), RXFRAME_ALIGN_SZ);
+	precvpriv->precv_frame_buf = (u8 *)N_BYTE_ALIGMENT(
+		(SIZE_PTR)(precvpriv->pallocated_frame_buf), RXFRAME_ALIGN_SZ);
 	/* precvpriv->precv_frame_buf = precvpriv->pallocated_frame_buf + RXFRAME_ALIGN_SZ - */
 	/* ((SIZE_PTR) (precvpriv->pallocated_frame_buf) &(RXFRAME_ALIGN_SZ-1)); */
 
-	precvframe = (union recv_frame *) precvpriv->precv_frame_buf;
+	precvframe = (union recv_frame *)precvpriv->precv_frame_buf;
 
 	for (i = 0; i < NR_RECVFRAME; i++) {
 		INIT_LIST_HEAD(&(precvframe->u.list));
 
-		list_add_tail(&(precvframe->u.list), &(precvpriv->free_recv_queue.queue));
+		list_add_tail(&(precvframe->u.list),
+			      &(precvpriv->free_recv_queue.queue));
 
 		precvframe->u.hdr.pkt_newalloc = NULL;
 		precvframe->u.hdr.pkt = NULL;
@@ -88,7 +92,7 @@ void _rtw_free_recv_priv(struct recv_priv *precvpriv)
 {
 	signed int i;
 	union recv_frame *precvframe;
-	struct adapter	*padapter = precvpriv->adapter;
+	struct adapter *padapter = precvpriv->adapter;
 
 	rtw_free_uc_swdec_pending_queue(padapter);
 
@@ -110,8 +114,8 @@ void _rtw_free_recv_priv(struct recv_priv *precvpriv)
 
 union recv_frame *_rtw_alloc_recvframe(struct __queue *pfree_recv_queue)
 {
-	union recv_frame  *precvframe;
-	struct list_head	*plist, *phead;
+	union recv_frame *precvframe;
+	struct list_head *plist, *phead;
 	struct adapter *padapter;
 	struct recv_priv *precvpriv;
 
@@ -137,7 +141,7 @@ union recv_frame *_rtw_alloc_recvframe(struct __queue *pfree_recv_queue)
 
 union recv_frame *rtw_alloc_recvframe(struct __queue *pfree_recv_queue)
 {
-	union recv_frame  *precvframe;
+	union recv_frame *precvframe;
 
 	spin_lock_bh(&pfree_recv_queue->lock);
 
@@ -148,13 +152,15 @@ union recv_frame *rtw_alloc_recvframe(struct __queue *pfree_recv_queue)
 	return precvframe;
 }
 
-int rtw_free_recvframe(union recv_frame *precvframe, struct __queue *pfree_recv_queue)
+int rtw_free_recvframe(union recv_frame *precvframe,
+		       struct __queue *pfree_recv_queue)
 {
 	struct adapter *padapter = precvframe->u.hdr.adapter;
 	struct recv_priv *precvpriv = &padapter->recvpriv;
 
 	if (precvframe->u.hdr.pkt) {
-		dev_kfree_skb_any(precvframe->u.hdr.pkt);/* free skb by driver */
+		dev_kfree_skb_any(
+			precvframe->u.hdr.pkt); /* free skb by driver */
 		precvframe->u.hdr.pkt = NULL;
 	}
 
@@ -164,7 +170,8 @@ int rtw_free_recvframe(union recv_frame *precvframe, struct __queue *pfree_recv_
 
 	precvframe->u.hdr.len = 0;
 
-	list_add_tail(&(precvframe->u.hdr.list), get_list_head(pfree_recv_queue));
+	list_add_tail(&(precvframe->u.hdr.list),
+		      get_list_head(pfree_recv_queue));
 
 	if (padapter) {
 		if (pfree_recv_queue == &precvpriv->free_recv_queue)
@@ -174,7 +181,8 @@ int rtw_free_recvframe(union recv_frame *precvframe, struct __queue *pfree_recv_
 	return _SUCCESS;
 }
 
-signed int _rtw_enqueue_recvframe(union recv_frame *precvframe, struct __queue *queue)
+signed int _rtw_enqueue_recvframe(union recv_frame *precvframe,
+				  struct __queue *queue)
 {
 	struct adapter *padapter = precvframe->u.hdr.adapter;
 	struct recv_priv *precvpriv = &padapter->recvpriv;
@@ -191,7 +199,8 @@ signed int _rtw_enqueue_recvframe(union recv_frame *precvframe, struct __queue *
 	return _SUCCESS;
 }
 
-signed int rtw_enqueue_recvframe(union recv_frame *precvframe, struct __queue *queue)
+signed int rtw_enqueue_recvframe(union recv_frame *precvframe,
+				 struct __queue *queue)
 {
 	signed int ret;
 
@@ -212,10 +221,11 @@ signed int rtw_enqueue_recvframe(union recv_frame *precvframe, struct __queue *q
  *
  */
 
-void rtw_free_recvframe_queue(struct __queue *pframequeue,  struct __queue *pfree_recv_queue)
+void rtw_free_recvframe_queue(struct __queue *pframequeue,
+			      struct __queue *pfree_recv_queue)
 {
-	union	recv_frame	*precvframe;
-	struct list_head	*plist, *phead;
+	union recv_frame *precvframe;
+	struct list_head *plist, *phead;
 
 	spin_lock(&pframequeue->lock);
 
@@ -238,15 +248,18 @@ u32 rtw_free_uc_swdec_pending_queue(struct adapter *adapter)
 	u32 cnt = 0;
 	union recv_frame *pending_frame;
 
-	while ((pending_frame = rtw_alloc_recvframe(&adapter->recvpriv.uc_swdec_pending_queue))) {
-		rtw_free_recvframe(pending_frame, &adapter->recvpriv.free_recv_queue);
+	while ((pending_frame = rtw_alloc_recvframe(
+			&adapter->recvpriv.uc_swdec_pending_queue))) {
+		rtw_free_recvframe(pending_frame,
+				   &adapter->recvpriv.free_recv_queue);
 		cnt++;
 	}
 
 	return cnt;
 }
 
-signed int rtw_enqueue_recvbuf_to_head(struct recv_buf *precvbuf, struct __queue *queue)
+signed int rtw_enqueue_recvbuf_to_head(struct recv_buf *precvbuf,
+				       struct __queue *queue)
 {
 	spin_lock_bh(&queue->lock);
 
@@ -272,7 +285,7 @@ signed int rtw_enqueue_recvbuf(struct recv_buf *precvbuf, struct __queue *queue)
 struct recv_buf *rtw_dequeue_recvbuf(struct __queue *queue)
 {
 	struct recv_buf *precvbuf;
-	struct list_head	*plist, *phead;
+	struct list_head *plist, *phead;
 
 	spin_lock_bh(&queue->lock);
 
@@ -297,7 +310,7 @@ static void rtw_handle_tkip_mic_err(struct adapter *padapter, u8 bgroup)
 {
 	enum nl80211_key_type key_type = 0;
 	union iwreq_data wrqu;
-	struct iw_michaelmicfailure    ev;
+	struct iw_michaelmicfailure ev;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	unsigned long cur_time = 0;
@@ -321,8 +334,9 @@ static void rtw_handle_tkip_mic_err(struct adapter *padapter, u8 bgroup)
 	else
 		key_type |= NL80211_KEYTYPE_PAIRWISE;
 
-	cfg80211_michael_mic_failure(padapter->pnetdev, (u8 *)&pmlmepriv->assoc_bssid[0], key_type, -1,
-		NULL, GFP_ATOMIC);
+	cfg80211_michael_mic_failure(padapter->pnetdev,
+				     (u8 *)&pmlmepriv->assoc_bssid[0], key_type,
+				     -1, NULL, GFP_ATOMIC);
 
 	memset(&ev, 0x00, sizeof(ev));
 	if (bgroup)
@@ -337,9 +351,10 @@ static void rtw_handle_tkip_mic_err(struct adapter *padapter, u8 bgroup)
 	wrqu.data.length = sizeof(ev);
 }
 
-static signed int recvframe_chkmic(struct adapter *adapter,  union recv_frame *precvframe)
+static signed int recvframe_chkmic(struct adapter *adapter,
+				   union recv_frame *precvframe)
 {
-	signed int	i, res = _SUCCESS;
+	signed int i, res = _SUCCESS;
 	u32 datalen;
 	u8 miccode[8];
 	u8 bmic_err = false, brpt_micerror = true;
@@ -362,7 +377,10 @@ static signed int recvframe_chkmic(struct adapter *adapter,  union recv_frame *p
 				/* mickey =&psecuritypriv->dot118021XGrprxmickey.skey[0]; */
 				/* iv = precvframe->u.hdr.rx_data+prxattrib->hdrlen; */
 				/* rxdata_key_idx =(((iv[3])>>6)&0x3) ; */
-				mickey = &psecuritypriv->dot118021XGrprxmickey[prxattrib->key_index].skey[0];
+				mickey = &psecuritypriv
+						  ->dot118021XGrprxmickey
+							  [prxattrib->key_index]
+						  .skey[0];
 
 				/* psecuritypriv->dot118021XGrpKeyid, pmlmeinfo->key_index, rxdata_key_idx); */
 
@@ -374,11 +392,17 @@ static signed int recvframe_chkmic(struct adapter *adapter,  union recv_frame *p
 				mickey = &stainfo->dot11tkiprxmickey.skey[0];
 			}
 
-			datalen = precvframe->u.hdr.len - prxattrib->hdrlen - prxattrib->iv_len - prxattrib->icv_len - 8;/* icv_len included the mic code */
+			datalen = precvframe->u.hdr.len - prxattrib->hdrlen -
+				  prxattrib->iv_len - prxattrib->icv_len -
+				  8; /* icv_len included the mic code */
 			pframe = precvframe->u.hdr.rx_data;
-			payload = pframe + prxattrib->hdrlen + prxattrib->iv_len;
+			payload =
+				pframe + prxattrib->hdrlen + prxattrib->iv_len;
 
-			rtw_seccalctkipmic(mickey, pframe, payload, datalen, &miccode[0], (unsigned char)prxattrib->priority); /* care the length of the data */
+			rtw_seccalctkipmic(
+				mickey, pframe, payload, datalen, &miccode[0],
+				(unsigned char)prxattrib
+					->priority); /* care the length of the data */
 
 			pframemic = payload + datalen;
 
@@ -393,11 +417,15 @@ static signed int recvframe_chkmic(struct adapter *adapter,  union recv_frame *p
 				/*  double check key_index for some timing issue , */
 				/*  cannot compare with psecuritypriv->dot118021XGrpKeyid also cause timing issue */
 				if (is_multicast_ether_addr(prxattrib->ra) &&
-				    (prxattrib->key_index != pmlmeinfo->key_index))
+				    (prxattrib->key_index !=
+				     pmlmeinfo->key_index))
 					brpt_micerror = false;
 
 				if (prxattrib->bdecrypted && brpt_micerror)
-					rtw_handle_tkip_mic_err(adapter, (u8)is_multicast_ether_addr(prxattrib->ra));
+					rtw_handle_tkip_mic_err(
+						adapter,
+						(u8)is_multicast_ether_addr(
+							prxattrib->ra));
 
 				res = _FAIL;
 
@@ -417,12 +445,13 @@ static signed int recvframe_chkmic(struct adapter *adapter,  union recv_frame *p
 }
 
 /* decrypt and set the ivlen, icvlen of the recv_frame */
-static union recv_frame *decryptor(struct adapter *padapter, union recv_frame *precv_frame)
+static union recv_frame *decryptor(struct adapter *padapter,
+				   union recv_frame *precv_frame)
 {
 	struct rx_pkt_attrib *prxattrib = &precv_frame->u.hdr.attrib;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	union recv_frame *return_packet = precv_frame;
-	u32  res = _SUCCESS;
+	u32 res = _SUCCESS;
 
 	if (prxattrib->encrypt > 0) {
 		u8 *iv = precv_frame->u.hdr.rx_data + prxattrib->hdrlen;
@@ -433,18 +462,21 @@ static union recv_frame *decryptor(struct adapter *padapter, union recv_frame *p
 			switch (prxattrib->encrypt) {
 			case _WEP40_:
 			case _WEP104_:
-				prxattrib->key_index = psecuritypriv->dot11PrivacyKeyIndex;
+				prxattrib->key_index =
+					psecuritypriv->dot11PrivacyKeyIndex;
 				break;
 			case _TKIP_:
 			case _AES_:
 			default:
-				prxattrib->key_index = psecuritypriv->dot118021XGrpKeyid;
+				prxattrib->key_index =
+					psecuritypriv->dot118021XGrpKeyid;
 				break;
 			}
 		}
 	}
 
-	if ((prxattrib->encrypt > 0) && ((prxattrib->bdecrypted == 0) || psecuritypriv->sw_decrypt)) {
+	if ((prxattrib->encrypt > 0) &&
+	    ((prxattrib->bdecrypted == 0) || psecuritypriv->sw_decrypt)) {
 		psecuritypriv->hw_decrypted = false;
 
 		switch (prxattrib->encrypt) {
@@ -459,17 +491,18 @@ static union recv_frame *decryptor(struct adapter *padapter, union recv_frame *p
 			res = rtw_aes_decrypt(padapter, (u8 *)precv_frame);
 			break;
 		default:
-				break;
+			break;
 		}
 	} else if (prxattrib->bdecrypted == 1 && prxattrib->encrypt > 0 &&
-		   (psecuritypriv->busetkipkey == 1 || prxattrib->encrypt != _TKIP_)
-		) {
+		   (psecuritypriv->busetkipkey == 1 ||
+		    prxattrib->encrypt != _TKIP_)) {
 		psecuritypriv->hw_decrypted = true;
 	} else {
 	}
 
 	if (res == _FAIL) {
-		rtw_free_recvframe(return_packet, &padapter->recvpriv.free_recv_queue);
+		rtw_free_recvframe(return_packet,
+				   &padapter->recvpriv.free_recv_queue);
 		return_packet = NULL;
 	} else {
 		prxattrib->bdecrypted = true;
@@ -479,7 +512,8 @@ static union recv_frame *decryptor(struct adapter *padapter, union recv_frame *p
 }
 
 /* set the security information in the recv_frame */
-static union recv_frame *portctrl(struct adapter *adapter, union recv_frame *precv_frame)
+static union recv_frame *portctrl(struct adapter *adapter,
+				  union recv_frame *precv_frame)
 {
 	u8 *psta_addr = NULL;
 	u8 *ptr;
@@ -489,7 +523,7 @@ static union recv_frame *portctrl(struct adapter *adapter, union recv_frame *pre
 	struct sta_priv *pstapriv;
 	union recv_frame *prtnframe;
 	u16 ether_type = 0;
-	u16  eapol_type = 0x888e;/* for Funia BD's WPA issue */
+	u16 eapol_type = 0x888e; /* for Funia BD's WPA issue */
 	struct rx_pkt_attrib *pattrib;
 
 	pstapriv = &adapter->stapriv;
@@ -515,7 +549,8 @@ static union recv_frame *portctrl(struct adapter *adapter, union recv_frame *pre
 			prtnframe = precv_frame;
 
 			/* get ether_type */
-			ptr = ptr + pfhdr->attrib.hdrlen + pfhdr->attrib.iv_len + LLC_HEADER_LENGTH;
+			ptr = ptr + pfhdr->attrib.hdrlen +
+			      pfhdr->attrib.iv_len + LLC_HEADER_LENGTH;
 			memcpy(&be_tmp, ptr, 2);
 			ether_type = ntohs(be_tmp);
 
@@ -523,7 +558,9 @@ static union recv_frame *portctrl(struct adapter *adapter, union recv_frame *pre
 				prtnframe = precv_frame;
 			} else {
 				/* free this frame */
-				rtw_free_recvframe(precv_frame, &adapter->recvpriv.free_recv_queue);
+				rtw_free_recvframe(
+					precv_frame,
+					&adapter->recvpriv.free_recv_queue);
 				prtnframe = NULL;
 			}
 		} else {
@@ -533,7 +570,7 @@ static union recv_frame *portctrl(struct adapter *adapter, union recv_frame *pre
 			prtnframe = precv_frame;
 			/* check is the EAPOL frame or not (Rekey) */
 			/* if (ether_type == eapol_type) { */
-				/* check Rekey */
+			/* check Rekey */
 
 			/* prtnframe =precv_frame; */
 			/*  */
@@ -547,12 +584,13 @@ static union recv_frame *portctrl(struct adapter *adapter, union recv_frame *pre
 	return prtnframe;
 }
 
-static signed int recv_decache(union recv_frame *precv_frame, u8 bretry, struct stainfo_rxcache *prxcache)
+static signed int recv_decache(union recv_frame *precv_frame, u8 bretry,
+			       struct stainfo_rxcache *prxcache)
 {
 	signed int tid = precv_frame->u.hdr.attrib.priority;
 
 	u16 seq_ctrl = ((precv_frame->u.hdr.attrib.seq_num & 0xffff) << 4) |
-		(precv_frame->u.hdr.attrib.frag_num & 0xf);
+		       (precv_frame->u.hdr.attrib.frag_num & 0xf);
 
 	if (tid > 15)
 		return _FAIL;
@@ -567,7 +605,8 @@ static signed int recv_decache(union recv_frame *precv_frame, u8 bretry, struct
 	return _SUCCESS;
 }
 
-static void process_pwrbit_data(struct adapter *padapter, union recv_frame *precv_frame)
+static void process_pwrbit_data(struct adapter *padapter,
+				union recv_frame *precv_frame)
 {
 	unsigned char pwrbit;
 	u8 *ptr = precv_frame->u.hdr.rx_data;
@@ -598,7 +637,8 @@ static void process_pwrbit_data(struct adapter *padapter, union recv_frame *prec
 	}
 }
 
-static void process_wmmps_data(struct adapter *padapter, union recv_frame *precv_frame)
+static void process_wmmps_data(struct adapter *padapter,
+			       union recv_frame *precv_frame)
 {
 	struct rx_pkt_attrib *pattrib = &precv_frame->u.hdr.attrib;
 	struct sta_priv *pstapriv = &padapter->stapriv;
@@ -644,12 +684,15 @@ static void process_wmmps_data(struct adapter *padapter, union recv_frame *precv
 				xmit_delivery_enabled_frames(padapter, psta);
 			else
 				/* issue one qos null frame with More data bit = 0 and the EOSP bit set (= 1) */
-				issue_qos_nulldata(padapter, psta->hwaddr, (u16)pattrib->priority, 0, 0);
+				issue_qos_nulldata(padapter, psta->hwaddr,
+						   (u16)pattrib->priority, 0,
+						   0);
 		}
 	}
 }
 
-static void count_rx_stats(struct adapter *padapter, union recv_frame *prframe, struct sta_info *sta)
+static void count_rx_stats(struct adapter *padapter, union recv_frame *prframe,
+			   struct sta_info *sta)
 {
 	int sz;
 	struct sta_info *psta = NULL;
@@ -662,8 +705,10 @@ static void count_rx_stats(struct adapter *padapter, union recv_frame *prframe,
 
 	padapter->mlmepriv.link_detect_info.num_rx_ok_in_period++;
 
-	if ((!is_broadcast_ether_addr(pattrib->dst)) && (!is_multicast_ether_addr(pattrib->dst)))
-		padapter->mlmepriv.link_detect_info.num_rx_unicast_ok_in_period++;
+	if ((!is_broadcast_ether_addr(pattrib->dst)) &&
+	    (!is_multicast_ether_addr(pattrib->dst)))
+		padapter->mlmepriv.link_detect_info
+			.num_rx_unicast_ok_in_period++;
 
 	if (sta)
 		psta = sta;
@@ -680,15 +725,16 @@ static void count_rx_stats(struct adapter *padapter, union recv_frame *prframe,
 	traffic_check_for_leave_lps(padapter, false, 0);
 }
 
-static signed int sta2sta_data_frame(struct adapter *adapter, union recv_frame *precv_frame,
-			struct sta_info **psta)
+static signed int sta2sta_data_frame(struct adapter *adapter,
+				     union recv_frame *precv_frame,
+				     struct sta_info **psta)
 {
 	u8 *ptr = precv_frame->u.hdr.rx_data;
 	signed int ret = _SUCCESS;
 	struct rx_pkt_attrib *pattrib = &precv_frame->u.hdr.attrib;
 	struct sta_priv *pstapriv = &adapter->stapriv;
 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
-	u8 *mybssid  = get_bssid(pmlmepriv);
+	u8 *mybssid = get_bssid(pmlmepriv);
 	u8 *myhwaddr = myid(&adapter->eeprompriv);
 	u8 *sta_addr = NULL;
 	signed int bmcast = is_multicast_ether_addr(pattrib->dst);
@@ -701,7 +747,7 @@ static signed int sta2sta_data_frame(struct adapter *adapter, union recv_frame *
 			goto exit;
 		}
 
-		if ((memcmp(myhwaddr, pattrib->dst, ETH_ALEN))	&& (!bmcast)) {
+		if ((memcmp(myhwaddr, pattrib->dst, ETH_ALEN)) && (!bmcast)) {
 			ret = _FAIL;
 			goto exit;
 		}
@@ -749,7 +795,7 @@ static signed int sta2sta_data_frame(struct adapter *adapter, union recv_frame *
 
 		sta_addr = mybssid;
 	} else {
-		ret  = _FAIL;
+		ret = _FAIL;
 	}
 
 	if (bmcast)
@@ -766,15 +812,16 @@ static signed int sta2sta_data_frame(struct adapter *adapter, union recv_frame *
 	return ret;
 }
 
-static signed int ap2sta_data_frame(struct adapter *adapter, union recv_frame *precv_frame,
-		       struct sta_info **psta)
+static signed int ap2sta_data_frame(struct adapter *adapter,
+				    union recv_frame *precv_frame,
+				    struct sta_info **psta)
 {
 	u8 *ptr = precv_frame->u.hdr.rx_data;
 	struct rx_pkt_attrib *pattrib = &precv_frame->u.hdr.attrib;
 	signed int ret = _SUCCESS;
 	struct sta_priv *pstapriv = &adapter->stapriv;
 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
-	u8 *mybssid  = get_bssid(pmlmepriv);
+	u8 *mybssid = get_bssid(pmlmepriv);
 	u8 *myhwaddr = myid(&adapter->eeprompriv);
 	signed int bmcast = is_multicast_ether_addr(pattrib->dst);
 
@@ -798,7 +845,9 @@ static signed int ap2sta_data_frame(struct adapter *adapter, union recv_frame *p
 		    is_zero_ether_addr(mybssid) ||
 		    (memcmp(pattrib->bssid, mybssid, ETH_ALEN))) {
 			if (!bmcast)
-				issue_deauth(adapter, pattrib->bssid, WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
+				issue_deauth(
+					adapter, pattrib->bssid,
+					WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
 
 			ret = _FAIL;
 			goto exit;
@@ -807,7 +856,8 @@ static signed int ap2sta_data_frame(struct adapter *adapter, union recv_frame *p
 		if (bmcast)
 			*psta = rtw_get_bcmc_stainfo(adapter);
 		else
-			*psta = rtw_get_stainfo(pstapriv, pattrib->bssid); /*  get ap_info */
+			*psta = rtw_get_stainfo(
+				pstapriv, pattrib->bssid); /*  get ap_info */
 
 		if (!*psta) {
 			ret = _FAIL;
@@ -830,9 +880,10 @@ static signed int ap2sta_data_frame(struct adapter *adapter, union recv_frame *p
 		memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
 
 		/*  */
-		memcpy(pattrib->bssid,  mybssid, ETH_ALEN);
+		memcpy(pattrib->bssid, mybssid, ETH_ALEN);
 
-		*psta = rtw_get_stainfo(pstapriv, pattrib->bssid); /*  get sta_info */
+		*psta = rtw_get_stainfo(pstapriv,
+					pattrib->bssid); /*  get sta_info */
 		if (!*psta) {
 			ret = _FAIL;
 			goto exit;
@@ -844,15 +895,21 @@ static signed int ap2sta_data_frame(struct adapter *adapter, union recv_frame *p
 		goto exit;
 	} else {
 		if (!memcmp(myhwaddr, pattrib->dst, ETH_ALEN) && (!bmcast)) {
-			*psta = rtw_get_stainfo(pstapriv, pattrib->bssid); /*  get sta_info */
+			*psta = rtw_get_stainfo(
+				pstapriv, pattrib->bssid); /*  get sta_info */
 			if (!*psta) {
 				/* for AP multicast issue , modify by yiwei */
 				static unsigned long send_issue_deauth_time;
 
-				if (jiffies_to_msecs(jiffies - send_issue_deauth_time) > 10000 || send_issue_deauth_time == 0) {
+				if (jiffies_to_msecs(jiffies -
+						     send_issue_deauth_time) >
+					    10000 ||
+				    send_issue_deauth_time == 0) {
 					send_issue_deauth_time = jiffies;
 
-					issue_deauth(adapter, pattrib->bssid, WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
+					issue_deauth(
+						adapter, pattrib->bssid,
+						WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
 				}
 			}
 		}
@@ -864,14 +921,15 @@ static signed int ap2sta_data_frame(struct adapter *adapter, union recv_frame *p
 	return ret;
 }
 
-static signed int sta2ap_data_frame(struct adapter *adapter, union recv_frame *precv_frame,
-		       struct sta_info **psta)
+static signed int sta2ap_data_frame(struct adapter *adapter,
+				    union recv_frame *precv_frame,
+				    struct sta_info **psta)
 {
 	u8 *ptr = precv_frame->u.hdr.rx_data;
 	struct rx_pkt_attrib *pattrib = &precv_frame->u.hdr.attrib;
 	struct sta_priv *pstapriv = &adapter->stapriv;
 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
-	unsigned char *mybssid  = get_bssid(pmlmepriv);
+	unsigned char *mybssid = get_bssid(pmlmepriv);
 	signed int ret = _SUCCESS;
 
 	if (check_fwstate(pmlmepriv, WIFI_AP_STATE)) {
@@ -883,7 +941,9 @@ static signed int sta2ap_data_frame(struct adapter *adapter, union recv_frame *p
 
 		*psta = rtw_get_stainfo(pstapriv, pattrib->src);
 		if (!*psta) {
-			issue_deauth(adapter, pattrib->src, WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
+			issue_deauth(
+				adapter, pattrib->src,
+				WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
 
 			ret = RTW_RX_HANDLED;
 			goto exit;
@@ -891,7 +951,8 @@ static signed int sta2ap_data_frame(struct adapter *adapter, union recv_frame *p
 
 		process_pwrbit_data(adapter, precv_frame);
 
-		if ((GetFrameSubType(ptr) & WIFI_QOS_DATA_TYPE) == WIFI_QOS_DATA_TYPE)
+		if ((GetFrameSubType(ptr) & WIFI_QOS_DATA_TYPE) ==
+		    WIFI_QOS_DATA_TYPE)
 			process_wmmps_data(adapter, precv_frame);
 
 		if (GetFrameSubType(ptr) & BIT(6)) {
@@ -907,7 +968,8 @@ static signed int sta2ap_data_frame(struct adapter *adapter, union recv_frame *p
 			ret = RTW_RX_HANDLED;
 			goto exit;
 		}
-		issue_deauth(adapter, pattrib->src, WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
+		issue_deauth(adapter, pattrib->src,
+			     WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
 		ret = RTW_RX_HANDLED;
 		goto exit;
 	}
@@ -916,7 +978,8 @@ static signed int sta2ap_data_frame(struct adapter *adapter, union recv_frame *p
 	return ret;
 }
 
-static signed int validate_recv_ctrl_frame(struct adapter *padapter, union recv_frame *precv_frame)
+static signed int validate_recv_ctrl_frame(struct adapter *padapter,
+					   union recv_frame *precv_frame)
 {
 	struct rx_pkt_attrib *pattrib = &precv_frame->u.hdr.attrib;
 	struct sta_priv *pstapriv = &padapter->stapriv;
@@ -975,8 +1038,9 @@ static signed int validate_recv_ctrl_frame(struct adapter *padapter, union recv_
 			psta->state ^= WIFI_STA_ALIVE_CHK_STATE;
 		}
 
-		if ((psta->state & WIFI_SLEEP_STATE) && (pstapriv->sta_dz_bitmap & BIT(psta->aid))) {
-			struct list_head	*xmitframe_plist, *xmitframe_phead;
+		if ((psta->state & WIFI_SLEEP_STATE) &&
+		    (pstapriv->sta_dz_bitmap & BIT(psta->aid))) {
+			struct list_head *xmitframe_plist, *xmitframe_phead;
 			struct xmit_frame *pxmitframe = NULL;
 			struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
 
@@ -987,7 +1051,9 @@ static signed int validate_recv_ctrl_frame(struct adapter *padapter, union recv_
 			xmitframe_plist = get_next(xmitframe_phead);
 
 			if (xmitframe_phead != xmitframe_plist) {
-				pxmitframe = container_of(xmitframe_plist, struct xmit_frame, list);
+				pxmitframe = container_of(xmitframe_plist,
+							  struct xmit_frame,
+							  list);
 
 				xmitframe_plist = get_next(xmitframe_plist);
 
@@ -1009,7 +1075,8 @@ static signed int validate_recv_ctrl_frame(struct adapter *padapter, union recv_
 
 					/* update BCN for TIM IE */
 					/* update_BCNTIM(padapter); */
-					update_beacon(padapter, WLAN_EID_TIM, NULL, true);
+					update_beacon(padapter, WLAN_EID_TIM,
+						      NULL, true);
 				}
 
 				/* spin_unlock_bh(&psta->sleep_q.lock); */
@@ -1022,7 +1089,8 @@ static signed int validate_recv_ctrl_frame(struct adapter *padapter, union recv_
 				if (pstapriv->tim_bitmap & BIT(psta->aid)) {
 					if (psta->sleepq_len == 0) {
 						/* issue nulldata with More data bit = 0 to indicate we have no buffered packets */
-						issue_nulldata_in_interrupt(padapter, psta->hwaddr);
+						issue_nulldata_in_interrupt(
+							padapter, psta->hwaddr);
 					} else {
 						psta->sleepq_len = 0;
 					}
@@ -1031,7 +1099,8 @@ static signed int validate_recv_ctrl_frame(struct adapter *padapter, union recv_
 
 					/* update BCN for TIM IE */
 					/* update_BCNTIM(padapter); */
-					update_beacon(padapter, WLAN_EID_TIM, NULL, true);
+					update_beacon(padapter, WLAN_EID_TIM,
+						      NULL, true);
 				}
 			}
 		}
@@ -1044,12 +1113,12 @@ static signed int validate_recv_ctrl_frame(struct adapter *padapter, union recv_
 static union recv_frame *recvframe_defrag(struct adapter *adapter,
 					  struct __queue *defrag_q)
 {
-	struct list_head	 *plist, *phead;
-	u8  wlanhdr_offset;
+	struct list_head *plist, *phead;
+	u8 wlanhdr_offset;
 	u8 curfragnum;
 	struct recv_frame_hdr *pfhdr, *pnfhdr;
 	union recv_frame *prframe, *pnextrframe;
-	struct __queue	*pfree_recv_queue;
+	struct __queue *pfree_recv_queue;
 
 	curfragnum = 0;
 	pfree_recv_queue = &adapter->recvpriv.free_recv_queue;
@@ -1117,7 +1186,8 @@ static union recv_frame *recvframe_defrag(struct adapter *adapter,
 }
 
 /* check if need to defrag, if needed queue the frame to defrag_q */
-static union recv_frame *recvframe_chk_defrag(struct adapter *padapter, union recv_frame *precv_frame)
+static union recv_frame *recvframe_chk_defrag(struct adapter *padapter,
+					      union recv_frame *precv_frame)
 {
 	u8 ismfrag;
 	u8 fragnum;
@@ -1155,7 +1225,7 @@ static union recv_frame *recvframe_chk_defrag(struct adapter *padapter, union re
 	}
 
 	if ((ismfrag == 0) && (fragnum == 0))
-		prtnframe = precv_frame;/* isn't a fragment frame */
+		prtnframe = precv_frame; /* isn't a fragment frame */
 
 	if (ismfrag == 1) {
 		/* 0~(n-1) fragment frame */
@@ -1165,7 +1235,8 @@ static union recv_frame *recvframe_chk_defrag(struct adapter *padapter, union re
 				/* the first fragment */
 				if (!list_empty(&pdefrag_q->queue))
 					/* free current defrag_q */
-					rtw_free_recvframe_queue(pdefrag_q, pfree_recv_queue);
+					rtw_free_recvframe_queue(
+						pdefrag_q, pfree_recv_queue);
 
 			/* Then enqueue the 0~(n-1) fragment into the defrag_q */
 
@@ -1205,7 +1276,7 @@ static union recv_frame *recvframe_chk_defrag(struct adapter *padapter, union re
 
 	if ((prtnframe) && (prtnframe->u.hdr.attrib.privacy)) {
 		/* after defrag we must check tkip mic code */
-		if (recvframe_chkmic(padapter,  prtnframe) == _FAIL) {
+		if (recvframe_chkmic(padapter, prtnframe) == _FAIL) {
 			rtw_free_recvframe(prtnframe, pfree_recv_queue);
 			prtnframe = NULL;
 		}
@@ -1213,7 +1284,8 @@ static union recv_frame *recvframe_chk_defrag(struct adapter *padapter, union re
 	return prtnframe;
 }
 
-static signed int validate_recv_mgnt_frame(struct adapter *padapter, union recv_frame *precv_frame)
+static signed int validate_recv_mgnt_frame(struct adapter *padapter,
+					   union recv_frame *precv_frame)
 {
 	struct sta_info *psta;
 
@@ -1222,7 +1294,8 @@ static signed int validate_recv_mgnt_frame(struct adapter *padapter, union recv_
 		return _SUCCESS;
 
 	/* for rx pkt statistics */
-	psta = rtw_get_stainfo(&padapter->stapriv, GetAddr2Ptr(precv_frame->u.hdr.rx_data));
+	psta = rtw_get_stainfo(&padapter->stapriv,
+			       GetAddr2Ptr(precv_frame->u.hdr.rx_data));
 	if (!psta)
 		goto exit;
 
@@ -1237,11 +1310,12 @@ static signed int validate_recv_mgnt_frame(struct adapter *padapter, union recv_
 		break;
 	case WIFI_PROBERSP:
 		if (!memcmp(padapter->eeprompriv.mac_addr,
-			    GetAddr1Ptr(precv_frame->u.hdr.rx_data),
-			    ETH_ALEN))
+			    GetAddr1Ptr(precv_frame->u.hdr.rx_data), ETH_ALEN))
 			psta->sta_stats.rx_probersp_pkts++;
-		else if (is_broadcast_ether_addr(GetAddr1Ptr(precv_frame->u.hdr.rx_data)) ||
-			 is_multicast_ether_addr(GetAddr1Ptr(precv_frame->u.hdr.rx_data)))
+		else if (is_broadcast_ether_addr(
+				 GetAddr1Ptr(precv_frame->u.hdr.rx_data)) ||
+			 is_multicast_ether_addr(
+				 GetAddr1Ptr(precv_frame->u.hdr.rx_data)))
 			psta->sta_stats.rx_probersp_bm_pkts++;
 		else
 			psta->sta_stats.rx_probersp_uo_pkts++;
@@ -1255,13 +1329,14 @@ static signed int validate_recv_mgnt_frame(struct adapter *padapter, union recv_
 	return _SUCCESS;
 }
 
-static signed int validate_recv_data_frame(struct adapter *adapter, union recv_frame *precv_frame)
+static signed int validate_recv_data_frame(struct adapter *adapter,
+					   union recv_frame *precv_frame)
 {
 	u8 bretry;
 	u8 *psa, *pda, *pbssid;
 	struct sta_info *psta = NULL;
 	u8 *ptr = precv_frame->u.hdr.rx_data;
-	struct rx_pkt_attrib	*pattrib = &precv_frame->u.hdr.attrib;
+	struct rx_pkt_attrib *pattrib = &precv_frame->u.hdr.attrib;
 	struct security_priv *psecuritypriv = &adapter->securitypriv;
 	signed int ret = _SUCCESS;
 
@@ -1339,21 +1414,25 @@ static signed int validate_recv_data_frame(struct adapter *adapter, union recv_f
 		pattrib->hdrlen = pattrib->to_fr_ds == 3 ? 30 : 24;
 	}
 
-	if (pattrib->order)/* HT-CTRL 11n */
+	if (pattrib->order) /* HT-CTRL 11n */
 		pattrib->hdrlen += 4;
 
-	precv_frame->u.hdr.preorder_ctrl = &psta->recvreorder_ctrl[pattrib->priority];
+	precv_frame->u.hdr.preorder_ctrl =
+		&psta->recvreorder_ctrl[pattrib->priority];
 
 	/*  decache, drop duplicate recv packets */
-	if (recv_decache(precv_frame, bretry, &psta->sta_recvpriv.rxcache) == _FAIL) {
+	if (recv_decache(precv_frame, bretry, &psta->sta_recvpriv.rxcache) ==
+	    _FAIL) {
 		ret = _FAIL;
 		goto exit;
 	}
 
 	if (pattrib->privacy) {
-		GET_ENCRY_ALGO(psecuritypriv, psta, pattrib->encrypt, is_multicast_ether_addr(pattrib->ra));
+		GET_ENCRY_ALGO(psecuritypriv, psta, pattrib->encrypt,
+			       is_multicast_ether_addr(pattrib->ra));
 
-		SET_ICE_IV_LEN(pattrib->iv_len, pattrib->icv_len, pattrib->encrypt);
+		SET_ICE_IV_LEN(pattrib->iv_len, pattrib->icv_len,
+			       pattrib->encrypt);
 	} else {
 		pattrib->encrypt = 0;
 		pattrib->iv_len = pattrib->icv_len = 0;
@@ -1363,7 +1442,8 @@ static signed int validate_recv_data_frame(struct adapter *adapter, union recv_f
 	return ret;
 }
 
-static signed int validate_80211w_mgmt(struct adapter *adapter, union recv_frame *precv_frame)
+static signed int validate_80211w_mgmt(struct adapter *adapter,
+				       union recv_frame *precv_frame)
 {
 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
 	struct rx_pkt_attrib *pattrib = &precv_frame->u.hdr.attrib;
@@ -1373,11 +1453,14 @@ static signed int validate_80211w_mgmt(struct adapter *adapter, union recv_frame
 	subtype = GetFrameSubType(ptr); /* bit(7)~bit(2) */
 
 	/* only support station mode */
-	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE) && check_fwstate(pmlmepriv, _FW_LINKED) &&
+	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE) &&
+	    check_fwstate(pmlmepriv, _FW_LINKED) &&
 	    adapter->securitypriv.binstallBIPkey) {
 		/* unicast management frame decrypt */
-		if (pattrib->privacy && !(is_multicast_ether_addr(GetAddr1Ptr(ptr))) &&
-			(subtype == WIFI_DEAUTH || subtype == WIFI_DISASSOC || subtype == WIFI_ACTION)) {
+		if (pattrib->privacy &&
+		    !(is_multicast_ether_addr(GetAddr1Ptr(ptr))) &&
+		    (subtype == WIFI_DEAUTH || subtype == WIFI_DISASSOC ||
+		     subtype == WIFI_ACTION)) {
 			u8 *mgmt_DATA;
 			u32 data_len = 0;
 
@@ -1385,26 +1468,32 @@ static signed int validate_80211w_mgmt(struct adapter *adapter, union recv_frame
 			pattrib->encrypt = _AES_;
 			pattrib->hdrlen = sizeof(struct ieee80211_hdr_3addr);
 			/* set iv and icv length */
-			SET_ICE_IV_LEN(pattrib->iv_len, pattrib->icv_len, pattrib->encrypt);
+			SET_ICE_IV_LEN(pattrib->iv_len, pattrib->icv_len,
+				       pattrib->encrypt);
 			memcpy(pattrib->ra, GetAddr1Ptr(ptr), ETH_ALEN);
 			memcpy(pattrib->ta, GetAddr2Ptr(ptr), ETH_ALEN);
 			/* actual management data frame body */
-			data_len = pattrib->pkt_len - pattrib->hdrlen - pattrib->iv_len - pattrib->icv_len;
+			data_len = pattrib->pkt_len - pattrib->hdrlen -
+				   pattrib->iv_len - pattrib->icv_len;
 			mgmt_DATA = kzalloc(data_len, GFP_ATOMIC);
 			if (!mgmt_DATA)
 				goto validate_80211w_fail;
 			precv_frame = decryptor(adapter, precv_frame);
 			/* save actual management data frame body */
-			memcpy(mgmt_DATA, ptr + pattrib->hdrlen + pattrib->iv_len, data_len);
+			memcpy(mgmt_DATA,
+			       ptr + pattrib->hdrlen + pattrib->iv_len,
+			       data_len);
 			/* overwrite the iv field */
 			memcpy(ptr + pattrib->hdrlen, mgmt_DATA, data_len);
 			/* remove the iv and icv length */
-			pattrib->pkt_len = pattrib->pkt_len - pattrib->iv_len - pattrib->icv_len;
+			pattrib->pkt_len = pattrib->pkt_len - pattrib->iv_len -
+					   pattrib->icv_len;
 			kfree(mgmt_DATA);
 			if (!precv_frame)
 				goto validate_80211w_fail;
 		} else if (is_multicast_ether_addr(GetAddr1Ptr(ptr)) &&
-			(subtype == WIFI_DEAUTH || subtype == WIFI_DISASSOC)) {
+			   (subtype == WIFI_DEAUTH ||
+			    subtype == WIFI_DISASSOC)) {
 			signed int BIP_ret = _SUCCESS;
 			/* verify BIP MME IE of broadcast/multicast de-auth/disassoc packet */
 			BIP_ret = rtw_BIP_verify(adapter, (u8 *)precv_frame);
@@ -1418,14 +1507,20 @@ static signed int validate_80211w_mgmt(struct adapter *adapter, union recv_frame
 		} else { /* 802.11w protect */
 			if (subtype == WIFI_ACTION) {
 				/* according 802.11-2012 standard, these five types are not robust types */
-				if (ptr[WLAN_HDR_A3_LEN] != RTW_WLAN_CATEGORY_PUBLIC          &&
-					ptr[WLAN_HDR_A3_LEN] != RTW_WLAN_CATEGORY_HT              &&
-					ptr[WLAN_HDR_A3_LEN] != RTW_WLAN_CATEGORY_UNPROTECTED_WNM &&
-					ptr[WLAN_HDR_A3_LEN] != RTW_WLAN_CATEGORY_SELF_PROTECTED  &&
-					ptr[WLAN_HDR_A3_LEN] != RTW_WLAN_CATEGORY_P2P) {
+				if (ptr[WLAN_HDR_A3_LEN] !=
+					    RTW_WLAN_CATEGORY_PUBLIC &&
+				    ptr[WLAN_HDR_A3_LEN] !=
+					    RTW_WLAN_CATEGORY_HT &&
+				    ptr[WLAN_HDR_A3_LEN] !=
+					    RTW_WLAN_CATEGORY_UNPROTECTED_WNM &&
+				    ptr[WLAN_HDR_A3_LEN] !=
+					    RTW_WLAN_CATEGORY_SELF_PROTECTED &&
+				    ptr[WLAN_HDR_A3_LEN] !=
+					    RTW_WLAN_CATEGORY_P2P) {
 					goto validate_80211w_fail;
 				}
-			} else if (subtype == WIFI_DEAUTH || subtype == WIFI_DISASSOC) {
+			} else if (subtype == WIFI_DEAUTH ||
+				   subtype == WIFI_DISASSOC) {
 				/* issue sa query request */
 				issue_action_SA_Query(adapter, NULL, 0, 0);
 				goto validate_80211w_fail;
@@ -1438,7 +1533,8 @@ static signed int validate_80211w_mgmt(struct adapter *adapter, union recv_frame
 	return _FAIL;
 }
 
-static signed int validate_recv_frame(struct adapter *adapter, union recv_frame *precv_frame)
+static signed int validate_recv_frame(struct adapter *adapter,
+				      union recv_frame *precv_frame)
 {
 	/* shall check frame subtype, to / from ds, da, bssid */
 
@@ -1452,7 +1548,7 @@ static signed int validate_recv_frame(struct adapter *adapter, union recv_frame
 	struct rx_pkt_attrib *pattrib = &precv_frame->u.hdr.attrib;
 
 	u8 *ptr = precv_frame->u.hdr.rx_data;
-	u8  ver = (unsigned char) (*ptr) & 0x3;
+	u8 ver = (unsigned char)(*ptr) & 0x3;
 
 	/* add version chk */
 	if (ver != 0) {
@@ -1460,7 +1556,7 @@ static signed int validate_recv_frame(struct adapter *adapter, union recv_frame
 		goto exit;
 	}
 
-	type =  GetFrameType(ptr);
+	type = GetFrameType(ptr);
 	subtype = GetFrameSubType(ptr); /* bit(7)~bit(2) */
 
 	pattrib->to_fr_ds = get_tofr_ds(ptr);
@@ -1510,13 +1606,13 @@ static signed int validate_recv_frame(struct adapter *adapter, union recv_frame
 /* remove the wlanhdr and add the eth_hdr */
 static signed int wlanhdr_to_ethhdr(union recv_frame *precvframe)
 {
-	signed int	rmv_len;
+	signed int rmv_len;
 	u16 eth_type, len;
 	u8 bsnaphdr;
 	u8 *psnap_type;
-	struct ieee80211_snap_hdr	*psnap;
+	struct ieee80211_snap_hdr *psnap;
 	__be16 be_tmp;
-	struct adapter			*adapter = precvframe->u.hdr.adapter;
+	struct adapter *adapter = precvframe->u.hdr.adapter;
 	struct mlme_priv *pmlmepriv = &adapter->mlmepriv;
 	u8 *ptr = precvframe->u.hdr.rx_data; /*  point to frame_ctrl field */
 	struct rx_pkt_attrib *pattrib = &precvframe->u.hdr.attrib;
@@ -1524,15 +1620,16 @@ static signed int wlanhdr_to_ethhdr(union recv_frame *precvframe)
 	if (pattrib->encrypt)
 		recvframe_pull_tail(precvframe, pattrib->icv_len);
 
-	psnap = (struct ieee80211_snap_hdr	*)(ptr + pattrib->hdrlen + pattrib->iv_len);
+	psnap = (struct ieee80211_snap_hdr *)(ptr + pattrib->hdrlen +
+					      pattrib->iv_len);
 	psnap_type = ptr + pattrib->hdrlen + pattrib->iv_len + SNAP_SIZE;
 	/* convert hdr + possible LLC headers into Ethernet header */
 	/* eth_type = (psnap_type[0] << 8) | psnap_type[1]; */
 	if ((!memcmp(psnap, rfc1042_header, SNAP_SIZE) &&
-		(memcmp(psnap_type, SNAP_ETH_TYPE_IPX, 2)) &&
-		(memcmp(psnap_type, SNAP_ETH_TYPE_APPLETALK_AARP, 2))) ||
-		/* eth_type != ETH_P_AARP && eth_type != ETH_P_IPX) || */
-		 !memcmp(psnap, bridge_tunnel_header, SNAP_SIZE)) {
+	     (memcmp(psnap_type, SNAP_ETH_TYPE_IPX, 2)) &&
+	     (memcmp(psnap_type, SNAP_ETH_TYPE_APPLETALK_AARP, 2))) ||
+	    /* eth_type != ETH_P_AARP && eth_type != ETH_P_IPX) || */
+	    !memcmp(psnap, bridge_tunnel_header, SNAP_SIZE)) {
 		/* remove RFC1042 or Bridge-Tunnel encapsulation and replace EtherType */
 		bsnaphdr = true;
 	} else {
@@ -1540,7 +1637,8 @@ static signed int wlanhdr_to_ethhdr(union recv_frame *precvframe)
 		bsnaphdr = false;
 	}
 
-	rmv_len = pattrib->hdrlen + pattrib->iv_len + (bsnaphdr ? SNAP_SIZE : 0);
+	rmv_len =
+		pattrib->hdrlen + pattrib->iv_len + (bsnaphdr ? SNAP_SIZE : 0);
 	len = precvframe->u.hdr.len - rmv_len;
 
 	memcpy(&be_tmp, ptr + rmv_len, 2);
@@ -1554,13 +1652,16 @@ static signed int wlanhdr_to_ethhdr(union recv_frame *precvframe)
 
 		eth_type = 0x8712;
 		/*  append rx status for mp test packets */
-		ptr = recvframe_pull(precvframe, (rmv_len - sizeof(struct ethhdr) + 2) - 24);
+		ptr = recvframe_pull(
+			precvframe, (rmv_len - sizeof(struct ethhdr) + 2) - 24);
 		if (!ptr)
 			return _FAIL;
 		memcpy(ptr, get_rxmem(precvframe), 24);
 		ptr += 24;
 	} else {
-		ptr = recvframe_pull(precvframe, (rmv_len - sizeof(struct ethhdr) + (bsnaphdr ? 2 : 0)));
+		ptr = recvframe_pull(
+			precvframe,
+			(rmv_len - sizeof(struct ethhdr) + (bsnaphdr ? 2 : 0)));
 		if (!ptr)
 			return _FAIL;
 	}
@@ -1576,7 +1677,8 @@ static signed int wlanhdr_to_ethhdr(union recv_frame *precvframe)
 	return _SUCCESS;
 }
 
-static struct sk_buff *rtw_alloc_msdu_pkt(union recv_frame *prframe, u16 nSubframe_Length, u8 *pdata)
+static struct sk_buff *rtw_alloc_msdu_pkt(union recv_frame *prframe,
+					  u16 nSubframe_Length, u8 *pdata)
 {
 	u16 eth_type;
 	struct sk_buff *sub_skb;
@@ -1594,9 +1696,9 @@ static struct sk_buff *rtw_alloc_msdu_pkt(union recv_frame *prframe, u16 nSubfra
 	eth_type = get_unaligned_be16(&sub_skb->data[6]);
 
 	if (sub_skb->len >= 8 &&
-		((!memcmp(sub_skb->data, rfc1042_header, SNAP_SIZE) &&
-		eth_type != ETH_P_AARP && eth_type != ETH_P_IPX) ||
-		!memcmp(sub_skb->data, bridge_tunnel_header, SNAP_SIZE))) {
+	    ((!memcmp(sub_skb->data, rfc1042_header, SNAP_SIZE) &&
+	      eth_type != ETH_P_AARP && eth_type != ETH_P_IPX) ||
+	     !memcmp(sub_skb->data, bridge_tunnel_header, SNAP_SIZE))) {
 		/*
 		 * remove RFC1042 or Bridge-Tunnel encapsulation and replace
 		 * EtherType
@@ -1616,7 +1718,8 @@ static struct sk_buff *rtw_alloc_msdu_pkt(union recv_frame *prframe, u16 nSubfra
 	return sub_skb;
 }
 
-static void rtw_recv_indicate_pkt(struct adapter *padapter, struct sk_buff *pkt, struct rx_pkt_attrib *pattrib)
+static void rtw_recv_indicate_pkt(struct adapter *padapter, struct sk_buff *pkt,
+				  struct rx_pkt_attrib *pattrib)
 {
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 
@@ -1628,19 +1731,25 @@ static void rtw_recv_indicate_pkt(struct adapter *padapter, struct sk_buff *pkt,
 			struct sta_priv *pstapriv = &padapter->stapriv;
 			int bmcast = is_multicast_ether_addr(pattrib->dst);
 
-			if (memcmp(pattrib->dst, myid(&padapter->eeprompriv), ETH_ALEN)) {
+			if (memcmp(pattrib->dst, myid(&padapter->eeprompriv),
+				   ETH_ALEN)) {
 				if (bmcast) {
 					psta = rtw_get_bcmc_stainfo(padapter);
 					pskb2 = skb_clone(pkt, GFP_ATOMIC);
 				} else {
-					psta = rtw_get_stainfo(pstapriv, pattrib->dst);
+					psta = rtw_get_stainfo(pstapriv,
+							       pattrib->dst);
 				}
 
 				if (psta) {
-					struct net_device *pnetdev = (struct net_device *)padapter->pnetdev;
+					struct net_device *pnetdev =
+						(struct net_device *)
+							padapter->pnetdev;
 					/* skb->ip_summed = CHECKSUM_NONE; */
 					pkt->dev = pnetdev;
-					skb_set_queue_mapping(pkt, rtw_recv_select_queue(pkt));
+					skb_set_queue_mapping(
+						pkt,
+						rtw_recv_select_queue(pkt));
 
 					_rtw_xmit_entry(pkt, pnetdev);
 
@@ -1665,7 +1774,7 @@ static void rtw_recv_indicate_pkt(struct adapter *padapter, struct sk_buff *pkt,
 
 static int amsdu_to_msdu(struct adapter *padapter, union recv_frame *prframe)
 {
-	int	a_len, padding_len;
+	int a_len, padding_len;
 	u16 nSubframe_Length;
 	u8 nr_subframes, i;
 	u8 *pdata;
@@ -1707,7 +1816,8 @@ static int amsdu_to_msdu(struct adapter *padapter, union recv_frame *prframe)
 		pdata += nSubframe_Length;
 		a_len -= nSubframe_Length;
 		if (a_len != 0) {
-			padding_len = 4 - ((nSubframe_Length + ETH_HLEN) & (4 - 1));
+			padding_len =
+				4 - ((nSubframe_Length + ETH_HLEN) & (4 - 1));
 			if (padding_len == 4)
 				padding_len = 0;
 
@@ -1724,16 +1834,19 @@ static int amsdu_to_msdu(struct adapter *padapter, union recv_frame *prframe)
 
 		/* Indicate the packets to upper layer */
 		if (sub_pkt)
-			rtw_recv_indicate_pkt(padapter, sub_pkt, &prframe->u.hdr.attrib);
+			rtw_recv_indicate_pkt(padapter, sub_pkt,
+					      &prframe->u.hdr.attrib);
 	}
 
 	prframe->u.hdr.len = 0;
-	rtw_free_recvframe(prframe, pfree_recv_queue);/* free this recv_frame */
+	rtw_free_recvframe(prframe,
+			   pfree_recv_queue); /* free this recv_frame */
 
-	return  _SUCCESS;
+	return _SUCCESS;
 }
 
-static int check_indicate_seq(struct recv_reorder_ctrl *preorder_ctrl, u16 seq_num)
+static int check_indicate_seq(struct recv_reorder_ctrl *preorder_ctrl,
+			      u16 seq_num)
 {
 	u8 wsize = preorder_ctrl->wsize_b;
 	u16 wend = (preorder_ctrl->indicate_seq + wsize - 1) % 4096u;
@@ -1752,24 +1865,28 @@ static int check_indicate_seq(struct recv_reorder_ctrl *preorder_ctrl, u16 seq_n
 	/*  2. Incoming SeqNum is larger than the WinEnd => Window shift N */
 	/*  */
 	if (SN_EQUAL(seq_num, preorder_ctrl->indicate_seq)) {
-		preorder_ctrl->indicate_seq = (preorder_ctrl->indicate_seq + 1) % 4096u;
+		preorder_ctrl->indicate_seq =
+			(preorder_ctrl->indicate_seq + 1) % 4096u;
 
 	} else if (SN_LESS(wend, seq_num)) {
 		/*  boundary situation, when seq_num cross 0xFFF */
 		if (seq_num >= (wsize - 1))
 			preorder_ctrl->indicate_seq = seq_num + 1 - wsize;
 		else
-			preorder_ctrl->indicate_seq = 0xFFF - (wsize - (seq_num + 1)) + 1;
+			preorder_ctrl->indicate_seq =
+				0xFFF - (wsize - (seq_num + 1)) + 1;
 	}
 
 	return true;
 }
 
-static int enqueue_reorder_recvframe(struct recv_reorder_ctrl *preorder_ctrl, union recv_frame *prframe)
+static int enqueue_reorder_recvframe(struct recv_reorder_ctrl *preorder_ctrl,
+				     union recv_frame *prframe)
 {
 	struct rx_pkt_attrib *pattrib = &prframe->u.hdr.attrib;
-	struct __queue *ppending_recvframe_queue = &preorder_ctrl->pending_recvframe_queue;
-	struct list_head	*phead, *plist;
+	struct __queue *ppending_recvframe_queue =
+		&preorder_ctrl->pending_recvframe_queue;
+	struct list_head *phead, *plist;
 	union recv_frame *pnextrframe;
 	struct rx_pkt_attrib *pnextattrib;
 
@@ -1806,10 +1923,11 @@ static int enqueue_reorder_recvframe(struct recv_reorder_ctrl *preorder_ctrl, un
 	return true;
 }
 
-static int rtw_recv_indicatepkt(struct adapter *padapter, union recv_frame *precv_frame)
+static int rtw_recv_indicatepkt(struct adapter *padapter,
+				union recv_frame *precv_frame)
 {
 	struct recv_priv *precvpriv;
-	struct __queue	*pfree_recv_queue;
+	struct __queue *pfree_recv_queue;
 	struct sk_buff *skb;
 	struct rx_pkt_attrib *pattrib = &precv_frame->u.hdr.attrib;
 
@@ -1843,20 +1961,23 @@ static int rtw_recv_indicatepkt(struct adapter *padapter, union recv_frame *prec
 	return _FAIL;
 }
 
-static int recv_indicatepkts_in_order(struct adapter *padapter, struct recv_reorder_ctrl *preorder_ctrl, int bforced)
+static int recv_indicatepkts_in_order(struct adapter *padapter,
+				      struct recv_reorder_ctrl *preorder_ctrl,
+				      int bforced)
 {
-	struct list_head	*phead, *plist;
+	struct list_head *phead, *plist;
 	union recv_frame *prframe;
 	struct rx_pkt_attrib *pattrib;
 	/* u8 index = 0; */
 	int bPktInBuf = false;
 	struct recv_priv *precvpriv = &padapter->recvpriv;
-	struct __queue *ppending_recvframe_queue = &preorder_ctrl->pending_recvframe_queue;
+	struct __queue *ppending_recvframe_queue =
+		&preorder_ctrl->pending_recvframe_queue;
 
 	/* spin_lock_irqsave(&ppending_recvframe_queue->lock, irql); */
 	/* spin_lock(&ppending_recvframe_queue->lock); */
 
-	phead =		get_list_head(ppending_recvframe_queue);
+	phead = get_list_head(ppending_recvframe_queue);
 	plist = get_next(phead);
 
 	/*  Handling some condition for forced indicate case. */
@@ -1883,8 +2004,11 @@ static int recv_indicatepkts_in_order(struct adapter *padapter, struct recv_reor
 			plist = get_next(plist);
 			list_del_init(&(prframe->u.hdr.list));
 
-			if (SN_EQUAL(preorder_ctrl->indicate_seq, pattrib->seq_num))
-				preorder_ctrl->indicate_seq = (preorder_ctrl->indicate_seq + 1) % 4096u;
+			if (SN_EQUAL(preorder_ctrl->indicate_seq,
+				     pattrib->seq_num))
+				preorder_ctrl->indicate_seq =
+					(preorder_ctrl->indicate_seq + 1) %
+					4096u;
 
 			/* Set this as a lock to make sure that only one thread is indicating packet. */
 			/* pTS->RxIndicateState = RXTS_INDICATE_PROCESSING; */
@@ -1895,11 +2019,16 @@ static int recv_indicatepkts_in_order(struct adapter *padapter, struct recv_reor
 			if (!pattrib->amsdu) {
 				if (!padapter->bDriverStopped &&
 				    !padapter->bSurpriseRemoved)
-					rtw_recv_indicatepkt(padapter, prframe);/* indicate this recv_frame */
+					rtw_recv_indicatepkt(
+						padapter,
+						prframe); /* indicate this recv_frame */
 
 			} else if (pattrib->amsdu == 1) {
-				if (amsdu_to_msdu(padapter, prframe) != _SUCCESS)
-					rtw_free_recvframe(prframe, &precvpriv->free_recv_queue);
+				if (amsdu_to_msdu(padapter, prframe) !=
+				    _SUCCESS)
+					rtw_free_recvframe(
+						prframe,
+						&precvpriv->free_recv_queue);
 
 			} else {
 				/* error condition; */
@@ -1920,12 +2049,14 @@ static int recv_indicatepkts_in_order(struct adapter *padapter, struct recv_reor
 	return bPktInBuf;
 }
 
-static int recv_indicatepkt_reorder(struct adapter *padapter, union recv_frame *prframe)
+static int recv_indicatepkt_reorder(struct adapter *padapter,
+				    union recv_frame *prframe)
 {
 	int retval = _SUCCESS;
 	struct rx_pkt_attrib *pattrib = &prframe->u.hdr.attrib;
 	struct recv_reorder_ctrl *preorder_ctrl = prframe->u.hdr.preorder_ctrl;
-	struct __queue *ppending_recvframe_queue = &preorder_ctrl->pending_recvframe_queue;
+	struct __queue *ppending_recvframe_queue =
+		&preorder_ctrl->pending_recvframe_queue;
 
 	if (!pattrib->amsdu) {
 		/* s1. */
@@ -1947,17 +2078,20 @@ static int recv_indicatepkt_reorder(struct adapter *padapter, union recv_frame *
 
 			rtw_recv_indicatepkt(padapter, prframe);
 
-			preorder_ctrl->indicate_seq = (preorder_ctrl->indicate_seq + 1) % 4096;
+			preorder_ctrl->indicate_seq =
+				(preorder_ctrl->indicate_seq + 1) % 4096;
 
 			return _SUCCESS;
 		}
-	} else if (pattrib->amsdu == 1) { /* temp filter -> means didn't support A-MSDUs in a A-MPDU */
+	} else if (pattrib->amsdu ==
+		   1) { /* temp filter -> means didn't support A-MSDUs in a A-MPDU */
 		if (!preorder_ctrl->enable) {
 			preorder_ctrl->indicate_seq = pattrib->seq_num;
 
 			retval = amsdu_to_msdu(padapter, prframe);
 
-			preorder_ctrl->indicate_seq = (preorder_ctrl->indicate_seq + 1) % 4096;
+			preorder_ctrl->indicate_seq =
+				(preorder_ctrl->indicate_seq + 1) % 4096;
 
 			return retval;
 		}
@@ -1988,7 +2122,8 @@ static int recv_indicatepkt_reorder(struct adapter *padapter, union recv_frame *
 
 	/* recv_indicatepkts_in_order(padapter, preorder_ctrl, true); */
 	if (recv_indicatepkts_in_order(padapter, preorder_ctrl, false)) {
-		_set_timer(&preorder_ctrl->reordering_ctrl_timer, REORDER_WAIT_TIME);
+		_set_timer(&preorder_ctrl->reordering_ctrl_timer,
+			   REORDER_WAIT_TIME);
 		spin_unlock_bh(&ppending_recvframe_queue->lock);
 	} else {
 		spin_unlock_bh(&ppending_recvframe_queue->lock);
@@ -2008,7 +2143,8 @@ void rtw_reordering_ctrl_timeout_handler(struct timer_list *t)
 	struct recv_reorder_ctrl *preorder_ctrl =
 		timer_container_of(preorder_ctrl, t, reordering_ctrl_timer);
 	struct adapter *padapter = preorder_ctrl->padapter;
-	struct __queue *ppending_recvframe_queue = &preorder_ctrl->pending_recvframe_queue;
+	struct __queue *ppending_recvframe_queue =
+		&preorder_ctrl->pending_recvframe_queue;
 
 	if (padapter->bDriverStopped || padapter->bSurpriseRemoved)
 		return;
@@ -2016,12 +2152,14 @@ void rtw_reordering_ctrl_timeout_handler(struct timer_list *t)
 	spin_lock_bh(&ppending_recvframe_queue->lock);
 
 	if (recv_indicatepkts_in_order(padapter, preorder_ctrl, true))
-		_set_timer(&preorder_ctrl->reordering_ctrl_timer, REORDER_WAIT_TIME);
+		_set_timer(&preorder_ctrl->reordering_ctrl_timer,
+			   REORDER_WAIT_TIME);
 
 	spin_unlock_bh(&ppending_recvframe_queue->lock);
 }
 
-static int process_recv_indicatepkts(struct adapter *padapter, union recv_frame *prframe)
+static int process_recv_indicatepkts(struct adapter *padapter,
+				     union recv_frame *prframe)
 {
 	int retval = _SUCCESS;
 	/* struct recv_priv *precvpriv = &padapter->recvpriv; */
@@ -2032,7 +2170,8 @@ static int process_recv_indicatepkts(struct adapter *padapter, union recv_frame
 	if (phtpriv->ht_option) { /* B/G/N Mode */
 		/* prframe->u.hdr.preorder_ctrl = &precvpriv->recvreorder_ctrl[pattrib->priority]; */
 
-		if (recv_indicatepkt_reorder(padapter, prframe) != _SUCCESS) { /*  including perform A-MPDU Rx Ordering Buffer Control */
+		if (recv_indicatepkt_reorder(padapter, prframe) !=
+		    _SUCCESS) { /*  including perform A-MPDU Rx Ordering Buffer Control */
 
 			if (!padapter->bDriverStopped &&
 			    !padapter->bSurpriseRemoved) {
@@ -2057,7 +2196,8 @@ static int process_recv_indicatepkts(struct adapter *padapter, union recv_frame
 	return retval;
 }
 
-static int recv_func_prehandle(struct adapter *padapter, union recv_frame *rframe)
+static int recv_func_prehandle(struct adapter *padapter,
+			       union recv_frame *rframe)
 {
 	int ret = _SUCCESS;
 	struct __queue *pfree_recv_queue = &padapter->recvpriv.free_recv_queue;
@@ -2065,7 +2205,8 @@ static int recv_func_prehandle(struct adapter *padapter, union recv_frame *rfram
 	/* check the frame crtl field and decache */
 	ret = validate_recv_frame(padapter, rframe);
 	if (ret != _SUCCESS) {
-		rtw_free_recvframe(rframe, pfree_recv_queue);/* free this recv_frame */
+		rtw_free_recvframe(rframe,
+				   pfree_recv_queue); /* free this recv_frame */
 		goto exit;
 	}
 
@@ -2073,7 +2214,8 @@ static int recv_func_prehandle(struct adapter *padapter, union recv_frame *rfram
 	return ret;
 }
 
-static int recv_func_posthandle(struct adapter *padapter, union recv_frame *prframe)
+static int recv_func_posthandle(struct adapter *padapter,
+				union recv_frame *prframe)
 {
 	int ret = _SUCCESS;
 	union recv_frame *orig_prframe = prframe;
@@ -2100,7 +2242,8 @@ static int recv_func_posthandle(struct adapter *padapter, union recv_frame *prfr
 
 	ret = process_recv_indicatepkts(padapter, prframe);
 	if (ret != _SUCCESS) {
-		rtw_free_recvframe(orig_prframe, pfree_recv_queue);/* free this recv_frame */
+		rtw_free_recvframe(orig_prframe,
+				   pfree_recv_queue); /* free this recv_frame */
 		goto _recv_data_drop;
 	}
 
@@ -2118,10 +2261,12 @@ static int recv_func(struct adapter *padapter, union recv_frame *rframe)
 	struct mlme_priv *mlmepriv = &padapter->mlmepriv;
 
 	/* check if need to handle uc_swdec_pending_queue*/
-	if (check_fwstate(mlmepriv, WIFI_STATION_STATE) && psecuritypriv->busetkipkey) {
+	if (check_fwstate(mlmepriv, WIFI_STATION_STATE) &&
+	    psecuritypriv->busetkipkey) {
 		union recv_frame *pending_frame;
 
-		while ((pending_frame = rtw_alloc_recvframe(&padapter->recvpriv.uc_swdec_pending_queue)))
+		while ((pending_frame = rtw_alloc_recvframe(
+				&padapter->recvpriv.uc_swdec_pending_queue)))
 			recv_func_posthandle(padapter, pending_frame);
 	}
 
@@ -2135,11 +2280,15 @@ static int recv_func(struct adapter *padapter, union recv_frame *rframe)
 		    (prxattrib->bdecrypted == 0 || psecuritypriv->sw_decrypt) &&
 		    psecuritypriv->ndisauthtype == Ndis802_11AuthModeWPAPSK &&
 		    !psecuritypriv->busetkipkey) {
-			rtw_enqueue_recvframe(rframe, &padapter->recvpriv.uc_swdec_pending_queue);
+			rtw_enqueue_recvframe(
+				rframe,
+				&padapter->recvpriv.uc_swdec_pending_queue);
 
 			if (recvpriv->free_recvframe_cnt < NR_RECVFRAME / 4) {
 				/* to prevent from recvframe starvation, get recvframe from uc_swdec_pending_queue to free_recvframe_cnt  */
-				rframe = rtw_alloc_recvframe(&padapter->recvpriv.uc_swdec_pending_queue);
+				rframe = rtw_alloc_recvframe(
+					&padapter->recvpriv
+						 .uc_swdec_pending_queue);
 				if (rframe)
 					goto do_posthandle;
 			}
@@ -2188,21 +2337,28 @@ static void rtw_signal_stat_timer_hdl(struct timer_list *t)
 	u8 avg_signal_qual = 0;
 	u32 num_signal_strength = 0;
 	u32 __maybe_unused num_signal_qual = 0;
-	u8 _alpha = 5; /*  this value is based on converging_constant = 5000 and sampling_interval = 1000 */
+	u8 _alpha =
+		5; /*  this value is based on converging_constant = 5000 and sampling_interval = 1000 */
 
 	if (adapter->recvpriv.is_signal_dbg) {
 		/* update the user specific value, signal_strength_dbg, to signal_strength, rssi */
-		adapter->recvpriv.signal_strength = adapter->recvpriv.signal_strength_dbg;
-		adapter->recvpriv.rssi = (s8)translate_percentage_to_dbm((u8)adapter->recvpriv.signal_strength_dbg);
+		adapter->recvpriv.signal_strength =
+			adapter->recvpriv.signal_strength_dbg;
+		adapter->recvpriv.rssi = (s8)translate_percentage_to_dbm(
+			(u8)adapter->recvpriv.signal_strength_dbg);
 	} else {
-		if (recvpriv->signal_strength_data.update_req == 0) {/*  update_req is clear, means we got rx */
-			avg_signal_strength = recvpriv->signal_strength_data.avg_val;
-			num_signal_strength = recvpriv->signal_strength_data.total_num;
+		if (recvpriv->signal_strength_data.update_req ==
+		    0) { /*  update_req is clear, means we got rx */
+			avg_signal_strength =
+				recvpriv->signal_strength_data.avg_val;
+			num_signal_strength =
+				recvpriv->signal_strength_data.total_num;
 			/*  after avg_vals are acquired, we can re-stat the signal values */
 			recvpriv->signal_strength_data.update_req = 1;
 		}
 
-		if (recvpriv->signal_qual_data.update_req == 0) {/*  update_req is clear, means we got rx */
+		if (recvpriv->signal_qual_data.update_req ==
+		    0) { /*  update_req is clear, means we got rx */
 			avg_signal_qual = recvpriv->signal_qual_data.avg_val;
 			num_signal_qual = recvpriv->signal_qual_data.total_num;
 			/*  after avg_vals are acquired, we can re-stat the signal values */
@@ -2211,20 +2367,22 @@ static void rtw_signal_stat_timer_hdl(struct timer_list *t)
 
 		if (num_signal_strength == 0) {
 			if (rtw_get_on_cur_ch_time(adapter) == 0 ||
-			    jiffies_to_msecs(jiffies - rtw_get_on_cur_ch_time(adapter)) < 2 * adapter->mlmeextpriv.mlmext_info.bcn_interval
-			) {
+			    jiffies_to_msecs(jiffies -
+					     rtw_get_on_cur_ch_time(adapter)) <
+				    2 * adapter->mlmeextpriv.mlmext_info
+						    .bcn_interval) {
 				goto set_timer;
 			}
 		}
 
 		if (check_fwstate(&adapter->mlmepriv, _FW_UNDER_SURVEY) ||
-		    !check_fwstate(&adapter->mlmepriv, _FW_LINKED)
-		) {
+		    !check_fwstate(&adapter->mlmepriv, _FW_LINKED)) {
 			goto set_timer;
 		}
 
 		/* update value of signal_strength, rssi, signal_qual */
-		tmp_s = (avg_signal_strength + (_alpha - 1) * recvpriv->signal_strength);
+		tmp_s = (avg_signal_strength +
+			 (_alpha - 1) * recvpriv->signal_strength);
 		if (tmp_s % _alpha)
 			tmp_s = tmp_s / _alpha + 1;
 		else
@@ -2232,7 +2390,8 @@ static void rtw_signal_stat_timer_hdl(struct timer_list *t)
 		if (tmp_s > 100)
 			tmp_s = 100;
 
-		tmp_q = (avg_signal_qual + (_alpha - 1) * recvpriv->signal_qual);
+		tmp_q = (avg_signal_qual +
+			 (_alpha - 1) * recvpriv->signal_qual);
 		if (tmp_q % _alpha)
 			tmp_q = tmp_q / _alpha + 1;
 		else
diff --git a/drivers/staging/rtl8723bs/core/rtw_security.c b/drivers/staging/rtl8723bs/core/rtw_security.c
index 0cfd7734c1749..5dad30f6b86a1 100644
--- a/drivers/staging/rtl8723bs/core/rtw_security.c
+++ b/drivers/staging/rtl8723bs/core/rtw_security.c
@@ -10,16 +10,9 @@
 #include <crypto/aes.h>
 #include <crypto/utils.h>
 
-static const char * const _security_type_str[] = {
-	"N/A",
-	"WEP40",
-	"TKIP",
-	"TKIP_WM",
-	"AES",
-	"WEP104",
-	"SMS4",
-	"WEP_WPA",
-	"BIP",
+static const char *const _security_type_str[] = {
+	"N/A",	  "WEP40", "TKIP",    "TKIP_WM", "AES",
+	"WEP104", "SMS4",  "WEP_WPA", "BIP",
 };
 
 const char *security_type_str(u8 value)
@@ -33,16 +26,16 @@ const char *security_type_str(u8 value)
 
 /* Need to consider the fragment  situation */
 void rtw_wep_encrypt(struct adapter *padapter, u8 *pxmitframe)
-{																	/*  exclude ICV */
+{ /*  exclude ICV */
 	union {
 		__le32 f0;
 		unsigned char f1[4];
 	} crc;
 
-	signed int	curfragnum, length;
+	signed int curfragnum, length;
 	u32 keylength;
 
-	u8 *pframe, *payload, *iv;    /* wepkey */
+	u8 *pframe, *payload, *iv; /* wepkey */
 	u8 wepkey[16];
 	u8 hw_hdr_offset = 0;
 	struct pkt_attrib *pattrib = &((struct xmit_frame *)pxmitframe)->attrib;
@@ -58,27 +51,41 @@ void rtw_wep_encrypt(struct adapter *padapter, u8 *pxmitframe)
 
 	/* start to encrypt each fragment */
 	if ((pattrib->encrypt == _WEP40_) || (pattrib->encrypt == _WEP104_)) {
-		keylength = psecuritypriv->dot11DefKeylen[psecuritypriv->dot11PrivacyKeyIndex];
+		keylength = psecuritypriv->dot11DefKeylen
+				    [psecuritypriv->dot11PrivacyKeyIndex];
 
-		for (curfragnum = 0; curfragnum < pattrib->nr_frags; curfragnum++) {
+		for (curfragnum = 0; curfragnum < pattrib->nr_frags;
+		     curfragnum++) {
 			iv = pframe + pattrib->hdrlen;
 			memcpy(&wepkey[0], iv, 3);
-			memcpy(&wepkey[3], &psecuritypriv->dot11DefKey[psecuritypriv->dot11PrivacyKeyIndex].skey[0], keylength);
+			memcpy(&wepkey[3],
+			       &psecuritypriv
+					->dot11DefKey
+						[psecuritypriv
+							 ->dot11PrivacyKeyIndex]
+					.skey[0],
+			       keylength);
 			payload = pframe + pattrib->iv_len + pattrib->hdrlen;
 
-			if ((curfragnum + 1) == pattrib->nr_frags) {	/* the last fragment */
+			if ((curfragnum + 1) ==
+			    pattrib->nr_frags) { /* the last fragment */
 
-				length = pattrib->last_txcmdsz - pattrib->hdrlen - pattrib->iv_len - pattrib->icv_len;
+				length = pattrib->last_txcmdsz -
+					 pattrib->hdrlen - pattrib->iv_len -
+					 pattrib->icv_len;
 
-				crc.f0 = cpu_to_le32(~crc32_le(~0, payload, length));
+				crc.f0 = cpu_to_le32(
+					~crc32_le(~0, payload, length));
 
 				arc4_setkey(ctx, wepkey, 3 + keylength);
 				arc4_crypt(ctx, payload, payload, length);
 				arc4_crypt(ctx, payload + length, crc.f1, 4);
 
 			} else {
-				length = pxmitpriv->frag_len - pattrib->hdrlen - pattrib->iv_len - pattrib->icv_len;
-				crc.f0 = cpu_to_le32(~crc32_le(~0, payload, length));
+				length = pxmitpriv->frag_len - pattrib->hdrlen -
+					 pattrib->iv_len - pattrib->icv_len;
+				crc.f0 = cpu_to_le32(
+					~crc32_le(~0, payload, length));
 				arc4_setkey(ctx, wepkey, 3 + keylength);
 				arc4_crypt(ctx, payload, payload, length);
 				arc4_crypt(ctx, payload + length, crc.f1, 4);
@@ -90,36 +97,42 @@ void rtw_wep_encrypt(struct adapter *padapter, u8 *pxmitframe)
 	}
 }
 
-void rtw_wep_decrypt(struct adapter  *padapter, u8 *precvframe)
+void rtw_wep_decrypt(struct adapter *padapter, u8 *precvframe)
 {
 	/*  exclude ICV */
 	u8 crc[4];
-	signed int	length;
+	signed int length;
 	u32 keylength;
 	u8 *pframe, *payload, *iv, wepkey[16];
-	u8  keyindex;
-	struct	rx_pkt_attrib	 *prxattrib = &(((union recv_frame *)precvframe)->u.hdr.attrib);
-	struct	security_priv *psecuritypriv = &padapter->securitypriv;
+	u8 keyindex;
+	struct rx_pkt_attrib *prxattrib =
+		&(((union recv_frame *)precvframe)->u.hdr.attrib);
+	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	struct arc4_ctx *ctx = &psecuritypriv->recv_arc4_ctx;
 
-	pframe = (unsigned char *)((union recv_frame *)precvframe)->u.hdr.rx_data;
+	pframe =
+		(unsigned char *)((union recv_frame *)precvframe)->u.hdr.rx_data;
 
 	/* start to decrypt recvframe */
-	if ((prxattrib->encrypt == _WEP40_) || (prxattrib->encrypt == _WEP104_)) {
+	if ((prxattrib->encrypt == _WEP40_) ||
+	    (prxattrib->encrypt == _WEP104_)) {
 		iv = pframe + prxattrib->hdrlen;
 		/* keyindex =(iv[3]&0x3); */
 		keyindex = prxattrib->key_index;
 		keylength = psecuritypriv->dot11DefKeylen[keyindex];
 		memcpy(&wepkey[0], iv, 3);
 		/* memcpy(&wepkey[3], &psecuritypriv->dot11DefKey[psecuritypriv->dot11PrivacyKeyIndex].skey[0], keylength); */
-		memcpy(&wepkey[3], &psecuritypriv->dot11DefKey[keyindex].skey[0], keylength);
-		length = ((union recv_frame *)precvframe)->u.hdr.len - prxattrib->hdrlen - prxattrib->iv_len;
+		memcpy(&wepkey[3],
+		       &psecuritypriv->dot11DefKey[keyindex].skey[0],
+		       keylength);
+		length = ((union recv_frame *)precvframe)->u.hdr.len -
+			 prxattrib->hdrlen - prxattrib->iv_len;
 
 		payload = pframe + prxattrib->iv_len + prxattrib->hdrlen;
 
 		/* decrypt payload include icv */
 		arc4_setkey(ctx, wepkey, 3 + keylength);
-		arc4_crypt(ctx, payload, payload,  length);
+		arc4_crypt(ctx, payload, payload, length);
 
 		/* calculate icv and compare the icv */
 		*((u32 *)crc) = ~crc32_le(~0, payload, length - 4);
@@ -130,7 +143,7 @@ void rtw_wep_decrypt(struct adapter  *padapter, u8 *precvframe)
 
 static void secmicclear(struct mic_data *pmicdata)
 {
-/*  Reset the state to the empty message. */
+	/*  Reset the state to the empty message. */
 	pmicdata->L = pmicdata->K0;
 	pmicdata->R = pmicdata->K1;
 	pmicdata->nBytesInM = 0;
@@ -156,7 +169,8 @@ void rtw_secmicappendbyte(struct mic_data *pmicdata, u8 b)
 		pmicdata->L ^= pmicdata->M;
 		pmicdata->R ^= ROL32(pmicdata->L, 17);
 		pmicdata->L += pmicdata->R;
-		pmicdata->R ^= ((pmicdata->L & 0xff00ff00) >> 8) | ((pmicdata->L & 0x00ff00ff) << 8);
+		pmicdata->R ^= ((pmicdata->L & 0xff00ff00) >> 8) |
+			       ((pmicdata->L & 0x00ff00ff) << 8);
 		pmicdata->L += pmicdata->R;
 		pmicdata->R ^= ROL32(pmicdata->L, 3);
 		pmicdata->L += pmicdata->R;
@@ -195,24 +209,25 @@ void rtw_secgetmic(struct mic_data *pmicdata, u8 *dst)
 	secmicclear(pmicdata);
 }
 
-void rtw_seccalctkipmic(u8 *key, u8 *header, u8 *data, u32 data_len, u8 *mic_code, u8 pri)
+void rtw_seccalctkipmic(u8 *key, u8 *header, u8 *data, u32 data_len,
+			u8 *mic_code, u8 pri)
 {
-	struct mic_data	micdata;
-	u8 priority[4] = {0x0, 0x0, 0x0, 0x0};
+	struct mic_data micdata;
+	u8 priority[4] = { 0x0, 0x0, 0x0, 0x0 };
 
 	rtw_secmicsetkey(&micdata, key);
 	priority[0] = pri;
 
 	/* Michael MIC pseudo header: DA, SA, 3 x 0, Priority */
-	if (header[1] & 1) {   /* ToDS == 1 */
-		rtw_secmicappend(&micdata, &header[16], 6);  /* DA */
-		if (header[1] & 2)  /* From Ds == 1 */
+	if (header[1] & 1) { /* ToDS == 1 */
+		rtw_secmicappend(&micdata, &header[16], 6); /* DA */
+		if (header[1] & 2) /* From Ds == 1 */
 			rtw_secmicappend(&micdata, &header[24], 6);
 		else
 			rtw_secmicappend(&micdata, &header[10], 6);
-	} else {	/* ToDS == 0 */
-		rtw_secmicappend(&micdata, &header[4], 6);   /* DA */
-		if (header[1] & 2)  /* From Ds == 1 */
+	} else { /* ToDS == 0 */
+		rtw_secmicappend(&micdata, &header[4], 6); /* DA */
+		if (header[1] & 2) /* From Ds == 1 */
 			rtw_secmicappend(&micdata, &header[16], 6);
 		else
 			rtw_secmicappend(&micdata, &header[10], 6);
@@ -225,94 +240,119 @@ void rtw_seccalctkipmic(u8 *key, u8 *header, u8 *data, u32 data_len, u8 *mic_cod
 }
 
 /* macros for extraction/creation of unsigned char/unsigned short values  */
-#define RotR1(v16)   ((((v16) >> 1) & 0x7FFF) ^ (((v16) & 1) << 15))
-#define   Lo8(v16)   ((u8)((v16)       & 0x00FF))
-#define   Hi8(v16)   ((u8)(((v16) >> 8) & 0x00FF))
-#define  Lo16(v32)   ((u16)((v32)       & 0xFFFF))
-#define  Hi16(v32)   ((u16)(((v32) >> 16) & 0xFFFF))
-#define  Mk16(hi, lo) ((lo) ^ (((u16)(hi)) << 8))
+#define RotR1(v16) ((((v16) >> 1) & 0x7FFF) ^ (((v16) & 1) << 15))
+#define Lo8(v16) ((u8)((v16) & 0x00FF))
+#define Hi8(v16) ((u8)(((v16) >> 8) & 0x00FF))
+#define Lo16(v32) ((u16)((v32) & 0xFFFF))
+#define Hi16(v32) ((u16)(((v32) >> 16) & 0xFFFF))
+#define Mk16(hi, lo) ((lo) ^ (((u16)(hi)) << 8))
 
 /* select the Nth 16-bit word of the temporal key unsigned char array TK[]   */
-#define  TK16(N)     Mk16(tk[2 * (N) + 1], tk[2 * (N)])
+#define TK16(N) Mk16(tk[2 * (N) + 1], tk[2 * (N)])
 
 /* S-box lookup: 16 bits --> 16 bits */
-#define _S_(v16)     (Sbox1[0][Lo8(v16)] ^ Sbox1[1][Hi8(v16)])
+#define _S_(v16) (Sbox1[0][Lo8(v16)] ^ Sbox1[1][Hi8(v16)])
 
 /* fixed algorithm "parameters" */
-#define PHASE1_LOOP_CNT   8    /* this needs to be "big enough"     */
+#define PHASE1_LOOP_CNT 8 /* this needs to be "big enough"     */
 
 /* 2-unsigned char by 2-unsigned char subset of the full AES S-box table */
-static const unsigned short Sbox1[2][256] = {      /* Sbox for hash (can be in ROM)     */
-{
-	 0xC6A5, 0xF884, 0xEE99, 0xF68D, 0xFF0D, 0xD6BD, 0xDEB1, 0x9154,
-	 0x6050, 0x0203, 0xCEA9, 0x567D, 0xE719, 0xB562, 0x4DE6, 0xEC9A,
-	 0x8F45, 0x1F9D, 0x8940, 0xFA87, 0xEF15, 0xB2EB, 0x8EC9, 0xFB0B,
-	 0x41EC, 0xB367, 0x5FFD, 0x45EA, 0x23BF, 0x53F7, 0xE496, 0x9B5B,
-	 0x75C2, 0xE11C, 0x3DAE, 0x4C6A, 0x6C5A, 0x7E41, 0xF502, 0x834F,
-	 0x685C, 0x51F4, 0xD134, 0xF908, 0xE293, 0xAB73, 0x6253, 0x2A3F,
-	 0x080C, 0x9552, 0x4665, 0x9D5E, 0x3028, 0x37A1, 0x0A0F, 0x2FB5,
-	 0x0E09, 0x2436, 0x1B9B, 0xDF3D, 0xCD26, 0x4E69, 0x7FCD, 0xEA9F,
-	 0x121B, 0x1D9E, 0x5874, 0x342E, 0x362D, 0xDCB2, 0xB4EE, 0x5BFB,
-	 0xA4F6, 0x764D, 0xB761, 0x7DCE, 0x527B, 0xDD3E, 0x5E71, 0x1397,
-	 0xA6F5, 0xB968, 0x0000, 0xC12C, 0x4060, 0xE31F, 0x79C8, 0xB6ED,
-	 0xD4BE, 0x8D46, 0x67D9, 0x724B, 0x94DE, 0x98D4, 0xB0E8, 0x854A,
-	 0xBB6B, 0xC52A, 0x4FE5, 0xED16, 0x86C5, 0x9AD7, 0x6655, 0x1194,
-	 0x8ACF, 0xE910, 0x0406, 0xFE81, 0xA0F0, 0x7844, 0x25BA, 0x4BE3,
-	 0xA2F3, 0x5DFE, 0x80C0, 0x058A, 0x3FAD, 0x21BC, 0x7048, 0xF104,
-	 0x63DF, 0x77C1, 0xAF75, 0x4263, 0x2030, 0xE51A, 0xFD0E, 0xBF6D,
-	 0x814C, 0x1814, 0x2635, 0xC32F, 0xBEE1, 0x35A2, 0x88CC, 0x2E39,
-	 0x9357, 0x55F2, 0xFC82, 0x7A47, 0xC8AC, 0xBAE7, 0x322B, 0xE695,
-	 0xC0A0, 0x1998, 0x9ED1, 0xA37F, 0x4466, 0x547E, 0x3BAB, 0x0B83,
-	 0x8CCA, 0xC729, 0x6BD3, 0x283C, 0xA779, 0xBCE2, 0x161D, 0xAD76,
-	 0xDB3B, 0x6456, 0x744E, 0x141E, 0x92DB, 0x0C0A, 0x486C, 0xB8E4,
-	 0x9F5D, 0xBD6E, 0x43EF, 0xC4A6, 0x39A8, 0x31A4, 0xD337, 0xF28B,
-	 0xD532, 0x8B43, 0x6E59, 0xDAB7, 0x018C, 0xB164, 0x9CD2, 0x49E0,
-	 0xD8B4, 0xACFA, 0xF307, 0xCF25, 0xCAAF, 0xF48E, 0x47E9, 0x1018,
-	 0x6FD5, 0xF088, 0x4A6F, 0x5C72, 0x3824, 0x57F1, 0x73C7, 0x9751,
-	 0xCB23, 0xA17C, 0xE89C, 0x3E21, 0x96DD, 0x61DC, 0x0D86, 0x0F85,
-	 0xE090, 0x7C42, 0x71C4, 0xCCAA, 0x90D8, 0x0605, 0xF701, 0x1C12,
-	 0xC2A3, 0x6A5F, 0xAEF9, 0x69D0, 0x1791, 0x9958, 0x3A27, 0x27B9,
-	 0xD938, 0xEB13, 0x2BB3, 0x2233, 0xD2BB, 0xA970, 0x0789, 0x33A7,
-	 0x2DB6, 0x3C22, 0x1592, 0xC920, 0x8749, 0xAAFF, 0x5078, 0xA57A,
-	 0x038F, 0x59F8, 0x0980, 0x1A17, 0x65DA, 0xD731, 0x84C6, 0xD0B8,
-	 0x82C3, 0x29B0, 0x5A77, 0x1E11, 0x7BCB, 0xA8FC, 0x6DD6, 0x2C3A,
-	},
-
-	{  /* second half of table is unsigned char-reversed version of first! */
-	 0xA5C6, 0x84F8, 0x99EE, 0x8DF6, 0x0DFF, 0xBDD6, 0xB1DE, 0x5491,
-	 0x5060, 0x0302, 0xA9CE, 0x7D56, 0x19E7, 0x62B5, 0xE64D, 0x9AEC,
-	 0x458F, 0x9D1F, 0x4089, 0x87FA, 0x15EF, 0xEBB2, 0xC98E, 0x0BFB,
-	 0xEC41, 0x67B3, 0xFD5F, 0xEA45, 0xBF23, 0xF753, 0x96E4, 0x5B9B,
-	 0xC275, 0x1CE1, 0xAE3D, 0x6A4C, 0x5A6C, 0x417E, 0x02F5, 0x4F83,
-	 0x5C68, 0xF451, 0x34D1, 0x08F9, 0x93E2, 0x73AB, 0x5362, 0x3F2A,
-	 0x0C08, 0x5295, 0x6546, 0x5E9D, 0x2830, 0xA137, 0x0F0A, 0xB52F,
-	 0x090E, 0x3624, 0x9B1B, 0x3DDF, 0x26CD, 0x694E, 0xCD7F, 0x9FEA,
-	 0x1B12, 0x9E1D, 0x7458, 0x2E34, 0x2D36, 0xB2DC, 0xEEB4, 0xFB5B,
-	 0xF6A4, 0x4D76, 0x61B7, 0xCE7D, 0x7B52, 0x3EDD, 0x715E, 0x9713,
-	 0xF5A6, 0x68B9, 0x0000, 0x2CC1, 0x6040, 0x1FE3, 0xC879, 0xEDB6,
-	 0xBED4, 0x468D, 0xD967, 0x4B72, 0xDE94, 0xD498, 0xE8B0, 0x4A85,
-	 0x6BBB, 0x2AC5, 0xE54F, 0x16ED, 0xC586, 0xD79A, 0x5566, 0x9411,
-	 0xCF8A, 0x10E9, 0x0604, 0x81FE, 0xF0A0, 0x4478, 0xBA25, 0xE34B,
-	 0xF3A2, 0xFE5D, 0xC080, 0x8A05, 0xAD3F, 0xBC21, 0x4870, 0x04F1,
-	 0xDF63, 0xC177, 0x75AF, 0x6342, 0x3020, 0x1AE5, 0x0EFD, 0x6DBF,
-	 0x4C81, 0x1418, 0x3526, 0x2FC3, 0xE1BE, 0xA235, 0xCC88, 0x392E,
-	 0x5793, 0xF255, 0x82FC, 0x477A, 0xACC8, 0xE7BA, 0x2B32, 0x95E6,
-	 0xA0C0, 0x9819, 0xD19E, 0x7FA3, 0x6644, 0x7E54, 0xAB3B, 0x830B,
-	 0xCA8C, 0x29C7, 0xD36B, 0x3C28, 0x79A7, 0xE2BC, 0x1D16, 0x76AD,
-	 0x3BDB, 0x5664, 0x4E74, 0x1E14, 0xDB92, 0x0A0C, 0x6C48, 0xE4B8,
-	 0x5D9F, 0x6EBD, 0xEF43, 0xA6C4, 0xA839, 0xA431, 0x37D3, 0x8BF2,
-	 0x32D5, 0x438B, 0x596E, 0xB7DA, 0x8C01, 0x64B1, 0xD29C, 0xE049,
-	 0xB4D8, 0xFAAC, 0x07F3, 0x25CF, 0xAFCA, 0x8EF4, 0xE947, 0x1810,
-	 0xD56F, 0x88F0, 0x6F4A, 0x725C, 0x2438, 0xF157, 0xC773, 0x5197,
-	 0x23CB, 0x7CA1, 0x9CE8, 0x213E, 0xDD96, 0xDC61, 0x860D, 0x850F,
-	 0x90E0, 0x427C, 0xC471, 0xAACC, 0xD890, 0x0506, 0x01F7, 0x121C,
-	 0xA3C2, 0x5F6A, 0xF9AE, 0xD069, 0x9117, 0x5899, 0x273A, 0xB927,
-	 0x38D9, 0x13EB, 0xB32B, 0x3322, 0xBBD2, 0x70A9, 0x8907, 0xA733,
-	 0xB62D, 0x223C, 0x9215, 0x20C9, 0x4987, 0xFFAA, 0x7850, 0x7AA5,
-	 0x8F03, 0xF859, 0x8009, 0x171A, 0xDA65, 0x31D7, 0xC684, 0xB8D0,
-	 0xC382, 0xB029, 0x775A, 0x111E, 0xCB7B, 0xFCA8, 0xD66D, 0x3A2C,
-	}
-};
+static const unsigned short Sbox1
+	[2]
+	[256] = { /* Sbox for hash (can be in ROM)     */
+		  {
+			  0xC6A5, 0xF884, 0xEE99, 0xF68D, 0xFF0D, 0xD6BD,
+			  0xDEB1, 0x9154, 0x6050, 0x0203, 0xCEA9, 0x567D,
+			  0xE719, 0xB562, 0x4DE6, 0xEC9A, 0x8F45, 0x1F9D,
+			  0x8940, 0xFA87, 0xEF15, 0xB2EB, 0x8EC9, 0xFB0B,
+			  0x41EC, 0xB367, 0x5FFD, 0x45EA, 0x23BF, 0x53F7,
+			  0xE496, 0x9B5B, 0x75C2, 0xE11C, 0x3DAE, 0x4C6A,
+			  0x6C5A, 0x7E41, 0xF502, 0x834F, 0x685C, 0x51F4,
+			  0xD134, 0xF908, 0xE293, 0xAB73, 0x6253, 0x2A3F,
+			  0x080C, 0x9552, 0x4665, 0x9D5E, 0x3028, 0x37A1,
+			  0x0A0F, 0x2FB5, 0x0E09, 0x2436, 0x1B9B, 0xDF3D,
+			  0xCD26, 0x4E69, 0x7FCD, 0xEA9F, 0x121B, 0x1D9E,
+			  0x5874, 0x342E, 0x362D, 0xDCB2, 0xB4EE, 0x5BFB,
+			  0xA4F6, 0x764D, 0xB761, 0x7DCE, 0x527B, 0xDD3E,
+			  0x5E71, 0x1397, 0xA6F5, 0xB968, 0x0000, 0xC12C,
+			  0x4060, 0xE31F, 0x79C8, 0xB6ED, 0xD4BE, 0x8D46,
+			  0x67D9, 0x724B, 0x94DE, 0x98D4, 0xB0E8, 0x854A,
+			  0xBB6B, 0xC52A, 0x4FE5, 0xED16, 0x86C5, 0x9AD7,
+			  0x6655, 0x1194, 0x8ACF, 0xE910, 0x0406, 0xFE81,
+			  0xA0F0, 0x7844, 0x25BA, 0x4BE3, 0xA2F3, 0x5DFE,
+			  0x80C0, 0x058A, 0x3FAD, 0x21BC, 0x7048, 0xF104,
+			  0x63DF, 0x77C1, 0xAF75, 0x4263, 0x2030, 0xE51A,
+			  0xFD0E, 0xBF6D, 0x814C, 0x1814, 0x2635, 0xC32F,
+			  0xBEE1, 0x35A2, 0x88CC, 0x2E39, 0x9357, 0x55F2,
+			  0xFC82, 0x7A47, 0xC8AC, 0xBAE7, 0x322B, 0xE695,
+			  0xC0A0, 0x1998, 0x9ED1, 0xA37F, 0x4466, 0x547E,
+			  0x3BAB, 0x0B83, 0x8CCA, 0xC729, 0x6BD3, 0x283C,
+			  0xA779, 0xBCE2, 0x161D, 0xAD76, 0xDB3B, 0x6456,
+			  0x744E, 0x141E, 0x92DB, 0x0C0A, 0x486C, 0xB8E4,
+			  0x9F5D, 0xBD6E, 0x43EF, 0xC4A6, 0x39A8, 0x31A4,
+			  0xD337, 0xF28B, 0xD532, 0x8B43, 0x6E59, 0xDAB7,
+			  0x018C, 0xB164, 0x9CD2, 0x49E0, 0xD8B4, 0xACFA,
+			  0xF307, 0xCF25, 0xCAAF, 0xF48E, 0x47E9, 0x1018,
+			  0x6FD5, 0xF088, 0x4A6F, 0x5C72, 0x3824, 0x57F1,
+			  0x73C7, 0x9751, 0xCB23, 0xA17C, 0xE89C, 0x3E21,
+			  0x96DD, 0x61DC, 0x0D86, 0x0F85, 0xE090, 0x7C42,
+			  0x71C4, 0xCCAA, 0x90D8, 0x0605, 0xF701, 0x1C12,
+			  0xC2A3, 0x6A5F, 0xAEF9, 0x69D0, 0x1791, 0x9958,
+			  0x3A27, 0x27B9, 0xD938, 0xEB13, 0x2BB3, 0x2233,
+			  0xD2BB, 0xA970, 0x0789, 0x33A7, 0x2DB6, 0x3C22,
+			  0x1592, 0xC920, 0x8749, 0xAAFF, 0x5078, 0xA57A,
+			  0x038F, 0x59F8, 0x0980, 0x1A17, 0x65DA, 0xD731,
+			  0x84C6, 0xD0B8, 0x82C3, 0x29B0, 0x5A77, 0x1E11,
+			  0x7BCB, 0xA8FC, 0x6DD6, 0x2C3A,
+		  },
+
+		  {
+			  /* second half of table is unsigned char-reversed version of first! */
+			  0xA5C6, 0x84F8, 0x99EE, 0x8DF6, 0x0DFF, 0xBDD6,
+			  0xB1DE, 0x5491, 0x5060, 0x0302, 0xA9CE, 0x7D56,
+			  0x19E7, 0x62B5, 0xE64D, 0x9AEC, 0x458F, 0x9D1F,
+			  0x4089, 0x87FA, 0x15EF, 0xEBB2, 0xC98E, 0x0BFB,
+			  0xEC41, 0x67B3, 0xFD5F, 0xEA45, 0xBF23, 0xF753,
+			  0x96E4, 0x5B9B, 0xC275, 0x1CE1, 0xAE3D, 0x6A4C,
+			  0x5A6C, 0x417E, 0x02F5, 0x4F83, 0x5C68, 0xF451,
+			  0x34D1, 0x08F9, 0x93E2, 0x73AB, 0x5362, 0x3F2A,
+			  0x0C08, 0x5295, 0x6546, 0x5E9D, 0x2830, 0xA137,
+			  0x0F0A, 0xB52F, 0x090E, 0x3624, 0x9B1B, 0x3DDF,
+			  0x26CD, 0x694E, 0xCD7F, 0x9FEA, 0x1B12, 0x9E1D,
+			  0x7458, 0x2E34, 0x2D36, 0xB2DC, 0xEEB4, 0xFB5B,
+			  0xF6A4, 0x4D76, 0x61B7, 0xCE7D, 0x7B52, 0x3EDD,
+			  0x715E, 0x9713, 0xF5A6, 0x68B9, 0x0000, 0x2CC1,
+			  0x6040, 0x1FE3, 0xC879, 0xEDB6, 0xBED4, 0x468D,
+			  0xD967, 0x4B72, 0xDE94, 0xD498, 0xE8B0, 0x4A85,
+			  0x6BBB, 0x2AC5, 0xE54F, 0x16ED, 0xC586, 0xD79A,
+			  0x5566, 0x9411, 0xCF8A, 0x10E9, 0x0604, 0x81FE,
+			  0xF0A0, 0x4478, 0xBA25, 0xE34B, 0xF3A2, 0xFE5D,
+			  0xC080, 0x8A05, 0xAD3F, 0xBC21, 0x4870, 0x04F1,
+			  0xDF63, 0xC177, 0x75AF, 0x6342, 0x3020, 0x1AE5,
+			  0x0EFD, 0x6DBF, 0x4C81, 0x1418, 0x3526, 0x2FC3,
+			  0xE1BE, 0xA235, 0xCC88, 0x392E, 0x5793, 0xF255,
+			  0x82FC, 0x477A, 0xACC8, 0xE7BA, 0x2B32, 0x95E6,
+			  0xA0C0, 0x9819, 0xD19E, 0x7FA3, 0x6644, 0x7E54,
+			  0xAB3B, 0x830B, 0xCA8C, 0x29C7, 0xD36B, 0x3C28,
+			  0x79A7, 0xE2BC, 0x1D16, 0x76AD, 0x3BDB, 0x5664,
+			  0x4E74, 0x1E14, 0xDB92, 0x0A0C, 0x6C48, 0xE4B8,
+			  0x5D9F, 0x6EBD, 0xEF43, 0xA6C4, 0xA839, 0xA431,
+			  0x37D3, 0x8BF2, 0x32D5, 0x438B, 0x596E, 0xB7DA,
+			  0x8C01, 0x64B1, 0xD29C, 0xE049, 0xB4D8, 0xFAAC,
+			  0x07F3, 0x25CF, 0xAFCA, 0x8EF4, 0xE947, 0x1810,
+			  0xD56F, 0x88F0, 0x6F4A, 0x725C, 0x2438, 0xF157,
+			  0xC773, 0x5197, 0x23CB, 0x7CA1, 0x9CE8, 0x213E,
+			  0xDD96, 0xDC61, 0x860D, 0x850F, 0x90E0, 0x427C,
+			  0xC471, 0xAACC, 0xD890, 0x0506, 0x01F7, 0x121C,
+			  0xA3C2, 0x5F6A, 0xF9AE, 0xD069, 0x9117, 0x5899,
+			  0x273A, 0xB927, 0x38D9, 0x13EB, 0xB32B, 0x3322,
+			  0xBBD2, 0x70A9, 0x8907, 0xA733, 0xB62D, 0x223C,
+			  0x9215, 0x20C9, 0x4987, 0xFFAA, 0x7850, 0x7AA5,
+			  0x8F03, 0xF859, 0x8009, 0x171A, 0xDA65, 0x31D7,
+			  0xC684, 0xB8D0, 0xC382, 0xB029, 0x775A, 0x111E,
+			  0xCB7B, 0xFCA8, 0xD66D, 0x3A2C,
+		  }
+	};
 
 /*
  * Routine: Phase 1 -- generate P1K, given TA, TK, IV32
@@ -330,14 +370,14 @@ static const unsigned short Sbox1[2][256] = {      /* Sbox for hash (can be in R
  */
 static void phase1(u16 *p1k, const u8 *tk, const u8 *ta, u32 iv32)
 {
-	signed int  i;
+	signed int i;
 
 	/* Initialize the 80 bits of P1K[] from IV32 and TA[0..5]     */
-	p1k[0]      = Lo16(iv32);
-	p1k[1]      = Hi16(iv32);
-	p1k[2]      = Mk16(ta[1], ta[0]); /* use TA[] as little-endian */
-	p1k[3]      = Mk16(ta[3], ta[2]);
-	p1k[4]      = Mk16(ta[5], ta[4]);
+	p1k[0] = Lo16(iv32);
+	p1k[1] = Hi16(iv32);
+	p1k[2] = Mk16(ta[1], ta[0]); /* use TA[] as little-endian */
+	p1k[3] = Mk16(ta[3], ta[2]);
+	p1k[4] = Mk16(ta[5], ta[4]);
 
 	/* Now compute an unbalanced Feistel cipher with 80-bit block */
 	/* size on the 80-bit block P1K[], using the 128-bit key TK[] */
@@ -348,7 +388,7 @@ static void phase1(u16 *p1k, const u8 *tk, const u8 *ta, u32 iv32)
 		p1k[2] += _S_(p1k[1] ^ TK16((i & 1) + 4));
 		p1k[3] += _S_(p1k[2] ^ TK16((i & 1) + 6));
 		p1k[4] += _S_(p1k[3] ^ TK16((i & 1) + 0));
-		p1k[4] +=  (unsigned short)i;          /* avoid "slide attacks" */
+		p1k[4] += (unsigned short)i; /* avoid "slide attacks" */
 	}
 }
 
@@ -374,42 +414,41 @@ static void phase1(u16 *p1k, const u8 *tk, const u8 *ta, u32 iv32)
  */
 static void phase2(u8 *rc4key, const u8 *tk, const u16 *p1k, u16 iv16)
 {
-	signed int  i;
-	u16 PPK[6];                          /* temporary key for mixing    */
+	signed int i;
+	u16 PPK[6]; /* temporary key for mixing    */
 
 	/* Note: all adds in the PPK[] equations below are mod 2**16         */
 	for (i = 0; i < 5; i++)
-		PPK[i] = p1k[i];      /* first, copy P1K to PPK      */
+		PPK[i] = p1k[i]; /* first, copy P1K to PPK      */
 
-	PPK[5]  =  p1k[4] + iv16;             /* next,  add in IV16          */
+	PPK[5] = p1k[4] + iv16; /* next,  add in IV16          */
 
 	/* Bijective non-linear mixing of the 96 bits of PPK[0..5]           */
-	PPK[0] +=    _S_(PPK[5] ^ TK16(0));   /* Mix key in each "round"     */
-	PPK[1] +=    _S_(PPK[0] ^ TK16(1));
-	PPK[2] +=    _S_(PPK[1] ^ TK16(2));
-	PPK[3] +=    _S_(PPK[2] ^ TK16(3));
-	PPK[4] +=    _S_(PPK[3] ^ TK16(4));
-	PPK[5] +=    _S_(PPK[4] ^ TK16(5));   /* Total # S-box lookups == 6  */
+	PPK[0] += _S_(PPK[5] ^ TK16(0)); /* Mix key in each "round"     */
+	PPK[1] += _S_(PPK[0] ^ TK16(1));
+	PPK[2] += _S_(PPK[1] ^ TK16(2));
+	PPK[3] += _S_(PPK[2] ^ TK16(3));
+	PPK[4] += _S_(PPK[3] ^ TK16(4));
+	PPK[5] += _S_(PPK[4] ^ TK16(5)); /* Total # S-box lookups == 6  */
 
 	/* Final sweep: bijective, "linear". Rotates kill LSB correlations   */
-	PPK[0] +=  RotR1(PPK[5] ^ TK16(6));
-	PPK[1] +=  RotR1(PPK[0] ^ TK16(7));   /* Use all of TK[] in Phase2   */
-	PPK[2] +=  RotR1(PPK[1]);
-	PPK[3] +=  RotR1(PPK[2]);
-	PPK[4] +=  RotR1(PPK[3]);
-	PPK[5] +=  RotR1(PPK[4]);
+	PPK[0] += RotR1(PPK[5] ^ TK16(6));
+	PPK[1] += RotR1(PPK[0] ^ TK16(7)); /* Use all of TK[] in Phase2   */
+	PPK[2] += RotR1(PPK[1]);
+	PPK[3] += RotR1(PPK[2]);
+	PPK[4] += RotR1(PPK[3]);
+	PPK[5] += RotR1(PPK[4]);
 	/* Note: At this point, for a given key TK[0..15], the 96-bit output */
 	/*       value PPK[0..5] is guaranteed to be unique, as a function   */
 	/*       of the 96-bit "input" value   {TA, IV32, IV16}. That is, P1K  */
 	/*       is now a keyed permutation of {TA, IV32, IV16}.               */
 
 	/* Set RC4KEY[0..3], which includes "cleartext" portion of RC4 key   */
-	rc4key[0] = Hi8(iv16);                /* RC4KEY[0..2] is the WEP IV  */
+	rc4key[0] = Hi8(iv16); /* RC4KEY[0..2] is the WEP IV  */
 	rc4key[1] = (Hi8(iv16) | 0x20) & 0x7F; /* Help avoid weak (FMS) keys  */
 	rc4key[2] = Lo8(iv16);
 	rc4key[3] = Lo8((PPK[5] ^ TK16(0)) >> 1);
 
-
 	/* Copy 96 bits of PPK[0..5] to RC4KEY[4..15]  (little-endian)       */
 	for (i = 0; i < 6; i++) {
 		rc4key[4 + 2 * i] = Lo8(PPK[i]);
@@ -417,20 +456,19 @@ static void phase2(u8 *rc4key, const u8 *tk, const u16 *p1k, u16 iv16)
 	}
 }
 
-
 /* The hlen isn't include the IV */
 u32 rtw_tkip_encrypt(struct adapter *padapter, u8 *pxmitframe)
-{																	/*  exclude ICV */
+{ /*  exclude ICV */
 	u16 pnl;
 	u32 pnh;
 	u8 rc4key[16];
-	u8   ttkey[16];
+	u8 ttkey[16];
 	union {
 		__le32 f0;
 		u8 f1[4];
 	} crc;
-	u8   hw_hdr_offset = 0;
-	signed int			curfragnum, length;
+	u8 hw_hdr_offset = 0;
+	signed int curfragnum, length;
 
 	u8 *pframe, *payload, *iv, *prwskey;
 	union pn48 dot11txpn;
@@ -451,7 +489,11 @@ u32 rtw_tkip_encrypt(struct adapter *padapter, u8 *pxmitframe)
 		return _SUCCESS;
 
 	if (is_multicast_ether_addr(pattrib->ra))
-		prwskey = psecuritypriv->dot118021XGrpKey[psecuritypriv->dot118021XGrpKeyid].skey;
+		prwskey =
+			psecuritypriv
+				->dot118021XGrpKey[psecuritypriv
+							   ->dot118021XGrpKeyid]
+				.skey;
 	else
 		prwskey = pattrib->dot118021x_UncstKey.skey;
 
@@ -468,8 +510,10 @@ u32 rtw_tkip_encrypt(struct adapter *padapter, u8 *pxmitframe)
 
 		phase2(&rc4key[0], prwskey, (u16 *)&ttkey[0], pnl);
 
-		if ((curfragnum + 1) == pattrib->nr_frags) {	/* 4 the last fragment */
-			length = pattrib->last_txcmdsz - pattrib->hdrlen - pattrib->iv_len - pattrib->icv_len;
+		if ((curfragnum + 1) ==
+		    pattrib->nr_frags) { /* 4 the last fragment */
+			length = pattrib->last_txcmdsz - pattrib->hdrlen -
+				 pattrib->iv_len - pattrib->icv_len;
 			crc.f0 = cpu_to_le32(~crc32_le(~0, payload, length));
 
 			arc4_setkey(ctx, rc4key, 16);
@@ -477,7 +521,8 @@ u32 rtw_tkip_encrypt(struct adapter *padapter, u8 *pxmitframe)
 			arc4_crypt(ctx, payload + length, crc.f1, 4);
 
 		} else {
-			length = pxmitpriv->frag_len - pattrib->hdrlen - pattrib->iv_len - pattrib->icv_len;
+			length = pxmitpriv->frag_len - pattrib->hdrlen -
+				 pattrib->iv_len - pattrib->icv_len;
 			crc.f0 = cpu_to_le32(~crc32_le(~0, payload, length));
 
 			arc4_setkey(ctx, rc4key, 16);
@@ -491,26 +536,27 @@ u32 rtw_tkip_encrypt(struct adapter *padapter, u8 *pxmitframe)
 	return res;
 }
 
-
 /* The hlen isn't include the IV */
 u32 rtw_tkip_decrypt(struct adapter *padapter, u8 *precvframe)
-{																	/*  exclude ICV */
+{ /*  exclude ICV */
 	u16 pnl;
 	u32 pnh;
-	u8   rc4key[16];
-	u8   ttkey[16];
+	u8 rc4key[16];
+	u8 ttkey[16];
 	u8 crc[4];
-	signed int			length;
+	signed int length;
 
 	u8 *pframe, *payload, *iv, *prwskey;
 	union pn48 dot11txpn;
 	struct sta_info *stainfo;
-	struct rx_pkt_attrib *prxattrib = &((union recv_frame *)precvframe)->u.hdr.attrib;
+	struct rx_pkt_attrib *prxattrib =
+		&((union recv_frame *)precvframe)->u.hdr.attrib;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	struct arc4_ctx *ctx = &psecuritypriv->recv_arc4_ctx;
 	u32 res = _SUCCESS;
 
-	pframe = (unsigned char *)((union recv_frame *)precvframe)->u.hdr.rx_data;
+	pframe =
+		(unsigned char *)((union recv_frame *)precvframe)->u.hdr.rx_data;
 
 	/* 4 start to decrypt recvframe */
 	if (prxattrib->encrypt != _TKIP_)
@@ -538,11 +584,12 @@ u32 rtw_tkip_decrypt(struct adapter *padapter, u8 *precvframe)
 
 			if (jiffies_to_msecs(jiffies - start) > 1000) {
 				if (no_gkey_bc_cnt || no_gkey_mc_cnt) {
-					netdev_dbg(padapter->pnetdev,
-						   FUNC_ADPT_FMT " no_gkey_bc_cnt:%u, no_gkey_mc_cnt:%u\n",
-						   FUNC_ADPT_ARG(padapter),
-						   no_gkey_bc_cnt,
-						   no_gkey_mc_cnt);
+					netdev_dbg(
+						padapter->pnetdev,
+						FUNC_ADPT_FMT
+						" no_gkey_bc_cnt:%u, no_gkey_mc_cnt:%u\n",
+						FUNC_ADPT_ARG(padapter),
+						no_gkey_bc_cnt, no_gkey_mc_cnt);
 				}
 				start = jiffies;
 				no_gkey_bc_cnt = 0;
@@ -552,24 +599,27 @@ u32 rtw_tkip_decrypt(struct adapter *padapter, u8 *precvframe)
 		}
 
 		if (no_gkey_bc_cnt || no_gkey_mc_cnt) {
-			netdev_dbg(padapter->pnetdev,
-				   FUNC_ADPT_FMT " gkey installed. no_gkey_bc_cnt:%u, no_gkey_mc_cnt:%u\n",
-				   FUNC_ADPT_ARG(padapter),
-				   no_gkey_bc_cnt,
-				   no_gkey_mc_cnt);
+			netdev_dbg(
+				padapter->pnetdev,
+				FUNC_ADPT_FMT
+				" gkey installed. no_gkey_bc_cnt:%u, no_gkey_mc_cnt:%u\n",
+				FUNC_ADPT_ARG(padapter), no_gkey_bc_cnt,
+				no_gkey_mc_cnt);
 		}
 		start = 0;
 		no_gkey_bc_cnt = 0;
 		no_gkey_mc_cnt = 0;
 
-		prwskey = psecuritypriv->dot118021XGrpKey[prxattrib->key_index].skey;
+		prwskey = psecuritypriv->dot118021XGrpKey[prxattrib->key_index]
+				  .skey;
 	} else {
 		prwskey = &stainfo->dot118021x_UncstKey.skey[0];
 	}
 
 	iv = pframe + prxattrib->hdrlen;
 	payload = pframe + prxattrib->iv_len + prxattrib->hdrlen;
-	length = ((union recv_frame *)precvframe)->u.hdr.len - prxattrib->hdrlen - prxattrib->iv_len;
+	length = ((union recv_frame *)precvframe)->u.hdr.len -
+		 prxattrib->hdrlen - prxattrib->iv_len;
 
 	GET_TKIP_PN(iv, dot11txpn);
 
@@ -593,12 +643,9 @@ u32 rtw_tkip_decrypt(struct adapter *padapter, u8 *precvframe)
 	return res;
 }
 
-
 /* 3			=====AES related ===== */
 
-
-
-#define MAX_MSG_SIZE	2048
+#define MAX_MSG_SIZE 2048
 
 /****************************************/
 /* aes128k128d()                        */
@@ -620,37 +667,35 @@ static void aes128k128d(u8 *key, u8 *data, u8 *ciphertext)
 /* Baron think the function is construct CCM    */
 /* nonce                                        */
 /************************************************/
-static void construct_mic_iv(u8 *mic_iv,
-			     signed int qc_exists,
-			     signed int a4_exists,
-			     u8 *mpdu,
-			     uint payload_length,
-			     u8 *pn_vector,
-			     uint frtype) /* add for CONFIG_IEEE80211W, none 11w also can use */
+static void construct_mic_iv(
+	u8 *mic_iv, signed int qc_exists, signed int a4_exists, u8 *mpdu,
+	uint payload_length, u8 *pn_vector,
+	uint frtype) /* add for CONFIG_IEEE80211W, none 11w also can use */
 {
-		signed int i;
+	signed int i;
 
-		mic_iv[0] = 0x59;
+	mic_iv[0] = 0x59;
 
-		if (qc_exists && a4_exists)
-			mic_iv[1] = mpdu[30] & 0x0f;    /* QoS_TC           */
+	if (qc_exists && a4_exists)
+		mic_iv[1] = mpdu[30] & 0x0f; /* QoS_TC           */
 
-		if (qc_exists && !a4_exists)
-			mic_iv[1] = mpdu[24] & 0x0f;   /* mute bits 7-4    */
+	if (qc_exists && !a4_exists)
+		mic_iv[1] = mpdu[24] & 0x0f; /* mute bits 7-4    */
 
-		if (!qc_exists)
-			mic_iv[1] = 0x00;
+	if (!qc_exists)
+		mic_iv[1] = 0x00;
 
-		/* 802.11w management frame should set management bit(4) */
-		if (frtype == WIFI_MGT_TYPE)
-			mic_iv[1] |= BIT(4);
+	/* 802.11w management frame should set management bit(4) */
+	if (frtype == WIFI_MGT_TYPE)
+		mic_iv[1] |= BIT(4);
 
-		for (i = 2; i < 8; i++)
-			mic_iv[i] = mpdu[i + 8];   /* mic_iv[2:7] = A2[0:5] = mpdu[10:15] */
-		for (i = 8; i < 14; i++)
-			mic_iv[i] = pn_vector[13 - i];          /* mic_iv[8:13] = PN[5:0] */
-		mic_iv[14] = (unsigned char)(payload_length / 256);
-		mic_iv[15] = (unsigned char)(payload_length % 256);
+	for (i = 2; i < 8; i++)
+		mic_iv[i] =
+			mpdu[i + 8]; /* mic_iv[2:7] = A2[0:5] = mpdu[10:15] */
+	for (i = 8; i < 14; i++)
+		mic_iv[i] = pn_vector[13 - i]; /* mic_iv[8:13] = PN[5:0] */
+	mic_iv[14] = (unsigned char)(payload_length / 256);
+	mic_iv[15] = (unsigned char)(payload_length % 256);
 }
 
 /************************************************/
@@ -659,33 +704,34 @@ static void construct_mic_iv(u8 *mic_iv,
 /* header fields.                               */
 /* Build AAD SC, A1, A2                           */
 /************************************************/
-static void construct_mic_header1(u8 *mic_header1,
-				  signed int header_length,
-				  u8 *mpdu,
-				  uint frtype) /* for CONFIG_IEEE80211W, none 11w also can use */
+static void construct_mic_header1(
+	u8 *mic_header1, signed int header_length, u8 *mpdu,
+	uint frtype) /* for CONFIG_IEEE80211W, none 11w also can use */
 {
-		mic_header1[0] = (u8)((header_length - 2) / 256);
-		mic_header1[1] = (u8)((header_length - 2) % 256);
+	mic_header1[0] = (u8)((header_length - 2) / 256);
+	mic_header1[1] = (u8)((header_length - 2) % 256);
 
-		/* 802.11w management frame don't AND subtype bits 4, 5, 6 of frame control field */
-		if (frtype == WIFI_MGT_TYPE)
-			mic_header1[2] = mpdu[0];
-		else
-			mic_header1[2] = mpdu[0] & 0xcf;    /* Mute CF poll & CF ack bits */
-
-		mic_header1[3] = mpdu[1] & 0xc7;    /* Mute retry, more data and pwr mgt bits */
-		mic_header1[4] = mpdu[4];       /* A1 */
-		mic_header1[5] = mpdu[5];
-		mic_header1[6] = mpdu[6];
-		mic_header1[7] = mpdu[7];
-		mic_header1[8] = mpdu[8];
-		mic_header1[9] = mpdu[9];
-		mic_header1[10] = mpdu[10];     /* A2 */
-		mic_header1[11] = mpdu[11];
-		mic_header1[12] = mpdu[12];
-		mic_header1[13] = mpdu[13];
-		mic_header1[14] = mpdu[14];
-		mic_header1[15] = mpdu[15];
+	/* 802.11w management frame don't AND subtype bits 4, 5, 6 of frame control field */
+	if (frtype == WIFI_MGT_TYPE)
+		mic_header1[2] = mpdu[0];
+	else
+		mic_header1[2] = mpdu[0] &
+				 0xcf; /* Mute CF poll & CF ack bits */
+
+	mic_header1[3] = mpdu[1] &
+			 0xc7; /* Mute retry, more data and pwr mgt bits */
+	mic_header1[4] = mpdu[4]; /* A1 */
+	mic_header1[5] = mpdu[5];
+	mic_header1[6] = mpdu[6];
+	mic_header1[7] = mpdu[7];
+	mic_header1[8] = mpdu[8];
+	mic_header1[9] = mpdu[9];
+	mic_header1[10] = mpdu[10]; /* A2 */
+	mic_header1[11] = mpdu[11];
+	mic_header1[12] = mpdu[12];
+	mic_header1[13] = mpdu[13];
+	mic_header1[14] = mpdu[14];
+	mic_header1[15] = mpdu[15];
 }
 
 /************************************************/
@@ -693,43 +739,41 @@ static void construct_mic_header1(u8 *mic_header1,
 /* Builds the last MIC header block from        */
 /* header fields.                               */
 /************************************************/
-static void construct_mic_header2(u8 *mic_header2,
-				  u8 *mpdu,
-				  signed int a4_exists,
-				  signed int qc_exists)
+static void construct_mic_header2(u8 *mic_header2, u8 *mpdu,
+				  signed int a4_exists, signed int qc_exists)
 {
-		signed int i;
+	signed int i;
 
-		for (i = 0; i < 16; i++)
-			mic_header2[i] = 0x00;
+	for (i = 0; i < 16; i++)
+		mic_header2[i] = 0x00;
 
-		mic_header2[0] = mpdu[16];    /* A3 */
-		mic_header2[1] = mpdu[17];
-		mic_header2[2] = mpdu[18];
-		mic_header2[3] = mpdu[19];
-		mic_header2[4] = mpdu[20];
-		mic_header2[5] = mpdu[21];
+	mic_header2[0] = mpdu[16]; /* A3 */
+	mic_header2[1] = mpdu[17];
+	mic_header2[2] = mpdu[18];
+	mic_header2[3] = mpdu[19];
+	mic_header2[4] = mpdu[20];
+	mic_header2[5] = mpdu[21];
 
-		mic_header2[6] = 0x00;
-		mic_header2[7] = 0x00; /* mpdu[23]; */
+	mic_header2[6] = 0x00;
+	mic_header2[7] = 0x00; /* mpdu[23]; */
 
-		if (!qc_exists && a4_exists) {
-			for (i = 0; i < 6; i++)
-				mic_header2[8 + i] = mpdu[24 + i];   /* A4 */
-		}
+	if (!qc_exists && a4_exists) {
+		for (i = 0; i < 6; i++)
+			mic_header2[8 + i] = mpdu[24 + i]; /* A4 */
+	}
 
-		if (qc_exists && !a4_exists) {
-			mic_header2[8] = mpdu[24] & 0x0f; /* mute bits 15 - 4 */
-			mic_header2[9] = mpdu[25] & 0x00;
-		}
+	if (qc_exists && !a4_exists) {
+		mic_header2[8] = mpdu[24] & 0x0f; /* mute bits 15 - 4 */
+		mic_header2[9] = mpdu[25] & 0x00;
+	}
 
-		if (qc_exists && a4_exists) {
-			for (i = 0; i < 6; i++)
-				mic_header2[8 + i] = mpdu[24 + i];   /* A4 */
+	if (qc_exists && a4_exists) {
+		for (i = 0; i < 6; i++)
+			mic_header2[8 + i] = mpdu[24 + i]; /* A4 */
 
-			mic_header2[14] = mpdu[30] & 0x0f;
-			mic_header2[15] = mpdu[31] & 0x00;
-		}
+		mic_header2[14] = mpdu[30] & 0x0f;
+		mic_header2[15] = mpdu[31] & 0x00;
+	}
 }
 
 /************************************************/
@@ -739,13 +783,10 @@ static void construct_mic_header2(u8 *mic_header2,
 /* Baron think the function is construct CCM    */
 /* nonce                                        */
 /************************************************/
-static void construct_ctr_preload(u8 *ctr_preload,
-				  signed int a4_exists,
-				  signed int qc_exists,
-				  u8 *mpdu,
-				  u8 *pn_vector,
-				  signed int c,
-				  uint frtype) /* for CONFIG_IEEE80211W, none 11w also can use */
+static void construct_ctr_preload(
+	u8 *ctr_preload, signed int a4_exists, signed int qc_exists, u8 *mpdu,
+	u8 *pn_vector, signed int c,
+	uint frtype) /* for CONFIG_IEEE80211W, none 11w also can use */
 {
 	signed int i = 0;
 
@@ -753,9 +794,9 @@ static void construct_ctr_preload(u8 *ctr_preload,
 		ctr_preload[i] = 0x00;
 	i = 0;
 
-	ctr_preload[0] = 0x01;                                  /* flag */
+	ctr_preload[0] = 0x01; /* flag */
 	if (qc_exists && a4_exists)
-		ctr_preload[1] = mpdu[30] & 0x0f;   /* QoC_Control */
+		ctr_preload[1] = mpdu[30] & 0x0f; /* QoC_Control */
 	if (qc_exists && !a4_exists)
 		ctr_preload[1] = mpdu[24] & 0x0f;
 
@@ -764,18 +805,20 @@ static void construct_ctr_preload(u8 *ctr_preload,
 		ctr_preload[1] |= BIT(4);
 
 	for (i = 2; i < 8; i++)
-		ctr_preload[i] = mpdu[i + 8];                       /* ctr_preload[2:7] = A2[0:5] = mpdu[10:15] */
+		ctr_preload[i] =
+			mpdu[i +
+			     8]; /* ctr_preload[2:7] = A2[0:5] = mpdu[10:15] */
 	for (i = 8; i < 14; i++)
-		ctr_preload[i] =    pn_vector[13 - i];          /* ctr_preload[8:13] = PN[5:0] */
+		ctr_preload[i] =
+			pn_vector[13 - i]; /* ctr_preload[8:13] = PN[5:0] */
 	ctr_preload[14] = (unsigned char)(c / 256); /* Ctr */
 	ctr_preload[15] = (unsigned char)(c % 256);
 }
 
-static signed int aes_cipher(u8 *key, uint	hdrlen,
-			u8 *pframe, uint plen)
+static signed int aes_cipher(u8 *key, uint hdrlen, u8 *pframe, uint plen)
 {
-	uint	qc_exists, a4_exists, i, j, payload_remainder,
-		num_blocks, payload_index;
+	uint qc_exists, a4_exists, i, j, payload_remainder, num_blocks,
+		payload_index;
 
 	u8 pn_vector[6];
 	u8 mic_iv[16] = {};
@@ -788,12 +831,12 @@ static signed int aes_cipher(u8 *key, uint	hdrlen,
 	u8 aes_out[16] = {};
 	u8 padded_buffer[16] = {};
 	u8 mic[8];
-	uint	frtype  = GetFrameType(pframe);
-	uint	frsubtype  = GetFrameSubType(pframe);
+	uint frtype = GetFrameType(pframe);
+	uint frsubtype = GetFrameSubType(pframe);
 
 	frsubtype = frsubtype >> 4;
 
-	if ((hdrlen == WLAN_HDR_A3_LEN) || (hdrlen ==  WLAN_HDR_A3_QOS_LEN))
+	if ((hdrlen == WLAN_HDR_A3_LEN) || (hdrlen == WLAN_HDR_A3_QOS_LEN))
 		a4_exists = 0;
 	else
 		a4_exists = 1;
@@ -802,15 +845,14 @@ static signed int aes_cipher(u8 *key, uint	hdrlen,
 	    ((frtype | frsubtype) == WIFI_DATA_CFPOLL) ||
 	    ((frtype | frsubtype) == WIFI_DATA_CFACKPOLL)) {
 		qc_exists = 1;
-		if (hdrlen !=  WLAN_HDR_A3_QOS_LEN)
+		if (hdrlen != WLAN_HDR_A3_QOS_LEN)
 			hdrlen += 2;
 
-	} else if ((frtype == WIFI_DATA) && /*  add for CONFIG_IEEE80211W, none 11w also can use */
-		   ((frsubtype == 0x08) ||
-		   (frsubtype == 0x09) ||
-		   (frsubtype == 0x0a) ||
-		   (frsubtype == 0x0b))) {
-		if (hdrlen !=  WLAN_HDR_A3_QOS_LEN)
+	} else if ((frtype ==
+		    WIFI_DATA) && /*  add for CONFIG_IEEE80211W, none 11w also can use */
+		   ((frsubtype == 0x08) || (frsubtype == 0x09) ||
+		    (frsubtype == 0x0a) || (frsubtype == 0x0b))) {
+		if (hdrlen != WLAN_HDR_A3_QOS_LEN)
 			hdrlen += 2;
 
 		qc_exists = 1;
@@ -825,23 +867,17 @@ static signed int aes_cipher(u8 *key, uint	hdrlen,
 	pn_vector[4] = pframe[hdrlen + 6];
 	pn_vector[5] = pframe[hdrlen + 7];
 
-	construct_mic_iv(mic_iv,
-			 qc_exists,
-			 a4_exists,
-			 pframe,	 /* message, */
-			 plen,
-			 pn_vector,
-			 frtype); /*  add for CONFIG_IEEE80211W, none 11w also can use */
+	construct_mic_iv(
+		mic_iv, qc_exists, a4_exists, pframe, /* message, */
+		plen, pn_vector,
+		frtype); /*  add for CONFIG_IEEE80211W, none 11w also can use */
 
-	construct_mic_header1(mic_header1,
-			      hdrlen,
-			      pframe,	/* message */
-			      frtype); /*  add for CONFIG_IEEE80211W, none 11w also can use */
+	construct_mic_header1(
+		mic_header1, hdrlen, pframe, /* message */
+		frtype); /*  add for CONFIG_IEEE80211W, none 11w also can use */
 
-	construct_mic_header2(mic_header2,
-			      pframe,	/* message, */
-			      a4_exists,
-			      qc_exists);
+	construct_mic_header2(mic_header2, pframe, /* message, */
+			      a4_exists, qc_exists);
 
 	payload_remainder = plen % 16;
 	num_blocks = plen / 16;
@@ -857,7 +893,8 @@ static signed int aes_cipher(u8 *key, uint	hdrlen,
 	aes128k128d(key, chain_buffer, aes_out);
 
 	for (i = 0; i < num_blocks; i++) {
-		crypto_xor_cpy(chain_buffer, aes_out, &pframe[payload_index], 16);
+		crypto_xor_cpy(chain_buffer, aes_out, &pframe[payload_index],
+			       16);
 
 		payload_index += 16;
 		aes128k128d(key, chain_buffer, aes_out);
@@ -874,7 +911,7 @@ static signed int aes_cipher(u8 *key, uint	hdrlen,
 		aes128k128d(key, chain_buffer, aes_out);
 	}
 
-	for (j = 0 ; j < 8; j++)
+	for (j = 0; j < 8; j++)
 		mic[j] = aes_out[j];
 
 	/* Insert MIC into payload */
@@ -883,11 +920,13 @@ static signed int aes_cipher(u8 *key, uint	hdrlen,
 
 	payload_index = hdrlen + 8;
 	for (i = 0; i < num_blocks; i++) {
-		construct_ctr_preload(ctr_preload, a4_exists, qc_exists, pframe, /* message, */
+		construct_ctr_preload(ctr_preload, a4_exists, qc_exists,
+				      pframe, /* message, */
 				      pn_vector, i + 1, frtype);
 		/*  add for CONFIG_IEEE80211W, none 11w also can use */
 		aes128k128d(key, ctr_preload, aes_out);
-		crypto_xor_cpy(chain_buffer, aes_out, &pframe[payload_index], 16);
+		crypto_xor_cpy(chain_buffer, aes_out, &pframe[payload_index],
+			       16);
 		for (j = 0; j < 16; j++)
 			pframe[payload_index++] = chain_buffer[j];
 	}
@@ -895,7 +934,8 @@ static signed int aes_cipher(u8 *key, uint	hdrlen,
 	if (payload_remainder > 0) {
 		/* If there is a short final block, then pad it,*/
 		/* encrypt it and copy the unpadded part back   */
-		construct_ctr_preload(ctr_preload, a4_exists, qc_exists, pframe, /* message, */
+		construct_ctr_preload(ctr_preload, a4_exists, qc_exists,
+				      pframe, /* message, */
 				      pn_vector, num_blocks + 1, frtype);
 		/*  add for CONFIG_IEEE80211W, none 11w also can use */
 
@@ -911,7 +951,8 @@ static signed int aes_cipher(u8 *key, uint	hdrlen,
 	}
 
 	/* Encrypt the MIC */
-	construct_ctr_preload(ctr_preload, a4_exists, qc_exists, pframe, /* message, */
+	construct_ctr_preload(ctr_preload, a4_exists, qc_exists,
+			      pframe, /* message, */
 			      pn_vector, 0, frtype);
 	/*  add for CONFIG_IEEE80211W, none 11w also can use */
 
@@ -929,14 +970,14 @@ static signed int aes_cipher(u8 *key, uint	hdrlen,
 }
 
 u32 rtw_aes_encrypt(struct adapter *padapter, u8 *pxmitframe)
-{	/*  exclude ICV */
+{ /*  exclude ICV */
 
 	/*static*/
 	/* unsigned char message[MAX_MSG_SIZE]; */
 
 	/* Intermediate Buffers */
 	signed int curfragnum, length;
-	u8 *pframe, *prwskey;	/*  *payload,*iv */
+	u8 *pframe, *prwskey; /*  *payload,*iv */
 	u8 hw_hdr_offset = 0;
 	struct pkt_attrib *pattrib = &((struct xmit_frame *)pxmitframe)->attrib;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
@@ -955,17 +996,24 @@ u32 rtw_aes_encrypt(struct adapter *padapter, u8 *pxmitframe)
 		return _SUCCESS;
 
 	if (is_multicast_ether_addr(pattrib->ra))
-		prwskey = psecuritypriv->dot118021XGrpKey[psecuritypriv->dot118021XGrpKeyid].skey;
+		prwskey =
+			psecuritypriv
+				->dot118021XGrpKey[psecuritypriv
+							   ->dot118021XGrpKeyid]
+				.skey;
 	else
 		prwskey = pattrib->dot118021x_UncstKey.skey;
 
 	for (curfragnum = 0; curfragnum < pattrib->nr_frags; curfragnum++) {
-		if ((curfragnum + 1) == pattrib->nr_frags) {	/* 4 the last fragment */
-			length = pattrib->last_txcmdsz - pattrib->hdrlen - pattrib->iv_len - pattrib->icv_len;
+		if ((curfragnum + 1) ==
+		    pattrib->nr_frags) { /* 4 the last fragment */
+			length = pattrib->last_txcmdsz - pattrib->hdrlen -
+				 pattrib->iv_len - pattrib->icv_len;
 
 			aes_cipher(prwskey, pattrib->hdrlen, pframe, length);
 		} else {
-			length = pxmitpriv->frag_len - pattrib->hdrlen - pattrib->iv_len - pattrib->icv_len;
+			length = pxmitpriv->frag_len - pattrib->hdrlen -
+				 pattrib->iv_len - pattrib->icv_len;
 
 			aes_cipher(prwskey, pattrib->hdrlen, pframe, length);
 			pframe += pxmitpriv->frag_len;
@@ -975,12 +1023,11 @@ u32 rtw_aes_encrypt(struct adapter *padapter, u8 *pxmitframe)
 	return res;
 }
 
-static signed int aes_decipher(u8 *key, uint	hdrlen,
-			 u8 *pframe, uint plen)
+static signed int aes_decipher(u8 *key, uint hdrlen, u8 *pframe, uint plen)
 {
 	static u8 message[MAX_MSG_SIZE];
-	uint qc_exists, a4_exists, i, j, payload_remainder,
-			num_blocks, payload_index;
+	uint qc_exists, a4_exists, i, j, payload_remainder, num_blocks,
+		payload_index;
 	signed int res = _SUCCESS;
 	u8 pn_vector[6];
 	u8 mic_iv[16] = {};
@@ -988,31 +1035,32 @@ static signed int aes_decipher(u8 *key, uint	hdrlen,
 	u8 mic_header2[16] = {};
 	u8 ctr_preload[16] = {};
 
-		/* Intermediate Buffers */
+	/* Intermediate Buffers */
 	u8 chain_buffer[16] = {};
 	u8 aes_out[16] = {};
 	u8 padded_buffer[16] = {};
 	u8 mic[8];
 
-	uint frtype  = GetFrameType(pframe);
-	uint frsubtype  = GetFrameSubType(pframe);
+	uint frtype = GetFrameType(pframe);
+	uint frsubtype = GetFrameSubType(pframe);
 
 	frsubtype = frsubtype >> 4;
 
 	/* start to decrypt the payload */
 
-	num_blocks = (plen - 8) / 16; /* plen including LLC, payload_length and mic) */
+	num_blocks = (plen - 8) /
+		     16; /* plen including LLC, payload_length and mic) */
 
 	payload_remainder = (plen - 8) % 16;
 
-	pn_vector[0]  = pframe[hdrlen];
-	pn_vector[1]  = pframe[hdrlen + 1];
-	pn_vector[2]  = pframe[hdrlen + 4];
-	pn_vector[3]  = pframe[hdrlen + 5];
-	pn_vector[4]  = pframe[hdrlen + 6];
-	pn_vector[5]  = pframe[hdrlen + 7];
+	pn_vector[0] = pframe[hdrlen];
+	pn_vector[1] = pframe[hdrlen + 1];
+	pn_vector[2] = pframe[hdrlen + 4];
+	pn_vector[3] = pframe[hdrlen + 5];
+	pn_vector[4] = pframe[hdrlen + 6];
+	pn_vector[5] = pframe[hdrlen + 7];
 
-	if ((hdrlen == WLAN_HDR_A3_LEN) || (hdrlen ==  WLAN_HDR_A3_QOS_LEN))
+	if ((hdrlen == WLAN_HDR_A3_LEN) || (hdrlen == WLAN_HDR_A3_QOS_LEN))
 		a4_exists = 0;
 	else
 		a4_exists = 1;
@@ -1021,15 +1069,14 @@ static signed int aes_decipher(u8 *key, uint	hdrlen,
 	    ((frtype | frsubtype) == WIFI_DATA_CFPOLL) ||
 	    ((frtype | frsubtype) == WIFI_DATA_CFACKPOLL)) {
 		qc_exists = 1;
-		if (hdrlen !=  WLAN_HDR_A3_QOS_LEN)
+		if (hdrlen != WLAN_HDR_A3_QOS_LEN)
 			hdrlen += 2;
 
-	} else if ((frtype == WIFI_DATA) && /* only for data packet . add for CONFIG_IEEE80211W, none 11w also can use */
-		   ((frsubtype == 0x08) ||
-		   (frsubtype == 0x09) ||
-		   (frsubtype == 0x0a) ||
-		   (frsubtype == 0x0b))) {
-		if (hdrlen !=  WLAN_HDR_A3_QOS_LEN)
+	} else if ((frtype ==
+		    WIFI_DATA) && /* only for data packet . add for CONFIG_IEEE80211W, none 11w also can use */
+		   ((frsubtype == 0x08) || (frsubtype == 0x09) ||
+		    (frsubtype == 0x0a) || (frsubtype == 0x0b))) {
+		if (hdrlen != WLAN_HDR_A3_QOS_LEN)
 			hdrlen += 2;
 
 		qc_exists = 1;
@@ -1042,13 +1089,14 @@ static signed int aes_decipher(u8 *key, uint	hdrlen,
 	payload_index = hdrlen + 8; /*  8 is for extiv */
 
 	for (i = 0; i < num_blocks; i++) {
-		construct_ctr_preload(ctr_preload, a4_exists,
-				      qc_exists, pframe,
-				      pn_vector, i + 1,
-				      frtype); /*  add for CONFIG_IEEE80211W, none 11w also can use */
+		construct_ctr_preload(
+			ctr_preload, a4_exists, qc_exists, pframe, pn_vector,
+			i + 1,
+			frtype); /*  add for CONFIG_IEEE80211W, none 11w also can use */
 
 		aes128k128d(key, ctr_preload, aes_out);
-		crypto_xor_cpy(chain_buffer, aes_out, &pframe[payload_index], 16);
+		crypto_xor_cpy(chain_buffer, aes_out, &pframe[payload_index],
+			       16);
 
 		for (j = 0; j < 16; j++)
 			pframe[payload_index++] = chain_buffer[j];
@@ -1057,8 +1105,8 @@ static signed int aes_decipher(u8 *key, uint	hdrlen,
 	if (payload_remainder > 0) {
 		/* If there is a short final block, then pad it,*/
 		/* encrypt it and copy the unpadded part back   */
-		construct_ctr_preload(ctr_preload, a4_exists, qc_exists, pframe, pn_vector,
-				      num_blocks + 1, frtype);
+		construct_ctr_preload(ctr_preload, a4_exists, qc_exists, pframe,
+				      pn_vector, num_blocks + 1, frtype);
 		/*  add for CONFIG_IEEE80211W, none 11w also can use */
 
 		for (j = 0; j < 16; j++)
@@ -1074,7 +1122,8 @@ static signed int aes_decipher(u8 *key, uint	hdrlen,
 
 	/* start to calculate the mic */
 	if ((hdrlen + plen + 8) <= MAX_MSG_SIZE)
-		memcpy(message, pframe, (hdrlen + plen + 8)); /* 8 is for ext iv len */
+		memcpy(message, pframe,
+		       (hdrlen + plen + 8)); /* 8 is for ext iv len */
 
 	pn_vector[0] = pframe[hdrlen];
 	pn_vector[1] = pframe[hdrlen + 1];
@@ -1083,7 +1132,8 @@ static signed int aes_decipher(u8 *key, uint	hdrlen,
 	pn_vector[4] = pframe[hdrlen + 6];
 	pn_vector[5] = pframe[hdrlen + 7];
 
-	construct_mic_iv(mic_iv, qc_exists, a4_exists, message, plen - 8, pn_vector, frtype);
+	construct_mic_iv(mic_iv, qc_exists, a4_exists, message, plen - 8,
+			 pn_vector, frtype);
 	/*  add for CONFIG_IEEE80211W, none 11w also can use */
 
 	construct_mic_header1(mic_header1, hdrlen, message, frtype);
@@ -1104,7 +1154,8 @@ static signed int aes_decipher(u8 *key, uint	hdrlen,
 	aes128k128d(key, chain_buffer, aes_out);
 
 	for (i = 0; i < num_blocks; i++) {
-		crypto_xor_cpy(chain_buffer, aes_out, &message[payload_index], 16);
+		crypto_xor_cpy(chain_buffer, aes_out, &message[payload_index],
+			       16);
 
 		payload_index += 16;
 		aes128k128d(key, chain_buffer, aes_out);
@@ -1130,11 +1181,12 @@ static signed int aes_decipher(u8 *key, uint	hdrlen,
 
 	payload_index = hdrlen + 8;
 	for (i = 0; i < num_blocks; i++) {
-		construct_ctr_preload(ctr_preload, a4_exists, qc_exists, message, pn_vector, i + 1,
-				      frtype);
+		construct_ctr_preload(ctr_preload, a4_exists, qc_exists,
+				      message, pn_vector, i + 1, frtype);
 		/*  add for CONFIG_IEEE80211W, none 11w also can use */
 		aes128k128d(key, ctr_preload, aes_out);
-		crypto_xor_cpy(chain_buffer, aes_out, &message[payload_index], 16);
+		crypto_xor_cpy(chain_buffer, aes_out, &message[payload_index],
+			       16);
 		for (j = 0; j < 16; j++)
 			message[payload_index++] = chain_buffer[j];
 	}
@@ -1142,8 +1194,9 @@ static signed int aes_decipher(u8 *key, uint	hdrlen,
 	if (payload_remainder > 0) {
 		/* If there is a short final block, then pad it,*/
 		/* encrypt it and copy the unpadded part back   */
-		construct_ctr_preload(ctr_preload, a4_exists, qc_exists, message, pn_vector,
-				      num_blocks + 1, frtype);
+		construct_ctr_preload(ctr_preload, a4_exists, qc_exists,
+				      message, pn_vector, num_blocks + 1,
+				      frtype);
 		/*  add for CONFIG_IEEE80211W, none 11w also can use */
 
 		for (j = 0; j < 16; j++)
@@ -1158,7 +1211,8 @@ static signed int aes_decipher(u8 *key, uint	hdrlen,
 	}
 
 	/* Encrypt the MIC */
-	construct_ctr_preload(ctr_preload, a4_exists, qc_exists, message, pn_vector, 0, frtype);
+	construct_ctr_preload(ctr_preload, a4_exists, qc_exists, message,
+			      pn_vector, 0, frtype);
 	/*  add for CONFIG_IEEE80211W, none 11w also can use */
 
 	for (j = 0; j < 16; j++)
@@ -1173,14 +1227,15 @@ static signed int aes_decipher(u8 *key, uint	hdrlen,
 
 	/* compare the mic */
 	for (i = 0; i < 8; i++) {
-		if (pframe[hdrlen + 8 + plen - 8 + i] != message[hdrlen + 8 + plen - 8 + i])
+		if (pframe[hdrlen + 8 + plen - 8 + i] !=
+		    message[hdrlen + 8 + plen - 8 + i])
 			res = _FAIL;
 	}
 	return res;
 }
 
 u32 rtw_aes_decrypt(struct adapter *padapter, u8 *precvframe)
-{	/*  exclude ICV */
+{ /*  exclude ICV */
 
 	/*static*/
 	/* unsigned char message[MAX_MSG_SIZE]; */
@@ -1188,13 +1243,15 @@ u32 rtw_aes_decrypt(struct adapter *padapter, u8 *precvframe)
 	/* Intermediate Buffers */
 
 	signed int length;
-	u8 *pframe, *prwskey;	/*  *payload,*iv */
+	u8 *pframe, *prwskey; /*  *payload,*iv */
 	struct sta_info *stainfo;
-	struct rx_pkt_attrib *prxattrib = &((union recv_frame *)precvframe)->u.hdr.attrib;
+	struct rx_pkt_attrib *prxattrib =
+		&((union recv_frame *)precvframe)->u.hdr.attrib;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	u32 res = _SUCCESS;
 
-	pframe = (unsigned char *)((union recv_frame *)precvframe)->u.hdr.rx_data;
+	pframe =
+		(unsigned char *)((union recv_frame *)precvframe)->u.hdr.rx_data;
 	/* 4 start to encrypt each fragment */
 	if (prxattrib->encrypt != _AES_)
 		return _SUCCESS;
@@ -1219,11 +1276,12 @@ u32 rtw_aes_decrypt(struct adapter *padapter, u8 *precvframe)
 
 			if (jiffies_to_msecs(jiffies - start) > 1000) {
 				if (no_gkey_bc_cnt || no_gkey_mc_cnt) {
-					netdev_dbg(padapter->pnetdev,
-						   FUNC_ADPT_FMT " no_gkey_bc_cnt:%u, no_gkey_mc_cnt:%u\n",
-						   FUNC_ADPT_ARG(padapter),
-						   no_gkey_bc_cnt,
-						   no_gkey_mc_cnt);
+					netdev_dbg(
+						padapter->pnetdev,
+						FUNC_ADPT_FMT
+						" no_gkey_bc_cnt:%u, no_gkey_mc_cnt:%u\n",
+						FUNC_ADPT_ARG(padapter),
+						no_gkey_bc_cnt, no_gkey_mc_cnt);
 				}
 				start = jiffies;
 				no_gkey_bc_cnt = 0;
@@ -1234,17 +1292,19 @@ u32 rtw_aes_decrypt(struct adapter *padapter, u8 *precvframe)
 		}
 
 		if (no_gkey_bc_cnt || no_gkey_mc_cnt) {
-			netdev_dbg(padapter->pnetdev,
-				   FUNC_ADPT_FMT " gkey installed. no_gkey_bc_cnt:%u, no_gkey_mc_cnt:%u\n",
-				   FUNC_ADPT_ARG(padapter),
-				   no_gkey_bc_cnt,
-				   no_gkey_mc_cnt);
+			netdev_dbg(
+				padapter->pnetdev,
+				FUNC_ADPT_FMT
+				" gkey installed. no_gkey_bc_cnt:%u, no_gkey_mc_cnt:%u\n",
+				FUNC_ADPT_ARG(padapter), no_gkey_bc_cnt,
+				no_gkey_mc_cnt);
 		}
 		start = 0;
 		no_gkey_bc_cnt = 0;
 		no_gkey_mc_cnt = 0;
 
-		prwskey = psecuritypriv->dot118021XGrpKey[prxattrib->key_index].skey;
+		prwskey = psecuritypriv->dot118021XGrpKey[prxattrib->key_index]
+				  .skey;
 		if (psecuritypriv->dot118021XGrpKeyid != prxattrib->key_index) {
 			res = _FAIL;
 			goto exit;
@@ -1253,7 +1313,8 @@ u32 rtw_aes_decrypt(struct adapter *padapter, u8 *precvframe)
 		prwskey = &stainfo->dot118021x_UncstKey.skey[0];
 	}
 
-	length = ((union recv_frame *)precvframe)->u.hdr.len - prxattrib->hdrlen - prxattrib->iv_len;
+	length = ((union recv_frame *)precvframe)->u.hdr.len -
+		 prxattrib->hdrlen - prxattrib->iv_len;
 
 	res = aes_decipher(prwskey, prxattrib->hdrlen, pframe, length);
 
@@ -1263,7 +1324,8 @@ u32 rtw_aes_decrypt(struct adapter *padapter, u8 *precvframe)
 
 u32 rtw_BIP_verify(struct adapter *padapter, u8 *precvframe)
 {
-	struct rx_pkt_attrib *pattrib = &((union recv_frame *)precvframe)->u.hdr.attrib;
+	struct rx_pkt_attrib *pattrib =
+		&((union recv_frame *)precvframe)->u.hdr.attrib;
 	u8 *pframe;
 	u8 *BIP_AAD, *p;
 	u32 res = _FAIL;
@@ -1280,13 +1342,16 @@ u32 rtw_BIP_verify(struct adapter *padapter, u8 *precvframe)
 		return _FAIL;
 
 	/* PKT start */
-	pframe = (unsigned char *)((union recv_frame *)precvframe)->u.hdr.rx_data;
+	pframe =
+		(unsigned char *)((union recv_frame *)precvframe)->u.hdr.rx_data;
 	/* mapping to wlan header */
 	pwlanhdr = (struct ieee80211_hdr *)pframe;
 	/* save the frame body + MME */
-	memcpy(BIP_AAD + BIP_AAD_SIZE, pframe + WLAN_HDR_A3_LEN, pattrib->pkt_len - WLAN_HDR_A3_LEN);
+	memcpy(BIP_AAD + BIP_AAD_SIZE, pframe + WLAN_HDR_A3_LEN,
+	       pattrib->pkt_len - WLAN_HDR_A3_LEN);
 	/* find MME IE pointer */
-	p = rtw_get_ie(BIP_AAD + BIP_AAD_SIZE, WLAN_EID_MMIE, &len, pattrib->pkt_len - WLAN_HDR_A3_LEN);
+	p = rtw_get_ie(BIP_AAD + BIP_AAD_SIZE, WLAN_EID_MMIE, &len,
+		       pattrib->pkt_len - WLAN_HDR_A3_LEN);
 	/* Baron */
 	if (p) {
 		u16 keyid = 0;
@@ -1315,8 +1380,11 @@ u32 rtw_BIP_verify(struct adapter *padapter, u8 *precvframe)
 		/* conscruct AAD, copy address 1 to address 3 */
 		memcpy(BIP_AAD + 2, &pwlanhdr->addrs, sizeof(pwlanhdr->addrs));
 
-		if (omac1_aes_128(padapter->securitypriv.dot11wBIPKey[padapter->securitypriv.dot11wBIPKeyid].skey
-			, BIP_AAD, ori_len, mic))
+		if (omac1_aes_128(padapter->securitypriv
+					  .dot11wBIPKey[padapter->securitypriv
+								.dot11wBIPKeyid]
+					  .skey,
+				  BIP_AAD, ori_len, mic))
 			goto BIP_exit;
 
 		/* MIC field should be last 8 bytes of packet (packet without FCS) */
@@ -1361,8 +1429,8 @@ static void gf_mulx(u8 *pad)
  * OMAC1 was standardized with the name CMAC by NIST in a Special Publication
  * (SP) 800-38B.
  */
-static int omac1_aes_128_vector(u8 *key, size_t num_elem,
-				u8 *addr[], size_t *len, u8 *mac)
+static int omac1_aes_128_vector(u8 *key, size_t num_elem, u8 *addr[],
+				size_t *len, u8 *mac)
 {
 	struct aes_enckey aes;
 	u8 cbc[AES_BLOCK_SIZE], pad[AES_BLOCK_SIZE];
@@ -1446,13 +1514,16 @@ void rtw_sec_restore_wep_key(struct adapter *adapter)
 	struct security_priv *securitypriv = &adapter->securitypriv;
 	signed int keyid;
 
-	if ((securitypriv->dot11PrivacyAlgrthm == _WEP40_) || (securitypriv->dot11PrivacyAlgrthm == _WEP104_)) {
+	if ((securitypriv->dot11PrivacyAlgrthm == _WEP40_) ||
+	    (securitypriv->dot11PrivacyAlgrthm == _WEP104_)) {
 		for (keyid = 0; keyid < 4; keyid++) {
 			if (securitypriv->key_mask & BIT(keyid)) {
 				if (keyid == securitypriv->dot11PrivacyKeyIndex)
-					rtw_set_key(adapter, securitypriv, keyid, 1, false);
+					rtw_set_key(adapter, securitypriv,
+						    keyid, 1, false);
 				else
-					rtw_set_key(adapter, securitypriv, keyid, 0, false);
+					rtw_set_key(adapter, securitypriv,
+						    keyid, 0, false);
 			}
 		}
 	}
@@ -1464,7 +1535,8 @@ u8 rtw_handle_tkip_countermeasure(struct adapter *adapter, const char *caller)
 	u8 status = _SUCCESS;
 
 	if (securitypriv->btkip_countermeasure) {
-		unsigned long passing_ms = jiffies_to_msecs(jiffies - securitypriv->btkip_countermeasure_time);
+		unsigned long passing_ms = jiffies_to_msecs(
+			jiffies - securitypriv->btkip_countermeasure_time);
 
 		if (passing_ms > 60 * 1000) {
 			netdev_dbg(adapter->pnetdev,
diff --git a/drivers/staging/rtl8723bs/core/rtw_sta_mgt.c b/drivers/staging/rtl8723bs/core/rtw_sta_mgt.c
index a1b7fe843979e..566797a1595d2 100644
--- a/drivers/staging/rtl8723bs/core/rtw_sta_mgt.c
+++ b/drivers/staging/rtl8723bs/core/rtw_sta_mgt.c
@@ -49,17 +49,19 @@ void _rtw_init_stainfo(struct sta_info *psta)
 	psta->keep_alive_trycnt = 0;
 }
 
-u32 _rtw_init_sta_priv(struct	sta_priv *pstapriv)
+u32 _rtw_init_sta_priv(struct sta_priv *pstapriv)
 {
 	struct sta_info *psta;
 	s32 i;
 
-	pstapriv->pallocated_stainfo_buf = vzalloc(sizeof(struct sta_info) * NUM_STA + 4);
+	pstapriv->pallocated_stainfo_buf =
+		vzalloc(sizeof(struct sta_info) * NUM_STA + 4);
 
 	if (!pstapriv->pallocated_stainfo_buf)
 		return _FAIL;
 
-	pstapriv->pstainfo_buf = pstapriv->pallocated_stainfo_buf + 4 -
+	pstapriv->pstainfo_buf =
+		pstapriv->pallocated_stainfo_buf + 4 -
 		((SIZE_PTR)(pstapriv->pallocated_stainfo_buf) & 3);
 
 	INIT_LIST_HEAD(&pstapriv->free_sta_queue.queue);
@@ -80,7 +82,8 @@ u32 _rtw_init_sta_priv(struct	sta_priv *pstapriv)
 
 		INIT_LIST_HEAD(&pstapriv->sta_hash[i]);
 
-		list_add_tail(&psta->list, get_list_head(&pstapriv->free_sta_queue));
+		list_add_tail(&psta->list,
+			      get_list_head(&pstapriv->free_sta_queue));
 
 		psta++;
 	}
@@ -104,21 +107,24 @@ u32 _rtw_init_sta_priv(struct	sta_priv *pstapriv)
 
 inline int rtw_stainfo_offset(struct sta_priv *stapriv, struct sta_info *sta)
 {
-	int offset = (((u8 *)sta) - stapriv->pstainfo_buf) / sizeof(struct sta_info);
+	int offset =
+		(((u8 *)sta) - stapriv->pstainfo_buf) / sizeof(struct sta_info);
 
 	return offset;
 }
 
-inline struct sta_info *rtw_get_stainfo_by_offset(struct sta_priv *stapriv, int offset)
+inline struct sta_info *rtw_get_stainfo_by_offset(struct sta_priv *stapriv,
+						  int offset)
 {
-	return (struct sta_info *)(stapriv->pstainfo_buf + offset * sizeof(struct sta_info));
+	return (struct sta_info *)(stapriv->pstainfo_buf +
+				   offset * sizeof(struct sta_info));
 }
 
 /*  this function is used to free the memory of lock || sema for all stainfos */
 void kfree_all_stainfo(struct sta_priv *pstapriv);
 void kfree_all_stainfo(struct sta_priv *pstapriv)
 {
-	struct list_head	*plist, *phead;
+	struct list_head *plist, *phead;
 
 	spin_lock_bh(&pstapriv->sta_hash_lock);
 
@@ -131,18 +137,18 @@ void kfree_all_stainfo(struct sta_priv *pstapriv)
 	spin_unlock_bh(&pstapriv->sta_hash_lock);
 }
 
-void kfree_sta_priv_lock(struct	sta_priv *pstapriv);
-void kfree_sta_priv_lock(struct	sta_priv *pstapriv)
+void kfree_sta_priv_lock(struct sta_priv *pstapriv);
+void kfree_sta_priv_lock(struct sta_priv *pstapriv)
 {
-	 kfree_all_stainfo(pstapriv); /* be done before free sta_hash_lock */
+	kfree_all_stainfo(pstapriv); /* be done before free sta_hash_lock */
 }
 
-u32 _rtw_free_sta_priv(struct	sta_priv *pstapriv)
+u32 _rtw_free_sta_priv(struct sta_priv *pstapriv)
 {
-	struct list_head	*phead, *plist;
+	struct list_head *phead, *plist;
 	struct sta_info *psta = NULL;
 	struct recv_reorder_ctrl *preorder_ctrl;
-	int	index;
+	int index;
 
 	if (pstapriv) {
 		/*delete all reordering_ctrl_timer		*/
@@ -155,9 +161,12 @@ u32 _rtw_free_sta_priv(struct	sta_priv *pstapriv)
 				psta = list_entry(plist, struct sta_info,
 						  hash_list);
 
-				for (i = 0; i < 16 ; i++) {
-					preorder_ctrl = &psta->recvreorder_ctrl[i];
-					timer_delete_sync(&preorder_ctrl->reordering_ctrl_timer);
+				for (i = 0; i < 16; i++) {
+					preorder_ctrl =
+						&psta->recvreorder_ctrl[i];
+					timer_delete_sync(
+						&preorder_ctrl
+							 ->reordering_ctrl_timer);
 				}
 			}
 		}
@@ -172,15 +181,15 @@ u32 _rtw_free_sta_priv(struct	sta_priv *pstapriv)
 }
 
 /* struct	sta_info *rtw_alloc_stainfo(_queue *pfree_sta_queue, unsigned char *hwaddr) */
-struct	sta_info *rtw_alloc_stainfo(struct	sta_priv *pstapriv, u8 *hwaddr)
+struct sta_info *rtw_alloc_stainfo(struct sta_priv *pstapriv, u8 *hwaddr)
 {
-	s32	index;
-	struct list_head	*phash_list;
+	s32 index;
+	struct list_head *phash_list;
 	struct sta_info *psta;
 	struct __queue *pfree_sta_queue;
 	struct recv_reorder_ctrl *preorder_ctrl;
 	int i = 0;
-	u16  wRxSeqInitialValue = 0xffff;
+	u16 wRxSeqInitialValue = 0xffff;
 
 	pfree_sta_queue = &pstapriv->free_sta_queue;
 
@@ -191,7 +200,8 @@ struct	sta_info *rtw_alloc_stainfo(struct	sta_priv *pstapriv, u8 *hwaddr)
 		spin_unlock_bh(&pstapriv->sta_hash_lock);
 		return NULL;
 	}
-	psta = container_of(get_next(&pfree_sta_queue->queue), struct sta_info, list);
+	psta = container_of(get_next(&pfree_sta_queue->queue), struct sta_info,
+			    list);
 
 	list_del_init(&psta->list);
 
@@ -226,12 +236,13 @@ struct	sta_info *rtw_alloc_stainfo(struct	sta_priv *pstapriv, u8 *hwaddr)
 	/*  So, we initialize the tid_rxseq variable as the 0xffff. */
 
 	for (i = 0; i < 16; i++)
-		memcpy(&psta->sta_recvpriv.rxcache.tid_rxseq[i], &wRxSeqInitialValue, 2);
+		memcpy(&psta->sta_recvpriv.rxcache.tid_rxseq[i],
+		       &wRxSeqInitialValue, 2);
 
 	timer_setup(&psta->addba_retry_timer, addba_timer_hdl, 0);
 
 	/* for A-MPDU Rx reordering buffer control */
-	for (i = 0; i < 16 ; i++) {
+	for (i = 0; i < 16; i++) {
 		preorder_ctrl = &psta->recvreorder_ctrl[i];
 
 		preorder_ctrl->padapter = pstapriv->padapter;
@@ -241,14 +252,14 @@ struct	sta_info *rtw_alloc_stainfo(struct	sta_priv *pstapriv, u8 *hwaddr)
 		preorder_ctrl->indicate_seq = 0xffff;
 		preorder_ctrl->wend_b = 0xffff;
 		/* preorder_ctrl->wsize_b = (NR_RECVBUFF-2); */
-		preorder_ctrl->wsize_b = 64;/* 64; */
+		preorder_ctrl->wsize_b = 64; /* 64; */
 
 		INIT_LIST_HEAD(&preorder_ctrl->pending_recvframe_queue.queue);
 		spin_lock_init(&preorder_ctrl->pending_recvframe_queue.lock);
 
 		/* init recv timer */
 		timer_setup(&preorder_ctrl->reordering_ctrl_timer,
-				rtw_reordering_ctrl_timeout_handler, 0);
+			    rtw_reordering_ctrl_timeout_handler, 0);
 	}
 
 	/* init for DM */
@@ -271,9 +282,9 @@ u32 rtw_free_stainfo(struct adapter *padapter, struct sta_info *psta)
 	int i;
 	struct __queue *pfree_sta_queue;
 	struct recv_reorder_ctrl *preorder_ctrl;
-	struct	sta_xmit_priv *pstaxmitpriv;
-	struct	xmit_priv *pxmitpriv = &padapter->xmitpriv;
-	struct	sta_priv *pstapriv = &padapter->stapriv;
+	struct sta_xmit_priv *pstaxmitpriv;
+	struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
+	struct sta_priv *pstapriv = &padapter->stapriv;
 	struct hw_xmit *phwxmit;
 
 	if (!psta)
@@ -346,21 +357,23 @@ u32 rtw_free_stainfo(struct adapter *padapter, struct sta_info *psta)
 	timer_delete_sync(&psta->addba_retry_timer);
 
 	/* for A-MPDU Rx reordering buffer control, cancel reordering_ctrl_timer */
-	for (i = 0; i < 16 ; i++) {
-		struct list_head	*phead, *plist;
+	for (i = 0; i < 16; i++) {
+		struct list_head *phead, *plist;
 		union recv_frame *prframe;
 		struct __queue *ppending_recvframe_queue;
-		struct __queue *pfree_recv_queue = &padapter->recvpriv.free_recv_queue;
+		struct __queue *pfree_recv_queue =
+			&padapter->recvpriv.free_recv_queue;
 
 		preorder_ctrl = &psta->recvreorder_ctrl[i];
 
 		timer_delete_sync(&preorder_ctrl->reordering_ctrl_timer);
 
-		ppending_recvframe_queue = &preorder_ctrl->pending_recvframe_queue;
+		ppending_recvframe_queue =
+			&preorder_ctrl->pending_recvframe_queue;
 
 		spin_lock_bh(&ppending_recvframe_queue->lock);
 
-		phead =		get_list_head(ppending_recvframe_queue);
+		phead = get_list_head(ppending_recvframe_queue);
 		plist = get_next(phead);
 
 		while (!list_empty(phead)) {
@@ -422,9 +435,9 @@ u32 rtw_free_stainfo(struct adapter *padapter, struct sta_info *psta)
 void rtw_free_all_stainfo(struct adapter *padapter)
 {
 	struct list_head *plist, *phead, *tmp;
-	s32	index;
+	s32 index;
 	struct sta_info *psta = NULL;
-	struct	sta_priv *pstapriv = &padapter->stapriv;
+	struct sta_priv *pstapriv = &padapter->stapriv;
 	struct sta_info *pbcmc_stainfo = rtw_get_bcmc_stainfo(padapter);
 	LIST_HEAD(stainfo_free_list);
 
@@ -454,11 +467,11 @@ void rtw_free_all_stainfo(struct adapter *padapter)
 /* any station allocated can be searched by hash list */
 struct sta_info *rtw_get_stainfo(struct sta_priv *pstapriv, u8 *hwaddr)
 {
-	struct list_head	*plist, *phead;
+	struct list_head *plist, *phead;
 	struct sta_info *psta = NULL;
 	u32 index;
 	u8 *addr;
-	u8 bc_addr[ETH_ALEN] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
+	u8 bc_addr[ETH_ALEN] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
 
 	if (!hwaddr)
 		return NULL;
@@ -477,7 +490,7 @@ struct sta_info *rtw_get_stainfo(struct sta_priv *pstapriv, u8 *hwaddr)
 		psta = list_entry(plist, struct sta_info, hash_list);
 
 		if ((!memcmp(psta->hwaddr, addr, ETH_ALEN)))
-		 /*  if found the matched address */
+			/*  if found the matched address */
 			break;
 
 		psta = NULL;
@@ -490,9 +503,9 @@ struct sta_info *rtw_get_stainfo(struct sta_priv *pstapriv, u8 *hwaddr)
 u32 rtw_init_bcmc_stainfo(struct adapter *padapter)
 {
 	struct sta_info *psta;
-	u8 bcast_addr[ETH_ALEN] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
+	u8 bcast_addr[ETH_ALEN] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
 
-	struct	sta_priv *pstapriv = &padapter->stapriv;
+	struct sta_priv *pstapriv = &padapter->stapriv;
 	/* struct __queue	*pstapending = &padapter->xmitpriv.bm_pending; */
 
 	psta = rtw_alloc_stainfo(pstapriv, bcast_addr);
@@ -509,7 +522,7 @@ u32 rtw_init_bcmc_stainfo(struct adapter *padapter)
 struct sta_info *rtw_get_bcmc_stainfo(struct adapter *padapter)
 {
 	struct sta_priv *pstapriv = &padapter->stapriv;
-	u8 bc_addr[ETH_ALEN] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
+	u8 bc_addr[ETH_ALEN] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
 
 	return rtw_get_stainfo(pstapriv, bc_addr);
 }
@@ -517,12 +530,12 @@ struct sta_info *rtw_get_bcmc_stainfo(struct adapter *padapter)
 u8 rtw_access_ctrl(struct adapter *padapter, u8 *mac_addr)
 {
 	bool res = true;
-	struct list_head	*plist, *phead;
+	struct list_head *plist, *phead;
 	struct rtw_wlan_acl_node *paclnode;
 	bool match = false;
 	struct sta_priv *pstapriv = &padapter->stapriv;
 	struct wlan_acl_pool *pacl_list = &pstapriv->acl_list;
-	struct __queue	*pacl_node_q = &pacl_list->acl_node_q;
+	struct __queue *pacl_node_q = &pacl_list->acl_node_q;
 
 	spin_lock_bh(&pacl_node_q->lock);
 	phead = get_list_head(pacl_node_q);
@@ -540,7 +553,7 @@ u8 rtw_access_ctrl(struct adapter *padapter, u8 *mac_addr)
 	if (pacl_list->mode == 1) /* accept unless in deny list */
 		res = !match;
 
-	else if (pacl_list->mode == 2)/* deny unless in accept list */
+	else if (pacl_list->mode == 2) /* deny unless in accept list */
 		res = match;
 	else
 		res = true;
diff --git a/drivers/staging/rtl8723bs/core/rtw_wlan_util.c b/drivers/staging/rtl8723bs/core/rtw_wlan_util.c
index a4de538722b56..06104e054fab6 100644
--- a/drivers/staging/rtl8723bs/core/rtw_wlan_util.c
+++ b/drivers/staging/rtl8723bs/core/rtw_wlan_util.c
@@ -8,24 +8,24 @@
 #include <drv_types.h>
 #include <hal_com_h2c.h>
 
-static unsigned char ARTHEROS_OUI1[] = {0x00, 0x03, 0x7f};
-static unsigned char ARTHEROS_OUI2[] = {0x00, 0x13, 0x74};
+static unsigned char ARTHEROS_OUI1[] = { 0x00, 0x03, 0x7f };
+static unsigned char ARTHEROS_OUI2[] = { 0x00, 0x13, 0x74 };
 
-static unsigned char BROADCOM_OUI1[] = {0x00, 0x10, 0x18};
-static unsigned char BROADCOM_OUI2[] = {0x00, 0x0a, 0xf7};
-static unsigned char BROADCOM_OUI3[] = {0x00, 0x05, 0xb5};
+static unsigned char BROADCOM_OUI1[] = { 0x00, 0x10, 0x18 };
+static unsigned char BROADCOM_OUI2[] = { 0x00, 0x0a, 0xf7 };
+static unsigned char BROADCOM_OUI3[] = { 0x00, 0x05, 0xb5 };
 
-static unsigned char CISCO_OUI[] = {0x00, 0x40, 0x96};
-static unsigned char MARVELL_OUI[] = {0x00, 0x50, 0x43};
-static unsigned char RALINK_OUI[] = {0x00, 0x0c, 0x43};
-static unsigned char REALTEK_OUI[] = {0x00, 0xe0, 0x4c};
-static unsigned char AIRGOCAP_OUI[] = {0x00, 0x0a, 0xf5};
-static unsigned char RSN_TKIP_CIPHER[4] = {0x00, 0x0f, 0xac, 0x02};
-static unsigned char WPA_TKIP_CIPHER[4] = {0x00, 0x50, 0xf2, 0x02};
+static unsigned char CISCO_OUI[] = { 0x00, 0x40, 0x96 };
+static unsigned char MARVELL_OUI[] = { 0x00, 0x50, 0x43 };
+static unsigned char RALINK_OUI[] = { 0x00, 0x0c, 0x43 };
+static unsigned char REALTEK_OUI[] = { 0x00, 0xe0, 0x4c };
+static unsigned char AIRGOCAP_OUI[] = { 0x00, 0x0a, 0xf5 };
+static unsigned char RSN_TKIP_CIPHER[4] = { 0x00, 0x0f, 0xac, 0x02 };
+static unsigned char WPA_TKIP_CIPHER[4] = { 0x00, 0x50, 0xf2, 0x02 };
 
 /* define WAIT_FOR_BCN_TO_MIN	(3000) */
-#define WAIT_FOR_BCN_TO_MIN	(6000)
-#define WAIT_FOR_BCN_TO_MAX	(20000)
+#define WAIT_FOR_BCN_TO_MIN (6000)
+#define WAIT_FOR_BCN_TO_MAX (20000)
 
 #define DISCONNECT_BY_CHK_BCN_FAIL_OBSERV_PERIOD_IN_MS 1000
 #define DISCONNECT_BY_CHK_BCN_FAIL_THRESHOLD 3
@@ -131,7 +131,7 @@ unsigned int ratetbl2rateset(struct adapter *padapter, unsigned char *rateset)
 {
 	int i;
 	unsigned char rate;
-	unsigned int	len = 0;
+	unsigned int len = 0;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 
 	for (i = 0; i < NumRates; i++) {
@@ -158,7 +158,8 @@ unsigned int ratetbl2rateset(struct adapter *padapter, unsigned char *rateset)
 	return len;
 }
 
-void get_rate_set(struct adapter *padapter, unsigned char *pbssrate, int *bssrate_len)
+void get_rate_set(struct adapter *padapter, unsigned char *pbssrate,
+		  int *bssrate_len)
 {
 	unsigned char supportedrates[NumRates];
 
@@ -289,7 +290,8 @@ u8 rtw_get_center_ch(u8 channel, u8 chnl_bw, u8 chnl_offset)
 
 inline unsigned long rtw_get_on_cur_ch_time(struct adapter *adapter)
 {
-	if (adapter->mlmeextpriv.cur_channel == adapter_to_dvobj(adapter)->oper_channel)
+	if (adapter->mlmeextpriv.cur_channel ==
+	    adapter_to_dvobj(adapter)->oper_channel)
 		return adapter_to_dvobj(adapter)->on_oper_ch_time;
 	else
 		return 0;
@@ -297,7 +299,8 @@ inline unsigned long rtw_get_on_cur_ch_time(struct adapter *adapter)
 
 void r8723bs_select_channel(struct adapter *padapter, unsigned char channel)
 {
-	if (mutex_lock_interruptible(&(adapter_to_dvobj(padapter)->setch_mutex)))
+	if (mutex_lock_interruptible(
+		    &(adapter_to_dvobj(padapter)->setch_mutex)))
 		return;
 
 	/* saved channel info */
@@ -308,14 +311,16 @@ void r8723bs_select_channel(struct adapter *padapter, unsigned char channel)
 	mutex_unlock(&(adapter_to_dvobj(padapter)->setch_mutex));
 }
 
-void set_channel_bwmode(struct adapter *padapter, unsigned char channel, unsigned char channel_offset, unsigned short bwmode)
+void set_channel_bwmode(struct adapter *padapter, unsigned char channel,
+			unsigned char channel_offset, unsigned short bwmode)
 {
 	u8 center_ch, chnl_offset80 = HAL_PRIME_CHNL_OFFSET_DONT_CARE;
 
 	center_ch = rtw_get_center_ch(channel, bwmode, channel_offset);
 
 	/* set Channel */
-	if (mutex_lock_interruptible(&(adapter_to_dvobj(padapter)->setch_mutex)))
+	if (mutex_lock_interruptible(
+		    &(adapter_to_dvobj(padapter)->setch_mutex)))
 		return;
 
 	/* saved channel/bw info */
@@ -323,7 +328,8 @@ void set_channel_bwmode(struct adapter *padapter, unsigned char channel, unsigne
 	rtw_set_oper_bw(padapter, bwmode);
 	rtw_set_oper_choffset(padapter, channel_offset);
 
-	rtw_hal_set_chnl_bw(padapter, center_ch, bwmode, channel_offset, chnl_offset80); /*  set center channel */
+	rtw_hal_set_chnl_bw(padapter, center_ch, bwmode, channel_offset,
+			    chnl_offset80); /*  set center channel */
 
 	mutex_unlock(&(adapter_to_dvobj(padapter)->setch_mutex));
 }
@@ -337,7 +343,8 @@ u16 get_beacon_interval(struct wlan_bssid_ex *bss)
 {
 	__le16 val;
 
-	memcpy((unsigned char *)&val, rtw_get_beacon_interval_from_ie(bss->ies), 2);
+	memcpy((unsigned char *)&val, rtw_get_beacon_interval_from_ie(bss->ies),
+	       2);
 
 	return le16_to_cpu(val);
 }
@@ -353,7 +360,8 @@ int is_client_associated_to_ap(struct adapter *padapter)
 	pmlmeext = &padapter->mlmeextpriv;
 	pmlmeinfo = &(pmlmeext->mlmext_info);
 
-	if ((pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS) && ((pmlmeinfo->state & 0x03) == WIFI_FW_STATION_STATE))
+	if ((pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS) &&
+	    ((pmlmeinfo->state & 0x03) == WIFI_FW_STATION_STATE))
 		return true;
 	else
 		return _FAIL;
@@ -364,7 +372,8 @@ int is_client_associated_to_ibss(struct adapter *padapter)
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
 
-	if ((pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS) && ((pmlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE))
+	if ((pmlmeinfo->state & WIFI_FW_ASSOC_SUCCESS) &&
+	    ((pmlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE))
 		return true;
 	else
 		return _FAIL;
@@ -403,7 +412,8 @@ void invalidate_cam_all(struct adapter *padapter)
 
 	spin_lock_bh(&cam_ctl->lock);
 	cam_ctl->bitmap = 0;
-	memset(dvobj->cam_cache, 0, sizeof(struct cam_entry_cache) * TOTAL_CAM_ENTRY);
+	memset(dvobj->cam_cache, 0,
+	       sizeof(struct cam_entry_cache) * TOTAL_CAM_ENTRY);
 	spin_unlock_bh(&cam_ctl->lock);
 }
 
@@ -421,11 +431,13 @@ void _write_cam(struct adapter *padapter, u8 entry, u16 ctrl, u8 *mac, u8 *key)
 			val = (ctrl | (mac[0] << 16) | (mac[1] << 24));
 			break;
 		case 1:
-			val = (mac[2] | (mac[3] << 8) | (mac[4] << 16) | (mac[5] << 24));
+			val = (mac[2] | (mac[3] << 8) | (mac[4] << 16) |
+			       (mac[5] << 24));
 			break;
 		default:
 			i = (j - 2) << 2;
-			val = (key[i] | (key[i + 1] << 8) | (key[i + 2] << 16) | (key[i + 3] << 24));
+			val = (key[i] | (key[i + 1] << 8) | (key[i + 2] << 16) |
+			       (key[i + 3] << 24));
 			break;
 		}
 
@@ -438,13 +450,16 @@ void _write_cam(struct adapter *padapter, u8 entry, u16 ctrl, u8 *mac, u8 *key)
 
 void _clear_cam_entry(struct adapter *padapter, u8 entry)
 {
-	unsigned char null_sta[] = {0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
-	unsigned char null_key[] = {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
+	unsigned char null_sta[] = { 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
+	unsigned char null_key[] = { 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+				     0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+				     0x00, 0x00, 0x00, 0x00 };
 
 	_write_cam(padapter, entry, 0, null_sta, null_key);
 }
 
-inline void write_cam(struct adapter *adapter, u8 id, u16 ctrl, u8 *mac, u8 *key)
+inline void write_cam(struct adapter *adapter, u8 id, u16 ctrl, u8 *mac,
+		      u8 *key)
 {
 	_write_cam(adapter, id, ctrl, mac, key);
 	write_cam_cache(adapter, id, ctrl, mac, key);
@@ -543,12 +558,14 @@ s16 rtw_camid_alloc(struct adapter *adapter, struct sta_info *sta, u8 kid)
 
 	mlmeinfo = &adapter->mlmeextpriv.mlmext_info;
 
-	if ((((mlmeinfo->state & 0x03) == WIFI_FW_AP_STATE) || ((mlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE))
-		&& !sta) {
+	if ((((mlmeinfo->state & 0x03) == WIFI_FW_AP_STATE) ||
+	     ((mlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE)) &&
+	    !sta) {
 		/* AP/Ad-hoc mode group key: static allocation to default key by key ID */
 		if (kid > 3) {
 			netdev_dbg(adapter->pnetdev,
-				   FUNC_ADPT_FMT " group key with invalid key id:%u\n",
+				   FUNC_ADPT_FMT
+				   " group key with invalid key id:%u\n",
 				   FUNC_ADPT_ARG(adapter), kid);
 			WARN_ON(1);
 			goto bitmap_handle;
@@ -576,9 +593,11 @@ s16 rtw_camid_alloc(struct adapter *adapter, struct sta_info *sta, u8 kid)
 			if (sta || _rtw_camid_is_gk(adapter, i))
 				cam_id = i;
 			else
-				netdev_dbg(adapter->pnetdev,
-					   FUNC_ADPT_FMT " group key id:%u the same key id as pairwise key\n",
-					   FUNC_ADPT_ARG(adapter), kid);
+				netdev_dbg(
+					adapter->pnetdev,
+					FUNC_ADPT_FMT
+					" group key id:%u the same key id as pairwise key\n",
+					FUNC_ADPT_ARG(adapter), kid);
 			goto bitmap_handle;
 		}
 
@@ -588,13 +607,16 @@ s16 rtw_camid_alloc(struct adapter *adapter, struct sta_info *sta, u8 kid)
 
 		if (i == TOTAL_CAM_ENTRY) {
 			if (sta)
-				netdev_dbg(adapter->pnetdev,
-					   FUNC_ADPT_FMT " pairwise key with %pM id:%u no room\n",
-					   FUNC_ADPT_ARG(adapter),
-					   sta->hwaddr, kid);
+				netdev_dbg(
+					adapter->pnetdev,
+					FUNC_ADPT_FMT
+					" pairwise key with %pM id:%u no room\n",
+					FUNC_ADPT_ARG(adapter), sta->hwaddr,
+					kid);
 			else
 				netdev_dbg(adapter->pnetdev,
-					   FUNC_ADPT_FMT " group key id:%u no room\n",
+					   FUNC_ADPT_FMT
+					   " group key id:%u no room\n",
 					   FUNC_ADPT_ARG(adapter), kid);
 			WARN_ON(1);
 			goto bitmap_handle;
@@ -651,7 +673,8 @@ void flush_all_cam_entry(struct adapter *padapter)
 	/* clear default key related key search setting */
 	rtw_hal_set_hwreg(padapter, HW_VAR_SEC_DK_CFG, (u8 *)false);
 
-	memset((u8 *)(pmlmeinfo->FW_sta_info), 0, sizeof(pmlmeinfo->FW_sta_info));
+	memset((u8 *)(pmlmeinfo->FW_sta_info), 0,
+	       sizeof(pmlmeinfo->FW_sta_info));
 }
 
 int WMM_param_handler(struct adapter *padapter, struct ndis_80211_var_ie *pIE)
@@ -666,10 +689,12 @@ int WMM_param_handler(struct adapter *padapter, struct ndis_80211_var_ie *pIE)
 		return false;
 	}
 
-	if (!memcmp(&(pmlmeinfo->WMM_param), (pIE->data + 6), sizeof(struct WMM_para_element)))
+	if (!memcmp(&(pmlmeinfo->WMM_param), (pIE->data + 6),
+		    sizeof(struct WMM_para_element)))
 		return false;
 
-	memcpy(&(pmlmeinfo->WMM_param), (pIE->data + 6), sizeof(struct WMM_para_element));
+	memcpy(&(pmlmeinfo->WMM_param), (pIE->data + 6),
+	       sizeof(struct WMM_para_element));
 
 	pmlmeinfo->WMM_enable = 1;
 	return true;
@@ -738,52 +763,69 @@ void WMMOnAssocRsp(struct adapter *padapter)
 
 		TXOP = 0;
 		acParm = AIFS | (ECWMin << 8) | (ECWMax << 12) | (TXOP << 16);
-		rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_BE, (u8 *)(&acParm));
-		rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_BK, (u8 *)(&acParm));
-		rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_VI, (u8 *)(&acParm));
+		rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_BE,
+				  (u8 *)(&acParm));
+		rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_BK,
+				  (u8 *)(&acParm));
+		rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_VI,
+				  (u8 *)(&acParm));
 
 		ECWMin = 2;
 		ECWMax = 3;
 		TXOP = 0x2f;
 		acParm = AIFS | (ECWMin << 8) | (ECWMax << 12) | (TXOP << 16);
-		rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_VO, (u8 *)(&acParm));
+		rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_VO,
+				  (u8 *)(&acParm));
 	} else {
 		edca[0] = edca[1] = edca[2] = edca[3] = 0;
 
 		for (i = 0; i < 4; i++) {
-			ACI = (pmlmeinfo->WMM_param.ac_param[i].ACI_AIFSN >> 5) & 0x03;
-			ACM = (pmlmeinfo->WMM_param.ac_param[i].ACI_AIFSN >> 4) & 0x01;
+			ACI = (pmlmeinfo->WMM_param.ac_param[i].ACI_AIFSN >>
+			       5) &
+			      0x03;
+			ACM = (pmlmeinfo->WMM_param.ac_param[i].ACI_AIFSN >>
+			       4) &
+			      0x01;
 
 			/* AIFS = AIFSN * slot time + SIFS - r2t phy delay */
-			AIFS = (pmlmeinfo->WMM_param.ac_param[i].ACI_AIFSN & 0x0f) * pmlmeinfo->slotTime + aSifsTime;
+			AIFS = (pmlmeinfo->WMM_param.ac_param[i].ACI_AIFSN &
+				0x0f) * pmlmeinfo->slotTime +
+			       aSifsTime;
 
 			ECWMin = (pmlmeinfo->WMM_param.ac_param[i].CW & 0x0f);
-			ECWMax = (pmlmeinfo->WMM_param.ac_param[i].CW & 0xf0) >> 4;
-			TXOP = le16_to_cpu(pmlmeinfo->WMM_param.ac_param[i].TXOP_limit);
+			ECWMax = (pmlmeinfo->WMM_param.ac_param[i].CW & 0xf0) >>
+				 4;
+			TXOP = le16_to_cpu(
+				pmlmeinfo->WMM_param.ac_param[i].TXOP_limit);
 
-			acParm = AIFS | (ECWMin << 8) | (ECWMax << 12) | (TXOP << 16);
+			acParm = AIFS | (ECWMin << 8) | (ECWMax << 12) |
+				 (TXOP << 16);
 
 			switch (ACI) {
 			case 0x0:
-				rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_BE, (u8 *)(&acParm));
+				rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_BE,
+						  (u8 *)(&acParm));
 				acm_mask |= (ACM ? BIT(1) : 0);
 				edca[XMIT_BE_QUEUE] = acParm;
 				break;
 
 			case 0x1:
-				rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_BK, (u8 *)(&acParm));
+				rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_BK,
+						  (u8 *)(&acParm));
 				/* acm_mask |= (ACM? BIT(0):0); */
 				edca[XMIT_BK_QUEUE] = acParm;
 				break;
 
 			case 0x2:
-				rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_VI, (u8 *)(&acParm));
+				rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_VI,
+						  (u8 *)(&acParm));
 				acm_mask |= (ACM ? BIT(2) : 0);
 				edca[XMIT_VI_QUEUE] = acParm;
 				break;
 
 			case 0x3:
-				rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_VO, (u8 *)(&acParm));
+				rtw_hal_set_hwreg(padapter, HW_VAR_AC_PARAM_VO,
+						  (u8 *)(&acParm));
 				acm_mask |= (ACM ? BIT(3) : 0);
 				edca[XMIT_VO_QUEUE] = acParm;
 				break;
@@ -791,11 +833,15 @@ void WMMOnAssocRsp(struct adapter *padapter)
 		}
 
 		if (padapter->registrypriv.acm_method == 1)
-			rtw_hal_set_hwreg(padapter, HW_VAR_ACM_CTRL, (u8 *)(&acm_mask));
+			rtw_hal_set_hwreg(padapter, HW_VAR_ACM_CTRL,
+					  (u8 *)(&acm_mask));
 		else
 			padapter->mlmepriv.acm_mask = acm_mask;
 
-		inx[0] = 0; inx[1] = 1; inx[2] = 2; inx[3] = 3;
+		inx[0] = 0;
+		inx[1] = 1;
+		inx[2] = 2;
+		inx[3] = 3;
 
 		if (pregpriv->wifi_spec == 1)
 			sort_wmm_ac_params(inx, edca);
@@ -805,11 +851,12 @@ void WMMOnAssocRsp(struct adapter *padapter)
 	}
 }
 
-static void bwmode_update_check(struct adapter *padapter, struct ndis_80211_var_ie *pIE)
+static void bwmode_update_check(struct adapter *padapter,
+				struct ndis_80211_var_ie *pIE)
 {
-	unsigned char  new_bwmode;
-	unsigned char  new_ch_offset;
-	struct HT_info_element	 *pHT_info;
+	unsigned char new_bwmode;
+	unsigned char new_ch_offset;
+	struct HT_info_element *pHT_info;
 	struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
@@ -853,7 +900,8 @@ static void bwmode_update_check(struct adapter *padapter, struct ndis_80211_var_
 		new_ch_offset = HAL_PRIME_CHNL_OFFSET_DONT_CARE;
 	}
 
-	if ((new_bwmode != pmlmeext->cur_bwmode) || (new_ch_offset != pmlmeext->cur_ch_offset)) {
+	if ((new_bwmode != pmlmeext->cur_bwmode) ||
+	    (new_ch_offset != pmlmeext->cur_ch_offset)) {
 		pmlmeinfo->bwmode_updated = true;
 
 		pmlmeext->cur_bwmode = new_bwmode;
@@ -867,7 +915,7 @@ static void bwmode_update_check(struct adapter *padapter, struct ndis_80211_var_
 
 	if (true == pmlmeinfo->bwmode_updated) {
 		struct sta_info *psta;
-		struct wlan_bssid_ex	*cur_network = &(pmlmeinfo->network);
+		struct wlan_bssid_ex *cur_network = &(pmlmeinfo->network);
 		struct sta_priv *pstapriv = &padapter->stapriv;
 
 		/* set_channel_bwmode(padapter, pmlmeext->cur_channel, pmlmeext->cur_ch_offset, pmlmeext->cur_bwmode); */
@@ -880,10 +928,12 @@ static void bwmode_update_check(struct adapter *padapter, struct ndis_80211_var_
 			if (phtpriv_sta->ht_option) {
 				/*  bwmode */
 				psta->bw_mode = pmlmeext->cur_bwmode;
-				phtpriv_sta->ch_offset = pmlmeext->cur_ch_offset;
+				phtpriv_sta->ch_offset =
+					pmlmeext->cur_ch_offset;
 			} else {
 				psta->bw_mode = CHANNEL_WIDTH_20;
-				phtpriv_sta->ch_offset = HAL_PRIME_CHNL_OFFSET_DONT_CARE;
+				phtpriv_sta->ch_offset =
+					HAL_PRIME_CHNL_OFFSET_DONT_CARE;
 			}
 
 			rtw_dm_ra_mask_wk_cmd(padapter, (u8 *)psta);
@@ -893,7 +943,7 @@ static void bwmode_update_check(struct adapter *padapter, struct ndis_80211_var_
 
 void HT_caps_handler(struct adapter *padapter, struct ndis_80211_var_ie *pIE)
 {
-	unsigned int	i;
+	unsigned int i;
 	u8 max_AMPDU_len, min_MPDU_spacing;
 	u8 cur_ldpc_cap = 0, cur_stbc_cap = 0;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
@@ -909,30 +959,37 @@ void HT_caps_handler(struct adapter *padapter, struct ndis_80211_var_ie *pIE)
 
 	pmlmeinfo->HT_caps_enable = 1;
 
-	for (i = 0; i < umin(pIE->length,
-			     sizeof(pmlmeinfo->HT_caps.u.HT_cap)); i++) {
+	for (i = 0; i < umin(pIE->length, sizeof(pmlmeinfo->HT_caps.u.HT_cap));
+	     i++) {
 		if (i != 2) {
 			/* Commented by Albert 2010/07/12 */
 			/* Got the endian issue here. */
 			pmlmeinfo->HT_caps.u.HT_cap[i] &= (pIE->data[i]);
 		} else {
 			/* modify from  fw by Thomas 2010/11/17 */
-			max_AMPDU_len = min(pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x3,
-					    pIE->data[i] & 0x3);
-
-			min_MPDU_spacing = max(pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x1c,
-					       pIE->data[i] & 0x1c);
-
-			pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para = max_AMPDU_len | min_MPDU_spacing;
+			max_AMPDU_len = min(
+				pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para &
+					0x3,
+				pIE->data[i] & 0x3);
+
+			min_MPDU_spacing = max(
+				pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para &
+					0x1c,
+				pIE->data[i] & 0x1c);
+
+			pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para =
+				max_AMPDU_len | min_MPDU_spacing;
 		}
 	}
 
 	/* update the MCS set */
 	for (i = 0; i < 16; i++)
-		pmlmeinfo->HT_caps.u.HT_cap_element.MCS_rate[i] &= pmlmeext->default_supported_mcs_set[i];
+		pmlmeinfo->HT_caps.u.HT_cap_element.MCS_rate[i] &=
+			pmlmeext->default_supported_mcs_set[i];
 
 	/* update the MCS rates */
-	set_mcs_rate_by_mask(pmlmeinfo->HT_caps.u.HT_cap_element.MCS_rate, MCS_RATE_1R);
+	set_mcs_rate_by_mask(pmlmeinfo->HT_caps.u.HT_cap_element.MCS_rate,
+			     MCS_RATE_1R);
 
 	if (check_fwstate(pmlmepriv, WIFI_AP_STATE)) {
 		/*  Config STBC setting */
@@ -945,14 +1002,16 @@ void HT_caps_handler(struct adapter *padapter, struct ndis_80211_var_ie *pIE)
 		/*  Config LDPC Coding Capability */
 		if (TEST_FLAG(phtpriv->ldpc_cap, LDPC_HT_ENABLE_TX) &&
 		    GET_HT_CAPABILITY_ELE_LDPC_CAP(pIE->data))
-			SET_FLAG(cur_ldpc_cap, (LDPC_HT_ENABLE_TX | LDPC_HT_CAP_TX));
+			SET_FLAG(cur_ldpc_cap,
+				 (LDPC_HT_ENABLE_TX | LDPC_HT_CAP_TX));
 
 		phtpriv->ldpc_cap = cur_ldpc_cap;
 
 		/*  Config STBC setting */
 		if (TEST_FLAG(phtpriv->stbc_cap, STBC_HT_ENABLE_TX) &&
 		    GET_HT_CAPABILITY_ELE_RX_STBC(pIE->data))
-			SET_FLAG(cur_stbc_cap, (STBC_HT_ENABLE_TX | STBC_HT_CAP_TX));
+			SET_FLAG(cur_stbc_cap,
+				 (STBC_HT_ENABLE_TX | STBC_HT_CAP_TX));
 
 		phtpriv->stbc_cap = cur_stbc_cap;
 	}
@@ -1001,11 +1060,14 @@ void HTOnAssocRsp(struct adapter *padapter)
 	 */
 	max_AMPDU_len = pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x03;
 
-	min_MPDU_spacing = (pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x1c) >> 2;
+	min_MPDU_spacing =
+		(pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x1c) >> 2;
 
-	rtw_hal_set_hwreg(padapter, HW_VAR_AMPDU_MIN_SPACE, (u8 *)(&min_MPDU_spacing));
+	rtw_hal_set_hwreg(padapter, HW_VAR_AMPDU_MIN_SPACE,
+			  (u8 *)(&min_MPDU_spacing));
 
-	rtw_hal_set_hwreg(padapter, HW_VAR_AMPDU_FACTOR, (u8 *)(&max_AMPDU_len));
+	rtw_hal_set_hwreg(padapter, HW_VAR_AMPDU_FACTOR,
+			  (u8 *)(&max_AMPDU_len));
 }
 
 void ERP_IE_handler(struct adapter *padapter, struct ndis_80211_var_ie *pIE)
@@ -1022,11 +1084,11 @@ void ERP_IE_handler(struct adapter *padapter, struct ndis_80211_var_ie *pIE)
 
 void VCS_update(struct adapter *padapter, struct sta_info *psta)
 {
-	struct registry_priv  *pregpriv = &padapter->registrypriv;
+	struct registry_priv *pregpriv = &padapter->registrypriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
 
-	switch (pregpriv->vrtl_carrier_sense) {/* 0:off 1:on 2:auto */
+	switch (pregpriv->vrtl_carrier_sense) { /* 0:off 1:on 2:auto */
 	case 0: /* off */
 		psta->rtsen = 0;
 		psta->cts2self = 0;
@@ -1078,7 +1140,7 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 {
 	unsigned int len;
 	unsigned char *p;
-	unsigned short	val16, subtype;
+	unsigned short val16, subtype;
 	struct wlan_network *cur_network = &(Adapter->mlmepriv.cur_network);
 	/* u8 wpa_ie[255], rsn_ie[255]; */
 	u16 wpa_len = 0, rsn_len = 0;
@@ -1091,7 +1153,7 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 	struct HT_info_element *pht_info = NULL;
 	struct ieee80211_ht_cap *pht_cap = NULL;
 	u32 bcn_channel;
-	unsigned short	ht_cap_info;
+	unsigned short ht_cap_info;
 	unsigned char ht_info_infos_0;
 	struct mlme_priv *pmlmepriv = &Adapter->mlmepriv;
 	int ssid_len;
@@ -1111,7 +1173,9 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 	if (!bssid)
 		return true;
 
-	if ((pmlmepriv->timeBcnInfoChkStart != 0) && (jiffies_to_msecs(jiffies - pmlmepriv->timeBcnInfoChkStart) > DISCONNECT_BY_CHK_BCN_FAIL_OBSERV_PERIOD_IN_MS)) {
+	if ((pmlmepriv->timeBcnInfoChkStart != 0) &&
+	    (jiffies_to_msecs(jiffies - pmlmepriv->timeBcnInfoChkStart) >
+	     DISCONNECT_BY_CHK_BCN_FAIL_OBSERV_PERIOD_IN_MS)) {
 		pmlmepriv->timeBcnInfoChkStart = 0;
 		pmlmepriv->NumOfBcnInfoChkFail = 0;
 	}
@@ -1125,11 +1189,13 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 
 	/* below is to copy the information element */
 	bssid->ie_length = len;
-	memcpy(bssid->ies, (pframe + sizeof(struct ieee80211_hdr_3addr)), bssid->ie_length);
+	memcpy(bssid->ies, (pframe + sizeof(struct ieee80211_hdr_3addr)),
+	       bssid->ie_length);
 
 	/* check bw and channel offset */
 	/* parsing HT_CAP_IE */
-	p = rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_, WLAN_EID_HT_CAPABILITY, &len, bssid->ie_length - _FIXED_IE_LENGTH_);
+	p = rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_, WLAN_EID_HT_CAPABILITY,
+		       &len, bssid->ie_length - _FIXED_IE_LENGTH_);
 	if (p && len > 0) {
 		pht_cap = (struct ieee80211_ht_cap *)(p + 2);
 		ht_cap_info = le16_to_cpu(pht_cap->cap_info);
@@ -1137,7 +1203,8 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 		ht_cap_info = 0;
 	}
 	/* parsing HT_INFO_IE */
-	p = rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_, WLAN_EID_HT_OPERATION, &len, bssid->ie_length - _FIXED_IE_LENGTH_);
+	p = rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_, WLAN_EID_HT_OPERATION,
+		       &len, bssid->ie_length - _FIXED_IE_LENGTH_);
 	if (p && len > 0) {
 		pht_info = (struct HT_info_element *)(p + 2);
 		ht_info_infos_0 = pht_info->infos[0];
@@ -1145,7 +1212,8 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 		ht_info_infos_0 = 0;
 	}
 	if (ht_cap_info != cur_network->bcn_info.ht_cap_info ||
-	    ((ht_info_infos_0 & 0x03) != (cur_network->bcn_info.ht_info_infos_0 & 0x03))) {
+	    ((ht_info_infos_0 & 0x03) !=
+	     (cur_network->bcn_info.ht_info_infos_0 & 0x03))) {
 		{
 			/* bcn_info_update */
 			cur_network->bcn_info.ht_cap_info = ht_cap_info;
@@ -1156,12 +1224,14 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 	}
 
 	/* Checking for channel */
-	p = rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_, WLAN_EID_DS_PARAMS, &len, bssid->ie_length - _FIXED_IE_LENGTH_);
+	p = rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_, WLAN_EID_DS_PARAMS, &len,
+		       bssid->ie_length - _FIXED_IE_LENGTH_);
 	if (p) {
 		bcn_channel = *(p + 2);
-	} else {/* In 5G, some ap do not have DSSET IE checking HT info for channel */
-		rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_, WLAN_EID_HT_OPERATION,
-			   &len, bssid->ie_length - _FIXED_IE_LENGTH_);
+	} else { /* In 5G, some ap do not have DSSET IE checking HT info for channel */
+		rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_,
+			   WLAN_EID_HT_OPERATION, &len,
+			   bssid->ie_length - _FIXED_IE_LENGTH_);
 		if (pht_info)
 			bcn_channel = pht_info->primary_channel;
 		else /* we don't find channel IE, so don't check it */
@@ -1173,7 +1243,8 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 
 	/* checking SSID */
 	ssid_len = 0;
-	p = rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_, WLAN_EID_SSID, &len, bssid->ie_length - _FIXED_IE_LENGTH_);
+	p = rtw_get_ie(bssid->ies + _FIXED_IE_LENGTH_, WLAN_EID_SSID, &len,
+		       bssid->ie_length - _FIXED_IE_LENGTH_);
 	if (p) {
 		ssid_len = *(p + 1);
 		if (ssid_len > NDIS_802_11_LENGTH_SSID)
@@ -1183,7 +1254,7 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 	bssid->ssid.ssid_length = ssid_len;
 
 	if (memcmp(bssid->ssid.ssid, cur_network->network.ssid.ssid, 32) ||
-			bssid->ssid.ssid_length != cur_network->network.ssid.ssid_length)
+	    bssid->ssid.ssid_length != cur_network->network.ssid.ssid_length)
 		if (bssid->ssid.ssid[0] != '\0' &&
 		    bssid->ssid.ssid_length != 0) /* not hidden ssid */
 			goto _mismatch;
@@ -1199,29 +1270,33 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 	if (cur_network->network.privacy != bssid->privacy)
 		goto _mismatch;
 
-	rtw_get_sec_ie(bssid->ies, bssid->ie_length, NULL, &rsn_len, NULL, &wpa_len);
+	rtw_get_sec_ie(bssid->ies, bssid->ie_length, NULL, &rsn_len, NULL,
+		       &wpa_len);
 
 	if (rsn_len > 0)
 		encryp_protocol = ENCRYP_PROTOCOL_WPA2;
 	else if (wpa_len > 0)
 		encryp_protocol = ENCRYP_PROTOCOL_WPA;
-	else
-		if (bssid->privacy)
-			encryp_protocol = ENCRYP_PROTOCOL_WEP;
+	else if (bssid->privacy)
+		encryp_protocol = ENCRYP_PROTOCOL_WEP;
 
 	if (cur_network->bcn_info.encryp_protocol != encryp_protocol)
 		goto _mismatch;
 
-	if (encryp_protocol == ENCRYP_PROTOCOL_WPA || encryp_protocol == ENCRYP_PROTOCOL_WPA2) {
-		pbuf = rtw_get_wpa_ie(&bssid->ies[12], &wpa_ielen, bssid->ie_length - 12);
+	if (encryp_protocol == ENCRYP_PROTOCOL_WPA ||
+	    encryp_protocol == ENCRYP_PROTOCOL_WPA2) {
+		pbuf = rtw_get_wpa_ie(&bssid->ies[12], &wpa_ielen,
+				      bssid->ie_length - 12);
 		if (pbuf && (wpa_ielen > 0)) {
 			rtw_parse_wpa_ie(pbuf, wpa_ielen + 2, &group_cipher,
 					 &pairwise_cipher, &is_8021x);
 		} else {
-			pbuf = rtw_get_wpa2_ie(&bssid->ies[12], &wpa_ielen, bssid->ie_length - 12);
+			pbuf = rtw_get_wpa2_ie(&bssid->ies[12], &wpa_ielen,
+					       bssid->ie_length - 12);
 
 			if (pbuf && (wpa_ielen > 0))
-				rtw_parse_wpa2_ie(pbuf, wpa_ielen + 2, &group_cipher,
+				rtw_parse_wpa2_ie(pbuf, wpa_ielen + 2,
+						  &group_cipher,
 						  &pairwise_cipher, &is_8021x);
 		}
 
@@ -1244,8 +1319,11 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 
 	pmlmepriv->NumOfBcnInfoChkFail++;
 
-	if ((pmlmepriv->timeBcnInfoChkStart != 0) && (jiffies_to_msecs(jiffies - pmlmepriv->timeBcnInfoChkStart) <= DISCONNECT_BY_CHK_BCN_FAIL_OBSERV_PERIOD_IN_MS)
-		&& (pmlmepriv->NumOfBcnInfoChkFail >= DISCONNECT_BY_CHK_BCN_FAIL_THRESHOLD)) {
+	if ((pmlmepriv->timeBcnInfoChkStart != 0) &&
+	    (jiffies_to_msecs(jiffies - pmlmepriv->timeBcnInfoChkStart) <=
+	     DISCONNECT_BY_CHK_BCN_FAIL_OBSERV_PERIOD_IN_MS) &&
+	    (pmlmepriv->NumOfBcnInfoChkFail >=
+	     DISCONNECT_BY_CHK_BCN_FAIL_THRESHOLD)) {
 		pmlmepriv->timeBcnInfoChkStart = 0;
 		pmlmepriv->NumOfBcnInfoChkFail = 0;
 		return _FAIL;
@@ -1254,7 +1332,8 @@ int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len)
 	return _SUCCESS;
 }
 
-void update_beacon_info(struct adapter *padapter, u8 *pframe, uint pkt_len, struct sta_info *psta)
+void update_beacon_info(struct adapter *padapter, u8 *pframe, uint pkt_len,
+			struct sta_info *psta)
 {
 	unsigned int i;
 	unsigned int len;
@@ -1265,20 +1344,24 @@ void update_beacon_info(struct adapter *padapter, u8 *pframe, uint pkt_len, stru
 	for (i = 0; i < len;) {
 		if (i + sizeof(*pIE) > len)
 			break;
-		pIE = (struct ndis_80211_var_ie *)(pframe + (_BEACON_IE_OFFSET_ + WLAN_HDR_A3_LEN) + i);
+		pIE = (struct ndis_80211_var_ie *)(pframe +
+						   (_BEACON_IE_OFFSET_ +
+						    WLAN_HDR_A3_LEN) +
+						   i);
 		if (i + sizeof(*pIE) + pIE->length > len)
 			break;
 
 		switch (pIE->element_id) {
 		case WLAN_EID_VENDOR_SPECIFIC:
 			/* to update WMM parameter set while receiving beacon */
-			if (!memcmp(pIE->data, WMM_PARA_OUI, 6) && pIE->length == WLAN_WMM_LEN)	/* WMM */
+			if (!memcmp(pIE->data, WMM_PARA_OUI, 6) &&
+			    pIE->length == WLAN_WMM_LEN) /* WMM */
 				if (WMM_param_handler(padapter, pIE))
 					report_wmm_edca_update(padapter);
 
 			break;
 
-		case WLAN_EID_HT_OPERATION:	/* HT info */
+		case WLAN_EID_HT_OPERATION: /* HT info */
 			/* HT_info_handler(padapter, pIE); */
 			bwmode_update_check(padapter, pIE);
 			break;
@@ -1302,29 +1385,35 @@ unsigned int is_ap_in_tkip(struct adapter *padapter)
 	struct ndis_80211_var_ie *pIE;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
-	struct wlan_bssid_ex		*cur_network = &(pmlmeinfo->network);
+	struct wlan_bssid_ex *cur_network = &(pmlmeinfo->network);
 
-	if (rtw_get_capability((struct wlan_bssid_ex *)cur_network) & WLAN_CAPABILITY_PRIVACY) {
-		for (i = sizeof(struct ndis_802_11_fix_ie); i < pmlmeinfo->network.ie_length;) {
-			pIE = (struct ndis_80211_var_ie *)(pmlmeinfo->network.ies + i);
+	if (rtw_get_capability((struct wlan_bssid_ex *)cur_network) &
+	    WLAN_CAPABILITY_PRIVACY) {
+		for (i = sizeof(struct ndis_802_11_fix_ie);
+		     i < pmlmeinfo->network.ie_length;) {
+			pIE = (struct ndis_80211_var_ie
+				       *)(pmlmeinfo->network.ies + i);
 
 			if (i + sizeof(*pIE) > pmlmeinfo->network.ie_length)
 				break;
-			if (i + sizeof(*pIE) + pIE->length > pmlmeinfo->network.ie_length)
+			if (i + sizeof(*pIE) + pIE->length >
+			    pmlmeinfo->network.ie_length)
 				break;
 
 			switch (pIE->element_id) {
 			case WLAN_EID_VENDOR_SPECIFIC:
 				if (pIE->length >= 16 &&
 				    !memcmp(pIE->data, RTW_WPA_OUI, 4) &&
-				    !memcmp((pIE->data + 12), WPA_TKIP_CIPHER, 4))
+				    !memcmp((pIE->data + 12), WPA_TKIP_CIPHER,
+					    4))
 					return true;
 
 				break;
 
 			case WLAN_EID_RSN:
 				if (pIE->length >= 12 &&
-				    !memcmp((pIE->data + 8), RSN_TKIP_CIPHER, 4))
+				    !memcmp((pIE->data + 8), RSN_TKIP_CIPHER,
+					    4))
 					return true;
 				break;
 
@@ -1341,7 +1430,8 @@ unsigned int is_ap_in_tkip(struct adapter *padapter)
 	}
 }
 
-int support_short_GI(struct adapter *padapter, struct HT_caps_element *pHT_caps, u8 bwmode)
+int support_short_GI(struct adapter *padapter, struct HT_caps_element *pHT_caps,
+		     u8 bwmode)
 {
 	unsigned char bit_offset;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
@@ -1352,7 +1442,8 @@ int support_short_GI(struct adapter *padapter, struct HT_caps_element *pHT_caps,
 
 	bit_offset = (bwmode & CHANNEL_WIDTH_40) ? 6 : 5;
 
-	if (le16_to_cpu(pHT_caps->u.HT_cap_element.HT_caps_info) & (0x1 << bit_offset))
+	if (le16_to_cpu(pHT_caps->u.HT_cap_element.HT_caps_info) &
+	    (0x1 << bit_offset))
 		return _SUCCESS;
 	else
 		return _FAIL;
@@ -1413,7 +1504,7 @@ static u32 get_realtek_assoc_AP_vender(struct ndis_80211_var_ie *pIE)
 
 unsigned char check_assoc_AP(u8 *pframe, uint len)
 {
-	unsigned int	i;
+	unsigned int i;
 	struct ndis_80211_var_ie *pIE;
 
 	for (i = sizeof(struct ndis_802_11_fix_ie); i < len;) {
@@ -1421,7 +1512,8 @@ unsigned char check_assoc_AP(u8 *pframe, uint len)
 
 		switch (pIE->element_id) {
 		case WLAN_EID_VENDOR_SPECIFIC:
-			if ((!memcmp(pIE->data, ARTHEROS_OUI1, 3)) || (!memcmp(pIE->data, ARTHEROS_OUI2, 3)))
+			if ((!memcmp(pIE->data, ARTHEROS_OUI1, 3)) ||
+			    (!memcmp(pIE->data, ARTHEROS_OUI2, 3)))
 				return HT_IOT_PEER_ATHEROS;
 			else if ((!memcmp(pIE->data, BROADCOM_OUI1, 3)) ||
 				 (!memcmp(pIE->data, BROADCOM_OUI2, 3)) ||
@@ -1463,13 +1555,15 @@ void update_IOT_info(struct adapter *padapter)
 		pmlmeinfo->turboMode_cts2self = 0;
 		pmlmeinfo->turboMode_rtsen = 1;
 		/* disable high power */
-		Switch_DM_Func(padapter, ((u32)(~DYNAMIC_BB_DYNAMIC_TXPWR)), false);
+		Switch_DM_Func(padapter, ((u32)(~DYNAMIC_BB_DYNAMIC_TXPWR)),
+			       false);
 		break;
 	case HT_IOT_PEER_REALTEK:
 		/* rtw_write16(padapter, 0x4cc, 0xffff); */
 		/* rtw_write16(padapter, 0x546, 0x01c0); */
 		/* disable high power */
-		Switch_DM_Func(padapter, ((u32)(~DYNAMIC_BB_DYNAMIC_TXPWR)), false);
+		Switch_DM_Func(padapter, ((u32)(~DYNAMIC_BB_DYNAMIC_TXPWR)),
+			       false);
 		break;
 	default:
 		pmlmeinfo->turboMode_cts2self = 0;
@@ -1482,7 +1576,7 @@ void update_capinfo(struct adapter *Adapter, u16 updateCap)
 {
 	struct mlme_ext_priv *pmlmeext = &Adapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
-	bool		ShortPreamble;
+	bool ShortPreamble;
 
 	/*  Check preamble mode, 2005.01.06, by rcnjko. */
 	/*  Mark to update preamble value forever, 2008.03.18 by lanhsin */
@@ -1490,17 +1584,21 @@ void update_capinfo(struct adapter *Adapter, u16 updateCap)
 	{
 		if (updateCap & cShortPreamble) {
 			/*  Short Preamble */
-			if (pmlmeinfo->preamble_mode != PREAMBLE_SHORT) { /*  PREAMBLE_LONG or PREAMBLE_AUTO */
+			if (pmlmeinfo->preamble_mode !=
+			    PREAMBLE_SHORT) { /*  PREAMBLE_LONG or PREAMBLE_AUTO */
 				ShortPreamble = true;
 				pmlmeinfo->preamble_mode = PREAMBLE_SHORT;
-				rtw_hal_set_hwreg(Adapter, HW_VAR_ACK_PREAMBLE, (u8 *)&ShortPreamble);
+				rtw_hal_set_hwreg(Adapter, HW_VAR_ACK_PREAMBLE,
+						  (u8 *)&ShortPreamble);
 			}
 		} else {
 			/*  Long Preamble */
-			if (pmlmeinfo->preamble_mode != PREAMBLE_LONG) { /*  PREAMBLE_SHORT or PREAMBLE_AUTO */
+			if (pmlmeinfo->preamble_mode !=
+			    PREAMBLE_LONG) { /*  PREAMBLE_SHORT or PREAMBLE_AUTO */
 				ShortPreamble = false;
 				pmlmeinfo->preamble_mode = PREAMBLE_LONG;
-				rtw_hal_set_hwreg(Adapter, HW_VAR_ACK_PREAMBLE, (u8 *)&ShortPreamble);
+				rtw_hal_set_hwreg(Adapter, HW_VAR_ACK_PREAMBLE,
+						  (u8 *)&ShortPreamble);
 			}
 		}
 	}
@@ -1513,7 +1611,8 @@ void update_capinfo(struct adapter *Adapter, u16 updateCap)
 		if (pmlmeext->cur_wireless_mode & (WIRELESS_11_24N)) {
 			pmlmeinfo->slotTime = SHORT_SLOT_TIME;
 		} else if (pmlmeext->cur_wireless_mode & (WIRELESS_11G)) {
-			if ((updateCap & cShortSlotTime) /* && (!(pMgntInfo->pHTInfo->RT2RT_HT_Mode & RT_HT_CAP_USE_LONG_PREAMBLE)) */)
+			if ((updateCap &
+			     cShortSlotTime) /* && (!(pMgntInfo->pHTInfo->RT2RT_HT_Mode & RT_HT_CAP_USE_LONG_PREAMBLE)) */)
 				/*  Short Slot Time */
 				pmlmeinfo->slotTime = SHORT_SLOT_TIME;
 			else
@@ -1550,14 +1649,16 @@ void update_wireless_mode(struct adapter *padapter)
 	else
 		network_type |= WIRELESS_11G;
 
-	pmlmeext->cur_wireless_mode = network_type & padapter->registrypriv.wireless_mode;
+	pmlmeext->cur_wireless_mode = network_type &
+				      padapter->registrypriv.wireless_mode;
 
 	SIFS_Timer = 0x0a0a0808; /* 0x0808 -> for CCK, 0x0a0a -> for OFDM */
-													/* change this value if having IOT issues. */
+	/* change this value if having IOT issues. */
 
-	SetHwReg8723BS(padapter, HW_VAR_RESP_SIFS,  (u8 *)&SIFS_Timer);
+	SetHwReg8723BS(padapter, HW_VAR_RESP_SIFS, (u8 *)&SIFS_Timer);
 
-	SetHwReg8723BS(padapter, HW_VAR_WIRELESS_MODE,  (u8 *)&(pmlmeext->cur_wireless_mode));
+	SetHwReg8723BS(padapter, HW_VAR_WIRELESS_MODE,
+		       (u8 *)&(pmlmeext->cur_wireless_mode));
 
 	if (pmlmeext->cur_wireless_mode & WIRELESS_11B)
 		update_mgnt_tx_rate(padapter, IEEE80211_CCK_RATE_1MB);
@@ -1577,26 +1678,34 @@ void update_sta_basic_rate(struct sta_info *psta, u8 wireless_mode)
 	}
 }
 
-int update_sta_support_rate(struct adapter *padapter, u8 *pvar_ie, uint var_ie_len, int cam_idx)
+int update_sta_support_rate(struct adapter *padapter, u8 *pvar_ie,
+			    uint var_ie_len, int cam_idx)
 {
-	unsigned int	ie_len;
+	unsigned int ie_len;
 	struct ndis_80211_var_ie *pIE;
-	int	support_rate_num = 0;
+	int support_rate_num = 0;
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
 	struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
 
-	pIE = (struct ndis_80211_var_ie *)rtw_get_ie(pvar_ie, WLAN_EID_SUPP_RATES, &ie_len, var_ie_len);
+	pIE = (struct ndis_80211_var_ie *)rtw_get_ie(
+		pvar_ie, WLAN_EID_SUPP_RATES, &ie_len, var_ie_len);
 	if (!pIE)
 		return _FAIL;
 	if (ie_len > sizeof(pmlmeinfo->FW_sta_info[cam_idx].SupportedRates))
 		return _FAIL;
 
-	memcpy(pmlmeinfo->FW_sta_info[cam_idx].SupportedRates, pIE->data, ie_len);
+	memcpy(pmlmeinfo->FW_sta_info[cam_idx].SupportedRates, pIE->data,
+	       ie_len);
 	support_rate_num = ie_len;
 
-	pIE = (struct ndis_80211_var_ie *)rtw_get_ie(pvar_ie, WLAN_EID_EXT_SUPP_RATES, &ie_len, var_ie_len);
-	if (pIE && (ie_len <= sizeof(pmlmeinfo->FW_sta_info[cam_idx].SupportedRates) - support_rate_num))
-		memcpy((pmlmeinfo->FW_sta_info[cam_idx].SupportedRates + support_rate_num), pIE->data, ie_len);
+	pIE = (struct ndis_80211_var_ie *)rtw_get_ie(
+		pvar_ie, WLAN_EID_EXT_SUPP_RATES, &ie_len, var_ie_len);
+	if (pIE &&
+	    (ie_len <= sizeof(pmlmeinfo->FW_sta_info[cam_idx].SupportedRates) -
+			       support_rate_num))
+		memcpy((pmlmeinfo->FW_sta_info[cam_idx].SupportedRates +
+			support_rate_num),
+		       pIE->data, ie_len);
 
 	return _SUCCESS;
 }
@@ -1670,10 +1779,10 @@ void adaptive_early_32k(struct mlme_ext_priv *pmlmeext, u8 *pframe, uint len)
 
 	if (delay_ms >= 8)
 		pmlmeext->bcn_delay_cnt[8]++;
-		/* pmlmeext->bcn_delay_ratio[8] = (pmlmeext->bcn_delay_cnt[8] * 100) /pmlmeext->bcn_cnt; */
+	/* pmlmeext->bcn_delay_ratio[8] = (pmlmeext->bcn_delay_cnt[8] * 100) /pmlmeext->bcn_cnt; */
 	else
 		pmlmeext->bcn_delay_cnt[delay_ms]++;
-		/* pmlmeext->bcn_delay_ratio[delay_ms] = (pmlmeext->bcn_delay_cnt[delay_ms] * 100) /pmlmeext->bcn_cnt; */
+	/* pmlmeext->bcn_delay_ratio[delay_ms] = (pmlmeext->bcn_delay_cnt[delay_ms] * 100) /pmlmeext->bcn_cnt; */
 	/* dump for  adaptive_early_32k */
 	if (pmlmeext->bcn_cnt > 100 && pmlmeext->adaptive_tsf_done) {
 		u8 ratio_20_delay, ratio_80_delay;
@@ -1685,7 +1794,9 @@ void adaptive_early_32k(struct mlme_ext_priv *pmlmeext, u8 *pframe, uint len)
 		DrvBcnTimeOut = 0xff;
 
 		for (i = 0; i < 9; i++) {
-			pmlmeext->bcn_delay_ratio[i] = (pmlmeext->bcn_delay_cnt[i] * 100) / pmlmeext->bcn_cnt;
+			pmlmeext->bcn_delay_ratio[i] =
+				(pmlmeext->bcn_delay_cnt[i] * 100) /
+				pmlmeext->bcn_cnt;
 
 			ratio_20_delay += pmlmeext->bcn_delay_ratio[i];
 			ratio_80_delay += pmlmeext->bcn_delay_ratio[i];
@@ -1724,7 +1835,7 @@ void rtw_alloc_macid(struct adapter *padapter, struct sta_info *psta)
 	spin_lock_bh(&pdvobj->lock);
 	for (i = 0; i < NUM_STA; i++) {
 		if (!pdvobj->macid[i]) {
-			pdvobj->macid[i]  = true;
+			pdvobj->macid[i] = true;
 			break;
 		}
 	}
diff --git a/drivers/staging/rtl8723bs/core/rtw_xmit.c b/drivers/staging/rtl8723bs/core/rtw_xmit.c
index 444966c0de7f3..8bc6fb9f31eb9 100644
--- a/drivers/staging/rtl8723bs/core/rtw_xmit.c
+++ b/drivers/staging/rtl8723bs/core/rtw_xmit.c
@@ -42,45 +42,48 @@ static s32 rtw_alloc_hwxmits(struct adapter *padapter)
 
 	pxmitpriv->hwxmits = NULL;
 
-	pxmitpriv->hwxmits = kzalloc_objs(*hwxmits, pxmitpriv->hwxmit_entry,
-					  GFP_ATOMIC);
+	pxmitpriv->hwxmits =
+		kzalloc_objs(*hwxmits, pxmitpriv->hwxmit_entry, GFP_ATOMIC);
 	if (!pxmitpriv->hwxmits)
 		return -ENOMEM;
 
 	hwxmits = pxmitpriv->hwxmits;
 
 	if (pxmitpriv->hwxmit_entry == 5) {
-		hwxmits[0] .sta_queue = &pxmitpriv->bm_pending;
+		hwxmits[0].sta_queue = &pxmitpriv->bm_pending;
 
-		hwxmits[1] .sta_queue = &pxmitpriv->vo_pending;
+		hwxmits[1].sta_queue = &pxmitpriv->vo_pending;
 
-		hwxmits[2] .sta_queue = &pxmitpriv->vi_pending;
+		hwxmits[2].sta_queue = &pxmitpriv->vi_pending;
 
-		hwxmits[3] .sta_queue = &pxmitpriv->bk_pending;
+		hwxmits[3].sta_queue = &pxmitpriv->bk_pending;
 
-		hwxmits[4] .sta_queue = &pxmitpriv->be_pending;
+		hwxmits[4].sta_queue = &pxmitpriv->be_pending;
 	} else if (pxmitpriv->hwxmit_entry == 4) {
-		hwxmits[0] .sta_queue = &pxmitpriv->vo_pending;
+		hwxmits[0].sta_queue = &pxmitpriv->vo_pending;
 
-		hwxmits[1] .sta_queue = &pxmitpriv->vi_pending;
+		hwxmits[1].sta_queue = &pxmitpriv->vi_pending;
 
-		hwxmits[2] .sta_queue = &pxmitpriv->be_pending;
+		hwxmits[2].sta_queue = &pxmitpriv->be_pending;
 
-		hwxmits[3] .sta_queue = &pxmitpriv->bk_pending;
+		hwxmits[3].sta_queue = &pxmitpriv->bk_pending;
 	} else {
 	}
 
 	return 0;
 }
 
-static int rtw_os_xmit_resource_alloc(struct adapter *padapter, struct xmit_buf *pxmitbuf, u32 alloc_sz, u8 flag)
+static int rtw_os_xmit_resource_alloc(struct adapter *padapter,
+				      struct xmit_buf *pxmitbuf, u32 alloc_sz,
+				      u8 flag)
 {
 	if (alloc_sz > 0) {
 		pxmitbuf->pallocated_buf = kzalloc(alloc_sz, GFP_KERNEL);
 		if (!pxmitbuf->pallocated_buf)
 			return -ENOMEM;
 
-		pxmitbuf->pbuf = (u8 *)N_BYTE_ALIGMENT((SIZE_PTR)(pxmitbuf->pallocated_buf), XMITBUF_ALIGN_SZ);
+		pxmitbuf->pbuf = (u8 *)N_BYTE_ALIGMENT(
+			(SIZE_PTR)(pxmitbuf->pallocated_buf), XMITBUF_ALIGN_SZ);
 	}
 
 	return 0;
@@ -120,13 +123,15 @@ s32 _rtw_init_xmit_priv(struct xmit_priv *pxmitpriv, struct adapter *padapter)
 	 * Please also apply  free_txobj to link_up all the xmit_frames...
 	 */
 
-	pxmitpriv->pallocated_frame_buf = vzalloc(NR_XMITFRAME * sizeof(struct xmit_frame) + 4);
+	pxmitpriv->pallocated_frame_buf =
+		vzalloc(NR_XMITFRAME * sizeof(struct xmit_frame) + 4);
 
 	if (!pxmitpriv->pallocated_frame_buf) {
 		pxmitpriv->pxmit_frame_buf = NULL;
 		return -ENOMEM;
 	}
-	pxmitpriv->pxmit_frame_buf = (u8 *)N_BYTE_ALIGMENT((SIZE_PTR)(pxmitpriv->pallocated_frame_buf), 4);
+	pxmitpriv->pxmit_frame_buf = (u8 *)N_BYTE_ALIGMENT(
+		(SIZE_PTR)(pxmitpriv->pallocated_frame_buf), 4);
 
 	pxframe = (struct xmit_frame *)pxmitpriv->pxmit_frame_buf;
 
@@ -157,12 +162,14 @@ s32 _rtw_init_xmit_priv(struct xmit_priv *pxmitpriv, struct adapter *padapter)
 	INIT_LIST_HEAD(&pxmitpriv->pending_xmitbuf_queue.queue);
 	spin_lock_init(&pxmitpriv->pending_xmitbuf_queue.lock);
 
-	pxmitpriv->pallocated_xmitbuf = vzalloc(NR_XMITBUFF * sizeof(struct xmit_buf) + 4);
+	pxmitpriv->pallocated_xmitbuf =
+		vzalloc(NR_XMITBUFF * sizeof(struct xmit_buf) + 4);
 
 	if (!pxmitpriv->pallocated_xmitbuf)
 		return -ENOMEM;
 
-	pxmitpriv->pxmitbuf = (u8 *)N_BYTE_ALIGMENT((SIZE_PTR)(pxmitpriv->pallocated_xmitbuf), 4);
+	pxmitpriv->pxmitbuf = (u8 *)N_BYTE_ALIGMENT(
+		(SIZE_PTR)(pxmitpriv->pallocated_xmitbuf), 4);
 
 	pxmitbuf = (struct xmit_buf *)pxmitpriv->pxmitbuf;
 
@@ -174,10 +181,14 @@ s32 _rtw_init_xmit_priv(struct xmit_priv *pxmitpriv, struct adapter *padapter)
 		pxmitbuf->buf_tag = XMITBUF_DATA;
 
 		/* Tx buf allocation may fail sometimes, so sleep and retry. */
-		res = rtw_os_xmit_resource_alloc(padapter, pxmitbuf, (MAX_XMITBUF_SZ + XMITBUF_ALIGN_SZ), true);
+		res = rtw_os_xmit_resource_alloc(
+			padapter, pxmitbuf, (MAX_XMITBUF_SZ + XMITBUF_ALIGN_SZ),
+			true);
 		if (res) {
 			fsleep(10 * USEC_PER_MSEC);
-			res = rtw_os_xmit_resource_alloc(padapter, pxmitbuf, (MAX_XMITBUF_SZ + XMITBUF_ALIGN_SZ), true);
+			res = rtw_os_xmit_resource_alloc(
+				padapter, pxmitbuf,
+				(MAX_XMITBUF_SZ + XMITBUF_ALIGN_SZ), true);
 			if (res)
 				return res;
 		}
@@ -200,13 +211,15 @@ s32 _rtw_init_xmit_priv(struct xmit_priv *pxmitpriv, struct adapter *padapter)
 	INIT_LIST_HEAD(&pxmitpriv->free_xframe_ext_queue.queue);
 	spin_lock_init(&pxmitpriv->free_xframe_ext_queue.lock);
 
-	pxmitpriv->xframe_ext_alloc_addr = vzalloc(NR_XMIT_EXTBUFF * sizeof(struct xmit_frame) + 4);
+	pxmitpriv->xframe_ext_alloc_addr =
+		vzalloc(NR_XMIT_EXTBUFF * sizeof(struct xmit_frame) + 4);
 
 	if (!pxmitpriv->xframe_ext_alloc_addr) {
 		pxmitpriv->xframe_ext = NULL;
 		return -ENOMEM;
 	}
-	pxmitpriv->xframe_ext = (u8 *)N_BYTE_ALIGMENT((SIZE_PTR)(pxmitpriv->xframe_ext_alloc_addr), 4);
+	pxmitpriv->xframe_ext = (u8 *)N_BYTE_ALIGMENT(
+		(SIZE_PTR)(pxmitpriv->xframe_ext_alloc_addr), 4);
 	pxframe = (struct xmit_frame *)pxmitpriv->xframe_ext;
 
 	for (i = 0; i < NR_XMIT_EXTBUFF; i++) {
@@ -233,12 +246,14 @@ s32 _rtw_init_xmit_priv(struct xmit_priv *pxmitpriv, struct adapter *padapter)
 	INIT_LIST_HEAD(&pxmitpriv->free_xmit_extbuf_queue.queue);
 	spin_lock_init(&pxmitpriv->free_xmit_extbuf_queue.lock);
 
-	pxmitpriv->pallocated_xmit_extbuf = vzalloc(NR_XMIT_EXTBUFF * sizeof(struct xmit_buf) + 4);
+	pxmitpriv->pallocated_xmit_extbuf =
+		vzalloc(NR_XMIT_EXTBUFF * sizeof(struct xmit_buf) + 4);
 
 	if (!pxmitpriv->pallocated_xmit_extbuf)
 		return -ENOMEM;
 
-	pxmitpriv->pxmit_extbuf = (u8 *)N_BYTE_ALIGMENT((SIZE_PTR)(pxmitpriv->pallocated_xmit_extbuf), 4);
+	pxmitpriv->pxmit_extbuf = (u8 *)N_BYTE_ALIGMENT(
+		(SIZE_PTR)(pxmitpriv->pallocated_xmit_extbuf), 4);
 
 	pxmitbuf = (struct xmit_buf *)pxmitpriv->pxmit_extbuf;
 
@@ -249,7 +264,9 @@ s32 _rtw_init_xmit_priv(struct xmit_priv *pxmitpriv, struct adapter *padapter)
 		pxmitbuf->padapter = padapter;
 		pxmitbuf->buf_tag = XMITBUF_MGNT;
 
-		res = rtw_os_xmit_resource_alloc(padapter, pxmitbuf, MAX_XMIT_EXTBUF_SZ + XMITBUF_ALIGN_SZ, true);
+		res = rtw_os_xmit_resource_alloc(
+			padapter, pxmitbuf,
+			MAX_XMIT_EXTBUF_SZ + XMITBUF_ALIGN_SZ, true);
 		if (res)
 			return res;
 
@@ -274,9 +291,9 @@ s32 _rtw_init_xmit_priv(struct xmit_priv *pxmitpriv, struct adapter *padapter)
 			pxmitbuf->padapter = padapter;
 			pxmitbuf->buf_tag = XMITBUF_CMD;
 
-			res = rtw_os_xmit_resource_alloc(padapter, pxmitbuf,
-							 MAX_CMDBUF_SZ + XMITBUF_ALIGN_SZ,
-							 true);
+			res = rtw_os_xmit_resource_alloc(
+				padapter, pxmitbuf,
+				MAX_CMDBUF_SZ + XMITBUF_ALIGN_SZ, true);
 			if (res)
 				return res;
 
@@ -309,7 +326,8 @@ void _rtw_free_xmit_priv(struct xmit_priv *pxmitpriv)
 {
 	int i;
 	struct adapter *padapter = pxmitpriv->adapter;
-	struct xmit_frame	*pxmitframe = (struct xmit_frame *)pxmitpriv->pxmit_frame_buf;
+	struct xmit_frame *pxmitframe =
+		(struct xmit_frame *)pxmitpriv->pxmit_frame_buf;
 	struct xmit_buf *pxmitbuf = (struct xmit_buf *)pxmitpriv->pxmitbuf;
 
 	rtw_hal_free_xmit_priv(padapter);
@@ -324,7 +342,9 @@ void _rtw_free_xmit_priv(struct xmit_priv *pxmitpriv)
 	}
 
 	for (i = 0; i < NR_XMITBUFF; i++) {
-		rtw_os_xmit_resource_free(padapter, pxmitbuf, (MAX_XMITBUF_SZ + XMITBUF_ALIGN_SZ), true);
+		rtw_os_xmit_resource_free(padapter, pxmitbuf,
+					  (MAX_XMITBUF_SZ + XMITBUF_ALIGN_SZ),
+					  true);
 
 		pxmitbuf++;
 	}
@@ -346,7 +366,9 @@ void _rtw_free_xmit_priv(struct xmit_priv *pxmitpriv)
 	/*  free xmit extension buff */
 	pxmitbuf = (struct xmit_buf *)pxmitpriv->pxmit_extbuf;
 	for (i = 0; i < NR_XMIT_EXTBUFF; i++) {
-		rtw_os_xmit_resource_free(padapter, pxmitbuf, (MAX_XMIT_EXTBUF_SZ + XMITBUF_ALIGN_SZ), true);
+		rtw_os_xmit_resource_free(
+			padapter, pxmitbuf,
+			(MAX_XMIT_EXTBUF_SZ + XMITBUF_ALIGN_SZ), true);
 
 		pxmitbuf++;
 	}
@@ -356,9 +378,9 @@ void _rtw_free_xmit_priv(struct xmit_priv *pxmitpriv)
 	for (i = 0; i < CMDBUF_MAX; i++) {
 		pxmitbuf = &pxmitpriv->pcmd_xmitbuf[i];
 		if (pxmitbuf)
-			rtw_os_xmit_resource_free(padapter, pxmitbuf,
-						  MAX_CMDBUF_SZ + XMITBUF_ALIGN_SZ,
-						  true);
+			rtw_os_xmit_resource_free(
+				padapter, pxmitbuf,
+				MAX_CMDBUF_SZ + XMITBUF_ALIGN_SZ, true);
 	}
 
 	rtw_free_hwxmits(padapter);
@@ -386,10 +408,11 @@ u8 query_ra_short_GI(struct sta_info *psta)
 	return sgi;
 }
 
-static void update_attrib_vcs_info(struct adapter *padapter, struct xmit_frame *pxmitframe)
+static void update_attrib_vcs_info(struct adapter *padapter,
+				   struct xmit_frame *pxmitframe)
 {
 	u32 sz;
-	struct pkt_attrib	*pattrib = &pxmitframe->attrib;
+	struct pkt_attrib *pattrib = &pxmitframe->attrib;
 	/* struct sta_info *psta = pattrib->psta; */
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
@@ -403,7 +426,8 @@ static void update_attrib_vcs_info(struct adapter *padapter, struct xmit_frame *
 	/*  (2) If there are more than one frag in  this MSDU, only the first frag uses protection frame. */
 	/* Other fragments are protected by previous fragment. */
 	/* So we only need to check the length of first fragment. */
-	if (pmlmeext->cur_wireless_mode < WIRELESS_11_24N  || padapter->registrypriv.wifi_spec) {
+	if (pmlmeext->cur_wireless_mode < WIRELESS_11_24N ||
+	    padapter->registrypriv.wifi_spec) {
 		if (sz > padapter->registrypriv.rts_thresh) {
 			pattrib->vcs_mode = RTS_CTS;
 		} else {
@@ -417,9 +441,11 @@ static void update_attrib_vcs_info(struct adapter *padapter, struct xmit_frame *
 	} else {
 		while (true) {
 			/* IOT action */
-			if ((pmlmeinfo->assoc_AP_vendor == HT_IOT_PEER_ATHEROS) &&
+			if ((pmlmeinfo->assoc_AP_vendor ==
+			     HT_IOT_PEER_ATHEROS) &&
 			    pattrib->ampdu_en &&
-			    (padapter->securitypriv.dot11PrivacyAlgrthm == _AES_)) {
+			    (padapter->securitypriv.dot11PrivacyAlgrthm ==
+			     _AES_)) {
 				pattrib->vcs_mode = CTS_TO_SELF;
 				break;
 			}
@@ -438,8 +464,9 @@ static void update_attrib_vcs_info(struct adapter *padapter, struct xmit_frame *
 			if (pattrib->ht_en) {
 				u8 HTOpMode = pmlmeinfo->HT_protection;
 
-				if ((pmlmeext->cur_bwmode && (HTOpMode == 2 || HTOpMode == 3)) ||
-					(!pmlmeext->cur_bwmode && HTOpMode == 3)) {
+				if ((pmlmeext->cur_bwmode &&
+				     (HTOpMode == 2 || HTOpMode == 3)) ||
+				    (!pmlmeext->cur_bwmode && HTOpMode == 3)) {
 					pattrib->vcs_mode = RTS_CTS;
 					break;
 				}
@@ -469,7 +496,9 @@ static void update_attrib_vcs_info(struct adapter *padapter, struct xmit_frame *
 		pattrib->vcs_mode = padapter->driver_vcs_type;
 }
 
-static void update_attrib_phy_info(struct adapter *padapter, struct pkt_attrib *pattrib, struct sta_info *psta)
+static void update_attrib_phy_info(struct adapter *padapter,
+				   struct pkt_attrib *pattrib,
+				   struct sta_info *psta)
 {
 	struct mlme_ext_priv *mlmeext = &padapter->mlmeextpriv;
 
@@ -497,7 +526,8 @@ static void update_attrib_phy_info(struct adapter *padapter, struct pkt_attrib *
 	pattrib->ch_offset = psta->htpriv.ch_offset;
 	pattrib->ampdu_en = false;
 
-	if (padapter->driver_ampdu_spacing != 0xFF) /* driver control AMPDU Density for peer sta's rx */
+	if (padapter->driver_ampdu_spacing !=
+	    0xFF) /* driver control AMPDU Density for peer sta's rx */
 		pattrib->ampdu_spacing = padapter->driver_ampdu_spacing;
 	else
 		pattrib->ampdu_spacing = psta->htpriv.rx_ampdu_min_spacing;
@@ -505,21 +535,24 @@ static void update_attrib_phy_info(struct adapter *padapter, struct pkt_attrib *
 	pattrib->retry_ctrl = false;
 }
 
-static s32 update_attrib_sec_info(struct adapter *padapter, struct pkt_attrib *pattrib, struct sta_info *psta)
+static s32 update_attrib_sec_info(struct adapter *padapter,
+				  struct pkt_attrib *pattrib,
+				  struct sta_info *psta)
 {
 	signed int res = _SUCCESS;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	signed int bmcast = is_multicast_ether_addr(pattrib->ra);
 
-	memset(pattrib->dot118021x_UncstKey.skey,  0, 16);
-	memset(pattrib->dot11tkiptxmickey.skey,  0, 16);
+	memset(pattrib->dot118021x_UncstKey.skey, 0, 16);
+	memset(pattrib->dot11tkiptxmickey.skey, 0, 16);
 	pattrib->mac_id = psta->mac_id;
 
 	if (psta->ieee8021x_blocked) {
 		pattrib->encrypt = 0;
 
-		if ((pattrib->ether_type != 0x888e) && !check_fwstate(pmlmepriv, WIFI_MP_STATE)) {
+		if ((pattrib->ether_type != 0x888e) &&
+		    !check_fwstate(pmlmepriv, WIFI_MP_STATE)) {
 			res = _FAIL;
 			goto exit;
 		}
@@ -530,11 +563,13 @@ static s32 update_attrib_sec_info(struct adapter *padapter, struct pkt_attrib *p
 		case dot11AuthAlgrthm_Open:
 		case dot11AuthAlgrthm_Shared:
 		case dot11AuthAlgrthm_Auto:
-			pattrib->key_idx = (u8)psecuritypriv->dot11PrivacyKeyIndex;
+			pattrib->key_idx =
+				(u8)psecuritypriv->dot11PrivacyKeyIndex;
 			break;
 		case dot11AuthAlgrthm_8021X:
 			if (bmcast)
-				pattrib->key_idx = (u8)psecuritypriv->dot118021XGrpKeyid;
+				pattrib->key_idx =
+					(u8)psecuritypriv->dot118021XGrpKeyid;
 			else
 				pattrib->key_idx = 0;
 			break;
@@ -544,7 +579,9 @@ static s32 update_attrib_sec_info(struct adapter *padapter, struct pkt_attrib *p
 		}
 
 		/* For WPS 1.0 WEP, driver should not encrypt EAPOL Packet for WPS handshake. */
-		if (((pattrib->encrypt == _WEP40_) || (pattrib->encrypt == _WEP104_)) && (pattrib->ether_type == 0x888e))
+		if (((pattrib->encrypt == _WEP40_) ||
+		     (pattrib->encrypt == _WEP104_)) &&
+		    (pattrib->ether_type == 0x888e))
 			pattrib->encrypt = _NO_PRIVACY_;
 	}
 
@@ -570,7 +607,8 @@ static s32 update_attrib_sec_info(struct adapter *padapter, struct pkt_attrib *p
 		else
 			TKIP_IV(pattrib->iv, psta->dot11txpn, 0);
 
-		memcpy(pattrib->dot11tkiptxmickey.skey, psta->dot11tkiptxmickey.skey, 16);
+		memcpy(pattrib->dot11tkiptxmickey.skey,
+		       psta->dot11tkiptxmickey.skey, 16);
 
 		break;
 
@@ -593,10 +631,11 @@ static s32 update_attrib_sec_info(struct adapter *padapter, struct pkt_attrib *p
 	}
 
 	if (pattrib->encrypt > 0)
-		memcpy(pattrib->dot118021x_UncstKey.skey, psta->dot118021x_UncstKey.skey, 16);
+		memcpy(pattrib->dot118021x_UncstKey.skey,
+		       psta->dot118021x_UncstKey.skey, 16);
 
-	if (pattrib->encrypt &&
-		((padapter->securitypriv.sw_encrypt) || (!psecuritypriv->hw_decrypted)))
+	if (pattrib->encrypt && ((padapter->securitypriv.sw_encrypt) ||
+				 (!psecuritypriv->hw_decrypted)))
 		pattrib->bswenc = true;
 	else
 		pattrib->bswenc = false;
@@ -648,7 +687,8 @@ static int set_qos(struct pkt_file *ppktfile, struct pkt_attrib *pattrib)
 
 	/*  get UserPriority from IP hdr */
 	if (pattrib->ether_type == 0x0800) {
-		ret = _rtw_pktfile_read(ppktfile, (u8 *)&ip_hdr, sizeof(ip_hdr));
+		ret = _rtw_pktfile_read(ppktfile, (u8 *)&ip_hdr,
+					sizeof(ip_hdr));
 		if (ret < 0)
 			return ret;
 
@@ -661,7 +701,8 @@ static int set_qos(struct pkt_file *ppktfile, struct pkt_attrib *pattrib)
 	return 0;
 }
 
-static s32 update_attrib(struct adapter *padapter, struct sk_buff *pkt, struct pkt_attrib *pattrib)
+static s32 update_attrib(struct adapter *padapter, struct sk_buff *pkt,
+			 struct pkt_attrib *pattrib)
 {
 	struct pkt_file pktfile;
 	struct sta_info *psta = NULL;
@@ -709,10 +750,10 @@ static s32 update_attrib(struct adapter *padapter, struct sk_buff *pkt, struct p
 			return ret;
 
 		pattrib->dhcp_pkt = 0;
-		if (pktfile.pkt_len > 282) {/* MINIMUM_DHCP_PACKET_SIZE) { */
-			if (pattrib->ether_type == ETH_P_IP) {/*  IP header */
+		if (pktfile.pkt_len > 282) { /* MINIMUM_DHCP_PACKET_SIZE) { */
+			if (pattrib->ether_type == ETH_P_IP) { /*  IP header */
 				if (((tmp[21] == 68) && (tmp[23] == 67)) ||
-					((tmp[21] == 67) && (tmp[23] == 68))) {
+				    ((tmp[21] == 67) && (tmp[23] == 68))) {
 					/*  68 : UDP BOOTP client */
 					/*  67 : UDP BOOTP server */
 					pattrib->dhcp_pkt = 1;
@@ -725,7 +766,8 @@ static s32 update_attrib(struct adapter *padapter, struct sk_buff *pkt, struct p
 			struct iphdr *piphdr = (struct iphdr *)tmp;
 
 			pattrib->icmp_pkt = 0;
-			if (piphdr->protocol == 0x1) /*  protocol type in ip header 0x1 is ICMP */
+			if (piphdr->protocol ==
+			    0x1) /*  protocol type in ip header 0x1 is ICMP */
 				pattrib->icmp_pkt = 1;
 		}
 	} else if (pattrib->ether_type == 0x888e) {
@@ -748,10 +790,11 @@ static s32 update_attrib(struct adapter *padapter, struct sk_buff *pkt, struct p
 		psta = rtw_get_bcmc_stainfo(padapter);
 	} else {
 		psta = rtw_get_stainfo(pstapriv, pattrib->ra);
-		if (!psta)	{ /*  if we cannot get psta => drop the pkt */
+		if (!psta) { /*  if we cannot get psta => drop the pkt */
 			res = _FAIL;
 			goto exit;
-		} else if (check_fwstate(pmlmepriv, WIFI_AP_STATE) && !(psta->state & _FW_LINKED)) {
+		} else if (check_fwstate(pmlmepriv, WIFI_AP_STATE) &&
+			   !(psta->state & _FW_LINKED)) {
 			res = _FAIL;
 			goto exit;
 		}
@@ -782,13 +825,15 @@ static s32 update_attrib(struct adapter *padapter, struct sk_buff *pkt, struct p
 
 	pattrib->ack_policy = 0;
 	/*  get ether_hdr_len */
-	pattrib->pkt_hdrlen = ETH_HLEN;/* pattrib->ether_type == 0x8100) ? (14 + 4): 14; vlan tag */
+	pattrib->pkt_hdrlen =
+		ETH_HLEN; /* pattrib->ether_type == 0x8100) ? (14 + 4): 14; vlan tag */
 
 	pattrib->hdrlen = WLAN_HDR_A3_LEN;
 	pattrib->subtype = WIFI_DATA_TYPE;
 	pattrib->priority = 0;
 
-	if (check_fwstate(pmlmepriv, WIFI_AP_STATE | WIFI_ADHOC_STATE | WIFI_ADHOC_MASTER_STATE)) {
+	if (check_fwstate(pmlmepriv, WIFI_AP_STATE | WIFI_ADHOC_STATE |
+					     WIFI_ADHOC_MASTER_STATE)) {
 		if (pattrib->qos_en) {
 			ret = set_qos(&pktfile, pattrib);
 			if (ret < 0)
@@ -801,7 +846,8 @@ static s32 update_attrib(struct adapter *padapter, struct sk_buff *pkt, struct p
 				return ret;
 
 			if (pmlmepriv->acm_mask != 0)
-				pattrib->priority = qos_acm(pmlmepriv->acm_mask, pattrib->priority);
+				pattrib->priority = qos_acm(pmlmepriv->acm_mask,
+							    pattrib->priority);
 		}
 	}
 
@@ -811,15 +857,16 @@ static s32 update_attrib(struct adapter *padapter, struct sk_buff *pkt, struct p
 	return res;
 }
 
-static s32 xmitframe_addmic(struct adapter *padapter, struct xmit_frame *pxmitframe)
+static s32 xmitframe_addmic(struct adapter *padapter,
+			    struct xmit_frame *pxmitframe)
 {
-	signed int			curfragnum, length;
+	signed int curfragnum, length;
 	u8 *pframe, *payload, mic[8];
 	struct mic_data micdata;
 	struct pkt_attrib *pattrib = &pxmitframe->attrib;
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 	struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
-	u8 priority[4] = {0x0, 0x0, 0x0, 0x0};
+	u8 priority[4] = { 0x0, 0x0, 0x0, 0x0 };
 	u8 hw_hdr_offset = 0;
 	signed int bmcst = is_multicast_ether_addr(pattrib->ra);
 
@@ -828,34 +875,56 @@ static s32 xmitframe_addmic(struct adapter *padapter, struct xmit_frame *pxmitfr
 	if (pattrib->encrypt == _TKIP_) {
 		/* encode mic code */
 		{
-			u8 null_key[16] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
+			u8 null_key[16] = { 0x0, 0x0, 0x0, 0x0, 0x0, 0x0,
+					    0x0, 0x0, 0x0, 0x0, 0x0, 0x0,
+					    0x0, 0x0, 0x0, 0x0 };
 
 			pframe = pxmitframe->buf_addr + hw_hdr_offset;
 
 			if (bmcst) {
-				if (!memcmp(psecuritypriv->dot118021XGrptxmickey[psecuritypriv->dot118021XGrpKeyid].skey, null_key, 16))
+				if (!memcmp(psecuritypriv
+						    ->dot118021XGrptxmickey
+							    [psecuritypriv
+								     ->dot118021XGrpKeyid]
+						    .skey,
+					    null_key, 16))
 					return _FAIL;
 				/* start to calculate the mic code */
-				rtw_secmicsetkey(&micdata, psecuritypriv->dot118021XGrptxmickey[psecuritypriv->dot118021XGrpKeyid].skey);
+				rtw_secmicsetkey(
+					&micdata,
+					psecuritypriv
+						->dot118021XGrptxmickey
+							[psecuritypriv
+								 ->dot118021XGrpKeyid]
+						.skey);
 			} else {
-				if (!memcmp(&pattrib->dot11tkiptxmickey.skey[0], null_key, 16))
+				if (!memcmp(&pattrib->dot11tkiptxmickey.skey[0],
+					    null_key, 16))
 					return _FAIL;
 				/* start to calculate the mic code */
-				rtw_secmicsetkey(&micdata, &pattrib->dot11tkiptxmickey.skey[0]);
+				rtw_secmicsetkey(
+					&micdata,
+					&pattrib->dot11tkiptxmickey.skey[0]);
 			}
 
-			if (pframe[1] & 1) {   /* ToDS == 1 */
-				rtw_secmicappend(&micdata, &pframe[16], 6);  /* DA */
-				if (pframe[1] & 2)  /* From Ds == 1 */
-					rtw_secmicappend(&micdata, &pframe[24], 6);
+			if (pframe[1] & 1) { /* ToDS == 1 */
+				rtw_secmicappend(&micdata, &pframe[16],
+						 6); /* DA */
+				if (pframe[1] & 2) /* From Ds == 1 */
+					rtw_secmicappend(&micdata, &pframe[24],
+							 6);
 				else
-					rtw_secmicappend(&micdata, &pframe[10], 6);
-			} else {	/* ToDS == 0 */
-				rtw_secmicappend(&micdata, &pframe[4], 6);   /* DA */
-				if (pframe[1] & 2)  /* From Ds == 1 */
-					rtw_secmicappend(&micdata, &pframe[16], 6);
+					rtw_secmicappend(&micdata, &pframe[10],
+							 6);
+			} else { /* ToDS == 0 */
+				rtw_secmicappend(&micdata, &pframe[4],
+						 6); /* DA */
+				if (pframe[1] & 2) /* From Ds == 1 */
+					rtw_secmicappend(&micdata, &pframe[16],
+							 6);
 				else
-					rtw_secmicappend(&micdata, &pframe[10], 6);
+					rtw_secmicappend(&micdata, &pframe[10],
+							 6);
 			}
 
 			if (pattrib->qos_en)
@@ -865,22 +934,34 @@ static s32 xmitframe_addmic(struct adapter *padapter, struct xmit_frame *pxmitfr
 
 			payload = pframe;
 
-			for (curfragnum = 0; curfragnum < pattrib->nr_frags; curfragnum++) {
-				payload = (u8 *)round_up((SIZE_PTR)(payload), 4);
-				payload = payload + pattrib->hdrlen + pattrib->iv_len;
+			for (curfragnum = 0; curfragnum < pattrib->nr_frags;
+			     curfragnum++) {
+				payload =
+					(u8 *)round_up((SIZE_PTR)(payload), 4);
+				payload = payload + pattrib->hdrlen +
+					  pattrib->iv_len;
 
 				if ((curfragnum + 1) == pattrib->nr_frags) {
-					length = pattrib->last_txcmdsz - pattrib->hdrlen -
+					length = pattrib->last_txcmdsz -
+						 pattrib->hdrlen -
 						 pattrib->iv_len -
-						 ((pattrib->bswenc) ? pattrib->icv_len : 0);
-					rtw_secmicappend(&micdata, payload, length);
+						 ((pattrib->bswenc) ?
+							  pattrib->icv_len :
+							  0);
+					rtw_secmicappend(&micdata, payload,
+							 length);
 					payload = payload + length;
 				} else {
-					length = pxmitpriv->frag_len - pattrib->hdrlen -
+					length = pxmitpriv->frag_len -
+						 pattrib->hdrlen -
 						 pattrib->iv_len -
-						 ((pattrib->bswenc) ? pattrib->icv_len : 0);
-					rtw_secmicappend(&micdata, payload, length);
-					payload = payload + length + pattrib->icv_len;
+						 ((pattrib->bswenc) ?
+							  pattrib->icv_len :
+							  0);
+					rtw_secmicappend(&micdata, payload,
+							 length);
+					payload = payload + length +
+						  pattrib->icv_len;
 				}
 			}
 			rtw_secgetmic(&micdata, &mic[0]);
@@ -888,14 +969,15 @@ static s32 xmitframe_addmic(struct adapter *padapter, struct xmit_frame *pxmitfr
 
 			memcpy(payload, &mic[0], 8);
 			pattrib->last_txcmdsz += 8;
-			}
+		}
 	}
 	return _SUCCESS;
 }
 
-static s32 xmitframe_swencrypt(struct adapter *padapter, struct xmit_frame *pxmitframe)
+static s32 xmitframe_swencrypt(struct adapter *padapter,
+			       struct xmit_frame *pxmitframe)
 {
-	struct	pkt_attrib	 *pattrib = &pxmitframe->attrib;
+	struct pkt_attrib *pattrib = &pxmitframe->attrib;
 
 	if (pattrib->bswenc) {
 		switch (pattrib->encrypt) {
@@ -910,14 +992,15 @@ static s32 xmitframe_swencrypt(struct adapter *padapter, struct xmit_frame *pxmi
 			rtw_aes_encrypt(padapter, (u8 *)pxmitframe);
 			break;
 		default:
-				break;
+			break;
 		}
 	}
 
 	return _SUCCESS;
 }
 
-s32 rtw_make_wlanhdr(struct adapter *padapter, u8 *hdr, struct pkt_attrib *pattrib)
+s32 rtw_make_wlanhdr(struct adapter *padapter, u8 *hdr,
+		     struct pkt_attrib *pattrib)
 {
 	u16 *qc;
 
@@ -940,7 +1023,8 @@ s32 rtw_make_wlanhdr(struct adapter *padapter, u8 *hdr, struct pkt_attrib *pattr
 				/*  1.Data transfer to AP */
 				/*  2.Arp pkt will relayed by AP */
 				SetToDs(fctrl);
-				memcpy(pwlanhdr->addr1, get_bssid(pmlmepriv), ETH_ALEN);
+				memcpy(pwlanhdr->addr1, get_bssid(pmlmepriv),
+				       ETH_ALEN);
 				memcpy(pwlanhdr->addr2, pattrib->src, ETH_ALEN);
 				memcpy(pwlanhdr->addr3, pattrib->dst, ETH_ALEN);
 			}
@@ -1003,36 +1087,52 @@ s32 rtw_make_wlanhdr(struct adapter *padapter, u8 *hdr, struct pkt_attrib *pattr
 				return _FAIL;
 
 			if (psta) {
-				psta->sta_xmitpriv.txseq_tid[pattrib->priority]++;
-				psta->sta_xmitpriv.txseq_tid[pattrib->priority] %= 4096u;
-				pattrib->seqnum = psta->sta_xmitpriv.txseq_tid[pattrib->priority];
+				psta->sta_xmitpriv
+					.txseq_tid[pattrib->priority]++;
+				psta->sta_xmitpriv
+					.txseq_tid[pattrib->priority] %= 4096u;
+				pattrib->seqnum =
+					psta->sta_xmitpriv
+						.txseq_tid[pattrib->priority];
 
 				SetSeqNum(hdr, pattrib->seqnum);
 
 				/* check if enable ampdu */
 				if (pattrib->ht_en && psta->htpriv.ampdu_enable)
-					if (psta->htpriv.agg_enable_bitmap & BIT(pattrib->priority))
+					if (psta->htpriv.agg_enable_bitmap &
+					    BIT(pattrib->priority))
 						pattrib->ampdu_en = true;
 
 				/* re-check if enable ampdu by BA_starting_seqctrl */
 				if (pattrib->ampdu_en) {
 					u16 tx_seq;
 
-					tx_seq = psta->BA_starting_seqctrl[pattrib->priority & 0x0f];
+					tx_seq = psta->BA_starting_seqctrl
+							 [pattrib->priority &
+							  0x0f];
 
 					/* check BA_starting_seqctrl */
 					if (SN_LESS(pattrib->seqnum, tx_seq)) {
-						pattrib->ampdu_en = false;/* AGG BK */
-					} else if (SN_EQUAL(pattrib->seqnum, tx_seq)) {
-						psta->BA_starting_seqctrl[pattrib->priority & 0x0f] =
+						pattrib->ampdu_en =
+							false; /* AGG BK */
+					} else if (SN_EQUAL(pattrib->seqnum,
+							    tx_seq)) {
+						psta->BA_starting_seqctrl
+							[pattrib->priority &
+							 0x0f] =
 							(tx_seq + 1) % 4096u;
 
-						pattrib->ampdu_en = true;/* AGG EN */
+						pattrib->ampdu_en =
+							true; /* AGG EN */
 					} else {
-						psta->BA_starting_seqctrl[pattrib->priority & 0x0f] =
-							(pattrib->seqnum + 1) % 4096u;
-
-						pattrib->ampdu_en = true;/* AGG EN */
+						psta->BA_starting_seqctrl
+							[pattrib->priority &
+							 0x0f] =
+							(pattrib->seqnum + 1) %
+							4096u;
+
+						pattrib->ampdu_en =
+							true; /* AGG EN */
 					}
 				}
 			}
@@ -1049,9 +1149,9 @@ s32 rtw_txframes_pending(struct adapter *padapter)
 	struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
 
 	return ((!list_empty(&pxmitpriv->be_pending.queue)) ||
-			 (!list_empty(&pxmitpriv->bk_pending.queue)) ||
-			 (!list_empty(&pxmitpriv->vi_pending.queue)) ||
-			 (!list_empty(&pxmitpriv->vo_pending.queue)));
+		(!list_empty(&pxmitpriv->bk_pending.queue)) ||
+		(!list_empty(&pxmitpriv->vi_pending.queue)) ||
+		(!list_empty(&pxmitpriv->vo_pending.queue)));
 }
 
 /*
@@ -1081,7 +1181,8 @@ u32 rtw_calculate_wlan_pkt_size_by_attribue(struct pkt_attrib *pattrib)
  * 5. move frag chunk from pframe to pxmitframe->mem
  * 6. apply sw-encrypt, if necessary.
  */
-s32 rtw_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, struct xmit_frame *pxmitframe)
+s32 rtw_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt,
+			   struct xmit_frame *pxmitframe)
 {
 	struct pkt_file pktfile;
 
@@ -1094,7 +1195,7 @@ s32 rtw_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, struct
 
 	struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
 
-	struct pkt_attrib	*pattrib = &pxmitframe->attrib;
+	struct pkt_attrib *pattrib = &pxmitframe->attrib;
 
 	u8 *pbuf_start;
 
@@ -1108,7 +1209,7 @@ s32 rtw_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, struct
 	pbuf_start = pxmitframe->buf_addr;
 
 	hw_hdr_offset = TXDESC_OFFSET;
-	mem_start = pbuf_start +	hw_hdr_offset;
+	mem_start = pbuf_start + hw_hdr_offset;
 
 	if (rtw_make_wlanhdr(padapter, mem_start, pattrib) == _FAIL) {
 		res = _FAIL;
@@ -1121,7 +1222,7 @@ s32 rtw_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, struct
 		return ret;
 
 	frg_inx = 0;
-	frg_len = pxmitpriv->frag_len - 4;/* 2346-4 = 2342 */
+	frg_len = pxmitpriv->frag_len - 4; /* 2346-4 = 2342 */
 
 	while (1) {
 		llc_sz = 0;
@@ -1155,7 +1256,8 @@ s32 rtw_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, struct
 
 		if (bmcst) {
 			/*  don't do fragment to broadcast/multicast packets */
-			mem_sz = _rtw_pktfile_read(&pktfile, pframe, pattrib->pktlen);
+			mem_sz = _rtw_pktfile_read(&pktfile, pframe,
+						   pattrib->pktlen);
 		} else {
 			mem_sz = _rtw_pktfile_read(&pktfile, pframe, mpdu_len);
 		}
@@ -1175,10 +1277,11 @@ s32 rtw_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, struct
 		if (bmcst || rtw_endofpktfile(&pktfile)) {
 			pattrib->nr_frags = frg_inx;
 
-			pattrib->last_txcmdsz = pattrib->hdrlen + pattrib->iv_len +
-						((pattrib->nr_frags == 1) ? llc_sz : 0) +
-						((pattrib->bswenc) ? pattrib->icv_len : 0) +
-						mem_sz;
+			pattrib->last_txcmdsz =
+				pattrib->hdrlen + pattrib->iv_len +
+				((pattrib->nr_frags == 1) ? llc_sz : 0) +
+				((pattrib->bswenc) ? pattrib->icv_len : 0) +
+				mem_sz;
 
 			ClearMFrag(mem_start);
 
@@ -1208,7 +1311,8 @@ s32 rtw_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, struct
 }
 
 /* broadcast or multicast management pkt use BIP, unicast management pkt use CCMP encryption */
-s32 rtw_mgmt_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, struct xmit_frame *pxmitframe)
+s32 rtw_mgmt_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt,
+				struct xmit_frame *pxmitframe)
 {
 	u8 *pframe, *mem_start = NULL, *tmp_buf = NULL;
 	u8 subtype;
@@ -1220,7 +1324,7 @@ s32 rtw_mgmt_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, s
 
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
-	struct ieee80211_hdr	*pwlanhdr;
+	struct ieee80211_hdr *pwlanhdr;
 	u8 MME[_MME_IE_LENGTH_];
 	u32 ori_len;
 
@@ -1238,7 +1342,8 @@ s32 rtw_mgmt_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, s
 	spin_lock_bh(&padapter->security_key_mutex);
 
 	/* only support station mode */
-	if (!check_fwstate(pmlmepriv, WIFI_STATION_STATE) || !check_fwstate(pmlmepriv, _FW_LINKED))
+	if (!check_fwstate(pmlmepriv, WIFI_STATION_STATE) ||
+	    !check_fwstate(pmlmepriv, _FW_LINKED))
 		goto xmitframe_coalesce_success;
 
 	/* IGTK key is not install, it may not support 802.11w */
@@ -1253,7 +1358,8 @@ s32 rtw_mgmt_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, s
 		memset(MME, 0, 18);
 
 		/* other types doesn't need the BIP */
-		if (GetFrameSubType(pframe) != WIFI_DEAUTH && GetFrameSubType(pframe) != WIFI_DISASSOC)
+		if (GetFrameSubType(pframe) != WIFI_DEAUTH &&
+		    GetFrameSubType(pframe) != WIFI_DISASSOC)
 			goto xmitframe_coalesce_fail;
 
 		MGMT_body = pframe + sizeof(struct ieee80211_hdr_3addr);
@@ -1267,11 +1373,12 @@ s32 rtw_mgmt_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, s
 		pmlmeext->mgnt_80211w_IPN++;
 
 		/* add MME IE with MIC all zero, MME string doesn't include element id and length */
-		pframe = rtw_set_ie(pframe, WLAN_EID_MMIE, 16,
-				    MME, &pattrib->pktlen);
+		pframe = rtw_set_ie(pframe, WLAN_EID_MMIE, 16, MME,
+				    &pattrib->pktlen);
 		pattrib->last_txcmdsz = pattrib->pktlen;
 		/*  total frame length - header length */
-		frame_body_len = pattrib->pktlen - sizeof(struct ieee80211_hdr_3addr);
+		frame_body_len =
+			pattrib->pktlen - sizeof(struct ieee80211_hdr_3addr);
 
 		/* conscruct AAD, copy frame control field */
 		memcpy(BIP_AAD, &pwlanhdr->frame_control, 2);
@@ -1283,8 +1390,11 @@ s32 rtw_mgmt_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, s
 		/* copy management fram body */
 		memcpy(BIP_AAD + BIP_AAD_SIZE, MGMT_body, frame_body_len);
 		/* calculate mic */
-		if (omac1_aes_128(padapter->securitypriv.dot11wBIPKey[padapter->securitypriv.dot11wBIPKeyid].skey
-			, BIP_AAD, BIP_AAD_SIZE + frame_body_len, mic))
+		if (omac1_aes_128(padapter->securitypriv
+					  .dot11wBIPKey[padapter->securitypriv
+								.dot11wBIPKeyid]
+					  .skey,
+				  BIP_AAD, BIP_AAD_SIZE + frame_body_len, mic))
 			goto xmitframe_coalesce_fail;
 
 		/* copy right BIP mic value, total is 128bits, we use the 0~63 bits */
@@ -1292,29 +1402,35 @@ s32 rtw_mgmt_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, s
 	} else { /* unicast mgmt frame TX */
 		/* start to encrypt mgmt frame */
 		if (subtype == WIFI_DEAUTH || subtype == WIFI_DISASSOC ||
-			subtype == WIFI_REASSOCREQ || subtype == WIFI_ACTION) {
+		    subtype == WIFI_REASSOCREQ || subtype == WIFI_ACTION) {
 			if (pattrib->psta)
 				psta = pattrib->psta;
 			else
-				psta = rtw_get_stainfo(&padapter->stapriv, pattrib->ra);
+				psta = rtw_get_stainfo(&padapter->stapriv,
+						       pattrib->ra);
 
 			if (!psta)
 				goto xmitframe_coalesce_fail;
 
-			if (!(psta->state & _FW_LINKED) || !pxmitframe->buf_addr)
+			if (!(psta->state & _FW_LINKED) ||
+			    !pxmitframe->buf_addr)
 				goto xmitframe_coalesce_fail;
 
 			/* according 802.11-2012 standard, these five types are not robust types */
 			if (subtype == WIFI_ACTION &&
-			(pframe[WLAN_HDR_A3_LEN] == RTW_WLAN_CATEGORY_PUBLIC ||
-			pframe[WLAN_HDR_A3_LEN] == RTW_WLAN_CATEGORY_HT ||
-			pframe[WLAN_HDR_A3_LEN] == RTW_WLAN_CATEGORY_UNPROTECTED_WNM ||
-			pframe[WLAN_HDR_A3_LEN] == RTW_WLAN_CATEGORY_SELF_PROTECTED  ||
-			pframe[WLAN_HDR_A3_LEN] == RTW_WLAN_CATEGORY_P2P))
+			    (pframe[WLAN_HDR_A3_LEN] ==
+				     RTW_WLAN_CATEGORY_PUBLIC ||
+			     pframe[WLAN_HDR_A3_LEN] == RTW_WLAN_CATEGORY_HT ||
+			     pframe[WLAN_HDR_A3_LEN] ==
+				     RTW_WLAN_CATEGORY_UNPROTECTED_WNM ||
+			     pframe[WLAN_HDR_A3_LEN] ==
+				     RTW_WLAN_CATEGORY_SELF_PROTECTED ||
+			     pframe[WLAN_HDR_A3_LEN] == RTW_WLAN_CATEGORY_P2P))
 				goto xmitframe_coalesce_fail;
 			/* before encrypt dump the management packet content */
 			if (pattrib->encrypt > 0)
-				memcpy(pattrib->dot118021x_UncstKey.skey, psta->dot118021x_UncstKey.skey, 16);
+				memcpy(pattrib->dot118021x_UncstKey.skey,
+				       psta->dot118021x_UncstKey.skey, 16);
 			/* bakeup original management packet */
 			memcpy(tmp_buf, pframe, pattrib->pktlen);
 			/* move to data portion */
@@ -1327,8 +1443,8 @@ s32 rtw_mgmt_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, s
 
 			switch (pattrib->encrypt) {
 			case _AES_:
-					/* set AES IV header */
-					AES_IV(pattrib->iv, psta->dot11wtxpn, 0);
+				/* set AES IV header */
+				AES_IV(pattrib->iv, psta->dot11wtxpn, 0);
 				break;
 			default:
 				goto xmitframe_coalesce_fail;
@@ -1403,11 +1519,11 @@ s32 rtw_put_snap(u8 *data, u16 h_proto)
 
 void rtw_update_protection(struct adapter *padapter, u8 *ie, uint ie_len)
 {
-	uint	protection;
+	uint protection;
 	u8 *perp;
-	signed int	 erp_len;
-	struct	xmit_priv *pxmitpriv = &padapter->xmitpriv;
-	struct	registry_priv *pregistrypriv = &padapter->registrypriv;
+	signed int erp_len;
+	struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
+	struct registry_priv *pregistrypriv = &padapter->registrypriv;
 
 	switch (pxmitpriv->vcs_setting) {
 	case DISABLE_VCS:
@@ -1438,7 +1554,8 @@ void rtw_update_protection(struct adapter *padapter, u8 *ie, uint ie_len)
 	}
 }
 
-void rtw_count_tx_stats(struct adapter *padapter, struct xmit_frame *pxmitframe, int sz)
+void rtw_count_tx_stats(struct adapter *padapter, struct xmit_frame *pxmitframe,
+			int sz)
 {
 	struct sta_info *psta = NULL;
 	struct stainfo_stats *pstats = NULL;
@@ -1467,9 +1584,9 @@ void rtw_count_tx_stats(struct adapter *padapter, struct xmit_frame *pxmitframe,
 }
 
 static struct xmit_buf *__rtw_alloc_cmd_xmitbuf(struct xmit_priv *pxmitpriv,
-		enum cmdbuf_type buf_type)
+						enum cmdbuf_type buf_type)
 {
-	struct xmit_buf *pxmitbuf =  NULL;
+	struct xmit_buf *pxmitbuf = NULL;
 
 	pxmitbuf = &pxmitpriv->pcmd_xmitbuf[buf_type];
 	if (pxmitbuf) {
@@ -1481,17 +1598,18 @@ static struct xmit_buf *__rtw_alloc_cmd_xmitbuf(struct xmit_priv *pxmitpriv,
 		pxmitbuf->pg_num = 0;
 
 		if (pxmitbuf->sctx)
-			rtw_sctx_done_err(&pxmitbuf->sctx, RTW_SCTX_DONE_BUF_ALLOC);
+			rtw_sctx_done_err(&pxmitbuf->sctx,
+					  RTW_SCTX_DONE_BUF_ALLOC);
 	}
 
 	return pxmitbuf;
 }
 
 struct xmit_frame *__rtw_alloc_cmdxmitframe(struct xmit_priv *pxmitpriv,
-		enum cmdbuf_type buf_type)
+					    enum cmdbuf_type buf_type)
 {
-	struct xmit_frame		*pcmdframe;
-	struct xmit_buf		*pxmitbuf;
+	struct xmit_frame *pcmdframe;
+	struct xmit_buf *pxmitbuf;
 
 	pcmdframe = rtw_alloc_xmitframe(pxmitpriv);
 	if (!pcmdframe)
@@ -1517,7 +1635,7 @@ struct xmit_frame *__rtw_alloc_cmdxmitframe(struct xmit_priv *pxmitpriv,
 struct xmit_buf *rtw_alloc_xmitbuf_ext(struct xmit_priv *pxmitpriv)
 {
 	unsigned long irqL;
-	struct xmit_buf *pxmitbuf =  NULL;
+	struct xmit_buf *pxmitbuf = NULL;
 	struct list_head *plist, *phead;
 	struct __queue *pfree_queue = &pxmitpriv->free_xmit_extbuf_queue;
 
@@ -1546,7 +1664,8 @@ struct xmit_buf *rtw_alloc_xmitbuf_ext(struct xmit_priv *pxmitpriv)
 		pxmitbuf->agg_num = 1;
 
 		if (pxmitbuf->sctx)
-			rtw_sctx_done_err(&pxmitbuf->sctx, RTW_SCTX_DONE_BUF_ALLOC);
+			rtw_sctx_done_err(&pxmitbuf->sctx,
+					  RTW_SCTX_DONE_BUF_ALLOC);
 	}
 
 	spin_unlock_irqrestore(&pfree_queue->lock, irqL);
@@ -1577,7 +1696,7 @@ s32 rtw_free_xmitbuf_ext(struct xmit_priv *pxmitpriv, struct xmit_buf *pxmitbuf)
 struct xmit_buf *rtw_alloc_xmitbuf(struct xmit_priv *pxmitpriv)
 {
 	unsigned long irqL;
-	struct xmit_buf *pxmitbuf =  NULL;
+	struct xmit_buf *pxmitbuf = NULL;
 	struct list_head *plist, *phead;
 	struct __queue *pfree_xmitbuf_queue = &pxmitpriv->free_xmitbuf_queue;
 
@@ -1607,7 +1726,8 @@ struct xmit_buf *rtw_alloc_xmitbuf(struct xmit_priv *pxmitpriv)
 		pxmitbuf->pg_num = 0;
 
 		if (pxmitbuf->sctx)
-			rtw_sctx_done_err(&pxmitbuf->sctx, RTW_SCTX_DONE_BUF_ALLOC);
+			rtw_sctx_done_err(&pxmitbuf->sctx,
+					  RTW_SCTX_DONE_BUF_ALLOC);
 	}
 
 	spin_unlock_irqrestore(&pfree_xmitbuf_queue->lock, irqL);
@@ -1669,7 +1789,8 @@ static void rtw_init_xmitframe(struct xmit_frame *pxframe)
  *
  * Must be very, very cautious...
  */
-struct xmit_frame *rtw_alloc_xmitframe(struct xmit_priv *pxmitpriv)/* _queue *pfree_xmit_queue) */
+struct xmit_frame *
+rtw_alloc_xmitframe(struct xmit_priv *pxmitpriv) /* _queue *pfree_xmit_queue) */
 {
 	/*
 	 *	Please remember to use all the osdep_service api,
@@ -1684,7 +1805,7 @@ struct xmit_frame *rtw_alloc_xmitframe(struct xmit_priv *pxmitpriv)/* _queue *pf
 	spin_lock_bh(&pfree_xmit_queue->lock);
 
 	if (list_empty(&pfree_xmit_queue->queue)) {
-		pxframe =  NULL;
+		pxframe = NULL;
 	} else {
 		phead = get_list_head(pfree_xmit_queue);
 
@@ -1711,7 +1832,7 @@ struct xmit_frame *rtw_alloc_xmitframe_ext(struct xmit_priv *pxmitpriv)
 	spin_lock_bh(&queue->lock);
 
 	if (list_empty(&queue->queue)) {
-		pxframe =  NULL;
+		pxframe = NULL;
 	} else {
 		phead = get_list_head(queue);
 		plist = get_next(phead);
@@ -1737,7 +1858,8 @@ struct xmit_frame *rtw_alloc_xmitframe_once(struct xmit_priv *pxmitpriv)
 	if (!alloc_addr)
 		goto exit;
 
-	pxframe = (struct xmit_frame *)N_BYTE_ALIGMENT((SIZE_PTR)(alloc_addr), 4);
+	pxframe =
+		(struct xmit_frame *)N_BYTE_ALIGMENT((SIZE_PTR)(alloc_addr), 4);
 	pxframe->alloc_addr = alloc_addr;
 
 	pxframe->padapter = pxmitpriv->adapter;
@@ -1754,7 +1876,8 @@ struct xmit_frame *rtw_alloc_xmitframe_once(struct xmit_priv *pxmitpriv)
 	return pxframe;
 }
 
-s32 rtw_free_xmitframe(struct xmit_priv *pxmitpriv, struct xmit_frame *pxmitframe)
+s32 rtw_free_xmitframe(struct xmit_priv *pxmitpriv,
+		       struct xmit_frame *pxmitframe)
 {
 	struct __queue *queue = NULL;
 	struct adapter *padapter = pxmitpriv->adapter;
@@ -1798,10 +1921,11 @@ s32 rtw_free_xmitframe(struct xmit_priv *pxmitpriv, struct xmit_frame *pxmitfram
 	return _SUCCESS;
 }
 
-void rtw_free_xmitframe_queue(struct xmit_priv *pxmitpriv, struct __queue *pframequeue)
+void rtw_free_xmitframe_queue(struct xmit_priv *pxmitpriv,
+			      struct __queue *pframequeue)
 {
 	struct list_head *plist, *phead, *tmp;
-	struct	xmit_frame	*pxmitframe;
+	struct xmit_frame *pxmitframe;
 
 	spin_lock_bh(&pframequeue->lock);
 
@@ -1818,13 +1942,14 @@ void rtw_free_xmitframe_queue(struct xmit_priv *pxmitpriv, struct __queue *pfram
  * Will enqueue pxmitframe to the proper queue,
  * and indicate it to xx_pending list.....
  */
-static int rtw_xmit_classifier(struct adapter *padapter, struct xmit_frame *pxmitframe)
+static int rtw_xmit_classifier(struct adapter *padapter,
+			       struct xmit_frame *pxmitframe)
 {
 	u8 ac_index;
 	struct sta_info *psta;
-	struct tx_servq	*ptxservq;
-	struct pkt_attrib	*pattrib = &pxmitframe->attrib;
-	struct hw_xmit	*phwxmits =  padapter->xmitpriv.hwxmits;
+	struct tx_servq *ptxservq;
+	struct pkt_attrib *pattrib = &pxmitframe->attrib;
+	struct hw_xmit *phwxmits = padapter->xmitpriv.hwxmits;
 
 	psta = rtw_get_stainfo(&padapter->stapriv, pattrib->ra);
 	if (pattrib->psta != psta)
@@ -1836,10 +1961,12 @@ static int rtw_xmit_classifier(struct adapter *padapter, struct xmit_frame *pxmi
 	if (!(psta->state & _FW_LINKED))
 		return -ENETDOWN;
 
-	ptxservq = rtw_get_sta_pending(padapter, psta, pattrib->priority, (u8 *)(&ac_index));
+	ptxservq = rtw_get_sta_pending(padapter, psta, pattrib->priority,
+				       (u8 *)(&ac_index));
 
 	if (list_empty(&ptxservq->tx_pending))
-		list_add_tail(&ptxservq->tx_pending, get_list_head(phwxmits[ac_index].sta_queue));
+		list_add_tail(&ptxservq->tx_pending,
+			      get_list_head(phwxmits[ac_index].sta_queue));
 
 	list_add_tail(&pxmitframe->list, get_list_head(&ptxservq->sta_pending));
 	ptxservq->qcnt++;
@@ -1848,7 +1975,8 @@ static int rtw_xmit_classifier(struct adapter *padapter, struct xmit_frame *pxmi
 	return 0;
 }
 
-int rtw_xmitframe_enqueue(struct adapter *padapter, struct xmit_frame *pxmitframe)
+int rtw_xmitframe_enqueue(struct adapter *padapter,
+			  struct xmit_frame *pxmitframe)
 {
 	int res;
 
@@ -1859,7 +1987,9 @@ int rtw_xmitframe_enqueue(struct adapter *padapter, struct xmit_frame *pxmitfram
 	return 0;
 }
 
-struct tx_servq *rtw_get_sta_pending(struct adapter *padapter, struct sta_info *psta, signed int up, u8 *ac)
+struct tx_servq *rtw_get_sta_pending(struct adapter *padapter,
+				     struct sta_info *psta, signed int up,
+				     u8 *ac)
 {
 	struct tx_servq *ptxservq = NULL;
 
@@ -1887,7 +2017,7 @@ struct tx_servq *rtw_get_sta_pending(struct adapter *padapter, struct sta_info *
 	default:
 		ptxservq = &psta->sta_xmitpriv.be_q;
 		*(ac) = 2;
-	break;
+		break;
 	}
 
 	return ptxservq;
@@ -1933,7 +2063,7 @@ u32 rtw_get_ff_hwaddr(struct xmit_frame *pxmitframe)
 	case 0x10:
 		addr = BCN_QUEUE_INX;
 		break;
-	case 0x11:/* BC/MC in PS (HIQ) */
+	case 0x11: /* BC/MC in PS (HIQ) */
 		addr = HIGH_QUEUE_INX;
 		break;
 	case 0x12:
@@ -1945,7 +2075,8 @@ u32 rtw_get_ff_hwaddr(struct xmit_frame *pxmitframe)
 	return addr;
 }
 
-static void do_queue_select(struct adapter	*padapter, struct pkt_attrib *pattrib)
+static void do_queue_select(struct adapter *padapter,
+			    struct pkt_attrib *pattrib)
 {
 	u8 qsel;
 
@@ -2020,9 +2151,7 @@ inline bool xmitframe_hiq_filter(struct xmit_frame *xmitframe)
 		struct pkt_attrib *attrib = &xmitframe->attrib;
 
 		if (attrib->ether_type == ETH_P_ARP ||
-		    attrib->ether_type == ETH_P_PAE ||
-		    attrib->dhcp_pkt
-		)
+		    attrib->ether_type == ETH_P_PAE || attrib->dhcp_pkt)
 			allow = true;
 
 	} else if (registry->hiq_filter == RTW_HIQ_FILTER_ALLOW_ALL)
@@ -2035,7 +2164,8 @@ inline bool xmitframe_hiq_filter(struct xmit_frame *xmitframe)
 	return allow;
 }
 
-signed int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter, struct xmit_frame *pxmitframe)
+signed int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter,
+					      struct xmit_frame *pxmitframe)
 {
 	signed int ret = false;
 	struct sta_info *psta = NULL;
@@ -2059,7 +2189,7 @@ signed int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter, struct x
 
 	if (pattrib->triggered == 1) {
 		if (bmcst && xmitframe_hiq_filter(pxmitframe))
-			pattrib->qsel = 0x11;/* HIQ */
+			pattrib->qsel = 0x11; /* HIQ */
 
 		return ret;
 	}
@@ -2072,7 +2202,8 @@ signed int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter, struct x
 
 			list_del_init(&pxmitframe->list);
 
-			list_add_tail(&pxmitframe->list, get_list_head(&psta->sleep_q));
+			list_add_tail(&pxmitframe->list,
+				      get_list_head(&psta->sleep_q));
 
 			psta->sleepq_len++;
 
@@ -2083,7 +2214,8 @@ signed int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter, struct x
 			pstapriv->sta_dz_bitmap |= BIT(0);
 
 			if (update_tim)
-				update_beacon(padapter, WLAN_EID_TIM, NULL, true);
+				update_beacon(padapter, WLAN_EID_TIM, NULL,
+					      true);
 			else
 				chk_bmc_sleepq_cmd(padapter);
 
@@ -2103,7 +2235,8 @@ signed int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter, struct x
 		if (pstapriv->sta_dz_bitmap & BIT(psta->aid)) {
 			list_del_init(&pxmitframe->list);
 
-			list_add_tail(&pxmitframe->list, get_list_head(&psta->sleep_q));
+			list_add_tail(&pxmitframe->list,
+				      get_list_head(&psta->sleep_q));
 
 			psta->sleepq_len++;
 
@@ -2130,7 +2263,8 @@ signed int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter, struct x
 			if (wmmps_ac)
 				psta->sleepq_ac_len++;
 
-			if (((psta->has_legacy_ac) && (!wmmps_ac)) || ((!psta->has_legacy_ac) && (wmmps_ac))) {
+			if (((psta->has_legacy_ac) && (!wmmps_ac)) ||
+			    ((!psta->has_legacy_ac) && (wmmps_ac))) {
 				if (!(pstapriv->tim_bitmap & BIT(psta->aid)))
 					update_tim = true;
 
@@ -2138,7 +2272,8 @@ signed int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter, struct x
 
 				if (update_tim)
 					/* update BCN for TIM IE */
-					update_beacon(padapter, WLAN_EID_TIM, NULL, true);
+					update_beacon(padapter, WLAN_EID_TIM,
+						      NULL, true);
 			}
 
 			ret = true;
@@ -2150,15 +2285,17 @@ signed int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter, struct x
 	return ret;
 }
 
-static void dequeue_xmitframes_to_sleeping_queue(struct adapter *padapter, struct sta_info *psta, struct __queue *pframequeue)
+static void dequeue_xmitframes_to_sleeping_queue(struct adapter *padapter,
+						 struct sta_info *psta,
+						 struct __queue *pframequeue)
 {
 	signed int ret;
 	struct list_head *plist, *phead, *tmp;
 	u8 ac_index;
-	struct tx_servq	*ptxservq;
-	struct pkt_attrib	*pattrib;
-	struct xmit_frame	*pxmitframe;
-	struct hw_xmit *phwxmits =  padapter->xmitpriv.hwxmits;
+	struct tx_servq *ptxservq;
+	struct pkt_attrib *pattrib;
+	struct xmit_frame *pxmitframe;
+	struct hw_xmit *phwxmits = padapter->xmitpriv.hwxmits;
 
 	phead = get_list_head(pframequeue);
 	list_for_each_safe(plist, tmp, phead) {
@@ -2171,7 +2308,9 @@ static void dequeue_xmitframes_to_sleeping_queue(struct adapter *padapter, struc
 		ret = xmitframe_enqueue_for_sleeping_sta(padapter, pxmitframe);
 
 		if (true == ret) {
-			ptxservq = rtw_get_sta_pending(padapter, psta, pattrib->priority, (u8 *)(&ac_index));
+			ptxservq = rtw_get_sta_pending(padapter, psta,
+						       pattrib->priority,
+						       (u8 *)(&ac_index));
 
 			ptxservq->qcnt--;
 			phwxmits[ac_index].accnt--;
@@ -2198,21 +2337,26 @@ void stop_sta_xmit(struct adapter *padapter, struct sta_info *psta)
 
 	pstapriv->sta_dz_bitmap |= BIT(psta->aid);
 
-	dequeue_xmitframes_to_sleeping_queue(padapter, psta, &pstaxmitpriv->vo_q.sta_pending);
+	dequeue_xmitframes_to_sleeping_queue(padapter, psta,
+					     &pstaxmitpriv->vo_q.sta_pending);
 	list_del_init(&pstaxmitpriv->vo_q.tx_pending);
 
-	dequeue_xmitframes_to_sleeping_queue(padapter, psta, &pstaxmitpriv->vi_q.sta_pending);
+	dequeue_xmitframes_to_sleeping_queue(padapter, psta,
+					     &pstaxmitpriv->vi_q.sta_pending);
 	list_del_init(&pstaxmitpriv->vi_q.tx_pending);
 
-	dequeue_xmitframes_to_sleeping_queue(padapter, psta, &pstaxmitpriv->be_q.sta_pending);
+	dequeue_xmitframes_to_sleeping_queue(padapter, psta,
+					     &pstaxmitpriv->be_q.sta_pending);
 	list_del_init(&pstaxmitpriv->be_q.tx_pending);
 
-	dequeue_xmitframes_to_sleeping_queue(padapter, psta, &pstaxmitpriv->bk_q.sta_pending);
+	dequeue_xmitframes_to_sleeping_queue(padapter, psta,
+					     &pstaxmitpriv->bk_q.sta_pending);
 	list_del_init(&pstaxmitpriv->bk_q.tx_pending);
 
 	/* for BC/MC Frames */
 	pstaxmitpriv = &psta_bmc->sta_xmitpriv;
-	dequeue_xmitframes_to_sleeping_queue(padapter, psta_bmc, &pstaxmitpriv->be_q.sta_pending);
+	dequeue_xmitframes_to_sleeping_queue(padapter, psta_bmc,
+					     &pstaxmitpriv->be_q.sta_pending);
 	list_del_init(&pstaxmitpriv->be_q.tx_pending);
 
 	spin_unlock_bh(&pxmitpriv->lock);
@@ -2233,8 +2377,8 @@ void wakeup_sta_to_xmit(struct adapter *padapter, struct sta_info *psta)
 
 	xmitframe_phead = get_list_head(&psta->sleep_q);
 	list_for_each_safe(xmitframe_plist, tmp, xmitframe_phead) {
-		pxmitframe = list_entry(xmitframe_plist, struct xmit_frame,
-					list);
+		pxmitframe =
+			list_entry(xmitframe_plist, struct xmit_frame, list);
 
 		list_del_init(&pxmitframe->list);
 
@@ -2301,7 +2445,8 @@ void wakeup_sta_to_xmit(struct adapter *padapter, struct sta_info *psta)
 	if (!psta_bmc)
 		goto _exit;
 
-	if ((pstapriv->sta_dz_bitmap & 0xfffe) == 0x0) { /* no any sta in ps mode */
+	if ((pstapriv->sta_dz_bitmap & 0xfffe) ==
+	    0x0) { /* no any sta in ps mode */
 		xmitframe_phead = get_list_head(&psta_bmc->sleep_q);
 		list_for_each_safe(xmitframe_plist, tmp, xmitframe_phead) {
 			pxmitframe = list_entry(xmitframe_plist,
@@ -2336,7 +2481,8 @@ void wakeup_sta_to_xmit(struct adapter *padapter, struct sta_info *psta)
 		update_beacon(padapter, WLAN_EID_TIM, NULL, true);
 }
 
-void xmit_delivery_enabled_frames(struct adapter *padapter, struct sta_info *psta)
+void xmit_delivery_enabled_frames(struct adapter *padapter,
+				  struct sta_info *psta)
 {
 	u8 wmmps_ac = 0;
 	struct list_head *xmitframe_plist, *xmitframe_phead, *tmp;
@@ -2348,8 +2494,8 @@ void xmit_delivery_enabled_frames(struct adapter *padapter, struct sta_info *pst
 
 	xmitframe_phead = get_list_head(&psta->sleep_q);
 	list_for_each_safe(xmitframe_plist, tmp, xmitframe_phead) {
-		pxmitframe = list_entry(xmitframe_plist, struct xmit_frame,
-					list);
+		pxmitframe =
+			list_entry(xmitframe_plist, struct xmit_frame, list);
 
 		switch (pxmitframe->attrib.priority) {
 		case 1:
@@ -2390,7 +2536,8 @@ void xmit_delivery_enabled_frames(struct adapter *padapter, struct sta_info *pst
 		pxmitframe->attrib.triggered = 1;
 		rtw_hal_xmitframe_enqueue(padapter, pxmitframe);
 
-		if ((psta->sleepq_ac_len == 0) && (!psta->has_legacy_ac) && (wmmps_ac)) {
+		if ((psta->sleepq_ac_len == 0) && (!psta->has_legacy_ac) &&
+		    (wmmps_ac)) {
 			pstapriv->tim_bitmap &= ~BIT(psta->aid);
 
 			update_beacon(padapter, WLAN_EID_TIM, NULL, true);
@@ -2400,7 +2547,8 @@ void xmit_delivery_enabled_frames(struct adapter *padapter, struct sta_info *pst
 	spin_unlock_bh(&pxmitpriv->lock);
 }
 
-void enqueue_pending_xmitbuf(struct xmit_priv *pxmitpriv, struct xmit_buf *pxmitbuf)
+void enqueue_pending_xmitbuf(struct xmit_priv *pxmitpriv,
+			     struct xmit_buf *pxmitbuf)
 {
 	struct __queue *pqueue;
 	struct adapter *pri_adapter = pxmitpriv->adapter;
@@ -2415,7 +2563,8 @@ void enqueue_pending_xmitbuf(struct xmit_priv *pxmitpriv, struct xmit_buf *pxmit
 	complete(&pri_adapter->xmitpriv.xmit_comp);
 }
 
-void enqueue_pending_xmitbuf_to_head(struct xmit_priv *pxmitpriv, struct xmit_buf *pxmitbuf)
+void enqueue_pending_xmitbuf_to_head(struct xmit_priv *pxmitpriv,
+				     struct xmit_buf *pxmitbuf)
 {
 	struct __queue *pqueue;
 
@@ -2451,7 +2600,8 @@ struct xmit_buf *dequeue_pending_xmitbuf(struct xmit_priv *pxmitpriv)
 	return pxmitbuf;
 }
 
-struct xmit_buf *dequeue_pending_xmitbuf_under_survey(struct xmit_priv *pxmitpriv)
+struct xmit_buf *
+dequeue_pending_xmitbuf_under_survey(struct xmit_priv *pxmitpriv)
 {
 	struct xmit_buf *pxmitbuf;
 	struct __queue *pqueue;
@@ -2477,8 +2627,8 @@ struct xmit_buf *dequeue_pending_xmitbuf_under_survey(struct xmit_priv *pxmitpri
 			type = GetFrameSubType(pxmitbuf->pbuf + TXDESC_OFFSET);
 
 			if ((type == WIFI_PROBEREQ) ||
-				(type == WIFI_DATA_NULL) ||
-				(type == WIFI_QOS_DATA_NULL)) {
+			    (type == WIFI_DATA_NULL) ||
+			    (type == WIFI_QOS_DATA_NULL)) {
 				list_del_init(&pxmitbuf->list);
 				break;
 			}
@@ -2494,7 +2644,7 @@ struct xmit_buf *dequeue_pending_xmitbuf_under_survey(struct xmit_priv *pxmitpri
 signed int check_pending_xmitbuf(struct xmit_priv *pxmitpriv)
 {
 	struct __queue *pqueue;
-	signed int	ret = false;
+	signed int ret = false;
 
 	pqueue = &pxmitpriv->pending_xmitbuf_queue;
 
@@ -2542,7 +2692,8 @@ int rtw_sctx_wait(struct submit_ctx *sctx)
 	unsigned long expire;
 	int status = 0;
 
-	expire = sctx->timeout_ms ? msecs_to_jiffies(sctx->timeout_ms) : MAX_SCHEDULE_TIMEOUT;
+	expire = sctx->timeout_ms ? msecs_to_jiffies(sctx->timeout_ms) :
+				    MAX_SCHEDULE_TIMEOUT;
 	if (!wait_for_completion_timeout(&sctx->done, expire))
 		/* timeout, do something?? */
 		status = RTW_SCTX_DONE_TIMEOUT;
diff --git a/drivers/staging/rtl8723bs/hal/Hal8723BReg.h b/drivers/staging/rtl8723bs/hal/Hal8723BReg.h
index 0b327a70aa15c..26954c5a4a34d 100644
--- a/drivers/staging/rtl8723bs/hal/Hal8723BReg.h
+++ b/drivers/staging/rtl8723bs/hal/Hal8723BReg.h
@@ -24,15 +24,15 @@
 /*	0x0100h ~ 0x01FFh	MACTOP General Configuration */
 /*  */
 /*  */
-#define REG_C2HEVT_CMD_SEQ_88XX			0x01A1
-#define REG_C2HEVT_CMD_LEN_88XX			0x01AE
+#define REG_C2HEVT_CMD_SEQ_88XX 0x01A1
+#define REG_C2HEVT_CMD_LEN_88XX 0x01AE
 
 /*  */
 /*  */
 /*	0x0200h ~ 0x027Fh	TXDMA Configuration */
 /*  */
 /*  */
-#define REG_DWBCN1_CTRL_8723B			0x0228
+#define REG_DWBCN1_CTRL_8723B 0x0228
 
 /*  spec version 11 */
 /*  */
@@ -40,26 +40,26 @@
 /*	0x0400h ~ 0x047Fh	Protocol Configuration */
 /*  */
 /*  */
-#define REG_FWHW_TXQ_CTRL_8723B			0x0420
-#define REG_ARFR0_8723B				0x0444
-#define REG_ARFR1_8723B				0x044C
-#define REG_CCK_CHECK_8723B			0x0454
-#define REG_AMPDU_MAX_TIME_8723B		0x0456
+#define REG_FWHW_TXQ_CTRL_8723B 0x0420
+#define REG_ARFR0_8723B 0x0444
+#define REG_ARFR1_8723B 0x044C
+#define REG_CCK_CHECK_8723B 0x0454
+#define REG_AMPDU_MAX_TIME_8723B 0x0456
 
-#define REG_AMPDU_MAX_LENGTH_8723B		0x0458
-#define REG_DATA_SC_8723B			0x0483
-#define REG_MAX_AGGR_NUM_8723B			0x04CA
+#define REG_AMPDU_MAX_LENGTH_8723B 0x0458
+#define REG_DATA_SC_8723B 0x0483
+#define REG_MAX_AGGR_NUM_8723B 0x04CA
 
 /*  */
 /*  */
 /*	0x0500h ~ 0x05FFh	EDCA Configuration */
 /*  */
 /*  */
-#define REG_PIFS_8723B				0x0512
+#define REG_PIFS_8723B 0x0512
 
 /*	0x0600h ~ 0x07FFh	WMAC Configuration */
-#define REG_RX_PKT_LIMIT_8723B			0x060C
+#define REG_RX_PKT_LIMIT_8723B 0x060C
 
-#define REG_TRXPTCL_CTL_8723B			0x0668
+#define REG_TRXPTCL_CTL_8723B 0x0668
 
 #endif /*  #ifndef __INC_HAL8723BREG_H */
diff --git a/drivers/staging/rtl8723bs/hal/HalBtc8723b1Ant.c b/drivers/staging/rtl8723bs/hal/HalBtc8723b1Ant.c
index 0613beaa3752f..2c732f3b40919 100644
--- a/drivers/staging/rtl8723bs/hal/HalBtc8723b1Ant.c
+++ b/drivers/staging/rtl8723bs/hal/HalBtc8723b1Ant.c
@@ -15,9 +15,8 @@ static struct coex_sta_8723b_1ant *pCoexSta = &GLCoexSta8723b1Ant;
 
 /*  local function proto type if needed */
 /*  local function start with halbtc8723b1ant_ */
-static u8 halbtc8723b1ant_BtRssiState(
-	u8 levelNum, u8 rssiThresh, u8 rssiThresh1
-)
+static u8 halbtc8723b1ant_BtRssiState(u8 levelNum, u8 rssiThresh,
+				      u8 rssiThresh1)
 {
 	s32 btRssi = 0;
 	u8 btRssiState = pCoexSta->preBtRssiState;
@@ -25,11 +24,10 @@ static u8 halbtc8723b1ant_BtRssiState(
 	btRssi = pCoexSta->btRssi;
 
 	if (levelNum == 2) {
-		if (
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_LOW) ||
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_STAY_LOW)
-		) {
-			if (btRssi >= (rssiThresh + BTC_RSSI_COEX_THRESH_TOL_8723B_1ANT))
+		if ((pCoexSta->preBtRssiState == BTC_RSSI_STATE_LOW) ||
+		    (pCoexSta->preBtRssiState == BTC_RSSI_STATE_STAY_LOW)) {
+			if (btRssi >=
+			    (rssiThresh + BTC_RSSI_COEX_THRESH_TOL_8723B_1ANT))
 
 				btRssiState = BTC_RSSI_STATE_HIGH;
 			else
@@ -44,19 +42,19 @@ static u8 halbtc8723b1ant_BtRssiState(
 		if (rssiThresh > rssiThresh1)
 			return pCoexSta->preBtRssiState;
 
-		if (
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_LOW) ||
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_STAY_LOW)
-		) {
-			if (btRssi >= (rssiThresh + BTC_RSSI_COEX_THRESH_TOL_8723B_1ANT))
+		if ((pCoexSta->preBtRssiState == BTC_RSSI_STATE_LOW) ||
+		    (pCoexSta->preBtRssiState == BTC_RSSI_STATE_STAY_LOW)) {
+			if (btRssi >=
+			    (rssiThresh + BTC_RSSI_COEX_THRESH_TOL_8723B_1ANT))
 				btRssiState = BTC_RSSI_STATE_MEDIUM;
 			else
 				btRssiState = BTC_RSSI_STATE_STAY_LOW;
-		} else if (
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_MEDIUM) ||
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_STAY_MEDIUM)
-		) {
-			if (btRssi >= (rssiThresh1 + BTC_RSSI_COEX_THRESH_TOL_8723B_1ANT))
+		} else if ((pCoexSta->preBtRssiState ==
+			    BTC_RSSI_STATE_MEDIUM) ||
+			   (pCoexSta->preBtRssiState ==
+			    BTC_RSSI_STATE_STAY_MEDIUM)) {
+			if (btRssi >=
+			    (rssiThresh1 + BTC_RSSI_COEX_THRESH_TOL_8723B_1ANT))
 				btRssiState = BTC_RSSI_STATE_HIGH;
 			else if (btRssi < rssiThresh)
 				btRssiState = BTC_RSSI_STATE_LOW;
@@ -75,24 +73,20 @@ static u8 halbtc8723b1ant_BtRssiState(
 	return btRssiState;
 }
 
-static void halbtc8723b1ant_UpdateRaMask(
-	struct btc_coexist *pBtCoexist, bool bForceExec, u32 disRateMask
-)
+static void halbtc8723b1ant_UpdateRaMask(struct btc_coexist *pBtCoexist,
+					 bool bForceExec, u32 disRateMask)
 {
 	pCoexDm->curRaMask = disRateMask;
 
 	if (bForceExec || (pCoexDm->preRaMask != pCoexDm->curRaMask))
-		pBtCoexist->fBtcSet(
-			pBtCoexist,
-			BTC_SET_ACT_UPDATE_RAMASK,
-			&pCoexDm->curRaMask
-		);
+		pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_UPDATE_RAMASK,
+				    &pCoexDm->curRaMask);
 	pCoexDm->preRaMask = pCoexDm->curRaMask;
 }
 
-static void halbtc8723b1ant_AutoRateFallbackRetry(
-	struct btc_coexist *pBtCoexist, bool bForceExec, u8 type
-)
+static void
+halbtc8723b1ant_AutoRateFallbackRetry(struct btc_coexist *pBtCoexist,
+				      bool bForceExec, u8 type)
 {
 	bool bWifiUnderBMode = false;
 
@@ -100,24 +94,26 @@ static void halbtc8723b1ant_AutoRateFallbackRetry(
 
 	if (bForceExec || (pCoexDm->preArfrType != pCoexDm->curArfrType)) {
 		switch (pCoexDm->curArfrType) {
-		case 0:	/*  normal mode */
-			pBtCoexist->fBtcWrite4Byte(
-				pBtCoexist, 0x430, pCoexDm->backupArfrCnt1
-			);
-			pBtCoexist->fBtcWrite4Byte(
-				pBtCoexist, 0x434, pCoexDm->backupArfrCnt2
-			);
+		case 0: /*  normal mode */
+			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x430,
+						   pCoexDm->backupArfrCnt1);
+			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x434,
+						   pCoexDm->backupArfrCnt2);
 			break;
 		case 1:
-			pBtCoexist->fBtcGet(
-				pBtCoexist, BTC_GET_BL_WIFI_UNDER_B_MODE, &bWifiUnderBMode
-			);
+			pBtCoexist->fBtcGet(pBtCoexist,
+					    BTC_GET_BL_WIFI_UNDER_B_MODE,
+					    &bWifiUnderBMode);
 			if (bWifiUnderBMode) {
-				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x430, 0x0);
-				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x434, 0x01010101);
+				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x430,
+							   0x0);
+				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x434,
+							   0x01010101);
 			} else {
-				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x430, 0x0);
-				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x434, 0x04030201);
+				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x430,
+							   0x0);
+				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x434,
+							   0x04030201);
 			}
 			break;
 		default:
@@ -128,23 +124,19 @@ static void halbtc8723b1ant_AutoRateFallbackRetry(
 	pCoexDm->preArfrType = pCoexDm->curArfrType;
 }
 
-static void halbtc8723b1ant_RetryLimit(
-	struct btc_coexist *pBtCoexist, bool bForceExec, u8 type
-)
+static void halbtc8723b1ant_RetryLimit(struct btc_coexist *pBtCoexist,
+				       bool bForceExec, u8 type)
 {
 	pCoexDm->curRetryLimitType = type;
 
-	if (
-		bForceExec ||
-		(pCoexDm->preRetryLimitType != pCoexDm->curRetryLimitType)
-	) {
+	if (bForceExec ||
+	    (pCoexDm->preRetryLimitType != pCoexDm->curRetryLimitType)) {
 		switch (pCoexDm->curRetryLimitType) {
-		case 0:	/*  normal mode */
-			pBtCoexist->fBtcWrite2Byte(
-				pBtCoexist, 0x42a, pCoexDm->backupRetryLimit
-			);
+		case 0: /*  normal mode */
+			pBtCoexist->fBtcWrite2Byte(pBtCoexist, 0x42a,
+						   pCoexDm->backupRetryLimit);
 			break;
-		case 1:	/*  retry limit =8 */
+		case 1: /*  retry limit =8 */
 			pBtCoexist->fBtcWrite2Byte(pBtCoexist, 0x42a, 0x0808);
 			break;
 		default:
@@ -155,22 +147,19 @@ static void halbtc8723b1ant_RetryLimit(
 	pCoexDm->preRetryLimitType = pCoexDm->curRetryLimitType;
 }
 
-static void halbtc8723b1ant_AmpduMaxTime(
-	struct btc_coexist *pBtCoexist, bool bForceExec, u8 type
-)
+static void halbtc8723b1ant_AmpduMaxTime(struct btc_coexist *pBtCoexist,
+					 bool bForceExec, u8 type)
 {
 	pCoexDm->curAmpduTimeType = type;
 
-	if (
-		bForceExec || (pCoexDm->preAmpduTimeType != pCoexDm->curAmpduTimeType)
-	) {
+	if (bForceExec ||
+	    (pCoexDm->preAmpduTimeType != pCoexDm->curAmpduTimeType)) {
 		switch (pCoexDm->curAmpduTimeType) {
-		case 0:	/*  normal mode */
-			pBtCoexist->fBtcWrite1Byte(
-				pBtCoexist, 0x456, pCoexDm->backupAmpduMaxTime
-			);
+		case 0: /*  normal mode */
+			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x456,
+						   pCoexDm->backupAmpduMaxTime);
 			break;
-		case 1:	/*  AMPDU timw = 0x38 * 32us */
+		case 1: /*  AMPDU timw = 0x38 * 32us */
 			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x456, 0x38);
 			break;
 		default:
@@ -181,24 +170,22 @@ static void halbtc8723b1ant_AmpduMaxTime(
 	pCoexDm->preAmpduTimeType = pCoexDm->curAmpduTimeType;
 }
 
-static void halbtc8723b1ant_LimitedTx(
-	struct btc_coexist *pBtCoexist,
-	bool bForceExec,
-	u8 raMaskType,
-	u8 arfrType,
-	u8 retryLimitType,
-	u8 ampduTimeType
-)
+static void halbtc8723b1ant_LimitedTx(struct btc_coexist *pBtCoexist,
+				      bool bForceExec, u8 raMaskType,
+				      u8 arfrType, u8 retryLimitType,
+				      u8 ampduTimeType)
 {
 	switch (raMaskType) {
-	case 0:	/*  normal mode */
+	case 0: /*  normal mode */
 		halbtc8723b1ant_UpdateRaMask(pBtCoexist, bForceExec, 0x0);
 		break;
-	case 1:	/*  disable cck 1/2 */
-		halbtc8723b1ant_UpdateRaMask(pBtCoexist, bForceExec, 0x00000003);
+	case 1: /*  disable cck 1/2 */
+		halbtc8723b1ant_UpdateRaMask(pBtCoexist, bForceExec,
+					     0x00000003);
 		break;
-	case 2:	/*  disable cck 1/2/5.5, ofdm 6/9/12/18/24, mcs 0/1/2/3/4 */
-		halbtc8723b1ant_UpdateRaMask(pBtCoexist, bForceExec, 0x0001f1f7);
+	case 2: /*  disable cck 1/2/5.5, ofdm 6/9/12/18/24, mcs 0/1/2/3/4 */
+		halbtc8723b1ant_UpdateRaMask(pBtCoexist, bForceExec,
+					     0x0001f1f7);
 		break;
 	default:
 		break;
@@ -209,13 +196,9 @@ static void halbtc8723b1ant_LimitedTx(
 	halbtc8723b1ant_AmpduMaxTime(pBtCoexist, bForceExec, ampduTimeType);
 }
 
-static void halbtc8723b1ant_LimitedRx(
-	struct btc_coexist *pBtCoexist,
-	bool bForceExec,
-	bool bRejApAggPkt,
-	bool bBtCtrlAggBufSize,
-	u8 aggBufSize
-)
+static void halbtc8723b1ant_LimitedRx(struct btc_coexist *pBtCoexist,
+				      bool bForceExec, bool bRejApAggPkt,
+				      bool bBtCtrlAggBufSize, u8 aggBufSize)
 {
 	bool bRejectRxAgg = bRejApAggPkt;
 	bool bBtCtrlRxAggSize = bBtCtrlAggBufSize;
@@ -224,13 +207,11 @@ static void halbtc8723b1ant_LimitedRx(
 	/*  */
 	/*	Rx Aggregation related setting */
 	/*  */
-	pBtCoexist->fBtcSet(
-		pBtCoexist, BTC_SET_BL_TO_REJ_AP_AGG_PKT, &bRejectRxAgg
-	);
+	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_TO_REJ_AP_AGG_PKT,
+			    &bRejectRxAgg);
 	/*  decide BT control aggregation buf size or not */
-	pBtCoexist->fBtcSet(
-		pBtCoexist, BTC_SET_BL_BT_CTRL_AGG_SIZE, &bBtCtrlRxAggSize
-	);
+	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_BT_CTRL_AGG_SIZE,
+			    &bBtCtrlRxAggSize);
 	/*  aggregation buf size, only work when BT control Rx aggregation size. */
 	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_U1_AGG_BUF_SIZE, &rxAggSize);
 	/*  real update aggregation setting */
@@ -239,11 +220,11 @@ static void halbtc8723b1ant_LimitedRx(
 
 static void halbtc8723b1ant_QueryBtInfo(struct btc_coexist *pBtCoexist)
 {
-	u8 H2C_Parameter[1] = {0};
+	u8 H2C_Parameter[1] = { 0 };
 
 	pCoexSta->bC2hBtInfoReqSent = true;
 
-	H2C_Parameter[0] |= BIT(0);	/*  trigger */
+	H2C_Parameter[0] |= BIT(0); /*  trigger */
 
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x61, 1, H2C_Parameter);
 }
@@ -254,7 +235,7 @@ static void halbtc8723b1ant_MonitorBtCtr(struct btc_coexist *pBtCoexist)
 	u32 regHPTx = 0, regHPRx = 0, regLPTx = 0, regLPRx = 0;
 	static u8 NumOfBtCounterChk;
 
-       /* to avoid 0x76e[3] = 1 (WLAN_Act control by PTA) during IPS */
+	/* to avoid 0x76e[3] = 1 (WLAN_Act control by PTA) during IPS */
 	/* if (! (pBtCoexist->fBtcRead1Byte(pBtCoexist, 0x76e) & 0x8)) */
 
 	if (pCoexSta->bUnderIps) {
@@ -287,7 +268,8 @@ static void halbtc8723b1ant_MonitorBtCtr(struct btc_coexist *pBtCoexist)
 	/*  reset counter */
 	pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x76e, 0xc);
 
-	if ((regHPTx == 0) && (regHPRx == 0) && (regLPTx == 0) && (regLPRx == 0)) {
+	if ((regHPTx == 0) && (regHPRx == 0) && (regLPTx == 0) &&
+	    (regLPRx == 0)) {
 		NumOfBtCounterChk++;
 		if (NumOfBtCounterChk >= 3) {
 			halbtc8723b1ant_QueryBtInfo(pBtCoexist);
@@ -298,15 +280,14 @@ static void halbtc8723b1ant_MonitorBtCtr(struct btc_coexist *pBtCoexist)
 
 static void halbtc8723b1ant_MonitorWiFiCtr(struct btc_coexist *pBtCoexist)
 {
-	s32	wifiRssi = 0;
+	s32 wifiRssi = 0;
 	bool bWifiBusy = false, bWifiUnderBMode = false;
 	static u8 nCCKLockCounter;
 
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_BUSY, &bWifiBusy);
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_S4_WIFI_RSSI, &wifiRssi);
-	pBtCoexist->fBtcGet(
-		pBtCoexist, BTC_GET_BL_WIFI_UNDER_B_MODE, &bWifiUnderBMode
-	);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_UNDER_B_MODE,
+			    &bWifiUnderBMode);
 
 	if (pCoexSta->bUnderIps) {
 		pCoexSta->nCRCOK_CCK = 0;
@@ -319,15 +300,23 @@ static void halbtc8723b1ant_MonitorWiFiCtr(struct btc_coexist *pBtCoexist)
 		pCoexSta->nCRCErr_11n = 0;
 		pCoexSta->nCRCErr_11nAgg = 0;
 	} else {
-		pCoexSta->nCRCOK_CCK	= pBtCoexist->fBtcRead4Byte(pBtCoexist, 0xf88);
-		pCoexSta->nCRCOK_11g	= pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xf94);
-		pCoexSta->nCRCOK_11n	= pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xf90);
-		pCoexSta->nCRCOK_11nAgg = pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xfb8);
-
-		pCoexSta->nCRCErr_CCK	 = pBtCoexist->fBtcRead4Byte(pBtCoexist, 0xf84);
-		pCoexSta->nCRCErr_11g	 = pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xf96);
-		pCoexSta->nCRCErr_11n	 = pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xf92);
-		pCoexSta->nCRCErr_11nAgg = pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xfba);
+		pCoexSta->nCRCOK_CCK =
+			pBtCoexist->fBtcRead4Byte(pBtCoexist, 0xf88);
+		pCoexSta->nCRCOK_11g =
+			pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xf94);
+		pCoexSta->nCRCOK_11n =
+			pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xf90);
+		pCoexSta->nCRCOK_11nAgg =
+			pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xfb8);
+
+		pCoexSta->nCRCErr_CCK =
+			pBtCoexist->fBtcRead4Byte(pBtCoexist, 0xf84);
+		pCoexSta->nCRCErr_11g =
+			pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xf96);
+		pCoexSta->nCRCErr_11n =
+			pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xf92);
+		pCoexSta->nCRCErr_11nAgg =
+			pBtCoexist->fBtcRead2Byte(pBtCoexist, 0xfba);
 	}
 
 	/* reset counter */
@@ -335,18 +324,13 @@ static void halbtc8723b1ant_MonitorWiFiCtr(struct btc_coexist *pBtCoexist)
 	pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0xf16, 0x1, 0x0);
 
 	if (bWifiBusy && (wifiRssi >= 30) && !bWifiUnderBMode) {
-		if (
-			(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY) ||
-			(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY) ||
-			(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY)
-		) {
-			if (
-				pCoexSta->nCRCOK_CCK > (
-					pCoexSta->nCRCOK_11g +
-					pCoexSta->nCRCOK_11n +
-					pCoexSta->nCRCOK_11nAgg
-				)
-			) {
+		if ((pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY) ||
+		    (pCoexDm->btStatus ==
+		     BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY) ||
+		    (pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY)) {
+			if (pCoexSta->nCRCOK_CCK >
+			    (pCoexSta->nCRCOK_11g + pCoexSta->nCRCOK_11n +
+			     pCoexSta->nCRCOK_11nAgg)) {
 				if (nCCKLockCounter < 5)
 					nCCKLockCounter++;
 			} else {
@@ -364,7 +348,6 @@ static void halbtc8723b1ant_MonitorWiFiCtr(struct btc_coexist *pBtCoexist)
 	}
 
 	if (!pCoexSta->bPreCCKLock) {
-
 		if (nCCKLockCounter >= 5)
 			pCoexSta->bCCKLock = true;
 		else
@@ -376,23 +359,21 @@ static void halbtc8723b1ant_MonitorWiFiCtr(struct btc_coexist *pBtCoexist)
 			pCoexSta->bCCKLock = true;
 	}
 
-	pCoexSta->bPreCCKLock =  pCoexSta->bCCKLock;
+	pCoexSta->bPreCCKLock = pCoexSta->bCCKLock;
 }
 
 static bool halbtc8723b1ant_IsWifiStatusChanged(struct btc_coexist *pBtCoexist)
 {
-	static bool	bPreWifiBusy, bPreUnder4way, bPreBtHsOn;
+	static bool bPreWifiBusy, bPreUnder4way, bPreBtHsOn;
 	bool bWifiBusy = false, bUnder4way = false, bBtHsOn = false;
 	bool bWifiConnected = false;
 
-	pBtCoexist->fBtcGet(
-		pBtCoexist, BTC_GET_BL_WIFI_CONNECTED, &bWifiConnected
-	);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED,
+			    &bWifiConnected);
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_BUSY, &bWifiBusy);
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_HS_OPERATION, &bBtHsOn);
-	pBtCoexist->fBtcGet(
-		pBtCoexist, BTC_GET_BL_WIFI_4_WAY_PROGRESS, &bUnder4way
-	);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_4_WAY_PROGRESS,
+			    &bUnder4way);
 
 	if (bWifiConnected) {
 		if (bWifiBusy != bPreWifiBusy) {
@@ -434,45 +415,29 @@ static void halbtc8723b1ant_UpdateBtLinkInfo(struct btc_coexist *pBtCoexist)
 	}
 
 	/*  check if Sco only */
-	if (
-		pBtLinkInfo->bScoExist &&
-		!pBtLinkInfo->bA2dpExist &&
-		!pBtLinkInfo->bPanExist &&
-		!pBtLinkInfo->bHidExist
-	)
+	if (pBtLinkInfo->bScoExist && !pBtLinkInfo->bA2dpExist &&
+	    !pBtLinkInfo->bPanExist && !pBtLinkInfo->bHidExist)
 		pBtLinkInfo->bScoOnly = true;
 	else
 		pBtLinkInfo->bScoOnly = false;
 
 	/*  check if A2dp only */
-	if (
-		!pBtLinkInfo->bScoExist &&
-		pBtLinkInfo->bA2dpExist &&
-		!pBtLinkInfo->bPanExist &&
-		!pBtLinkInfo->bHidExist
-	)
+	if (!pBtLinkInfo->bScoExist && pBtLinkInfo->bA2dpExist &&
+	    !pBtLinkInfo->bPanExist && !pBtLinkInfo->bHidExist)
 		pBtLinkInfo->bA2dpOnly = true;
 	else
 		pBtLinkInfo->bA2dpOnly = false;
 
 	/*  check if Pan only */
-	if (
-		!pBtLinkInfo->bScoExist &&
-		!pBtLinkInfo->bA2dpExist &&
-		pBtLinkInfo->bPanExist &&
-		!pBtLinkInfo->bHidExist
-	)
+	if (!pBtLinkInfo->bScoExist && !pBtLinkInfo->bA2dpExist &&
+	    pBtLinkInfo->bPanExist && !pBtLinkInfo->bHidExist)
 		pBtLinkInfo->bPanOnly = true;
 	else
 		pBtLinkInfo->bPanOnly = false;
 
 	/*  check if Hid only */
-	if (
-		!pBtLinkInfo->bScoExist &&
-		!pBtLinkInfo->bA2dpExist &&
-		!pBtLinkInfo->bPanExist &&
-		pBtLinkInfo->bHidExist
-	)
+	if (!pBtLinkInfo->bScoExist && !pBtLinkInfo->bA2dpExist &&
+	    !pBtLinkInfo->bPanExist && pBtLinkInfo->bHidExist)
 		pBtLinkInfo->bHidOnly = true;
 	else
 		pBtLinkInfo->bHidOnly = false;
@@ -509,9 +474,11 @@ static u8 halbtc8723b1ant_ActionAlgorithm(struct btc_coexist *pBtCoexist)
 				algorithm = BT_8723B_1ANT_COEX_ALGO_A2DP;
 			} else if (pBtLinkInfo->bPanExist) {
 				if (bBtHsOn)
-					algorithm = BT_8723B_1ANT_COEX_ALGO_PANHS;
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_PANHS;
 				else
-					algorithm = BT_8723B_1ANT_COEX_ALGO_PANEDR;
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_PANEDR;
 			}
 		}
 	} else if (numOfDiffProfile == 2) {
@@ -524,62 +491,68 @@ static u8 halbtc8723b1ant_ActionAlgorithm(struct btc_coexist *pBtCoexist)
 				if (bBtHsOn)
 					algorithm = BT_8723B_1ANT_COEX_ALGO_SCO;
 				else
-					algorithm = BT_8723B_1ANT_COEX_ALGO_PANEDR_HID;
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_PANEDR_HID;
 			}
 		} else {
 			if (pBtLinkInfo->bHidExist && pBtLinkInfo->bA2dpExist) {
 				algorithm = BT_8723B_1ANT_COEX_ALGO_HID_A2DP;
-			} else if (pBtLinkInfo->bHidExist && pBtLinkInfo->bPanExist) {
+			} else if (pBtLinkInfo->bHidExist &&
+				   pBtLinkInfo->bPanExist) {
 				if (bBtHsOn)
-					algorithm = BT_8723B_1ANT_COEX_ALGO_HID_A2DP;
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_HID_A2DP;
 				else
-					algorithm = BT_8723B_1ANT_COEX_ALGO_PANEDR_HID;
-			} else if (pBtLinkInfo->bPanExist && pBtLinkInfo->bA2dpExist) {
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_PANEDR_HID;
+			} else if (pBtLinkInfo->bPanExist &&
+				   pBtLinkInfo->bA2dpExist) {
 				if (bBtHsOn)
-					algorithm = BT_8723B_1ANT_COEX_ALGO_A2DP_PANHS;
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_A2DP_PANHS;
 				else
-					algorithm = BT_8723B_1ANT_COEX_ALGO_PANEDR_A2DP;
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_PANEDR_A2DP;
 			}
 		}
 	} else if (numOfDiffProfile == 3) {
 		if (pBtLinkInfo->bScoExist) {
 			if (pBtLinkInfo->bHidExist && pBtLinkInfo->bA2dpExist) {
 				algorithm = BT_8723B_1ANT_COEX_ALGO_HID;
-			} else if (
-				pBtLinkInfo->bHidExist && pBtLinkInfo->bPanExist
-			) {
+			} else if (pBtLinkInfo->bHidExist &&
+				   pBtLinkInfo->bPanExist) {
 				if (bBtHsOn)
-					algorithm = BT_8723B_1ANT_COEX_ALGO_HID_A2DP;
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_HID_A2DP;
 				else
-					algorithm = BT_8723B_1ANT_COEX_ALGO_PANEDR_HID;
-			} else if (pBtLinkInfo->bPanExist && pBtLinkInfo->bA2dpExist) {
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_PANEDR_HID;
+			} else if (pBtLinkInfo->bPanExist &&
+				   pBtLinkInfo->bA2dpExist) {
 				if (bBtHsOn)
 					algorithm = BT_8723B_1ANT_COEX_ALGO_SCO;
 				else
-					algorithm = BT_8723B_1ANT_COEX_ALGO_PANEDR_HID;
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_PANEDR_HID;
 			}
 		} else {
-			if (
-				pBtLinkInfo->bHidExist &&
-				pBtLinkInfo->bPanExist &&
-				pBtLinkInfo->bA2dpExist
-			) {
+			if (pBtLinkInfo->bHidExist && pBtLinkInfo->bPanExist &&
+			    pBtLinkInfo->bA2dpExist) {
 				if (bBtHsOn)
-					algorithm = BT_8723B_1ANT_COEX_ALGO_HID_A2DP;
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_HID_A2DP;
 				else
-					algorithm = BT_8723B_1ANT_COEX_ALGO_HID_A2DP_PANEDR;
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_HID_A2DP_PANEDR;
 			}
 		}
 	} else if (numOfDiffProfile >= 3) {
 		if (pBtLinkInfo->bScoExist) {
-			if (
-				pBtLinkInfo->bHidExist &&
-				pBtLinkInfo->bPanExist &&
-				pBtLinkInfo->bA2dpExist
-			) {
+			if (pBtLinkInfo->bHidExist && pBtLinkInfo->bPanExist &&
+			    pBtLinkInfo->bA2dpExist) {
 				if (!bBtHsOn)
-					algorithm = BT_8723B_1ANT_COEX_ALGO_PANEDR_HID;
-
+					algorithm =
+						BT_8723B_1ANT_COEX_ALGO_PANEDR_HID;
 			}
 		}
 	}
@@ -587,28 +560,28 @@ static u8 halbtc8723b1ant_ActionAlgorithm(struct btc_coexist *pBtCoexist)
 	return algorithm;
 }
 
-static void halbtc8723b1ant_SetSwPenaltyTxRateAdaptive(
-	struct btc_coexist *pBtCoexist, bool bLowPenaltyRa
-)
+static void
+halbtc8723b1ant_SetSwPenaltyTxRateAdaptive(struct btc_coexist *pBtCoexist,
+					   bool bLowPenaltyRa)
 {
-	u8 H2C_Parameter[6] = {0};
+	u8 H2C_Parameter[6] = { 0 };
 
-	H2C_Parameter[0] = 0x6;	/*  opCode, 0x6 = Retry_Penalty */
+	H2C_Parameter[0] = 0x6; /*  opCode, 0x6 = Retry_Penalty */
 
 	if (bLowPenaltyRa) {
 		H2C_Parameter[1] |= BIT(0);
-		H2C_Parameter[2] = 0x00;  /* normal rate except MCS7/6/5, OFDM54/48/36 */
-		H2C_Parameter[3] = 0xf7;  /* MCS7 or OFDM54 */
-		H2C_Parameter[4] = 0xf8;  /* MCS6 or OFDM48 */
-		H2C_Parameter[5] = 0xf9;	/* MCS5 or OFDM36 */
+		H2C_Parameter[2] =
+			0x00; /* normal rate except MCS7/6/5, OFDM54/48/36 */
+		H2C_Parameter[3] = 0xf7; /* MCS7 or OFDM54 */
+		H2C_Parameter[4] = 0xf8; /* MCS6 or OFDM48 */
+		H2C_Parameter[5] = 0xf9; /* MCS5 or OFDM36 */
 	}
 
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x69, 6, H2C_Parameter);
 }
 
-static void halbtc8723b1ant_LowPenaltyRa(
-	struct btc_coexist *pBtCoexist, bool bForceExec, bool bLowPenaltyRa
-)
+static void halbtc8723b1ant_LowPenaltyRa(struct btc_coexist *pBtCoexist,
+					 bool bForceExec, bool bLowPenaltyRa)
 {
 	pCoexDm->bCurLowPenaltyRa = bLowPenaltyRa;
 
@@ -616,20 +589,15 @@ static void halbtc8723b1ant_LowPenaltyRa(
 		if (pCoexDm->bPreLowPenaltyRa == pCoexDm->bCurLowPenaltyRa)
 			return;
 	}
-	halbtc8723b1ant_SetSwPenaltyTxRateAdaptive(
-		pBtCoexist, pCoexDm->bCurLowPenaltyRa
-	);
+	halbtc8723b1ant_SetSwPenaltyTxRateAdaptive(pBtCoexist,
+						   pCoexDm->bCurLowPenaltyRa);
 
 	pCoexDm->bPreLowPenaltyRa = pCoexDm->bCurLowPenaltyRa;
 }
 
-static void halbtc8723b1ant_SetCoexTable(
-	struct btc_coexist *pBtCoexist,
-	u32 val0x6c0,
-	u32 val0x6c4,
-	u32 val0x6c8,
-	u8 val0x6cc
-)
+static void halbtc8723b1ant_SetCoexTable(struct btc_coexist *pBtCoexist,
+					 u32 val0x6c0, u32 val0x6c4,
+					 u32 val0x6c8, u8 val0x6cc)
 {
 	pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x6c0, val0x6c0);
 
@@ -640,14 +608,9 @@ static void halbtc8723b1ant_SetCoexTable(
 	pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x6cc, val0x6cc);
 }
 
-static void halbtc8723b1ant_CoexTable(
-	struct btc_coexist *pBtCoexist,
-	bool bForceExec,
-	u32 val0x6c0,
-	u32 val0x6c4,
-	u32 val0x6c8,
-	u8 val0x6cc
-)
+static void halbtc8723b1ant_CoexTable(struct btc_coexist *pBtCoexist,
+				      bool bForceExec, u32 val0x6c0,
+				      u32 val0x6c4, u32 val0x6c8, u8 val0x6cc)
 {
 	pCoexDm->curVal0x6c0 = val0x6c0;
 	pCoexDm->curVal0x6c4 = val0x6c4;
@@ -655,18 +618,15 @@ static void halbtc8723b1ant_CoexTable(
 	pCoexDm->curVal0x6cc = val0x6cc;
 
 	if (!bForceExec) {
-		if (
-			(pCoexDm->preVal0x6c0 == pCoexDm->curVal0x6c0) &&
+		if ((pCoexDm->preVal0x6c0 == pCoexDm->curVal0x6c0) &&
 		    (pCoexDm->preVal0x6c4 == pCoexDm->curVal0x6c4) &&
 		    (pCoexDm->preVal0x6c8 == pCoexDm->curVal0x6c8) &&
-		    (pCoexDm->preVal0x6cc == pCoexDm->curVal0x6cc)
-		)
+		    (pCoexDm->preVal0x6cc == pCoexDm->curVal0x6cc))
 			return;
 	}
 
-	halbtc8723b1ant_SetCoexTable(
-		pBtCoexist, val0x6c0, val0x6c4, val0x6c8, val0x6cc
-	);
+	halbtc8723b1ant_SetCoexTable(pBtCoexist, val0x6c0, val0x6c4, val0x6c8,
+				     val0x6cc);
 
 	pCoexDm->preVal0x6c0 = pCoexDm->curVal0x6c0;
 	pCoexDm->preVal0x6c4 = pCoexDm->curVal0x6c4;
@@ -674,33 +634,28 @@ static void halbtc8723b1ant_CoexTable(
 	pCoexDm->preVal0x6cc = pCoexDm->curVal0x6cc;
 }
 
-static void halbtc8723b1ant_CoexTableWithType(
-	struct btc_coexist *pBtCoexist, bool bForceExec, u8 type
-)
+static void halbtc8723b1ant_CoexTableWithType(struct btc_coexist *pBtCoexist,
+					      bool bForceExec, u8 type)
 {
 	static const u32 table[8][2] = {
-		{0x55555555, 0x55555555},
-		{0x55555555, 0x5a5a5a5a},
-		{0x5a5a5a5a, 0x5a5a5a5a},
-		{0xaaaa5555, 0xaaaa5a5a},
-		{0x55555555, 0xaaaa5a5a},
-		{0x5a5a5a5a, 0xaaaa5a5a},
-		{0x55555555, 0xaaaaaaaa},
-		{0xaaaaaaaa, 0xaaaaaaaa}
+		{ 0x55555555, 0x55555555 }, { 0x55555555, 0x5a5a5a5a },
+		{ 0x5a5a5a5a, 0x5a5a5a5a }, { 0xaaaa5555, 0xaaaa5a5a },
+		{ 0x55555555, 0xaaaa5a5a }, { 0x5a5a5a5a, 0xaaaa5a5a },
+		{ 0x55555555, 0xaaaaaaaa }, { 0xaaaaaaaa, 0xaaaaaaaa }
 	};
 
 	pCoexSta->nCoexTableType = type;
 
 	if (type < 8)
-		halbtc8723b1ant_CoexTable(pBtCoexist, bForceExec, table[type][0],
-					  table[type][1], 0xffffff, 0x3);
+		halbtc8723b1ant_CoexTable(pBtCoexist, bForceExec,
+					  table[type][0], table[type][1],
+					  0xffffff, 0x3);
 }
 
-static void halbtc8723b1ant_SetFwIgnoreWlanAct(
-	struct btc_coexist *pBtCoexist, bool bEnable
-)
+static void halbtc8723b1ant_SetFwIgnoreWlanAct(struct btc_coexist *pBtCoexist,
+					       bool bEnable)
 {
-	u8 H2C_Parameter[1] = {0};
+	u8 H2C_Parameter[1] = { 0 };
 
 	if (bEnable)
 		H2C_Parameter[0] |= BIT(0); /* function enable */
@@ -708,9 +663,8 @@ static void halbtc8723b1ant_SetFwIgnoreWlanAct(
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x63, 1, H2C_Parameter);
 }
 
-static void halbtc8723b1ant_IgnoreWlanAct(
-	struct btc_coexist *pBtCoexist, bool bForceExec, bool bEnable
-)
+static void halbtc8723b1ant_IgnoreWlanAct(struct btc_coexist *pBtCoexist,
+					  bool bForceExec, bool bEnable)
 {
 	pCoexDm->bCurIgnoreWlanAct = bEnable;
 
@@ -723,9 +677,8 @@ static void halbtc8723b1ant_IgnoreWlanAct(
 	pCoexDm->bPreIgnoreWlanAct = pCoexDm->bCurIgnoreWlanAct;
 }
 
-static void halbtc8723b1ant_SetLpsRpwm(
-	struct btc_coexist *pBtCoexist, u8 lpsVal, u8 rpwmVal
-)
+static void halbtc8723b1ant_SetLpsRpwm(struct btc_coexist *pBtCoexist,
+				       u8 lpsVal, u8 rpwmVal)
 {
 	u8 lps = lpsVal;
 	u8 rpwm = rpwmVal;
@@ -734,18 +687,15 @@ static void halbtc8723b1ant_SetLpsRpwm(
 	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_U1_RPWM_VAL, &rpwm);
 }
 
-static void halbtc8723b1ant_LpsRpwm(
-	struct btc_coexist *pBtCoexist, bool bForceExec, u8 lpsVal, u8 rpwmVal
-)
+static void halbtc8723b1ant_LpsRpwm(struct btc_coexist *pBtCoexist,
+				    bool bForceExec, u8 lpsVal, u8 rpwmVal)
 {
 	pCoexDm->curLps = lpsVal;
 	pCoexDm->curRpwm = rpwmVal;
 
 	if (!bForceExec) {
-		if (
-			(pCoexDm->preLps == pCoexDm->curLps) &&
-			(pCoexDm->preRpwm == pCoexDm->curRpwm)
-		) {
+		if ((pCoexDm->preLps == pCoexDm->curLps) &&
+		    (pCoexDm->preRpwm == pCoexDm->curRpwm)) {
 			return;
 		}
 	}
@@ -755,38 +705,41 @@ static void halbtc8723b1ant_LpsRpwm(
 	pCoexDm->preRpwm = pCoexDm->curRpwm;
 }
 
-static void halbtc8723b1ant_SwMechanism(
-	struct btc_coexist *pBtCoexist, bool bLowPenaltyRA
-)
+static void halbtc8723b1ant_SwMechanism(struct btc_coexist *pBtCoexist,
+					bool bLowPenaltyRA)
 {
 	halbtc8723b1ant_LowPenaltyRa(pBtCoexist, NORMAL_EXEC, bLowPenaltyRA);
 }
 
-static void halbtc8723b1ant_SetAntPath(
-	struct btc_coexist *pBtCoexist, u8 antPosType, bool bInitHwCfg, bool bWifiOff
-)
+static void halbtc8723b1ant_SetAntPath(struct btc_coexist *pBtCoexist,
+				       u8 antPosType, bool bInitHwCfg,
+				       bool bWifiOff)
 {
 	struct btc_board_info *pBoardInfo = &pBtCoexist->boardInfo;
 	u32 fwVer = 0, u4Tmp = 0, cntBtCalChk = 0;
 	bool bPgExtSwitch = false;
 	bool bUseExtSwitch = false;
 	bool bIsInMpMode = false;
-	u8 H2C_Parameter[2] = {0}, u1Tmp = 0;
+	u8 H2C_Parameter[2] = { 0 }, u1Tmp = 0;
 
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_EXT_SWITCH, &bPgExtSwitch);
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_FW_VER, &fwVer); /*  [31:16]=fw ver, [15:0]=fw sub ver */
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_FW_VER,
+			    &fwVer); /*  [31:16]=fw ver, [15:0]=fw sub ver */
 
 	if ((fwVer > 0 && fwVer < 0xc0000) || bPgExtSwitch)
 		bUseExtSwitch = true;
 
 	if (bInitHwCfg) {
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff, 0x780); /* WiFi TRx Mask on */
-		pBtCoexist->fBtcSetBtReg(pBtCoexist, BTC_BT_REG_RF, 0x3c, 0x15); /* BT TRx Mask on */
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff,
+					 0x780); /* WiFi TRx Mask on */
+		pBtCoexist->fBtcSetBtReg(pBtCoexist, BTC_BT_REG_RF, 0x3c,
+					 0x15); /* BT TRx Mask on */
 
 		if (fwVer >= 0x180000) {
 			/* Use H2C to set GNT_BT to HIGH */
 			H2C_Parameter[0] = 1;
-			pBtCoexist->fBtcFillH2c(pBtCoexist, 0x6E, 1, H2C_Parameter);
+			pBtCoexist->fBtcFillH2c(pBtCoexist, 0x6E, 1,
+						H2C_Parameter);
 		} else { /*  set grant_bt to high */
 			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x765, 0x18);
 		}
@@ -794,7 +747,9 @@ static void halbtc8723b1ant_SetAntPath(
 		/* set wlan_act control by PTA */
 		pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x76e, 0x4);
 
-		pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x67, 0x20, 0x1); /* BT select s0/s1 is controlled by WiFi */
+		pBtCoexist->fBtcWrite1ByteBitMask(
+			pBtCoexist, 0x67, 0x20,
+			0x1); /* BT select s0/s1 is controlled by WiFi */
 
 		pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x39, 0x8, 0x1);
 		pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x974, 0xff);
@@ -804,7 +759,8 @@ static void halbtc8723b1ant_SetAntPath(
 		if (fwVer >= 0x180000) {
 			/* Use H2C to set GNT_BT to HIGH */
 			H2C_Parameter[0] = 1;
-			pBtCoexist->fBtcFillH2c(pBtCoexist, 0x6E, 1, H2C_Parameter);
+			pBtCoexist->fBtcFillH2c(pBtCoexist, 0x6E, 1,
+						H2C_Parameter);
 		} else { /*  set grant_bt to high */
 			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x765, 0x18);
 		}
@@ -812,11 +768,16 @@ static void halbtc8723b1ant_SetAntPath(
 		/* set wlan_act to always low */
 		pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x76e, 0x4);
 
-		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_IS_IN_MP_MODE, &bIsInMpMode);
+		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_IS_IN_MP_MODE,
+				    &bIsInMpMode);
 		if (!bIsInMpMode)
-			pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x67, 0x20, 0x0); /* BT select s0/s1 is controlled by BT */
+			pBtCoexist->fBtcWrite1ByteBitMask(
+				pBtCoexist, 0x67, 0x20,
+				0x0); /* BT select s0/s1 is controlled by BT */
 		else
-			pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x67, 0x20, 0x1); /* BT select s0/s1 is controlled by WiFi */
+			pBtCoexist->fBtcWrite1ByteBitMask(
+				pBtCoexist, 0x67, 0x20,
+				0x1); /* BT select s0/s1 is controlled by WiFi */
 
 		/*  0x4c[24:23]= 00, Set Antenna control by BT_RFE_CTRL	BT Vendor 0xac = 0xf002 */
 		u4Tmp = pBtCoexist->fBtcRead4Byte(pBtCoexist, 0x4c);
@@ -828,12 +789,14 @@ static void halbtc8723b1ant_SetAntPath(
 		if (fwVer >= 0x180000) {
 			if (pBtCoexist->fBtcRead1Byte(pBtCoexist, 0x765) != 0) {
 				H2C_Parameter[0] = 0;
-				pBtCoexist->fBtcFillH2c(pBtCoexist, 0x6E, 1, H2C_Parameter);
+				pBtCoexist->fBtcFillH2c(pBtCoexist, 0x6E, 1,
+							H2C_Parameter);
 			}
 		} else {
 			/*  BT calibration check */
 			while (cntBtCalChk <= 20) {
-				u1Tmp = pBtCoexist->fBtcRead1Byte(pBtCoexist, 0x49d);
+				u1Tmp = pBtCoexist->fBtcRead1Byte(pBtCoexist,
+								  0x49d);
 				cntBtCalChk++;
 
 				if (u1Tmp & BIT(0))
@@ -859,18 +822,23 @@ static void halbtc8723b1ant_SetAntPath(
 			u4Tmp |= BIT(24);
 			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x4c, u4Tmp);
 
-			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x0); /*  fixed internal switch S1->WiFi, S0->BT */
+			pBtCoexist->fBtcWrite4Byte(
+				pBtCoexist, 0x948,
+				0x0); /*  fixed internal switch S1->WiFi, S0->BT */
 
-			if (pBoardInfo->btdmAntPos == BTC_ANTENNA_AT_MAIN_PORT) {
+			if (pBoardInfo->btdmAntPos ==
+			    BTC_ANTENNA_AT_MAIN_PORT) {
 				/* tell firmware "no antenna inverse" */
 				H2C_Parameter[0] = 0;
-				H2C_Parameter[1] = 1;  /* ext switch type */
-				pBtCoexist->fBtcFillH2c(pBtCoexist, 0x65, 2, H2C_Parameter);
+				H2C_Parameter[1] = 1; /* ext switch type */
+				pBtCoexist->fBtcFillH2c(pBtCoexist, 0x65, 2,
+							H2C_Parameter);
 			} else {
 				/* tell firmware "antenna inverse" */
 				H2C_Parameter[0] = 1;
-				H2C_Parameter[1] = 1;  /* ext switch type */
-				pBtCoexist->fBtcFillH2c(pBtCoexist, 0x65, 2, H2C_Parameter);
+				H2C_Parameter[1] = 1; /* ext switch type */
+				pBtCoexist->fBtcFillH2c(pBtCoexist, 0x65, 2,
+							H2C_Parameter);
 			}
 		}
 
@@ -878,22 +846,28 @@ static void halbtc8723b1ant_SetAntPath(
 		switch (antPosType) {
 		case BTC_ANT_PATH_WIFI:
 			if (pBoardInfo->btdmAntPos == BTC_ANTENNA_AT_MAIN_PORT)
-				pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x92c, 0x3, 0x1);
+				pBtCoexist->fBtcWrite1ByteBitMask(
+					pBtCoexist, 0x92c, 0x3, 0x1);
 			else
-				pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x92c, 0x3, 0x2);
+				pBtCoexist->fBtcWrite1ByteBitMask(
+					pBtCoexist, 0x92c, 0x3, 0x2);
 			break;
 		case BTC_ANT_PATH_BT:
 			if (pBoardInfo->btdmAntPos == BTC_ANTENNA_AT_MAIN_PORT)
-				pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x92c, 0x3, 0x2);
+				pBtCoexist->fBtcWrite1ByteBitMask(
+					pBtCoexist, 0x92c, 0x3, 0x2);
 			else
-				pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x92c, 0x3, 0x1);
+				pBtCoexist->fBtcWrite1ByteBitMask(
+					pBtCoexist, 0x92c, 0x3, 0x1);
 			break;
 		default:
 		case BTC_ANT_PATH_PTA:
 			if (pBoardInfo->btdmAntPos == BTC_ANTENNA_AT_MAIN_PORT)
-				pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x92c, 0x3, 0x1);
+				pBtCoexist->fBtcWrite1ByteBitMask(
+					pBtCoexist, 0x92c, 0x3, 0x1);
 			else
-				pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x92c, 0x3, 0x2);
+				pBtCoexist->fBtcWrite1ByteBitMask(
+					pBtCoexist, 0x92c, 0x3, 0x2);
 			break;
 		}
 
@@ -906,20 +880,22 @@ static void halbtc8723b1ant_SetAntPath(
 			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x4c, u4Tmp);
 
 			/* Fix Ext switch Main->S1, Aux->S0 */
-			pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x64, 0x1, 0x0);
-
-			if (pBoardInfo->btdmAntPos == BTC_ANTENNA_AT_MAIN_PORT) {
+			pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x64, 0x1,
+							  0x0);
 
+			if (pBoardInfo->btdmAntPos ==
+			    BTC_ANTENNA_AT_MAIN_PORT) {
 				/* tell firmware "no antenna inverse" */
 				H2C_Parameter[0] = 0;
-				H2C_Parameter[1] = 0;  /* internal switch type */
-				pBtCoexist->fBtcFillH2c(pBtCoexist, 0x65, 2, H2C_Parameter);
+				H2C_Parameter[1] = 0; /* internal switch type */
+				pBtCoexist->fBtcFillH2c(pBtCoexist, 0x65, 2,
+							H2C_Parameter);
 			} else {
-
 				/* tell firmware "antenna inverse" */
 				H2C_Parameter[0] = 1;
-				H2C_Parameter[1] = 0;  /* internal switch type */
-				pBtCoexist->fBtcFillH2c(pBtCoexist, 0x65, 2, H2C_Parameter);
+				H2C_Parameter[1] = 0; /* internal switch type */
+				pBtCoexist->fBtcFillH2c(pBtCoexist, 0x65, 2,
+							H2C_Parameter);
 			}
 		}
 
@@ -927,36 +903,43 @@ static void halbtc8723b1ant_SetAntPath(
 		switch (antPosType) {
 		case BTC_ANT_PATH_WIFI:
 			if (pBoardInfo->btdmAntPos == BTC_ANTENNA_AT_MAIN_PORT)
-				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x0);
+				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948,
+							   0x0);
 			else
-				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x280);
+				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948,
+							   0x280);
 			break;
 		case BTC_ANT_PATH_BT:
 			if (pBoardInfo->btdmAntPos == BTC_ANTENNA_AT_MAIN_PORT)
-				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x280);
+				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948,
+							   0x280);
 			else
-				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x0);
+				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948,
+							   0x0);
 			break;
 		default:
 		case BTC_ANT_PATH_PTA:
 			if (pBoardInfo->btdmAntPos == BTC_ANTENNA_AT_MAIN_PORT)
-				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x200);
+				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948,
+							   0x200);
 			else
-				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x80);
+				pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948,
+							   0x80);
 			break;
 		}
 	}
 }
 
-static void halbtc8723b1ant_SetFwPstdma(
-	struct btc_coexist *pBtCoexist, u8 byte1, u8 byte2, u8 byte3, u8 byte4, u8 byte5
-)
+static void halbtc8723b1ant_SetFwPstdma(struct btc_coexist *pBtCoexist,
+					u8 byte1, u8 byte2, u8 byte3, u8 byte4,
+					u8 byte5)
 {
-	u8 H2C_Parameter[5] = {0};
+	u8 H2C_Parameter[5] = { 0 };
 	u8 realByte1 = byte1, realByte5 = byte5;
 	bool bApEnable = false;
 
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_AP_MODE_ENABLE, &bApEnable);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_AP_MODE_ENABLE,
+			    &bApEnable);
 
 	if (bApEnable) {
 		if (byte1 & BIT(4) && !(byte1 & BIT(5))) {
@@ -983,14 +966,13 @@ static void halbtc8723b1ant_SetFwPstdma(
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x60, 5, H2C_Parameter);
 }
 
-static void halbtc8723b1ant_PsTdma(
-	struct btc_coexist *pBtCoexist, bool bForceExec, bool bTurnOn, u8 type
-)
+static void halbtc8723b1ant_PsTdma(struct btc_coexist *pBtCoexist,
+				   bool bForceExec, bool bTurnOn, u8 type)
 {
 	struct btc_bt_link_info *pBtLinkInfo = &pBtCoexist->btLinkInfo;
 	bool bWifiBusy = false;
 	u8 rssiAdjustVal = 0;
-	u8 psTdmaByte4Val = 0x50, psTdmaByte0Val = 0x51, psTdmaByte3Val =  0x10;
+	u8 psTdmaByte4Val = 0x50, psTdmaByte0Val = 0x51, psTdmaByte3Val = 0x10;
 	s8 nWiFiDurationAdjust = 0x0;
 	/* u32 fwVer = 0; */
 
@@ -1000,260 +982,214 @@ static void halbtc8723b1ant_PsTdma(
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_BUSY, &bWifiBusy);
 
 	if (!bForceExec) {
-		if (
-			(pCoexDm->bPrePsTdmaOn == pCoexDm->bCurPsTdmaOn) &&
-			(pCoexDm->prePsTdma == pCoexDm->curPsTdma)
-		)
+		if ((pCoexDm->bPrePsTdmaOn == pCoexDm->bCurPsTdmaOn) &&
+		    (pCoexDm->prePsTdma == pCoexDm->curPsTdma))
 			return;
 	}
 
 	if (pCoexSta->nScanAPNum <= 5)
 		nWiFiDurationAdjust = 5;
-	else if  (pCoexSta->nScanAPNum >= 40)
+	else if (pCoexSta->nScanAPNum >= 40)
 		nWiFiDurationAdjust = -15;
-	else if  (pCoexSta->nScanAPNum >= 20)
+	else if (pCoexSta->nScanAPNum >= 20)
 		nWiFiDurationAdjust = -10;
 
 	if (!pCoexSta->bForceLpsOn) { /* only for A2DP-only case 1/2/9/11 */
-		psTdmaByte0Val = 0x61;  /* no null-pkt */
+		psTdmaByte0Val = 0x61; /* no null-pkt */
 		psTdmaByte3Val = 0x11; /*  no tx-pause at BT-slot */
 		psTdmaByte4Val = 0x10; /*  0x778 = d/1 toggle */
 	}
 
 	if (bTurnOn) {
 		if (pBtLinkInfo->bSlaveRole)
-			psTdmaByte4Val = psTdmaByte4Val | 0x1;  /* 0x778 = 0x1 at wifi slot (no blocking BT Low-Pri pkts) */
+			psTdmaByte4Val =
+				psTdmaByte4Val |
+				0x1; /* 0x778 = 0x1 at wifi slot (no blocking BT Low-Pri pkts) */
 
 		switch (type) {
 		default:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x51, 0x1a, 0x1a, 0x0, psTdmaByte4Val
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x51, 0x1a,
+						    0x1a, 0x0, psTdmaByte4Val);
 			break;
 		case 1:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist,
-				psTdmaByte0Val,
-				0x3a + nWiFiDurationAdjust,
-				0x03,
-				psTdmaByte3Val,
-				psTdmaByte4Val
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, psTdmaByte0Val,
+						    0x3a + nWiFiDurationAdjust,
+						    0x03, psTdmaByte3Val,
+						    psTdmaByte4Val);
 			break;
 		case 2:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist,
-				psTdmaByte0Val,
-				0x2d + nWiFiDurationAdjust,
-				0x03,
-				psTdmaByte3Val,
-				psTdmaByte4Val
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, psTdmaByte0Val,
+						    0x2d + nWiFiDurationAdjust,
+						    0x03, psTdmaByte3Val,
+						    psTdmaByte4Val);
 			break;
 		case 3:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x51, 0x1d, 0x1d, 0x0, 0x10
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x51, 0x1d,
+						    0x1d, 0x0, 0x10);
 			break;
 		case 4:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x93, 0x15, 0x3, 0x14, 0x0
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x93, 0x15, 0x3,
+						    0x14, 0x0);
 			break;
 		case 5:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x61, 0x15, 0x3, 0x11, 0x10
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x61, 0x15, 0x3,
+						    0x11, 0x10);
 			break;
 		case 6:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x61, 0x20, 0x3, 0x11, 0x11
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x61, 0x20, 0x3,
+						    0x11, 0x11);
 			break;
 		case 7:
-			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x13, 0xc, 0x5, 0x0, 0x0);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x13, 0xc, 0x5,
+						    0x0, 0x0);
 			break;
 		case 8:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x93, 0x25, 0x3, 0x10, 0x0
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x93, 0x25, 0x3,
+						    0x10, 0x0);
 			break;
 		case 9:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist,
-				psTdmaByte0Val,
-				0x21,
-				0x3,
-				psTdmaByte3Val,
-				psTdmaByte4Val
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, psTdmaByte0Val,
+						    0x21, 0x3, psTdmaByte3Val,
+						    psTdmaByte4Val);
 			break;
 		case 10:
-			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x13, 0xa, 0xa, 0x0, 0x40);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x13, 0xa, 0xa,
+						    0x0, 0x40);
 			break;
 		case 11:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist,
-				psTdmaByte0Val,
-				0x21,
-				0x03,
-				psTdmaByte3Val,
-				psTdmaByte4Val
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, psTdmaByte0Val,
+						    0x21, 0x03, psTdmaByte3Val,
+						    psTdmaByte4Val);
 			break;
 		case 12:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x51, 0x0a, 0x0a, 0x0, 0x50
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x51, 0x0a,
+						    0x0a, 0x0, 0x50);
 			break;
 		case 13:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x51, 0x12, 0x12, 0x0, 0x10
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x51, 0x12,
+						    0x12, 0x0, 0x10);
 			break;
 		case 14:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x51, 0x21, 0x3, 0x10, psTdmaByte4Val
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x51, 0x21, 0x3,
+						    0x10, psTdmaByte4Val);
 			break;
 		case 15:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x13, 0xa, 0x3, 0x8, 0x0
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x13, 0xa, 0x3,
+						    0x8, 0x0);
 			break;
 		case 16:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x93, 0x15, 0x3, 0x10, 0x0
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x93, 0x15, 0x3,
+						    0x10, 0x0);
 			break;
 		case 18:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x93, 0x25, 0x3, 0x10, 0x0
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x93, 0x25, 0x3,
+						    0x10, 0x0);
 			break;
 		case 20:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x61, 0x3f, 0x03, 0x11, 0x10
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x61, 0x3f,
+						    0x03, 0x11, 0x10
 
 			);
 			break;
 		case 21:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x61, 0x25, 0x03, 0x11, 0x11
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x61, 0x25,
+						    0x03, 0x11, 0x11);
 			break;
 		case 22:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x61, 0x25, 0x03, 0x11, 0x10
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x61, 0x25,
+						    0x03, 0x11, 0x10);
 			break;
 		case 23:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0xe3, 0x25, 0x3, 0x31, 0x18
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0xe3, 0x25, 0x3,
+						    0x31, 0x18);
 			break;
 		case 24:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0xe3, 0x15, 0x3, 0x31, 0x18
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0xe3, 0x15, 0x3,
+						    0x31, 0x18);
 			break;
 		case 25:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0xe3, 0xa, 0x3, 0x31, 0x18
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0xe3, 0xa, 0x3,
+						    0x31, 0x18);
 			break;
 		case 26:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0xe3, 0xa, 0x3, 0x31, 0x18
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0xe3, 0xa, 0x3,
+						    0x31, 0x18);
 			break;
 		case 27:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0xe3, 0x25, 0x3, 0x31, 0x98
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0xe3, 0x25, 0x3,
+						    0x31, 0x98);
 			break;
 		case 28:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x69, 0x25, 0x3, 0x31, 0x0
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x69, 0x25, 0x3,
+						    0x31, 0x0);
 			break;
 		case 29:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0xab, 0x1a, 0x1a, 0x1, 0x10
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0xab, 0x1a,
+						    0x1a, 0x1, 0x10);
 			break;
 		case 30:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x51, 0x30, 0x3, 0x10, 0x10
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x51, 0x30, 0x3,
+						    0x10, 0x10);
 			break;
 		case 31:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0xd3, 0x1a, 0x1a, 0x0, 0x58
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0xd3, 0x1a,
+						    0x1a, 0x0, 0x58);
 			break;
 		case 32:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x61, 0x35, 0x3, 0x11, 0x11
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x61, 0x35, 0x3,
+						    0x11, 0x11);
 			break;
 		case 33:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0xa3, 0x25, 0x3, 0x30, 0x90
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0xa3, 0x25, 0x3,
+						    0x30, 0x90);
 			break;
 		case 34:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x53, 0x1a, 0x1a, 0x0, 0x10
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x53, 0x1a,
+						    0x1a, 0x0, 0x10);
 			break;
 		case 35:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x63, 0x1a, 0x1a, 0x0, 0x10
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x63, 0x1a,
+						    0x1a, 0x0, 0x10);
 			break;
 		case 36:
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0xd3, 0x12, 0x3, 0x14, 0x50
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0xd3, 0x12, 0x3,
+						    0x14, 0x50);
 			break;
 		case 40: /*  SoftAP only with no sta associated, BT disable , TDMA mode for power saving */
 			/* here softap mode screen off will cost 70-80mA for phone */
-			halbtc8723b1ant_SetFwPstdma(
-				pBtCoexist, 0x23, 0x18, 0x00, 0x10, 0x24
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x23, 0x18,
+						    0x00, 0x10, 0x24);
 			break;
 		}
 	} else {
-
 		/*  disable PS tdma */
 		switch (type) {
 		case 8: /* PTA Control */
-			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x8, 0x0, 0x0, 0x0, 0x0);
-			halbtc8723b1ant_SetAntPath(
-				pBtCoexist, BTC_ANT_PATH_PTA, false, false
-			);
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x8, 0x0, 0x0,
+						    0x0, 0x0);
+			halbtc8723b1ant_SetAntPath(pBtCoexist, BTC_ANT_PATH_PTA,
+						   false, false);
 			break;
 		case 0:
-		default:  /* Software control, Antenna at BT side */
-			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x0, 0x0, 0x0, 0x0, 0x0);
-			halbtc8723b1ant_SetAntPath(
-				pBtCoexist, BTC_ANT_PATH_BT, false, false
-			);
+		default: /* Software control, Antenna at BT side */
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x0, 0x0, 0x0,
+						    0x0, 0x0);
+			halbtc8723b1ant_SetAntPath(pBtCoexist, BTC_ANT_PATH_BT,
+						   false, false);
 			break;
-		case 9:   /* Software control, Antenna at WiFi side */
-			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x0, 0x0, 0x0, 0x0, 0x0);
+		case 9: /* Software control, Antenna at WiFi side */
+			halbtc8723b1ant_SetFwPstdma(pBtCoexist, 0x0, 0x0, 0x0,
+						    0x0, 0x0);
 			halbtc8723b1ant_SetAntPath(
-				pBtCoexist, BTC_ANT_PATH_WIFI, false, false
-			);
+				pBtCoexist, BTC_ANT_PATH_WIFI, false, false);
 			break;
 		}
 	}
 
 	rssiAdjustVal = 0;
-	pBtCoexist->fBtcSet(
-		pBtCoexist, BTC_SET_U1_RSSI_ADJ_VAL_FOR_1ANT_COEX_TYPE, &rssiAdjustVal
-	);
+	pBtCoexist->fBtcSet(pBtCoexist,
+			    BTC_SET_U1_RSSI_ADJ_VAL_FOR_1ANT_COEX_TYPE,
+			    &rssiAdjustVal);
 
 	/*  update pre state */
 	pCoexDm->bPrePsTdmaOn = pCoexDm->bCurPsTdmaOn;
@@ -1264,41 +1200,35 @@ static bool halbtc8723b1ant_IsCommonAction(struct btc_coexist *pBtCoexist)
 {
 	bool bCommon = false, bWifiConnected = false, bWifiBusy = false;
 
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED, &bWifiConnected);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED,
+			    &bWifiConnected);
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_BUSY, &bWifiBusy);
 
-	if (
-		!bWifiConnected &&
-		pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_NON_CONNECTED_IDLE
-	) {
+	if (!bWifiConnected &&
+	    pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_NON_CONNECTED_IDLE) {
 		/* halbtc8723b1ant_SwMechanism(pBtCoexist, false); */
 
 		bCommon = true;
-	} else if (
-		bWifiConnected &&
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_NON_CONNECTED_IDLE)
-	) {
+	} else if (bWifiConnected &&
+		   (pCoexDm->btStatus ==
+		    BT_8723B_1ANT_BT_STATUS_NON_CONNECTED_IDLE)) {
 		/* halbtc8723b1ant_SwMechanism(pBtCoexist, false); */
 
 		bCommon = true;
-	} else if (
-		!bWifiConnected &&
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_CONNECTED_IDLE)
-	) {
+	} else if (!bWifiConnected &&
+		   (pCoexDm->btStatus ==
+		    BT_8723B_1ANT_BT_STATUS_CONNECTED_IDLE)) {
 		/* halbtc8723b1ant_SwMechanism(pBtCoexist, false); */
 
 		bCommon = true;
-	} else if (
-		bWifiConnected &&
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_CONNECTED_IDLE)
-	) {
+	} else if (bWifiConnected && (pCoexDm->btStatus ==
+				      BT_8723B_1ANT_BT_STATUS_CONNECTED_IDLE)) {
 		/* halbtc8723b1ant_SwMechanism(pBtCoexist, false); */
 
 		bCommon = true;
-	} else if (
-		!bWifiConnected &&
-		(pCoexDm->btStatus != BT_8723B_1ANT_BT_STATUS_CONNECTED_IDLE)
-	) {
+	} else if (!bWifiConnected &&
+		   (pCoexDm->btStatus !=
+		    BT_8723B_1ANT_BT_STATUS_CONNECTED_IDLE)) {
 		/* halbtc8723b1ant_SwMechanism(pBtCoexist, false); */
 
 		bCommon = true;
@@ -1309,26 +1239,22 @@ static bool halbtc8723b1ant_IsCommonAction(struct btc_coexist *pBtCoexist)
 	return bCommon;
 }
 
-static void halbtc8723b1ant_TdmaDurationAdjustForAcl(
-	struct btc_coexist *pBtCoexist, u8 wifiStatus
-)
+static void
+halbtc8723b1ant_TdmaDurationAdjustForAcl(struct btc_coexist *pBtCoexist,
+					 u8 wifiStatus)
 {
 	static s32 up, dn, m, n, WaitCount;
-	s32 result;   /* 0: no change, +1: increase WiFi duration, -1: decrease WiFi duration */
+	s32 result; /* 0: no change, +1: increase WiFi duration, -1: decrease WiFi duration */
 	u8 retryCount = 0, btInfoExt;
 
-	if (
-		(wifiStatus == BT_8723B_1ANT_WIFI_STATUS_NON_CONNECTED_ASSO_AUTH_SCAN) ||
-		(wifiStatus == BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SCAN) ||
-		(wifiStatus == BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SPECIAL_PKT)
-	) {
-		if (
-			pCoexDm->curPsTdma != 1 &&
-			pCoexDm->curPsTdma != 2 &&
-			pCoexDm->curPsTdma != 3 &&
-			pCoexDm->curPsTdma != 9
-		) {
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 9);
+	if ((wifiStatus ==
+	     BT_8723B_1ANT_WIFI_STATUS_NON_CONNECTED_ASSO_AUTH_SCAN) ||
+	    (wifiStatus == BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SCAN) ||
+	    (wifiStatus == BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SPECIAL_PKT)) {
+		if (pCoexDm->curPsTdma != 1 && pCoexDm->curPsTdma != 2 &&
+		    pCoexDm->curPsTdma != 3 && pCoexDm->curPsTdma != 9) {
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true,
+					       9);
 			pCoexDm->psTdmaDuAdjType = 9;
 
 			up = 0;
@@ -1358,40 +1284,46 @@ static void halbtc8723b1ant_TdmaDurationAdjustForAcl(
 		retryCount = pCoexSta->btRetryCnt;
 		btInfoExt = pCoexSta->btInfoExt;
 
-		if (pCoexSta->lowPriorityTx > 1050 || pCoexSta->lowPriorityRx > 1250)
+		if (pCoexSta->lowPriorityTx > 1050 ||
+		    pCoexSta->lowPriorityRx > 1250)
 			retryCount++;
 
 		result = 0;
 		WaitCount++;
 
-		if (retryCount == 0) { /*  no retry in the last 2-second duration */
+		if (retryCount ==
+		    0) { /*  no retry in the last 2-second duration */
 			up++;
 			dn--;
 
 			if (dn <= 0)
 				dn = 0;
 
-			if (up >= n) { /*  if 連續 n 個2秒 retry count為0, 則調寬WiFi duration */
+			if (up >=
+			    n) { /*  if 連續 n 個2秒 retry count為0, 則調寬WiFi duration */
 				WaitCount = 0;
 				n = 3;
 				up = 0;
 				dn = 0;
 				result = 1;
 			}
-		} else if (retryCount <= 3) { /*  <=3 retry in the last 2-second duration */
+		} else if (retryCount <=
+			   3) { /*  <=3 retry in the last 2-second duration */
 			up--;
 			dn++;
 
 			if (up <= 0)
 				up = 0;
 
-			if (dn == 2) { /*  if 連續 2 個2秒 retry count< 3, 則調窄WiFi duration */
+			if (dn ==
+			    2) { /*  if 連續 2 個2秒 retry count< 3, 則調窄WiFi duration */
 				if (WaitCount <= 2)
 					m++; /*  避免一直在兩個level中來回 */
 				else
 					m = 1;
 
-				if (m >= 20) /* m 最大值 = 20 ' 最大120秒 recheck是否調整 WiFi duration. */
+				if (m >=
+				    20) /* m 最大值 = 20 ' 最大120秒 recheck是否調整 WiFi duration. */
 					m = 20;
 
 				n = 3 * m;
@@ -1406,7 +1338,8 @@ static void halbtc8723b1ant_TdmaDurationAdjustForAcl(
 			else
 				m = 1;
 
-			if (m >= 20) /* m 最大值 = 20 ' 最大120秒 recheck是否調整 WiFi duration. */
+			if (m >=
+			    20) /* m 最大值 = 20 ' 最大120秒 recheck是否調整 WiFi duration. */
 				m = 20;
 
 			n = 3 * m;
@@ -1417,79 +1350,83 @@ static void halbtc8723b1ant_TdmaDurationAdjustForAcl(
 		}
 
 		if (result == -1) {
-			if (
-				BT_INFO_8723B_1ANT_A2DP_BASIC_RATE(btInfoExt) &&
-				((pCoexDm->curPsTdma == 1) || (pCoexDm->curPsTdma == 2))
-			) {
-				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 9);
+			if (BT_INFO_8723B_1ANT_A2DP_BASIC_RATE(btInfoExt) &&
+			    ((pCoexDm->curPsTdma == 1) ||
+			     (pCoexDm->curPsTdma == 2))) {
+				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC,
+						       true, 9);
 				pCoexDm->psTdmaDuAdjType = 9;
 			} else if (pCoexDm->curPsTdma == 1) {
-				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 2);
+				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC,
+						       true, 2);
 				pCoexDm->psTdmaDuAdjType = 2;
 			} else if (pCoexDm->curPsTdma == 2) {
-				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 9);
+				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC,
+						       true, 9);
 				pCoexDm->psTdmaDuAdjType = 9;
 			} else if (pCoexDm->curPsTdma == 9) {
-				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 11);
+				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC,
+						       true, 11);
 				pCoexDm->psTdmaDuAdjType = 11;
 			}
 		} else if (result == 1) {
-			if (
-				BT_INFO_8723B_1ANT_A2DP_BASIC_RATE(btInfoExt) &&
-				((pCoexDm->curPsTdma == 1) || (pCoexDm->curPsTdma == 2))
-			) {
-				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 9);
+			if (BT_INFO_8723B_1ANT_A2DP_BASIC_RATE(btInfoExt) &&
+			    ((pCoexDm->curPsTdma == 1) ||
+			     (pCoexDm->curPsTdma == 2))) {
+				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC,
+						       true, 9);
 				pCoexDm->psTdmaDuAdjType = 9;
 			} else if (pCoexDm->curPsTdma == 11) {
-				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 9);
+				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC,
+						       true, 9);
 				pCoexDm->psTdmaDuAdjType = 9;
 			} else if (pCoexDm->curPsTdma == 9) {
-				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 2);
+				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC,
+						       true, 2);
 				pCoexDm->psTdmaDuAdjType = 2;
 			} else if (pCoexDm->curPsTdma == 2) {
-				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 1);
+				halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC,
+						       true, 1);
 				pCoexDm->psTdmaDuAdjType = 1;
 			}
 		}
 
-		if (
-			pCoexDm->curPsTdma != 1 &&
-			pCoexDm->curPsTdma != 2 &&
-			pCoexDm->curPsTdma != 9 &&
-			pCoexDm->curPsTdma != 11
-		) /*  recover to previous adjust type */
-			halbtc8723b1ant_PsTdma(
-				pBtCoexist, NORMAL_EXEC, true, pCoexDm->psTdmaDuAdjType
-			);
+		if (pCoexDm->curPsTdma != 1 && pCoexDm->curPsTdma != 2 &&
+		    pCoexDm->curPsTdma != 9 &&
+		    pCoexDm->curPsTdma !=
+			    11) /*  recover to previous adjust type */
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true,
+					       pCoexDm->psTdmaDuAdjType);
 	}
 }
 
-static void halbtc8723b1ant_PsTdmaCheckForPowerSaveState(
-	struct btc_coexist *pBtCoexist, bool bNewPsState
-)
+static void
+halbtc8723b1ant_PsTdmaCheckForPowerSaveState(struct btc_coexist *pBtCoexist,
+					     bool bNewPsState)
 {
 	u8 lpsMode = 0x0;
 
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U1_LPS_MODE, &lpsMode);
 
-	if (lpsMode) {	/*  already under LPS state */
+	if (lpsMode) { /*  already under LPS state */
 		if (bNewPsState) {
 			/*  keep state under LPS, do nothing. */
 		} else { /*  will leave LPS state, turn off psTdma first */
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 0);
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false,
+					       0);
 		}
-	} else {						/*  NO PS state */
+	} else { /*  NO PS state */
 		if (bNewPsState) { /*  will enter LPS state, turn off psTdma first */
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 0);
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false,
+					       0);
 		} else {
 			/*  keep state under NO PS state, do nothing. */
 		}
 	}
 }
 
-static void halbtc8723b1ant_PowerSaveState(
-	struct btc_coexist *pBtCoexist, u8 psType, u8 lpsVal, u8 rpwmVal
-)
+static void halbtc8723b1ant_PowerSaveState(struct btc_coexist *pBtCoexist,
+					   u8 psType, u8 lpsVal, u8 rpwmVal)
 {
 	bool bLowPwrDisable = false;
 
@@ -1497,20 +1434,19 @@ static void halbtc8723b1ant_PowerSaveState(
 	case BTC_PS_WIFI_NATIVE:
 		/*  recover to original 32k low power setting */
 		bLowPwrDisable = false;
-		pBtCoexist->fBtcSet(
-			pBtCoexist, BTC_SET_ACT_DISABLE_LOW_POWER, &bLowPwrDisable
-		);
+		pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_DISABLE_LOW_POWER,
+				    &bLowPwrDisable);
 		pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_NORMAL_LPS, NULL);
 		pCoexSta->bForceLpsOn = false;
 		break;
 	case BTC_PS_LPS_ON:
 		halbtc8723b1ant_PsTdmaCheckForPowerSaveState(pBtCoexist, true);
-		halbtc8723b1ant_LpsRpwm(pBtCoexist, NORMAL_EXEC, lpsVal, rpwmVal);
+		halbtc8723b1ant_LpsRpwm(pBtCoexist, NORMAL_EXEC, lpsVal,
+					rpwmVal);
 		/*  when coex force to enter LPS, do not enter 32k low power. */
 		bLowPwrDisable = true;
-		pBtCoexist->fBtcSet(
-			pBtCoexist, BTC_SET_ACT_DISABLE_LOW_POWER, &bLowPwrDisable
-		);
+		pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_DISABLE_LOW_POWER,
+				    &bLowPwrDisable);
 		/*  power save must executed before psTdma. */
 		pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_ENTER_LPS, NULL);
 		pCoexSta->bForceLpsOn = true;
@@ -1538,7 +1474,8 @@ static void halbtc8723b1ant_PowerSaveState(
 /*  */
 static void halbtc8723b1ant_ActionWifiMultiPort(struct btc_coexist *pBtCoexist)
 {
-	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0,
+				       0x0);
 
 	halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 8);
 	halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 2);
@@ -1558,47 +1495,51 @@ static void halbtc8723b1ant_ActionBtInquiry(struct btc_coexist *pBtCoexist)
 	bool bWifiBusy = false;
 	bool bBtBusy = false;
 
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_AP_MODE_ENABLE, &bApEnable);
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED, &bWifiConnected);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_AP_MODE_ENABLE,
+			    &bApEnable);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED,
+			    &bWifiConnected);
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_BUSY, &bWifiBusy);
 	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_BT_TRAFFIC_BUSY, &bBtBusy);
 
 	if (!bWifiConnected && !pCoexSta->bWiFiIsHighPriTask) {
-		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE,
+					       0x0, 0x0);
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 8);
 
 		halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 0);
-	} else if (
-		pBtLinkInfo->bScoExist ||
-		pBtLinkInfo->bHidExist ||
-		pBtLinkInfo->bA2dpExist
-	) {
+	} else if (pBtLinkInfo->bScoExist || pBtLinkInfo->bHidExist ||
+		   pBtLinkInfo->bA2dpExist) {
 		/*  SCO/HID/A2DP busy */
-		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE,
+					       0x0, 0x0);
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 32);
 
 		halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
 	} else if (pBtLinkInfo->bPanExist || bWifiBusy) {
-		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE,
+					       0x0, 0x0);
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 20);
 
 		halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
 	} else {
-		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE,
+					       0x0, 0x0);
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 8);
 
 		halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 7);
 	}
 }
 
-static void halbtc8723b1ant_ActionBtScoHidOnlyBusy(
-	struct btc_coexist *pBtCoexist, u8 wifiStatus
-)
+static void
+halbtc8723b1ant_ActionBtScoHidOnlyBusy(struct btc_coexist *pBtCoexist,
+				       u8 wifiStatus)
 {
 	struct btc_bt_link_info *pBtLinkInfo = &pBtCoexist->btLinkInfo;
 	bool bWifiConnected = false;
 
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED, &bWifiConnected);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED,
+			    &bWifiConnected);
 
 	/*  tdma and coex table */
 
@@ -1611,15 +1552,16 @@ static void halbtc8723b1ant_ActionBtScoHidOnlyBusy(
 	}
 }
 
-static void halbtc8723b1ant_ActionWifiConnectedBtAclBusy(
-	struct btc_coexist *pBtCoexist, u8 wifiStatus
-)
+static void
+halbtc8723b1ant_ActionWifiConnectedBtAclBusy(struct btc_coexist *pBtCoexist,
+					     u8 wifiStatus)
 {
 	struct btc_bt_link_info *pBtLinkInfo = &pBtCoexist->btLinkInfo;
 
 	halbtc8723b1ant_BtRssiState(2, 28, 0);
 
-	if ((pCoexSta->lowPriorityRx >= 1000) && (pCoexSta->lowPriorityRx != 65535))
+	if ((pCoexSta->lowPriorityRx >= 1000) &&
+	    (pCoexSta->lowPriorityRx != 65535))
 		pBtLinkInfo->bSlaveRole = true;
 	else
 		pBtLinkInfo->bSlaveRole = false;
@@ -1630,30 +1572,35 @@ static void halbtc8723b1ant_ActionWifiConnectedBtAclBusy(
 		return;
 	} else if (pBtLinkInfo->bA2dpOnly) { /* A2DP */
 		if (wifiStatus == BT_8723B_1ANT_WIFI_STATUS_CONNECTED_IDLE) {
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 32);
-			halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true,
+					       32);
+			halbtc8723b1ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 4);
 			pCoexDm->bAutoTdmaAdjust = false;
 		} else {
-			halbtc8723b1ant_TdmaDurationAdjustForAcl(pBtCoexist, wifiStatus);
-			halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
+			halbtc8723b1ant_TdmaDurationAdjustForAcl(pBtCoexist,
+								 wifiStatus);
+			halbtc8723b1ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 4);
 			pCoexDm->bAutoTdmaAdjust = true;
 		}
-	} else if (pBtLinkInfo->bHidExist && pBtLinkInfo->bA2dpExist) { /* HID+A2DP */
+	} else if (pBtLinkInfo->bHidExist &&
+		   pBtLinkInfo->bA2dpExist) { /* HID+A2DP */
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 14);
 		pCoexDm->bAutoTdmaAdjust = false;
 
 		halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
-	} else if (
-		pBtLinkInfo->bPanOnly ||
-		(pBtLinkInfo->bHidExist && pBtLinkInfo->bPanExist)
-	) { /* PAN(OPP, FTP), HID+PAN(OPP, FTP) */
+	} else if (pBtLinkInfo->bPanOnly ||
+		   (pBtLinkInfo->bHidExist &&
+		    pBtLinkInfo
+			    ->bPanExist)) { /* PAN(OPP, FTP), HID+PAN(OPP, FTP) */
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 3);
 		halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
 		pCoexDm->bAutoTdmaAdjust = false;
-	} else if (
-		(pBtLinkInfo->bA2dpExist && pBtLinkInfo->bPanExist) ||
-		(pBtLinkInfo->bHidExist && pBtLinkInfo->bA2dpExist && pBtLinkInfo->bPanExist)
-	) { /* A2DP+PAN(OPP, FTP), HID+A2DP+PAN(OPP, FTP) */
+	} else if ((pBtLinkInfo->bA2dpExist && pBtLinkInfo->bPanExist) ||
+		   (pBtLinkInfo->bHidExist && pBtLinkInfo->bA2dpExist &&
+		    pBtLinkInfo
+			    ->bPanExist)) { /* A2DP+PAN(OPP, FTP), HID+A2DP+PAN(OPP, FTP) */
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 13);
 		halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
 		pCoexDm->bAutoTdmaAdjust = false;
@@ -1665,43 +1612,49 @@ static void halbtc8723b1ant_ActionWifiConnectedBtAclBusy(
 	}
 }
 
-static void halbtc8723b1ant_ActionWifiNotConnected(struct btc_coexist *pBtCoexist)
+static void
+halbtc8723b1ant_ActionWifiNotConnected(struct btc_coexist *pBtCoexist)
 {
 	/*  power save state */
-	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0,
+				       0x0);
 
 	/*  tdma and coex table */
 	halbtc8723b1ant_PsTdma(pBtCoexist, FORCE_EXEC, false, 8);
 	halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 0);
 }
 
-static void halbtc8723b1ant_ActionWifiNotConnectedScan(
-	struct btc_coexist *pBtCoexist
-)
+static void
+halbtc8723b1ant_ActionWifiNotConnectedScan(struct btc_coexist *pBtCoexist)
 {
 	struct btc_bt_link_info *pBtLinkInfo = &pBtCoexist->btLinkInfo;
 
-	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0,
+				       0x0);
 
 	/*  tdma and coex table */
 	if (pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY) {
 		if (pBtLinkInfo->bA2dpExist) {
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 32);
-			halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true,
+					       32);
+			halbtc8723b1ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 4);
 		} else if (pBtLinkInfo->bA2dpExist && pBtLinkInfo->bPanExist) {
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 22);
-			halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true,
+					       22);
+			halbtc8723b1ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 4);
 		} else {
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 20);
-			halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true,
+					       20);
+			halbtc8723b1ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 4);
 		}
-	} else if (
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY)
-	) {
+	} else if ((pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
+		   (pCoexDm->btStatus ==
+		    BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY)) {
 		halbtc8723b1ant_ActionBtScoHidOnlyBusy(
-			pBtCoexist, BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SCAN
-		);
+			pBtCoexist, BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SCAN);
 	} else {
 		/* Bryant Add */
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 8);
@@ -1709,20 +1662,17 @@ static void halbtc8723b1ant_ActionWifiNotConnectedScan(
 	}
 }
 
-static void halbtc8723b1ant_ActionWifiNotConnectedAssoAuth(
-	struct btc_coexist *pBtCoexist
-)
+static void
+halbtc8723b1ant_ActionWifiNotConnectedAssoAuth(struct btc_coexist *pBtCoexist)
 {
 	struct btc_bt_link_info *pBtLinkInfo = &pBtCoexist->btLinkInfo;
 
-	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0,
+				       0x0);
 
 	/*  tdma and coex table */
-	if (
-		(pBtLinkInfo->bScoExist) ||
-		(pBtLinkInfo->bHidExist) ||
-		(pBtLinkInfo->bA2dpExist)
-	) {
+	if ((pBtLinkInfo->bScoExist) || (pBtLinkInfo->bHidExist) ||
+	    (pBtLinkInfo->bA2dpExist)) {
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 32);
 		halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
 	} else if (pBtLinkInfo->bPanExist) {
@@ -1734,31 +1684,37 @@ static void halbtc8723b1ant_ActionWifiNotConnectedAssoAuth(
 	}
 }
 
-static void halbtc8723b1ant_ActionWifiConnectedScan(struct btc_coexist *pBtCoexist)
+static void
+halbtc8723b1ant_ActionWifiConnectedScan(struct btc_coexist *pBtCoexist)
 {
 	struct btc_bt_link_info *pBtLinkInfo = &pBtCoexist->btLinkInfo;
 
-	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0,
+				       0x0);
 
 	/*  tdma and coex table */
 	if (pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY) {
 		if (pBtLinkInfo->bA2dpExist) {
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 32);
-			halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true,
+					       32);
+			halbtc8723b1ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 4);
 		} else if (pBtLinkInfo->bA2dpExist && pBtLinkInfo->bPanExist) {
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 22);
-			halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true,
+					       22);
+			halbtc8723b1ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 4);
 		} else {
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 20);
-			halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true,
+					       20);
+			halbtc8723b1ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 4);
 		}
-	} else if (
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY)
-	) {
+	} else if ((pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
+		   (pCoexDm->btStatus ==
+		    BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY)) {
 		halbtc8723b1ant_ActionBtScoHidOnlyBusy(
-			pBtCoexist, BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SCAN
-		);
+			pBtCoexist, BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SCAN);
 	} else {
 		/* Bryant Add */
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 8);
@@ -1766,20 +1722,17 @@ static void halbtc8723b1ant_ActionWifiConnectedScan(struct btc_coexist *pBtCoexi
 	}
 }
 
-static void halbtc8723b1ant_ActionWifiConnectedSpecialPacket(
-	struct btc_coexist *pBtCoexist
-)
+static void
+halbtc8723b1ant_ActionWifiConnectedSpecialPacket(struct btc_coexist *pBtCoexist)
 {
 	struct btc_bt_link_info *pBtLinkInfo = &pBtCoexist->btLinkInfo;
 
-	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0,
+				       0x0);
 
 	/*  tdma and coex table */
-	if (
-		(pBtLinkInfo->bScoExist) ||
-		(pBtLinkInfo->bHidExist) ||
-		(pBtLinkInfo->bA2dpExist)
-	) {
+	if ((pBtLinkInfo->bScoExist) || (pBtLinkInfo->bHidExist) ||
+	    (pBtLinkInfo->bA2dpExist)) {
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 32);
 		halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 4);
 	} else if (pBtLinkInfo->bPanExist) {
@@ -1797,7 +1750,8 @@ static void halbtc8723b1ant_ActionWifiConnected(struct btc_coexist *pBtCoexist)
 	bool bScan = false, bLink = false, bRoam = false;
 	bool bUnder4way = false, bApEnable = false;
 
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_4_WAY_PROGRESS, &bUnder4way);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_4_WAY_PROGRESS,
+			    &bUnder4way);
 	if (bUnder4way) {
 		halbtc8723b1ant_ActionWifiConnectedSpecialPacket(pBtCoexist);
 		return;
@@ -1810,44 +1764,45 @@ static void halbtc8723b1ant_ActionWifiConnected(struct btc_coexist *pBtCoexist)
 		if (bScan)
 			halbtc8723b1ant_ActionWifiConnectedScan(pBtCoexist);
 		else
-			halbtc8723b1ant_ActionWifiConnectedSpecialPacket(pBtCoexist);
+			halbtc8723b1ant_ActionWifiConnectedSpecialPacket(
+				pBtCoexist);
 		return;
 	}
 
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_AP_MODE_ENABLE, &bApEnable);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_AP_MODE_ENABLE,
+			    &bApEnable);
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_BUSY, &bWifiBusy);
 
 	/*  power save state */
-	if (
-		!bApEnable &&
-		pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY &&
-		!pBtCoexist->btLinkInfo.bHidOnly
-	) {
+	if (!bApEnable &&
+	    pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY &&
+	    !pBtCoexist->btLinkInfo.bHidOnly) {
 		if (pBtCoexist->btLinkInfo.bA2dpOnly) { /* A2DP */
 			if (!bWifiBusy)
 				halbtc8723b1ant_PowerSaveState(
-					pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0
-				);
+					pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0,
+					0x0);
 			else { /* busy */
-				if  (pCoexSta->nScanAPNum >= BT_8723B_1ANT_WIFI_NOISY_THRESH)  /* no force LPS, no PS-TDMA, use pure TDMA */
+				if (pCoexSta->nScanAPNum >=
+				    BT_8723B_1ANT_WIFI_NOISY_THRESH) /* no force LPS, no PS-TDMA, use pure TDMA */
 					halbtc8723b1ant_PowerSaveState(
-						pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0
-					);
+						pBtCoexist, BTC_PS_WIFI_NATIVE,
+						0x0, 0x0);
 				else
 					halbtc8723b1ant_PowerSaveState(
-						pBtCoexist, BTC_PS_LPS_ON, 0x50, 0x4
-					);
+						pBtCoexist, BTC_PS_LPS_ON, 0x50,
+						0x4);
 			}
-		} else if (
-			(!pCoexSta->bPanExist) &&
-			(!pCoexSta->bA2dpExist) &&
-			(!pCoexSta->bHidExist)
-		)
-			halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+		} else if ((!pCoexSta->bPanExist) && (!pCoexSta->bA2dpExist) &&
+			   (!pCoexSta->bHidExist))
+			halbtc8723b1ant_PowerSaveState(
+				pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
 		else
-			halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_LPS_ON, 0x50, 0x4);
+			halbtc8723b1ant_PowerSaveState(
+				pBtCoexist, BTC_PS_LPS_ON, 0x50, 0x4);
 	} else {
-		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE,
+					       0x0, 0x0);
 	}
 
 	/*  tdma and coex table */
@@ -1855,48 +1810,57 @@ static void halbtc8723b1ant_ActionWifiConnected(struct btc_coexist *pBtCoexist)
 		if (pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY) {
 			halbtc8723b1ant_ActionWifiConnectedBtAclBusy(
 				pBtCoexist,
-				BT_8723B_1ANT_WIFI_STATUS_CONNECTED_IDLE
-			);
-		} else if (
-			(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
-			(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY)
-		) {
-			halbtc8723b1ant_ActionBtScoHidOnlyBusy(pBtCoexist,
+				BT_8723B_1ANT_WIFI_STATUS_CONNECTED_IDLE);
+		} else if ((pCoexDm->btStatus ==
+			    BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
+			   (pCoexDm->btStatus ==
+			    BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY)) {
+			halbtc8723b1ant_ActionBtScoHidOnlyBusy(
+				pBtCoexist,
 				BT_8723B_1ANT_WIFI_STATUS_CONNECTED_IDLE);
 		} else {
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 8);
-
-			if ((pCoexSta->highPriorityTx) + (pCoexSta->highPriorityRx) <= 60)
-				halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 2);
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false,
+					       8);
+
+			if ((pCoexSta->highPriorityTx) +
+				    (pCoexSta->highPriorityRx) <=
+			    60)
+				halbtc8723b1ant_CoexTableWithType(
+					pBtCoexist, NORMAL_EXEC, 2);
 			else
-				halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 7);
+				halbtc8723b1ant_CoexTableWithType(
+					pBtCoexist, NORMAL_EXEC, 7);
 		}
 	} else {
 		if (pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY) {
 			halbtc8723b1ant_ActionWifiConnectedBtAclBusy(
 				pBtCoexist,
-				BT_8723B_1ANT_WIFI_STATUS_CONNECTED_BUSY
-			);
-		} else if (
-			(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
-			(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY)
-		) {
+				BT_8723B_1ANT_WIFI_STATUS_CONNECTED_BUSY);
+		} else if ((pCoexDm->btStatus ==
+			    BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
+			   (pCoexDm->btStatus ==
+			    BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY)) {
 			halbtc8723b1ant_ActionBtScoHidOnlyBusy(
 				pBtCoexist,
-				BT_8723B_1ANT_WIFI_STATUS_CONNECTED_BUSY
-			);
+				BT_8723B_1ANT_WIFI_STATUS_CONNECTED_BUSY);
 		} else {
-			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 8);
-
-			if ((pCoexSta->highPriorityTx) + (pCoexSta->highPriorityRx) <= 60)
-				halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 2);
+			halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false,
+					       8);
+
+			if ((pCoexSta->highPriorityTx) +
+				    (pCoexSta->highPriorityRx) <=
+			    60)
+				halbtc8723b1ant_CoexTableWithType(
+					pBtCoexist, NORMAL_EXEC, 2);
 			else
-				halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 7);
+				halbtc8723b1ant_CoexTableWithType(
+					pBtCoexist, NORMAL_EXEC, 7);
 		}
 	}
 }
 
-static void halbtc8723b1ant_RunSwCoexistMechanism(struct btc_coexist *pBtCoexist)
+static void
+halbtc8723b1ant_RunSwCoexistMechanism(struct btc_coexist *pBtCoexist)
 {
 	u8 algorithm = 0;
 
@@ -1904,7 +1868,6 @@ static void halbtc8723b1ant_RunSwCoexistMechanism(struct btc_coexist *pBtCoexist
 	pCoexDm->curAlgorithm = algorithm;
 
 	if (halbtc8723b1ant_IsCommonAction(pBtCoexist)) {
-
 	} else {
 		pCoexDm->preAlgorithm = pCoexDm->curAlgorithm;
 	}
@@ -1929,35 +1892,25 @@ static void halbtc8723b1ant_RunCoexistMechanism(struct btc_coexist *pBtCoexist)
 	if (pCoexSta->bUnderIps)
 		return;
 
-	if (
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY) ||
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY)
-	){
+	if ((pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY) ||
+	    (pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
+	    (pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY)) {
 		bIncreaseScanDevNum = true;
 	}
 
-	pBtCoexist->fBtcSet(
-		pBtCoexist,
-		BTC_SET_BL_INC_SCAN_DEV_NUM,
-		&bIncreaseScanDevNum
-	);
-	pBtCoexist->fBtcGet(
-		pBtCoexist,
-		BTC_GET_BL_WIFI_CONNECTED,
-		&bWifiConnected
-	);
-
-	pBtCoexist->fBtcGet(
-		pBtCoexist,
-		BTC_GET_U4_WIFI_LINK_STATUS,
-		&wifiLinkStatus
-	);
+	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_INC_SCAN_DEV_NUM,
+			    &bIncreaseScanDevNum);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED,
+			    &bWifiConnected);
+
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_LINK_STATUS,
+			    &wifiLinkStatus);
 	numOfWifiLink = wifiLinkStatus >> 16;
 
 	if ((numOfWifiLink >= 2) || (wifiLinkStatus & WIFI_P2P_GO_CONNECTED)) {
 		halbtc8723b1ant_LimitedTx(pBtCoexist, NORMAL_EXEC, 0, 0, 0, 0);
-		halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, bBtCtrlAggBufSize, aggBufSize);
+		halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false,
+					  bBtCtrlAggBufSize, aggBufSize);
 
 		if ((pBtLinkInfo->bA2dpExist) && (pCoexSta->bC2hBtInquiryPage))
 			halbtc8723b1ant_ActionBtInquiry(pBtCoexist);
@@ -1971,19 +1924,24 @@ static void halbtc8723b1ant_RunCoexistMechanism(struct btc_coexist *pBtCoexist)
 		halbtc8723b1ant_LimitedTx(pBtCoexist, NORMAL_EXEC, 1, 1, 0, 1);
 
 		if (pBtLinkInfo->bScoExist)
-			halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, true, 0x5);
+			halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC,
+						  false, true, 0x5);
 		else
-			halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, true, 0x8);
+			halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC,
+						  false, true, 0x8);
 
 		halbtc8723b1ant_SwMechanism(pBtCoexist, true);
-		halbtc8723b1ant_RunSwCoexistMechanism(pBtCoexist);  /* just print debug message */
+		halbtc8723b1ant_RunSwCoexistMechanism(
+			pBtCoexist); /* just print debug message */
 	} else {
 		halbtc8723b1ant_LimitedTx(pBtCoexist, NORMAL_EXEC, 0, 0, 0, 0);
 
-		halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, false, 0x5);
+		halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, false,
+					  0x5);
 
 		halbtc8723b1ant_SwMechanism(pBtCoexist, false);
-		halbtc8723b1ant_RunSwCoexistMechanism(pBtCoexist); /* just print debug message */
+		halbtc8723b1ant_RunSwCoexistMechanism(
+			pBtCoexist); /* just print debug message */
 	}
 
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_HS_OPERATION, &bBtHsOn);
@@ -2004,9 +1962,11 @@ static void halbtc8723b1ant_RunCoexistMechanism(struct btc_coexist *pBtCoexist)
 
 		if (bScan || bLink || bRoam) {
 			if (bScan)
-				halbtc8723b1ant_ActionWifiNotConnectedScan(pBtCoexist);
+				halbtc8723b1ant_ActionWifiNotConnectedScan(
+					pBtCoexist);
 			else
-				halbtc8723b1ant_ActionWifiNotConnectedAssoAuth(pBtCoexist);
+				halbtc8723b1ant_ActionWifiNotConnectedAssoAuth(
+					pBtCoexist);
 		} else
 			halbtc8723b1ant_ActionWifiNotConnected(pBtCoexist);
 	} else { /*  wifi LPS/Busy */
@@ -2027,13 +1987,11 @@ static void halbtc8723b1ant_InitCoexDm(struct btc_coexist *pBtCoexist)
 	pCoexSta->popEventCnt = 0;
 }
 
-static void halbtc8723b1ant_InitHwConfig(
-	struct btc_coexist *pBtCoexist,
-	bool bBackUp,
-	bool bWifiOnly
-)
+static void halbtc8723b1ant_InitHwConfig(struct btc_coexist *pBtCoexist,
+					 bool bBackUp, bool bWifiOnly)
 {
-	pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x550, 0x8, 0x1);  /* enable TBTT nterrupt */
+	pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x550, 0x8,
+					  0x1); /* enable TBTT nterrupt */
 
 	/*  0x790[5:0]= 0x5 */
 	pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x790, 0x5);
@@ -2044,10 +2002,12 @@ static void halbtc8723b1ant_InitHwConfig(
 
 	/* Antenna config */
 	if (bWifiOnly) {
-		halbtc8723b1ant_SetAntPath(pBtCoexist, BTC_ANT_PATH_WIFI, true, false);
+		halbtc8723b1ant_SetAntPath(pBtCoexist, BTC_ANT_PATH_WIFI, true,
+					   false);
 		halbtc8723b1ant_PsTdma(pBtCoexist, FORCE_EXEC, false, 9);
 	} else {
-		halbtc8723b1ant_SetAntPath(pBtCoexist, BTC_ANT_PATH_BT, true, false);
+		halbtc8723b1ant_SetAntPath(pBtCoexist, BTC_ANT_PATH_BT, true,
+					   false);
 	}
 
 	/*  PTA parameter */
@@ -2092,7 +2052,7 @@ void EXhalbtc8723b1ant_PowerOnSetting(struct btc_coexist *pBtCoexist)
 		/*  fixed at S0 for USB interface */
 		pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x0);
 
-		u1Tmp |= 0x1;	/*  antenna inverse */
+		u1Tmp |= 0x1; /*  antenna inverse */
 		pBtCoexist->fBtcWriteLocalReg1Byte(pBtCoexist, 0xfe08, u1Tmp);
 
 		pBoardInfo->btdmAntPos = BTC_ANTENNA_AT_AUX_PORT;
@@ -2105,18 +2065,21 @@ void EXhalbtc8723b1ant_PowerOnSetting(struct btc_coexist *pBtCoexist)
 		} else if (pBoardInfo->singleAntPath == 1) {
 			/*  set to S0 */
 			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x0);
-			u1Tmp |= 0x1;	/*  antenna inverse */
+			u1Tmp |= 0x1; /*  antenna inverse */
 			pBoardInfo->btdmAntPos = BTC_ANTENNA_AT_AUX_PORT;
 		}
 
 		if (pBtCoexist->chipInterface == BTC_INTF_PCI)
-			pBtCoexist->fBtcWriteLocalReg1Byte(pBtCoexist, 0x384, u1Tmp);
+			pBtCoexist->fBtcWriteLocalReg1Byte(pBtCoexist, 0x384,
+							   u1Tmp);
 		else if (pBtCoexist->chipInterface == BTC_INTF_SDIO)
-			pBtCoexist->fBtcWriteLocalReg1Byte(pBtCoexist, 0x60, u1Tmp);
+			pBtCoexist->fBtcWriteLocalReg1Byte(pBtCoexist, 0x60,
+							   u1Tmp);
 	}
 }
 
-void EXhalbtc8723b1ant_InitHwConfig(struct btc_coexist *pBtCoexist, bool bWifiOnly)
+void EXhalbtc8723b1ant_InitHwConfig(struct btc_coexist *pBtCoexist,
+				    bool bWifiOnly)
 {
 	halbtc8723b1ant_InitHwConfig(pBtCoexist, true, bWifiOnly);
 }
@@ -2132,7 +2095,7 @@ void EXhalbtc8723b1ant_InitCoexDm(struct btc_coexist *pBtCoexist)
 
 void EXhalbtc8723b1ant_IpsNotify(struct btc_coexist *pBtCoexist, u8 type)
 {
-	if (pBtCoexist->bManualControl ||	pBtCoexist->bStopCoexDm)
+	if (pBtCoexist->bManualControl || pBtCoexist->bStopCoexDm)
 		return;
 
 	if (type == BTC_IPS_ENTER) {
@@ -2140,7 +2103,8 @@ void EXhalbtc8723b1ant_IpsNotify(struct btc_coexist *pBtCoexist, u8 type)
 
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 0);
 		halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 0);
-		halbtc8723b1ant_SetAntPath(pBtCoexist, BTC_ANT_PATH_BT, false, true);
+		halbtc8723b1ant_SetAntPath(pBtCoexist, BTC_ANT_PATH_BT, false,
+					   true);
 	} else if (type == BTC_IPS_LEAVE) {
 		pCoexSta->bUnderIps = false;
 
@@ -2175,34 +2139,36 @@ void EXhalbtc8723b1ant_ScanNotify(struct btc_coexist *pBtCoexist, u8 type)
 	if (type == BTC_SCAN_START) {
 		pCoexSta->bWiFiIsHighPriTask = true;
 
-		halbtc8723b1ant_PsTdma(pBtCoexist, FORCE_EXEC, false, 8);  /* Force antenna setup for no scan result issue */
+		halbtc8723b1ant_PsTdma(
+			pBtCoexist, FORCE_EXEC, false,
+			8); /* Force antenna setup for no scan result issue */
 		pBtCoexist->fBtcRead4Byte(pBtCoexist, 0x948);
 		pBtCoexist->fBtcRead1Byte(pBtCoexist, 0x765);
 		pBtCoexist->fBtcRead1Byte(pBtCoexist, 0x67);
 	} else {
 		pCoexSta->bWiFiIsHighPriTask = false;
 
-		pBtCoexist->fBtcGet(
-			pBtCoexist, BTC_GET_U1_AP_NUM, &pCoexSta->nScanAPNum
-		);
+		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U1_AP_NUM,
+				    &pCoexSta->nScanAPNum);
 	}
 
 	if (pBtCoexist->btInfo.bBtDisabled)
 		return;
 
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_HS_OPERATION, &bBtHsOn);
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED, &bWifiConnected);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED,
+			    &bWifiConnected);
 
 	halbtc8723b1ant_QueryBtInfo(pBtCoexist);
 
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_LINK_STATUS, &wifiLinkStatus);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_LINK_STATUS,
+			    &wifiLinkStatus);
 	numOfWifiLink = wifiLinkStatus >> 16;
 
 	if (numOfWifiLink >= 2) {
 		halbtc8723b1ant_LimitedTx(pBtCoexist, NORMAL_EXEC, 0, 0, 0, 0);
-		halbtc8723b1ant_LimitedRx(
-			pBtCoexist, NORMAL_EXEC, false, bBtCtrlAggBufSize, aggBufSize
-		);
+		halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false,
+					  bBtCtrlAggBufSize, aggBufSize);
 		halbtc8723b1ant_ActionWifiMultiPort(pBtCoexist);
 		return;
 	}
@@ -2216,12 +2182,12 @@ void EXhalbtc8723b1ant_ScanNotify(struct btc_coexist *pBtCoexist, u8 type)
 	}
 
 	if (type == BTC_SCAN_START) {
-		if (!bWifiConnected)	/*  non-connected scan */
+		if (!bWifiConnected) /*  non-connected scan */
 			halbtc8723b1ant_ActionWifiNotConnectedScan(pBtCoexist);
-		else	/*  wifi is connected */
+		else /*  wifi is connected */
 			halbtc8723b1ant_ActionWifiConnectedScan(pBtCoexist);
 	} else if (type == BTC_SCAN_FINISH) {
-		if (!bWifiConnected)	/*  non-connected scan */
+		if (!bWifiConnected) /*  non-connected scan */
 			halbtc8723b1ant_ActionWifiNotConnected(pBtCoexist);
 		else
 			halbtc8723b1ant_ActionWifiConnected(pBtCoexist);
@@ -2236,11 +2202,8 @@ void EXhalbtc8723b1ant_ConnectNotify(struct btc_coexist *pBtCoexist, u8 type)
 	bool bBtCtrlAggBufSize = false;
 	u8 aggBufSize = 5;
 
-	if (
-		pBtCoexist->bManualControl ||
-		pBtCoexist->bStopCoexDm ||
-		pBtCoexist->btInfo.bBtDisabled
-	)
+	if (pBtCoexist->bManualControl || pBtCoexist->bStopCoexDm ||
+	    pBtCoexist->btInfo.bBtDisabled)
 		return;
 
 	if (type == BTC_ASSOCIATE_START) {
@@ -2251,11 +2214,13 @@ void EXhalbtc8723b1ant_ConnectNotify(struct btc_coexist *pBtCoexist, u8 type)
 		/* pCoexDm->nArpCnt = 0; */
 	}
 
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_LINK_STATUS, &wifiLinkStatus);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_LINK_STATUS,
+			    &wifiLinkStatus);
 	numOfWifiLink = wifiLinkStatus >> 16;
 	if (numOfWifiLink >= 2) {
 		halbtc8723b1ant_LimitedTx(pBtCoexist, NORMAL_EXEC, 0, 0, 0, 0);
-		halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, bBtCtrlAggBufSize, aggBufSize);
+		halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false,
+					  bBtCtrlAggBufSize, aggBufSize);
 		halbtc8723b1ant_ActionWifiMultiPort(pBtCoexist);
 		return;
 	}
@@ -2272,7 +2237,8 @@ void EXhalbtc8723b1ant_ConnectNotify(struct btc_coexist *pBtCoexist, u8 type)
 	if (type == BTC_ASSOCIATE_START) {
 		halbtc8723b1ant_ActionWifiNotConnectedAssoAuth(pBtCoexist);
 	} else if (type == BTC_ASSOCIATE_FINISH) {
-		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED, &bWifiConnected);
+		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED,
+				    &bWifiConnected);
 		if (!bWifiConnected) /*  non-connected scan */
 			halbtc8723b1ant_ActionWifiNotConnected(pBtCoexist);
 		else
@@ -2280,36 +2246,43 @@ void EXhalbtc8723b1ant_ConnectNotify(struct btc_coexist *pBtCoexist, u8 type)
 	}
 }
 
-void EXhalbtc8723b1ant_MediaStatusNotify(struct btc_coexist *pBtCoexist, u8 type)
+void EXhalbtc8723b1ant_MediaStatusNotify(struct btc_coexist *pBtCoexist,
+					 u8 type)
 {
-	u8 H2C_Parameter[3] = {0};
+	u8 H2C_Parameter[3] = { 0 };
 	u32 wifiBw;
 	u8 wifiCentralChnl;
 	bool bWifiUnderBMode = false;
 
-	if (
-		pBtCoexist->bManualControl ||
-		pBtCoexist->bStopCoexDm ||
-		pBtCoexist->btInfo.bBtDisabled
-	)
+	if (pBtCoexist->bManualControl || pBtCoexist->bStopCoexDm ||
+	    pBtCoexist->btInfo.bBtDisabled)
 		return;
 
 	if (type == BTC_MEDIA_CONNECT) {
-		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_UNDER_B_MODE, &bWifiUnderBMode);
+		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_UNDER_B_MODE,
+				    &bWifiUnderBMode);
 
 		/* Set CCK Tx/Rx high Pri except 11b mode */
 		if (bWifiUnderBMode) {
-			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x6cd, 0x00); /* CCK Tx */
-			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x6cf, 0x00); /* CCK Rx */
+			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x6cd,
+						   0x00); /* CCK Tx */
+			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x6cf,
+						   0x00); /* CCK Rx */
 		} else {
-			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x6cd, 0x10); /* CCK Tx */
-			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x6cf, 0x10); /* CCK Rx */
+			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x6cd,
+						   0x10); /* CCK Tx */
+			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x6cf,
+						   0x10); /* CCK Rx */
 		}
 
-		pCoexDm->backupArfrCnt1 = pBtCoexist->fBtcRead4Byte(pBtCoexist, 0x430);
-		pCoexDm->backupArfrCnt2 = pBtCoexist->fBtcRead4Byte(pBtCoexist, 0x434);
-		pCoexDm->backupRetryLimit = pBtCoexist->fBtcRead2Byte(pBtCoexist, 0x42a);
-		pCoexDm->backupAmpduMaxTime = pBtCoexist->fBtcRead1Byte(pBtCoexist, 0x456);
+		pCoexDm->backupArfrCnt1 =
+			pBtCoexist->fBtcRead4Byte(pBtCoexist, 0x430);
+		pCoexDm->backupArfrCnt2 =
+			pBtCoexist->fBtcRead4Byte(pBtCoexist, 0x434);
+		pCoexDm->backupRetryLimit =
+			pBtCoexist->fBtcRead2Byte(pBtCoexist, 0x42a);
+		pCoexDm->backupAmpduMaxTime =
+			pBtCoexist->fBtcRead1Byte(pBtCoexist, 0x456);
 	} else {
 		pCoexDm->nArpCnt = 0;
 
@@ -2318,7 +2291,8 @@ void EXhalbtc8723b1ant_MediaStatusNotify(struct btc_coexist *pBtCoexist, u8 type
 	}
 
 	/*  only 2.4G we need to inform bt the chnl mask */
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U1_WIFI_CENTRAL_CHNL, &wifiCentralChnl);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U1_WIFI_CENTRAL_CHNL,
+			    &wifiCentralChnl);
 	if ((type == BTC_MEDIA_CONNECT) && (wifiCentralChnl <= 14)) {
 		/* H2C_Parameter[0] = 0x1; */
 		H2C_Parameter[0] = 0x0;
@@ -2338,7 +2312,8 @@ void EXhalbtc8723b1ant_MediaStatusNotify(struct btc_coexist *pBtCoexist, u8 type
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x66, 3, H2C_Parameter);
 }
 
-void EXhalbtc8723b1ant_SpecialPacketNotify(struct btc_coexist *pBtCoexist, u8 type)
+void EXhalbtc8723b1ant_SpecialPacketNotify(struct btc_coexist *pBtCoexist,
+					   u8 type)
 {
 	bool bBtHsOn = false;
 	u32 wifiLinkStatus = 0;
@@ -2346,22 +2321,17 @@ void EXhalbtc8723b1ant_SpecialPacketNotify(struct btc_coexist *pBtCoexist, u8 ty
 	bool bBtCtrlAggBufSize = false;
 	u8 aggBufSize = 5;
 
-	if (
-		pBtCoexist->bManualControl ||
-		pBtCoexist->bStopCoexDm ||
-		pBtCoexist->btInfo.bBtDisabled
-	)
+	if (pBtCoexist->bManualControl || pBtCoexist->bStopCoexDm ||
+	    pBtCoexist->btInfo.bBtDisabled)
 		return;
 
-	if (
-		type == BTC_PACKET_DHCP ||
-		type == BTC_PACKET_EAPOL ||
-		type == BTC_PACKET_ARP
-	) {
+	if (type == BTC_PACKET_DHCP || type == BTC_PACKET_EAPOL ||
+	    type == BTC_PACKET_ARP) {
 		if (type == BTC_PACKET_ARP) {
 			pCoexDm->nArpCnt++;
 
-			if (pCoexDm->nArpCnt >= 10) /*  if APR PKT > 10 after connect, do not go to ActionWifiConnectedSpecialPacket(pBtCoexist) */
+			if (pCoexDm->nArpCnt >=
+			    10) /*  if APR PKT > 10 after connect, do not go to ActionWifiConnectedSpecialPacket(pBtCoexist) */
 				pCoexSta->bWiFiIsHighPriTask = false;
 			else
 				pCoexSta->bWiFiIsHighPriTask = true;
@@ -2374,16 +2344,14 @@ void EXhalbtc8723b1ant_SpecialPacketNotify(struct btc_coexist *pBtCoexist, u8 ty
 
 	pCoexSta->specialPktPeriodCnt = 0;
 
-	pBtCoexist->fBtcGet(
-		pBtCoexist, BTC_GET_U4_WIFI_LINK_STATUS, &wifiLinkStatus
-	);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_LINK_STATUS,
+			    &wifiLinkStatus);
 	numOfWifiLink = wifiLinkStatus >> 16;
 
 	if (numOfWifiLink >= 2) {
 		halbtc8723b1ant_LimitedTx(pBtCoexist, NORMAL_EXEC, 0, 0, 0, 0);
-		halbtc8723b1ant_LimitedRx(
-			pBtCoexist, NORMAL_EXEC, false, bBtCtrlAggBufSize, aggBufSize
-		);
+		halbtc8723b1ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false,
+					  bBtCtrlAggBufSize, aggBufSize);
 		halbtc8723b1ant_ActionWifiMultiPort(pBtCoexist);
 		return;
 	}
@@ -2397,17 +2365,13 @@ void EXhalbtc8723b1ant_SpecialPacketNotify(struct btc_coexist *pBtCoexist, u8 ty
 		return;
 	}
 
-	if (
-		type == BTC_PACKET_DHCP ||
-		type == BTC_PACKET_EAPOL ||
-		((type == BTC_PACKET_ARP) && (pCoexSta->bWiFiIsHighPriTask))
-	)
+	if (type == BTC_PACKET_DHCP || type == BTC_PACKET_EAPOL ||
+	    ((type == BTC_PACKET_ARP) && (pCoexSta->bWiFiIsHighPriTask)))
 		halbtc8723b1ant_ActionWifiConnectedSpecialPacket(pBtCoexist);
 }
 
-void EXhalbtc8723b1ant_BtInfoNotify(
-	struct btc_coexist *pBtCoexist, u8 *tmpBuf, u8 length
-)
+void EXhalbtc8723b1ant_BtInfoNotify(struct btc_coexist *pBtCoexist, u8 *tmpBuf,
+				    u8 length)
 {
 	u8 btInfo = 0;
 	u8 i, rspSource = 0;
@@ -2443,27 +2407,36 @@ void EXhalbtc8723b1ant_BtInfoNotify(
 
 		pCoexSta->btInfoExt = pCoexSta->btInfoC2h[rspSource][4];
 
-		pCoexSta->bBtTxRxMask = (pCoexSta->btInfoC2h[rspSource][2] & 0x40);
-		pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_BT_TX_RX_MASK, &pCoexSta->bBtTxRxMask);
+		pCoexSta->bBtTxRxMask =
+			(pCoexSta->btInfoC2h[rspSource][2] & 0x40);
+		pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_BT_TX_RX_MASK,
+				    &pCoexSta->bBtTxRxMask);
 
 		if (!pCoexSta->bBtTxRxMask) {
 			/* BT into is responded by BT FW and BT RF REG 0x3C != 0x15 => Need to switch BT TRx Mask */
-			pBtCoexist->fBtcSetBtReg(pBtCoexist, BTC_BT_REG_RF, 0x3c, 0x15);
+			pBtCoexist->fBtcSetBtReg(pBtCoexist, BTC_BT_REG_RF,
+						 0x3c, 0x15);
 		}
 
 		/*  Here we need to resend some wifi info to BT */
 		/*  because bt is reset and loss of the info. */
 		if (pCoexSta->btInfoExt & BIT(1)) {
-			pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED, &bWifiConnected);
+			pBtCoexist->fBtcGet(pBtCoexist,
+					    BTC_GET_BL_WIFI_CONNECTED,
+					    &bWifiConnected);
 			if (bWifiConnected)
-				EXhalbtc8723b1ant_MediaStatusNotify(pBtCoexist, BTC_MEDIA_CONNECT);
+				EXhalbtc8723b1ant_MediaStatusNotify(
+					pBtCoexist, BTC_MEDIA_CONNECT);
 			else
-				EXhalbtc8723b1ant_MediaStatusNotify(pBtCoexist, BTC_MEDIA_DISCONNECT);
+				EXhalbtc8723b1ant_MediaStatusNotify(
+					pBtCoexist, BTC_MEDIA_DISCONNECT);
 		}
 
 		if (pCoexSta->btInfoExt & BIT(3)) {
-			if (!pBtCoexist->bManualControl && !pBtCoexist->bStopCoexDm)
-				halbtc8723b1ant_IgnoreWlanAct(pBtCoexist, FORCE_EXEC, false);
+			if (!pBtCoexist->bManualControl &&
+			    !pBtCoexist->bStopCoexDm)
+				halbtc8723b1ant_IgnoreWlanAct(
+					pBtCoexist, FORCE_EXEC, false);
 		} else {
 			/*  BT already NOT ignore Wlan active, do nothing here. */
 		}
@@ -2482,7 +2455,7 @@ void EXhalbtc8723b1ant_BtInfoNotify(
 		pCoexSta->bA2dpExist = false;
 		pCoexSta->bHidExist = false;
 		pCoexSta->bScoExist = false;
-	} else {	/*  connection exists */
+	} else { /*  connection exists */
 		pCoexSta->bBtLinkExist = true;
 		if (btInfo & BT_INFO_8723B_1ANT_B_FTP)
 			pCoexSta->bPanExist = true;
@@ -2507,17 +2480,17 @@ void EXhalbtc8723b1ant_BtInfoNotify(
 
 	halbtc8723b1ant_UpdateBtLinkInfo(pBtCoexist);
 
-	btInfo = btInfo & 0x1f;  /* mask profile bit for connect-ilde identification (for CSR case: A2DP idle --> 0x41) */
+	btInfo =
+		btInfo &
+		0x1f; /* mask profile bit for connect-ilde identification (for CSR case: A2DP idle --> 0x41) */
 
 	if (!(btInfo & BT_INFO_8723B_1ANT_B_CONNECTION)) {
 		pCoexDm->btStatus = BT_8723B_1ANT_BT_STATUS_NON_CONNECTED_IDLE;
-	} else if (btInfo == BT_INFO_8723B_1ANT_B_CONNECTION)	{
+	} else if (btInfo == BT_INFO_8723B_1ANT_B_CONNECTION) {
 		/*  connection exists but no busy */
 		pCoexDm->btStatus = BT_8723B_1ANT_BT_STATUS_CONNECTED_IDLE;
-	} else if (
-		(btInfo & BT_INFO_8723B_1ANT_B_SCO_ESCO) ||
-		(btInfo & BT_INFO_8723B_1ANT_B_SCO_BUSY)
-	) {
+	} else if ((btInfo & BT_INFO_8723B_1ANT_B_SCO_ESCO) ||
+		   (btInfo & BT_INFO_8723B_1ANT_B_SCO_BUSY)) {
 		pCoexDm->btStatus = BT_8723B_1ANT_BT_STATUS_SCO_BUSY;
 	} else if (btInfo & BT_INFO_8723B_1ANT_B_ACL_BUSY) {
 		if (pCoexDm->btStatus != BT_8723B_1ANT_BT_STATUS_ACL_BUSY)
@@ -2528,11 +2501,9 @@ void EXhalbtc8723b1ant_BtInfoNotify(
 		pCoexDm->btStatus = BT_8723B_1ANT_BT_STATUS_MAX;
 	}
 
-	if (
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY) ||
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
-		(pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY)
-	)
+	if ((pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_BUSY) ||
+	    (pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_SCO_BUSY) ||
+	    (pCoexDm->btStatus == BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY))
 		bBtBusy = true;
 	else
 		bBtBusy = false;
@@ -2543,7 +2514,8 @@ void EXhalbtc8723b1ant_BtInfoNotify(
 
 void EXhalbtc8723b1ant_HaltNotify(struct btc_coexist *pBtCoexist)
 {
-	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+	halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0,
+				       0x0);
 	halbtc8723b1ant_PsTdma(pBtCoexist, FORCE_EXEC, false, 0);
 	halbtc8723b1ant_SetAntPath(pBtCoexist, BTC_ANT_PATH_BT, false, true);
 
@@ -2557,10 +2529,12 @@ void EXhalbtc8723b1ant_HaltNotify(struct btc_coexist *pBtCoexist)
 void EXhalbtc8723b1ant_PnpNotify(struct btc_coexist *pBtCoexist, u8 pnpState)
 {
 	if (pnpState == BTC_WIFI_PNP_SLEEP) {
-		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE, 0x0, 0x0);
+		halbtc8723b1ant_PowerSaveState(pBtCoexist, BTC_PS_WIFI_NATIVE,
+					       0x0, 0x0);
 		halbtc8723b1ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 0);
 		halbtc8723b1ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 2);
-		halbtc8723b1ant_SetAntPath(pBtCoexist, BTC_ANT_PATH_BT, false, true);
+		halbtc8723b1ant_SetAntPath(pBtCoexist, BTC_ANT_PATH_BT, false,
+					   true);
 
 		pBtCoexist->bStopCoexDm = true;
 	} else if (pnpState == BTC_WIFI_PNP_WAKE_UP) {
@@ -2578,17 +2552,16 @@ void EXhalbtc8723b1ant_Periodical(struct btc_coexist *pBtCoexist)
 
 	if (disVerInfoCnt <= 5) {
 		disVerInfoCnt += 1;
-		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_BT_PATCH_VER, &btPatchVer);
+		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_BT_PATCH_VER,
+				    &btPatchVer);
 		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_FW_VER, &fwVer);
 	}
 
 	halbtc8723b1ant_MonitorBtCtr(pBtCoexist);
 	halbtc8723b1ant_MonitorWiFiCtr(pBtCoexist);
 
-	if (
-		halbtc8723b1ant_IsWifiStatusChanged(pBtCoexist) ||
-		pCoexDm->bAutoTdmaAdjust
-	)
+	if (halbtc8723b1ant_IsWifiStatusChanged(pBtCoexist) ||
+	    pCoexDm->bAutoTdmaAdjust)
 		halbtc8723b1ant_RunCoexistMechanism(pBtCoexist);
 
 	pCoexSta->specialPktPeriodCnt++;
diff --git a/drivers/staging/rtl8723bs/hal/HalBtc8723b1Ant.h b/drivers/staging/rtl8723bs/hal/HalBtc8723b1Ant.h
index 7a12d92da0a91..b7799124cdae6 100644
--- a/drivers/staging/rtl8723bs/hal/HalBtc8723b1Ant.h
+++ b/drivers/staging/rtl8723bs/hal/HalBtc8723b1Ant.h
@@ -5,62 +5,62 @@
  *
  ******************************************************************************/
 /*  The following is for 8723B 1ANT BT Co-exist definition */
-#define	BT_INFO_8723B_1ANT_B_FTP		BIT(7)
-#define	BT_INFO_8723B_1ANT_B_A2DP		BIT(6)
-#define	BT_INFO_8723B_1ANT_B_HID		BIT(5)
-#define	BT_INFO_8723B_1ANT_B_SCO_BUSY		BIT(4)
-#define	BT_INFO_8723B_1ANT_B_ACL_BUSY		BIT(3)
-#define	BT_INFO_8723B_1ANT_B_INQ_PAGE		BIT(2)
-#define	BT_INFO_8723B_1ANT_B_SCO_ESCO		BIT(1)
-#define	BT_INFO_8723B_1ANT_B_CONNECTION		BIT(0)
+#define BT_INFO_8723B_1ANT_B_FTP BIT(7)
+#define BT_INFO_8723B_1ANT_B_A2DP BIT(6)
+#define BT_INFO_8723B_1ANT_B_HID BIT(5)
+#define BT_INFO_8723B_1ANT_B_SCO_BUSY BIT(4)
+#define BT_INFO_8723B_1ANT_B_ACL_BUSY BIT(3)
+#define BT_INFO_8723B_1ANT_B_INQ_PAGE BIT(2)
+#define BT_INFO_8723B_1ANT_B_SCO_ESCO BIT(1)
+#define BT_INFO_8723B_1ANT_B_CONNECTION BIT(0)
 
-#define	BT_INFO_8723B_1ANT_A2DP_BASIC_RATE(_BT_INFO_EXT_)	\
-		(((_BT_INFO_EXT_ & BIT(0))) ? true : false)
+#define BT_INFO_8723B_1ANT_A2DP_BASIC_RATE(_BT_INFO_EXT_) \
+	(((_BT_INFO_EXT_ & BIT(0))) ? true : false)
 
-#define	BTC_RSSI_COEX_THRESH_TOL_8723B_1ANT 2
+#define BTC_RSSI_COEX_THRESH_TOL_8723B_1ANT 2
 
-#define  BT_8723B_1ANT_WIFI_NOISY_THRESH 30   /* max: 255 */
+#define BT_8723B_1ANT_WIFI_NOISY_THRESH 30 /* max: 255 */
 
 enum {
-	BT_INFO_SRC_8723B_1ANT_WIFI_FW			= 0x0,
-	BT_INFO_SRC_8723B_1ANT_BT_RSP				= 0x1,
-	BT_INFO_SRC_8723B_1ANT_BT_ACTIVE_SEND		= 0x2,
+	BT_INFO_SRC_8723B_1ANT_WIFI_FW = 0x0,
+	BT_INFO_SRC_8723B_1ANT_BT_RSP = 0x1,
+	BT_INFO_SRC_8723B_1ANT_BT_ACTIVE_SEND = 0x2,
 	BT_INFO_SRC_8723B_1ANT_MAX
 };
 
 enum {
-	BT_8723B_1ANT_BT_STATUS_NON_CONNECTED_IDLE	= 0x0,
-	BT_8723B_1ANT_BT_STATUS_CONNECTED_IDLE		= 0x1,
-	BT_8723B_1ANT_BT_STATUS_INQ_PAGE				= 0x2,
-	BT_8723B_1ANT_BT_STATUS_ACL_BUSY				= 0x3,
-	BT_8723B_1ANT_BT_STATUS_SCO_BUSY				= 0x4,
-	BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY			= 0x5,
+	BT_8723B_1ANT_BT_STATUS_NON_CONNECTED_IDLE = 0x0,
+	BT_8723B_1ANT_BT_STATUS_CONNECTED_IDLE = 0x1,
+	BT_8723B_1ANT_BT_STATUS_INQ_PAGE = 0x2,
+	BT_8723B_1ANT_BT_STATUS_ACL_BUSY = 0x3,
+	BT_8723B_1ANT_BT_STATUS_SCO_BUSY = 0x4,
+	BT_8723B_1ANT_BT_STATUS_ACL_SCO_BUSY = 0x5,
 	BT_8723B_1ANT_BT_STATUS_MAX
 };
 
 enum {
-	BT_8723B_1ANT_WIFI_STATUS_NON_CONNECTED_IDLE           = 0x0,
+	BT_8723B_1ANT_WIFI_STATUS_NON_CONNECTED_IDLE = 0x0,
 	BT_8723B_1ANT_WIFI_STATUS_NON_CONNECTED_ASSO_AUTH_SCAN = 0x1,
-	BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SCAN               = 0x2,
-	BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SPECIAL_PKT        = 0x3,
-	BT_8723B_1ANT_WIFI_STATUS_CONNECTED_IDLE               = 0x4,
-	BT_8723B_1ANT_WIFI_STATUS_CONNECTED_BUSY               = 0x5,
+	BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SCAN = 0x2,
+	BT_8723B_1ANT_WIFI_STATUS_CONNECTED_SPECIAL_PKT = 0x3,
+	BT_8723B_1ANT_WIFI_STATUS_CONNECTED_IDLE = 0x4,
+	BT_8723B_1ANT_WIFI_STATUS_CONNECTED_BUSY = 0x5,
 	BT_8723B_1ANT_WIFI_STATUS_MAX
 };
 
 enum {
-	BT_8723B_1ANT_COEX_ALGO_UNDEFINED		= 0x0,
-	BT_8723B_1ANT_COEX_ALGO_SCO				= 0x1,
-	BT_8723B_1ANT_COEX_ALGO_HID				= 0x2,
-	BT_8723B_1ANT_COEX_ALGO_A2DP			= 0x3,
-	BT_8723B_1ANT_COEX_ALGO_A2DP_PANHS		= 0x4,
-	BT_8723B_1ANT_COEX_ALGO_PANEDR			= 0x5,
-	BT_8723B_1ANT_COEX_ALGO_PANHS			= 0x6,
-	BT_8723B_1ANT_COEX_ALGO_PANEDR_A2DP		= 0x7,
-	BT_8723B_1ANT_COEX_ALGO_PANEDR_HID		= 0x8,
-	BT_8723B_1ANT_COEX_ALGO_HID_A2DP_PANEDR	= 0x9,
-	BT_8723B_1ANT_COEX_ALGO_HID_A2DP		= 0xa,
-	BT_8723B_1ANT_COEX_ALGO_MAX				= 0xb,
+	BT_8723B_1ANT_COEX_ALGO_UNDEFINED = 0x0,
+	BT_8723B_1ANT_COEX_ALGO_SCO = 0x1,
+	BT_8723B_1ANT_COEX_ALGO_HID = 0x2,
+	BT_8723B_1ANT_COEX_ALGO_A2DP = 0x3,
+	BT_8723B_1ANT_COEX_ALGO_A2DP_PANHS = 0x4,
+	BT_8723B_1ANT_COEX_ALGO_PANEDR = 0x5,
+	BT_8723B_1ANT_COEX_ALGO_PANHS = 0x6,
+	BT_8723B_1ANT_COEX_ALGO_PANEDR_A2DP = 0x7,
+	BT_8723B_1ANT_COEX_ALGO_PANEDR_HID = 0x8,
+	BT_8723B_1ANT_COEX_ALGO_HID_A2DP_PANEDR = 0x9,
+	BT_8723B_1ANT_COEX_ALGO_HID_A2DP = 0xa,
+	BT_8723B_1ANT_COEX_ALGO_MAX = 0xb,
 };
 
 struct coex_dm_8723b_1ant {
@@ -94,8 +94,8 @@ struct coex_dm_8723b_1ant {
 	u8 curVal0x6cc;
 	bool bLimitedDig;
 
-	u32 backupArfrCnt1;	/*  Auto Rate Fallback Retry cnt */
-	u32 backupArfrCnt2;	/*  Auto Rate Fallback Retry cnt */
+	u32 backupArfrCnt1; /*  Auto Rate Fallback Retry cnt */
+	u32 backupArfrCnt2; /*  Auto Rate Fallback Retry cnt */
 	u16 backupRetryLimit;
 	u8 backupAmpduMaxTime;
 
@@ -168,17 +168,19 @@ struct coex_sta_8723b_1ant {
 /*  The following is interface which will notify coex module. */
 /*  */
 void EXhalbtc8723b1ant_PowerOnSetting(struct btc_coexist *pBtCoexist);
-void EXhalbtc8723b1ant_InitHwConfig(struct btc_coexist *pBtCoexist, bool bWifiOnly);
+void EXhalbtc8723b1ant_InitHwConfig(struct btc_coexist *pBtCoexist,
+				    bool bWifiOnly);
 void EXhalbtc8723b1ant_InitCoexDm(struct btc_coexist *pBtCoexist);
 void EXhalbtc8723b1ant_IpsNotify(struct btc_coexist *pBtCoexist, u8 type);
 void EXhalbtc8723b1ant_LpsNotify(struct btc_coexist *pBtCoexist, u8 type);
 void EXhalbtc8723b1ant_ScanNotify(struct btc_coexist *pBtCoexist, u8 type);
 void EXhalbtc8723b1ant_ConnectNotify(struct btc_coexist *pBtCoexist, u8 type);
-void EXhalbtc8723b1ant_MediaStatusNotify(struct btc_coexist *pBtCoexist, u8 type);
-void EXhalbtc8723b1ant_SpecialPacketNotify(struct btc_coexist *pBtCoexist, u8 type);
-void EXhalbtc8723b1ant_BtInfoNotify(
-	struct btc_coexist *pBtCoexist, u8 *tmpBuf, u8 length
-);
+void EXhalbtc8723b1ant_MediaStatusNotify(struct btc_coexist *pBtCoexist,
+					 u8 type);
+void EXhalbtc8723b1ant_SpecialPacketNotify(struct btc_coexist *pBtCoexist,
+					   u8 type);
+void EXhalbtc8723b1ant_BtInfoNotify(struct btc_coexist *pBtCoexist, u8 *tmpBuf,
+				    u8 length);
 void EXhalbtc8723b1ant_HaltNotify(struct btc_coexist *pBtCoexist);
 void EXhalbtc8723b1ant_PnpNotify(struct btc_coexist *pBtCoexist, u8 pnpState);
 void EXhalbtc8723b1ant_Periodical(struct btc_coexist *pBtCoexist);
diff --git a/drivers/staging/rtl8723bs/hal/HalBtc8723b2Ant.c b/drivers/staging/rtl8723bs/hal/HalBtc8723b2Ant.c
index 6da6940c90439..0faaae8bae0b9 100644
--- a/drivers/staging/rtl8723bs/hal/HalBtc8723b2Ant.c
+++ b/drivers/staging/rtl8723bs/hal/HalBtc8723b2Ant.c
@@ -8,11 +8,11 @@
 #include "Mp_Precomp.h"
 
 /* defines */
-#define HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(val)			      \
-do {									      \
-	halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, val);           \
-	pCoexDm->psTdmaDuAdjType = val;                                       \
-} while (0)
+#define HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(val)                           \
+	do {                                                                \
+		halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, val); \
+		pCoexDm->psTdmaDuAdjType = val;                             \
+	} while (0)
 
 /*  Global variables, these are static variables */
 static struct coex_dm_8723b_2ant GLCoexDm8723b2Ant;
@@ -21,9 +21,8 @@ static struct coex_sta_8723b_2ant GLCoexSta8723b2Ant;
 static struct coex_sta_8723b_2ant *pCoexSta = &GLCoexSta8723b2Ant;
 
 /*  local function start with halbtc8723b2ant_ */
-static u8 halbtc8723b2ant_BtRssiState(
-	u8 levelNum, u8 rssiThresh, u8 rssiThresh1
-)
+static u8 halbtc8723b2ant_BtRssiState(u8 levelNum, u8 rssiThresh,
+				      u8 rssiThresh1)
 {
 	s32 btRssi = 0;
 	u8 btRssiState = pCoexSta->preBtRssiState;
@@ -31,11 +30,10 @@ static u8 halbtc8723b2ant_BtRssiState(
 	btRssi = pCoexSta->btRssi;
 
 	if (levelNum == 2) {
-		if (
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_LOW) ||
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_STAY_LOW)
-		) {
-			if (btRssi >= (rssiThresh + BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
+		if ((pCoexSta->preBtRssiState == BTC_RSSI_STATE_LOW) ||
+		    (pCoexSta->preBtRssiState == BTC_RSSI_STATE_STAY_LOW)) {
+			if (btRssi >= (rssiThresh +
+				       BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
 				btRssiState = BTC_RSSI_STATE_HIGH;
 			} else {
 				btRssiState = BTC_RSSI_STATE_STAY_LOW;
@@ -52,20 +50,20 @@ static u8 halbtc8723b2ant_BtRssiState(
 			return pCoexSta->preBtRssiState;
 		}
 
-		if (
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_LOW) ||
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_STAY_LOW)
-		) {
-			if (btRssi >= (rssiThresh + BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
+		if ((pCoexSta->preBtRssiState == BTC_RSSI_STATE_LOW) ||
+		    (pCoexSta->preBtRssiState == BTC_RSSI_STATE_STAY_LOW)) {
+			if (btRssi >= (rssiThresh +
+				       BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
 				btRssiState = BTC_RSSI_STATE_MEDIUM;
 			} else {
 				btRssiState = BTC_RSSI_STATE_STAY_LOW;
 			}
-		} else if (
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_MEDIUM) ||
-			(pCoexSta->preBtRssiState == BTC_RSSI_STATE_STAY_MEDIUM)
-		) {
-			if (btRssi >= (rssiThresh1 + BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
+		} else if ((pCoexSta->preBtRssiState ==
+			    BTC_RSSI_STATE_MEDIUM) ||
+			   (pCoexSta->preBtRssiState ==
+			    BTC_RSSI_STATE_STAY_MEDIUM)) {
+			if (btRssi >= (rssiThresh1 +
+				       BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
 				btRssiState = BTC_RSSI_STATE_HIGH;
 			} else if (btRssi < rssiThresh) {
 				btRssiState = BTC_RSSI_STATE_LOW;
@@ -86,13 +84,9 @@ static u8 halbtc8723b2ant_BtRssiState(
 	return btRssiState;
 }
 
-static u8 halbtc8723b2ant_WifiRssiState(
-	struct btc_coexist *pBtCoexist,
-	u8 index,
-	u8 levelNum,
-	u8 rssiThresh,
-	u8 rssiThresh1
-)
+static u8 halbtc8723b2ant_WifiRssiState(struct btc_coexist *pBtCoexist,
+					u8 index, u8 levelNum, u8 rssiThresh,
+					u8 rssiThresh1)
 {
 	s32 wifiRssi = 0;
 	u8 wifiRssiState = pCoexSta->preWifiRssiState[index];
@@ -100,11 +94,11 @@ static u8 halbtc8723b2ant_WifiRssiState(
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_S4_WIFI_RSSI, &wifiRssi);
 
 	if (levelNum == 2) {
-		if (
-			(pCoexSta->preWifiRssiState[index] == BTC_RSSI_STATE_LOW) ||
-			(pCoexSta->preWifiRssiState[index] == BTC_RSSI_STATE_STAY_LOW)
-		) {
-			if (wifiRssi >= (rssiThresh + BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
+		if ((pCoexSta->preWifiRssiState[index] == BTC_RSSI_STATE_LOW) ||
+		    (pCoexSta->preWifiRssiState[index] ==
+		     BTC_RSSI_STATE_STAY_LOW)) {
+			if (wifiRssi >= (rssiThresh +
+					 BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
 				wifiRssiState = BTC_RSSI_STATE_HIGH;
 			} else {
 				wifiRssiState = BTC_RSSI_STATE_STAY_LOW;
@@ -121,20 +115,21 @@ static u8 halbtc8723b2ant_WifiRssiState(
 			return pCoexSta->preWifiRssiState[index];
 		}
 
-		if (
-			(pCoexSta->preWifiRssiState[index] == BTC_RSSI_STATE_LOW) ||
-			(pCoexSta->preWifiRssiState[index] == BTC_RSSI_STATE_STAY_LOW)
-		) {
-			if (wifiRssi >= (rssiThresh + BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
+		if ((pCoexSta->preWifiRssiState[index] == BTC_RSSI_STATE_LOW) ||
+		    (pCoexSta->preWifiRssiState[index] ==
+		     BTC_RSSI_STATE_STAY_LOW)) {
+			if (wifiRssi >= (rssiThresh +
+					 BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
 				wifiRssiState = BTC_RSSI_STATE_MEDIUM;
 			} else {
 				wifiRssiState = BTC_RSSI_STATE_STAY_LOW;
 			}
-		} else if (
-			(pCoexSta->preWifiRssiState[index] == BTC_RSSI_STATE_MEDIUM) ||
-			(pCoexSta->preWifiRssiState[index] == BTC_RSSI_STATE_STAY_MEDIUM)
-		) {
-			if (wifiRssi >= (rssiThresh1 + BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
+		} else if ((pCoexSta->preWifiRssiState[index] ==
+			    BTC_RSSI_STATE_MEDIUM) ||
+			   (pCoexSta->preWifiRssiState[index] ==
+			    BTC_RSSI_STATE_STAY_MEDIUM)) {
+			if (wifiRssi >= (rssiThresh1 +
+					 BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT)) {
 				wifiRssiState = BTC_RSSI_STATE_HIGH;
 			} else if (wifiRssi < rssiThresh) {
 				wifiRssiState = BTC_RSSI_STATE_LOW;
@@ -155,13 +150,9 @@ static u8 halbtc8723b2ant_WifiRssiState(
 	return wifiRssiState;
 }
 
-static void halbtc8723b2ant_LimitedRx(
-	struct btc_coexist *pBtCoexist,
-	bool bForceExec,
-	bool bRejApAggPkt,
-	bool bBtCtrlAggBufSize,
-	u8 aggBufSize
-)
+static void halbtc8723b2ant_LimitedRx(struct btc_coexist *pBtCoexist,
+				      bool bForceExec, bool bRejApAggPkt,
+				      bool bBtCtrlAggBufSize, u8 aggBufSize)
 {
 	bool bRejectRxAgg = bRejApAggPkt;
 	bool bBtCtrlRxAggSize = bBtCtrlAggBufSize;
@@ -170,9 +161,11 @@ static void halbtc8723b2ant_LimitedRx(
 	/*  */
 	/* 	Rx Aggregation related setting */
 	/*  */
-	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_TO_REJ_AP_AGG_PKT, &bRejectRxAgg);
+	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_TO_REJ_AP_AGG_PKT,
+			    &bRejectRxAgg);
 	/*  decide BT control aggregation buf size or not */
-	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_BT_CTRL_AGG_SIZE, &bBtCtrlRxAggSize);
+	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_BT_CTRL_AGG_SIZE,
+			    &bBtCtrlRxAggSize);
 	/*  aggregation buf size, only work when BT control Rx aggregation size. */
 	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_U1_AGG_BUF_SIZE, &rxAggSize);
 	/*  real update aggregation setting */
@@ -181,25 +174,27 @@ static void halbtc8723b2ant_LimitedRx(
 
 static void halbtc8723b2ant_QueryBtInfo(struct btc_coexist *pBtCoexist)
 {
-	u8 	H2C_Parameter[1] = {0};
+	u8 H2C_Parameter[1] = { 0 };
 
 	pCoexSta->bC2hBtInfoReqSent = true;
 
-	H2C_Parameter[0] |= BIT(0);	/*  trigger */
+	H2C_Parameter[0] |= BIT(0); /*  trigger */
 
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x61, 1, H2C_Parameter);
 }
 
 static bool halbtc8723b2ant_IsWifiStatusChanged(struct btc_coexist *pBtCoexist)
 {
-	static bool	bPreWifiBusy, bPreUnder4way, bPreBtHsOn;
+	static bool bPreWifiBusy, bPreUnder4way, bPreBtHsOn;
 	bool bWifiBusy = false, bUnder4way = false, bBtHsOn = false;
 	bool bWifiConnected = false;
 
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED, &bWifiConnected);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED,
+			    &bWifiConnected);
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_BUSY, &bWifiBusy);
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_HS_OPERATION, &bBtHsOn);
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_4_WAY_PROGRESS, &bUnder4way);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_4_WAY_PROGRESS,
+			    &bUnder4way);
 
 	if (bWifiConnected) {
 		if (bWifiBusy != bPreWifiBusy) {
@@ -241,45 +236,29 @@ static void halbtc8723b2ant_UpdateBtLinkInfo(struct btc_coexist *pBtCoexist)
 	}
 
 	/*  check if Sco only */
-	if (
-		pBtLinkInfo->bScoExist &&
-		!pBtLinkInfo->bA2dpExist &&
-		!pBtLinkInfo->bPanExist &&
-		!pBtLinkInfo->bHidExist
-	)
+	if (pBtLinkInfo->bScoExist && !pBtLinkInfo->bA2dpExist &&
+	    !pBtLinkInfo->bPanExist && !pBtLinkInfo->bHidExist)
 		pBtLinkInfo->bScoOnly = true;
 	else
 		pBtLinkInfo->bScoOnly = false;
 
 	/*  check if A2dp only */
-	if (
-		!pBtLinkInfo->bScoExist &&
-		pBtLinkInfo->bA2dpExist &&
-		!pBtLinkInfo->bPanExist &&
-		!pBtLinkInfo->bHidExist
-	)
+	if (!pBtLinkInfo->bScoExist && pBtLinkInfo->bA2dpExist &&
+	    !pBtLinkInfo->bPanExist && !pBtLinkInfo->bHidExist)
 		pBtLinkInfo->bA2dpOnly = true;
 	else
 		pBtLinkInfo->bA2dpOnly = false;
 
 	/*  check if Pan only */
-	if (
-		!pBtLinkInfo->bScoExist &&
-		!pBtLinkInfo->bA2dpExist &&
-		pBtLinkInfo->bPanExist &&
-		!pBtLinkInfo->bHidExist
-	)
+	if (!pBtLinkInfo->bScoExist && !pBtLinkInfo->bA2dpExist &&
+	    pBtLinkInfo->bPanExist && !pBtLinkInfo->bHidExist)
 		pBtLinkInfo->bPanOnly = true;
 	else
 		pBtLinkInfo->bPanOnly = false;
 
 	/*  check if Hid only */
-	if (
-		!pBtLinkInfo->bScoExist &&
-		!pBtLinkInfo->bA2dpExist &&
-		!pBtLinkInfo->bPanExist &&
-		pBtLinkInfo->bHidExist
-	)
+	if (!pBtLinkInfo->bScoExist && !pBtLinkInfo->bA2dpExist &&
+	    !pBtLinkInfo->bPanExist && pBtLinkInfo->bHidExist)
 		pBtLinkInfo->bHidOnly = true;
 	else
 		pBtLinkInfo->bHidOnly = false;
@@ -319,9 +298,11 @@ static u8 halbtc8723b2ant_ActionAlgorithm(struct btc_coexist *pBtCoexist)
 				algorithm = BT_8723B_2ANT_COEX_ALGO_A2DP;
 			} else if (pBtLinkInfo->bPanExist) {
 				if (bBtHsOn) {
-					algorithm = BT_8723B_2ANT_COEX_ALGO_PANHS;
+					algorithm =
+						BT_8723B_2ANT_COEX_ALGO_PANHS;
 				} else {
-					algorithm = BT_8723B_2ANT_COEX_ALGO_PANEDR;
+					algorithm =
+						BT_8723B_2ANT_COEX_ALGO_PANEDR;
 				}
 			}
 		}
@@ -335,76 +316,63 @@ static u8 halbtc8723b2ant_ActionAlgorithm(struct btc_coexist *pBtCoexist)
 				if (bBtHsOn) {
 					algorithm = BT_8723B_2ANT_COEX_ALGO_SCO;
 				} else {
-					algorithm = BT_8723B_2ANT_COEX_ALGO_PANEDR_HID;
+					algorithm =
+						BT_8723B_2ANT_COEX_ALGO_PANEDR_HID;
 				}
 			}
 		} else {
-			if (
-				pBtLinkInfo->bHidExist &&
-				pBtLinkInfo->bA2dpExist
-			) {
+			if (pBtLinkInfo->bHidExist && pBtLinkInfo->bA2dpExist) {
 				algorithm = BT_8723B_2ANT_COEX_ALGO_HID_A2DP;
-			} else if (
-				pBtLinkInfo->bHidExist &&
-				pBtLinkInfo->bPanExist
-			) {
+			} else if (pBtLinkInfo->bHidExist &&
+				   pBtLinkInfo->bPanExist) {
 				if (bBtHsOn) {
 					algorithm = BT_8723B_2ANT_COEX_ALGO_HID;
 				} else {
-					algorithm = BT_8723B_2ANT_COEX_ALGO_PANEDR_HID;
+					algorithm =
+						BT_8723B_2ANT_COEX_ALGO_PANEDR_HID;
 				}
-			} else if (
-				pBtLinkInfo->bPanExist &&
-				pBtLinkInfo->bA2dpExist
-			) {
+			} else if (pBtLinkInfo->bPanExist &&
+				   pBtLinkInfo->bA2dpExist) {
 				if (bBtHsOn) {
-					algorithm = BT_8723B_2ANT_COEX_ALGO_A2DP_PANHS;
+					algorithm =
+						BT_8723B_2ANT_COEX_ALGO_A2DP_PANHS;
 				} else {
-					algorithm = BT_8723B_2ANT_COEX_ALGO_PANEDR_A2DP;
+					algorithm =
+						BT_8723B_2ANT_COEX_ALGO_PANEDR_A2DP;
 				}
 			}
 		}
 	} else if (numOfDiffProfile == 3) {
 		if (pBtLinkInfo->bScoExist) {
-			if (
-				pBtLinkInfo->bHidExist &&
-				pBtLinkInfo->bA2dpExist
-			) {
+			if (pBtLinkInfo->bHidExist && pBtLinkInfo->bA2dpExist) {
 				algorithm = BT_8723B_2ANT_COEX_ALGO_PANEDR_HID;
-			} else if (
-				pBtLinkInfo->bHidExist &&
-				pBtLinkInfo->bPanExist
-			) {
+			} else if (pBtLinkInfo->bHidExist &&
+				   pBtLinkInfo->bPanExist) {
 				algorithm = BT_8723B_2ANT_COEX_ALGO_PANEDR_HID;
-			} else if (
-				pBtLinkInfo->bPanExist &&
-				pBtLinkInfo->bA2dpExist
-			) {
+			} else if (pBtLinkInfo->bPanExist &&
+				   pBtLinkInfo->bA2dpExist) {
 				algorithm = BT_8723B_2ANT_COEX_ALGO_PANEDR_HID;
 			}
 		} else {
-			if (
-				pBtLinkInfo->bHidExist &&
-				pBtLinkInfo->bPanExist &&
-				pBtLinkInfo->bA2dpExist
-			) {
+			if (pBtLinkInfo->bHidExist && pBtLinkInfo->bPanExist &&
+			    pBtLinkInfo->bA2dpExist) {
 				if (bBtHsOn) {
-					algorithm = BT_8723B_2ANT_COEX_ALGO_HID_A2DP;
+					algorithm =
+						BT_8723B_2ANT_COEX_ALGO_HID_A2DP;
 				} else {
-					algorithm = BT_8723B_2ANT_COEX_ALGO_HID_A2DP_PANEDR;
+					algorithm =
+						BT_8723B_2ANT_COEX_ALGO_HID_A2DP_PANEDR;
 				}
 			}
 		}
 	} else if (numOfDiffProfile >= 3) {
 		if (pBtLinkInfo->bScoExist) {
-			if (
-				pBtLinkInfo->bHidExist &&
-				pBtLinkInfo->bPanExist &&
-				pBtLinkInfo->bA2dpExist
-			) {
+			if (pBtLinkInfo->bHidExist && pBtLinkInfo->bPanExist &&
+			    pBtLinkInfo->bA2dpExist) {
 				if (bBtHsOn) {
 				} else {
-					algorithm = BT_8723B_2ANT_COEX_ALGO_PANEDR_HID;
+					algorithm =
+						BT_8723B_2ANT_COEX_ALGO_PANEDR_HID;
 				}
 			}
 		}
@@ -413,11 +381,10 @@ static u8 halbtc8723b2ant_ActionAlgorithm(struct btc_coexist *pBtCoexist)
 	return algorithm;
 }
 
-static void halbtc8723b2ant_SetFwDacSwingLevel(
-	struct btc_coexist *pBtCoexist, u8 dacSwingLvl
-)
+static void halbtc8723b2ant_SetFwDacSwingLevel(struct btc_coexist *pBtCoexist,
+					       u8 dacSwingLvl)
 {
-	u8 	H2C_Parameter[1] = {0};
+	u8 H2C_Parameter[1] = { 0 };
 
 	/*  There are several type of dacswing */
 	/*  0x18/ 0x10/ 0xc/ 0x8/ 0x4/ 0x6 */
@@ -426,20 +393,18 @@ static void halbtc8723b2ant_SetFwDacSwingLevel(
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x64, 1, H2C_Parameter);
 }
 
-static void halbtc8723b2ant_SetFwDecBtPwr(
-	struct btc_coexist *pBtCoexist, u8 decBtPwrLvl
-)
+static void halbtc8723b2ant_SetFwDecBtPwr(struct btc_coexist *pBtCoexist,
+					  u8 decBtPwrLvl)
 {
-	u8 	H2C_Parameter[1] = {0};
+	u8 H2C_Parameter[1] = { 0 };
 
 	H2C_Parameter[0] = decBtPwrLvl;
 
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x62, 1, H2C_Parameter);
 }
 
-static void halbtc8723b2ant_DecBtPwr(
-	struct btc_coexist *pBtCoexist, bool bForceExec, u8 decBtPwrLvl
-)
+static void halbtc8723b2ant_DecBtPwr(struct btc_coexist *pBtCoexist,
+				     bool bForceExec, u8 decBtPwrLvl)
 {
 	pCoexDm->curBtDecPwrLvl = decBtPwrLvl;
 
@@ -452,9 +417,8 @@ static void halbtc8723b2ant_DecBtPwr(
 	pCoexDm->preBtDecPwrLvl = pCoexDm->curBtDecPwrLvl;
 }
 
-static void halbtc8723b2ant_FwDacSwingLvl(
-	struct btc_coexist *pBtCoexist, bool bForceExec, u8 fwDacSwingLvl
-)
+static void halbtc8723b2ant_FwDacSwingLvl(struct btc_coexist *pBtCoexist,
+					  bool bForceExec, u8 fwDacSwingLvl)
 {
 	pCoexDm->curFwDacSwingLvl = fwDacSwingLvl;
 
@@ -463,31 +427,32 @@ static void halbtc8723b2ant_FwDacSwingLvl(
 			return;
 	}
 
-	halbtc8723b2ant_SetFwDacSwingLevel(pBtCoexist, pCoexDm->curFwDacSwingLvl);
+	halbtc8723b2ant_SetFwDacSwingLevel(pBtCoexist,
+					   pCoexDm->curFwDacSwingLvl);
 
 	pCoexDm->preFwDacSwingLvl = pCoexDm->curFwDacSwingLvl;
 }
 
-static void halbtc8723b2ant_SetSwRfRxLpfCorner(
-	struct btc_coexist *pBtCoexist,
-	bool bRxRfShrinkOn
-)
+static void halbtc8723b2ant_SetSwRfRxLpfCorner(struct btc_coexist *pBtCoexist,
+					       bool bRxRfShrinkOn)
 {
 	if (bRxRfShrinkOn) {
 		/* Shrink RF Rx LPF corner */
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1e, 0xfffff, 0xffffc);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1e, 0xfffff,
+					 0xffffc);
 	} else {
 		/* Resume RF Rx LPF corner */
 		/*  After initialized, we can use pCoexDm->btRf0x1eBackup */
 		if (pBtCoexist->bInitilized) {
-			pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1e, 0xfffff, pCoexDm->btRf0x1eBackup);
+			pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1e,
+						 0xfffff,
+						 pCoexDm->btRf0x1eBackup);
 		}
 	}
 }
 
-static void halbtc8723b2ant_RfShrink(
-	struct btc_coexist *pBtCoexist, bool bForceExec, bool bRxRfShrinkOn
-)
+static void halbtc8723b2ant_RfShrink(struct btc_coexist *pBtCoexist,
+				     bool bForceExec, bool bRxRfShrinkOn)
 {
 	pCoexDm->bCurRfRxLpfShrink = bRxRfShrinkOn;
 
@@ -495,33 +460,34 @@ static void halbtc8723b2ant_RfShrink(
 		if (pCoexDm->bPreRfRxLpfShrink == pCoexDm->bCurRfRxLpfShrink)
 			return;
 	}
-	halbtc8723b2ant_SetSwRfRxLpfCorner(pBtCoexist, pCoexDm->bCurRfRxLpfShrink);
+	halbtc8723b2ant_SetSwRfRxLpfCorner(pBtCoexist,
+					   pCoexDm->bCurRfRxLpfShrink);
 
 	pCoexDm->bPreRfRxLpfShrink = pCoexDm->bCurRfRxLpfShrink;
 }
 
-static void halbtc8723b2ant_SetSwPenaltyTxRateAdaptive(
-	struct btc_coexist *pBtCoexist, bool bLowPenaltyRa
-)
+static void
+halbtc8723b2ant_SetSwPenaltyTxRateAdaptive(struct btc_coexist *pBtCoexist,
+					   bool bLowPenaltyRa)
 {
-	u8 	H2C_Parameter[6] = {0};
+	u8 H2C_Parameter[6] = { 0 };
 
-	H2C_Parameter[0] = 0x6;	/*  opCode, 0x6 = Retry_Penalty */
+	H2C_Parameter[0] = 0x6; /*  opCode, 0x6 = Retry_Penalty */
 
 	if (bLowPenaltyRa) {
 		H2C_Parameter[1] |= BIT(0);
-		H2C_Parameter[2] = 0x00;  /* normal rate except MCS7/6/5, OFDM54/48/36 */
-		H2C_Parameter[3] = 0xf7;  /* MCS7 or OFDM54 */
-		H2C_Parameter[4] = 0xf8;  /* MCS6 or OFDM48 */
-		H2C_Parameter[5] = 0xf9;	/* MCS5 or OFDM36 */
+		H2C_Parameter[2] =
+			0x00; /* normal rate except MCS7/6/5, OFDM54/48/36 */
+		H2C_Parameter[3] = 0xf7; /* MCS7 or OFDM54 */
+		H2C_Parameter[4] = 0xf8; /* MCS6 or OFDM48 */
+		H2C_Parameter[5] = 0xf9; /* MCS5 or OFDM36 */
 	}
 
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x69, 6, H2C_Parameter);
 }
 
-static void halbtc8723b2ant_LowPenaltyRa(
-	struct btc_coexist *pBtCoexist, bool bForceExec, bool bLowPenaltyRa
-)
+static void halbtc8723b2ant_LowPenaltyRa(struct btc_coexist *pBtCoexist,
+					 bool bForceExec, bool bLowPenaltyRa)
 {
 	/* return; */
 	pCoexDm->bCurLowPenaltyRa = bLowPenaltyRa;
@@ -530,21 +496,23 @@ static void halbtc8723b2ant_LowPenaltyRa(
 		if (pCoexDm->bPreLowPenaltyRa == pCoexDm->bCurLowPenaltyRa)
 			return;
 	}
-	halbtc8723b2ant_SetSwPenaltyTxRateAdaptive(pBtCoexist, pCoexDm->bCurLowPenaltyRa);
+	halbtc8723b2ant_SetSwPenaltyTxRateAdaptive(pBtCoexist,
+						   pCoexDm->bCurLowPenaltyRa);
 
 	pCoexDm->bPreLowPenaltyRa = pCoexDm->bCurLowPenaltyRa;
 }
 
-static void halbtc8723b2ant_SetDacSwingReg(struct btc_coexist *pBtCoexist, u32 level)
+static void halbtc8723b2ant_SetDacSwingReg(struct btc_coexist *pBtCoexist,
+					   u32 level)
 {
 	u8 val = (u8)level;
 
 	pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x883, 0x3e, val);
 }
 
-static void halbtc8723b2ant_SetSwFullTimeDacSwing(
-	struct btc_coexist *pBtCoexist, bool bSwDacSwingOn, u32 swDacSwingLvl
-)
+static void
+halbtc8723b2ant_SetSwFullTimeDacSwing(struct btc_coexist *pBtCoexist,
+				      bool bSwDacSwingOn, u32 swDacSwingLvl)
 {
 	if (bSwDacSwingOn)
 		halbtc8723b2ant_SetDacSwingReg(pBtCoexist, swDacSwingLvl);
@@ -552,31 +520,28 @@ static void halbtc8723b2ant_SetSwFullTimeDacSwing(
 		halbtc8723b2ant_SetDacSwingReg(pBtCoexist, 0x18);
 }
 
-static void halbtc8723b2ant_DacSwing(
-	struct btc_coexist *pBtCoexist,
-	bool bForceExec,
-	bool bDacSwingOn,
-	u32 dacSwingLvl
-)
+static void halbtc8723b2ant_DacSwing(struct btc_coexist *pBtCoexist,
+				     bool bForceExec, bool bDacSwingOn,
+				     u32 dacSwingLvl)
 {
 	pCoexDm->bCurDacSwingOn = bDacSwingOn;
 	pCoexDm->curDacSwingLvl = dacSwingLvl;
 
 	if (!bForceExec) {
 		if ((pCoexDm->bPreDacSwingOn == pCoexDm->bCurDacSwingOn) &&
-			(pCoexDm->preDacSwingLvl == pCoexDm->curDacSwingLvl))
+		    (pCoexDm->preDacSwingLvl == pCoexDm->curDacSwingLvl))
 			return;
 	}
 	mdelay(30);
-	halbtc8723b2ant_SetSwFullTimeDacSwing(pBtCoexist, bDacSwingOn, dacSwingLvl);
+	halbtc8723b2ant_SetSwFullTimeDacSwing(pBtCoexist, bDacSwingOn,
+					      dacSwingLvl);
 
 	pCoexDm->bPreDacSwingOn = pCoexDm->bCurDacSwingOn;
 	pCoexDm->preDacSwingLvl = pCoexDm->curDacSwingLvl;
 }
 
-static void halbtc8723b2ant_SetAgcTable(
-	struct btc_coexist *pBtCoexist, bool bAgcTableEn
-)
+static void halbtc8723b2ant_SetAgcTable(struct btc_coexist *pBtCoexist,
+					bool bAgcTableEn)
 {
 	u8 rssiAdjustVal = 0;
 
@@ -602,21 +567,29 @@ static void halbtc8723b2ant_SetAgcTable(
 	/* RF Gain */
 	pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0xef, 0xfffff, 0x02000);
 	if (bAgcTableEn) {
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x3b, 0xfffff, 0x38fff);
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x3b, 0xfffff, 0x38ffe);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x3b, 0xfffff,
+					 0x38fff);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x3b, 0xfffff,
+					 0x38ffe);
 	} else {
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x3b, 0xfffff, 0x380c3);
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x3b, 0xfffff, 0x28ce6);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x3b, 0xfffff,
+					 0x380c3);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x3b, 0xfffff,
+					 0x28ce6);
 	}
 	pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0xef, 0xfffff, 0x0);
 
 	pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0xed, 0xfffff, 0x1);
 	if (bAgcTableEn) {
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x40, 0xfffff, 0x38fff);
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x40, 0xfffff, 0x38ffe);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x40, 0xfffff,
+					 0x38fff);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x40, 0xfffff,
+					 0x38ffe);
 	} else {
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x40, 0xfffff, 0x380c3);
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x40, 0xfffff, 0x28ce6);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x40, 0xfffff,
+					 0x380c3);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x40, 0xfffff,
+					 0x28ce6);
 	}
 	pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0xed, 0xfffff, 0x0);
 
@@ -624,12 +597,13 @@ static void halbtc8723b2ant_SetAgcTable(
 	if (bAgcTableEn)
 		rssiAdjustVal = 8;
 
-	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_U1_RSSI_ADJ_VAL_FOR_AGC_TABLE_ON, &rssiAdjustVal);
+	pBtCoexist->fBtcSet(pBtCoexist,
+			    BTC_SET_U1_RSSI_ADJ_VAL_FOR_AGC_TABLE_ON,
+			    &rssiAdjustVal);
 }
 
-static void halbtc8723b2ant_AgcTable(
-	struct btc_coexist *pBtCoexist, bool bForceExec, bool bAgcTableEn
-)
+static void halbtc8723b2ant_AgcTable(struct btc_coexist *pBtCoexist,
+				     bool bForceExec, bool bAgcTableEn)
 {
 	pCoexDm->bCurAgcTableEn = bAgcTableEn;
 
@@ -642,13 +616,9 @@ static void halbtc8723b2ant_AgcTable(
 	pCoexDm->bPreAgcTableEn = pCoexDm->bCurAgcTableEn;
 }
 
-static void halbtc8723b2ant_SetCoexTable(
-	struct btc_coexist *pBtCoexist,
-	u32 val0x6c0,
-	u32 val0x6c4,
-	u32 val0x6c8,
-	u8 val0x6cc
-)
+static void halbtc8723b2ant_SetCoexTable(struct btc_coexist *pBtCoexist,
+					 u32 val0x6c0, u32 val0x6c4,
+					 u32 val0x6c8, u8 val0x6cc)
 {
 	pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x6c0, val0x6c0);
 
@@ -659,14 +629,9 @@ static void halbtc8723b2ant_SetCoexTable(
 	pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x6cc, val0x6cc);
 }
 
-static void halbtc8723b2ant_CoexTable(
-	struct btc_coexist *pBtCoexist,
-	bool bForceExec,
-	u32 val0x6c0,
-	u32 val0x6c4,
-	u32 val0x6c8,
-	u8 val0x6cc
-)
+static void halbtc8723b2ant_CoexTable(struct btc_coexist *pBtCoexist,
+				      bool bForceExec, u32 val0x6c0,
+				      u32 val0x6c4, u32 val0x6c8, u8 val0x6cc)
 {
 	pCoexDm->curVal0x6c0 = val0x6c0;
 	pCoexDm->curVal0x6c4 = val0x6c4;
@@ -674,15 +639,14 @@ static void halbtc8723b2ant_CoexTable(
 	pCoexDm->curVal0x6cc = val0x6cc;
 
 	if (!bForceExec) {
-		if (
-			(pCoexDm->preVal0x6c0 == pCoexDm->curVal0x6c0) &&
-			(pCoexDm->preVal0x6c4 == pCoexDm->curVal0x6c4) &&
-			(pCoexDm->preVal0x6c8 == pCoexDm->curVal0x6c8) &&
-			(pCoexDm->preVal0x6cc == pCoexDm->curVal0x6cc)
-		)
+		if ((pCoexDm->preVal0x6c0 == pCoexDm->curVal0x6c0) &&
+		    (pCoexDm->preVal0x6c4 == pCoexDm->curVal0x6c4) &&
+		    (pCoexDm->preVal0x6c8 == pCoexDm->curVal0x6c8) &&
+		    (pCoexDm->preVal0x6cc == pCoexDm->curVal0x6cc))
 			return;
 	}
-	halbtc8723b2ant_SetCoexTable(pBtCoexist, val0x6c0, val0x6c4, val0x6c8, val0x6cc);
+	halbtc8723b2ant_SetCoexTable(pBtCoexist, val0x6c0, val0x6c4, val0x6c8,
+				     val0x6cc);
 
 	pCoexDm->preVal0x6c0 = pCoexDm->curVal0x6c0;
 	pCoexDm->preVal0x6c4 = pCoexDm->curVal0x6c4;
@@ -690,70 +654,80 @@ static void halbtc8723b2ant_CoexTable(
 	pCoexDm->preVal0x6cc = pCoexDm->curVal0x6cc;
 }
 
-static void halbtc8723b2ant_CoexTableWithType(
-	struct btc_coexist *pBtCoexist, bool bForceExec, u8 type
-)
+static void halbtc8723b2ant_CoexTableWithType(struct btc_coexist *pBtCoexist,
+					      bool bForceExec, u8 type)
 {
 	switch (type) {
 	case 0:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55555555, 0x55555555, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55555555,
+					  0x55555555, 0xffff, 0x3);
 		break;
 	case 1:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55555555, 0x5afa5afa, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55555555,
+					  0x5afa5afa, 0xffff, 0x3);
 		break;
 	case 2:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x5a5a5a5a, 0x5a5a5a5a, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x5a5a5a5a,
+					  0x5a5a5a5a, 0xffff, 0x3);
 		break;
 	case 3:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0xaaaaaaaa, 0xaaaaaaaa, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0xaaaaaaaa,
+					  0xaaaaaaaa, 0xffff, 0x3);
 		break;
 	case 4:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0xffffffff, 0xffffffff, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0xffffffff,
+					  0xffffffff, 0xffff, 0x3);
 		break;
 	case 5:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x5fff5fff, 0x5fff5fff, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x5fff5fff,
+					  0x5fff5fff, 0xffff, 0x3);
 		break;
 	case 6:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff, 0x5a5a5a5a, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff,
+					  0x5a5a5a5a, 0xffff, 0x3);
 		break;
 	case 7:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff, 0xfafafafa, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff,
+					  0xfafafafa, 0xffff, 0x3);
 		break;
 	case 8:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x5aea5aea, 0x5aea5aea, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x5aea5aea,
+					  0x5aea5aea, 0xffff, 0x3);
 		break;
 	case 9:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff, 0x5aea5aea, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff,
+					  0x5aea5aea, 0xffff, 0x3);
 		break;
 	case 10:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff, 0x5aff5aff, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff,
+					  0x5aff5aff, 0xffff, 0x3);
 		break;
 	case 11:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff, 0x5a5f5a5f, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff,
+					  0x5a5f5a5f, 0xffff, 0x3);
 		break;
 	case 12:
-		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff, 0x5f5f5f5f, 0xffff, 0x3);
+		halbtc8723b2ant_CoexTable(pBtCoexist, bForceExec, 0x55ff55ff,
+					  0x5f5f5f5f, 0xffff, 0x3);
 		break;
 	default:
 		break;
 	}
 }
 
-static void halbtc8723b2ant_SetFwIgnoreWlanAct(
-	struct btc_coexist *pBtCoexist, bool bEnable
-)
+static void halbtc8723b2ant_SetFwIgnoreWlanAct(struct btc_coexist *pBtCoexist,
+					       bool bEnable)
 {
-	u8 	H2C_Parameter[1] = {0};
+	u8 H2C_Parameter[1] = { 0 };
 
 	if (bEnable)
-		H2C_Parameter[0] |= BIT(0);		/*  function enable */
+		H2C_Parameter[0] |= BIT(0); /*  function enable */
 
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x63, 1, H2C_Parameter);
 }
 
-static void halbtc8723b2ant_IgnoreWlanAct(
-	struct btc_coexist *pBtCoexist, bool bForceExec, bool bEnable
-)
+static void halbtc8723b2ant_IgnoreWlanAct(struct btc_coexist *pBtCoexist,
+					  bool bForceExec, bool bEnable)
 {
 	pCoexDm->bCurIgnoreWlanAct = bEnable;
 
@@ -766,16 +740,11 @@ static void halbtc8723b2ant_IgnoreWlanAct(
 	pCoexDm->bPreIgnoreWlanAct = pCoexDm->bCurIgnoreWlanAct;
 }
 
-static void halbtc8723b2ant_SetFwPstdma(
-	struct btc_coexist *pBtCoexist,
-	u8 byte1,
-	u8 byte2,
-	u8 byte3,
-	u8 byte4,
-	u8 byte5
-)
+static void halbtc8723b2ant_SetFwPstdma(struct btc_coexist *pBtCoexist,
+					u8 byte1, u8 byte2, u8 byte3, u8 byte4,
+					u8 byte5)
 {
-	u8 	H2C_Parameter[5] = {0};
+	u8 H2C_Parameter[5] = { 0 };
 
 	H2C_Parameter[0] = byte1;
 	H2C_Parameter[1] = byte2;
@@ -792,42 +761,36 @@ static void halbtc8723b2ant_SetFwPstdma(
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x60, 5, H2C_Parameter);
 }
 
-static void halbtc8723b2ant_SwMechanism1(
-	struct btc_coexist *pBtCoexist,
-	bool bShrinkRxLPF,
-	bool bLowPenaltyRA,
-	bool bLimitedDIG,
-	bool bBTLNAConstrain
-)
+static void halbtc8723b2ant_SwMechanism1(struct btc_coexist *pBtCoexist,
+					 bool bShrinkRxLPF, bool bLowPenaltyRA,
+					 bool bLimitedDIG, bool bBTLNAConstrain)
 {
 	halbtc8723b2ant_RfShrink(pBtCoexist, NORMAL_EXEC, bShrinkRxLPF);
 	halbtc8723b2ant_LowPenaltyRa(pBtCoexist, NORMAL_EXEC, bLowPenaltyRA);
 }
 
-static void halbtc8723b2ant_SwMechanism2(
-	struct btc_coexist *pBtCoexist,
-	bool bAGCTableShift,
-	bool bADCBackOff,
-	bool bSWDACSwing,
-	u32 dacSwingLvl
-)
+static void halbtc8723b2ant_SwMechanism2(struct btc_coexist *pBtCoexist,
+					 bool bAGCTableShift, bool bADCBackOff,
+					 bool bSWDACSwing, u32 dacSwingLvl)
 {
 	halbtc8723b2ant_AgcTable(pBtCoexist, NORMAL_EXEC, bAGCTableShift);
-	halbtc8723b2ant_DacSwing(pBtCoexist, NORMAL_EXEC, bSWDACSwing, dacSwingLvl);
+	halbtc8723b2ant_DacSwing(pBtCoexist, NORMAL_EXEC, bSWDACSwing,
+				 dacSwingLvl);
 }
 
-static void halbtc8723b2ant_SetAntPath(
-	struct btc_coexist *pBtCoexist, u8 antPosType, bool bInitHwCfg, bool bWifiOff
-)
+static void halbtc8723b2ant_SetAntPath(struct btc_coexist *pBtCoexist,
+				       u8 antPosType, bool bInitHwCfg,
+				       bool bWifiOff)
 {
 	struct btc_board_info *pBoardInfo = &pBtCoexist->boardInfo;
 	u32 fwVer = 0, u4Tmp = 0;
 	bool bPgExtSwitch = false;
 	bool bUseExtSwitch = false;
-	u8 	H2C_Parameter[2] = {0};
+	u8 H2C_Parameter[2] = { 0 };
 
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_EXT_SWITCH, &bPgExtSwitch);
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_FW_VER, &fwVer);	/*  [31:16]=fw ver, [15:0]=fw sub ver */
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_FW_VER,
+			    &fwVer); /*  [31:16]=fw ver, [15:0]=fw sub ver */
 
 	if ((fwVer > 0 && fwVer < 0xc0000) || bPgExtSwitch)
 		bUseExtSwitch = true;
@@ -842,15 +805,18 @@ static void halbtc8723b2ant_SetAntPath(
 		if (fwVer >= 0x180000) {
 			/* Use H2C to set GNT_BT to LOW */
 			H2C_Parameter[0] = 0;
-			pBtCoexist->fBtcFillH2c(pBtCoexist, 0x6E, 1, H2C_Parameter);
+			pBtCoexist->fBtcFillH2c(pBtCoexist, 0x6E, 1,
+						H2C_Parameter);
 		} else {
 			pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x765, 0x0);
 		}
 
 		pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x0);
 
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff, 0x0); /* WiFi TRx Mask off */
-		pBtCoexist->fBtcSetBtReg(pBtCoexist, BTC_BT_REG_RF, 0x3c, 0x01); /* BT TRx Mask off */
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff,
+					 0x0); /* WiFi TRx Mask off */
+		pBtCoexist->fBtcSetBtReg(pBtCoexist, BTC_BT_REG_RF, 0x3c,
+					 0x01); /* BT TRx Mask off */
 
 		if (pBoardInfo->btdmAntPos == BTC_ANTENNA_AT_MAIN_PORT) {
 			/* tell firmware "no antenna inverse" */
@@ -880,13 +846,19 @@ static void halbtc8723b2ant_SetAntPath(
 			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x4c, u4Tmp);
 		}
 
-		pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x0); /*  fixed internal switch S1->WiFi, S0->BT */
+		pBtCoexist->fBtcWrite4Byte(
+			pBtCoexist, 0x948,
+			0x0); /*  fixed internal switch S1->WiFi, S0->BT */
 		switch (antPosType) {
 		case BTC_ANT_WIFI_AT_MAIN:
-			pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x92c, 0x3, 0x1);	/*  ext switch main at wifi */
+			pBtCoexist->fBtcWrite1ByteBitMask(
+				pBtCoexist, 0x92c, 0x3,
+				0x1); /*  ext switch main at wifi */
 			break;
 		case BTC_ANT_WIFI_AT_AUX:
-			pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x92c, 0x3, 0x2);	/*  ext switch aux at wifi */
+			pBtCoexist->fBtcWrite1ByteBitMask(
+				pBtCoexist, 0x92c, 0x3,
+				0x2); /*  ext switch aux at wifi */
 			break;
 		}
 	} else { /*  internal switch */
@@ -898,30 +870,33 @@ static void halbtc8723b2ant_SetAntPath(
 			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x4c, u4Tmp);
 		}
 
-		pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x64, 0x1, 0x0); /* fixed external switch S1->Main, S0->Aux */
+		pBtCoexist->fBtcWrite1ByteBitMask(
+			pBtCoexist, 0x64, 0x1,
+			0x0); /* fixed external switch S1->Main, S0->Aux */
 		switch (antPosType) {
 		case BTC_ANT_WIFI_AT_MAIN:
-			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x0); /*  fixed internal switch S1->WiFi, S0->BT */
+			pBtCoexist->fBtcWrite4Byte(
+				pBtCoexist, 0x948,
+				0x0); /*  fixed internal switch S1->WiFi, S0->BT */
 			break;
 		case BTC_ANT_WIFI_AT_AUX:
-			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x280); /*  fixed internal switch S0->WiFi, S1->BT */
+			pBtCoexist->fBtcWrite4Byte(
+				pBtCoexist, 0x948,
+				0x280); /*  fixed internal switch S0->WiFi, S1->BT */
 			break;
 		}
 	}
 }
 
-static void halbtc8723b2ant_PsTdma(
-	struct btc_coexist *pBtCoexist, bool bForceExec, bool bTurnOn, u8 type
-)
+static void halbtc8723b2ant_PsTdma(struct btc_coexist *pBtCoexist,
+				   bool bForceExec, bool bTurnOn, u8 type)
 {
 	pCoexDm->bCurPsTdmaOn = bTurnOn;
 	pCoexDm->curPsTdma = type;
 
 	if (!bForceExec) {
-		if (
-			(pCoexDm->bPrePsTdmaOn == pCoexDm->bCurPsTdmaOn) &&
-			(pCoexDm->prePsTdma == pCoexDm->curPsTdma)
-		)
+		if ((pCoexDm->bPrePsTdmaOn == pCoexDm->bCurPsTdmaOn) &&
+		    (pCoexDm->prePsTdma == pCoexDm->curPsTdma))
 			return;
 	}
 
@@ -929,83 +904,108 @@ static void halbtc8723b2ant_PsTdma(
 		switch (type) {
 		case 1:
 		default:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1a, 0x1a, 0xe1, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1a,
+						    0x1a, 0xe1, 0x90);
 			break;
 		case 2:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x12, 0x12, 0xe1, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x12,
+						    0x12, 0xe1, 0x90);
 			break;
 		case 3:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1c, 0x3, 0xf1, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1c, 0x3,
+						    0xf1, 0x90);
 			break;
 		case 4:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x10, 0x03, 0xf1, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x10,
+						    0x03, 0xf1, 0x90);
 			break;
 		case 5:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1a, 0x1a, 0x60, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1a,
+						    0x1a, 0x60, 0x90);
 			break;
 		case 6:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x12, 0x12, 0x60, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x12,
+						    0x12, 0x60, 0x90);
 			break;
 		case 7:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1c, 0x3, 0x70, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1c, 0x3,
+						    0x70, 0x90);
 			break;
 		case 8:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xa3, 0x10, 0x3, 0x70, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xa3, 0x10, 0x3,
+						    0x70, 0x90);
 			break;
 		case 9:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1a, 0x1a, 0xe1, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1a,
+						    0x1a, 0xe1, 0x90);
 			break;
 		case 10:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x12, 0x12, 0xe1, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x12,
+						    0x12, 0xe1, 0x90);
 			break;
 		case 11:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0xa, 0xa, 0xe1, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0xa, 0xa,
+						    0xe1, 0x90);
 			break;
 		case 12:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x5, 0x5, 0xe1, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x5, 0x5,
+						    0xe1, 0x90);
 			break;
 		case 13:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1a, 0x1a, 0x60, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1a,
+						    0x1a, 0x60, 0x90);
 			break;
 		case 14:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x12, 0x12, 0x60, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x12,
+						    0x12, 0x60, 0x90);
 			break;
 		case 15:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0xa, 0xa, 0x60, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0xa, 0xa,
+						    0x60, 0x90);
 			break;
 		case 16:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x5, 0x5, 0x60, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x5, 0x5,
+						    0x60, 0x90);
 			break;
 		case 17:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xa3, 0x2f, 0x2f, 0x60, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xa3, 0x2f,
+						    0x2f, 0x60, 0x90);
 			break;
 		case 18:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x5, 0x5, 0xe1, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x5, 0x5,
+						    0xe1, 0x90);
 			break;
 		case 19:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x25, 0x25, 0xe1, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x25,
+						    0x25, 0xe1, 0x90);
 			break;
 		case 20:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x25, 0x25, 0x60, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x25,
+						    0x25, 0x60, 0x90);
 			break;
 		case 21:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x15, 0x03, 0x70, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x15,
+						    0x03, 0x70, 0x90);
 			break;
 		case 71:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1a, 0x1a, 0xe1, 0x90);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0xe3, 0x1a,
+						    0x1a, 0xe1, 0x90);
 			break;
 		}
 	} else {
 		/*  disable PS tdma */
 		switch (type) {
 		case 0:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0x0, 0x0, 0x0, 0x40, 0x0);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0x0, 0x0, 0x0,
+						    0x40, 0x0);
 			break;
 		case 1:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0x0, 0x0, 0x0, 0x48, 0x0);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0x0, 0x0, 0x0,
+						    0x48, 0x0);
 			break;
 		default:
-			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0x0, 0x0, 0x0, 0x40, 0x0);
+			halbtc8723b2ant_SetFwPstdma(pBtCoexist, 0x0, 0x0, 0x0,
+						    0x40, 0x0);
 			break;
 		}
 	}
@@ -1048,8 +1048,10 @@ static void halbtc8723b2ant_ActionBtInquiry(struct btc_coexist *pBtCoexist)
 	bool bWifiConnected = false;
 	bool bLowPwrDisable = true;
 
-	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_DISABLE_LOW_POWER, &bLowPwrDisable);
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED, &bWifiConnected);
+	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_DISABLE_LOW_POWER,
+			    &bLowPwrDisable);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED,
+			    &bWifiConnected);
 
 	if (bWifiConnected) {
 		halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 7);
@@ -1068,7 +1070,8 @@ static void halbtc8723b2ant_ActionBtInquiry(struct btc_coexist *pBtCoexist)
 	pCoexDm->bNeedRecover0x948 = true;
 	pCoexDm->backup0x948 = pBtCoexist->fBtcRead4Byte(pBtCoexist, 0x948);
 
-	halbtc8723b2ant_SetAntPath(pBtCoexist, BTC_ANT_WIFI_AT_AUX, false, false);
+	halbtc8723b2ant_SetAntPath(pBtCoexist, BTC_ANT_WIFI_AT_AUX, false,
+				   false);
 }
 
 static bool halbtc8723b2ant_IsCommonAction(struct btc_coexist *pBtCoexist)
@@ -1078,62 +1081,90 @@ static bool halbtc8723b2ant_IsCommonAction(struct btc_coexist *pBtCoexist)
 	bool bBtHsOn = false, bLowPwrDisable = false;
 
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_HS_OPERATION, &bBtHsOn);
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED, &bWifiConnected);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED,
+			    &bWifiConnected);
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_BUSY, &bWifiBusy);
 
 	if (!bWifiConnected) {
 		bLowPwrDisable = false;
-		pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_DISABLE_LOW_POWER, &bLowPwrDisable);
-		halbtc8723b2ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, false, 0x8);
+		pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_DISABLE_LOW_POWER,
+				    &bLowPwrDisable);
+		halbtc8723b2ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, false,
+					  0x8);
 
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff, 0x0);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff,
+					 0x0);
 		halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 0);
 		halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 1);
 		halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC, 6);
 		halbtc8723b2ant_DecBtPwr(pBtCoexist, NORMAL_EXEC, 0);
 
-		halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-		halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+		halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false,
+					     false);
+		halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false,
+					     0x18);
 
 		bCommon = true;
 	} else {
-		if (pCoexDm->btStatus == BT_8723B_2ANT_BT_STATUS_NON_CONNECTED_IDLE) {
+		if (pCoexDm->btStatus ==
+		    BT_8723B_2ANT_BT_STATUS_NON_CONNECTED_IDLE) {
 			bLowPwrDisable = false;
-			pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_DISABLE_LOW_POWER, &bLowPwrDisable);
-			halbtc8723b2ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, false, 0x8);
-
-			pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff, 0x0);
-			halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 0);
-			halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 1);
-			halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC, 0xb);
+			pBtCoexist->fBtcSet(pBtCoexist,
+					    BTC_SET_ACT_DISABLE_LOW_POWER,
+					    &bLowPwrDisable);
+			halbtc8723b2ant_LimitedRx(pBtCoexist, NORMAL_EXEC,
+						  false, false, 0x8);
+
+			pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1,
+						 0xfffff, 0x0);
+			halbtc8723b2ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 0);
+			halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, false,
+					       1);
+			halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC,
+						      0xb);
 			halbtc8723b2ant_DecBtPwr(pBtCoexist, NORMAL_EXEC, 0);
 
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 
 			bCommon = true;
-		} else if (pCoexDm->btStatus == BT_8723B_2ANT_BT_STATUS_CONNECTED_IDLE) {
+		} else if (pCoexDm->btStatus ==
+			   BT_8723B_2ANT_BT_STATUS_CONNECTED_IDLE) {
 			bLowPwrDisable = true;
-			pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_DISABLE_LOW_POWER, &bLowPwrDisable);
+			pBtCoexist->fBtcSet(pBtCoexist,
+					    BTC_SET_ACT_DISABLE_LOW_POWER,
+					    &bLowPwrDisable);
 
 			if (bBtHsOn)
 				return false;
 
-			halbtc8723b2ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, false, 0x8);
-
-			pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff, 0x0);
-			halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 0);
-			halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 1);
-			halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC, 0xb);
+			halbtc8723b2ant_LimitedRx(pBtCoexist, NORMAL_EXEC,
+						  false, false, 0x8);
+
+			pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1,
+						 0xfffff, 0x0);
+			halbtc8723b2ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 0);
+			halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, false,
+					       1);
+			halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC,
+						      0xb);
 			halbtc8723b2ant_DecBtPwr(pBtCoexist, NORMAL_EXEC, 0);
 
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 
 			bCommon = true;
 		} else {
 			bLowPwrDisable = true;
-			pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_ACT_DISABLE_LOW_POWER, &bLowPwrDisable);
+			pBtCoexist->fBtcSet(pBtCoexist,
+					    BTC_SET_ACT_DISABLE_LOW_POWER,
+					    &bLowPwrDisable);
 
 			if (bWifiBusy) {
 				bCommon = false;
@@ -1141,21 +1172,32 @@ static bool halbtc8723b2ant_IsCommonAction(struct btc_coexist *pBtCoexist)
 				if (bBtHsOn)
 					return false;
 
-				btRssiState = halbtc8723b2ant_BtRssiState(2, 29, 0);
-				halbtc8723b2ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, false, 0x8);
-
-				pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff, 0x0);
-				halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 7);
-				halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 21);
-				halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC, 0xb);
+				btRssiState =
+					halbtc8723b2ant_BtRssiState(2, 29, 0);
+				halbtc8723b2ant_LimitedRx(pBtCoexist,
+							  NORMAL_EXEC, false,
+							  false, 0x8);
+
+				pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A,
+							 0x1, 0xfffff, 0x0);
+				halbtc8723b2ant_CoexTableWithType(
+					pBtCoexist, NORMAL_EXEC, 7);
+				halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC,
+						       true, 21);
+				halbtc8723b2ant_FwDacSwingLvl(pBtCoexist,
+							      NORMAL_EXEC, 0xb);
 
 				if (BTC_RSSI_HIGH(btRssiState))
-					halbtc8723b2ant_DecBtPwr(pBtCoexist, NORMAL_EXEC, 2);
+					halbtc8723b2ant_DecBtPwr(
+						pBtCoexist, NORMAL_EXEC, 2);
 				else
-					halbtc8723b2ant_DecBtPwr(pBtCoexist, NORMAL_EXEC, 0);
+					halbtc8723b2ant_DecBtPwr(
+						pBtCoexist, NORMAL_EXEC, 0);
 
-				halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-				halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+				halbtc8723b2ant_SwMechanism1(
+					pBtCoexist, false, false, false, false);
+				halbtc8723b2ant_SwMechanism2(
+					pBtCoexist, false, false, false, 0x18);
 				bCommon = true;
 			}
 		}
@@ -1164,12 +1206,12 @@ static bool halbtc8723b2ant_IsCommonAction(struct btc_coexist *pBtCoexist)
 	return bCommon;
 }
 
-static void halbtc8723b2ant_TdmaDurationAdjust(
-	struct btc_coexist *pBtCoexist, bool bScoHid, bool bTxPause, u8 maxInterval
-)
+static void halbtc8723b2ant_TdmaDurationAdjust(struct btc_coexist *pBtCoexist,
+					       bool bScoHid, bool bTxPause,
+					       u8 maxInterval)
 {
 	static s32 up, dn, m, n, WaitCount;
-	s32 result;   /* 0: no change, +1: increase WiFi duration, -1: decrease WiFi duration */
+	s32 result; /* 0: no change, +1: increase WiFi duration, -1: decrease WiFi duration */
 	u8 retryCount = 0;
 
 	if (!pCoexDm->bAutoTdmaAdjust) {
@@ -1178,34 +1220,46 @@ static void halbtc8723b2ant_TdmaDurationAdjust(
 			if (bScoHid) {
 				if (bTxPause) {
 					if (maxInterval == 1)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(13);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							13);
 					else if (maxInterval == 2)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(14);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							14);
 					else
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							15);
 				} else {
 					if (maxInterval == 1)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(9);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							9);
 					else if (maxInterval == 2)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(10);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							10);
 					else
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							11);
 				}
 			} else {
 				if (bTxPause) {
 					if (maxInterval == 1)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(5);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							5);
 					else if (maxInterval == 2)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(6);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							6);
 					else
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(7);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							7);
 				} else {
 					if (maxInterval == 1)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(1);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							1);
 					else if (maxInterval == 2)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(2);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							2);
 					else
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(3);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							3);
 				}
 			}
 		}
@@ -1222,34 +1276,39 @@ static void halbtc8723b2ant_TdmaDurationAdjust(
 		result = 0;
 		WaitCount++;
 
-		if (retryCount == 0) { /*  no retry in the last 2-second duration */
+		if (retryCount ==
+		    0) { /*  no retry in the last 2-second duration */
 			up++;
 			dn--;
 
 			if (dn <= 0)
 				dn = 0;
 
-			if (up >= n) { /*  if 連續 n 個2秒 retry count為0, 則調寬WiFi duration */
+			if (up >=
+			    n) { /*  if 連續 n 個2秒 retry count為0, 則調寬WiFi duration */
 				WaitCount = 0;
 				n = 3;
 				up = 0;
 				dn = 0;
 				result = 1;
 			}
-		} else if (retryCount <= 3) { /*  <=3 retry in the last 2-second duration */
+		} else if (retryCount <=
+			   3) { /*  <=3 retry in the last 2-second duration */
 			up--;
 			dn++;
 
 			if (up <= 0)
 				up = 0;
 
-			if (dn == 2) { /*  if 連續 2 個2秒 retry count< 3, 則調窄WiFi duration */
+			if (dn ==
+			    2) { /*  if 連續 2 個2秒 retry count< 3, 則調窄WiFi duration */
 				if (WaitCount <= 2)
 					m++; /*  避免一直在兩個level中來回 */
 				else
 					m = 1;
 
-				if (m >= 20) /* m 最大值 = 20 ' 最大120秒 recheck是否調整 WiFi duration. */
+				if (m >=
+				    20) /* m 最大值 = 20 ' 最大120秒 recheck是否調整 WiFi duration. */
 					m = 20;
 
 				n = 3 * m;
@@ -1264,7 +1323,8 @@ static void halbtc8723b2ant_TdmaDurationAdjust(
 			else
 				m = 1;
 
-			if (m >= 20) /* m 最大值 = 20 ' 最大120秒 recheck是否調整 WiFi duration. */
+			if (m >=
+			    20) /* m 最大值 = 20 ' 最大120秒 recheck是否調整 WiFi duration. */
 				m = 20;
 
 			n = 3 * m;
@@ -1288,44 +1348,61 @@ static void halbtc8723b2ant_TdmaDurationAdjust(
 					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(8);
 
 				if (pCoexDm->curPsTdma == 9)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(13);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						13);
 				else if (pCoexDm->curPsTdma == 10)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(14);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						14);
 				else if (pCoexDm->curPsTdma == 11)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						15);
 				else if (pCoexDm->curPsTdma == 12)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(16);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						16);
 
 				if (result == -1) {
 					if (pCoexDm->curPsTdma == 5)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(6);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							6);
 					else if (pCoexDm->curPsTdma == 6)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(7);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							7);
 					else if (pCoexDm->curPsTdma == 7)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(8);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							8);
 					else if (pCoexDm->curPsTdma == 13)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(14);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							14);
 					else if (pCoexDm->curPsTdma == 14)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							15);
 					else if (pCoexDm->curPsTdma == 15)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(16);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							16);
 				} else if (result == 1) {
 					if (pCoexDm->curPsTdma == 8)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(7);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							7);
 					else if (pCoexDm->curPsTdma == 7)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(6);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							6);
 					else if (pCoexDm->curPsTdma == 6)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(5);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							5);
 					else if (pCoexDm->curPsTdma == 16)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							15);
 					else if (pCoexDm->curPsTdma == 15)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(14);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							14);
 					else if (pCoexDm->curPsTdma == 14)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(13);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							13);
 				}
 			} else {
 				if (pCoexDm->curPsTdma == 5)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(71);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						71);
 				else if (pCoexDm->curPsTdma == 6)
 					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(2);
 				else if (pCoexDm->curPsTdma == 7)
@@ -1336,42 +1413,59 @@ static void halbtc8723b2ant_TdmaDurationAdjust(
 				if (pCoexDm->curPsTdma == 13)
 					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(9);
 				else if (pCoexDm->curPsTdma == 14)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(10);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						10);
 				else if (pCoexDm->curPsTdma == 15)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						11);
 				else if (pCoexDm->curPsTdma == 16)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(12);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						12);
 
 				if (result == -1) {
 					if (pCoexDm->curPsTdma == 71)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(1);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							1);
 					else if (pCoexDm->curPsTdma == 1)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(2);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							2);
 					else if (pCoexDm->curPsTdma == 2)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(3);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							3);
 					else if (pCoexDm->curPsTdma == 3)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(4);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							4);
 					else if (pCoexDm->curPsTdma == 9)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(10);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							10);
 					else if (pCoexDm->curPsTdma == 10)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							11);
 					else if (pCoexDm->curPsTdma == 11)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(12);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							12);
 				} else if (result == 1) {
 					if (pCoexDm->curPsTdma == 4)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(3);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							3);
 					else if (pCoexDm->curPsTdma == 3)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(2);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							2);
 					else if (pCoexDm->curPsTdma == 2)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(1);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							1);
 					else if (pCoexDm->curPsTdma == 1)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(71);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							71);
 					else if (pCoexDm->curPsTdma == 12)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							11);
 					else if (pCoexDm->curPsTdma == 11)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(10);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							10);
 					else if (pCoexDm->curPsTdma == 10)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(9);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							9);
 				}
 			}
 		} else if (maxInterval == 2) {
@@ -1386,40 +1480,56 @@ static void halbtc8723b2ant_TdmaDurationAdjust(
 					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(8);
 
 				if (pCoexDm->curPsTdma == 9)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(14);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						14);
 				else if (pCoexDm->curPsTdma == 10)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(14);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						14);
 				else if (pCoexDm->curPsTdma == 11)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						15);
 				else if (pCoexDm->curPsTdma == 12)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(16);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						16);
 
 				if (result == -1) {
 					if (pCoexDm->curPsTdma == 5)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(6);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							6);
 					else if (pCoexDm->curPsTdma == 6)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(7);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							7);
 					else if (pCoexDm->curPsTdma == 7)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(8);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							8);
 					else if (pCoexDm->curPsTdma == 13)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(14);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							14);
 					else if (pCoexDm->curPsTdma == 14)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							15);
 					else if (pCoexDm->curPsTdma == 15)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(16);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							16);
 				} else if (result == 1) {
 					if (pCoexDm->curPsTdma == 8)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(7);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							7);
 					else if (pCoexDm->curPsTdma == 7)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(6);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							6);
 					else if (pCoexDm->curPsTdma == 6)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(6);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							6);
 					else if (pCoexDm->curPsTdma == 16)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							15);
 					else if (pCoexDm->curPsTdma == 15)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(14);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							14);
 					else if (pCoexDm->curPsTdma == 14)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(14);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							14);
 				}
 			} else {
 				if (pCoexDm->curPsTdma == 5)
@@ -1432,40 +1542,56 @@ static void halbtc8723b2ant_TdmaDurationAdjust(
 					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(4);
 
 				if (pCoexDm->curPsTdma == 13)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(10);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						10);
 				else if (pCoexDm->curPsTdma == 14)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(10);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						10);
 				else if (pCoexDm->curPsTdma == 15)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						11);
 				else if (pCoexDm->curPsTdma == 16)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(12);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						12);
 
 				if (result == -1) {
 					if (pCoexDm->curPsTdma == 1)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(2);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							2);
 					else if (pCoexDm->curPsTdma == 2)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(3);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							3);
 					else if (pCoexDm->curPsTdma == 3)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(4);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							4);
 					else if (pCoexDm->curPsTdma == 9)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(10);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							10);
 					else if (pCoexDm->curPsTdma == 10)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							11);
 					else if (pCoexDm->curPsTdma == 11)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(12);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							12);
 				} else if (result == 1) {
 					if (pCoexDm->curPsTdma == 4)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(3);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							3);
 					else if (pCoexDm->curPsTdma == 3)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(2);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							2);
 					else if (pCoexDm->curPsTdma == 2)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(2);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							2);
 					else if (pCoexDm->curPsTdma == 12)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							11);
 					else if (pCoexDm->curPsTdma == 11)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(10);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							10);
 					else if (pCoexDm->curPsTdma == 10)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(10);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							10);
 				}
 			}
 		} else if (maxInterval == 3) {
@@ -1480,40 +1606,56 @@ static void halbtc8723b2ant_TdmaDurationAdjust(
 					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(8);
 
 				if (pCoexDm->curPsTdma == 9)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						15);
 				else if (pCoexDm->curPsTdma == 10)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						15);
 				else if (pCoexDm->curPsTdma == 11)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						15);
 				else if (pCoexDm->curPsTdma == 12)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(16);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						16);
 
 				if (result == -1) {
 					if (pCoexDm->curPsTdma == 5)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(7);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							7);
 					else if (pCoexDm->curPsTdma == 6)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(7);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							7);
 					else if (pCoexDm->curPsTdma == 7)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(8);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							8);
 					else if (pCoexDm->curPsTdma == 13)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							15);
 					else if (pCoexDm->curPsTdma == 14)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							15);
 					else if (pCoexDm->curPsTdma == 15)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(16);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							16);
 				} else if (result == 1) {
 					if (pCoexDm->curPsTdma == 8)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(7);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							7);
 					else if (pCoexDm->curPsTdma == 7)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(7);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							7);
 					else if (pCoexDm->curPsTdma == 6)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(7);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							7);
 					else if (pCoexDm->curPsTdma == 16)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							15);
 					else if (pCoexDm->curPsTdma == 15)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							15);
 					else if (pCoexDm->curPsTdma == 14)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(15);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							15);
 				}
 			} else {
 				if (pCoexDm->curPsTdma == 5)
@@ -1526,40 +1668,56 @@ static void halbtc8723b2ant_TdmaDurationAdjust(
 					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(4);
 
 				if (pCoexDm->curPsTdma == 13)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						11);
 				else if (pCoexDm->curPsTdma == 14)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						11);
 				else if (pCoexDm->curPsTdma == 15)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						11);
 				else if (pCoexDm->curPsTdma == 16)
-					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(12);
+					HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+						12);
 
 				if (result == -1) {
 					if (pCoexDm->curPsTdma == 1)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(3);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							3);
 					else if (pCoexDm->curPsTdma == 2)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(3);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							3);
 					else if (pCoexDm->curPsTdma == 3)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(4);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							4);
 					else if (pCoexDm->curPsTdma == 9)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							11);
 					else if (pCoexDm->curPsTdma == 10)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							11);
 					else if (pCoexDm->curPsTdma == 11)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(12);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							12);
 				} else if (result == 1) {
 					if (pCoexDm->curPsTdma == 4)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(3);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							3);
 					else if (pCoexDm->curPsTdma == 3)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(3);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							3);
 					else if (pCoexDm->curPsTdma == 2)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(3);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							3);
 					else if (pCoexDm->curPsTdma == 12)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							11);
 					else if (pCoexDm->curPsTdma == 11)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							11);
 					else if (pCoexDm->curPsTdma == 10)
-						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(11);
+						HAL_BTC8723B2ANT_DMA_DURATION_ADJUST(
+							11);
 				}
 			}
 		}
@@ -1575,8 +1733,8 @@ static void halbtc8723b2ant_TdmaDurationAdjust(
 		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_ROAM, &bRoam);
 
 		if (!bScan && !bLink && !bRoam)
-			halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, pCoexDm->psTdmaDuAdjType);
-
+			halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, true,
+					       pCoexDm->psTdmaDuAdjType);
 	}
 }
 
@@ -1604,33 +1762,38 @@ static void halbtc8723b2ant_ActionSco(struct btc_coexist *pBtCoexist)
 
 	if (wifiBw == BTC_WIFI_BW_LEGACY) /* for SCO quality at 11b/g mode */
 		halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 2);
-	else  /* for SCO quality & wifi performance balance at 11n mode */
+	else /* for SCO quality & wifi performance balance at 11n mode */
 		halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 8);
 
-	halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, false, 0); /* for voice quality */
+	halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, false,
+			       0); /* for voice quality */
 
 	/*  sw mechanism */
 	if (wifiBw == BTC_WIFI_BW_HT40) {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, true, 0x4);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     true, 0x4);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, true, 0x4);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     true, 0x4);
 		}
 	} else {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, true, 0x4);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     true, 0x4);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, true, 0x4);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     true, 0x4);
 		}
 	}
 }
@@ -1658,39 +1821,41 @@ static void halbtc8723b2ant_ActionHid(struct btc_coexist *pBtCoexist)
 
 	if (wifiBw == BTC_WIFI_BW_LEGACY) /* for HID at 11b/g mode */
 		halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 7);
-	else  /* for HID quality & wifi performance balance at 11n mode */
+	else /* for HID quality & wifi performance balance at 11n mode */
 		halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 9);
 
-	if (
-		(btRssiState == BTC_RSSI_STATE_HIGH) ||
-		(btRssiState == BTC_RSSI_STATE_STAY_HIGH)
-	)
+	if ((btRssiState == BTC_RSSI_STATE_HIGH) ||
+	    (btRssiState == BTC_RSSI_STATE_STAY_HIGH))
 		halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 9);
 	else
 		halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 13);
 
 	/*  sw mechanism */
 	if (wifiBw == BTC_WIFI_BW_HT40) {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	} else {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	}
 }
@@ -1710,8 +1875,10 @@ static void halbtc8723b2ant_ActionA2dp(struct btc_coexist *pBtCoexist)
 
 	/*  define the office environment */
 	if (apNum >= 10 && BTC_RSSI_HIGH(wifiRssiState1)) {
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff, 0x0);
-		halbtc8723b2ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, false, 0x8);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff,
+					 0x0);
+		halbtc8723b2ant_LimitedRx(pBtCoexist, NORMAL_EXEC, false, false,
+					  0x8);
 		halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC, 6);
 		halbtc8723b2ant_DecBtPwr(pBtCoexist, NORMAL_EXEC, 0);
 		halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 0);
@@ -1720,11 +1887,15 @@ static void halbtc8723b2ant_ActionA2dp(struct btc_coexist *pBtCoexist)
 		/*  sw mechanism */
 		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_BW, &wifiBw);
 		if (wifiBw == BTC_WIFI_BW_HT40) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, true, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     true, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, true, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     true, 0x18);
 		}
 		return;
 	}
@@ -1741,10 +1912,8 @@ static void halbtc8723b2ant_ActionA2dp(struct btc_coexist *pBtCoexist)
 
 	halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 7);
 
-	if (
-		(btRssiState == BTC_RSSI_STATE_HIGH) ||
-		(btRssiState == BTC_RSSI_STATE_STAY_HIGH)
-	)
+	if ((btRssiState == BTC_RSSI_STATE_HIGH) ||
+	    (btRssiState == BTC_RSSI_STATE_STAY_HIGH))
 		halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, false, false, 1);
 	else
 		halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, false, true, 1);
@@ -1752,26 +1921,30 @@ static void halbtc8723b2ant_ActionA2dp(struct btc_coexist *pBtCoexist)
 	/*  sw mechanism */
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_BW, &wifiBw);
 	if (wifiBw == BTC_WIFI_BW_HT40) {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	} else {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	}
 }
@@ -1802,26 +1975,30 @@ static void halbtc8723b2ant_ActionA2dpPanHs(struct btc_coexist *pBtCoexist)
 	/*  sw mechanism */
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_BW, &wifiBw);
 	if (wifiBw == BTC_WIFI_BW_HT40) {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	} else {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	}
 }
@@ -1847,10 +2024,8 @@ static void halbtc8723b2ant_ActionPanEdr(struct btc_coexist *pBtCoexist)
 
 	halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 10);
 
-	if (
-		(btRssiState == BTC_RSSI_STATE_HIGH) ||
-		(btRssiState == BTC_RSSI_STATE_STAY_HIGH)
-	)
+	if ((btRssiState == BTC_RSSI_STATE_HIGH) ||
+	    (btRssiState == BTC_RSSI_STATE_STAY_HIGH))
 		halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 1);
 	else
 		halbtc8723b2ant_PsTdma(pBtCoexist, NORMAL_EXEC, true, 5);
@@ -1858,26 +2033,30 @@ static void halbtc8723b2ant_ActionPanEdr(struct btc_coexist *pBtCoexist)
 	/*  sw mechanism */
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_BW, &wifiBw);
 	if (wifiBw == BTC_WIFI_BW_HT40) {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	} else {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	}
 }
@@ -1908,26 +2087,30 @@ static void halbtc8723b2ant_ActionPanHs(struct btc_coexist *pBtCoexist)
 
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_BW, &wifiBw);
 	if (wifiBw == BTC_WIFI_BW_HT40) {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	} else {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	}
 }
@@ -1954,15 +2137,15 @@ static void halbtc8723b2ant_ActionPanEdrA2dp(struct btc_coexist *pBtCoexist)
 
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_BW, &wifiBw);
 
-	if (
-		(btRssiState == BTC_RSSI_STATE_HIGH) ||
-		(btRssiState == BTC_RSSI_STATE_STAY_HIGH)
-	) {
+	if ((btRssiState == BTC_RSSI_STATE_HIGH) ||
+	    (btRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
 		halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 12);
 		if (wifiBw == BTC_WIFI_BW_HT40)
-			halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, false, true, 3);
+			halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, false,
+							   true, 3);
 		else
-			halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, false, false, 3);
+			halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, false,
+							   false, 3);
 	} else {
 		halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 7);
 		halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, false, true, 3);
@@ -1970,26 +2153,30 @@ static void halbtc8723b2ant_ActionPanEdrA2dp(struct btc_coexist *pBtCoexist)
 
 	/*  sw mechanism */
 	if (wifiBw == BTC_WIFI_BW_HT40) {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	} else {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, false,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	}
 }
@@ -2010,49 +2197,58 @@ static void halbtc8723b2ant_ActionPanEdrHid(struct btc_coexist *pBtCoexist)
 	else
 		halbtc8723b2ant_DecBtPwr(pBtCoexist, NORMAL_EXEC, 0);
 
-	if (
-		(btRssiState == BTC_RSSI_STATE_HIGH) ||
-		(btRssiState == BTC_RSSI_STATE_STAY_HIGH)
-	) {
+	if ((btRssiState == BTC_RSSI_STATE_HIGH) ||
+	    (btRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
 		if (wifiBw == BTC_WIFI_BW_HT40) {
-			halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC, 3);
-			halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 11);
-			pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff, 0x780);
+			halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC,
+						      3);
+			halbtc8723b2ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 11);
+			pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1,
+						 0xfffff, 0x780);
 		} else {
-			halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC, 6);
-			halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 7);
-			pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff, 0x0);
+			halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC,
+						      6);
+			halbtc8723b2ant_CoexTableWithType(pBtCoexist,
+							  NORMAL_EXEC, 7);
+			pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1,
+						 0xfffff, 0x0);
 		}
 		halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, true, false, 2);
 	} else {
 		halbtc8723b2ant_FwDacSwingLvl(pBtCoexist, NORMAL_EXEC, 6);
 		halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 11);
-		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff, 0x0);
+		pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff,
+					 0x0);
 		halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, true, true, 2);
 	}
 
 	/*  sw mechanism */
 	if (wifiBw == BTC_WIFI_BW_HT40) {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	} else {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	}
 }
@@ -2081,39 +2277,43 @@ static void halbtc8723b2ant_ActionHidA2dpPanEdr(struct btc_coexist *pBtCoexist)
 
 	halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 7);
 
-	if (
-		(btRssiState == BTC_RSSI_STATE_HIGH) ||
-		(btRssiState == BTC_RSSI_STATE_STAY_HIGH)
-	) {
+	if ((btRssiState == BTC_RSSI_STATE_HIGH) ||
+	    (btRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
 		if (wifiBw == BTC_WIFI_BW_HT40)
-			halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, true, true, 2);
+			halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, true,
+							   true, 2);
 		else
-			halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, true, false, 3);
+			halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, true,
+							   false, 3);
 	} else
 		halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, true, true, 3);
 
 	/*  sw mechanism */
 	if (wifiBw == BTC_WIFI_BW_HT40) {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	} else {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	}
 }
@@ -2145,12 +2345,15 @@ static void halbtc8723b2ant_ActionHidA2dp(struct btc_coexist *pBtCoexist)
 	} else {
 		/*  only 802.11N mode we have to dec bt power to 4 degree */
 		if (BTC_RSSI_HIGH(btRssiState)) {
-			pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U1_AP_NUM, &apNum);
+			pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U1_AP_NUM,
+					    &apNum);
 			/*  need to check ap Number of Not */
 			if (apNum < 10)
-				halbtc8723b2ant_DecBtPwr(pBtCoexist, NORMAL_EXEC, 4);
+				halbtc8723b2ant_DecBtPwr(pBtCoexist,
+							 NORMAL_EXEC, 4);
 			else
-				halbtc8723b2ant_DecBtPwr(pBtCoexist, NORMAL_EXEC, 2);
+				halbtc8723b2ant_DecBtPwr(pBtCoexist,
+							 NORMAL_EXEC, 2);
 		} else if (BTC_RSSI_MEDIUM(btRssiState))
 			halbtc8723b2ant_DecBtPwr(pBtCoexist, NORMAL_EXEC, 2);
 		else
@@ -2159,36 +2362,38 @@ static void halbtc8723b2ant_ActionHidA2dp(struct btc_coexist *pBtCoexist)
 
 	halbtc8723b2ant_CoexTableWithType(pBtCoexist, NORMAL_EXEC, 7);
 
-	if (
-		(btRssiState == BTC_RSSI_STATE_HIGH) ||
-		(btRssiState == BTC_RSSI_STATE_STAY_HIGH)
-	)
+	if ((btRssiState == BTC_RSSI_STATE_HIGH) ||
+	    (btRssiState == BTC_RSSI_STATE_STAY_HIGH))
 		halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, true, false, 2);
 	else
 		halbtc8723b2ant_TdmaDurationAdjust(pBtCoexist, true, true, 2);
 
 	/*  sw mechanism */
 	if (wifiBw == BTC_WIFI_BW_HT40) {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, true, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	} else {
-		if (
-			(wifiRssiState == BTC_RSSI_STATE_HIGH) ||
-			(wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)
-		) {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false, false, 0x18);
+		if ((wifiRssiState == BTC_RSSI_STATE_HIGH) ||
+		    (wifiRssiState == BTC_RSSI_STATE_STAY_HIGH)) {
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, true, false,
+						     false, 0x18);
 		} else {
-			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true, false, false);
-			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false, false, 0x18);
+			halbtc8723b2ant_SwMechanism1(pBtCoexist, false, true,
+						     false, false);
+			halbtc8723b2ant_SwMechanism2(pBtCoexist, false, false,
+						     false, 0x18);
 		}
 	}
 }
@@ -2206,13 +2411,15 @@ static void halbtc8723b2ant_RunCoexistMechanism(struct btc_coexist *pBtCoexist)
 	}
 
 	algorithm = halbtc8723b2ant_ActionAlgorithm(pBtCoexist);
-	if (pCoexSta->bC2hBtInquiryPage && (algorithm != BT_8723B_2ANT_COEX_ALGO_PANHS)) {
+	if (pCoexSta->bC2hBtInquiryPage &&
+	    (algorithm != BT_8723B_2ANT_COEX_ALGO_PANHS)) {
 		halbtc8723b2ant_ActionBtInquiry(pBtCoexist);
 		return;
 	} else {
 		if (pCoexDm->bNeedRecover0x948) {
 			pCoexDm->bNeedRecover0x948 = false;
-			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, pCoexDm->backup0x948);
+			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948,
+						   pCoexDm->backup0x948);
 		}
 	}
 
@@ -2267,13 +2474,15 @@ static void halbtc8723b2ant_RunCoexistMechanism(struct btc_coexist *pBtCoexist)
 static void halbtc8723b2ant_WifiOffHwCfg(struct btc_coexist *pBtCoexist)
 {
 	bool bIsInMpMode = false;
-	u8 H2C_Parameter[2] = {0};
+	u8 H2C_Parameter[2] = { 0 };
 	u32 fwVer = 0;
 
 	/*  set wlan_act to low */
 	pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x76e, 0x4);
 
-	pBtCoexist->fBtcSetRfReg(pBtCoexist, BTC_RF_A, 0x1, 0xfffff, 0x780); /* WiFi goto standby while GNT_BT 0-->1 */
+	pBtCoexist->fBtcSetRfReg(
+		pBtCoexist, BTC_RF_A, 0x1, 0xfffff,
+		0x780); /* WiFi goto standby while GNT_BT 0-->1 */
 	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_FW_VER, &fwVer);
 	if (fwVer >= 0x180000) {
 		/* Use H2C to set GNT_BT to HIGH */
@@ -2282,14 +2491,20 @@ static void halbtc8723b2ant_WifiOffHwCfg(struct btc_coexist *pBtCoexist)
 	} else
 		pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x765, 0x18);
 
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_IS_IN_MP_MODE, &bIsInMpMode);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_IS_IN_MP_MODE,
+			    &bIsInMpMode);
 	if (!bIsInMpMode)
-		pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x67, 0x20, 0x0); /* BT select s0/s1 is controlled by BT */
+		pBtCoexist->fBtcWrite1ByteBitMask(
+			pBtCoexist, 0x67, 0x20,
+			0x0); /* BT select s0/s1 is controlled by BT */
 	else
-		pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x67, 0x20, 0x1); /* BT select s0/s1 is controlled by WiFi */
+		pBtCoexist->fBtcWrite1ByteBitMask(
+			pBtCoexist, 0x67, 0x20,
+			0x1); /* BT select s0/s1 is controlled by WiFi */
 }
 
-static void halbtc8723b2ant_InitHwConfig(struct btc_coexist *pBtCoexist, bool bBackUp)
+static void halbtc8723b2ant_InitHwConfig(struct btc_coexist *pBtCoexist,
+					 bool bBackUp)
 {
 	u8 u1Tmp = 0;
 
@@ -2304,13 +2519,16 @@ static void halbtc8723b2ant_InitHwConfig(struct btc_coexist *pBtCoexist, bool bB
 	pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x790, u1Tmp);
 
 	/* Antenna config */
-	halbtc8723b2ant_SetAntPath(pBtCoexist, BTC_ANT_WIFI_AT_MAIN, true, false);
+	halbtc8723b2ant_SetAntPath(pBtCoexist, BTC_ANT_WIFI_AT_MAIN, true,
+				   false);
 
 	/*  PTA parameter */
 	halbtc8723b2ant_CoexTableWithType(pBtCoexist, FORCE_EXEC, 0);
 
 	/*  Enable counter statistics */
-	pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x76e, 0xc); /* 0x76e[3] = 1, WLAN_Act control by PTA */
+	pBtCoexist->fBtcWrite1Byte(
+		pBtCoexist, 0x76e,
+		0xc); /* 0x76e[3] = 1, WLAN_Act control by PTA */
 	pBtCoexist->fBtcWrite1Byte(pBtCoexist, 0x778, 0x3);
 	pBtCoexist->fBtcWrite1ByteBitMask(pBtCoexist, 0x40, 0x20, 0x1);
 }
@@ -2349,7 +2567,7 @@ void EXhalbtc8723b2ant_PowerOnSetting(struct btc_coexist *pBtCoexist)
 		/*  fixed at S0 for USB interface */
 		pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x0);
 
-		u1Tmp |= 0x1;	/*  antenna inverse */
+		u1Tmp |= 0x1; /*  antenna inverse */
 		pBtCoexist->fBtcWriteLocalReg1Byte(pBtCoexist, 0xfe08, u1Tmp);
 
 		pBoardInfo->btdmAntPos = BTC_ANTENNA_AT_AUX_PORT;
@@ -2362,18 +2580,21 @@ void EXhalbtc8723b2ant_PowerOnSetting(struct btc_coexist *pBtCoexist)
 		} else if (pBoardInfo->singleAntPath == 1) {
 			/*  set to S0 */
 			pBtCoexist->fBtcWrite4Byte(pBtCoexist, 0x948, 0x0);
-			u1Tmp |= 0x1;	/*  antenna inverse */
+			u1Tmp |= 0x1; /*  antenna inverse */
 			pBoardInfo->btdmAntPos = BTC_ANTENNA_AT_AUX_PORT;
 		}
 
 		if (pBtCoexist->chipInterface == BTC_INTF_PCI)
-			pBtCoexist->fBtcWriteLocalReg1Byte(pBtCoexist, 0x384, u1Tmp);
+			pBtCoexist->fBtcWriteLocalReg1Byte(pBtCoexist, 0x384,
+							   u1Tmp);
 		else if (pBtCoexist->chipInterface == BTC_INTF_SDIO)
-			pBtCoexist->fBtcWriteLocalReg1Byte(pBtCoexist, 0x60, u1Tmp);
+			pBtCoexist->fBtcWriteLocalReg1Byte(pBtCoexist, 0x60,
+							   u1Tmp);
 	}
 }
 
-void EXhalbtc8723b2ant_InitHwConfig(struct btc_coexist *pBtCoexist, bool bWifiOnly)
+void EXhalbtc8723b2ant_InitHwConfig(struct btc_coexist *pBtCoexist,
+				    bool bWifiOnly)
 {
 	halbtc8723b2ant_InitHwConfig(pBtCoexist, true);
 }
@@ -2421,15 +2642,17 @@ void EXhalbtc8723b2ant_ConnectNotify(struct btc_coexist *pBtCoexist, u8 type)
 	}
 }
 
-void EXhalbtc8723b2ant_MediaStatusNotify(struct btc_coexist *pBtCoexist, u8 type)
+void EXhalbtc8723b2ant_MediaStatusNotify(struct btc_coexist *pBtCoexist,
+					 u8 type)
 {
-	u8 H2C_Parameter[3] = {0};
+	u8 H2C_Parameter[3] = { 0 };
 	u32 wifiBw;
 	u8 wifiCentralChnl;
 	u8 apNum = 0;
 
 	/*  only 2.4G we need to inform bt the chnl mask */
-	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U1_WIFI_CENTRAL_CHNL, &wifiCentralChnl);
+	pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U1_WIFI_CENTRAL_CHNL,
+			    &wifiCentralChnl);
 	if ((type == BTC_MEDIA_CONNECT) && (wifiCentralChnl <= 14)) {
 		H2C_Parameter[0] = 0x1;
 		H2C_Parameter[1] = wifiCentralChnl;
@@ -2437,7 +2660,8 @@ void EXhalbtc8723b2ant_MediaStatusNotify(struct btc_coexist *pBtCoexist, u8 type
 		if (wifiBw == BTC_WIFI_BW_HT40)
 			H2C_Parameter[2] = 0x30;
 		else {
-			pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U1_AP_NUM, &apNum);
+			pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U1_AP_NUM,
+					    &apNum);
 			if (apNum < 10)
 				H2C_Parameter[2] = 0x30;
 			else
@@ -2452,16 +2676,16 @@ void EXhalbtc8723b2ant_MediaStatusNotify(struct btc_coexist *pBtCoexist, u8 type
 	pBtCoexist->fBtcFillH2c(pBtCoexist, 0x66, 3, H2C_Parameter);
 }
 
-void EXhalbtc8723b2ant_SpecialPacketNotify(struct btc_coexist *pBtCoexist, u8 type)
+void EXhalbtc8723b2ant_SpecialPacketNotify(struct btc_coexist *pBtCoexist,
+					   u8 type)
 {
 }
 
-void EXhalbtc8723b2ant_BtInfoNotify(
-	struct btc_coexist *pBtCoexist, u8 *tmpBuf, u8 length
-)
+void EXhalbtc8723b2ant_BtInfoNotify(struct btc_coexist *pBtCoexist, u8 *tmpBuf,
+				    u8 length)
 {
-	u8 	btInfo = 0;
-	u8 	i, rspSource = 0;
+	u8 btInfo = 0;
+	u8 i, rspSource = 0;
 	bool bBtBusy = false, bLimitedDig = false;
 	bool bWifiConnected = false;
 
@@ -2477,7 +2701,6 @@ void EXhalbtc8723b2ant_BtInfoNotify(
 		pCoexSta->btInfoC2h[rspSource][i] = tmpBuf[i];
 		if (i == 1)
 			btInfo = tmpBuf[i];
-
 	}
 
 	if (pBtCoexist->bManualControl) {
@@ -2485,32 +2708,41 @@ void EXhalbtc8723b2ant_BtInfoNotify(
 	}
 
 	if (rspSource != BT_INFO_SRC_8723B_2ANT_WIFI_FW) {
-		pCoexSta->btRetryCnt = pCoexSta->btInfoC2h[rspSource][2] & 0xf; /* [3:0] */
+		pCoexSta->btRetryCnt = pCoexSta->btInfoC2h[rspSource][2] &
+				       0xf; /* [3:0] */
 
 		pCoexSta->btRssi = pCoexSta->btInfoC2h[rspSource][3] * 2 + 10;
 
 		pCoexSta->btInfoExt = pCoexSta->btInfoC2h[rspSource][4];
 
-		pCoexSta->bBtTxRxMask = (pCoexSta->btInfoC2h[rspSource][2] & 0x40);
-		pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_BT_TX_RX_MASK, &pCoexSta->bBtTxRxMask);
+		pCoexSta->bBtTxRxMask =
+			(pCoexSta->btInfoC2h[rspSource][2] & 0x40);
+		pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_BT_TX_RX_MASK,
+				    &pCoexSta->bBtTxRxMask);
 		if (pCoexSta->bBtTxRxMask) {
 			/* BT into is responded by BT FW and BT RF REG 0x3C != 0x01 => Need to switch BT TRx Mask */
-			pBtCoexist->fBtcSetBtReg(pBtCoexist, BTC_BT_REG_RF, 0x3c, 0x01);
+			pBtCoexist->fBtcSetBtReg(pBtCoexist, BTC_BT_REG_RF,
+						 0x3c, 0x01);
 		}
 
 		/*  Here we need to resend some wifi info to BT */
 		/*  because bt is reset and loss of the info. */
 		if ((pCoexSta->btInfoExt & BIT(1))) {
-			pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_BL_WIFI_CONNECTED, &bWifiConnected);
+			pBtCoexist->fBtcGet(pBtCoexist,
+					    BTC_GET_BL_WIFI_CONNECTED,
+					    &bWifiConnected);
 
 			if (bWifiConnected)
-				EXhalbtc8723b2ant_MediaStatusNotify(pBtCoexist, BTC_MEDIA_CONNECT);
+				EXhalbtc8723b2ant_MediaStatusNotify(
+					pBtCoexist, BTC_MEDIA_CONNECT);
 			else
-				EXhalbtc8723b2ant_MediaStatusNotify(pBtCoexist, BTC_MEDIA_DISCONNECT);
+				EXhalbtc8723b2ant_MediaStatusNotify(
+					pBtCoexist, BTC_MEDIA_DISCONNECT);
 		}
 
 		if ((pCoexSta->btInfoExt & BIT(3))) {
-			halbtc8723b2ant_IgnoreWlanAct(pBtCoexist, FORCE_EXEC, false);
+			halbtc8723b2ant_IgnoreWlanAct(pBtCoexist, FORCE_EXEC,
+						      false);
 		} else {
 			/*  BT already NOT ignore Wlan active, do nothing here. */
 		}
@@ -2553,12 +2785,11 @@ void EXhalbtc8723b2ant_BtInfoNotify(
 
 	if (!(btInfo & BT_INFO_8723B_2ANT_B_CONNECTION)) {
 		pCoexDm->btStatus = BT_8723B_2ANT_BT_STATUS_NON_CONNECTED_IDLE;
-	} else if (btInfo == BT_INFO_8723B_2ANT_B_CONNECTION)	{ /*  connection exists but no busy */
+	} else if (btInfo ==
+		   BT_INFO_8723B_2ANT_B_CONNECTION) { /*  connection exists but no busy */
 		pCoexDm->btStatus = BT_8723B_2ANT_BT_STATUS_CONNECTED_IDLE;
-	} else if (
-		(btInfo & BT_INFO_8723B_2ANT_B_SCO_ESCO) ||
-		(btInfo & BT_INFO_8723B_2ANT_B_SCO_BUSY)
-	) {
+	} else if ((btInfo & BT_INFO_8723B_2ANT_B_SCO_ESCO) ||
+		   (btInfo & BT_INFO_8723B_2ANT_B_SCO_BUSY)) {
 		pCoexDm->btStatus = BT_8723B_2ANT_BT_STATUS_SCO_BUSY;
 	} else if (btInfo & BT_INFO_8723B_2ANT_B_ACL_BUSY) {
 		pCoexDm->btStatus = BT_8723B_2ANT_BT_STATUS_ACL_BUSY;
@@ -2566,11 +2797,9 @@ void EXhalbtc8723b2ant_BtInfoNotify(
 		pCoexDm->btStatus = BT_8723B_2ANT_BT_STATUS_MAX;
 	}
 
-	if (
-		(pCoexDm->btStatus == BT_8723B_2ANT_BT_STATUS_ACL_BUSY) ||
-		(pCoexDm->btStatus == BT_8723B_2ANT_BT_STATUS_SCO_BUSY) ||
-		(pCoexDm->btStatus == BT_8723B_2ANT_BT_STATUS_ACL_SCO_BUSY)
-	) {
+	if ((pCoexDm->btStatus == BT_8723B_2ANT_BT_STATUS_ACL_BUSY) ||
+	    (pCoexDm->btStatus == BT_8723B_2ANT_BT_STATUS_SCO_BUSY) ||
+	    (pCoexDm->btStatus == BT_8723B_2ANT_BT_STATUS_ACL_SCO_BUSY)) {
 		bBtBusy = true;
 		bLimitedDig = true;
 	} else {
@@ -2581,7 +2810,8 @@ void EXhalbtc8723b2ant_BtInfoNotify(
 	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_BT_TRAFFIC_BUSY, &bBtBusy);
 
 	pCoexDm->bLimitedDig = bLimitedDig;
-	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_BT_LIMITED_DIG, &bLimitedDig);
+	pBtCoexist->fBtcSet(pBtCoexist, BTC_SET_BL_BT_LIMITED_DIG,
+			    &bLimitedDig);
 
 	halbtc8723b2ant_RunCoexistMechanism(pBtCoexist);
 }
@@ -2589,7 +2819,8 @@ void EXhalbtc8723b2ant_BtInfoNotify(
 void EXhalbtc8723b2ant_HaltNotify(struct btc_coexist *pBtCoexist)
 {
 	halbtc8723b2ant_WifiOffHwCfg(pBtCoexist);
-	pBtCoexist->fBtcSetBtReg(pBtCoexist, BTC_BT_REG_RF, 0x3c, 0x15); /* BT goto standby while GNT_BT 1-->0 */
+	pBtCoexist->fBtcSetBtReg(pBtCoexist, BTC_BT_REG_RF, 0x3c,
+				 0x15); /* BT goto standby while GNT_BT 1-->0 */
 	halbtc8723b2ant_IgnoreWlanAct(pBtCoexist, FORCE_EXEC, true);
 
 	EXhalbtc8723b2ant_MediaStatusNotify(pBtCoexist, BTC_MEDIA_DISCONNECT);
@@ -2612,13 +2843,12 @@ void EXhalbtc8723b2ant_Periodical(struct btc_coexist *pBtCoexist)
 
 	if (disVerInfoCnt <= 5) {
 		disVerInfoCnt += 1;
-		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_BT_PATCH_VER, &btPatchVer);
+		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_BT_PATCH_VER,
+				    &btPatchVer);
 		pBtCoexist->fBtcGet(pBtCoexist, BTC_GET_U4_WIFI_FW_VER, &fwVer);
 	}
 
-	if (
-		halbtc8723b2ant_IsWifiStatusChanged(pBtCoexist) ||
-		pCoexDm->bAutoTdmaAdjust
-	)
+	if (halbtc8723b2ant_IsWifiStatusChanged(pBtCoexist) ||
+	    pCoexDm->bAutoTdmaAdjust)
 		halbtc8723b2ant_RunCoexistMechanism(pBtCoexist);
 }
diff --git a/drivers/staging/rtl8723bs/hal/HalBtc8723b2Ant.h b/drivers/staging/rtl8723bs/hal/HalBtc8723b2Ant.h
index ebc47f65e8d20..332c324615931 100644
--- a/drivers/staging/rtl8723bs/hal/HalBtc8723b2Ant.h
+++ b/drivers/staging/rtl8723bs/hal/HalBtc8723b2Ant.h
@@ -5,47 +5,47 @@
  *
  ******************************************************************************/
 /*  The following is for 8723B 2Ant BT Co-exist definition */
-#define	BT_INFO_8723B_2ANT_B_FTP		BIT(7)
-#define	BT_INFO_8723B_2ANT_B_A2DP		BIT(6)
-#define	BT_INFO_8723B_2ANT_B_HID		BIT(5)
-#define	BT_INFO_8723B_2ANT_B_SCO_BUSY		BIT(4)
-#define	BT_INFO_8723B_2ANT_B_ACL_BUSY		BIT(3)
-#define	BT_INFO_8723B_2ANT_B_INQ_PAGE		BIT(2)
-#define	BT_INFO_8723B_2ANT_B_SCO_ESCO		BIT(1)
-#define	BT_INFO_8723B_2ANT_B_CONNECTION		BIT(0)
+#define BT_INFO_8723B_2ANT_B_FTP BIT(7)
+#define BT_INFO_8723B_2ANT_B_A2DP BIT(6)
+#define BT_INFO_8723B_2ANT_B_HID BIT(5)
+#define BT_INFO_8723B_2ANT_B_SCO_BUSY BIT(4)
+#define BT_INFO_8723B_2ANT_B_ACL_BUSY BIT(3)
+#define BT_INFO_8723B_2ANT_B_INQ_PAGE BIT(2)
+#define BT_INFO_8723B_2ANT_B_SCO_ESCO BIT(1)
+#define BT_INFO_8723B_2ANT_B_CONNECTION BIT(0)
 
-#define		BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT		2
+#define BTC_RSSI_COEX_THRESH_TOL_8723B_2ANT 2
 
 enum {
-	BT_INFO_SRC_8723B_2ANT_WIFI_FW        = 0x0,
-	BT_INFO_SRC_8723B_2ANT_BT_RSP         = 0x1,
+	BT_INFO_SRC_8723B_2ANT_WIFI_FW = 0x0,
+	BT_INFO_SRC_8723B_2ANT_BT_RSP = 0x1,
 	BT_INFO_SRC_8723B_2ANT_BT_ACTIVE_SEND = 0x2,
 	BT_INFO_SRC_8723B_2ANT_MAX
 };
 
 enum {
 	BT_8723B_2ANT_BT_STATUS_NON_CONNECTED_IDLE = 0x0,
-	BT_8723B_2ANT_BT_STATUS_CONNECTED_IDLE     = 0x1,
-	BT_8723B_2ANT_BT_STATUS_INQ_PAGE           = 0x2,
-	BT_8723B_2ANT_BT_STATUS_ACL_BUSY           = 0x3,
-	BT_8723B_2ANT_BT_STATUS_SCO_BUSY           = 0x4,
-	BT_8723B_2ANT_BT_STATUS_ACL_SCO_BUSY       = 0x5,
+	BT_8723B_2ANT_BT_STATUS_CONNECTED_IDLE = 0x1,
+	BT_8723B_2ANT_BT_STATUS_INQ_PAGE = 0x2,
+	BT_8723B_2ANT_BT_STATUS_ACL_BUSY = 0x3,
+	BT_8723B_2ANT_BT_STATUS_SCO_BUSY = 0x4,
+	BT_8723B_2ANT_BT_STATUS_ACL_SCO_BUSY = 0x5,
 	BT_8723B_2ANT_BT_STATUS_MAX
 };
 
 enum {
-	BT_8723B_2ANT_COEX_ALGO_UNDEFINED       = 0x0,
-	BT_8723B_2ANT_COEX_ALGO_SCO             = 0x1,
-	BT_8723B_2ANT_COEX_ALGO_HID             = 0x2,
-	BT_8723B_2ANT_COEX_ALGO_A2DP            = 0x3,
-	BT_8723B_2ANT_COEX_ALGO_A2DP_PANHS      = 0x4,
-	BT_8723B_2ANT_COEX_ALGO_PANEDR          = 0x5,
-	BT_8723B_2ANT_COEX_ALGO_PANHS           = 0x6,
-	BT_8723B_2ANT_COEX_ALGO_PANEDR_A2DP     = 0x7,
-	BT_8723B_2ANT_COEX_ALGO_PANEDR_HID      = 0x8,
-	BT_8723B_2ANT_COEX_ALGO_HID_A2DP_PANEDR	= 0x9,
-	BT_8723B_2ANT_COEX_ALGO_HID_A2DP        = 0xa,
-	BT_8723B_2ANT_COEX_ALGO_MAX             = 0xb,
+	BT_8723B_2ANT_COEX_ALGO_UNDEFINED = 0x0,
+	BT_8723B_2ANT_COEX_ALGO_SCO = 0x1,
+	BT_8723B_2ANT_COEX_ALGO_HID = 0x2,
+	BT_8723B_2ANT_COEX_ALGO_A2DP = 0x3,
+	BT_8723B_2ANT_COEX_ALGO_A2DP_PANHS = 0x4,
+	BT_8723B_2ANT_COEX_ALGO_PANEDR = 0x5,
+	BT_8723B_2ANT_COEX_ALGO_PANHS = 0x6,
+	BT_8723B_2ANT_COEX_ALGO_PANEDR_A2DP = 0x7,
+	BT_8723B_2ANT_COEX_ALGO_PANEDR_HID = 0x8,
+	BT_8723B_2ANT_COEX_ALGO_HID_A2DP_PANEDR = 0x9,
+	BT_8723B_2ANT_COEX_ALGO_HID_A2DP = 0xa,
+	BT_8723B_2ANT_COEX_ALGO_MAX = 0xb,
 };
 
 struct coex_dm_8723b_2ant {
@@ -74,9 +74,9 @@ struct coex_dm_8723b_2ant {
 	bool bPreLowPenaltyRa;
 	bool bCurLowPenaltyRa;
 	bool bPreDacSwingOn;
-	u32  preDacSwingLvl;
+	u32 preDacSwingLvl;
 	bool bCurDacSwingOn;
-	u32  curDacSwingLvl;
+	u32 curDacSwingLvl;
 	bool bPreAdcBackOff;
 	bool bCurAdcBackOff;
 	bool bPreAgcTableEn;
@@ -130,17 +130,19 @@ struct coex_sta_8723b_2ant {
 /*  The following is interface which will notify coex module. */
 /*  */
 void EXhalbtc8723b2ant_PowerOnSetting(struct btc_coexist *pBtCoexist);
-void EXhalbtc8723b2ant_InitHwConfig(struct btc_coexist *pBtCoexist, bool bWifiOnly);
+void EXhalbtc8723b2ant_InitHwConfig(struct btc_coexist *pBtCoexist,
+				    bool bWifiOnly);
 void EXhalbtc8723b2ant_InitCoexDm(struct btc_coexist *pBtCoexist);
 void EXhalbtc8723b2ant_IpsNotify(struct btc_coexist *pBtCoexist, u8 type);
 void EXhalbtc8723b2ant_LpsNotify(struct btc_coexist *pBtCoexist, u8 type);
 void EXhalbtc8723b2ant_ScanNotify(struct btc_coexist *pBtCoexist, u8 type);
 void EXhalbtc8723b2ant_ConnectNotify(struct btc_coexist *pBtCoexist, u8 type);
-void EXhalbtc8723b2ant_MediaStatusNotify(struct btc_coexist *pBtCoexist, u8 type);
-void EXhalbtc8723b2ant_SpecialPacketNotify(struct btc_coexist *pBtCoexist, u8 type);
-void EXhalbtc8723b2ant_BtInfoNotify(
-	struct btc_coexist *pBtCoexist, u8 *tmpBuf, u8 length
-);
+void EXhalbtc8723b2ant_MediaStatusNotify(struct btc_coexist *pBtCoexist,
+					 u8 type);
+void EXhalbtc8723b2ant_SpecialPacketNotify(struct btc_coexist *pBtCoexist,
+					   u8 type);
+void EXhalbtc8723b2ant_BtInfoNotify(struct btc_coexist *pBtCoexist, u8 *tmpBuf,
+				    u8 length);
 void EXhalbtc8723b2ant_HaltNotify(struct btc_coexist *pBtCoexist);
 void EXhalbtc8723b2ant_PnpNotify(struct btc_coexist *pBtCoexist, u8 pnpState);
 void EXhalbtc8723b2ant_Periodical(struct btc_coexist *pBtCoexist);
diff --git a/drivers/staging/rtl8723bs/hal/HalBtcOutSrc.h b/drivers/staging/rtl8723bs/hal/HalBtcOutSrc.h
index 36b0f429dd4c2..c2507812b0b11 100644
--- a/drivers/staging/rtl8723bs/hal/HalBtcOutSrc.h
+++ b/drivers/staging/rtl8723bs/hal/HalBtcOutSrc.h
@@ -4,117 +4,124 @@
  * Copyright(c) 2007 - 2012 Realtek Corporation. All rights reserved.
  *
  ******************************************************************************/
-#ifndef	__HALBTC_OUT_SRC_H__
+#ifndef __HALBTC_OUT_SRC_H__
 #define __HALBTC_OUT_SRC_H__
 
-#define NORMAL_EXEC		false
-#define FORCE_EXEC		true
+#define NORMAL_EXEC false
+#define FORCE_EXEC true
 
-#define BTC_RF_OFF		0x0
-#define BTC_RF_ON		0x1
+#define BTC_RF_OFF 0x0
+#define BTC_RF_ON 0x1
 
-#define BTC_RF_A		0x0
-#define BTC_RF_B		0x1
-#define BTC_RF_C		0x2
-#define BTC_RF_D		0x3
+#define BTC_RF_A 0x0
+#define BTC_RF_B 0x1
+#define BTC_RF_C 0x2
+#define BTC_RF_D 0x3
 
-#define BTC_SMSP		SINGLEMAC_SINGLEPHY
-#define BTC_DMDP		DUALMAC_DUALPHY
-#define BTC_DMSP		DUALMAC_SINGLEPHY
-#define BTC_MP_UNKNOWN		0xff
+#define BTC_SMSP SINGLEMAC_SINGLEPHY
+#define BTC_DMDP DUALMAC_DUALPHY
+#define BTC_DMSP DUALMAC_SINGLEPHY
+#define BTC_MP_UNKNOWN 0xff
 
-#define BT_COEX_ANT_TYPE_PG	0
-#define BT_COEX_ANT_TYPE_ANTDIV		1
-#define BT_COEX_ANT_TYPE_DETECTED	2
+#define BT_COEX_ANT_TYPE_PG 0
+#define BT_COEX_ANT_TYPE_ANTDIV 1
+#define BT_COEX_ANT_TYPE_DETECTED 2
 
-#define BTC_MIMO_PS_STATIC	0	/*  1ss */
-#define BTC_MIMO_PS_DYNAMIC	1	/*  2ss */
+#define BTC_MIMO_PS_STATIC 0 /*  1ss */
+#define BTC_MIMO_PS_DYNAMIC 1 /*  2ss */
 
-#define BTC_RATE_DISABLE	0
-#define BTC_RATE_ENABLE		1
+#define BTC_RATE_DISABLE 0
+#define BTC_RATE_ENABLE 1
 
 /*  single Antenna definition */
-#define BTC_ANT_PATH_WIFI	0
-#define BTC_ANT_PATH_BT		1
-#define BTC_ANT_PATH_PTA	2
+#define BTC_ANT_PATH_WIFI 0
+#define BTC_ANT_PATH_BT 1
+#define BTC_ANT_PATH_PTA 2
 /*  dual Antenna definition */
-#define BTC_ANT_WIFI_AT_MAIN	0
-#define BTC_ANT_WIFI_AT_AUX	1
+#define BTC_ANT_WIFI_AT_MAIN 0
+#define BTC_ANT_WIFI_AT_AUX 1
 /*  coupler Antenna definition */
-#define BTC_ANT_WIFI_AT_CPL_MAIN	0
-#define BTC_ANT_WIFI_AT_CPL_AUX		1
+#define BTC_ANT_WIFI_AT_CPL_MAIN 0
+#define BTC_ANT_WIFI_AT_CPL_AUX 1
 
 enum {
-	BTC_PS_WIFI_NATIVE	= 0,	/*  wifi original power save behavior */
-	BTC_PS_LPS_ON		= 1,
-	BTC_PS_LPS_OFF		= 2,
+	BTC_PS_WIFI_NATIVE = 0, /*  wifi original power save behavior */
+	BTC_PS_LPS_ON = 1,
+	BTC_PS_LPS_OFF = 2,
 	BTC_PS_MAX
 };
 
 enum {
-	BTC_BT_REG_RF		= 0,
-	BTC_BT_REG_MODEM	= 1,
-	BTC_BT_REG_BLUEWIZE	= 2,
-	BTC_BT_REG_VENDOR	= 3,
-	BTC_BT_REG_LE		= 4,
+	BTC_BT_REG_RF = 0,
+	BTC_BT_REG_MODEM = 1,
+	BTC_BT_REG_BLUEWIZE = 2,
+	BTC_BT_REG_VENDOR = 3,
+	BTC_BT_REG_LE = 4,
 	BTC_BT_REG_MAX
 };
 
 enum btc_chip_interface {
-	BTC_INTF_UNKNOWN	= 0,
-	BTC_INTF_PCI		= 1,
-	BTC_INTF_USB		= 2,
-	BTC_INTF_SDIO		= 3,
+	BTC_INTF_UNKNOWN = 0,
+	BTC_INTF_PCI = 1,
+	BTC_INTF_USB = 2,
+	BTC_INTF_SDIO = 3,
 	BTC_INTF_MAX
 };
 
 /*  following is for wifi link status */
-#define WIFI_STA_CONNECTED				BIT(0)
-#define WIFI_AP_CONNECTED				BIT(1)
-#define WIFI_HS_CONNECTED				BIT(2)
-#define WIFI_P2P_GO_CONNECTED			BIT(3)
-#define WIFI_P2P_GC_CONNECTED			BIT(4)
+#define WIFI_STA_CONNECTED BIT(0)
+#define WIFI_AP_CONNECTED BIT(1)
+#define WIFI_HS_CONNECTED BIT(2)
+#define WIFI_P2P_GO_CONNECTED BIT(3)
+#define WIFI_P2P_GC_CONNECTED BIT(4)
 
 struct btc_board_info {
 	/*  The following is some board information */
-	u8 pgAntNum;	/*  pg ant number */
-	u8 btdmAntNum;	/*  ant number for btdm */
-	u8 btdmAntPos;		/* Bryant Add to indicate Antenna Position for (pgAntNum = 2) && (btdmAntNum = 1)  (DPDT+1Ant case) */
-	u8 singleAntPath;	/*  current used for 8723b only, 1 =>s0,  0 =>s1 */
+	u8 pgAntNum; /*  pg ant number */
+	u8 btdmAntNum; /*  ant number for btdm */
+	u8 btdmAntPos; /* Bryant Add to indicate Antenna Position for (pgAntNum = 2) && (btdmAntNum = 1)  (DPDT+1Ant case) */
+	u8 singleAntPath; /*  current used for 8723b only, 1 =>s0,  0 =>s1 */
 	/* bool				bBtExist; */
 };
 
 enum {
-	BTC_RSSI_STATE_HIGH			    = 0x0,
-	BTC_RSSI_STATE_MEDIUM			= 0x1,
-	BTC_RSSI_STATE_LOW			    = 0x2,
-	BTC_RSSI_STATE_STAY_HIGH		= 0x3,
-	BTC_RSSI_STATE_STAY_MEDIUM		= 0x4,
-	BTC_RSSI_STATE_STAY_LOW			= 0x5,
+	BTC_RSSI_STATE_HIGH = 0x0,
+	BTC_RSSI_STATE_MEDIUM = 0x1,
+	BTC_RSSI_STATE_LOW = 0x2,
+	BTC_RSSI_STATE_STAY_HIGH = 0x3,
+	BTC_RSSI_STATE_STAY_MEDIUM = 0x4,
+	BTC_RSSI_STATE_STAY_LOW = 0x5,
 	BTC_RSSI_MAX
 };
-#define BTC_RSSI_HIGH(_rssi_)	((_rssi_ == BTC_RSSI_STATE_HIGH || _rssi_ == BTC_RSSI_STATE_STAY_HIGH) ? true : false)
-#define BTC_RSSI_MEDIUM(_rssi_)	((_rssi_ == BTC_RSSI_STATE_MEDIUM || _rssi_ == BTC_RSSI_STATE_STAY_MEDIUM) ? true : false)
-#define BTC_RSSI_LOW(_rssi_)	((_rssi_ == BTC_RSSI_STATE_LOW || _rssi_ == BTC_RSSI_STATE_STAY_LOW) ? true : false)
+#define BTC_RSSI_HIGH(_rssi_)                   \
+	((_rssi_ == BTC_RSSI_STATE_HIGH ||      \
+	  _rssi_ == BTC_RSSI_STATE_STAY_HIGH) ? \
+		 true :                         \
+		 false)
+#define BTC_RSSI_MEDIUM(_rssi_)                   \
+	((_rssi_ == BTC_RSSI_STATE_MEDIUM ||      \
+	  _rssi_ == BTC_RSSI_STATE_STAY_MEDIUM) ? \
+		 true :                           \
+		 false)
+#define BTC_RSSI_LOW(_rssi_)                                                   \
+	((_rssi_ == BTC_RSSI_STATE_LOW || _rssi_ == BTC_RSSI_STATE_STAY_LOW) ? \
+		 true :                                                        \
+		 false)
 
 enum {
-	BTC_WIFI_BW_LEGACY			= 0x0,
-	BTC_WIFI_BW_HT20			= 0x1,
-	BTC_WIFI_BW_HT40			= 0x2,
+	BTC_WIFI_BW_LEGACY = 0x0,
+	BTC_WIFI_BW_HT20 = 0x1,
+	BTC_WIFI_BW_HT40 = 0x2,
 	BTC_WIFI_BW_MAX
 };
 
 enum {
-	BTC_WIFI_TRAFFIC_TX			= 0x0,
-	BTC_WIFI_TRAFFIC_RX			= 0x1,
+	BTC_WIFI_TRAFFIC_TX = 0x0,
+	BTC_WIFI_TRAFFIC_RX = 0x1,
 	BTC_WIFI_TRAFFIC_MAX
 };
 
-enum {
-	BTC_WIFI_PNP_WAKE_UP		= 0x0,
-	BTC_WIFI_PNP_SLEEP			= 0x1,
-	BTC_WIFI_PNP_MAX
-};
+enum { BTC_WIFI_PNP_WAKE_UP = 0x0, BTC_WIFI_PNP_SLEEP = 0x1, BTC_WIFI_PNP_MAX };
 
 /*  defined for BFP_BTC_GET */
 enum {
@@ -199,86 +206,64 @@ enum {
 };
 
 enum {
-	BTC_DBG_DISP_COEX_STATISTICS		= 0x0,
-	BTC_DBG_DISP_BT_LINK_INFO			= 0x1,
-	BTC_DBG_DISP_FW_PWR_MODE_CMD		= 0x2,
+	BTC_DBG_DISP_COEX_STATISTICS = 0x0,
+	BTC_DBG_DISP_BT_LINK_INFO = 0x1,
+	BTC_DBG_DISP_FW_PWR_MODE_CMD = 0x2,
 	BTC_DBG_DISP_MAX
 };
 
-enum {
-	BTC_IPS_LEAVE						= 0x0,
-	BTC_IPS_ENTER						= 0x1,
-	BTC_IPS_MAX
-};
+enum { BTC_IPS_LEAVE = 0x0, BTC_IPS_ENTER = 0x1, BTC_IPS_MAX };
 
-enum {
-	BTC_LPS_DISABLE						= 0x0,
-	BTC_LPS_ENABLE						= 0x1,
-	BTC_LPS_MAX
-};
+enum { BTC_LPS_DISABLE = 0x0, BTC_LPS_ENABLE = 0x1, BTC_LPS_MAX };
 
-enum {
-	BTC_SCAN_FINISH						= 0x0,
-	BTC_SCAN_START						= 0x1,
-	BTC_SCAN_MAX
-};
+enum { BTC_SCAN_FINISH = 0x0, BTC_SCAN_START = 0x1, BTC_SCAN_MAX };
 
 enum {
-	BTC_ASSOCIATE_FINISH				= 0x0,
-	BTC_ASSOCIATE_START					= 0x1,
+	BTC_ASSOCIATE_FINISH = 0x0,
+	BTC_ASSOCIATE_START = 0x1,
 	BTC_ASSOCIATE_MAX
 };
 
-enum {
-	BTC_MEDIA_DISCONNECT				= 0x0,
-	BTC_MEDIA_CONNECT					= 0x1,
-	BTC_MEDIA_MAX
-};
+enum { BTC_MEDIA_DISCONNECT = 0x0, BTC_MEDIA_CONNECT = 0x1, BTC_MEDIA_MAX };
 
 enum {
-	BTC_PACKET_UNKNOWN					= 0x0,
-	BTC_PACKET_DHCP						= 0x1,
-	BTC_PACKET_ARP						= 0x2,
-	BTC_PACKET_EAPOL					= 0x3,
+	BTC_PACKET_UNKNOWN = 0x0,
+	BTC_PACKET_DHCP = 0x1,
+	BTC_PACKET_ARP = 0x2,
+	BTC_PACKET_EAPOL = 0x3,
 	BTC_PACKET_MAX
 };
 
 /* Bryant Add */
 enum {
 	BTC_ANTENNA_AT_MAIN_PORT = 0x1,
-	BTC_ANTENNA_AT_AUX_PORT  = 0x2,
+	BTC_ANTENNA_AT_AUX_PORT = 0x2,
 };
 
 typedef u8 (*BFP_BTC_R1)(void *pBtcContext, u32 RegAddr);
-typedef u16(*BFP_BTC_R2)(void *pBtcContext, u32 RegAddr);
+typedef u16 (*BFP_BTC_R2)(void *pBtcContext, u32 RegAddr);
 typedef u32 (*BFP_BTC_R4)(void *pBtcContext, u32 RegAddr);
 typedef void (*BFP_BTC_W1)(void *pBtcContext, u32 RegAddr, u8 Data);
-typedef void(*BFP_BTC_W1_BIT_MASK)(
-	void *pBtcContext, u32 regAddr, u8 bitMask, u8 data1b
-);
+typedef void (*BFP_BTC_W1_BIT_MASK)(void *pBtcContext, u32 regAddr, u8 bitMask,
+				    u8 data1b);
 typedef void (*BFP_BTC_W2)(void *pBtcContext, u32 RegAddr, u16 Data);
 typedef void (*BFP_BTC_W4)(void *pBtcContext, u32 RegAddr, u32 Data);
 typedef void (*BFP_BTC_LOCAL_REG_W1)(void *pBtcContext, u32 RegAddr, u8 Data);
-typedef void (*BFP_BTC_SET_BB_REG)(
-	void *pBtcContext, u32 RegAddr, u32 BitMask, u32 Data
-);
+typedef void (*BFP_BTC_SET_BB_REG)(void *pBtcContext, u32 RegAddr, u32 BitMask,
+				   u32 Data);
 typedef u32 (*BFP_BTC_GET_BB_REG)(void *pBtcContext, u32 RegAddr, u32 BitMask);
-typedef void (*BFP_BTC_SET_RF_REG)(
-	void *pBtcContext, u8 eRFPath, u32 RegAddr, u32 BitMask, u32 Data
-);
-typedef u32 (*BFP_BTC_GET_RF_REG)(
-	void *pBtcContext, u8 eRFPath, u32 RegAddr, u32 BitMask
-);
-typedef void (*BFP_BTC_FILL_H2C)(
-	void *pBtcContext, u8 elementId, u32 cmdLen, u8 *pCmdBuffer
-);
-
-typedef	u8 (*BFP_BTC_GET)(void *pBtCoexist, u8 getType, void *pOutBuf);
-
-typedef	u8 (*BFP_BTC_SET)(void *pBtCoexist, u8 setType, void *pInBuf);
-typedef void (*BFP_BTC_SET_BT_REG)(
-	void *pBtcContext, u8 regType, u32 offset, u32 value
-);
+typedef void (*BFP_BTC_SET_RF_REG)(void *pBtcContext, u8 eRFPath, u32 RegAddr,
+				   u32 BitMask, u32 Data);
+typedef u32 (*BFP_BTC_GET_RF_REG)(void *pBtcContext, u8 eRFPath, u32 RegAddr,
+				  u32 BitMask);
+typedef void (*BFP_BTC_FILL_H2C)(void *pBtcContext, u8 elementId, u32 cmdLen,
+				 u8 *pCmdBuffer);
+
+typedef u8 (*BFP_BTC_GET)(void *pBtCoexist, u8 getType, void *pOutBuf);
+
+typedef u8 (*BFP_BTC_SET)(void *pBtCoexist, u8 setType, void *pInBuf);
+typedef void (*BFP_BTC_SET_BT_REG)(void *pBtcContext, u8 regType, u32 offset,
+				   u32 value);
 typedef u32 (*BFP_BTC_GET_BT_REG)(void *pBtcContext, u8 regType, u32 offset);
 typedef void (*BFP_BTC_DISP_DBG_MSG)(void *pBtCoexist, u8 dispType);
 
@@ -304,7 +289,7 @@ struct btc_bt_info {
 
 	bool bBtCtrlLps;
 	bool bBtLpsOn;
-	bool bForceToRoam;	/*  for 1Ant solution */
+	bool bForceToRoam; /*  for 1Ant solution */
 	u8 lpsVal;
 	u8 rpwmVal;
 	u32 raMask;
@@ -312,7 +297,7 @@ struct btc_bt_info {
 
 struct btc_stack_info {
 	bool bProfileNotified;
-	u16 hciVersion;	/*  stack hci version */
+	u16 hciVersion; /*  stack hci version */
 	u8 numOfLink;
 	bool bBtLinkExist;
 	bool bScoExist;
@@ -358,10 +343,10 @@ struct btc_statistics {
 };
 
 struct btc_coexist {
-	bool bBinded;		/*  make sure only one adapter can bind the data context */
-	void *Adapter;		/*  default adapter */
+	bool bBinded; /*  make sure only one adapter can bind the data context */
+	void *Adapter; /*  default adapter */
 	struct btc_board_info boardInfo;
-	struct btc_bt_info btInfo;		/*  some bt info referenced by non-bt module */
+	struct btc_bt_info btInfo; /*  some bt info referenced by non-bt module */
 	struct btc_stack_info stackInfo;
 	struct btc_bt_link_info btLinkInfo;
 	enum btc_chip_interface chipInterface;
@@ -409,13 +394,12 @@ void EXhalbtcoutsrc_IpsNotify(struct btc_coexist *pBtCoexist, u8 type);
 void EXhalbtcoutsrc_LpsNotify(struct btc_coexist *pBtCoexist, u8 type);
 void EXhalbtcoutsrc_ScanNotify(struct btc_coexist *pBtCoexist, u8 type);
 void EXhalbtcoutsrc_ConnectNotify(struct btc_coexist *pBtCoexist, u8 action);
-void EXhalbtcoutsrc_MediaStatusNotify(
-	struct btc_coexist *pBtCoexist, enum rt_media_status mediaStatus
-);
-void EXhalbtcoutsrc_SpecialPacketNotify(struct btc_coexist *pBtCoexist, u8 pktType);
-void EXhalbtcoutsrc_BtInfoNotify(
-	struct btc_coexist *pBtCoexist, u8 *tmpBuf, u8 length
-);
+void EXhalbtcoutsrc_MediaStatusNotify(struct btc_coexist *pBtCoexist,
+				      enum rt_media_status mediaStatus);
+void EXhalbtcoutsrc_SpecialPacketNotify(struct btc_coexist *pBtCoexist,
+					u8 pktType);
+void EXhalbtcoutsrc_BtInfoNotify(struct btc_coexist *pBtCoexist, u8 *tmpBuf,
+				 u8 length);
 void EXhalbtcoutsrc_HaltNotify(struct btc_coexist *pBtCoexist);
 void EXhalbtcoutsrc_PnpNotify(struct btc_coexist *pBtCoexist, u8 pnpState);
 void EXhalbtcoutsrc_Periodical(struct btc_coexist *pBtCoexist);
diff --git a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_BB.c b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_BB.c
index afdde3980ec3e..f0b3336b54c88 100644
--- a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_BB.c
+++ b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_BB.c
@@ -8,41 +8,38 @@
 #include <linux/kernel.h>
 #include "odm_precomp.h"
 
-static bool CheckPositive(struct dm_odm_t *pDM_Odm, const u32 Condition1, const u32 Condition2)
+static bool CheckPositive(struct dm_odm_t *pDM_Odm, const u32 Condition1,
+			  const u32 Condition2)
 {
-	u8 _BoardType =
-		((pDM_Odm->BoardType & BIT(4)) >> 4) << 0 | /* _GLNA */
-		((pDM_Odm->BoardType & BIT(3)) >> 3) << 1 | /* _GPA */
-		((pDM_Odm->BoardType & BIT(7)) >> 7) << 2 | /* _ALNA */
-		((pDM_Odm->BoardType & BIT(6)) >> 6) << 3 | /* _APA */
-		((pDM_Odm->BoardType & BIT(2)) >> 2) << 4;  /* _BT */
+	u8 _BoardType = ((pDM_Odm->BoardType & BIT(4)) >> 4) << 0 | /* _GLNA */
+			((pDM_Odm->BoardType & BIT(3)) >> 3) << 1 | /* _GPA */
+			((pDM_Odm->BoardType & BIT(7)) >> 7) << 2 | /* _ALNA */
+			((pDM_Odm->BoardType & BIT(6)) >> 6) << 3 | /* _APA */
+			((pDM_Odm->BoardType & BIT(2)) >> 2) << 4; /* _BT */
 
 	u32 cond1 = Condition1, cond2 = Condition2;
-	u32 driver1 =
-		pDM_Odm->CutVersion << 24 |
-		pDM_Odm->SupportPlatform << 16 |
-		pDM_Odm->PackageType << 12 |
-		pDM_Odm->SupportInterface << 8  |
-		_BoardType;
-
-	u32 driver2 =
-		pDM_Odm->TypeGLNA << 0 |
-		pDM_Odm->TypeGPA << 8 |
-		pDM_Odm->TypeALNA << 16 |
-		pDM_Odm->TypeAPA << 24;
+	u32 driver1 = pDM_Odm->CutVersion << 24 |
+		      pDM_Odm->SupportPlatform << 16 |
+		      pDM_Odm->PackageType << 12 |
+		      pDM_Odm->SupportInterface << 8 | _BoardType;
+
+	u32 driver2 = pDM_Odm->TypeGLNA << 0 | pDM_Odm->TypeGPA << 8 |
+		      pDM_Odm->TypeALNA << 16 | pDM_Odm->TypeAPA << 24;
 
 	/* Value Defined Check =============== */
 	/* QFN Type [15:12] and Cut Version [27:24] need to do value check */
 
-	if (((cond1 & 0x0000F000) != 0) && ((cond1 & 0x0000F000) != (driver1 & 0x0000F000)))
+	if (((cond1 & 0x0000F000) != 0) &&
+	    ((cond1 & 0x0000F000) != (driver1 & 0x0000F000)))
 		return false;
-	if (((cond1 & 0x0F000000) != 0) && ((cond1 & 0x0F000000) != (driver1 & 0x0F000000)))
+	if (((cond1 & 0x0F000000) != 0) &&
+	    ((cond1 & 0x0F000000) != (driver1 & 0x0F000000)))
 		return false;
 
 	/* Bit Defined Check ================ */
 	/* We don't care [31:28] and [23:20] */
 	/* */
-	cond1   &= 0x000F0FFF;
+	cond1 &= 0x000F0FFF;
 	driver1 &= 0x000F0FFF;
 
 	if ((cond1 & driver1) == cond1) {
@@ -72,137 +69,50 @@ static bool CheckPositive(struct dm_odm_t *pDM_Odm, const u32 Condition1, const
  ******************************************************************************/
 
 static u32 Array_MP_8723B_AGC_TAB[] = {
-		0xC78, 0xFD000001,
-		0xC78, 0xFC010001,
-		0xC78, 0xFB020001,
-		0xC78, 0xFA030001,
-		0xC78, 0xF9040001,
-		0xC78, 0xF8050001,
-		0xC78, 0xF7060001,
-		0xC78, 0xF6070001,
-		0xC78, 0xF5080001,
-		0xC78, 0xF4090001,
-		0xC78, 0xF30A0001,
-		0xC78, 0xF20B0001,
-		0xC78, 0xF10C0001,
-		0xC78, 0xF00D0001,
-		0xC78, 0xEF0E0001,
-		0xC78, 0xEE0F0001,
-		0xC78, 0xED100001,
-		0xC78, 0xEC110001,
-		0xC78, 0xEB120001,
-		0xC78, 0xEA130001,
-		0xC78, 0xE9140001,
-		0xC78, 0xE8150001,
-		0xC78, 0xE7160001,
-		0xC78, 0xE6170001,
-		0xC78, 0xE5180001,
-		0xC78, 0xE4190001,
-		0xC78, 0xE31A0001,
-		0xC78, 0xA51B0001,
-		0xC78, 0xA41C0001,
-		0xC78, 0xA31D0001,
-		0xC78, 0x671E0001,
-		0xC78, 0x661F0001,
-		0xC78, 0x65200001,
-		0xC78, 0x64210001,
-		0xC78, 0x63220001,
-		0xC78, 0x4A230001,
-		0xC78, 0x49240001,
-		0xC78, 0x48250001,
-		0xC78, 0x47260001,
-		0xC78, 0x46270001,
-		0xC78, 0x45280001,
-		0xC78, 0x44290001,
-		0xC78, 0x432A0001,
-		0xC78, 0x422B0001,
-		0xC78, 0x292C0001,
-		0xC78, 0x282D0001,
-		0xC78, 0x272E0001,
-		0xC78, 0x262F0001,
-		0xC78, 0x0A300001,
-		0xC78, 0x09310001,
-		0xC78, 0x08320001,
-		0xC78, 0x07330001,
-		0xC78, 0x06340001,
-		0xC78, 0x05350001,
-		0xC78, 0x04360001,
-		0xC78, 0x03370001,
-		0xC78, 0x02380001,
-		0xC78, 0x01390001,
-		0xC78, 0x013A0001,
-		0xC78, 0x013B0001,
-		0xC78, 0x013C0001,
-		0xC78, 0x013D0001,
-		0xC78, 0x013E0001,
-		0xC78, 0x013F0001,
-		0xC78, 0xFC400001,
-		0xC78, 0xFB410001,
-		0xC78, 0xFA420001,
-		0xC78, 0xF9430001,
-		0xC78, 0xF8440001,
-		0xC78, 0xF7450001,
-		0xC78, 0xF6460001,
-		0xC78, 0xF5470001,
-		0xC78, 0xF4480001,
-		0xC78, 0xF3490001,
-		0xC78, 0xF24A0001,
-		0xC78, 0xF14B0001,
-		0xC78, 0xF04C0001,
-		0xC78, 0xEF4D0001,
-		0xC78, 0xEE4E0001,
-		0xC78, 0xED4F0001,
-		0xC78, 0xEC500001,
-		0xC78, 0xEB510001,
-		0xC78, 0xEA520001,
-		0xC78, 0xE9530001,
-		0xC78, 0xE8540001,
-		0xC78, 0xE7550001,
-		0xC78, 0xE6560001,
-		0xC78, 0xE5570001,
-		0xC78, 0xE4580001,
-		0xC78, 0xE3590001,
-		0xC78, 0xA65A0001,
-		0xC78, 0xA55B0001,
-		0xC78, 0xA45C0001,
-		0xC78, 0xA35D0001,
-		0xC78, 0x675E0001,
-		0xC78, 0x665F0001,
-		0xC78, 0x65600001,
-		0xC78, 0x64610001,
-		0xC78, 0x63620001,
-		0xC78, 0x62630001,
-		0xC78, 0x61640001,
-		0xC78, 0x48650001,
-		0xC78, 0x47660001,
-		0xC78, 0x46670001,
-		0xC78, 0x45680001,
-		0xC78, 0x44690001,
-		0xC78, 0x436A0001,
-		0xC78, 0x426B0001,
-		0xC78, 0x286C0001,
-		0xC78, 0x276D0001,
-		0xC78, 0x266E0001,
-		0xC78, 0x256F0001,
-		0xC78, 0x24700001,
-		0xC78, 0x09710001,
-		0xC78, 0x08720001,
-		0xC78, 0x07730001,
-		0xC78, 0x06740001,
-		0xC78, 0x05750001,
-		0xC78, 0x04760001,
-		0xC78, 0x03770001,
-		0xC78, 0x02780001,
-		0xC78, 0x01790001,
-		0xC78, 0x017A0001,
-		0xC78, 0x017B0001,
-		0xC78, 0x017C0001,
-		0xC78, 0x017D0001,
-		0xC78, 0x017E0001,
-		0xC78, 0x017F0001,
-		0xC50, 0x69553422,
-		0xC50, 0x69553420,
-		0x824, 0x00390204,
+	0xC78, 0xFD000001, 0xC78, 0xFC010001, 0xC78, 0xFB020001,
+	0xC78, 0xFA030001, 0xC78, 0xF9040001, 0xC78, 0xF8050001,
+	0xC78, 0xF7060001, 0xC78, 0xF6070001, 0xC78, 0xF5080001,
+	0xC78, 0xF4090001, 0xC78, 0xF30A0001, 0xC78, 0xF20B0001,
+	0xC78, 0xF10C0001, 0xC78, 0xF00D0001, 0xC78, 0xEF0E0001,
+	0xC78, 0xEE0F0001, 0xC78, 0xED100001, 0xC78, 0xEC110001,
+	0xC78, 0xEB120001, 0xC78, 0xEA130001, 0xC78, 0xE9140001,
+	0xC78, 0xE8150001, 0xC78, 0xE7160001, 0xC78, 0xE6170001,
+	0xC78, 0xE5180001, 0xC78, 0xE4190001, 0xC78, 0xE31A0001,
+	0xC78, 0xA51B0001, 0xC78, 0xA41C0001, 0xC78, 0xA31D0001,
+	0xC78, 0x671E0001, 0xC78, 0x661F0001, 0xC78, 0x65200001,
+	0xC78, 0x64210001, 0xC78, 0x63220001, 0xC78, 0x4A230001,
+	0xC78, 0x49240001, 0xC78, 0x48250001, 0xC78, 0x47260001,
+	0xC78, 0x46270001, 0xC78, 0x45280001, 0xC78, 0x44290001,
+	0xC78, 0x432A0001, 0xC78, 0x422B0001, 0xC78, 0x292C0001,
+	0xC78, 0x282D0001, 0xC78, 0x272E0001, 0xC78, 0x262F0001,
+	0xC78, 0x0A300001, 0xC78, 0x09310001, 0xC78, 0x08320001,
+	0xC78, 0x07330001, 0xC78, 0x06340001, 0xC78, 0x05350001,
+	0xC78, 0x04360001, 0xC78, 0x03370001, 0xC78, 0x02380001,
+	0xC78, 0x01390001, 0xC78, 0x013A0001, 0xC78, 0x013B0001,
+	0xC78, 0x013C0001, 0xC78, 0x013D0001, 0xC78, 0x013E0001,
+	0xC78, 0x013F0001, 0xC78, 0xFC400001, 0xC78, 0xFB410001,
+	0xC78, 0xFA420001, 0xC78, 0xF9430001, 0xC78, 0xF8440001,
+	0xC78, 0xF7450001, 0xC78, 0xF6460001, 0xC78, 0xF5470001,
+	0xC78, 0xF4480001, 0xC78, 0xF3490001, 0xC78, 0xF24A0001,
+	0xC78, 0xF14B0001, 0xC78, 0xF04C0001, 0xC78, 0xEF4D0001,
+	0xC78, 0xEE4E0001, 0xC78, 0xED4F0001, 0xC78, 0xEC500001,
+	0xC78, 0xEB510001, 0xC78, 0xEA520001, 0xC78, 0xE9530001,
+	0xC78, 0xE8540001, 0xC78, 0xE7550001, 0xC78, 0xE6560001,
+	0xC78, 0xE5570001, 0xC78, 0xE4580001, 0xC78, 0xE3590001,
+	0xC78, 0xA65A0001, 0xC78, 0xA55B0001, 0xC78, 0xA45C0001,
+	0xC78, 0xA35D0001, 0xC78, 0x675E0001, 0xC78, 0x665F0001,
+	0xC78, 0x65600001, 0xC78, 0x64610001, 0xC78, 0x63620001,
+	0xC78, 0x62630001, 0xC78, 0x61640001, 0xC78, 0x48650001,
+	0xC78, 0x47660001, 0xC78, 0x46670001, 0xC78, 0x45680001,
+	0xC78, 0x44690001, 0xC78, 0x436A0001, 0xC78, 0x426B0001,
+	0xC78, 0x286C0001, 0xC78, 0x276D0001, 0xC78, 0x266E0001,
+	0xC78, 0x256F0001, 0xC78, 0x24700001, 0xC78, 0x09710001,
+	0xC78, 0x08720001, 0xC78, 0x07730001, 0xC78, 0x06740001,
+	0xC78, 0x05750001, 0xC78, 0x04760001, 0xC78, 0x03770001,
+	0xC78, 0x02780001, 0xC78, 0x01790001, 0xC78, 0x017A0001,
+	0xC78, 0x017B0001, 0xC78, 0x017C0001, 0xC78, 0x017D0001,
+	0xC78, 0x017E0001, 0xC78, 0x017F0001, 0xC50, 0x69553422,
+	0xC50, 0x69553420, 0x824, 0x00390204,
 
 };
 
@@ -223,7 +133,7 @@ void ODM_ReadAndConfig_MP_8723B_AGC_TAB(struct dm_odm_t *pDM_Odm)
 		} else {
 			/* This line is the beginning of branch. */
 			bool bMatched = true;
-			u8  cCond  = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
+			u8 cCond = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
 
 			if (cCond == COND_ELSE) { /* ELSE, ENDIF */
 				bMatched = true;
@@ -250,15 +160,19 @@ void ODM_ReadAndConfig_MP_8723B_AGC_TAB(struct dm_odm_t *pDM_Odm)
 			} else {
 				/* Configure matched pairs and skip to end of if-else. */
 				while (v1 < 0x40000000 && i < ArrayLen - 2) {
-					odm_ConfigBB_AGC_8723B(pDM_Odm, v1, bMaskDWord, v2);
+					odm_ConfigBB_AGC_8723B(pDM_Odm, v1,
+							       bMaskDWord, v2);
 					READ_NEXT_PAIR(v1, v2, i);
 				}
 
 				/* Keeps reading until ENDIF. */
 				cCond = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
-				while (cCond != COND_ENDIF && i < ArrayLen - 2) {
+				while (cCond != COND_ENDIF &&
+				       i < ArrayLen - 2) {
 					READ_NEXT_PAIR(v1, v2, i);
-					cCond = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
+					cCond = (u8)((v1 &
+						      (BIT(29) | BIT(28))) >>
+						     28);
 				}
 			}
 		}
@@ -270,199 +184,71 @@ void ODM_ReadAndConfig_MP_8723B_AGC_TAB(struct dm_odm_t *pDM_Odm)
  ******************************************************************************/
 
 static u32 Array_MP_8723B_PHY_REG[] = {
-		0x800, 0x80040000,
-		0x804, 0x00000003,
-		0x808, 0x0000FC00,
-		0x80C, 0x0000000A,
-		0x810, 0x10001331,
-		0x814, 0x020C3D10,
-		0x818, 0x02200385,
-		0x81C, 0x00000000,
-		0x820, 0x01000100,
-		0x824, 0x00190204,
-		0x828, 0x00000000,
-		0x82C, 0x00000000,
-		0x830, 0x00000000,
-		0x834, 0x00000000,
-		0x838, 0x00000000,
-		0x83C, 0x00000000,
-		0x840, 0x00010000,
-		0x844, 0x00000000,
-		0x848, 0x00000000,
-		0x84C, 0x00000000,
-		0x850, 0x00000000,
-		0x854, 0x00000000,
-		0x858, 0x569A11A9,
-		0x85C, 0x01000014,
-		0x860, 0x66F60110,
-		0x864, 0x061F0649,
-		0x868, 0x00000000,
-		0x86C, 0x27272700,
-		0x870, 0x07000760,
-		0x874, 0x25004000,
-		0x878, 0x00000808,
-		0x87C, 0x00000000,
-		0x880, 0xB0000C1C,
-		0x884, 0x00000001,
-		0x888, 0x00000000,
-		0x88C, 0xCCC000C0,
-		0x890, 0x00000800,
-		0x894, 0xFFFFFFFE,
-		0x898, 0x40302010,
-		0x89C, 0x00706050,
-		0x900, 0x00000000,
-		0x904, 0x00000023,
-		0x908, 0x00000000,
-		0x90C, 0x81121111,
-		0x910, 0x00000002,
-		0x914, 0x00000201,
-		0xA00, 0x00D047C8,
-		0xA04, 0x80FF800C,
-		0xA08, 0x8C838300,
-		0xA0C, 0x2E7F120F,
-		0xA10, 0x9500BB78,
-		0xA14, 0x1114D028,
-		0xA18, 0x00881117,
-		0xA1C, 0x89140F00,
-		0xA20, 0x1A1B0000,
-		0xA24, 0x090E1317,
-		0xA28, 0x00000204,
-		0xA2C, 0x00D30000,
-		0xA70, 0x101FBF00,
-		0xA74, 0x00000007,
-		0xA78, 0x00000900,
-		0xA7C, 0x225B0606,
-		0xA80, 0x21806490,
-		0xB2C, 0x00000000,
-		0xC00, 0x48071D40,
-		0xC04, 0x03A05611,
-		0xC08, 0x000000E4,
-		0xC0C, 0x6C6C6C6C,
-		0xC10, 0x08800000,
-		0xC14, 0x40000100,
-		0xC18, 0x08800000,
-		0xC1C, 0x40000100,
-		0xC20, 0x00000000,
-		0xC24, 0x00000000,
-		0xC28, 0x00000000,
-		0xC2C, 0x00000000,
-		0xC30, 0x69E9AC44,
-		0xC34, 0x469652AF,
-		0xC38, 0x49795994,
-		0xC3C, 0x0A97971C,
-		0xC40, 0x1F7C403F,
-		0xC44, 0x000100B7,
-		0xC48, 0xEC020107,
-		0xC4C, 0x007F037F,
-		0xC50, 0x69553420,
-		0xC54, 0x43BC0094,
-		0xC58, 0x00013149,
-		0xC5C, 0x00250492,
-		0xC60, 0x00000000,
-		0xC64, 0x7112848B,
-		0xC68, 0x47C00BFF,
-		0xC6C, 0x00000036,
-		0xC70, 0x2C7F000D,
-		0xC74, 0x020610DB,
-		0xC78, 0x0000001F,
-		0xC7C, 0x00B91612,
-		0xC80, 0x390000E4,
-		0xC84, 0x20F60000,
-		0xC88, 0x40000100,
-		0xC8C, 0x20200000,
-		0xC90, 0x00020E1A,
-		0xC94, 0x00000000,
-		0xC98, 0x00020E1A,
-		0xC9C, 0x00007F7F,
-		0xCA0, 0x00000000,
-		0xCA4, 0x000300A0,
-		0xCA8, 0x00000000,
-		0xCAC, 0x00000000,
-		0xCB0, 0x00000000,
-		0xCB4, 0x00000000,
-		0xCB8, 0x00000000,
-		0xCBC, 0x28000000,
-		0xCC0, 0x00000000,
-		0xCC4, 0x00000000,
-		0xCC8, 0x00000000,
-		0xCCC, 0x00000000,
-		0xCD0, 0x00000000,
-		0xCD4, 0x00000000,
-		0xCD8, 0x64B22427,
-		0xCDC, 0x00766932,
-		0xCE0, 0x00222222,
-		0xCE4, 0x00000000,
-		0xCE8, 0x37644302,
-		0xCEC, 0x2F97D40C,
-		0xD00, 0x00000740,
-		0xD04, 0x40020401,
-		0xD08, 0x0000907F,
-		0xD0C, 0x20010201,
-		0xD10, 0xA0633333,
-		0xD14, 0x3333BC53,
-		0xD18, 0x7A8F5B6F,
-		0xD2C, 0xCC979975,
-		0xD30, 0x00000000,
-		0xD34, 0x80608000,
-		0xD38, 0x00000000,
-		0xD3C, 0x00127353,
-		0xD40, 0x00000000,
-		0xD44, 0x00000000,
-		0xD48, 0x00000000,
-		0xD4C, 0x00000000,
-		0xD50, 0x6437140A,
-		0xD54, 0x00000000,
-		0xD58, 0x00000282,
-		0xD5C, 0x30032064,
-		0xD60, 0x4653DE68,
-		0xD64, 0x04518A3C,
-		0xD68, 0x00002101,
-		0xD6C, 0x2A201C16,
-		0xD70, 0x1812362E,
-		0xD74, 0x322C2220,
-		0xD78, 0x000E3C24,
-		0xE00, 0x2D2D2D2D,
-		0xE04, 0x2D2D2D2D,
-		0xE08, 0x0390272D,
-		0xE10, 0x2D2D2D2D,
-		0xE14, 0x2D2D2D2D,
-		0xE18, 0x2D2D2D2D,
-		0xE1C, 0x2D2D2D2D,
-		0xE28, 0x00000000,
-		0xE30, 0x1000DC1F,
-		0xE34, 0x10008C1F,
-		0xE38, 0x02140102,
-		0xE3C, 0x681604C2,
-		0xE40, 0x01007C00,
-		0xE44, 0x01004800,
-		0xE48, 0xFB000000,
-		0xE4C, 0x000028D1,
-		0xE50, 0x1000DC1F,
-		0xE54, 0x10008C1F,
-		0xE58, 0x02140102,
-		0xE5C, 0x28160D05,
-		0xE60, 0x00000008,
-		0xE68, 0x001B2556,
-		0xE6C, 0x00C00096,
-		0xE70, 0x00C00096,
-		0xE74, 0x01000056,
-		0xE78, 0x01000014,
-		0xE7C, 0x01000056,
-		0xE80, 0x01000014,
-		0xE84, 0x00C00096,
-		0xE88, 0x01000056,
-		0xE8C, 0x00C00096,
-		0xED0, 0x00C00096,
-		0xED4, 0x00C00096,
-		0xED8, 0x00C00096,
-		0xEDC, 0x000000D6,
-		0xEE0, 0x000000D6,
-		0xEEC, 0x01C00016,
-		0xF14, 0x00000003,
-		0xF4C, 0x00000000,
-		0xF00, 0x00000300,
-		0x820, 0x01000100,
-		0x800, 0x83040000,
+	0x800, 0x80040000, 0x804, 0x00000003, 0x808, 0x0000FC00,
+	0x80C, 0x0000000A, 0x810, 0x10001331, 0x814, 0x020C3D10,
+	0x818, 0x02200385, 0x81C, 0x00000000, 0x820, 0x01000100,
+	0x824, 0x00190204, 0x828, 0x00000000, 0x82C, 0x00000000,
+	0x830, 0x00000000, 0x834, 0x00000000, 0x838, 0x00000000,
+	0x83C, 0x00000000, 0x840, 0x00010000, 0x844, 0x00000000,
+	0x848, 0x00000000, 0x84C, 0x00000000, 0x850, 0x00000000,
+	0x854, 0x00000000, 0x858, 0x569A11A9, 0x85C, 0x01000014,
+	0x860, 0x66F60110, 0x864, 0x061F0649, 0x868, 0x00000000,
+	0x86C, 0x27272700, 0x870, 0x07000760, 0x874, 0x25004000,
+	0x878, 0x00000808, 0x87C, 0x00000000, 0x880, 0xB0000C1C,
+	0x884, 0x00000001, 0x888, 0x00000000, 0x88C, 0xCCC000C0,
+	0x890, 0x00000800, 0x894, 0xFFFFFFFE, 0x898, 0x40302010,
+	0x89C, 0x00706050, 0x900, 0x00000000, 0x904, 0x00000023,
+	0x908, 0x00000000, 0x90C, 0x81121111, 0x910, 0x00000002,
+	0x914, 0x00000201, 0xA00, 0x00D047C8, 0xA04, 0x80FF800C,
+	0xA08, 0x8C838300, 0xA0C, 0x2E7F120F, 0xA10, 0x9500BB78,
+	0xA14, 0x1114D028, 0xA18, 0x00881117, 0xA1C, 0x89140F00,
+	0xA20, 0x1A1B0000, 0xA24, 0x090E1317, 0xA28, 0x00000204,
+	0xA2C, 0x00D30000, 0xA70, 0x101FBF00, 0xA74, 0x00000007,
+	0xA78, 0x00000900, 0xA7C, 0x225B0606, 0xA80, 0x21806490,
+	0xB2C, 0x00000000, 0xC00, 0x48071D40, 0xC04, 0x03A05611,
+	0xC08, 0x000000E4, 0xC0C, 0x6C6C6C6C, 0xC10, 0x08800000,
+	0xC14, 0x40000100, 0xC18, 0x08800000, 0xC1C, 0x40000100,
+	0xC20, 0x00000000, 0xC24, 0x00000000, 0xC28, 0x00000000,
+	0xC2C, 0x00000000, 0xC30, 0x69E9AC44, 0xC34, 0x469652AF,
+	0xC38, 0x49795994, 0xC3C, 0x0A97971C, 0xC40, 0x1F7C403F,
+	0xC44, 0x000100B7, 0xC48, 0xEC020107, 0xC4C, 0x007F037F,
+	0xC50, 0x69553420, 0xC54, 0x43BC0094, 0xC58, 0x00013149,
+	0xC5C, 0x00250492, 0xC60, 0x00000000, 0xC64, 0x7112848B,
+	0xC68, 0x47C00BFF, 0xC6C, 0x00000036, 0xC70, 0x2C7F000D,
+	0xC74, 0x020610DB, 0xC78, 0x0000001F, 0xC7C, 0x00B91612,
+	0xC80, 0x390000E4, 0xC84, 0x20F60000, 0xC88, 0x40000100,
+	0xC8C, 0x20200000, 0xC90, 0x00020E1A, 0xC94, 0x00000000,
+	0xC98, 0x00020E1A, 0xC9C, 0x00007F7F, 0xCA0, 0x00000000,
+	0xCA4, 0x000300A0, 0xCA8, 0x00000000, 0xCAC, 0x00000000,
+	0xCB0, 0x00000000, 0xCB4, 0x00000000, 0xCB8, 0x00000000,
+	0xCBC, 0x28000000, 0xCC0, 0x00000000, 0xCC4, 0x00000000,
+	0xCC8, 0x00000000, 0xCCC, 0x00000000, 0xCD0, 0x00000000,
+	0xCD4, 0x00000000, 0xCD8, 0x64B22427, 0xCDC, 0x00766932,
+	0xCE0, 0x00222222, 0xCE4, 0x00000000, 0xCE8, 0x37644302,
+	0xCEC, 0x2F97D40C, 0xD00, 0x00000740, 0xD04, 0x40020401,
+	0xD08, 0x0000907F, 0xD0C, 0x20010201, 0xD10, 0xA0633333,
+	0xD14, 0x3333BC53, 0xD18, 0x7A8F5B6F, 0xD2C, 0xCC979975,
+	0xD30, 0x00000000, 0xD34, 0x80608000, 0xD38, 0x00000000,
+	0xD3C, 0x00127353, 0xD40, 0x00000000, 0xD44, 0x00000000,
+	0xD48, 0x00000000, 0xD4C, 0x00000000, 0xD50, 0x6437140A,
+	0xD54, 0x00000000, 0xD58, 0x00000282, 0xD5C, 0x30032064,
+	0xD60, 0x4653DE68, 0xD64, 0x04518A3C, 0xD68, 0x00002101,
+	0xD6C, 0x2A201C16, 0xD70, 0x1812362E, 0xD74, 0x322C2220,
+	0xD78, 0x000E3C24, 0xE00, 0x2D2D2D2D, 0xE04, 0x2D2D2D2D,
+	0xE08, 0x0390272D, 0xE10, 0x2D2D2D2D, 0xE14, 0x2D2D2D2D,
+	0xE18, 0x2D2D2D2D, 0xE1C, 0x2D2D2D2D, 0xE28, 0x00000000,
+	0xE30, 0x1000DC1F, 0xE34, 0x10008C1F, 0xE38, 0x02140102,
+	0xE3C, 0x681604C2, 0xE40, 0x01007C00, 0xE44, 0x01004800,
+	0xE48, 0xFB000000, 0xE4C, 0x000028D1, 0xE50, 0x1000DC1F,
+	0xE54, 0x10008C1F, 0xE58, 0x02140102, 0xE5C, 0x28160D05,
+	0xE60, 0x00000008, 0xE68, 0x001B2556, 0xE6C, 0x00C00096,
+	0xE70, 0x00C00096, 0xE74, 0x01000056, 0xE78, 0x01000014,
+	0xE7C, 0x01000056, 0xE80, 0x01000014, 0xE84, 0x00C00096,
+	0xE88, 0x01000056, 0xE8C, 0x00C00096, 0xED0, 0x00C00096,
+	0xED4, 0x00C00096, 0xED8, 0x00C00096, 0xEDC, 0x000000D6,
+	0xEE0, 0x000000D6, 0xEEC, 0x01C00016, 0xF14, 0x00000003,
+	0xF4C, 0x00000000, 0xF00, 0x00000300, 0x820, 0x01000100,
+	0x800, 0x83040000,
 
 };
 
@@ -483,7 +269,7 @@ void ODM_ReadAndConfig_MP_8723B_PHY_REG(struct dm_odm_t *pDM_Odm)
 		} else {
 			/* This line is the beginning of branch. */
 			bool bMatched = true;
-			u8  cCond  = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
+			u8 cCond = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
 
 			if (cCond == COND_ELSE) { /* ELSE, ENDIF */
 				bMatched = true;
@@ -509,15 +295,19 @@ void ODM_ReadAndConfig_MP_8723B_PHY_REG(struct dm_odm_t *pDM_Odm)
 				i -= 2; /* prevent from for-loop += 2 */
 			} else { /* Configure matched pairs and skip to end of if-else. */
 				while (v1 < 0x40000000 && i < ArrayLen - 2) {
-					odm_ConfigBB_PHY_8723B(pDM_Odm, v1, bMaskDWord, v2);
+					odm_ConfigBB_PHY_8723B(pDM_Odm, v1,
+							       bMaskDWord, v2);
 					READ_NEXT_PAIR(v1, v2, i);
 				}
 
 				/* Keeps reading until ENDIF. */
 				cCond = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
-				while (cCond != COND_ENDIF && i < ArrayLen - 2) {
+				while (cCond != COND_ENDIF &&
+				       i < ArrayLen - 2) {
 					READ_NEXT_PAIR(v1, v2, i);
-					cCond = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
+					cCond = (u8)((v1 &
+						      (BIT(29) | BIT(28))) >>
+						     28);
 				}
 			}
 		}
@@ -529,12 +319,10 @@ void ODM_ReadAndConfig_MP_8723B_PHY_REG(struct dm_odm_t *pDM_Odm)
  ******************************************************************************/
 
 static u32 Array_MP_8723B_PHY_REG_PG[] = {
-	0, 0x00000e08, 0x0000ff00, 0x00003800,
-	0, 0x0000086c, 0xffffff00, 0x32343600,
-	0, 0x00000e00, 0xffffffff, 0x40424444,
-	0, 0x00000e04, 0xffffffff, 0x28323638,
-	0, 0x00000e10, 0xffffffff, 0x38404244,
-	0, 0x00000e14, 0xffffffff, 0x26303436
+	0,	    0x00000e08, 0x0000ff00, 0x00003800, 0,	    0x0000086c,
+	0xffffff00, 0x32343600, 0,	    0x00000e00, 0xffffffff, 0x40424444,
+	0,	    0x00000e04, 0xffffffff, 0x28323638, 0,	    0x00000e10,
+	0xffffffff, 0x38404244, 0,	    0x00000e14, 0xffffffff, 0x26303436
 };
 
 void ODM_ReadAndConfig_MP_8723B_PHY_REG_PG(struct dm_odm_t *pDM_Odm)
diff --git a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_BB.h b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_BB.h
index 054acfe231b46..8f3e5918d52d7 100644
--- a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_BB.h
+++ b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_BB.h
@@ -12,28 +12,22 @@
  *                           AGC_TAB.TXT
  ******************************************************************************/
 
-void
-ODM_ReadAndConfig_MP_8723B_AGC_TAB(/*  TC: Test Chip, MP: MP Chip */
-	struct dm_odm_t *pDM_Odm
-);
+void ODM_ReadAndConfig_MP_8723B_AGC_TAB(/*  TC: Test Chip, MP: MP Chip */
+					struct dm_odm_t *pDM_Odm);
 
 /******************************************************************************
  *                           PHY_REG.TXT
  ******************************************************************************/
 
-void
-ODM_ReadAndConfig_MP_8723B_PHY_REG(/*  TC: Test Chip, MP: MP Chip */
-	struct dm_odm_t *pDM_Odm
-);
+void ODM_ReadAndConfig_MP_8723B_PHY_REG(/*  TC: Test Chip, MP: MP Chip */
+					struct dm_odm_t *pDM_Odm);
 
 /******************************************************************************
  *                           PHY_REG_PG.TXT
  ******************************************************************************/
 
-void
-ODM_ReadAndConfig_MP_8723B_PHY_REG_PG(/*  TC: Test Chip, MP: MP Chip */
-	struct dm_odm_t *pDM_Odm
-);
+void ODM_ReadAndConfig_MP_8723B_PHY_REG_PG(/*  TC: Test Chip, MP: MP Chip */
+					   struct dm_odm_t *pDM_Odm);
 u32 ODM_GetVersion_MP_8723B_PHY_REG_PG(void);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_MAC.c b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_MAC.c
index 0e098bd2d9f61..33b76da7541d9 100644
--- a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_MAC.c
+++ b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_MAC.c
@@ -8,41 +8,38 @@
 #include <linux/kernel.h>
 #include "odm_precomp.h"
 
-static bool CheckPositive(struct dm_odm_t *pDM_Odm, const u32 Condition1, const u32 Condition2)
+static bool CheckPositive(struct dm_odm_t *pDM_Odm, const u32 Condition1,
+			  const u32 Condition2)
 {
-	u8 _BoardType =
-		((pDM_Odm->BoardType & BIT(4)) >> 4) << 0 | /* _GLNA */
-		((pDM_Odm->BoardType & BIT(3)) >> 3) << 1 | /* _GPA */
-		((pDM_Odm->BoardType & BIT(7)) >> 7) << 2 | /* _ALNA */
-		((pDM_Odm->BoardType & BIT(6)) >> 6) << 3 | /* _APA */
-		((pDM_Odm->BoardType & BIT(2)) >> 2) << 4;  /* _BT */
-
-	u32   cond1   = Condition1, cond2 = Condition2;
-	u32    driver1 =
-		pDM_Odm->CutVersion       << 24 |
-		pDM_Odm->SupportPlatform  << 16 |
-		pDM_Odm->PackageType      << 12 |
-		pDM_Odm->SupportInterface << 8  |
-		_BoardType;
-
-	u32 driver2 =
-		pDM_Odm->TypeGLNA <<  0 |
-		pDM_Odm->TypeGPA  <<  8 |
-		pDM_Odm->TypeALNA << 16 |
-		pDM_Odm->TypeAPA  << 24;
+	u8 _BoardType = ((pDM_Odm->BoardType & BIT(4)) >> 4) << 0 | /* _GLNA */
+			((pDM_Odm->BoardType & BIT(3)) >> 3) << 1 | /* _GPA */
+			((pDM_Odm->BoardType & BIT(7)) >> 7) << 2 | /* _ALNA */
+			((pDM_Odm->BoardType & BIT(6)) >> 6) << 3 | /* _APA */
+			((pDM_Odm->BoardType & BIT(2)) >> 2) << 4; /* _BT */
+
+	u32 cond1 = Condition1, cond2 = Condition2;
+	u32 driver1 = pDM_Odm->CutVersion << 24 |
+		      pDM_Odm->SupportPlatform << 16 |
+		      pDM_Odm->PackageType << 12 |
+		      pDM_Odm->SupportInterface << 8 | _BoardType;
+
+	u32 driver2 = pDM_Odm->TypeGLNA << 0 | pDM_Odm->TypeGPA << 8 |
+		      pDM_Odm->TypeALNA << 16 | pDM_Odm->TypeAPA << 24;
 
 	/* Value Defined Check =============== */
 	/* QFN Type [15:12] and Cut Version [27:24] need to do value check */
 
-	if (((cond1 & 0x0000F000) != 0) && ((cond1 & 0x0000F000) != (driver1 & 0x0000F000)))
+	if (((cond1 & 0x0000F000) != 0) &&
+	    ((cond1 & 0x0000F000) != (driver1 & 0x0000F000)))
 		return false;
-	if (((cond1 & 0x0F000000) != 0) && ((cond1 & 0x0F000000) != (driver1 & 0x0F000000)))
+	if (((cond1 & 0x0F000000) != 0) &&
+	    ((cond1 & 0x0F000000) != (driver1 & 0x0F000000)))
 		return false;
 
 	/* Bit Defined Check ================ */
 	/* We don't care [31:28] and [23:20] */
 	/* */
-	cond1   &= 0x000F0FFF;
+	cond1 &= 0x000F0FFF;
 	driver1 &= 0x000F0FFF;
 
 	if ((cond1 & driver1) == cond1) {
@@ -72,109 +69,41 @@ static bool CheckPositive(struct dm_odm_t *pDM_Odm, const u32 Condition1, const
  ******************************************************************************/
 
 static u32 Array_MP_8723B_MAC_REG[] = {
-		0x02F, 0x00000030,
-		0x035, 0x00000000,
-		0x039, 0x00000008,
-		0x04E, 0x000000E0,
-		0x064, 0x00000000,
-		0x067, 0x00000020,
-		0x428, 0x0000000A,
-		0x429, 0x00000010,
-		0x430, 0x00000000,
-		0x431, 0x00000000,
-		0x432, 0x00000000,
-		0x433, 0x00000001,
-		0x434, 0x00000004,
-		0x435, 0x00000005,
-		0x436, 0x00000007,
-		0x437, 0x00000008,
-		0x43C, 0x00000004,
-		0x43D, 0x00000005,
-		0x43E, 0x00000007,
-		0x43F, 0x00000008,
-		0x440, 0x0000005D,
-		0x441, 0x00000001,
-		0x442, 0x00000000,
-		0x444, 0x00000010,
-		0x445, 0x00000000,
-		0x446, 0x00000000,
-		0x447, 0x00000000,
-		0x448, 0x00000000,
-		0x449, 0x000000F0,
-		0x44A, 0x0000000F,
-		0x44B, 0x0000003E,
-		0x44C, 0x00000010,
-		0x44D, 0x00000000,
-		0x44E, 0x00000000,
-		0x44F, 0x00000000,
-		0x450, 0x00000000,
-		0x451, 0x000000F0,
-		0x452, 0x0000000F,
-		0x453, 0x00000000,
-		0x456, 0x0000005E,
-		0x460, 0x00000066,
-		0x461, 0x00000066,
-		0x4C8, 0x000000FF,
-		0x4C9, 0x00000008,
-		0x4CC, 0x000000FF,
-		0x4CD, 0x000000FF,
-		0x4CE, 0x00000001,
-		0x500, 0x00000026,
-		0x501, 0x000000A2,
-		0x502, 0x0000002F,
-		0x503, 0x00000000,
-		0x504, 0x00000028,
-		0x505, 0x000000A3,
-		0x506, 0x0000005E,
-		0x507, 0x00000000,
-		0x508, 0x0000002B,
-		0x509, 0x000000A4,
-		0x50A, 0x0000005E,
-		0x50B, 0x00000000,
-		0x50C, 0x0000004F,
-		0x50D, 0x000000A4,
-		0x50E, 0x00000000,
-		0x50F, 0x00000000,
-		0x512, 0x0000001C,
-		0x514, 0x0000000A,
-		0x516, 0x0000000A,
-		0x525, 0x0000004F,
-		0x550, 0x00000010,
-		0x551, 0x00000010,
-		0x559, 0x00000002,
-		0x55C, 0x00000050,
-		0x55D, 0x000000FF,
-		0x605, 0x00000030,
-		0x608, 0x0000000E,
-		0x609, 0x0000002A,
-		0x620, 0x000000FF,
-		0x621, 0x000000FF,
-		0x622, 0x000000FF,
-		0x623, 0x000000FF,
-		0x624, 0x000000FF,
-		0x625, 0x000000FF,
-		0x626, 0x000000FF,
-		0x627, 0x000000FF,
-		0x638, 0x00000050,
-		0x63C, 0x0000000A,
-		0x63D, 0x0000000A,
-		0x63E, 0x0000000E,
-		0x63F, 0x0000000E,
-		0x640, 0x00000040,
-		0x642, 0x00000040,
-		0x643, 0x00000000,
-		0x652, 0x000000C8,
-		0x66E, 0x00000005,
-		0x700, 0x00000021,
-		0x701, 0x00000043,
-		0x702, 0x00000065,
-		0x703, 0x00000087,
-		0x708, 0x00000021,
-		0x709, 0x00000043,
-		0x70A, 0x00000065,
-		0x70B, 0x00000087,
-		0x765, 0x00000018,
-		0x76E, 0x00000004,
+	0x02F, 0x00000030, 0x035, 0x00000000, 0x039, 0x00000008,
+	0x04E, 0x000000E0, 0x064, 0x00000000, 0x067, 0x00000020,
+	0x428, 0x0000000A, 0x429, 0x00000010, 0x430, 0x00000000,
+	0x431, 0x00000000, 0x432, 0x00000000, 0x433, 0x00000001,
+	0x434, 0x00000004, 0x435, 0x00000005, 0x436, 0x00000007,
+	0x437, 0x00000008, 0x43C, 0x00000004, 0x43D, 0x00000005,
+	0x43E, 0x00000007, 0x43F, 0x00000008, 0x440, 0x0000005D,
+	0x441, 0x00000001, 0x442, 0x00000000, 0x444, 0x00000010,
+	0x445, 0x00000000, 0x446, 0x00000000, 0x447, 0x00000000,
+	0x448, 0x00000000, 0x449, 0x000000F0, 0x44A, 0x0000000F,
+	0x44B, 0x0000003E, 0x44C, 0x00000010, 0x44D, 0x00000000,
+	0x44E, 0x00000000, 0x44F, 0x00000000, 0x450, 0x00000000,
+	0x451, 0x000000F0, 0x452, 0x0000000F, 0x453, 0x00000000,
+	0x456, 0x0000005E, 0x460, 0x00000066, 0x461, 0x00000066,
+	0x4C8, 0x000000FF, 0x4C9, 0x00000008, 0x4CC, 0x000000FF,
+	0x4CD, 0x000000FF, 0x4CE, 0x00000001, 0x500, 0x00000026,
+	0x501, 0x000000A2, 0x502, 0x0000002F, 0x503, 0x00000000,
+	0x504, 0x00000028, 0x505, 0x000000A3, 0x506, 0x0000005E,
+	0x507, 0x00000000, 0x508, 0x0000002B, 0x509, 0x000000A4,
+	0x50A, 0x0000005E, 0x50B, 0x00000000, 0x50C, 0x0000004F,
+	0x50D, 0x000000A4, 0x50E, 0x00000000, 0x50F, 0x00000000,
+	0x512, 0x0000001C, 0x514, 0x0000000A, 0x516, 0x0000000A,
+	0x525, 0x0000004F, 0x550, 0x00000010, 0x551, 0x00000010,
+	0x559, 0x00000002, 0x55C, 0x00000050, 0x55D, 0x000000FF,
+	0x605, 0x00000030, 0x608, 0x0000000E, 0x609, 0x0000002A,
+	0x620, 0x000000FF, 0x621, 0x000000FF, 0x622, 0x000000FF,
+	0x623, 0x000000FF, 0x624, 0x000000FF, 0x625, 0x000000FF,
+	0x626, 0x000000FF, 0x627, 0x000000FF, 0x638, 0x00000050,
+	0x63C, 0x0000000A, 0x63D, 0x0000000A, 0x63E, 0x0000000E,
+	0x63F, 0x0000000E, 0x640, 0x00000040, 0x642, 0x00000040,
+	0x643, 0x00000000, 0x652, 0x000000C8, 0x66E, 0x00000005,
+	0x700, 0x00000021, 0x701, 0x00000043, 0x702, 0x00000065,
+	0x703, 0x00000087, 0x708, 0x00000021, 0x709, 0x00000043,
+	0x70A, 0x00000065, 0x70B, 0x00000087, 0x765, 0x00000018,
+	0x76E, 0x00000004,
 
 };
 
@@ -195,7 +124,7 @@ void ODM_ReadAndConfig_MP_8723B_MAC_REG(struct dm_odm_t *pDM_Odm)
 		} else {
 			/* This line is the beginning of branch. */
 			bool bMatched = true;
-			u8  cCond  = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
+			u8 cCond = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
 
 			if (cCond == COND_ELSE) { /* ELSE, ENDIF */
 				bMatched = true;
@@ -221,15 +150,19 @@ void ODM_ReadAndConfig_MP_8723B_MAC_REG(struct dm_odm_t *pDM_Odm)
 				i -= 2; /* prevent from for-loop += 2 */
 			} else { /* Configure matched pairs and skip to end of if-else. */
 				while (v1 < 0x40000000 && i < ArrayLen - 2) {
-					odm_ConfigMAC_8723B(pDM_Odm, v1, (u8)v2);
+					odm_ConfigMAC_8723B(pDM_Odm, v1,
+							    (u8)v2);
 					READ_NEXT_PAIR(v1, v2, i);
 				}
 
 				/* Keeps reading until ENDIF. */
 				cCond = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
-				while (cCond != COND_ENDIF && i < ArrayLen - 2) {
+				while (cCond != COND_ENDIF &&
+				       i < ArrayLen - 2) {
 					READ_NEXT_PAIR(v1, v2, i);
-					cCond = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
+					cCond = (u8)((v1 &
+						      (BIT(29) | BIT(28))) >>
+						     28);
 				}
 			}
 		}
diff --git a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_MAC.h b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_MAC.h
index 2508613259194..1eb6b0f58eeca 100644
--- a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_MAC.h
+++ b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_MAC.h
@@ -12,8 +12,6 @@
  *                           MAC_REG.TXT
  ******************************************************************************/
 
-void
-ODM_ReadAndConfig_MP_8723B_MAC_REG(/*  TC: Test Chip, MP: MP Chip */
-	struct dm_odm_t *pDM_Odm
-);
+void ODM_ReadAndConfig_MP_8723B_MAC_REG(/*  TC: Test Chip, MP: MP Chip */
+					struct dm_odm_t *pDM_Odm);
 #endif
diff --git a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_RF.c b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_RF.c
index 30c8624bba252..9c0496e106f19 100644
--- a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_RF.c
+++ b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_RF.c
@@ -8,49 +8,38 @@
 #include <linux/kernel.h>
 #include "odm_precomp.h"
 
-static bool CheckPositive(
-	struct dm_odm_t *pDM_Odm, const u32 Condition1, const u32 Condition2
-)
+static bool CheckPositive(struct dm_odm_t *pDM_Odm, const u32 Condition1,
+			  const u32 Condition2)
 {
-	u8 _BoardType =
-			((pDM_Odm->BoardType & BIT(4)) >> 4) << 0 | /*  _GLNA */
+	u8 _BoardType = ((pDM_Odm->BoardType & BIT(4)) >> 4) << 0 | /*  _GLNA */
 			((pDM_Odm->BoardType & BIT(3)) >> 3) << 1 | /*  _GPA */
 			((pDM_Odm->BoardType & BIT(7)) >> 7) << 2 | /*  _ALNA */
 			((pDM_Odm->BoardType & BIT(6)) >> 6) << 3 | /*  _APA */
-			((pDM_Odm->BoardType & BIT(2)) >> 2) << 4;  /*  _BT */
+			((pDM_Odm->BoardType & BIT(2)) >> 2) << 4; /*  _BT */
 
 	u32 cond1 = Condition1, cond2 = Condition2;
-	u32 driver1 =
-		pDM_Odm->CutVersion << 24 |
-		pDM_Odm->SupportPlatform << 16 |
-		pDM_Odm->PackageType << 12 |
-		pDM_Odm->SupportInterface << 8 |
-		_BoardType;
-
-	u32 driver2 =
-		pDM_Odm->TypeGLNA <<  0 |
-		pDM_Odm->TypeGPA  <<  8 |
-		pDM_Odm->TypeALNA << 16 |
-		pDM_Odm->TypeAPA  << 24;
+	u32 driver1 = pDM_Odm->CutVersion << 24 |
+		      pDM_Odm->SupportPlatform << 16 |
+		      pDM_Odm->PackageType << 12 |
+		      pDM_Odm->SupportInterface << 8 | _BoardType;
+
+	u32 driver2 = pDM_Odm->TypeGLNA << 0 | pDM_Odm->TypeGPA << 8 |
+		      pDM_Odm->TypeALNA << 16 | pDM_Odm->TypeAPA << 24;
 
 	/*  Value Defined Check =============== */
 	/* QFN Type [15:12] and Cut Version [27:24] need to do value check */
 
-	if (
-		((cond1 & 0x0000F000) != 0) &&
-		((cond1 & 0x0000F000) != (driver1 & 0x0000F000))
-	)
+	if (((cond1 & 0x0000F000) != 0) &&
+	    ((cond1 & 0x0000F000) != (driver1 & 0x0000F000)))
 		return false;
 
-	if (
-		((cond1 & 0x0F000000) != 0) &&
-		((cond1 & 0x0F000000) != (driver1 & 0x0F000000))
-	)
+	if (((cond1 & 0x0F000000) != 0) &&
+	    ((cond1 & 0x0F000000) != (driver1 & 0x0F000000)))
 		return false;
 
 	/*  Bit Defined Check ================ */
 	/*  We don't care [31:28] and [23:20] */
-	cond1   &= 0x000F0FFF;
+	cond1 &= 0x000F0FFF;
 	driver1 &= 0x000F0FFF;
 
 	if ((cond1 & driver1) == cond1) {
@@ -83,130 +72,50 @@ static bool CheckPositive(
  ******************************************************************************/
 
 static u32 Array_MP_8723B_RadioA[] = {
-		0x000, 0x00010000,
-		0x0B0, 0x000DFFE0,
-		0x0FE, 0x00000000,
-		0x0FE, 0x00000000,
-		0x0FE, 0x00000000,
-		0x0B1, 0x00000018,
-		0x0FE, 0x00000000,
-		0x0FE, 0x00000000,
-		0x0FE, 0x00000000,
-		0x0B2, 0x00084C00,
-		0x0B5, 0x0000D2CC,
-		0x0B6, 0x000925AA,
-		0x0B7, 0x00000010,
-		0x0B8, 0x0000907F,
-		0x05C, 0x00000002,
-		0x07C, 0x00000002,
-		0x07E, 0x00000005,
-		0x08B, 0x0006FC00,
-		0x0B0, 0x000FF9F0,
-		0x01C, 0x000739D2,
-		0x01E, 0x00000000,
-		0x0DF, 0x00000780,
-		0x050, 0x00067435,
-	0x80002000, 0x00000000, 0x40000000, 0x00000000,
-		0x051, 0x0006B10E,
-	0x90003000, 0x00000000, 0x40000000, 0x00000000,
-		0x051, 0x0006B10E,
-	0x90004000, 0x00000000, 0x40000000, 0x00000000,
-		0x051, 0x0006B10E,
-	0xA0000000, 0x00000000,
-		0x051, 0x0006B04E,
-	0xB0000000, 0x00000000,
-		0x052, 0x000007D2,
-		0x053, 0x00000000,
-		0x054, 0x00050400,
-		0x055, 0x0004026E,
-		0x0DD, 0x0000004C,
-		0x070, 0x00067435,
-	0x80002000, 0x00000000, 0x40000000, 0x00000000,
-		0x071, 0x0006B10E,
-	0x90003000, 0x00000000, 0x40000000, 0x00000000,
-		0x071, 0x0006B10E,
-	0x90004000, 0x00000000, 0x40000000, 0x00000000,
-		0x071, 0x0006B10E,
-	0xA0000000, 0x00000000,
-		0x071, 0x0006B04E,
-	0xB0000000, 0x00000000,
-		0x072, 0x000007D2,
-		0x073, 0x00000000,
-		0x074, 0x00050400,
-		0x075, 0x0004026E,
-		0x0EF, 0x00000100,
-		0x034, 0x0000ADD7,
-		0x035, 0x00005C00,
-		0x034, 0x00009DD4,
-		0x035, 0x00005000,
-		0x034, 0x00008DD1,
-		0x035, 0x00004400,
-		0x034, 0x00007DCE,
-		0x035, 0x00003800,
-		0x034, 0x00006CD1,
-		0x035, 0x00004400,
-		0x034, 0x00005CCE,
-		0x035, 0x00003800,
-		0x034, 0x000048CE,
-		0x035, 0x00004400,
-		0x034, 0x000034CE,
-		0x035, 0x00003800,
-		0x034, 0x00002451,
-		0x035, 0x00004400,
-		0x034, 0x0000144E,
-		0x035, 0x00003800,
-		0x034, 0x00000051,
-		0x035, 0x00004400,
-		0x0EF, 0x00000000,
-		0x0EF, 0x00000100,
-		0x0ED, 0x00000010,
-		0x044, 0x0000ADD7,
-		0x044, 0x00009DD4,
-		0x044, 0x00008DD1,
-		0x044, 0x00007DCE,
-		0x044, 0x00006CC1,
-		0x044, 0x00005CCE,
-		0x044, 0x000044D1,
-		0x044, 0x000034CE,
-		0x044, 0x00002451,
-		0x044, 0x0000144E,
-		0x044, 0x00000051,
-		0x0EF, 0x00000000,
-		0x0ED, 0x00000000,
-		0x07F, 0x00020080,
-		0x0EF, 0x00002000,
-		0x03B, 0x000380EF,
-		0x03B, 0x000302FE,
-		0x03B, 0x00028CE6,
-		0x03B, 0x000200BC,
-		0x03B, 0x000188A5,
-		0x03B, 0x00010FBC,
-		0x03B, 0x00008F71,
-		0x03B, 0x00000900,
-		0x0EF, 0x00000000,
-		0x0ED, 0x00000001,
-		0x040, 0x000380EF,
-		0x040, 0x000302FE,
-		0x040, 0x00028CE6,
-		0x040, 0x000200BC,
-		0x040, 0x000188A5,
-		0x040, 0x00010FBC,
-		0x040, 0x00008F71,
-		0x040, 0x00000900,
-		0x0ED, 0x00000000,
-		0x082, 0x00080000,
-		0x083, 0x00008000,
-		0x084, 0x00048D80,
-		0x085, 0x00068000,
-		0x0A2, 0x00080000,
-		0x0A3, 0x00008000,
-		0x0A4, 0x00048D80,
-		0x0A5, 0x00068000,
-		0x0ED, 0x00000002,
-		0x0EF, 0x00000002,
-		0x056, 0x00000032,
-		0x076, 0x00000032,
-		0x001, 0x00000780,
+	0x000,	    0x00010000, 0x0B0,	    0x000DFFE0, 0x0FE,	    0x00000000,
+	0x0FE,	    0x00000000, 0x0FE,	    0x00000000, 0x0B1,	    0x00000018,
+	0x0FE,	    0x00000000, 0x0FE,	    0x00000000, 0x0FE,	    0x00000000,
+	0x0B2,	    0x00084C00, 0x0B5,	    0x0000D2CC, 0x0B6,	    0x000925AA,
+	0x0B7,	    0x00000010, 0x0B8,	    0x0000907F, 0x05C,	    0x00000002,
+	0x07C,	    0x00000002, 0x07E,	    0x00000005, 0x08B,	    0x0006FC00,
+	0x0B0,	    0x000FF9F0, 0x01C,	    0x000739D2, 0x01E,	    0x00000000,
+	0x0DF,	    0x00000780, 0x050,	    0x00067435, 0x80002000, 0x00000000,
+	0x40000000, 0x00000000, 0x051,	    0x0006B10E, 0x90003000, 0x00000000,
+	0x40000000, 0x00000000, 0x051,	    0x0006B10E, 0x90004000, 0x00000000,
+	0x40000000, 0x00000000, 0x051,	    0x0006B10E, 0xA0000000, 0x00000000,
+	0x051,	    0x0006B04E, 0xB0000000, 0x00000000, 0x052,	    0x000007D2,
+	0x053,	    0x00000000, 0x054,	    0x00050400, 0x055,	    0x0004026E,
+	0x0DD,	    0x0000004C, 0x070,	    0x00067435, 0x80002000, 0x00000000,
+	0x40000000, 0x00000000, 0x071,	    0x0006B10E, 0x90003000, 0x00000000,
+	0x40000000, 0x00000000, 0x071,	    0x0006B10E, 0x90004000, 0x00000000,
+	0x40000000, 0x00000000, 0x071,	    0x0006B10E, 0xA0000000, 0x00000000,
+	0x071,	    0x0006B04E, 0xB0000000, 0x00000000, 0x072,	    0x000007D2,
+	0x073,	    0x00000000, 0x074,	    0x00050400, 0x075,	    0x0004026E,
+	0x0EF,	    0x00000100, 0x034,	    0x0000ADD7, 0x035,	    0x00005C00,
+	0x034,	    0x00009DD4, 0x035,	    0x00005000, 0x034,	    0x00008DD1,
+	0x035,	    0x00004400, 0x034,	    0x00007DCE, 0x035,	    0x00003800,
+	0x034,	    0x00006CD1, 0x035,	    0x00004400, 0x034,	    0x00005CCE,
+	0x035,	    0x00003800, 0x034,	    0x000048CE, 0x035,	    0x00004400,
+	0x034,	    0x000034CE, 0x035,	    0x00003800, 0x034,	    0x00002451,
+	0x035,	    0x00004400, 0x034,	    0x0000144E, 0x035,	    0x00003800,
+	0x034,	    0x00000051, 0x035,	    0x00004400, 0x0EF,	    0x00000000,
+	0x0EF,	    0x00000100, 0x0ED,	    0x00000010, 0x044,	    0x0000ADD7,
+	0x044,	    0x00009DD4, 0x044,	    0x00008DD1, 0x044,	    0x00007DCE,
+	0x044,	    0x00006CC1, 0x044,	    0x00005CCE, 0x044,	    0x000044D1,
+	0x044,	    0x000034CE, 0x044,	    0x00002451, 0x044,	    0x0000144E,
+	0x044,	    0x00000051, 0x0EF,	    0x00000000, 0x0ED,	    0x00000000,
+	0x07F,	    0x00020080, 0x0EF,	    0x00002000, 0x03B,	    0x000380EF,
+	0x03B,	    0x000302FE, 0x03B,	    0x00028CE6, 0x03B,	    0x000200BC,
+	0x03B,	    0x000188A5, 0x03B,	    0x00010FBC, 0x03B,	    0x00008F71,
+	0x03B,	    0x00000900, 0x0EF,	    0x00000000, 0x0ED,	    0x00000001,
+	0x040,	    0x000380EF, 0x040,	    0x000302FE, 0x040,	    0x00028CE6,
+	0x040,	    0x000200BC, 0x040,	    0x000188A5, 0x040,	    0x00010FBC,
+	0x040,	    0x00008F71, 0x040,	    0x00000900, 0x0ED,	    0x00000000,
+	0x082,	    0x00080000, 0x083,	    0x00008000, 0x084,	    0x00048D80,
+	0x085,	    0x00068000, 0x0A2,	    0x00080000, 0x0A3,	    0x00008000,
+	0x0A4,	    0x00048D80, 0x0A5,	    0x00068000, 0x0ED,	    0x00000002,
+	0x0EF,	    0x00000002, 0x056,	    0x00000032, 0x076,	    0x00000032,
+	0x001,	    0x00000780,
 
 };
 
@@ -218,7 +127,7 @@ void ODM_ReadAndConfig_MP_8723B_RadioA(struct dm_odm_t *pDM_Odm)
 
 	for (i = 0; i < ArrayLen; i += 2) {
 		u32 v1 = Array[i];
-		u32 v2 = Array[i+1];
+		u32 v2 = Array[i + 1];
 
 		/*  This (offset, data) pair doesn't care the condition. */
 		if (v1 < 0x40000000) {
@@ -227,7 +136,7 @@ void ODM_ReadAndConfig_MP_8723B_RadioA(struct dm_odm_t *pDM_Odm)
 		} else {
 			/*  This line is the beginning of branch. */
 			bool bMatched = true;
-			u8  cCond  = (u8)((v1 & (BIT(29)|BIT(28))) >> 28);
+			u8 cCond = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
 
 			if (cCond == COND_ELSE) { /*  ELSE, ENDIF */
 				bMatched = true;
@@ -247,22 +156,26 @@ void ODM_ReadAndConfig_MP_8723B_RadioA(struct dm_odm_t *pDM_Odm)
 				 *  Condition isn't matched.
 				 *  Discard the following (offset, data) pairs.
 				 */
-				while (v1 < 0x40000000 && i < ArrayLen-2)
+				while (v1 < 0x40000000 && i < ArrayLen - 2)
 					READ_NEXT_PAIR(v1, v2, i);
 
 				i -= 2; /*  prevent from for-loop += 2 */
 			} else {
 				/*  Configure matched pairs and skip to end of if-else. */
-				while (v1 < 0x40000000 && i < ArrayLen-2) {
-					odm_ConfigRF_RadioA_8723B(pDM_Odm, v1, v2);
+				while (v1 < 0x40000000 && i < ArrayLen - 2) {
+					odm_ConfigRF_RadioA_8723B(pDM_Odm, v1,
+								  v2);
 					READ_NEXT_PAIR(v1, v2, i);
 				}
 
 				/*  Keeps reading until ENDIF. */
-				cCond = (u8)((v1 & (BIT(29)|BIT(28))) >> 28);
-				while (cCond != COND_ENDIF && i < ArrayLen-2) {
+				cCond = (u8)((v1 & (BIT(29) | BIT(28))) >> 28);
+				while (cCond != COND_ENDIF &&
+				       i < ArrayLen - 2) {
 					READ_NEXT_PAIR(v1, v2, i);
-					cCond = (u8)((v1 & (BIT(29)|BIT(28))) >> 28);
+					cCond = (u8)((v1 &
+						      (BIT(29) | BIT(28))) >>
+						     28);
 				}
 			}
 		}
@@ -274,83 +187,67 @@ void ODM_ReadAndConfig_MP_8723B_RadioA(struct dm_odm_t *pDM_Odm)
  ******************************************************************************/
 
 static u8 gDeltaSwingTableIdx_MP_2GB_N_TxPowerTrack_SDIO_8723B[] = {
-	0, 0, 1, 2, 2, 2, 3, 3, 3, 4,  5,  5,  6,  6, 6,  6,
-	7,  7,  7, 8,  8,  9,  9, 10, 10, 11, 12, 13, 14, 15
+	0, 0, 1, 2, 2, 2, 3, 3, 3,  4,	5,  5,	6,  6,	6,
+	6, 7, 7, 7, 8, 8, 9, 9, 10, 10, 11, 12, 13, 14, 15
 };
 static u8 gDeltaSwingTableIdx_MP_2GB_P_TxPowerTrack_SDIO_8723B[] = {
-	0, 0, 1, 2, 2, 3, 3, 4, 5, 5,  6,  6,  7,  7,  8,  8,
-	9,  9, 10, 10, 10, 11, 11, 12, 12, 13, 13, 14, 15, 15
+	0, 0, 1, 2,  2,	 3,  3,	 4,  5,	 5,  6,	 6,  7,	 7,  8,
+	8, 9, 9, 10, 10, 10, 11, 11, 12, 12, 13, 13, 14, 15, 15
 };
 static u8 gDeltaSwingTableIdx_MP_2GA_N_TxPowerTrack_SDIO_8723B[] = {
-	0, 0, 1, 2, 2, 2, 3, 3, 3, 4,  5,  5,  6,  6,  6,  6,
-	7,  7,  7,  8,  8,  9,  9, 10, 10, 11, 12, 13, 14, 15
+	0, 0, 1, 2, 2, 2, 3, 3, 3,  4,	5,  5,	6,  6,	6,
+	6, 7, 7, 7, 8, 8, 9, 9, 10, 10, 11, 12, 13, 14, 15
 };
 static u8 gDeltaSwingTableIdx_MP_2GA_P_TxPowerTrack_SDIO_8723B[] = {
-	0, 0, 1, 2, 2, 3, 3, 4, 5, 5,  6,  6,  7,  7,  8,  8,
-	9,  9, 10, 10, 10, 11, 11, 12, 12, 13, 13, 14, 15, 15
+	0, 0, 1, 2,  2,	 3,  3,	 4,  5,	 5,  6,	 6,  7,	 7,  8,
+	8, 9, 9, 10, 10, 10, 11, 11, 12, 12, 13, 13, 14, 15, 15
 };
 static u8 gDeltaSwingTableIdx_MP_2GCCKB_N_TxPowerTrack_SDIO_8723B[] = {
-	0, 0, 1, 2, 2, 3, 3, 4, 4, 5,  6,  6,  7,  7,  7,  8,
-	8,  8,  9,  9,  9, 10, 10, 11, 11, 12, 12, 13, 14, 15
+	0, 0, 1, 2, 2, 3, 3,  4,  4,  5,  6,  6,  7,  7,  7,
+	8, 8, 8, 9, 9, 9, 10, 10, 11, 11, 12, 12, 13, 14, 15
 };
 static u8 gDeltaSwingTableIdx_MP_2GCCKB_P_TxPowerTrack_SDIO_8723B[] = {
-	0, 0, 1, 2, 2, 2, 3, 3, 3, 4,  5,  5,  6,  6,  7,  7,
-	8,  8,  9,  9,  9, 10, 10, 11, 11, 12, 12, 13, 14, 15
+	0, 0, 1, 2, 2, 2, 3,  3,  3,  4,  5,  5,  6,  6,  7,
+	7, 8, 8, 9, 9, 9, 10, 10, 11, 11, 12, 12, 13, 14, 15
 };
 static u8 gDeltaSwingTableIdx_MP_2GCCKA_N_TxPowerTrack_SDIO_8723B[] = {
-	0, 0, 1, 2, 2, 3, 3, 4, 4, 5,  6,  6,  7,  7,  7,  8,
-	8,  8,  9,  9,  9, 10, 10, 11, 11, 12, 12, 13, 14, 15
+	0, 0, 1, 2, 2, 3, 3,  4,  4,  5,  6,  6,  7,  7,  7,
+	8, 8, 8, 9, 9, 9, 10, 10, 11, 11, 12, 12, 13, 14, 15
 };
 static u8 gDeltaSwingTableIdx_MP_2GCCKA_P_TxPowerTrack_SDIO_8723B[] = {
-	0, 0, 1, 2, 2, 2, 3, 3, 3, 4,  5,  5,  6,  6,  7,  7,
-	8,  8,  9,  9,  9, 10, 10, 11, 11, 12, 12, 13, 14, 15
+	0, 0, 1, 2, 2, 2, 3,  3,  3,  4,  5,  5,  6,  6,  7,
+	7, 8, 8, 9, 9, 9, 10, 10, 11, 11, 12, 12, 13, 14, 15
 };
 
 void ODM_ReadAndConfig_MP_8723B_TxPowerTrack_SDIO(struct dm_odm_t *pDM_Odm)
 {
 	struct odm_rf_cal_t *pRFCalibrateInfo = &pDM_Odm->RFCalibrateInfo;
 
-	memcpy(
-		pRFCalibrateInfo->DeltaSwingTableIdx_2GA_P,
-		gDeltaSwingTableIdx_MP_2GA_P_TxPowerTrack_SDIO_8723B,
-		DELTA_SWINGIDX_SIZE
-	);
-	memcpy(
-		pRFCalibrateInfo->DeltaSwingTableIdx_2GA_N,
-		gDeltaSwingTableIdx_MP_2GA_N_TxPowerTrack_SDIO_8723B,
-		DELTA_SWINGIDX_SIZE
-	);
-	memcpy(
-		pRFCalibrateInfo->DeltaSwingTableIdx_2GB_P,
-		gDeltaSwingTableIdx_MP_2GB_P_TxPowerTrack_SDIO_8723B,
-		DELTA_SWINGIDX_SIZE
-	);
-	memcpy(
-		pRFCalibrateInfo->DeltaSwingTableIdx_2GB_N,
-		gDeltaSwingTableIdx_MP_2GB_N_TxPowerTrack_SDIO_8723B,
-		DELTA_SWINGIDX_SIZE
-	);
-
-	memcpy(
-		pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKA_P,
-		gDeltaSwingTableIdx_MP_2GCCKA_P_TxPowerTrack_SDIO_8723B,
-		DELTA_SWINGIDX_SIZE
-	);
-	memcpy(
-		pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKA_N,
-		gDeltaSwingTableIdx_MP_2GCCKA_N_TxPowerTrack_SDIO_8723B,
-		DELTA_SWINGIDX_SIZE
-	);
-	memcpy(
-		pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKB_P,
-		gDeltaSwingTableIdx_MP_2GCCKB_P_TxPowerTrack_SDIO_8723B,
-		DELTA_SWINGIDX_SIZE
-	);
-	memcpy(
-		pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKB_N,
-		gDeltaSwingTableIdx_MP_2GCCKB_N_TxPowerTrack_SDIO_8723B,
-		DELTA_SWINGIDX_SIZE
-	);
+	memcpy(pRFCalibrateInfo->DeltaSwingTableIdx_2GA_P,
+	       gDeltaSwingTableIdx_MP_2GA_P_TxPowerTrack_SDIO_8723B,
+	       DELTA_SWINGIDX_SIZE);
+	memcpy(pRFCalibrateInfo->DeltaSwingTableIdx_2GA_N,
+	       gDeltaSwingTableIdx_MP_2GA_N_TxPowerTrack_SDIO_8723B,
+	       DELTA_SWINGIDX_SIZE);
+	memcpy(pRFCalibrateInfo->DeltaSwingTableIdx_2GB_P,
+	       gDeltaSwingTableIdx_MP_2GB_P_TxPowerTrack_SDIO_8723B,
+	       DELTA_SWINGIDX_SIZE);
+	memcpy(pRFCalibrateInfo->DeltaSwingTableIdx_2GB_N,
+	       gDeltaSwingTableIdx_MP_2GB_N_TxPowerTrack_SDIO_8723B,
+	       DELTA_SWINGIDX_SIZE);
+
+	memcpy(pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKA_P,
+	       gDeltaSwingTableIdx_MP_2GCCKA_P_TxPowerTrack_SDIO_8723B,
+	       DELTA_SWINGIDX_SIZE);
+	memcpy(pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKA_N,
+	       gDeltaSwingTableIdx_MP_2GCCKA_N_TxPowerTrack_SDIO_8723B,
+	       DELTA_SWINGIDX_SIZE);
+	memcpy(pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKB_P,
+	       gDeltaSwingTableIdx_MP_2GCCKB_P_TxPowerTrack_SDIO_8723B,
+	       DELTA_SWINGIDX_SIZE);
+	memcpy(pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKB_N,
+	       gDeltaSwingTableIdx_MP_2GCCKB_N_TxPowerTrack_SDIO_8723B,
+	       DELTA_SWINGIDX_SIZE);
 }
 
 /******************************************************************************
@@ -358,174 +255,118 @@ void ODM_ReadAndConfig_MP_8723B_TxPowerTrack_SDIO(struct dm_odm_t *pDM_Odm)
  ******************************************************************************/
 
 static u8 *Array_MP_8723B_TXPWR_LMT[] = {
-	"FCC", "20M", "CCK", "1T", "01", "32",
-	"ETSI", "20M", "CCK", "1T", "01", "32",
-	"MKK", "20M", "CCK", "1T", "01", "32",
-	"FCC", "20M", "CCK", "1T", "02", "32",
-	"ETSI", "20M", "CCK", "1T", "02", "32",
-	"MKK", "20M", "CCK", "1T", "02", "32",
-	"FCC", "20M", "CCK", "1T", "03", "32",
-	"ETSI", "20M", "CCK", "1T", "03", "32",
-	"MKK", "20M", "CCK", "1T", "03", "32",
-	"FCC", "20M", "CCK", "1T", "04", "32",
-	"ETSI", "20M", "CCK", "1T", "04", "32",
-	"MKK", "20M", "CCK", "1T", "04", "32",
-	"FCC", "20M", "CCK", "1T", "05", "32",
-	"ETSI", "20M", "CCK", "1T", "05", "32",
-	"MKK", "20M", "CCK", "1T", "05", "32",
-	"FCC", "20M", "CCK", "1T", "06", "32",
-	"ETSI", "20M", "CCK", "1T", "06", "32",
-	"MKK", "20M", "CCK", "1T", "06", "32",
-	"FCC", "20M", "CCK", "1T", "07", "32",
-	"ETSI", "20M", "CCK", "1T", "07", "32",
-	"MKK", "20M", "CCK", "1T", "07", "32",
-	"FCC", "20M", "CCK", "1T", "08", "32",
-	"ETSI", "20M", "CCK", "1T", "08", "32",
-	"MKK", "20M", "CCK", "1T", "08", "32",
-	"FCC", "20M", "CCK", "1T", "09", "32",
-	"ETSI", "20M", "CCK", "1T", "09", "32",
-	"MKK", "20M", "CCK", "1T", "09", "32",
-	"FCC", "20M", "CCK", "1T", "10", "32",
-	"ETSI", "20M", "CCK", "1T", "10", "32",
-	"MKK", "20M", "CCK", "1T", "10", "32",
-	"FCC", "20M", "CCK", "1T", "11", "32",
-	"ETSI", "20M", "CCK", "1T", "11", "32",
-	"MKK", "20M", "CCK", "1T", "11", "32",
-	"FCC", "20M", "CCK", "1T", "12", "63",
-	"ETSI", "20M", "CCK", "1T", "12", "32",
-	"MKK", "20M", "CCK", "1T", "12", "32",
-	"FCC", "20M", "CCK", "1T", "13", "63",
-	"ETSI", "20M", "CCK", "1T", "13", "32",
-	"MKK", "20M", "CCK", "1T", "13", "32",
-	"FCC", "20M", "CCK", "1T", "14", "63",
-	"ETSI", "20M", "CCK", "1T", "14", "63",
-	"MKK", "20M", "CCK", "1T", "14", "32",
-	"FCC", "20M", "OFDM", "1T", "01", "28",
-	"ETSI", "20M", "OFDM", "1T", "01", "32",
-	"MKK", "20M", "OFDM", "1T", "01", "32",
-	"FCC", "20M", "OFDM", "1T", "02", "28",
-	"ETSI", "20M", "OFDM", "1T", "02", "32",
-	"MKK", "20M", "OFDM", "1T", "02", "32",
-	"FCC", "20M", "OFDM", "1T", "03", "32",
-	"ETSI", "20M", "OFDM", "1T", "03", "32",
-	"MKK", "20M", "OFDM", "1T", "03", "32",
-	"FCC", "20M", "OFDM", "1T", "04", "32",
-	"ETSI", "20M", "OFDM", "1T", "04", "32",
-	"MKK", "20M", "OFDM", "1T", "04", "32",
-	"FCC", "20M", "OFDM", "1T", "05", "32",
-	"ETSI", "20M", "OFDM", "1T", "05", "32",
-	"MKK", "20M", "OFDM", "1T", "05", "32",
-	"FCC", "20M", "OFDM", "1T", "06", "32",
-	"ETSI", "20M", "OFDM", "1T", "06", "32",
-	"MKK", "20M", "OFDM", "1T", "06", "32",
-	"FCC", "20M", "OFDM", "1T", "07", "32",
-	"ETSI", "20M", "OFDM", "1T", "07", "32",
-	"MKK", "20M", "OFDM", "1T", "07", "32",
-	"FCC", "20M", "OFDM", "1T", "08", "32",
-	"ETSI", "20M", "OFDM", "1T", "08", "32",
-	"MKK", "20M", "OFDM", "1T", "08", "32",
-	"FCC", "20M", "OFDM", "1T", "09", "32",
-	"ETSI", "20M", "OFDM", "1T", "09", "32",
-	"MKK", "20M", "OFDM", "1T", "09", "32",
-	"FCC", "20M", "OFDM", "1T", "10", "28",
-	"ETSI", "20M", "OFDM", "1T", "10", "32",
-	"MKK", "20M", "OFDM", "1T", "10", "32",
-	"FCC", "20M", "OFDM", "1T", "11", "28",
-	"ETSI", "20M", "OFDM", "1T", "11", "32",
-	"MKK", "20M", "OFDM", "1T", "11", "32",
-	"FCC", "20M", "OFDM", "1T", "12", "63",
-	"ETSI", "20M", "OFDM", "1T", "12", "32",
-	"MKK", "20M", "OFDM", "1T", "12", "32",
-	"FCC", "20M", "OFDM", "1T", "13", "63",
-	"ETSI", "20M", "OFDM", "1T", "13", "32",
-	"MKK", "20M", "OFDM", "1T", "13", "32",
-	"FCC", "20M", "OFDM", "1T", "14", "63",
-	"ETSI", "20M", "OFDM", "1T", "14", "63",
-	"MKK", "20M", "OFDM", "1T", "14", "63",
-	"FCC", "20M", "HT", "1T", "01", "26",
-	"ETSI", "20M", "HT", "1T", "01", "32",
-	"MKK", "20M", "HT", "1T", "01", "32",
-	"FCC", "20M", "HT", "1T", "02", "26",
-	"ETSI", "20M", "HT", "1T", "02", "32",
-	"MKK", "20M", "HT", "1T", "02", "32",
-	"FCC", "20M", "HT", "1T", "03", "32",
-	"ETSI", "20M", "HT", "1T", "03", "32",
-	"MKK", "20M", "HT", "1T", "03", "32",
-	"FCC", "20M", "HT", "1T", "04", "32",
-	"ETSI", "20M", "HT", "1T", "04", "32",
-	"MKK", "20M", "HT", "1T", "04", "32",
-	"FCC", "20M", "HT", "1T", "05", "32",
-	"ETSI", "20M", "HT", "1T", "05", "32",
-	"MKK", "20M", "HT", "1T", "05", "32",
-	"FCC", "20M", "HT", "1T", "06", "32",
-	"ETSI", "20M", "HT", "1T", "06", "32",
-	"MKK", "20M", "HT", "1T", "06", "32",
-	"FCC", "20M", "HT", "1T", "07", "32",
-	"ETSI", "20M", "HT", "1T", "07", "32",
-	"MKK", "20M", "HT", "1T", "07", "32",
-	"FCC", "20M", "HT", "1T", "08", "32",
-	"ETSI", "20M", "HT", "1T", "08", "32",
-	"MKK", "20M", "HT", "1T", "08", "32",
-	"FCC", "20M", "HT", "1T", "09", "32",
-	"ETSI", "20M", "HT", "1T", "09", "32",
-	"MKK", "20M", "HT", "1T", "09", "32",
-	"FCC", "20M", "HT", "1T", "10", "26",
-	"ETSI", "20M", "HT", "1T", "10", "32",
-	"MKK", "20M", "HT", "1T", "10", "32",
-	"FCC", "20M", "HT", "1T", "11", "26",
-	"ETSI", "20M", "HT", "1T", "11", "32",
-	"MKK", "20M", "HT", "1T", "11", "32",
-	"FCC", "20M", "HT", "1T", "12", "63",
-	"ETSI", "20M", "HT", "1T", "12", "32",
-	"MKK", "20M", "HT", "1T", "12", "32",
-	"FCC", "20M", "HT", "1T", "13", "63",
-	"ETSI", "20M", "HT", "1T", "13", "32",
-	"MKK", "20M", "HT", "1T", "13", "32",
-	"FCC", "20M", "HT", "1T", "14", "63",
-	"ETSI", "20M", "HT", "1T", "14", "63",
-	"MKK", "20M", "HT", "1T", "14", "63",
-	"FCC", "40M", "HT", "1T", "01", "63",
-	"ETSI", "40M", "HT", "1T", "01", "63",
-	"MKK", "40M", "HT", "1T", "01", "63",
-	"FCC", "40M", "HT", "1T", "02", "63",
-	"ETSI", "40M", "HT", "1T", "02", "63",
-	"MKK", "40M", "HT", "1T", "02", "63",
-	"FCC", "40M", "HT", "1T", "03", "26",
-	"ETSI", "40M", "HT", "1T", "03", "32",
-	"MKK", "40M", "HT", "1T", "03", "32",
-	"FCC", "40M", "HT", "1T", "04", "26",
-	"ETSI", "40M", "HT", "1T", "04", "32",
-	"MKK", "40M", "HT", "1T", "04", "32",
-	"FCC", "40M", "HT", "1T", "05", "32",
-	"ETSI", "40M", "HT", "1T", "05", "32",
-	"MKK", "40M", "HT", "1T", "05", "32",
-	"FCC", "40M", "HT", "1T", "06", "32",
-	"ETSI", "40M", "HT", "1T", "06", "32",
-	"MKK", "40M", "HT", "1T", "06", "32",
-	"FCC", "40M", "HT", "1T", "07", "32",
-	"ETSI", "40M", "HT", "1T", "07", "32",
-	"MKK", "40M", "HT", "1T", "07", "32",
-	"FCC", "40M", "HT", "1T", "08", "26",
-	"ETSI", "40M", "HT", "1T", "08", "32",
-	"MKK", "40M", "HT", "1T", "08", "32",
-	"FCC", "40M", "HT", "1T", "09", "26",
-	"ETSI", "40M", "HT", "1T", "09", "32",
-	"MKK", "40M", "HT", "1T", "09", "32",
-	"FCC", "40M", "HT", "1T", "10", "26",
-	"ETSI", "40M", "HT", "1T", "10", "32",
-	"MKK", "40M", "HT", "1T", "10", "32",
-	"FCC", "40M", "HT", "1T", "11", "26",
-	"ETSI", "40M", "HT", "1T", "11", "32",
-	"MKK", "40M", "HT", "1T", "11", "32",
-	"FCC", "40M", "HT", "1T", "12", "63",
-	"ETSI", "40M", "HT", "1T", "12", "32",
-	"MKK", "40M", "HT", "1T", "12", "32",
-	"FCC", "40M", "HT", "1T", "13", "63",
-	"ETSI", "40M", "HT", "1T", "13", "32",
-	"MKK", "40M", "HT", "1T", "13", "32",
-	"FCC", "40M", "HT", "1T", "14", "63",
-	"ETSI", "40M", "HT", "1T", "14", "63",
-	"MKK", "40M", "HT", "1T", "14", "63"
+	"FCC", "20M", "CCK",  "1T",  "01",  "32",   "ETSI", "20M", "CCK",
+	"1T",  "01",  "32",   "MKK", "20M", "CCK",  "1T",   "01",  "32",
+	"FCC", "20M", "CCK",  "1T",  "02",  "32",   "ETSI", "20M", "CCK",
+	"1T",  "02",  "32",   "MKK", "20M", "CCK",  "1T",   "02",  "32",
+	"FCC", "20M", "CCK",  "1T",  "03",  "32",   "ETSI", "20M", "CCK",
+	"1T",  "03",  "32",   "MKK", "20M", "CCK",  "1T",   "03",  "32",
+	"FCC", "20M", "CCK",  "1T",  "04",  "32",   "ETSI", "20M", "CCK",
+	"1T",  "04",  "32",   "MKK", "20M", "CCK",  "1T",   "04",  "32",
+	"FCC", "20M", "CCK",  "1T",  "05",  "32",   "ETSI", "20M", "CCK",
+	"1T",  "05",  "32",   "MKK", "20M", "CCK",  "1T",   "05",  "32",
+	"FCC", "20M", "CCK",  "1T",  "06",  "32",   "ETSI", "20M", "CCK",
+	"1T",  "06",  "32",   "MKK", "20M", "CCK",  "1T",   "06",  "32",
+	"FCC", "20M", "CCK",  "1T",  "07",  "32",   "ETSI", "20M", "CCK",
+	"1T",  "07",  "32",   "MKK", "20M", "CCK",  "1T",   "07",  "32",
+	"FCC", "20M", "CCK",  "1T",  "08",  "32",   "ETSI", "20M", "CCK",
+	"1T",  "08",  "32",   "MKK", "20M", "CCK",  "1T",   "08",  "32",
+	"FCC", "20M", "CCK",  "1T",  "09",  "32",   "ETSI", "20M", "CCK",
+	"1T",  "09",  "32",   "MKK", "20M", "CCK",  "1T",   "09",  "32",
+	"FCC", "20M", "CCK",  "1T",  "10",  "32",   "ETSI", "20M", "CCK",
+	"1T",  "10",  "32",   "MKK", "20M", "CCK",  "1T",   "10",  "32",
+	"FCC", "20M", "CCK",  "1T",  "11",  "32",   "ETSI", "20M", "CCK",
+	"1T",  "11",  "32",   "MKK", "20M", "CCK",  "1T",   "11",  "32",
+	"FCC", "20M", "CCK",  "1T",  "12",  "63",   "ETSI", "20M", "CCK",
+	"1T",  "12",  "32",   "MKK", "20M", "CCK",  "1T",   "12",  "32",
+	"FCC", "20M", "CCK",  "1T",  "13",  "63",   "ETSI", "20M", "CCK",
+	"1T",  "13",  "32",   "MKK", "20M", "CCK",  "1T",   "13",  "32",
+	"FCC", "20M", "CCK",  "1T",  "14",  "63",   "ETSI", "20M", "CCK",
+	"1T",  "14",  "63",   "MKK", "20M", "CCK",  "1T",   "14",  "32",
+	"FCC", "20M", "OFDM", "1T",  "01",  "28",   "ETSI", "20M", "OFDM",
+	"1T",  "01",  "32",   "MKK", "20M", "OFDM", "1T",   "01",  "32",
+	"FCC", "20M", "OFDM", "1T",  "02",  "28",   "ETSI", "20M", "OFDM",
+	"1T",  "02",  "32",   "MKK", "20M", "OFDM", "1T",   "02",  "32",
+	"FCC", "20M", "OFDM", "1T",  "03",  "32",   "ETSI", "20M", "OFDM",
+	"1T",  "03",  "32",   "MKK", "20M", "OFDM", "1T",   "03",  "32",
+	"FCC", "20M", "OFDM", "1T",  "04",  "32",   "ETSI", "20M", "OFDM",
+	"1T",  "04",  "32",   "MKK", "20M", "OFDM", "1T",   "04",  "32",
+	"FCC", "20M", "OFDM", "1T",  "05",  "32",   "ETSI", "20M", "OFDM",
+	"1T",  "05",  "32",   "MKK", "20M", "OFDM", "1T",   "05",  "32",
+	"FCC", "20M", "OFDM", "1T",  "06",  "32",   "ETSI", "20M", "OFDM",
+	"1T",  "06",  "32",   "MKK", "20M", "OFDM", "1T",   "06",  "32",
+	"FCC", "20M", "OFDM", "1T",  "07",  "32",   "ETSI", "20M", "OFDM",
+	"1T",  "07",  "32",   "MKK", "20M", "OFDM", "1T",   "07",  "32",
+	"FCC", "20M", "OFDM", "1T",  "08",  "32",   "ETSI", "20M", "OFDM",
+	"1T",  "08",  "32",   "MKK", "20M", "OFDM", "1T",   "08",  "32",
+	"FCC", "20M", "OFDM", "1T",  "09",  "32",   "ETSI", "20M", "OFDM",
+	"1T",  "09",  "32",   "MKK", "20M", "OFDM", "1T",   "09",  "32",
+	"FCC", "20M", "OFDM", "1T",  "10",  "28",   "ETSI", "20M", "OFDM",
+	"1T",  "10",  "32",   "MKK", "20M", "OFDM", "1T",   "10",  "32",
+	"FCC", "20M", "OFDM", "1T",  "11",  "28",   "ETSI", "20M", "OFDM",
+	"1T",  "11",  "32",   "MKK", "20M", "OFDM", "1T",   "11",  "32",
+	"FCC", "20M", "OFDM", "1T",  "12",  "63",   "ETSI", "20M", "OFDM",
+	"1T",  "12",  "32",   "MKK", "20M", "OFDM", "1T",   "12",  "32",
+	"FCC", "20M", "OFDM", "1T",  "13",  "63",   "ETSI", "20M", "OFDM",
+	"1T",  "13",  "32",   "MKK", "20M", "OFDM", "1T",   "13",  "32",
+	"FCC", "20M", "OFDM", "1T",  "14",  "63",   "ETSI", "20M", "OFDM",
+	"1T",  "14",  "63",   "MKK", "20M", "OFDM", "1T",   "14",  "63",
+	"FCC", "20M", "HT",   "1T",  "01",  "26",   "ETSI", "20M", "HT",
+	"1T",  "01",  "32",   "MKK", "20M", "HT",   "1T",   "01",  "32",
+	"FCC", "20M", "HT",   "1T",  "02",  "26",   "ETSI", "20M", "HT",
+	"1T",  "02",  "32",   "MKK", "20M", "HT",   "1T",   "02",  "32",
+	"FCC", "20M", "HT",   "1T",  "03",  "32",   "ETSI", "20M", "HT",
+	"1T",  "03",  "32",   "MKK", "20M", "HT",   "1T",   "03",  "32",
+	"FCC", "20M", "HT",   "1T",  "04",  "32",   "ETSI", "20M", "HT",
+	"1T",  "04",  "32",   "MKK", "20M", "HT",   "1T",   "04",  "32",
+	"FCC", "20M", "HT",   "1T",  "05",  "32",   "ETSI", "20M", "HT",
+	"1T",  "05",  "32",   "MKK", "20M", "HT",   "1T",   "05",  "32",
+	"FCC", "20M", "HT",   "1T",  "06",  "32",   "ETSI", "20M", "HT",
+	"1T",  "06",  "32",   "MKK", "20M", "HT",   "1T",   "06",  "32",
+	"FCC", "20M", "HT",   "1T",  "07",  "32",   "ETSI", "20M", "HT",
+	"1T",  "07",  "32",   "MKK", "20M", "HT",   "1T",   "07",  "32",
+	"FCC", "20M", "HT",   "1T",  "08",  "32",   "ETSI", "20M", "HT",
+	"1T",  "08",  "32",   "MKK", "20M", "HT",   "1T",   "08",  "32",
+	"FCC", "20M", "HT",   "1T",  "09",  "32",   "ETSI", "20M", "HT",
+	"1T",  "09",  "32",   "MKK", "20M", "HT",   "1T",   "09",  "32",
+	"FCC", "20M", "HT",   "1T",  "10",  "26",   "ETSI", "20M", "HT",
+	"1T",  "10",  "32",   "MKK", "20M", "HT",   "1T",   "10",  "32",
+	"FCC", "20M", "HT",   "1T",  "11",  "26",   "ETSI", "20M", "HT",
+	"1T",  "11",  "32",   "MKK", "20M", "HT",   "1T",   "11",  "32",
+	"FCC", "20M", "HT",   "1T",  "12",  "63",   "ETSI", "20M", "HT",
+	"1T",  "12",  "32",   "MKK", "20M", "HT",   "1T",   "12",  "32",
+	"FCC", "20M", "HT",   "1T",  "13",  "63",   "ETSI", "20M", "HT",
+	"1T",  "13",  "32",   "MKK", "20M", "HT",   "1T",   "13",  "32",
+	"FCC", "20M", "HT",   "1T",  "14",  "63",   "ETSI", "20M", "HT",
+	"1T",  "14",  "63",   "MKK", "20M", "HT",   "1T",   "14",  "63",
+	"FCC", "40M", "HT",   "1T",  "01",  "63",   "ETSI", "40M", "HT",
+	"1T",  "01",  "63",   "MKK", "40M", "HT",   "1T",   "01",  "63",
+	"FCC", "40M", "HT",   "1T",  "02",  "63",   "ETSI", "40M", "HT",
+	"1T",  "02",  "63",   "MKK", "40M", "HT",   "1T",   "02",  "63",
+	"FCC", "40M", "HT",   "1T",  "03",  "26",   "ETSI", "40M", "HT",
+	"1T",  "03",  "32",   "MKK", "40M", "HT",   "1T",   "03",  "32",
+	"FCC", "40M", "HT",   "1T",  "04",  "26",   "ETSI", "40M", "HT",
+	"1T",  "04",  "32",   "MKK", "40M", "HT",   "1T",   "04",  "32",
+	"FCC", "40M", "HT",   "1T",  "05",  "32",   "ETSI", "40M", "HT",
+	"1T",  "05",  "32",   "MKK", "40M", "HT",   "1T",   "05",  "32",
+	"FCC", "40M", "HT",   "1T",  "06",  "32",   "ETSI", "40M", "HT",
+	"1T",  "06",  "32",   "MKK", "40M", "HT",   "1T",   "06",  "32",
+	"FCC", "40M", "HT",   "1T",  "07",  "32",   "ETSI", "40M", "HT",
+	"1T",  "07",  "32",   "MKK", "40M", "HT",   "1T",   "07",  "32",
+	"FCC", "40M", "HT",   "1T",  "08",  "26",   "ETSI", "40M", "HT",
+	"1T",  "08",  "32",   "MKK", "40M", "HT",   "1T",   "08",  "32",
+	"FCC", "40M", "HT",   "1T",  "09",  "26",   "ETSI", "40M", "HT",
+	"1T",  "09",  "32",   "MKK", "40M", "HT",   "1T",   "09",  "32",
+	"FCC", "40M", "HT",   "1T",  "10",  "26",   "ETSI", "40M", "HT",
+	"1T",  "10",  "32",   "MKK", "40M", "HT",   "1T",   "10",  "32",
+	"FCC", "40M", "HT",   "1T",  "11",  "26",   "ETSI", "40M", "HT",
+	"1T",  "11",  "32",   "MKK", "40M", "HT",   "1T",   "11",  "32",
+	"FCC", "40M", "HT",   "1T",  "12",  "63",   "ETSI", "40M", "HT",
+	"1T",  "12",  "32",   "MKK", "40M", "HT",   "1T",   "12",  "32",
+	"FCC", "40M", "HT",   "1T",  "13",  "63",   "ETSI", "40M", "HT",
+	"1T",  "13",  "32",   "MKK", "40M", "HT",   "1T",   "13",  "32",
+	"FCC", "40M", "HT",   "1T",  "14",  "63",   "ETSI", "40M", "HT",
+	"1T",  "14",  "63",   "MKK", "40M", "HT",   "1T",   "14",  "63"
 };
 
 void ODM_ReadAndConfig_MP_8723B_TXPWR_LMT(struct dm_odm_t *pDM_Odm)
@@ -535,20 +376,13 @@ void ODM_ReadAndConfig_MP_8723B_TXPWR_LMT(struct dm_odm_t *pDM_Odm)
 
 	for (i = 0; i < ARRAY_SIZE(Array_MP_8723B_TXPWR_LMT); i += 6) {
 		u8 *regulation = Array[i];
-		u8 *bandwidth = Array[i+1];
-		u8 *rate = Array[i+2];
-		u8 *rfPath = Array[i+3];
-		u8 *chnl = Array[i+4];
-		u8 *val = Array[i+5];
-
-		odm_ConfigBB_TXPWR_LMT_8723B(
-			pDM_Odm,
-			regulation,
-			bandwidth,
-			rate,
-			rfPath,
-			chnl,
-			val
-		);
+		u8 *bandwidth = Array[i + 1];
+		u8 *rate = Array[i + 2];
+		u8 *rfPath = Array[i + 3];
+		u8 *chnl = Array[i + 4];
+		u8 *val = Array[i + 5];
+
+		odm_ConfigBB_TXPWR_LMT_8723B(pDM_Odm, regulation, bandwidth,
+					     rate, rfPath, chnl, val);
 	}
 }
diff --git a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_RF.h b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_RF.h
index 7b4f399fcdff1..bcb612bd183d7 100644
--- a/drivers/staging/rtl8723bs/hal/HalHWImg8723B_RF.h
+++ b/drivers/staging/rtl8723bs/hal/HalHWImg8723B_RF.h
@@ -12,29 +12,23 @@
  *                           RadioA.TXT
  ******************************************************************************/
 
-void
-ODM_ReadAndConfig_MP_8723B_RadioA(/*  TC: Test Chip, MP: MP Chip */
-	struct dm_odm_t *pDM_Odm
-);
+void ODM_ReadAndConfig_MP_8723B_RadioA(/*  TC: Test Chip, MP: MP Chip */
+				       struct dm_odm_t *pDM_Odm);
 
 /******************************************************************************
  *                           TxPowerTrack_SDIO.TXT
  ******************************************************************************/
 
-void
-ODM_ReadAndConfig_MP_8723B_TxPowerTrack_SDIO(/*  TC: Test Chip, MP: MP Chip */
-	struct dm_odm_t *pDM_Odm
-);
+void ODM_ReadAndConfig_MP_8723B_TxPowerTrack_SDIO(/*  TC: Test Chip, MP: MP Chip */
+						  struct dm_odm_t *pDM_Odm);
 u32 ODM_GetVersion_MP_8723B_TxPowerTrack_SDIO(void);
 
 /******************************************************************************
  *                           TXPWR_LMT.TXT
  ******************************************************************************/
 
-void
-ODM_ReadAndConfig_MP_8723B_TXPWR_LMT(/*  TC: Test Chip, MP: MP Chip */
-	struct dm_odm_t *pDM_Odm
-);
+void ODM_ReadAndConfig_MP_8723B_TXPWR_LMT(/*  TC: Test Chip, MP: MP Chip */
+					  struct dm_odm_t *pDM_Odm);
 u32 ODM_GetVersion_MP_8723B_TXPWR_LMT(void);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/hal/HalPhyRf.c b/drivers/staging/rtl8723bs/hal/HalPhyRf.c
index 9e4d42e3a122f..263d0ac31b01f 100644
--- a/drivers/staging/rtl8723bs/hal/HalPhyRf.c
+++ b/drivers/staging/rtl8723bs/hal/HalPhyRf.c
@@ -8,7 +8,8 @@
 /* include "Mp_Precomp.h" */
 #include "odm_precomp.h"
 
-void ConfigureTxpowerTrack(struct dm_odm_t *pDM_Odm, struct txpwrtrack_cfg *pConfig)
+void ConfigureTxpowerTrack(struct dm_odm_t *pDM_Odm,
+			   struct txpwrtrack_cfg *pConfig)
 {
 	ConfigureTxpowerTrack_8723B(pConfig);
 }
@@ -33,7 +34,8 @@ void ODM_ClearTxPowerTrackingState(struct dm_odm_t *pDM_Odm)
 	for (p = RF_PATH_A; p < MAX_RF_PATH; ++p) {
 		pDM_Odm->BbSwingIdxOfdmBase[p] = pDM_Odm->DefaultOfdmIndex;
 		pDM_Odm->BbSwingIdxOfdm[p] = pDM_Odm->DefaultOfdmIndex;
-		pDM_Odm->RFCalibrateInfo.OFDM_index[p] = pDM_Odm->DefaultOfdmIndex;
+		pDM_Odm->RFCalibrateInfo.OFDM_index[p] =
+			pDM_Odm->DefaultOfdmIndex;
 
 		pDM_Odm->RFCalibrateInfo.PowerIndexOffset[p] = 0;
 		pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[p] = 0;
@@ -51,13 +53,14 @@ void ODM_ClearTxPowerTrackingState(struct dm_odm_t *pDM_Odm)
 	pDM_Odm->Modify_TxAGC_Flag_PathB = false;
 	pDM_Odm->Remnant_CCKSwingIdx = 0;
 	pDM_Odm->RFCalibrateInfo.ThermalValue = pHalData->EEPROMThermalMeter;
-	pDM_Odm->RFCalibrateInfo.ThermalValue_IQK = pHalData->EEPROMThermalMeter;
-	pDM_Odm->RFCalibrateInfo.ThermalValue_LCK = pHalData->EEPROMThermalMeter;
+	pDM_Odm->RFCalibrateInfo.ThermalValue_IQK =
+		pHalData->EEPROMThermalMeter;
+	pDM_Odm->RFCalibrateInfo.ThermalValue_LCK =
+		pHalData->EEPROMThermalMeter;
 }
 
 void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter)
 {
-
 	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
@@ -65,8 +68,10 @@ void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter)
 	u8 ThermalValue_AVG_count = 0;
 	u32 ThermalValue_AVG = 0;
 
-	u8 OFDM_min_index = 0;  /*  OFDM BB Swing should be less than +3.0dB, which is required by Arthur */
-	u8 Indexforchannel = 0; /*  GetRightChnlPlaceforIQK(pHalData->CurrentChannel) */
+	u8 OFDM_min_index =
+		0; /*  OFDM BB Swing should be less than +3.0dB, which is required by Arthur */
+	u8 Indexforchannel =
+		0; /*  GetRightChnlPlaceforIQK(pHalData->CurrentChannel) */
 
 	struct txpwrtrack_cfg c;
 
@@ -80,38 +85,39 @@ void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter)
 
 	ConfigureTxpowerTrack(pDM_Odm, &c);
 
-	(*c.GetDeltaSwingTable)(
-		pDM_Odm,
-		(u8 **)&deltaSwingTableIdx_TUP_A,
-		(u8 **)&deltaSwingTableIdx_TDOWN_A,
-		(u8 **)&deltaSwingTableIdx_TUP_B,
-		(u8 **)&deltaSwingTableIdx_TDOWN_B
-	);
+	(*c.GetDeltaSwingTable)(pDM_Odm, (u8 **)&deltaSwingTableIdx_TUP_A,
+				(u8 **)&deltaSwingTableIdx_TDOWN_A,
+				(u8 **)&deltaSwingTableIdx_TUP_B,
+				(u8 **)&deltaSwingTableIdx_TDOWN_B);
 
 	/* cosa add for debug */
 	pDM_Odm->RFCalibrateInfo.TXPowerTrackingCallbackCnt++;
 	pDM_Odm->RFCalibrateInfo.bTXPowerTrackingInit = true;
 
-	ThermalValue = (u8)PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH_A, c.ThermalRegAddr, 0xfc00);	/* 0x42: RF Reg[15:10] 88E */
-	if (
-		!pDM_Odm->RFCalibrateInfo.TxPowerTrackControl ||
-		pHalData->EEPROMThermalMeter == 0 ||
-		pHalData->EEPROMThermalMeter == 0xFF
-	)
+	ThermalValue = (u8)PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH_A,
+					  c.ThermalRegAddr,
+					  0xfc00); /* 0x42: RF Reg[15:10] 88E */
+	if (!pDM_Odm->RFCalibrateInfo.TxPowerTrackControl ||
+	    pHalData->EEPROMThermalMeter == 0 ||
+	    pHalData->EEPROMThermalMeter == 0xFF)
 		return;
 
 	/* 4 3. Initialize ThermalValues of RFCalibrateInfo */
 
 	/* 4 4. Calculate average thermal meter */
 
-	pDM_Odm->RFCalibrateInfo.ThermalValue_AVG[pDM_Odm->RFCalibrateInfo.ThermalValue_AVG_index] = ThermalValue;
+	pDM_Odm->RFCalibrateInfo.ThermalValue_AVG
+		[pDM_Odm->RFCalibrateInfo.ThermalValue_AVG_index] =
+		ThermalValue;
 	pDM_Odm->RFCalibrateInfo.ThermalValue_AVG_index++;
-	if (pDM_Odm->RFCalibrateInfo.ThermalValue_AVG_index == c.AverageThermalNum)   /* Average times =  c.AverageThermalNum */
+	if (pDM_Odm->RFCalibrateInfo.ThermalValue_AVG_index ==
+	    c.AverageThermalNum) /* Average times =  c.AverageThermalNum */
 		pDM_Odm->RFCalibrateInfo.ThermalValue_AVG_index = 0;
 
 	for (i = 0; i < c.AverageThermalNum; i++) {
 		if (pDM_Odm->RFCalibrateInfo.ThermalValue_AVG[i]) {
-			ThermalValue_AVG += pDM_Odm->RFCalibrateInfo.ThermalValue_AVG[i];
+			ThermalValue_AVG +=
+				pDM_Odm->RFCalibrateInfo.ThermalValue_AVG[i];
 			ThermalValue_AVG_count++;
 		}
 	}
@@ -123,14 +129,14 @@ void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter)
 
 	/* 4 5. Calculate delta, delta_LCK */
 	/* delta" here is used to determine whether thermal value changes or not. */
-	delta =
-		(ThermalValue > pDM_Odm->RFCalibrateInfo.ThermalValue) ?
-		(ThermalValue - pDM_Odm->RFCalibrateInfo.ThermalValue) :
-		(pDM_Odm->RFCalibrateInfo.ThermalValue - ThermalValue);
-	delta_LCK =
-		(ThermalValue > pDM_Odm->RFCalibrateInfo.ThermalValue_LCK) ?
-		(ThermalValue - pDM_Odm->RFCalibrateInfo.ThermalValue_LCK) :
-		(pDM_Odm->RFCalibrateInfo.ThermalValue_LCK - ThermalValue);
+	delta = (ThermalValue > pDM_Odm->RFCalibrateInfo.ThermalValue) ?
+			(ThermalValue - pDM_Odm->RFCalibrateInfo.ThermalValue) :
+			(pDM_Odm->RFCalibrateInfo.ThermalValue - ThermalValue);
+	delta_LCK = (ThermalValue > pDM_Odm->RFCalibrateInfo.ThermalValue_LCK) ?
+			    (ThermalValue -
+			     pDM_Odm->RFCalibrateInfo.ThermalValue_LCK) :
+			    (pDM_Odm->RFCalibrateInfo.ThermalValue_LCK -
+			     ThermalValue);
 
 	/* 4 6. If necessary, do LCK. */
 	/*  Delta temperature is equal to or larger than 20 centigrade. */
@@ -143,10 +149,9 @@ void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter)
 	/* 3 7. If necessary, move the index of swing table to adjust Tx power. */
 	if (delta > 0 && pDM_Odm->RFCalibrateInfo.TxPowerTrackControl) {
 		/* delta" here is used to record the absolute value of difference. */
-		delta =
-			ThermalValue > pHalData->EEPROMThermalMeter ?
-			(ThermalValue - pHalData->EEPROMThermalMeter) :
-			(pHalData->EEPROMThermalMeter - ThermalValue);
+		delta = ThermalValue > pHalData->EEPROMThermalMeter ?
+				(ThermalValue - pHalData->EEPROMThermalMeter) :
+				(pHalData->EEPROMThermalMeter - ThermalValue);
 
 		if (delta >= TXPWR_TRACK_TABLE_SIZE)
 			delta = TXPWR_TRACK_TABLE_SIZE - 1;
@@ -154,7 +159,8 @@ void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter)
 		/* 4 7.1 The Final Power Index = BaseIndex + PowerIndexOffset */
 		if (ThermalValue > pHalData->EEPROMThermalMeter) {
 			pDM_Odm->RFCalibrateInfo.DeltaPowerIndexLast[RF_PATH_A] =
-				pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[RF_PATH_A];
+				pDM_Odm->RFCalibrateInfo
+					.DeltaPowerIndex[RF_PATH_A];
 			pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[RF_PATH_A] =
 				deltaSwingTableIdx_TUP_A[delta];
 
@@ -163,9 +169,12 @@ void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter)
 				deltaSwingTableIdx_TUP_A[delta];
 
 			if (c.RfPathCount > 1) {
-				pDM_Odm->RFCalibrateInfo.DeltaPowerIndexLast[RF_PATH_B] =
-					pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[RF_PATH_B];
-				pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[RF_PATH_B] =
+				pDM_Odm->RFCalibrateInfo
+					.DeltaPowerIndexLast[RF_PATH_B] =
+					pDM_Odm->RFCalibrateInfo
+						.DeltaPowerIndex[RF_PATH_B];
+				pDM_Odm->RFCalibrateInfo
+					.DeltaPowerIndex[RF_PATH_B] =
 					deltaSwingTableIdx_TUP_B[delta];
 
 				/*  Record delta swing for mix mode power tracking */
@@ -175,7 +184,8 @@ void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter)
 
 		} else {
 			pDM_Odm->RFCalibrateInfo.DeltaPowerIndexLast[RF_PATH_A] =
-				pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[RF_PATH_A];
+				pDM_Odm->RFCalibrateInfo
+					.DeltaPowerIndex[RF_PATH_A];
 			pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[RF_PATH_A] =
 				-1 * deltaSwingTableIdx_TDOWN_A[delta];
 
@@ -184,25 +194,32 @@ void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter)
 				-1 * deltaSwingTableIdx_TDOWN_A[delta];
 
 			if (c.RfPathCount > 1) {
-				pDM_Odm->RFCalibrateInfo.DeltaPowerIndexLast[RF_PATH_B] =
-					pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[RF_PATH_B];
-				pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[RF_PATH_B] =
+				pDM_Odm->RFCalibrateInfo
+					.DeltaPowerIndexLast[RF_PATH_B] =
+					pDM_Odm->RFCalibrateInfo
+						.DeltaPowerIndex[RF_PATH_B];
+				pDM_Odm->RFCalibrateInfo
+					.DeltaPowerIndex[RF_PATH_B] =
 					-1 * deltaSwingTableIdx_TDOWN_B[delta];
 
-				 /*  Record delta swing for mix mode power tracking */
+				/*  Record delta swing for mix mode power tracking */
 				pDM_Odm->Absolute_OFDMSwingIdx[RF_PATH_B] =
 					-1 * deltaSwingTableIdx_TDOWN_B[delta];
 			}
 		}
 
 		for (p = RF_PATH_A; p < c.RfPathCount; p++) {
-			if (
-				pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[p] ==
-				pDM_Odm->RFCalibrateInfo.DeltaPowerIndexLast[p]
-			) /*  If Thermal value changes but lookup table value still the same */
-				pDM_Odm->RFCalibrateInfo.PowerIndexOffset[p] = 0;
+			if (pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[p] ==
+			    pDM_Odm->RFCalibrateInfo.DeltaPowerIndexLast
+				    [p]) /*  If Thermal value changes but lookup table value still the same */
+				pDM_Odm->RFCalibrateInfo.PowerIndexOffset[p] =
+					0;
 			else
-				pDM_Odm->RFCalibrateInfo.PowerIndexOffset[p] = pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[p] - pDM_Odm->RFCalibrateInfo.DeltaPowerIndexLast[p];      /*  Power Index Diff between 2 times Power Tracking */
+				pDM_Odm->RFCalibrateInfo.PowerIndexOffset[p] =
+					pDM_Odm->RFCalibrateInfo
+						.DeltaPowerIndex[p] -
+					pDM_Odm->RFCalibrateInfo.DeltaPowerIndexLast
+						[p]; /*  Power Index Diff between 2 times Power Tracking */
 
 			pDM_Odm->RFCalibrateInfo.OFDM_index[p] =
 				pDM_Odm->BbSwingIdxOfdmBase[p] +
@@ -219,32 +236,37 @@ void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter)
 				pDM_Odm->RFCalibrateInfo.OFDM_index[p];
 
 			/* 4 7.1 Handle boundary conditions of index. */
-			if (pDM_Odm->RFCalibrateInfo.OFDM_index[p] > c.SwingTableSize_OFDM-1)
-				pDM_Odm->RFCalibrateInfo.OFDM_index[p] = c.SwingTableSize_OFDM-1;
-			else if (pDM_Odm->RFCalibrateInfo.OFDM_index[p] < OFDM_min_index)
-				pDM_Odm->RFCalibrateInfo.OFDM_index[p] = OFDM_min_index;
+			if (pDM_Odm->RFCalibrateInfo.OFDM_index[p] >
+			    c.SwingTableSize_OFDM - 1)
+				pDM_Odm->RFCalibrateInfo.OFDM_index[p] =
+					c.SwingTableSize_OFDM - 1;
+			else if (pDM_Odm->RFCalibrateInfo.OFDM_index[p] <
+				 OFDM_min_index)
+				pDM_Odm->RFCalibrateInfo.OFDM_index[p] =
+					OFDM_min_index;
 		}
-		if (pDM_Odm->RFCalibrateInfo.CCK_index > c.SwingTableSize_CCK-1)
-			pDM_Odm->RFCalibrateInfo.CCK_index = c.SwingTableSize_CCK-1;
+		if (pDM_Odm->RFCalibrateInfo.CCK_index >
+		    c.SwingTableSize_CCK - 1)
+			pDM_Odm->RFCalibrateInfo.CCK_index =
+				c.SwingTableSize_CCK - 1;
 		/* else if (pDM_Odm->RFCalibrateInfo.CCK_index < 0) */
-			/* pDM_Odm->RFCalibrateInfo.CCK_index = 0; */
+		/* pDM_Odm->RFCalibrateInfo.CCK_index = 0; */
 	} else {
-			for (p = RF_PATH_A; p < c.RfPathCount; p++)
-				pDM_Odm->RFCalibrateInfo.PowerIndexOffset[p] = 0;
+		for (p = RF_PATH_A; p < c.RfPathCount; p++)
+			pDM_Odm->RFCalibrateInfo.PowerIndexOffset[p] = 0;
 	}
 
 	/* Print Swing base & current */
 	for (p = RF_PATH_A; p < c.RfPathCount; p++) {
 	}
 
-	if (
-		(pDM_Odm->RFCalibrateInfo.PowerIndexOffset[RF_PATH_A] != 0 ||
-		 pDM_Odm->RFCalibrateInfo.PowerIndexOffset[RF_PATH_B] != 0) &&
-		 pDM_Odm->RFCalibrateInfo.TxPowerTrackControl
-	 ) {
+	if ((pDM_Odm->RFCalibrateInfo.PowerIndexOffset[RF_PATH_A] != 0 ||
+	     pDM_Odm->RFCalibrateInfo.PowerIndexOffset[RF_PATH_B] != 0) &&
+	    pDM_Odm->RFCalibrateInfo.TxPowerTrackControl) {
 		/* 4 7.2 Configure the Swing Table to adjust Tx Power. */
 
-		pDM_Odm->RFCalibrateInfo.bTxPowerChanged = true; /*  Always true after Tx Power is adjusted by power tracking. */
+		pDM_Odm->RFCalibrateInfo.bTxPowerChanged =
+			true; /*  Always true after Tx Power is adjusted by power tracking. */
 		/*  */
 		/*  2012/04/23 MH According to Luke's suggestion, we can not write BB digital */
 		/*  to increase TX power. Otherwise, EVM will be bad. */
@@ -253,16 +275,19 @@ void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter)
 
 		if (ThermalValue > pHalData->EEPROMThermalMeter) {
 			for (p = RF_PATH_A; p < c.RfPathCount; p++)
-					(*c.ODM_TxPwrTrackSetPwr)(pDM_Odm, MIX_MODE, p, 0);
+				(*c.ODM_TxPwrTrackSetPwr)(pDM_Odm, MIX_MODE, p,
+							  0);
 		} else {
 			for (p = RF_PATH_A; p < c.RfPathCount; p++)
-				(*c.ODM_TxPwrTrackSetPwr)(pDM_Odm, MIX_MODE, p, Indexforchannel);
+				(*c.ODM_TxPwrTrackSetPwr)(pDM_Odm, MIX_MODE, p,
+							  Indexforchannel);
 		}
 
 		/*  Record last time Power Tracking result as base. */
 		pDM_Odm->BbSwingIdxCckBase = pDM_Odm->BbSwingIdxCck;
 		for (p = RF_PATH_A; p < c.RfPathCount; p++)
-			pDM_Odm->BbSwingIdxOfdmBase[p] = pDM_Odm->BbSwingIdxOfdm[p];
+			pDM_Odm->BbSwingIdxOfdmBase[p] =
+				pDM_Odm->BbSwingIdxOfdm[p];
 
 		/* Record last Power Tracking Thermal Value */
 		pDM_Odm->RFCalibrateInfo.ThermalValue = ThermalValue;
diff --git a/drivers/staging/rtl8723bs/hal/HalPhyRf.h b/drivers/staging/rtl8723bs/hal/HalPhyRf.h
index bd9430db968f2..73282dc568d90 100644
--- a/drivers/staging/rtl8723bs/hal/HalPhyRf.h
+++ b/drivers/staging/rtl8723bs/hal/HalPhyRf.h
@@ -5,14 +5,10 @@
  *
  ******************************************************************************/
 
- #ifndef __HAL_PHY_RF_H__
- #define __HAL_PHY_RF_H__
+#ifndef __HAL_PHY_RF_H__
+#define __HAL_PHY_RF_H__
 
-enum pwrtrack_method {
-	BBSWING,
-	TXAGC,
-	MIX_MODE
-};
+enum pwrtrack_method { BBSWING, TXAGC, MIX_MODE };
 
 typedef void (*FuncSetPwr)(struct dm_odm_t *, enum pwrtrack_method, u8, u8);
 typedef void (*FuncLCK)(struct dm_odm_t *);
@@ -30,10 +26,11 @@ struct txpwrtrack_cfg {
 	FuncSwing GetDeltaSwingTable;
 };
 
-void ConfigureTxpowerTrack(struct dm_odm_t *pDM_Odm, struct txpwrtrack_cfg *pConfig);
+void ConfigureTxpowerTrack(struct dm_odm_t *pDM_Odm,
+			   struct txpwrtrack_cfg *pConfig);
 
 void ODM_ClearTxPowerTrackingState(struct dm_odm_t *pDM_Odm);
 
 void ODM_TXPowerTrackingCallback_ThermalMeter(struct adapter *Adapter);
 
-#endif	/*  #ifndef __HAL_PHY_RF_H__ */
+#endif /*  #ifndef __HAL_PHY_RF_H__ */
diff --git a/drivers/staging/rtl8723bs/hal/HalPhyRf_8723B.c b/drivers/staging/rtl8723bs/hal/HalPhyRf_8723B.c
index 70b68f473d588..91894799606b9 100644
--- a/drivers/staging/rtl8723bs/hal/HalPhyRf_8723B.c
+++ b/drivers/staging/rtl8723bs/hal/HalPhyRf_8723B.c
@@ -9,61 +9,55 @@
 #include "odm_precomp.h"
 
 /*  MACRO definition for pRFCalibrateInfo->TxIQC_8723B[0] */
-#define		PATH_S0							1 /*  RF_PATH_B */
-#define		IDX_0xC94						0
-#define		IDX_0xC80						1
-#define		IDX_0xC14						0
-#define		IDX_0xCA0						1
-#define		KEY							0
-#define		VAL							1
+#define PATH_S0 1 /*  RF_PATH_B */
+#define IDX_0xC94 0
+#define IDX_0xC80 1
+#define IDX_0xC14 0
+#define IDX_0xCA0 1
+#define KEY 0
+#define VAL 1
 
 /*  MACRO definition for pRFCalibrateInfo->TxIQC_8723B[1] */
-#define		PATH_S1							0 /*  RF_PATH_A */
-#define		IDX_0xC4C						2
+#define PATH_S1 0 /*  RF_PATH_A */
+#define IDX_0xC4C 2
 
 /*---------------------------Define Local Constant---------------------------*/
 
 /* In the case that we fail to read TxPowerTrack.txt, we use the table for
  * 88E as the default table.
  */
-static u8 DeltaSwingTableIdx_2GA_N_8188E[] = {
-	0, 0, 0, 2, 2, 3, 3, 4,  4,  4,  4,  5,  5,  6,  6,
-	7, 7, 7, 7, 8, 8, 9, 9, 10, 10, 10, 11, 11, 11, 11
-};
-static u8 DeltaSwingTableIdx_2GA_P_8188E[] = {
-	0, 0, 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 4, 4, 4,
-	4, 4, 4, 5, 5, 7, 7, 8, 8, 8, 9, 9, 9, 9, 9
-};
+static u8 DeltaSwingTableIdx_2GA_N_8188E[] = { 0,  0,  0,  2,  2,  3, 3, 4,
+					       4,  4,  4,  5,  5,  6, 6, 7,
+					       7,  7,  7,  8,  8,  9, 9, 10,
+					       10, 10, 11, 11, 11, 11 };
+static u8 DeltaSwingTableIdx_2GA_P_8188E[] = { 0, 0, 0, 0, 1, 1, 2, 2, 3, 3,
+					       4, 4, 4, 4, 4, 4, 4, 4, 5, 5,
+					       7, 7, 8, 8, 8, 9, 9, 9, 9, 9 };
 
 /* 3 ============================================================ */
 /* 3 Tx Power Tracking */
 /* 3 ============================================================ */
 
-static void setIqkMatrix_8723B(
-	struct dm_odm_t *pDM_Odm,
-	u8 OFDM_index,
-	u8 RFPath,
-	s32 IqkResult_X,
-	s32 IqkResult_Y
-)
+static void setIqkMatrix_8723B(struct dm_odm_t *pDM_Odm, u8 OFDM_index,
+			       u8 RFPath, s32 IqkResult_X, s32 IqkResult_Y)
 {
 	s32 ele_A = 0, ele_D, ele_C = 0, value32;
 
 	if (OFDM_index >= OFDM_TABLE_SIZE)
-		OFDM_index = OFDM_TABLE_SIZE-1;
+		OFDM_index = OFDM_TABLE_SIZE - 1;
 
-	ele_D = (OFDMSwingTable_New[OFDM_index] & 0xFFC00000)>>22;
+	ele_D = (OFDMSwingTable_New[OFDM_index] & 0xFFC00000) >> 22;
 
 	/* new element A = element D x X */
 	if (IqkResult_X != 0) {
-		if ((IqkResult_X & 0x00000200) != 0)	/* consider minus */
+		if ((IqkResult_X & 0x00000200) != 0) /* consider minus */
 			IqkResult_X = IqkResult_X | 0xFFFFFC00;
-		ele_A = ((IqkResult_X * ele_D)>>8)&0x000003FF;
+		ele_A = ((IqkResult_X * ele_D) >> 8) & 0x000003FF;
 
 		/* new element C = element D x Y */
 		if ((IqkResult_Y & 0x00000200) != 0)
 			IqkResult_Y = IqkResult_Y | 0xFFFFFC00;
-		ele_C = ((IqkResult_Y * ele_D)>>8)&0x000003FF;
+		ele_C = ((IqkResult_Y * ele_D) >> 8) & 0x000003FF;
 
 		/* if (RFPath == RF_PATH_A) */
 		switch (RFPath) {
@@ -71,27 +65,35 @@ static void setIqkMatrix_8723B(
 			/* write new elements A, C, D to regC80 and regC94,
 			 * element B is always 0
 			 */
-			value32 = (ele_D<<22)|((ele_C&0x3F)<<16)|ele_A;
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XATxIQImbalance, bMaskDWord, value32);
-
-			value32 = (ele_C&0x000003C0)>>6;
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XCTxAFE, bMaskH4Bits, value32);
-
-			value32 = ((IqkResult_X * ele_D)>>7)&0x01;
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(24), value32);
+			value32 = (ele_D << 22) | ((ele_C & 0x3F) << 16) |
+				  ele_A;
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XATxIQImbalance,
+				     bMaskDWord, value32);
+
+			value32 = (ele_C & 0x000003C0) >> 6;
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XCTxAFE,
+				     bMaskH4Bits, value32);
+
+			value32 = ((IqkResult_X * ele_D) >> 7) & 0x01;
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold,
+				     BIT(24), value32);
 			break;
 		case RF_PATH_B:
 			/* write new elements A, C, D to regC88 and regC9C,
 			 * element B is always 0
 			 */
-			value32 = (ele_D<<22)|((ele_C&0x3F)<<16)|ele_A;
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBTxIQImbalance, bMaskDWord, value32);
+			value32 = (ele_D << 22) | ((ele_C & 0x3F) << 16) |
+				  ele_A;
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBTxIQImbalance,
+				     bMaskDWord, value32);
 
-			value32 = (ele_C&0x000003C0)>>6;
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XDTxAFE, bMaskH4Bits, value32);
+			value32 = (ele_C & 0x000003C0) >> 6;
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XDTxAFE,
+				     bMaskH4Bits, value32);
 
-			value32 = ((IqkResult_X * ele_D)>>7)&0x01;
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(28), value32);
+			value32 = ((IqkResult_X * ele_D) >> 7) & 0x01;
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold,
+				     BIT(28), value32);
 
 			break;
 		default:
@@ -100,15 +102,23 @@ static void setIqkMatrix_8723B(
 	} else {
 		switch (RFPath) {
 		case RF_PATH_A:
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XATxIQImbalance, bMaskDWord, OFDMSwingTable_New[OFDM_index]);
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XCTxAFE, bMaskH4Bits, 0x00);
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(24), 0x00);
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XATxIQImbalance,
+				     bMaskDWord,
+				     OFDMSwingTable_New[OFDM_index]);
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XCTxAFE,
+				     bMaskH4Bits, 0x00);
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold,
+				     BIT(24), 0x00);
 			break;
 
 		case RF_PATH_B:
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBTxIQImbalance, bMaskDWord, OFDMSwingTable_New[OFDM_index]);
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XDTxAFE, bMaskH4Bits, 0x00);
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(28), 0x00);
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBTxIQImbalance,
+				     bMaskDWord,
+				     OFDMSwingTable_New[OFDM_index]);
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XDTxAFE,
+				     bMaskH4Bits, 0x00);
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold,
+				     BIT(28), 0x00);
 			break;
 
 		default:
@@ -119,7 +129,7 @@ static void setIqkMatrix_8723B(
 
 static void setCCKFilterCoefficient(struct dm_odm_t *pDM_Odm, u8 CCKSwingIndex)
 {
-	u8 (*swingtable)[8];
+	u8(*swingtable)[8];
 
 	if (!pDM_Odm->RFCalibrateInfo.bCCKinCH14)
 		swingtable = CCKSwingTable_Ch1_Ch13_New;
@@ -127,7 +137,8 @@ static void setCCKFilterCoefficient(struct dm_odm_t *pDM_Odm, u8 CCKSwingIndex)
 		swingtable = CCKSwingTable_Ch14_New;
 
 	for (int i = 0; i < 8; i++)
-		rtw_write8(pDM_Odm->Adapter, 0xa22 + i, swingtable[CCKSwingIndex][i]);
+		rtw_write8(pDM_Odm->Adapter, 0xa22 + i,
+			   swingtable[CCKSwingIndex][i]);
 }
 
 /*-----------------------------------------------------------------------------
@@ -148,12 +159,9 @@ static void setCCKFilterCoefficient(struct dm_odm_t *pDM_Odm, u8 CCKSwingIndex)
  *
  *---------------------------------------------------------------------------
  */
-void ODM_TxPwrTrackSetPwr_8723B(
-	struct dm_odm_t *pDM_Odm,
-	enum pwrtrack_method Method,
-	u8 RFPath,
-	u8 ChannelMappedIndex
-)
+void ODM_TxPwrTrackSetPwr_8723B(struct dm_odm_t *pDM_Odm,
+				enum pwrtrack_method Method, u8 RFPath,
+				u8 ChannelMappedIndex)
 {
 	struct adapter *Adapter = pDM_Odm->Adapter;
 	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
@@ -171,13 +179,12 @@ void ODM_TxPwrTrackSetPwr_8723B(
 				TxRate = HwRateToMRate(pDM_Odm->TxRate);
 		} else /* force rate */
 			TxRate = (u8)rate;
-
 	}
 
 	if (TxRate != 0xFF) {
 		/* 2 CCK */
 		if ((TxRate >= MGN_1M) && (TxRate <= MGN_11M))
-			PwrTrackingLimit_CCK = 28;	/* 2dB */
+			PwrTrackingLimit_CCK = 28; /* 2dB */
 		/* 2 OFDM */
 		else if ((TxRate >= MGN_6M) && (TxRate <= MGN_48M))
 			PwrTrackingLimit_OFDM = 36; /* 3dB */
@@ -185,29 +192,40 @@ void ODM_TxPwrTrackSetPwr_8723B(
 			PwrTrackingLimit_OFDM = 34; /* 2dB */
 
 		/* 2 HT */
-		else if ((TxRate >= MGN_MCS0) && (TxRate <= MGN_MCS2)) /* QPSK/BPSK */
+		else if ((TxRate >= MGN_MCS0) &&
+			 (TxRate <= MGN_MCS2)) /* QPSK/BPSK */
 			PwrTrackingLimit_OFDM = 38; /* 4dB */
-		else if ((TxRate >= MGN_MCS3) && (TxRate <= MGN_MCS4)) /* 16QAM */
+		else if ((TxRate >= MGN_MCS3) &&
+			 (TxRate <= MGN_MCS4)) /* 16QAM */
 			PwrTrackingLimit_OFDM = 36; /* 3dB */
-		else if ((TxRate >= MGN_MCS5) && (TxRate <= MGN_MCS7)) /* 64QAM */
+		else if ((TxRate >= MGN_MCS5) &&
+			 (TxRate <= MGN_MCS7)) /* 64QAM */
 			PwrTrackingLimit_OFDM = 34; /* 2dB */
 
 		else
-			PwrTrackingLimit_OFDM =  pDM_Odm->DefaultOfdmIndex;   /* Default OFDM index = 30 */
+			PwrTrackingLimit_OFDM =
+				pDM_Odm->DefaultOfdmIndex; /* Default OFDM index = 30 */
 	}
 
 	if (Method == TXAGC) {
-		pDM_Odm->Remnant_OFDMSwingIdx[RFPath] = pDM_Odm->Absolute_OFDMSwingIdx[RFPath];
+		pDM_Odm->Remnant_OFDMSwingIdx[RFPath] =
+			pDM_Odm->Absolute_OFDMSwingIdx[RFPath];
 
 		pDM_Odm->Modify_TxAGC_Flag_PathA = true;
 		pDM_Odm->Modify_TxAGC_Flag_PathA_CCK = true;
 
-		PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, CCK);
-		PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, OFDM);
-		PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, HT_MCS0_MCS7);
+		PHY_SetTxPowerIndexByRateSection(Adapter, RFPath,
+						 pHalData->CurrentChannel, CCK);
+		PHY_SetTxPowerIndexByRateSection(
+			Adapter, RFPath, pHalData->CurrentChannel, OFDM);
+		PHY_SetTxPowerIndexByRateSection(Adapter, RFPath,
+						 pHalData->CurrentChannel,
+						 HT_MCS0_MCS7);
 	} else if (Method == BBSWING) {
-		Final_OFDM_Swing_Index = pDM_Odm->DefaultOfdmIndex + pDM_Odm->Absolute_OFDMSwingIdx[RFPath];
-		Final_CCK_Swing_Index = pDM_Odm->DefaultCckIndex + pDM_Odm->Absolute_OFDMSwingIdx[RFPath];
+		Final_OFDM_Swing_Index = pDM_Odm->DefaultOfdmIndex +
+					 pDM_Odm->Absolute_OFDMSwingIdx[RFPath];
+		Final_CCK_Swing_Index = pDM_Odm->DefaultCckIndex +
+					pDM_Odm->Absolute_OFDMSwingIdx[RFPath];
 
 		/*  Adjust BB swing by OFDM IQ matrix */
 		if (Final_OFDM_Swing_Index >= PwrTrackingLimit_OFDM)
@@ -216,69 +234,110 @@ void ODM_TxPwrTrackSetPwr_8723B(
 			Final_OFDM_Swing_Index = 0;
 
 		if (Final_CCK_Swing_Index >= CCK_TABLE_SIZE)
-			Final_CCK_Swing_Index = CCK_TABLE_SIZE-1;
+			Final_CCK_Swing_Index = CCK_TABLE_SIZE - 1;
 		else if (pDM_Odm->BbSwingIdxCck <= 0)
 			Final_CCK_Swing_Index = 0;
 
-		setIqkMatrix_8723B(pDM_Odm, Final_OFDM_Swing_Index, RFPath,
-			pDM_Odm->RFCalibrateInfo.iqk_matrix_regs_setting_value[ChannelMappedIndex][0],
-			pDM_Odm->RFCalibrateInfo.iqk_matrix_regs_setting_value[ChannelMappedIndex][1]);
+		setIqkMatrix_8723B(
+			pDM_Odm, Final_OFDM_Swing_Index, RFPath,
+			pDM_Odm->RFCalibrateInfo.iqk_matrix_regs_setting_value
+				[ChannelMappedIndex][0],
+			pDM_Odm->RFCalibrateInfo.iqk_matrix_regs_setting_value
+				[ChannelMappedIndex][1]);
 
 		setCCKFilterCoefficient(pDM_Odm, Final_CCK_Swing_Index);
 
 	} else if (Method == MIX_MODE) {
-		Final_OFDM_Swing_Index = pDM_Odm->DefaultOfdmIndex + pDM_Odm->Absolute_OFDMSwingIdx[RFPath];
-		Final_CCK_Swing_Index = pDM_Odm->DefaultCckIndex + pDM_Odm->Absolute_OFDMSwingIdx[RFPath];
-
-		if (Final_OFDM_Swing_Index > PwrTrackingLimit_OFDM) { /* BBSwing higher then Limit */
-			pDM_Odm->Remnant_OFDMSwingIdx[RFPath] = Final_OFDM_Swing_Index - PwrTrackingLimit_OFDM;
-
-			setIqkMatrix_8723B(pDM_Odm, PwrTrackingLimit_OFDM, RFPath,
-				pDM_Odm->RFCalibrateInfo.iqk_matrix_regs_setting_value[ChannelMappedIndex][0],
-				pDM_Odm->RFCalibrateInfo.iqk_matrix_regs_setting_value[ChannelMappedIndex][1]);
+		Final_OFDM_Swing_Index = pDM_Odm->DefaultOfdmIndex +
+					 pDM_Odm->Absolute_OFDMSwingIdx[RFPath];
+		Final_CCK_Swing_Index = pDM_Odm->DefaultCckIndex +
+					pDM_Odm->Absolute_OFDMSwingIdx[RFPath];
+
+		if (Final_OFDM_Swing_Index >
+		    PwrTrackingLimit_OFDM) { /* BBSwing higher then Limit */
+			pDM_Odm->Remnant_OFDMSwingIdx[RFPath] =
+				Final_OFDM_Swing_Index - PwrTrackingLimit_OFDM;
+
+			setIqkMatrix_8723B(
+				pDM_Odm, PwrTrackingLimit_OFDM, RFPath,
+				pDM_Odm->RFCalibrateInfo
+					.iqk_matrix_regs_setting_value
+						[ChannelMappedIndex][0],
+				pDM_Odm->RFCalibrateInfo
+					.iqk_matrix_regs_setting_value
+						[ChannelMappedIndex][1]);
 
 			pDM_Odm->Modify_TxAGC_Flag_PathA = true;
-			PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, OFDM);
-			PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, HT_MCS0_MCS7);
+			PHY_SetTxPowerIndexByRateSection(
+				Adapter, RFPath, pHalData->CurrentChannel,
+				OFDM);
+			PHY_SetTxPowerIndexByRateSection(
+				Adapter, RFPath, pHalData->CurrentChannel,
+				HT_MCS0_MCS7);
 		} else if (Final_OFDM_Swing_Index <= 0) {
-			pDM_Odm->Remnant_OFDMSwingIdx[RFPath] = Final_OFDM_Swing_Index;
-
-			setIqkMatrix_8723B(pDM_Odm, 0, RFPath,
-				pDM_Odm->RFCalibrateInfo.iqk_matrix_regs_setting_value[ChannelMappedIndex][0],
-				pDM_Odm->RFCalibrateInfo.iqk_matrix_regs_setting_value[ChannelMappedIndex][1]);
+			pDM_Odm->Remnant_OFDMSwingIdx[RFPath] =
+				Final_OFDM_Swing_Index;
+
+			setIqkMatrix_8723B(
+				pDM_Odm, 0, RFPath,
+				pDM_Odm->RFCalibrateInfo
+					.iqk_matrix_regs_setting_value
+						[ChannelMappedIndex][0],
+				pDM_Odm->RFCalibrateInfo
+					.iqk_matrix_regs_setting_value
+						[ChannelMappedIndex][1]);
 
 			pDM_Odm->Modify_TxAGC_Flag_PathA = true;
-			PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, OFDM);
-			PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, HT_MCS0_MCS7);
+			PHY_SetTxPowerIndexByRateSection(
+				Adapter, RFPath, pHalData->CurrentChannel,
+				OFDM);
+			PHY_SetTxPowerIndexByRateSection(
+				Adapter, RFPath, pHalData->CurrentChannel,
+				HT_MCS0_MCS7);
 		} else {
-			setIqkMatrix_8723B(pDM_Odm, Final_OFDM_Swing_Index, RFPath,
-				pDM_Odm->RFCalibrateInfo.iqk_matrix_regs_setting_value[ChannelMappedIndex][0],
-				pDM_Odm->RFCalibrateInfo.iqk_matrix_regs_setting_value[ChannelMappedIndex][1]);
+			setIqkMatrix_8723B(
+				pDM_Odm, Final_OFDM_Swing_Index, RFPath,
+				pDM_Odm->RFCalibrateInfo
+					.iqk_matrix_regs_setting_value
+						[ChannelMappedIndex][0],
+				pDM_Odm->RFCalibrateInfo
+					.iqk_matrix_regs_setting_value
+						[ChannelMappedIndex][1]);
 
 			if (pDM_Odm->Modify_TxAGC_Flag_PathA) { /* If TxAGC has changed, reset TxAGC again */
 				pDM_Odm->Remnant_OFDMSwingIdx[RFPath] = 0;
-				PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, OFDM);
-				PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, HT_MCS0_MCS7);
+				PHY_SetTxPowerIndexByRateSection(
+					Adapter, RFPath,
+					pHalData->CurrentChannel, OFDM);
+				PHY_SetTxPowerIndexByRateSection(
+					Adapter, RFPath,
+					pHalData->CurrentChannel, HT_MCS0_MCS7);
 				pDM_Odm->Modify_TxAGC_Flag_PathA = false;
 			}
 		}
 
 		if (Final_CCK_Swing_Index > PwrTrackingLimit_CCK) {
-			pDM_Odm->Remnant_CCKSwingIdx = Final_CCK_Swing_Index - PwrTrackingLimit_CCK;
+			pDM_Odm->Remnant_CCKSwingIdx =
+				Final_CCK_Swing_Index - PwrTrackingLimit_CCK;
 			setCCKFilterCoefficient(pDM_Odm, PwrTrackingLimit_CCK);
 			pDM_Odm->Modify_TxAGC_Flag_PathA_CCK = true;
-			PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, CCK);
-		} else if (Final_CCK_Swing_Index <= 0) { /*  Lowest CCK Index = 0 */
+			PHY_SetTxPowerIndexByRateSection(
+				Adapter, RFPath, pHalData->CurrentChannel, CCK);
+		} else if (Final_CCK_Swing_Index <=
+			   0) { /*  Lowest CCK Index = 0 */
 			pDM_Odm->Remnant_CCKSwingIdx = Final_CCK_Swing_Index;
 			setCCKFilterCoefficient(pDM_Odm, 0);
 			pDM_Odm->Modify_TxAGC_Flag_PathA_CCK = true;
-			PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, CCK);
+			PHY_SetTxPowerIndexByRateSection(
+				Adapter, RFPath, pHalData->CurrentChannel, CCK);
 		} else {
 			setCCKFilterCoefficient(pDM_Odm, Final_CCK_Swing_Index);
 
 			if (pDM_Odm->Modify_TxAGC_Flag_PathA_CCK) { /* If TxAGC has changed, reset TxAGC again */
 				pDM_Odm->Remnant_CCKSwingIdx = 0;
-				PHY_SetTxPowerIndexByRateSection(Adapter, RFPath, pHalData->CurrentChannel, CCK);
+				PHY_SetTxPowerIndexByRateSection(
+					Adapter, RFPath,
+					pHalData->CurrentChannel, CCK);
 				pDM_Odm->Modify_TxAGC_Flag_PathA_CCK = false;
 			}
 		}
@@ -286,13 +345,11 @@ void ODM_TxPwrTrackSetPwr_8723B(
 		return; /*  This method is not supported. */
 }
 
-static void GetDeltaSwingTable_8723B(
-	struct dm_odm_t *pDM_Odm,
-	u8 **TemperatureUP_A,
-	u8 **TemperatureDOWN_A,
-	u8 **TemperatureUP_B,
-	u8 **TemperatureDOWN_B
-)
+static void GetDeltaSwingTable_8723B(struct dm_odm_t *pDM_Odm,
+				     u8 **TemperatureUP_A,
+				     u8 **TemperatureDOWN_A,
+				     u8 **TemperatureUP_B,
+				     u8 **TemperatureDOWN_B)
 {
 	struct adapter *Adapter = pDM_Odm->Adapter;
 	struct odm_rf_cal_t *pRFCalibrateInfo = &pDM_Odm->RFCalibrateInfo;
@@ -302,20 +359,28 @@ static void GetDeltaSwingTable_8723B(
 
 	if (channel >= 1 && channel <= 14) {
 		if (IS_CCK_RATE(rate)) {
-			*TemperatureUP_A   = pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKA_P;
-			*TemperatureDOWN_A = pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKA_N;
-			*TemperatureUP_B   = pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKB_P;
-			*TemperatureDOWN_B = pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKB_N;
+			*TemperatureUP_A =
+				pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKA_P;
+			*TemperatureDOWN_A =
+				pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKA_N;
+			*TemperatureUP_B =
+				pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKB_P;
+			*TemperatureDOWN_B =
+				pRFCalibrateInfo->DeltaSwingTableIdx_2GCCKB_N;
 		} else {
-			*TemperatureUP_A   = pRFCalibrateInfo->DeltaSwingTableIdx_2GA_P;
-			*TemperatureDOWN_A = pRFCalibrateInfo->DeltaSwingTableIdx_2GA_N;
-			*TemperatureUP_B   = pRFCalibrateInfo->DeltaSwingTableIdx_2GB_P;
-			*TemperatureDOWN_B = pRFCalibrateInfo->DeltaSwingTableIdx_2GB_N;
+			*TemperatureUP_A =
+				pRFCalibrateInfo->DeltaSwingTableIdx_2GA_P;
+			*TemperatureDOWN_A =
+				pRFCalibrateInfo->DeltaSwingTableIdx_2GA_N;
+			*TemperatureUP_B =
+				pRFCalibrateInfo->DeltaSwingTableIdx_2GB_P;
+			*TemperatureDOWN_B =
+				pRFCalibrateInfo->DeltaSwingTableIdx_2GB_N;
 		}
 	} else {
-		*TemperatureUP_A   = (u8 *)DeltaSwingTableIdx_2GA_P_8188E;
+		*TemperatureUP_A = (u8 *)DeltaSwingTableIdx_2GA_P_8188E;
 		*TemperatureDOWN_A = (u8 *)DeltaSwingTableIdx_2GA_N_8188E;
-		*TemperatureUP_B   = (u8 *)DeltaSwingTableIdx_2GA_P_8188E;
+		*TemperatureUP_B = (u8 *)DeltaSwingTableIdx_2GA_P_8188E;
 		*TemperatureDOWN_B = (u8 *)DeltaSwingTableIdx_2GA_N_8188E;
 	}
 }
@@ -335,17 +400,16 @@ void ConfigureTxpowerTrack_8723B(struct txpwrtrack_cfg *pConfig)
 }
 
 /* 1 7. IQK */
-#define MAX_TOLERANCE		5
+#define MAX_TOLERANCE 5
 
 /* bit0 = 1 => Tx OK, bit1 = 1 => Rx OK */
-static u8 phy_PathA_IQK_8723B(
-	struct adapter *padapter, bool configPathB, u8 RF_Path
-)
+static u8 phy_PathA_IQK_8723B(struct adapter *padapter, bool configPathB,
+			      u8 RF_Path)
 {
 	u32 regEAC, regE94, regE9C, tmp, Path_SEL_BB /*, regEA4*/;
 	u8 result = 0x00;
 
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
 	/*  Save RF Path */
@@ -356,12 +420,15 @@ static u8 phy_PathA_IQK_8723B(
 
 	/* 	enable path A PA in TXIQK mode */
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask, 0x18000);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask, 0x0003f);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask, 0xc7f87);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask,
+		     0x18000);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask,
+		     0x0003f);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask,
+		     0xc7f87);
 	/* 	disable path B PA in TXIQK mode */
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xed, bRFRegOffsetMask, 0x00020); */
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask, 0x40ec1); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xed, bRFRegOffsetMask, 0x00020); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask, 0x40ec1); */
 
 	/* 1 Tx IQK */
 	/* IQK setting */
@@ -372,7 +439,7 @@ static u8 phy_PathA_IQK_8723B(
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_Tone_A, bMaskDWord, 0x38008c1c);
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_Tone_B, bMaskDWord, 0x38008c1c);
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_Tone_B, bMaskDWord, 0x38008c1c);
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x8214010a); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x8214010a); */
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x821303ea);
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_A, bMaskDWord, 0x28110000);
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_B, bMaskDWord, 0x82110000);
@@ -412,34 +479,32 @@ static u8 phy_PathA_IQK_8723B(
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
 
 	/*  Check failed */
-	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2, bMaskDWord);
-	regE94 = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A, bMaskDWord);
-	regE9C = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A, bMaskDWord);
+	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2,
+				bMaskDWord);
+	regE94 = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A,
+				bMaskDWord);
+	regE9C = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A,
+				bMaskDWord);
 
 	/* Allen 20131125 */
-	tmp = (regE9C & 0x03FF0000)>>16;
+	tmp = (regE9C & 0x03FF0000) >> 16;
 	if ((tmp & 0x200) > 0)
 		tmp = 0x400 - tmp;
 
-	if (
-		!(regEAC & BIT(28)) &&
-		(((regE94 & 0x03FF0000)>>16) != 0x142) &&
-		(((regE9C & 0x03FF0000)>>16) != 0x42) &&
-		(((regE94 & 0x03FF0000)>>16) < 0x110) &&
-		(((regE94 & 0x03FF0000)>>16) > 0xf0) &&
-		(tmp < 0xf)
-	)
+	if (!(regEAC & BIT(28)) && (((regE94 & 0x03FF0000) >> 16) != 0x142) &&
+	    (((regE9C & 0x03FF0000) >> 16) != 0x42) &&
+	    (((regE94 & 0x03FF0000) >> 16) < 0x110) &&
+	    (((regE94 & 0x03FF0000) >> 16) > 0xf0) && (tmp < 0xf))
 		result |= 0x01;
-	else					/* if Tx not OK, ignore Rx */
+	else /* if Tx not OK, ignore Rx */
 		return result;
 
 	return result;
 }
 
 /* bit0 = 1 => Tx OK, bit1 = 1 => Rx OK */
-static u8 phy_PathA_RxIQK8723B(
-	struct adapter *padapter, bool configPathB, u8 RF_Path
-)
+static u8 phy_PathA_RxIQK8723B(struct adapter *padapter, bool configPathB,
+			       u8 RF_Path)
 {
 	u32 regEAC, regE94, regE9C, regEA4, u4tmp, tmp, Path_SEL_BB;
 	u8 result = 0x00;
@@ -454,11 +519,14 @@ static u8 phy_PathA_RxIQK8723B(
 	/* 1 Get TXIMR setting */
 	/* modify RXIQK mode table */
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask, 0x18000);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask, 0x0001f);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask,
+		     0x18000);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask,
+		     0x0001f);
 	/* LNA2 off, PA on for Dcut */
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask, 0xf7fb7);
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x0); */
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask,
+		     0xf7fb7);
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x0); */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x808000);
 
 	/* IQK setting */
@@ -471,7 +539,7 @@ static u8 phy_PathA_RxIQK8723B(
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_Tone_B, bMaskDWord, 0x38008c1c);
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_Tone_B, bMaskDWord, 0x38008c1c);
 
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x82160c1f); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x82160c1f); */
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x82130ff0);
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_A, bMaskDWord, 0x28110000);
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_B, bMaskDWord, 0x82110000);
@@ -511,42 +579,47 @@ static u8 phy_PathA_RxIQK8723B(
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
 
 	/*  Check failed */
-	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2, bMaskDWord);
-	regE94 = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A, bMaskDWord);
-	regE9C = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A, bMaskDWord);
+	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2,
+				bMaskDWord);
+	regE94 = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A,
+				bMaskDWord);
+	regE9C = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A,
+				bMaskDWord);
 
 	/* Allen 20131125 */
-	tmp = (regE9C & 0x03FF0000)>>16;
+	tmp = (regE9C & 0x03FF0000) >> 16;
 	if ((tmp & 0x200) > 0)
 		tmp = 0x400 - tmp;
 
-	if (
-		!(regEAC & BIT(28)) &&
-		(((regE94 & 0x03FF0000)>>16) != 0x142) &&
-		(((regE9C & 0x03FF0000)>>16) != 0x42) &&
-		(((regE94 & 0x03FF0000)>>16) < 0x110) &&
-		(((regE94 & 0x03FF0000)>>16) > 0xf0) &&
-		(tmp < 0xf)
-	)
+	if (!(regEAC & BIT(28)) && (((regE94 & 0x03FF0000) >> 16) != 0x142) &&
+	    (((regE9C & 0x03FF0000) >> 16) != 0x42) &&
+	    (((regE94 & 0x03FF0000) >> 16) < 0x110) &&
+	    (((regE94 & 0x03FF0000) >> 16) > 0xf0) && (tmp < 0xf))
 		result |= 0x01;
-	else				/* if Tx not OK, ignore Rx */
+	else /* if Tx not OK, ignore Rx */
 		return result;
 
-	u4tmp = 0x80007C00 | (regE94&0x3FF0000) | ((regE9C&0x3FF0000) >> 16);
+	u4tmp = 0x80007C00 | (regE94 & 0x3FF0000) |
+		((regE9C & 0x3FF0000) >> 16);
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK, bMaskDWord, u4tmp);
 
 	/* modify RXIQK mode table */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask, 0x18000);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask, 0x0001f);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask,
+		     0x18000);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask,
+		     0x0001f);
 	/* LAN2 on, PA off for Dcut */
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask, 0xf7d77);
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x0); */
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask,
+		     0xf7d77);
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x0); */
 
 	/* PA, PAD setting */
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xdf, bRFRegOffsetMask, 0xf80);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x55, bRFRegOffsetMask, 0x4021f);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xdf, bRFRegOffsetMask,
+		     0xf80);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x55, bRFRegOffsetMask,
+		     0x4021f);
 
 	/* IQK setting */
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK, bMaskDWord, 0x01004800);
@@ -558,7 +631,7 @@ static u8 phy_PathA_RxIQK8723B(
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_Tone_B, bMaskDWord, 0x38008c1c);
 
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x82110000);
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_A, bMaskDWord, 0x281604c2); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_A, bMaskDWord, 0x281604c2); */
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_A, bMaskDWord, 0x2813001f);
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_B, bMaskDWord, 0x82110000);
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_B, bMaskDWord, 0x28110000);
@@ -593,31 +666,31 @@ static u8 phy_PathA_RxIQK8723B(
 	/* GNT_BT = 1 */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, bMaskDWord, 0x00001800);
 
-    /* leave IQK mode */
+	/* leave IQK mode */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
 
 	/*  Check failed */
-	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2, bMaskDWord);
-	regEA4 = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_Before_IQK_A_2, bMaskDWord);
+	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2,
+				bMaskDWord);
+	regEA4 = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_Before_IQK_A_2,
+				bMaskDWord);
 
 	/* 	PA/PAD controlled by 0x0 */
 	/* leave IQK mode */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xdf, bRFRegOffsetMask, 0x780);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xdf, bRFRegOffsetMask,
+		     0x780);
 
 	/* Allen 20131125 */
-	tmp = (regEAC & 0x03FF0000)>>16;
+	tmp = (regEAC & 0x03FF0000) >> 16;
 	if ((tmp & 0x200) > 0)
 		tmp = 0x400 - tmp;
 
-	if (
-		!(regEAC & BIT(27)) && /* if Tx is OK, check whether Rx is OK */
-		(((regEA4 & 0x03FF0000)>>16) != 0x132) &&
-		(((regEAC & 0x03FF0000)>>16) != 0x36) &&
-		(((regEA4 & 0x03FF0000)>>16) < 0x110) &&
-		(((regEA4 & 0x03FF0000)>>16) > 0xf0) &&
-		(tmp < 0xf)
-	)
+	if (!(regEAC & BIT(27)) && /* if Tx is OK, check whether Rx is OK */
+	    (((regEA4 & 0x03FF0000) >> 16) != 0x132) &&
+	    (((regEAC & 0x03FF0000) >> 16) != 0x36) &&
+	    (((regEA4 & 0x03FF0000) >> 16) < 0x110) &&
+	    (((regEA4 & 0x03FF0000) >> 16) > 0xf0) && (tmp < 0xf))
 		result |= 0x02;
 
 	return result;
@@ -626,25 +699,27 @@ static u8 phy_PathA_RxIQK8723B(
 /* bit0 = 1 => Tx OK, bit1 = 1 => Rx OK */
 static u8 phy_PathB_IQK_8723B(struct adapter *padapter)
 {
-	u32 regEAC, regE94, regE9C, tmp, Path_SEL_BB/*, regEC4, regECC, Path_SEL_BB*/;
+	u32 regEAC, regE94, regE9C, tmp,
+		Path_SEL_BB /*, regEC4, regECC, Path_SEL_BB*/;
 	u8 result = 0x00;
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
 	/*  Save RF Path */
 	Path_SEL_BB = PHY_QueryBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord);
 
-    /* leave IQK mode */
+	/* leave IQK mode */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
 
 	/* 	in TXIQK mode */
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x1); */
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask, 0x20000); */
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask, 0x0003f); */
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask, 0xc7f87); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x1); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask, 0x20000); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask, 0x0003f); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask, 0xc7f87); */
 	/* 	enable path B PA in TXIQK mode */
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xed, 0x20, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask, 0x30fc1);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask,
+		     0x30fc1);
 
 	/* 1 Tx IQK */
 	/* IQK setting */
@@ -656,7 +731,7 @@ static u8 phy_PathB_IQK_8723B(struct adapter *padapter)
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_Tone_B, bMaskDWord, 0x38008c1c);
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_Tone_B, bMaskDWord, 0x38008c1c);
 
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x82140114); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x82140114); */
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x821303ea);
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_A, bMaskDWord, 0x28110000);
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_B, bMaskDWord, 0x82110000);
@@ -670,7 +745,7 @@ static u8 phy_PathB_IQK_8723B(struct adapter *padapter)
 
 	/* switch to path B */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord, 0x00000280);
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, bRFRegOffsetMask, 0xeffe0); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, bRFRegOffsetMask, 0xeffe0); */
 
 	/* GNT_BT = 0 */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, bMaskDWord, 0x00000800);
@@ -688,27 +763,26 @@ static u8 phy_PathB_IQK_8723B(struct adapter *padapter)
 	/* GNT_BT = 1 */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, bMaskDWord, 0x00001800);
 
-    /* leave IQK mode */
+	/* leave IQK mode */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
 
 	/*  Check failed */
-	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2, bMaskDWord);
-	regE94 = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A, bMaskDWord);
-	regE9C = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A, bMaskDWord);
+	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2,
+				bMaskDWord);
+	regE94 = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A,
+				bMaskDWord);
+	regE9C = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A,
+				bMaskDWord);
 
 	/* Allen 20131125 */
-	tmp = (regE9C & 0x03FF0000)>>16;
+	tmp = (regE9C & 0x03FF0000) >> 16;
 	if ((tmp & 0x200) > 0)
 		tmp = 0x400 - tmp;
 
-	if (
-		!(regEAC & BIT(28)) &&
-		(((regE94 & 0x03FF0000)>>16) != 0x142) &&
-		(((regE9C & 0x03FF0000)>>16) != 0x42) &&
-		(((regE94 & 0x03FF0000)>>16) < 0x110) &&
-		(((regE94 & 0x03FF0000)>>16) > 0xf0) &&
-		(tmp < 0xf)
-	)
+	if (!(regEAC & BIT(28)) && (((regE94 & 0x03FF0000) >> 16) != 0x142) &&
+	    (((regE9C & 0x03FF0000) >> 16) != 0x42) &&
+	    (((regE94 & 0x03FF0000) >> 16) < 0x110) &&
+	    (((regE94 & 0x03FF0000) >> 16) > 0xf0) && (tmp < 0xf))
 		result |= 0x01;
 
 	return result;
@@ -724,19 +798,23 @@ static u8 phy_PathB_RxIQK8723B(struct adapter *padapter, bool configPathB)
 
 	/*  Save RF Path */
 	Path_SEL_BB = PHY_QueryBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord);
-    /* leave IQK mode */
+	/* leave IQK mode */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
 
 	/* switch to path B */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord, 0x00000280);
 	/* modify RXIQK mode table */
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask, 0x18000);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask, 0x0001f);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask, 0xf7fb7);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask,
+		     0x18000);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask,
+		     0x0001f);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask,
+		     0xf7fb7);
 	/* open PA S1 & SMIXER */
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xed, 0x20, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask, 0x30fcd);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask,
+		     0x30fcd);
 
 	/* IQK setting */
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK, bMaskDWord, 0x01007c00);
@@ -748,7 +826,7 @@ static u8 phy_PathB_RxIQK8723B(struct adapter *padapter, bool configPathB)
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_Tone_B, bMaskDWord, 0x38008c1c);
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_Tone_B, bMaskDWord, 0x38008c1c);
 
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x82160c1f); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x82160c1f); */
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x82130ff0);
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_A, bMaskDWord, 0x28110000);
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_B, bMaskDWord, 0x82110000);
@@ -757,12 +835,12 @@ static u8 phy_PathB_RxIQK8723B(struct adapter *padapter, bool configPathB)
 	/* LO calibration setting */
 	PHY_SetBBReg(pDM_Odm->Adapter, rIQK_AGC_Rsp, bMaskDWord, 0x0046a911);
 
-    /* enter IQK mode */
+	/* enter IQK mode */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x808000);
 
 	/* switch to path B */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord, 0x00000280);
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, bRFRegOffsetMask, 0xeffe0); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, bRFRegOffsetMask, 0xeffe0); */
 
 	/* GNT_BT = 0 */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, bMaskDWord, 0x00000800);
@@ -780,50 +858,54 @@ static u8 phy_PathB_RxIQK8723B(struct adapter *padapter, bool configPathB)
 	/* GNT_BT = 1 */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, bMaskDWord, 0x00001800);
 
-    /* leave IQK mode */
+	/* leave IQK mode */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
 
 	/*  Check failed */
-	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2, bMaskDWord);
-	regE94 = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A, bMaskDWord);
-	regE9C = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A, bMaskDWord);
+	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2,
+				bMaskDWord);
+	regE94 = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A,
+				bMaskDWord);
+	regE9C = PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A,
+				bMaskDWord);
 
 	/* Allen 20131125 */
-	tmp = (regE9C & 0x03FF0000)>>16;
+	tmp = (regE9C & 0x03FF0000) >> 16;
 	if ((tmp & 0x200) > 0)
 		tmp = 0x400 - tmp;
 
-	if (
-		!(regEAC & BIT(28)) &&
-		(((regE94 & 0x03FF0000)>>16) != 0x142) &&
-		(((regE9C & 0x03FF0000)>>16) != 0x42)  &&
-		(((regE94 & 0x03FF0000)>>16) < 0x110) &&
-		(((regE94 & 0x03FF0000)>>16) > 0xf0) &&
-		(tmp < 0xf)
-	)
-			result |= 0x01;
-	else	/* if Tx not OK, ignore Rx */
+	if (!(regEAC & BIT(28)) && (((regE94 & 0x03FF0000) >> 16) != 0x142) &&
+	    (((regE9C & 0x03FF0000) >> 16) != 0x42) &&
+	    (((regE94 & 0x03FF0000) >> 16) < 0x110) &&
+	    (((regE94 & 0x03FF0000) >> 16) > 0xf0) && (tmp < 0xf))
+		result |= 0x01;
+	else /* if Tx not OK, ignore Rx */
 		return result;
 
-	u4tmp = 0x80007C00 | (regE94&0x3FF0000)  | ((regE9C&0x3FF0000) >> 16);
+	u4tmp = 0x80007C00 | (regE94 & 0x3FF0000) |
+		((regE9C & 0x3FF0000) >> 16);
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK, bMaskDWord, u4tmp);
 
 	/* modify RXIQK mode table */
 	/* 20121009, Kordan> RF Mode = 3 */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask, 0x18000);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask, 0x0001f);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask, 0xf7d77);
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x0); */
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask,
+		     0x18000);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask,
+		     0x0001f);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask,
+		     0xf7d77);
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x0); */
 
 	/* open PA S1 & close SMIXER */
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xed, 0x20, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask, 0x30ebd);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask,
+		     0x30ebd);
 
 	/* PA, PAD setting */
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xdf, bRFRegOffsetMask, 0xf80); */
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x56, bRFRegOffsetMask, 0x51000); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xdf, bRFRegOffsetMask, 0xf80); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x56, bRFRegOffsetMask, 0x51000); */
 
 	/* IQK setting */
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK, bMaskDWord, 0x01004800);
@@ -835,7 +917,7 @@ static u8 phy_PathB_RxIQK8723B(struct adapter *padapter, bool configPathB)
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_Tone_B, bMaskDWord, 0x38008c1c);
 
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_A, bMaskDWord, 0x82110000);
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_A, bMaskDWord, 0x281604c2); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_A, bMaskDWord, 0x281604c2); */
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_A, bMaskDWord, 0x2813001f);
 	PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_PI_B, bMaskDWord, 0x82110000);
 	PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_PI_B, bMaskDWord, 0x28110000);
@@ -843,12 +925,12 @@ static u8 phy_PathB_RxIQK8723B(struct adapter *padapter, bool configPathB)
 	/* LO calibration setting */
 	PHY_SetBBReg(pDM_Odm->Adapter, rIQK_AGC_Rsp, bMaskDWord, 0x0046a8d1);
 
-    /* enter IQK mode */
+	/* enter IQK mode */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x808000);
 
 	/* switch to path B */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord, 0x00000280);
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, bRFRegOffsetMask, 0xeffe0); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, bRFRegOffsetMask, 0xeffe0); */
 
 	/* GNT_BT = 0 */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, bMaskDWord, 0x00000800);
@@ -866,47 +948,42 @@ static u8 phy_PathB_RxIQK8723B(struct adapter *padapter, bool configPathB)
 	/* GNT_BT = 1 */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, bMaskDWord, 0x00001800);
 
-    /* leave IQK mode */
+	/* leave IQK mode */
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
 
 	/*  Check failed */
-	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2, bMaskDWord);
-	regEA4 = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_Before_IQK_A_2, bMaskDWord);
+	regEAC = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2,
+				bMaskDWord);
+	regEA4 = PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_Before_IQK_A_2,
+				bMaskDWord);
 
 	/* 	PA/PAD controlled by 0x0 */
 	/* leave IQK mode */
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, 0xffffff00, 0x00000000); */
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_B, 0xdf, bRFRegOffsetMask, 0x180); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, 0xffffff00, 0x00000000); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_B, 0xdf, bRFRegOffsetMask, 0x180); */
 
 	/* Allen 20131125 */
-	tmp = (regEAC & 0x03FF0000)>>16;
+	tmp = (regEAC & 0x03FF0000) >> 16;
 	if ((tmp & 0x200) > 0)
 		tmp = 0x400 - tmp;
 
-	if (
-		!(regEAC & BIT(27)) && /* if Tx is OK, check whether Rx is OK */
-		(((regEA4 & 0x03FF0000)>>16) != 0x132) &&
-		(((regEAC & 0x03FF0000)>>16) != 0x36) &&
-		(((regEA4 & 0x03FF0000)>>16) < 0x110) &&
-		(((regEA4 & 0x03FF0000)>>16) > 0xf0) &&
-		(tmp < 0xf)
-	)
+	if (!(regEAC & BIT(27)) && /* if Tx is OK, check whether Rx is OK */
+	    (((regEA4 & 0x03FF0000) >> 16) != 0x132) &&
+	    (((regEAC & 0x03FF0000) >> 16) != 0x36) &&
+	    (((regEA4 & 0x03FF0000) >> 16) < 0x110) &&
+	    (((regEA4 & 0x03FF0000) >> 16) > 0xf0) && (tmp < 0xf))
 		result |= 0x02;
 
 	return result;
 }
 
-static void _PHY_PathAFillIQKMatrix8723B(
-	struct adapter *padapter,
-	bool bIQKOK,
-	s32 result[][8],
-	u8 final_candidate,
-	bool bTxOnly
-)
+static void _PHY_PathAFillIQKMatrix8723B(struct adapter *padapter, bool bIQKOK,
+					 s32 result[][8], u8 final_candidate,
+					 bool bTxOnly)
 {
 	u32 Oldval_0, X, TX0_A, reg;
 	s32 Y, TX0_C;
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
 	struct odm_rf_cal_t *pRFCalibrateInfo = &pDM_Odm->RFCalibrateInfo;
@@ -915,15 +992,21 @@ static void _PHY_PathAFillIQKMatrix8723B(
 		return;
 
 	else if (bIQKOK) {
-		Oldval_0 = (PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XATxIQImbalance, bMaskDWord) >> 22) & 0x3FF;
+		Oldval_0 =
+			(PHY_QueryBBReg(pDM_Odm->Adapter,
+					rOFDM0_XATxIQImbalance, bMaskDWord) >>
+			 22) &
+			0x3FF;
 
 		X = result[final_candidate][0];
 		if ((X & 0x00000200) != 0)
 			X = X | 0xFFFFFC00;
 		TX0_A = (X * Oldval_0) >> 8;
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XATxIQImbalance, 0x3FF, TX0_A);
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XATxIQImbalance, 0x3FF,
+			     TX0_A);
 
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(31), ((X*Oldval_0>>7) & 0x1));
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(31),
+			     ((X * Oldval_0 >> 7) & 0x1));
 
 		Y = result[final_candidate][1];
 		if ((Y & 0x00000200) != 0)
@@ -931,56 +1014,79 @@ static void _PHY_PathAFillIQKMatrix8723B(
 
 		/* 2 Tx IQC */
 		TX0_C = (Y * Oldval_0) >> 8;
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XCTxAFE, 0xF0000000, ((TX0_C&0x3C0)>>6));
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC94][KEY] = rOFDM0_XCTxAFE;
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC94][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XCTxAFE, bMaskDWord);
-
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XATxIQImbalance, 0x003F0000, (TX0_C&0x3F));
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC80][KEY] = rOFDM0_XATxIQImbalance;
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC80][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XATxIQImbalance, bMaskDWord);
-
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(29), ((Y*Oldval_0>>7) & 0x1));
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC4C][KEY] = rOFDM0_ECCAThreshold;
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC4C][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskDWord);
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XCTxAFE, 0xF0000000,
+			     ((TX0_C & 0x3C0) >> 6));
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC94][KEY] =
+			rOFDM0_XCTxAFE;
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC94][VAL] =
+			PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XCTxAFE,
+				       bMaskDWord);
+
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XATxIQImbalance,
+			     0x003F0000, (TX0_C & 0x3F));
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC80][KEY] =
+			rOFDM0_XATxIQImbalance;
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC80][VAL] =
+			PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XATxIQImbalance,
+				       bMaskDWord);
+
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(29),
+			     ((Y * Oldval_0 >> 7) & 0x1));
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC4C][KEY] =
+			rOFDM0_ECCAThreshold;
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC4C][VAL] =
+			PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold,
+				       bMaskDWord);
 
 		if (bTxOnly) {
 			/*  <20130226, Kordan> Saving RxIQC, otherwise not initialized. */
-			pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xCA0][KEY] = rOFDM0_RxIQExtAnta;
-			pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xCA0][VAL] = 0xfffffff & PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_RxIQExtAnta, bMaskDWord);
-			pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][KEY] = rOFDM0_XARxIQImbalance;
-/* 			pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XARxIQImbalance, bMaskDWord); */
-			pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][VAL] = 0x40000100;
+			pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xCA0][KEY] =
+				rOFDM0_RxIQExtAnta;
+			pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xCA0][VAL] =
+				0xfffffff & PHY_QueryBBReg(pDM_Odm->Adapter,
+							   rOFDM0_RxIQExtAnta,
+							   bMaskDWord);
+			pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][KEY] =
+				rOFDM0_XARxIQImbalance;
+			/* 			pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XARxIQImbalance, bMaskDWord); */
+			pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][VAL] =
+				0x40000100;
 			return;
 		}
 
 		reg = result[final_candidate][2];
 
 		/* 2 Rx IQC */
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XARxIQImbalance, 0x3FF, reg);
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XARxIQImbalance, 0x3FF,
+			     reg);
 		reg = result[final_candidate][3] & 0x3F;
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XARxIQImbalance, 0xFC00, reg);
-		pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][KEY] = rOFDM0_XARxIQImbalance;
-		pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XARxIQImbalance, bMaskDWord);
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XARxIQImbalance, 0xFC00,
+			     reg);
+		pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][KEY] =
+			rOFDM0_XARxIQImbalance;
+		pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][VAL] =
+			PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XARxIQImbalance,
+				       bMaskDWord);
 
 		reg = (result[final_candidate][3] >> 6) & 0xF;
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_RxIQExtAnta, 0xF0000000, reg);
-		pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xCA0][KEY] = rOFDM0_RxIQExtAnta;
-		pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xCA0][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_RxIQExtAnta, bMaskDWord);
-
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_RxIQExtAnta, 0xF0000000,
+			     reg);
+		pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xCA0][KEY] =
+			rOFDM0_RxIQExtAnta;
+		pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xCA0][VAL] =
+			PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_RxIQExtAnta,
+				       bMaskDWord);
 	}
 }
 
-static void _PHY_PathBFillIQKMatrix8723B(
-	struct adapter *padapter,
-	bool bIQKOK,
-	s32 result[][8],
-	u8 final_candidate,
-	bool bTxOnly /* do Tx only */
+static void _PHY_PathBFillIQKMatrix8723B(struct adapter *padapter, bool bIQKOK,
+					 s32 result[][8], u8 final_candidate,
+					 bool bTxOnly /* do Tx only */
 )
 {
 	u32 Oldval_1, X, TX1_A, reg;
-	s32	Y, TX1_C;
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	s32 Y, TX1_C;
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
 	struct odm_rf_cal_t *pRFCalibrateInfo = &pDM_Odm->RFCalibrateInfo;
@@ -989,16 +1095,22 @@ static void _PHY_PathBFillIQKMatrix8723B(
 		return;
 
 	else if (bIQKOK) {
-		Oldval_1 = (PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XBTxIQImbalance, bMaskDWord) >> 22) & 0x3FF;
+		Oldval_1 =
+			(PHY_QueryBBReg(pDM_Odm->Adapter,
+					rOFDM0_XBTxIQImbalance, bMaskDWord) >>
+			 22) &
+			0x3FF;
 
 		X = result[final_candidate][4];
 		if ((X & 0x00000200) != 0)
 			X = X | 0xFFFFFC00;
 		TX1_A = (X * Oldval_1) >> 8;
 
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBTxIQImbalance, 0x3FF, TX1_A);
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBTxIQImbalance, 0x3FF,
+			     TX1_A);
 
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(27), ((X*Oldval_1>>7) & 0x1));
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(27),
+			     ((X * Oldval_1 >> 7) & 0x1));
 
 		Y = result[final_candidate][5];
 		if ((Y & 0x00000200) != 0)
@@ -1007,41 +1119,69 @@ static void _PHY_PathBFillIQKMatrix8723B(
 		TX1_C = (Y * Oldval_1) >> 8;
 
 		/* 2 Tx IQC */
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XDTxAFE, 0xF0000000, ((TX1_C&0x3C0)>>6));
-/* 		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC9C][KEY] = rOFDM0_XDTxAFE; */
-/* 		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC9C][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XDTxAFE, bMaskDWord); */
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC94][KEY] = rOFDM0_XCTxAFE;
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC94][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XDTxAFE, bMaskDWord);
-
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBTxIQImbalance, 0x003F0000, (TX1_C&0x3F));
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC80][KEY] = rOFDM0_XATxIQImbalance;
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC80][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XBTxIQImbalance, bMaskDWord);
-
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(25), ((Y*Oldval_1>>7) & 0x1));
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC4C][KEY] = rOFDM0_ECCAThreshold;
-		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC4C][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskDWord);
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XDTxAFE, 0xF0000000,
+			     ((TX1_C & 0x3C0) >> 6));
+		/* 		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC9C][KEY] = rOFDM0_XDTxAFE; */
+		/* 		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC9C][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XDTxAFE, bMaskDWord); */
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC94][KEY] =
+			rOFDM0_XCTxAFE;
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC94][VAL] =
+			PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XDTxAFE,
+				       bMaskDWord);
+
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBTxIQImbalance,
+			     0x003F0000, (TX1_C & 0x3F));
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC80][KEY] =
+			rOFDM0_XATxIQImbalance;
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC80][VAL] =
+			PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XBTxIQImbalance,
+				       bMaskDWord);
+
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, BIT(25),
+			     ((Y * Oldval_1 >> 7) & 0x1));
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC4C][KEY] =
+			rOFDM0_ECCAThreshold;
+		pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC4C][VAL] =
+			PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold,
+				       bMaskDWord);
 
 		if (bTxOnly) {
-			pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][KEY] = rOFDM0_XARxIQImbalance;
-/* 			pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XARxIQImbalance, bMaskDWord); */
-			pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][VAL] = 0x40000100;
-			pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xCA0][KEY] = rOFDM0_RxIQExtAnta;
-			pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xCA0][VAL] = 0x0fffffff & PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_RxIQExtAnta, bMaskDWord);
+			pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][KEY] =
+				rOFDM0_XARxIQImbalance;
+			/* 			pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XARxIQImbalance, bMaskDWord); */
+			pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][VAL] =
+				0x40000100;
+			pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xCA0][KEY] =
+				rOFDM0_RxIQExtAnta;
+			pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xCA0][VAL] =
+				0x0fffffff & PHY_QueryBBReg(pDM_Odm->Adapter,
+							    rOFDM0_RxIQExtAnta,
+							    bMaskDWord);
 			return;
 		}
 
 		/* 2 Rx IQC */
 		reg = result[final_candidate][6];
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBRxIQImbalance, 0x3FF, reg);
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBRxIQImbalance, 0x3FF,
+			     reg);
 		reg = result[final_candidate][7] & 0x3F;
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBRxIQImbalance, 0xFC00, reg);
-		pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][KEY] = rOFDM0_XARxIQImbalance;
-		pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][VAL] = PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XBRxIQImbalance, bMaskDWord);
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_XBRxIQImbalance, 0xFC00,
+			     reg);
+		pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][KEY] =
+			rOFDM0_XARxIQImbalance;
+		pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][VAL] =
+			PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_XBRxIQImbalance,
+				       bMaskDWord);
 
 		reg = (result[final_candidate][7] >> 6) & 0xF;
-/* 		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_AGCRSSITable, 0x0000F000, reg); */
-		pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xCA0][KEY] = rOFDM0_RxIQExtAnta;
-		pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xCA0][VAL] = (reg << 28)|(PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_RxIQExtAnta, bMaskDWord)&0x0fffffff);
+		/* 		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_AGCRSSITable, 0x0000F000, reg); */
+		pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xCA0][KEY] =
+			rOFDM0_RxIQExtAnta;
+		pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xCA0][VAL] =
+			(reg << 28) |
+			(PHY_QueryBBReg(pDM_Odm->Adapter, rOFDM0_RxIQExtAnta,
+					bMaskDWord) &
+			 0x0fffffff);
 	}
 }
 
@@ -1052,28 +1192,45 @@ static void _PHY_PathBFillIQKMatrix8723B(
 
 void ODM_SetIQCbyRFpath(struct dm_odm_t *pDM_Odm, u32 RFpath)
 {
-
 	struct odm_rf_cal_t *pRFCalibrateInfo = &pDM_Odm->RFCalibrateInfo;
 	u8 path;
 
-	if (
-		(pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC80][VAL] != 0x0) &&
-		(pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][VAL] != 0x0) &&
-		(pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC80][VAL] != 0x0) &&
-		(pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][VAL] != 0x0)
-	) {
+	if ((pRFCalibrateInfo->TxIQC_8723B[PATH_S0][IDX_0xC80][VAL] != 0x0) &&
+	    (pRFCalibrateInfo->RxIQC_8723B[PATH_S0][IDX_0xC14][VAL] != 0x0) &&
+	    (pRFCalibrateInfo->TxIQC_8723B[PATH_S1][IDX_0xC80][VAL] != 0x0) &&
+	    (pRFCalibrateInfo->RxIQC_8723B[PATH_S1][IDX_0xC14][VAL] != 0x0)) {
 		if (RFpath)
 			path = PATH_S0;
 		else
 			path = PATH_S1;
 
 		/* TX IQC */
-		PHY_SetBBReg(pDM_Odm->Adapter, pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC94][KEY], bMaskDWord, pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC94][VAL]);
-		PHY_SetBBReg(pDM_Odm->Adapter, pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC80][KEY], bMaskDWord, pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC80][VAL]);
-		PHY_SetBBReg(pDM_Odm->Adapter, pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC4C][KEY], bMaskDWord, pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC4C][VAL]);
+		PHY_SetBBReg(
+			pDM_Odm->Adapter,
+			pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC94][KEY],
+			bMaskDWord,
+			pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC94][VAL]);
+		PHY_SetBBReg(
+			pDM_Odm->Adapter,
+			pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC80][KEY],
+			bMaskDWord,
+			pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC80][VAL]);
+		PHY_SetBBReg(
+			pDM_Odm->Adapter,
+			pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC4C][KEY],
+			bMaskDWord,
+			pRFCalibrateInfo->TxIQC_8723B[path][IDX_0xC4C][VAL]);
 		/* RX IQC */
-		PHY_SetBBReg(pDM_Odm->Adapter, pRFCalibrateInfo->RxIQC_8723B[path][IDX_0xC14][KEY], bMaskDWord, pRFCalibrateInfo->RxIQC_8723B[path][IDX_0xC14][VAL]);
-		PHY_SetBBReg(pDM_Odm->Adapter, pRFCalibrateInfo->RxIQC_8723B[path][IDX_0xCA0][KEY], bMaskDWord, pRFCalibrateInfo->RxIQC_8723B[path][IDX_0xCA0][VAL]);
+		PHY_SetBBReg(
+			pDM_Odm->Adapter,
+			pRFCalibrateInfo->RxIQC_8723B[path][IDX_0xC14][KEY],
+			bMaskDWord,
+			pRFCalibrateInfo->RxIQC_8723B[path][IDX_0xC14][VAL]);
+		PHY_SetBBReg(
+			pDM_Odm->Adapter,
+			pRFCalibrateInfo->RxIQC_8723B[path][IDX_0xCA0][KEY],
+			bMaskDWord,
+			pRFCalibrateInfo->RxIQC_8723B[path][IDX_0xCA0][VAL]);
 	}
 }
 
@@ -1082,12 +1239,8 @@ static bool ODM_CheckPowerStatus(struct adapter *Adapter)
 	return true;
 }
 
-static void _PHY_SaveADDARegisters8723B(
-	struct adapter *padapter,
-	u32 *ADDAReg,
-	u32 *ADDABackup,
-	u32 RegisterNum
-)
+static void _PHY_SaveADDARegisters8723B(struct adapter *padapter, u32 *ADDAReg,
+					u32 *ADDABackup, u32 RegisterNum)
 {
 	u32 i;
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
@@ -1096,59 +1249,52 @@ static void _PHY_SaveADDARegisters8723B(
 	if (!ODM_CheckPowerStatus(padapter))
 		return;
 
-	for (i = 0 ; i < RegisterNum ; i++) {
-		ADDABackup[i] = PHY_QueryBBReg(pDM_Odm->Adapter, ADDAReg[i], bMaskDWord);
+	for (i = 0; i < RegisterNum; i++) {
+		ADDABackup[i] = PHY_QueryBBReg(pDM_Odm->Adapter, ADDAReg[i],
+					       bMaskDWord);
 	}
 }
 
-static void _PHY_SaveMACRegisters8723B(
-	struct adapter *padapter, u32 *MACReg, u32 *MACBackup
-)
+static void _PHY_SaveMACRegisters8723B(struct adapter *padapter, u32 *MACReg,
+				       u32 *MACBackup)
 {
 	u32 i;
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
-	for (i = 0 ; i < (IQK_MAC_REG_NUM - 1); i++) {
+	for (i = 0; i < (IQK_MAC_REG_NUM - 1); i++) {
 		MACBackup[i] = rtw_read8(pDM_Odm->Adapter, MACReg[i]);
 	}
 	MACBackup[i] = rtw_read32(pDM_Odm->Adapter, MACReg[i]);
-
 }
 
-static void _PHY_ReloadADDARegisters8723B(
-	struct adapter *padapter,
-	u32 *ADDAReg,
-	u32 *ADDABackup,
-	u32 RegiesterNum
-)
+static void _PHY_ReloadADDARegisters8723B(struct adapter *padapter,
+					  u32 *ADDAReg, u32 *ADDABackup,
+					  u32 RegiesterNum)
 {
 	u32 i;
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
-	for (i = 0 ; i < RegiesterNum; i++) {
-		PHY_SetBBReg(pDM_Odm->Adapter, ADDAReg[i], bMaskDWord, ADDABackup[i]);
+	for (i = 0; i < RegiesterNum; i++) {
+		PHY_SetBBReg(pDM_Odm->Adapter, ADDAReg[i], bMaskDWord,
+			     ADDABackup[i]);
 	}
 }
 
-static void _PHY_ReloadMACRegisters8723B(
-	struct adapter *padapter, u32 *MACReg, u32 *MACBackup
-)
+static void _PHY_ReloadMACRegisters8723B(struct adapter *padapter, u32 *MACReg,
+					 u32 *MACBackup)
 {
 	u32 i;
 
-	for (i = 0 ; i < (IQK_MAC_REG_NUM - 1); i++) {
+	for (i = 0; i < (IQK_MAC_REG_NUM - 1); i++) {
 		rtw_write8(padapter, MACReg[i], (u8)MACBackup[i]);
 	}
 	rtw_write32(padapter, MACReg[i], MACBackup[i]);
 }
 
-static void _PHY_PathADDAOn8723B(
-	struct adapter *padapter,
-	u32 *ADDAReg,
-	bool is2T
-)
+static void _PHY_PathADDAOn8723B(struct adapter *padapter, u32 *ADDAReg,
+				 bool is2T)
 {
 	u32 pathOn;
 	u32 i;
@@ -1158,43 +1304,38 @@ static void _PHY_PathADDAOn8723B(
 	pathOn = 0x01c00014;
 	if (!is2T) {
 		pathOn = 0x01c00014;
-		PHY_SetBBReg(pDM_Odm->Adapter, ADDAReg[0], bMaskDWord, 0x01c00014);
+		PHY_SetBBReg(pDM_Odm->Adapter, ADDAReg[0], bMaskDWord,
+			     0x01c00014);
 	} else {
 		PHY_SetBBReg(pDM_Odm->Adapter, ADDAReg[0], bMaskDWord, pathOn);
 	}
 
-	for (i = 1 ; i < IQK_ADDA_REG_NUM ; i++) {
+	for (i = 1; i < IQK_ADDA_REG_NUM; i++) {
 		PHY_SetBBReg(pDM_Odm->Adapter, ADDAReg[i], bMaskDWord, pathOn);
 	}
-
 }
 
-static void _PHY_MACSettingCalibration8723B(
-	struct adapter *padapter, u32 *MACReg, u32 *MACBackup
-)
+static void _PHY_MACSettingCalibration8723B(struct adapter *padapter,
+					    u32 *MACReg, u32 *MACBackup)
 {
 	u32 i = 0;
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
 	rtw_write8(pDM_Odm->Adapter, MACReg[i], 0x3F);
 
-	for (i = 1 ; i < (IQK_MAC_REG_NUM - 1); i++) {
-		rtw_write8(pDM_Odm->Adapter, MACReg[i], (u8)(MACBackup[i]&(~BIT(3))));
+	for (i = 1; i < (IQK_MAC_REG_NUM - 1); i++) {
+		rtw_write8(pDM_Odm->Adapter, MACReg[i],
+			   (u8)(MACBackup[i] & (~BIT(3))));
 	}
-	rtw_write8(pDM_Odm->Adapter, MACReg[i], (u8)(MACBackup[i]&(~BIT(5))));
-
+	rtw_write8(pDM_Odm->Adapter, MACReg[i], (u8)(MACBackup[i] & (~BIT(5))));
 }
 
-static bool phy_SimularityCompare_8723B(
-	struct adapter *padapter,
-	s32 result[][8],
-	u8  c1,
-	u8  c2
-)
+static bool phy_SimularityCompare_8723B(struct adapter *padapter,
+					s32 result[][8], u8 c1, u8 c2)
 {
 	u32 i, j, diff, SimularityBitMap, bound = 0;
-	u8 final_candidate[2] = {0xFF, 0xFF}; /* for path A and path B */
+	u8 final_candidate[2] = { 0xFF, 0xFF }; /* for path A and path B */
 	bool bResult = true;
 	s32 tmp1 = 0, tmp2 = 0;
 
@@ -1202,7 +1343,6 @@ static bool phy_SimularityCompare_8723B(
 	SimularityBitMap = 0;
 
 	for (i = 0; i < bound; i++) {
-
 		if ((i == 1) || (i == 3) || (i == 5) || (i == 7)) {
 			if ((result[c1][i] & 0x00000200) != 0)
 				tmp1 = result[c1][i] | 0xFFFFFC00;
@@ -1222,28 +1362,29 @@ static bool phy_SimularityCompare_8723B(
 
 		if (diff > MAX_TOLERANCE) {
 			if ((i == 2 || i == 6) && !SimularityBitMap) {
-				if (result[c1][i]+result[c1][i+1] == 0)
-					final_candidate[(i/4)] = c2;
-				else if (result[c2][i]+result[c2][i+1] == 0)
-					final_candidate[(i/4)] = c1;
+				if (result[c1][i] + result[c1][i + 1] == 0)
+					final_candidate[(i / 4)] = c2;
+				else if (result[c2][i] + result[c2][i + 1] == 0)
+					final_candidate[(i / 4)] = c1;
 				else
-					SimularityBitMap = SimularityBitMap|(1<<i);
+					SimularityBitMap = SimularityBitMap |
+							   (1 << i);
 			} else
-				SimularityBitMap = SimularityBitMap|(1<<i);
+				SimularityBitMap = SimularityBitMap | (1 << i);
 		}
 	}
 
 	if (SimularityBitMap == 0) {
-		for (i = 0; i < (bound/4); i++) {
+		for (i = 0; i < (bound / 4); i++) {
 			if (final_candidate[i] != 0xFF) {
-				for (j = i*4; j < (i+1)*4-2; j++)
-					result[3][j] = result[final_candidate[i]][j];
+				for (j = i * 4; j < (i + 1) * 4 - 2; j++)
+					result[3][j] =
+						result[final_candidate[i]][j];
 				bResult = false;
 			}
 		}
 		return bResult;
 	} else {
-
 		if (!(SimularityBitMap & 0x03)) { /* path A TX OK */
 			for (i = 0; i < 2; i++)
 				result[3][i] = result[c1][i];
@@ -1267,58 +1408,45 @@ static bool phy_SimularityCompare_8723B(
 	}
 }
 
-static void phy_IQCalibrate_8723B(
-	struct adapter *padapter,
-	s32 result[][8],
-	u8 t,
-	bool is2T,
-	u8 RF_Path
-)
+static void phy_IQCalibrate_8723B(struct adapter *padapter, s32 result[][8],
+				  u8 t, bool is2T, u8 RF_Path)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
 	u32 i;
 	u8 PathAOK, PathBOK;
 	u8 tmp0xc50 = (u8)PHY_QueryBBReg(pDM_Odm->Adapter, 0xC50, bMaskByte0);
 	u8 tmp0xc58 = (u8)PHY_QueryBBReg(pDM_Odm->Adapter, 0xC58, bMaskByte0);
-	u32 ADDA_REG[IQK_ADDA_REG_NUM] = {
-		rFPGA0_XCD_SwitchControl,
-		rBlue_Tooth,
-		rRx_Wait_CCA,
-		rTx_CCK_RFON,
-		rTx_CCK_BBON,
-		rTx_OFDM_RFON,
-		rTx_OFDM_BBON,
-		rTx_To_Rx,
-		rTx_To_Tx,
-		rRx_CCK,
-		rRx_OFDM,
-		rRx_Wait_RIFS,
-		rRx_TO_Rx,
-		rStandby,
-		rSleep,
-		rPMPD_ANAEN
-	};
-	u32 IQK_MAC_REG[IQK_MAC_REG_NUM] = {
-		REG_TXPAUSE,
-		REG_BCN_CTRL,
-		REG_BCN_CTRL_1,
-		REG_GPIO_MUXCFG
-	};
+	u32 ADDA_REG[IQK_ADDA_REG_NUM] = { rFPGA0_XCD_SwitchControl,
+					   rBlue_Tooth,
+					   rRx_Wait_CCA,
+					   rTx_CCK_RFON,
+					   rTx_CCK_BBON,
+					   rTx_OFDM_RFON,
+					   rTx_OFDM_BBON,
+					   rTx_To_Rx,
+					   rTx_To_Tx,
+					   rRx_CCK,
+					   rRx_OFDM,
+					   rRx_Wait_RIFS,
+					   rRx_TO_Rx,
+					   rStandby,
+					   rSleep,
+					   rPMPD_ANAEN };
+	u32 IQK_MAC_REG[IQK_MAC_REG_NUM] = { REG_TXPAUSE, REG_BCN_CTRL,
+					     REG_BCN_CTRL_1, REG_GPIO_MUXCFG };
 
 	/* since 92C & 92D have the different define in IQK_BB_REG */
-	u32 IQK_BB_REG_92C[IQK_BB_REG_NUM] = {
-		rOFDM0_TRxPathEnable,
-		rOFDM0_TRMuxPar,
-		rFPGA0_XCD_RFInterfaceSW,
-		rConfig_AntA,
-		rConfig_AntB,
-		rFPGA0_XAB_RFInterfaceSW,
-		rFPGA0_XA_RFInterfaceOE,
-		rFPGA0_XB_RFInterfaceOE,
-		rCCK0_AFESetting
-	};
+	u32 IQK_BB_REG_92C[IQK_BB_REG_NUM] = { rOFDM0_TRxPathEnable,
+					       rOFDM0_TRMuxPar,
+					       rFPGA0_XCD_RFInterfaceSW,
+					       rConfig_AntA,
+					       rConfig_AntB,
+					       rFPGA0_XAB_RFInterfaceSW,
+					       rFPGA0_XA_RFInterfaceOE,
+					       rFPGA0_XB_RFInterfaceOE,
+					       rCCK0_AFESetting };
 	const u32 retryCount = 2;
 
 	/*  Note: IQ calibration must be performed after loading */
@@ -1327,105 +1455,157 @@ static void phy_IQCalibrate_8723B(
 	/* u32 bbvalue; */
 
 	if (t == 0) {
-
 		/*  Save ADDA parameters, turn Path A ADDA on */
-		_PHY_SaveADDARegisters8723B(padapter, ADDA_REG, pDM_Odm->RFCalibrateInfo.ADDA_backup, IQK_ADDA_REG_NUM);
-		_PHY_SaveMACRegisters8723B(padapter, IQK_MAC_REG, pDM_Odm->RFCalibrateInfo.IQK_MAC_backup);
-		_PHY_SaveADDARegisters8723B(padapter, IQK_BB_REG_92C, pDM_Odm->RFCalibrateInfo.IQK_BB_backup, IQK_BB_REG_NUM);
+		_PHY_SaveADDARegisters8723B(
+			padapter, ADDA_REG,
+			pDM_Odm->RFCalibrateInfo.ADDA_backup, IQK_ADDA_REG_NUM);
+		_PHY_SaveMACRegisters8723B(
+			padapter, IQK_MAC_REG,
+			pDM_Odm->RFCalibrateInfo.IQK_MAC_backup);
+		_PHY_SaveADDARegisters8723B(
+			padapter, IQK_BB_REG_92C,
+			pDM_Odm->RFCalibrateInfo.IQK_BB_backup, IQK_BB_REG_NUM);
 	}
 
 	_PHY_PathADDAOn8723B(padapter, ADDA_REG, is2T);
 
-/* no serial mode */
+	/* no serial mode */
 
 	/* save RF path for 8723B */
-/* 	Path_SEL_BB = PHY_QueryBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord); */
-/* 	Path_SEL_RF = PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, 0xfffff); */
+	/* 	Path_SEL_BB = PHY_QueryBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord); */
+	/* 	Path_SEL_RF = PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, 0xfffff); */
 
 	/* MAC settings */
-	_PHY_MACSettingCalibration8723B(padapter, IQK_MAC_REG, pDM_Odm->RFCalibrateInfo.IQK_MAC_backup);
+	_PHY_MACSettingCalibration8723B(
+		padapter, IQK_MAC_REG, pDM_Odm->RFCalibrateInfo.IQK_MAC_backup);
 
 	/* BB setting */
 	/* PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_RFMOD, BIT24, 0x00); */
 	PHY_SetBBReg(pDM_Odm->Adapter, rCCK0_AFESetting, 0x0f000000, 0xf);
-	PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_TRxPathEnable, bMaskDWord, 0x03a05600);
+	PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_TRxPathEnable, bMaskDWord,
+		     0x03a05600);
 	PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_TRMuxPar, bMaskDWord, 0x000800e4);
-	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_XCD_RFInterfaceSW, bMaskDWord, 0x22204000);
+	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_XCD_RFInterfaceSW, bMaskDWord,
+		     0x22204000);
 
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_XAB_RFInterfaceSW, BIT10, 0x01); */
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_XAB_RFInterfaceSW, BIT26, 0x01); */
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_XA_RFInterfaceOE, BIT10, 0x00); */
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_XB_RFInterfaceOE, BIT10, 0x00); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_XAB_RFInterfaceSW, BIT10, 0x01); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_XAB_RFInterfaceSW, BIT26, 0x01); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_XA_RFInterfaceOE, BIT10, 0x00); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_XB_RFInterfaceOE, BIT10, 0x00); */
 
-/* RX IQ calibration setting for 8723B D cut large current issue when leaving IPS */
+	/* RX IQ calibration setting for 8723B D cut large current issue when leaving IPS */
 
 	PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask, 0x30000);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask, 0x0001f);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask, 0xf7fb7);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask,
+		     0x30000);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask,
+		     0x0001f);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask,
+		     0xf7fb7);
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xed, 0x20, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask, 0x60fbd);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask,
+		     0x60fbd);
 
-/* path A TX IQK */
-	for (i = 0 ; i < retryCount ; i++) {
+	/* path A TX IQK */
+	for (i = 0; i < retryCount; i++) {
 		PathAOK = phy_PathA_IQK_8723B(padapter, is2T, RF_Path);
-/* 		if (PathAOK == 0x03) { */
+		/* 		if (PathAOK == 0x03) { */
 		if (PathAOK == 0x01) {
 			/*  Path A Tx IQK Success */
-			PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
-			pDM_Odm->RFCalibrateInfo.TxLOK[RF_PATH_A] = PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x8, bRFRegOffsetMask);
-
-			result[t][0] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A,
-						       bMaskDWord) & 0x3FF0000) >> 16;
-			result[t][1] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A,
-						       bMaskDWord) & 0x3FF0000) >> 16;
+			PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes,
+				     0x000000);
+			pDM_Odm->RFCalibrateInfo.TxLOK[RF_PATH_A] =
+				PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x8,
+					       bRFRegOffsetMask);
+
+			result[t][0] = (PHY_QueryBBReg(pDM_Odm->Adapter,
+						       rTx_Power_Before_IQK_A,
+						       bMaskDWord) &
+					0x3FF0000) >>
+				       16;
+			result[t][1] = (PHY_QueryBBReg(pDM_Odm->Adapter,
+						       rTx_Power_After_IQK_A,
+						       bMaskDWord) &
+					0x3FF0000) >>
+				       16;
 			break;
 		}
 	}
 
-/* path A RXIQK */
-	for (i = 0 ; i < retryCount ; i++) {
+	/* path A RXIQK */
+	for (i = 0; i < retryCount; i++) {
 		PathAOK = phy_PathA_RxIQK8723B(padapter, is2T, RF_Path);
 		if (PathAOK == 0x03) {
-/* 				result[t][0] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A, bMaskDWord)&0x3FF0000)>>16; */
-/* 				result[t][1] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A, bMaskDWord)&0x3FF0000)>>16; */
-				result[t][2] = (PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_Before_IQK_A_2, bMaskDWord)&0x3FF0000)>>16;
-				result[t][3] = (PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2, bMaskDWord)&0x3FF0000)>>16;
+			/* 				result[t][0] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A, bMaskDWord)&0x3FF0000)>>16; */
+			/* 				result[t][1] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A, bMaskDWord)&0x3FF0000)>>16; */
+			result[t][2] = (PHY_QueryBBReg(pDM_Odm->Adapter,
+						       rRx_Power_Before_IQK_A_2,
+						       bMaskDWord) &
+					0x3FF0000) >>
+				       16;
+			result[t][3] = (PHY_QueryBBReg(pDM_Odm->Adapter,
+						       rRx_Power_After_IQK_A_2,
+						       bMaskDWord) &
+					0x3FF0000) >>
+				       16;
 			break;
 		}
 	}
 
-/* path B IQK */
+	/* path B IQK */
 	if (is2T) {
-
 		/* path B TX IQK */
-		for (i = 0 ; i < retryCount ; i++) {
+		for (i = 0; i < retryCount; i++) {
 			PathBOK = phy_PathB_IQK_8723B(padapter);
 			if (PathBOK == 0x01) {
 				/*  Path B Tx IQK Success */
-				PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK, bMaskH3Bytes, 0x000000);
-				pDM_Odm->RFCalibrateInfo.TxLOK[RF_PATH_B] = PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH_B, 0x8, bRFRegOffsetMask);
-
-				result[t][4] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A, bMaskDWord)&0x3FF0000)>>16;
-				result[t][5] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A, bMaskDWord)&0x3FF0000)>>16;
+				PHY_SetBBReg(pDM_Odm->Adapter, rFPGA0_IQK,
+					     bMaskH3Bytes, 0x000000);
+				pDM_Odm->RFCalibrateInfo.TxLOK[RF_PATH_B] =
+					PHY_QueryRFReg(pDM_Odm->Adapter,
+						       RF_PATH_B, 0x8,
+						       bRFRegOffsetMask);
+
+				result[t][4] =
+					(PHY_QueryBBReg(pDM_Odm->Adapter,
+							rTx_Power_Before_IQK_A,
+							bMaskDWord) &
+					 0x3FF0000) >>
+					16;
+				result[t][5] =
+					(PHY_QueryBBReg(pDM_Odm->Adapter,
+							rTx_Power_After_IQK_A,
+							bMaskDWord) &
+					 0x3FF0000) >>
+					16;
 				break;
 			}
 		}
 
-/* path B RX IQK */
-		for (i = 0 ; i < retryCount ; i++) {
+		/* path B RX IQK */
+		for (i = 0; i < retryCount; i++) {
 			PathBOK = phy_PathB_RxIQK8723B(padapter, is2T);
 			if (PathBOK == 0x03) {
-/* 				result[t][0] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A, bMaskDWord)&0x3FF0000)>>16; */
-/* 				result[t][1] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A, bMaskDWord)&0x3FF0000)>>16; */
-				result[t][6] = (PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_Before_IQK_A_2, bMaskDWord)&0x3FF0000)>>16;
-				result[t][7] = (PHY_QueryBBReg(pDM_Odm->Adapter, rRx_Power_After_IQK_A_2, bMaskDWord)&0x3FF0000)>>16;
+				/* 				result[t][0] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_Before_IQK_A, bMaskDWord)&0x3FF0000)>>16; */
+				/* 				result[t][1] = (PHY_QueryBBReg(pDM_Odm->Adapter, rTx_Power_After_IQK_A, bMaskDWord)&0x3FF0000)>>16; */
+				result[t][6] =
+					(PHY_QueryBBReg(pDM_Odm->Adapter,
+							rRx_Power_Before_IQK_A_2,
+							bMaskDWord) &
+					 0x3FF0000) >>
+					16;
+				result[t][7] =
+					(PHY_QueryBBReg(pDM_Odm->Adapter,
+							rRx_Power_After_IQK_A_2,
+							bMaskDWord) &
+					 0x3FF0000) >>
+					16;
 				break;
 			}
 		}
 
-/* Allen end */
+		/* Allen end */
 	}
 
 	/* Back to BB mode, load original value */
@@ -1433,16 +1613,22 @@ static void phy_IQCalibrate_8723B(
 
 	if (t != 0) {
 		/*  Reload ADDA power saving parameters */
-		_PHY_ReloadADDARegisters8723B(padapter, ADDA_REG, pDM_Odm->RFCalibrateInfo.ADDA_backup, IQK_ADDA_REG_NUM);
+		_PHY_ReloadADDARegisters8723B(
+			padapter, ADDA_REG,
+			pDM_Odm->RFCalibrateInfo.ADDA_backup, IQK_ADDA_REG_NUM);
 
 		/*  Reload MAC parameters */
-		_PHY_ReloadMACRegisters8723B(padapter, IQK_MAC_REG, pDM_Odm->RFCalibrateInfo.IQK_MAC_backup);
+		_PHY_ReloadMACRegisters8723B(
+			padapter, IQK_MAC_REG,
+			pDM_Odm->RFCalibrateInfo.IQK_MAC_backup);
 
-		_PHY_ReloadADDARegisters8723B(padapter, IQK_BB_REG_92C, pDM_Odm->RFCalibrateInfo.IQK_BB_backup, IQK_BB_REG_NUM);
+		_PHY_ReloadADDARegisters8723B(
+			padapter, IQK_BB_REG_92C,
+			pDM_Odm->RFCalibrateInfo.IQK_BB_backup, IQK_BB_REG_NUM);
 
 		/* Reload RF path */
-/* 		PHY_SetBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord, Path_SEL_BB); */
-/* 		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, 0xfffff, Path_SEL_RF); */
+		/* 		PHY_SetBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord, Path_SEL_BB); */
+		/* 		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, 0xfffff, Path_SEL_RF); */
 
 		/* Allen initial gain 0xc50 */
 		/*  Restore RX initial gain */
@@ -1450,15 +1636,16 @@ static void phy_IQCalibrate_8723B(
 		PHY_SetBBReg(pDM_Odm->Adapter, 0xc50, bMaskByte0, tmp0xc50);
 		if (is2T) {
 			PHY_SetBBReg(pDM_Odm->Adapter, 0xc58, bMaskByte0, 0x50);
-			PHY_SetBBReg(pDM_Odm->Adapter, 0xc58, bMaskByte0, tmp0xc58);
+			PHY_SetBBReg(pDM_Odm->Adapter, 0xc58, bMaskByte0,
+				     tmp0xc58);
 		}
 
 		/* load 0xe30 IQC default value */
-		PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_Tone_A, bMaskDWord, 0x01008c00);
-		PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_Tone_A, bMaskDWord, 0x01008c00);
-
+		PHY_SetBBReg(pDM_Odm->Adapter, rTx_IQK_Tone_A, bMaskDWord,
+			     0x01008c00);
+		PHY_SetBBReg(pDM_Odm->Adapter, rRx_IQK_Tone_A, bMaskDWord,
+			     0x01008c00);
 	}
-
 }
 
 static void phy_LCCalibrate_8723B(struct dm_odm_t *pDM_Odm, bool is2T)
@@ -1470,91 +1657,99 @@ static void phy_LCCalibrate_8723B(struct dm_odm_t *pDM_Odm, bool is2T)
 	/* Check continuous TX and Packet TX */
 	tmpReg = rtw_read8(pDM_Odm->Adapter, 0xd03);
 
-	if ((tmpReg&0x70) != 0)			/* Deal with contisuous TX case */
-		rtw_write8(pDM_Odm->Adapter, 0xd03, tmpReg&0x8F);	/* disable all continuous TX */
-	else							/*  Deal with Packet TX case */
-		rtw_write8(pDM_Odm->Adapter, REG_TXPAUSE, 0xFF);		/*  block all queues */
+	if ((tmpReg & 0x70) != 0) /* Deal with contisuous TX case */
+		rtw_write8(pDM_Odm->Adapter, 0xd03,
+			   tmpReg & 0x8F); /* disable all continuous TX */
+	else /*  Deal with Packet TX case */
+		rtw_write8(pDM_Odm->Adapter, REG_TXPAUSE,
+			   0xFF); /*  block all queues */
 
-	if ((tmpReg&0x70) != 0) {
+	if ((tmpReg & 0x70) != 0) {
 		/* 1. Read original RF mode */
 		/* Path-A */
-		RF_Amode = PHY_QueryRFReg(padapter, RF_PATH_A, RF_AC, bMask12Bits);
+		RF_Amode =
+			PHY_QueryRFReg(padapter, RF_PATH_A, RF_AC, bMask12Bits);
 
 		/* Path-B */
 		if (is2T)
-			RF_Bmode = PHY_QueryRFReg(padapter, RF_PATH_B, RF_AC, bMask12Bits);
+			RF_Bmode = PHY_QueryRFReg(padapter, RF_PATH_B, RF_AC,
+						  bMask12Bits);
 
 		/* 2. Set RF mode = standby mode */
 		/* Path-A */
-		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_AC, bMask12Bits, (RF_Amode&0x8FFFF)|0x10000);
+		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_AC, bMask12Bits,
+			     (RF_Amode & 0x8FFFF) | 0x10000);
 
 		/* Path-B */
 		if (is2T)
-			PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_B, RF_AC, bMask12Bits, (RF_Bmode&0x8FFFF)|0x10000);
+			PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_B, RF_AC,
+				     bMask12Bits,
+				     (RF_Bmode & 0x8FFFF) | 0x10000);
 	}
 
 	/* 3. Read RF reg18 */
 	LC_Cal = PHY_QueryRFReg(padapter, RF_PATH_A, RF_CHNLBW, bMask12Bits);
 
 	/* 4. Set LC calibration begin	bit15 */
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xB0, bRFRegOffsetMask, 0xDFBE0); /*  LDO ON */
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_CHNLBW, bMask12Bits, LC_Cal|0x08000);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xB0, bRFRegOffsetMask,
+		     0xDFBE0); /*  LDO ON */
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_CHNLBW, bMask12Bits,
+		     LC_Cal | 0x08000);
 
 	mdelay(100);
 
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xB0, bRFRegOffsetMask, 0xDFFE0); /*  LDO OFF */
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xB0, bRFRegOffsetMask,
+		     0xDFFE0); /*  LDO OFF */
 
 	/*  Channel 10 LC calibration issue for 8723bs with 26M xtal */
-	if (pDM_Odm->SupportInterface == ODM_ITRF_SDIO && pDM_Odm->PackageType >= 0x2) {
-		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_CHNLBW, bMask12Bits, LC_Cal);
+	if (pDM_Odm->SupportInterface == ODM_ITRF_SDIO &&
+	    pDM_Odm->PackageType >= 0x2) {
+		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_CHNLBW,
+			     bMask12Bits, LC_Cal);
 	}
 
 	/* Restore original situation */
-	if ((tmpReg&0x70) != 0) { /* Deal with contisuous TX case */
+	if ((tmpReg & 0x70) != 0) { /* Deal with contisuous TX case */
 		/* Path-A */
 		rtw_write8(pDM_Odm->Adapter, 0xd03, tmpReg);
-		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_AC, bMask12Bits, RF_Amode);
+		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_AC, bMask12Bits,
+			     RF_Amode);
 
 		/* Path-B */
 		if (is2T)
-			PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_B, RF_AC, bMask12Bits, RF_Bmode);
+			PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_B, RF_AC,
+				     bMask12Bits, RF_Bmode);
 	} else /*  Deal with Packet TX case */
 		rtw_write8(pDM_Odm->Adapter, REG_TXPAUSE, 0x00);
 }
 
 /* IQK version:V2.5    20140123 */
 /* IQK is controlled by Is2ant, RF path */
-void PHY_IQCalibrate_8723B(
-	struct adapter *padapter,
-	bool bReCovery,
-	bool bRestore,
-	bool Is2ant,	/* false:1ant, true:2-ant */
-	u8 RF_Path	/* 0:S1, 1:S0 */
+void PHY_IQCalibrate_8723B(struct adapter *padapter, bool bReCovery,
+			   bool bRestore,
+			   bool Is2ant, /* false:1ant, true:2-ant */
+			   u8 RF_Path /* 0:S1, 1:S0 */
 )
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
-	s32 result[4][8];	/* last is final result */
+	s32 result[4][8]; /* last is final result */
 	u8 i, final_candidate;
 	bool bPathAOK, bPathBOK;
 	s32 RegE94, RegE9C, RegEA4, RegEB4, RegEBC, RegEC4, RegTmp = 0;
 	bool is12simular, is13simular, is23simular;
 	bool bSingleTone = false, bCarrierSuppression = false;
 	u32 IQK_BB_REG_92C[IQK_BB_REG_NUM] = {
-		rOFDM0_XARxIQImbalance,
-		rOFDM0_XBRxIQImbalance,
-		rOFDM0_ECCAThreshold,
-		rOFDM0_AGCRSSITable,
-		rOFDM0_XATxIQImbalance,
-		rOFDM0_XBTxIQImbalance,
-		rOFDM0_XCTxAFE,
-		rOFDM0_XDTxAFE,
+		rOFDM0_XARxIQImbalance, rOFDM0_XBRxIQImbalance,
+		rOFDM0_ECCAThreshold,	rOFDM0_AGCRSSITable,
+		rOFDM0_XATxIQImbalance, rOFDM0_XBTxIQImbalance,
+		rOFDM0_XCTxAFE,		rOFDM0_XDTxAFE,
 		rOFDM0_RxIQExtAnta
 	};
-/* 	u32 		Path_SEL_BB = 0; */
-	u32 		GNT_BT_default;
+	/* 	u32 		Path_SEL_BB = 0; */
+	u32 GNT_BT_default;
 
 	if (!ODM_CheckPowerStatus(padapter))
 		return;
@@ -1574,9 +1769,13 @@ void PHY_IQCalibrate_8723B(
 	if (bRestore) {
 		u32 offset, data;
 		u8 path, bResult = SUCCESS;
-		struct odm_rf_cal_t *pRFCalibrateInfo = &pDM_Odm->RFCalibrateInfo;
+		struct odm_rf_cal_t *pRFCalibrateInfo =
+			&pDM_Odm->RFCalibrateInfo;
 
-		path = (PHY_QueryBBReg(pDM_Odm->Adapter, rS0S1_PathSwitch, bMaskByte0) == 0x00) ? RF_PATH_A : RF_PATH_B;
+		path = (PHY_QueryBBReg(pDM_Odm->Adapter, rS0S1_PathSwitch,
+				       bMaskByte0) == 0x00) ?
+			       RF_PATH_A :
+			       RF_PATH_B;
 
 		/*  Restore TX IQK */
 		for (i = 0; i < 3; ++i) {
@@ -1586,7 +1785,8 @@ void PHY_IQCalibrate_8723B(
 				bResult = FAIL;
 				break;
 			}
-			PHY_SetBBReg(pDM_Odm->Adapter, offset, bMaskDWord, data);
+			PHY_SetBBReg(pDM_Odm->Adapter, offset, bMaskDWord,
+				     data);
 		}
 
 		/*  Restore RX IQK */
@@ -1597,14 +1797,19 @@ void PHY_IQCalibrate_8723B(
 				bResult = FAIL;
 				break;
 			}
-			PHY_SetBBReg(pDM_Odm->Adapter, offset, bMaskDWord, data);
+			PHY_SetBBReg(pDM_Odm->Adapter, offset, bMaskDWord,
+				     data);
 		}
 
 		if (pDM_Odm->RFCalibrateInfo.TxLOK[RF_PATH_A] == 0) {
 			bResult = FAIL;
 		} else {
-			PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXM_IDAC, bRFRegOffsetMask, pDM_Odm->RFCalibrateInfo.TxLOK[RF_PATH_A]);
-			PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_B, RF_TXM_IDAC, bRFRegOffsetMask, pDM_Odm->RFCalibrateInfo.TxLOK[RF_PATH_B]);
+			PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXM_IDAC,
+				     bRFRegOffsetMask,
+				     pDM_Odm->RFCalibrateInfo.TxLOK[RF_PATH_A]);
+			PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_B, RF_TXM_IDAC,
+				     bRFRegOffsetMask,
+				     pDM_Odm->RFCalibrateInfo.TxLOK[RF_PATH_B]);
 		}
 
 		if (bResult == SUCCESS)
@@ -1612,19 +1817,21 @@ void PHY_IQCalibrate_8723B(
 	}
 
 	if (bReCovery) {
-		_PHY_ReloadADDARegisters8723B(padapter, IQK_BB_REG_92C, pDM_Odm->RFCalibrateInfo.IQK_BB_backup_recover, 9);
+		_PHY_ReloadADDARegisters8723B(
+			padapter, IQK_BB_REG_92C,
+			pDM_Odm->RFCalibrateInfo.IQK_BB_backup_recover, 9);
 		return;
 	}
 
 	/* save default GNT_BT */
 	GNT_BT_default = PHY_QueryBBReg(pDM_Odm->Adapter, 0x764, bMaskDWord);
 	/*  Save RF Path */
-/* 	Path_SEL_BB = PHY_QueryBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord); */
-/* 	Path_SEL_RF = PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, 0xfffff); */
+	/* 	Path_SEL_BB = PHY_QueryBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord); */
+	/* 	Path_SEL_RF = PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, 0xfffff); */
 
-    /* set GNT_BT = 0, pause BT traffic */
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, BIT12, 0x0); */
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, BIT11, 0x1); */
+	/* set GNT_BT = 0, pause BT traffic */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, BIT12, 0x0); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, BIT11, 0x1); */
 
 	for (i = 0; i < 8; i++) {
 		result[0][i] = 0;
@@ -1644,7 +1851,8 @@ void PHY_IQCalibrate_8723B(
 		phy_IQCalibrate_8723B(padapter, result, i, Is2ant, RF_Path);
 
 		if (i == 1) {
-			is12simular = phy_SimularityCompare_8723B(padapter, result, 0, 1);
+			is12simular = phy_SimularityCompare_8723B(padapter,
+								  result, 0, 1);
 			if (is12simular) {
 				final_candidate = 0;
 				break;
@@ -1652,14 +1860,16 @@ void PHY_IQCalibrate_8723B(
 		}
 
 		if (i == 2) {
-			is13simular = phy_SimularityCompare_8723B(padapter, result, 0, 2);
+			is13simular = phy_SimularityCompare_8723B(padapter,
+								  result, 0, 2);
 			if (is13simular) {
 				final_candidate = 0;
 
 				break;
 			}
 
-			is23simular = phy_SimularityCompare_8723B(padapter, result, 1, 2);
+			is23simular = phy_SimularityCompare_8723B(padapter,
+								  result, 1, 2);
 			if (is23simular) {
 				final_candidate = 1;
 			} else {
@@ -1684,58 +1894,78 @@ void PHY_IQCalibrate_8723B(
 	}
 
 	if (final_candidate != 0xff) {
-		pDM_Odm->RFCalibrateInfo.RegE94 = RegE94 = result[final_candidate][0];
-		pDM_Odm->RFCalibrateInfo.RegE9C = RegE9C = result[final_candidate][1];
+		pDM_Odm->RFCalibrateInfo.RegE94 = RegE94 =
+			result[final_candidate][0];
+		pDM_Odm->RFCalibrateInfo.RegE9C = RegE9C =
+			result[final_candidate][1];
 		RegEA4 = result[final_candidate][2];
-		pDM_Odm->RFCalibrateInfo.RegEB4 = RegEB4 = result[final_candidate][4];
-		pDM_Odm->RFCalibrateInfo.RegEBC = RegEBC = result[final_candidate][5];
+		pDM_Odm->RFCalibrateInfo.RegEB4 = RegEB4 =
+			result[final_candidate][4];
+		pDM_Odm->RFCalibrateInfo.RegEBC = RegEBC =
+			result[final_candidate][5];
 		RegEC4 = result[final_candidate][6];
 		bPathAOK = bPathBOK = true;
 	} else {
-		pDM_Odm->RFCalibrateInfo.RegE94 = pDM_Odm->RFCalibrateInfo.RegEB4 = 0x100;	/* X default value */
-		pDM_Odm->RFCalibrateInfo.RegE9C = pDM_Odm->RFCalibrateInfo.RegEBC = 0x0;		/* Y default value */
+		pDM_Odm->RFCalibrateInfo.RegE94 =
+			pDM_Odm->RFCalibrateInfo.RegEB4 =
+				0x100; /* X default value */
+		pDM_Odm->RFCalibrateInfo.RegE9C =
+			pDM_Odm->RFCalibrateInfo.RegEBC =
+				0x0; /* Y default value */
 	}
 
 	{
 		if (RegE94 != 0)
-			_PHY_PathAFillIQKMatrix8723B(padapter, bPathAOK, result, final_candidate, (RegEA4 == 0));
+			_PHY_PathAFillIQKMatrix8723B(padapter, bPathAOK, result,
+						     final_candidate,
+						     (RegEA4 == 0));
 	}
 	{
 		if (RegEB4 != 0)
-			_PHY_PathBFillIQKMatrix8723B(padapter, bPathBOK, result, final_candidate, (RegEC4 == 0));
+			_PHY_PathBFillIQKMatrix8723B(padapter, bPathBOK, result,
+						     final_candidate,
+						     (RegEC4 == 0));
 	}
 
-/* To Fix BSOD when final_candidate is 0xff */
-/* by sherry 20120321 */
+	/* To Fix BSOD when final_candidate is 0xff */
+	/* by sherry 20120321 */
 	if (final_candidate < 4) {
 		for (i = 0; i < IQK_MATRIX_REG_NUM; i++)
-			pDM_Odm->RFCalibrateInfo.iqk_matrix_regs_setting_value[0][i] = result[final_candidate][i];
+			pDM_Odm->RFCalibrateInfo
+				.iqk_matrix_regs_setting_value[0][i] =
+				result[final_candidate][i];
 	}
 
-	_PHY_SaveADDARegisters8723B(padapter, IQK_BB_REG_92C, pDM_Odm->RFCalibrateInfo.IQK_BB_backup_recover, 9);
+	_PHY_SaveADDARegisters8723B(
+		padapter, IQK_BB_REG_92C,
+		pDM_Odm->RFCalibrateInfo.IQK_BB_backup_recover, 9);
 
 	/* restore GNT_BT */
 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, bMaskDWord, GNT_BT_default);
 	/*  Restore RF Path */
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord, Path_SEL_BB); */
-/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, 0xfffff, Path_SEL_RF); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, 0x948, bMaskDWord, Path_SEL_BB); */
+	/* 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xb0, 0xfffff, Path_SEL_RF); */
 
 	/* Resotr RX mode table parameter */
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_WE_LUT, 0x80000, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask, 0x18000);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask, 0x0001f);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask, 0xe6177);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_RCK_OS, bRFRegOffsetMask,
+		     0x18000);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G1, bRFRegOffsetMask,
+		     0x0001f);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_TXPA_G2, bRFRegOffsetMask,
+		     0xe6177);
 	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0xed, 0x20, 0x1);
-	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask, 0x300bd);
+	PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, 0x43, bRFRegOffsetMask,
+		     0x300bd);
 
 	/* set GNT_BT = HW control */
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, BIT12, 0x0); */
-/* 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, BIT11, 0x0); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, BIT12, 0x0); */
+	/* 	PHY_SetBBReg(pDM_Odm->Adapter, 0x764, BIT11, 0x0); */
 
 	if (Is2ant) {
-		if (RF_Path == 0x0)	/* S1 */
+		if (RF_Path == 0x0) /* S1 */
 			ODM_SetIQCbyRFpath(pDM_Odm, 0);
-		else	/* S0 */
+		else /* S0 */
 			ODM_SetIQCbyRFpath(pDM_Odm, 1);
 	}
 
@@ -1744,8 +1974,8 @@ void PHY_IQCalibrate_8723B(
 
 void PHY_LCCalibrate_8723B(struct dm_odm_t *pDM_Odm)
 {
-	bool		bSingleTone = false, bCarrierSuppression = false;
-	u32 		timeout = 2000, timecount = 0;
+	bool bSingleTone = false, bCarrierSuppression = false;
+	u32 timeout = 2000, timecount = 0;
 
 	if (!(pDM_Odm->SupportAbility & ODM_RF_CALIBRATION))
 		return;
diff --git a/drivers/staging/rtl8723bs/hal/HalPhyRf_8723B.h b/drivers/staging/rtl8723bs/hal/HalPhyRf_8723B.h
index 14b328378b8b1..5fb51fdbf8d4c 100644
--- a/drivers/staging/rtl8723bs/hal/HalPhyRf_8723B.h
+++ b/drivers/staging/rtl8723bs/hal/HalPhyRf_8723B.h
@@ -9,29 +9,21 @@
 #define __HAL_PHY_RF_8723B_H__
 
 /*--------------------------Define Parameters-------------------------------*/
-#define	IQK_DELAY_TIME_8723B		20		/* ms */
-#define IQK_DEFERRED_TIME_8723B		4
-#define	index_mapping_NUM_8723B		15
-#define AVG_THERMAL_NUM_8723B		4
-#define	RF_T_METER_8723B					0x42	/*  */
+#define IQK_DELAY_TIME_8723B 20 /* ms */
+#define IQK_DEFERRED_TIME_8723B 4
+#define index_mapping_NUM_8723B 15
+#define AVG_THERMAL_NUM_8723B 4
+#define RF_T_METER_8723B 0x42 /*  */
 
 void ConfigureTxpowerTrack_8723B(struct txpwrtrack_cfg *pConfig);
 
-void ODM_TxPwrTrackSetPwr_8723B(
-	struct dm_odm_t *pDM_Odm,
-	enum pwrtrack_method Method,
-	u8 RFPath,
-	u8 ChannelMappedIndex
-);
+void ODM_TxPwrTrackSetPwr_8723B(struct dm_odm_t *pDM_Odm,
+				enum pwrtrack_method Method, u8 RFPath,
+				u8 ChannelMappedIndex);
 
 /* 1 7. IQK */
-void PHY_IQCalibrate_8723B(
-	struct adapter *Adapter,
-	bool bReCovery,
-	bool bRestore,
-	bool Is2ant,
-	u8 RF_Path
-);
+void PHY_IQCalibrate_8723B(struct adapter *Adapter, bool bReCovery,
+			   bool bRestore, bool Is2ant, u8 RF_Path);
 
 void ODM_SetIQCbyRFpath(struct dm_odm_t *pDM_Odm, u32 RFpath);
 
@@ -45,22 +37,13 @@ void PHY_LCCalibrate_8723B(struct dm_odm_t *pDM_Odm);
 /*  */
 void PHY_DigitalPredistortion_8723B(struct adapter *padapter);
 
-void _PHY_SaveADDARegisters_8723B(
-	struct adapter *padapter,
-	u32 *ADDAReg,
-	u32 *ADDABackup,
-	u32 RegisterNum
-);
+void _PHY_SaveADDARegisters_8723B(struct adapter *padapter, u32 *ADDAReg,
+				  u32 *ADDABackup, u32 RegisterNum);
 
-void _PHY_PathADDAOn_8723B(
-	struct adapter *padapter,
-	u32 *ADDAReg,
-	bool isPathAOn,
-	bool is2T
-);
+void _PHY_PathADDAOn_8723B(struct adapter *padapter, u32 *ADDAReg,
+			   bool isPathAOn, bool is2T);
 
-void _PHY_MACSettingCalibration_8723B(
-	struct adapter *padapter, u32 *MACReg, u32 *MACBackup
-);
+void _PHY_MACSettingCalibration_8723B(struct adapter *padapter, u32 *MACReg,
+				      u32 *MACBackup);
 
 #endif /*  #ifndef __HAL_PHY_RF_8188E_H__ */
diff --git a/drivers/staging/rtl8723bs/hal/HalPwrSeqCmd.c b/drivers/staging/rtl8723bs/hal/HalPwrSeqCmd.c
index a59505cc4a073..d4f010ab6601b 100644
--- a/drivers/staging/rtl8723bs/hal/HalPwrSeqCmd.c
+++ b/drivers/staging/rtl8723bs/hal/HalPwrSeqCmd.c
@@ -32,13 +32,8 @@ Major Change History:
 /*  */
 /*  2011.07.07, added by Roger. */
 /*  */
-u8 HalPwrSeqCmdParsing(
-	struct adapter *padapter,
-	u8 CutVersion,
-	u8 FabVersion,
-	u8 InterfaceType,
-	struct wlan_pwr_cfg PwrSeqCmd[]
-)
+u8 HalPwrSeqCmdParsing(struct adapter *padapter, u8 CutVersion, u8 FabVersion,
+		       u8 InterfaceType, struct wlan_pwr_cfg PwrSeqCmd[])
 {
 	struct wlan_pwr_cfg PwrCfgCmd;
 	u8 bPollingBit = false;
@@ -52,11 +47,9 @@ u8 HalPwrSeqCmdParsing(
 		PwrCfgCmd = PwrSeqCmd[AryIdx];
 
 		/* 2 Only Handle the command whose FAB, CUT, and Interface are matched */
-		if (
-			(GET_PWR_CFG_FAB_MASK(PwrCfgCmd) & FabVersion) &&
-			(GET_PWR_CFG_CUT_MASK(PwrCfgCmd) & CutVersion) &&
-			(GET_PWR_CFG_INTF_MASK(PwrCfgCmd) & InterfaceType)
-		) {
+		if ((GET_PWR_CFG_FAB_MASK(PwrCfgCmd) & FabVersion) &&
+		    (GET_PWR_CFG_CUT_MASK(PwrCfgCmd) & CutVersion) &&
+		    (GET_PWR_CFG_INTF_MASK(PwrCfgCmd) & InterfaceType)) {
 			switch (GET_PWR_CFG_CMD(PwrCfgCmd)) {
 			case PWR_CMD_READ:
 				break;
@@ -68,27 +61,27 @@ u8 HalPwrSeqCmdParsing(
 				/*  <Roger_Notes> We should deal with interface specific address mapping for some interfaces, e.g., SDIO interface */
 				/*  2011.07.07. */
 				/*  */
-				if (GET_PWR_CFG_BASE(PwrCfgCmd) == PWR_BASEADDR_SDIO) {
+				if (GET_PWR_CFG_BASE(PwrCfgCmd) ==
+				    PWR_BASEADDR_SDIO) {
 					/*  Read Back SDIO Local value */
-					value = SdioLocalCmd52Read1Byte(padapter, offset);
+					value = SdioLocalCmd52Read1Byte(
+						padapter, offset);
 
 					value &= ~(GET_PWR_CFG_MASK(PwrCfgCmd));
-					value |= (
-						GET_PWR_CFG_VALUE(PwrCfgCmd) &
-						GET_PWR_CFG_MASK(PwrCfgCmd)
-					);
+					value |= (GET_PWR_CFG_VALUE(PwrCfgCmd) &
+						  GET_PWR_CFG_MASK(PwrCfgCmd));
 
 					/*  Write Back SDIO Local value */
-					SdioLocalCmd52Write1Byte(padapter, offset, value);
+					SdioLocalCmd52Write1Byte(padapter,
+								 offset, value);
 				} else {
 					/*  Read the value from system register */
 					value = rtw_read8(padapter, offset);
 
-					value &= (~(GET_PWR_CFG_MASK(PwrCfgCmd)));
-					value |= (
-						GET_PWR_CFG_VALUE(PwrCfgCmd)
-						&GET_PWR_CFG_MASK(PwrCfgCmd)
-					);
+					value &= (~(
+						GET_PWR_CFG_MASK(PwrCfgCmd)));
+					value |= (GET_PWR_CFG_VALUE(PwrCfgCmd) &
+						  GET_PWR_CFG_MASK(PwrCfgCmd));
 
 					/*  Write the value back to system register */
 					rtw_write8(padapter, offset, value);
@@ -100,16 +93,19 @@ u8 HalPwrSeqCmdParsing(
 				bPollingBit = false;
 				offset = GET_PWR_CFG_OFFSET(PwrCfgCmd);
 				do {
-					if (GET_PWR_CFG_BASE(PwrCfgCmd) == PWR_BASEADDR_SDIO)
-						value = SdioLocalCmd52Read1Byte(padapter, offset);
+					if (GET_PWR_CFG_BASE(PwrCfgCmd) ==
+					    PWR_BASEADDR_SDIO)
+						value = SdioLocalCmd52Read1Byte(
+							padapter, offset);
 					else
-						value = rtw_read8(padapter, offset);
-
-					value = value&GET_PWR_CFG_MASK(PwrCfgCmd);
-					if (
-						value == (GET_PWR_CFG_VALUE(PwrCfgCmd) &
-						GET_PWR_CFG_MASK(PwrCfgCmd))
-					)
+						value = rtw_read8(padapter,
+								  offset);
+
+					value = value &
+						GET_PWR_CFG_MASK(PwrCfgCmd);
+					if (value ==
+					    (GET_PWR_CFG_VALUE(PwrCfgCmd) &
+					     GET_PWR_CFG_MASK(PwrCfgCmd)))
 						bPollingBit = true;
 					else
 						udelay(10);
@@ -122,10 +118,12 @@ u8 HalPwrSeqCmdParsing(
 				break;
 
 			case PWR_CMD_DELAY:
-				if (GET_PWR_CFG_VALUE(PwrCfgCmd) == PWRSEQ_DELAY_US)
+				if (GET_PWR_CFG_VALUE(PwrCfgCmd) ==
+				    PWRSEQ_DELAY_US)
 					udelay(GET_PWR_CFG_OFFSET(PwrCfgCmd));
 				else
-					udelay(GET_PWR_CFG_OFFSET(PwrCfgCmd)*1000);
+					udelay(GET_PWR_CFG_OFFSET(PwrCfgCmd) *
+					       1000);
 				break;
 
 			case PWR_CMD_END:
@@ -137,7 +135,7 @@ u8 HalPwrSeqCmdParsing(
 			}
 		}
 
-		AryIdx++;/* Add Array Index */
+		AryIdx++; /* Add Array Index */
 	} while (1);
 
 	return true;
diff --git a/drivers/staging/rtl8723bs/hal/Mp_Precomp.h b/drivers/staging/rtl8723bs/hal/Mp_Precomp.h
index f08823a8dd7b3..5e9d23f1d8c94 100644
--- a/drivers/staging/rtl8723bs/hal/Mp_Precomp.h
+++ b/drivers/staging/rtl8723bs/hal/Mp_Precomp.h
@@ -10,7 +10,7 @@
 #include <drv_types.h>
 #include <hal_data.h>
 
-#define BT_TMP_BUF_SIZE	100
+#define BT_TMP_BUF_SIZE 100
 
 #ifdef bEnable
 #undef bEnable
diff --git a/drivers/staging/rtl8723bs/hal/hal_btcoex.c b/drivers/staging/rtl8723bs/hal/hal_btcoex.c
index 195ccc4b710f1..e7dc0c4ee299a 100644
--- a/drivers/staging/rtl8723bs/hal/hal_btcoex.c
+++ b/drivers/staging/rtl8723bs/hal/hal_btcoex.c
@@ -111,13 +111,16 @@ static void halbtcoutsrc_NormalLowPower(struct btc_coexist *pBtCoexist)
 	rtw_unregister_task_alive(padapter, BTCOEX_ALIVE);
 }
 
-static void halbtcoutsrc_DisableLowPower(struct btc_coexist *pBtCoexist, u8 bLowPwrDisable)
+static void halbtcoutsrc_DisableLowPower(struct btc_coexist *pBtCoexist,
+					 u8 bLowPwrDisable)
 {
 	pBtCoexist->btInfo.bBtDisableLowPwr = bLowPwrDisable;
 	if (bLowPwrDisable)
-		halbtcoutsrc_LeaveLowPower(pBtCoexist);		/*  leave 32k low power. */
+		halbtcoutsrc_LeaveLowPower(
+			pBtCoexist); /*  leave 32k low power. */
 	else
-		halbtcoutsrc_NormalLowPower(pBtCoexist);	/*  original 32k low power behavior. */
+		halbtcoutsrc_NormalLowPower(
+			pBtCoexist); /*  original 32k low power behavior. */
 }
 
 static void halbtcoutsrc_AggregationCheck(struct btc_coexist *pBtCoexist)
@@ -132,17 +135,19 @@ static void halbtcoutsrc_AggregationCheck(struct btc_coexist *pBtCoexist)
 		rtw_btcoex_reject_ap_aggregated_packet(padapter, true);
 	} else {
 		if (pBtCoexist->btInfo.bPreBtCtrlAggBufSize !=
-			pBtCoexist->btInfo.bBtCtrlAggBufSize) {
+		    pBtCoexist->btInfo.bBtCtrlAggBufSize) {
 			bNeedToAct = true;
-			pBtCoexist->btInfo.bPreBtCtrlAggBufSize = pBtCoexist->btInfo.bBtCtrlAggBufSize;
+			pBtCoexist->btInfo.bPreBtCtrlAggBufSize =
+				pBtCoexist->btInfo.bBtCtrlAggBufSize;
 		}
 
 		if (pBtCoexist->btInfo.bBtCtrlAggBufSize) {
 			if (pBtCoexist->btInfo.preAggBufSize !=
-				pBtCoexist->btInfo.aggBufSize){
+			    pBtCoexist->btInfo.aggBufSize) {
 				bNeedToAct = true;
 			}
-			pBtCoexist->btInfo.preAggBufSize = pBtCoexist->btInfo.aggBufSize;
+			pBtCoexist->btInfo.preAggBufSize =
+				pBtCoexist->btInfo.aggBufSize;
 		}
 
 		if (bNeedToAct) {
@@ -352,18 +357,17 @@ static u8 halbtcoutsrc_Get(void *pBtcContext, u8 getType, void *pOutBuf)
 			*pU4Tmp = BTC_WIFI_BW_HT40;
 		break;
 
-	case BTC_GET_U4_WIFI_TRAFFIC_DIRECTION:
-		{
-			struct rt_link_detect_t *plinkinfo;
+	case BTC_GET_U4_WIFI_TRAFFIC_DIRECTION: {
+		struct rt_link_detect_t *plinkinfo;
 
-			plinkinfo = &padapter->mlmepriv.link_detect_info;
+		plinkinfo = &padapter->mlmepriv.link_detect_info;
 
-			if (plinkinfo->num_tx_ok_in_period > plinkinfo->num_rx_ok_in_period)
-				*pU4Tmp = BTC_WIFI_TRAFFIC_TX;
-			else
-				*pU4Tmp = BTC_WIFI_TRAFFIC_RX;
-		}
-		break;
+		if (plinkinfo->num_tx_ok_in_period >
+		    plinkinfo->num_rx_ok_in_period)
+			*pU4Tmp = BTC_WIFI_TRAFFIC_TX;
+		else
+			*pU4Tmp = BTC_WIFI_TRAFFIC_RX;
+	} break;
 
 	case BTC_GET_U4_WIFI_FW_VER:
 		*pU4Tmp = pHalData->FirmwareVersion << 16;
@@ -519,8 +523,10 @@ static u8 halbtcoutsrc_Set(void *pBtcContext, u8 setType, void *pInBuf)
 			struct sta_info *psta;
 			struct wlan_bssid_ex *cur_network;
 
-			cur_network = &padapter->mlmeextpriv.mlmext_info.network;
-			psta = rtw_get_stainfo(&padapter->stapriv, cur_network->mac_address);
+			cur_network =
+				&padapter->mlmeextpriv.mlmext_info.network;
+			psta = rtw_get_stainfo(&padapter->stapriv,
+					       cur_network->mac_address);
 			rtw_hal_update_ra_mask(psta, 0);
 		}
 		break;
@@ -570,7 +576,7 @@ static u16 halbtcoutsrc_Read2Byte(void *pBtcContext, u32 RegAddr)
 	pBtCoexist = (struct btc_coexist *)pBtcContext;
 	padapter = pBtCoexist->Adapter;
 
-	return	rtw_read16(padapter, RegAddr);
+	return rtw_read16(padapter, RegAddr);
 }
 
 static u32 halbtcoutsrc_Read4Byte(void *pBtcContext, u32 RegAddr)
@@ -581,7 +587,7 @@ static u32 halbtcoutsrc_Read4Byte(void *pBtcContext, u32 RegAddr)
 	pBtCoexist = (struct btc_coexist *)pBtcContext;
 	padapter = pBtCoexist->Adapter;
 
-	return	rtw_read32(padapter, RegAddr);
+	return rtw_read32(padapter, RegAddr);
 }
 
 static void halbtcoutsrc_Write1Byte(void *pBtcContext, u32 RegAddr, u8 Data)
@@ -595,7 +601,8 @@ static void halbtcoutsrc_Write1Byte(void *pBtcContext, u32 RegAddr, u8 Data)
 	rtw_write8(padapter, RegAddr, Data);
 }
 
-static void halbtcoutsrc_BitMaskWrite1Byte(void *pBtcContext, u32 regAddr, u8 bitMask, u8 data1b)
+static void halbtcoutsrc_BitMaskWrite1Byte(void *pBtcContext, u32 regAddr,
+					   u8 bitMask, u8 data1b)
 {
 	struct btc_coexist *pBtCoexist;
 	struct adapter *padapter;
@@ -616,7 +623,8 @@ static void halbtcoutsrc_BitMaskWrite1Byte(void *pBtcContext, u32 regAddr, u8 bi
 		}
 		bitShift = i;
 
-		data1b = (originalValue & ~bitMask) | ((data1b << bitShift) & bitMask);
+		data1b = (originalValue & ~bitMask) |
+			 ((data1b << bitShift) & bitMask);
 	}
 
 	rtw_write8(padapter, regAddr, data1b);
@@ -644,7 +652,8 @@ static void halbtcoutsrc_Write4Byte(void *pBtcContext, u32 RegAddr, u32 Data)
 	rtw_write32(padapter, RegAddr, Data);
 }
 
-static void halbtcoutsrc_WriteLocalReg1Byte(void *pBtcContext, u32 RegAddr, u8 Data)
+static void halbtcoutsrc_WriteLocalReg1Byte(void *pBtcContext, u32 RegAddr,
+					    u8 Data)
 {
 	struct btc_coexist *pBtCoexist = (struct btc_coexist *)pBtcContext;
 	struct adapter *Adapter = pBtCoexist->Adapter;
@@ -655,7 +664,8 @@ static void halbtcoutsrc_WriteLocalReg1Byte(void *pBtcContext, u32 RegAddr, u8 D
 		rtw_write8(Adapter, RegAddr, Data);
 }
 
-static void halbtcoutsrc_SetBbReg(void *pBtcContext, u32 RegAddr, u32 BitMask, u32 Data)
+static void halbtcoutsrc_SetBbReg(void *pBtcContext, u32 RegAddr, u32 BitMask,
+				  u32 Data)
 {
 	struct btc_coexist *pBtCoexist;
 	struct adapter *padapter;
@@ -677,7 +687,8 @@ static u32 halbtcoutsrc_GetBbReg(void *pBtcContext, u32 RegAddr, u32 BitMask)
 	return PHY_QueryBBReg(padapter, RegAddr, BitMask);
 }
 
-static void halbtcoutsrc_SetRfReg(void *pBtcContext, u8 eRFPath, u32 RegAddr, u32 BitMask, u32 Data)
+static void halbtcoutsrc_SetRfReg(void *pBtcContext, u8 eRFPath, u32 RegAddr,
+				  u32 BitMask, u32 Data)
 {
 	struct btc_coexist *pBtCoexist;
 	struct adapter *padapter;
@@ -688,7 +699,8 @@ static void halbtcoutsrc_SetRfReg(void *pBtcContext, u8 eRFPath, u32 RegAddr, u3
 	PHY_SetRFReg(padapter, eRFPath, RegAddr, BitMask, Data);
 }
 
-static u32 halbtcoutsrc_GetRfReg(void *pBtcContext, u8 eRFPath, u32 RegAddr, u32 BitMask)
+static u32 halbtcoutsrc_GetRfReg(void *pBtcContext, u8 eRFPath, u32 RegAddr,
+				 u32 BitMask)
 {
 	struct btc_coexist *pBtCoexist;
 	struct adapter *padapter;
@@ -699,12 +711,13 @@ static u32 halbtcoutsrc_GetRfReg(void *pBtcContext, u8 eRFPath, u32 RegAddr, u32
 	return PHY_QueryRFReg(padapter, eRFPath, RegAddr, BitMask);
 }
 
-static void halbtcoutsrc_SetBtReg(void *pBtcContext, u8 RegType, u32 RegAddr, u32 Data)
+static void halbtcoutsrc_SetBtReg(void *pBtcContext, u8 RegType, u32 RegAddr,
+				  u32 Data)
 {
 	struct btc_coexist *pBtCoexist;
 	struct adapter *padapter;
-	u8 CmdBuffer1[4] = {0};
-	u8 CmdBuffer2[4] = {0};
+	u8 CmdBuffer1[4] = { 0 };
+	u8 CmdBuffer2[4] = { 0 };
 	u8 *AddrToSet = (u8 *)&RegAddr;
 	u8 *ValueToSet = (u8 *)&Data;
 	u8 OperVer = 0;
@@ -713,19 +726,19 @@ static void halbtcoutsrc_SetBtReg(void *pBtcContext, u8 RegType, u32 RegAddr, u3
 	pBtCoexist = (struct btc_coexist *)pBtcContext;
 	padapter = pBtCoexist->Adapter;
 
-	CmdBuffer1[0] |= (OperVer & 0x0f);						/* Set OperVer */
-	CmdBuffer1[0] |= ((ReqNum << 4) & 0xf0);				/* Set ReqNum */
-	CmdBuffer1[1] = 0x0d;									/* Set OpCode to BT_LO_OP_WRITE_REG_VALUE */
-	CmdBuffer1[2] = ValueToSet[0];							/* Set WriteRegValue */
+	CmdBuffer1[0] |= (OperVer & 0x0f); /* Set OperVer */
+	CmdBuffer1[0] |= ((ReqNum << 4) & 0xf0); /* Set ReqNum */
+	CmdBuffer1[1] = 0x0d; /* Set OpCode to BT_LO_OP_WRITE_REG_VALUE */
+	CmdBuffer1[2] = ValueToSet[0]; /* Set WriteRegValue */
 	rtw_hal_fill_h2c_cmd(padapter, 0x67, 4, &(CmdBuffer1[0]));
 
 	msleep(200);
 	ReqNum++;
 
-	CmdBuffer2[0] |= (OperVer & 0x0f);						/* Set OperVer */
-	CmdBuffer2[0] |= ((ReqNum << 4) & 0xf0);				/* Set ReqNum */
-	CmdBuffer2[1] = 0x0c;									/* Set OpCode of BT_LO_OP_WRITE_REG_ADDR */
-	CmdBuffer2[3] = AddrToSet[0];							/* Set WriteRegAddr */
+	CmdBuffer2[0] |= (OperVer & 0x0f); /* Set OperVer */
+	CmdBuffer2[0] |= ((ReqNum << 4) & 0xf0); /* Set ReqNum */
+	CmdBuffer2[1] = 0x0c; /* Set OpCode of BT_LO_OP_WRITE_REG_ADDR */
+	CmdBuffer2[3] = AddrToSet[0]; /* Set WriteRegAddr */
 	rtw_hal_fill_h2c_cmd(padapter, 0x67, 4, &(CmdBuffer2[0]));
 }
 
@@ -735,7 +748,8 @@ static u32 halbtcoutsrc_GetBtReg(void *pBtcContext, u8 RegType, u32 RegAddr)
 	return 0;
 }
 
-static void halbtcoutsrc_FillH2cCmd(void *pBtcContext, u8 elementId, u32 cmdLen, u8 *pCmdBuffer)
+static void halbtcoutsrc_FillH2cCmd(void *pBtcContext, u8 elementId, u32 cmdLen,
+				    u8 *pCmdBuffer)
 {
 	struct btc_coexist *pBtCoexist;
 	struct adapter *padapter;
@@ -875,14 +889,14 @@ void EXhalbtcoutsrc_IpsNotify(struct btc_coexist *pBtCoexist, u8 type)
 		ipsType = BTC_IPS_ENTER;
 
 	/*  All notify is called in cmd thread, don't need to leave low power again */
-/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
 
 	if (pBtCoexist->boardInfo.btdmAntNum == 2)
 		EXhalbtc8723b2ant_IpsNotify(pBtCoexist, ipsType);
 	else if (pBtCoexist->boardInfo.btdmAntNum == 1)
 		EXhalbtc8723b1ant_IpsNotify(pBtCoexist, ipsType);
 
-/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
 }
 
 void EXhalbtcoutsrc_LpsNotify(struct btc_coexist *pBtCoexist, u8 type)
@@ -926,14 +940,14 @@ void EXhalbtcoutsrc_ScanNotify(struct btc_coexist *pBtCoexist, u8 type)
 	}
 
 	/*  All notify is called in cmd thread, don't need to leave low power again */
-/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
 
 	if (pBtCoexist->boardInfo.btdmAntNum == 2)
 		EXhalbtc8723b2ant_ScanNotify(pBtCoexist, scanType);
 	else if (pBtCoexist->boardInfo.btdmAntNum == 1)
 		EXhalbtc8723b1ant_ScanNotify(pBtCoexist, scanType);
 
-/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
 }
 
 void EXhalbtcoutsrc_ConnectNotify(struct btc_coexist *pBtCoexist, u8 action)
@@ -952,18 +966,18 @@ void EXhalbtcoutsrc_ConnectNotify(struct btc_coexist *pBtCoexist, u8 action)
 		assoType = BTC_ASSOCIATE_FINISH;
 
 	/*  All notify is called in cmd thread, don't need to leave low power again */
-/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
 
 	if (pBtCoexist->boardInfo.btdmAntNum == 2)
 		EXhalbtc8723b2ant_ConnectNotify(pBtCoexist, assoType);
 	else if (pBtCoexist->boardInfo.btdmAntNum == 1)
 		EXhalbtc8723b1ant_ConnectNotify(pBtCoexist, assoType);
 
-/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
 }
 
-void EXhalbtcoutsrc_MediaStatusNotify(struct btc_coexist *pBtCoexist, enum
-	rt_media_status mediaStatus)
+void EXhalbtcoutsrc_MediaStatusNotify(struct btc_coexist *pBtCoexist,
+				      enum rt_media_status mediaStatus)
 {
 	u8 mStatus;
 
@@ -980,17 +994,18 @@ void EXhalbtcoutsrc_MediaStatusNotify(struct btc_coexist *pBtCoexist, enum
 		mStatus = BTC_MEDIA_DISCONNECT;
 
 	/*  All notify is called in cmd thread, don't need to leave low power again */
-/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
 
 	if (pBtCoexist->boardInfo.btdmAntNum == 2)
 		EXhalbtc8723b2ant_MediaStatusNotify(pBtCoexist, mStatus);
 	else if (pBtCoexist->boardInfo.btdmAntNum == 1)
 		EXhalbtc8723b1ant_MediaStatusNotify(pBtCoexist, mStatus);
 
-/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
 }
 
-void EXhalbtcoutsrc_SpecialPacketNotify(struct btc_coexist *pBtCoexist, u8 pktType)
+void EXhalbtcoutsrc_SpecialPacketNotify(struct btc_coexist *pBtCoexist,
+					u8 pktType)
 {
 	u8 packetType;
 
@@ -1011,17 +1026,18 @@ void EXhalbtcoutsrc_SpecialPacketNotify(struct btc_coexist *pBtCoexist, u8 pktTy
 	}
 
 	/*  All notify is called in cmd thread, don't need to leave low power again */
-/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
 
 	if (pBtCoexist->boardInfo.btdmAntNum == 2)
 		EXhalbtc8723b2ant_SpecialPacketNotify(pBtCoexist, packetType);
 	else if (pBtCoexist->boardInfo.btdmAntNum == 1)
 		EXhalbtc8723b1ant_SpecialPacketNotify(pBtCoexist, packetType);
 
-/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
 }
 
-void EXhalbtcoutsrc_BtInfoNotify(struct btc_coexist *pBtCoexist, u8 *tmpBuf, u8 length)
+void EXhalbtcoutsrc_BtInfoNotify(struct btc_coexist *pBtCoexist, u8 *tmpBuf,
+				 u8 length)
 {
 	if (!halbtcoutsrc_IsBtCoexistAvailable(pBtCoexist))
 		return;
@@ -1029,14 +1045,14 @@ void EXhalbtcoutsrc_BtInfoNotify(struct btc_coexist *pBtCoexist, u8 *tmpBuf, u8
 	pBtCoexist->statistics.cntBtInfoNotify++;
 
 	/*  All notify is called in cmd thread, don't need to leave low power again */
-/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
 
 	if (pBtCoexist->boardInfo.btdmAntNum == 2)
 		EXhalbtc8723b2ant_BtInfoNotify(pBtCoexist, tmpBuf, length);
 	else if (pBtCoexist->boardInfo.btdmAntNum == 1)
 		EXhalbtc8723b1ant_BtInfoNotify(pBtCoexist, tmpBuf, length);
 
-/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
 }
 
 void EXhalbtcoutsrc_HaltNotify(struct btc_coexist *pBtCoexist)
@@ -1076,14 +1092,14 @@ void EXhalbtcoutsrc_Periodical(struct btc_coexist *pBtCoexist)
 
 	/*  Periodical should be called in cmd thread, */
 	/*  don't need to leave low power again */
-/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_LeaveLowPower(pBtCoexist); */
 
 	if (pBtCoexist->boardInfo.btdmAntNum == 2)
 		EXhalbtc8723b2ant_Periodical(pBtCoexist);
 	else if (pBtCoexist->boardInfo.btdmAntNum == 1)
 		EXhalbtc8723b1ant_Periodical(pBtCoexist);
 
-/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
+	/* 	halbtcoutsrc_NormalLowPower(pBtCoexist); */
 }
 
 void EXhalbtcoutsrc_SetAntNum(u8 type, u8 antNum)
diff --git a/drivers/staging/rtl8723bs/hal/hal_com.c b/drivers/staging/rtl8723bs/hal/hal_com.c
index 634af4657eeeb..775e0623d4060 100644
--- a/drivers/staging/rtl8723bs/hal/hal_com.c
+++ b/drivers/staging/rtl8723bs/hal/hal_com.c
@@ -30,7 +30,7 @@ void rtw_hal_data_deinit(struct adapter *padapter)
 	}
 }
 
-#define	EEPROM_CHANNEL_PLAN_BY_HW_MASK	0x80
+#define EEPROM_CHANNEL_PLAN_BY_HW_MASK 0x80
 
 /*
  * Description:
@@ -50,13 +50,9 @@ void rtw_hal_data_deinit(struct adapter *padapter)
  *Final channel plan decision
  *
  */
-u8 hal_com_config_channel_plan(
-	struct adapter *padapter,
-	u8 hw_channel_plan,
-	u8 sw_channel_plan,
-	u8 def_channel_plan,
-	bool auto_load_fail
-)
+u8 hal_com_config_channel_plan(struct adapter *padapter, u8 hw_channel_plan,
+			       u8 sw_channel_plan, u8 def_channel_plan,
+			       bool auto_load_fail)
 {
 	struct hal_com_data *pHalData;
 	u8 chnlPlan;
@@ -71,7 +67,8 @@ u8 hal_com_config_channel_plan(
 	if (!auto_load_fail) {
 		u8 hw_chnlPlan;
 
-		hw_chnlPlan = hw_channel_plan & (~EEPROM_CHANNEL_PLAN_BY_HW_MASK);
+		hw_chnlPlan = hw_channel_plan &
+			      (~EEPROM_CHANNEL_PLAN_BY_HW_MASK);
 		if (rtw_is_channel_plan_valid(hw_chnlPlan)) {
 			if (hw_channel_plan & EEPROM_CHANNEL_PLAN_BY_HW_MASK)
 				pHalData->bDisableSWChannelPlan = true;
@@ -80,10 +77,8 @@ u8 hal_com_config_channel_plan(
 		}
 	}
 
-	if (
-		(false == pHalData->bDisableSWChannelPlan) &&
-		rtw_is_channel_plan_valid(sw_channel_plan)
-	)
+	if ((false == pHalData->bDisableSWChannelPlan) &&
+	    rtw_is_channel_plan_valid(sw_channel_plan))
 		chnlPlan = sw_channel_plan;
 
 	return chnlPlan;
@@ -302,15 +297,15 @@ static void _OneOutPipeMapping(struct adapter *padapter)
 {
 	struct dvobj_priv *pdvobjpriv = adapter_to_dvobj(padapter);
 
-	pdvobjpriv->Queue2Pipe[0] = pdvobjpriv->RtOutPipe[0];/* VO */
-	pdvobjpriv->Queue2Pipe[1] = pdvobjpriv->RtOutPipe[0];/* VI */
-	pdvobjpriv->Queue2Pipe[2] = pdvobjpriv->RtOutPipe[0];/* BE */
-	pdvobjpriv->Queue2Pipe[3] = pdvobjpriv->RtOutPipe[0];/* BK */
+	pdvobjpriv->Queue2Pipe[0] = pdvobjpriv->RtOutPipe[0]; /* VO */
+	pdvobjpriv->Queue2Pipe[1] = pdvobjpriv->RtOutPipe[0]; /* VI */
+	pdvobjpriv->Queue2Pipe[2] = pdvobjpriv->RtOutPipe[0]; /* BE */
+	pdvobjpriv->Queue2Pipe[3] = pdvobjpriv->RtOutPipe[0]; /* BK */
 
-	pdvobjpriv->Queue2Pipe[4] = pdvobjpriv->RtOutPipe[0];/* BCN */
-	pdvobjpriv->Queue2Pipe[5] = pdvobjpriv->RtOutPipe[0];/* MGT */
-	pdvobjpriv->Queue2Pipe[6] = pdvobjpriv->RtOutPipe[0];/* HIGH */
-	pdvobjpriv->Queue2Pipe[7] = pdvobjpriv->RtOutPipe[0];/* TXCMD */
+	pdvobjpriv->Queue2Pipe[4] = pdvobjpriv->RtOutPipe[0]; /* BCN */
+	pdvobjpriv->Queue2Pipe[5] = pdvobjpriv->RtOutPipe[0]; /* MGT */
+	pdvobjpriv->Queue2Pipe[6] = pdvobjpriv->RtOutPipe[0]; /* HIGH */
+	pdvobjpriv->Queue2Pipe[7] = pdvobjpriv->RtOutPipe[0]; /* TXCMD */
 }
 
 static void _TwoOutPipeMapping(struct adapter *padapter, bool bWIFICfg)
@@ -323,15 +318,16 @@ static void _TwoOutPipeMapping(struct adapter *padapter, bool bWIFICfg)
 		/*   0,		1,	0,	1,	0,	0,	0,	0,		0	}; */
 		/* 0:ep_0 num, 1:ep_1 num */
 
-		pdvobjpriv->Queue2Pipe[0] = pdvobjpriv->RtOutPipe[1];/* VO */
-		pdvobjpriv->Queue2Pipe[1] = pdvobjpriv->RtOutPipe[0];/* VI */
-		pdvobjpriv->Queue2Pipe[2] = pdvobjpriv->RtOutPipe[1];/* BE */
-		pdvobjpriv->Queue2Pipe[3] = pdvobjpriv->RtOutPipe[0];/* BK */
+		pdvobjpriv->Queue2Pipe[0] = pdvobjpriv->RtOutPipe[1]; /* VO */
+		pdvobjpriv->Queue2Pipe[1] = pdvobjpriv->RtOutPipe[0]; /* VI */
+		pdvobjpriv->Queue2Pipe[2] = pdvobjpriv->RtOutPipe[1]; /* BE */
+		pdvobjpriv->Queue2Pipe[3] = pdvobjpriv->RtOutPipe[0]; /* BK */
 
-		pdvobjpriv->Queue2Pipe[4] = pdvobjpriv->RtOutPipe[0];/* BCN */
-		pdvobjpriv->Queue2Pipe[5] = pdvobjpriv->RtOutPipe[0];/* MGT */
-		pdvobjpriv->Queue2Pipe[6] = pdvobjpriv->RtOutPipe[0];/* HIGH */
-		pdvobjpriv->Queue2Pipe[7] = pdvobjpriv->RtOutPipe[0];/* TXCMD */
+		pdvobjpriv->Queue2Pipe[4] = pdvobjpriv->RtOutPipe[0]; /* BCN */
+		pdvobjpriv->Queue2Pipe[5] = pdvobjpriv->RtOutPipe[0]; /* MGT */
+		pdvobjpriv->Queue2Pipe[6] = pdvobjpriv->RtOutPipe[0]; /* HIGH */
+		pdvobjpriv->Queue2Pipe[7] =
+			pdvobjpriv->RtOutPipe[0]; /* TXCMD */
 
 	} else { /* typical setting */
 
@@ -339,18 +335,17 @@ static void _TwoOutPipeMapping(struct adapter *padapter, bool bWIFICfg)
 		/*   1,		1,	0,	0,	0,	0,	0,	0,		0	}; */
 		/* 0:ep_0 num, 1:ep_1 num */
 
-		pdvobjpriv->Queue2Pipe[0] = pdvobjpriv->RtOutPipe[0];/* VO */
-		pdvobjpriv->Queue2Pipe[1] = pdvobjpriv->RtOutPipe[0];/* VI */
-		pdvobjpriv->Queue2Pipe[2] = pdvobjpriv->RtOutPipe[1];/* BE */
-		pdvobjpriv->Queue2Pipe[3] = pdvobjpriv->RtOutPipe[1];/* BK */
-
-		pdvobjpriv->Queue2Pipe[4] = pdvobjpriv->RtOutPipe[0];/* BCN */
-		pdvobjpriv->Queue2Pipe[5] = pdvobjpriv->RtOutPipe[0];/* MGT */
-		pdvobjpriv->Queue2Pipe[6] = pdvobjpriv->RtOutPipe[0];/* HIGH */
-		pdvobjpriv->Queue2Pipe[7] = pdvobjpriv->RtOutPipe[0];/* TXCMD */
+		pdvobjpriv->Queue2Pipe[0] = pdvobjpriv->RtOutPipe[0]; /* VO */
+		pdvobjpriv->Queue2Pipe[1] = pdvobjpriv->RtOutPipe[0]; /* VI */
+		pdvobjpriv->Queue2Pipe[2] = pdvobjpriv->RtOutPipe[1]; /* BE */
+		pdvobjpriv->Queue2Pipe[3] = pdvobjpriv->RtOutPipe[1]; /* BK */
 
+		pdvobjpriv->Queue2Pipe[4] = pdvobjpriv->RtOutPipe[0]; /* BCN */
+		pdvobjpriv->Queue2Pipe[5] = pdvobjpriv->RtOutPipe[0]; /* MGT */
+		pdvobjpriv->Queue2Pipe[6] = pdvobjpriv->RtOutPipe[0]; /* HIGH */
+		pdvobjpriv->Queue2Pipe[7] =
+			pdvobjpriv->RtOutPipe[0]; /* TXCMD */
 	}
-
 }
 
 static void _ThreeOutPipeMapping(struct adapter *padapter, bool bWIFICfg)
@@ -363,15 +358,16 @@ static void _ThreeOutPipeMapping(struct adapter *padapter, bool bWIFICfg)
 		/*   1,		2,	1,	0,	0,	0,	0,	0,		0	}; */
 		/* 0:H, 1:N, 2:L */
 
-		pdvobjpriv->Queue2Pipe[0] = pdvobjpriv->RtOutPipe[0];/* VO */
-		pdvobjpriv->Queue2Pipe[1] = pdvobjpriv->RtOutPipe[1];/* VI */
-		pdvobjpriv->Queue2Pipe[2] = pdvobjpriv->RtOutPipe[2];/* BE */
-		pdvobjpriv->Queue2Pipe[3] = pdvobjpriv->RtOutPipe[1];/* BK */
+		pdvobjpriv->Queue2Pipe[0] = pdvobjpriv->RtOutPipe[0]; /* VO */
+		pdvobjpriv->Queue2Pipe[1] = pdvobjpriv->RtOutPipe[1]; /* VI */
+		pdvobjpriv->Queue2Pipe[2] = pdvobjpriv->RtOutPipe[2]; /* BE */
+		pdvobjpriv->Queue2Pipe[3] = pdvobjpriv->RtOutPipe[1]; /* BK */
 
-		pdvobjpriv->Queue2Pipe[4] = pdvobjpriv->RtOutPipe[0];/* BCN */
-		pdvobjpriv->Queue2Pipe[5] = pdvobjpriv->RtOutPipe[0];/* MGT */
-		pdvobjpriv->Queue2Pipe[6] = pdvobjpriv->RtOutPipe[0];/* HIGH */
-		pdvobjpriv->Queue2Pipe[7] = pdvobjpriv->RtOutPipe[0];/* TXCMD */
+		pdvobjpriv->Queue2Pipe[4] = pdvobjpriv->RtOutPipe[0]; /* BCN */
+		pdvobjpriv->Queue2Pipe[5] = pdvobjpriv->RtOutPipe[0]; /* MGT */
+		pdvobjpriv->Queue2Pipe[6] = pdvobjpriv->RtOutPipe[0]; /* HIGH */
+		pdvobjpriv->Queue2Pipe[7] =
+			pdvobjpriv->RtOutPipe[0]; /* TXCMD */
 
 	} else { /* typical setting */
 
@@ -379,17 +375,17 @@ static void _ThreeOutPipeMapping(struct adapter *padapter, bool bWIFICfg)
 		/*   2,		2,	1,	0,	0,	0,	0,	0,		0	}; */
 		/* 0:H, 1:N, 2:L */
 
-		pdvobjpriv->Queue2Pipe[0] = pdvobjpriv->RtOutPipe[0];/* VO */
-		pdvobjpriv->Queue2Pipe[1] = pdvobjpriv->RtOutPipe[1];/* VI */
-		pdvobjpriv->Queue2Pipe[2] = pdvobjpriv->RtOutPipe[2];/* BE */
-		pdvobjpriv->Queue2Pipe[3] = pdvobjpriv->RtOutPipe[2];/* BK */
+		pdvobjpriv->Queue2Pipe[0] = pdvobjpriv->RtOutPipe[0]; /* VO */
+		pdvobjpriv->Queue2Pipe[1] = pdvobjpriv->RtOutPipe[1]; /* VI */
+		pdvobjpriv->Queue2Pipe[2] = pdvobjpriv->RtOutPipe[2]; /* BE */
+		pdvobjpriv->Queue2Pipe[3] = pdvobjpriv->RtOutPipe[2]; /* BK */
 
-		pdvobjpriv->Queue2Pipe[4] = pdvobjpriv->RtOutPipe[0];/* BCN */
-		pdvobjpriv->Queue2Pipe[5] = pdvobjpriv->RtOutPipe[0];/* MGT */
-		pdvobjpriv->Queue2Pipe[6] = pdvobjpriv->RtOutPipe[0];/* HIGH */
-		pdvobjpriv->Queue2Pipe[7] = pdvobjpriv->RtOutPipe[0];/* TXCMD */
+		pdvobjpriv->Queue2Pipe[4] = pdvobjpriv->RtOutPipe[0]; /* BCN */
+		pdvobjpriv->Queue2Pipe[5] = pdvobjpriv->RtOutPipe[0]; /* MGT */
+		pdvobjpriv->Queue2Pipe[6] = pdvobjpriv->RtOutPipe[0]; /* HIGH */
+		pdvobjpriv->Queue2Pipe[7] =
+			pdvobjpriv->RtOutPipe[0]; /* TXCMD */
 	}
-
 }
 
 bool Hal_MappingOutPipe(struct adapter *padapter, u8 NumOutPipe)
@@ -417,12 +413,12 @@ bool Hal_MappingOutPipe(struct adapter *padapter, u8 NumOutPipe)
 	}
 
 	return result;
-
 }
 
 void hal_init_macaddr(struct adapter *adapter)
 {
-	rtw_hal_set_hwreg(adapter, HW_VAR_MAC_ADDR, adapter->eeprompriv.mac_addr);
+	rtw_hal_set_hwreg(adapter, HW_VAR_MAC_ADDR,
+			  adapter->eeprompriv.mac_addr);
 }
 
 void rtw_init_hal_com_default_value(struct adapter *Adapter)
@@ -475,7 +471,8 @@ s32 c2h_evt_read_88xx(struct adapter *adapter, u8 *buf)
 
 	/* Read the content */
 	for (i = 0; i < c2h_evt->plen; i++)
-		c2h_evt->payload[i] = rtw_read8(adapter, REG_C2HEVT_MSG_NORMAL + 2 + i);
+		c2h_evt->payload[i] =
+			rtw_read8(adapter, REG_C2HEVT_MSG_NORMAL + 2 + i);
 
 	ret = _SUCCESS;
 
@@ -494,7 +491,8 @@ u8 rtw_get_mgntframe_raid(struct adapter *adapter, unsigned char network_type)
 	return (network_type & WIRELESS_11B) ? RATEID_IDX_B : RATEID_IDX_G;
 }
 
-void rtw_hal_update_sta_rate_mask(struct adapter *padapter, struct sta_info *psta)
+void rtw_hal_update_sta_rate_mask(struct adapter *padapter,
+				  struct sta_info *psta)
 {
 	u8 i, limit;
 	u32 tx_ra_bitmap;
@@ -507,7 +505,8 @@ void rtw_hal_update_sta_rate_mask(struct adapter *padapter, struct sta_info *pst
 	/* b/g mode ra_bitmap */
 	for (i = 0; i < sizeof(psta->bssrateset); i++) {
 		if (psta->bssrateset[i])
-			tx_ra_bitmap |= rtw_get_bit_value_from_ieee_value(psta->bssrateset[i]&0x7f);
+			tx_ra_bitmap |= rtw_get_bit_value_from_ieee_value(
+				psta->bssrateset[i] & 0x7f);
 	}
 
 	/* n mode ra_bitmap */
@@ -515,13 +514,13 @@ void rtw_hal_update_sta_rate_mask(struct adapter *padapter, struct sta_info *pst
 		limit = 8; /*   1R */
 
 		for (i = 0; i < limit; i++) {
-			if (psta->htpriv.ht_cap.mcs.rx_mask[i/8] & BIT(i%8))
-				tx_ra_bitmap |= BIT(i+12);
+			if (psta->htpriv.ht_cap.mcs.rx_mask[i / 8] & BIT(i % 8))
+				tx_ra_bitmap |= BIT(i + 12);
 		}
 	}
 
 	psta->ra_mask = tx_ra_bitmap;
-	psta->init_rate = get_highest_rate_idx(tx_ra_bitmap)&0x3f;
+	psta->init_rate = get_highest_rate_idx(tx_ra_bitmap) & 0x3f;
 }
 
 void SetHwReg(struct adapter *adapter, u8 variable, u8 *val)
@@ -533,29 +532,28 @@ void SetHwReg(struct adapter *adapter, u8 variable, u8 *val)
 	case HW_VAR_INIT_RTS_RATE:
 		WARN_ON(1);
 		break;
-	case HW_VAR_SEC_CFG:
-	{
+	case HW_VAR_SEC_CFG: {
 		u16 reg_scr;
 
 		reg_scr = rtw_read16(adapter, REG_SECCFG);
-		rtw_write16(adapter, REG_SECCFG, reg_scr|SCR_CHK_KEYID|SCR_RxDecEnable|SCR_TxEncEnable);
-	}
-		break;
-	case HW_VAR_SEC_DK_CFG:
-	{
+		rtw_write16(adapter, REG_SECCFG,
+			    reg_scr | SCR_CHK_KEYID | SCR_RxDecEnable |
+				    SCR_TxEncEnable);
+	} break;
+	case HW_VAR_SEC_DK_CFG: {
 		struct security_priv *sec = &adapter->securitypriv;
 		u8 reg_scr = rtw_read8(adapter, REG_SECCFG);
 
 		if (val) { /* Enable default key related setting */
 			reg_scr |= SCR_TXBCUSEDK;
 			if (sec->dot11AuthAlgrthm != dot11AuthAlgrthm_8021X)
-				reg_scr |= (SCR_RxUseDK|SCR_TxUseDK);
+				reg_scr |= (SCR_RxUseDK | SCR_TxUseDK);
 		} else /* Disable default key related setting */
-			reg_scr &= ~(SCR_RXBCUSEDK|SCR_TXBCUSEDK|SCR_RxUseDK|SCR_TxUseDK);
+			reg_scr &= ~(SCR_RXBCUSEDK | SCR_TXBCUSEDK |
+				     SCR_RxUseDK | SCR_TxUseDK);
 
 		rtw_write8(adapter, REG_SECCFG, reg_scr);
-	}
-		break;
+	} break;
 	case HW_VAR_DM_FLAG:
 		odm->SupportAbility = *((u32 *)val);
 		break;
@@ -619,27 +617,26 @@ void GetHwReg(struct adapter *adapter, u8 variable, u8 *val)
 	}
 }
 
-u8 GetHalDefVar(
-	struct adapter *adapter, enum hal_def_variable variable, void *value
-)
+u8 GetHalDefVar(struct adapter *adapter, enum hal_def_variable variable,
+		void *value)
 {
 	struct hal_com_data *hal_data = GET_HAL_DATA(adapter);
 	u8 bResult = _SUCCESS;
 
 	switch (variable) {
-	case HAL_DEF_UNDERCORATEDSMOOTHEDPWDB:
-		{
-			struct mlme_priv *pmlmepriv;
-			struct sta_priv *pstapriv;
-			struct sta_info *psta;
-
-			pmlmepriv = &adapter->mlmepriv;
-			pstapriv = &adapter->stapriv;
-			psta = rtw_get_stainfo(pstapriv, pmlmepriv->cur_network.network.mac_address);
-			if (psta)
-				*((int *)value) = psta->rssi_stat.UndecoratedSmoothedPWDB;
-		}
-		break;
+	case HAL_DEF_UNDERCORATEDSMOOTHEDPWDB: {
+		struct mlme_priv *pmlmepriv;
+		struct sta_priv *pstapriv;
+		struct sta_info *psta;
+
+		pmlmepriv = &adapter->mlmepriv;
+		pstapriv = &adapter->stapriv;
+		psta = rtw_get_stainfo(
+			pstapriv, pmlmepriv->cur_network.network.mac_address);
+		if (psta)
+			*((int *)value) =
+				psta->rssi_stat.UndecoratedSmoothedPWDB;
+	} break;
 	case HAL_DEF_DBG_DM_FUNC:
 		*((u32 *)value) = hal_data->odmpriv.SupportAbility;
 		break;
@@ -669,36 +666,34 @@ u8 GetHalDefVar(
 	return bResult;
 }
 
-void SetHalODMVar(
-	struct adapter *Adapter,
-	enum hal_odm_variable eVariable,
-	void *pValue1,
-	bool bSet
-)
+void SetHalODMVar(struct adapter *Adapter, enum hal_odm_variable eVariable,
+		  void *pValue1, bool bSet)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(Adapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 	struct dm_odm_t *podmpriv = &pHalData->odmpriv;
 	/* _irqL irqL; */
 	switch (eVariable) {
-	case HAL_ODM_STA_INFO:
-		{
-			struct sta_info *psta = pValue1;
-
-			if (bSet) {
-				ODM_CmnInfoPtrArrayHook(podmpriv, ODM_CMNINFO_STA_STATUS, psta->mac_id, psta);
-			} else {
-				/* spin_lock_bh(&pHalData->odm_stainfo_lock); */
-				ODM_CmnInfoPtrArrayHook(podmpriv, ODM_CMNINFO_STA_STATUS, psta->mac_id, NULL);
-
-				/* spin_unlock_bh(&pHalData->odm_stainfo_lock); */
-		    }
+	case HAL_ODM_STA_INFO: {
+		struct sta_info *psta = pValue1;
+
+		if (bSet) {
+			ODM_CmnInfoPtrArrayHook(podmpriv,
+						ODM_CMNINFO_STA_STATUS,
+						psta->mac_id, psta);
+		} else {
+			/* spin_lock_bh(&pHalData->odm_stainfo_lock); */
+			ODM_CmnInfoPtrArrayHook(podmpriv,
+						ODM_CMNINFO_STA_STATUS,
+						psta->mac_id, NULL);
+
+			/* spin_unlock_bh(&pHalData->odm_stainfo_lock); */
 		}
-		break;
+	} break;
 	case HAL_ODM_P2P_STATE:
-			ODM_CmnInfoUpdate(podmpriv, ODM_CMNINFO_WIFI_DIRECT, bSet);
+		ODM_CmnInfoUpdate(podmpriv, ODM_CMNINFO_WIFI_DIRECT, bSet);
 		break;
 	case HAL_ODM_WIFI_DISPLAY_STATE:
-			ODM_CmnInfoUpdate(podmpriv, ODM_CMNINFO_WIFI_DISPLAY, bSet);
+		ODM_CmnInfoUpdate(podmpriv, ODM_CMNINFO_WIFI_DISPLAY, bSet);
 		break;
 
 	default:
@@ -727,23 +722,16 @@ bool GetU1ByteIntegerFromStringInDecimal(char *Str, u8 *pInt)
 void rtw_hal_check_rxfifo_full(struct adapter *adapter)
 {
 	/* switch counter to RX fifo */
-	rtw_write8(adapter, REG_RXERR_RPT+3, rtw_read8(adapter, REG_RXERR_RPT+3)|0xf0);
+	rtw_write8(adapter, REG_RXERR_RPT + 3,
+		   rtw_read8(adapter, REG_RXERR_RPT + 3) | 0xf0);
 }
 
 static u32 Array_kfreemap[] = {
-	0xf8, 0xe,
-	0xf6, 0xc,
-	0xf4, 0xa,
-	0xf2, 0x8,
-	0xf0, 0x6,
-	0xf3, 0x4,
-	0xf5, 0x2,
-	0xf7, 0x0,
-	0xf9, 0x0,
-	0xfc, 0x0,
+	0xf8, 0xe, 0xf6, 0xc, 0xf4, 0xa, 0xf2, 0x8, 0xf0, 0x6,
+	0xf3, 0x4, 0xf5, 0x2, 0xf7, 0x0, 0xf9, 0x0, 0xfc, 0x0,
 };
 
-#define		REG_RF_BB_GAIN_OFFSET	0x7f
+#define REG_RF_BB_GAIN_OFFSET 0x7f
 //#define		RF_GAIN_OFFSET_MASK	0xfffff
 
 void rtw_bb_rf_gain_offset(struct adapter *padapter)
@@ -755,19 +743,24 @@ void rtw_bb_rf_gain_offset(struct adapter *padapter)
 
 	if (value & BIT(4)) {
 		if (padapter->eeprompriv.EEPROMRFGainVal != 0xff) {
-			rtw_hal_read_rfreg(padapter, RF_PATH_A, 0x7f, 0xffffffff);
+			rtw_hal_read_rfreg(padapter, RF_PATH_A, 0x7f,
+					   0xffffffff);
 
 			for (i = 0; i < ARRAY_SIZE(Array_kfreemap); i += 2) {
 				v1 = Array[i];
-				v2 = Array[i+1];
-				if (v1 == padapter->eeprompriv.EEPROMRFGainVal) {
+				v2 = Array[i + 1];
+				if (v1 ==
+				    padapter->eeprompriv.EEPROMRFGainVal) {
 					target = v2;
 					break;
 				}
 			}
-			PHY_SetRFReg(padapter, RF_PATH_A, REG_RF_BB_GAIN_OFFSET, BIT(18)|BIT(17)|BIT(16)|BIT(15), target);
+			PHY_SetRFReg(padapter, RF_PATH_A, REG_RF_BB_GAIN_OFFSET,
+				     BIT(18) | BIT(17) | BIT(16) | BIT(15),
+				     target);
 
-			rtw_hal_read_rfreg(padapter, RF_PATH_A, 0x7f, 0xffffffff);
+			rtw_hal_read_rfreg(padapter, RF_PATH_A, 0x7f,
+					   0xffffffff);
 		}
 	}
 }
diff --git a/drivers/staging/rtl8723bs/hal/hal_com_phycfg.c b/drivers/staging/rtl8723bs/hal/hal_com_phycfg.c
index b16456d5b6bba..8f5cc2816f734 100644
--- a/drivers/staging/rtl8723bs/hal/hal_com_phycfg.c
+++ b/drivers/staging/rtl8723bs/hal/hal_com_phycfg.c
@@ -13,8 +13,8 @@
 u8 PHY_GetTxPowerByRateBase(struct adapter *Adapter, u8 RfPath,
 			    enum rate_section RateSection)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(Adapter);
-	u8	value = 0;
+	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
+	u8 value = 0;
 
 	if (RfPath >= RF_PATH_MAX)
 		return 0;
@@ -36,11 +36,10 @@ u8 PHY_GetTxPowerByRateBase(struct adapter *Adapter, u8 RfPath,
 	return value;
 }
 
-static void
-phy_SetTxPowerByRateBase(struct adapter *Adapter, u8 RfPath,
-			 enum rate_section RateSection, u8 Value)
+static void phy_SetTxPowerByRateBase(struct adapter *Adapter, u8 RfPath,
+				     enum rate_section RateSection, u8 Value)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(Adapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 
 	if (RfPath >= RF_PATH_MAX)
 		return;
@@ -76,13 +75,12 @@ static void phy_StoreTxPowerByRateBase(struct adapter *padapter)
 	}
 }
 
-u8 PHY_GetRateSectionIndexOfTxPowerByRate(
-	struct adapter *padapter, u32 RegAddr, u32 BitMask
-)
+u8 PHY_GetRateSectionIndexOfTxPowerByRate(struct adapter *padapter, u32 RegAddr,
+					  u32 BitMask)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
-	u8	index = 0;
+	u8 index = 0;
 
 	if (pDM_Odm->PhyRegPgVersion == 0) {
 		switch (RegAddr) {
@@ -131,16 +129,9 @@ u8 PHY_GetRateSectionIndexOfTxPowerByRate(
 	return index;
 }
 
-void
-PHY_GetRateValuesOfTxPowerByRate(
-	struct adapter *padapter,
-	u32	RegAddr,
-	u32	BitMask,
-	u32	Value,
-	u8 *RateIndex,
-	s8 *PwrByRateVal,
-	u8 *RateNum
-)
+void PHY_GetRateValuesOfTxPowerByRate(struct adapter *padapter, u32 RegAddr,
+				      u32 BitMask, u32 Value, u8 *RateIndex,
+				      s8 *PwrByRateVal, u8 *RateNum)
 {
 	u8 i = 0;
 
@@ -152,8 +143,9 @@ PHY_GetRateValuesOfTxPowerByRate(
 		RateIndex[2] = PHY_GetRateIndexOfTxPowerByRate(MGN_12M);
 		RateIndex[3] = PHY_GetRateIndexOfTxPowerByRate(MGN_18M);
 		for (i = 0; i < 4; ++i) {
-			PwrByRateVal[i] = (s8) ((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
-											((Value >> (i * 8)) & 0xF));
+			PwrByRateVal[i] =
+				(s8)((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
+				     ((Value >> (i * 8)) & 0xF));
 		}
 		*RateNum = 4;
 		break;
@@ -165,32 +157,37 @@ PHY_GetRateValuesOfTxPowerByRate(
 		RateIndex[2] = PHY_GetRateIndexOfTxPowerByRate(MGN_48M);
 		RateIndex[3] = PHY_GetRateIndexOfTxPowerByRate(MGN_54M);
 		for (i = 0; i < 4; ++i) {
-			PwrByRateVal[i] = (s8) ((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
-											((Value >> (i * 8)) & 0xF));
+			PwrByRateVal[i] =
+				(s8)((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
+				     ((Value >> (i * 8)) & 0xF));
 		}
 		*RateNum = 4;
 		break;
 
 	case rTxAGC_A_CCK1_Mcs32:
 		RateIndex[0] = PHY_GetRateIndexOfTxPowerByRate(MGN_1M);
-		PwrByRateVal[0] = (s8) ((((Value >> (8 + 4)) & 0xF)) * 10 +
-										((Value >> 8) & 0xF));
+		PwrByRateVal[0] = (s8)((((Value >> (8 + 4)) & 0xF)) * 10 +
+				       ((Value >> 8) & 0xF));
 		*RateNum = 1;
 		break;
 
 	case rTxAGC_B_CCK11_A_CCK2_11:
 		if (BitMask == 0xffffff00) {
 			RateIndex[0] = PHY_GetRateIndexOfTxPowerByRate(MGN_2M);
-			RateIndex[1] = PHY_GetRateIndexOfTxPowerByRate(MGN_5_5M);
+			RateIndex[1] =
+				PHY_GetRateIndexOfTxPowerByRate(MGN_5_5M);
 			RateIndex[2] = PHY_GetRateIndexOfTxPowerByRate(MGN_11M);
 			for (i = 1; i < 4; ++i) {
-				PwrByRateVal[i - 1] = (s8) ((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
-												((Value >> (i * 8)) & 0xF));
+				PwrByRateVal[i - 1] =
+					(s8)((((Value >> (i * 8 + 4)) & 0xF)) *
+						     10 +
+					     ((Value >> (i * 8)) & 0xF));
 			}
 			*RateNum = 3;
 		} else if (BitMask == 0x000000ff) {
 			RateIndex[0] = PHY_GetRateIndexOfTxPowerByRate(MGN_11M);
-			PwrByRateVal[0] = (s8) ((((Value >> 4) & 0xF)) * 10 + (Value & 0xF));
+			PwrByRateVal[0] = (s8)((((Value >> 4) & 0xF)) * 10 +
+					       (Value & 0xF));
 			*RateNum = 1;
 		}
 		break;
@@ -202,8 +199,9 @@ PHY_GetRateValuesOfTxPowerByRate(
 		RateIndex[2] = PHY_GetRateIndexOfTxPowerByRate(MGN_MCS2);
 		RateIndex[3] = PHY_GetRateIndexOfTxPowerByRate(MGN_MCS3);
 		for (i = 0; i < 4; ++i) {
-			PwrByRateVal[i] = (s8) ((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
-											((Value >> (i * 8)) & 0xF));
+			PwrByRateVal[i] =
+				(s8)((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
+				     ((Value >> (i * 8)) & 0xF));
 		}
 		*RateNum = 4;
 		break;
@@ -215,8 +213,9 @@ PHY_GetRateValuesOfTxPowerByRate(
 		RateIndex[2] = PHY_GetRateIndexOfTxPowerByRate(MGN_MCS6);
 		RateIndex[3] = PHY_GetRateIndexOfTxPowerByRate(MGN_MCS7);
 		for (i = 0; i < 4; ++i) {
-			PwrByRateVal[i] = (s8) ((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
-											((Value >> (i * 8)) & 0xF));
+			PwrByRateVal[i] =
+				(s8)((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
+				     ((Value >> (i * 8)) & 0xF));
 		}
 		*RateNum = 4;
 		break;
@@ -226,8 +225,9 @@ PHY_GetRateValuesOfTxPowerByRate(
 		RateIndex[1] = PHY_GetRateIndexOfTxPowerByRate(MGN_2M);
 		RateIndex[2] = PHY_GetRateIndexOfTxPowerByRate(MGN_5_5M);
 		for (i = 1; i < 4; ++i) {
-			PwrByRateVal[i - 1] = (s8) ((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
-											((Value >> (i * 8)) & 0xF));
+			PwrByRateVal[i - 1] =
+				(s8)((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
+				     ((Value >> (i * 8)) & 0xF));
 		}
 		*RateNum = 3;
 		break;
@@ -241,8 +241,9 @@ PHY_GetRateValuesOfTxPowerByRate(
 		RateIndex[2] = PHY_GetRateIndexOfTxPowerByRate(MGN_5_5M);
 		RateIndex[3] = PHY_GetRateIndexOfTxPowerByRate(MGN_11M);
 		for (i = 0; i < 4; ++i) {
-			PwrByRateVal[i] = (s8) ((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
-											((Value >> (i * 8)) & 0xF));
+			PwrByRateVal[i] =
+				(s8)((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
+				     ((Value >> (i * 8)) & 0xF));
 		}
 		*RateNum = 4;
 		break;
@@ -256,8 +257,9 @@ PHY_GetRateValuesOfTxPowerByRate(
 		RateIndex[2] = PHY_GetRateIndexOfTxPowerByRate(MGN_12M);
 		RateIndex[3] = PHY_GetRateIndexOfTxPowerByRate(MGN_18M);
 		for (i = 0; i < 4; ++i) {
-			PwrByRateVal[i] = (s8) ((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
-											((Value >> (i * 8)) & 0xF));
+			PwrByRateVal[i] =
+				(s8)((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
+				     ((Value >> (i * 8)) & 0xF));
 		}
 		*RateNum = 4;
 		break;
@@ -271,8 +273,9 @@ PHY_GetRateValuesOfTxPowerByRate(
 		RateIndex[2] = PHY_GetRateIndexOfTxPowerByRate(MGN_48M);
 		RateIndex[3] = PHY_GetRateIndexOfTxPowerByRate(MGN_54M);
 		for (i = 0; i < 4; ++i) {
-			PwrByRateVal[i] = (s8) ((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
-											((Value >> (i * 8)) & 0xF));
+			PwrByRateVal[i] =
+				(s8)((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
+				     ((Value >> (i * 8)) & 0xF));
 		}
 		*RateNum = 4;
 		break;
@@ -286,8 +289,9 @@ PHY_GetRateValuesOfTxPowerByRate(
 		RateIndex[2] = PHY_GetRateIndexOfTxPowerByRate(MGN_MCS2);
 		RateIndex[3] = PHY_GetRateIndexOfTxPowerByRate(MGN_MCS3);
 		for (i = 0; i < 4; ++i) {
-			PwrByRateVal[i] = (s8) ((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
-											((Value >> (i * 8)) & 0xF));
+			PwrByRateVal[i] =
+				(s8)((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
+				     ((Value >> (i * 8)) & 0xF));
 		}
 		*RateNum = 4;
 		break;
@@ -301,8 +305,9 @@ PHY_GetRateValuesOfTxPowerByRate(
 		RateIndex[2] = PHY_GetRateIndexOfTxPowerByRate(MGN_MCS6);
 		RateIndex[3] = PHY_GetRateIndexOfTxPowerByRate(MGN_MCS7);
 		for (i = 0; i < 4; ++i) {
-			PwrByRateVal[i] = (s8) ((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
-											((Value >> (i * 8)) & 0xF));
+			PwrByRateVal[i] =
+				(s8)((((Value >> (i * 8 + 4)) & 0xF)) * 10 +
+				     ((Value >> (i * 8)) & 0xF));
 		}
 		*RateNum = 4;
 		break;
@@ -312,36 +317,39 @@ PHY_GetRateValuesOfTxPowerByRate(
 	}
 }
 
-static void PHY_StoreTxPowerByRateNew(struct adapter *padapter,	u32 RfPath,
+static void PHY_StoreTxPowerByRateNew(struct adapter *padapter, u32 RfPath,
 				      u32 RegAddr, u32 BitMask, u32 Data)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
-	u8 i = 0, rateIndex[4] = {0}, rateNum = 0;
-	s8	PwrByRateVal[4] = {0};
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
+	u8 i = 0, rateIndex[4] = { 0 }, rateNum = 0;
+	s8 PwrByRateVal[4] = { 0 };
 
-	PHY_GetRateValuesOfTxPowerByRate(padapter, RegAddr, BitMask, Data, rateIndex, PwrByRateVal, &rateNum);
+	PHY_GetRateValuesOfTxPowerByRate(padapter, RegAddr, BitMask, Data,
+					 rateIndex, PwrByRateVal, &rateNum);
 
 	if (RfPath >= RF_PATH_MAX)
 		return;
 
 	for (i = 0; i < rateNum; ++i) {
-		pHalData->TxPwrByRateOffset[RfPath][rateIndex[i]] = PwrByRateVal[i];
+		pHalData->TxPwrByRateOffset[RfPath][rateIndex[i]] =
+			PwrByRateVal[i];
 	}
 }
 
-static void PHY_StoreTxPowerByRateOld(
-	struct adapter *padapter, u32	RegAddr, u32 BitMask, u32 Data
-)
+static void PHY_StoreTxPowerByRateOld(struct adapter *padapter, u32 RegAddr,
+				      u32 BitMask, u32 Data)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
-	u8	index = PHY_GetRateSectionIndexOfTxPowerByRate(padapter, RegAddr, BitMask);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
+	u8 index = PHY_GetRateSectionIndexOfTxPowerByRate(padapter, RegAddr,
+							  BitMask);
 
-	pHalData->MCSTxPowerLevelOriginalOffset[pHalData->pwrGroupCnt][index] = Data;
+	pHalData->MCSTxPowerLevelOriginalOffset[pHalData->pwrGroupCnt][index] =
+		Data;
 }
 
 void PHY_InitTxPowerByRate(struct adapter *padapter)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	u8 rfPath, rate;
 
 	for (rfPath = RF_PATH_A; rfPath < MAX_RF_PATH_NUM; ++rfPath)
@@ -349,59 +357,55 @@ void PHY_InitTxPowerByRate(struct adapter *padapter)
 			pHalData->TxPwrByRateOffset[rfPath][rate] = 0;
 }
 
-void PHY_StoreTxPowerByRate(
-	struct adapter *padapter,
-	u32	RfPath,
-	u32	RegAddr,
-	u32	BitMask,
-	u32	Data
-)
+void PHY_StoreTxPowerByRate(struct adapter *padapter, u32 RfPath, u32 RegAddr,
+			    u32 BitMask, u32 Data)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
 	if (pDM_Odm->PhyRegPgVersion > 0)
-		PHY_StoreTxPowerByRateNew(padapter, RfPath, RegAddr, BitMask, Data);
+		PHY_StoreTxPowerByRateNew(padapter, RfPath, RegAddr, BitMask,
+					  Data);
 	else if (pDM_Odm->PhyRegPgVersion == 0) {
 		PHY_StoreTxPowerByRateOld(padapter, RegAddr, BitMask, Data);
 	}
 }
 
 static void
-phy_ConvertTxPowerByRateInDbmToRelativeValues(
-struct adapter *padapter
-	)
+phy_ConvertTxPowerByRateInDbmToRelativeValues(struct adapter *padapter)
 {
-	u8	base = 0, i = 0, value = 0, path = 0;
-	u8	cckRates[4] = {
-		MGN_1M, MGN_2M, MGN_5_5M, MGN_11M
-	};
-	u8	ofdmRates[8] = {
-		MGN_6M, MGN_9M, MGN_12M, MGN_18M, MGN_24M, MGN_36M, MGN_48M, MGN_54M
-	};
-	u8 mcs0_7Rates[8] = {
-		MGN_MCS0, MGN_MCS1, MGN_MCS2, MGN_MCS3, MGN_MCS4, MGN_MCS5, MGN_MCS6, MGN_MCS7
-	};
+	u8 base = 0, i = 0, value = 0, path = 0;
+	u8 cckRates[4] = { MGN_1M, MGN_2M, MGN_5_5M, MGN_11M };
+	u8 ofdmRates[8] = { MGN_6M,  MGN_9M,  MGN_12M, MGN_18M,
+			    MGN_24M, MGN_36M, MGN_48M, MGN_54M };
+	u8 mcs0_7Rates[8] = { MGN_MCS0, MGN_MCS1, MGN_MCS2, MGN_MCS3,
+			      MGN_MCS4, MGN_MCS5, MGN_MCS6, MGN_MCS7 };
 	for (path = RF_PATH_A; path < RF_PATH_MAX; ++path) {
 		/*  CCK */
 		base = PHY_GetTxPowerByRate(padapter, path, MGN_11M);
 		for (i = 0; i < ARRAY_SIZE(cckRates); ++i) {
-			value = PHY_GetTxPowerByRate(padapter, path, cckRates[i]);
-			PHY_SetTxPowerByRate(padapter, path, cckRates[i], value - base);
+			value = PHY_GetTxPowerByRate(padapter, path,
+						     cckRates[i]);
+			PHY_SetTxPowerByRate(padapter, path, cckRates[i],
+					     value - base);
 		}
 
 		/*  OFDM */
 		base = PHY_GetTxPowerByRate(padapter, path, MGN_54M);
 		for (i = 0; i < sizeof(ofdmRates); ++i) {
-			value = PHY_GetTxPowerByRate(padapter, path, ofdmRates[i]);
-			PHY_SetTxPowerByRate(padapter, path, ofdmRates[i], value - base);
+			value = PHY_GetTxPowerByRate(padapter, path,
+						     ofdmRates[i]);
+			PHY_SetTxPowerByRate(padapter, path, ofdmRates[i],
+					     value - base);
 		}
 
 		/*  HT MCS0~7 */
 		base = PHY_GetTxPowerByRate(padapter, path, MGN_MCS7);
 		for (i = 0; i < sizeof(mcs0_7Rates); ++i) {
-			value = PHY_GetTxPowerByRate(padapter, path, mcs0_7Rates[i]);
-			PHY_SetTxPowerByRate(padapter, path, mcs0_7Rates[i], value - base);
+			value = PHY_GetTxPowerByRate(padapter, path,
+						     mcs0_7Rates[i]);
+			PHY_SetTxPowerByRate(padapter, path, mcs0_7Rates[i],
+					     value - base);
 		}
 	}
 }
@@ -416,22 +420,22 @@ void PHY_TxPowerByRateConfiguration(struct adapter *padapter)
 	phy_ConvertTxPowerByRateInDbmToRelativeValues(padapter);
 }
 
-void PHY_SetTxPowerIndexByRateSection(
-	struct adapter *padapter, u8 RFPath, u8 Channel, u8 RateSection
-)
+void PHY_SetTxPowerIndexByRateSection(struct adapter *padapter, u8 RFPath,
+				      u8 Channel, u8 RateSection)
 {
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
 	if (RateSection == CCK) {
-		u8 cckRates[]   = {MGN_1M, MGN_2M, MGN_5_5M, MGN_11M};
+		u8 cckRates[] = { MGN_1M, MGN_2M, MGN_5_5M, MGN_11M };
 
 		PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
-					     pHalData->CurrentChannelBW,
-					     Channel, cckRates,
-					     ARRAY_SIZE(cckRates));
+					       pHalData->CurrentChannelBW,
+					       Channel, cckRates,
+					       ARRAY_SIZE(cckRates));
 
 	} else if (RateSection == OFDM) {
-		u8 ofdmRates[]  = {MGN_6M, MGN_9M, MGN_12M, MGN_18M, MGN_24M, MGN_36M, MGN_48M, MGN_54M};
+		u8 ofdmRates[] = { MGN_6M,  MGN_9M,  MGN_12M, MGN_18M,
+				   MGN_24M, MGN_36M, MGN_48M, MGN_54M };
 
 		PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
 					       pHalData->CurrentChannelBW,
@@ -439,27 +443,22 @@ void PHY_SetTxPowerIndexByRateSection(
 					       ARRAY_SIZE(ofdmRates));
 
 	} else if (RateSection == HT_MCS0_MCS7) {
-		u8 htRates1T[]  = {MGN_MCS0, MGN_MCS1, MGN_MCS2, MGN_MCS3, MGN_MCS4, MGN_MCS5, MGN_MCS6, MGN_MCS7};
+		u8 htRates1T[] = { MGN_MCS0, MGN_MCS1, MGN_MCS2, MGN_MCS3,
+				   MGN_MCS4, MGN_MCS5, MGN_MCS6, MGN_MCS7 };
 
 		PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
 					       pHalData->CurrentChannelBW,
 					       Channel, htRates1T,
 					       ARRAY_SIZE(htRates1T));
-
 	}
 }
 
-u8 PHY_GetTxPowerIndexBase(
-	struct adapter *padapter,
-	u8 RFPath,
-	u8 Rate,
-	enum channel_width	BandWidth,
-	u8 Channel
-)
+u8 PHY_GetTxPowerIndexBase(struct adapter *padapter, u8 RFPath, u8 Rate,
+			   enum channel_width BandWidth, u8 Channel)
 {
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	u8 txPower = 0;
-	u8 chnlIdx = (Channel-1);
+	u8 chnlIdx = (Channel - 1);
 
 	if (!HAL_IsLegalChannel(padapter, Channel))
 		chnlIdx = 0;
@@ -492,7 +491,8 @@ s8 PHY_GetTxPowerTrackingOffset(struct adapter *padapter, u8 RFPath, u8 Rate)
 	if (!pDM_Odm->RFCalibrateInfo.TxPowerTrackControl)
 		return offset;
 
-	if ((Rate == MGN_1M) || (Rate == MGN_2M) || (Rate == MGN_5_5M) || (Rate == MGN_11M))
+	if ((Rate == MGN_1M) || (Rate == MGN_2M) || (Rate == MGN_5_5M) ||
+	    (Rate == MGN_11M))
 		offset = pDM_Odm->Remnant_CCKSwingIdx;
 	else
 		offset = pDM_Odm->Remnant_OFDMSwingIdx[RFPath];
@@ -573,13 +573,13 @@ u8 PHY_GetRateIndexOfTxPowerByRate(u8 Rate)
 
 s8 PHY_GetTxPowerByRate(struct adapter *padapter, u8 RFPath, u8 Rate)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	s8 value = 0;
 	u8 rateIndex = PHY_GetRateIndexOfTxPowerByRate(Rate);
 
 	if ((padapter->registrypriv.reg_enable_tx_power_by_rate == 2 &&
 	     pHalData->EEPROMRegulatory == 2) ||
-	   padapter->registrypriv.reg_enable_tx_power_by_rate == 0)
+	    padapter->registrypriv.reg_enable_tx_power_by_rate == 0)
 		return 0;
 
 	if (RFPath >= RF_PATH_MAX)
@@ -589,17 +589,12 @@ s8 PHY_GetTxPowerByRate(struct adapter *padapter, u8 RFPath, u8 Rate)
 		return value;
 
 	return pHalData->TxPwrByRateOffset[RFPath][rateIndex];
-
 }
 
-void PHY_SetTxPowerByRate(
-	struct adapter *padapter,
-	u8 RFPath,
-	u8 Rate,
-	s8 Value
-)
+void PHY_SetTxPowerByRate(struct adapter *padapter, u8 RFPath, u8 Rate,
+			  s8 Value)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	u8 rateIndex = PHY_GetRateIndexOfTxPowerByRate(Rate);
 
 	if (RFPath >= RF_PATH_MAX)
@@ -619,27 +614,23 @@ void PHY_SetTxPowerLevelByPath(struct adapter *Adapter, u8 channel, u8 path)
 	PHY_SetTxPowerIndexByRateSection(Adapter, path, channel, HT_MCS0_MCS7);
 }
 
-void PHY_SetTxPowerIndexByRateArray(
-	struct adapter *padapter,
-	u8 RFPath,
-	enum channel_width BandWidth,
-	u8 Channel,
-	u8 *Rates,
-	u8 RateArraySize
-)
+void PHY_SetTxPowerIndexByRateArray(struct adapter *padapter, u8 RFPath,
+				    enum channel_width BandWidth, u8 Channel,
+				    u8 *Rates, u8 RateArraySize)
 {
 	u32 powerIndex = 0;
-	int	i = 0;
+	int i = 0;
 
 	for (i = 0; i < RateArraySize; ++i) {
-		powerIndex = PHY_GetTxPowerIndex(padapter, RFPath, Rates[i], BandWidth, Channel);
+		powerIndex = PHY_GetTxPowerIndex(padapter, RFPath, Rates[i],
+						 BandWidth, Channel);
 		PHY_SetTxPowerIndex(padapter, powerIndex, RFPath, Rates[i]);
 	}
 }
 
 static s8 phy_GetWorldWideLimit(s8 *LimitTable)
 {
-	s8	min = LimitTable[0];
+	s8 min = LimitTable[0];
 	u8 i = 0;
 
 	for (i = 0; i < MAX_REGULATION_NUM; ++i) {
@@ -670,13 +661,28 @@ static s16 get_bandwidth_idx(const enum channel_width bandwidth)
 static s16 get_rate_sctn_idx(const u8 rate)
 {
 	switch (rate) {
-	case MGN_1M: case MGN_2M: case MGN_5_5M: case MGN_11M:
+	case MGN_1M:
+	case MGN_2M:
+	case MGN_5_5M:
+	case MGN_11M:
 		return 0;
-	case MGN_6M: case MGN_9M: case MGN_12M: case MGN_18M:
-	case MGN_24M: case MGN_36M: case MGN_48M: case MGN_54M:
+	case MGN_6M:
+	case MGN_9M:
+	case MGN_12M:
+	case MGN_18M:
+	case MGN_24M:
+	case MGN_36M:
+	case MGN_48M:
+	case MGN_54M:
 		return 1;
-	case MGN_MCS0: case MGN_MCS1: case MGN_MCS2: case MGN_MCS3:
-	case MGN_MCS4: case MGN_MCS5: case MGN_MCS6: case MGN_MCS7:
+	case MGN_MCS0:
+	case MGN_MCS1:
+	case MGN_MCS2:
+	case MGN_MCS3:
+	case MGN_MCS4:
+	case MGN_MCS5:
+	case MGN_MCS6:
+	case MGN_MCS7:
 		return 2;
 	default:
 		return -1;
@@ -684,16 +690,17 @@ static s16 get_rate_sctn_idx(const u8 rate)
 }
 
 s8 phy_get_tx_pwr_lmt(struct adapter *adapter, u32 reg_pwr_tbl_sel,
-		      enum channel_width bandwidth,
-		      u8 rf_path, u8 data_rate, u8 channel)
+		      enum channel_width bandwidth, u8 rf_path, u8 data_rate,
+		      u8 channel)
 {
 	s16 idx_regulation = -1;
-	s16 idx_bandwidth  = -1;
-	s16 idx_rate_sctn  = -1;
-	s16 idx_channel    = -1;
+	s16 idx_bandwidth = -1;
+	s16 idx_rate_sctn = -1;
+	s16 idx_channel = -1;
 	s8 pwr_lmt = MAX_POWER_INDEX;
 	struct hal_com_data *hal_data = GET_HAL_DATA(adapter);
-	s8 limits[10] = {0}; u8 i = 0;
+	s8 limits[10] = { 0 };
+	u8 i = 0;
 
 	if (((adapter->registrypriv.reg_enable_tx_power_limit == 2) &&
 	     (hal_data->EEPROMRegulatory != 1)) ||
@@ -735,26 +742,23 @@ s8 phy_get_tx_pwr_lmt(struct adapter *adapter, u32 reg_pwr_tbl_sel,
 		return MAX_POWER_INDEX;
 
 	for (i = 0; i < MAX_REGULATION_NUM; i++)
-		limits[i] = hal_data->TxPwrLimit_2_4G[i]
-						     [idx_bandwidth]
+		limits[i] = hal_data->TxPwrLimit_2_4G[i][idx_bandwidth]
 						     [idx_rate_sctn]
-						     [idx_channel]
-						     [rf_path];
+						     [idx_channel][rf_path];
 
-	pwr_lmt = (idx_regulation == TXPWR_LMT_WW) ?
-		phy_GetWorldWideLimit(limits) :
-		hal_data->TxPwrLimit_2_4G[idx_regulation]
-					 [idx_bandwidth]
-					 [idx_rate_sctn]
-					 [idx_channel]
-					 [rf_path];
+	pwr_lmt =
+		(idx_regulation == TXPWR_LMT_WW) ?
+			phy_GetWorldWideLimit(limits) :
+			hal_data->TxPwrLimit_2_4G[idx_regulation][idx_bandwidth]
+						 [idx_rate_sctn][idx_channel]
+						 [rf_path];
 
 	return pwr_lmt;
 }
 
 void PHY_ConvertTxPowerLimitToPowerIndex(struct adapter *Adapter)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(Adapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 	struct registry_priv *r = &Adapter->registrypriv;
 	u8 BW40PwrBasedBm2_4G = 0x2E;
 	u8 regulation, bw, channel, rateSection;
@@ -763,24 +767,57 @@ void PHY_ConvertTxPowerLimitToPowerIndex(struct adapter *Adapter)
 
 	for (regulation = 0; regulation < MAX_REGULATION_NUM; ++regulation) {
 		for (bw = 0; bw < MAX_2_4G_BANDWIDTH_NUM; ++bw) {
-			for (channel = 0; channel < CHANNEL_MAX_NUMBER_2G; ++channel) {
-				for (rateSection = 0; rateSection < MAX_RATE_SECTION_NUM; ++rateSection) {
-					tempPwrLmt = pHalData->TxPwrLimit_2_4G[regulation][bw][rateSection][channel][RF_PATH_A];
-
-					for (rfPath = RF_PATH_A; rfPath < MAX_RF_PATH_NUM; ++rfPath) {
-						if (pHalData->odmpriv.PhyRegPgValueType == PHY_REG_PG_EXACT_VALUE) {
-							if (rateSection == 2) /*  HT 1T */
-								BW40PwrBasedBm2_4G = PHY_GetTxPowerByRateBase(Adapter, rfPath, HT_MCS0_MCS7);
-							else if (rateSection == 1) /*  OFDM */
-								BW40PwrBasedBm2_4G = PHY_GetTxPowerByRateBase(Adapter, rfPath, OFDM);
-							else if (rateSection == 0) /*  CCK */
-								BW40PwrBasedBm2_4G = PHY_GetTxPowerByRateBase(Adapter, rfPath, CCK);
+			for (channel = 0; channel < CHANNEL_MAX_NUMBER_2G;
+			     ++channel) {
+				for (rateSection = 0;
+				     rateSection < MAX_RATE_SECTION_NUM;
+				     ++rateSection) {
+					tempPwrLmt =
+						pHalData->TxPwrLimit_2_4G
+							[regulation][bw]
+							[rateSection][channel]
+							[RF_PATH_A];
+
+					for (rfPath = RF_PATH_A;
+					     rfPath < MAX_RF_PATH_NUM;
+					     ++rfPath) {
+						if (pHalData->odmpriv
+							    .PhyRegPgValueType ==
+						    PHY_REG_PG_EXACT_VALUE) {
+							if (rateSection ==
+							    2) /*  HT 1T */
+								BW40PwrBasedBm2_4G = PHY_GetTxPowerByRateBase(
+									Adapter,
+									rfPath,
+									HT_MCS0_MCS7);
+							else if (rateSection ==
+								 1) /*  OFDM */
+								BW40PwrBasedBm2_4G = PHY_GetTxPowerByRateBase(
+									Adapter,
+									rfPath,
+									OFDM);
+							else if (rateSection ==
+								 0) /*  CCK */
+								BW40PwrBasedBm2_4G = PHY_GetTxPowerByRateBase(
+									Adapter,
+									rfPath,
+									CCK);
 						} else
-							BW40PwrBasedBm2_4G = r->reg_power_base * 2;
-
-						if (tempPwrLmt != MAX_POWER_INDEX) {
-							tempValue = tempPwrLmt - BW40PwrBasedBm2_4G;
-							pHalData->TxPwrLimit_2_4G[regulation][bw][rateSection][channel][rfPath] = tempValue;
+							BW40PwrBasedBm2_4G =
+								r->reg_power_base *
+								2;
+
+						if (tempPwrLmt !=
+						    MAX_POWER_INDEX) {
+							tempValue =
+								tempPwrLmt -
+								BW40PwrBasedBm2_4G;
+							pHalData->TxPwrLimit_2_4G
+								[regulation][bw]
+								[rateSection]
+								[channel]
+								[rfPath] =
+								tempValue;
 						}
 					}
 				}
@@ -791,7 +828,7 @@ void PHY_ConvertTxPowerLimitToPowerIndex(struct adapter *Adapter)
 
 void PHY_InitTxPowerLimit(struct adapter *Adapter)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(Adapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 	u8 i, j, k, l, m;
 
 	for (i = 0; i < MAX_REGULATION_NUM; ++i) {
@@ -799,28 +836,26 @@ void PHY_InitTxPowerLimit(struct adapter *Adapter)
 			for (k = 0; k < MAX_RATE_SECTION_NUM; ++k)
 				for (m = 0; m < CHANNEL_MAX_NUMBER_2G; ++m)
 					for (l = 0; l < MAX_RF_PATH_NUM; ++l)
-						pHalData->TxPwrLimit_2_4G[i][j][k][m][l] = MAX_POWER_INDEX;
+						pHalData->TxPwrLimit_2_4G[i][j]
+									 [k][m]
+									 [l] =
+							MAX_POWER_INDEX;
 	}
 }
 
-void PHY_SetTxPowerLimit(
-	struct adapter *Adapter,
-	u8 *Regulation,
-	u8 *Bandwidth,
-	u8 *RateSection,
-	u8 *RfPath,
-	u8 *Channel,
-	u8 *PowerLimit
-)
+void PHY_SetTxPowerLimit(struct adapter *Adapter, u8 *Regulation, u8 *Bandwidth,
+			 u8 *RateSection, u8 *RfPath, u8 *Channel,
+			 u8 *PowerLimit)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(Adapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 	u8 regulation = 0, bandwidth = 0, rateSection = 0, channel;
 	s8 powerLimit = 0, prevPowerLimit, channelIndex;
 
 	GetU1ByteIntegerFromStringInDecimal((s8 *)Channel, &channel);
 	GetU1ByteIntegerFromStringInDecimal((s8 *)PowerLimit, &powerLimit);
 
-	powerLimit = powerLimit > MAX_POWER_INDEX ? MAX_POWER_INDEX : powerLimit;
+	powerLimit = powerLimit > MAX_POWER_INDEX ? MAX_POWER_INDEX :
+						    powerLimit;
 
 	if (strcmp(Regulation, "FCC") == 0)
 		regulation = 0;
@@ -850,10 +885,13 @@ void PHY_SetTxPowerLimit(
 	if (channelIndex == -1)
 		return;
 
-	prevPowerLimit = pHalData->TxPwrLimit_2_4G[regulation][bandwidth][rateSection][channelIndex][RF_PATH_A];
+	prevPowerLimit =
+		pHalData->TxPwrLimit_2_4G[regulation][bandwidth][rateSection]
+					 [channelIndex][RF_PATH_A];
 
 	if (powerLimit < prevPowerLimit)
-		pHalData->TxPwrLimit_2_4G[regulation][bandwidth][rateSection][channelIndex][RF_PATH_A] = powerLimit;
+		pHalData->TxPwrLimit_2_4G[regulation][bandwidth][rateSection]
+					 [channelIndex][RF_PATH_A] = powerLimit;
 }
 
 void Hal_ChannelPlanToRegulation(struct adapter *Adapter, u16 ChannelPlan)
diff --git a/drivers/staging/rtl8723bs/hal/hal_intf.c b/drivers/staging/rtl8723bs/hal/hal_intf.c
index 9a3ebad35efc0..177a4d3c484b9 100644
--- a/drivers/staging/rtl8723bs/hal/hal_intf.c
+++ b/drivers/staging/rtl8723bs/hal/hal_intf.c
@@ -9,8 +9,9 @@
 
 static void rtw_hal_init_opmode(struct adapter *padapter)
 {
-	enum ndis_802_11_network_infrastructure networkType = Ndis802_11InfrastructureMax;
-	struct  mlme_priv *pmlmepriv = &(padapter->mlmepriv);
+	enum ndis_802_11_network_infrastructure networkType =
+		Ndis802_11InfrastructureMax;
+	struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
 	signed int fw_state;
 
 	fw_state = get_fwstate(pmlmepriv);
@@ -79,17 +80,21 @@ void rtw_hal_get_hwreg(struct adapter *padapter, u8 variable, u8 *val)
 	GetHwReg8723BS(padapter, variable, val);
 }
 
-void rtw_hal_set_hwreg_with_buf(struct adapter *padapter, u8 variable, u8 *pbuf, int len)
+void rtw_hal_set_hwreg_with_buf(struct adapter *padapter, u8 variable, u8 *pbuf,
+				int len)
 {
 	SetHwRegWithBuf8723B(padapter, variable, pbuf, len);
 }
 
-u8 rtw_hal_get_def_var(struct adapter *padapter, enum hal_def_variable eVariable, void *pValue)
+u8 rtw_hal_get_def_var(struct adapter *padapter,
+		       enum hal_def_variable eVariable, void *pValue)
 {
 	return GetHalDefVar8723BSDIO(padapter, eVariable, pValue);
 }
 
-void rtw_hal_set_odm_var(struct adapter *padapter, enum hal_odm_variable eVariable, void *pValue1, bool bSet)
+void rtw_hal_set_odm_var(struct adapter *padapter,
+			 enum hal_odm_variable eVariable, void *pValue1,
+			 bool bSet)
 {
 	SetHalODMVar(padapter, eVariable, pValue1, bSet);
 }
@@ -99,12 +104,13 @@ u8 rtw_hal_check_ips_status(struct adapter *padapter)
 	return CheckIPSStatus(padapter);
 }
 
-int rtw_hal_xmitframe_enqueue(struct adapter *padapter, struct xmit_frame *pxmitframe)
+int rtw_hal_xmitframe_enqueue(struct adapter *padapter,
+			      struct xmit_frame *pxmitframe)
 {
 	return rtl8723bs_hal_xmitframe_enqueue(padapter, pxmitframe);
 }
 
-s32	rtw_hal_xmit(struct adapter *padapter, struct xmit_frame *pxmitframe)
+s32 rtw_hal_xmit(struct adapter *padapter, struct xmit_frame *pxmitframe)
 {
 	if (rtl8723bs_hal_xmit(padapter, pxmitframe))
 		return _FAIL;
@@ -115,7 +121,7 @@ s32	rtw_hal_xmit(struct adapter *padapter, struct xmit_frame *pxmitframe)
 /*
  * [IMPORTANT] This function would be run in interrupt context.
  */
-s32	rtw_hal_mgnt_xmit(struct adapter *padapter, struct xmit_frame *pmgntframe)
+s32 rtw_hal_mgnt_xmit(struct adapter *padapter, struct xmit_frame *pmgntframe)
 {
 	update_mgntframe_attrib_addr(padapter, pmgntframe);
 	/* pframe = (u8 *)(pmgntframe->buf_addr) + TXDESC_OFFSET; */
@@ -130,13 +136,14 @@ s32	rtw_hal_mgnt_xmit(struct adapter *padapter, struct xmit_frame *pmgntframe)
 			pmgntframe->attrib.encrypt = _AES_;
 			pmgntframe->attrib.bswenc = true;
 		}
-		rtw_mgmt_xmitframe_coalesce(padapter, pmgntframe->pkt, pmgntframe);
+		rtw_mgmt_xmitframe_coalesce(padapter, pmgntframe->pkt,
+					    pmgntframe);
 	}
 
 	return rtl8723bs_mgnt_xmit(padapter, pmgntframe);
 }
 
-s32	rtw_hal_init_xmit_priv(struct adapter *padapter)
+s32 rtw_hal_init_xmit_priv(struct adapter *padapter)
 {
 	return rtl8723bs_init_xmit_priv(padapter);
 }
@@ -146,7 +153,7 @@ void rtw_hal_free_xmit_priv(struct adapter *padapter)
 	rtl8723bs_free_xmit_priv(padapter);
 }
 
-s32	rtw_hal_init_recv_priv(struct adapter *padapter)
+s32 rtw_hal_init_recv_priv(struct adapter *padapter)
 {
 	return rtl8723bs_init_recv_priv(padapter);
 }
@@ -175,7 +182,8 @@ void rtw_hal_update_ra_mask(struct sta_info *psta, u8 rssi_level)
 	}
 }
 
-void rtw_hal_add_ra_tid(struct adapter *padapter, u32 bitmap, u8 *arg, u8 rssi_level)
+void rtw_hal_add_ra_tid(struct adapter *padapter, u32 bitmap, u8 *arg,
+			u8 rssi_level)
 {
 	rtl8723b_Add_RateATid(padapter, bitmap, arg, rssi_level);
 }
@@ -184,16 +192,19 @@ u32 rtw_hal_read_bbreg(struct adapter *padapter, u32 RegAddr, u32 BitMask)
 {
 	return PHY_QueryBBReg_8723B(padapter, RegAddr, BitMask);
 }
-void rtw_hal_write_bbreg(struct adapter *padapter, u32 RegAddr, u32 BitMask, u32 Data)
+void rtw_hal_write_bbreg(struct adapter *padapter, u32 RegAddr, u32 BitMask,
+			 u32 Data)
 {
 	PHY_SetBBReg_8723B(padapter, RegAddr, BitMask, Data);
 }
 
-u32 rtw_hal_read_rfreg(struct adapter *padapter, u32 eRFPath, u32 RegAddr, u32 BitMask)
+u32 rtw_hal_read_rfreg(struct adapter *padapter, u32 eRFPath, u32 RegAddr,
+		       u32 BitMask)
 {
 	return PHY_QueryRFReg_8723B(padapter, eRFPath, RegAddr, BitMask);
 }
-void rtw_hal_write_rfreg(struct adapter *padapter, u32 eRFPath, u32 RegAddr, u32 BitMask, u32 Data)
+void rtw_hal_write_rfreg(struct adapter *padapter, u32 eRFPath, u32 RegAddr,
+			 u32 BitMask, u32 Data)
 {
 	PHY_SetRFReg_8723B(padapter, eRFPath, RegAddr, BitMask, Data);
 }
@@ -206,7 +217,8 @@ void rtw_hal_set_chan(struct adapter *padapter, u8 channel)
 void rtw_hal_set_chnl_bw(struct adapter *padapter, u8 channel,
 			 enum channel_width Bandwidth, u8 Offset40, u8 Offset80)
 {
-	PHY_SetSwChnlBWMode8723B(padapter, channel, Bandwidth, Offset40, Offset80);
+	PHY_SetSwChnlBWMode8723B(padapter, channel, Bandwidth, Offset40,
+				 Offset80);
 }
 
 void rtw_hal_dm_watchdog(struct adapter *padapter)
@@ -217,7 +229,8 @@ void rtw_hal_dm_watchdog(struct adapter *padapter)
 void rtw_hal_dm_watchdog_in_lps(struct adapter *padapter)
 {
 	if (adapter_to_pwrctl(padapter)->fw_current_in_ps_mode) {
-		rtl8723b_HalDmWatchDog_in_LPS(padapter); /* this function caller is in interrupt context */
+		rtl8723b_HalDmWatchDog_in_LPS(
+			padapter); /* this function caller is in interrupt context */
 	}
 }
 
@@ -279,7 +292,8 @@ s32 rtw_hal_macid_wakeup(struct adapter *padapter, u32 macid)
 	return _SUCCESS;
 }
 
-s32 rtw_hal_fill_h2c_cmd(struct adapter *padapter, u8 ElementID, u32 CmdLen, u8 *pCmdBuffer)
+s32 rtw_hal_fill_h2c_cmd(struct adapter *padapter, u8 ElementID, u32 CmdLen,
+			 u8 *pCmdBuffer)
 {
 	return FillH2CCmd8723B(padapter, ElementID, CmdLen, pCmdBuffer);
 }
diff --git a/drivers/staging/rtl8723bs/hal/hal_pwr_seq.c b/drivers/staging/rtl8723bs/hal/hal_pwr_seq.c
index 0b60eba128afa..4136685df1dfd 100644
--- a/drivers/staging/rtl8723bs/hal/hal_pwr_seq.c
+++ b/drivers/staging/rtl8723bs/hal/hal_pwr_seq.c
@@ -19,110 +19,83 @@
 
 /* drivers should parse below arrays and do the corresponding actions */
 /* 3 Power on  Array */
-struct wlan_pwr_cfg rtl8723B_power_on_flow[
-	RTL8723B_TRANS_CARDEMU_TO_ACT_STEPS+
-	RTL8723B_TRANS_END_STEPS
-] = {
-	RTL8723B_TRANS_CARDEMU_TO_ACT
-	RTL8723B_TRANS_END
+struct wlan_pwr_cfg rtl8723B_power_on_flow[RTL8723B_TRANS_CARDEMU_TO_ACT_STEPS +
+					   RTL8723B_TRANS_END_STEPS] = {
+	RTL8723B_TRANS_CARDEMU_TO_ACT RTL8723B_TRANS_END
 };
 
 /* 3Radio off GPIO Array */
-struct wlan_pwr_cfg rtl8723B_radio_off_flow[
-	RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+
-	RTL8723B_TRANS_END_STEPS
-] = {
-	RTL8723B_TRANS_ACT_TO_CARDEMU
-	RTL8723B_TRANS_END
+struct wlan_pwr_cfg rtl8723B_radio_off_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+					    RTL8723B_TRANS_END_STEPS] = {
+	RTL8723B_TRANS_ACT_TO_CARDEMU RTL8723B_TRANS_END
 };
 
 /* 3Card Disable Array */
-struct wlan_pwr_cfg rtl8723B_card_disable_flow[
-	RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+
-	RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS+
-	RTL8723B_TRANS_END_STEPS
-] = {
-	RTL8723B_TRANS_ACT_TO_CARDEMU
-	RTL8723B_TRANS_CARDEMU_TO_CARDDIS
-	RTL8723B_TRANS_END
-};
+struct wlan_pwr_cfg
+	rtl8723B_card_disable_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+				   RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS +
+				   RTL8723B_TRANS_END_STEPS] = {
+		RTL8723B_TRANS_ACT_TO_CARDEMU RTL8723B_TRANS_CARDEMU_TO_CARDDIS
+			RTL8723B_TRANS_END
+	};
 
 /* 3 Card Enable Array */
-struct wlan_pwr_cfg rtl8723B_card_enable_flow[
-	RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+
-	RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS+
-	RTL8723B_TRANS_END_STEPS
-] = {
-	RTL8723B_TRANS_CARDDIS_TO_CARDEMU
-	RTL8723B_TRANS_CARDEMU_TO_ACT
-	RTL8723B_TRANS_END
-};
+struct wlan_pwr_cfg
+	rtl8723B_card_enable_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+				  RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS +
+				  RTL8723B_TRANS_END_STEPS] = {
+		RTL8723B_TRANS_CARDDIS_TO_CARDEMU RTL8723B_TRANS_CARDEMU_TO_ACT
+			RTL8723B_TRANS_END
+	};
 
 /* 3Suspend Array */
-struct wlan_pwr_cfg rtl8723B_suspend_flow[
-	RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+
-	RTL8723B_TRANS_CARDEMU_TO_SUS_STEPS+
-	RTL8723B_TRANS_END_STEPS
-] = {
-	RTL8723B_TRANS_ACT_TO_CARDEMU
-	RTL8723B_TRANS_CARDEMU_TO_SUS
-	RTL8723B_TRANS_END
+struct wlan_pwr_cfg rtl8723B_suspend_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+					  RTL8723B_TRANS_CARDEMU_TO_SUS_STEPS +
+					  RTL8723B_TRANS_END_STEPS] = {
+	RTL8723B_TRANS_ACT_TO_CARDEMU RTL8723B_TRANS_CARDEMU_TO_SUS
+		RTL8723B_TRANS_END
 };
 
 /* 3 Resume Array */
-struct wlan_pwr_cfg rtl8723B_resume_flow[
-	RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+
-	RTL8723B_TRANS_CARDEMU_TO_SUS_STEPS+
-	RTL8723B_TRANS_END_STEPS
-] = {
-	RTL8723B_TRANS_SUS_TO_CARDEMU
-	RTL8723B_TRANS_CARDEMU_TO_ACT
-	RTL8723B_TRANS_END
+struct wlan_pwr_cfg rtl8723B_resume_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+					 RTL8723B_TRANS_CARDEMU_TO_SUS_STEPS +
+					 RTL8723B_TRANS_END_STEPS] = {
+	RTL8723B_TRANS_SUS_TO_CARDEMU RTL8723B_TRANS_CARDEMU_TO_ACT
+		RTL8723B_TRANS_END
 };
 
 /* 3HWPDN Array */
-struct wlan_pwr_cfg rtl8723B_hwpdn_flow[
-	RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+
-	RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS+
-	RTL8723B_TRANS_END_STEPS
-] = {
-	RTL8723B_TRANS_ACT_TO_CARDEMU
-	RTL8723B_TRANS_CARDEMU_TO_PDN
-	RTL8723B_TRANS_END
+struct wlan_pwr_cfg rtl8723B_hwpdn_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+					RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS +
+					RTL8723B_TRANS_END_STEPS] = {
+	RTL8723B_TRANS_ACT_TO_CARDEMU RTL8723B_TRANS_CARDEMU_TO_PDN
+		RTL8723B_TRANS_END
 };
 
 /* 3 Enter LPS */
-struct wlan_pwr_cfg rtl8723B_enter_lps_flow[
-	RTL8723B_TRANS_ACT_TO_LPS_STEPS+RTL8723B_TRANS_END_STEPS
-] = {
+struct wlan_pwr_cfg rtl8723B_enter_lps_flow[RTL8723B_TRANS_ACT_TO_LPS_STEPS +
+					    RTL8723B_TRANS_END_STEPS] = {
 	/* FW behavior */
-	RTL8723B_TRANS_ACT_TO_LPS
-	RTL8723B_TRANS_END
+	RTL8723B_TRANS_ACT_TO_LPS RTL8723B_TRANS_END
 };
 
 /* 3 Leave LPS */
-struct wlan_pwr_cfg rtl8723B_leave_lps_flow[
-	RTL8723B_TRANS_LPS_TO_ACT_STEPS+RTL8723B_TRANS_END_STEPS
-] = {
+struct wlan_pwr_cfg rtl8723B_leave_lps_flow[RTL8723B_TRANS_LPS_TO_ACT_STEPS +
+					    RTL8723B_TRANS_END_STEPS] = {
 	/* FW behavior */
-	RTL8723B_TRANS_LPS_TO_ACT
-	RTL8723B_TRANS_END
+	RTL8723B_TRANS_LPS_TO_ACT RTL8723B_TRANS_END
 };
 
 /* 3 Enter SW LPS */
-struct wlan_pwr_cfg rtl8723B_enter_swlps_flow[
-	RTL8723B_TRANS_ACT_TO_SWLPS_STEPS+RTL8723B_TRANS_END_STEPS
-] = {
+struct wlan_pwr_cfg rtl8723B_enter_swlps_flow[RTL8723B_TRANS_ACT_TO_SWLPS_STEPS +
+					      RTL8723B_TRANS_END_STEPS] = {
 	/* SW behavior */
-	RTL8723B_TRANS_ACT_TO_SWLPS
-	RTL8723B_TRANS_END
+	RTL8723B_TRANS_ACT_TO_SWLPS RTL8723B_TRANS_END
 };
 
 /* 3 Leave SW LPS */
-struct wlan_pwr_cfg rtl8723B_leave_swlps_flow[
-	RTL8723B_TRANS_SWLPS_TO_ACT_STEPS+RTL8723B_TRANS_END_STEPS
-] = {
+struct wlan_pwr_cfg rtl8723B_leave_swlps_flow[RTL8723B_TRANS_SWLPS_TO_ACT_STEPS +
+					      RTL8723B_TRANS_END_STEPS] = {
 	/* SW behavior */
-	RTL8723B_TRANS_SWLPS_TO_ACT
-	RTL8723B_TRANS_END
+	RTL8723B_TRANS_SWLPS_TO_ACT RTL8723B_TRANS_END
 };
diff --git a/drivers/staging/rtl8723bs/hal/hal_sdio.c b/drivers/staging/rtl8723bs/hal/hal_sdio.c
index 1a865d4de8ac7..31a262286a0e8 100644
--- a/drivers/staging/rtl8723bs/hal/hal_sdio.c
+++ b/drivers/staging/rtl8723bs/hal/hal_sdio.c
@@ -10,7 +10,7 @@
 
 u8 rtw_hal_sdio_max_txoqt_free_space(struct adapter *padapter)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
 	if (pHalData->SdioTxOQTMaxFreeSpace < 8)
 		pHalData->SdioTxOQTMaxFreeSpace = 8;
@@ -18,23 +18,23 @@ u8 rtw_hal_sdio_max_txoqt_free_space(struct adapter *padapter)
 	return pHalData->SdioTxOQTMaxFreeSpace;
 }
 
-u8 rtw_hal_sdio_query_tx_freepage(
-	struct adapter *padapter, u8 PageIdx, u8 RequiredPageNum
-)
+u8 rtw_hal_sdio_query_tx_freepage(struct adapter *padapter, u8 PageIdx,
+				  u8 RequiredPageNum)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
-	if ((pHalData->SdioTxFIFOFreePage[PageIdx]+pHalData->SdioTxFIFOFreePage[PUBLIC_QUEUE_IDX]) >= (RequiredPageNum))
+	if ((pHalData->SdioTxFIFOFreePage[PageIdx] +
+	     pHalData->SdioTxFIFOFreePage[PUBLIC_QUEUE_IDX]) >=
+	    (RequiredPageNum))
 		return true;
 	else
 		return false;
 }
 
-void rtw_hal_sdio_update_tx_freepage(
-	struct adapter *padapter, u8 PageIdx, u8 RequiredPageNum
-)
+void rtw_hal_sdio_update_tx_freepage(struct adapter *padapter, u8 PageIdx,
+				     u8 RequiredPageNum)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	u8 DedicatedPgNum = 0;
 	u8 RequiredPublicFreePgNum = 0;
 	/* _irqL irql; */
@@ -47,17 +47,17 @@ void rtw_hal_sdio_update_tx_freepage(
 	} else {
 		pHalData->SdioTxFIFOFreePage[PageIdx] = 0;
 		RequiredPublicFreePgNum = RequiredPageNum - DedicatedPgNum;
-		pHalData->SdioTxFIFOFreePage[PUBLIC_QUEUE_IDX] -= RequiredPublicFreePgNum;
+		pHalData->SdioTxFIFOFreePage[PUBLIC_QUEUE_IDX] -=
+			RequiredPublicFreePgNum;
 	}
 
 	/* spin_unlock_bh(&pHalData->SdioTxFIFOFreePageLock); */
 }
 
-void rtw_hal_set_sdio_tx_max_length(
-	struct adapter *padapter, u8 numHQ, u8 numNQ, u8 numLQ, u8 numPubQ
-)
+void rtw_hal_set_sdio_tx_max_length(struct adapter *padapter, u8 numHQ,
+				    u8 numNQ, u8 numLQ, u8 numPubQ)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	u32 page_size;
 	u32 lenHQ, lenNQ, lenLQ;
 
@@ -78,7 +78,7 @@ void rtw_hal_set_sdio_tx_max_length(
 u32 rtw_hal_get_sdio_tx_max_length(struct adapter *padapter, u8 queue_idx)
 {
 	struct dvobj_priv *pdvobjpriv = adapter_to_dvobj(padapter);
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	u32 deviceId, max_len;
 
 	deviceId = ffaddr2deviceId(pdvobjpriv, queue_idx);
diff --git a/drivers/staging/rtl8723bs/hal/odm.c b/drivers/staging/rtl8723bs/hal/odm.c
index 180aac640a14d..4f6ebea0c5814 100644
--- a/drivers/staging/rtl8723bs/hal/odm.c
+++ b/drivers/staging/rtl8723bs/hal/odm.c
@@ -52,87 +52,90 @@ u32 OFDMSwingTable_New[OFDM_TABLE_SIZE] = {
 	0x6b8001ae, /*  39, +4.5dB */
 	0x71c001c7, /*  40, +5.0dB */
 	0x788001e2, /*  41, +5.5dB */
-	0x7f8001fe  /*  42, +6.0dB */
+	0x7f8001fe /*  42, +6.0dB */
 };
 
 u8 CCKSwingTable_Ch1_Ch13_New[CCK_TABLE_SIZE][8] = {
-	{0x09, 0x08, 0x07, 0x06, 0x04, 0x03, 0x01, 0x01}, /*   0, -16.0dB */
-	{0x09, 0x09, 0x08, 0x06, 0x05, 0x03, 0x01, 0x01}, /*   1, -15.5dB */
-	{0x0a, 0x09, 0x08, 0x07, 0x05, 0x03, 0x02, 0x01}, /*   2, -15.0dB */
-	{0x0a, 0x0a, 0x09, 0x07, 0x05, 0x03, 0x02, 0x01}, /*   3, -14.5dB */
-	{0x0b, 0x0a, 0x09, 0x08, 0x06, 0x04, 0x02, 0x01}, /*   4, -14.0dB */
-	{0x0b, 0x0b, 0x0a, 0x08, 0x06, 0x04, 0x02, 0x01}, /*   5, -13.5dB */
-	{0x0c, 0x0c, 0x0a, 0x09, 0x06, 0x04, 0x02, 0x01}, /*   6, -13.0dB */
-	{0x0d, 0x0c, 0x0b, 0x09, 0x07, 0x04, 0x02, 0x01}, /*   7, -12.5dB */
-	{0x0d, 0x0d, 0x0c, 0x0a, 0x07, 0x05, 0x02, 0x01}, /*   8, -12.0dB */
-	{0x0e, 0x0e, 0x0c, 0x0a, 0x08, 0x05, 0x02, 0x01}, /*   9, -11.5dB */
-	{0x0f, 0x0f, 0x0d, 0x0b, 0x08, 0x05, 0x03, 0x01}, /*  10, -11.0dB */
-	{0x10, 0x10, 0x0e, 0x0b, 0x08, 0x05, 0x03, 0x01}, /*  11, -10.5dB */
-	{0x11, 0x11, 0x0f, 0x0c, 0x09, 0x06, 0x03, 0x01}, /*  12, -10.0dB */
-	{0x12, 0x12, 0x0f, 0x0c, 0x09, 0x06, 0x03, 0x01}, /*  13, -9.5dB */
-	{0x13, 0x13, 0x10, 0x0d, 0x0a, 0x06, 0x03, 0x01}, /*  14, -9.0dB */
-	{0x14, 0x14, 0x11, 0x0e, 0x0b, 0x07, 0x03, 0x02}, /*  15, -8.5dB */
-	{0x16, 0x15, 0x12, 0x0f, 0x0b, 0x07, 0x04, 0x01}, /*  16, -8.0dB */
-	{0x17, 0x16, 0x13, 0x10, 0x0c, 0x08, 0x04, 0x02}, /*  17, -7.5dB */
-	{0x18, 0x17, 0x15, 0x11, 0x0c, 0x08, 0x04, 0x02}, /*  18, -7.0dB */
-	{0x1a, 0x19, 0x16, 0x12, 0x0d, 0x09, 0x04, 0x02}, /*  19, -6.5dB */
-	{0x1b, 0x1a, 0x17, 0x13, 0x0e, 0x09, 0x04, 0x02}, /*  20, -6.0dB */
-	{0x1d, 0x1c, 0x18, 0x14, 0x0f, 0x0a, 0x05, 0x02}, /*  21, -5.5dB */
-	{0x1f, 0x1e, 0x1a, 0x15, 0x10, 0x0a, 0x05, 0x02}, /*  22, -5.0dB */
-	{0x20, 0x20, 0x1b, 0x16, 0x11, 0x08, 0x05, 0x02}, /*  23, -4.5dB */
-	{0x22, 0x21, 0x1d, 0x18, 0x11, 0x0b, 0x06, 0x02}, /*  24, -4.0dB */
-	{0x24, 0x23, 0x1f, 0x19, 0x13, 0x0c, 0x06, 0x03}, /*  25, -3.5dB */
-	{0x26, 0x25, 0x21, 0x1b, 0x14, 0x0d, 0x06, 0x03}, /*  26, -3.0dB */
-	{0x28, 0x28, 0x22, 0x1c, 0x15, 0x0d, 0x07, 0x03}, /*  27, -2.5dB */
-	{0x2b, 0x2a, 0x25, 0x1e, 0x16, 0x0e, 0x07, 0x03}, /*  28, -2.0dB */
-	{0x2d, 0x2d, 0x27, 0x1f, 0x18, 0x0f, 0x08, 0x03}, /*  29, -1.5dB */
-	{0x30, 0x2f, 0x29, 0x21, 0x19, 0x10, 0x08, 0x03}, /*  30, -1.0dB */
-	{0x33, 0x32, 0x2b, 0x23, 0x1a, 0x11, 0x08, 0x04}, /*  31, -0.5dB */
-	{0x36, 0x35, 0x2e, 0x25, 0x1c, 0x12, 0x09, 0x04}	/*  32, +0dB */
+	{ 0x09, 0x08, 0x07, 0x06, 0x04, 0x03, 0x01, 0x01 }, /*   0, -16.0dB */
+	{ 0x09, 0x09, 0x08, 0x06, 0x05, 0x03, 0x01, 0x01 }, /*   1, -15.5dB */
+	{ 0x0a, 0x09, 0x08, 0x07, 0x05, 0x03, 0x02, 0x01 }, /*   2, -15.0dB */
+	{ 0x0a, 0x0a, 0x09, 0x07, 0x05, 0x03, 0x02, 0x01 }, /*   3, -14.5dB */
+	{ 0x0b, 0x0a, 0x09, 0x08, 0x06, 0x04, 0x02, 0x01 }, /*   4, -14.0dB */
+	{ 0x0b, 0x0b, 0x0a, 0x08, 0x06, 0x04, 0x02, 0x01 }, /*   5, -13.5dB */
+	{ 0x0c, 0x0c, 0x0a, 0x09, 0x06, 0x04, 0x02, 0x01 }, /*   6, -13.0dB */
+	{ 0x0d, 0x0c, 0x0b, 0x09, 0x07, 0x04, 0x02, 0x01 }, /*   7, -12.5dB */
+	{ 0x0d, 0x0d, 0x0c, 0x0a, 0x07, 0x05, 0x02, 0x01 }, /*   8, -12.0dB */
+	{ 0x0e, 0x0e, 0x0c, 0x0a, 0x08, 0x05, 0x02, 0x01 }, /*   9, -11.5dB */
+	{ 0x0f, 0x0f, 0x0d, 0x0b, 0x08, 0x05, 0x03, 0x01 }, /*  10, -11.0dB */
+	{ 0x10, 0x10, 0x0e, 0x0b, 0x08, 0x05, 0x03, 0x01 }, /*  11, -10.5dB */
+	{ 0x11, 0x11, 0x0f, 0x0c, 0x09, 0x06, 0x03, 0x01 }, /*  12, -10.0dB */
+	{ 0x12, 0x12, 0x0f, 0x0c, 0x09, 0x06, 0x03, 0x01 }, /*  13, -9.5dB */
+	{ 0x13, 0x13, 0x10, 0x0d, 0x0a, 0x06, 0x03, 0x01 }, /*  14, -9.0dB */
+	{ 0x14, 0x14, 0x11, 0x0e, 0x0b, 0x07, 0x03, 0x02 }, /*  15, -8.5dB */
+	{ 0x16, 0x15, 0x12, 0x0f, 0x0b, 0x07, 0x04, 0x01 }, /*  16, -8.0dB */
+	{ 0x17, 0x16, 0x13, 0x10, 0x0c, 0x08, 0x04, 0x02 }, /*  17, -7.5dB */
+	{ 0x18, 0x17, 0x15, 0x11, 0x0c, 0x08, 0x04, 0x02 }, /*  18, -7.0dB */
+	{ 0x1a, 0x19, 0x16, 0x12, 0x0d, 0x09, 0x04, 0x02 }, /*  19, -6.5dB */
+	{ 0x1b, 0x1a, 0x17, 0x13, 0x0e, 0x09, 0x04, 0x02 }, /*  20, -6.0dB */
+	{ 0x1d, 0x1c, 0x18, 0x14, 0x0f, 0x0a, 0x05, 0x02 }, /*  21, -5.5dB */
+	{ 0x1f, 0x1e, 0x1a, 0x15, 0x10, 0x0a, 0x05, 0x02 }, /*  22, -5.0dB */
+	{ 0x20, 0x20, 0x1b, 0x16, 0x11, 0x08, 0x05, 0x02 }, /*  23, -4.5dB */
+	{ 0x22, 0x21, 0x1d, 0x18, 0x11, 0x0b, 0x06, 0x02 }, /*  24, -4.0dB */
+	{ 0x24, 0x23, 0x1f, 0x19, 0x13, 0x0c, 0x06, 0x03 }, /*  25, -3.5dB */
+	{ 0x26, 0x25, 0x21, 0x1b, 0x14, 0x0d, 0x06, 0x03 }, /*  26, -3.0dB */
+	{ 0x28, 0x28, 0x22, 0x1c, 0x15, 0x0d, 0x07, 0x03 }, /*  27, -2.5dB */
+	{ 0x2b, 0x2a, 0x25, 0x1e, 0x16, 0x0e, 0x07, 0x03 }, /*  28, -2.0dB */
+	{ 0x2d, 0x2d, 0x27, 0x1f, 0x18, 0x0f, 0x08, 0x03 }, /*  29, -1.5dB */
+	{ 0x30, 0x2f, 0x29, 0x21, 0x19, 0x10, 0x08, 0x03 }, /*  30, -1.0dB */
+	{ 0x33, 0x32, 0x2b, 0x23, 0x1a, 0x11, 0x08, 0x04 }, /*  31, -0.5dB */
+	{ 0x36, 0x35, 0x2e, 0x25, 0x1c, 0x12, 0x09, 0x04 } /*  32, +0dB */
 };
 
 u8 CCKSwingTable_Ch14_New[CCK_TABLE_SIZE][8] = {
-	{0x09, 0x08, 0x07, 0x04, 0x00, 0x00, 0x00, 0x00}, /*   0, -16.0dB */
-	{0x09, 0x09, 0x08, 0x05, 0x00, 0x00, 0x00, 0x00}, /*   1, -15.5dB */
-	{0x0a, 0x09, 0x08, 0x05, 0x00, 0x00, 0x00, 0x00}, /*   2, -15.0dB */
-	{0x0a, 0x0a, 0x09, 0x05, 0x00, 0x00, 0x00, 0x00}, /*   3, -14.5dB */
-	{0x0b, 0x0a, 0x09, 0x05, 0x00, 0x00, 0x00, 0x00}, /*   4, -14.0dB */
-	{0x0b, 0x0b, 0x0a, 0x06, 0x00, 0x00, 0x00, 0x00}, /*   5, -13.5dB */
-	{0x0c, 0x0c, 0x0a, 0x06, 0x00, 0x00, 0x00, 0x00}, /*   6, -13.0dB */
-	{0x0d, 0x0c, 0x0b, 0x06, 0x00, 0x00, 0x00, 0x00}, /*   7, -12.5dB */
-	{0x0d, 0x0d, 0x0c, 0x07, 0x00, 0x00, 0x00, 0x00}, /*   8, -12.0dB */
-	{0x0e, 0x0e, 0x0c, 0x07, 0x00, 0x00, 0x00, 0x00}, /*   9, -11.5dB */
-	{0x0f, 0x0f, 0x0d, 0x08, 0x00, 0x00, 0x00, 0x00}, /*  10, -11.0dB */
-	{0x10, 0x10, 0x0e, 0x08, 0x00, 0x00, 0x00, 0x00}, /*  11, -10.5dB */
-	{0x11, 0x11, 0x0f, 0x09, 0x00, 0x00, 0x00, 0x00}, /*  12, -10.0dB */
-	{0x12, 0x12, 0x0f, 0x09, 0x00, 0x00, 0x00, 0x00}, /*  13, -9.5dB */
-	{0x13, 0x13, 0x10, 0x0a, 0x00, 0x00, 0x00, 0x00}, /*  14, -9.0dB */
-	{0x14, 0x14, 0x11, 0x0a, 0x00, 0x00, 0x00, 0x00}, /*  15, -8.5dB */
-	{0x16, 0x15, 0x12, 0x0b, 0x00, 0x00, 0x00, 0x00}, /*  16, -8.0dB */
-	{0x17, 0x16, 0x13, 0x0b, 0x00, 0x00, 0x00, 0x00}, /*  17, -7.5dB */
-	{0x18, 0x17, 0x15, 0x0c, 0x00, 0x00, 0x00, 0x00}, /*  18, -7.0dB */
-	{0x1a, 0x19, 0x16, 0x0d, 0x00, 0x00, 0x00, 0x00}, /*  19, -6.5dB */
-	{0x1b, 0x1a, 0x17, 0x0e, 0x00, 0x00, 0x00, 0x00}, /*  20, -6.0dB */
-	{0x1d, 0x1c, 0x18, 0x0e, 0x00, 0x00, 0x00, 0x00}, /*  21, -5.5dB */
-	{0x1f, 0x1e, 0x1a, 0x0f, 0x00, 0x00, 0x00, 0x00}, /*  22, -5.0dB */
-	{0x20, 0x20, 0x1b, 0x10, 0x00, 0x00, 0x00, 0x00}, /*  23, -4.5dB */
-	{0x22, 0x21, 0x1d, 0x11, 0x00, 0x00, 0x00, 0x00}, /*  24, -4.0dB */
-	{0x24, 0x23, 0x1f, 0x12, 0x00, 0x00, 0x00, 0x00}, /*  25, -3.5dB */
-	{0x26, 0x25, 0x21, 0x13, 0x00, 0x00, 0x00, 0x00}, /*  26, -3.0dB */
-	{0x28, 0x28, 0x24, 0x14, 0x00, 0x00, 0x00, 0x00}, /*  27, -2.5dB */
-	{0x2b, 0x2a, 0x25, 0x15, 0x00, 0x00, 0x00, 0x00}, /*  28, -2.0dB */
-	{0x2d, 0x2d, 0x17, 0x17, 0x00, 0x00, 0x00, 0x00}, /*  29, -1.5dB */
-	{0x30, 0x2f, 0x29, 0x18, 0x00, 0x00, 0x00, 0x00}, /*  30, -1.0dB */
-	{0x33, 0x32, 0x2b, 0x19, 0x00, 0x00, 0x00, 0x00}, /*  31, -0.5dB */
-	{0x36, 0x35, 0x2e, 0x1b, 0x00, 0x00, 0x00, 0x00}	/*  32, +0dB */
+	{ 0x09, 0x08, 0x07, 0x04, 0x00, 0x00, 0x00, 0x00 }, /*   0, -16.0dB */
+	{ 0x09, 0x09, 0x08, 0x05, 0x00, 0x00, 0x00, 0x00 }, /*   1, -15.5dB */
+	{ 0x0a, 0x09, 0x08, 0x05, 0x00, 0x00, 0x00, 0x00 }, /*   2, -15.0dB */
+	{ 0x0a, 0x0a, 0x09, 0x05, 0x00, 0x00, 0x00, 0x00 }, /*   3, -14.5dB */
+	{ 0x0b, 0x0a, 0x09, 0x05, 0x00, 0x00, 0x00, 0x00 }, /*   4, -14.0dB */
+	{ 0x0b, 0x0b, 0x0a, 0x06, 0x00, 0x00, 0x00, 0x00 }, /*   5, -13.5dB */
+	{ 0x0c, 0x0c, 0x0a, 0x06, 0x00, 0x00, 0x00, 0x00 }, /*   6, -13.0dB */
+	{ 0x0d, 0x0c, 0x0b, 0x06, 0x00, 0x00, 0x00, 0x00 }, /*   7, -12.5dB */
+	{ 0x0d, 0x0d, 0x0c, 0x07, 0x00, 0x00, 0x00, 0x00 }, /*   8, -12.0dB */
+	{ 0x0e, 0x0e, 0x0c, 0x07, 0x00, 0x00, 0x00, 0x00 }, /*   9, -11.5dB */
+	{ 0x0f, 0x0f, 0x0d, 0x08, 0x00, 0x00, 0x00, 0x00 }, /*  10, -11.0dB */
+	{ 0x10, 0x10, 0x0e, 0x08, 0x00, 0x00, 0x00, 0x00 }, /*  11, -10.5dB */
+	{ 0x11, 0x11, 0x0f, 0x09, 0x00, 0x00, 0x00, 0x00 }, /*  12, -10.0dB */
+	{ 0x12, 0x12, 0x0f, 0x09, 0x00, 0x00, 0x00, 0x00 }, /*  13, -9.5dB */
+	{ 0x13, 0x13, 0x10, 0x0a, 0x00, 0x00, 0x00, 0x00 }, /*  14, -9.0dB */
+	{ 0x14, 0x14, 0x11, 0x0a, 0x00, 0x00, 0x00, 0x00 }, /*  15, -8.5dB */
+	{ 0x16, 0x15, 0x12, 0x0b, 0x00, 0x00, 0x00, 0x00 }, /*  16, -8.0dB */
+	{ 0x17, 0x16, 0x13, 0x0b, 0x00, 0x00, 0x00, 0x00 }, /*  17, -7.5dB */
+	{ 0x18, 0x17, 0x15, 0x0c, 0x00, 0x00, 0x00, 0x00 }, /*  18, -7.0dB */
+	{ 0x1a, 0x19, 0x16, 0x0d, 0x00, 0x00, 0x00, 0x00 }, /*  19, -6.5dB */
+	{ 0x1b, 0x1a, 0x17, 0x0e, 0x00, 0x00, 0x00, 0x00 }, /*  20, -6.0dB */
+	{ 0x1d, 0x1c, 0x18, 0x0e, 0x00, 0x00, 0x00, 0x00 }, /*  21, -5.5dB */
+	{ 0x1f, 0x1e, 0x1a, 0x0f, 0x00, 0x00, 0x00, 0x00 }, /*  22, -5.0dB */
+	{ 0x20, 0x20, 0x1b, 0x10, 0x00, 0x00, 0x00, 0x00 }, /*  23, -4.5dB */
+	{ 0x22, 0x21, 0x1d, 0x11, 0x00, 0x00, 0x00, 0x00 }, /*  24, -4.0dB */
+	{ 0x24, 0x23, 0x1f, 0x12, 0x00, 0x00, 0x00, 0x00 }, /*  25, -3.5dB */
+	{ 0x26, 0x25, 0x21, 0x13, 0x00, 0x00, 0x00, 0x00 }, /*  26, -3.0dB */
+	{ 0x28, 0x28, 0x24, 0x14, 0x00, 0x00, 0x00, 0x00 }, /*  27, -2.5dB */
+	{ 0x2b, 0x2a, 0x25, 0x15, 0x00, 0x00, 0x00, 0x00 }, /*  28, -2.0dB */
+	{ 0x2d, 0x2d, 0x17, 0x17, 0x00, 0x00, 0x00, 0x00 }, /*  29, -1.5dB */
+	{ 0x30, 0x2f, 0x29, 0x18, 0x00, 0x00, 0x00, 0x00 }, /*  30, -1.0dB */
+	{ 0x33, 0x32, 0x2b, 0x19, 0x00, 0x00, 0x00, 0x00 }, /*  31, -0.5dB */
+	{ 0x36, 0x35, 0x2e, 0x1b, 0x00, 0x00, 0x00, 0x00 } /*  32, +0dB */
 };
 
 /* Remove Edca by Yu Chen */
 
 static void odm_CommonInfoSelfInit(struct dm_odm_t *pDM_Odm)
 {
-	pDM_Odm->bCckHighPower = (bool) PHY_QueryBBReg(pDM_Odm->Adapter, ODM_REG(CCK_RPT_FORMAT), ODM_BIT(CCK_RPT_FORMAT));
-	pDM_Odm->RFPathRxEnable = (u8) PHY_QueryBBReg(pDM_Odm->Adapter, ODM_REG(BB_RX_PATH), ODM_BIT(BB_RX_PATH));
+	pDM_Odm->bCckHighPower = (bool)PHY_QueryBBReg(pDM_Odm->Adapter,
+						      ODM_REG(CCK_RPT_FORMAT),
+						      ODM_BIT(CCK_RPT_FORMAT));
+	pDM_Odm->RFPathRxEnable = (u8)PHY_QueryBBReg(
+		pDM_Odm->Adapter, ODM_REG(BB_RX_PATH), ODM_BIT(BB_RX_PATH));
 
 	pDM_Odm->TxRate = 0xFF;
 }
@@ -141,13 +144,13 @@ static void odm_CommonInfoSelfUpdate(struct dm_odm_t *pDM_Odm)
 {
 	u8 EntryCnt = 0;
 	u8 i;
-	PSTA_INFO_T	pEntry;
+	PSTA_INFO_T pEntry;
 
 	if (*(pDM_Odm->pBandWidth) == ODM_BW40M) {
 		if (*(pDM_Odm->pSecChOffset) == 1)
-			pDM_Odm->ControlChannel = *(pDM_Odm->pChannel)-2;
+			pDM_Odm->ControlChannel = *(pDM_Odm->pChannel) - 2;
 		else if (*(pDM_Odm->pSecChOffset) == 2)
-			pDM_Odm->ControlChannel = *(pDM_Odm->pChannel)+2;
+			pDM_Odm->ControlChannel = *(pDM_Odm->pChannel) + 2;
 	} else
 		pDM_Odm->ControlChannel = *(pDM_Odm->pChannel);
 
@@ -187,14 +190,10 @@ static void odm_RateAdaptiveMaskInit(struct dm_odm_t *pDM_Odm)
 	pOdmRA->LowRSSIThresh = 20;
 }
 
-u32 ODM_Get_Rate_Bitmap(
-	struct dm_odm_t *pDM_Odm,
-	u32 macid,
-	u32 ra_mask,
-	u8 rssi_level
-)
+u32 ODM_Get_Rate_Bitmap(struct dm_odm_t *pDM_Odm, u32 macid, u32 ra_mask,
+			u8 rssi_level)
 {
-	PSTA_INFO_T	pEntry;
+	PSTA_INFO_T pEntry;
 	u32 rate_bitmap = 0;
 	u8 WirelessMode;
 
@@ -206,7 +205,7 @@ u32 ODM_Get_Rate_Bitmap(
 
 	switch (WirelessMode) {
 	case ODM_WM_B:
-		if (ra_mask & 0x0000000c)		/* 11M or 5.5M enable */
+		if (ra_mask & 0x0000000c) /* 11M or 5.5M enable */
 			rate_bitmap = 0x0000000d;
 		else
 			rate_bitmap = 0x0000000f;
@@ -219,7 +218,7 @@ u32 ODM_Get_Rate_Bitmap(
 			rate_bitmap = 0x00000ff0;
 		break;
 
-	case (ODM_WM_B|ODM_WM_G):
+	case (ODM_WM_B | ODM_WM_G):
 		if (rssi_level == DM_RATR_STA_HIGH)
 			rate_bitmap = 0x00000f00;
 		else if (rssi_level == DM_RATR_STA_MIDDLE)
@@ -228,9 +227,9 @@ u32 ODM_Get_Rate_Bitmap(
 			rate_bitmap = 0x00000ff5;
 		break;
 
-	case (ODM_WM_B|ODM_WM_G|ODM_WM_N24G):
-	case (ODM_WM_B|ODM_WM_N24G):
-	case (ODM_WM_G|ODM_WM_N24G):
+	case (ODM_WM_B | ODM_WM_G | ODM_WM_N24G):
+	case (ODM_WM_B | ODM_WM_N24G):
+	case (ODM_WM_G | ODM_WM_N24G):
 		if (rssi_level == DM_RATR_STA_HIGH)
 			rate_bitmap = 0x000f0000;
 		else if (rssi_level == DM_RATR_STA_MIDDLE)
@@ -249,13 +248,12 @@ u32 ODM_Get_Rate_Bitmap(
 	}
 
 	return ra_mask & rate_bitmap;
-
 }
 
 static void odm_RefreshRateAdaptiveMaskCE(struct dm_odm_t *pDM_Odm)
 {
 	u8 i;
-	struct adapter *padapter =  pDM_Odm->Adapter;
+	struct adapter *padapter = pDM_Odm->Adapter;
 
 	if (padapter->bDriverStopped)
 		return;
@@ -267,13 +265,18 @@ static void odm_RefreshRateAdaptiveMaskCE(struct dm_odm_t *pDM_Odm)
 		PSTA_INFO_T pstat = pDM_Odm->pODM_StaInfo[i];
 
 		if (IS_STA_VALID(pstat)) {
-			if (is_multicast_ether_addr(pstat->hwaddr))  /* if (psta->mac_id == 1) */
+			if (is_multicast_ether_addr(
+				    pstat->hwaddr)) /* if (psta->mac_id == 1) */
 				continue;
 
-			if (true == ODM_RAStateCheck(pDM_Odm, pstat->rssi_stat.UndecoratedSmoothedPWDB, false, &pstat->rssi_level)) {
-				rtw_hal_update_ra_mask(pstat, pstat->rssi_level);
+			if (true ==
+			    ODM_RAStateCheck(
+				    pDM_Odm,
+				    pstat->rssi_stat.UndecoratedSmoothedPWDB,
+				    false, &pstat->rssi_level)) {
+				rtw_hal_update_ra_mask(pstat,
+						       pstat->rssi_level);
 			}
-
 		}
 	}
 }
@@ -297,7 +300,6 @@ static void odm_RefreshRateAdaptiveMaskCE(struct dm_odm_t *pDM_Odm)
  */
 static void odm_RefreshRateAdaptiveMask(struct dm_odm_t *pDM_Odm)
 {
-
 	if (!(pDM_Odm->SupportAbility & ODM_BB_RA_MASK))
 		return;
 
@@ -306,12 +308,8 @@ static void odm_RefreshRateAdaptiveMask(struct dm_odm_t *pDM_Odm)
 
 /*  Return Value: bool */
 /*  - true: RATRState is changed. */
-bool ODM_RAStateCheck(
-	struct dm_odm_t *pDM_Odm,
-	s32 RSSI,
-	bool bForceUpdate,
-	u8 *pRATRState
-)
+bool ODM_RAStateCheck(struct dm_odm_t *pDM_Odm, s32 RSSI, bool bForceUpdate,
+		      u8 *pRATRState)
 {
 	struct odm_rate_adaptive *pRA = &pDM_Odm->RateAdaptive;
 	const u8 GoUpGap = 5;
@@ -343,9 +341,9 @@ bool ODM_RAStateCheck(
 	}
 
 	/*  Decide RATRState by RSSI. */
-	if (RSSI > HighRSSIThreshForRA)
+	if (HighRSSIThreshForRA < RSSI)
 		RATRState = DM_RATR_STA_HIGH;
-	else if (RSSI > LowRSSIThreshForRA)
+	else if (LowRSSIThreshForRA < RSSI)
 		RATRState = DM_RATR_STA_MIDDLE;
 	else
 		RATRState = DM_RATR_STA_LOW;
@@ -369,32 +367,33 @@ static void odm_RSSIMonitorInit(struct dm_odm_t *pDM_Odm)
 	struct ra_t *pRA_Table = &pDM_Odm->DM_RA_Table;
 
 	pRA_Table->firstconnect = false;
-
 }
 
 static void FindMinimumRSSI(struct adapter *padapter)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_priv *pdmpriv = &pHalData->dmpriv;
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 
 	/* 1 1.Determine the minimum RSSI */
 
-	if (!pDM_Odm->bLinked && (pdmpriv->EntryMinUndecoratedSmoothedPWDB == 0))
+	if (!pDM_Odm->bLinked &&
+	    (pdmpriv->EntryMinUndecoratedSmoothedPWDB == 0))
 		pdmpriv->MinUndecoratedPWDBForDM = 0;
 	else
-		pdmpriv->MinUndecoratedPWDBForDM = pdmpriv->EntryMinUndecoratedSmoothedPWDB;
+		pdmpriv->MinUndecoratedPWDBForDM =
+			pdmpriv->EntryMinUndecoratedSmoothedPWDB;
 }
 
 static void odm_RSSIMonitorCheckCE(struct dm_odm_t *pDM_Odm)
 {
 	struct adapter *Adapter = pDM_Odm->Adapter;
-	struct hal_com_data	*pHalData = GET_HAL_DATA(Adapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 	struct dm_priv *pdmpriv = &pHalData->dmpriv;
 	int i;
 	int tmpEntryMaxPWDB = 0, tmpEntryMinPWDB = 0xff;
 	u8 sta_cnt = 0;
-	u32 PWDB_rssi[NUM_STA] = {0};/* 0~15]:MACID, [16~31]:PWDB_rssi */
+	u32 PWDB_rssi[NUM_STA] = { 0 }; /* 0~15]:MACID, [16~31]:PWDB_rssi */
 	struct ra_t *pRA_Table = &pDM_Odm->DM_RA_Table;
 
 	if (!pDM_Odm->bLinked)
@@ -409,32 +408,46 @@ static void odm_RSSIMonitorCheckCE(struct dm_odm_t *pDM_Odm)
 		for (i = 0; i < ODM_ASSOCIATE_ENTRY_NUM; i++) {
 			psta = pDM_Odm->pODM_StaInfo[i];
 			if (IS_STA_VALID(psta)) {
-				if (is_multicast_ether_addr(psta->hwaddr))  /* if (psta->mac_id == 1) */
+				if (is_multicast_ether_addr(
+					    psta->hwaddr)) /* if (psta->mac_id == 1) */
 					continue;
 
-				if (psta->rssi_stat.UndecoratedSmoothedPWDB == (-1))
+				if (psta->rssi_stat.UndecoratedSmoothedPWDB ==
+				    (-1))
 					continue;
 
-				if (psta->rssi_stat.UndecoratedSmoothedPWDB < tmpEntryMinPWDB)
-					tmpEntryMinPWDB = psta->rssi_stat.UndecoratedSmoothedPWDB;
-
-				if (psta->rssi_stat.UndecoratedSmoothedPWDB > tmpEntryMaxPWDB)
-					tmpEntryMaxPWDB = psta->rssi_stat.UndecoratedSmoothedPWDB;
-
-				if (psta->rssi_stat.UndecoratedSmoothedPWDB != (-1))
-					PWDB_rssi[sta_cnt++] = (psta->mac_id | (psta->rssi_stat.UndecoratedSmoothedPWDB<<16));
+				if (psta->rssi_stat.UndecoratedSmoothedPWDB <
+				    tmpEntryMinPWDB)
+					tmpEntryMinPWDB =
+						psta->rssi_stat
+							.UndecoratedSmoothedPWDB;
+
+				if (psta->rssi_stat.UndecoratedSmoothedPWDB >
+				    tmpEntryMaxPWDB)
+					tmpEntryMaxPWDB =
+						psta->rssi_stat
+							.UndecoratedSmoothedPWDB;
+
+				if (psta->rssi_stat.UndecoratedSmoothedPWDB !=
+				    (-1))
+					PWDB_rssi[sta_cnt++] =
+						(psta->mac_id |
+						 (psta->rssi_stat
+							  .UndecoratedSmoothedPWDB
+						  << 16));
 			}
 		}
 
 		for (i = 0; i < sta_cnt; i++) {
 			if (PWDB_rssi[i] != (0)) {
-				if (pHalData->fw_ractrl)/*  Report every sta's RSSI to FW */
-					rtl8723b_set_rssi_cmd(Adapter, (u8 *)(&PWDB_rssi[i]));
+				if (pHalData->fw_ractrl) /*  Report every sta's RSSI to FW */
+					rtl8723b_set_rssi_cmd(
+						Adapter, (u8 *)(&PWDB_rssi[i]));
 			}
 		}
 	}
 
-	if (tmpEntryMaxPWDB != 0)	/*  If associated entry is found */
+	if (tmpEntryMaxPWDB != 0) /*  If associated entry is found */
 		pdmpriv->EntryMaxUndecoratedSmoothedPWDB = tmpEntryMaxPWDB;
 	else
 		pdmpriv->EntryMaxUndecoratedSmoothedPWDB = 0;
@@ -444,7 +457,7 @@ static void odm_RSSIMonitorCheckCE(struct dm_odm_t *pDM_Odm)
 	else
 		pdmpriv->EntryMinUndecoratedSmoothedPWDB = 0;
 
-	FindMinimumRSSI(Adapter);/* get pdmpriv->MinUndecoratedPWDBForDM */
+	FindMinimumRSSI(Adapter); /* get pdmpriv->MinUndecoratedPWDBForDM */
 
 	pDM_Odm->RSSI_Min = pdmpriv->MinUndecoratedPWDBForDM;
 	/* ODM_CmnInfoUpdate(&pHalData->odmpriv , ODM_CMNINFO_RSSI_MIN, pdmpriv->MinUndecoratedPWDBForDM); */
@@ -457,7 +470,7 @@ static void odm_RSSIMonitorCheck(struct dm_odm_t *pDM_Odm)
 
 	odm_RSSIMonitorCheckCE(pDM_Odm);
 
-}	/*  odm_RSSIMonitorCheck */
+} /*  odm_RSSIMonitorCheck */
 
 /* 3 ============================================================ */
 /* 3 SW Antenna Diversity */
@@ -466,7 +479,8 @@ static void odm_SwAntDetectInit(struct dm_odm_t *pDM_Odm)
 {
 	struct swat_t *pDM_SWAT_Table = &pDM_Odm->DM_SWAT_Table;
 
-	pDM_SWAT_Table->SWAS_NoLink_BK_Reg92c = rtw_read32(pDM_Odm->Adapter, rDPDT_control);
+	pDM_SWAT_Table->SWAS_NoLink_BK_Reg92c =
+		rtw_read32(pDM_Odm->Adapter, rDPDT_control);
 	pDM_SWAT_Table->PreAntenna = MAIN_ANT;
 	pDM_SWAT_Table->CurAntenna = MAIN_ANT;
 	pDM_SWAT_Table->SWAS_NoLink_State = 0;
@@ -520,11 +534,14 @@ void odm_TXPowerTrackingInit(struct dm_odm_t *pDM_Odm)
 
 	/* pDM_Odm->RFCalibrateInfo.TxPowerTrackControl = true; */
 	pDM_Odm->RFCalibrateInfo.ThermalValue = pHalData->EEPROMThermalMeter;
-	pDM_Odm->RFCalibrateInfo.ThermalValue_IQK = pHalData->EEPROMThermalMeter;
-	pDM_Odm->RFCalibrateInfo.ThermalValue_LCK = pHalData->EEPROMThermalMeter;
+	pDM_Odm->RFCalibrateInfo.ThermalValue_IQK =
+		pHalData->EEPROMThermalMeter;
+	pDM_Odm->RFCalibrateInfo.ThermalValue_LCK =
+		pHalData->EEPROMThermalMeter;
 
 	/*  The index of "0 dB" in SwingTable. */
-	pDM_Odm->DefaultOfdmIndex = (defaultSwingIndex >= OFDM_TABLE_SIZE) ? 30 : defaultSwingIndex;
+	pDM_Odm->DefaultOfdmIndex =
+		(defaultSwingIndex >= OFDM_TABLE_SIZE) ? 30 : defaultSwingIndex;
 	pDM_Odm->DefaultCckIndex = 20;
 
 	pDM_Odm->BbSwingIdxCckBase = pDM_Odm->DefaultCckIndex;
@@ -532,12 +549,12 @@ void odm_TXPowerTrackingInit(struct dm_odm_t *pDM_Odm)
 
 	for (p = RF_PATH_A; p < MAX_RF_PATH; ++p) {
 		pDM_Odm->BbSwingIdxOfdmBase[p] = pDM_Odm->DefaultOfdmIndex;
-		pDM_Odm->RFCalibrateInfo.OFDM_index[p] = pDM_Odm->DefaultOfdmIndex;
+		pDM_Odm->RFCalibrateInfo.OFDM_index[p] =
+			pDM_Odm->DefaultOfdmIndex;
 		pDM_Odm->RFCalibrateInfo.DeltaPowerIndex[p] = 0;
 		pDM_Odm->RFCalibrateInfo.DeltaPowerIndexLast[p] = 0;
 		pDM_Odm->RFCalibrateInfo.PowerIndexOffset[p] = 0;
 	}
-
 }
 
 void ODM_TXPowerTrackingCheck(struct dm_odm_t *pDM_Odm)
@@ -548,7 +565,8 @@ void ODM_TXPowerTrackingCheck(struct dm_odm_t *pDM_Odm)
 		return;
 
 	if (!pDM_Odm->RFCalibrateInfo.TM_Trigger) { /* at least delay 1 sec */
-		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_T_METER_NEW, (BIT(17) | BIT(16)), 0x03);
+		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH_A, RF_T_METER_NEW,
+			     (BIT(17) | BIT(16)), 0x03);
 
 		pDM_Odm->RFCalibrateInfo.TM_Trigger = 1;
 		return;
@@ -567,7 +585,6 @@ void ODM_TXPowerTrackingCheck(struct dm_odm_t *pDM_Odm)
 /*  */
 void ODM_DMInit(struct dm_odm_t *pDM_Odm)
 {
-
 	odm_CommonInfoSelfInit(pDM_Odm);
 	odm_DIGInit(pDM_Odm);
 	odm_NHMCounterStatisticsInit(pDM_Odm);
@@ -636,7 +653,8 @@ void ODM_DMWatchdog(struct dm_odm_t *pDM_Odm)
 /*  */
 /*  Init /.. Fixed HW value. Only init time. */
 /*  */
-void ODM_CmnInfoInit(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo, u32 Value)
+void ODM_CmnInfoInit(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo,
+		     u32 Value)
 {
 	/*  */
 	/*  This section is used for init value */
@@ -673,7 +691,7 @@ void ODM_CmnInfoInit(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo, u32 V
 		pDM_Odm->RFEType = (u8)Value;
 		break;
 
-	case    ODM_CMNINFO_RF_ANTENNA_TYPE:
+	case ODM_CMNINFO_RF_ANTENNA_TYPE:
 		pDM_Odm->AntDivType = (u8)Value;
 		break;
 
@@ -724,10 +742,10 @@ void ODM_CmnInfoInit(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo, u32 V
 		/* do nothing */
 		break;
 	}
-
 }
 
-void ODM_CmnInfoHook(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo, void *pValue)
+void ODM_CmnInfoHook(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo,
+		     void *pValue)
 {
 	/*  */
 	/*  Hook call by reference pointer. */
@@ -793,19 +811,19 @@ void ODM_CmnInfoHook(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo, void
 		break;
 
 	case ODM_CMNINFO_DRV_STOP:
-		pDM_Odm->pbDriverStopped =  pValue;
+		pDM_Odm->pbDriverStopped = pValue;
 		break;
 
 	case ODM_CMNINFO_PNP_IN:
-		pDM_Odm->pbDriverIsGoingToPnpSetPowerSleep =  pValue;
+		pDM_Odm->pbDriverIsGoingToPnpSetPowerSleep = pValue;
 		break;
 
 	case ODM_CMNINFO_INIT_ON:
-		pDM_Odm->pinit_adpt_in_progress =  pValue;
+		pDM_Odm->pinit_adpt_in_progress = pValue;
 		break;
 
 	case ODM_CMNINFO_ANT_TEST:
-		pDM_Odm->pAntennaTest =  pValue;
+		pDM_Odm->pAntennaTest = pValue;
 		break;
 
 	case ODM_CMNINFO_NET_CLOSED:
@@ -847,15 +865,11 @@ void ODM_CmnInfoHook(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo, void
 		/* do nothing */
 		break;
 	}
-
 }
 
-void ODM_CmnInfoPtrArrayHook(
-	struct dm_odm_t *pDM_Odm,
-	enum odm_cmninfo_e CmnInfo,
-	u16 Index,
-	void *pValue
-)
+void ODM_CmnInfoPtrArrayHook(struct dm_odm_t *pDM_Odm,
+			     enum odm_cmninfo_e CmnInfo, u16 Index,
+			     void *pValue)
 {
 	/*  */
 	/*  Hook call by reference pointer. */
@@ -872,7 +886,6 @@ void ODM_CmnInfoPtrArrayHook(
 		/* do nothing */
 		break;
 	}
-
 }
 
 /*  */
@@ -985,4 +998,3 @@ void ODM_CmnInfoUpdate(struct dm_odm_t *pDM_Odm, u32 CmnInfo, u64 Value)
 /* 3 ============================================================ */
 
 /* Remove BY YuChen */
-
diff --git a/drivers/staging/rtl8723bs/hal/odm.h b/drivers/staging/rtl8723bs/hal/odm.h
index ee263790b32be..afb6e3ab92d7d 100644
--- a/drivers/staging/rtl8723bs/hal/odm.h
+++ b/drivers/staging/rtl8723bs/hal/odm.h
@@ -5,7 +5,7 @@
  *
  ******************************************************************************/
 
-#ifndef	__HALDMOUTSRC_H__
+#ifndef __HALDMOUTSRC_H__
 #define __HALDMOUTSRC_H__
 
 #include "odm_EdcaTurboCheck.h"
@@ -14,63 +14,63 @@
 #include "odm_DynamicTxPower.h"
 #include "odm_CfoTracking.h"
 
-#define	TP_MODE		0
-#define	RSSI_MODE		1
-#define	TRAFFIC_LOW	0
-#define	TRAFFIC_HIGH	1
-#define	NONE			0
+#define TP_MODE 0
+#define RSSI_MODE 1
+#define TRAFFIC_LOW 0
+#define TRAFFIC_HIGH 1
+#define NONE 0
 
 /* 3 Tx Power Tracking */
 /* 3 ============================================================ */
-#define		DPK_DELTA_MAPPING_NUM	13
-#define		index_mapping_HP_NUM	15
-#define	OFDM_TABLE_SIZE		43
-#define	CCK_TABLE_SIZE			33
-#define TXSCALE_TABLE_SIZE		37
-#define TXPWR_TRACK_TABLE_SIZE	30
-#define DELTA_SWINGIDX_SIZE     30
-#define BAND_NUM				4
+#define DPK_DELTA_MAPPING_NUM 13
+#define index_mapping_HP_NUM 15
+#define OFDM_TABLE_SIZE 43
+#define CCK_TABLE_SIZE 33
+#define TXSCALE_TABLE_SIZE 37
+#define TXPWR_TRACK_TABLE_SIZE 30
+#define DELTA_SWINGIDX_SIZE 30
+#define BAND_NUM 4
 
 /* 3 PSD Handler */
 /* 3 ============================================================ */
 
-#define	AFH_PSD		1	/* 0:normal PSD scan, 1: only do 20 pts PSD */
-#define	MODE_40M		0	/* 0:20M, 1:40M */
-#define	PSD_TH2		3
-#define	PSD_CHMIN		20   /*  Minimum channel number for BT AFH */
-#define	SIR_STEP_SIZE	3
-#define   Smooth_Size_1		5
-#define	Smooth_TH_1	3
-#define   Smooth_Size_2		10
-#define	Smooth_TH_2	4
-#define   Smooth_Size_3		20
-#define	Smooth_TH_3	4
-#define   Smooth_Step_Size 5
-#define	Adaptive_SIR	1
-#define	PSD_RESCAN		4
-#define	PSD_SCAN_INTERVAL	700 /* ms */
+#define AFH_PSD 1 /* 0:normal PSD scan, 1: only do 20 pts PSD */
+#define MODE_40M 0 /* 0:20M, 1:40M */
+#define PSD_TH2 3
+#define PSD_CHMIN 20 /*  Minimum channel number for BT AFH */
+#define SIR_STEP_SIZE 3
+#define Smooth_Size_1 5
+#define Smooth_TH_1 3
+#define Smooth_Size_2 10
+#define Smooth_TH_2 4
+#define Smooth_Size_3 20
+#define Smooth_TH_3 4
+#define Smooth_Step_Size 5
+#define Adaptive_SIR 1
+#define PSD_RESCAN 4
+#define PSD_SCAN_INTERVAL 700 /* ms */
 
 /* 8723A High Power IGI Setting */
-#define		DM_DIG_HIGH_PWR_IGI_LOWER_BOUND	0x22
-#define			DM_DIG_Gmode_HIGH_PWR_IGI_LOWER_BOUND 0x28
-#define		DM_DIG_HIGH_PWR_THRESHOLD	0x3a
-#define		DM_DIG_LOW_PWR_THRESHOLD	0x14
+#define DM_DIG_HIGH_PWR_IGI_LOWER_BOUND 0x22
+#define DM_DIG_Gmode_HIGH_PWR_IGI_LOWER_BOUND 0x28
+#define DM_DIG_HIGH_PWR_THRESHOLD 0x3a
+#define DM_DIG_LOW_PWR_THRESHOLD 0x14
 
 /* ANT Test */
-#define			ANTTESTALL		0x00		/* Ant A or B will be Testing */
-#define		ANTTESTA		0x01		/* Ant A will be Testing */
-#define		ANTTESTB		0x02		/* Ant B will be testing */
+#define ANTTESTALL 0x00 /* Ant A or B will be Testing */
+#define ANTTESTA 0x01 /* Ant A will be Testing */
+#define ANTTESTB 0x02 /* Ant B will be testing */
 
-#define	PS_MODE_ACTIVE 0x01
+#define PS_MODE_ACTIVE 0x01
 
 /* for 8723A Ant Definition--2012--06--07 due to different IC may be different ANT define */
-#define		MAIN_ANT		1		/* Ant A or Ant Main */
-#define		AUX_ANT		2		/* AntB or Ant Aux */
-#define		MAX_ANT		3		/*  3 for AP using */
+#define MAIN_ANT 1 /* Ant A or Ant Main */
+#define AUX_ANT 2 /* AntB or Ant Aux */
+#define MAX_ANT 3 /*  3 for AP using */
 
 /* Antenna Diversity Type */
-#define	SW_ANTDIV	0
-#define	HW_ANTDIV	1
+#define SW_ANTDIV 0
+#define HW_ANTDIV 1
 /*  structure and define */
 
 /* Remove DIG by Yuchen */
@@ -107,21 +107,21 @@ struct rxhp_t {
 	struct timer_list PSDTimer;
 };
 
-#define ASSOCIATE_ENTRY_NUM					32 /*  Max size of AsocEntry[]. */
-#define	ODM_ASSOCIATE_ENTRY_NUM				ASSOCIATE_ENTRY_NUM
+#define ASSOCIATE_ENTRY_NUM 32 /*  Max size of AsocEntry[]. */
+#define ODM_ASSOCIATE_ENTRY_NUM ASSOCIATE_ENTRY_NUM
 
 /*  This indicates two different the steps. */
 /*  In SWAW_STEP_PEAK, driver needs to switch antenna and listen to the signal on the air. */
 /*  In SWAW_STEP_DETERMINE, driver just compares the signal captured in SWAW_STEP_PEAK */
 /*  with original RSSI to determine if it is necessary to switch antenna. */
-#define SWAW_STEP_PEAK		0
-#define SWAW_STEP_DETERMINE	1
+#define SWAW_STEP_PEAK 0
+#define SWAW_STEP_DETERMINE 1
 
-#define	TP_MODE		0
-#define	RSSI_MODE		1
-#define	TRAFFIC_LOW	0
-#define	TRAFFIC_HIGH	1
-#define	TRAFFIC_UltraLOW	2
+#define TP_MODE 0
+#define RSSI_MODE 1
+#define TRAFFIC_LOW 0
+#define TRAFFIC_HIGH 1
+#define TRAFFIC_UltraLOW 2
 
 struct swat_t { /* _SW_Antenna_Switch_ */
 	u8 Double_chk_flag;
@@ -145,8 +145,8 @@ struct swat_t { /* _SW_Antenna_Switch_ */
 	u32 SWAS_NoLink_BK_Reg860;
 	u32 SWAS_NoLink_BK_Reg92c;
 	u32 SWAS_NoLink_BK_Reg948;
-	bool ANTA_ON;	/* To indicate Ant A is or not */
-	bool ANTB_ON;	/* To indicate Ant B is on or not */
+	bool ANTA_ON; /* To indicate Ant A is or not */
+	bool ANTB_ON; /* To indicate Ant B is on or not */
 	bool Pre_Aux_FailDetec;
 	bool RSSI_AntDect_bResult;
 	u8 Ant2G;
@@ -174,36 +174,35 @@ struct swat_t { /* _SW_Antenna_Switch_ */
 /* Remove Edca by YuChen */
 
 struct odm_rate_adaptive {
-	u8 Type;				/*  DM_Type_ByFW/DM_Type_ByDriver */
-	u8 LdpcThres;			/*  if RSSI > LdpcThres => switch from LPDC to BCC */
+	u8 Type; /*  DM_Type_ByFW/DM_Type_ByDriver */
+	u8 LdpcThres; /*  if RSSI > LdpcThres => switch from LPDC to BCC */
 	bool bUseLdpc;
 	bool bLowerRtsRate;
-	u8 HighRSSIThresh;		/*  if RSSI > HighRSSIThresh	=> RATRState is DM_RATR_STA_HIGH */
-	u8 LowRSSIThresh;		/*  if RSSI <= LowRSSIThresh	=> RATRState is DM_RATR_STA_LOW */
-	u8 RATRState;			/*  Current RSSI level, DM_RATR_STA_HIGH/DM_RATR_STA_MIDDLE/DM_RATR_STA_LOW */
-
+	u8 HighRSSIThresh; /*  if RSSI > HighRSSIThresh	=> RATRState is DM_RATR_STA_HIGH */
+	u8 LowRSSIThresh; /*  if RSSI <= LowRSSIThresh	=> RATRState is DM_RATR_STA_LOW */
+	u8 RATRState; /*  Current RSSI level, DM_RATR_STA_HIGH/DM_RATR_STA_MIDDLE/DM_RATR_STA_LOW */
 };
 
-#define IQK_MAC_REG_NUM		4
-#define IQK_ADDA_REG_NUM		16
-#define IQK_BB_REG_NUM_MAX	10
-#define IQK_BB_REG_NUM		9
-#define HP_THERMAL_NUM		8
+#define IQK_MAC_REG_NUM 4
+#define IQK_ADDA_REG_NUM 16
+#define IQK_BB_REG_NUM_MAX 10
+#define IQK_BB_REG_NUM 9
+#define HP_THERMAL_NUM 8
 
-#define AVG_THERMAL_NUM		8
-#define IQK_MATRIX_REG_NUM	8
-#define IQK_MATRIX_SETTINGS_NUM	14 /* Channels_2_4G_NUM */
+#define AVG_THERMAL_NUM 8
+#define IQK_MATRIX_REG_NUM 8
+#define IQK_MATRIX_SETTINGS_NUM 14 /* Channels_2_4G_NUM */
 
-#define		DM_Type_ByFW			0
-#define		DM_Type_ByDriver		1
+#define DM_Type_ByFW 0
+#define DM_Type_ByDriver 1
 
 /*  */
 /*  Declare for common info */
 /*  */
-#define MAX_PATH_NUM_8723B		1
+#define MAX_PATH_NUM_8723B 1
 
-#define IQK_THRESHOLD			8
-#define DPK_THRESHOLD			4
+#define IQK_THRESHOLD 8
+#define DPK_THRESHOLD 4
 
 struct odm_phy_info {
 	/*
@@ -212,16 +211,16 @@ struct odm_phy_info {
 	 */
 	u8 rx_pwd_ba11;
 
-	u8 signal_quality;             /* in 0-100 index. */
-	s8 rx_mimo_signal_quality[4];  /* per-path's EVM */
-	u8 rx_mimo_evm_dbm[4];         /* per-path's EVM dbm */
+	u8 signal_quality; /* in 0-100 index. */
+	s8 rx_mimo_signal_quality[4]; /* per-path's EVM */
+	u8 rx_mimo_evm_dbm[4]; /* per-path's EVM dbm */
 
 	u8 rx_mimo_signal_strength[4]; /* in 0~100 index */
 
-	u16 cfo_short[4];              /* per-path's Cfo_short */
-	u16 cfo_tail[4];               /* per-path's Cfo_tail */
+	u16 cfo_short[4]; /* per-path's Cfo_short */
+	u16 cfo_tail[4]; /* per-path's Cfo_tail */
 
-	s8 rx_power;                   /* in dBm Translate from PWdB */
+	s8 rx_power; /* in dBm Translate from PWdB */
 
 	/*
 	 * Real power in dBm for this packet, no beautification and
@@ -229,11 +228,11 @@ struct odm_phy_info {
 	 */
 	s8 recv_signal_power;
 	u8 bt_rx_rssi_percentage;
-	u8 signal_strength;	       /* in 0-100 index. */
+	u8 signal_strength; /* in 0-100 index. */
 
-	s8 rx_pwr[4];                  /* per-path's pwdb */
+	s8 rx_pwr[4]; /* per-path's pwdb */
 
-	u8 rx_snr[4];                  /* per-path's SNR */
+	u8 rx_snr[4]; /* per-path's SNR */
 	u8 band_width;
 	u8 bt_coex_pwr_adjust;
 };
@@ -255,7 +254,6 @@ struct odm_phy_dbg_info {
 	u8 NumQryBeaconPkt;
 	/* Others */
 	s32 RxEVM[4];
-
 };
 
 struct odm_mac_status_info {
@@ -270,35 +268,35 @@ enum odm_cmninfo_e {
 
 	/* HOOK BEFORE REG INIT----------- */
 	ODM_CMNINFO_PLATFORM = 0,
-	ODM_CMNINFO_ABILITY,					/*  ODM_ABILITY_E */
-	ODM_CMNINFO_INTERFACE,				/*  ODM_INTERFACE_E */
-	ODM_CMNINFO_IC_TYPE,					/*  ODM_IC_TYPE_E */
-	ODM_CMNINFO_CUT_VER,					/*  ODM_CUT_VERSION_E */
-	ODM_CMNINFO_FAB_VER,					/*  ODM_FAB_E */
+	ODM_CMNINFO_ABILITY, /*  ODM_ABILITY_E */
+	ODM_CMNINFO_INTERFACE, /*  ODM_INTERFACE_E */
+	ODM_CMNINFO_IC_TYPE, /*  ODM_IC_TYPE_E */
+	ODM_CMNINFO_CUT_VER, /*  ODM_CUT_VERSION_E */
+	ODM_CMNINFO_FAB_VER, /*  ODM_FAB_E */
 	ODM_CMNINFO_RFE_TYPE,
 	ODM_CMNINFO_PACKAGE_TYPE,
-	ODM_CMNINFO_EXT_LNA,					/*  true */
+	ODM_CMNINFO_EXT_LNA, /*  true */
 	ODM_CMNINFO_EXT_PA,
 	ODM_CMNINFO_GPA,
 	ODM_CMNINFO_APA,
 	ODM_CMNINFO_GLNA,
 	ODM_CMNINFO_ALNA,
 	ODM_CMNINFO_EXT_TRSW,
-	ODM_CMNINFO_PATCH_ID,				/* CUSTOMER ID */
+	ODM_CMNINFO_PATCH_ID, /* CUSTOMER ID */
 	ODM_CMNINFO_BINHCT_TEST,
 	ODM_CMNINFO_BWIFI_TEST,
 	ODM_CMNINFO_SMART_CONCURRENT,
 	/* HOOK BEFORE REG INIT----------- */
 
 	/*  Dynamic value: */
-/*  POINTER REFERENCE----------- */
-	ODM_CMNINFO_MAC_PHY_MODE,	/*  ODM_MAC_PHY_MODE_E */
+	/*  POINTER REFERENCE----------- */
+	ODM_CMNINFO_MAC_PHY_MODE, /*  ODM_MAC_PHY_MODE_E */
 	ODM_CMNINFO_TX_UNI,
 	ODM_CMNINFO_RX_UNI,
-	ODM_CMNINFO_WM_MODE,		/*  ODM_WIRELESS_MODE_E */
-	ODM_CMNINFO_SEC_CHNL_OFFSET,	/*  ODM_SEC_CHNL_OFFSET_E */
-	ODM_CMNINFO_SEC_MODE,		/*  ODM_SECURITY_E */
-	ODM_CMNINFO_BW,			/*  ODM_BW_E */
+	ODM_CMNINFO_WM_MODE, /*  ODM_WIRELESS_MODE_E */
+	ODM_CMNINFO_SEC_CHNL_OFFSET, /*  ODM_SEC_CHNL_OFFSET_E */
+	ODM_CMNINFO_SEC_MODE, /*  ODM_SECURITY_E */
+	ODM_CMNINFO_BW, /*  ODM_BW_E */
 	ODM_CMNINFO_CHNL,
 	ODM_CMNINFO_FORCED_RATE,
 
@@ -307,7 +305,7 @@ enum odm_cmninfo_e {
 	ODM_CMNINFO_DMSP_IS_MASTER,
 	ODM_CMNINFO_SCAN,
 	ODM_CMNINFO_POWER_SAVING,
-	ODM_CMNINFO_ONE_PATH_CCA,	/*  ODM_CCA_PATH_E */
+	ODM_CMNINFO_ONE_PATH_CCA, /*  ODM_CCA_PATH_E */
 	ODM_CMNINFO_DRV_STOP,
 	ODM_CMNINFO_PNP_IN,
 	ODM_CMNINFO_INIT_ON,
@@ -318,27 +316,27 @@ enum odm_cmninfo_e {
 	ODM_CMNINFO_FORCED_IGI_LB,
 	ODM_CMNINFO_IS1ANTENNA,
 	ODM_CMNINFO_RFDEFAULTPATH,
-/*  POINTER REFERENCE----------- */
+	/*  POINTER REFERENCE----------- */
 
-/* CALL BY VALUE------------- */
+	/* CALL BY VALUE------------- */
 	ODM_CMNINFO_WIFI_DIRECT,
 	ODM_CMNINFO_WIFI_DISPLAY,
 	ODM_CMNINFO_LINK_IN_PROGRESS,
 	ODM_CMNINFO_LINK,
 	ODM_CMNINFO_STATION_STATE,
 	ODM_CMNINFO_RSSI_MIN,
-	ODM_CMNINFO_DBG_COMP,			/*  u64 */
-	ODM_CMNINFO_DBG_LEVEL,			/*  u32 */
-	ODM_CMNINFO_RA_THRESHOLD_HIGH,		/*  u8 */
-	ODM_CMNINFO_RA_THRESHOLD_LOW,		/*  u8 */
-	ODM_CMNINFO_RF_ANTENNA_TYPE,		/*  u8 */
+	ODM_CMNINFO_DBG_COMP, /*  u64 */
+	ODM_CMNINFO_DBG_LEVEL, /*  u32 */
+	ODM_CMNINFO_RA_THRESHOLD_HIGH, /*  u8 */
+	ODM_CMNINFO_RA_THRESHOLD_LOW, /*  u8 */
+	ODM_CMNINFO_RF_ANTENNA_TYPE, /*  u8 */
 	ODM_CMNINFO_BT_ENABLED,
 	ODM_CMNINFO_BT_HS_CONNECT_PROCESS,
 	ODM_CMNINFO_BT_HS_RSSI,
 	ODM_CMNINFO_BT_OPERATION,
-	ODM_CMNINFO_BT_LIMITED_DIG,		/* Need to Limited Dig or not */
+	ODM_CMNINFO_BT_LIMITED_DIG, /* Need to Limited Dig or not */
 	ODM_CMNINFO_BT_DISABLE_EDCA,
-/* CALL BY VALUE------------- */
+	/* CALL BY VALUE------------- */
 
 	/*  Dynamic ptr array hook itms. */
 	ODM_CMNINFO_STA_STATUS,
@@ -350,79 +348,79 @@ enum odm_cmninfo_e {
 
 /*  2011/10/20 MH Define ODM support ability.  ODM_CMNINFO_ABILITY */
 enum { /* _ODM_Support_Ability_Definition */
-	/*  */
-	/*  BB ODM section BIT 0-15 */
-	/*  */
-	ODM_BB_DIG			= BIT(0),
-	ODM_BB_RA_MASK			= BIT(1),
-	ODM_BB_DYNAMIC_TXPWR		= BIT(2),
-	ODM_BB_FA_CNT			= BIT(3),
-	ODM_BB_RSSI_MONITOR		= BIT(4),
-	ODM_BB_CCK_PD			= BIT(5),
-	ODM_BB_ANT_DIV			= BIT(6),
-	ODM_BB_PWR_SAVE			= BIT(7),
-	ODM_BB_PWR_TRAIN		= BIT(8),
-	ODM_BB_RATE_ADAPTIVE		= BIT(9),
-	ODM_BB_PATH_DIV			= BIT(10),
-	ODM_BB_PSD			= BIT(11),
-	ODM_BB_RXHP			= BIT(12),
-	ODM_BB_ADAPTIVITY		= BIT(13),
-	ODM_BB_CFO_TRACKING		= BIT(14),
-
-	/*  MAC DM section BIT 16-23 */
-	ODM_MAC_EDCA_TURBO		= BIT(16),
-	ODM_MAC_EARLY_MODE		= BIT(17),
-
-	/*  RF ODM section BIT 24-31 */
-	ODM_RF_TX_PWR_TRACK		= BIT(24),
-	ODM_RF_RX_GAIN_TRACK	= BIT(25),
-	ODM_RF_CALIBRATION		= BIT(26),
+       /*  */
+       /*  BB ODM section BIT 0-15 */
+       /*  */
+       ODM_BB_DIG = BIT(0),
+       ODM_BB_RA_MASK = BIT(1),
+       ODM_BB_DYNAMIC_TXPWR = BIT(2),
+       ODM_BB_FA_CNT = BIT(3),
+       ODM_BB_RSSI_MONITOR = BIT(4),
+       ODM_BB_CCK_PD = BIT(5),
+       ODM_BB_ANT_DIV = BIT(6),
+       ODM_BB_PWR_SAVE = BIT(7),
+       ODM_BB_PWR_TRAIN = BIT(8),
+       ODM_BB_RATE_ADAPTIVE = BIT(9),
+       ODM_BB_PATH_DIV = BIT(10),
+       ODM_BB_PSD = BIT(11),
+       ODM_BB_RXHP = BIT(12),
+       ODM_BB_ADAPTIVITY = BIT(13),
+       ODM_BB_CFO_TRACKING = BIT(14),
+
+       /*  MAC DM section BIT 16-23 */
+       ODM_MAC_EDCA_TURBO = BIT(16),
+       ODM_MAC_EARLY_MODE = BIT(17),
+
+       /*  RF ODM section BIT 24-31 */
+       ODM_RF_TX_PWR_TRACK = BIT(24),
+       ODM_RF_RX_GAIN_TRACK = BIT(25),
+       ODM_RF_CALIBRATION = BIT(26),
 };
 
-/* 	ODM_CMNINFO_INTERFACE */
+/*	ODM_CMNINFO_INTERFACE */
 enum { /* tag_ODM_Support_Interface_Definition */
-	ODM_ITRF_SDIO	=	0x4,
-	ODM_ITRF_ALL	=	0x7,
+       ODM_ITRF_SDIO = 0x4,
+       ODM_ITRF_ALL = 0x7,
 };
 
 /*  ODM_CMNINFO_IC_TYPE */
 enum { /* tag_ODM_Support_IC_Type_Definition */
-	ODM_RTL8723B	=	BIT(8),
+       ODM_RTL8723B = BIT(8),
 };
 
 /* ODM_CMNINFO_CUT_VER */
 enum { /* tag_ODM_Cut_Version_Definition */
-	ODM_CUT_A		=	0,
-	ODM_CUT_B		=	1,
-	ODM_CUT_C		=	2,
-	ODM_CUT_D		=	3,
-	ODM_CUT_E		=	4,
-	ODM_CUT_F		=	5,
-
-	ODM_CUT_I		=	8,
-	ODM_CUT_J		=	9,
-	ODM_CUT_K		=	10,
-	ODM_CUT_TEST	=	15,
+       ODM_CUT_A = 0,
+       ODM_CUT_B = 1,
+       ODM_CUT_C = 2,
+       ODM_CUT_D = 3,
+       ODM_CUT_E = 4,
+       ODM_CUT_F = 5,
+
+       ODM_CUT_I = 8,
+       ODM_CUT_J = 9,
+       ODM_CUT_K = 10,
+       ODM_CUT_TEST = 15,
 };
 
 /*  ODM_CMNINFO_FAB_VER */
 enum { /* tag_ODM_Fab_Version_Definition */
-	ODM_TSMC	=	0,
-	ODM_UMC		=	1,
+       ODM_TSMC = 0,
+       ODM_UMC = 1,
 };
 
 /*  */
 /*  For example 1T2R (A+AB = BIT0|BIT4|BIT5) */
 /*  */
 enum { /* tag_ODM_RF_Type_Definition */
-	ODM_1T1R	=	0,
-	ODM_1T2R	=	1,
-	ODM_2T2R	=	2,
-	ODM_2T3R	=	3,
-	ODM_2T4R	=	4,
-	ODM_3T3R	=	5,
-	ODM_3T4R	=	6,
-	ODM_4T4R	=	7,
+       ODM_1T1R = 0,
+       ODM_1T2R = 1,
+       ODM_2T2R = 2,
+       ODM_2T3R = 3,
+       ODM_2T4R = 4,
+       ODM_3T3R = 5,
+       ODM_3T4R = 6,
+       ODM_4T4R = 7,
 };
 
 /*  */
@@ -431,43 +429,43 @@ enum { /* tag_ODM_RF_Type_Definition */
 
 /*  ODM_CMNINFO_WM_MODE */
 enum { /* tag_Wireless_Mode_Definition */
-	ODM_WM_UNKNOWN    = 0x0,
-	ODM_WM_B          = BIT(0),
-	ODM_WM_G          = BIT(1),
-	ODM_WM_N24G       = BIT(3),
-	ODM_WM_AUTO       = BIT(5),
+       ODM_WM_UNKNOWN = 0x0,
+       ODM_WM_B = BIT(0),
+       ODM_WM_G = BIT(1),
+       ODM_WM_N24G = BIT(3),
+       ODM_WM_AUTO = BIT(5),
 };
 
 /*  ODM_CMNINFO_BW */
 enum { /* tag_Bandwidth_Definition */
-	ODM_BW20M		= 0,
-	ODM_BW40M		= 1,
+       ODM_BW20M = 0,
+       ODM_BW40M = 1,
 };
 
 /*  For AC-series IC, external PA & LNA can be individually added on 2.4G */
 
 enum odm_type_gpa_e { /* tag_ODM_TYPE_GPA_Definition */
-	TYPE_GPA0 = 0,
-	TYPE_GPA1 = BIT(1)|BIT(0)
+		      TYPE_GPA0 = 0,
+		      TYPE_GPA1 = BIT(1) | BIT(0)
 };
 
 enum odm_type_apa_e { /* tag_ODM_TYPE_APA_Definition */
-	TYPE_APA0 = 0,
-	TYPE_APA1 = BIT(1)|BIT(0)
+		      TYPE_APA0 = 0,
+		      TYPE_APA1 = BIT(1) | BIT(0)
 };
 
 enum odm_type_glna_e { /* tag_ODM_TYPE_GLNA_Definition */
-	TYPE_GLNA0 = 0,
-	TYPE_GLNA1 = BIT(2)|BIT(0),
-	TYPE_GLNA2 = BIT(3)|BIT(1),
-	TYPE_GLNA3 = BIT(3)|BIT(2)|BIT(1)|BIT(0)
+		       TYPE_GLNA0 = 0,
+		       TYPE_GLNA1 = BIT(2) | BIT(0),
+		       TYPE_GLNA2 = BIT(3) | BIT(1),
+		       TYPE_GLNA3 = BIT(3) | BIT(2) | BIT(1) | BIT(0)
 };
 
 enum odm_type_alna_e { /* tag_ODM_TYPE_ALNA_Definition */
-	TYPE_ALNA0 = 0,
-	TYPE_ALNA1 = BIT(2)|BIT(0),
-	TYPE_ALNA2 = BIT(3)|BIT(1),
-	TYPE_ALNA3 = BIT(3)|BIT(2)|BIT(1)|BIT(0)
+		       TYPE_ALNA0 = 0,
+		       TYPE_ALNA1 = BIT(2) | BIT(0),
+		       TYPE_ALNA2 = BIT(3) | BIT(1),
+		       TYPE_ALNA3 = BIT(3) | BIT(2) | BIT(1) | BIT(0)
 };
 
 /* Remove PATHDIV_PARA struct to odm_PathDiv.h */
@@ -487,7 +485,7 @@ struct odm_rf_cal_t { /* ODM_RF_Calibration_Structure */
 	u8 TxPowerTrackControl; /* for mp mode, turn off txpwrtracking as default */
 	u8 TM_Trigger;
 
-	u8 ThermalMeter[2];    /*  ThermalMeter, index 0 for RFIC0, and 1 for RFIC1 */
+	u8 ThermalMeter[2]; /*  ThermalMeter, index 0 for RFIC0, and 1 for RFIC1 */
 	u8 ThermalValue;
 	u8 ThermalValue_LCK;
 	u8 ThermalValue_IQK;
@@ -515,7 +513,8 @@ struct odm_rf_cal_t { /* ODM_RF_Calibration_Structure */
 
 	u8 ThermalValue_HP[HP_THERMAL_NUM];
 	u8 ThermalValue_HP_index;
-	s32 iqk_matrix_regs_setting_value[IQK_MATRIX_SETTINGS_NUM][IQK_MATRIX_REG_NUM];
+	s32 iqk_matrix_regs_setting_value[IQK_MATRIX_SETTINGS_NUM]
+					 [IQK_MATRIX_REG_NUM];
 	bool bNeedIQK;
 	bool bIQKInProgress;
 	u8 Delta_IQK;
@@ -551,8 +550,12 @@ struct odm_rf_cal_t { /* ODM_RF_Calibration_Structure */
 	u32 IQK_MAC_backup[IQK_MAC_REG_NUM];
 	u32 IQK_BB_backup_recover[9];
 	u32 IQK_BB_backup[IQK_BB_REG_NUM];
-	u32 TxIQC_8723B[2][3][2]; /*  { {S1: 0xc94, 0xc80, 0xc4c} , {S0: 0xc9c, 0xc88, 0xc4c}} */
-	u32 RxIQC_8723B[2][2][2]; /*  { {S1: 0xc14, 0xca0} ,           {S0: 0xc14, 0xca0}} */
+	u32 TxIQC_8723B
+		[2][3]
+		[2]; /*  { {S1: 0xc94, 0xc80, 0xc4c} , {S0: 0xc9c, 0xc88, 0xc4c}} */
+	u32 RxIQC_8723B
+		[2][2]
+		[2]; /*  { {S1: 0xc14, 0xca0} ,           {S0: 0xc14, 0xca0}} */
 
 	/* for APK */
 	u32 APKoutput[2][2]; /* path A/B; output1_1a/output1_2a */
@@ -566,7 +569,6 @@ struct odm_rf_cal_t { /* ODM_RF_Calibration_Structure */
 	u8 bDPPathBOK;
 
 	u32 TxLOK[2];
-
 };
 /*  */
 /*  ODM Dynamic common info value definition */
@@ -591,7 +593,7 @@ struct fat_t { /* _FAST_ANTENNA_TRAINNING_ */
 	u32 MainAnt_Cnt[ODM_ASSOCIATE_ENTRY_NUM];
 	u32 AuxAnt_Cnt[ODM_ASSOCIATE_ENTRY_NUM];
 	u8 RxIdleAnt;
-	bool	bBecomeLinked;
+	bool bBecomeLinked;
 	u32 MinMaxRSSI;
 	u8 idx_AntDiv_counter_2G;
 	u32 CCK_counter_main;
@@ -607,17 +609,16 @@ struct fat_t { /* _FAST_ANTENNA_TRAINNING_ */
 	u32 AuxAnt_CtrlFrame_Sum;
 	u32 MainAnt_CtrlFrame_Cnt;
 	u32 AuxAnt_CtrlFrame_Cnt;
-
 };
 
 enum {
-	NO_ANTDIV			= 0xFF,
-	CG_TRX_HW_ANTDIV		= 0x01,
-	CGCS_RX_HW_ANTDIV	= 0x02,
-	FIXED_HW_ANTDIV		= 0x03,
-	CG_TRX_SMART_ANTDIV	= 0x04,
-	CGCS_RX_SW_ANTDIV	= 0x05,
-	S0S1_SW_ANTDIV          = 0x06 /* 8723B intrnal switch S0 S1 */
+	NO_ANTDIV = 0xFF,
+	CG_TRX_HW_ANTDIV = 0x01,
+	CGCS_RX_HW_ANTDIV = 0x02,
+	FIXED_HW_ANTDIV = 0x03,
+	CG_TRX_SMART_ANTDIV = 0x04,
+	CGCS_RX_SW_ANTDIV = 0x05,
+	S0S1_SW_ANTDIV = 0x06 /* 8723B intrnal switch S0 S1 */
 };
 
 struct pathdiv_t { /* _ODM_PATH_DIVERSITY_ */
@@ -630,8 +631,8 @@ struct pathdiv_t { /* _ODM_PATH_DIVERSITY_ */
 };
 
 enum phy_reg_pg_type { /* _BASEBAND_CONFIG_PHY_REG_PG_VALUE_TYPE */
-	PHY_REG_PG_RELATIVE_VALUE = 0,
-	PHY_REG_PG_EXACT_VALUE = 1
+		       PHY_REG_PG_RELATIVE_VALUE = 0,
+		       PHY_REG_PG_EXACT_VALUE = 1
 };
 
 /*  */
@@ -648,31 +649,31 @@ struct ant_detected_info {
 /*  2011/09/22 MH Copy from SD4 defined structure. We use to support PHY DM integration. */
 /*  */
 struct dm_odm_t { /* DM_Out_Source_Dynamic_Mechanism_Structure */
-	struct adapter *Adapter;		/*  For CE/NIC team */
+	struct adapter *Adapter; /*  For CE/NIC team */
 	/*  WHen you use Adapter or priv pointer, you must make sure the pointer is ready. */
 	bool odm_ready;
 
 	enum phy_reg_pg_type PhyRegPgValueType;
 	u8 PhyRegPgVersion;
 
-	u32 NumQryPhyStatusAll;	/* CCK + OFDM */
+	u32 NumQryPhyStatusAll; /* CCK + OFDM */
 	u32 LastNumQryPhyStatusAll;
 	u32 RxPWDBAve;
-	bool MPDIG_2G;		/* off MPDIG */
+	bool MPDIG_2G; /* off MPDIG */
 	u8 Times_2G;
 
-/*  ODM HANDLE, DRIVER NEEDS NOT TO HOOK------ */
+	/*  ODM HANDLE, DRIVER NEEDS NOT TO HOOK------ */
 	bool bCckHighPower;
-	u8 RFPathRxEnable;		/*  ODM_CMNINFO_RFPATH_ENABLE */
+	u8 RFPathRxEnable; /*  ODM_CMNINFO_RFPATH_ENABLE */
 	u8 ControlChannel;
-/*  ODM HANDLE, DRIVER NEEDS NOT TO HOOK------ */
+	/*  ODM HANDLE, DRIVER NEEDS NOT TO HOOK------ */
 
-/* 1  COMMON INFORMATION */
+	/* 1  COMMON INFORMATION */
 
 	/*  */
 	/*  Init Value */
 	/*  */
-/* HOOK BEFORE REG INIT----------- */
+	/* HOOK BEFORE REG INIT----------- */
 	/*  ODM Platform info AP/ADSL/CE/MP = 1/2/3/4 */
 	u8 SupportPlatform;
 	/*  ODM Support Ability DIG/RATR/TX_PWR_TRACK/... = 1/2/3/... */
@@ -707,12 +708,12 @@ struct dm_odm_t { /* DM_Out_Source_Dynamic_Mechanism_Structure */
 	bool bDualMacSmartConcurrent;
 	u32 BK_SupportAbility;
 	u8 AntDivType;
-/* HOOK BEFORE REG INIT----------- */
+	/* HOOK BEFORE REG INIT----------- */
 
 	/*  */
 	/*  Dynamic Value */
 	/*  */
-/*  POINTER REFERENCE----------- */
+	/*  POINTER REFERENCE----------- */
 
 	u8 u8_temp;
 	bool bool_temp;
@@ -750,14 +751,14 @@ struct dm_odm_t { /* DM_Out_Source_Dynamic_Mechanism_Structure */
 	bool *pbNet_closed;
 	u8 *mp_mode;
 	u8 *pu1ForcedIgiLb;
-/*  For 8723B IQK----------- */
+	/*  For 8723B IQK----------- */
 	bool *pIs1Antenna;
 	u8 *pRFDefaultPath;
 	/*  0:S1, 1:S0 */
 
-/*  POINTER REFERENCE----------- */
+	/*  POINTER REFERENCE----------- */
 	u16 *pForcedDataRate;
-/* CALL BY VALUE------------- */
+	/* CALL BY VALUE------------- */
 	bool bLinkInProcess;
 	bool bWIFI_Direct;
 	bool bWIFI_Display;
@@ -768,13 +769,13 @@ struct dm_odm_t { /* DM_Out_Source_Dynamic_Mechanism_Structure */
 	u8 InterfaceIndex; /*  Add for 92D  dual MAC: 0--Mac0 1--Mac1 */
 	bool bOneEntryOnly;
 	/*  Common info for BTDM */
-	bool bBtEnabled;			/*  BT is disabled */
-	bool bBtConnectProcess;	/*  BT HS is under connection progress. */
-	u8 btHsRssi;				/*  BT HS mode wifi rssi value. */
-	bool bBtHsOperation;		/*  BT HS mode is under progress */
-	bool bBtDisableEdcaTurbo;	/*  Under some condition, don't enable the EDCA Turbo */
-	bool bBtLimitedDig;			/*  BT is busy. */
-/* CALL BY VALUE------------- */
+	bool bBtEnabled; /*  BT is disabled */
+	bool bBtConnectProcess; /*  BT HS is under connection progress. */
+	u8 btHsRssi; /*  BT HS mode wifi rssi value. */
+	bool bBtHsOperation; /*  BT HS mode is under progress */
+	bool bBtDisableEdcaTurbo; /*  Under some condition, don't enable the EDCA Turbo */
+	bool bBtLimitedDig; /*  BT is busy. */
+	/* CALL BY VALUE------------- */
 	u8 RSSI_A;
 	u8 RSSI_B;
 	u64 RSSI_TRSW;
@@ -791,8 +792,8 @@ struct dm_odm_t { /* DM_Out_Source_Dynamic_Mechanism_Structure */
 	bool IsTxagcOffsetPositiveA;
 	u32 TxagcOffsetValueB;
 	bool IsTxagcOffsetPositiveB;
-	u64	lastTxOkCnt;
-	u64	lastRxOkCnt;
+	u64 lastTxOkCnt;
+	u64 lastRxOkCnt;
 	u32 BbSwingOffsetA;
 	bool IsBbSwingOffsetPositiveA;
 	u32 BbSwingOffsetB;
@@ -883,7 +884,7 @@ struct dm_odm_t { /* DM_Out_Source_Dynamic_Mechanism_Structure */
 	/* PSD */
 	bool bUserAssignLevel;
 	struct timer_list PSDTimer;
-	u8 RSSI_BT;			/* come from BT */
+	u8 RSSI_BT; /* come from BT */
 	bool bPSDinProcess;
 	bool bPSDactive;
 	bool bDMInitialGainEnable;
@@ -896,7 +897,8 @@ struct dm_odm_t { /* DM_Out_Source_Dynamic_Mechanism_Structure */
 
 	struct odm_rate_adaptive RateAdaptive;
 
-	struct ant_detected_info AntDetectedInfo; /*  Antenna detected information for RSSI tool */
+	struct ant_detected_info
+		AntDetectedInfo; /*  Antenna detected information for RSSI tool */
 
 	struct odm_rf_cal_t RFCalibrateInfo;
 
@@ -917,7 +919,7 @@ struct dm_odm_t { /* DM_Out_Source_Dynamic_Mechanism_Structure */
 	s8 Absolute_OFDMSwingIdx[MAX_RF_PATH];
 	s8 Remnant_OFDMSwingIdx[MAX_RF_PATH];
 	s8 Remnant_CCKSwingIdx;
-	s8 Modify_TxAGC_Value;       /* Remnat compensate value at TxAGC */
+	s8 Modify_TxAGC_Value; /* Remnat compensate value at TxAGC */
 	bool Modify_TxAGC_Flag_PathA;
 	bool Modify_TxAGC_Flag_PathB;
 	bool Modify_TxAGC_Flag_PathC;
@@ -937,9 +939,9 @@ struct dm_odm_t { /* DM_Out_Source_Dynamic_Mechanism_Structure */
 
 	/*  ODM relative workitem. */
 
-	#if (BEAMFORMING_SUPPORT == 1)
+#if (BEAMFORMING_SUPPORT == 1)
 	RT_BEAMFORMING_INFO BeamformingInfo;
-	#endif
+#endif
 };
 
 enum odm_rf_content {
@@ -984,15 +986,15 @@ enum ODM_FW_Config_Type {
 /* 3 =========================================================== */
 /* 3 AGC RX High Power Mode */
 /* 3 =========================================================== */
-#define          LNA_Low_Gain_1                      0x64
-#define          LNA_Low_Gain_2                      0x5A
-#define          LNA_Low_Gain_3                      0x58
+#define LNA_Low_Gain_1 0x64
+#define LNA_Low_Gain_2 0x5A
+#define LNA_Low_Gain_3 0x58
 
-#define          FA_RXHP_TH1                           5000
-#define          FA_RXHP_TH2                           1500
-#define          FA_RXHP_TH3                             800
-#define          FA_RXHP_TH4                             600
-#define          FA_RXHP_TH5                             500
+#define FA_RXHP_TH1 5000
+#define FA_RXHP_TH2 1500
+#define FA_RXHP_TH3 800
+#define FA_RXHP_TH4 600
+#define FA_RXHP_TH5 500
 
 /* 3 =========================================================== */
 /* 3 EDCA */
@@ -1006,95 +1008,85 @@ enum ODM_FW_Config_Type {
 /* 3 =========================================================== */
 /* 3 Rate Adaptive */
 /* 3 =========================================================== */
-#define		DM_RATR_STA_INIT			0
-#define		DM_RATR_STA_HIGH			1
-#define		DM_RATR_STA_MIDDLE			2
-#define		DM_RATR_STA_LOW				3
+#define DM_RATR_STA_INIT 0
+#define DM_RATR_STA_HIGH 1
+#define DM_RATR_STA_MIDDLE 2
+#define DM_RATR_STA_LOW 3
 
 /* 3 =========================================================== */
 /* 3 BB Power Save */
 /* 3 =========================================================== */
 
 enum { /* tag_1R_CCA_Type_Definition */
-	CCA_1R = 0,
-	CCA_2R = 1,
-	CCA_MAX = 2,
+       CCA_1R = 0,
+       CCA_2R = 1,
+       CCA_MAX = 2,
 };
 
 enum { /* tag_RF_Type_Definition */
-	RF_Save = 0,
-	RF_Normal = 1,
-	RF_MAX = 2,
+       RF_Save = 0,
+       RF_Normal = 1,
+       RF_MAX = 2,
 };
 
 /*  Maximal number of antenna detection mechanism needs to perform, added by Roger, 2011.12.28. */
-#define	MAX_ANTENNA_DETECTION_CNT	10
+#define MAX_ANTENNA_DETECTION_CNT 10
 
 /*  */
 /*  Extern Global Variables. */
 /*  */
-extern	u32 OFDMSwingTable_New[OFDM_TABLE_SIZE];
-extern	u8 CCKSwingTable_Ch1_Ch13_New[CCK_TABLE_SIZE][8];
-extern	u8 CCKSwingTable_Ch14_New[CCK_TABLE_SIZE][8];
+extern u32 OFDMSwingTable_New[OFDM_TABLE_SIZE];
+extern u8 CCKSwingTable_Ch1_Ch13_New[CCK_TABLE_SIZE][8];
+extern u8 CCKSwingTable_Ch14_New[CCK_TABLE_SIZE][8];
 
 /*  */
 /*  check Sta pointer valid or not */
 /*  */
-#define IS_STA_VALID(pSta)		(pSta)
+#define IS_STA_VALID(pSta) (pSta)
 /*  20100514 Joseph: Add definition for antenna switching test after link. */
 /*  This indicates two different the steps. */
 /*  In SWAW_STEP_PEAK, driver needs to switch antenna and listen to the signal on the air. */
 /*  In SWAW_STEP_DETERMINE, driver just compares the signal captured in SWAW_STEP_PEAK */
 /*  with original RSSI to determine if it is necessary to switch antenna. */
-#define SWAW_STEP_PEAK		0
-#define SWAW_STEP_DETERMINE	1
+#define SWAW_STEP_PEAK 0
+#define SWAW_STEP_DETERMINE 1
 
 /* Remove BB power saving by Yuchen */
 
 #define dm_CheckTXPowerTracking ODM_TXPowerTrackingCheck
 void ODM_TXPowerTrackingCheck(struct dm_odm_t *pDM_Odm);
 
-bool ODM_RAStateCheck(
-	struct dm_odm_t *pDM_Odm,
-	s32	RSSI,
-	bool bForceUpdate,
-	u8 *pRATRState
-);
-
-#define dm_SWAW_RSSI_Check	ODM_SwAntDivChkPerPktRssi
-void ODM_SwAntDivChkPerPktRssi(
-	struct dm_odm_t *pDM_Odm,
-	u8 StationID,
-	struct odm_phy_info *pPhyInfo
-);
-
-u32 ODM_Get_Rate_Bitmap(
-	struct dm_odm_t *pDM_Odm,
-	u32 macid,
-	u32 ra_mask,
-	u8 rssi_level
-);
+bool ODM_RAStateCheck(struct dm_odm_t *pDM_Odm, s32 RSSI, bool bForceUpdate,
+		      u8 *pRATRState);
+
+#define dm_SWAW_RSSI_Check ODM_SwAntDivChkPerPktRssi
+void ODM_SwAntDivChkPerPktRssi(struct dm_odm_t *pDM_Odm, u8 StationID,
+			       struct odm_phy_info *pPhyInfo);
+
+u32 ODM_Get_Rate_Bitmap(struct dm_odm_t *pDM_Odm, u32 macid, u32 ra_mask,
+			u8 rssi_level);
 
 #if (BEAMFORMING_SUPPORT == 1)
-BEAMFORMING_CAP Beamforming_GetEntryBeamCapByMacId(PMGNT_INFO pMgntInfo, u8 MacId);
+BEAMFORMING_CAP Beamforming_GetEntryBeamCapByMacId(PMGNT_INFO pMgntInfo,
+						   u8 MacId);
 #endif
 
 void odm_TXPowerTrackingInit(struct dm_odm_t *pDM_Odm);
 
 void ODM_DMInit(struct dm_odm_t *pDM_Odm);
 
-void ODM_DMWatchdog(struct dm_odm_t *pDM_Odm); /*  For common use in the future */
+void ODM_DMWatchdog(
+	struct dm_odm_t *pDM_Odm); /*  For common use in the future */
 
-void ODM_CmnInfoInit(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo, u32 Value);
+void ODM_CmnInfoInit(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo,
+		     u32 Value);
 
-void ODM_CmnInfoHook(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo, void *pValue);
+void ODM_CmnInfoHook(struct dm_odm_t *pDM_Odm, enum odm_cmninfo_e CmnInfo,
+		     void *pValue);
 
-void ODM_CmnInfoPtrArrayHook(
-	struct dm_odm_t *pDM_Odm,
-	enum odm_cmninfo_e CmnInfo,
-	u16 Index,
-	void *pValue
-);
+void ODM_CmnInfoPtrArrayHook(struct dm_odm_t *pDM_Odm,
+			     enum odm_cmninfo_e CmnInfo, u16 Index,
+			     void *pValue);
 
 void ODM_CmnInfoUpdate(struct dm_odm_t *pDM_Odm, u32 CmnInfo, u64 Value);
 
@@ -1104,13 +1096,10 @@ void ODM_CancelAllTimers(struct dm_odm_t *pDM_Odm);
 
 void ODM_ReleaseAllTimers(struct dm_odm_t *pDM_Odm);
 
-void ODM_AntselStatistics_88C(
-	struct dm_odm_t *pDM_Odm,
-	u8 MacId,
-	u32 PWDBAll,
-	bool isCCKrate
-);
+void ODM_AntselStatistics_88C(struct dm_odm_t *pDM_Odm, u8 MacId, u32 PWDBAll,
+			      bool isCCKrate);
 
-void ODM_DynamicARFBSelect(struct dm_odm_t *pDM_Odm, u8 rate, bool Collision_State);
+void ODM_DynamicARFBSelect(struct dm_odm_t *pDM_Odm, u8 rate,
+			   bool Collision_State);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/hal/odm_CfoTracking.c b/drivers/staging/rtl8723bs/hal/odm_CfoTracking.c
index 7e6b49399abbf..f955eedbd0912 100644
--- a/drivers/staging/rtl8723bs/hal/odm_CfoTracking.c
+++ b/drivers/staging/rtl8723bs/hal/odm_CfoTracking.c
@@ -19,12 +19,8 @@ static void odm_SetCrystalCap(void *pDM_VOID, u8 CrystalCap)
 
 	/*  0x2C[23:18] = 0x2C[17:12] = CrystalCap */
 	CrystalCap = CrystalCap & 0x3F;
-	PHY_SetBBReg(
-		pDM_Odm->Adapter,
-		REG_MAC_PHY_CTRL,
-		0x00FFF000,
-		(CrystalCap | (CrystalCap << 6))
-	);
+	PHY_SetBBReg(pDM_Odm->Adapter, REG_MAC_PHY_CTRL, 0x00FFF000,
+		     (CrystalCap | (CrystalCap << 6)));
 }
 
 static u8 odm_GetDefaultCrytaltalCap(void *pDM_VOID)
@@ -45,12 +41,8 @@ static void odm_SetATCStatus(void *pDM_VOID, bool ATCStatus)
 	if (pCfoTrack->bATCStatus == ATCStatus)
 		return;
 
-	PHY_SetBBReg(
-		pDM_Odm->Adapter,
-		ODM_REG(BB_ATC),
-		ODM_BIT(BB_ATC),
-		ATCStatus
-	);
+	PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG(BB_ATC), ODM_BIT(BB_ATC),
+		     ATCStatus);
 	pCfoTrack->bATCStatus = ATCStatus;
 }
 
@@ -59,11 +51,8 @@ static bool odm_GetATCStatus(void *pDM_VOID)
 	bool ATCStatus;
 	struct dm_odm_t *pDM_Odm = (struct dm_odm_t *)pDM_VOID;
 
-	ATCStatus = (bool)PHY_QueryBBReg(
-		pDM_Odm->Adapter,
-		ODM_REG(BB_ATC),
-		ODM_BIT(BB_ATC)
-	);
+	ATCStatus = (bool)PHY_QueryBBReg(pDM_Odm->Adapter, ODM_REG(BB_ATC),
+					 ODM_BIT(BB_ATC));
 	return ATCStatus;
 }
 
@@ -84,8 +73,8 @@ void ODM_CfoTrackingInit(void *pDM_VOID)
 	struct dm_odm_t *pDM_Odm = (struct dm_odm_t *)pDM_VOID;
 	struct cfo_tracking *pCfoTrack = &pDM_Odm->DM_CfoTrack;
 
-	pCfoTrack->DefXCap =
-		pCfoTrack->CrystalCap = odm_GetDefaultCrytaltalCap(pDM_Odm);
+	pCfoTrack->DefXCap = pCfoTrack->CrystalCap =
+		odm_GetDefaultCrytaltalCap(pDM_Odm);
 	pCfoTrack->bATCStatus = odm_GetATCStatus(pDM_Odm);
 	pCfoTrack->bAdjust = true;
 }
@@ -115,21 +104,17 @@ void ODM_CfoTracking(void *pDM_VOID)
 		pCfoTrack->packetCount_pre = pCfoTrack->packetCount;
 
 		/* 4 1.2 Calculate CFO */
-		CFO_kHz_A =  (int)(pCfoTrack->CFO_tail[0] * 3125)  / 1280;
+		CFO_kHz_A = (int)(pCfoTrack->CFO_tail[0] * 3125) / 1280;
 
 		CFO_ave = CFO_kHz_A;
 
 		/* 4 1.3 Avoid abnormal large CFO */
-		CFO_ave_diff =
-			(pCfoTrack->CFO_ave_pre >= CFO_ave) ?
-			(pCfoTrack->CFO_ave_pre-CFO_ave) :
-			(CFO_ave-pCfoTrack->CFO_ave_pre);
-
-		if (
-			CFO_ave_diff > 20 &&
-			pCfoTrack->largeCFOHit == 0 &&
-			!pCfoTrack->bAdjust
-		) {
+		CFO_ave_diff = (pCfoTrack->CFO_ave_pre >= CFO_ave) ?
+				       (pCfoTrack->CFO_ave_pre - CFO_ave) :
+				       (CFO_ave - pCfoTrack->CFO_ave_pre);
+
+		if (CFO_ave_diff > 20 && pCfoTrack->largeCFOHit == 0 &&
+		    !pCfoTrack->bAdjust) {
 			pCfoTrack->largeCFOHit = 1;
 			return;
 		}
@@ -139,10 +124,12 @@ void ODM_CfoTracking(void *pDM_VOID)
 
 		/* 4 1.4 Dynamic Xtal threshold */
 		if (!pCfoTrack->bAdjust) {
-			if (CFO_ave > CFO_TH_XTAL_HIGH || CFO_ave < (-CFO_TH_XTAL_HIGH))
+			if (CFO_ave > CFO_TH_XTAL_HIGH ||
+			    CFO_ave < (-CFO_TH_XTAL_HIGH))
 				pCfoTrack->bAdjust = true;
 		} else {
-			if (CFO_ave < CFO_TH_XTAL_LOW && CFO_ave > (-CFO_TH_XTAL_LOW))
+			if (CFO_ave < CFO_TH_XTAL_LOW &&
+			    CFO_ave > (-CFO_TH_XTAL_LOW))
 				pCfoTrack->bAdjust = false;
 		}
 
@@ -155,9 +142,13 @@ void ODM_CfoTracking(void *pDM_VOID)
 		/* 4 1.6 Big jump */
 		if (pCfoTrack->bAdjust) {
 			if (CFO_ave > CFO_TH_XTAL_LOW)
-				Adjust_Xtal = Adjust_Xtal + ((CFO_ave - CFO_TH_XTAL_LOW) >> 2);
+				Adjust_Xtal =
+					Adjust_Xtal +
+					((CFO_ave - CFO_TH_XTAL_LOW) >> 2);
 			else if (CFO_ave < (-CFO_TH_XTAL_LOW))
-				Adjust_Xtal = Adjust_Xtal + ((CFO_TH_XTAL_LOW - CFO_ave) >> 2);
+				Adjust_Xtal =
+					Adjust_Xtal +
+					((CFO_TH_XTAL_LOW - CFO_ave) >> 2);
 		}
 
 		/* 4 1.7 Adjust Crystal Cap. */
diff --git a/drivers/staging/rtl8723bs/hal/odm_CfoTracking.h b/drivers/staging/rtl8723bs/hal/odm_CfoTracking.h
index 8fa6d9ec58807..33d30d406c916 100644
--- a/drivers/staging/rtl8723bs/hal/odm_CfoTracking.h
+++ b/drivers/staging/rtl8723bs/hal/odm_CfoTracking.h
@@ -5,12 +5,12 @@
  *
  ******************************************************************************/
 
-#ifndef	__ODMCFOTRACK_H__
-#define    __ODMCFOTRACK_H__
+#ifndef __ODMCFOTRACK_H__
+#define __ODMCFOTRACK_H__
 
-#define		CFO_TH_XTAL_HIGH		20		/*  kHz */
-#define		CFO_TH_XTAL_LOW			10		/*  kHz */
-#define		CFO_TH_ATC			80		/*  kHz */
+#define CFO_TH_XTAL_HIGH 20 /*  kHz */
+#define CFO_TH_XTAL_LOW 10 /*  kHz */
+#define CFO_TH_ATC 80 /*  kHz */
 
 struct cfo_tracking {
 	bool bATCStatus;
@@ -27,8 +27,7 @@ struct cfo_tracking {
 	bool bReset;
 };
 
-void ODM_CfoTrackingReset(void *pDM_VOID
-);
+void ODM_CfoTrackingReset(void *pDM_VOID);
 
 void ODM_CfoTrackingInit(void *pDM_VOID);
 
diff --git a/drivers/staging/rtl8723bs/hal/odm_DIG.c b/drivers/staging/rtl8723bs/hal/odm_DIG.c
index 4e28b7742bfe3..eaed76f626f81 100644
--- a/drivers/staging/rtl8723bs/hal/odm_DIG.c
+++ b/drivers/staging/rtl8723bs/hal/odm_DIG.c
@@ -9,18 +9,30 @@
 
 void odm_NHMCounterStatisticsInit(void *pDM_VOID)
 {
-	struct dm_odm_t	*pDM_Odm = (struct dm_odm_t *)pDM_VOID;
+	struct dm_odm_t *pDM_Odm = (struct dm_odm_t *)pDM_VOID;
 
 	/* PHY parameters initialize for n series */
-	rtw_write16(pDM_Odm->Adapter, ODM_REG_NHM_TIMER_11N+2, 0x2710);	/* 0x894[31:16]= 0x2710	Time duration for NHM unit: 4us, 0x2710 =40ms */
+	rtw_write16(
+		pDM_Odm->Adapter, ODM_REG_NHM_TIMER_11N + 2,
+		0x2710); /* 0x894[31:16]= 0x2710	Time duration for NHM unit: 4us, 0x2710 =40ms */
 	/* rtw_write16(pDM_Odm->Adapter, ODM_REG_NHM_TIMER_11N+2, 0x4e20);	0x894[31:16]= 0x4e20	Time duration for NHM unit: 4us, 0x4e20 =80ms */
-	rtw_write16(pDM_Odm->Adapter, ODM_REG_NHM_TH9_TH10_11N+2, 0xffff);	/* 0x890[31:16]= 0xffff	th_9, th_10 */
+	rtw_write16(pDM_Odm->Adapter, ODM_REG_NHM_TH9_TH10_11N + 2,
+		    0xffff); /* 0x890[31:16]= 0xffff	th_9, th_10 */
 	/* rtw_write32(pDM_Odm->Adapter, ODM_REG_NHM_TH3_TO_TH0_11N, 0xffffff5c);	0x898 = 0xffffff5c		th_3, th_2, th_1, th_0 */
-	rtw_write32(pDM_Odm->Adapter, ODM_REG_NHM_TH3_TO_TH0_11N, 0xffffff52);	/* 0x898 = 0xffffff52		th_3, th_2, th_1, th_0 */
-	rtw_write32(pDM_Odm->Adapter, ODM_REG_NHM_TH7_TO_TH4_11N, 0xffffffff);	/* 0x89c = 0xffffffff		th_7, th_6, th_5, th_4 */
-	PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_FPGA0_IQK_11N, bMaskByte0, 0xff);		/* 0xe28[7:0]= 0xff		th_8 */
-	PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_NHM_TH9_TH10_11N, BIT(10)|BIT(9)|BIT(8), 0x7);	/* 0x890[9:8]=3			enable CCX */
-	PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_OFDM_FA_RSTC_11N, BIT(7), 0x1);		/* 0xc0c[7]= 1			max power among all RX ants */
+	rtw_write32(
+		pDM_Odm->Adapter, ODM_REG_NHM_TH3_TO_TH0_11N,
+		0xffffff52); /* 0x898 = 0xffffff52		th_3, th_2, th_1, th_0 */
+	rtw_write32(
+		pDM_Odm->Adapter, ODM_REG_NHM_TH7_TO_TH4_11N,
+		0xffffffff); /* 0x89c = 0xffffffff		th_7, th_6, th_5, th_4 */
+	PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_FPGA0_IQK_11N, bMaskByte0,
+		     0xff); /* 0xe28[7:0]= 0xff		th_8 */
+	PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_NHM_TH9_TH10_11N,
+		     BIT(10) | BIT(9) | BIT(8),
+		     0x7); /* 0x890[9:8]=3			enable CCX */
+	PHY_SetBBReg(
+		pDM_Odm->Adapter, ODM_REG_OFDM_FA_RSTC_11N, BIT(7),
+		0x1); /* 0xc0c[7]= 1			max power among all RX ants */
 }
 
 void odm_NHMCounterStatistics(void *pDM_VOID)
@@ -39,7 +51,8 @@ void odm_GetNHMCounterStatistics(void *pDM_VOID)
 	struct dm_odm_t *pDM_Odm = (struct dm_odm_t *)pDM_VOID;
 	u32 value32 = 0;
 
-	value32 = PHY_QueryBBReg(pDM_Odm->Adapter, ODM_REG_NHM_CNT_11N, bMaskDWord);
+	value32 = PHY_QueryBBReg(pDM_Odm->Adapter, ODM_REG_NHM_CNT_11N,
+				 bMaskDWord);
 
 	pDM_Odm->NHM_cnt_0 = (u8)(value32 & bMaskByte0);
 }
@@ -72,15 +85,15 @@ void odm_NHMBB(void *pDM_VOID)
 	/* struct false_ALARM_STATISTICS *pFalseAlmCnt = &pDM_Odm->FalseAlmCnt; */
 
 	pDM_Odm->NHMCurTxOkcnt =
-		*(pDM_Odm->pNumTxBytesUnicast)-pDM_Odm->NHMLastTxOkcnt;
+		*(pDM_Odm->pNumTxBytesUnicast) - pDM_Odm->NHMLastTxOkcnt;
 	pDM_Odm->NHMCurRxOkcnt =
-		*(pDM_Odm->pNumRxBytesUnicast)-pDM_Odm->NHMLastRxOkcnt;
-	pDM_Odm->NHMLastTxOkcnt =
-		*(pDM_Odm->pNumTxBytesUnicast);
-	pDM_Odm->NHMLastRxOkcnt =
-		*(pDM_Odm->pNumRxBytesUnicast);
+		*(pDM_Odm->pNumRxBytesUnicast) - pDM_Odm->NHMLastRxOkcnt;
+	pDM_Odm->NHMLastTxOkcnt = *(pDM_Odm->pNumTxBytesUnicast);
+	pDM_Odm->NHMLastRxOkcnt = *(pDM_Odm->pNumRxBytesUnicast);
 
-	if ((pDM_Odm->NHMCurTxOkcnt) + 1 > (u64)(pDM_Odm->NHMCurRxOkcnt<<2) + 1) { /* Tx > 4*Rx possible for adaptivity test */
+	if ((pDM_Odm->NHMCurTxOkcnt) + 1 >
+	    (u64)(pDM_Odm->NHMCurRxOkcnt << 2) +
+		    1) { /* Tx > 4*Rx possible for adaptivity test */
 		if (pDM_Odm->NHM_cnt_0 >= 190 || pDM_Odm->adaptivity_flag) {
 			/* Enable EDCCA since it is possible running Adaptivity testing */
 			/* test_status = 1; */
@@ -88,7 +101,8 @@ void odm_NHMBB(void *pDM_VOID)
 			pDM_Odm->tolerance_cnt = 0;
 		} else {
 			if (pDM_Odm->tolerance_cnt < 3)
-				pDM_Odm->tolerance_cnt = pDM_Odm->tolerance_cnt + 1;
+				pDM_Odm->tolerance_cnt =
+					pDM_Odm->tolerance_cnt + 1;
 			else
 				pDM_Odm->tolerance_cnt = 4;
 			/* test_status = 5; */
@@ -103,7 +117,8 @@ void odm_NHMBB(void *pDM_VOID)
 			pDM_Odm->tolerance_cnt = 0;
 		} else {
 			if (pDM_Odm->tolerance_cnt < 3)
-				pDM_Odm->tolerance_cnt = pDM_Odm->tolerance_cnt + 1;
+				pDM_Odm->tolerance_cnt =
+					pDM_Odm->tolerance_cnt + 1;
 			else
 				pDM_Odm->tolerance_cnt = 4;
 			/* test_status = 5; */
@@ -127,19 +142,22 @@ void odm_SearchPwdBLowerBound(void *pDM_VOID, u8 IGI_target)
 	IGI = 0x50; /*  find H2L, L2H lower bound */
 	ODM_Write_DIG(pDM_Odm, IGI);
 
-	Diff = IGI_target-(s8)IGI;
+	Diff = IGI_target - (s8)IGI;
 	TH_L2H_dmc = pDM_Odm->TH_L2H_ini + Diff;
 	if (TH_L2H_dmc > 10)
 		TH_L2H_dmc = 10;
 	TH_H2L_dmc = TH_L2H_dmc - pDM_Odm->TH_EDCCA_HL_diff;
-	PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte0, (u8)TH_L2H_dmc);
-	PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte2, (u8)TH_H2L_dmc);
+	PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte0,
+		     (u8)TH_L2H_dmc);
+	PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte2,
+		     (u8)TH_H2L_dmc);
 
 	mdelay(5);
 
 	while (bAdjust) {
 		for (cnt = 0; cnt < 20; cnt++) {
-			value32 = PHY_QueryBBReg(pDM_Odm->Adapter, ODM_REG_RPT_11N, bMaskDWord);
+			value32 = PHY_QueryBBReg(pDM_Odm->Adapter,
+						 ODM_REG_RPT_11N, bMaskDWord);
 
 			if (value32 & BIT(30))
 				pDM_Odm->txEdcca1 = pDM_Odm->txEdcca1 + 1;
@@ -150,13 +168,15 @@ void odm_SearchPwdBLowerBound(void *pDM_VOID, u8 IGI_target)
 		}
 
 		if (pDM_Odm->txEdcca1 > 5) {
-			IGI = IGI-1;
+			IGI = IGI - 1;
 			TH_L2H_dmc = TH_L2H_dmc + 1;
 			if (TH_L2H_dmc > 10)
 				TH_L2H_dmc = 10;
 			TH_H2L_dmc = TH_L2H_dmc - pDM_Odm->TH_EDCCA_HL_diff;
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte0, (u8)TH_L2H_dmc);
-			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte2, (u8)TH_H2L_dmc);
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold,
+				     bMaskByte0, (u8)TH_L2H_dmc);
+			PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold,
+				     bMaskByte2, (u8)TH_H2L_dmc);
 
 			pDM_Odm->TxHangFlg = true;
 			pDM_Odm->txEdcca1 = 0;
@@ -207,7 +227,8 @@ void odm_AdaptivityInit(void *pDM_VOID)
 	pDM_Odm->Adaptivity_IGI_upper = 0;
 	odm_NHMBBInit(pDM_Odm);
 
-	PHY_SetBBReg(pDM_Odm->Adapter, REG_RD_CTRL, BIT(11), 1); /*  stop counting if EDCCA is asserted */
+	PHY_SetBBReg(pDM_Odm->Adapter, REG_RD_CTRL, BIT(11),
+		     1); /*  stop counting if EDCCA is asserted */
 }
 
 void odm_Adaptivity(void *pDM_VOID, u8 IGI)
@@ -226,17 +247,21 @@ void odm_Adaptivity(void *pDM_VOID, u8 IGI)
 		IGI_target = pDM_Odm->IGI_Base + 2;
 	else
 		IGI_target = pDM_Odm->IGI_Base;
-	pDM_Odm->IGI_target = (u8) IGI_target;
+	pDM_Odm->IGI_target = (u8)IGI_target;
 
 	/* Search pwdB lower bound */
 	if (pDM_Odm->TxHangFlg) {
-		PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_DBG_RPT_11N, bMaskDWord, 0x208);
+		PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_DBG_RPT_11N, bMaskDWord,
+			     0x208);
 		odm_SearchPwdBLowerBound(pDM_Odm, pDM_Odm->IGI_target);
 	}
 
-	if ((!pDM_Odm->bLinked) || (*pDM_Odm->pChannel > 149)) { /*  Band4 doesn't need adaptivity */
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte0, 0x7f);
-		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte2, 0x7f);
+	if ((!pDM_Odm->bLinked) ||
+	    (*pDM_Odm->pChannel > 149)) { /*  Band4 doesn't need adaptivity */
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte0,
+			     0x7f);
+		PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte2,
+			     0x7f);
 		return;
 	}
 
@@ -248,14 +273,12 @@ void odm_Adaptivity(void *pDM_VOID, u8 IGI)
 	} else
 		EDCCA_State = true;
 
-	if (pDM_Odm->bLinked &&
-	    !pDM_Odm->Carrier_Sense_enable &&
-	    !pDM_Odm->NHM_disable &&
-	    !pDM_Odm->TxHangFlg)
+	if (pDM_Odm->bLinked && !pDM_Odm->Carrier_Sense_enable &&
+	    !pDM_Odm->NHM_disable && !pDM_Odm->TxHangFlg)
 		odm_NHMBB(pDM_Odm);
 
 	if (EDCCA_State) {
-		Diff = IGI_target-(s8)IGI;
+		Diff = IGI_target - (s8)IGI;
 		TH_L2H_dmc = pDM_Odm->TH_L2H_ini + Diff;
 		if (TH_L2H_dmc > 10)
 			TH_L2H_dmc = 10;
@@ -271,8 +294,10 @@ void odm_Adaptivity(void *pDM_VOID, u8 IGI)
 		TH_L2H_dmc = 0x7f;
 		TH_H2L_dmc = 0x7f;
 	}
-	PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte0, (u8)TH_L2H_dmc);
-	PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte2, (u8)TH_H2L_dmc);
+	PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte0,
+		     (u8)TH_L2H_dmc);
+	PHY_SetBBReg(pDM_Odm->Adapter, rOFDM0_ECCAThreshold, bMaskByte2,
+		     (u8)TH_H2L_dmc);
 }
 
 void ODM_Write_DIG(void *pDM_VOID, u8 CurrentIGI)
@@ -288,17 +313,17 @@ void ODM_Write_DIG(void *pDM_VOID, u8 CurrentIGI)
 		if (!pDM_DigTable->bPSDInProgress) {
 			if (CurrentIGI > pDM_DigTable->rx_gain_range_max)
 				CurrentIGI = pDM_DigTable->rx_gain_range_max;
-
 		}
 
 		/* 1 Set IGI value */
-		PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG(IGI_A), ODM_BIT(IGI), CurrentIGI);
+		PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG(IGI_A), ODM_BIT(IGI),
+			     CurrentIGI);
 
-		PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG(IGI_B), ODM_BIT(IGI), CurrentIGI);
+		PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG(IGI_B), ODM_BIT(IGI),
+			     CurrentIGI);
 
 		pDM_DigTable->CurIGValue = CurrentIGI;
 	}
-
 }
 
 bool odm_DigAbort(void *pDM_VOID)
@@ -307,21 +332,21 @@ bool odm_DigAbort(void *pDM_VOID)
 
 	/* SupportAbility */
 	if (!(pDM_Odm->SupportAbility & ODM_BB_FA_CNT))
-		return	true;
+		return true;
 
 	/* SupportAbility */
 	if (!(pDM_Odm->SupportAbility & ODM_BB_DIG))
-		return	true;
+		return true;
 
 	/* ScanInProcess */
 	if (*(pDM_Odm->pbScanInProcess))
-		return	true;
+		return true;
 
 	/* add by Neil Chen to avoid PSD is processing */
 	if (!pDM_Odm->bDMInitialGainEnable)
-		return	true;
+		return true;
 
-	return	false;
+	return false;
 }
 
 void odm_DIGInit(void *pDM_VOID)
@@ -331,11 +356,12 @@ void odm_DIGInit(void *pDM_VOID)
 
 	pDM_DigTable->bStopDIG = false;
 	pDM_DigTable->bPSDInProgress = false;
-	pDM_DigTable->CurIGValue = (u8) PHY_QueryBBReg(pDM_Odm->Adapter, ODM_REG(IGI_A), ODM_BIT(IGI));
-	pDM_DigTable->RssiLowThresh	= DM_DIG_THRESH_LOW;
-	pDM_DigTable->RssiHighThresh	= DM_DIG_THRESH_HIGH;
-	pDM_DigTable->FALowThresh	= DMfalseALARM_THRESH_LOW;
-	pDM_DigTable->FAHighThresh	= DMfalseALARM_THRESH_HIGH;
+	pDM_DigTable->CurIGValue = (u8)PHY_QueryBBReg(
+		pDM_Odm->Adapter, ODM_REG(IGI_A), ODM_BIT(IGI));
+	pDM_DigTable->RssiLowThresh = DM_DIG_THRESH_LOW;
+	pDM_DigTable->RssiHighThresh = DM_DIG_THRESH_HIGH;
+	pDM_DigTable->FALowThresh = DMfalseALARM_THRESH_LOW;
+	pDM_DigTable->FAHighThresh = DMfalseALARM_THRESH_HIGH;
 	pDM_DigTable->BackoffVal = DM_DIG_BACKOFF_DEFAULT;
 	pDM_DigTable->BackoffVal_range_max = DM_DIG_BACKOFF_MAX;
 	pDM_DigTable->BackoffVal_range_min = DM_DIG_BACKOFF_MIN;
@@ -376,7 +402,8 @@ void odm_DIG(void *pDM_VOID)
 	u8 Adap_IGI_Upper = 0;
 	u32 TxTp = 0, RxTp = 0;
 	bool bDFSBand = false;
-	bool bPerformance = true, bFirstTpTarget = false, bFirstCoverage = false;
+	bool bPerformance = true, bFirstTpTarget = false,
+	     bFirstCoverage = false;
 
 	if (odm_DigAbort(pDM_Odm))
 		return;
@@ -409,7 +436,8 @@ void odm_DIG(void *pDM_VOID)
 		else if ((pDM_Odm->RSSI_Min + offset) < dm_dig_min)
 			pDM_DigTable->rx_gain_range_max = dm_dig_min;
 		else
-			pDM_DigTable->rx_gain_range_max = pDM_Odm->RSSI_Min + offset;
+			pDM_DigTable->rx_gain_range_max =
+				pDM_Odm->RSSI_Min + offset;
 
 		/* 2 Modify DIG lower bound */
 		/* if (pDM_Odm->bOneEntryOnly) */
@@ -429,15 +457,16 @@ void odm_DIG(void *pDM_VOID)
 	/* 1 Force Lower Bound for AntDiv */
 	if (pDM_Odm->bLinked && !pDM_Odm->bOneEntryOnly) {
 		if (pDM_Odm->SupportAbility & ODM_BB_ANT_DIV) {
-			if (
-				pDM_Odm->AntDivType == CG_TRX_HW_ANTDIV ||
-				pDM_Odm->AntDivType == CG_TRX_SMART_ANTDIV ||
-				pDM_Odm->AntDivType == S0S1_SW_ANTDIV
-			) {
-				if (pDM_DigTable->AntDiv_RSSI_max > DIG_MaxOfMin)
+			if (pDM_Odm->AntDivType == CG_TRX_HW_ANTDIV ||
+			    pDM_Odm->AntDivType == CG_TRX_SMART_ANTDIV ||
+			    pDM_Odm->AntDivType == S0S1_SW_ANTDIV) {
+				if (pDM_DigTable->AntDiv_RSSI_max >
+				    DIG_MaxOfMin)
 					DIG_Dynamic_MIN = DIG_MaxOfMin;
 				else
-					DIG_Dynamic_MIN = (u8) pDM_DigTable->AntDiv_RSSI_max;
+					DIG_Dynamic_MIN =
+						(u8)pDM_DigTable
+							->AntDiv_RSSI_max;
 			}
 		}
 	}
@@ -448,28 +477,27 @@ void odm_DIG(void *pDM_VOID)
 		pDM_DigTable->rx_gain_range_min = DIG_Dynamic_MIN;
 		pDM_DigTable->ForbiddenIGI = DIG_Dynamic_MIN;
 	} else
-		pDM_DigTable->rx_gain_range_min =
-			odm_ForbiddenIGICheck(pDM_Odm, DIG_Dynamic_MIN, CurrentIGI);
+		pDM_DigTable->rx_gain_range_min = odm_ForbiddenIGICheck(
+			pDM_Odm, DIG_Dynamic_MIN, CurrentIGI);
 
 	if (pDM_Odm->bLinked && !FirstConnect) {
-		if (
-			(pDM_Odm->PhyDbgInfo.NumQryBeaconPkt < 5) &&
-			pDM_Odm->bsta_state
-		) {
+		if ((pDM_Odm->PhyDbgInfo.NumQryBeaconPkt < 5) &&
+		    pDM_Odm->bsta_state) {
 			pDM_DigTable->rx_gain_range_min = dm_dig_min;
 		}
 	}
 
 	/* 2 Abnormal lower bound case */
 	if (pDM_DigTable->rx_gain_range_min > pDM_DigTable->rx_gain_range_max)
-		pDM_DigTable->rx_gain_range_min = pDM_DigTable->rx_gain_range_max;
+		pDM_DigTable->rx_gain_range_min =
+			pDM_DigTable->rx_gain_range_max;
 
 	/* 1 False alarm threshold decision */
-	odm_FAThresholdCheck(pDM_Odm, bDFSBand, bPerformance, RxTp, TxTp, dm_FA_thres);
+	odm_FAThresholdCheck(pDM_Odm, bDFSBand, bPerformance, RxTp, TxTp,
+			     dm_FA_thres);
 
 	/* 1 Adjust initial gain by false alarm */
 	if (pDM_Odm->bLinked && bPerformance) {
-
 		if (bFirstTpTarget || FirstConnect) {
 			pDM_DigTable->LargeFAHit = 0;
 
@@ -489,16 +517,13 @@ void odm_DIG(void *pDM_VOID)
 			else if (pFalseAlmCnt->Cnt_all < dm_FA_thres[0])
 				CurrentIGI = CurrentIGI - 2;
 
-			if (
-				(pDM_Odm->PhyDbgInfo.NumQryBeaconPkt < 5) &&
-				(pFalseAlmCnt->Cnt_all < DM_DIG_FA_TH1) &&
-				(pDM_Odm->bsta_state)
-			) {
+			if ((pDM_Odm->PhyDbgInfo.NumQryBeaconPkt < 5) &&
+			    (pFalseAlmCnt->Cnt_all < DM_DIG_FA_TH1) &&
+			    (pDM_Odm->bsta_state)) {
 				CurrentIGI = pDM_DigTable->rx_gain_range_min;
 			}
 		}
 	} else {
-
 		if (FirstDisConnect || bFirstCoverage) {
 			CurrentIGI = dm_dig_min;
 		} else {
@@ -536,7 +561,8 @@ void odm_DIG(void *pDM_VOID)
 			if (pDM_DigTable->BT30_CurIGI > (CurrentIGI))
 				ODM_Write_DIG(pDM_Odm, CurrentIGI);
 			else
-				ODM_Write_DIG(pDM_Odm, pDM_DigTable->BT30_CurIGI);
+				ODM_Write_DIG(pDM_Odm,
+					      pDM_DigTable->BT30_CurIGI);
 
 			pDM_DigTable->bMediaConnect_0 = pDM_Odm->bLinked;
 			pDM_DigTable->DIG_Dynamic_MIN_0 = DIG_Dynamic_MIN;
@@ -546,10 +572,15 @@ void odm_DIG(void *pDM_VOID)
 			else if (pDM_Odm->bBtConnectProcess)
 				ODM_Write_DIG(pDM_Odm, 0x28);
 			else
-				ODM_Write_DIG(pDM_Odm, pDM_DigTable->BT30_CurIGI);/* ODM_Write_DIG(pDM_Odm, pDM_DigTable->CurIGValue); */
+				ODM_Write_DIG(
+					pDM_Odm,
+					pDM_DigTable
+						->BT30_CurIGI); /* ODM_Write_DIG(pDM_Odm, pDM_DigTable->CurIGValue); */
 		}
 	} else { /*  BT is not using */
-		ODM_Write_DIG(pDM_Odm, CurrentIGI);/* ODM_Write_DIG(pDM_Odm, pDM_DigTable->CurIGValue); */
+		ODM_Write_DIG(
+			pDM_Odm,
+			CurrentIGI); /* ODM_Write_DIG(pDM_Odm, pDM_DigTable->CurIGValue); */
 		pDM_DigTable->bMediaConnect_0 = pDM_Odm->bLinked;
 		pDM_DigTable->DIG_Dynamic_MIN_0 = DIG_Dynamic_MIN;
 	}
@@ -560,19 +591,19 @@ void odm_DIGbyRSSI_LPS(void *pDM_VOID)
 	struct dm_odm_t *pDM_Odm = (struct dm_odm_t *)pDM_VOID;
 	struct false_ALARM_STATISTICS *pFalseAlmCnt = &pDM_Odm->FalseAlmCnt;
 
-	u8 RSSI_Lower = DM_DIG_MIN_NIC;   /* 0x1E or 0x1C */
+	u8 RSSI_Lower = DM_DIG_MIN_NIC; /* 0x1E or 0x1C */
 	u8 CurrentIGI = pDM_Odm->RSSI_Min;
 
-	CurrentIGI = CurrentIGI+RSSI_OFFSET_DIG;
+	CurrentIGI = CurrentIGI + RSSI_OFFSET_DIG;
 
 	/*  Using FW PS mode to make IGI */
 	/* Adjust by  FA in LPS MODE */
 	if (pFalseAlmCnt->Cnt_all > DM_DIG_FA_TH2_LPS)
-		CurrentIGI = CurrentIGI+4;
+		CurrentIGI = CurrentIGI + 4;
 	else if (pFalseAlmCnt->Cnt_all > DM_DIG_FA_TH1_LPS)
-		CurrentIGI = CurrentIGI+2;
+		CurrentIGI = CurrentIGI + 2;
 	else if (pFalseAlmCnt->Cnt_all < DM_DIG_FA_TH0_LPS)
-		CurrentIGI = CurrentIGI-2;
+		CurrentIGI = CurrentIGI - 2;
 
 	/* Lower bound checking */
 
@@ -608,81 +639,63 @@ void odm_FalseAlarmCounterStatistics(void *pDM_VOID)
 	/* hold page D counter */
 	PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_OFDM_FA_RSTD_11N, BIT(31), 1);
 
-	ret_value = PHY_QueryBBReg(
-		pDM_Odm->Adapter, ODM_REG_OFDM_FA_TYPE1_11N, bMaskDWord
-	);
-	FalseAlmCnt->Cnt_Fast_Fsync = (ret_value&0xffff);
-	FalseAlmCnt->Cnt_SB_Search_fail = ((ret_value&0xffff0000)>>16);
-
-	ret_value = PHY_QueryBBReg(
-		pDM_Odm->Adapter, ODM_REG_OFDM_FA_TYPE2_11N, bMaskDWord
-	);
-	FalseAlmCnt->Cnt_OFDM_CCA = (ret_value&0xffff);
-	FalseAlmCnt->Cnt_Parity_Fail = ((ret_value&0xffff0000)>>16);
-
-	ret_value = PHY_QueryBBReg(
-		pDM_Odm->Adapter, ODM_REG_OFDM_FA_TYPE3_11N, bMaskDWord
-	);
-	FalseAlmCnt->Cnt_Rate_Illegal = (ret_value&0xffff);
-	FalseAlmCnt->Cnt_Crc8_fail = ((ret_value&0xffff0000)>>16);
-
-	ret_value = PHY_QueryBBReg(
-		pDM_Odm->Adapter, ODM_REG_OFDM_FA_TYPE4_11N, bMaskDWord
-	);
-	FalseAlmCnt->Cnt_Mcs_fail = (ret_value&0xffff);
+	ret_value = PHY_QueryBBReg(pDM_Odm->Adapter, ODM_REG_OFDM_FA_TYPE1_11N,
+				   bMaskDWord);
+	FalseAlmCnt->Cnt_Fast_Fsync = (ret_value & 0xffff);
+	FalseAlmCnt->Cnt_SB_Search_fail = ((ret_value & 0xffff0000) >> 16);
+
+	ret_value = PHY_QueryBBReg(pDM_Odm->Adapter, ODM_REG_OFDM_FA_TYPE2_11N,
+				   bMaskDWord);
+	FalseAlmCnt->Cnt_OFDM_CCA = (ret_value & 0xffff);
+	FalseAlmCnt->Cnt_Parity_Fail = ((ret_value & 0xffff0000) >> 16);
+
+	ret_value = PHY_QueryBBReg(pDM_Odm->Adapter, ODM_REG_OFDM_FA_TYPE3_11N,
+				   bMaskDWord);
+	FalseAlmCnt->Cnt_Rate_Illegal = (ret_value & 0xffff);
+	FalseAlmCnt->Cnt_Crc8_fail = ((ret_value & 0xffff0000) >> 16);
+
+	ret_value = PHY_QueryBBReg(pDM_Odm->Adapter, ODM_REG_OFDM_FA_TYPE4_11N,
+				   bMaskDWord);
+	FalseAlmCnt->Cnt_Mcs_fail = (ret_value & 0xffff);
 
 	FalseAlmCnt->Cnt_Ofdm_fail =
-		FalseAlmCnt->Cnt_Parity_Fail +
-		FalseAlmCnt->Cnt_Rate_Illegal +
-		FalseAlmCnt->Cnt_Crc8_fail +
-		FalseAlmCnt->Cnt_Mcs_fail +
-		FalseAlmCnt->Cnt_Fast_Fsync +
-		FalseAlmCnt->Cnt_SB_Search_fail;
+		FalseAlmCnt->Cnt_Parity_Fail + FalseAlmCnt->Cnt_Rate_Illegal +
+		FalseAlmCnt->Cnt_Crc8_fail + FalseAlmCnt->Cnt_Mcs_fail +
+		FalseAlmCnt->Cnt_Fast_Fsync + FalseAlmCnt->Cnt_SB_Search_fail;
 
 	{
 		/* hold cck counter */
-		PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_CCK_FA_RST_11N, BIT(12), 1);
-		PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_CCK_FA_RST_11N, BIT(14), 1);
+		PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_CCK_FA_RST_11N, BIT(12),
+			     1);
+		PHY_SetBBReg(pDM_Odm->Adapter, ODM_REG_CCK_FA_RST_11N, BIT(14),
+			     1);
 
-		ret_value = PHY_QueryBBReg(
-			pDM_Odm->Adapter, ODM_REG_CCK_FA_LSB_11N, bMaskByte0
-		);
+		ret_value = PHY_QueryBBReg(pDM_Odm->Adapter,
+					   ODM_REG_CCK_FA_LSB_11N, bMaskByte0);
 		FalseAlmCnt->Cnt_Cck_fail = ret_value;
 
-		ret_value = PHY_QueryBBReg(
-			pDM_Odm->Adapter, ODM_REG_CCK_FA_MSB_11N, bMaskByte3
-		);
-		FalseAlmCnt->Cnt_Cck_fail += (ret_value&0xff)<<8;
+		ret_value = PHY_QueryBBReg(pDM_Odm->Adapter,
+					   ODM_REG_CCK_FA_MSB_11N, bMaskByte3);
+		FalseAlmCnt->Cnt_Cck_fail += (ret_value & 0xff) << 8;
 
-		ret_value = PHY_QueryBBReg(
-			pDM_Odm->Adapter, ODM_REG_CCK_CCA_CNT_11N, bMaskDWord
-		);
-		FalseAlmCnt->Cnt_CCK_CCA =
-			((ret_value&0xFF)<<8) | ((ret_value&0xFF00)>>8);
+		ret_value = PHY_QueryBBReg(pDM_Odm->Adapter,
+					   ODM_REG_CCK_CCA_CNT_11N, bMaskDWord);
+		FalseAlmCnt->Cnt_CCK_CCA = ((ret_value & 0xFF) << 8) |
+					   ((ret_value & 0xFF00) >> 8);
 	}
 
-	FalseAlmCnt->Cnt_all = (
-		FalseAlmCnt->Cnt_Fast_Fsync +
-		FalseAlmCnt->Cnt_SB_Search_fail +
-		FalseAlmCnt->Cnt_Parity_Fail +
-		FalseAlmCnt->Cnt_Rate_Illegal +
-		FalseAlmCnt->Cnt_Crc8_fail +
-		FalseAlmCnt->Cnt_Mcs_fail +
-		FalseAlmCnt->Cnt_Cck_fail
-	);
+	FalseAlmCnt->Cnt_all =
+		(FalseAlmCnt->Cnt_Fast_Fsync + FalseAlmCnt->Cnt_SB_Search_fail +
+		 FalseAlmCnt->Cnt_Parity_Fail + FalseAlmCnt->Cnt_Rate_Illegal +
+		 FalseAlmCnt->Cnt_Crc8_fail + FalseAlmCnt->Cnt_Mcs_fail +
+		 FalseAlmCnt->Cnt_Cck_fail);
 
 	FalseAlmCnt->Cnt_CCA_all =
 		FalseAlmCnt->Cnt_OFDM_CCA + FalseAlmCnt->Cnt_CCK_CCA;
 }
 
-void odm_FAThresholdCheck(
-	void *pDM_VOID,
-	bool bDFSBand,
-	bool bPerformance,
-	u32 RxTp,
-	u32 TxTp,
-	u32 *dm_FA_thres
-)
+void odm_FAThresholdCheck(void *pDM_VOID, bool bDFSBand, bool bPerformance,
+			  u32 RxTp, u32 TxTp, u32 *dm_FA_thres)
 {
 	struct dm_odm_t *pDM_Odm = (struct dm_odm_t *)pDM_VOID;
 
@@ -717,10 +730,13 @@ u8 odm_ForbiddenIGICheck(void *pDM_VOID, u8 DIG_Dynamic_MIN, u8 CurrentIGI)
 		}
 
 		if (pDM_DigTable->LargeFAHit >= 3) {
-			if ((pDM_DigTable->ForbiddenIGI + 2) > pDM_DigTable->rx_gain_range_max)
-				rx_gain_range_min = pDM_DigTable->rx_gain_range_max;
+			if ((pDM_DigTable->ForbiddenIGI + 2) >
+			    pDM_DigTable->rx_gain_range_max)
+				rx_gain_range_min =
+					pDM_DigTable->rx_gain_range_max;
 			else
-				rx_gain_range_min = (pDM_DigTable->ForbiddenIGI + 2);
+				rx_gain_range_min =
+					(pDM_DigTable->ForbiddenIGI + 2);
 			pDM_DigTable->Recover_cnt = 1800;
 		}
 	} else {
@@ -728,12 +744,17 @@ u8 odm_ForbiddenIGICheck(void *pDM_VOID, u8 DIG_Dynamic_MIN, u8 CurrentIGI)
 			pDM_DigTable->Recover_cnt--;
 		} else {
 			if (pDM_DigTable->LargeFAHit < 3) {
-				if ((pDM_DigTable->ForbiddenIGI - 2) < DIG_Dynamic_MIN) { /* DM_DIG_MIN) */
-					pDM_DigTable->ForbiddenIGI = DIG_Dynamic_MIN; /* DM_DIG_MIN; */
-					rx_gain_range_min = DIG_Dynamic_MIN; /* DM_DIG_MIN; */
+				if ((pDM_DigTable->ForbiddenIGI - 2) <
+				    DIG_Dynamic_MIN) { /* DM_DIG_MIN) */
+					pDM_DigTable->ForbiddenIGI =
+						DIG_Dynamic_MIN; /* DM_DIG_MIN; */
+					rx_gain_range_min =
+						DIG_Dynamic_MIN; /* DM_DIG_MIN; */
 				} else {
 					pDM_DigTable->ForbiddenIGI -= 2;
-					rx_gain_range_min = (pDM_DigTable->ForbiddenIGI + 2);
+					rx_gain_range_min =
+						(pDM_DigTable->ForbiddenIGI +
+						 2);
 				}
 			} else
 				pDM_DigTable->LargeFAHit = 0;
@@ -741,7 +762,6 @@ u8 odm_ForbiddenIGICheck(void *pDM_VOID, u8 DIG_Dynamic_MIN, u8 CurrentIGI)
 	}
 
 	return rx_gain_range_min;
-
 }
 
 /* 3 ============================================================ */
@@ -754,10 +774,8 @@ void odm_CCKPacketDetectionThresh(void *pDM_VOID)
 	struct false_ALARM_STATISTICS *FalseAlmCnt = &pDM_Odm->FalseAlmCnt;
 	u8 CurCCK_CCAThres;
 
-	if (
-		!(pDM_Odm->SupportAbility & ODM_BB_CCK_PD) ||
-		!(pDM_Odm->SupportAbility & ODM_BB_FA_CNT)
-	) {
+	if (!(pDM_Odm->SupportAbility & ODM_BB_CCK_PD) ||
+	    !(pDM_Odm->SupportAbility & ODM_BB_FA_CNT)) {
 		return;
 	}
 
diff --git a/drivers/staging/rtl8723bs/hal/odm_DIG.h b/drivers/staging/rtl8723bs/hal/odm_DIG.h
index 032c4abae49be..19e0fe1f8d148 100644
--- a/drivers/staging/rtl8723bs/hal/odm_DIG.h
+++ b/drivers/staging/rtl8723bs/hal/odm_DIG.h
@@ -27,7 +27,7 @@ struct dig_t { /* _Dynamic_Initial_Gain_Threshold_ */
 
 	u8 PreIGValue;
 	u8 CurIGValue;
-	u8 BackupIGValue;		/* MP DIG */
+	u8 BackupIGValue; /* MP DIG */
 	u8 BT30_CurIGI;
 	u8 IGIBackup;
 
@@ -59,7 +59,7 @@ struct dig_t { /* _Dynamic_Initial_Gain_Threshold_ */
 	u8 *pbP2pLinkInProgress;
 };
 
-struct  false_ALARM_STATISTICS {
+struct false_ALARM_STATISTICS {
 	u32 Cnt_Parity_Fail;
 	u32 Cnt_Rate_Illegal;
 	u32 Cnt_Crc8_fail;
@@ -77,49 +77,46 @@ struct  false_ALARM_STATISTICS {
 	u32 Cnt_BW_LSC; /* Gary */
 };
 
-enum ODM_Pause_DIG_TYPE {
-	ODM_PAUSE_DIG = BIT(0),
-	ODM_RESUME_DIG = BIT(1)
-};
+enum ODM_Pause_DIG_TYPE { ODM_PAUSE_DIG = BIT(0), ODM_RESUME_DIG = BIT(1) };
 
-#define		DM_DIG_THRESH_HIGH			40
-#define		DM_DIG_THRESH_LOW			35
+#define DM_DIG_THRESH_HIGH 40
+#define DM_DIG_THRESH_LOW 35
 
-#define		DMfalseALARM_THRESH_LOW	400
-#define		DMfalseALARM_THRESH_HIGH	1000
+#define DMfalseALARM_THRESH_LOW 400
+#define DMfalseALARM_THRESH_HIGH 1000
 
-#define		DM_DIG_MAX_NIC				0x3e
-#define		DM_DIG_MIN_NIC				0x1e /* 0x22//0x1c */
-#define		DM_DIG_MAX_OF_MIN_NIC		0x3e
+#define DM_DIG_MAX_NIC 0x3e
+#define DM_DIG_MIN_NIC 0x1e /* 0x22//0x1c */
+#define DM_DIG_MAX_OF_MIN_NIC 0x3e
 
-#define		DM_DIG_MAX_AP					0x3e
-#define		DM_DIG_MIN_AP					0x1c
-#define		DM_DIG_MAX_OF_MIN			0x2A	/* 0x32 */
-#define		DM_DIG_MIN_AP_DFS				0x20
+#define DM_DIG_MAX_AP 0x3e
+#define DM_DIG_MIN_AP 0x1c
+#define DM_DIG_MAX_OF_MIN 0x2A /* 0x32 */
+#define DM_DIG_MIN_AP_DFS 0x20
 
-#define		DM_DIG_MAX_NIC_HP			0x46
-#define		DM_DIG_MIN_NIC_HP				0x2e
+#define DM_DIG_MAX_NIC_HP 0x46
+#define DM_DIG_MIN_NIC_HP 0x2e
 
-#define		DM_DIG_MAX_AP_HP				0x42
-#define		DM_DIG_MIN_AP_HP				0x30
+#define DM_DIG_MAX_AP_HP 0x42
+#define DM_DIG_MIN_AP_HP 0x30
 
-#define		DM_DIG_FA_TH0				0x200/* 0x20 */
+#define DM_DIG_FA_TH0 0x200 /* 0x20 */
 
-#define		DM_DIG_FA_TH1					0x300
-#define		DM_DIG_FA_TH2					0x400
+#define DM_DIG_FA_TH1 0x300
+#define DM_DIG_FA_TH2 0x400
 /* this is for 92d */
-#define		DM_DIG_FA_TH0_92D				0x100
-#define		DM_DIG_FA_TH1_92D				0x400
-#define		DM_DIG_FA_TH2_92D				0x600
+#define DM_DIG_FA_TH0_92D 0x100
+#define DM_DIG_FA_TH1_92D 0x400
+#define DM_DIG_FA_TH2_92D 0x600
 
-#define		DM_DIG_BACKOFF_MAX			12
-#define		DM_DIG_BACKOFF_MIN			-4
-#define		DM_DIG_BACKOFF_DEFAULT		10
+#define DM_DIG_BACKOFF_MAX 12
+#define DM_DIG_BACKOFF_MIN -4
+#define DM_DIG_BACKOFF_DEFAULT 10
 
-#define			DM_DIG_FA_TH0_LPS				4 /*  4 in lps */
-#define			DM_DIG_FA_TH1_LPS				15 /*  15 lps */
-#define			DM_DIG_FA_TH2_LPS				30 /*  30 lps */
-#define			RSSI_OFFSET_DIG				0x05
+#define DM_DIG_FA_TH0_LPS 4 /*  4 in lps */
+#define DM_DIG_FA_TH1_LPS 15 /*  15 lps */
+#define DM_DIG_FA_TH2_LPS 30 /*  30 lps */
+#define RSSI_OFFSET_DIG 0x05
 
 void odm_NHMCounterStatisticsInit(void *pDM_VOID);
 
@@ -149,14 +146,8 @@ void odm_DIGbyRSSI_LPS(void *pDM_VOID);
 
 void odm_FalseAlarmCounterStatistics(void *pDM_VOID);
 
-void odm_FAThresholdCheck(
-	void *pDM_VOID,
-	bool bDFSBand,
-	bool bPerformance,
-	u32 RxTp,
-	u32 TxTp,
-	u32 *dm_FA_thres
-);
+void odm_FAThresholdCheck(void *pDM_VOID, bool bDFSBand, bool bPerformance,
+			  u32 RxTp, u32 TxTp, u32 *dm_FA_thres);
 
 u8 odm_ForbiddenIGICheck(void *pDM_VOID, u8 DIG_Dynamic_MIN, u8 CurrentIGI);
 
diff --git a/drivers/staging/rtl8723bs/hal/odm_DynamicBBPowerSaving.c b/drivers/staging/rtl8723bs/hal/odm_DynamicBBPowerSaving.c
index ba6357c6a7ede..c945eb08dca63 100644
--- a/drivers/staging/rtl8723bs/hal/odm_DynamicBBPowerSaving.c
+++ b/drivers/staging/rtl8723bs/hal/odm_DynamicBBPowerSaving.c
@@ -33,11 +33,22 @@ void ODM_RF_Saving(void *pDM_VOID, u8 bForceInNormal)
 	}
 
 	if (pDM_PSTable->initialize == 0) {
-
-		pDM_PSTable->Reg874 = (PHY_QueryBBReg(pDM_Odm->Adapter, 0x874, bMaskDWord)&0x1CC000)>>14;
-		pDM_PSTable->RegC70 = (PHY_QueryBBReg(pDM_Odm->Adapter, 0xc70, bMaskDWord)&BIT(3))>>3;
-		pDM_PSTable->Reg85C = (PHY_QueryBBReg(pDM_Odm->Adapter, 0x85c, bMaskDWord)&0xFF000000)>>24;
-		pDM_PSTable->RegA74 = (PHY_QueryBBReg(pDM_Odm->Adapter, 0xa74, bMaskDWord)&0xF000)>>12;
+		pDM_PSTable->Reg874 =
+			(PHY_QueryBBReg(pDM_Odm->Adapter, 0x874, bMaskDWord) &
+			 0x1CC000) >>
+			14;
+		pDM_PSTable->RegC70 =
+			(PHY_QueryBBReg(pDM_Odm->Adapter, 0xc70, bMaskDWord) &
+			 BIT(3)) >>
+			3;
+		pDM_PSTable->Reg85C =
+			(PHY_QueryBBReg(pDM_Odm->Adapter, 0x85c, bMaskDWord) &
+			 0xFF000000) >>
+			24;
+		pDM_PSTable->RegA74 =
+			(PHY_QueryBBReg(pDM_Odm->Adapter, 0xa74, bMaskDWord) &
+			 0xF000) >>
+			12;
 		/* Reg818 = PHY_QueryBBReg(padapter, 0x818, bMaskDWord); */
 		pDM_PSTable->initialize = 1;
 	}
@@ -62,18 +73,29 @@ void ODM_RF_Saving(void *pDM_VOID, u8 bForceInNormal)
 
 	if (pDM_PSTable->PreRFState != pDM_PSTable->CurRFState) {
 		if (pDM_PSTable->CurRFState == RF_Save) {
-			PHY_SetBBReg(pDM_Odm->Adapter, 0x874, 0x1C0000, 0x2); /* Reg874[20:18]=3'b010 */
-			PHY_SetBBReg(pDM_Odm->Adapter, 0xc70, BIT(3), 0); /* RegC70[3]= 1'b0 */
-			PHY_SetBBReg(pDM_Odm->Adapter, 0x85c, 0xFF000000, 0x63); /* Reg85C[31:24]= 0x63 */
-			PHY_SetBBReg(pDM_Odm->Adapter, 0x874, 0xC000, 0x2); /* Reg874[15:14]=2'b10 */
-			PHY_SetBBReg(pDM_Odm->Adapter, 0xa74, 0xF000, 0x3); /* RegA75[7:4]= 0x3 */
-			PHY_SetBBReg(pDM_Odm->Adapter, 0x818, BIT(28), 0x0); /* Reg818[28]= 1'b0 */
-			PHY_SetBBReg(pDM_Odm->Adapter, 0x818, BIT(28), 0x1); /* Reg818[28]= 1'b1 */
+			PHY_SetBBReg(pDM_Odm->Adapter, 0x874, 0x1C0000,
+				     0x2); /* Reg874[20:18]=3'b010 */
+			PHY_SetBBReg(pDM_Odm->Adapter, 0xc70, BIT(3),
+				     0); /* RegC70[3]= 1'b0 */
+			PHY_SetBBReg(pDM_Odm->Adapter, 0x85c, 0xFF000000,
+				     0x63); /* Reg85C[31:24]= 0x63 */
+			PHY_SetBBReg(pDM_Odm->Adapter, 0x874, 0xC000,
+				     0x2); /* Reg874[15:14]=2'b10 */
+			PHY_SetBBReg(pDM_Odm->Adapter, 0xa74, 0xF000,
+				     0x3); /* RegA75[7:4]= 0x3 */
+			PHY_SetBBReg(pDM_Odm->Adapter, 0x818, BIT(28),
+				     0x0); /* Reg818[28]= 1'b0 */
+			PHY_SetBBReg(pDM_Odm->Adapter, 0x818, BIT(28),
+				     0x1); /* Reg818[28]= 1'b1 */
 		} else {
-			PHY_SetBBReg(pDM_Odm->Adapter, 0x874, 0x1CC000, pDM_PSTable->Reg874);
-			PHY_SetBBReg(pDM_Odm->Adapter, 0xc70, BIT(3), pDM_PSTable->RegC70);
-			PHY_SetBBReg(pDM_Odm->Adapter, 0x85c, 0xFF000000, pDM_PSTable->Reg85C);
-			PHY_SetBBReg(pDM_Odm->Adapter, 0xa74, 0xF000, pDM_PSTable->RegA74);
+			PHY_SetBBReg(pDM_Odm->Adapter, 0x874, 0x1CC000,
+				     pDM_PSTable->Reg874);
+			PHY_SetBBReg(pDM_Odm->Adapter, 0xc70, BIT(3),
+				     pDM_PSTable->RegC70);
+			PHY_SetBBReg(pDM_Odm->Adapter, 0x85c, 0xFF000000,
+				     pDM_PSTable->Reg85C);
+			PHY_SetBBReg(pDM_Odm->Adapter, 0xa74, 0xF000,
+				     pDM_PSTable->RegA74);
 			PHY_SetBBReg(pDM_Odm->Adapter, 0x818, BIT(28), 0x0);
 		}
 		pDM_PSTable->PreRFState = pDM_PSTable->CurRFState;
diff --git a/drivers/staging/rtl8723bs/hal/odm_DynamicBBPowerSaving.h b/drivers/staging/rtl8723bs/hal/odm_DynamicBBPowerSaving.h
index 3ebbbfd1dd1fe..ef5172d204388 100644
--- a/drivers/staging/rtl8723bs/hal/odm_DynamicBBPowerSaving.h
+++ b/drivers/staging/rtl8723bs/hal/odm_DynamicBBPowerSaving.h
@@ -5,8 +5,8 @@
  *
  ******************************************************************************/
 
-#ifndef	__ODMDYNAMICBBPOWERSAVING_H__
-#define    __ODMDYNAMICBBPOWERSAVING_H__
+#ifndef __ODMDYNAMICBBPOWERSAVING_H__
+#define __ODMDYNAMICBBPOWERSAVING_H__
 
 struct ps_t { /* _Dynamic_Power_Saving_ */
 	u8 PreCCAState;
@@ -19,7 +19,6 @@ struct ps_t { /* _Dynamic_Power_Saving_ */
 
 	u8 initialize;
 	u32 Reg874, RegC70, Reg85C, RegA74;
-
 };
 
 #define dm_RF_Saving ODM_RF_Saving
diff --git a/drivers/staging/rtl8723bs/hal/odm_DynamicTxPower.h b/drivers/staging/rtl8723bs/hal/odm_DynamicTxPower.h
index e2d244324ebe9..9ad2c9bcfde89 100644
--- a/drivers/staging/rtl8723bs/hal/odm_DynamicTxPower.h
+++ b/drivers/staging/rtl8723bs/hal/odm_DynamicTxPower.h
@@ -5,24 +5,24 @@
  *
  ******************************************************************************/
 
-#ifndef	__ODMDYNAMICTXPOWER_H__
-#define    __ODMDYNAMICTXPOWER_H__
+#ifndef __ODMDYNAMICTXPOWER_H__
+#define __ODMDYNAMICTXPOWER_H__
 
-#define		TX_POWER_NEAR_FIELD_THRESH_LVL2	74
-#define		TX_POWER_NEAR_FIELD_THRESH_LVL1	67
-#define		TX_POWER_NEAR_FIELD_THRESH_AP		0x3F
-#define		TX_POWER_NEAR_FIELD_THRESH_8812	60
+#define TX_POWER_NEAR_FIELD_THRESH_LVL2 74
+#define TX_POWER_NEAR_FIELD_THRESH_LVL1 67
+#define TX_POWER_NEAR_FIELD_THRESH_AP 0x3F
+#define TX_POWER_NEAR_FIELD_THRESH_8812 60
 
-#define		TxHighPwrLevel_Normal		0
-#define		TxHighPwrLevel_Level1		1
-#define		TxHighPwrLevel_Level2		2
-#define		TxHighPwrLevel_BT1			3
-#define		TxHighPwrLevel_BT2			4
-#define		TxHighPwrLevel_15			5
-#define		TxHighPwrLevel_35			6
-#define		TxHighPwrLevel_50			7
-#define		TxHighPwrLevel_70			8
-#define		TxHighPwrLevel_100			9
+#define TxHighPwrLevel_Normal 0
+#define TxHighPwrLevel_Level1 1
+#define TxHighPwrLevel_Level2 2
+#define TxHighPwrLevel_BT1 3
+#define TxHighPwrLevel_BT2 4
+#define TxHighPwrLevel_15 5
+#define TxHighPwrLevel_35 6
+#define TxHighPwrLevel_50 7
+#define TxHighPwrLevel_70 8
+#define TxHighPwrLevel_100 9
 
 void odm_DynamicTxPowerInit(void *pDM_VOID);
 
diff --git a/drivers/staging/rtl8723bs/hal/odm_EdcaTurboCheck.c b/drivers/staging/rtl8723bs/hal/odm_EdcaTurboCheck.c
index 578d5712645c8..21a352f87bb2b 100644
--- a/drivers/staging/rtl8723bs/hal/odm_EdcaTurboCheck.c
+++ b/drivers/staging/rtl8723bs/hal/odm_EdcaTurboCheck.c
@@ -8,26 +8,28 @@
 #include "odm_precomp.h"
 
 static u32 edca_setting_DL_GMode[HT_IOT_PEER_MAX] = {
-/*UNKNOWN, REALTEK_90, ALTEK_92SE	BROADCOM, LINK	ATHEROS,
+	/*UNKNOWN, REALTEK_90, ALTEK_92SE	BROADCOM, LINK	ATHEROS,
  *CISCO, MERU, MARVELL, 92U_AP, SELF_AP
  */
-	0x4322, 0xa44f, 0x5e4322, 0xa42b, 0x5e4322, 0x4322,
-	0xa42b, 0x5ea42b, 0xa44f, 0x5e4322, 0x5ea42b
+	0x4322, 0xa44f,	  0x5e4322, 0xa42b,   0x5e4322, 0x4322,
+	0xa42b, 0x5ea42b, 0xa44f,   0x5e4322, 0x5ea42b
 };
 
 static u32 edca_setting_UL[HT_IOT_PEER_MAX] = {
-/*UNKNOWN, REALTEK_90, REALTEK_92SE, BROADCOM, RALINK, ATHEROS,
+	/*UNKNOWN, REALTEK_90, REALTEK_92SE, BROADCOM, RALINK, ATHEROS,
  *CISCO, MERU, MARVELL, 92U_AP, SELF_AP(DownLink/Tx)
  */
-	0x5e4322, 0xa44f, 0x5e4322, 0x5ea32b, 0x5ea422,	0x5ea322,
-	0x3ea430, 0x5ea42b, 0x5ea44f, 0x5e4322, 0x5e4322};
+	0x5e4322, 0xa44f,   0x5e4322, 0x5ea32b, 0x5ea422, 0x5ea322,
+	0x3ea430, 0x5ea42b, 0x5ea44f, 0x5e4322, 0x5e4322
+};
 
 static u32 edca_setting_DL[HT_IOT_PEER_MAX] = {
-/*UNKNOWN, REALTEK_90, REALTEK_92SE, BROADCOM, RALINK, ATHEROS,
+	/*UNKNOWN, REALTEK_90, REALTEK_92SE, BROADCOM, RALINK, ATHEROS,
  *CISCO, MERU, MARVELL, 92U_AP, SELF_AP(UpLink/Rx)
  */
-	0xa44f, 0x5ea44f, 0x5e4322, 0x5ea42b, 0xa44f, 0xa630,
-	0x5ea630, 0x5ea42b, 0xa44f, 0xa42b, 0xa42b};
+	0xa44f,	  0x5ea44f, 0x5e4322, 0x5ea42b, 0xa44f, 0xa630,
+	0x5ea630, 0x5ea42b, 0xa44f,   0xa42b,	0xa42b
+};
 
 void ODM_EdcaTurboInit(void *pDM_VOID)
 {
@@ -37,7 +39,7 @@ void ODM_EdcaTurboInit(void *pDM_VOID)
 	pDM_Odm->DM_EDCA_Table.bCurrentTurboEDCA = false;
 	pDM_Odm->DM_EDCA_Table.bIsCurRDLState = false;
 	Adapter->recvpriv.bIsAnyNonBEPkts = false;
-}	/*  ODM_InitEdcaTurbo */
+} /*  ODM_InitEdcaTurbo */
 
 void odm_EdcaTurboCheck(void *pDM_VOID)
 {
@@ -51,7 +53,7 @@ void odm_EdcaTurboCheck(void *pDM_VOID)
 		return;
 
 	odm_EdcaTurboCheckCE(pDM_Odm);
-}	/*  odm_CheckEdcaTurbo */
+} /*  odm_CheckEdcaTurbo */
 
 void odm_EdcaTurboCheckCE(void *pDM_VOID)
 {
@@ -65,14 +67,14 @@ void odm_EdcaTurboCheckCE(void *pDM_VOID)
 	u32 EDCA_BE_UL = 0x5ea42b;
 	u32 EDCA_BE_DL = 0x5ea42b;
 	u32 iot_peer = 0;
-	u8 wirelessmode = 0xFF;		/* invalid value */
+	u8 wirelessmode = 0xFF; /* invalid value */
 	u32 trafficIndex;
 	u32 edca_param;
-	u64	cur_tx_bytes = 0;
-	u64	cur_rx_bytes = 0;
+	u64 cur_tx_bytes = 0;
+	u64 cur_rx_bytes = 0;
 	u8 bbtchange = false;
 	u8 biasonrx = false;
-	struct hal_com_data	*pHalData = GET_HAL_DATA(Adapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 
 	if (!pDM_Odm->bLinked) {
 		precvpriv->bIsAnyNonBEPkts = false;
@@ -89,7 +91,7 @@ void odm_EdcaTurboCheckCE(void *pDM_VOID)
 
 	iot_peer = pmlmeinfo->assoc_AP_vendor;
 
-	if (iot_peer >=  HT_IOT_PEER_MAX) {
+	if (iot_peer >= HT_IOT_PEER_MAX) {
 		precvpriv->bIsAnyNonBEPkts = false;
 		return;
 	}
@@ -150,8 +152,9 @@ void odm_EdcaTurboCheckCE(void *pDM_VOID)
 	} else {
 		/*  Turn Off EDCA turbo here. */
 		/*  Restore original EDCA according to the declaration of AP. */
-		 if (pDM_Odm->DM_EDCA_Table.bCurrentTurboEDCA) {
-			rtw_write32(Adapter, REG_EDCA_BE_PARAM, pHalData->AcParam_BE);
+		if (pDM_Odm->DM_EDCA_Table.bCurrentTurboEDCA) {
+			rtw_write32(Adapter, REG_EDCA_BE_PARAM,
+				    pHalData->AcParam_BE);
 			pDM_Odm->DM_EDCA_Table.bCurrentTurboEDCA = false;
 		}
 	}
diff --git a/drivers/staging/rtl8723bs/hal/odm_HWConfig.c b/drivers/staging/rtl8723bs/hal/odm_HWConfig.c
index c88d669cb086d..3aa73361a6f64 100644
--- a/drivers/staging/rtl8723bs/hal/odm_HWConfig.c
+++ b/drivers/staging/rtl8723bs/hal/odm_HWConfig.c
@@ -10,23 +10,22 @@
 static u8 odm_query_rx_pwr_percentage(s8 ant_power)
 {
 	if ((ant_power <= -100) || (ant_power >= 20))
-		return	0;
+		return 0;
 	else if (ant_power >= 0)
-		return	100;
+		return 100;
 	else
 		return 100 + ant_power;
-
 }
 
 s32 odm_signal_scale_mapping(struct dm_odm_t *dm_odm, s32 curr_sig)
 {
 	s32 ret_sig = 0;
 
-	if (dm_odm->SupportInterface  == ODM_ITRF_SDIO) {
+	if (dm_odm->SupportInterface == ODM_ITRF_SDIO) {
 		if (curr_sig >= 51 && curr_sig <= 100)
 			ret_sig = 100;
 		else if (curr_sig >= 41 && curr_sig <= 50)
-			ret_sig = 80 + ((curr_sig - 40)*2);
+			ret_sig = 80 + ((curr_sig - 40) * 2);
 		else if (curr_sig >= 31 && curr_sig <= 40)
 			ret_sig = 66 + (curr_sig - 30);
 		else if (curr_sig >= 21 && curr_sig <= 30)
@@ -73,8 +72,8 @@ static s8 odm_cck_rssi(u8 lna_idx, u8 vga_idx)
 	s8 rx_pwr_all = 0x00;
 
 	switch (lna_idx) {
-	/* 46  53 73 95 201301231630 */
-	/*  46 53 77 99 201301241630 */
+		/* 46  53 73 95 201301231630 */
+		/*  46 53 77 99 201301241630 */
 
 	case 6:
 		rx_pwr_all = -34 - (2 * vga_idx);
@@ -107,7 +106,8 @@ static void odm_rx_phy_status_parsing(struct dm_odm_t *dm_odm,
 	bool is_cck_rate = false;
 	u8 rf_rx_num = 0;
 	u8 lna_idx, vga_idx;
-	struct phy_status_rpt_8192cd_t *phy_sta_rpt = (struct phy_status_rpt_8192cd_t *)phy_status;
+	struct phy_status_rpt_8192cd_t *phy_sta_rpt =
+		(struct phy_status_rpt_8192cd_t *)phy_status;
 
 	is_cck_rate = pkt_info->data_rate <= DESC_RATE11M;
 	phy_info->rx_mimo_signal_quality[RF_PATH_A] = -1;
@@ -130,7 +130,7 @@ static void odm_rx_phy_status_parsing(struct dm_odm_t *dm_odm,
 		 * 2011.11.28 LukeLee: 88E use different LNA & VGA gain table
 		 * The RSSI formula should be modified according to the gain table
 		 */
-		lna_idx = ((cck_agc_rpt & 0xE0)>>5);
+		lna_idx = ((cck_agc_rpt & 0xE0) >> 5);
 		vga_idx = (cck_agc_rpt & 0x1F);
 		rx_pwr_all = odm_cck_rssi(lna_idx, vga_idx);
 		pwdb_all = odm_query_rx_pwr_percentage(rx_pwr_all);
@@ -150,15 +150,15 @@ static void odm_rx_phy_status_parsing(struct dm_odm_t *dm_odm,
 			if (phy_info->rx_pwd_ba11 > 40 && !dm_odm->bInHctTest)
 				sq = 100;
 			else {
-				sq_rpt = phy_sta_rpt->cck_sig_qual_ofdm_pwdb_all;
+				sq_rpt =
+					phy_sta_rpt->cck_sig_qual_ofdm_pwdb_all;
 
 				if (sq_rpt > 64)
 					sq = 0;
 				else if (sq_rpt < 20)
 					sq = 100;
 				else
-					sq = ((64-sq_rpt) * 100) / 44;
-
+					sq = ((64 - sq_rpt) * 100) / 44;
 			}
 
 			phy_info->signal_quality = sq;
@@ -177,9 +177,11 @@ static void odm_rx_phy_status_parsing(struct dm_odm_t *dm_odm,
 			if (dm_odm->RFPathRxEnable & BIT(i))
 				rf_rx_num++;
 			/* else */
-				/* continue; */
+			/* continue; */
 
-			rx_pwr[i] = ((phy_sta_rpt->path_agc[i].gain & 0x3F) * 2) - 110;
+			rx_pwr[i] =
+				((phy_sta_rpt->path_agc[i].gain & 0x3F) * 2) -
+				110;
 
 			phy_info->rx_pwr[i] = rx_pwr[i];
 
@@ -190,15 +192,19 @@ static void odm_rx_phy_status_parsing(struct dm_odm_t *dm_odm,
 			phy_info->rx_mimo_signal_strength[i] = (u8)rssi;
 
 			/* Get Rx snr value in DB */
-			phy_info->rx_snr[i] = dm_odm->PhyDbgInfo.RxSNRdB[i] = (s32)(phy_sta_rpt->path_rxsnr[i]/2);
+			phy_info->rx_snr[i] = dm_odm->PhyDbgInfo.RxSNRdB[i] =
+				(s32)(phy_sta_rpt->path_rxsnr[i] / 2);
 		}
 
 		/*
 		 * (2)PWDB, Average PWDB calculated by hardware (for rate adaptive)
 		 */
-		rx_pwr_all = ((phy_sta_rpt->cck_sig_qual_ofdm_pwdb_all >> 1) & 0x7f) - 110;
+		rx_pwr_all = ((phy_sta_rpt->cck_sig_qual_ofdm_pwdb_all >> 1) &
+			      0x7f) -
+			     110;
 
-		pwdb_all_bt = pwdb_all = odm_query_rx_pwr_percentage(rx_pwr_all);
+		pwdb_all_bt = pwdb_all =
+			odm_query_rx_pwr_percentage(rx_pwr_all);
 
 		phy_info->rx_pwd_ba11 = pwdb_all;
 		phy_info->bt_rx_rssi_percentage = pwdb_all_bt;
@@ -218,7 +224,8 @@ static void odm_rx_phy_status_parsing(struct dm_odm_t *dm_odm,
 		 * is supposed to be negative) is not correct
 		 * anymore.
 		 */
-		evm = odm_evm_db_to_percentage(phy_sta_rpt->stream_rxevm[0]); /* dbm */
+		evm = odm_evm_db_to_percentage(
+			phy_sta_rpt->stream_rxevm[0]); /* dbm */
 
 		/*  Fill value in RFD, Get the first spatial stream only */
 		phy_info->signal_quality = (u8)(evm & 0xff);
@@ -234,20 +241,23 @@ static void odm_rx_phy_status_parsing(struct dm_odm_t *dm_odm,
 	 * It is assigned to the BSS List in GetValueFromBeaconOrProbeRsp().
 	 */
 	if (is_cck_rate) {
-		phy_info->signal_strength = (u8)(odm_signal_scale_mapping(dm_odm, pwdb_all));
+		phy_info->signal_strength =
+			(u8)(odm_signal_scale_mapping(dm_odm, pwdb_all));
 	} else {
 		if (rf_rx_num != 0) {
-			phy_info->signal_strength = (u8)(odm_signal_scale_mapping(dm_odm, total_rssi /= rf_rx_num));
+			phy_info->signal_strength =
+				(u8)(odm_signal_scale_mapping(
+					dm_odm, total_rssi /= rf_rx_num));
 		}
 	}
 }
 
-static void odm_Process_RSSIForDM(
-	struct dm_odm_t *pDM_Odm, struct odm_phy_info *pPhyInfo, struct odm_packet_info *pPktinfo
-)
+static void odm_Process_RSSIForDM(struct dm_odm_t *pDM_Odm,
+				  struct odm_phy_info *pPhyInfo,
+				  struct odm_packet_info *pPktinfo)
 {
-
-	s32 UndecoratedSmoothedPWDB, UndecoratedSmoothedCCK, UndecoratedSmoothedOFDM, RSSI_Ave;
+	s32 UndecoratedSmoothedPWDB, UndecoratedSmoothedCCK,
+		UndecoratedSmoothedOFDM, RSSI_Ave;
 	u8 isCCKrate = 0;
 	u8 RSSI_max, RSSI_min, i;
 	u32 OFDM_pkt = 0;
@@ -273,7 +283,6 @@ static void odm_Process_RSSIForDM(
 
 	/* Statistic for antenna/path diversity------------------ */
 	if (pDM_Odm->SupportAbility & ODM_BB_ANT_DIV) {
-
 	}
 
 	/* Smart Antenna Debug Message------------------ */
@@ -283,76 +292,102 @@ static void odm_Process_RSSIForDM(
 	UndecoratedSmoothedPWDB = pEntry->rssi_stat.UndecoratedSmoothedPWDB;
 
 	if (pPktinfo->to_self || pPktinfo->is_beacon) {
-
 		if (!isCCKrate) { /* ofdm rate */
 			if (pPhyInfo->rx_mimo_signal_strength[RF_PATH_B] == 0) {
-				RSSI_Ave = pPhyInfo->rx_mimo_signal_strength[RF_PATH_A];
-				pDM_Odm->RSSI_A = pPhyInfo->rx_mimo_signal_strength[RF_PATH_A];
+				RSSI_Ave = pPhyInfo->rx_mimo_signal_strength
+						   [RF_PATH_A];
+				pDM_Odm->RSSI_A =
+					pPhyInfo->rx_mimo_signal_strength
+						[RF_PATH_A];
 				pDM_Odm->RSSI_B = 0;
 			} else {
-				pDM_Odm->RSSI_A =  pPhyInfo->rx_mimo_signal_strength[RF_PATH_A];
-				pDM_Odm->RSSI_B = pPhyInfo->rx_mimo_signal_strength[RF_PATH_B];
-
-				if (
-					pPhyInfo->rx_mimo_signal_strength[RF_PATH_A] >
-					pPhyInfo->rx_mimo_signal_strength[RF_PATH_B]
-				) {
-					RSSI_max = pPhyInfo->rx_mimo_signal_strength[RF_PATH_A];
-					RSSI_min = pPhyInfo->rx_mimo_signal_strength[RF_PATH_B];
+				pDM_Odm->RSSI_A =
+					pPhyInfo->rx_mimo_signal_strength
+						[RF_PATH_A];
+				pDM_Odm->RSSI_B =
+					pPhyInfo->rx_mimo_signal_strength
+						[RF_PATH_B];
+
+				if (pPhyInfo->rx_mimo_signal_strength[RF_PATH_A] >
+				    pPhyInfo->rx_mimo_signal_strength[RF_PATH_B]) {
+					RSSI_max =
+						pPhyInfo->rx_mimo_signal_strength
+							[RF_PATH_A];
+					RSSI_min =
+						pPhyInfo->rx_mimo_signal_strength
+							[RF_PATH_B];
 				} else {
-					RSSI_max = pPhyInfo->rx_mimo_signal_strength[RF_PATH_B];
-					RSSI_min = pPhyInfo->rx_mimo_signal_strength[RF_PATH_A];
+					RSSI_max =
+						pPhyInfo->rx_mimo_signal_strength
+							[RF_PATH_B];
+					RSSI_min =
+						pPhyInfo->rx_mimo_signal_strength
+							[RF_PATH_A];
 				}
 
-				if ((RSSI_max-RSSI_min) < 3)
+				if ((RSSI_max - RSSI_min) < 3)
 					RSSI_Ave = RSSI_max;
-				else if ((RSSI_max-RSSI_min) < 6)
+				else if ((RSSI_max - RSSI_min) < 6)
 					RSSI_Ave = RSSI_max - 1;
-				else if ((RSSI_max-RSSI_min) < 10)
+				else if ((RSSI_max - RSSI_min) < 10)
 					RSSI_Ave = RSSI_max - 2;
 				else
 					RSSI_Ave = RSSI_max - 3;
 			}
 
 			/* 1 Process OFDM RSSI */
-			if (UndecoratedSmoothedOFDM <= 0)	/*  initialize */
+			if (UndecoratedSmoothedOFDM <= 0) /*  initialize */
 				UndecoratedSmoothedOFDM = pPhyInfo->rx_pwd_ba11;
 			else {
-				if (pPhyInfo->rx_pwd_ba11 > (u32)UndecoratedSmoothedOFDM) {
+				if (pPhyInfo->rx_pwd_ba11 >
+				    (u32)UndecoratedSmoothedOFDM) {
 					UndecoratedSmoothedOFDM =
-							((UndecoratedSmoothedOFDM*(Rx_Smooth_Factor-1)) +
-							RSSI_Ave)/Rx_Smooth_Factor;
-					UndecoratedSmoothedOFDM = UndecoratedSmoothedOFDM + 1;
+						((UndecoratedSmoothedOFDM *
+						  (Rx_Smooth_Factor - 1)) +
+						 RSSI_Ave) /
+						Rx_Smooth_Factor;
+					UndecoratedSmoothedOFDM =
+						UndecoratedSmoothedOFDM + 1;
 				} else {
 					UndecoratedSmoothedOFDM =
-							((UndecoratedSmoothedOFDM*(Rx_Smooth_Factor-1)) +
-							RSSI_Ave)/Rx_Smooth_Factor;
+						((UndecoratedSmoothedOFDM *
+						  (Rx_Smooth_Factor - 1)) +
+						 RSSI_Ave) /
+						Rx_Smooth_Factor;
 				}
 			}
 
-			pEntry->rssi_stat.PacketMap = (pEntry->rssi_stat.PacketMap<<1) | BIT(0);
+			pEntry->rssi_stat.PacketMap =
+				(pEntry->rssi_stat.PacketMap << 1) | BIT(0);
 
 		} else {
 			RSSI_Ave = pPhyInfo->rx_pwd_ba11;
-			pDM_Odm->RSSI_A = (u8) pPhyInfo->rx_pwd_ba11;
+			pDM_Odm->RSSI_A = (u8)pPhyInfo->rx_pwd_ba11;
 			pDM_Odm->RSSI_B = 0;
 
 			/* 1 Process CCK RSSI */
-			if (UndecoratedSmoothedCCK <= 0)	/*  initialize */
+			if (UndecoratedSmoothedCCK <= 0) /*  initialize */
 				UndecoratedSmoothedCCK = pPhyInfo->rx_pwd_ba11;
 			else {
-				if (pPhyInfo->rx_pwd_ba11 > (u32)UndecoratedSmoothedCCK) {
+				if (pPhyInfo->rx_pwd_ba11 >
+				    (u32)UndecoratedSmoothedCCK) {
+					UndecoratedSmoothedCCK =
+						((UndecoratedSmoothedCCK *
+						  (Rx_Smooth_Factor - 1)) +
+						 pPhyInfo->rx_pwd_ba11) /
+						Rx_Smooth_Factor;
 					UndecoratedSmoothedCCK =
-							((UndecoratedSmoothedCCK*(Rx_Smooth_Factor-1)) +
-							pPhyInfo->rx_pwd_ba11)/Rx_Smooth_Factor;
-					UndecoratedSmoothedCCK = UndecoratedSmoothedCCK + 1;
+						UndecoratedSmoothedCCK + 1;
 				} else {
 					UndecoratedSmoothedCCK =
-							((UndecoratedSmoothedCCK*(Rx_Smooth_Factor-1)) +
-							pPhyInfo->rx_pwd_ba11)/Rx_Smooth_Factor;
+						((UndecoratedSmoothedCCK *
+						  (Rx_Smooth_Factor - 1)) +
+						 pPhyInfo->rx_pwd_ba11) /
+						Rx_Smooth_Factor;
 				}
 			}
-			pEntry->rssi_stat.PacketMap = pEntry->rssi_stat.PacketMap<<1;
+			pEntry->rssi_stat.PacketMap =
+				pEntry->rssi_stat.PacketMap << 1;
 		}
 
 		/* if (pEntry) */
@@ -364,33 +399,49 @@ static void odm_Process_RSSIForDM(
 				pEntry->rssi_stat.ValidBit++;
 
 			for (i = 0; i < pEntry->rssi_stat.ValidBit; i++)
-				OFDM_pkt += (u8)(pEntry->rssi_stat.PacketMap>>i)&BIT(0);
+				OFDM_pkt +=
+					(u8)(pEntry->rssi_stat.PacketMap >> i) &
+					BIT(0);
 
 			if (pEntry->rssi_stat.ValidBit == 64) {
-				Weighting = ((OFDM_pkt<<4) > 64)?64:(OFDM_pkt<<4);
-				UndecoratedSmoothedPWDB = (Weighting*UndecoratedSmoothedOFDM+(64-Weighting)*UndecoratedSmoothedCCK)>>6;
+				Weighting = ((OFDM_pkt << 4) > 64) ?
+						    64 :
+						    (OFDM_pkt << 4);
+				UndecoratedSmoothedPWDB =
+					(Weighting * UndecoratedSmoothedOFDM +
+					 (64 - Weighting) *
+						 UndecoratedSmoothedCCK) >>
+					6;
 			} else {
 				if (pEntry->rssi_stat.ValidBit != 0)
-					UndecoratedSmoothedPWDB = (OFDM_pkt*UndecoratedSmoothedOFDM+(pEntry->rssi_stat.ValidBit-OFDM_pkt)*UndecoratedSmoothedCCK)/pEntry->rssi_stat.ValidBit;
+					UndecoratedSmoothedPWDB =
+						(OFDM_pkt *
+							 UndecoratedSmoothedOFDM +
+						 (pEntry->rssi_stat.ValidBit -
+						  OFDM_pkt) *
+							 UndecoratedSmoothedCCK) /
+						pEntry->rssi_stat.ValidBit;
 				else
 					UndecoratedSmoothedPWDB = 0;
 			}
 
-			pEntry->rssi_stat.UndecoratedSmoothedCCK = UndecoratedSmoothedCCK;
-			pEntry->rssi_stat.UndecoratedSmoothedOFDM = UndecoratedSmoothedOFDM;
-			pEntry->rssi_stat.UndecoratedSmoothedPWDB = UndecoratedSmoothedPWDB;
+			pEntry->rssi_stat.UndecoratedSmoothedCCK =
+				UndecoratedSmoothedCCK;
+			pEntry->rssi_stat.UndecoratedSmoothedOFDM =
+				UndecoratedSmoothedOFDM;
+			pEntry->rssi_stat.UndecoratedSmoothedPWDB =
+				UndecoratedSmoothedPWDB;
 		}
-
 	}
 }
 
 /*  */
 /*  Endianness before calling this API */
 /*  */
-void odm_phy_status_query(struct dm_odm_t *dm_odm, struct odm_phy_info *phy_info,
-			  u8 *phy_status, struct odm_packet_info *pkt_info)
+void odm_phy_status_query(struct dm_odm_t *dm_odm,
+			  struct odm_phy_info *phy_info, u8 *phy_status,
+			  struct odm_packet_info *pkt_info)
 {
-
 	odm_rx_phy_status_parsing(dm_odm, phy_info, phy_status, pkt_info);
 
 	if (!dm_odm->RSSI_test)
@@ -402,11 +453,9 @@ void odm_phy_status_query(struct dm_odm_t *dm_odm, struct odm_phy_info *phy_info
 /*  */
 /*  */
 
-enum hal_status ODM_ConfigRFWithHeaderFile(
-	struct dm_odm_t *pDM_Odm,
-	enum ODM_RF_Config_Type ConfigType,
-	enum rf_path eRFPath
-)
+enum hal_status ODM_ConfigRFWithHeaderFile(struct dm_odm_t *pDM_Odm,
+					   enum ODM_RF_Config_Type ConfigType,
+					   enum rf_path eRFPath)
 {
 	if (ConfigType == CONFIG_RF_RADIO)
 		ODM_ReadAndConfig_MP_8723B_RadioA(pDM_Odm);
@@ -424,9 +473,8 @@ enum hal_status ODM_ConfigRFWithTxPwrTrackHeaderFile(struct dm_odm_t *pDM_Odm)
 	return HAL_STATUS_SUCCESS;
 }
 
-enum hal_status ODM_ConfigBBWithHeaderFile(
-	struct dm_odm_t *pDM_Odm, enum ODM_BB_Config_Type ConfigType
-)
+enum hal_status ODM_ConfigBBWithHeaderFile(struct dm_odm_t *pDM_Odm,
+					   enum ODM_BB_Config_Type ConfigType)
 {
 	if (ConfigType == CONFIG_BB_PHY_REG)
 		ODM_ReadAndConfig_MP_8723B_PHY_REG(pDM_Odm);
@@ -437,4 +485,3 @@ enum hal_status ODM_ConfigBBWithHeaderFile(
 
 	return HAL_STATUS_SUCCESS;
 }
-
diff --git a/drivers/staging/rtl8723bs/hal/odm_HWConfig.h b/drivers/staging/rtl8723bs/hal/odm_HWConfig.h
index 615145812ed23..1e95e1b8ae401 100644
--- a/drivers/staging/rtl8723bs/hal/odm_HWConfig.h
+++ b/drivers/staging/rtl8723bs/hal/odm_HWConfig.h
@@ -13,11 +13,11 @@
 /*  */
 
 struct phy_rx_agc_info_t {
-	#if (ODM_ENDIAN_TYPE == ODM_ENDIAN_LITTLE)
-		u8 gain:7, trsw:1;
-	#else
-		u8 trsw:1, gain:7;
-	#endif
+#if (ODM_ENDIAN_TYPE == ODM_ENDIAN_LITTLE)
+	u8 gain : 7, trsw : 1;
+#else
+	u8 trsw : 1, gain : 7;
+#endif
 };
 
 struct phy_status_rpt_8192cd_t {
@@ -26,7 +26,7 @@ struct phy_status_rpt_8192cd_t {
 	u8 cck_sig_qual_ofdm_pwdb_all;
 	u8 cck_agc_rpt_ofdm_cfosho_a;
 	u8 cck_rpt_b_ofdm_cfosho_b;
-	u8 rsvd_1;/* ch_corr_msb; */
+	u8 rsvd_1; /* ch_corr_msb; */
 	u8 noise_power_db_msb;
 	s8 path_cfotail[2];
 	u8 pcts_mask[2];
@@ -36,49 +36,44 @@ struct phy_status_rpt_8192cd_t {
 	u8 rsvd_2[3];
 	u8 stream_csi[2];
 	u8 stream_target_csi[2];
-	s8	sig_evm;
+	s8 sig_evm;
 	u8 rsvd_3;
 
 #if (ODM_ENDIAN_TYPE == ODM_ENDIAN_LITTLE)
-	u8 antsel_rx_keep_2:1;	/* ex_intf_flg:1; */
-	u8 sgi_en:1;
-	u8 rxsc:2;
-	u8 idle_long:1;
-	u8 r_ant_train_en:1;
-	u8 ant_sel_b:1;
-	u8 ant_sel:1;
-#else	/*  _BIG_ENDIAN_ */
-	u8 ant_sel:1;
-	u8 ant_sel_b:1;
-	u8 r_ant_train_en:1;
-	u8 idle_long:1;
-	u8 rxsc:2;
-	u8 sgi_en:1;
-	u8 antsel_rx_keep_2:1;	/* ex_intf_flg:1; */
+	u8 antsel_rx_keep_2 : 1; /* ex_intf_flg:1; */
+	u8 sgi_en : 1;
+	u8 rxsc : 2;
+	u8 idle_long : 1;
+	u8 r_ant_train_en : 1;
+	u8 ant_sel_b : 1;
+	u8 ant_sel : 1;
+#else /*  _BIG_ENDIAN_ */
+	u8 ant_sel : 1;
+	u8 ant_sel_b : 1;
+	u8 r_ant_train_en : 1;
+	u8 idle_long : 1;
+	u8 rxsc : 2;
+	u8 sgi_en : 1;
+	u8 antsel_rx_keep_2 : 1; /* ex_intf_flg:1; */
 #endif
 };
 
-void odm_phy_status_query(struct dm_odm_t *dm_odm, struct odm_phy_info *phy_info,
-			  u8 *phy_status, struct odm_packet_info *pkt_info);
+void odm_phy_status_query(struct dm_odm_t *dm_odm,
+			  struct odm_phy_info *phy_info, u8 *phy_status,
+			  struct odm_packet_info *pkt_info);
 
 enum hal_status ODM_ConfigRFWithTxPwrTrackHeaderFile(struct dm_odm_t *pDM_Odm);
 
-enum hal_status ODM_ConfigRFWithHeaderFile(
-	struct dm_odm_t *pDM_Odm,
-	enum ODM_RF_Config_Type ConfigType,
-	enum rf_path eRFPath
-);
+enum hal_status ODM_ConfigRFWithHeaderFile(struct dm_odm_t *pDM_Odm,
+					   enum ODM_RF_Config_Type ConfigType,
+					   enum rf_path eRFPath);
 
-enum hal_status ODM_ConfigBBWithHeaderFile(
-	struct dm_odm_t *pDM_Odm, enum ODM_BB_Config_Type ConfigType
-);
+enum hal_status ODM_ConfigBBWithHeaderFile(struct dm_odm_t *pDM_Odm,
+					   enum ODM_BB_Config_Type ConfigType);
 
-enum hal_status ODM_ConfigFWWithHeaderFile(
-	struct dm_odm_t *pDM_Odm,
-	enum ODM_FW_Config_Type ConfigType,
-	u8 *pFirmware,
-	u32 *pSize
-);
+enum hal_status ODM_ConfigFWWithHeaderFile(struct dm_odm_t *pDM_Odm,
+					   enum ODM_FW_Config_Type ConfigType,
+					   u8 *pFirmware, u32 *pSize);
 
 s32 odm_signal_scale_mapping(struct dm_odm_t *pDM_Odm, s32 CurrSig);
 
diff --git a/drivers/staging/rtl8723bs/hal/odm_RegConfig8723B.c b/drivers/staging/rtl8723bs/hal/odm_RegConfig8723B.c
index 6514a711e6bd2..ee812526f9ced 100644
--- a/drivers/staging/rtl8723bs/hal/odm_RegConfig8723B.c
+++ b/drivers/staging/rtl8723bs/hal/odm_RegConfig8723B.c
@@ -7,18 +7,14 @@
 
 #include "odm_precomp.h"
 
-void odm_ConfigRFReg_8723B(
-	struct dm_odm_t *pDM_Odm,
-	u32 Addr,
-	u32 Data,
-	enum rf_path RF_PATH,
-	u32 RegAddr
-)
+void odm_ConfigRFReg_8723B(struct dm_odm_t *pDM_Odm, u32 Addr, u32 Data,
+			   enum rf_path RF_PATH, u32 RegAddr)
 {
 	if (Addr == 0xfe || Addr == 0xffe)
 		msleep(50);
 	else {
-		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH, RegAddr, bRFRegOffsetMask, Data);
+		PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH, RegAddr,
+			     bRFRegOffsetMask, Data);
 		/*  Add 1us delay between BB/RF register setting. */
 		udelay(1);
 
@@ -27,17 +23,19 @@ void odm_ConfigRFReg_8723B(
 			u32 getvalue = 0;
 			u8 count = 0;
 
-			getvalue = PHY_QueryRFReg(
-				pDM_Odm->Adapter, RF_PATH, Addr, bMaskDWord
-			);
+			getvalue = PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH,
+						  Addr, bMaskDWord);
 
 			udelay(1);
 
-			while ((getvalue>>8) != (Data>>8)) {
+			while ((getvalue >> 8) != (Data >> 8)) {
 				count++;
-				PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH, RegAddr, bRFRegOffsetMask, Data);
+				PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH, RegAddr,
+					     bRFRegOffsetMask, Data);
 				udelay(1);
-				getvalue = PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH, Addr, bMaskDWord);
+				getvalue = PHY_QueryRFReg(pDM_Odm->Adapter,
+							  RF_PATH, Addr,
+							  bMaskDWord);
 				if (count > 5)
 					break;
 			}
@@ -47,34 +45,23 @@ void odm_ConfigRFReg_8723B(
 			u32 getvalue = 0;
 			u8 count = 0;
 
-			getvalue = PHY_QueryRFReg(
-				pDM_Odm->Adapter, RF_PATH, Addr, bMaskDWord
-			);
+			getvalue = PHY_QueryRFReg(pDM_Odm->Adapter, RF_PATH,
+						  Addr, bMaskDWord);
 
 			udelay(1);
 
 			while (getvalue != Data) {
 				count++;
-				PHY_SetRFReg(
-					pDM_Odm->Adapter,
-					RF_PATH,
-					RegAddr,
-					bRFRegOffsetMask,
-					Data
-				);
+				PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH, RegAddr,
+					     bRFRegOffsetMask, Data);
 				udelay(1);
 				/* Do LCK againg */
-				PHY_SetRFReg(
-					pDM_Odm->Adapter,
-					RF_PATH,
-					0x18,
-					bRFRegOffsetMask,
-					0x0fc07
-				);
+				PHY_SetRFReg(pDM_Odm->Adapter, RF_PATH, 0x18,
+					     bRFRegOffsetMask, 0x0fc07);
 				udelay(1);
-				getvalue = PHY_QueryRFReg(
-					pDM_Odm->Adapter, RF_PATH, Addr, bMaskDWord
-				);
+				getvalue = PHY_QueryRFReg(pDM_Odm->Adapter,
+							  RF_PATH, Addr,
+							  bMaskDWord);
 
 				if (count > 5)
 					break;
@@ -85,16 +72,11 @@ void odm_ConfigRFReg_8723B(
 
 void odm_ConfigRF_RadioA_8723B(struct dm_odm_t *pDM_Odm, u32 Addr, u32 Data)
 {
-	u32  content = 0x1000; /*  RF_Content: radioa_txt */
-	u32 maskforPhySet = (u32)(content&0xE000);
-
-	odm_ConfigRFReg_8723B(
-		pDM_Odm,
-		Addr,
-		Data,
-		RF_PATH_A,
-		Addr|maskforPhySet
-	);
+	u32 content = 0x1000; /*  RF_Content: radioa_txt */
+	u32 maskforPhySet = (u32)(content & 0xE000);
+
+	odm_ConfigRFReg_8723B(pDM_Odm, Addr, Data, RF_PATH_A,
+			      Addr | maskforPhySet);
 }
 
 void odm_ConfigMAC_8723B(struct dm_odm_t *pDM_Odm, u32 Addr, u8 Data)
@@ -102,38 +84,26 @@ void odm_ConfigMAC_8723B(struct dm_odm_t *pDM_Odm, u32 Addr, u8 Data)
 	rtw_write8(pDM_Odm->Adapter, Addr, Data);
 }
 
-void odm_ConfigBB_AGC_8723B(
-	struct dm_odm_t *pDM_Odm,
-	u32 Addr,
-	u32 Bitmask,
-	u32 Data
-)
+void odm_ConfigBB_AGC_8723B(struct dm_odm_t *pDM_Odm, u32 Addr, u32 Bitmask,
+			    u32 Data)
 {
 	PHY_SetBBReg(pDM_Odm->Adapter, Addr, Bitmask, Data);
 	/*  Add 1us delay between BB/RF register setting. */
 	udelay(1);
 }
 
-void odm_ConfigBB_PHY_REG_PG_8723B(
-	struct dm_odm_t *pDM_Odm,
-	u32 RfPath,
-	u32 Addr,
-	u32 Bitmask,
-	u32 Data
-)
+void odm_ConfigBB_PHY_REG_PG_8723B(struct dm_odm_t *pDM_Odm, u32 RfPath,
+				   u32 Addr, u32 Bitmask, u32 Data)
 {
 	if (Addr == 0xfe || Addr == 0xffe)
 		msleep(50);
 	else
-		PHY_StoreTxPowerByRate(pDM_Odm->Adapter, RfPath, Addr, Bitmask, Data);
+		PHY_StoreTxPowerByRate(pDM_Odm->Adapter, RfPath, Addr, Bitmask,
+				       Data);
 }
 
-void odm_ConfigBB_PHY_8723B(
-	struct dm_odm_t *pDM_Odm,
-	u32 Addr,
-	u32 Bitmask,
-	u32 Data
-)
+void odm_ConfigBB_PHY_8723B(struct dm_odm_t *pDM_Odm, u32 Addr, u32 Bitmask,
+			    u32 Data)
 {
 	if (Addr == 0xfe)
 		msleep(50);
@@ -154,23 +124,10 @@ void odm_ConfigBB_PHY_8723B(
 	udelay(1);
 }
 
-void odm_ConfigBB_TXPWR_LMT_8723B(
-	struct dm_odm_t *pDM_Odm,
-	u8 *Regulation,
-	u8 *Bandwidth,
-	u8 *RateSection,
-	u8 *RfPath,
-	u8 *Channel,
-	u8 *PowerLimit
-)
+void odm_ConfigBB_TXPWR_LMT_8723B(struct dm_odm_t *pDM_Odm, u8 *Regulation,
+				  u8 *Bandwidth, u8 *RateSection, u8 *RfPath,
+				  u8 *Channel, u8 *PowerLimit)
 {
-	PHY_SetTxPowerLimit(
-		pDM_Odm->Adapter,
-		Regulation,
-		Bandwidth,
-		RateSection,
-		RfPath,
-		Channel,
-		PowerLimit
-	);
+	PHY_SetTxPowerLimit(pDM_Odm->Adapter, Regulation, Bandwidth,
+			    RateSection, RfPath, Channel, PowerLimit);
 }
diff --git a/drivers/staging/rtl8723bs/hal/odm_RegConfig8723B.h b/drivers/staging/rtl8723bs/hal/odm_RegConfig8723B.h
index fba7053ee3e13..30237c2966a15 100644
--- a/drivers/staging/rtl8723bs/hal/odm_RegConfig8723B.h
+++ b/drivers/staging/rtl8723bs/hal/odm_RegConfig8723B.h
@@ -7,39 +7,24 @@
 #ifndef __INC_ODM_REGCONFIG_H_8723B
 #define __INC_ODM_REGCONFIG_H_8723B
 
-void odm_ConfigRFReg_8723B(struct dm_odm_t *pDM_Odm,
-			   u32 Addr,
-			   u32 Data,
-			   enum rf_path RF_PATH,
-			   u32 RegAddr
-);
+void odm_ConfigRFReg_8723B(struct dm_odm_t *pDM_Odm, u32 Addr, u32 Data,
+			   enum rf_path RF_PATH, u32 RegAddr);
 
 void odm_ConfigRF_RadioA_8723B(struct dm_odm_t *pDM_Odm, u32 Addr, u32 Data);
 
 void odm_ConfigMAC_8723B(struct dm_odm_t *pDM_Odm, u32 Addr, u8 Data);
 
-void odm_ConfigBB_AGC_8723B(struct dm_odm_t *pDM_Odm,
-			    u32 Addr,
-			    u32 Bitmask,
-			    u32 Data
-);
-
-void odm_ConfigBB_PHY_REG_PG_8723B(struct dm_odm_t *pDM_Odm, u32 RfPath, u32 Addr,
-				   u32 Bitmask, u32 Data);
-
-void odm_ConfigBB_PHY_8723B(struct dm_odm_t *pDM_Odm,
-			    u32 Addr,
-			    u32 Bitmask,
-			    u32 Data
-);
-
-void odm_ConfigBB_TXPWR_LMT_8723B(struct dm_odm_t *pDM_Odm,
-				  u8 *Regulation,
-				  u8 *Bandwidth,
-				  u8 *RateSection,
-				  u8 *RfPath,
-				  u8 *Channel,
-				  u8 *PowerLimit
-);
+void odm_ConfigBB_AGC_8723B(struct dm_odm_t *pDM_Odm, u32 Addr, u32 Bitmask,
+			    u32 Data);
+
+void odm_ConfigBB_PHY_REG_PG_8723B(struct dm_odm_t *pDM_Odm, u32 RfPath,
+				   u32 Addr, u32 Bitmask, u32 Data);
+
+void odm_ConfigBB_PHY_8723B(struct dm_odm_t *pDM_Odm, u32 Addr, u32 Bitmask,
+			    u32 Data);
+
+void odm_ConfigBB_TXPWR_LMT_8723B(struct dm_odm_t *pDM_Odm, u8 *Regulation,
+				  u8 *Bandwidth, u8 *RateSection, u8 *RfPath,
+				  u8 *Channel, u8 *PowerLimit);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/hal/odm_RegDefine11N.h b/drivers/staging/rtl8723bs/hal/odm_RegDefine11N.h
index 9ba8e06e5ad55..603da3e4fac4c 100644
--- a/drivers/staging/rtl8723bs/hal/odm_RegDefine11N.h
+++ b/drivers/staging/rtl8723bs/hal/odm_RegDefine11N.h
@@ -5,156 +5,156 @@
  *
  ******************************************************************************/
 
-#ifndef	__ODM_REGDEFINE11N_H__
+#ifndef __ODM_REGDEFINE11N_H__
 #define __ODM_REGDEFINE11N_H__
 
 /* 2 RF REG LIST */
-#define	ODM_REG_RF_MODE_11N				0x00
-#define	ODM_REG_RF_0B_11N				0x0B
-#define	ODM_REG_CHNBW_11N				0x18
-#define	ODM_REG_T_METER_11N				0x24
-#define	ODM_REG_RF_25_11N				0x25
-#define	ODM_REG_RF_26_11N				0x26
-#define	ODM_REG_RF_27_11N				0x27
-#define	ODM_REG_RF_2B_11N				0x2B
-#define	ODM_REG_RF_2C_11N				0x2C
-#define	ODM_REG_RXRF_A3_11N				0x3C
-#define	ODM_REG_T_METER_92D_11N			0x42
-#define	ODM_REG_T_METER_88E_11N			0x42
+#define ODM_REG_RF_MODE_11N 0x00
+#define ODM_REG_RF_0B_11N 0x0B
+#define ODM_REG_CHNBW_11N 0x18
+#define ODM_REG_T_METER_11N 0x24
+#define ODM_REG_RF_25_11N 0x25
+#define ODM_REG_RF_26_11N 0x26
+#define ODM_REG_RF_27_11N 0x27
+#define ODM_REG_RF_2B_11N 0x2B
+#define ODM_REG_RF_2C_11N 0x2C
+#define ODM_REG_RXRF_A3_11N 0x3C
+#define ODM_REG_T_METER_92D_11N 0x42
+#define ODM_REG_T_METER_88E_11N 0x42
 
 /* 2 BB REG LIST */
 /* PAGE 8 */
-#define	ODM_REG_BB_CTRL_11N				0x800
-#define	ODM_REG_RF_PIN_11N				0x804
-#define	ODM_REG_PSD_CTRL_11N				0x808
-#define	ODM_REG_TX_ANT_CTRL_11N			0x80C
-#define	ODM_REG_BB_PWR_SAV5_11N		0x818
-#define	ODM_REG_CCK_RPT_FORMAT_11N		0x824
-#define	ODM_REG_RX_DEFAULT_A_11N		0x858
-#define	ODM_REG_RX_DEFAULT_B_11N		0x85A
-#define	ODM_REG_BB_PWR_SAV3_11N		0x85C
-#define	ODM_REG_ANTSEL_CTRL_11N			0x860
-#define	ODM_REG_RX_ANT_CTRL_11N			0x864
-#define	ODM_REG_PIN_CTRL_11N				0x870
-#define	ODM_REG_BB_PWR_SAV1_11N		0x874
-#define	ODM_REG_ANTSEL_PATH_11N			0x878
-#define	ODM_REG_BB_3WIRE_11N			0x88C
-#define	ODM_REG_SC_CNT_11N				0x8C4
-#define	ODM_REG_PSD_DATA_11N				0x8B4
-#define	ODM_REG_PSD_DATA_11N				0x8B4
-#define	ODM_REG_NHM_TIMER_11N			0x894
-#define	ODM_REG_NHM_TH9_TH10_11N		0x890
-#define	ODM_REG_NHM_TH3_TO_TH0_11N		0x898
-#define	ODM_REG_NHM_TH7_TO_TH4_11N		0x89c
-#define	ODM_REG_NHM_CNT_11N				0x8d8
+#define ODM_REG_BB_CTRL_11N 0x800
+#define ODM_REG_RF_PIN_11N 0x804
+#define ODM_REG_PSD_CTRL_11N 0x808
+#define ODM_REG_TX_ANT_CTRL_11N 0x80C
+#define ODM_REG_BB_PWR_SAV5_11N 0x818
+#define ODM_REG_CCK_RPT_FORMAT_11N 0x824
+#define ODM_REG_RX_DEFAULT_A_11N 0x858
+#define ODM_REG_RX_DEFAULT_B_11N 0x85A
+#define ODM_REG_BB_PWR_SAV3_11N 0x85C
+#define ODM_REG_ANTSEL_CTRL_11N 0x860
+#define ODM_REG_RX_ANT_CTRL_11N 0x864
+#define ODM_REG_PIN_CTRL_11N 0x870
+#define ODM_REG_BB_PWR_SAV1_11N 0x874
+#define ODM_REG_ANTSEL_PATH_11N 0x878
+#define ODM_REG_BB_3WIRE_11N 0x88C
+#define ODM_REG_SC_CNT_11N 0x8C4
+#define ODM_REG_PSD_DATA_11N 0x8B4
+#define ODM_REG_PSD_DATA_11N 0x8B4
+#define ODM_REG_NHM_TIMER_11N 0x894
+#define ODM_REG_NHM_TH9_TH10_11N 0x890
+#define ODM_REG_NHM_TH3_TO_TH0_11N 0x898
+#define ODM_REG_NHM_TH7_TO_TH4_11N 0x89c
+#define ODM_REG_NHM_CNT_11N 0x8d8
 /* PAGE 9 */
-#define	ODM_REG_DBG_RPT_11N				0x908
-#define	ODM_REG_ANT_MAPPING1_11N		0x914
-#define	ODM_REG_ANT_MAPPING2_11N		0x918
+#define ODM_REG_DBG_RPT_11N 0x908
+#define ODM_REG_ANT_MAPPING1_11N 0x914
+#define ODM_REG_ANT_MAPPING2_11N 0x918
 /* PAGE A */
-#define	ODM_REG_CCK_ANTDIV_PARA1_11N	0xA00
-#define	ODM_REG_CCK_CCA_11N				0xA0A
-#define	ODM_REG_CCK_ANTDIV_PARA2_11N	0xA0C
-#define	ODM_REG_CCK_ANTDIV_PARA3_11N	0xA10
-#define	ODM_REG_CCK_ANTDIV_PARA4_11N	0xA14
-#define	ODM_REG_CCK_FILTER_PARA1_11N	0xA22
-#define	ODM_REG_CCK_FILTER_PARA2_11N	0xA23
-#define	ODM_REG_CCK_FILTER_PARA3_11N	0xA24
-#define	ODM_REG_CCK_FILTER_PARA4_11N	0xA25
-#define	ODM_REG_CCK_FILTER_PARA5_11N	0xA26
-#define	ODM_REG_CCK_FILTER_PARA6_11N	0xA27
-#define	ODM_REG_CCK_FILTER_PARA7_11N	0xA28
-#define	ODM_REG_CCK_FILTER_PARA8_11N	0xA29
-#define	ODM_REG_CCK_FA_RST_11N			0xA2C
-#define	ODM_REG_CCK_FA_MSB_11N			0xA58
-#define	ODM_REG_CCK_FA_LSB_11N			0xA5C
-#define	ODM_REG_CCK_CCA_CNT_11N			0xA60
-#define	ODM_REG_BB_PWR_SAV4_11N		0xA74
+#define ODM_REG_CCK_ANTDIV_PARA1_11N 0xA00
+#define ODM_REG_CCK_CCA_11N 0xA0A
+#define ODM_REG_CCK_ANTDIV_PARA2_11N 0xA0C
+#define ODM_REG_CCK_ANTDIV_PARA3_11N 0xA10
+#define ODM_REG_CCK_ANTDIV_PARA4_11N 0xA14
+#define ODM_REG_CCK_FILTER_PARA1_11N 0xA22
+#define ODM_REG_CCK_FILTER_PARA2_11N 0xA23
+#define ODM_REG_CCK_FILTER_PARA3_11N 0xA24
+#define ODM_REG_CCK_FILTER_PARA4_11N 0xA25
+#define ODM_REG_CCK_FILTER_PARA5_11N 0xA26
+#define ODM_REG_CCK_FILTER_PARA6_11N 0xA27
+#define ODM_REG_CCK_FILTER_PARA7_11N 0xA28
+#define ODM_REG_CCK_FILTER_PARA8_11N 0xA29
+#define ODM_REG_CCK_FA_RST_11N 0xA2C
+#define ODM_REG_CCK_FA_MSB_11N 0xA58
+#define ODM_REG_CCK_FA_LSB_11N 0xA5C
+#define ODM_REG_CCK_CCA_CNT_11N 0xA60
+#define ODM_REG_BB_PWR_SAV4_11N 0xA74
 /* PAGE B */
-#define	ODM_REG_LNA_SWITCH_11N			0xB2C
-#define	ODM_REG_PATH_SWITCH_11N			0xB30
-#define	ODM_REG_RSSI_CTRL_11N			0xB38
-#define	ODM_REG_CONFIG_ANTA_11N			0xB68
-#define	ODM_REG_RSSI_BT_11N				0xB9C
+#define ODM_REG_LNA_SWITCH_11N 0xB2C
+#define ODM_REG_PATH_SWITCH_11N 0xB30
+#define ODM_REG_RSSI_CTRL_11N 0xB38
+#define ODM_REG_CONFIG_ANTA_11N 0xB68
+#define ODM_REG_RSSI_BT_11N 0xB9C
 /* PAGE C */
-#define	ODM_REG_OFDM_FA_HOLDC_11N		0xC00
-#define	ODM_REG_BB_RX_PATH_11N			0xC04
-#define	ODM_REG_TRMUX_11N				0xC08
-#define	ODM_REG_OFDM_FA_RSTC_11N		0xC0C
-#define	ODM_REG_RXIQI_MATRIX_11N			0xC14
-#define	ODM_REG_TXIQK_MATRIX_LSB1_11N	0xC4C
-#define	ODM_REG_IGI_A_11N					0xC50
-#define	ODM_REG_ANTDIV_PARA2_11N		0xC54
-#define	ODM_REG_IGI_B_11N					0xC58
-#define	ODM_REG_ANTDIV_PARA3_11N		0xC5C
-#define   ODM_REG_L1SBD_PD_CH_11N			0XC6C
-#define	ODM_REG_BB_PWR_SAV2_11N		0xC70
-#define	ODM_REG_RX_OFF_11N				0xC7C
-#define	ODM_REG_TXIQK_MATRIXA_11N		0xC80
-#define	ODM_REG_TXIQK_MATRIXB_11N		0xC88
-#define	ODM_REG_TXIQK_MATRIXA_LSB2_11N	0xC94
-#define	ODM_REG_TXIQK_MATRIXB_LSB2_11N	0xC9C
-#define	ODM_REG_RXIQK_MATRIX_LSB_11N	0xCA0
-#define	ODM_REG_ANTDIV_PARA1_11N		0xCA4
-#define	ODM_REG_OFDM_FA_TYPE1_11N		0xCF0
+#define ODM_REG_OFDM_FA_HOLDC_11N 0xC00
+#define ODM_REG_BB_RX_PATH_11N 0xC04
+#define ODM_REG_TRMUX_11N 0xC08
+#define ODM_REG_OFDM_FA_RSTC_11N 0xC0C
+#define ODM_REG_RXIQI_MATRIX_11N 0xC14
+#define ODM_REG_TXIQK_MATRIX_LSB1_11N 0xC4C
+#define ODM_REG_IGI_A_11N 0xC50
+#define ODM_REG_ANTDIV_PARA2_11N 0xC54
+#define ODM_REG_IGI_B_11N 0xC58
+#define ODM_REG_ANTDIV_PARA3_11N 0xC5C
+#define ODM_REG_L1SBD_PD_CH_11N 0XC6C
+#define ODM_REG_BB_PWR_SAV2_11N 0xC70
+#define ODM_REG_RX_OFF_11N 0xC7C
+#define ODM_REG_TXIQK_MATRIXA_11N 0xC80
+#define ODM_REG_TXIQK_MATRIXB_11N 0xC88
+#define ODM_REG_TXIQK_MATRIXA_LSB2_11N 0xC94
+#define ODM_REG_TXIQK_MATRIXB_LSB2_11N 0xC9C
+#define ODM_REG_RXIQK_MATRIX_LSB_11N 0xCA0
+#define ODM_REG_ANTDIV_PARA1_11N 0xCA4
+#define ODM_REG_OFDM_FA_TYPE1_11N 0xCF0
 /* PAGE D */
-#define	ODM_REG_OFDM_FA_RSTD_11N		0xD00
-#define	ODM_REG_BB_ATC_11N				0xD2C
-#define	ODM_REG_OFDM_FA_TYPE2_11N		0xDA0
-#define	ODM_REG_OFDM_FA_TYPE3_11N		0xDA4
-#define	ODM_REG_OFDM_FA_TYPE4_11N		0xDA8
-#define	ODM_REG_RPT_11N					0xDF4
+#define ODM_REG_OFDM_FA_RSTD_11N 0xD00
+#define ODM_REG_BB_ATC_11N 0xD2C
+#define ODM_REG_OFDM_FA_TYPE2_11N 0xDA0
+#define ODM_REG_OFDM_FA_TYPE3_11N 0xDA4
+#define ODM_REG_OFDM_FA_TYPE4_11N 0xDA8
+#define ODM_REG_RPT_11N 0xDF4
 /* PAGE E */
-#define	ODM_REG_TXAGC_A_6_18_11N		0xE00
-#define	ODM_REG_TXAGC_A_24_54_11N		0xE04
-#define	ODM_REG_TXAGC_A_1_MCS32_11N	0xE08
-#define	ODM_REG_TXAGC_A_MCS0_3_11N		0xE10
-#define	ODM_REG_TXAGC_A_MCS4_7_11N		0xE14
-#define	ODM_REG_FPGA0_IQK_11N			0xE28
-#define	ODM_REG_TXIQK_TONE_A_11N		0xE30
-#define	ODM_REG_RXIQK_TONE_A_11N		0xE34
-#define	ODM_REG_TXIQK_PI_A_11N			0xE38
-#define	ODM_REG_RXIQK_PI_A_11N			0xE3C
-#define	ODM_REG_TXIQK_11N				0xE40
-#define	ODM_REG_RXIQK_11N				0xE44
-#define	ODM_REG_IQK_AGC_PTS_11N			0xE48
-#define	ODM_REG_IQK_AGC_RSP_11N			0xE4C
-#define	ODM_REG_BLUETOOTH_11N			0xE6C
-#define	ODM_REG_RX_WAIT_CCA_11N			0xE70
-#define	ODM_REG_TX_CCK_RFON_11N			0xE74
-#define	ODM_REG_TX_CCK_BBON_11N			0xE78
-#define	ODM_REG_OFDM_RFON_11N			0xE7C
-#define	ODM_REG_OFDM_BBON_11N			0xE80
-#define		ODM_REG_TX2RX_11N				0xE84
-#define	ODM_REG_TX2TX_11N				0xE88
-#define	ODM_REG_RX_CCK_11N				0xE8C
-#define	ODM_REG_RX_OFDM_11N				0xED0
-#define	ODM_REG_RX_WAIT_RIFS_11N		0xED4
-#define	ODM_REG_RX2RX_11N				0xED8
-#define	ODM_REG_STANDBY_11N				0xEDC
-#define	ODM_REG_SLEEP_11N				0xEE0
-#define	ODM_REG_PMPD_ANAEN_11N			0xEEC
-#define	ODM_REG_IGI_C_11N					0xF84
-#define	ODM_REG_IGI_D_11N					0xF88
+#define ODM_REG_TXAGC_A_6_18_11N 0xE00
+#define ODM_REG_TXAGC_A_24_54_11N 0xE04
+#define ODM_REG_TXAGC_A_1_MCS32_11N 0xE08
+#define ODM_REG_TXAGC_A_MCS0_3_11N 0xE10
+#define ODM_REG_TXAGC_A_MCS4_7_11N 0xE14
+#define ODM_REG_FPGA0_IQK_11N 0xE28
+#define ODM_REG_TXIQK_TONE_A_11N 0xE30
+#define ODM_REG_RXIQK_TONE_A_11N 0xE34
+#define ODM_REG_TXIQK_PI_A_11N 0xE38
+#define ODM_REG_RXIQK_PI_A_11N 0xE3C
+#define ODM_REG_TXIQK_11N 0xE40
+#define ODM_REG_RXIQK_11N 0xE44
+#define ODM_REG_IQK_AGC_PTS_11N 0xE48
+#define ODM_REG_IQK_AGC_RSP_11N 0xE4C
+#define ODM_REG_BLUETOOTH_11N 0xE6C
+#define ODM_REG_RX_WAIT_CCA_11N 0xE70
+#define ODM_REG_TX_CCK_RFON_11N 0xE74
+#define ODM_REG_TX_CCK_BBON_11N 0xE78
+#define ODM_REG_OFDM_RFON_11N 0xE7C
+#define ODM_REG_OFDM_BBON_11N 0xE80
+#define ODM_REG_TX2RX_11N 0xE84
+#define ODM_REG_TX2TX_11N 0xE88
+#define ODM_REG_RX_CCK_11N 0xE8C
+#define ODM_REG_RX_OFDM_11N 0xED0
+#define ODM_REG_RX_WAIT_RIFS_11N 0xED4
+#define ODM_REG_RX2RX_11N 0xED8
+#define ODM_REG_STANDBY_11N 0xEDC
+#define ODM_REG_SLEEP_11N 0xEE0
+#define ODM_REG_PMPD_ANAEN_11N 0xEEC
+#define ODM_REG_IGI_C_11N 0xF84
+#define ODM_REG_IGI_D_11N 0xF88
 
 /* 2 MAC REG LIST */
-#define	ODM_REG_BB_RST_11N				0x02
-#define	ODM_REG_ANTSEL_PIN_11N			0x4C
-#define	ODM_REG_EARLY_MODE_11N			0x4D0
-#define	ODM_REG_RSSI_MONITOR_11N		0x4FE
-#define	ODM_REG_EDCA_VO_11N				0x500
-#define	ODM_REG_EDCA_VI_11N				0x504
-#define	ODM_REG_EDCA_BE_11N				0x508
-#define	ODM_REG_EDCA_BK_11N				0x50C
-#define	ODM_REG_TXPAUSE_11N				0x522
-#define	ODM_REG_RESP_TX_11N				0x6D8
-#define	ODM_REG_ANT_TRAIN_PARA1_11N		0x7b0
-#define	ODM_REG_ANT_TRAIN_PARA2_11N		0x7b4
+#define ODM_REG_BB_RST_11N 0x02
+#define ODM_REG_ANTSEL_PIN_11N 0x4C
+#define ODM_REG_EARLY_MODE_11N 0x4D0
+#define ODM_REG_RSSI_MONITOR_11N 0x4FE
+#define ODM_REG_EDCA_VO_11N 0x500
+#define ODM_REG_EDCA_VI_11N 0x504
+#define ODM_REG_EDCA_BE_11N 0x508
+#define ODM_REG_EDCA_BK_11N 0x50C
+#define ODM_REG_TXPAUSE_11N 0x522
+#define ODM_REG_RESP_TX_11N 0x6D8
+#define ODM_REG_ANT_TRAIN_PARA1_11N 0x7b0
+#define ODM_REG_ANT_TRAIN_PARA2_11N 0x7b4
 
 /* DIG Related */
-#define	ODM_BIT_IGI_11N					0x0000007F
-#define	ODM_BIT_CCK_RPT_FORMAT_11N		BIT(9)
-#define	ODM_BIT_BB_RX_PATH_11N			0xF
-#define	ODM_BIT_BB_ATC_11N				BIT(11)
+#define ODM_BIT_IGI_11N 0x0000007F
+#define ODM_BIT_CCK_RPT_FORMAT_11N BIT(9)
+#define ODM_BIT_BB_RX_PATH_11N 0xF
+#define ODM_BIT_BB_ATC_11N BIT(11)
 
 #endif
diff --git a/drivers/staging/rtl8723bs/hal/odm_interface.h b/drivers/staging/rtl8723bs/hal/odm_interface.h
index f79c3d57edffa..45948b2adc186 100644
--- a/drivers/staging/rtl8723bs/hal/odm_interface.h
+++ b/drivers/staging/rtl8723bs/hal/odm_interface.h
@@ -5,25 +5,25 @@
  *
  ******************************************************************************/
 
-#ifndef	__ODM_INTERFACE_H__
+#ifndef __ODM_INTERFACE_H__
 #define __ODM_INTERFACE_H__
 
 /*  =========== Macro Define */
 
-#define _reg_all(_name)			ODM_##_name
-#define _reg_ic(_name, _ic)		ODM_##_name##_ic
-#define _bit_all(_name)			BIT_##_name
-#define _bit_ic(_name, _ic)		BIT_##_name##_ic
+#define _reg_all(_name) ODM_##_name
+#define _reg_ic(_name, _ic) ODM_##_name##_ic
+#define _bit_all(_name) BIT_##_name
+#define _bit_ic(_name, _ic) BIT_##_name##_ic
 
-#define _reg_11N(_name)			ODM_REG_##_name##_11N
-#define _bit_11N(_name)			ODM_BIT_##_name##_11N
+#define _reg_11N(_name) ODM_REG_##_name##_11N
+#define _bit_11N(_name) ODM_BIT_##_name##_11N
 
 #define _cat(_name, _func) _func##_11N(_name)
 
 /*  _name: name of register or bit. */
 /*  Example: "ODM_REG(R_A_AGC_CORE1)" */
 /*         gets "ODM_R_A_AGC_CORE1" or "ODM_R_A_AGC_CORE1_8192C". */
-#define ODM_REG(_name)	_cat(_name, _reg)
-#define ODM_BIT(_name)	_cat(_name, _bit)
+#define ODM_REG(_name) _cat(_name, _reg)
+#define ODM_BIT(_name) _cat(_name, _bit)
 
-#endif	/*  __ODM_INTERFACE_H__ */
+#endif /*  __ODM_INTERFACE_H__ */
diff --git a/drivers/staging/rtl8723bs/hal/odm_precomp.h b/drivers/staging/rtl8723bs/hal/odm_precomp.h
index 2987857a8761f..5acaa70c6dd0b 100644
--- a/drivers/staging/rtl8723bs/hal/odm_precomp.h
+++ b/drivers/staging/rtl8723bs/hal/odm_precomp.h
@@ -5,20 +5,20 @@
  *
  ******************************************************************************/
 
-#ifndef	__ODM_PRECOMP_H__
+#ifndef __ODM_PRECOMP_H__
 #define __ODM_PRECOMP_H__
 
 #include "odm_types.h"
 
-#define		TEST_FALG___		1
+#define TEST_FALG___ 1
 
 /* 2 Config Flags and Structs - defined by each ODM Type */
 
-	/* include <basic_types.h> */
-	/* include <osdep_service.h> */
-	/* include <drv_types.h> */
-	/* include <rtw_byteorder.h> */
-	/* include <hal_intf.h> */
+/* include <basic_types.h> */
+/* include <osdep_service.h> */
+/* include <drv_types.h> */
+/* include <rtw_byteorder.h> */
+/* include <hal_intf.h> */
 #define BEAMFORMING_SUPPORT 0
 
 /* 2 Hardware Parameter Files */
@@ -34,7 +34,7 @@
 #include "odm_DynamicTxPower.h"
 #include "odm_CfoTracking.h"
 #include "HalPhyRf.h"
-#include "HalPhyRf_8723B.h"/* for IQK, LCK, Power-tracking */
+#include "HalPhyRf_8723B.h" /* for IQK, LCK, Power-tracking */
 #include "rtl8723b_hal.h"
 #include "odm_interface.h"
 #include "odm_reg.h"
@@ -44,4 +44,4 @@
 #include "Hal8723BReg.h"
 #include "odm_RegConfig8723B.h"
 
-#endif	/*  __ODM_PRECOMP_H__ */
+#endif /*  __ODM_PRECOMP_H__ */
diff --git a/drivers/staging/rtl8723bs/hal/odm_reg.h b/drivers/staging/rtl8723bs/hal/odm_reg.h
index a3b1f673774c4..5d19a50ea74da 100644
--- a/drivers/staging/rtl8723bs/hal/odm_reg.h
+++ b/drivers/staging/rtl8723bs/hal/odm_reg.h
@@ -7,85 +7,85 @@
 /*  File Name: odm_reg.h */
 /*  Description: */
 /*  This file is for general register definition. */
-#ifndef	__HAL_ODM_REG_H__
+#ifndef __HAL_ODM_REG_H__
 #define __HAL_ODM_REG_H__
 
 /*  Register Definition */
 
 /* MAC REG */
-#define	ODM_BB_RESET				0x002
-#define	ODM_DUMMY				0x4fe
-#define	RF_T_METER_OLD				0x24
-#define	RF_T_METER_NEW				0x42
+#define ODM_BB_RESET 0x002
+#define ODM_DUMMY 0x4fe
+#define RF_T_METER_OLD 0x24
+#define RF_T_METER_NEW 0x42
 
-#define	ODM_EDCA_VO_PARAM			0x500
-#define	ODM_EDCA_VI_PARAM			0x504
-#define	ODM_EDCA_BE_PARAM			0x508
-#define	ODM_EDCA_BK_PARAM			0x50C
-#define	ODM_TXPAUSE				0x522
+#define ODM_EDCA_VO_PARAM 0x500
+#define ODM_EDCA_VI_PARAM 0x504
+#define ODM_EDCA_BE_PARAM 0x508
+#define ODM_EDCA_BK_PARAM 0x50C
+#define ODM_TXPAUSE 0x522
 
 /* BB REG */
-#define	ODM_FPGA_PHY0_PAGE8			0x800
-#define	ODM_PSD_SETTING				0x808
-#define	ODM_AFE_SETTING				0x818
-#define	ODM_TXAGC_B_24_54			0x834
-#define	ODM_TXAGC_B_MCS32_5			0x838
-#define	ODM_TXAGC_B_MCS0_MCS3			0x83c
-#define	ODM_TXAGC_B_MCS4_MCS7			0x848
-#define	ODM_ANALOG_REGISTER			0x85c
-#define	ODM_RF_INTERFACE_OUTPUT			0x860
-#define	ODM_TXAGC_B_11_A_2_11			0x86c
-#define	ODM_AD_DA_LSB_MASK			0x874
-#define	ODM_ENABLE_3_WIRE			0x88c
-#define	ODM_PSD_REPORT				0x8b4
-#define	ODM_R_ANT_SELECT			0x90c
-#define	ODM_CCK_ANT_SELECT			0xa07
-#define	ODM_CCK_PD_THRESH			0xa0a
-#define	ODM_CCK_RF_REG1				0xa11
-#define	ODM_CCK_MATCH_FILTER			0xa20
-#define	ODM_CCK_RAKE_MAC			0xa2e
-#define	ODM_CCK_CNT_RESET			0xa2d
-#define	ODM_CCK_TX_DIVERSITY			0xa2f
-#define	ODM_CCK_FA_CNT_MSB			0xa5b
-#define	ODM_CCK_FA_CNT_LSB			0xa5c
-#define	ODM_CCK_NEW_FUNCTION			0xa75
-#define	ODM_OFDM_PHY0_PAGE_C			0xc00
-#define	ODM_OFDM_RX_ANT				0xc04
-#define	ODM_R_A_RXIQI				0xc14
-#define	ODM_R_A_AGC_CORE1			0xc50
-#define	ODM_R_A_AGC_CORE2			0xc54
-#define	ODM_R_B_AGC_CORE1			0xc58
-#define	ODM_R_AGC_PAR				0xc70
-#define	ODM_R_HTSTF_AGC_PAR			0xc7c
-#define	ODM_TX_PWR_TRAINING_A			0xc90
-#define	ODM_TX_PWR_TRAINING_B			0xc98
-#define	ODM_OFDM_FA_CNT1			0xcf0
-#define	ODM_OFDM_PHY0_PAGE_D			0xd00
-#define	ODM_OFDM_FA_CNT2			0xda0
-#define	ODM_OFDM_FA_CNT3			0xda4
-#define	ODM_OFDM_FA_CNT4			0xda8
-#define	ODM_TXAGC_A_6_18			0xe00
-#define	ODM_TXAGC_A_24_54			0xe04
-#define	ODM_TXAGC_A_1_MCS32			0xe08
-#define	ODM_TXAGC_A_MCS0_MCS3			0xe10
-#define	ODM_TXAGC_A_MCS4_MCS7			0xe14
+#define ODM_FPGA_PHY0_PAGE8 0x800
+#define ODM_PSD_SETTING 0x808
+#define ODM_AFE_SETTING 0x818
+#define ODM_TXAGC_B_24_54 0x834
+#define ODM_TXAGC_B_MCS32_5 0x838
+#define ODM_TXAGC_B_MCS0_MCS3 0x83c
+#define ODM_TXAGC_B_MCS4_MCS7 0x848
+#define ODM_ANALOG_REGISTER 0x85c
+#define ODM_RF_INTERFACE_OUTPUT 0x860
+#define ODM_TXAGC_B_11_A_2_11 0x86c
+#define ODM_AD_DA_LSB_MASK 0x874
+#define ODM_ENABLE_3_WIRE 0x88c
+#define ODM_PSD_REPORT 0x8b4
+#define ODM_R_ANT_SELECT 0x90c
+#define ODM_CCK_ANT_SELECT 0xa07
+#define ODM_CCK_PD_THRESH 0xa0a
+#define ODM_CCK_RF_REG1 0xa11
+#define ODM_CCK_MATCH_FILTER 0xa20
+#define ODM_CCK_RAKE_MAC 0xa2e
+#define ODM_CCK_CNT_RESET 0xa2d
+#define ODM_CCK_TX_DIVERSITY 0xa2f
+#define ODM_CCK_FA_CNT_MSB 0xa5b
+#define ODM_CCK_FA_CNT_LSB 0xa5c
+#define ODM_CCK_NEW_FUNCTION 0xa75
+#define ODM_OFDM_PHY0_PAGE_C 0xc00
+#define ODM_OFDM_RX_ANT 0xc04
+#define ODM_R_A_RXIQI 0xc14
+#define ODM_R_A_AGC_CORE1 0xc50
+#define ODM_R_A_AGC_CORE2 0xc54
+#define ODM_R_B_AGC_CORE1 0xc58
+#define ODM_R_AGC_PAR 0xc70
+#define ODM_R_HTSTF_AGC_PAR 0xc7c
+#define ODM_TX_PWR_TRAINING_A 0xc90
+#define ODM_TX_PWR_TRAINING_B 0xc98
+#define ODM_OFDM_FA_CNT1 0xcf0
+#define ODM_OFDM_PHY0_PAGE_D 0xd00
+#define ODM_OFDM_FA_CNT2 0xda0
+#define ODM_OFDM_FA_CNT3 0xda4
+#define ODM_OFDM_FA_CNT4 0xda8
+#define ODM_TXAGC_A_6_18 0xe00
+#define ODM_TXAGC_A_24_54 0xe04
+#define ODM_TXAGC_A_1_MCS32 0xe08
+#define ODM_TXAGC_A_MCS0_MCS3 0xe10
+#define ODM_TXAGC_A_MCS4_MCS7 0xe14
 
 /* RF REG */
-#define	ODM_GAIN_SETTING			0x00
-#define	ODM_CHANNEL				0x18
+#define ODM_GAIN_SETTING 0x00
+#define ODM_CHANNEL 0x18
 
 /* Ant Detect Reg */
-#define	ODM_DPDT				0x300
+#define ODM_DPDT 0x300
 
 /* PSD Init */
-#define	ODM_PSDREG				0x808
+#define ODM_PSDREG 0x808
 
 /* 92D Path Div */
-#define	PATHDIV_REG				0xB30
-#define	PATHDIV_TRI				0xBA0
+#define PATHDIV_REG 0xB30
+#define PATHDIV_TRI 0xBA0
 
 /*  Bitmap Definition */
 
-#define	BIT_FA_RESET				BIT0
+#define BIT_FA_RESET BIT0
 
 #endif
diff --git a/drivers/staging/rtl8723bs/hal/odm_types.h b/drivers/staging/rtl8723bs/hal/odm_types.h
index 25f0edd716ccd..95bb5ec635c7f 100644
--- a/drivers/staging/rtl8723bs/hal/odm_types.h
+++ b/drivers/staging/rtl8723bs/hal/odm_types.h
@@ -10,31 +10,39 @@
 #include <drv_types.h>
 
 /*  Deifne HW endian support */
-#define	ODM_ENDIAN_BIG	0
-#define	ODM_ENDIAN_LITTLE	1
+#define ODM_ENDIAN_BIG 0
+#define ODM_ENDIAN_LITTLE 1
 
-#define GET_ODM(__padapter)	((PDM_ODM_T)(&((GET_HAL_DATA(__padapter))->odmpriv)))
+#define GET_ODM(__padapter) \
+	((PDM_ODM_T)(&((GET_HAL_DATA(__padapter))->odmpriv)))
 
 enum hal_status {
 	HAL_STATUS_SUCCESS,
 	HAL_STATUS_FAILURE,
 };
 
-	#if defined(__LITTLE_ENDIAN)
-		#define	ODM_ENDIAN_TYPE			ODM_ENDIAN_LITTLE
-	#else
-		#define	ODM_ENDIAN_TYPE			ODM_ENDIAN_BIG
-	#endif
-
-	#define	STA_INFO_T			struct sta_info
-	#define	PSTA_INFO_T		struct sta_info *
-
-	/* define useless flag to avoid compile warning */
-	#define	USE_WORKITEM 0
-	#define   FPGA_TWO_MAC_VERIFICATION	0
-
-#define READ_NEXT_PAIR(v1, v2, i) do { if (i+2 >= ArrayLen) break; i += 2; v1 = Array[i]; v2 = Array[i+1]; } while (0)
-#define COND_ELSE  2
+#if defined(__LITTLE_ENDIAN)
+#define ODM_ENDIAN_TYPE ODM_ENDIAN_LITTLE
+#else
+#define ODM_ENDIAN_TYPE ODM_ENDIAN_BIG
+#endif
+
+#define STA_INFO_T struct sta_info
+#define PSTA_INFO_T struct sta_info *
+
+/* define useless flag to avoid compile warning */
+#define USE_WORKITEM 0
+#define FPGA_TWO_MAC_VERIFICATION 0
+
+#define READ_NEXT_PAIR(v1, v2, i)      \
+	do {                           \
+		if (i + 2 >= ArrayLen) \
+			break;         \
+		i += 2;                \
+		v1 = Array[i];         \
+		v2 = Array[i + 1];     \
+	} while (0)
+#define COND_ELSE 2
 #define COND_ENDIF 3
 
 #endif /*  __ODM_TYPES_H__ */
diff --git a/drivers/staging/rtl8723bs/hal/rtl8723b_cmd.c b/drivers/staging/rtl8723bs/hal/rtl8723b_cmd.c
index c35c7f1c38efa..fe6e640bfbe1d 100644
--- a/drivers/staging/rtl8723bs/hal/rtl8723b_cmd.c
+++ b/drivers/staging/rtl8723bs/hal/rtl8723b_cmd.c
@@ -11,21 +11,20 @@
 #include <linux/iopoll.h>
 #include "hal_com_h2c.h"
 
-#define MAX_H2C_BOX_NUMS	4
-#define MESSAGE_BOX_SIZE	4
+#define MAX_H2C_BOX_NUMS 4
+#define MESSAGE_BOX_SIZE 4
 
-#define RTL8723B_MAX_CMD_LEN	7
-#define RTL8723B_EX_MESSAGE_BOX_SIZE	4
+#define RTL8723B_MAX_CMD_LEN 7
+#define RTL8723B_EX_MESSAGE_BOX_SIZE 4
 
 static u8 _is_fw_read_cmd_down(struct adapter *padapter, u8 msgbox_num)
 {
 	u8 valid;
 	int ret;
 
-	ret = read_poll_timeout_atomic(rtw_read8,
-				       valid, !(valid & BIT(msgbox_num)),
-				       0, 500, false,
-				       padapter, REG_HMETFR);
+	ret = read_poll_timeout_atomic(rtw_read8, valid,
+				       !(valid & BIT(msgbox_num)), 0, 500,
+				       false, padapter, REG_HMETFR);
 
 	return !ret;
 }
@@ -38,7 +37,8 @@ static u8 _is_fw_read_cmd_down(struct adapter *padapter, u8 msgbox_num)
  *| Ext msg					|
  *
  ******************************************/
-s32 FillH2CCmd8723B(struct adapter *padapter, u8 ElementID, u32 CmdLen, u8 *pCmdBuffer)
+s32 FillH2CCmd8723B(struct adapter *padapter, u8 ElementID, u32 CmdLen,
+		    u8 *pCmdBuffer)
 {
 	u8 h2c_box_num;
 	u32 msgbox_addr;
@@ -50,7 +50,8 @@ s32 FillH2CCmd8723B(struct adapter *padapter, u8 ElementID, u32 CmdLen, u8 *pCmd
 
 	padapter = GET_PRIMARY_ADAPTER(padapter);
 	pHalData = GET_HAL_DATA(padapter);
-	if (mutex_lock_interruptible(&(adapter_to_dvobj(padapter)->h2c_fwcmd_mutex)))
+	if (mutex_lock_interruptible(
+		    &(adapter_to_dvobj(padapter)->h2c_fwcmd_mutex)))
 		return ret;
 
 	if (!pCmdBuffer)
@@ -70,23 +71,25 @@ s32 FillH2CCmd8723B(struct adapter *padapter, u8 ElementID, u32 CmdLen, u8 *pCmd
 			goto exit;
 
 		if (CmdLen <= 3)
-			memcpy((u8 *)(&h2c_cmd)+1, pCmdBuffer, CmdLen);
+			memcpy((u8 *)(&h2c_cmd) + 1, pCmdBuffer, CmdLen);
 		else {
-			memcpy((u8 *)(&h2c_cmd)+1, pCmdBuffer, 3);
-			memcpy((u8 *)(&h2c_cmd_ex), pCmdBuffer+3, CmdLen-3);
-/* 			*(u8 *)(&h2c_cmd) |= BIT(7); */
+			memcpy((u8 *)(&h2c_cmd) + 1, pCmdBuffer, 3);
+			memcpy((u8 *)(&h2c_cmd_ex), pCmdBuffer + 3, CmdLen - 3);
+			/* 			*(u8 *)(&h2c_cmd) |= BIT(7); */
 		}
 
 		*(u8 *)(&h2c_cmd) |= ElementID;
 
 		if (CmdLen > 3) {
-			msgbox_ex_addr = REG_HMEBOX_EXT0_8723B + (h2c_box_num*RTL8723B_EX_MESSAGE_BOX_SIZE);
+			msgbox_ex_addr =
+				REG_HMEBOX_EXT0_8723B +
+				(h2c_box_num * RTL8723B_EX_MESSAGE_BOX_SIZE);
 			rtw_write32(padapter, msgbox_ex_addr, h2c_cmd_ex);
 		}
-		msgbox_addr = REG_HMEBOX_0 + (h2c_box_num*MESSAGE_BOX_SIZE);
+		msgbox_addr = REG_HMEBOX_0 + (h2c_box_num * MESSAGE_BOX_SIZE);
 		rtw_write32(padapter, msgbox_addr, h2c_cmd);
 
-		pHalData->LastHMEBoxNum = (h2c_box_num+1) % MAX_H2C_BOX_NUMS;
+		pHalData->LastHMEBoxNum = (h2c_box_num + 1) % MAX_H2C_BOX_NUMS;
 
 	} while (0);
 
@@ -116,7 +119,7 @@ static void ConstructBeacon(struct adapter *padapter, u8 *pframe, u32 *pLength)
 	ether_addr_copy(pwlanhdr->addr2, myid(&(padapter->eeprompriv)));
 	ether_addr_copy(pwlanhdr->addr3, get_my_bssid(cur_network));
 
-	SetSeqNum(pwlanhdr, 0/*pmlmeext->mgnt_seq*/);
+	SetSeqNum(pwlanhdr, 0 /*pmlmeext->mgnt_seq*/);
 	/* pmlmeext->mgnt_seq++; */
 	SetFrameSubType(pframe, WIFI_BEACON);
 
@@ -128,20 +131,28 @@ static void ConstructBeacon(struct adapter *padapter, u8 *pframe, u32 *pLength)
 	pktlen += 8;
 
 	/*  beacon interval: 2 bytes */
-	memcpy(pframe, (unsigned char *)(rtw_get_beacon_interval_from_ie(cur_network->ies)), 2);
+	memcpy(pframe,
+	       (unsigned char *)(rtw_get_beacon_interval_from_ie(
+		       cur_network->ies)),
+	       2);
 
 	pframe += 2;
 	pktlen += 2;
 
 	/*  capability info: 2 bytes */
-	memcpy(pframe, (unsigned char *)(rtw_get_capability_from_ie(cur_network->ies)), 2);
+	memcpy(pframe,
+	       (unsigned char *)(rtw_get_capability_from_ie(cur_network->ies)),
+	       2);
 
 	pframe += 2;
 	pktlen += 2;
 
-	if ((pmlmeinfo->state&0x03) == WIFI_FW_AP_STATE) {
-		pktlen += cur_network->ie_length - sizeof(struct ndis_802_11_fix_ie);
-		memcpy(pframe, cur_network->ies+sizeof(struct ndis_802_11_fix_ie), pktlen);
+	if ((pmlmeinfo->state & 0x03) == WIFI_FW_AP_STATE) {
+		pktlen += cur_network->ie_length -
+			  sizeof(struct ndis_802_11_fix_ie);
+		memcpy(pframe,
+		       cur_network->ies + sizeof(struct ndis_802_11_fix_ie),
+		       pktlen);
 
 		goto _ConstructBeacon;
 	}
@@ -149,28 +160,39 @@ static void ConstructBeacon(struct adapter *padapter, u8 *pframe, u32 *pLength)
 	/* below for ad-hoc mode */
 
 	/*  SSID */
-	pframe = rtw_set_ie(pframe, WLAN_EID_SSID, cur_network->ssid.ssid_length, cur_network->ssid.ssid, &pktlen);
+	pframe = rtw_set_ie(pframe, WLAN_EID_SSID,
+			    cur_network->ssid.ssid_length,
+			    cur_network->ssid.ssid, &pktlen);
 
 	/*  supported rates... */
 	rate_len = rtw_get_rateset_len(cur_network->supported_rates);
-	pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES, ((rate_len > 8) ? 8 : rate_len), cur_network->supported_rates, &pktlen);
+	pframe = rtw_set_ie(pframe, WLAN_EID_SUPP_RATES,
+			    ((rate_len > 8) ? 8 : rate_len),
+			    cur_network->supported_rates, &pktlen);
 
 	/*  DS parameter set */
-	pframe = rtw_set_ie(pframe, WLAN_EID_DS_PARAMS, 1, (unsigned char *)&(cur_network->configuration.ds_config), &pktlen);
+	pframe = rtw_set_ie(
+		pframe, WLAN_EID_DS_PARAMS, 1,
+		(unsigned char *)&(cur_network->configuration.ds_config),
+		&pktlen);
 
-	if ((pmlmeinfo->state&0x03) == WIFI_FW_ADHOC_STATE) {
+	if ((pmlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE) {
 		u32 ATIMWindow;
 		/*  IBSS Parameter Set... */
 		/* ATIMWindow = cur->configuration.ATIMWindow; */
 		ATIMWindow = 0;
-		pframe = rtw_set_ie(pframe, WLAN_EID_IBSS_PARAMS, 2, (unsigned char *)(&ATIMWindow), &pktlen);
+		pframe = rtw_set_ie(pframe, WLAN_EID_IBSS_PARAMS, 2,
+				    (unsigned char *)(&ATIMWindow), &pktlen);
 	}
 
 	/* todo: ERP IE */
 
 	/*  EXTERNDED SUPPORTED RATE */
 	if (rate_len > 8)
-		pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES, (rate_len - 8), (cur_network->supported_rates + 8), &pktlen);
+		pframe = rtw_set_ie(pframe, WLAN_EID_EXT_SUPP_RATES,
+				    (rate_len - 8),
+				    (cur_network->supported_rates + 8),
+				    &pktlen);
 
 	/* todo:HT for adhoc */
 
@@ -180,7 +202,6 @@ static void ConstructBeacon(struct adapter *padapter, u8 *pframe, u32 *pLength)
 		return;
 
 	*pLength = pktlen;
-
 }
 
 static void ConstructPSPoll(struct adapter *padapter, u8 *pframe, u32 *pLength)
@@ -210,16 +231,9 @@ static void ConstructPSPoll(struct adapter *padapter, u8 *pframe, u32 *pLength)
 	*pLength = 16;
 }
 
-static void ConstructNullFunctionData(
-	struct adapter *padapter,
-	u8 *pframe,
-	u32 *pLength,
-	u8 *StaAddr,
-	u8 bQoS,
-	u8 AC,
-	u8 bEosp,
-	u8 bForcePowerSave
-)
+static void ConstructNullFunctionData(struct adapter *padapter, u8 *pframe,
+				      u32 *pLength, u8 *StaAddr, u8 bQoS, u8 AC,
+				      u8 bEosp, u8 bForcePowerSave)
 {
 	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
@@ -239,21 +253,24 @@ static void ConstructNullFunctionData(
 	switch (cur_network->network.infrastructure_mode) {
 	case Ndis802_11Infrastructure:
 		SetToDs(fctrl);
-		ether_addr_copy(pwlanhdr->addr1, get_my_bssid(&(pmlmeinfo->network)));
+		ether_addr_copy(pwlanhdr->addr1,
+				get_my_bssid(&(pmlmeinfo->network)));
 		ether_addr_copy(pwlanhdr->addr2, myid(&(padapter->eeprompriv)));
 		ether_addr_copy(pwlanhdr->addr3, StaAddr);
 		break;
 	case Ndis802_11APMode:
 		SetFrDs(fctrl);
 		ether_addr_copy(pwlanhdr->addr1, StaAddr);
-		ether_addr_copy(pwlanhdr->addr2, get_my_bssid(&(pmlmeinfo->network)));
+		ether_addr_copy(pwlanhdr->addr2,
+				get_my_bssid(&(pmlmeinfo->network)));
 		ether_addr_copy(pwlanhdr->addr3, myid(&(padapter->eeprompriv)));
 		break;
 	case Ndis802_11IBSS:
 	default:
 		ether_addr_copy(pwlanhdr->addr1, StaAddr);
 		ether_addr_copy(pwlanhdr->addr2, myid(&(padapter->eeprompriv)));
-		ether_addr_copy(pwlanhdr->addr3, get_my_bssid(&(pmlmeinfo->network)));
+		ether_addr_copy(pwlanhdr->addr3,
+				get_my_bssid(&(pmlmeinfo->network)));
 		break;
 	}
 
@@ -278,60 +295,78 @@ static void ConstructNullFunctionData(
 	*pLength = pktlen;
 }
 
-static void rtl8723b_set_FwRsvdPage_cmd(struct adapter *padapter, struct rsvdpage_loc *rsvdpageloc)
+static void rtl8723b_set_FwRsvdPage_cmd(struct adapter *padapter,
+					struct rsvdpage_loc *rsvdpageloc)
 {
-	u8 u1H2CRsvdPageParm[H2C_RSVDPAGE_LOC_LEN] = {0};
-
-	SET_8723B_H2CCMD_RSVDPAGE_LOC_PROBE_RSP(u1H2CRsvdPageParm, rsvdpageloc->LocProbeRsp);
-	SET_8723B_H2CCMD_RSVDPAGE_LOC_PSPOLL(u1H2CRsvdPageParm, rsvdpageloc->LocPsPoll);
-	SET_8723B_H2CCMD_RSVDPAGE_LOC_NULL_DATA(u1H2CRsvdPageParm, rsvdpageloc->LocNullData);
-	SET_8723B_H2CCMD_RSVDPAGE_LOC_QOS_NULL_DATA(u1H2CRsvdPageParm, rsvdpageloc->LocQosNull);
-	SET_8723B_H2CCMD_RSVDPAGE_LOC_BT_QOS_NULL_DATA(u1H2CRsvdPageParm, rsvdpageloc->LocBTQosNull);
-
-	FillH2CCmd8723B(padapter, H2C_8723B_RSVD_PAGE, H2C_RSVDPAGE_LOC_LEN, u1H2CRsvdPageParm);
+	u8 u1H2CRsvdPageParm[H2C_RSVDPAGE_LOC_LEN] = { 0 };
+
+	SET_8723B_H2CCMD_RSVDPAGE_LOC_PROBE_RSP(u1H2CRsvdPageParm,
+						rsvdpageloc->LocProbeRsp);
+	SET_8723B_H2CCMD_RSVDPAGE_LOC_PSPOLL(u1H2CRsvdPageParm,
+					     rsvdpageloc->LocPsPoll);
+	SET_8723B_H2CCMD_RSVDPAGE_LOC_NULL_DATA(u1H2CRsvdPageParm,
+						rsvdpageloc->LocNullData);
+	SET_8723B_H2CCMD_RSVDPAGE_LOC_QOS_NULL_DATA(u1H2CRsvdPageParm,
+						    rsvdpageloc->LocQosNull);
+	SET_8723B_H2CCMD_RSVDPAGE_LOC_BT_QOS_NULL_DATA(
+		u1H2CRsvdPageParm, rsvdpageloc->LocBTQosNull);
+
+	FillH2CCmd8723B(padapter, H2C_8723B_RSVD_PAGE, H2C_RSVDPAGE_LOC_LEN,
+			u1H2CRsvdPageParm);
 }
 
-void rtl8723b_set_FwMediaStatusRpt_cmd(struct adapter *padapter, u8 mstatus, u8 macid)
+void rtl8723b_set_FwMediaStatusRpt_cmd(struct adapter *padapter, u8 mstatus,
+				       u8 macid)
 {
-	u8 u1H2CMediaStatusRptParm[H2C_MEDIA_STATUS_RPT_LEN] = {0};
+	u8 u1H2CMediaStatusRptParm[H2C_MEDIA_STATUS_RPT_LEN] = { 0 };
 	u8 macid_end = 0;
 
 	SET_8723B_H2CCMD_MSRRPT_PARM_OPMODE(u1H2CMediaStatusRptParm, mstatus);
 	SET_8723B_H2CCMD_MSRRPT_PARM_MACID_IND(u1H2CMediaStatusRptParm, 0);
 	SET_8723B_H2CCMD_MSRRPT_PARM_MACID(u1H2CMediaStatusRptParm, macid);
-	SET_8723B_H2CCMD_MSRRPT_PARM_MACID_END(u1H2CMediaStatusRptParm, macid_end);
+	SET_8723B_H2CCMD_MSRRPT_PARM_MACID_END(u1H2CMediaStatusRptParm,
+					       macid_end);
 
-	FillH2CCmd8723B(padapter, H2C_8723B_MEDIA_STATUS_RPT, H2C_MEDIA_STATUS_RPT_LEN, u1H2CMediaStatusRptParm);
+	FillH2CCmd8723B(padapter, H2C_8723B_MEDIA_STATUS_RPT,
+			H2C_MEDIA_STATUS_RPT_LEN, u1H2CMediaStatusRptParm);
 }
 
-void rtl8723b_set_FwMacIdConfig_cmd(struct adapter *padapter, u8 mac_id, u8 raid, u8 bw, u8 sgi, u32 mask)
+void rtl8723b_set_FwMacIdConfig_cmd(struct adapter *padapter, u8 mac_id,
+				    u8 raid, u8 bw, u8 sgi, u32 mask)
 {
-	u8 u1H2CMacIdConfigParm[H2C_MACID_CFG_LEN] = {0};
+	u8 u1H2CMacIdConfigParm[H2C_MACID_CFG_LEN] = { 0 };
 
 	SET_8723B_H2CCMD_MACID_CFG_MACID(u1H2CMacIdConfigParm, mac_id);
 	SET_8723B_H2CCMD_MACID_CFG_RAID(u1H2CMacIdConfigParm, raid);
 	SET_8723B_H2CCMD_MACID_CFG_SGI_EN(u1H2CMacIdConfigParm, sgi ? 1 : 0);
 	SET_8723B_H2CCMD_MACID_CFG_BW(u1H2CMacIdConfigParm, bw);
-	SET_8723B_H2CCMD_MACID_CFG_RATE_MASK0(u1H2CMacIdConfigParm, (u8)(mask & 0x000000ff));
-	SET_8723B_H2CCMD_MACID_CFG_RATE_MASK1(u1H2CMacIdConfigParm, (u8)((mask & 0x0000ff00) >> 8));
-	SET_8723B_H2CCMD_MACID_CFG_RATE_MASK2(u1H2CMacIdConfigParm, (u8)((mask & 0x00ff0000) >> 16));
-	SET_8723B_H2CCMD_MACID_CFG_RATE_MASK3(u1H2CMacIdConfigParm, (u8)((mask & 0xff000000) >> 24));
-
-	FillH2CCmd8723B(padapter, H2C_8723B_MACID_CFG, H2C_MACID_CFG_LEN, u1H2CMacIdConfigParm);
+	SET_8723B_H2CCMD_MACID_CFG_RATE_MASK0(u1H2CMacIdConfigParm,
+					      (u8)(mask & 0x000000ff));
+	SET_8723B_H2CCMD_MACID_CFG_RATE_MASK1(u1H2CMacIdConfigParm,
+					      (u8)((mask & 0x0000ff00) >> 8));
+	SET_8723B_H2CCMD_MACID_CFG_RATE_MASK2(u1H2CMacIdConfigParm,
+					      (u8)((mask & 0x00ff0000) >> 16));
+	SET_8723B_H2CCMD_MACID_CFG_RATE_MASK3(u1H2CMacIdConfigParm,
+					      (u8)((mask & 0xff000000) >> 24));
+
+	FillH2CCmd8723B(padapter, H2C_8723B_MACID_CFG, H2C_MACID_CFG_LEN,
+			u1H2CMacIdConfigParm);
 }
 
 void rtl8723b_set_rssi_cmd(struct adapter *padapter, u8 *param)
 {
-	u8 u1H2CRssiSettingParm[H2C_RSSI_SETTING_LEN] = {0};
+	u8 u1H2CRssiSettingParm[H2C_RSSI_SETTING_LEN] = { 0 };
 	u8 mac_id = *param;
-	u8 rssi = *(param+2);
+	u8 rssi = *(param + 2);
 	u8 uldl_state = 0;
 
 	SET_8723B_H2CCMD_RSSI_SETTING_MACID(u1H2CRssiSettingParm, mac_id);
 	SET_8723B_H2CCMD_RSSI_SETTING_RSSI(u1H2CRssiSettingParm, rssi);
-	SET_8723B_H2CCMD_RSSI_SETTING_ULDL_STATE(u1H2CRssiSettingParm, uldl_state);
+	SET_8723B_H2CCMD_RSSI_SETTING_ULDL_STATE(u1H2CRssiSettingParm,
+						 uldl_state);
 
-	FillH2CCmd8723B(padapter, H2C_8723B_RSSI_SETTING, H2C_RSSI_SETTING_LEN, u1H2CRssiSettingParm);
+	FillH2CCmd8723B(padapter, H2C_8723B_RSSI_SETTING, H2C_RSSI_SETTING_LEN,
+			u1H2CRssiSettingParm);
 }
 
 void rtl8723b_set_FwPwrMode_cmd(struct adapter *padapter, u8 psmode)
@@ -339,13 +374,13 @@ void rtl8723b_set_FwPwrMode_cmd(struct adapter *padapter, u8 psmode)
 	int i;
 	struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
-	u8 u1H2CPwrModeParm[H2C_PWRMODE_LEN] = {0};
+	u8 u1H2CPwrModeParm[H2C_PWRMODE_LEN] = { 0 };
 	u8 PowerState = 0, awake_intvl = 1, byte5 = 0, rlbm = 0;
 
 	if (pwrpriv->dtim > 0 && pwrpriv->dtim < 16)
-		awake_intvl = pwrpriv->dtim+1;/* DTIM = (awake_intvl - 1) */
+		awake_intvl = pwrpriv->dtim + 1; /* DTIM = (awake_intvl - 1) */
 	else
-		awake_intvl = 3;/* DTIM =2 */
+		awake_intvl = 3; /* DTIM =2 */
 
 	rlbm = 2;
 
@@ -366,19 +401,24 @@ void rtl8723b_set_FwPwrMode_cmd(struct adapter *padapter, u8 psmode)
 				rlbm = 2;
 			}
 		} else {
-			PowerState = 0x00;/*  AllON(0x0C), RFON(0x04), RFOFF(0x00) */
+			PowerState =
+				0x00; /*  AllON(0x0C), RFON(0x04), RFOFF(0x00) */
 			byte5 = 0x40;
 		}
 	} else {
-		PowerState = 0x0C;/*  AllON(0x0C), RFON(0x04), RFOFF(0x00) */
+		PowerState = 0x0C; /*  AllON(0x0C), RFON(0x04), RFOFF(0x00) */
 		byte5 = 0x40;
 	}
 
-	SET_8723B_H2CCMD_PWRMODE_PARM_MODE(u1H2CPwrModeParm, (psmode > 0) ? 1 : 0);
-	SET_8723B_H2CCMD_PWRMODE_PARM_SMART_PS(u1H2CPwrModeParm, pwrpriv->smart_ps);
+	SET_8723B_H2CCMD_PWRMODE_PARM_MODE(u1H2CPwrModeParm,
+					   (psmode > 0) ? 1 : 0);
+	SET_8723B_H2CCMD_PWRMODE_PARM_SMART_PS(u1H2CPwrModeParm,
+					       pwrpriv->smart_ps);
 	SET_8723B_H2CCMD_PWRMODE_PARM_RLBM(u1H2CPwrModeParm, rlbm);
-	SET_8723B_H2CCMD_PWRMODE_PARM_BCN_PASS_TIME(u1H2CPwrModeParm, awake_intvl);
-	SET_8723B_H2CCMD_PWRMODE_PARM_ALL_QUEUE_UAPSD(u1H2CPwrModeParm, padapter->registrypriv.uapsd_enable);
+	SET_8723B_H2CCMD_PWRMODE_PARM_BCN_PASS_TIME(u1H2CPwrModeParm,
+						    awake_intvl);
+	SET_8723B_H2CCMD_PWRMODE_PARM_ALL_QUEUE_UAPSD(
+		u1H2CPwrModeParm, padapter->registrypriv.uapsd_enable);
 	SET_8723B_H2CCMD_PWRMODE_PARM_PWR_STATE(u1H2CPwrModeParm, PowerState);
 	SET_8723B_H2CCMD_PWRMODE_PARM_BYTE5(u1H2CPwrModeParm, byte5);
 	if (psmode != PS_MODE_ACTIVE) {
@@ -394,63 +434,67 @@ void rtl8723b_set_FwPwrMode_cmd(struct adapter *padapter, u8 psmode)
 			pmlmeext->DrvBcnTimeOut = 0xff;
 
 			for (i = 0; i < 9; i++) {
-				pmlmeext->bcn_delay_ratio[i] = (pmlmeext->bcn_delay_cnt[i]*100)/pmlmeext->bcn_cnt;
+				pmlmeext->bcn_delay_ratio[i] =
+					(pmlmeext->bcn_delay_cnt[i] * 100) /
+					pmlmeext->bcn_cnt;
 
 				ratio_20_delay += pmlmeext->bcn_delay_ratio[i];
 				ratio_80_delay += pmlmeext->bcn_delay_ratio[i];
 
-				if (ratio_20_delay > 20 && pmlmeext->DrvBcnEarly == 0xff)
+				if (ratio_20_delay > 20 &&
+				    pmlmeext->DrvBcnEarly == 0xff)
 					pmlmeext->DrvBcnEarly = i;
 
-				if (ratio_80_delay > 80 && pmlmeext->DrvBcnTimeOut == 0xff)
+				if (ratio_80_delay > 80 &&
+				    pmlmeext->DrvBcnTimeOut == 0xff)
 					pmlmeext->DrvBcnTimeOut = i;
 
 				/* reset adaptive_early_32k cnt */
 				pmlmeext->bcn_delay_cnt[i] = 0;
 				pmlmeext->bcn_delay_ratio[i] = 0;
-
 			}
 
 			pmlmeext->bcn_cnt = 0;
 			pmlmeext->adaptive_tsf_done = true;
-
 		}
 
-/* offload to FW if fw version > v15.10
+		/* offload to FW if fw version > v15.10
 		pmlmeext->DrvBcnEarly = 0;
 		pmlmeext->DrvBcnTimeOut =7;
 
 		if ((pmlmeext->DrvBcnEarly!= 0Xff) && (pmlmeext->DrvBcnTimeOut!= 0xff))
 			u1H2CPwrModeParm[H2C_PWRMODE_LEN-1] = BIT(0) | ((pmlmeext->DrvBcnEarly<<1)&0x0E) |((pmlmeext->DrvBcnTimeOut<<4)&0xf0) ;
 */
-
 	}
 
 	hal_btcoex_RecordPwrMode(padapter, u1H2CPwrModeParm, H2C_PWRMODE_LEN);
 
-	FillH2CCmd8723B(padapter, H2C_8723B_SET_PWR_MODE, H2C_PWRMODE_LEN, u1H2CPwrModeParm);
+	FillH2CCmd8723B(padapter, H2C_8723B_SET_PWR_MODE, H2C_PWRMODE_LEN,
+			u1H2CPwrModeParm);
 }
 
 void rtl8723b_set_FwPsTuneParam_cmd(struct adapter *padapter)
 {
-	u8 u1H2CPsTuneParm[H2C_PSTUNEPARAM_LEN] = {0};
+	u8 u1H2CPsTuneParm[H2C_PSTUNEPARAM_LEN] = { 0 };
 	u8 bcn_to_limit = 10; /* 10 * 100 * awakeinterval (ms) */
 	u8 dtim_timeout = 5; /* ms wait broadcast data timer */
-	u8 ps_timeout = 20;  /* ms Keep awake when tx */
+	u8 ps_timeout = 20; /* ms Keep awake when tx */
 	u8 dtim_period = 3;
 
-	SET_8723B_H2CCMD_PSTUNE_PARM_BCN_TO_LIMIT(u1H2CPsTuneParm, bcn_to_limit);
-	SET_8723B_H2CCMD_PSTUNE_PARM_DTIM_TIMEOUT(u1H2CPsTuneParm, dtim_timeout);
+	SET_8723B_H2CCMD_PSTUNE_PARM_BCN_TO_LIMIT(u1H2CPsTuneParm,
+						  bcn_to_limit);
+	SET_8723B_H2CCMD_PSTUNE_PARM_DTIM_TIMEOUT(u1H2CPsTuneParm,
+						  dtim_timeout);
 	SET_8723B_H2CCMD_PSTUNE_PARM_PS_TIMEOUT(u1H2CPsTuneParm, ps_timeout);
 	SET_8723B_H2CCMD_PSTUNE_PARM_ADOPT(u1H2CPsTuneParm, 1);
 	SET_8723B_H2CCMD_PSTUNE_PARM_DTIM_PERIOD(u1H2CPsTuneParm, dtim_period);
 
-	FillH2CCmd8723B(padapter, H2C_8723B_PS_TUNING_PARA, H2C_PSTUNEPARAM_LEN, u1H2CPsTuneParm);
+	FillH2CCmd8723B(padapter, H2C_8723B_PS_TUNING_PARA, H2C_PSTUNEPARAM_LEN,
+			u1H2CPsTuneParm);
 }
 
 void rtl8723b_set_FwPwrModeInIPS_cmd(struct adapter *padapter, u8 cmd_param)
 {
-
 	FillH2CCmd8723B(padapter, H2C_8723B_FWLPS_IN_IPS_, 1, &cmd_param);
 }
 
@@ -468,9 +512,8 @@ void rtl8723b_set_FwPwrModeInIPS_cmd(struct adapter *padapter, u8 cmd_param)
  * to Hw again and set the length in descriptor to the real beacon length.
  */
 /* 2009.10.15 by tynli. */
-static void rtl8723b_set_FwRsvdPagePkt(
-	struct adapter *padapter, bool bDLFinished
-)
+static void rtl8723b_set_FwRsvdPagePkt(struct adapter *padapter,
+				       bool bDLFinished)
 {
 	struct xmit_frame *pcmdframe;
 	struct pkt_attrib *pattrib;
@@ -493,7 +536,7 @@ static void rtl8723b_set_FwRsvdPagePkt(
 	pmlmeinfo = &pmlmeext->mlmext_info;
 
 	RsvdPageNum = BCNQ_PAGE_NUM_8723B + WOWLAN_PAGE_NUM_8723B;
-	MaxRsvdPageBufSize = RsvdPageNum*PageSize;
+	MaxRsvdPageBufSize = RsvdPageNum * PageSize;
 
 	pcmdframe = rtw_alloc_cmdxmitframe(pxmitpriv);
 	if (!pcmdframe)
@@ -515,69 +558,68 @@ static void rtl8723b_set_FwRsvdPagePkt(
 
 	TotalPageNum += CurtPktPageNum;
 
-	BufIndex += (CurtPktPageNum*PageSize);
+	BufIndex += (CurtPktPageNum * PageSize);
 
 	/* 3 (2) ps-poll */
 	RsvdPageLoc.LocPsPoll = TotalPageNum;
 	ConstructPSPoll(padapter, &ReservedPagePacket[BufIndex], &PSPollLength);
-	rtl8723b_fill_fake_txdesc(padapter, &ReservedPagePacket[BufIndex-TxDescLen], PSPollLength, true, false, false);
+	rtl8723b_fill_fake_txdesc(padapter,
+				  &ReservedPagePacket[BufIndex - TxDescLen],
+				  PSPollLength, true, false, false);
 
 	CurtPktPageNum = (u8)PageNum_128(TxDescLen + PSPollLength);
 
 	TotalPageNum += CurtPktPageNum;
 
-	BufIndex += (CurtPktPageNum*PageSize);
+	BufIndex += (CurtPktPageNum * PageSize);
 
 	/* 3 (3) null data */
 	RsvdPageLoc.LocNullData = TotalPageNum;
-	ConstructNullFunctionData(
-		padapter,
-		&ReservedPagePacket[BufIndex],
-		&NullDataLength,
-		get_my_bssid(&pmlmeinfo->network),
-		false, 0, 0, false
-	);
-	rtl8723b_fill_fake_txdesc(padapter, &ReservedPagePacket[BufIndex-TxDescLen], NullDataLength, false, false, false);
+	ConstructNullFunctionData(padapter, &ReservedPagePacket[BufIndex],
+				  &NullDataLength,
+				  get_my_bssid(&pmlmeinfo->network), false, 0,
+				  0, false);
+	rtl8723b_fill_fake_txdesc(padapter,
+				  &ReservedPagePacket[BufIndex - TxDescLen],
+				  NullDataLength, false, false, false);
 
 	CurtPktPageNum = (u8)PageNum_128(TxDescLen + NullDataLength);
 
 	TotalPageNum += CurtPktPageNum;
 
-	BufIndex += (CurtPktPageNum*PageSize);
+	BufIndex += (CurtPktPageNum * PageSize);
 
 	/* 3 (5) Qos null data */
 	RsvdPageLoc.LocQosNull = TotalPageNum;
-	ConstructNullFunctionData(
-		padapter,
-		&ReservedPagePacket[BufIndex],
-		&QosNullLength,
-		get_my_bssid(&pmlmeinfo->network),
-		true, 0, 0, false
-	);
-	rtl8723b_fill_fake_txdesc(padapter, &ReservedPagePacket[BufIndex-TxDescLen], QosNullLength, false, false, false);
+	ConstructNullFunctionData(padapter, &ReservedPagePacket[BufIndex],
+				  &QosNullLength,
+				  get_my_bssid(&pmlmeinfo->network), true, 0, 0,
+				  false);
+	rtl8723b_fill_fake_txdesc(padapter,
+				  &ReservedPagePacket[BufIndex - TxDescLen],
+				  QosNullLength, false, false, false);
 
 	CurtPktPageNum = (u8)PageNum_128(TxDescLen + QosNullLength);
 
 	TotalPageNum += CurtPktPageNum;
 
-	BufIndex += (CurtPktPageNum*PageSize);
+	BufIndex += (CurtPktPageNum * PageSize);
 
 	/* 3 (6) BT Qos null data */
 	RsvdPageLoc.LocBTQosNull = TotalPageNum;
-	ConstructNullFunctionData(
-		padapter,
-		&ReservedPagePacket[BufIndex],
-		&BTQosNullLength,
-		get_my_bssid(&pmlmeinfo->network),
-		true, 0, 0, false
-	);
-	rtl8723b_fill_fake_txdesc(padapter, &ReservedPagePacket[BufIndex-TxDescLen], BTQosNullLength, false, true, false);
+	ConstructNullFunctionData(padapter, &ReservedPagePacket[BufIndex],
+				  &BTQosNullLength,
+				  get_my_bssid(&pmlmeinfo->network), true, 0, 0,
+				  false);
+	rtl8723b_fill_fake_txdesc(padapter,
+				  &ReservedPagePacket[BufIndex - TxDescLen],
+				  BTQosNullLength, false, true, false);
 
 	CurtPktPageNum = (u8)PageNum_128(TxDescLen + BTQosNullLength);
 
 	TotalPageNum += CurtPktPageNum;
 
-	BufIndex += (CurtPktPageNum*PageSize);
+	BufIndex += (CurtPktPageNum * PageSize);
 
 	TotalPacketLen = BufIndex + BTQosNullLength;
 
@@ -588,7 +630,8 @@ static void rtl8723b_set_FwRsvdPagePkt(
 		pattrib = &pcmdframe->attrib;
 		update_mgntframe_attrib(padapter, pattrib);
 		pattrib->qsel = 0x10;
-		pattrib->pktlen = pattrib->last_txcmdsz = TotalPacketLen - TxDescOffset;
+		pattrib->pktlen = pattrib->last_txcmdsz =
+			TotalPacketLen - TxDescOffset;
 		dump_mgntframe_and_wait(padapter, pcmdframe, 100);
 	}
 
@@ -604,7 +647,7 @@ static void rtl8723b_set_FwRsvdPagePkt(
 
 void rtl8723b_download_rsvd_page(struct adapter *padapter, u8 mstatus)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
 	struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
 	bool bcn_valid = false;
@@ -618,12 +661,13 @@ void rtl8723b_download_rsvd_page(struct adapter *padapter, u8 mstatus)
 
 		/*  We should set AID, correct TSF, HW seq enable before set JoinBssReport to Fw in 88/92C. */
 		/*  Suggested by filen. Added by tynli. */
-		rtw_write16(padapter, REG_BCN_PSR_RPT, (0xC000|pmlmeinfo->aid));
+		rtw_write16(padapter, REG_BCN_PSR_RPT,
+			    (0xC000 | pmlmeinfo->aid));
 
 		/*  set REG_CR bit 8 */
-		v8 = rtw_read8(padapter, REG_CR+1);
+		v8 = rtw_read8(padapter, REG_CR + 1);
 		v8 |= BIT(0); /*  ENSWBCN */
-		rtw_write8(padapter, REG_CR+1, v8);
+		rtw_write8(padapter, REG_CR + 1, v8);
 
 		/*  Disable Hw protection for a time which revserd for Hw sending beacon. */
 		/*  Fix download reserved page packet fail that access collision with the protection time. */
@@ -638,7 +682,8 @@ void rtl8723b_download_rsvd_page(struct adapter *padapter, u8 mstatus)
 			bRecover = true;
 
 		/*  To tell Hw the packet is not a real beacon frame. */
-		rtw_write8(padapter, REG_FWHW_TXQ_CTRL+2, pHalData->RegFwHwTxQCtrl & ~BIT(6));
+		rtw_write8(padapter, REG_FWHW_TXQ_CTRL + 2,
+			   pHalData->RegFwHwTxQCtrl & ~BIT(6));
 		pHalData->RegFwHwTxQCtrl &= ~BIT(6);
 
 		/*  Clear beacon valid check bit. */
@@ -655,15 +700,21 @@ void rtl8723b_download_rsvd_page(struct adapter *padapter, u8 mstatus)
 				yield();
 				/* mdelay(10); */
 				/*  check rsvd page download OK. */
-				rtw_hal_get_hwreg(padapter, HW_VAR_BCN_VALID, (u8 *)(&bcn_valid));
+				rtw_hal_get_hwreg(padapter, HW_VAR_BCN_VALID,
+						  (u8 *)(&bcn_valid));
 				poll++;
-			} while (!bcn_valid && (poll%10) != 0 && !padapter->bSurpriseRemoved && !padapter->bDriverStopped);
+			} while (!bcn_valid && (poll % 10) != 0 &&
+				 !padapter->bSurpriseRemoved &&
+				 !padapter->bDriverStopped);
 
-		} while (!bcn_valid && DLBcnCount <= 100 && !padapter->bSurpriseRemoved && !padapter->bDriverStopped);
+		} while (!bcn_valid && DLBcnCount <= 100 &&
+			 !padapter->bSurpriseRemoved &&
+			 !padapter->bDriverStopped);
 
 		if (padapter->bSurpriseRemoved || padapter->bDriverStopped) {
 		} else {
-			struct pwrctrl_priv *pwrctl = adapter_to_pwrctl(padapter);
+			struct pwrctrl_priv *pwrctl =
+				adapter_to_pwrctl(padapter);
 
 			pwrctl->fw_psmode_iface_id = padapter->iface_id;
 		}
@@ -680,14 +731,15 @@ void rtl8723b_download_rsvd_page(struct adapter *padapter, u8 mstatus)
 		/*  the beacon cannot be sent by HW. */
 		/*  2010.06.23. Added by tynli. */
 		if (bRecover) {
-			rtw_write8(padapter, REG_FWHW_TXQ_CTRL+2, pHalData->RegFwHwTxQCtrl | BIT(6));
+			rtw_write8(padapter, REG_FWHW_TXQ_CTRL + 2,
+				   pHalData->RegFwHwTxQCtrl | BIT(6));
 			pHalData->RegFwHwTxQCtrl |= BIT(6);
 		}
 
 		/*  Clear CR[8] or beacon packet will not be send to TxBuf anymore. */
-		v8 = rtw_read8(padapter, REG_CR+1);
+		v8 = rtw_read8(padapter, REG_CR + 1);
 		v8 &= ~BIT(0); /*  ~ENSWBCN */
-		rtw_write8(padapter, REG_CR+1, v8);
+		rtw_write8(padapter, REG_CR + 1, v8);
 	}
 }
 
@@ -701,14 +753,10 @@ void rtl8723b_set_FwJoinBssRpt_cmd(struct adapter *padapter, u8 mstatus)
 /* arg[1] = raid */
 /* arg[2] = shortGIrate */
 /* arg[3] = init_rate */
-void rtl8723b_Add_RateATid(
-	struct adapter *padapter,
-	u32 bitmap,
-	u8 *arg,
-	u8 rssi_level
-)
+void rtl8723b_Add_RateATid(struct adapter *padapter, u32 bitmap, u8 *arg,
+			   u8 rssi_level)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
 	struct sta_info *psta;
@@ -716,7 +764,7 @@ void rtl8723b_Add_RateATid(
 	u8 raid = arg[1];
 	u8 shortGI = arg[2];
 	u8 bw;
-	u32 mask = bitmap&0x0FFFFFFF;
+	u32 mask = bitmap & 0x0FFFFFFF;
 
 	psta = pmlmeinfo->FW_sta_info[mac_id].psta;
 	if (!psta)
@@ -725,21 +773,16 @@ void rtl8723b_Add_RateATid(
 	bw = psta->bw_mode;
 
 	if (rssi_level != DM_RATR_STA_INIT)
-		mask = ODM_Get_Rate_Bitmap(&pHalData->odmpriv, mac_id, mask, rssi_level);
+		mask = ODM_Get_Rate_Bitmap(&pHalData->odmpriv, mac_id, mask,
+					   rssi_level);
 
-	rtl8723b_set_FwMacIdConfig_cmd(padapter, mac_id, raid, bw, shortGI, mask);
+	rtl8723b_set_FwMacIdConfig_cmd(padapter, mac_id, raid, bw, shortGI,
+				       mask);
 }
 
-static void ConstructBtNullFunctionData(
-	struct adapter *padapter,
-	u8 *pframe,
-	u32 *pLength,
-	u8 *StaAddr,
-	u8 bQoS,
-	u8 AC,
-	u8 bEosp,
-	u8 bForcePowerSave
-)
+static void ConstructBtNullFunctionData(struct adapter *padapter, u8 *pframe,
+					u32 *pLength, u8 *StaAddr, u8 bQoS,
+					u8 AC, u8 bEosp, u8 bForcePowerSave)
 {
 	struct ieee80211_hdr *pwlanhdr;
 	__le16 *fctrl;
@@ -805,7 +848,7 @@ static void SetFwRsvdPagePkt_BTCoex(struct adapter *padapter)
 	PageSize = PAGE_SIZE_TX_8723B;
 
 	RsvdPageNum = BCNQ_PAGE_NUM_8723B;
-	MaxRsvdPageBufSize = RsvdPageNum*PageSize;
+	MaxRsvdPageBufSize = RsvdPageNum * PageSize;
 
 	pcmdframe = rtw_alloc_cmdxmitframe(pxmitpriv);
 	if (!pcmdframe)
@@ -826,7 +869,7 @@ static void SetFwRsvdPagePkt_BTCoex(struct adapter *padapter)
 		CurtPktPageNum += 1;
 	TotalPageNum += CurtPktPageNum;
 
-	BufIndex += (CurtPktPageNum*PageSize);
+	BufIndex += (CurtPktPageNum * PageSize);
 
 	/*  Jump to lastest page */
 	if (BufIndex < (MaxRsvdPageBufSize - PageSize)) {
@@ -836,14 +879,11 @@ static void SetFwRsvdPagePkt_BTCoex(struct adapter *padapter)
 
 	/* 3 (6) BT Qos null data */
 	RsvdPageLoc.LocBTQosNull = TotalPageNum;
-	ConstructBtNullFunctionData(
-		padapter,
-		&ReservedPagePacket[BufIndex],
-		&BTQosNullLength,
-		NULL,
-		true, 0, 0, false
-	);
-	rtl8723b_fill_fake_txdesc(padapter, &ReservedPagePacket[BufIndex-TxDescLen], BTQosNullLength, false, true, false);
+	ConstructBtNullFunctionData(padapter, &ReservedPagePacket[BufIndex],
+				    &BTQosNullLength, NULL, true, 0, 0, false);
+	rtl8723b_fill_fake_txdesc(padapter,
+				  &ReservedPagePacket[BufIndex - TxDescLen],
+				  BTQosNullLength, false, true, false);
 
 	CurtPktPageNum = (u8)PageNum_128(TxDescLen + BTQosNullLength);
 
@@ -885,12 +925,12 @@ void rtl8723b_download_BTCoex_AP_mode_rsvd_page(struct adapter *padapter)
 
 	/*  We should set AID, correct TSF, HW seq enable before set JoinBssReport to Fw in 88/92C. */
 	/*  Suggested by filen. Added by tynli. */
-	rtw_write16(padapter, REG_BCN_PSR_RPT, (0xC000|pmlmeinfo->aid));
+	rtw_write16(padapter, REG_BCN_PSR_RPT, (0xC000 | pmlmeinfo->aid));
 
 	/*  set REG_CR bit 8 */
-	val8 = rtw_read8(padapter, REG_CR+1);
+	val8 = rtw_read8(padapter, REG_CR + 1);
 	val8 |= BIT(0); /*  ENSWBCN */
-	rtw_write8(padapter,  REG_CR+1, val8);
+	rtw_write8(padapter, REG_CR + 1, val8);
 
 	/*  Disable Hw protection for a time which revserd for Hw sending beacon. */
 	/*  Fix download reserved page packet fail that access collision with the protection time. */
@@ -906,7 +946,7 @@ void rtl8723b_download_BTCoex_AP_mode_rsvd_page(struct adapter *padapter)
 
 	/*  To tell Hw the packet is not a real beacon frame. */
 	pHalData->RegFwHwTxQCtrl &= ~BIT(6);
-	rtw_write8(padapter, REG_FWHW_TXQ_CTRL+2, pHalData->RegFwHwTxQCtrl);
+	rtw_write8(padapter, REG_FWHW_TXQ_CTRL + 2, pHalData->RegFwHwTxQCtrl);
 
 	/*  Clear beacon valid check bit. */
 	rtw_hal_set_hwreg(padapter, HW_VAR_BCN_VALID, NULL);
@@ -919,12 +959,16 @@ void rtl8723b_download_BTCoex_AP_mode_rsvd_page(struct adapter *padapter)
 		DLBcnCount++;
 		do {
 			yield();
-/* 			mdelay(10); */
+			/* 			mdelay(10); */
 			/*  check rsvd page download OK. */
-			rtw_hal_get_hwreg(padapter, HW_VAR_BCN_VALID, &bcn_valid);
+			rtw_hal_get_hwreg(padapter, HW_VAR_BCN_VALID,
+					  &bcn_valid);
 			poll++;
-		} while (!bcn_valid && (poll%10) != 0 && !padapter->bSurpriseRemoved && !padapter->bDriverStopped);
-	} while (!bcn_valid && (DLBcnCount <= 100) && !padapter->bSurpriseRemoved && !padapter->bDriverStopped);
+		} while (!bcn_valid && (poll % 10) != 0 &&
+			 !padapter->bSurpriseRemoved &&
+			 !padapter->bDriverStopped);
+	} while (!bcn_valid && (DLBcnCount <= 100) &&
+		 !padapter->bSurpriseRemoved && !padapter->bDriverStopped);
 
 	if (bcn_valid) {
 		struct pwrctrl_priv *pwrctl = adapter_to_pwrctl(padapter);
@@ -945,11 +989,12 @@ void rtl8723b_download_BTCoex_AP_mode_rsvd_page(struct adapter *padapter)
 	/*  2010.06.23. Added by tynli. */
 	if (bRecover) {
 		pHalData->RegFwHwTxQCtrl |= BIT(6);
-		rtw_write8(padapter, REG_FWHW_TXQ_CTRL+2, pHalData->RegFwHwTxQCtrl);
+		rtw_write8(padapter, REG_FWHW_TXQ_CTRL + 2,
+			   pHalData->RegFwHwTxQCtrl);
 	}
 
 	/*  Clear CR[8] or beacon packet will not be send to TxBuf anymore. */
-	val8 = rtw_read8(padapter, REG_CR+1);
+	val8 = rtw_read8(padapter, REG_CR + 1);
 	val8 &= ~BIT(0); /*  ~ENSWBCN */
-	rtw_write8(padapter, REG_CR+1, val8);
+	rtw_write8(padapter, REG_CR + 1, val8);
 }
diff --git a/drivers/staging/rtl8723bs/hal/rtl8723b_dm.c b/drivers/staging/rtl8723bs/hal/rtl8723b_dm.c
index 2276dc1cb44ac..504dc0bbc1cc2 100644
--- a/drivers/staging/rtl8723bs/hal/rtl8723b_dm.c
+++ b/drivers/staging/rtl8723bs/hal/rtl8723b_dm.c
@@ -17,7 +17,6 @@
 /*  */
 static void Init_ODM_ComInfo_8723b(struct adapter *Adapter)
 {
-
 	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 	struct dm_odm_t *pDM_Odm = &pHalData->odmpriv;
 	struct dm_priv *pdmpriv = &pHalData->dmpriv;
@@ -32,7 +31,8 @@ static void Init_ODM_ComInfo_8723b(struct adapter *Adapter)
 #define ODM_CE 0x04
 	ODM_CmnInfoInit(pDM_Odm, ODM_CMNINFO_PLATFORM, ODM_CE);
 	ODM_CmnInfoInit(pDM_Odm, ODM_CMNINFO_INTERFACE, RTW_SDIO);
-	ODM_CmnInfoInit(pDM_Odm, ODM_CMNINFO_PACKAGE_TYPE, pHalData->PackageType);
+	ODM_CmnInfoInit(pDM_Odm, ODM_CMNINFO_PACKAGE_TYPE,
+			pHalData->PackageType);
 	ODM_CmnInfoInit(pDM_Odm, ODM_CMNINFO_IC_TYPE, ODM_RTL8723B);
 
 	fab_ver = ODM_TSMC;
@@ -43,9 +43,10 @@ static void Init_ODM_ComInfo_8723b(struct adapter *Adapter)
 
 	ODM_CmnInfoInit(pDM_Odm, ODM_CMNINFO_PATCH_ID, pHalData->CustomerID);
 	/* 	ODM_CMNINFO_BINHCT_TEST only for MP Team */
-	ODM_CmnInfoInit(pDM_Odm, ODM_CMNINFO_BWIFI_TEST, Adapter->registrypriv.wifi_spec);
+	ODM_CmnInfoInit(pDM_Odm, ODM_CMNINFO_BWIFI_TEST,
+			Adapter->registrypriv.wifi_spec);
 
-	pdmpriv->InitODMFlag = ODM_RF_CALIBRATION|ODM_RF_TX_PWR_TRACK;
+	pdmpriv->InitODMFlag = ODM_RF_CALIBRATION | ODM_RF_TX_PWR_TRACK;
 
 	ODM_CmnInfoUpdate(pDM_Odm, ODM_CMNINFO_ABILITY, pdmpriv->InitODMFlag);
 }
@@ -62,19 +63,11 @@ static void Update_ODM_ComInfo_8723b(struct adapter *Adapter)
 	int i;
 	u8 zero = 0;
 
-	pdmpriv->InitODMFlag = 0
-		| ODM_BB_DIG
-		| ODM_BB_RA_MASK
-		| ODM_BB_DYNAMIC_TXPWR
-		| ODM_BB_FA_CNT
-		| ODM_BB_RSSI_MONITOR
-		| ODM_BB_CCK_PD
-		| ODM_BB_PWR_SAVE
-		| ODM_BB_CFO_TRACKING
-		| ODM_MAC_EDCA_TURBO
-		| ODM_RF_TX_PWR_TRACK
-		| ODM_RF_CALIBRATION
-		;
+	pdmpriv->InitODMFlag =
+		0 | ODM_BB_DIG | ODM_BB_RA_MASK | ODM_BB_DYNAMIC_TXPWR |
+		ODM_BB_FA_CNT | ODM_BB_RSSI_MONITOR | ODM_BB_CCK_PD |
+		ODM_BB_PWR_SAVE | ODM_BB_CFO_TRACKING | ODM_MAC_EDCA_TURBO |
+		ODM_RF_TX_PWR_TRACK | ODM_RF_CALIBRATION;
 
 	/*  */
 	/*  Pointer reference */
@@ -84,23 +77,34 @@ static void Update_ODM_ComInfo_8723b(struct adapter *Adapter)
 
 	ODM_CmnInfoUpdate(pDM_Odm, ODM_CMNINFO_ABILITY, pdmpriv->InitODMFlag);
 
-	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_TX_UNI, &(dvobj->traffic_stat.tx_bytes));
-	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_RX_UNI, &(dvobj->traffic_stat.rx_bytes));
-	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_WM_MODE, &(pmlmeext->cur_wireless_mode));
-	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_SEC_CHNL_OFFSET, &(pHalData->nCur40MhzPrimeSC));
-	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_SEC_MODE, &(Adapter->securitypriv.dot11PrivacyAlgrthm));
+	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_TX_UNI,
+			&(dvobj->traffic_stat.tx_bytes));
+	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_RX_UNI,
+			&(dvobj->traffic_stat.rx_bytes));
+	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_WM_MODE,
+			&(pmlmeext->cur_wireless_mode));
+	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_SEC_CHNL_OFFSET,
+			&(pHalData->nCur40MhzPrimeSC));
+	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_SEC_MODE,
+			&(Adapter->securitypriv.dot11PrivacyAlgrthm));
 	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_BW, &(pHalData->CurrentChannelBW));
 	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_CHNL, &(pHalData->CurrentChannel));
-	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_NET_CLOSED, &(Adapter->net_closed));
+	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_NET_CLOSED,
+			&(Adapter->net_closed));
 	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_MP_MODE, &zero);
-	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_FORCED_IGI_LB, &(pHalData->u1ForcedIgiLb));
-	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_FORCED_RATE, &(pHalData->ForcedDataRate));
+	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_FORCED_IGI_LB,
+			&(pHalData->u1ForcedIgiLb));
+	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_FORCED_RATE,
+			&(pHalData->ForcedDataRate));
 
-	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_SCAN, &(pmlmepriv->bScanInProcess));
-	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_POWER_SAVING, &(pwrctrlpriv->bpower_saving));
+	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_SCAN,
+			&(pmlmepriv->bScanInProcess));
+	ODM_CmnInfoHook(pDM_Odm, ODM_CMNINFO_POWER_SAVING,
+			&(pwrctrlpriv->bpower_saving));
 
 	for (i = 0; i < NUM_STA; i++)
-		ODM_CmnInfoPtrArrayHook(pDM_Odm, ODM_CMNINFO_STA_STATUS, i, NULL);
+		ODM_CmnInfoPtrArrayHook(pDM_Odm, ODM_CMNINFO_STA_STATUS, i,
+					NULL);
 }
 
 void rtl8723b_InitHalDm(struct adapter *Adapter)
@@ -133,11 +137,11 @@ void rtl8723b_HalDmWatchDog(struct adapter *Adapter)
 	if (!hw_init_completed)
 		goto skip_dm;
 
-	fw_current_in_ps_mode = adapter_to_pwrctl(Adapter)->fw_current_in_ps_mode;
+	fw_current_in_ps_mode =
+		adapter_to_pwrctl(Adapter)->fw_current_in_ps_mode;
 	rtw_hal_get_hwreg(Adapter, HW_VAR_FWLPS_RF_ON, (u8 *)(&bFwPSAwake));
 
-	if (hw_init_completed &&
-	    (!fw_current_in_ps_mode && bFwPSAwake)) {
+	if (hw_init_completed && (!fw_current_in_ps_mode && bFwPSAwake)) {
 		rtw_hal_check_rxfifo_full(Adapter);
 	}
 
@@ -149,12 +153,15 @@ void rtl8723b_HalDmWatchDog(struct adapter *Adapter)
 
 		if (rtw_linked_check(Adapter)) {
 			bLinked = true;
-			if (check_fwstate(&Adapter->mlmepriv, WIFI_STATION_STATE))
+			if (check_fwstate(&Adapter->mlmepriv,
+					  WIFI_STATION_STATE))
 				bsta_state = true;
 		}
 
-		ODM_CmnInfoUpdate(&pHalData->odmpriv, ODM_CMNINFO_LINK, bLinked);
-		ODM_CmnInfoUpdate(&pHalData->odmpriv, ODM_CMNINFO_STATION_STATE, bsta_state);
+		ODM_CmnInfoUpdate(&pHalData->odmpriv, ODM_CMNINFO_LINK,
+				  bLinked);
+		ODM_CmnInfoUpdate(&pHalData->odmpriv, ODM_CMNINFO_STATION_STATE,
+				  bsta_state);
 
 		/* ODM_CmnInfoUpdate(&pHalData->odmpriv , ODM_CMNINFO_RSSI_MIN, pdmpriv->MinUndecoratedPWDBForDM); */
 
@@ -185,11 +192,11 @@ void rtl8723b_hal_dm_in_lps(struct adapter *padapter)
 	/* set rssi to fw */
 	psta = rtw_get_stainfo(pstapriv, get_bssid(pmlmepriv));
 	if (psta && (psta->rssi_stat.UndecoratedSmoothedPWDB > 0)) {
-		PWDB_rssi = (psta->mac_id | (psta->rssi_stat.UndecoratedSmoothedPWDB<<16));
+		PWDB_rssi = (psta->mac_id |
+			     (psta->rssi_stat.UndecoratedSmoothedPWDB << 16));
 
 		rtl8723b_set_rssi_cmd(padapter, (u8 *)&PWDB_rssi);
 	}
-
 }
 
 void rtl8723b_HalDmWatchDog_in_LPS(struct adapter *Adapter)
@@ -220,31 +227,30 @@ void rtl8723b_HalDmWatchDog_in_LPS(struct adapter *Adapter)
 	/* ODM_DMWatchdog(&pHalData->odmpriv); */
 	/* Do DIG by RSSI In LPS-32K */
 
-      /* 1 Find MIN-RSSI */
+	/* 1 Find MIN-RSSI */
 	psta = rtw_get_stainfo(pstapriv, get_bssid(pmlmepriv));
 	if (!psta)
 		goto skip_lps_dm;
 
-	pdmpriv->EntryMinUndecoratedSmoothedPWDB = psta->rssi_stat.UndecoratedSmoothedPWDB;
+	pdmpriv->EntryMinUndecoratedSmoothedPWDB =
+		psta->rssi_stat.UndecoratedSmoothedPWDB;
 
 	if (pdmpriv->EntryMinUndecoratedSmoothedPWDB <= 0)
 		goto skip_lps_dm;
 
-	pdmpriv->MinUndecoratedPWDBForDM = pdmpriv->EntryMinUndecoratedSmoothedPWDB;
+	pdmpriv->MinUndecoratedPWDBForDM =
+		pdmpriv->EntryMinUndecoratedSmoothedPWDB;
 
 	pDM_Odm->RSSI_Min = pdmpriv->MinUndecoratedPWDBForDM;
 
 	/* if (pDM_DigTable->CurIGValue != pDM_Odm->RSSI_Min) */
-	if (
-		(pDM_DigTable->CurIGValue > pDM_Odm->RSSI_Min + 5) ||
-		(pDM_DigTable->CurIGValue < pDM_Odm->RSSI_Min - 5)
-	)
+	if ((pDM_DigTable->CurIGValue > pDM_Odm->RSSI_Min + 5) ||
+	    (pDM_DigTable->CurIGValue < pDM_Odm->RSSI_Min - 5))
 		rtw_dm_in_lps_wk_cmd(Adapter);
 
 skip_lps_dm:
 
 	return;
-
 }
 
 void rtl8723b_init_dm_priv(struct adapter *Adapter)
diff --git a/drivers/staging/rtl8723bs/hal/rtl8723b_hal_init.c b/drivers/staging/rtl8723bs/hal/rtl8723b_hal_init.c
index bcaf63b2893cd..6630e5b664ba4 100644
--- a/drivers/staging/rtl8723bs/hal/rtl8723b_hal_init.c
+++ b/drivers/staging/rtl8723bs/hal/rtl8723b_hal_init.c
@@ -21,23 +21,23 @@ static void _FWDownloadEnable(struct adapter *padapter, bool enable)
 		rtw_write8(padapter, REG_SYS_FUNC_EN + 1, tmp | 0x04);
 
 		tmp = rtw_read8(padapter, REG_MCUFWDL);
-		rtw_write8(padapter, REG_MCUFWDL, tmp|0x01);
+		rtw_write8(padapter, REG_MCUFWDL, tmp | 0x01);
 
 		do {
 			tmp = rtw_read8(padapter, REG_MCUFWDL);
 			if (tmp & 0x01)
 				break;
-			rtw_write8(padapter, REG_MCUFWDL, tmp|0x01);
+			rtw_write8(padapter, REG_MCUFWDL, tmp | 0x01);
 			msleep(1);
 		} while (count++ < 100);
 
 		/*  8051 reset */
-		tmp = rtw_read8(padapter, REG_MCUFWDL+2);
-		rtw_write8(padapter, REG_MCUFWDL+2, tmp&0xf7);
+		tmp = rtw_read8(padapter, REG_MCUFWDL + 2);
+		rtw_write8(padapter, REG_MCUFWDL + 2, tmp & 0xf7);
 	} else {
 		/*  MCU firmware download disable. */
 		tmp = rtw_read8(padapter, REG_MCUFWDL);
-		rtw_write8(padapter, REG_MCUFWDL, tmp&0xfe);
+		rtw_write8(padapter, REG_MCUFWDL, tmp & 0xfe);
 	}
 }
 
@@ -45,9 +45,12 @@ static int _BlockWrite(struct adapter *padapter, void *buffer, u32 buffSize)
 {
 	int ret = _SUCCESS;
 
-	u32 blockSize_p1 = 4; /*  (Default) Phase #1 : PCI muse use 4-byte write to download FW */
-	u32 blockSize_p2 = 8; /*  Phase #2 : Use 8-byte, if Phase#1 use big size to write FW. */
-	u32 blockSize_p3 = 1; /*  Phase #3 : Use 1-byte, the remnant of FW image. */
+	u32 blockSize_p1 =
+		4; /*  (Default) Phase #1 : PCI muse use 4-byte write to download FW */
+	u32 blockSize_p2 =
+		8; /*  Phase #2 : Use 8-byte, if Phase#1 use big size to write FW. */
+	u32 blockSize_p3 =
+		1; /*  Phase #3 : Use 1-byte, the remnant of FW image. */
 	u32 blockCount_p1 = 0, blockCount_p2 = 0, blockCount_p3 = 0;
 	u32 remainSize_p1 = 0, remainSize_p2 = 0;
 	u8 *bufferPtr = buffer;
@@ -58,9 +61,12 @@ static int _BlockWrite(struct adapter *padapter, void *buffer, u32 buffSize)
 	remainSize_p1 = buffSize % blockSize_p1;
 
 	for (i = 0; i < blockCount_p1; i++) {
-		ret = rtw_write32(padapter, (FW_8723B_START_ADDRESS + i * blockSize_p1), *((u32 *)(bufferPtr + i * blockSize_p1)));
+		ret = rtw_write32(padapter,
+				  (FW_8723B_START_ADDRESS + i * blockSize_p1),
+				  *((u32 *)(bufferPtr + i * blockSize_p1)));
 		if (ret == _FAIL) {
-			netdev_dbg(padapter->pnetdev, "write failed at %s %d, block:%d\n",
+			netdev_dbg(padapter->pnetdev,
+				   "write failed at %s %d, block:%d\n",
 				   __func__, __LINE__, i);
 			goto exit;
 		}
@@ -68,21 +74,25 @@ static int _BlockWrite(struct adapter *padapter, void *buffer, u32 buffSize)
 
 	/* 3 Phase #2 */
 	if (remainSize_p1) {
-		blockCount_p2 = remainSize_p1/blockSize_p2;
-		remainSize_p2 = remainSize_p1%blockSize_p2;
+		blockCount_p2 = remainSize_p1 / blockSize_p2;
+		remainSize_p2 = remainSize_p1 % blockSize_p2;
 	}
 
 	/* 3 Phase #3 */
 	if (remainSize_p2) {
-		offset = (blockCount_p1 * blockSize_p1) + (blockCount_p2 * blockSize_p2);
+		offset = (blockCount_p1 * blockSize_p1) +
+			 (blockCount_p2 * blockSize_p2);
 
 		blockCount_p3 = remainSize_p2 / blockSize_p3;
 
 		for (i = 0; i < blockCount_p3; i++) {
-			ret = rtw_write8(padapter, (FW_8723B_START_ADDRESS + offset + i), *(bufferPtr + offset + i));
+			ret = rtw_write8(padapter,
+					 (FW_8723B_START_ADDRESS + offset + i),
+					 *(bufferPtr + offset + i));
 
 			if (ret == _FAIL) {
-				netdev_dbg(padapter->pnetdev, "write failed at %s %d, block:%d\n",
+				netdev_dbg(padapter->pnetdev,
+					   "write failed at %s %d, block:%d\n",
 					   __func__, __LINE__, i);
 				goto exit;
 			}
@@ -92,18 +102,14 @@ static int _BlockWrite(struct adapter *padapter, void *buffer, u32 buffSize)
 	return ret;
 }
 
-static int _PageWrite(
-	struct adapter *padapter,
-	u32 page,
-	void *buffer,
-	u32 size
-)
+static int _PageWrite(struct adapter *padapter, u32 page, void *buffer,
+		      u32 size)
 {
 	u8 value8;
-	u8 u8Page = (u8) (page & 0x07);
+	u8 u8Page = (u8)(page & 0x07);
 
-	value8 = (rtw_read8(padapter, REG_MCUFWDL+2) & 0xF8) | u8Page;
-	rtw_write8(padapter, REG_MCUFWDL+2, value8);
+	value8 = (rtw_read8(padapter, REG_MCUFWDL + 2) & 0xF8) | u8Page;
+	rtw_write8(padapter, REG_MCUFWDL + 2, value8);
 
 	return _BlockWrite(padapter, buffer, size);
 }
@@ -122,11 +128,13 @@ static int _WriteFW(struct adapter *padapter, void *buffer, u32 size)
 
 	for (page = 0; page < pageNums; page++) {
 		offset = page * MAX_DLFW_PAGE_SIZE;
-		ret = _PageWrite(padapter, page, bufferPtr+offset, MAX_DLFW_PAGE_SIZE);
+		ret = _PageWrite(padapter, page, bufferPtr + offset,
+				 MAX_DLFW_PAGE_SIZE);
 
 		if (ret == _FAIL) {
-			netdev_dbg(padapter->pnetdev, "page write failed at %s %d\n",
-				   __func__, __LINE__);
+			netdev_dbg(padapter->pnetdev,
+				   "page write failed at %s %d\n", __func__,
+				   __LINE__);
 			goto exit;
 		}
 	}
@@ -134,10 +142,12 @@ static int _WriteFW(struct adapter *padapter, void *buffer, u32 size)
 	if (remainSize) {
 		offset = pageNums * MAX_DLFW_PAGE_SIZE;
 		page = pageNums;
-		ret = _PageWrite(padapter, page, bufferPtr+offset, remainSize);
+		ret = _PageWrite(padapter, page, bufferPtr + offset,
+				 remainSize);
 
 		if (ret == _FAIL) {
-			netdev_dbg(padapter->pnetdev, "remaining page write failed at %s %d\n",
+			netdev_dbg(padapter->pnetdev,
+				   "remaining page write failed at %s %d\n",
 				   __func__, __LINE__);
 			goto exit;
 		}
@@ -176,9 +186,8 @@ void _8051Reset8723(struct adapter *padapter)
 
 u8 g_fwdl_chksum_fail;
 
-static s32 polling_fwdl_chksum(
-	struct adapter *adapter, u32 min_cnt, u32 timeout_ms
-)
+static s32 polling_fwdl_chksum(struct adapter *adapter, u32 min_cnt,
+			       u32 timeout_ms)
 {
 	s32 ret = _FAIL;
 	u32 value32;
@@ -189,10 +198,12 @@ static s32 polling_fwdl_chksum(
 	do {
 		cnt++;
 		value32 = rtw_read32(adapter, REG_MCUFWDL);
-		if (value32 & FWDL_ChkSum_rpt || adapter->bSurpriseRemoved || adapter->bDriverStopped)
+		if (value32 & FWDL_ChkSum_rpt || adapter->bSurpriseRemoved ||
+		    adapter->bDriverStopped)
 			break;
 		yield();
-	} while (jiffies_to_msecs(jiffies-start) < timeout_ms || cnt < min_cnt);
+	} while (jiffies_to_msecs(jiffies - start) < timeout_ms ||
+		 cnt < min_cnt);
 
 	if (!(value32 & FWDL_ChkSum_rpt)) {
 		goto exit;
@@ -230,10 +241,12 @@ static s32 _FWFreeToGo(struct adapter *adapter, u32 min_cnt, u32 timeout_ms)
 	do {
 		cnt++;
 		value32 = rtw_read32(adapter, REG_MCUFWDL);
-		if (value32 & WINTINI_RDY || adapter->bSurpriseRemoved || adapter->bDriverStopped)
+		if (value32 & WINTINI_RDY || adapter->bSurpriseRemoved ||
+		    adapter->bDriverStopped)
 			break;
 		yield();
-	} while (jiffies_to_msecs(jiffies - start) < timeout_ms || cnt < min_cnt);
+	} while (jiffies_to_msecs(jiffies - start) < timeout_ms ||
+		 cnt < min_cnt);
 
 	if (!(value32 & WINTINI_RDY)) {
 		goto exit;
@@ -251,7 +264,8 @@ static s32 _FWFreeToGo(struct adapter *adapter, u32 min_cnt, u32 timeout_ms)
 	return ret;
 }
 
-#define IS_FW_81xxC(padapter)	(((GET_HAL_DATA(padapter))->FirmwareSignature & 0xFFF0) == 0x88C0)
+#define IS_FW_81xxC(padapter) \
+	(((GET_HAL_DATA(padapter))->FirmwareSignature & 0xFFF0) == 0x88C0)
 
 void rtl8723b_FirmwareSelfReset(struct adapter *padapter)
 {
@@ -259,11 +273,13 @@ void rtl8723b_FirmwareSelfReset(struct adapter *padapter)
 	u8 val;
 	u8 Delay = 100;
 
-	if (
-		!(IS_FW_81xxC(padapter) && ((pHalData->FirmwareVersion < 0x21) || (pHalData->FirmwareVersion == 0x21 && pHalData->FirmwareSubVersion < 0x01)))
-	) { /*  after 88C Fw v33.1 */
+	if (!(IS_FW_81xxC(padapter) &&
+	      ((pHalData->FirmwareVersion < 0x21) ||
+	       (pHalData->FirmwareVersion == 0x21 &&
+		pHalData->FirmwareSubVersion <
+			0x01)))) { /*  after 88C Fw v33.1 */
 		/* 0x1cf = 0x20. Inform 8051 to reset. 2009.12.25. tynli_test */
-		rtw_write8(padapter, REG_HMETFR+3, 0x20);
+		rtw_write8(padapter, REG_HMETFR + 3, 0x20);
 
 		val = rtw_read8(padapter, REG_SYS_FUNC_EN + 1);
 		while (val & BIT(2)) {
@@ -277,7 +293,8 @@ void rtl8723b_FirmwareSelfReset(struct adapter *padapter)
 		if (Delay == 0) {
 			/* force firmware reset */
 			val = rtw_read8(padapter, REG_SYS_FUNC_EN + 1);
-			rtw_write8(padapter, REG_SYS_FUNC_EN + 1, val & (~BIT(2)));
+			rtw_write8(padapter, REG_SYS_FUNC_EN + 1,
+				   val & (~BIT(2)));
 		}
 	}
 }
@@ -287,7 +304,7 @@ void rtl8723b_FirmwareSelfReset(struct adapter *padapter)
 /* 		Download 8192C firmware code. */
 /*  */
 /*  */
-s32 rtl8723b_FirmwareDownload(struct adapter *padapter, bool  bUsedWoWLANFw)
+s32 rtl8723b_FirmwareDownload(struct adapter *padapter, bool bUsedWoWLANFw)
 {
 	s32 rtStatus = _SUCCESS;
 	u8 write_fw = 0;
@@ -354,8 +371,7 @@ s32 rtl8723b_FirmwareDownload(struct adapter *padapter, bool  bUsedWoWLANFw)
 	release_firmware(fw);
 	if (pFirmware->fw_length > FW_8723B_SIZE) {
 		rtStatus = _FAIL;
-		netdev_emerg(padapter->pnetdev,
-			     "Firmware size:%u exceed %u\n",
+		netdev_emerg(padapter->pnetdev, "Firmware size:%u exceed %u\n",
 			     pFirmware->fw_length, FW_8723B_SIZE);
 		goto release_fw1;
 	}
@@ -366,7 +382,7 @@ s32 rtl8723b_FirmwareDownload(struct adapter *padapter, bool  bUsedWoWLANFw)
 	/*  To Check Fw header. Added by tynli. 2009.12.04. */
 	pFwHdr = (struct rt_firmware_hdr *)pFirmwareBuf;
 
-	pHalData->FirmwareVersion =  le16_to_cpu(pFwHdr->version);
+	pHalData->FirmwareVersion = le16_to_cpu(pFwHdr->version);
 	pHalData->FirmwareSubVersion = le16_to_cpu(pFwHdr->subversion);
 	pHalData->FirmwareSignature = le16_to_cpu(pFwHdr->signature);
 
@@ -385,13 +401,12 @@ s32 rtl8723b_FirmwareDownload(struct adapter *padapter, bool  bUsedWoWLANFw)
 
 	_FWDownloadEnable(padapter, true);
 	fwdl_start_time = jiffies;
-	while (
-		!padapter->bDriverStopped &&
-		!padapter->bSurpriseRemoved &&
-		(write_fw++ < 3 || jiffies_to_msecs(jiffies - fwdl_start_time) < 500)
-	) {
+	while (!padapter->bDriverStopped && !padapter->bSurpriseRemoved &&
+	       (write_fw++ < 3 ||
+		jiffies_to_msecs(jiffies - fwdl_start_time) < 500)) {
 		/* reset FWDL chksum */
-		rtw_write8(padapter, REG_MCUFWDL, rtw_read8(padapter, REG_MCUFWDL)|FWDL_ChkSum_rpt);
+		rtw_write8(padapter, REG_MCUFWDL,
+			   rtw_read8(padapter, REG_MCUFWDL) | FWDL_ChkSum_rpt);
 
 		rtStatus = _WriteFW(padapter, pFirmwareBuf, FirmwareLen);
 		if (rtStatus != _SUCCESS)
@@ -431,36 +446,39 @@ void rtl8723b_InitializeFirmwareVars(struct adapter *padapter)
 
 	/*  Init H2C counter. by tynli. 2009.12.09. */
 	pHalData->LastHMEBoxNum = 0;
-/* pHalData->H2CQueueHead = 0; */
-/* pHalData->H2CQueueTail = 0; */
-/* pHalData->H2CStopInsertQueue = false; */
+	/* pHalData->H2CQueueHead = 0; */
+	/* pHalData->H2CQueueTail = 0; */
+	/* pHalData->H2CStopInsertQueue = false; */
 }
 
 /*  */
 /* 				Efuse related code */
 /*  */
-static u8 hal_EfuseSwitchToBank(
-	struct adapter *padapter, u8 bank
-)
+static u8 hal_EfuseSwitchToBank(struct adapter *padapter, u8 bank)
 {
 	u8 bRet = true;
 	u32 value32 = rtw_read32(padapter, EFUSE_TEST);
 
 	switch (bank) {
 	case 0:
-		value32 = (value32 & ~EFUSE_SEL_MASK) | EFUSE_SEL(EFUSE_WIFI_SEL_0);
+		value32 = (value32 & ~EFUSE_SEL_MASK) |
+			  EFUSE_SEL(EFUSE_WIFI_SEL_0);
 		break;
 	case 1:
-		value32 = (value32 & ~EFUSE_SEL_MASK) | EFUSE_SEL(EFUSE_BT_SEL_0);
+		value32 = (value32 & ~EFUSE_SEL_MASK) |
+			  EFUSE_SEL(EFUSE_BT_SEL_0);
 		break;
 	case 2:
-		value32 = (value32 & ~EFUSE_SEL_MASK) | EFUSE_SEL(EFUSE_BT_SEL_1);
+		value32 = (value32 & ~EFUSE_SEL_MASK) |
+			  EFUSE_SEL(EFUSE_BT_SEL_1);
 		break;
 	case 3:
-		value32 = (value32 & ~EFUSE_SEL_MASK) | EFUSE_SEL(EFUSE_BT_SEL_2);
+		value32 = (value32 & ~EFUSE_SEL_MASK) |
+			  EFUSE_SEL(EFUSE_BT_SEL_2);
 		break;
 	default:
-		value32 = (value32 & ~EFUSE_SEL_MASK) | EFUSE_SEL(EFUSE_WIFI_SEL_0);
+		value32 = (value32 & ~EFUSE_SEL_MASK) |
+			  EFUSE_SEL(EFUSE_WIFI_SEL_0);
 		bRet = false;
 		break;
 	}
@@ -469,103 +487,85 @@ static u8 hal_EfuseSwitchToBank(
 	return bRet;
 }
 
-void Hal_GetEfuseDefinition(
-	struct adapter *padapter,
-	u8 efuseType,
-	u8 type,
-	void *pOut
-)
+void Hal_GetEfuseDefinition(struct adapter *padapter, u8 efuseType, u8 type,
+			    void *pOut)
 {
 	switch (type) {
-	case TYPE_EFUSE_MAX_SECTION:
-		{
-			u8 *pMax_section = pOut;
+	case TYPE_EFUSE_MAX_SECTION: {
+		u8 *pMax_section = pOut;
 
-			if (efuseType == EFUSE_WIFI)
-				*pMax_section = EFUSE_MAX_SECTION_8723B;
-			else
-				*pMax_section = EFUSE_BT_MAX_SECTION;
-		}
-		break;
+		if (efuseType == EFUSE_WIFI)
+			*pMax_section = EFUSE_MAX_SECTION_8723B;
+		else
+			*pMax_section = EFUSE_BT_MAX_SECTION;
+	} break;
 
-	case TYPE_EFUSE_REAL_CONTENT_LEN:
-		{
-			u16 *pu2Tmp = pOut;
+	case TYPE_EFUSE_REAL_CONTENT_LEN: {
+		u16 *pu2Tmp = pOut;
 
-			if (efuseType == EFUSE_WIFI)
-				*pu2Tmp = EFUSE_REAL_CONTENT_LEN_8723B;
-			else
-				*pu2Tmp = EFUSE_BT_REAL_CONTENT_LEN;
-		}
-		break;
+		if (efuseType == EFUSE_WIFI)
+			*pu2Tmp = EFUSE_REAL_CONTENT_LEN_8723B;
+		else
+			*pu2Tmp = EFUSE_BT_REAL_CONTENT_LEN;
+	} break;
 
-	case TYPE_AVAILABLE_EFUSE_BYTES_BANK:
-		{
-			u16 *pu2Tmp = pOut;
+	case TYPE_AVAILABLE_EFUSE_BYTES_BANK: {
+		u16 *pu2Tmp = pOut;
 
-			if (efuseType == EFUSE_WIFI)
-				*pu2Tmp = (EFUSE_REAL_CONTENT_LEN_8723B-EFUSE_OOB_PROTECT_BYTES);
-			else
-				*pu2Tmp = (EFUSE_BT_REAL_BANK_CONTENT_LEN-EFUSE_PROTECT_BYTES_BANK);
-		}
-		break;
+		if (efuseType == EFUSE_WIFI)
+			*pu2Tmp = (EFUSE_REAL_CONTENT_LEN_8723B -
+				   EFUSE_OOB_PROTECT_BYTES);
+		else
+			*pu2Tmp = (EFUSE_BT_REAL_BANK_CONTENT_LEN -
+				   EFUSE_PROTECT_BYTES_BANK);
+	} break;
 
-	case TYPE_AVAILABLE_EFUSE_BYTES_TOTAL:
-		{
-			u16 *pu2Tmp = pOut;
+	case TYPE_AVAILABLE_EFUSE_BYTES_TOTAL: {
+		u16 *pu2Tmp = pOut;
 
-			if (efuseType == EFUSE_WIFI)
-				*pu2Tmp = (EFUSE_REAL_CONTENT_LEN_8723B-EFUSE_OOB_PROTECT_BYTES);
-			else
-				*pu2Tmp = (EFUSE_BT_REAL_CONTENT_LEN-(EFUSE_PROTECT_BYTES_BANK*3));
-		}
-		break;
+		if (efuseType == EFUSE_WIFI)
+			*pu2Tmp = (EFUSE_REAL_CONTENT_LEN_8723B -
+				   EFUSE_OOB_PROTECT_BYTES);
+		else
+			*pu2Tmp = (EFUSE_BT_REAL_CONTENT_LEN -
+				   (EFUSE_PROTECT_BYTES_BANK * 3));
+	} break;
 
-	case TYPE_EFUSE_MAP_LEN:
-		{
-			u16 *pu2Tmp = pOut;
+	case TYPE_EFUSE_MAP_LEN: {
+		u16 *pu2Tmp = pOut;
 
-			if (efuseType == EFUSE_WIFI)
-				*pu2Tmp = EFUSE_MAX_MAP_LEN;
-			else
-				*pu2Tmp = EFUSE_BT_MAP_LEN;
-		}
-		break;
+		if (efuseType == EFUSE_WIFI)
+			*pu2Tmp = EFUSE_MAX_MAP_LEN;
+		else
+			*pu2Tmp = EFUSE_BT_MAP_LEN;
+	} break;
 
-	case TYPE_EFUSE_PROTECT_BYTES_BANK:
-		{
-			u8 *pu1Tmp = pOut;
+	case TYPE_EFUSE_PROTECT_BYTES_BANK: {
+		u8 *pu1Tmp = pOut;
 
-			if (efuseType == EFUSE_WIFI)
-				*pu1Tmp = EFUSE_OOB_PROTECT_BYTES;
-			else
-				*pu1Tmp = EFUSE_PROTECT_BYTES_BANK;
-		}
-		break;
+		if (efuseType == EFUSE_WIFI)
+			*pu1Tmp = EFUSE_OOB_PROTECT_BYTES;
+		else
+			*pu1Tmp = EFUSE_PROTECT_BYTES_BANK;
+	} break;
 
-	case TYPE_EFUSE_CONTENT_LEN_BANK:
-		{
-			u16 *pu2Tmp = pOut;
+	case TYPE_EFUSE_CONTENT_LEN_BANK: {
+		u16 *pu2Tmp = pOut;
 
-			if (efuseType == EFUSE_WIFI)
-				*pu2Tmp = EFUSE_REAL_CONTENT_LEN_8723B;
-			else
-				*pu2Tmp = EFUSE_BT_REAL_BANK_CONTENT_LEN;
-		}
-		break;
+		if (efuseType == EFUSE_WIFI)
+			*pu2Tmp = EFUSE_REAL_CONTENT_LEN_8723B;
+		else
+			*pu2Tmp = EFUSE_BT_REAL_BANK_CONTENT_LEN;
+	} break;
 
-	default:
-		{
-			u8 *pu1Tmp = pOut;
-			*pu1Tmp = 0;
-		}
-		break;
+	default: {
+		u8 *pu1Tmp = pOut;
+		*pu1Tmp = 0;
+	} break;
 	}
 }
 
-void Hal_EfusePowerSwitch(
-	struct adapter *padapter, u8 PwrState
-)
+void Hal_EfusePowerSwitch(struct adapter *padapter, u8 PwrState)
 {
 	u8 tempval;
 	u16 tmpV16;
@@ -573,16 +573,21 @@ void Hal_EfusePowerSwitch(
 	if (PwrState) {
 		/*  To avoid cannot access efuse registers after disable/enable several times during DTM test. */
 		/*  Suggested by SD1 IsaacHsu. 2013.07.08, added by tynli. */
-		tempval = rtw_read8(padapter, SDIO_LOCAL_BASE|SDIO_REG_HSUS_CTRL);
+		tempval = rtw_read8(padapter,
+				    SDIO_LOCAL_BASE | SDIO_REG_HSUS_CTRL);
 		if (tempval & BIT(0)) { /*  SDIO local register is suspend */
 			u8 count = 0;
 
 			tempval &= ~BIT(0);
-			rtw_write8(padapter, SDIO_LOCAL_BASE|SDIO_REG_HSUS_CTRL, tempval);
+			rtw_write8(padapter,
+				   SDIO_LOCAL_BASE | SDIO_REG_HSUS_CTRL,
+				   tempval);
 
 			/*  check 0x86[1:0]= 10'2h, wait power state to leave suspend */
 			do {
-				tempval = rtw_read8(padapter, SDIO_LOCAL_BASE|SDIO_REG_HSUS_CTRL);
+				tempval = rtw_read8(padapter,
+						    SDIO_LOCAL_BASE |
+							    SDIO_REG_HSUS_CTRL);
 				tempval &= 0x3;
 				if (tempval == 0x02)
 					break;
@@ -598,7 +603,7 @@ void Hal_EfusePowerSwitch(
 		rtw_write8(padapter, REG_EFUSE_ACCESS, EFUSE_ACCESS_ON);
 
 		/*  Reset: 0x0000h[28], default valid */
-		tmpV16 =  rtw_read16(padapter, REG_SYS_FUNC_EN);
+		tmpV16 = rtw_read16(padapter, REG_SYS_FUNC_EN);
 		if (!(tmpV16 & FEN_ELDR)) {
 			tmpV16 |= FEN_ELDR;
 			rtw_write16(padapter, REG_SYS_FUNC_EN, tmpV16);
@@ -606,7 +611,7 @@ void Hal_EfusePowerSwitch(
 
 		/*  Clock: Gated(0x0008h[5]) 8M(0x0008h[1]) clock from ANA, default valid */
 		tmpV16 = rtw_read16(padapter, REG_SYS_CLKR);
-		if ((!(tmpV16 & LOADER_CLK_EN))  || (!(tmpV16 & ANA8M))) {
+		if ((!(tmpV16 & LOADER_CLK_EN)) || (!(tmpV16 & ANA8M))) {
 			tmpV16 |= (LOADER_CLK_EN | ANA8M);
 			rtw_write16(padapter, REG_SYS_CLKR, tmpV16);
 		}
@@ -615,12 +620,8 @@ void Hal_EfusePowerSwitch(
 	}
 }
 
-static void hal_ReadEFuse_WiFi(
-	struct adapter *padapter,
-	u16 _offset,
-	u16 _size_byte,
-	u8 *pbuf
-)
+static void hal_ReadEFuse_WiFi(struct adapter *padapter, u16 _offset,
+			       u16 _size_byte, u8 *pbuf)
 {
 	u8 *efuseTbl = NULL;
 	u16 eFuse_Addr = 0;
@@ -654,7 +655,8 @@ static void hal_ReadEFuse_WiFi(
 		if (EXT_HEADER(efuseHeader)) { /* extended header */
 			offset = GET_HDR_OFFSET_2_0(efuseHeader);
 
-			rtw_efuse_one_byte_read(padapter, eFuse_Addr++, &efuseExtHdr);
+			rtw_efuse_one_byte_read(padapter, eFuse_Addr++,
+						&efuseExtHdr);
 			if (ALL_WORDS_DISABLED(efuseExtHdr))
 				continue;
 
@@ -672,30 +674,33 @@ static void hal_ReadEFuse_WiFi(
 			addr = offset * PGPKT_DATA_SIZE;
 			for (i = 0; i < EFUSE_MAX_WORD_UNIT; i++) {
 				/*  Check word enable condition in the section */
-				if (!(wden & (0x01<<i))) {
-					rtw_efuse_one_byte_read(padapter, eFuse_Addr++,
+				if (!(wden & (0x01 << i))) {
+					rtw_efuse_one_byte_read(padapter,
+								eFuse_Addr++,
 								&efuseData);
 					efuseTbl[addr] = efuseData;
 
-					rtw_efuse_one_byte_read(padapter, eFuse_Addr++,
+					rtw_efuse_one_byte_read(padapter,
+								eFuse_Addr++,
 								&efuseData);
-					efuseTbl[addr+1] = efuseData;
+					efuseTbl[addr + 1] = efuseData;
 				}
 				addr += 2;
 			}
 		} else {
-			eFuse_Addr += rtw_efuse_calculate_word_counts(wden)*2;
+			eFuse_Addr += rtw_efuse_calculate_word_counts(wden) * 2;
 		}
 	}
 
 	/*  Copy from Efuse map to output pointer memory!!! */
 	for (i = 0; i < _size_byte; i++)
-		pbuf[i] = efuseTbl[_offset+i];
+		pbuf[i] = efuseTbl[_offset + i];
 
 	/*  Calculate Efuse utilization */
-	Hal_GetEfuseDefinition(padapter, EFUSE_WIFI, TYPE_AVAILABLE_EFUSE_BYTES_TOTAL, &total);
+	Hal_GetEfuseDefinition(padapter, EFUSE_WIFI,
+			       TYPE_AVAILABLE_EFUSE_BYTES_TOTAL, &total);
 	used = eFuse_Addr - 1;
-	efuse_usage = (u8)((used*100)/total);
+	efuse_usage = (u8)((used * 100) / total);
 
 	rtw_hal_set_hwreg(padapter, HW_VAR_EFUSE_BYTES, (u8 *)&used);
 	rtw_hal_set_hwreg(padapter, HW_VAR_EFUSE_USAGE, (u8 *)&efuse_usage);
@@ -703,12 +708,8 @@ static void hal_ReadEFuse_WiFi(
 	kfree(efuseTbl);
 }
 
-static void hal_ReadEFuse_BT(
-	struct adapter *padapter,
-	u16 _offset,
-	u16 _size_byte,
-	u8 *pbuf
-)
+static void hal_ReadEFuse_BT(struct adapter *padapter, u16 _offset,
+			     u16 _size_byte, u8 *pbuf)
 {
 	u8 *efuseTbl;
 	u8 bank;
@@ -731,7 +732,8 @@ static void hal_ReadEFuse_BT(
 	/*  0xff will be efuse default value instead of 0x00. */
 	memset(efuseTbl, 0xFF, EFUSE_BT_MAP_LEN);
 
-	Hal_GetEfuseDefinition(padapter, EFUSE_BT, TYPE_AVAILABLE_EFUSE_BYTES_BANK, &total);
+	Hal_GetEfuseDefinition(padapter, EFUSE_BT,
+			       TYPE_AVAILABLE_EFUSE_BYTES_BANK, &total);
 
 	for (bank = 1; bank < 3; bank++) { /*  8723b Max bake 0~2 */
 		if (!hal_EfuseSwitchToBank(padapter, bank))
@@ -740,7 +742,8 @@ static void hal_ReadEFuse_BT(
 		eFuse_Addr = 0;
 
 		while (AVAILABLE_EFUSE_ADDR(eFuse_Addr)) {
-			rtw_efuse_one_byte_read(padapter, eFuse_Addr++, &efuseHeader);
+			rtw_efuse_one_byte_read(padapter, eFuse_Addr++,
+						&efuseHeader);
 			if (efuseHeader == 0xFF)
 				break;
 
@@ -748,7 +751,8 @@ static void hal_ReadEFuse_BT(
 			if (EXT_HEADER(efuseHeader)) { /* extended header */
 				offset = GET_HDR_OFFSET_2_0(efuseHeader);
 
-				rtw_efuse_one_byte_read(padapter, eFuse_Addr++, &efuseExtHdr);
+				rtw_efuse_one_byte_read(padapter, eFuse_Addr++,
+							&efuseExtHdr);
 				if (ALL_WORDS_DISABLED(efuseExtHdr))
 					continue;
 
@@ -764,25 +768,28 @@ static void hal_ReadEFuse_BT(
 
 				for (i = 0; i < EFUSE_MAX_WORD_UNIT; i++) {
 					/*  Check word enable condition in the section */
-					if (!(wden & (0x01<<i))) {
-						rtw_efuse_one_byte_read(padapter, eFuse_Addr++,
-									&efuseData);
+					if (!(wden & (0x01 << i))) {
+						rtw_efuse_one_byte_read(
+							padapter, eFuse_Addr++,
+							&efuseData);
 						efuseTbl[addr] = efuseData;
 
-						rtw_efuse_one_byte_read(padapter, eFuse_Addr++,
-									&efuseData);
-						efuseTbl[addr+1] = efuseData;
+						rtw_efuse_one_byte_read(
+							padapter, eFuse_Addr++,
+							&efuseData);
+						efuseTbl[addr + 1] = efuseData;
 					}
 					addr += 2;
 				}
 			} else {
-				eFuse_Addr += rtw_efuse_calculate_word_counts(wden)*2;
+				eFuse_Addr +=
+					rtw_efuse_calculate_word_counts(wden) *
+					2;
 			}
 		}
 
 		if ((eFuse_Addr - 1) < total)
 			break;
-
 	}
 
 	/*  switch bank back to bank 0 for later BT and wifi use. */
@@ -790,14 +797,15 @@ static void hal_ReadEFuse_BT(
 
 	/*  Copy from Efuse map to output pointer memory!!! */
 	for (i = 0; i < _size_byte; i++)
-		pbuf[i] = efuseTbl[_offset+i];
+		pbuf[i] = efuseTbl[_offset + i];
 
 	/*  */
 	/*  Calculate Efuse utilization. */
 	/*  */
-	Hal_GetEfuseDefinition(padapter, EFUSE_BT, TYPE_AVAILABLE_EFUSE_BYTES_TOTAL, &total);
-	used = (EFUSE_BT_REAL_BANK_CONTENT_LEN*(bank-1)) + eFuse_Addr - 1;
-	efuse_usage = (u8)((used*100)/total);
+	Hal_GetEfuseDefinition(padapter, EFUSE_BT,
+			       TYPE_AVAILABLE_EFUSE_BYTES_TOTAL, &total);
+	used = (EFUSE_BT_REAL_BANK_CONTENT_LEN * (bank - 1)) + eFuse_Addr - 1;
+	efuse_usage = (u8)((used * 100) / total);
 
 	rtw_hal_set_hwreg(padapter, HW_VAR_EFUSE_BT_BYTES, (u8 *)&used);
 	rtw_hal_set_hwreg(padapter, HW_VAR_EFUSE_BT_USAGE, (u8 *)&efuse_usage);
@@ -806,13 +814,8 @@ static void hal_ReadEFuse_BT(
 	kfree(efuseTbl);
 }
 
-void Hal_ReadEFuse(
-	struct adapter *padapter,
-	u8 efuseType,
-	u16 _offset,
-	u16 _size_byte,
-	u8 *pbuf
-)
+void Hal_ReadEFuse(struct adapter *padapter, u8 efuseType, u16 _offset,
+		   u16 _size_byte, u8 *pbuf)
 {
 	if (efuseType == EFUSE_WIFI)
 		hal_ReadEFuse_WiFi(padapter, _offset, _size_byte, pbuf);
@@ -825,22 +828,28 @@ static void ReadChipVersion8723B(struct adapter *padapter)
 	u32 value32;
 	struct hal_com_data *pHalData;
 
-/* YJ, TODO, move read chip type here */
+	/* YJ, TODO, move read chip type here */
 	pHalData = GET_HAL_DATA(padapter);
 
 	value32 = rtw_read32(padapter, REG_SYS_CFG);
 	pHalData->chip_normal = ((value32 & RTL_ID) ? false : true);
 
 	/*  For regulator mode. by tynli. 2011.01.14 */
-	pHalData->RegulatorMode = ((value32 & SPS_SEL) ? RT_LDO_REGULATOR : RT_SWITCHING_REGULATOR);
+	pHalData->RegulatorMode = ((value32 & SPS_SEL) ?
+					   RT_LDO_REGULATOR :
+					   RT_SWITCHING_REGULATOR);
 
 	/*  For multi-function consideration. Added by Roger, 2010.10.06. */
 	pHalData->MultiFunc = RT_MULTI_FUNC_NONE;
 	value32 = rtw_read32(padapter, REG_MULTI_FUNC_CTRL);
-	pHalData->MultiFunc |= ((value32 & WL_FUNC_EN) ? RT_MULTI_FUNC_WIFI : 0);
+	pHalData->MultiFunc |=
+		((value32 & WL_FUNC_EN) ? RT_MULTI_FUNC_WIFI : 0);
 	pHalData->MultiFunc |= ((value32 & BT_FUNC_EN) ? RT_MULTI_FUNC_BT : 0);
-	pHalData->MultiFunc |= ((value32 & GPS_FUNC_EN) ? RT_MULTI_FUNC_GPS : 0);
-	pHalData->PolarityCtl = ((value32 & WL_HWPDN_SL) ? RT_POLARITY_HIGH_ACT : RT_POLARITY_LOW_ACT);
+	pHalData->MultiFunc |=
+		((value32 & GPS_FUNC_EN) ? RT_MULTI_FUNC_GPS : 0);
+	pHalData->PolarityCtl = ((value32 & WL_HWPDN_SL) ?
+					 RT_POLARITY_HIGH_ACT :
+					 RT_POLARITY_LOW_ACT);
 }
 
 void rtl8723b_read_chip_version(struct adapter *padapter)
@@ -862,12 +871,14 @@ void rtl8723b_InitBeaconParameters(struct adapter *padapter)
 	rtw_write16(padapter, REG_BCN_CTRL, val16);
 
 	/*  TODO: Remove these magic number */
-	rtw_write16(padapter, REG_TBTT_PROHIBIT, 0x6404);/*  ms */
+	rtw_write16(padapter, REG_TBTT_PROHIBIT, 0x6404); /*  ms */
 	/*  Firmware will control REG_DRVERLYINT when power saving is enable, */
 	/*  so don't set this register on STA mode. */
 	if (!check_fwstate(&padapter->mlmepriv, WIFI_STATION_STATE))
-		rtw_write8(padapter, REG_DRVERLYINT, DRIVER_EARLY_INT_TIME_8723B); /*  5ms */
-	rtw_write8(padapter, REG_BCNDMATIM, BCN_DMA_ATIME_INT_TIME_8723B); /*  2ms */
+		rtw_write8(padapter, REG_DRVERLYINT,
+			   DRIVER_EARLY_INT_TIME_8723B); /*  5ms */
+	rtw_write8(padapter, REG_BCNDMATIM,
+		   BCN_DMA_ATIME_INT_TIME_8723B); /*  2ms */
 
 	/*  Suggested by designer timchen. Change beacon AIFS to the largest number */
 	/*  because test chip does not contension before sending beacon. by tynli. 2009.11.03 */
@@ -875,34 +886,38 @@ void rtl8723b_InitBeaconParameters(struct adapter *padapter)
 
 	pHalData->RegBcnCtrlVal = rtw_read8(padapter, REG_BCN_CTRL);
 	pHalData->RegTxPause = rtw_read8(padapter, REG_TXPAUSE);
-	pHalData->RegFwHwTxQCtrl = rtw_read8(padapter, REG_FWHW_TXQ_CTRL+2);
-	pHalData->RegReg542 = rtw_read8(padapter, REG_TBTT_PROHIBIT+2);
-	pHalData->RegCR_1 = rtw_read8(padapter, REG_CR+1);
+	pHalData->RegFwHwTxQCtrl = rtw_read8(padapter, REG_FWHW_TXQ_CTRL + 2);
+	pHalData->RegReg542 = rtw_read8(padapter, REG_TBTT_PROHIBIT + 2);
+	pHalData->RegCR_1 = rtw_read8(padapter, REG_CR + 1);
 }
 
 void _InitBurstPktLen_8723BS(struct adapter *Adapter)
 {
 	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 
-	rtw_write8(Adapter, 0x4c7, rtw_read8(Adapter, 0x4c7)|BIT(7)); /* enable single pkt ampdu */
-	rtw_write8(Adapter, REG_RX_PKT_LIMIT_8723B, 0x18);		/* for VHT packet length 11K */
+	rtw_write8(Adapter, 0x4c7,
+		   rtw_read8(Adapter, 0x4c7) |
+			   BIT(7)); /* enable single pkt ampdu */
+	rtw_write8(Adapter, REG_RX_PKT_LIMIT_8723B,
+		   0x18); /* for VHT packet length 11K */
 	rtw_write8(Adapter, REG_MAX_AGGR_NUM_8723B, 0x1F);
 	rtw_write8(Adapter, REG_PIFS_8723B, 0x00);
-	rtw_write8(Adapter, REG_FWHW_TXQ_CTRL_8723B, rtw_read8(Adapter, REG_FWHW_TXQ_CTRL)&(~BIT(7)));
+	rtw_write8(Adapter, REG_FWHW_TXQ_CTRL_8723B,
+		   rtw_read8(Adapter, REG_FWHW_TXQ_CTRL) & (~BIT(7)));
 	if (pHalData->AMPDUBurstMode)
-		rtw_write8(Adapter, REG_AMPDU_BURST_MODE_8723B,  0x5F);
+		rtw_write8(Adapter, REG_AMPDU_BURST_MODE_8723B, 0x5F);
 	rtw_write8(Adapter, REG_AMPDU_MAX_TIME_8723B, 0x70);
 
 	/*  ARFB table 9 for 11ac 5G 2SS */
 	rtw_write32(Adapter, REG_ARFR0_8723B, 0x00000010);
 	if (pHalData->chip_normal)
-		rtw_write32(Adapter, REG_ARFR0_8723B+4, 0xfffff000);
+		rtw_write32(Adapter, REG_ARFR0_8723B + 4, 0xfffff000);
 	else
-		rtw_write32(Adapter, REG_ARFR0_8723B+4, 0x3e0ff000);
+		rtw_write32(Adapter, REG_ARFR0_8723B + 4, 0x3e0ff000);
 
 	/*  ARFB table 10 for 11ac 5G 1SS */
 	rtw_write32(Adapter, REG_ARFR1_8723B, 0x00000010);
-	rtw_write32(Adapter, REG_ARFR1_8723B+4, 0x003ff000);
+	rtw_write32(Adapter, REG_ARFR1_8723B + 4, 0x003ff000);
 }
 
 static void ResumeTxBeacon(struct adapter *padapter)
@@ -910,10 +925,10 @@ static void ResumeTxBeacon(struct adapter *padapter)
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
 	pHalData->RegFwHwTxQCtrl |= BIT(6);
-	rtw_write8(padapter, REG_FWHW_TXQ_CTRL+2, pHalData->RegFwHwTxQCtrl);
-	rtw_write8(padapter, REG_TBTT_PROHIBIT+1, 0xff);
+	rtw_write8(padapter, REG_FWHW_TXQ_CTRL + 2, pHalData->RegFwHwTxQCtrl);
+	rtw_write8(padapter, REG_TBTT_PROHIBIT + 1, 0xff);
 	pHalData->RegReg542 |= BIT(0);
-	rtw_write8(padapter, REG_TBTT_PROHIBIT+2, pHalData->RegReg542);
+	rtw_write8(padapter, REG_TBTT_PROHIBIT + 2, pHalData->RegReg542);
 }
 
 static void StopTxBeacon(struct adapter *padapter)
@@ -921,16 +936,18 @@ static void StopTxBeacon(struct adapter *padapter)
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
 	pHalData->RegFwHwTxQCtrl &= ~BIT(6);
-	rtw_write8(padapter, REG_FWHW_TXQ_CTRL+2, pHalData->RegFwHwTxQCtrl);
-	rtw_write8(padapter, REG_TBTT_PROHIBIT+1, 0x64);
+	rtw_write8(padapter, REG_FWHW_TXQ_CTRL + 2, pHalData->RegFwHwTxQCtrl);
+	rtw_write8(padapter, REG_TBTT_PROHIBIT + 1, 0x64);
 	pHalData->RegReg542 &= ~BIT(0);
-	rtw_write8(padapter, REG_TBTT_PROHIBIT+2, pHalData->RegReg542);
+	rtw_write8(padapter, REG_TBTT_PROHIBIT + 2, pHalData->RegReg542);
 }
 
-static void _BeaconFunctionEnable(struct adapter *padapter, u8 Enable, u8 Linked)
+static void _BeaconFunctionEnable(struct adapter *padapter, u8 Enable,
+				  u8 Linked)
 {
-	rtw_write8(padapter, REG_BCN_CTRL, DIS_TSF_UDT | EN_BCN_FUNCTION | DIS_BCNQ_SUB);
-	rtw_write8(padapter, REG_RD_CTRL+1, 0x6F);
+	rtw_write8(padapter, REG_BCN_CTRL,
+		   DIS_TSF_UDT | EN_BCN_FUNCTION | DIS_BCNQ_SUB);
+	rtw_write8(padapter, REG_RD_CTRL + 1, 0x6F);
 }
 
 void rtl8723b_SetBeaconRelatedRegisters(struct adapter *padapter)
@@ -981,7 +998,8 @@ void rtl8723b_SetBeaconRelatedRegisters(struct adapter *padapter)
 
 	/*  NOTE: Fix test chip's bug (about contention windows's randomness) */
 	if (check_fwstate(&padapter->mlmepriv, WIFI_ADHOC_STATE |
-					       WIFI_ADHOC_MASTER_STATE | WIFI_AP_STATE)) {
+						       WIFI_ADHOC_MASTER_STATE |
+						       WIFI_AP_STATE)) {
 		rtw_write8(padapter, REG_RXTSF_OFFSET_CCK, 0x50);
 		rtw_write8(padapter, REG_RXTSF_OFFSET_OFDM, 0x50);
 	}
@@ -997,9 +1015,11 @@ void rtl8723b_SetBeaconRelatedRegisters(struct adapter *padapter)
 void hal_notch_filter_8723b(struct adapter *adapter, bool enable)
 {
 	if (enable)
-		rtw_write8(adapter, rOFDM0_RxDSP+1, rtw_read8(adapter, rOFDM0_RxDSP+1) | BIT(1));
+		rtw_write8(adapter, rOFDM0_RxDSP + 1,
+			   rtw_read8(adapter, rOFDM0_RxDSP + 1) | BIT(1));
 	else
-		rtw_write8(adapter, rOFDM0_RxDSP+1, rtw_read8(adapter, rOFDM0_RxDSP+1) & ~BIT(1));
+		rtw_write8(adapter, rOFDM0_RxDSP + 1,
+			   rtw_read8(adapter, rOFDM0_RxDSP + 1) & ~BIT(1));
 }
 
 void UpdateHalRAMask8723B(struct adapter *padapter, u32 mac_id, u8 rssi_level)
@@ -1007,7 +1027,7 @@ void UpdateHalRAMask8723B(struct adapter *padapter, u32 mac_id, u8 rssi_level)
 	u32 mask, rate_bitmap;
 	u8 short_gi_rate = false;
 	struct sta_info *psta;
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	struct dm_priv *pdmpriv = &pHalData->dmpriv;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
@@ -1024,7 +1044,8 @@ void UpdateHalRAMask8723B(struct adapter *padapter, u32 mac_id, u8 rssi_level)
 	mask = psta->ra_mask;
 
 	rate_bitmap = 0xffffffff;
-	rate_bitmap = ODM_Get_Rate_Bitmap(&pHalData->odmpriv, mac_id, mask, rssi_level);
+	rate_bitmap = ODM_Get_Rate_Bitmap(&pHalData->odmpriv, mac_id, mask,
+					  rssi_level);
 
 	mask &= rate_bitmap;
 
@@ -1032,7 +1053,9 @@ void UpdateHalRAMask8723B(struct adapter *padapter, u32 mac_id, u8 rssi_level)
 	mask &= ~rate_bitmap;
 
 	if (pHalData->fw_ractrl) {
-		rtl8723b_set_FwMacIdConfig_cmd(padapter, mac_id, psta->raid, psta->bw_mode, short_gi_rate, mask);
+		rtl8723b_set_FwMacIdConfig_cmd(padapter, mac_id, psta->raid,
+					       psta->bw_mode, short_gi_rate,
+					       mask);
 	}
 
 	/* set correct initial date rate for each mac_id */
@@ -1069,10 +1092,10 @@ void rtl8723b_init_default_value(struct adapter *padapter)
 	pHalData->bIQKInitialized = false;
 
 	/*  init dm default value */
-	pdmpriv->TM_Trigger = 0;/* for IQK */
-/* 	pdmpriv->binitialized = false; */
-/* 	pdmpriv->prv_traffic_idx = 3; */
-/* 	pdmpriv->initialize = 0; */
+	pdmpriv->TM_Trigger = 0; /* for IQK */
+	/* 	pdmpriv->binitialized = false; */
+	/* 	pdmpriv->prv_traffic_idx = 3; */
+	/* 	pdmpriv->initialize = 0; */
 
 	pdmpriv->ThermalValue_HP_index = 0;
 	for (i = 0; i < HP_THERMAL_NUM; i++)
@@ -1086,16 +1109,22 @@ void rtl8723b_init_default_value(struct adapter *padapter)
 	pHalData->EfuseHal.fakeEfuseUsedBytes = 0;
 	memset(pHalData->EfuseHal.fakeEfuseContent, 0xFF, EFUSE_MAX_HW_SIZE);
 	memset(pHalData->EfuseHal.fakeEfuseInitMap, 0xFF, EFUSE_MAX_MAP_LEN);
-	memset(pHalData->EfuseHal.fakeEfuseModifiedMap, 0xFF, EFUSE_MAX_MAP_LEN);
+	memset(pHalData->EfuseHal.fakeEfuseModifiedMap, 0xFF,
+	       EFUSE_MAX_MAP_LEN);
 	pHalData->EfuseHal.BTEfuseUsedBytes = 0;
 	pHalData->EfuseHal.BTEfuseUsedPercentage = 0;
-	memset(pHalData->EfuseHal.BTEfuseContent, 0xFF, EFUSE_MAX_BT_BANK*EFUSE_MAX_HW_SIZE);
+	memset(pHalData->EfuseHal.BTEfuseContent, 0xFF,
+	       EFUSE_MAX_BT_BANK * EFUSE_MAX_HW_SIZE);
 	memset(pHalData->EfuseHal.BTEfuseInitMap, 0xFF, EFUSE_BT_MAX_MAP_LEN);
-	memset(pHalData->EfuseHal.BTEfuseModifiedMap, 0xFF, EFUSE_BT_MAX_MAP_LEN);
+	memset(pHalData->EfuseHal.BTEfuseModifiedMap, 0xFF,
+	       EFUSE_BT_MAX_MAP_LEN);
 	pHalData->EfuseHal.fakeBTEfuseUsedBytes = 0;
-	memset(pHalData->EfuseHal.fakeBTEfuseContent, 0xFF, EFUSE_MAX_BT_BANK*EFUSE_MAX_HW_SIZE);
-	memset(pHalData->EfuseHal.fakeBTEfuseInitMap, 0xFF, EFUSE_BT_MAX_MAP_LEN);
-	memset(pHalData->EfuseHal.fakeBTEfuseModifiedMap, 0xFF, EFUSE_BT_MAX_MAP_LEN);
+	memset(pHalData->EfuseHal.fakeBTEfuseContent, 0xFF,
+	       EFUSE_MAX_BT_BANK * EFUSE_MAX_HW_SIZE);
+	memset(pHalData->EfuseHal.fakeBTEfuseInitMap, 0xFF,
+	       EFUSE_BT_MAX_MAP_LEN);
+	memset(pHalData->EfuseHal.fakeBTEfuseModifiedMap, 0xFF,
+	       EFUSE_BT_MAX_MAP_LEN);
 #endif
 }
 
@@ -1167,19 +1196,21 @@ void Hal_InitPGData(struct adapter *padapter, u8 *PROMContent)
 		if (!pEEPROM->EepromOrEfuse) {
 			/*  Read EFUSE real map to shadow. */
 			rtw_efuse_shadow_map_update(padapter, EFUSE_WIFI);
-			memcpy(PROMContent, pEEPROM->efuse_eeprom_data, HWSET_MAX_SIZE_8723B);
+			memcpy(PROMContent, pEEPROM->efuse_eeprom_data,
+			       HWSET_MAX_SIZE_8723B);
 		}
-	} else {/* autoload fail */
+	} else { /* autoload fail */
 		if (!pEEPROM->EepromOrEfuse)
 			rtw_efuse_shadow_map_update(padapter, EFUSE_WIFI);
-		memcpy(PROMContent, pEEPROM->efuse_eeprom_data, HWSET_MAX_SIZE_8723B);
+		memcpy(PROMContent, pEEPROM->efuse_eeprom_data,
+		       HWSET_MAX_SIZE_8723B);
 	}
 }
 
 void Hal_EfuseParseIDCode(struct adapter *padapter, u8 *hwinfo)
 {
 	struct eeprom_priv *pEEPROM = GET_EEPROM_EFUSE_PRIV(padapter);
-/* 	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter); */
+	/* 	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter); */
 	u16 EEPROMId;
 
 	/*  Check 0x8129 again for making sure autoload status!! */
@@ -1190,38 +1221,43 @@ void Hal_EfuseParseIDCode(struct adapter *padapter, u8 *hwinfo)
 		pEEPROM->bautoload_fail_flag = false;
 }
 
-static void Hal_ReadPowerValueFromPROM_8723B(
-	struct adapter *Adapter,
-	struct TxPowerInfo24G *pwrInfo24G,
-	u8 *PROMContent,
-	bool AutoLoadFail
-)
+static void Hal_ReadPowerValueFromPROM_8723B(struct adapter *Adapter,
+					     struct TxPowerInfo24G *pwrInfo24G,
+					     u8 *PROMContent, bool AutoLoadFail)
 {
 	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 	u32 rfPath, eeAddr = EEPROM_TX_PWR_INX_8723B, group, TxCount = 0;
 
 	memset(pwrInfo24G, 0, sizeof(struct TxPowerInfo24G));
 
-	if (PROMContent[eeAddr+1] == 0xFF)
+	if (PROMContent[eeAddr + 1] == 0xFF)
 		AutoLoadFail = true;
 
 	if (AutoLoadFail) {
 		for (rfPath = 0; rfPath < MAX_RF_PATH; rfPath++) {
 			/* 2.4G default value */
 			for (group = 0; group < MAX_CHNL_GROUP_24G; group++) {
-				pwrInfo24G->IndexCCK_Base[rfPath][group] = EEPROM_DEFAULT_24G_INDEX;
-				pwrInfo24G->IndexBW40_Base[rfPath][group] = EEPROM_DEFAULT_24G_INDEX;
+				pwrInfo24G->IndexCCK_Base[rfPath][group] =
+					EEPROM_DEFAULT_24G_INDEX;
+				pwrInfo24G->IndexBW40_Base[rfPath][group] =
+					EEPROM_DEFAULT_24G_INDEX;
 			}
 
 			for (TxCount = 0; TxCount < MAX_TX_COUNT; TxCount++) {
 				if (TxCount == 0) {
-					pwrInfo24G->BW20_Diff[rfPath][0] = EEPROM_DEFAULT_24G_HT20_DIFF;
-					pwrInfo24G->OFDM_Diff[rfPath][0] = EEPROM_DEFAULT_24G_OFDM_DIFF;
+					pwrInfo24G->BW20_Diff[rfPath][0] =
+						EEPROM_DEFAULT_24G_HT20_DIFF;
+					pwrInfo24G->OFDM_Diff[rfPath][0] =
+						EEPROM_DEFAULT_24G_OFDM_DIFF;
 				} else {
-					pwrInfo24G->BW20_Diff[rfPath][TxCount] = EEPROM_DEFAULT_DIFF;
-					pwrInfo24G->BW40_Diff[rfPath][TxCount] = EEPROM_DEFAULT_DIFF;
-					pwrInfo24G->CCK_Diff[rfPath][TxCount] = EEPROM_DEFAULT_DIFF;
-					pwrInfo24G->OFDM_Diff[rfPath][TxCount] = EEPROM_DEFAULT_DIFF;
+					pwrInfo24G->BW20_Diff[rfPath][TxCount] =
+						EEPROM_DEFAULT_DIFF;
+					pwrInfo24G->BW40_Diff[rfPath][TxCount] =
+						EEPROM_DEFAULT_DIFF;
+					pwrInfo24G->CCK_Diff[rfPath][TxCount] =
+						EEPROM_DEFAULT_DIFF;
+					pwrInfo24G->OFDM_Diff[rfPath][TxCount] =
+						EEPROM_DEFAULT_DIFF;
 				}
 			}
 		}
@@ -1229,74 +1265,117 @@ static void Hal_ReadPowerValueFromPROM_8723B(
 		return;
 	}
 
-	pHalData->bTXPowerDataReadFromEEPORM = true;		/* YJ, move, 120316 */
+	pHalData->bTXPowerDataReadFromEEPORM = true; /* YJ, move, 120316 */
 
 	for (rfPath = 0; rfPath < MAX_RF_PATH; rfPath++) {
 		/* 2 2.4G default value */
 		for (group = 0; group < MAX_CHNL_GROUP_24G; group++) {
-			pwrInfo24G->IndexCCK_Base[rfPath][group] =	PROMContent[eeAddr++];
+			pwrInfo24G->IndexCCK_Base[rfPath][group] =
+				PROMContent[eeAddr++];
 			if (pwrInfo24G->IndexCCK_Base[rfPath][group] == 0xFF)
-				pwrInfo24G->IndexCCK_Base[rfPath][group] = EEPROM_DEFAULT_24G_INDEX;
+				pwrInfo24G->IndexCCK_Base[rfPath][group] =
+					EEPROM_DEFAULT_24G_INDEX;
 		}
 
-		for (group = 0; group < MAX_CHNL_GROUP_24G-1; group++) {
-			pwrInfo24G->IndexBW40_Base[rfPath][group] =	PROMContent[eeAddr++];
+		for (group = 0; group < MAX_CHNL_GROUP_24G - 1; group++) {
+			pwrInfo24G->IndexBW40_Base[rfPath][group] =
+				PROMContent[eeAddr++];
 			if (pwrInfo24G->IndexBW40_Base[rfPath][group] == 0xFF)
-				pwrInfo24G->IndexBW40_Base[rfPath][group] =	EEPROM_DEFAULT_24G_INDEX;
+				pwrInfo24G->IndexBW40_Base[rfPath][group] =
+					EEPROM_DEFAULT_24G_INDEX;
 		}
 
 		for (TxCount = 0; TxCount < MAX_TX_COUNT; TxCount++) {
 			if (TxCount == 0) {
 				pwrInfo24G->BW40_Diff[rfPath][TxCount] = 0;
 				if (PROMContent[eeAddr] == 0xFF)
-					pwrInfo24G->BW20_Diff[rfPath][TxCount] =	EEPROM_DEFAULT_24G_HT20_DIFF;
+					pwrInfo24G->BW20_Diff[rfPath][TxCount] =
+						EEPROM_DEFAULT_24G_HT20_DIFF;
 				else {
-					pwrInfo24G->BW20_Diff[rfPath][TxCount] =	(PROMContent[eeAddr]&0xf0)>>4;
-					if (pwrInfo24G->BW20_Diff[rfPath][TxCount] & BIT(3))		/* 4bit sign number to 8 bit sign number */
-						pwrInfo24G->BW20_Diff[rfPath][TxCount] |= 0xF0;
+					pwrInfo24G->BW20_Diff[rfPath][TxCount] =
+						(PROMContent[eeAddr] & 0xf0) >>
+						4;
+					if (pwrInfo24G->BW20_Diff[rfPath]
+								 [TxCount] &
+					    BIT(3)) /* 4bit sign number to 8 bit sign number */
+						pwrInfo24G->BW20_Diff[rfPath]
+								     [TxCount] |=
+							0xF0;
 				}
 
 				if (PROMContent[eeAddr] == 0xFF)
-					pwrInfo24G->OFDM_Diff[rfPath][TxCount] = EEPROM_DEFAULT_24G_OFDM_DIFF;
+					pwrInfo24G->OFDM_Diff[rfPath][TxCount] =
+						EEPROM_DEFAULT_24G_OFDM_DIFF;
 				else {
-					pwrInfo24G->OFDM_Diff[rfPath][TxCount] = (PROMContent[eeAddr]&0x0f);
-					if (pwrInfo24G->OFDM_Diff[rfPath][TxCount] & BIT(3))		/* 4bit sign number to 8 bit sign number */
-						pwrInfo24G->OFDM_Diff[rfPath][TxCount] |= 0xF0;
+					pwrInfo24G->OFDM_Diff[rfPath][TxCount] =
+						(PROMContent[eeAddr] & 0x0f);
+					if (pwrInfo24G->OFDM_Diff[rfPath]
+								 [TxCount] &
+					    BIT(3)) /* 4bit sign number to 8 bit sign number */
+						pwrInfo24G->OFDM_Diff[rfPath]
+								     [TxCount] |=
+							0xF0;
 				}
 				pwrInfo24G->CCK_Diff[rfPath][TxCount] = 0;
 				eeAddr++;
 			} else {
 				if (PROMContent[eeAddr] == 0xFF)
-					pwrInfo24G->BW40_Diff[rfPath][TxCount] = EEPROM_DEFAULT_DIFF;
+					pwrInfo24G->BW40_Diff[rfPath][TxCount] =
+						EEPROM_DEFAULT_DIFF;
 				else {
-					pwrInfo24G->BW40_Diff[rfPath][TxCount] = (PROMContent[eeAddr]&0xf0)>>4;
-					if (pwrInfo24G->BW40_Diff[rfPath][TxCount] & BIT(3))		/* 4bit sign number to 8 bit sign number */
-						pwrInfo24G->BW40_Diff[rfPath][TxCount] |= 0xF0;
+					pwrInfo24G->BW40_Diff[rfPath][TxCount] =
+						(PROMContent[eeAddr] & 0xf0) >>
+						4;
+					if (pwrInfo24G->BW40_Diff[rfPath]
+								 [TxCount] &
+					    BIT(3)) /* 4bit sign number to 8 bit sign number */
+						pwrInfo24G->BW40_Diff[rfPath]
+								     [TxCount] |=
+							0xF0;
 				}
 
 				if (PROMContent[eeAddr] == 0xFF)
-					pwrInfo24G->BW20_Diff[rfPath][TxCount] = EEPROM_DEFAULT_DIFF;
+					pwrInfo24G->BW20_Diff[rfPath][TxCount] =
+						EEPROM_DEFAULT_DIFF;
 				else {
-					pwrInfo24G->BW20_Diff[rfPath][TxCount] = (PROMContent[eeAddr]&0x0f);
-					if (pwrInfo24G->BW20_Diff[rfPath][TxCount] & BIT(3))		/* 4bit sign number to 8 bit sign number */
-						pwrInfo24G->BW20_Diff[rfPath][TxCount] |= 0xF0;
+					pwrInfo24G->BW20_Diff[rfPath][TxCount] =
+						(PROMContent[eeAddr] & 0x0f);
+					if (pwrInfo24G->BW20_Diff[rfPath]
+								 [TxCount] &
+					    BIT(3)) /* 4bit sign number to 8 bit sign number */
+						pwrInfo24G->BW20_Diff[rfPath]
+								     [TxCount] |=
+							0xF0;
 				}
 				eeAddr++;
 
 				if (PROMContent[eeAddr] == 0xFF)
-					pwrInfo24G->OFDM_Diff[rfPath][TxCount] = EEPROM_DEFAULT_DIFF;
+					pwrInfo24G->OFDM_Diff[rfPath][TxCount] =
+						EEPROM_DEFAULT_DIFF;
 				else {
-					pwrInfo24G->OFDM_Diff[rfPath][TxCount] = (PROMContent[eeAddr]&0xf0)>>4;
-					if (pwrInfo24G->OFDM_Diff[rfPath][TxCount] & BIT(3))		/* 4bit sign number to 8 bit sign number */
-						pwrInfo24G->OFDM_Diff[rfPath][TxCount] |= 0xF0;
+					pwrInfo24G->OFDM_Diff[rfPath][TxCount] =
+						(PROMContent[eeAddr] & 0xf0) >>
+						4;
+					if (pwrInfo24G->OFDM_Diff[rfPath]
+								 [TxCount] &
+					    BIT(3)) /* 4bit sign number to 8 bit sign number */
+						pwrInfo24G->OFDM_Diff[rfPath]
+								     [TxCount] |=
+							0xF0;
 				}
 
 				if (PROMContent[eeAddr] == 0xFF)
-					pwrInfo24G->CCK_Diff[rfPath][TxCount] = EEPROM_DEFAULT_DIFF;
+					pwrInfo24G->CCK_Diff[rfPath][TxCount] =
+						EEPROM_DEFAULT_DIFF;
 				else {
-					pwrInfo24G->CCK_Diff[rfPath][TxCount] = (PROMContent[eeAddr]&0x0f);
-					if (pwrInfo24G->CCK_Diff[rfPath][TxCount] & BIT(3))		/* 4bit sign number to 8 bit sign number */
-						pwrInfo24G->CCK_Diff[rfPath][TxCount] |= 0xF0;
+					pwrInfo24G->CCK_Diff[rfPath][TxCount] =
+						(PROMContent[eeAddr] & 0x0f);
+					if (pwrInfo24G->CCK_Diff[rfPath]
+								[TxCount] &
+					    BIT(3)) /* 4bit sign number to 8 bit sign number */
+						pwrInfo24G->CCK_Diff[rfPath]
+								    [TxCount] |=
+							0xF0;
 				}
 				eeAddr++;
 			}
@@ -1304,50 +1383,61 @@ static void Hal_ReadPowerValueFromPROM_8723B(
 	}
 }
 
-void Hal_EfuseParseTxPowerInfo_8723B(
-	struct adapter *padapter, u8 *PROMContent, bool AutoLoadFail
-)
+void Hal_EfuseParseTxPowerInfo_8723B(struct adapter *padapter, u8 *PROMContent,
+				     bool AutoLoadFail)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
-	struct TxPowerInfo24G	pwrInfo24G;
-	u8 	rfPath, ch, TxCount = 1;
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
+	struct TxPowerInfo24G pwrInfo24G;
+	u8 rfPath, ch, TxCount = 1;
 
-	Hal_ReadPowerValueFromPROM_8723B(padapter, &pwrInfo24G, PROMContent, AutoLoadFail);
-	for (rfPath = 0 ; rfPath < MAX_RF_PATH ; rfPath++) {
-		for (ch = 0 ; ch < CHANNEL_MAX_NUMBER; ch++) {
+	Hal_ReadPowerValueFromPROM_8723B(padapter, &pwrInfo24G, PROMContent,
+					 AutoLoadFail);
+	for (rfPath = 0; rfPath < MAX_RF_PATH; rfPath++) {
+		for (ch = 0; ch < CHANNEL_MAX_NUMBER; ch++) {
 			u8 group = 0;
 
 			hal_get_chnl_group_8723b(ch + 1, &group);
 
-			if (ch == 14-1) {
-				pHalData->Index24G_CCK_Base[rfPath][ch] = pwrInfo24G.IndexCCK_Base[rfPath][5];
-				pHalData->Index24G_BW40_Base[rfPath][ch] = pwrInfo24G.IndexBW40_Base[rfPath][group];
+			if (ch == 14 - 1) {
+				pHalData->Index24G_CCK_Base[rfPath][ch] =
+					pwrInfo24G.IndexCCK_Base[rfPath][5];
+				pHalData->Index24G_BW40_Base[rfPath][ch] =
+					pwrInfo24G.IndexBW40_Base[rfPath][group];
 			} else {
-				pHalData->Index24G_CCK_Base[rfPath][ch] = pwrInfo24G.IndexCCK_Base[rfPath][group];
-				pHalData->Index24G_BW40_Base[rfPath][ch] = pwrInfo24G.IndexBW40_Base[rfPath][group];
+				pHalData->Index24G_CCK_Base[rfPath][ch] =
+					pwrInfo24G.IndexCCK_Base[rfPath][group];
+				pHalData->Index24G_BW40_Base[rfPath][ch] =
+					pwrInfo24G.IndexBW40_Base[rfPath][group];
 			}
 		}
 
 		for (TxCount = 0; TxCount < MAX_TX_COUNT; TxCount++) {
-			pHalData->CCK_24G_Diff[rfPath][TxCount] = pwrInfo24G.CCK_Diff[rfPath][TxCount];
-			pHalData->OFDM_24G_Diff[rfPath][TxCount] = pwrInfo24G.OFDM_Diff[rfPath][TxCount];
-			pHalData->BW20_24G_Diff[rfPath][TxCount] = pwrInfo24G.BW20_Diff[rfPath][TxCount];
-			pHalData->BW40_24G_Diff[rfPath][TxCount] = pwrInfo24G.BW40_Diff[rfPath][TxCount];
+			pHalData->CCK_24G_Diff[rfPath][TxCount] =
+				pwrInfo24G.CCK_Diff[rfPath][TxCount];
+			pHalData->OFDM_24G_Diff[rfPath][TxCount] =
+				pwrInfo24G.OFDM_Diff[rfPath][TxCount];
+			pHalData->BW20_24G_Diff[rfPath][TxCount] =
+				pwrInfo24G.BW20_Diff[rfPath][TxCount];
+			pHalData->BW40_24G_Diff[rfPath][TxCount] =
+				pwrInfo24G.BW40_Diff[rfPath][TxCount];
 		}
 	}
 
 	/*  2010/10/19 MH Add Regulator recognize for CU. */
 	if (!AutoLoadFail) {
-		pHalData->EEPROMRegulatory = (PROMContent[EEPROM_RF_BOARD_OPTION_8723B]&0x7);	/* bit0~2 */
+		pHalData->EEPROMRegulatory =
+			(PROMContent[EEPROM_RF_BOARD_OPTION_8723B] &
+			 0x7); /* bit0~2 */
 		if (PROMContent[EEPROM_RF_BOARD_OPTION_8723B] == 0xFF)
-			pHalData->EEPROMRegulatory = (EEPROM_DEFAULT_BOARD_OPTION&0x7);	/* bit0~2 */
+			pHalData->EEPROMRegulatory =
+				(EEPROM_DEFAULT_BOARD_OPTION &
+				 0x7); /* bit0~2 */
 	} else
 		pHalData->EEPROMRegulatory = 0;
 }
 
-void Hal_EfuseParseBTCoexistInfo_8723B(
-	struct adapter *padapter, u8 *hwinfo, bool AutoLoadFail
-)
+void Hal_EfuseParseBTCoexistInfo_8723B(struct adapter *padapter, u8 *hwinfo,
+				       bool AutoLoadFail)
 {
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	u8 tempval;
@@ -1399,16 +1489,16 @@ void Hal_EfuseParseBTCoexistInfo_8723B(
 	}
 
 	hal_btcoex_SetBTCoexist(padapter, pHalData->EEPROMBluetoothCoexist);
-	hal_btcoex_SetPgAntNum(padapter, pHalData->EEPROMBluetoothAntNum == Ant_x2 ? 2 : 1);
+	hal_btcoex_SetPgAntNum(
+		padapter, pHalData->EEPROMBluetoothAntNum == Ant_x2 ? 2 : 1);
 	if (pHalData->EEPROMBluetoothAntNum == Ant_x1)
 		hal_btcoex_SetSingleAntPath(padapter, pHalData->ant_path);
 }
 
-void Hal_EfuseParseEEPROMVer_8723B(
-	struct adapter *padapter, u8 *hwinfo, bool AutoLoadFail
-)
+void Hal_EfuseParseEEPROMVer_8723B(struct adapter *padapter, u8 *hwinfo,
+				   bool AutoLoadFail)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
 	if (!AutoLoadFail)
 		pHalData->EEPROMVersion = hwinfo[EEPROM_VERSION_8723B];
@@ -1416,9 +1506,8 @@ void Hal_EfuseParseEEPROMVer_8723B(
 		pHalData->EEPROMVersion = 1;
 }
 
-void Hal_EfuseParsePackageType_8723B(
-	struct adapter *padapter, u8 *hwinfo, bool AutoLoadFail
-)
+void Hal_EfuseParsePackageType_8723B(struct adapter *padapter, u8 *hwinfo,
+				     bool AutoLoadFail)
 {
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	u8 package;
@@ -1449,36 +1538,31 @@ void Hal_EfuseParsePackageType_8723B(
 	}
 }
 
-void Hal_EfuseParseVoltage_8723B(
-	struct adapter *padapter, u8 *hwinfo, bool AutoLoadFail
-)
+void Hal_EfuseParseVoltage_8723B(struct adapter *padapter, u8 *hwinfo,
+				 bool AutoLoadFail)
 {
 	struct eeprom_priv *pEEPROM = GET_EEPROM_EFUSE_PRIV(padapter);
 
 	/* memcpy(pEEPROM->adjuseVoltageVal, &hwinfo[EEPROM_Voltage_ADDR_8723B], 1); */
-	pEEPROM->adjuseVoltageVal = (hwinfo[EEPROM_Voltage_ADDR_8723B] & 0xf0) >> 4;
+	pEEPROM->adjuseVoltageVal =
+		(hwinfo[EEPROM_Voltage_ADDR_8723B] & 0xf0) >> 4;
 }
 
-void Hal_EfuseParseChnlPlan_8723B(
-	struct adapter *padapter, u8 *hwinfo, bool AutoLoadFail
-)
+void Hal_EfuseParseChnlPlan_8723B(struct adapter *padapter, u8 *hwinfo,
+				  bool AutoLoadFail)
 {
 	padapter->mlmepriv.ChannelPlan = hal_com_config_channel_plan(
-		padapter,
-		hwinfo ? hwinfo[EEPROM_ChannelPlan_8723B] : 0xFF,
+		padapter, hwinfo ? hwinfo[EEPROM_ChannelPlan_8723B] : 0xFF,
 		padapter->registrypriv.channel_plan,
-		RT_CHANNEL_DOMAIN_WORLD_NULL,
-		AutoLoadFail
-	);
+		RT_CHANNEL_DOMAIN_WORLD_NULL, AutoLoadFail);
 
 	Hal_ChannelPlanToRegulation(padapter, padapter->mlmepriv.ChannelPlan);
 }
 
-void Hal_EfuseParseCustomerID_8723B(
-	struct adapter *padapter, u8 *hwinfo, bool AutoLoadFail
-)
+void Hal_EfuseParseCustomerID_8723B(struct adapter *padapter, u8 *hwinfo,
+				    bool AutoLoadFail)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
 	if (!AutoLoadFail)
 		pHalData->EEPROMCustomerID = hwinfo[EEPROM_CustomID_8723B];
@@ -1486,23 +1570,22 @@ void Hal_EfuseParseCustomerID_8723B(
 		pHalData->EEPROMCustomerID = 0;
 }
 
-void Hal_EfuseParseXtal_8723B(
-	struct adapter *padapter, u8 *hwinfo, bool AutoLoadFail
-)
+void Hal_EfuseParseXtal_8723B(struct adapter *padapter, u8 *hwinfo,
+			      bool AutoLoadFail)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
 	if (!AutoLoadFail) {
 		pHalData->CrystalCap = hwinfo[EEPROM_XTAL_8723B];
 		if (pHalData->CrystalCap == 0xFF)
-			pHalData->CrystalCap = EEPROM_Default_CrystalCap_8723B;	   /* what value should 8812 set? */
+			pHalData->CrystalCap =
+				EEPROM_Default_CrystalCap_8723B; /* what value should 8812 set? */
 	} else
 		pHalData->CrystalCap = EEPROM_Default_CrystalCap_8723B;
 }
 
-void Hal_EfuseParseThermalMeter_8723B(
-	struct adapter *padapter, u8 *PROMContent, u8 AutoLoadFail
-)
+void Hal_EfuseParseThermalMeter_8723B(struct adapter *padapter, u8 *PROMContent,
+				      u8 AutoLoadFail)
 {
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
@@ -1510,28 +1593,31 @@ void Hal_EfuseParseThermalMeter_8723B(
 	/*  ThermalMeter from EEPROM */
 	/*  */
 	if (!AutoLoadFail)
-		pHalData->EEPROMThermalMeter = PROMContent[EEPROM_THERMAL_METER_8723B];
+		pHalData->EEPROMThermalMeter =
+			PROMContent[EEPROM_THERMAL_METER_8723B];
 	else
-		pHalData->EEPROMThermalMeter = EEPROM_Default_ThermalMeter_8723B;
+		pHalData->EEPROMThermalMeter =
+			EEPROM_Default_ThermalMeter_8723B;
 
 	if ((pHalData->EEPROMThermalMeter == 0xff) || AutoLoadFail) {
 		pHalData->bAPKThermalMeterIgnore = true;
-		pHalData->EEPROMThermalMeter = EEPROM_Default_ThermalMeter_8723B;
+		pHalData->EEPROMThermalMeter =
+			EEPROM_Default_ThermalMeter_8723B;
 	}
 }
 
-void Hal_ReadRFGainOffset(
-	struct adapter *Adapter, u8 *PROMContent, bool AutoloadFail
-)
+void Hal_ReadRFGainOffset(struct adapter *Adapter, u8 *PROMContent,
+			  bool AutoloadFail)
 {
 	/*  */
 	/*  BB_RF Gain Offset from EEPROM */
 	/*  */
 
 	if (!AutoloadFail) {
-		Adapter->eeprompriv.EEPROMRFGainOffset = PROMContent[EEPROM_RF_GAIN_OFFSET];
-		Adapter->eeprompriv.EEPROMRFGainVal = rtw_efuse_read_1_byte(Adapter,
-									    EEPROM_RF_GAIN_VAL);
+		Adapter->eeprompriv.EEPROMRFGainOffset =
+			PROMContent[EEPROM_RF_GAIN_OFFSET];
+		Adapter->eeprompriv.EEPROMRFGainVal =
+			rtw_efuse_read_1_byte(Adapter, EEPROM_RF_GAIN_VAL);
 	} else {
 		Adapter->eeprompriv.EEPROMRFGainOffset = 0;
 		Adapter->eeprompriv.EEPROMRFGainVal = 0xFF;
@@ -1566,9 +1652,11 @@ u8 SCMapping_8723B(struct adapter *Adapter, struct pkt_attrib *pattrib)
 		if (pattrib->bwmode == CHANNEL_WIDTH_40) {
 			SCSettingOfDesc = HT_DATA_SC_DONOT_CARE;
 		} else if (pattrib->bwmode == CHANNEL_WIDTH_20) {
-			if (pHalData->nCur40MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_UPPER) {
+			if (pHalData->nCur40MhzPrimeSC ==
+			    HAL_PRIME_CHNL_OFFSET_UPPER) {
 				SCSettingOfDesc = HT_DATA_SC_20_UPPER_OF_40MHZ;
-			} else if (pHalData->nCur40MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_LOWER) {
+			} else if (pHalData->nCur40MhzPrimeSC ==
+				   HAL_PRIME_CHNL_OFFSET_LOWER) {
 				SCSettingOfDesc = HT_DATA_SC_20_LOWER_OF_40MHZ;
 			} else {
 				SCSettingOfDesc = HT_DATA_SC_DONOT_CARE;
@@ -1629,7 +1717,9 @@ static u8 fill_txdesc_sectype(struct pkt_attrib *pattrib)
 	return sectype;
 }
 
-static void fill_txdesc_vcs_8723b(struct adapter *padapter, struct pkt_attrib *pattrib, struct txdesc_8723b *ptxdesc)
+static void fill_txdesc_vcs_8723b(struct adapter *padapter,
+				  struct pkt_attrib *pattrib,
+				  struct txdesc_8723b *ptxdesc)
 {
 	if (pattrib->vcs_mode) {
 		switch (pattrib->vcs_mode) {
@@ -1651,7 +1741,8 @@ static void fill_txdesc_vcs_8723b(struct adapter *padapter, struct pkt_attrib *p
 		ptxdesc->rtsrate = 8; /*  RTS Rate =24M */
 		ptxdesc->rts_ratefb_lmt = 0xF;
 
-		if (padapter->mlmeextpriv.mlmext_info.preamble_mode == PREAMBLE_SHORT)
+		if (padapter->mlmeextpriv.mlmext_info.preamble_mode ==
+		    PREAMBLE_SHORT)
 			ptxdesc->rts_short = 1;
 
 		/*  Set RTS BW */
@@ -1660,7 +1751,9 @@ static void fill_txdesc_vcs_8723b(struct adapter *padapter, struct pkt_attrib *p
 	}
 }
 
-static void fill_txdesc_phy_8723b(struct adapter *padapter, struct pkt_attrib *pattrib, struct txdesc_8723b *ptxdesc)
+static void fill_txdesc_phy_8723b(struct adapter *padapter,
+				  struct pkt_attrib *pattrib,
+				  struct txdesc_8723b *ptxdesc)
 {
 	if (pattrib->ht_en) {
 		ptxdesc->data_bw = BWMapping_8723B(padapter, pattrib);
@@ -1669,9 +1762,8 @@ static void fill_txdesc_phy_8723b(struct adapter *padapter, struct pkt_attrib *p
 	}
 }
 
-static void rtl8723b_fill_default_txdesc(
-	struct xmit_frame *pxmitframe, u8 *pbuf
-)
+static void rtl8723b_fill_default_txdesc(struct xmit_frame *pxmitframe,
+					 u8 *pbuf)
 {
 	struct adapter *padapter;
 	struct hal_com_data *pHalData;
@@ -1704,16 +1796,14 @@ static void rtl8723b_fill_default_txdesc(
 		ptxdesc->sectype = fill_txdesc_sectype(pattrib);
 		fill_txdesc_vcs_8723b(padapter, pattrib, ptxdesc);
 
-		if (pattrib->icmp_pkt == 1 && padapter->registrypriv.wifi_spec == 1)
+		if (pattrib->icmp_pkt == 1 &&
+		    padapter->registrypriv.wifi_spec == 1)
 			drv_userate = 1;
 
-		if (
-			(pattrib->ether_type != 0x888e) &&
-			(pattrib->ether_type != 0x0806) &&
-			(pattrib->ether_type != 0x88B4) &&
-			(pattrib->dhcp_pkt != 1) &&
-			(drv_userate != 1)
-		) {
+		if ((pattrib->ether_type != 0x888e) &&
+		    (pattrib->ether_type != 0x0806) &&
+		    (pattrib->ether_type != 0x88B4) &&
+		    (pattrib->dhcp_pkt != 1) && (drv_userate != 1)) {
 			/*  Non EAP & ARP & DHCP type data packet */
 
 			if (pattrib->ampdu_en) {
@@ -1730,13 +1820,19 @@ static void rtl8723b_fill_default_txdesc(
 			if (!pHalData->fw_ractrl) {
 				ptxdesc->userate = 1;
 
-				if (pHalData->dmpriv.INIDATA_RATE[pattrib->mac_id] & BIT(7))
+				if (pHalData->dmpriv
+					    .INIDATA_RATE[pattrib->mac_id] &
+				    BIT(7))
 					ptxdesc->data_short = 1;
 
-				ptxdesc->datarate = pHalData->dmpriv.INIDATA_RATE[pattrib->mac_id] & 0x7F;
+				ptxdesc->datarate =
+					pHalData->dmpriv
+						.INIDATA_RATE[pattrib->mac_id] &
+					0x7F;
 			}
 
-			if (padapter->fix_rate != 0xFF) { /*  modify data rate by iwpriv */
+			if (padapter->fix_rate !=
+			    0xFF) { /*  modify data rate by iwpriv */
 				ptxdesc->userate = 1;
 				if (padapter->fix_rate & BIT(7))
 					ptxdesc->data_short = 1;
@@ -1757,7 +1853,7 @@ static void rtl8723b_fill_default_txdesc(
 			ptxdesc->bk = 1; /*  AGG BK */
 			ptxdesc->userate = 1; /*  driver uses rate */
 			if (pmlmeinfo->preamble_mode == PREAMBLE_SHORT)
-				ptxdesc->data_short = 1;/*  DATA_SHORT */
+				ptxdesc->data_short = 1; /*  DATA_SHORT */
 			ptxdesc->datarate = MRateToHwRate(pmlmeext->tx_rate);
 		}
 
@@ -1783,7 +1879,8 @@ static void rtl8723b_fill_default_txdesc(
 		/*  CCX-TXRPT ack for xmit mgmt frames. */
 		if (pxmitframe->ack_report) {
 			ptxdesc->spe_rpt = 1;
-			ptxdesc->sw_define = (u8)(GET_PRIMARY_ADAPTER(padapter)->xmitpriv.seq_no);
+			ptxdesc->sw_define = (u8)(GET_PRIMARY_ADAPTER(padapter)
+							  ->xmitpriv.seq_no);
 		}
 	} else {
 		ptxdesc->macid = pattrib->mac_id; /*  CAM_ID(MAC_ID) */
@@ -1839,14 +1936,9 @@ void rtl8723b_update_txdesc(struct xmit_frame *pxmitframe, u8 *pbuf)
 /*  Added by tynli. 2009.10.15. */
 /*  */
 /* type1:pspoll, type2:null */
-void rtl8723b_fill_fake_txdesc(
-	struct adapter *padapter,
-	u8 *pDesc,
-	u32 BufferLen,
-	u8 IsPsPoll,
-	u8 IsBTQosNull,
-	u8 bDataFrame
-)
+void rtl8723b_fill_fake_txdesc(struct adapter *padapter, u8 *pDesc,
+			       u32 BufferLen, u8 IsPsPoll, u8 IsBTQosNull,
+			       u8 bDataFrame)
 {
 	/*  Clear all status */
 	memset(pDesc, 0, TXDESC_SIZE);
@@ -1856,14 +1948,17 @@ void rtl8723b_fill_fake_txdesc(
 
 	SET_TX_DESC_OFFSET_8723B(pDesc, 0x28); /*  Offset = 32 */
 
-	SET_TX_DESC_PKT_SIZE_8723B(pDesc, BufferLen); /*  Buffer size + command header */
-	SET_TX_DESC_QUEUE_SEL_8723B(pDesc, QSLT_MGNT); /*  Fixed queue of Mgnt queue */
+	SET_TX_DESC_PKT_SIZE_8723B(
+		pDesc, BufferLen); /*  Buffer size + command header */
+	SET_TX_DESC_QUEUE_SEL_8723B(pDesc,
+				    QSLT_MGNT); /*  Fixed queue of Mgnt queue */
 
 	/*  Set NAVUSEHDR to prevent Ps-poll AId filed to be changed to error value by Hw. */
 	if (IsPsPoll) {
 		SET_TX_DESC_NAV_USE_HDR_8723B(pDesc, 1);
 	} else {
-		SET_TX_DESC_HWSEQ_EN_8723B(pDesc, 1); /*  Hw set sequence number */
+		SET_TX_DESC_HWSEQ_EN_8723B(pDesc,
+					   1); /*  Hw set sequence number */
 		SET_TX_DESC_HWSEQ_SEL_8723B(pDesc, 0);
 	}
 
@@ -1871,7 +1966,8 @@ void rtl8723b_fill_fake_txdesc(
 		SET_TX_DESC_BT_INT_8723B(pDesc, 1);
 	}
 
-	SET_TX_DESC_USE_RATE_8723B(pDesc, 1); /*  use data rate which is set by Sw */
+	SET_TX_DESC_USE_RATE_8723B(pDesc,
+				   1); /*  use data rate which is set by Sw */
 	SET_TX_DESC_OWN_8723B((u8 *)pDesc, 1);
 
 	SET_TX_DESC_TX_RATE_8723B(pDesc, DESC8723B_RATE1M);
@@ -1922,25 +2018,31 @@ static void hw_var_set_opmode(struct adapter *padapter, u8 variable, u8 *val)
 		/*  set net_type */
 		set_msr(padapter, mode);
 
-		if ((mode == _HW_STATE_STATION_) || (mode == _HW_STATE_NOLINK_)) {
+		if ((mode == _HW_STATE_STATION_) ||
+		    (mode == _HW_STATE_NOLINK_)) {
 			{
 				StopTxBeacon(padapter);
 			}
 
 			/*  disable atim wnd */
-			rtw_write8(padapter, REG_BCN_CTRL, DIS_TSF_UDT|EN_BCN_FUNCTION|DIS_ATIM);
+			rtw_write8(padapter, REG_BCN_CTRL,
+				   DIS_TSF_UDT | EN_BCN_FUNCTION | DIS_ATIM);
 			/* rtw_write8(padapter, REG_BCN_CTRL, 0x18); */
 		} else if (mode == _HW_STATE_ADHOC_) {
 			ResumeTxBeacon(padapter);
-			rtw_write8(padapter, REG_BCN_CTRL, DIS_TSF_UDT|EN_BCN_FUNCTION|DIS_BCNQ_SUB);
+			rtw_write8(padapter, REG_BCN_CTRL,
+				   DIS_TSF_UDT | EN_BCN_FUNCTION |
+					   DIS_BCNQ_SUB);
 		} else if (mode == _HW_STATE_AP_) {
-
 			ResumeTxBeacon(padapter);
 
-			rtw_write8(padapter, REG_BCN_CTRL, DIS_TSF_UDT|DIS_BCNQ_SUB);
+			rtw_write8(padapter, REG_BCN_CTRL,
+				   DIS_TSF_UDT | DIS_BCNQ_SUB);
 
 			/* Set RCR */
-			rtw_write32(padapter, REG_RCR, 0x7000208e);/* CBSSID_DATA must set to 0, reject ICV_ERR packet */
+			rtw_write32(
+				padapter, REG_RCR,
+				0x7000208e); /* CBSSID_DATA must set to 0, reject ICV_ERR packet */
 			/* enable to rx data frame */
 			rtw_write16(padapter, REG_RXFLTMAP2, 0xFFFF);
 			/* enable to rx ps-poll */
@@ -1953,25 +2055,26 @@ static void hw_var_set_opmode(struct adapter *padapter, u8 variable, u8 *val)
 			rtw_write8(padapter, REG_ATIMWND, 0x0a); /*  10ms */
 			rtw_write16(padapter, REG_BCNTCFG, 0x00);
 			rtw_write16(padapter, REG_TBTT_PROHIBIT, 0xff04);
-			rtw_write16(padapter, REG_TSFTR_SYN_OFFSET, 0x7fff);/*  +32767 (~32ms) */
+			rtw_write16(padapter, REG_TSFTR_SYN_OFFSET,
+				    0x7fff); /*  +32767 (~32ms) */
 
 			/* reset TSF */
 			rtw_write8(padapter, REG_DUAL_TSF_RST, BIT(0));
 
 			/* enable BCN0 Function for if1 */
 			/* don't enable update TSF0 for if1 (due to TSF update when beacon/probe rsp are received) */
-			rtw_write8(padapter, REG_BCN_CTRL, (DIS_TSF_UDT|EN_BCN_FUNCTION|EN_TXBCN_RPT|DIS_BCNQ_SUB));
+			rtw_write8(padapter, REG_BCN_CTRL,
+				   (DIS_TSF_UDT | EN_BCN_FUNCTION |
+				    EN_TXBCN_RPT | DIS_BCNQ_SUB));
 
 			/* SW_BCN_SEL - Port0 */
 			/* rtw_write8(Adapter, REG_DWBCN1_CTRL_8192E+2, rtw_read8(Adapter, REG_DWBCN1_CTRL_8192E+2) & ~BIT4); */
 			rtw_hal_set_hwreg(padapter, HW_VAR_DL_BCN_SEL, NULL);
 
 			/*  select BCN on port 0 */
-			rtw_write8(
-				padapter,
-				REG_CCK_CHECK_8723B,
-				(rtw_read8(padapter, REG_CCK_CHECK_8723B)&~BIT_BCN_PORT_SEL)
-			);
+			rtw_write8(padapter, REG_CCK_CHECK_8723B,
+				   (rtw_read8(padapter, REG_CCK_CHECK_8723B) &
+				    ~BIT_BCN_PORT_SEL));
 
 			/*  dis BCN1 ATIM  WND if if2 is station */
 			val8 = rtw_read8(padapter, REG_BCN_CTRL_1);
@@ -1986,8 +2089,9 @@ static void hw_var_set_macaddr(struct adapter *padapter, u8 variable, u8 *val)
 	u8 idx = 0;
 	u32 reg_macid = REG_MACID;
 
-	for (idx = 0 ; idx < 6; idx++)
-		rtw_write8(GET_PRIMARY_ADAPTER(padapter), (reg_macid+idx), val[idx]);
+	for (idx = 0; idx < 6; idx++)
+		rtw_write8(GET_PRIMARY_ADAPTER(padapter), (reg_macid + idx),
+			   val[idx]);
 }
 
 static void hw_var_set_bssid(struct adapter *padapter, u8 variable, u8 *val)
@@ -1995,8 +2099,8 @@ static void hw_var_set_bssid(struct adapter *padapter, u8 variable, u8 *val)
 	u8 idx = 0;
 	u32 reg_bssid = REG_BSSID;
 
-	for (idx = 0 ; idx < 6; idx++)
-		rtw_write8(padapter, (reg_bssid+idx), val[idx]);
+	for (idx = 0; idx < 6; idx++)
+		rtw_write8(padapter, (reg_bssid + idx), val[idx]);
 }
 
 static void hw_var_set_bcn_func(struct adapter *padapter, u8 variable, u8 *val)
@@ -2004,7 +2108,8 @@ static void hw_var_set_bcn_func(struct adapter *padapter, u8 variable, u8 *val)
 	u32 bcn_ctrl_reg = REG_BCN_CTRL;
 
 	if (*(u8 *)val)
-		rtw_write8(padapter, bcn_ctrl_reg, (EN_BCN_FUNCTION | EN_TXBCN_RPT));
+		rtw_write8(padapter, bcn_ctrl_reg,
+			   (EN_BCN_FUNCTION | EN_TXBCN_RPT));
 	else {
 		u8 val8;
 
@@ -2019,19 +2124,20 @@ static void hw_var_set_bcn_func(struct adapter *padapter, u8 variable, u8 *val)
 	}
 }
 
-static void hw_var_set_correct_tsf(struct adapter *padapter, u8 variable, u8 *val)
+static void hw_var_set_correct_tsf(struct adapter *padapter, u8 variable,
+				   u8 *val)
 {
 	u8 val8;
 	u64 tsf;
 	struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
 	struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
 
-	tsf = pmlmeext->TSFValue-do_div(pmlmeext->TSFValue, (pmlmeinfo->bcn_interval*1024))-1024; /* us */
+	tsf = pmlmeext->TSFValue -
+	      do_div(pmlmeext->TSFValue, (pmlmeinfo->bcn_interval * 1024)) -
+	      1024; /* us */
 
-	if (
-		((pmlmeinfo->state&0x03) == WIFI_FW_ADHOC_STATE) ||
-		((pmlmeinfo->state&0x03) == WIFI_FW_AP_STATE)
-	)
+	if (((pmlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE) ||
+	    ((pmlmeinfo->state & 0x03) == WIFI_FW_AP_STATE))
 		StopTxBeacon(padapter);
 
 	{
@@ -2041,7 +2147,7 @@ static void hw_var_set_correct_tsf(struct adapter *padapter, u8 variable, u8 *va
 		rtw_write8(padapter, REG_BCN_CTRL, val8);
 
 		rtw_write32(padapter, REG_TSFTR, tsf);
-		rtw_write32(padapter, REG_TSFTR+4, tsf>>32);
+		rtw_write32(padapter, REG_TSFTR + 4, tsf >> 32);
 
 		/*  enable related TSF function */
 		val8 = rtw_read8(padapter, REG_BCN_CTRL);
@@ -2049,14 +2155,13 @@ static void hw_var_set_correct_tsf(struct adapter *padapter, u8 variable, u8 *va
 		rtw_write8(padapter, REG_BCN_CTRL, val8);
 	}
 
-	if (
-		((pmlmeinfo->state&0x03) == WIFI_FW_ADHOC_STATE) ||
-		((pmlmeinfo->state&0x03) == WIFI_FW_AP_STATE)
-	)
+	if (((pmlmeinfo->state & 0x03) == WIFI_FW_ADHOC_STATE) ||
+	    ((pmlmeinfo->state & 0x03) == WIFI_FW_AP_STATE))
 		ResumeTxBeacon(padapter);
 }
 
-static void hw_var_set_mlme_disconnect(struct adapter *padapter, u8 variable, u8 *val)
+static void hw_var_set_mlme_disconnect(struct adapter *padapter, u8 variable,
+				       u8 *val)
 {
 	u8 val8;
 
@@ -2074,7 +2179,8 @@ static void hw_var_set_mlme_disconnect(struct adapter *padapter, u8 variable, u8
 	rtw_write8(padapter, REG_BCN_CTRL, val8);
 }
 
-static void hw_var_set_mlme_sitesurvey(struct adapter *padapter, u8 variable, u8 *val)
+static void hw_var_set_mlme_sitesurvey(struct adapter *padapter, u8 variable,
+				       u8 *val)
 {
 	u32 value_rcr, rcr_clear_bit, reg_bcn_ctl;
 	u16 value_rxfltmap2;
@@ -2104,7 +2210,9 @@ static void hw_var_set_mlme_sitesurvey(struct adapter *padapter, u8 variable, u8
 
 		rtw_write16(padapter, REG_RXFLTMAP2, value_rxfltmap2);
 
-		if (check_fwstate(pmlmepriv, WIFI_STATION_STATE | WIFI_ADHOC_STATE | WIFI_ADHOC_MASTER_STATE)) {
+		if (check_fwstate(pmlmepriv, WIFI_STATION_STATE |
+						     WIFI_ADHOC_STATE |
+						     WIFI_ADHOC_MASTER_STATE)) {
 			/*  disable update TSF */
 			val8 = rtw_read8(padapter, reg_bcn_ctl);
 			val8 |= DIS_TSF_UDT;
@@ -2115,11 +2223,13 @@ static void hw_var_set_mlme_sitesurvey(struct adapter *padapter, u8 variable, u8
 		pHalData->RegRRSR = rtw_read16(padapter, REG_RRSR);
 	} else {
 		/*  sitesurvey done */
-		if (check_fwstate(pmlmepriv, (_FW_LINKED|WIFI_AP_STATE)))
+		if (check_fwstate(pmlmepriv, (_FW_LINKED | WIFI_AP_STATE)))
 			/*  enable to rx data frame */
 			rtw_write16(padapter, REG_RXFLTMAP2, 0xFFFF);
 
-		if (check_fwstate(pmlmepriv, WIFI_STATION_STATE | WIFI_ADHOC_STATE | WIFI_ADHOC_MASTER_STATE)) {
+		if (check_fwstate(pmlmepriv, WIFI_STATION_STATE |
+						     WIFI_ADHOC_STATE |
+						     WIFI_ADHOC_MASTER_STATE)) {
 			/*  enable update TSF */
 			val8 = rtw_read8(padapter, reg_bcn_ctl);
 			val8 &= ~DIS_TSF_UDT;
@@ -2153,13 +2263,15 @@ static void hw_var_set_mlme_join(struct adapter *padapter, u8 variable, u8 *val)
 
 		val32 = rtw_read32(padapter, REG_RCR);
 		if (padapter->in_cta_test)
-			val32 &= ~(RCR_CBSSID_DATA | RCR_CBSSID_BCN);/*  RCR_ADF */
+			val32 &= ~(RCR_CBSSID_DATA |
+				   RCR_CBSSID_BCN); /*  RCR_ADF */
 		else
-			val32 |= RCR_CBSSID_DATA|RCR_CBSSID_BCN;
+			val32 |= RCR_CBSSID_DATA | RCR_CBSSID_BCN;
 		rtw_write32(padapter, REG_RCR, val32);
 
 		if (check_fwstate(pmlmepriv, WIFI_STATION_STATE))
-			RetryLimit = (pEEPROM->CustomerID == RT_CID_CCX) ? 7 : 48;
+			RetryLimit = (pEEPROM->CustomerID == RT_CID_CCX) ? 7 :
+									   48;
 		else /*  Ad-hoc Mode */
 			RetryLimit = 0x7;
 	} else if (type == 1) /* joinbss_event call back when join res < 0 */
@@ -2170,24 +2282,29 @@ static void hw_var_set_mlme_join(struct adapter *padapter, u8 variable, u8 *val)
 		val8 &= ~DIS_TSF_UDT;
 		rtw_write8(padapter, REG_BCN_CTRL, val8);
 
-		if (check_fwstate(pmlmepriv, WIFI_ADHOC_STATE|WIFI_ADHOC_MASTER_STATE))
+		if (check_fwstate(pmlmepriv,
+				  WIFI_ADHOC_STATE | WIFI_ADHOC_MASTER_STATE))
 			RetryLimit = 0x7;
 	}
 
-	val16 = (RetryLimit << RETRY_LIMIT_SHORT_SHIFT) | (RetryLimit << RETRY_LIMIT_LONG_SHIFT);
+	val16 = (RetryLimit << RETRY_LIMIT_SHORT_SHIFT) |
+		(RetryLimit << RETRY_LIMIT_LONG_SHIFT);
 	rtw_write16(padapter, REG_RL, val16);
 }
 
 void CCX_FwC2HTxRpt_8723b(struct adapter *padapter, u8 *pdata, u8 len)
 {
+#define GET_8723B_C2H_TX_RPT_LIFE_TIME_OVER(_Header) \
+	LE_BITS_TO_1BYTE((_Header + 0), 6, 1)
+#define GET_8723B_C2H_TX_RPT_RETRY_OVER(_Header) \
+	LE_BITS_TO_1BYTE((_Header + 0), 7, 1)
 
-#define	GET_8723B_C2H_TX_RPT_LIFE_TIME_OVER(_Header)	LE_BITS_TO_1BYTE((_Header + 0), 6, 1)
-#define	GET_8723B_C2H_TX_RPT_RETRY_OVER(_Header)	LE_BITS_TO_1BYTE((_Header + 0), 7, 1)
-
-	if (GET_8723B_C2H_TX_RPT_RETRY_OVER(pdata) | GET_8723B_C2H_TX_RPT_LIFE_TIME_OVER(pdata)) {
-		rtw_ack_tx_done(&padapter->xmitpriv, RTW_SCTX_DONE_CCX_PKT_FAIL);
+	if (GET_8723B_C2H_TX_RPT_RETRY_OVER(pdata) |
+	    GET_8723B_C2H_TX_RPT_LIFE_TIME_OVER(pdata)) {
+		rtw_ack_tx_done(&padapter->xmitpriv,
+				RTW_SCTX_DONE_CCX_PKT_FAIL);
 	}
-/*
+	/*
 	else if (seq_no != padapter->xmitpriv.seq_no) {
 		rtw_ack_tx_done(&padapter->xmitpriv, RTW_SCTX_DONE_CCX_PKT_FAIL);
 	}
@@ -2220,24 +2337,23 @@ s32 c2h_handler_8723b(struct adapter *padapter, u8 *buf)
 	switch (pC2hEvent->id) {
 	case C2H_AP_RPT_RSP:
 		break;
-	case C2H_DBG:
-		{
-		}
-		break;
+	case C2H_DBG: {
+	} break;
 
 	case C2H_CCX_TX_RPT:
-/* 			CCX_FwC2HTxRpt(padapter, QueueID, pC2hEvent->payload); */
+		/* 			CCX_FwC2HTxRpt(padapter, QueueID, pC2hEvent->payload); */
 		break;
 
 	case C2H_EXT_RA_RPT:
-/* 			C2HExtRaRptHandler(padapter, pC2hEvent->payload, C2hEvent.CmdLen); */
+		/* 			C2HExtRaRptHandler(padapter, pC2hEvent->payload, C2hEvent.CmdLen); */
 		break;
 
 	case C2H_HW_INFO_EXCH:
 		break;
 
 	case C2H_8723B_BT_INFO:
-		hal_btcoex_BtInfoNotify(padapter, pC2hEvent->plen, pC2hEvent->payload);
+		hal_btcoex_BtInfoNotify(padapter, pC2hEvent->plen,
+					pC2hEvent->payload);
 		break;
 
 	default:
@@ -2252,7 +2368,8 @@ s32 c2h_handler_8723b(struct adapter *padapter, u8 *buf)
 	return ret;
 }
 
-static void process_c2h_event(struct adapter *padapter, struct c2h_evt_hdr_t *pC2hEvent, u8 *c2hBuf)
+static void process_c2h_event(struct adapter *padapter,
+			      struct c2h_evt_hdr_t *pC2hEvent, u8 *c2hBuf)
 {
 	if (!c2hBuf)
 		return;
@@ -2260,17 +2377,15 @@ static void process_c2h_event(struct adapter *padapter, struct c2h_evt_hdr_t *pC
 	switch (pC2hEvent->CmdID) {
 	case C2H_AP_RPT_RSP:
 		break;
-	case C2H_DBG:
-		{
-		}
-		break;
+	case C2H_DBG: {
+	} break;
 
 	case C2H_CCX_TX_RPT:
-/* 			CCX_FwC2HTxRpt(padapter, QueueID, tmpBuf); */
+		/* 			CCX_FwC2HTxRpt(padapter, QueueID, tmpBuf); */
 		break;
 
 	case C2H_EXT_RA_RPT:
-/* 			C2HExtRaRptHandler(padapter, tmpBuf, C2hEvent.CmdLen); */
+		/* 			C2HExtRaRptHandler(padapter, tmpBuf, C2hEvent.CmdLen); */
 		break;
 
 	case C2H_HW_INFO_EXCH:
@@ -2287,13 +2402,13 @@ static void process_c2h_event(struct adapter *padapter, struct c2h_evt_hdr_t *pC
 
 void C2HPacketHandler_8723B(struct adapter *padapter, u8 *pbuffer, u16 length)
 {
-	struct c2h_evt_hdr_t	C2hEvent;
+	struct c2h_evt_hdr_t C2hEvent;
 	u8 *tmpBuf = NULL;
 
 	C2hEvent.CmdID = pbuffer[0];
 	C2hEvent.CmdSeq = pbuffer[1];
-	C2hEvent.CmdLen = length-2;
-	tmpBuf = pbuffer+2;
+	C2hEvent.CmdLen = length - 2;
+	tmpBuf = pbuffer + 2;
 
 	process_c2h_event(padapter, &C2hEvent, tmpBuf);
 	/* c2h_handler_8723b(padapter,&C2hEvent); */
@@ -2330,12 +2445,13 @@ void SetHwReg8723B(struct adapter *padapter, u8 variable, u8 *val)
 		hw_var_set_bssid(padapter, variable, val);
 		break;
 
-	case HW_VAR_BASIC_RATE:
-	{
-		struct mlme_ext_info *mlmext_info = &padapter->mlmeextpriv.mlmext_info;
+	case HW_VAR_BASIC_RATE: {
+		struct mlme_ext_info *mlmext_info =
+			&padapter->mlmeextpriv.mlmext_info;
 		u16 BrateCfg = 0;
-		u16 rrsr_2g_force_mask = (RRSR_11M|RRSR_5_5M|RRSR_1M);
-		u16 rrsr_2g_allow_mask = (RRSR_24M|RRSR_12M|RRSR_6M|RRSR_CCK_RATES);
+		u16 rrsr_2g_force_mask = (RRSR_11M | RRSR_5_5M | RRSR_1M);
+		u16 rrsr_2g_allow_mask =
+			(RRSR_24M | RRSR_12M | RRSR_6M | RRSR_CCK_RATES);
 
 		HalSetBrateCfg(padapter, val, &BrateCfg);
 
@@ -2346,7 +2462,7 @@ void SetHwReg8723B(struct adapter *padapter, u8 variable, u8 *val)
 		/* IOT consideration */
 		if (mlmext_info->assoc_AP_vendor == HT_IOT_PEER_CISCO) {
 			/* if peer is cisco and didn't use ofdm rate, we enable 6M ack */
-			if ((BrateCfg & (RRSR_24M|RRSR_12M|RRSR_6M)) == 0)
+			if ((BrateCfg & (RRSR_24M | RRSR_12M | RRSR_6M)) == 0)
 				BrateCfg |= RRSR_6M;
 		}
 
@@ -2354,9 +2470,9 @@ void SetHwReg8723B(struct adapter *padapter, u8 variable, u8 *val)
 
 		/*  Set RRSR rate table. */
 		rtw_write16(padapter, REG_RRSR, BrateCfg);
-		rtw_write8(padapter, REG_RRSR+2, rtw_read8(padapter, REG_RRSR+2)&0xf0);
-	}
-		break;
+		rtw_write8(padapter, REG_RRSR + 2,
+			   rtw_read8(padapter, REG_RRSR + 2) & 0xf0);
+	} break;
 
 	case HW_VAR_TXPAUSE:
 		rtw_write8(padapter, REG_TXPAUSE, *val);
@@ -2370,27 +2486,25 @@ void SetHwReg8723B(struct adapter *padapter, u8 variable, u8 *val)
 		hw_var_set_correct_tsf(padapter, variable, val);
 		break;
 
-	case HW_VAR_CHECK_BSSID:
-		{
-			u32 val32;
+	case HW_VAR_CHECK_BSSID: {
+		u32 val32;
 
-			val32 = rtw_read32(padapter, REG_RCR);
-			if (*val)
-				val32 |= RCR_CBSSID_DATA|RCR_CBSSID_BCN;
-			else
-				val32 &= ~(RCR_CBSSID_DATA|RCR_CBSSID_BCN);
-			rtw_write32(padapter, REG_RCR, val32);
-		}
-		break;
+		val32 = rtw_read32(padapter, REG_RCR);
+		if (*val)
+			val32 |= RCR_CBSSID_DATA | RCR_CBSSID_BCN;
+		else
+			val32 &= ~(RCR_CBSSID_DATA | RCR_CBSSID_BCN);
+		rtw_write32(padapter, REG_RCR, val32);
+	} break;
 
 	case HW_VAR_MLME_DISCONNECT:
 		hw_var_set_mlme_disconnect(padapter, variable, val);
 		break;
 
 	case HW_VAR_MLME_SITESURVEY:
-		hw_var_set_mlme_sitesurvey(padapter, variable,  val);
+		hw_var_set_mlme_sitesurvey(padapter, variable, val);
 
-		hal_btcoex_ScanNotify(padapter, *val?true:false);
+		hal_btcoex_ScanNotify(padapter, *val ? true : false);
 		break;
 
 	case HW_VAR_MLME_JOIN:
@@ -2407,7 +2521,7 @@ void SetHwReg8723B(struct adapter *padapter, u8 variable, u8 *val)
 			break;
 		case 2:
 			/*  sta add event callback */
-/* 				rtw_btcoex_MediaStatusNotify(padapter, RT_MEDIA_CONNECT); */
+			/* 				rtw_btcoex_MediaStatusNotify(padapter, RT_MEDIA_CONNECT); */
 			break;
 		}
 		break;
@@ -2435,67 +2549,68 @@ void SetHwReg8723B(struct adapter *padapter, u8 variable, u8 *val)
 	case HW_VAR_RESP_SIFS:
 		/* SIFS_Timer = 0x0a0a0808; */
 		/* RESP_SIFS for CCK */
-		rtw_write8(padapter, REG_RESP_SIFS_CCK, val[0]); /*  SIFS_T2T_CCK (0x08) */
-		rtw_write8(padapter, REG_RESP_SIFS_CCK+1, val[1]); /* SIFS_R2T_CCK(0x08) */
+		rtw_write8(padapter, REG_RESP_SIFS_CCK,
+			   val[0]); /*  SIFS_T2T_CCK (0x08) */
+		rtw_write8(padapter, REG_RESP_SIFS_CCK + 1,
+			   val[1]); /* SIFS_R2T_CCK(0x08) */
 		/* RESP_SIFS for OFDM */
-		rtw_write8(padapter, REG_RESP_SIFS_OFDM, val[2]); /* SIFS_T2T_OFDM (0x0a) */
-		rtw_write8(padapter, REG_RESP_SIFS_OFDM+1, val[3]); /* SIFS_R2T_OFDM(0x0a) */
-		break;
-
-	case HW_VAR_ACK_PREAMBLE:
-		{
-			u8 regTmp = 0;
-			u8 bShortPreamble = *val;
-
-			/*  Joseph marked out for Netgear 3500 TKIP channel 7 issue.(Temporarily) */
-			/* regTmp = (pHalData->nCur40MhzPrimeSC)<<5; */
-			if (bShortPreamble)
-				regTmp |= 0x80;
-			rtw_write8(padapter, REG_RRSR+2, regTmp);
-		}
-		break;
-
-	case HW_VAR_CAM_EMPTY_ENTRY:
-		{
-			u8 ucIndex = *val;
-			u8 i;
-			u32 ulCommand = 0;
-			u32 ulContent = 0;
-			u32 ulEncAlgo = CAM_AES;
-
-			for (i = 0; i < CAM_CONTENT_COUNT; i++) {
-				/*  filled id in CAM config 2 byte */
-				if (i == 0) {
-					ulContent |= (ucIndex & 0x03) | ((u16)(ulEncAlgo)<<2);
-					/* ulContent |= CAM_VALID; */
-				} else
-					ulContent = 0;
-
-				/*  polling bit, and No Write enable, and address */
-				ulCommand = CAM_CONTENT_COUNT*ucIndex+i;
-				ulCommand = ulCommand | CAM_POLLINIG | CAM_WRITE;
-				/*  write content 0 is equal to mark as invalid */
-				rtw_write32(padapter, WCAMI, ulContent);  /* mdelay(40); */
-				rtw_write32(padapter, RWCAM, ulCommand);  /* mdelay(40); */
-			}
+		rtw_write8(padapter, REG_RESP_SIFS_OFDM,
+			   val[2]); /* SIFS_T2T_OFDM (0x0a) */
+		rtw_write8(padapter, REG_RESP_SIFS_OFDM + 1,
+			   val[3]); /* SIFS_R2T_OFDM(0x0a) */
+		break;
+
+	case HW_VAR_ACK_PREAMBLE: {
+		u8 regTmp = 0;
+		u8 bShortPreamble = *val;
+
+		/*  Joseph marked out for Netgear 3500 TKIP channel 7 issue.(Temporarily) */
+		/* regTmp = (pHalData->nCur40MhzPrimeSC)<<5; */
+		if (bShortPreamble)
+			regTmp |= 0x80;
+		rtw_write8(padapter, REG_RRSR + 2, regTmp);
+	} break;
+
+	case HW_VAR_CAM_EMPTY_ENTRY: {
+		u8 ucIndex = *val;
+		u8 i;
+		u32 ulCommand = 0;
+		u32 ulContent = 0;
+		u32 ulEncAlgo = CAM_AES;
+
+		for (i = 0; i < CAM_CONTENT_COUNT; i++) {
+			/*  filled id in CAM config 2 byte */
+			if (i == 0) {
+				ulContent |= (ucIndex & 0x03) |
+					     ((u16)(ulEncAlgo) << 2);
+				/* ulContent |= CAM_VALID; */
+			} else
+				ulContent = 0;
+
+			/*  polling bit, and No Write enable, and address */
+			ulCommand = CAM_CONTENT_COUNT * ucIndex + i;
+			ulCommand = ulCommand | CAM_POLLINIG | CAM_WRITE;
+			/*  write content 0 is equal to mark as invalid */
+			rtw_write32(padapter, WCAMI,
+				    ulContent); /* mdelay(40); */
+			rtw_write32(padapter, RWCAM,
+				    ulCommand); /* mdelay(40); */
 		}
-		break;
+	} break;
 
 	case HW_VAR_CAM_INVALID_ALL:
-		rtw_write32(padapter, RWCAM, BIT(31)|BIT(30));
+		rtw_write32(padapter, RWCAM, BIT(31) | BIT(30));
 		break;
 
-	case HW_VAR_CAM_WRITE:
-		{
-			u32 cmd;
-			u32 *cam_val = (u32 *)val;
+	case HW_VAR_CAM_WRITE: {
+		u32 cmd;
+		u32 *cam_val = (u32 *)val;
 
-			rtw_write32(padapter, WCAMI, cam_val[0]);
+		rtw_write32(padapter, WCAMI, cam_val[0]);
 
-			cmd = CAM_POLLINIG | CAM_WRITE | cam_val[1];
-			rtw_write32(padapter, RWCAM, cmd);
-		}
-		break;
+		cmd = CAM_POLLINIG | CAM_WRITE | cam_val[1];
+		rtw_write32(padapter, RWCAM, cmd);
+	} break;
 
 	case HW_VAR_AC_PARAM_VO:
 		rtw_write32(padapter, REG_EDCA_VO_PARAM, *((u32 *)val));
@@ -2514,59 +2629,53 @@ void SetHwReg8723B(struct adapter *padapter, u8 variable, u8 *val)
 		rtw_write32(padapter, REG_EDCA_BK_PARAM, *((u32 *)val));
 		break;
 
-	case HW_VAR_ACM_CTRL:
-		{
-			u8 ctrl = *((u8 *)val);
-			u8 hwctrl = 0;
-
-			if (ctrl != 0) {
-				hwctrl |= AcmHw_HwEn;
+	case HW_VAR_ACM_CTRL: {
+		u8 ctrl = *((u8 *)val);
+		u8 hwctrl = 0;
 
-				if (ctrl & BIT(1)) /*  BE */
-					hwctrl |= AcmHw_BeqEn;
+		if (ctrl != 0) {
+			hwctrl |= AcmHw_HwEn;
 
-				if (ctrl & BIT(2)) /*  VI */
-					hwctrl |= AcmHw_ViqEn;
+			if (ctrl & BIT(1)) /*  BE */
+				hwctrl |= AcmHw_BeqEn;
 
-				if (ctrl & BIT(3)) /*  VO */
-					hwctrl |= AcmHw_VoqEn;
-			}
+			if (ctrl & BIT(2)) /*  VI */
+				hwctrl |= AcmHw_ViqEn;
 
-			rtw_write8(padapter, REG_ACMHWCTRL, hwctrl);
+			if (ctrl & BIT(3)) /*  VO */
+				hwctrl |= AcmHw_VoqEn;
 		}
-		break;
 
-	case HW_VAR_AMPDU_FACTOR:
-		{
-			u32 AMPDULen =  (*((u8 *)val));
+		rtw_write8(padapter, REG_ACMHWCTRL, hwctrl);
+	} break;
 
-			if (AMPDULen < HT_AGG_SIZE_32K)
-				AMPDULen = (0x2000 << (*((u8 *)val)))-1;
-			else
-				AMPDULen = 0x7fff;
+	case HW_VAR_AMPDU_FACTOR: {
+		u32 AMPDULen = (*((u8 *)val));
 
-			rtw_write32(padapter, REG_AMPDU_MAX_LENGTH_8723B, AMPDULen);
-		}
-		break;
+		if (AMPDULen < HT_AGG_SIZE_32K)
+			AMPDULen = (0x2000 << (*((u8 *)val))) - 1;
+		else
+			AMPDULen = 0x7fff;
 
-	case HW_VAR_H2C_FW_PWRMODE:
-		{
-			u8 psmode = *val;
+		rtw_write32(padapter, REG_AMPDU_MAX_LENGTH_8723B, AMPDULen);
+	} break;
 
-			/*  Forece leave RF low power mode for 1T1R to prevent conficting setting in Fw power */
-			/*  saving sequence. 2010.06.07. Added by tynli. Suggested by SD3 yschang. */
-			if (psmode != PS_MODE_ACTIVE) {
-				ODM_RF_Saving(&pHalData->odmpriv, true);
-			}
+	case HW_VAR_H2C_FW_PWRMODE: {
+		u8 psmode = *val;
 
-			/* if (psmode != PS_MODE_ACTIVE)	{ */
-			/* 	rtl8723b_set_lowpwr_lps_cmd(padapter, true); */
-			/*  else { */
-			/* 	rtl8723b_set_lowpwr_lps_cmd(padapter, false); */
-			/*  */
-			rtl8723b_set_FwPwrMode_cmd(padapter, psmode);
+		/*  Forece leave RF low power mode for 1T1R to prevent conficting setting in Fw power */
+		/*  saving sequence. 2010.06.07. Added by tynli. Suggested by SD3 yschang. */
+		if (psmode != PS_MODE_ACTIVE) {
+			ODM_RF_Saving(&pHalData->odmpriv, true);
 		}
-		break;
+
+		/* if (psmode != PS_MODE_ACTIVE)	{ */
+		/* 	rtl8723b_set_lowpwr_lps_cmd(padapter, true); */
+		/*  else { */
+		/* 	rtl8723b_set_lowpwr_lps_cmd(padapter, false); */
+		/*  */
+		rtl8723b_set_FwPwrMode_cmd(padapter, psmode);
+	} break;
 	case HW_VAR_H2C_PS_TUNE_PARAM:
 		rtl8723b_set_FwPsTuneParam_cmd(padapter);
 		break;
@@ -2575,19 +2684,18 @@ void SetHwReg8723B(struct adapter *padapter, u8 variable, u8 *val)
 		rtl8723b_set_FwJoinBssRpt_cmd(padapter, *val);
 		break;
 
-	case HW_VAR_INITIAL_GAIN:
-		{
-			struct dig_t *pDigTable = &pHalData->odmpriv.DM_DigTable;
-			u32 rx_gain = *(u32 *)val;
+	case HW_VAR_INITIAL_GAIN: {
+		struct dig_t *pDigTable = &pHalData->odmpriv.DM_DigTable;
+		u32 rx_gain = *(u32 *)val;
 
-			if (rx_gain == 0xff) {/* restore rx gain */
-				ODM_Write_DIG(&pHalData->odmpriv, pDigTable->BackupIGValue);
-			} else {
-				pDigTable->BackupIGValue = pDigTable->CurIGValue;
-				ODM_Write_DIG(&pHalData->odmpriv, rx_gain);
-			}
+		if (rx_gain == 0xff) { /* restore rx gain */
+			ODM_Write_DIG(&pHalData->odmpriv,
+				      pDigTable->BackupIGValue);
+		} else {
+			pDigTable->BackupIGValue = pDigTable->CurIGValue;
+			ODM_Write_DIG(&pHalData->odmpriv, rx_gain);
 		}
-		break;
+	} break;
 
 	case HW_VAR_EFUSE_USAGE:
 		pHalData->EfuseUsedPercentage = *val;
@@ -2611,84 +2719,74 @@ void SetHwReg8723B(struct adapter *padapter, u8 variable, u8 *val)
 #endif
 		break;
 
-	case HW_VAR_FIFO_CLEARN_UP:
-		{
-			#define RW_RELEASE_EN		BIT(18)
-			#define RXDMA_IDLE			BIT(17)
+	case HW_VAR_FIFO_CLEARN_UP: {
+#define RW_RELEASE_EN BIT(18)
+#define RXDMA_IDLE BIT(17)
 
-			struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
-			u8 trycnt = 100;
+		struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
+		u8 trycnt = 100;
 
-			/*  pause tx */
-			rtw_write8(padapter, REG_TXPAUSE, 0xff);
+		/*  pause tx */
+		rtw_write8(padapter, REG_TXPAUSE, 0xff);
 
-			/*  keep sn */
-			padapter->xmitpriv.nqos_ssn = rtw_read16(padapter, REG_NQOS_SEQ);
+		/*  keep sn */
+		padapter->xmitpriv.nqos_ssn =
+			rtw_read16(padapter, REG_NQOS_SEQ);
 
-			if (!pwrpriv->bkeepfwalive) {
-				/* RX DMA stop */
+		if (!pwrpriv->bkeepfwalive) {
+			/* RX DMA stop */
+			val32 = rtw_read32(padapter, REG_RXPKT_NUM);
+			val32 |= RW_RELEASE_EN;
+			rtw_write32(padapter, REG_RXPKT_NUM, val32);
+			do {
 				val32 = rtw_read32(padapter, REG_RXPKT_NUM);
-				val32 |= RW_RELEASE_EN;
-				rtw_write32(padapter, REG_RXPKT_NUM, val32);
-				do {
-					val32 = rtw_read32(padapter, REG_RXPKT_NUM);
-					val32 &= RXDMA_IDLE;
-					if (val32)
-						break;
-				} while (--trycnt);
-
-				/*  RQPN Load 0 */
-				rtw_write16(padapter, REG_RQPN_NPQ, 0);
-				rtw_write32(padapter, REG_RQPN, 0x80000000);
-				mdelay(2);
-			}
+				val32 &= RXDMA_IDLE;
+				if (val32)
+					break;
+			} while (--trycnt);
+
+			/*  RQPN Load 0 */
+			rtw_write16(padapter, REG_RQPN_NPQ, 0);
+			rtw_write32(padapter, REG_RQPN, 0x80000000);
+			mdelay(2);
 		}
-		break;
+	} break;
 
 	case HW_VAR_APFM_ON_MAC:
 		pHalData->bMacPwrCtrlOn = *val;
 		break;
 
-	case HW_VAR_NAV_UPPER:
-		{
-			u32 usNavUpper = *((u32 *)val);
+	case HW_VAR_NAV_UPPER: {
+		u32 usNavUpper = *((u32 *)val);
 
-			if (usNavUpper > HAL_NAV_UPPER_UNIT_8723B * 0xFF)
-				break;
-
-			usNavUpper = DIV_ROUND_UP(usNavUpper,
-						  HAL_NAV_UPPER_UNIT_8723B);
-			rtw_write8(padapter, REG_NAV_UPPER, (u8)usNavUpper);
-		}
-		break;
-
-	case HW_VAR_H2C_MEDIA_STATUS_RPT:
-		{
-			u16 mstatus_rpt = (*(u16 *)val);
-			u8 mstatus, macId;
-
-			mstatus = (u8) (mstatus_rpt & 0xFF);
-			macId = (u8)(mstatus_rpt >> 8);
-			rtl8723b_set_FwMediaStatusRpt_cmd(padapter, mstatus, macId);
-		}
-		break;
-	case HW_VAR_BCN_VALID:
-		{
-			/*  BCN_VALID, BIT16 of REG_TDECTRL = BIT0 of REG_TDECTRL+2, write 1 to clear, Clear by sw */
-			val8 = rtw_read8(padapter, REG_TDECTRL+2);
-			val8 |= BIT(0);
-			rtw_write8(padapter, REG_TDECTRL+2, val8);
-		}
-		break;
+		if (usNavUpper > HAL_NAV_UPPER_UNIT_8723B * 0xFF)
+			break;
 
-	case HW_VAR_DL_BCN_SEL:
-		{
-			/*  SW_BCN_SEL - Port0 */
-			val8 = rtw_read8(padapter, REG_DWBCN1_CTRL_8723B+2);
-			val8 &= ~BIT(4);
-			rtw_write8(padapter, REG_DWBCN1_CTRL_8723B+2, val8);
-		}
-		break;
+		usNavUpper = DIV_ROUND_UP(usNavUpper, HAL_NAV_UPPER_UNIT_8723B);
+		rtw_write8(padapter, REG_NAV_UPPER, (u8)usNavUpper);
+	} break;
+
+	case HW_VAR_H2C_MEDIA_STATUS_RPT: {
+		u16 mstatus_rpt = (*(u16 *)val);
+		u8 mstatus, macId;
+
+		mstatus = (u8)(mstatus_rpt & 0xFF);
+		macId = (u8)(mstatus_rpt >> 8);
+		rtl8723b_set_FwMediaStatusRpt_cmd(padapter, mstatus, macId);
+	} break;
+	case HW_VAR_BCN_VALID: {
+		/*  BCN_VALID, BIT16 of REG_TDECTRL = BIT0 of REG_TDECTRL+2, write 1 to clear, Clear by sw */
+		val8 = rtw_read8(padapter, REG_TDECTRL + 2);
+		val8 |= BIT(0);
+		rtw_write8(padapter, REG_TDECTRL + 2, val8);
+	} break;
+
+	case HW_VAR_DL_BCN_SEL: {
+		/*  SW_BCN_SEL - Port0 */
+		val8 = rtw_read8(padapter, REG_DWBCN1_CTRL_8723B + 2);
+		val8 &= ~BIT(4);
+		rtw_write8(padapter, REG_DWBCN1_CTRL_8723B + 2, val8);
+	} break;
 
 	case HW_VAR_DO_IQK:
 		pHalData->bNeedIQK = true;
@@ -2748,36 +2846,30 @@ void GetHwReg8723B(struct adapter *padapter, u8 variable, u8 *val)
 		*val = rtw_read8(padapter, REG_TXPAUSE);
 		break;
 
-	case HW_VAR_BCN_VALID:
-		{
-			/*  BCN_VALID, BIT16 of REG_TDECTRL = BIT0 of REG_TDECTRL+2 */
-			val8 = rtw_read8(padapter, REG_TDECTRL+2);
-			*val = (BIT(0) & val8) ? true : false;
-		}
-		break;
+	case HW_VAR_BCN_VALID: {
+		/*  BCN_VALID, BIT16 of REG_TDECTRL = BIT0 of REG_TDECTRL+2 */
+		val8 = rtw_read8(padapter, REG_TDECTRL + 2);
+		*val = (BIT(0) & val8) ? true : false;
+	} break;
 
-	case HW_VAR_FWLPS_RF_ON:
-		{
-			/*  When we halt NIC, we should check if FW LPS is leave. */
-			u32 valRCR;
+	case HW_VAR_FWLPS_RF_ON: {
+		/*  When we halt NIC, we should check if FW LPS is leave. */
+		u32 valRCR;
 
-			if (
-				padapter->bSurpriseRemoved  ||
-				(adapter_to_pwrctl(padapter)->rf_pwrstate == rf_off)
-			) {
-				/*  If it is in HW/SW Radio OFF or IPS state, we do not check Fw LPS Leave, */
-				/*  because Fw is unload. */
+		if (padapter->bSurpriseRemoved ||
+		    (adapter_to_pwrctl(padapter)->rf_pwrstate == rf_off)) {
+			/*  If it is in HW/SW Radio OFF or IPS state, we do not check Fw LPS Leave, */
+			/*  because Fw is unload. */
+			*val = true;
+		} else {
+			valRCR = rtw_read32(padapter, REG_RCR);
+			valRCR &= 0x00070000;
+			if (valRCR)
+				*val = false;
+			else
 				*val = true;
-			} else {
-				valRCR = rtw_read32(padapter, REG_RCR);
-				valRCR &= 0x00070000;
-				if (valRCR)
-					*val = false;
-				else
-					*val = true;
-			}
 		}
-		break;
+	} break;
 
 	case HW_VAR_EFUSE_USAGE:
 		*val = pHalData->EfuseUsedPercentage;
@@ -2817,7 +2909,8 @@ void GetHwReg8723B(struct adapter *padapter, u8 variable, u8 *val)
 /* Description:
  *	Query setting of specified variable.
  */
-u8 GetHalDefVar8723B(struct adapter *padapter, enum hal_def_variable variable, void *pval)
+u8 GetHalDefVar8723B(struct adapter *padapter, enum hal_def_variable variable,
+		     void *pval)
 {
 	u8 bResult = _SUCCESS;
 
@@ -2827,7 +2920,7 @@ u8 GetHalDefVar8723B(struct adapter *padapter, enum hal_def_variable variable, v
 		break;
 
 	case HAL_DEF_RX_PACKET_OFFSET:
-		*((u32 *)pval) = RXDESC_SIZE + DRVINFO_SZ*8;
+		*((u32 *)pval) = RXDESC_SIZE + DRVINFO_SZ * 8;
 		break;
 
 	case HW_VAR_MAX_RX_AMPDU_FACTOR:
@@ -2851,24 +2944,22 @@ u8 GetHalDefVar8723B(struct adapter *padapter, enum hal_def_variable variable, v
 		*((u8 *)pval) = false;
 		break;
 
-	case HW_DEF_RA_INFO_DUMP:
-		{
-			u8 mac_id = *(u8 *)pval;
-			u32 cmd = 0x40000100 | mac_id;
+	case HW_DEF_RA_INFO_DUMP: {
+		u8 mac_id = *(u8 *)pval;
+		u32 cmd = 0x40000100 | mac_id;
 
-			rtw_write32(padapter, REG_HMEBOX_DBG_2_8723B, cmd);
-			msleep(10);
-			rtw_read32(padapter, 0x2F0);	// info 1
+		rtw_write32(padapter, REG_HMEBOX_DBG_2_8723B, cmd);
+		msleep(10);
+		rtw_read32(padapter, 0x2F0); // info 1
 
-			cmd = 0x40000400 | mac_id;
-			rtw_write32(padapter, REG_HMEBOX_DBG_2_8723B, cmd);
-			msleep(10);
-			rtw_read32(padapter, 0x2F0);	// info 1
-			rtw_read32(padapter, 0x2F4);	// info 2
-			rtw_read32(padapter, 0x2F8);	// rate mask 1
-			rtw_read32(padapter, 0x2FC);	// rate mask 2
-		}
-		break;
+		cmd = 0x40000400 | mac_id;
+		rtw_write32(padapter, REG_HMEBOX_DBG_2_8723B, cmd);
+		msleep(10);
+		rtw_read32(padapter, 0x2F0); // info 1
+		rtw_read32(padapter, 0x2F4); // info 2
+		rtw_read32(padapter, 0x2F8); // rate mask 1
+		rtw_read32(padapter, 0x2FC); // rate mask 2
+	} break;
 
 	case HAL_DEF_TX_PAGE_BOUNDARY:
 		if (!padapter->registrypriv.wifi_spec) {
diff --git a/drivers/staging/rtl8723bs/hal/rtl8723b_phycfg.c b/drivers/staging/rtl8723bs/hal/rtl8723b_phycfg.c
index d6369eb7b5705..090023a4c09f4 100644
--- a/drivers/staging/rtl8723bs/hal/rtl8723b_phycfg.c
+++ b/drivers/staging/rtl8723bs/hal/rtl8723b_phycfg.c
@@ -14,12 +14,12 @@
  *
  * Return:	Return the shift bit position of the mask
  */
-static	u32 phy_CalculateBitShift(u32 BitMask)
+static u32 phy_CalculateBitShift(u32 BitMask)
 {
 	u32 i;
 
 	for (i = 0; i <= 31; i++) {
-		if (((BitMask >> i) &  0x1) == 1)
+		if (((BitMask >> i) & 0x1) == 1)
 			break;
 	}
 	return i;
@@ -60,12 +60,8 @@ u32 PHY_QueryBBReg_8723B(struct adapter *Adapter, u32 RegAddr, u32 BitMask)
  *			guide
  */
 
-void PHY_SetBBReg_8723B(
-	struct adapter *Adapter,
-	u32 RegAddr,
-	u32 BitMask,
-	u32 Data
-)
+void PHY_SetBBReg_8723B(struct adapter *Adapter, u32 RegAddr, u32 BitMask,
+			u32 Data)
 {
 	/* u16 BBWaitCounter	= 0; */
 	u32 OriginalValue, BitShift;
@@ -73,7 +69,8 @@ void PHY_SetBBReg_8723B(
 	if (BitMask != bMaskDWord) { /* if not "double word" write */
 		OriginalValue = rtw_read32(Adapter, RegAddr);
 		BitShift = phy_CalculateBitShift(BitMask);
-		Data = ((OriginalValue & (~BitMask)) | ((Data << BitShift) & BitMask));
+		Data = ((OriginalValue & (~BitMask)) |
+			((Data << BitShift) & BitMask));
 	}
 
 	rtw_write32(Adapter, RegAddr, Data);
@@ -83,9 +80,8 @@ void PHY_SetBBReg_8723B(
 /*  2. RF register R/W API */
 /*  */
 
-static u32 phy_RFSerialRead_8723B(
-	struct adapter *Adapter, enum rf_path eRFPath, u32 Offset
-)
+static u32 phy_RFSerialRead_8723B(struct adapter *Adapter, enum rf_path eRFPath,
+				  u32 Offset)
 {
 	u32 retValue = 0;
 	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
@@ -104,18 +100,29 @@ static u32 phy_RFSerialRead_8723B(
 	NewOffset = Offset;
 
 	if (eRFPath == RF_PATH_A) {
-		tmplong2 = PHY_QueryBBReg(Adapter, rFPGA0_XA_HSSIParameter2 | MaskforPhySet, bMaskDWord);
-		tmplong2 = (tmplong2 & (~bLSSIReadAddress)) | (NewOffset << 23) | bLSSIReadEdge;	/* T65 RF */
-		PHY_SetBBReg(Adapter, rFPGA0_XA_HSSIParameter2 | MaskforPhySet, bMaskDWord, tmplong2 & (~bLSSIReadEdge));
+		tmplong2 = PHY_QueryBBReg(
+			Adapter, rFPGA0_XA_HSSIParameter2 | MaskforPhySet,
+			bMaskDWord);
+		tmplong2 = (tmplong2 & (~bLSSIReadAddress)) |
+			   (NewOffset << 23) | bLSSIReadEdge; /* T65 RF */
+		PHY_SetBBReg(Adapter, rFPGA0_XA_HSSIParameter2 | MaskforPhySet,
+			     bMaskDWord, tmplong2 & (~bLSSIReadEdge));
 	} else {
-		tmplong2 = PHY_QueryBBReg(Adapter, rFPGA0_XB_HSSIParameter2 | MaskforPhySet, bMaskDWord);
-		tmplong2 = (tmplong2 & (~bLSSIReadAddress)) | (NewOffset << 23) | bLSSIReadEdge;	/* T65 RF */
-		PHY_SetBBReg(Adapter, rFPGA0_XB_HSSIParameter2 | MaskforPhySet, bMaskDWord, tmplong2 & (~bLSSIReadEdge));
+		tmplong2 = PHY_QueryBBReg(
+			Adapter, rFPGA0_XB_HSSIParameter2 | MaskforPhySet,
+			bMaskDWord);
+		tmplong2 = (tmplong2 & (~bLSSIReadAddress)) |
+			   (NewOffset << 23) | bLSSIReadEdge; /* T65 RF */
+		PHY_SetBBReg(Adapter, rFPGA0_XB_HSSIParameter2 | MaskforPhySet,
+			     bMaskDWord, tmplong2 & (~bLSSIReadEdge));
 	}
 
-	tmplong2 = PHY_QueryBBReg(Adapter, rFPGA0_XA_HSSIParameter2 | MaskforPhySet, bMaskDWord);
-	PHY_SetBBReg(Adapter, rFPGA0_XA_HSSIParameter2 | MaskforPhySet, bMaskDWord, tmplong2 & (~bLSSIReadEdge));
-	PHY_SetBBReg(Adapter, rFPGA0_XA_HSSIParameter2 | MaskforPhySet, bMaskDWord, tmplong2 | bLSSIReadEdge);
+	tmplong2 = PHY_QueryBBReg(
+		Adapter, rFPGA0_XA_HSSIParameter2 | MaskforPhySet, bMaskDWord);
+	PHY_SetBBReg(Adapter, rFPGA0_XA_HSSIParameter2 | MaskforPhySet,
+		     bMaskDWord, tmplong2 & (~bLSSIReadEdge));
+	PHY_SetBBReg(Adapter, rFPGA0_XA_HSSIParameter2 | MaskforPhySet,
+		     bMaskDWord, tmplong2 | bLSSIReadEdge);
 
 	udelay(10);
 
@@ -124,16 +131,24 @@ static u32 phy_RFSerialRead_8723B(
 	udelay(10);
 
 	if (eRFPath == RF_PATH_A)
-		RfPiEnable = (u8)PHY_QueryBBReg(Adapter, rFPGA0_XA_HSSIParameter1 | MaskforPhySet, BIT(8));
+		RfPiEnable = (u8)PHY_QueryBBReg(
+			Adapter, rFPGA0_XA_HSSIParameter1 | MaskforPhySet,
+			BIT(8));
 	else if (eRFPath == RF_PATH_B)
-		RfPiEnable = (u8)PHY_QueryBBReg(Adapter, rFPGA0_XB_HSSIParameter1 | MaskforPhySet, BIT(8));
+		RfPiEnable = (u8)PHY_QueryBBReg(
+			Adapter, rFPGA0_XB_HSSIParameter1 | MaskforPhySet,
+			BIT(8));
 
 	if (RfPiEnable) {
 		/*  Read from BBreg8b8, 12 bits for 8190, 20bits for T65 RF */
-		retValue = PHY_QueryBBReg(Adapter, pPhyReg->rfLSSIReadBackPi | MaskforPhySet, bLSSIReadBackData);
+		retValue = PHY_QueryBBReg(
+			Adapter, pPhyReg->rfLSSIReadBackPi | MaskforPhySet,
+			bLSSIReadBackData);
 	} else {
 		/* Read from BBreg8a0, 12 bits for 8190, 20 bits for T65 RF */
-		retValue = PHY_QueryBBReg(Adapter, pPhyReg->rfLSSIReadBack | MaskforPhySet, bLSSIReadBackData);
+		retValue = PHY_QueryBBReg(
+			Adapter, pPhyReg->rfLSSIReadBack | MaskforPhySet,
+			bLSSIReadBackData);
 	}
 	return retValue;
 }
@@ -175,12 +190,8 @@ static u32 phy_RFSerialRead_8723B(
  *
  *
  */
-static void phy_RFSerialWrite_8723B(
-	struct adapter *Adapter,
-	enum rf_path eRFPath,
-	u32 Offset,
-	u32 Data
-)
+static void phy_RFSerialWrite_8723B(struct adapter *Adapter,
+				    enum rf_path eRFPath, u32 Offset, u32 Data)
 {
 	u32 DataAndAddr = 0;
 	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
@@ -197,7 +208,8 @@ static void phy_RFSerialWrite_8723B(
 	/*  */
 	/*  Put write addr in [5:0]  and write data in [31:16] */
 	/*  */
-	DataAndAddr = ((NewOffset << 20) | (Data & 0x000fffff)) & 0x0fffffff;	/*  T65 RF */
+	DataAndAddr = ((NewOffset << 20) | (Data & 0x000fffff)) &
+		      0x0fffffff; /*  T65 RF */
 	/*  */
 	/*  Write Operation */
 	/*  */
@@ -217,17 +229,13 @@ static void phy_RFSerialWrite_8723B(
  * .. Note::	This function is equal to "GetRFRegSetting" in PHY
  *			programming guide
  */
-u32 PHY_QueryRFReg_8723B(
-	struct adapter *Adapter,
-	u8 eRFPath,
-	u32 RegAddr,
-	u32 BitMask
-)
+u32 PHY_QueryRFReg_8723B(struct adapter *Adapter, u8 eRFPath, u32 RegAddr,
+			 u32 BitMask)
 {
 	u32 Original_Value, BitShift;
 
 	Original_Value = phy_RFSerialRead_8723B(Adapter, eRFPath, RegAddr);
-	BitShift =  phy_CalculateBitShift(BitMask);
+	BitShift = phy_CalculateBitShift(BitMask);
 
 	return (Original_Value & BitMask) >> BitShift;
 }
@@ -245,20 +253,16 @@ u32 PHY_QueryRFReg_8723B(
  * .. Note::	This function is equal to "PutRFRegSetting" in PHY
  *			programming guide.
  */
-void PHY_SetRFReg_8723B(
-	struct adapter *Adapter,
-	u8 eRFPath,
-	u32 RegAddr,
-	u32 BitMask,
-	u32 Data
-)
+void PHY_SetRFReg_8723B(struct adapter *Adapter, u8 eRFPath, u32 RegAddr,
+			u32 BitMask, u32 Data)
 {
 	u32 Original_Value, BitShift;
 
 	/*  RF data is 12 bits only */
 	if (BitMask != bRFRegOffsetMask) {
-		Original_Value = phy_RFSerialRead_8723B(Adapter, eRFPath, RegAddr);
-		BitShift =  phy_CalculateBitShift(BitMask);
+		Original_Value =
+			phy_RFSerialRead_8723B(Adapter, eRFPath, RegAddr);
+		BitShift = phy_CalculateBitShift(BitMask);
 		Data = ((Original_Value & (~BitMask)) | (Data << BitShift));
 	}
 
@@ -280,7 +284,7 @@ void PHY_SetRFReg_8723B(
  */
 s32 PHY_MACConfig8723B(struct adapter *Adapter)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(Adapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 
 	ODM_ReadAndConfig_MP_8723B_MAC_REG(&pHalData->odmpriv);
 	return _SUCCESS;
@@ -295,31 +299,42 @@ s32 PHY_MACConfig8723B(struct adapter *Adapter)
  */
 static void phy_InitBBRFRegisterDefinition(struct adapter *Adapter)
 {
-	struct hal_com_data		*pHalData = GET_HAL_DATA(Adapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 
 	/*  RF Interface Sowrtware Control */
-	pHalData->PHYRegDef[RF_PATH_A].rfintfs = rFPGA0_XAB_RFInterfaceSW; /*  16 LSBs if read 32-bit from 0x870 */
-	pHalData->PHYRegDef[RF_PATH_B].rfintfs = rFPGA0_XAB_RFInterfaceSW; /*  16 MSBs if read 32-bit from 0x870 (16-bit for 0x872) */
+	pHalData->PHYRegDef[RF_PATH_A].rfintfs =
+		rFPGA0_XAB_RFInterfaceSW; /*  16 LSBs if read 32-bit from 0x870 */
+	pHalData->PHYRegDef[RF_PATH_B].rfintfs =
+		rFPGA0_XAB_RFInterfaceSW; /*  16 MSBs if read 32-bit from 0x870 (16-bit for 0x872) */
 
 	/*  RF Interface Output (and Enable) */
-	pHalData->PHYRegDef[RF_PATH_A].rfintfo = rFPGA0_XA_RFInterfaceOE; /*  16 LSBs if read 32-bit from 0x860 */
-	pHalData->PHYRegDef[RF_PATH_B].rfintfo = rFPGA0_XB_RFInterfaceOE; /*  16 LSBs if read 32-bit from 0x864 */
+	pHalData->PHYRegDef[RF_PATH_A].rfintfo =
+		rFPGA0_XA_RFInterfaceOE; /*  16 LSBs if read 32-bit from 0x860 */
+	pHalData->PHYRegDef[RF_PATH_B].rfintfo =
+		rFPGA0_XB_RFInterfaceOE; /*  16 LSBs if read 32-bit from 0x864 */
 
 	/*  RF Interface (Output and)  Enable */
-	pHalData->PHYRegDef[RF_PATH_A].rfintfe = rFPGA0_XA_RFInterfaceOE; /*  16 MSBs if read 32-bit from 0x860 (16-bit for 0x862) */
-	pHalData->PHYRegDef[RF_PATH_B].rfintfe = rFPGA0_XB_RFInterfaceOE; /*  16 MSBs if read 32-bit from 0x864 (16-bit for 0x866) */
+	pHalData->PHYRegDef[RF_PATH_A].rfintfe =
+		rFPGA0_XA_RFInterfaceOE; /*  16 MSBs if read 32-bit from 0x860 (16-bit for 0x862) */
+	pHalData->PHYRegDef[RF_PATH_B].rfintfe =
+		rFPGA0_XB_RFInterfaceOE; /*  16 MSBs if read 32-bit from 0x864 (16-bit for 0x866) */
 
-	pHalData->PHYRegDef[RF_PATH_A].rf3wireOffset = rFPGA0_XA_LSSIParameter; /* LSSI Parameter */
+	pHalData->PHYRegDef[RF_PATH_A].rf3wireOffset =
+		rFPGA0_XA_LSSIParameter; /* LSSI Parameter */
 	pHalData->PHYRegDef[RF_PATH_B].rf3wireOffset = rFPGA0_XB_LSSIParameter;
 
-	pHalData->PHYRegDef[RF_PATH_A].rfHSSIPara2 = rFPGA0_XA_HSSIParameter2;  /* wire control parameter2 */
-	pHalData->PHYRegDef[RF_PATH_B].rfHSSIPara2 = rFPGA0_XB_HSSIParameter2;  /* wire control parameter2 */
+	pHalData->PHYRegDef[RF_PATH_A].rfHSSIPara2 =
+		rFPGA0_XA_HSSIParameter2; /* wire control parameter2 */
+	pHalData->PHYRegDef[RF_PATH_B].rfHSSIPara2 =
+		rFPGA0_XB_HSSIParameter2; /* wire control parameter2 */
 
 	/*  Transceiver Readback LSSI/HSPI mode */
 	pHalData->PHYRegDef[RF_PATH_A].rfLSSIReadBack = rFPGA0_XA_LSSIReadBack;
 	pHalData->PHYRegDef[RF_PATH_B].rfLSSIReadBack = rFPGA0_XB_LSSIReadBack;
-	pHalData->PHYRegDef[RF_PATH_A].rfLSSIReadBackPi = TransceiverA_HSPI_Readback;
-	pHalData->PHYRegDef[RF_PATH_B].rfLSSIReadBackPi = TransceiverB_HSPI_Readback;
+	pHalData->PHYRegDef[RF_PATH_A].rfLSSIReadBackPi =
+		TransceiverA_HSPI_Readback;
+	pHalData->PHYRegDef[RF_PATH_B].rfLSSIReadBackPi =
+		TransceiverB_HSPI_Readback;
 }
 
 static int phy_BB8723b_Config_ParaFile(struct adapter *Adapter)
@@ -330,8 +345,9 @@ static int phy_BB8723b_Config_ParaFile(struct adapter *Adapter)
 	PHY_InitTxPowerLimit(Adapter);
 	if (Adapter->registrypriv.reg_enable_tx_power_limit == 1 ||
 	    (Adapter->registrypriv.reg_enable_tx_power_limit == 2 &&
-	   pHalData->EEPROMRegulatory == 1))
-		ODM_ConfigRFWithHeaderFile(&pHalData->odmpriv, CONFIG_RF_TXPWR_LMT, 0);
+	     pHalData->EEPROMRegulatory == 1))
+		ODM_ConfigRFWithHeaderFile(&pHalData->odmpriv,
+					   CONFIG_RF_TXPWR_LMT, 0);
 
 	/*  */
 	/*  1. Read PHY_REG.TXT BB INIT!! */
@@ -343,15 +359,17 @@ static int phy_BB8723b_Config_ParaFile(struct adapter *Adapter)
 
 	if (Adapter->registrypriv.reg_enable_tx_power_by_rate == 1 ||
 	    (Adapter->registrypriv.reg_enable_tx_power_by_rate == 2 &&
-	   pHalData->EEPROMRegulatory != 2)) {
-		ODM_ConfigBBWithHeaderFile(&pHalData->odmpriv, CONFIG_BB_PHY_REG_PG);
+	     pHalData->EEPROMRegulatory != 2)) {
+		ODM_ConfigBBWithHeaderFile(&pHalData->odmpriv,
+					   CONFIG_BB_PHY_REG_PG);
 
-		if (pHalData->odmpriv.PhyRegPgValueType == PHY_REG_PG_EXACT_VALUE)
+		if (pHalData->odmpriv.PhyRegPgValueType ==
+		    PHY_REG_PG_EXACT_VALUE)
 			PHY_TxPowerByRateConfiguration(Adapter);
 
 		if (Adapter->registrypriv.reg_enable_tx_power_limit == 1 ||
 		    (Adapter->registrypriv.reg_enable_tx_power_limit == 2 &&
-		   pHalData->EEPROMRegulatory == 1))
+		     pHalData->EEPROMRegulatory == 1))
 			PHY_ConvertTxPowerLimitToPowerIndex(Adapter);
 	}
 
@@ -365,8 +383,8 @@ static int phy_BB8723b_Config_ParaFile(struct adapter *Adapter)
 
 int PHY_BBConfig8723B(struct adapter *Adapter)
 {
-	int	rtStatus = _SUCCESS;
-	struct hal_com_data	*pHalData = GET_HAL_DATA(Adapter);
+	int rtStatus = _SUCCESS;
+	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 	u32 RegVal;
 	u8 CrystalCap;
 
@@ -374,9 +392,10 @@ int PHY_BBConfig8723B(struct adapter *Adapter)
 
 	/*  Enable BB and RF */
 	RegVal = rtw_read16(Adapter, REG_SYS_FUNC_EN);
-	rtw_write16(Adapter, REG_SYS_FUNC_EN, (u16)(RegVal | BIT(13) | BIT(0) | BIT(1)));
+	rtw_write16(Adapter, REG_SYS_FUNC_EN,
+		    (u16)(RegVal | BIT(13) | BIT(0) | BIT(1)));
 
-	rtw_write32(Adapter, 0x948, 0x280);	/*  Others use Antenna S1 */
+	rtw_write32(Adapter, 0x948, 0x280); /*  Others use Antenna S1 */
 
 	rtw_write8(Adapter, REG_RF_CTRL, RF_EN | RF_RSTB | RF_SDMRSTB);
 
@@ -385,7 +404,8 @@ int PHY_BBConfig8723B(struct adapter *Adapter)
 	PHY_SetRFReg(Adapter, RF_PATH_A, 0x1, 0xfffff, 0x780);
 
 	rtw_write8(Adapter, REG_SYS_FUNC_EN,
-		   FEN_PPLL | FEN_PCIEA | FEN_DIO_PCIE | FEN_BB_GLB_RSTn | FEN_BBRSTB);
+		   FEN_PPLL | FEN_PCIEA | FEN_DIO_PCIE | FEN_BB_GLB_RSTn |
+			   FEN_BBRSTB);
 
 	rtw_write8(Adapter, REG_AFE_XTAL_CTRL + 1, 0x80);
 
@@ -396,7 +416,8 @@ int PHY_BBConfig8723B(struct adapter *Adapter)
 
 	/*  0x2C[23:18] = 0x2C[17:12] = CrystalCap */
 	CrystalCap = pHalData->CrystalCap & 0x3F;
-	PHY_SetBBReg(Adapter, REG_MAC_PHY_CTRL, 0xFFF000, (CrystalCap | (CrystalCap << 6)));
+	PHY_SetBBReg(Adapter, REG_MAC_PHY_CTRL, 0xFFF000,
+		     (CrystalCap | (CrystalCap << 6)));
 
 	return rtStatus;
 }
@@ -430,78 +451,94 @@ int PHY_RFConfig8723B(struct adapter *Adapter)
  *                                                                                    <20120830, Kordan>
  **************************************************************************************************************/
 
-void PHY_SetTxPowerIndex(
-	struct adapter *Adapter,
-	u32 PowerIndex,
-	u8 RFPath,
-	u8 Rate
-)
+void PHY_SetTxPowerIndex(struct adapter *Adapter, u32 PowerIndex, u8 RFPath,
+			 u8 Rate)
 {
 	if (RFPath == RF_PATH_A || RFPath == RF_PATH_B) {
 		switch (Rate) {
 		case MGN_1M:
-			PHY_SetBBReg(Adapter, rTxAGC_A_CCK1_Mcs32, bMaskByte1, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_CCK1_Mcs32, bMaskByte1,
+				     PowerIndex);
 			break;
 		case MGN_2M:
-			PHY_SetBBReg(Adapter, rTxAGC_B_CCK11_A_CCK2_11, bMaskByte1, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_B_CCK11_A_CCK2_11,
+				     bMaskByte1, PowerIndex);
 			break;
 		case MGN_5_5M:
-			PHY_SetBBReg(Adapter, rTxAGC_B_CCK11_A_CCK2_11, bMaskByte2, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_B_CCK11_A_CCK2_11,
+				     bMaskByte2, PowerIndex);
 			break;
 		case MGN_11M:
-			PHY_SetBBReg(Adapter, rTxAGC_B_CCK11_A_CCK2_11, bMaskByte3, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_B_CCK11_A_CCK2_11,
+				     bMaskByte3, PowerIndex);
 			break;
 
 		case MGN_6M:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Rate18_06, bMaskByte0, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Rate18_06, bMaskByte0,
+				     PowerIndex);
 			break;
 		case MGN_9M:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Rate18_06, bMaskByte1, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Rate18_06, bMaskByte1,
+				     PowerIndex);
 			break;
 		case MGN_12M:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Rate18_06, bMaskByte2, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Rate18_06, bMaskByte2,
+				     PowerIndex);
 			break;
 		case MGN_18M:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Rate18_06, bMaskByte3, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Rate18_06, bMaskByte3,
+				     PowerIndex);
 			break;
 
 		case MGN_24M:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Rate54_24, bMaskByte0, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Rate54_24, bMaskByte0,
+				     PowerIndex);
 			break;
 		case MGN_36M:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Rate54_24, bMaskByte1, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Rate54_24, bMaskByte1,
+				     PowerIndex);
 			break;
 		case MGN_48M:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Rate54_24, bMaskByte2, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Rate54_24, bMaskByte2,
+				     PowerIndex);
 			break;
 		case MGN_54M:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Rate54_24, bMaskByte3, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Rate54_24, bMaskByte3,
+				     PowerIndex);
 			break;
 
 		case MGN_MCS0:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs03_Mcs00, bMaskByte0, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs03_Mcs00, bMaskByte0,
+				     PowerIndex);
 			break;
 		case MGN_MCS1:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs03_Mcs00, bMaskByte1, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs03_Mcs00, bMaskByte1,
+				     PowerIndex);
 			break;
 		case MGN_MCS2:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs03_Mcs00, bMaskByte2, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs03_Mcs00, bMaskByte2,
+				     PowerIndex);
 			break;
 		case MGN_MCS3:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs03_Mcs00, bMaskByte3, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs03_Mcs00, bMaskByte3,
+				     PowerIndex);
 			break;
 
 		case MGN_MCS4:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs07_Mcs04, bMaskByte0, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs07_Mcs04, bMaskByte0,
+				     PowerIndex);
 			break;
 		case MGN_MCS5:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs07_Mcs04, bMaskByte1, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs07_Mcs04, bMaskByte1,
+				     PowerIndex);
 			break;
 		case MGN_MCS6:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs07_Mcs04, bMaskByte2, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs07_Mcs04, bMaskByte2,
+				     PowerIndex);
 			break;
 		case MGN_MCS7:
-			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs07_Mcs04, bMaskByte3, PowerIndex);
+			PHY_SetBBReg(Adapter, rTxAGC_A_Mcs07_Mcs04, bMaskByte3,
+				     PowerIndex);
 			break;
 
 		default:
@@ -510,28 +547,20 @@ void PHY_SetTxPowerIndex(
 	}
 }
 
-u8 PHY_GetTxPowerIndex(
-	struct adapter *padapter,
-	u8 RFPath,
-	u8 Rate,
-	enum channel_width BandWidth,
-	u8 Channel
-)
+u8 PHY_GetTxPowerIndex(struct adapter *padapter, u8 RFPath, u8 Rate,
+		       enum channel_width BandWidth, u8 Channel)
 {
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 	s8 txPower = 0, powerDiffByRate = 0, limit = 0;
 
-	txPower = (s8)PHY_GetTxPowerIndexBase(padapter, RFPath, Rate, BandWidth, Channel);
+	txPower = (s8)PHY_GetTxPowerIndexBase(padapter, RFPath, Rate, BandWidth,
+					      Channel);
 	powerDiffByRate = PHY_GetTxPowerByRate(padapter, RF_PATH_A, Rate);
 
-	limit = phy_get_tx_pwr_lmt(
-		padapter,
-		padapter->registrypriv.reg_pwr_tbl_sel,
-		pHalData->CurrentChannelBW,
-		RFPath,
-		Rate,
-		pHalData->CurrentChannel
-	);
+	limit = phy_get_tx_pwr_lmt(padapter,
+				   padapter->registrypriv.reg_pwr_tbl_sel,
+				   pHalData->CurrentChannelBW, RFPath, Rate,
+				   pHalData->CurrentChannel);
 
 	powerDiffByRate = powerDiffByRate > limit ? limit : powerDiffByRate;
 	txPower += powerDiffByRate;
@@ -551,8 +580,9 @@ void PHY_SetTxPowerLevel8723B(struct adapter *Adapter, u8 Channel)
 	struct fat_t *pDM_FatTable = &pDM_Odm->DM_FatTable;
 	u8 RFPath = RF_PATH_A;
 
-	if (pHalData->AntDivCfg) {/*  antenna diversity Enable */
-		RFPath = ((pDM_FatTable->RxIdleAnt == MAIN_ANT) ? RF_PATH_A : RF_PATH_B);
+	if (pHalData->AntDivCfg) { /*  antenna diversity Enable */
+		RFPath = ((pDM_FatTable->RxIdleAnt == MAIN_ANT) ? RF_PATH_A :
+								  RF_PATH_B);
 	} else { /*  antenna diversity disable */
 		RFPath = pHalData->ant_path;
 	}
@@ -560,9 +590,8 @@ void PHY_SetTxPowerLevel8723B(struct adapter *Adapter, u8 Channel)
 	PHY_SetTxPowerLevelByPath(Adapter, Channel, RFPath);
 }
 
-static void phy_SetRegBW_8723B(
-	struct adapter *Adapter, enum channel_width CurrentBW
-)
+static void phy_SetRegBW_8723B(struct adapter *Adapter,
+			       enum channel_width CurrentBW)
 {
 	u16 RegRfMod_BW, u2tmp = 0;
 
@@ -570,12 +599,14 @@ static void phy_SetRegBW_8723B(
 
 	switch (CurrentBW) {
 	case CHANNEL_WIDTH_20:
-		rtw_write16(Adapter, REG_TRXPTCL_CTL_8723B, (RegRfMod_BW & 0xFE7F)); /*  BIT 7 = 0, BIT 8 = 0 */
+		rtw_write16(Adapter, REG_TRXPTCL_CTL_8723B,
+			    (RegRfMod_BW & 0xFE7F)); /*  BIT 7 = 0, BIT 8 = 0 */
 		break;
 
 	case CHANNEL_WIDTH_40:
 		u2tmp = RegRfMod_BW | BIT(7);
-		rtw_write16(Adapter, REG_TRXPTCL_CTL_8723B, (u2tmp & 0xFEFF)); /*  BIT 7 = 1, BIT 8 = 0 */
+		rtw_write16(Adapter, REG_TRXPTCL_CTL_8723B,
+			    (u2tmp & 0xFEFF)); /*  BIT 7 = 1, BIT 8 = 0 */
 		break;
 
 	default:
@@ -591,11 +622,12 @@ static u8 phy_GetSecondaryChnl_8723B(struct adapter *Adapter)
 	if (pHalData->CurrentChannelBW == CHANNEL_WIDTH_40) {
 		if (pHalData->nCur40MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_UPPER)
 			SCSettingOf20 = HT_DATA_SC_20_UPPER_OF_40MHZ;
-		else if (pHalData->nCur40MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_LOWER)
+		else if (pHalData->nCur40MhzPrimeSC ==
+			 HAL_PRIME_CHNL_OFFSET_LOWER)
 			SCSettingOf20 = HT_DATA_SC_20_LOWER_OF_40MHZ;
 	}
 
-	return  (SCSettingOf40 << 4) | SCSettingOf20;
+	return (SCSettingOf40 << 4) | SCSettingOf20;
 }
 
 static void phy_PostSetBwMode8723B(struct adapter *Adapter)
@@ -620,7 +652,8 @@ static void phy_PostSetBwMode8723B(struct adapter *Adapter)
 
 		PHY_SetBBReg(Adapter, rFPGA1_RFMOD, bRFMOD, 0x0);
 
-		PHY_SetBBReg(Adapter, rOFDM0_TxPseudoNoiseWgt, (BIT(31) | BIT(30)), 0x0);
+		PHY_SetBBReg(Adapter, rOFDM0_TxPseudoNoiseWgt,
+			     (BIT(31) | BIT(30)), 0x0);
 		break;
 
 	/* 40 MHz channel*/
@@ -630,11 +663,17 @@ static void phy_PostSetBwMode8723B(struct adapter *Adapter)
 		PHY_SetBBReg(Adapter, rFPGA1_RFMOD, bRFMOD, 0x1);
 
 		/*  Set Control channel to upper or lower. These settings are required only for 40MHz */
-		PHY_SetBBReg(Adapter, rCCK0_System, bCCKSideBand, (pHalData->nCur40MhzPrimeSC >> 1));
+		PHY_SetBBReg(Adapter, rCCK0_System, bCCKSideBand,
+			     (pHalData->nCur40MhzPrimeSC >> 1));
 
-		PHY_SetBBReg(Adapter, rOFDM1_LSTF, 0xC00, pHalData->nCur40MhzPrimeSC);
+		PHY_SetBBReg(Adapter, rOFDM1_LSTF, 0xC00,
+			     pHalData->nCur40MhzPrimeSC);
 
-		PHY_SetBBReg(Adapter, 0x818, (BIT(26) | BIT(27)), (pHalData->nCur40MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_LOWER) ? 2 : 1);
+		PHY_SetBBReg(Adapter, 0x818, (BIT(26) | BIT(27)),
+			     (pHalData->nCur40MhzPrimeSC ==
+			      HAL_PRIME_CHNL_OFFSET_LOWER) ?
+				     2 :
+				     1);
 		break;
 	default:
 		break;
@@ -651,9 +690,12 @@ static void phy_SwChnl8723B(struct adapter *padapter)
 
 	if (pHalData->rf_chip == RF_PSEUDO_11N)
 		return;
-	pHalData->RfRegChnlVal[0] = ((pHalData->RfRegChnlVal[0] & 0xfffff00) | channelToSW);
-	PHY_SetRFReg(padapter, RF_PATH_A, RF_CHNLBW, 0x3FF, pHalData->RfRegChnlVal[0]);
-	PHY_SetRFReg(padapter, RF_PATH_B, RF_CHNLBW, 0x3FF, pHalData->RfRegChnlVal[0]);
+	pHalData->RfRegChnlVal[0] =
+		((pHalData->RfRegChnlVal[0] & 0xfffff00) | channelToSW);
+	PHY_SetRFReg(padapter, RF_PATH_A, RF_CHNLBW, 0x3FF,
+		     pHalData->RfRegChnlVal[0]);
+	PHY_SetRFReg(padapter, RF_PATH_B, RF_CHNLBW, 0x3FF,
+		     pHalData->RfRegChnlVal[0]);
 }
 
 static void phy_SwChnlAndSetBwMode8723B(struct adapter *Adapter)
@@ -677,15 +719,10 @@ static void phy_SwChnlAndSetBwMode8723B(struct adapter *Adapter)
 }
 
 static void PHY_HandleSwChnlAndSetBW8723B(
-	struct adapter *Adapter,
-	bool bSwitchChannel,
-	bool bSetBandWidth,
-	u8 ChannelNum,
-	enum channel_width ChnlWidth,
+	struct adapter *Adapter, bool bSwitchChannel, bool bSetBandWidth,
+	u8 ChannelNum, enum channel_width ChnlWidth,
 	enum extchnl_offset ExtChnlOffsetOf40MHz,
-	enum extchnl_offset ExtChnlOffsetOf80MHz,
-	u8 CenterFrequencyIndex1
-)
+	enum extchnl_offset ExtChnlOffsetOf80MHz, u8 CenterFrequencyIndex1)
 {
 	/* static bool		bInitialzed = false; */
 	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
@@ -738,7 +775,8 @@ static void PHY_HandleSwChnlAndSetBW8723B(
 			pHalData->CurrentChannelBW = tmpBW;
 			pHalData->nCur40MhzPrimeSC = tmpnCur40MhzPrimeSC;
 			pHalData->nCur80MhzPrimeSC = tmpnCur80MhzPrimeSC;
-			pHalData->CurrentCenterFrequencyIndex1 = tmpCenterFrequencyIndex1;
+			pHalData->CurrentCenterFrequencyIndex1 =
+				tmpCenterFrequencyIndex1;
 		}
 	}
 }
@@ -746,16 +784,14 @@ static void PHY_HandleSwChnlAndSetBW8723B(
 /*  Call after initialization */
 void PHY_SwChnl8723B(struct adapter *Adapter, u8 channel)
 {
-	PHY_HandleSwChnlAndSetBW8723B(Adapter, true, false, channel, 0, 0, 0, channel);
+	PHY_HandleSwChnlAndSetBW8723B(Adapter, true, false, channel, 0, 0, 0,
+				      channel);
 }
 
-void PHY_SetSwChnlBWMode8723B(
-	struct adapter *Adapter,
-	u8 channel,
-	enum channel_width Bandwidth,
-	u8 Offset40,
-	u8 Offset80
-)
+void PHY_SetSwChnlBWMode8723B(struct adapter *Adapter, u8 channel,
+			      enum channel_width Bandwidth, u8 Offset40,
+			      u8 Offset80)
 {
-	PHY_HandleSwChnlAndSetBW8723B(Adapter, true, true, channel, Bandwidth, Offset40, Offset80, channel);
+	PHY_HandleSwChnlAndSetBW8723B(Adapter, true, true, channel, Bandwidth,
+				      Offset40, Offset80, channel);
 }
diff --git a/drivers/staging/rtl8723bs/hal/rtl8723b_rf6052.c b/drivers/staging/rtl8723bs/hal/rtl8723b_rf6052.c
index da4cb28276b26..623b8c977d944 100644
--- a/drivers/staging/rtl8723bs/hal/rtl8723b_rf6052.c
+++ b/drivers/staging/rtl8723bs/hal/rtl8723b_rf6052.c
@@ -53,29 +53,34 @@
  * Note:		For RF type 0222D
  *---------------------------------------------------------------------------
  */
-void PHY_RF6052SetBandwidth8723B(
-	struct adapter *Adapter, enum channel_width Bandwidth
-) /* 20M or 40M */
+void PHY_RF6052SetBandwidth8723B(struct adapter *Adapter,
+				 enum channel_width Bandwidth) /* 20M or 40M */
 {
 	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 
 	switch (Bandwidth) {
 	case CHANNEL_WIDTH_20:
-		pHalData->RfRegChnlVal[0] = ((pHalData->RfRegChnlVal[0] & 0xfffff3ff) | BIT(10) | BIT(11));
-		PHY_SetRFReg(Adapter, RF_PATH_A, RF_CHNLBW, bRFRegOffsetMask, pHalData->RfRegChnlVal[0]);
-		PHY_SetRFReg(Adapter, RF_PATH_B, RF_CHNLBW, bRFRegOffsetMask, pHalData->RfRegChnlVal[0]);
+		pHalData->RfRegChnlVal[0] =
+			((pHalData->RfRegChnlVal[0] & 0xfffff3ff) | BIT(10) |
+			 BIT(11));
+		PHY_SetRFReg(Adapter, RF_PATH_A, RF_CHNLBW, bRFRegOffsetMask,
+			     pHalData->RfRegChnlVal[0]);
+		PHY_SetRFReg(Adapter, RF_PATH_B, RF_CHNLBW, bRFRegOffsetMask,
+			     pHalData->RfRegChnlVal[0]);
 		break;
 
 	case CHANNEL_WIDTH_40:
-		pHalData->RfRegChnlVal[0] = ((pHalData->RfRegChnlVal[0] & 0xfffff3ff) | BIT(10));
-		PHY_SetRFReg(Adapter, RF_PATH_A, RF_CHNLBW, bRFRegOffsetMask, pHalData->RfRegChnlVal[0]);
-		PHY_SetRFReg(Adapter, RF_PATH_B, RF_CHNLBW, bRFRegOffsetMask, pHalData->RfRegChnlVal[0]);
+		pHalData->RfRegChnlVal[0] =
+			((pHalData->RfRegChnlVal[0] & 0xfffff3ff) | BIT(10));
+		PHY_SetRFReg(Adapter, RF_PATH_A, RF_CHNLBW, bRFRegOffsetMask,
+			     pHalData->RfRegChnlVal[0]);
+		PHY_SetRFReg(Adapter, RF_PATH_B, RF_CHNLBW, bRFRegOffsetMask,
+			     pHalData->RfRegChnlVal[0]);
 		break;
 
 	default:
 		break;
 	}
-
 }
 
 static int phy_RF6052_Config_ParaFile(struct adapter *Adapter)
@@ -90,33 +95,36 @@ static int phy_RF6052_Config_ParaFile(struct adapter *Adapter)
 	/* 3----------------------------------------------------------------- */
 	/* for (eRFPath = RF_PATH_A; eRFPath <pHalData->NumTotalRFPath; eRFPath++) */
 	for (eRFPath = 0; eRFPath < pHalData->NumTotalRFPath; eRFPath++) {
-
 		pPhyReg = &pHalData->PHYRegDef[eRFPath];
 
 		/*----Store original RFENV control type----*/
 		switch (eRFPath) {
 		case RF_PATH_A:
-			u4RegValue = PHY_QueryBBReg(Adapter, pPhyReg->rfintfs, bRFSI_RFENV);
+			u4RegValue = PHY_QueryBBReg(Adapter, pPhyReg->rfintfs,
+						    bRFSI_RFENV);
 			break;
 		case RF_PATH_B:
-			u4RegValue = PHY_QueryBBReg(Adapter, pPhyReg->rfintfs, bRFSI_RFENV << 16);
+			u4RegValue = PHY_QueryBBReg(Adapter, pPhyReg->rfintfs,
+						    bRFSI_RFENV << 16);
 			break;
 		}
 
 		/*----Set RF_ENV enable----*/
 		PHY_SetBBReg(Adapter, pPhyReg->rfintfe, bRFSI_RFENV << 16, 0x1);
-		udelay(1);/* PlatformStallExecution(1); */
+		udelay(1); /* PlatformStallExecution(1); */
 
 		/*----Set RF_ENV output high----*/
 		PHY_SetBBReg(Adapter, pPhyReg->rfintfo, bRFSI_RFENV, 0x1);
-		udelay(1);/* PlatformStallExecution(1); */
+		udelay(1); /* PlatformStallExecution(1); */
 
 		/* Set bit number of Address and Data for RF register */
-		PHY_SetBBReg(Adapter, pPhyReg->rfHSSIPara2, b3WireAddressLength, 0x0);	/*  Set 1 to 4 bits for 8255 */
-		udelay(1);/* PlatformStallExecution(1); */
+		PHY_SetBBReg(Adapter, pPhyReg->rfHSSIPara2, b3WireAddressLength,
+			     0x0); /*  Set 1 to 4 bits for 8255 */
+		udelay(1); /* PlatformStallExecution(1); */
 
-		PHY_SetBBReg(Adapter, pPhyReg->rfHSSIPara2, b3WireDataLength, 0x0);	/*  Set 0 to 12  bits for 8255 */
-		udelay(1);/* PlatformStallExecution(1); */
+		PHY_SetBBReg(Adapter, pPhyReg->rfHSSIPara2, b3WireDataLength,
+			     0x0); /*  Set 0 to 12  bits for 8255 */
+		udelay(1); /* PlatformStallExecution(1); */
 
 		/*----Initialize RF fom connfiguration file----*/
 		switch (eRFPath) {
@@ -130,10 +138,12 @@ static int phy_RF6052_Config_ParaFile(struct adapter *Adapter)
 		/*----Restore RFENV control type----*/
 		switch (eRFPath) {
 		case RF_PATH_A:
-			PHY_SetBBReg(Adapter, pPhyReg->rfintfs, bRFSI_RFENV, u4RegValue);
+			PHY_SetBBReg(Adapter, pPhyReg->rfintfs, bRFSI_RFENV,
+				     u4RegValue);
 			break;
 		case RF_PATH_B:
-			PHY_SetBBReg(Adapter, pPhyReg->rfintfs, bRFSI_RFENV << 16, u4RegValue);
+			PHY_SetBBReg(Adapter, pPhyReg->rfintfs,
+				     bRFSI_RFENV << 16, u4RegValue);
 			break;
 		}
 	}
@@ -160,7 +170,6 @@ int PHY_RF6052_Config8723B(struct adapter *Adapter)
 	/*  Config BB and RF */
 	/*  */
 	return phy_RF6052_Config_ParaFile(Adapter);
-
 }
 
 /* End of HalRf6052.c */
diff --git a/drivers/staging/rtl8723bs/hal/rtl8723b_rxdesc.c b/drivers/staging/rtl8723bs/hal/rtl8723b_rxdesc.c
index ac12496767944..164d50b03e769 100644
--- a/drivers/staging/rtl8723bs/hal/rtl8723b_rxdesc.c
+++ b/drivers/staging/rtl8723bs/hal/rtl8723b_rxdesc.c
@@ -10,7 +10,8 @@
 static void process_rssi(struct adapter *padapter, union recv_frame *prframe)
 {
 	struct rx_pkt_attrib *pattrib = &prframe->u.hdr.attrib;
-	struct signal_stat *signal_stat = &padapter->recvpriv.signal_strength_data;
+	struct signal_stat *signal_stat =
+		&padapter->recvpriv.signal_strength_data;
 
 	/* if (pRfd->Status.bPacketToSelf || pRfd->Status.bPacketBeacon) */
 	{
@@ -21,13 +22,15 @@ static void process_rssi(struct adapter *padapter, union recv_frame *prframe)
 		}
 
 		signal_stat->total_num++;
-		signal_stat->total_val  += pattrib->phy_info.SignalStrength;
-		signal_stat->avg_val = signal_stat->total_val / signal_stat->total_num;
+		signal_stat->total_val += pattrib->phy_info.SignalStrength;
+		signal_stat->avg_val =
+			signal_stat->total_val / signal_stat->total_num;
 	}
 
 } /*  Process_UI_RSSI_8192C */
 
-static void process_link_qual(struct adapter *padapter, union recv_frame *prframe)
+static void process_link_qual(struct adapter *padapter,
+			      union recv_frame *prframe)
 {
 	struct rx_pkt_attrib *pattrib;
 	struct signal_stat *signal_stat;
@@ -45,7 +48,7 @@ static void process_link_qual(struct adapter *padapter, union recv_frame *prfram
 	}
 
 	signal_stat->total_num++;
-	signal_stat->total_val  += pattrib->phy_info.SignalQuality;
+	signal_stat->total_val += pattrib->phy_info.SignalQuality;
 	signal_stat->avg_val = signal_stat->total_val / signal_stat->total_num;
 } /*  Process_UiLinkQuality8192S */
 
@@ -65,5 +68,5 @@ void rtl8723b_process_phy_info(struct adapter *padapter, void *prframe)
 	/*  */
 	/*  Check EVM */
 	/*  */
-	process_link_qual(padapter,  precvframe);
+	process_link_qual(padapter, precvframe);
 }
diff --git a/drivers/staging/rtl8723bs/hal/rtl8723bs_recv.c b/drivers/staging/rtl8723bs/hal/rtl8723bs_recv.c
index 97dce28fd0a37..d4e08ff64580c 100644
--- a/drivers/staging/rtl8723bs/hal/rtl8723bs_recv.c
+++ b/drivers/staging/rtl8723bs/hal/rtl8723bs_recv.c
@@ -88,11 +88,11 @@ static void update_recvframe_phyinfo(union recv_frame *precvframe,
 	u8 *sa = NULL;
 
 	struct odm_packet_info pkt_info = {
-		.data_rate   = 0x00,
-		.station_id  = 0x00,
+		.data_rate = 0x00,
+		.station_id = 0x00,
 		.bssid_match = false,
-		.to_self     = false,
-		.is_beacon   = false,
+		.to_self = false,
+		.is_beacon = false,
 	};
 
 	/* unsigned long		irqL; */
@@ -108,10 +108,10 @@ static void update_recvframe_phyinfo(union recv_frame *precvframe,
 	rx_ra = rtl8723bs_get_ra(wlanhdr);
 	my_hwaddr = myid(&padapter->eeprompriv);
 	pkt_info.to_self = pkt_info.bssid_match &&
-		ether_addr_equal(rx_ra, my_hwaddr);
+			   ether_addr_equal(rx_ra, my_hwaddr);
 
 	pkt_info.is_beacon = pkt_info.bssid_match &&
-		(GetFrameSubType(wlanhdr) == WIFI_BEACON);
+			     (GetFrameSubType(wlanhdr) == WIFI_BEACON);
 
 	sa = get_ta(wlanhdr);
 
@@ -127,15 +127,13 @@ static void update_recvframe_phyinfo(union recv_frame *precvframe,
 	/* rtl8723b_query_rx_phy_status(precvframe, pphy_status); */
 	/* spin_lock_bh(&p_hal_data->odm_stainfo_lock); */
 	odm_phy_status_query(&p_hal_data->odmpriv, p_phy_info,
-			   (u8 *)pphy_status, &(pkt_info));
+			     (u8 *)pphy_status, &(pkt_info));
 	if (psta)
 		psta->rssi = pattrib->phy_info.RecvSignalPower;
 	/* spin_unlock_bh(&p_hal_data->odm_stainfo_lock); */
 	precvframe->u.hdr.psta = NULL;
-	if (
-		pkt_info.bssid_match &&
-		(check_fwstate(&padapter->mlmepriv, WIFI_AP_STATE))
-	) {
+	if (pkt_info.bssid_match &&
+	    (check_fwstate(&padapter->mlmepriv, WIFI_AP_STATE))) {
 		if (psta) {
 			precvframe->u.hdr.psta = psta;
 			rtl8723b_process_phy_info(padapter, precvframe);
@@ -150,8 +148,8 @@ static void update_recvframe_phyinfo(union recv_frame *precvframe,
 	}
 }
 
-static void rtl8723bs_c2h_packet_handler(struct adapter *padapter,
-					 u8 *pbuf, u16 length)
+static void rtl8723bs_c2h_packet_handler(struct adapter *padapter, u8 *pbuf,
+					 u16 length)
 {
 	u8 *tmp = NULL;
 	u8 res = false;
@@ -201,9 +199,8 @@ static inline bool rx_crc_err(struct recv_priv *precvpriv,
 	return false;
 }
 
-static inline bool pkt_exceeds_tail(struct recv_priv *precvpriv,
-				    u8 *end, u8 *tail,
-				    union recv_frame *precvframe)
+static inline bool pkt_exceeds_tail(struct recv_priv *precvpriv, u8 *end,
+				    u8 *tail, union recv_frame *precvframe)
 {
 	if (end > tail) {
 		rtw_free_recvframe(precvframe, &precvpriv->free_recv_queue);
@@ -215,8 +212,8 @@ static inline bool pkt_exceeds_tail(struct recv_priv *precvpriv,
 
 static void rtl8723bs_recv_tasklet(struct tasklet_struct *t)
 {
-	struct adapter *padapter = from_tasklet(padapter, t,
-						recvpriv.recv_tasklet);
+	struct adapter *padapter =
+		from_tasklet(padapter, t, recvpriv.recv_tasklet);
 	struct hal_com_data *p_hal_data;
 	struct recv_priv *precvpriv;
 	struct recv_buf *precvbuf;
@@ -250,14 +247,13 @@ static void rtl8723bs_recv_tasklet(struct tasklet_struct *t)
 
 			pattrib = &precvframe->u.hdr.attrib;
 
-			if (rx_crc_err(precvpriv, p_hal_data,
-				       pattrib, precvframe))
+			if (rx_crc_err(precvpriv, p_hal_data, pattrib,
+				       precvframe))
 				break;
 
 			rx_report_sz = RXDESC_SIZE + pattrib->drvinfo_sz;
-			pkt_offset = rx_report_sz +
-				pattrib->shift_sz +
-				pattrib->pkt_len;
+			pkt_offset = rx_report_sz + pattrib->shift_sz +
+				     pattrib->pkt_len;
 
 			if (pkt_exceeds_tail(precvpriv, ptr + pkt_offset,
 					     precvbuf->ptail, precvframe))
@@ -269,7 +265,7 @@ static void rtl8723bs_recv_tasklet(struct tasklet_struct *t)
 			} else {
 				/* 	Modified by Albert 20101213 */
 				/* 	For 8 bytes IP header alignment. */
-				if (pattrib->qos)	/* 	Qos data, wireless lan header length is 26 */
+				if (pattrib->qos) /* 	Qos data, wireless lan header length is 26 */
 					shift_sz = 6;
 				else
 					shift_sz = 0;
@@ -278,7 +274,8 @@ static void rtl8723bs_recv_tasklet(struct tasklet_struct *t)
 
 				/*  for first fragment packet, driver need allocate 1536+drvinfo_sz+RXDESC_SIZE to defrag packet. */
 				/*  modify alloc_sz for recvive crc error packet by thomas 2011-06-02 */
-				if ((pattrib->mfrag == 1) && (pattrib->frag_num == 0)) {
+				if ((pattrib->mfrag == 1) &&
+				    (pattrib->frag_num == 0)) {
 					if (skb_len <= 1650)
 						alloc_sz = 1664;
 					else
@@ -290,59 +287,87 @@ static void rtl8723bs_recv_tasklet(struct tasklet_struct *t)
 					alloc_sz += 14;
 				}
 
-				pkt_copy = __dev_alloc_skb(alloc_sz, GFP_ATOMIC);
+				pkt_copy =
+					__dev_alloc_skb(alloc_sz, GFP_ATOMIC);
 				if (!pkt_copy) {
-					rtw_free_recvframe(precvframe, &precvpriv->free_recv_queue);
+					rtw_free_recvframe(
+						precvframe,
+						&precvpriv->free_recv_queue);
 					break;
 				}
 
 				pkt_copy->dev = padapter->pnetdev;
 				precvframe->u.hdr.pkt = pkt_copy;
-				skb_reserve(pkt_copy, 8 - ((SIZE_PTR)(pkt_copy->data) & 7));/* force pkt_copy->data at 8-byte alignment address */
-				skb_reserve(pkt_copy, shift_sz);/* force ip_hdr at 8-byte alignment address according to shift_sz. */
-				memcpy(pkt_copy->data, (ptr + rx_report_sz + pattrib->shift_sz), skb_len);
+				skb_reserve(
+					pkt_copy,
+					8 - ((SIZE_PTR)(pkt_copy->data) &
+					     7)); /* force pkt_copy->data at 8-byte alignment address */
+				skb_reserve(
+					pkt_copy,
+					shift_sz); /* force ip_hdr at 8-byte alignment address according to shift_sz. */
+				memcpy(pkt_copy->data,
+				       (ptr + rx_report_sz + pattrib->shift_sz),
+				       skb_len);
 				precvframe->u.hdr.rx_head = pkt_copy->head;
-				precvframe->u.hdr.rx_data = precvframe->u.hdr.rx_tail = pkt_copy->data;
-				precvframe->u.hdr.rx_end = skb_end_pointer(pkt_copy);
+				precvframe->u.hdr.rx_data =
+					precvframe->u.hdr.rx_tail =
+						pkt_copy->data;
+				precvframe->u.hdr.rx_end =
+					skb_end_pointer(pkt_copy);
 
 				recvframe_put(precvframe, skb_len);
 				/* recvframe_pull(precvframe, drvinfo_sz + RXDESC_SIZE); */
 
 				if (p_hal_data->ReceiveConfig & RCR_APPFCS)
-					recvframe_pull_tail(precvframe, IEEE80211_FCS_LEN);
+					recvframe_pull_tail(precvframe,
+							    IEEE80211_FCS_LEN);
 
 				/*  move to drv info position */
 				ptr += RXDESC_SIZE;
 
 				/*  update drv info */
-				if (p_hal_data->ReceiveConfig & RCR_APP_BA_SSN) {
+				if (p_hal_data->ReceiveConfig &
+				    RCR_APP_BA_SSN) {
 					/* rtl8723s_update_bassn(padapter, pdrvinfo); */
 					ptr += 4;
 				}
 
-				if (pattrib->pkt_rpt_type == NORMAL_RX) { /* Normal rx packet */
+				if (pattrib->pkt_rpt_type ==
+				    NORMAL_RX) { /* Normal rx packet */
 					if (pattrib->physt)
-						update_recvframe_phyinfo(precvframe, (struct phy_stat *)ptr);
+						update_recvframe_phyinfo(
+							precvframe,
+							(struct phy_stat *)ptr);
 
 					rtw_recv_entry(precvframe);
-				} else if (pattrib->pkt_rpt_type == C2H_PACKET) {
-					struct c2h_evt_hdr_t	C2hEvent;
+				} else if (pattrib->pkt_rpt_type ==
+					   C2H_PACKET) {
+					struct c2h_evt_hdr_t C2hEvent;
 
 					u16 len_c2h = pattrib->pkt_len;
-					u8 *pbuf_c2h = precvframe->u.hdr.rx_data;
+					u8 *pbuf_c2h =
+						precvframe->u.hdr.rx_data;
 					u8 *pdata_c2h;
 
 					C2hEvent.CmdID = pbuf_c2h[0];
 					C2hEvent.CmdSeq = pbuf_c2h[1];
-					C2hEvent.CmdLen = (len_c2h-2);
-					pdata_c2h = pbuf_c2h+2;
+					C2hEvent.CmdLen = (len_c2h - 2);
+					pdata_c2h = pbuf_c2h + 2;
 
 					if (C2hEvent.CmdID == C2H_CCX_TX_RPT)
-						CCX_FwC2HTxRpt_8723b(padapter, pdata_c2h, C2hEvent.CmdLen);
+						CCX_FwC2HTxRpt_8723b(
+							padapter, pdata_c2h,
+							C2hEvent.CmdLen);
 					else
-						rtl8723bs_c2h_packet_handler(padapter, precvframe->u.hdr.rx_data, pattrib->pkt_len);
-
-					rtw_free_recvframe(precvframe, &precvpriv->free_recv_queue);
+						rtl8723bs_c2h_packet_handler(
+							padapter,
+							precvframe->u.hdr
+								.rx_data,
+							pattrib->pkt_len);
+
+					rtw_free_recvframe(
+						precvframe,
+						&precvpriv->free_recv_queue);
 				}
 			}
 
@@ -386,7 +411,8 @@ s32 rtl8723bs_init_recv_priv(struct adapter *padapter)
 		goto exit;
 	}
 
-	precvpriv->precv_buf = (u8 *)N_BYTE_ALIGMENT((SIZE_PTR)(precvpriv->pallocated_recv_buf), 4);
+	precvpriv->precv_buf = (u8 *)N_BYTE_ALIGMENT(
+		(SIZE_PTR)(precvpriv->pallocated_recv_buf), 4);
 
 	/*  init each recv buffer */
 	precvbuf = (struct recv_buf *)precvpriv->precv_buf;
@@ -397,17 +423,20 @@ s32 rtl8723bs_init_recv_priv(struct adapter *padapter)
 			SIZE_PTR tmpaddr = 0;
 			SIZE_PTR alignment = 0;
 
-			precvbuf->pskb = __dev_alloc_skb(MAX_RECVBUF_SZ + RECVBUFF_ALIGN_SZ, GFP_ATOMIC);
+			precvbuf->pskb = __dev_alloc_skb(
+				MAX_RECVBUF_SZ + RECVBUFF_ALIGN_SZ, GFP_ATOMIC);
 			if (precvbuf->pskb) {
 				precvbuf->pskb->dev = padapter->pnetdev;
 
 				tmpaddr = (SIZE_PTR)precvbuf->pskb->data;
-				alignment = tmpaddr & (RECVBUFF_ALIGN_SZ-1);
-				skb_reserve(precvbuf->pskb, (RECVBUFF_ALIGN_SZ - alignment));
+				alignment = tmpaddr & (RECVBUFF_ALIGN_SZ - 1);
+				skb_reserve(precvbuf->pskb,
+					    (RECVBUFF_ALIGN_SZ - alignment));
 			}
 		}
 
-		list_add_tail(&precvbuf->list, &precvpriv->free_recv_buf_queue.queue);
+		list_add_tail(&precvbuf->list,
+			      &precvpriv->free_recv_buf_queue.queue);
 
 		precvbuf++;
 	}
@@ -426,7 +455,7 @@ s32 rtl8723bs_init_recv_priv(struct adapter *padapter)
 	if (precvbuf) {
 		n = precvpriv->free_recv_buf_queue_cnt;
 		precvpriv->free_recv_buf_queue_cnt = 0;
-		for (i = 0; i < n ; i++) {
+		for (i = 0; i < n; i++) {
 			list_del_init(&precvbuf->list);
 			if (precvbuf->pskb)
 				dev_kfree_skb_any(precvbuf->pskb);
diff --git a/drivers/staging/rtl8723bs/hal/rtl8723bs_xmit.c b/drivers/staging/rtl8723bs/hal/rtl8723bs_xmit.c
index e40f69c13c44f..2d60f137688fa 100644
--- a/drivers/staging/rtl8723bs/hal/rtl8723bs_xmit.c
+++ b/drivers/staging/rtl8723bs/hal/rtl8723bs_xmit.c
@@ -14,10 +14,7 @@ static u8 rtw_sdio_wait_enough_TxOQT_space(struct adapter *padapter, u8 agg_num)
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
 	while (pHalData->SdioTxOQTFreeSpace < agg_num) {
-		if (
-			(padapter->bSurpriseRemoved) ||
-			(padapter->bDriverStopped)
-		)
+		if ((padapter->bSurpriseRemoved) || (padapter->bDriverStopped))
 			return false;
 
 		HalQueryTxOQTBufferStatus8723BSdio(padapter);
@@ -74,7 +71,8 @@ static s32 rtl8723_dequeue_writeport(struct adapter *padapter)
 
 query_free_page:
 	/*  check if hardware tx fifo page is enough */
-	if (!rtw_hal_sdio_query_tx_freepage(pri_padapter, PageIdx, pxmitbuf->pg_num)) {
+	if (!rtw_hal_sdio_query_tx_freepage(pri_padapter, PageIdx,
+					    pxmitbuf->pg_num)) {
 		if (!bUpdatePageNum) {
 			/* Total page count is not available, so update current FIFO status */
 			HalQueryTxBufferStatus8723BSdio(padapter);
@@ -87,10 +85,7 @@ static s32 rtl8723_dequeue_writeport(struct adapter *padapter)
 		}
 	}
 
-	if (
-		(padapter->bSurpriseRemoved) ||
-		(padapter->bDriverStopped)
-	)
+	if ((padapter->bSurpriseRemoved) || (padapter->bDriverStopped))
 		goto free_xmitbuf;
 
 	if (!rtw_sdio_wait_enough_TxOQT_space(padapter, pxmitbuf->agg_num))
@@ -100,7 +95,8 @@ static s32 rtl8723_dequeue_writeport(struct adapter *padapter)
 
 	rtw_write_port(padapter, deviceId, pxmitbuf->len, (u8 *)pxmitbuf);
 
-	rtw_hal_sdio_update_tx_freepage(pri_padapter, PageIdx, pxmitbuf->pg_num);
+	rtw_hal_sdio_update_tx_freepage(pri_padapter, PageIdx,
+					pxmitbuf->pg_num);
 
 free_xmitbuf:
 	/* rtw_free_xmitframe(pxmitpriv, pframe); */
@@ -146,7 +142,7 @@ s32 rtl8723bs_xmit_buf_handler(struct adapter *padapter)
 
 	do {
 		queue_empty = rtl8723_dequeue_writeport(padapter);
-/*	dump secondary adapter xmitbuf */
+		/*	dump secondary adapter xmitbuf */
 	} while (!queue_empty);
 
 	rtw_unregister_tx_alive(padapter);
@@ -163,14 +159,16 @@ s32 rtl8723bs_xmit_buf_handler(struct adapter *padapter)
  *-1	Hardware resource(TX FIFO) not ready
  *-2	Software resource(xmitbuf) not ready
  */
-static s32 xmit_xmitframes(struct adapter *padapter, struct xmit_priv *pxmitpriv)
+static s32 xmit_xmitframes(struct adapter *padapter,
+			   struct xmit_priv *pxmitpriv)
 {
 	s32 err, ret;
 	u32 k = 0;
 	struct hw_xmit *hwxmits, *phwxmit;
 	u8 idx, hwentry;
 	struct tx_servq *ptxservq;
-	struct list_head *sta_plist, *sta_phead, *frame_plist, *frame_phead, *tmp;
+	struct list_head *sta_plist, *sta_phead, *frame_plist, *frame_phead,
+		*tmp;
 	struct xmit_frame *pxmitframe;
 	struct __queue *pframe_queue;
 	struct xmit_buf *pxmitbuf;
@@ -200,17 +198,17 @@ static s32 xmit_xmitframes(struct adapter *padapter, struct xmit_priv *pxmitpriv
 	for (idx = 0; idx < hwentry; idx++) {
 		phwxmit = hwxmits + inx[idx];
 
-		if (
-			(check_pending_xmitbuf(pxmitpriv)) &&
-			(padapter->mlmepriv.link_detect_info.higher_busy_tx_traffic)
-		) {
+		if ((check_pending_xmitbuf(pxmitpriv)) &&
+		    (padapter->mlmepriv.link_detect_info
+			     .higher_busy_tx_traffic)) {
 			if ((phwxmit->accnt > 0) && (phwxmit->accnt < 5)) {
 				err = -2;
 				break;
 			}
 		}
 
-		max_xmit_len = rtw_hal_get_sdio_tx_max_length(padapter, inx[idx]);
+		max_xmit_len =
+			rtw_hal_get_sdio_tx_max_length(padapter, inx[idx]);
 
 		spin_lock_bh(&pxmitpriv->lock);
 
@@ -227,48 +225,66 @@ static s32 xmit_xmitframes(struct adapter *padapter, struct xmit_priv *pxmitpriv
 
 			while (!list_empty(frame_phead)) {
 				frame_plist = get_next(frame_phead);
-				pxmitframe = container_of(frame_plist, struct xmit_frame, list);
+				pxmitframe = container_of(
+					frame_plist, struct xmit_frame, list);
 
 				/*  check xmit_buf size enough or not */
-				txlen = txdesc_size + rtw_wlan_pkt_size(pxmitframe);
+				txlen = txdesc_size +
+					rtw_wlan_pkt_size(pxmitframe);
 				if (!pxmitbuf ||
-					((_RND(pxmitbuf->len, 8) + txlen) > max_xmit_len) ||
-					(k >= (rtw_hal_sdio_max_txoqt_free_space(padapter) - 1))
-				) {
+				    ((_RND(pxmitbuf->len, 8) + txlen) >
+				     max_xmit_len) ||
+				    (k >= (rtw_hal_sdio_max_txoqt_free_space(
+						   padapter) -
+					   1))) {
 					if (pxmitbuf) {
 						/* pxmitbuf->priv_data will be NULL, and will crash here */
 						if (pxmitbuf->len > 0 &&
 						    pxmitbuf->priv_data) {
-							struct xmit_frame *pframe;
+							struct xmit_frame
+								*pframe;
 
-							pframe = (struct xmit_frame *)pxmitbuf->priv_data;
+							pframe =
+								(struct xmit_frame
+									 *)pxmitbuf
+									->priv_data;
 							pframe->agg_num = k;
 							pxmitbuf->agg_num = k;
-							rtl8723b_update_txdesc(pframe, pframe->buf_addr);
-							rtw_free_xmitframe(pxmitpriv, pframe);
-							pxmitbuf->priv_data = NULL;
-							enqueue_pending_xmitbuf(pxmitpriv, pxmitbuf);
+							rtl8723b_update_txdesc(
+								pframe,
+								pframe->buf_addr);
+							rtw_free_xmitframe(
+								pxmitpriv,
+								pframe);
+							pxmitbuf->priv_data =
+								NULL;
+							enqueue_pending_xmitbuf(
+								pxmitpriv,
+								pxmitbuf);
 							/* can not yield under lock */
 							/* yield(); */
 						} else
-							rtw_free_xmitbuf(pxmitpriv, pxmitbuf);
+							rtw_free_xmitbuf(
+								pxmitpriv,
+								pxmitbuf);
 					}
 
 					pxmitbuf = rtw_alloc_xmitbuf(pxmitpriv);
 					if (!pxmitbuf) {
 						err = -2;
-						complete(&(pxmitpriv->xmit_comp));
+						complete(&(
+							pxmitpriv->xmit_comp));
 						break;
 					}
 					k = 0;
 				}
 
 				/*  ok to send, remove frame from queue */
-				if (check_fwstate(&padapter->mlmepriv, WIFI_AP_STATE))
-					if (
-						(pxmitframe->attrib.psta->state & WIFI_SLEEP_STATE) &&
-						(pxmitframe->attrib.triggered == 0)
-					)
+				if (check_fwstate(&padapter->mlmepriv,
+						  WIFI_AP_STATE))
+					if ((pxmitframe->attrib.psta->state &
+					     WIFI_SLEEP_STATE) &&
+					    (pxmitframe->attrib.triggered == 0))
 						break;
 
 				list_del_init(&pxmitframe->list);
@@ -276,7 +292,8 @@ static s32 xmit_xmitframes(struct adapter *padapter, struct xmit_priv *pxmitpriv
 				phwxmit->accnt--;
 
 				if (k == 0) {
-					pxmitbuf->ff_hwaddr = rtw_get_ff_hwaddr(pxmitframe);
+					pxmitbuf->ff_hwaddr =
+						rtw_get_ff_hwaddr(pxmitframe);
 					pxmitbuf->priv_data = (u8 *)pxmitframe;
 				}
 
@@ -284,27 +301,39 @@ static s32 xmit_xmitframes(struct adapter *padapter, struct xmit_priv *pxmitpriv
 				pxmitframe->pxmitbuf = pxmitbuf;
 				pxmitframe->buf_addr = pxmitbuf->ptail;
 
-				ret = rtw_xmitframe_coalesce(padapter, pxmitframe->pkt, pxmitframe);
+				ret = rtw_xmitframe_coalesce(
+					padapter, pxmitframe->pkt, pxmitframe);
 				if (ret != _SUCCESS) {
-					netdev_err(padapter->pnetdev,
-						   "%s: coalesce failed with error %d\n",
-						   __func__, ret);
+					netdev_err(
+						padapter->pnetdev,
+						"%s: coalesce failed with error %d\n",
+						__func__, ret);
 					/*  Todo: error handler */
 				} else {
 					k++;
 					if (k != 1)
-						rtl8723b_update_txdesc(pxmitframe, pxmitframe->buf_addr);
-					rtw_count_tx_stats(padapter, pxmitframe, pxmitframe->attrib.last_txcmdsz);
-
-					txlen = txdesc_size + pxmitframe->attrib.last_txcmdsz;
-					pxmitframe->pg_num = (txlen + 127) / 128;
+						rtl8723b_update_txdesc(
+							pxmitframe,
+							pxmitframe->buf_addr);
+					rtw_count_tx_stats(
+						padapter, pxmitframe,
+						pxmitframe->attrib.last_txcmdsz);
+
+					txlen = txdesc_size +
+						pxmitframe->attrib.last_txcmdsz;
+					pxmitframe->pg_num =
+						(txlen + 127) / 128;
 					pxmitbuf->pg_num += (txlen + 127) / 128;
-					pxmitbuf->ptail += _RND(txlen, 8); /*  round to 8 bytes alignment */
-					pxmitbuf->len = _RND(pxmitbuf->len, 8) + txlen;
+					pxmitbuf->ptail += _RND(
+						txlen,
+						8); /*  round to 8 bytes alignment */
+					pxmitbuf->len =
+						_RND(pxmitbuf->len, 8) + txlen;
 				}
 
 				if (k != 1)
-					rtw_free_xmitframe(pxmitpriv, pxmitframe);
+					rtw_free_xmitframe(pxmitpriv,
+							   pxmitframe);
 				pxmitframe = NULL;
 			}
 
@@ -321,10 +350,12 @@ static s32 xmit_xmitframes(struct adapter *padapter, struct xmit_priv *pxmitpriv
 			if (pxmitbuf->len > 0) {
 				struct xmit_frame *pframe;
 
-				pframe = (struct xmit_frame *)pxmitbuf->priv_data;
+				pframe = (struct xmit_frame *)
+						 pxmitbuf->priv_data;
 				pframe->agg_num = k;
 				pxmitbuf->agg_num = k;
-				rtl8723b_update_txdesc(pframe, pframe->buf_addr);
+				rtl8723b_update_txdesc(pframe,
+						       pframe->buf_addr);
 				rtw_free_xmitframe(pxmitpriv, pframe);
 				pxmitbuf->priv_data = NULL;
 				enqueue_pending_xmitbuf(pxmitpriv, pxmitbuf);
@@ -361,10 +392,7 @@ static s32 rtl8723bs_xmit_handler(struct adapter *padapter)
 	}
 
 next:
-	if (
-		(padapter->bDriverStopped) ||
-		(padapter->bSurpriseRemoved)
-	)
+	if ((padapter->bDriverStopped) || (padapter->bSurpriseRemoved))
 		return _FAIL;
 
 	spin_lock_bh(&pxmitpriv->lock);
@@ -416,9 +444,7 @@ int rtl8723bs_xmit_thread(void *context)
 	return 0;
 }
 
-s32 rtl8723bs_mgnt_xmit(
-	struct adapter *padapter, struct xmit_frame *pmgntframe
-)
+s32 rtl8723bs_mgnt_xmit(struct adapter *padapter, struct xmit_frame *pmgntframe)
 {
 	s32 ret = _SUCCESS;
 	struct pkt_attrib *pattrib = &pmgntframe->attrib;
@@ -431,7 +457,8 @@ s32 rtl8723bs_mgnt_xmit(
 	rtl8723b_update_txdesc(pmgntframe, pmgntframe->buf_addr);
 
 	pxmitbuf->len = txdesc_size + pattrib->last_txcmdsz;
-	pxmitbuf->pg_num = (pxmitbuf->len + 127) / 128; /*  128 is tx page size */
+	pxmitbuf->pg_num =
+		(pxmitbuf->len + 127) / 128; /*  128 is tx page size */
 	pxmitbuf->ptail = pmgntframe->buf_addr + pxmitbuf->len;
 	pxmitbuf->ff_hwaddr = rtw_get_ff_hwaddr(pmgntframe);
 
@@ -442,9 +469,12 @@ s32 rtl8723bs_mgnt_xmit(
 	pxmitbuf->priv_data = NULL;
 
 	if (GetFrameSubType(pframe) == WIFI_BEACON) { /* dump beacon directly */
-		ret = rtw_write_port(padapter, pdvobjpriv->Queue2Pipe[pxmitbuf->ff_hwaddr], pxmitbuf->len, (u8 *)pxmitbuf);
+		ret = rtw_write_port(
+			padapter, pdvobjpriv->Queue2Pipe[pxmitbuf->ff_hwaddr],
+			pxmitbuf->len, (u8 *)pxmitbuf);
 		if (ret != _SUCCESS)
-			rtw_sctx_done_err(&pxmitbuf->sctx, RTW_SCTX_DONE_WRITE_PORT_ERR);
+			rtw_sctx_done_err(&pxmitbuf->sctx,
+					  RTW_SCTX_DONE_WRITE_PORT_ERR);
 
 		rtw_free_xmitbuf(pxmitpriv, pxmitbuf);
 	} else
@@ -461,9 +491,7 @@ s32 rtl8723bs_mgnt_xmit(
  * true      dump packet directly ok
  * false     enqueue, temporary can't transmit packets to hardware
  */
-s32 rtl8723bs_hal_xmit(
-	struct adapter *padapter, struct xmit_frame *pxmitframe
-)
+s32 rtl8723bs_hal_xmit(struct adapter *padapter, struct xmit_frame *pxmitframe)
 {
 	struct xmit_priv *pxmitpriv;
 	s32 err;
@@ -471,12 +499,10 @@ s32 rtl8723bs_hal_xmit(
 	pxmitframe->attrib.qsel = pxmitframe->attrib.priority;
 	pxmitpriv = &padapter->xmitpriv;
 
-	if (
-		(pxmitframe->frame_tag == DATA_FRAMETAG) &&
-		(pxmitframe->attrib.ether_type != 0x0806) &&
-		(pxmitframe->attrib.ether_type != 0x888e) &&
-		(pxmitframe->attrib.dhcp_pkt != 1)
-	) {
+	if ((pxmitframe->frame_tag == DATA_FRAMETAG) &&
+	    (pxmitframe->attrib.ether_type != 0x0806) &&
+	    (pxmitframe->attrib.ether_type != 0x888e) &&
+	    (pxmitframe->attrib.dhcp_pkt != 1)) {
 		if (padapter->mlmepriv.link_detect_info.busy_traffic)
 			rtw_issue_addbareq_cmd(padapter, pxmitframe);
 	}
@@ -496,9 +522,8 @@ s32 rtl8723bs_hal_xmit(
 	return false;
 }
 
-s32	rtl8723bs_hal_xmitframe_enqueue(
-	struct adapter *padapter, struct xmit_frame *pxmitframe
-)
+s32 rtl8723bs_hal_xmitframe_enqueue(struct adapter *padapter,
+				    struct xmit_frame *pxmitframe)
 {
 	struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
 	s32 err;
@@ -513,7 +538,6 @@ s32	rtl8723bs_hal_xmitframe_enqueue(
 	}
 
 	return err;
-
 }
 
 /*
@@ -562,7 +586,8 @@ void rtl8723bs_free_xmit_priv(struct adapter *padapter)
 		list_del_init(plist);
 
 		pxmitbuf = container_of(plist, struct xmit_buf, list);
-		rtw_free_xmitframe(pxmitpriv, (struct xmit_frame *)pxmitbuf->priv_data);
+		rtw_free_xmitframe(pxmitpriv,
+				   (struct xmit_frame *)pxmitbuf->priv_data);
 		pxmitbuf->priv_data = NULL;
 		rtw_free_xmitbuf(pxmitpriv, pxmitbuf);
 	}
diff --git a/drivers/staging/rtl8723bs/hal/sdio_halinit.c b/drivers/staging/rtl8723bs/hal/sdio_halinit.c
index ed9b8fb07fec2..ca3d7e9a533f4 100644
--- a/drivers/staging/rtl8723bs/hal/sdio_halinit.c
+++ b/drivers/staging/rtl8723bs/hal/sdio_halinit.c
@@ -27,10 +27,13 @@ static u8 CardEnable(struct adapter *padapter)
 		/*  unlock ISO/CLK/Power control register */
 		rtw_write8(padapter, REG_RSV_CTRL, 0x0);
 
-		ret = HalPwrSeqCmdParsing(padapter, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, rtl8723B_card_enable_flow);
+		ret = HalPwrSeqCmdParsing(padapter, PWR_CUT_ALL_MSK,
+					  PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK,
+					  rtl8723B_card_enable_flow);
 		if (ret == _SUCCESS) {
 			bMacPwrCtrlOn = true;
-			rtw_hal_set_hwreg(padapter, HW_VAR_APFM_ON_MAC, &bMacPwrCtrlOn);
+			rtw_hal_set_hwreg(padapter, HW_VAR_APFM_ON_MAC,
+					  &bMacPwrCtrlOn);
 		}
 	} else
 		ret = _SUCCESS;
@@ -38,8 +41,7 @@ static u8 CardEnable(struct adapter *padapter)
 	return ret;
 }
 
-static
-u8 _InitPowerOn_8723BS(struct adapter *padapter)
+static u8 _InitPowerOn_8723BS(struct adapter *padapter)
 {
 	u8 value8;
 	u16 value16;
@@ -69,16 +71,8 @@ u8 _InitPowerOn_8723BS(struct adapter *padapter)
 	rtw_write8(padapter, REG_CR, 0x00);
 	/*  Enable MAC DMA/WMAC/SCHEDULE/SEC block */
 	value16 = rtw_read16(padapter, REG_CR);
-	value16 |= (
-		HCI_TXDMA_EN |
-		HCI_RXDMA_EN |
-		TXDMA_EN |
-		RXDMA_EN |
-		PROTOCOL_EN |
-		SCHEDULE_EN |
-		ENSEC |
-		CALTMR_EN
-	);
+	value16 |= (HCI_TXDMA_EN | HCI_RXDMA_EN | TXDMA_EN | RXDMA_EN |
+		    PROTOCOL_EN | SCHEDULE_EN | ENSEC | CALTMR_EN);
 	rtw_write16(padapter, REG_CR, value16);
 
 	hal_btcoex_PowerOnSetting(padapter);
@@ -97,14 +91,16 @@ u8 _InitPowerOn_8723BS(struct adapter *padapter)
 	rtw_write32(padapter, REG_LEDCFG0, value32);
 
 	value8 = rtw_read8(padapter, REG_PAD_CTRL1_8723B);
-	value8 &= ~BIT(0); /*  BIT_SW_DPDT_SEL_DATA, DPDT_SEL default configuration */
+	value8 &= ~BIT(
+		0); /*  BIT_SW_DPDT_SEL_DATA, DPDT_SEL default configuration */
 	rtw_write8(padapter, REG_PAD_CTRL1_8723B, value8);
 
 	return _SUCCESS;
 }
 
 /* Tx Page FIFO threshold */
-static void _init_available_page_threshold(struct adapter *padapter, u8 numHQ, u8 numNQ, u8 numLQ, u8 numPubQ)
+static void _init_available_page_threshold(struct adapter *padapter, u8 numHQ,
+					   u8 numNQ, u8 numLQ, u8 numPubQ)
 {
 	u16 HQ_threshold, NQ_threshold, LQ_threshold;
 
@@ -132,17 +128,20 @@ static void _InitQueueReservedPage(struct adapter *padapter)
 	u32 numPubQ;
 	u32 value32;
 	u8 value8;
-	bool bWiFiConfig	= pregistrypriv->wifi_spec;
+	bool bWiFiConfig = pregistrypriv->wifi_spec;
 
 	if (pHalData->OutEpQueueSel & TX_SELE_HQ)
-		numHQ = bWiFiConfig ? WMM_NORMAL_PAGE_NUM_HPQ_8723B : NORMAL_PAGE_NUM_HPQ_8723B;
+		numHQ = bWiFiConfig ? WMM_NORMAL_PAGE_NUM_HPQ_8723B :
+				      NORMAL_PAGE_NUM_HPQ_8723B;
 
 	if (pHalData->OutEpQueueSel & TX_SELE_LQ)
-		numLQ = bWiFiConfig ? WMM_NORMAL_PAGE_NUM_LPQ_8723B : NORMAL_PAGE_NUM_LPQ_8723B;
+		numLQ = bWiFiConfig ? WMM_NORMAL_PAGE_NUM_LPQ_8723B :
+				      NORMAL_PAGE_NUM_LPQ_8723B;
 
 	/*  NOTE: This step shall be proceed before writing REG_RQPN. */
 	if (pHalData->OutEpQueueSel & TX_SELE_NQ)
-		numNQ = bWiFiConfig ? WMM_NORMAL_PAGE_NUM_NPQ_8723B : NORMAL_PAGE_NUM_NPQ_8723B;
+		numNQ = bWiFiConfig ? WMM_NORMAL_PAGE_NUM_NPQ_8723B :
+				      NORMAL_PAGE_NUM_NPQ_8723B;
 
 	numPubQ = TX_TOTAL_PAGE_NUMBER_8723B - numHQ - numLQ - numNQ;
 
@@ -179,25 +178,15 @@ static void _InitTxBufferBoundary(struct adapter *padapter)
 	rtw_write8(padapter, REG_TDECTRL + 1, txpktbuf_bndy);
 }
 
-static void _InitNormalChipRegPriority(
-	struct adapter *Adapter,
-	u16 beQ,
-	u16 bkQ,
-	u16 viQ,
-	u16 voQ,
-	u16 mgtQ,
-	u16 hiQ
-)
+static void _InitNormalChipRegPriority(struct adapter *Adapter, u16 beQ,
+				       u16 bkQ, u16 viQ, u16 voQ, u16 mgtQ,
+				       u16 hiQ)
 {
 	u16 value16 = (rtw_read16(Adapter, REG_TRXDMA_CTRL) & 0x7);
 
-	value16 |=
-		_TXDMA_BEQ_MAP(beQ)  |
-		_TXDMA_BKQ_MAP(bkQ)  |
-		_TXDMA_VIQ_MAP(viQ)  |
-		_TXDMA_VOQ_MAP(voQ)  |
-		_TXDMA_MGQ_MAP(mgtQ) |
-		_TXDMA_HIQ_MAP(hiQ);
+	value16 |= _TXDMA_BEQ_MAP(beQ) | _TXDMA_BKQ_MAP(bkQ) |
+		   _TXDMA_VIQ_MAP(viQ) | _TXDMA_VOQ_MAP(voQ) |
+		   _TXDMA_MGQ_MAP(mgtQ) | _TXDMA_HIQ_MAP(hiQ);
 
 	rtw_write16(Adapter, REG_TRXDMA_CTRL, value16);
 }
@@ -222,10 +211,8 @@ static void _InitNormalChipOneOutEpPriority(struct adapter *Adapter)
 		break;
 	}
 
-	_InitNormalChipRegPriority(
-		Adapter, value, value, value, value, value, value
-	);
-
+	_InitNormalChipRegPriority(Adapter, value, value, value, value, value,
+				   value);
 }
 
 static void _InitNormalChipTwoOutEpPriority(struct adapter *Adapter)
@@ -272,7 +259,6 @@ static void _InitNormalChipTwoOutEpPriority(struct adapter *Adapter)
 	}
 
 	_InitNormalChipRegPriority(Adapter, beQ, bkQ, viQ, voQ, mgtQ, hiQ);
-
 }
 
 static void _InitNormalChipThreeOutEpPriority(struct adapter *padapter)
@@ -365,12 +351,14 @@ static void _InitWMACSetting(struct adapter *padapter)
 	pHalData->ReceiveConfig |= RCR_APM | RCR_AM | RCR_AB;
 	pHalData->ReceiveConfig |= RCR_CBSSID_DATA | RCR_CBSSID_BCN | RCR_AMF;
 	pHalData->ReceiveConfig |= RCR_HTC_LOC_CTRL;
-	pHalData->ReceiveConfig |= RCR_APP_PHYST_RXFF | RCR_APP_ICV | RCR_APP_MIC;
+	pHalData->ReceiveConfig |= RCR_APP_PHYST_RXFF | RCR_APP_ICV |
+				   RCR_APP_MIC;
 	rtw_write32(padapter, REG_RCR, pHalData->ReceiveConfig);
 
 	/*  Accept all multicast address */
-	rtw_write32(padapter, REG_MAR, 0xFFFFFFFF);	/* Offset 0x0620-0x0623 */
-	rtw_write32(padapter, REG_MAR + 4, 0xFFFFFFFF);	/* Offset 0x0624-0x0627 */
+	rtw_write32(padapter, REG_MAR, 0xFFFFFFFF); /* Offset 0x0620-0x0623 */
+	rtw_write32(padapter, REG_MAR + 4,
+		    0xFFFFFFFF); /* Offset 0x0624-0x0627 */
 
 	/*  Accept all data frames */
 	value16 = 0xFFFF;
@@ -454,8 +442,8 @@ static void sdio_AggSettingRxUpdate(struct adapter *padapter)
 {
 	u8 valueDMA;
 	u8 valueRxAggCtrl = 0;
-	u8 aggBurstNum = 3;  /* 0:1, 1:2, 2:3, 3:4 */
-	u8 aggBurstSize = 0;  /* 0:1K, 1:512Byte, 2:256Byte... */
+	u8 aggBurstNum = 3; /* 0:1, 1:2, 2:3, 3:4 */
+	u8 aggBurstSize = 0; /* 0:1K, 1:512Byte, 2:256Byte... */
 
 	valueDMA = rtw_read8(padapter, REG_TRXDMA_CTRL);
 	valueDMA |= RXDMA_AGG_EN;
@@ -464,12 +452,13 @@ static void sdio_AggSettingRxUpdate(struct adapter *padapter)
 	valueRxAggCtrl |= RXDMA_AGG_MODE_EN;
 	valueRxAggCtrl |= ((aggBurstNum << 2) & 0x0C);
 	valueRxAggCtrl |= ((aggBurstSize << 4) & 0x30);
-	rtw_write8(padapter, REG_RXDMA_MODE_CTRL_8723B, valueRxAggCtrl);/* RxAggLowThresh = 4*1K */
+	rtw_write8(padapter, REG_RXDMA_MODE_CTRL_8723B,
+		   valueRxAggCtrl); /* RxAggLowThresh = 4*1K */
 }
 
 static void _initSdioAggregationSetting(struct adapter *padapter)
 {
-	struct hal_com_data	*pHalData = GET_HAL_DATA(padapter);
+	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
 	/*  Rx aggregation setting */
 	HalRxAggr8723BSdio(padapter);
@@ -512,7 +501,6 @@ static void _InitOperationMode(struct adapter *padapter)
 	}
 
 	rtw_write8(padapter, REG_BWOPMODE, regBwOpMode);
-
 }
 
 static void _InitInterrupt(struct adapter *padapter)
@@ -533,12 +521,12 @@ static void _InitRFType(struct adapter *padapter)
 {
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
-	pHalData->rf_chip	= RF_6052;
+	pHalData->rf_chip = RF_6052;
 }
 
 static void _RfPowerSave(struct adapter *padapter)
 {
-/* YJ, TODO */
+	/* YJ, TODO */
 }
 
 /*  */
@@ -550,7 +538,8 @@ static bool HalDetectPwrDownMode(struct adapter *Adapter)
 	struct hal_com_data *pHalData = GET_HAL_DATA(Adapter);
 	struct pwrctrl_priv *pwrctrlpriv = adapter_to_pwrctl(Adapter);
 
-	rtw_efuse_shadow_read(Adapter, 1, 0x7B/*EEPROM_RF_OPT3_92C*/, (u32 *)&tmpvalue);
+	rtw_efuse_shadow_read(Adapter, 1, 0x7B /*EEPROM_RF_OPT3_92C*/,
+			      (u32 *)&tmpvalue);
 
 	/*  2010/08/25 MH INF priority > PDN Efuse value. */
 	if (tmpvalue & BIT(4) && pwrctrlpriv->reg_pdnmode)
@@ -559,7 +548,7 @@ static bool HalDetectPwrDownMode(struct adapter *Adapter)
 		pHalData->pwrdown = false;
 
 	return pHalData->pwrdown;
-}	/*  HalDetectPwrDownMode */
+} /*  HalDetectPwrDownMode */
 
 u32 rtl8723bs_hal_init(struct adapter *padapter)
 {
@@ -593,7 +582,6 @@ u32 rtl8723bs_hal_init(struct adapter *padapter)
 		/* do polling cpwm */
 		start_time = jiffies;
 		do {
-
 			mdelay(1);
 
 			rtw_hal_get_hwreg(padapter, HW_VAR_CPWM, &cpwm_now);
@@ -668,10 +656,10 @@ u32 rtl8723bs_hal_init(struct adapter *padapter)
 	/*  */
 	/*  Joseph Note: Keep RfRegChnlVal for later use. */
 	/*  */
-	pHalData->RfRegChnlVal[0] =
-		PHY_QueryRFReg(padapter, (enum rf_path)0, RF_CHNLBW, bRFRegOffsetMask);
-	pHalData->RfRegChnlVal[1] =
-		PHY_QueryRFReg(padapter, (enum rf_path)1, RF_CHNLBW, bRFRegOffsetMask);
+	pHalData->RfRegChnlVal[0] = PHY_QueryRFReg(padapter, (enum rf_path)0,
+						   RF_CHNLBW, bRFRegOffsetMask);
+	pHalData->RfRegChnlVal[1] = PHY_QueryRFReg(padapter, (enum rf_path)1,
+						   RF_CHNLBW, bRFRegOffsetMask);
 
 	_InitQueueReservedPage(padapter);
 	_InitTxBufferBoundary(padapter);
@@ -701,16 +689,19 @@ u32 rtl8723bs_hal_init(struct adapter *padapter)
 	_InitBurstPktLen_8723BS(padapter);
 
 	/* YJ, TODO */
-	rtw_write8(padapter, REG_SECONDARY_CCA_CTRL_8723B, 0x3);	/*  CCA */
-	rtw_write8(padapter, 0x976, 0);	/*  hpfan_todo: 2nd CCA related */
+	rtw_write8(padapter, REG_SECONDARY_CCA_CTRL_8723B, 0x3); /*  CCA */
+	rtw_write8(padapter, 0x976, 0); /*  hpfan_todo: 2nd CCA related */
 
-	rtw_write16(padapter, REG_PKT_VO_VI_LIFE_TIME, 0x0400);	/*  unit: 256us. 256ms */
-	rtw_write16(padapter, REG_PKT_BE_BK_LIFE_TIME, 0x0400);	/*  unit: 256us. 256ms */
+	rtw_write16(padapter, REG_PKT_VO_VI_LIFE_TIME,
+		    0x0400); /*  unit: 256us. 256ms */
+	rtw_write16(padapter, REG_PKT_BE_BK_LIFE_TIME,
+		    0x0400); /*  unit: 256us. 256ms */
 
 	invalidate_cam_all(padapter);
 
 	rtw_hal_set_chnl_bw(padapter, padapter->registrypriv.channel,
-		CHANNEL_WIDTH_20, HAL_PRIME_CHNL_OFFSET_DONT_CARE, HAL_PRIME_CHNL_OFFSET_DONT_CARE);
+			    CHANNEL_WIDTH_20, HAL_PRIME_CHNL_OFFSET_DONT_CARE,
+			    HAL_PRIME_CHNL_OFFSET_DONT_CARE);
 
 	rtl8723b_InitAntenna_Selection(padapter);
 
@@ -749,7 +740,8 @@ u32 rtl8723bs_hal_init(struct adapter *padapter)
 	rtw_hal_set_hwreg(padapter, HW_VAR_NAV_UPPER, (u8 *)&NavUpper);
 
 	/* ack for xmit mgmt frames. */
-	rtw_write32(padapter, REG_FWHW_TXQ_CTRL, rtw_read32(padapter, REG_FWHW_TXQ_CTRL) | BIT(12));
+	rtw_write32(padapter, REG_FWHW_TXQ_CTRL,
+		    rtw_read32(padapter, REG_FWHW_TXQ_CTRL) | BIT(12));
 
 	{
 		pwrctrlpriv->rf_pwrstate = rf_on;
@@ -767,7 +759,8 @@ u32 rtl8723bs_hal_init(struct adapter *padapter)
 
 			/* Inform WiFi FW that it is the beginning of IQK */
 			h2cCmdBuf = 1;
-			FillH2CCmd8723B(padapter, H2C_8723B_BT_WLAN_CALIBRATION, 1, &h2cCmdBuf);
+			FillH2CCmd8723B(padapter, H2C_8723B_BT_WLAN_CALIBRATION,
+					1, &h2cCmdBuf);
 
 			start_time = jiffies;
 			do {
@@ -781,14 +774,17 @@ u32 rtl8723bs_hal_init(struct adapter *padapter)
 
 			restore_iqk_rst = pwrpriv->bips_processing;
 			b2Ant = pHalData->EEPROMBluetoothAntNum == Ant_x2;
-			PHY_IQCalibrate_8723B(padapter, false, restore_iqk_rst, b2Ant, pHalData->ant_path);
-			pHalData->odmpriv.RFCalibrateInfo.bIQKInitialized = true;
+			PHY_IQCalibrate_8723B(padapter, false, restore_iqk_rst,
+					      b2Ant, pHalData->ant_path);
+			pHalData->odmpriv.RFCalibrateInfo.bIQKInitialized =
+				true;
 
 			hal_btcoex_IQKNotify(padapter, false);
 
 			/* Inform WiFi FW that it is the finish of IQK */
 			h2cCmdBuf = 0;
-			FillH2CCmd8723B(padapter, H2C_8723B_BT_WLAN_CALIBRATION, 1, &h2cCmdBuf);
+			FillH2CCmd8723B(padapter, H2C_8723B_BT_WLAN_CALIBRATION,
+					1, &h2cCmdBuf);
 
 			ODM_TXPowerTrackingCheck(&pHalData->odmpriv);
 		}
@@ -812,7 +808,8 @@ static void CardDisableRTL8723BSdio(struct adapter *padapter)
 	u8 bMacPwrCtrlOn;
 
 	/*  Run LPS WL RFOFF flow */
-	HalPwrSeqCmdParsing(padapter, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, rtl8723B_enter_lps_flow);
+	HalPwrSeqCmdParsing(padapter, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK,
+			    PWR_INTF_SDIO_MSK, rtl8723B_enter_lps_flow);
 
 	/*	==== Reset digital sequence   ====== */
 
@@ -822,7 +819,7 @@ static void CardDisableRTL8723BSdio(struct adapter *padapter)
 
 	/*  Reset MCU 0x2[10]= 0. Suggested by Filen. 2011.01.26. by tynli. */
 	val = rtw_read8(padapter, REG_SYS_FUNC_EN + 1);
-	val &= ~BIT(2);	/*  0x2[10], FEN_CPUEN */
+	val &= ~BIT(2); /*  0x2[10], FEN_CPUEN */
 	rtw_write8(padapter, REG_SYS_FUNC_EN + 1, val);
 
 	/*  MCUFWDL 0x80[1:0]= 0 */
@@ -839,9 +836,10 @@ static void CardDisableRTL8723BSdio(struct adapter *padapter)
 
 	/*	==== Reset digital sequence end ====== */
 
-	bMacPwrCtrlOn = false;	/*  Disable CMD53 R/W */
+	bMacPwrCtrlOn = false; /*  Disable CMD53 R/W */
 	rtw_hal_set_hwreg(padapter, HW_VAR_APFM_ON_MAC, &bMacPwrCtrlOn);
-	HalPwrSeqCmdParsing(padapter, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, rtl8723B_card_disable_flow);
+	HalPwrSeqCmdParsing(padapter, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK,
+			    PWR_INTF_SDIO_MSK, rtl8723B_card_disable_flow);
 }
 
 u32 rtl8723bs_hal_deinit(struct adapter *padapter)
@@ -862,14 +860,22 @@ u32 rtl8723bs_hal_deinit(struct adapter *padapter)
 				/* H2C done, enter 32k */
 				if (val8 == 0) {
 					/* set rpwm to enter 32k */
-					val8 = rtw_read8(padapter, SDIO_LOCAL_BASE | SDIO_REG_HRPWM1);
+					val8 = rtw_read8(
+						padapter,
+						SDIO_LOCAL_BASE |
+							SDIO_REG_HRPWM1);
 					val8 += 0x80;
 					val8 |= BIT(0);
-					rtw_write8(padapter, SDIO_LOCAL_BASE | SDIO_REG_HRPWM1, val8);
-					adapter_to_pwrctl(padapter)->tog = (val8 + 0x80) & 0x80;
+					rtw_write8(padapter,
+						   SDIO_LOCAL_BASE |
+							   SDIO_REG_HRPWM1,
+						   val8);
+					adapter_to_pwrctl(padapter)->tog =
+						(val8 + 0x80) & 0x80;
 					cnt = val8 = 0;
 					do {
-						val8 = rtw_read8(padapter, REG_CR);
+						val8 = rtw_read8(padapter,
+								 REG_CR);
 						cnt++;
 						mdelay(10);
 					} while (cnt < 100 && (val8 != 0xEA));
@@ -961,9 +967,8 @@ static void _ReadRFType(struct adapter *Adapter)
 	pHalData->rf_chip = RF_6052;
 }
 
-static void Hal_EfuseParseMACAddr_8723BS(
-	struct adapter *padapter, u8 *hwinfo, bool AutoLoadFail
-)
+static void Hal_EfuseParseMACAddr_8723BS(struct adapter *padapter, u8 *hwinfo,
+					 bool AutoLoadFail)
 {
 	struct eeprom_priv *pEEPROM = GET_EEPROM_EFUSE_PRIV(padapter);
 
@@ -971,20 +976,22 @@ static void Hal_EfuseParseMACAddr_8723BS(
 		eth_random_addr(pEEPROM->mac_addr);
 	} else {
 		/* Read Permanent MAC address */
-		memcpy(pEEPROM->mac_addr, &hwinfo[EEPROM_MAC_ADDR_8723BS], ETH_ALEN);
+		memcpy(pEEPROM->mac_addr, &hwinfo[EEPROM_MAC_ADDR_8723BS],
+		       ETH_ALEN);
 	}
 }
 
-static void Hal_EfuseParseBoardType_8723BS(
-	struct adapter *padapter, u8 *hwinfo, bool AutoLoadFail
-)
+static void Hal_EfuseParseBoardType_8723BS(struct adapter *padapter, u8 *hwinfo,
+					   bool AutoLoadFail)
 {
 	struct hal_com_data *pHalData = GET_HAL_DATA(padapter);
 
 	if (!AutoLoadFail) {
-		pHalData->BoardType = (hwinfo[EEPROM_RF_BOARD_OPTION_8723B] & 0xE0) >> 5;
+		pHalData->BoardType =
+			(hwinfo[EEPROM_RF_BOARD_OPTION_8723B] & 0xE0) >> 5;
 		if (pHalData->BoardType == 0xFF)
-			pHalData->BoardType = (EEPROM_DEFAULT_BOARD_OPTION & 0xE0) >> 5;
+			pHalData->BoardType =
+				(EEPROM_DEFAULT_BOARD_OPTION & 0xE0) >> 5;
 	} else
 		pHalData->BoardType = 0;
 }
@@ -1003,24 +1010,35 @@ static void _ReadEfuseInfo8723BS(struct adapter *padapter)
 	Hal_InitPGData(padapter, hwinfo);
 
 	Hal_EfuseParseIDCode(padapter, hwinfo);
-	Hal_EfuseParseEEPROMVer_8723B(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
+	Hal_EfuseParseEEPROMVer_8723B(padapter, hwinfo,
+				      pEEPROM->bautoload_fail_flag);
 
-	Hal_EfuseParseMACAddr_8723BS(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
+	Hal_EfuseParseMACAddr_8723BS(padapter, hwinfo,
+				     pEEPROM->bautoload_fail_flag);
 
-	Hal_EfuseParseTxPowerInfo_8723B(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
-	Hal_EfuseParseBoardType_8723BS(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
+	Hal_EfuseParseTxPowerInfo_8723B(padapter, hwinfo,
+					pEEPROM->bautoload_fail_flag);
+	Hal_EfuseParseBoardType_8723BS(padapter, hwinfo,
+				       pEEPROM->bautoload_fail_flag);
 
 	/*  */
 	/*  Read Bluetooth co-exist and initialize */
 	/*  */
-	Hal_EfuseParsePackageType_8723B(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
-	Hal_EfuseParseBTCoexistInfo_8723B(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
-	Hal_EfuseParseChnlPlan_8723B(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
-	Hal_EfuseParseXtal_8723B(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
-	Hal_EfuseParseThermalMeter_8723B(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
-	Hal_EfuseParseCustomerID_8723B(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
-
-	Hal_EfuseParseVoltage_8723B(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
+	Hal_EfuseParsePackageType_8723B(padapter, hwinfo,
+					pEEPROM->bautoload_fail_flag);
+	Hal_EfuseParseBTCoexistInfo_8723B(padapter, hwinfo,
+					  pEEPROM->bautoload_fail_flag);
+	Hal_EfuseParseChnlPlan_8723B(padapter, hwinfo,
+				     pEEPROM->bautoload_fail_flag);
+	Hal_EfuseParseXtal_8723B(padapter, hwinfo,
+				 pEEPROM->bautoload_fail_flag);
+	Hal_EfuseParseThermalMeter_8723B(padapter, hwinfo,
+					 pEEPROM->bautoload_fail_flag);
+	Hal_EfuseParseCustomerID_8723B(padapter, hwinfo,
+				       pEEPROM->bautoload_fail_flag);
+
+	Hal_EfuseParseVoltage_8723B(padapter, hwinfo,
+				    pEEPROM->bautoload_fail_flag);
 
 	Hal_ReadRFGainOffset(padapter, hwinfo, pEEPROM->bautoload_fail_flag);
 }
@@ -1063,8 +1081,10 @@ static s32 _ReadAdapterInfo8723BS(struct adapter *padapter)
 	_ReadPROMContent(padapter);
 
 	if (!padapter->hw_init_completed) {
-		rtw_write8(padapter, 0x67, 0x00); /*  for BT, Switch Ant control to BT */
-		CardDisableRTL8723BSdio(padapter);/* for the power consumption issue,  wifi ko module is loaded during booting, but wifi GUI is off */
+		rtw_write8(padapter, 0x67,
+			   0x00); /*  for BT, Switch Ant control to BT */
+		CardDisableRTL8723BSdio(
+			padapter); /* for the power consumption issue,  wifi ko module is loaded during booting, but wifi GUI is off */
 	}
 
 	return _SUCCESS;
@@ -1095,18 +1115,17 @@ void SetHwReg8723BS(struct adapter *padapter, u8 variable, u8 *val)
 		{
 			val8 = *val;
 			val8 &= 0xC1;
-			rtw_write8(padapter, SDIO_LOCAL_BASE | SDIO_REG_HRPWM1, val8);
+			rtw_write8(padapter, SDIO_LOCAL_BASE | SDIO_REG_HRPWM1,
+				   val8);
 		}
 		break;
-	case HW_VAR_SET_REQ_FW_PS:
-		{
-			u8 req_fw_ps = 0;
+	case HW_VAR_SET_REQ_FW_PS: {
+		u8 req_fw_ps = 0;
 
-			req_fw_ps = rtw_read8(padapter, 0x8f);
-			req_fw_ps |= 0x10;
-			rtw_write8(padapter, 0x8f, req_fw_ps);
-		}
-		break;
+		req_fw_ps = rtw_read8(padapter, 0x8f);
+		req_fw_ps |= 0x10;
+		rtw_write8(padapter, 0x8f, req_fw_ps);
+	} break;
 	case HW_VAR_RXDMA_AGG_PG_TH:
 		val8 = *val;
 		break;
@@ -1128,22 +1147,22 @@ void GetHwReg8723BS(struct adapter *padapter, u8 variable, u8 *val)
 {
 	switch (variable) {
 	case HW_VAR_CPWM:
-		*val = rtw_read8(padapter, SDIO_LOCAL_BASE | SDIO_REG_HCPWM1_8723B);
+		*val = rtw_read8(padapter,
+				 SDIO_LOCAL_BASE | SDIO_REG_HCPWM1_8723B);
 		break;
 
-	case HW_VAR_FW_PS_STATE:
-		{
-			/* 3. read dword 0x88               driver read fw ps state */
-			*((u16 *)val) = rtw_read16(padapter, 0x88);
-		}
-		break;
+	case HW_VAR_FW_PS_STATE: {
+		/* 3. read dword 0x88               driver read fw ps state */
+		*((u16 *)val) = rtw_read16(padapter, 0x88);
+	} break;
 	default:
 		GetHwReg8723B(padapter, variable, val);
 		break;
 	}
 }
 
-void SetHwRegWithBuf8723B(struct adapter *padapter, u8 variable, u8 *pbuf, int len)
+void SetHwRegWithBuf8723B(struct adapter *padapter, u8 variable, u8 *pbuf,
+			  int len)
 {
 	switch (variable) {
 	case HW_VAR_C2H_HANDLE:
@@ -1158,9 +1177,8 @@ void SetHwRegWithBuf8723B(struct adapter *padapter, u8 variable, u8 *pbuf, int l
 /*	Description: */
 /*		Query setting of specified variable. */
 /*  */
-u8 GetHalDefVar8723BSDIO(
-	struct adapter *Adapter, enum hal_def_variable eVariable, void *pValue
-)
+u8 GetHalDefVar8723BSDIO(struct adapter *Adapter,
+			 enum hal_def_variable eVariable, void *pValue)
 {
 	u8 bResult = _SUCCESS;
 
diff --git a/drivers/staging/rtl8723bs/hal/sdio_ops.c b/drivers/staging/rtl8723bs/hal/sdio_ops.c
index c4058cfe73f26..d217ea5cb53d3 100644
--- a/drivers/staging/rtl8723bs/hal/sdio_ops.c
+++ b/drivers/staging/rtl8723bs/hal/sdio_ops.c
@@ -18,27 +18,33 @@ static void hal_sdio_get_cmd_addr_8723b(struct adapter *adapter, u8 device_id,
 {
 	switch (device_id) {
 	case SDIO_LOCAL_DEVICE_ID:
-		*cmdaddr = ((SDIO_LOCAL_DEVICE_ID << 13) | (addr & SDIO_LOCAL_MSK));
+		*cmdaddr = ((SDIO_LOCAL_DEVICE_ID << 13) |
+			    (addr & SDIO_LOCAL_MSK));
 		break;
 
 	case WLAN_IOREG_DEVICE_ID:
-		*cmdaddr = ((WLAN_IOREG_DEVICE_ID << 13) | (addr & WLAN_IOREG_MSK));
+		*cmdaddr = ((WLAN_IOREG_DEVICE_ID << 13) |
+			    (addr & WLAN_IOREG_MSK));
 		break;
 
 	case WLAN_TX_HIQ_DEVICE_ID:
-		*cmdaddr = ((WLAN_TX_HIQ_DEVICE_ID << 13) | (addr & WLAN_FIFO_MSK));
+		*cmdaddr = ((WLAN_TX_HIQ_DEVICE_ID << 13) |
+			    (addr & WLAN_FIFO_MSK));
 		break;
 
 	case WLAN_TX_MIQ_DEVICE_ID:
-		*cmdaddr = ((WLAN_TX_MIQ_DEVICE_ID << 13) | (addr & WLAN_FIFO_MSK));
+		*cmdaddr = ((WLAN_TX_MIQ_DEVICE_ID << 13) |
+			    (addr & WLAN_FIFO_MSK));
 		break;
 
 	case WLAN_TX_LOQ_DEVICE_ID:
-		*cmdaddr = ((WLAN_TX_LOQ_DEVICE_ID << 13) | (addr & WLAN_FIFO_MSK));
+		*cmdaddr = ((WLAN_TX_LOQ_DEVICE_ID << 13) |
+			    (addr & WLAN_FIFO_MSK));
 		break;
 
 	case WLAN_RX0FF_DEVICE_ID:
-		*cmdaddr = ((WLAN_RX0FF_DEVICE_ID << 13) | (addr & WLAN_RX0FF_MSK));
+		*cmdaddr = ((WLAN_RX0FF_DEVICE_ID << 13) |
+			    (addr & WLAN_RX0FF_MSK));
 		break;
 
 	default:
@@ -161,11 +167,9 @@ static u32 sdio_read32(struct intf_hdl *intfhdl, u32 addr)
 	ftaddr = _cvrt2ftaddr(addr, &device_id, &offset);
 
 	rtw_hal_get_hwreg(adapter, HW_VAR_APFM_ON_MAC, &mac_pwr_ctrl_on);
-	if (
-		((device_id == WLAN_IOREG_DEVICE_ID) && (offset < 0x100)) ||
-		(!mac_pwr_ctrl_on) ||
-		(adapter_to_pwrctl(adapter)->fw_current_in_ps_mode)
-	) {
+	if (((device_id == WLAN_IOREG_DEVICE_ID) && (offset < 0x100)) ||
+	    (!mac_pwr_ctrl_on) ||
+	    (adapter_to_pwrctl(adapter)->fw_current_in_ps_mode)) {
 		err = sd_cmd52_read(intfhdl, ftaddr, 4, (u8 *)&le_tmp);
 		return le32_to_cpu(le_tmp);
 	}
@@ -229,11 +233,9 @@ static s32 sdio_write32(struct intf_hdl *intfhdl, u32 addr, u32 val)
 	ftaddr = _cvrt2ftaddr(addr, &device_id, &offset);
 
 	rtw_hal_get_hwreg(adapter, HW_VAR_APFM_ON_MAC, &mac_pwr_ctrl_on);
-	if (
-		((device_id == WLAN_IOREG_DEVICE_ID) && (offset < 0x100)) ||
-		(!mac_pwr_ctrl_on) ||
-		(adapter_to_pwrctl(adapter)->fw_current_in_ps_mode)
-	) {
+	if (((device_id == WLAN_IOREG_DEVICE_ID) && (offset < 0x100)) ||
+	    (!mac_pwr_ctrl_on) ||
+	    (adapter_to_pwrctl(adapter)->fw_current_in_ps_mode)) {
 		le_tmp = cpu_to_le32(val);
 
 		return sd_cmd52_write(intfhdl, ftaddr, 4, (u8 *)&le_tmp);
@@ -266,12 +268,7 @@ static s32 sdio_write32(struct intf_hdl *intfhdl, u32 addr, u32 val)
  *_SUCCESS(1)		Success
  *_FAIL(0)		Fail
  */
-static u32 sdio_read_port(
-	struct intf_hdl *intfhdl,
-	u32 addr,
-	u32 cnt,
-	u8 *mem
-)
+static u32 sdio_read_port(struct intf_hdl *intfhdl, u32 addr, u32 cnt, u8 *mem)
 {
 	struct adapter *adapter;
 	struct sdio_data *psdio;
@@ -310,12 +307,7 @@ static u32 sdio_read_port(
  *_SUCCESS(1)		Success
  *_FAIL(0)		Fail
  */
-static u32 sdio_write_port(
-	struct intf_hdl *intfhdl,
-	u32 addr,
-	u32 cnt,
-	u8 *mem
-)
+static u32 sdio_write_port(struct intf_hdl *intfhdl, u32 addr, u32 cnt, u8 *mem)
 {
 	struct adapter *adapter;
 	struct sdio_data *psdio;
@@ -336,10 +328,8 @@ static u32 sdio_write_port(
 
 	err = sd_write(intfhdl, addr, cnt, xmitbuf->pdata);
 
-	rtw_sctx_done_err(
-		&xmitbuf->sctx,
-		err ? RTW_SCTX_DONE_WRITE_PORT_ERR : RTW_SCTX_DONE_SUCCESS
-	);
+	rtw_sctx_done_err(&xmitbuf->sctx, err ? RTW_SCTX_DONE_WRITE_PORT_ERR :
+						RTW_SCTX_DONE_SUCCESS);
 
 	if (err)
 		return _FAIL;
@@ -361,12 +351,7 @@ void sdio_set_intf_ops(struct adapter *adapter, struct _io_ops *ops)
 /*
  * Todo: align address to 4 bytes.
  */
-static s32 _sdio_local_read(
-	struct adapter *adapter,
-	u32 addr,
-	u32 cnt,
-	u8 *buf
-)
+static s32 _sdio_local_read(struct adapter *adapter, u32 addr, u32 cnt, u8 *buf)
 {
 	struct intf_hdl *intfhdl;
 	u8 mac_pwr_ctrl_on;
@@ -399,12 +384,7 @@ static s32 _sdio_local_read(
 /*
  * Todo: align address to 4 bytes.
  */
-s32 sdio_local_read(
-	struct adapter *adapter,
-	u32 addr,
-	u32 cnt,
-	u8 *buf
-)
+s32 sdio_local_read(struct adapter *adapter, u32 addr, u32 cnt, u8 *buf)
 {
 	struct intf_hdl *intfhdl;
 	u8 mac_pwr_ctrl_on;
@@ -417,10 +397,8 @@ s32 sdio_local_read(
 	hal_sdio_get_cmd_addr_8723b(adapter, SDIO_LOCAL_DEVICE_ID, addr, &addr);
 
 	rtw_hal_get_hwreg(adapter, HW_VAR_APFM_ON_MAC, &mac_pwr_ctrl_on);
-	if (
-		(!mac_pwr_ctrl_on) ||
-		(adapter_to_pwrctl(adapter)->fw_current_in_ps_mode)
-	)
+	if ((!mac_pwr_ctrl_on) ||
+	    (adapter_to_pwrctl(adapter)->fw_current_in_ps_mode))
 		return sd_cmd52_read(intfhdl, addr, cnt, buf);
 
 	n = round_up(cnt, 4);
@@ -440,12 +418,7 @@ s32 sdio_local_read(
 /*
  * Todo: align address to 4 bytes.
  */
-s32 sdio_local_write(
-	struct adapter *adapter,
-	u32 addr,
-	u32 cnt,
-	u8 *buf
-)
+s32 sdio_local_write(struct adapter *adapter, u32 addr, u32 cnt, u8 *buf)
 {
 	struct intf_hdl *intfhdl;
 	u8 mac_pwr_ctrl_on;
@@ -457,10 +430,8 @@ s32 sdio_local_write(
 	hal_sdio_get_cmd_addr_8723b(adapter, SDIO_LOCAL_DEVICE_ID, addr, &addr);
 
 	rtw_hal_get_hwreg(adapter, HW_VAR_APFM_ON_MAC, &mac_pwr_ctrl_on);
-	if (
-		(!mac_pwr_ctrl_on) ||
-		(adapter_to_pwrctl(adapter)->fw_current_in_ps_mode)
-	)
+	if ((!mac_pwr_ctrl_on) ||
+	    (adapter_to_pwrctl(adapter)->fw_current_in_ps_mode))
 		return sd_cmd52_write(intfhdl, addr, cnt, buf);
 
 	tmpbuf = kmemdup(buf, cnt, GFP_ATOMIC);
@@ -498,7 +469,6 @@ static u16 sdio_local_cmd52_read2byte(struct adapter *adapter, u32 addr)
 
 static u32 sdio_local_cmd53_read4byte(struct adapter *adapter, u32 addr)
 {
-
 	u8 mac_pwr_ctrl_on;
 	u32 val = 0;
 	struct intf_hdl *intfhdl = &adapter->iopriv.intf;
@@ -506,7 +476,8 @@ static u32 sdio_local_cmd53_read4byte(struct adapter *adapter, u32 addr)
 
 	hal_sdio_get_cmd_addr_8723b(adapter, SDIO_LOCAL_DEVICE_ID, addr, &addr);
 	rtw_hal_get_hwreg(adapter, HW_VAR_APFM_ON_MAC, &mac_pwr_ctrl_on);
-	if (!mac_pwr_ctrl_on || adapter_to_pwrctl(adapter)->fw_current_in_ps_mode) {
+	if (!mac_pwr_ctrl_on ||
+	    adapter_to_pwrctl(adapter)->fw_current_in_ps_mode) {
 		sd_cmd52_read(intfhdl, addr, 4, (u8 *)&le_tmp);
 		val = le32_to_cpu(le_tmp);
 	} else {
@@ -523,7 +494,8 @@ void SdioLocalCmd52Write1Byte(struct adapter *adapter, u32 addr, u8 v)
 	sd_cmd52_write(intfhdl, addr, 1, &v);
 }
 
-static void sdio_local_cmd52_write4byte(struct adapter *adapter, u32 addr, u32 v)
+static void sdio_local_cmd52_write4byte(struct adapter *adapter, u32 addr,
+					u32 v)
 {
 	struct intf_hdl *intfhdl = &adapter->iopriv.intf;
 	__le32 le_tmp;
@@ -553,7 +525,8 @@ static s32 read_interrupt_8723b_sdio(struct adapter *adapter, u32 *phisr)
 	hisr = 0;
 	while (hisr_len != 0) {
 		hisr_len--;
-		val8 = SdioLocalCmd52Read1Byte(adapter, SDIO_REG_HISR + hisr_len);
+		val8 = SdioLocalCmd52Read1Byte(adapter,
+					       SDIO_REG_HISR + hisr_len);
 		hisr |= (val8 << (8 * hisr_len));
 	}
 
@@ -576,9 +549,8 @@ void InitInterrupt8723BSdio(struct adapter *adapter)
 	struct hal_com_data *haldata;
 
 	haldata = GET_HAL_DATA(adapter);
-	haldata->sdio_himr = (u32)(SDIO_HIMR_RX_REQUEST_MSK	|
-				   SDIO_HIMR_AVAL_MSK		|
-				   0);
+	haldata->sdio_himr =
+		(u32)(SDIO_HIMR_RX_REQUEST_MSK | SDIO_HIMR_AVAL_MSK | 0);
 }
 
 /*
@@ -642,7 +614,7 @@ static struct recv_buf *sd_recv_rxfifo(struct adapter *adapter, u32 size)
 	u32 readsize, ret;
 	u8 *readbuf;
 	struct recv_priv *recv_priv;
-	struct recv_buf	*recvbuf;
+	struct recv_buf *recvbuf;
 
 	/*  Patch for some SDIO Host 4 bytes issue */
 	/*  ex. RK3188 */
@@ -662,7 +634,8 @@ static struct recv_buf *sd_recv_rxfifo(struct adapter *adapter, u32 size)
 		SIZE_PTR tmpaddr = 0;
 		SIZE_PTR alignment = 0;
 
-		recvbuf->pskb = __dev_alloc_skb(MAX_RECVBUF_SZ + RECVBUFF_ALIGN_SZ, GFP_ATOMIC);
+		recvbuf->pskb = __dev_alloc_skb(
+			MAX_RECVBUF_SZ + RECVBUFF_ALIGN_SZ, GFP_ATOMIC);
 		if (!recvbuf->pskb)
 			return NULL;
 
@@ -675,7 +648,8 @@ static struct recv_buf *sd_recv_rxfifo(struct adapter *adapter, u32 size)
 
 	/* 3 3. read data from rxfifo */
 	readbuf = recvbuf->pskb->data;
-	ret = sdio_read_port(&adapter->iopriv.intf, WLAN_RX0FF_DEVICE_ID, readsize, readbuf);
+	ret = sdio_read_port(&adapter->iopriv.intf, WLAN_RX0FF_DEVICE_ID,
+			     readsize, readbuf);
 	if (ret == _FAIL)
 		return NULL;
 
@@ -738,7 +712,8 @@ void sd_int_dpc(struct adapter *adapter)
 		status = kmalloc(4, GFP_ATOMIC);
 		if (status) {
 			addr = REG_TXDMA_STATUS;
-			hal_sdio_get_cmd_addr_8723b(adapter, WLAN_IOREG_DEVICE_ID, addr, &addr);
+			hal_sdio_get_cmd_addr_8723b(
+				adapter, WLAN_IOREG_DEVICE_ID, addr, &addr);
 			_sd_read(intfhdl, addr, 4, status);
 			_sd_write(intfhdl, addr, 4, status);
 			kfree(status);
@@ -750,10 +725,12 @@ void sd_int_dpc(struct adapter *adapter)
 
 		c2h_evt = kzalloc(16, GFP_ATOMIC);
 		if (c2h_evt) {
-			if (c2h_evt_read_88xx(adapter, (u8 *)c2h_evt) == _SUCCESS) {
+			if (c2h_evt_read_88xx(adapter, (u8 *)c2h_evt) ==
+			    _SUCCESS) {
 				if (c2h_id_filter_ccx_8723b((u8 *)c2h_evt)) {
 					/* Handle CCX report here */
-					rtw_hal_c2h_handler(adapter, (u8 *)c2h_evt);
+					rtw_hal_c2h_handler(adapter,
+							    (u8 *)c2h_evt);
 					kfree(c2h_evt);
 				} else {
 					rtw_c2h_wk_cmd(adapter, (u8 *)c2h_evt);
@@ -775,9 +752,11 @@ void sd_int_dpc(struct adapter *adapter)
 
 		hal->sdio_hisr ^= SDIO_HISR_RX_REQUEST;
 		do {
-			hal->SdioRxFIFOSize = sdio_local_cmd52_read2byte(adapter, SDIO_REG_RX0_REQ_LEN);
+			hal->SdioRxFIFOSize = sdio_local_cmd52_read2byte(
+				adapter, SDIO_REG_RX0_REQ_LEN);
 			if (hal->SdioRxFIFOSize != 0) {
-				recvbuf = sd_recv_rxfifo(adapter, hal->SdioRxFIFOSize);
+				recvbuf = sd_recv_rxfifo(adapter,
+							 hal->SdioRxFIFOSize);
 				if (recvbuf)
 					sd_rxhandler(adapter, recvbuf);
 				else {
@@ -802,9 +781,7 @@ void sd_int_hdl(struct adapter *adapter)
 {
 	struct hal_com_data *hal;
 
-	if (
-		(adapter->bDriverStopped) || (adapter->bSurpriseRemoved)
-	)
+	if ((adapter->bDriverStopped) || (adapter->bSurpriseRemoved))
 		return;
 
 	hal = GET_HAL_DATA(adapter);
@@ -820,7 +797,8 @@ void sd_int_hdl(struct adapter *adapter)
 		/*  clear HISR */
 		v32 = hal->sdio_hisr & MASK_SDIO_HISR_CLEAR;
 		if (v32)
-			sdio_local_cmd52_write4byte(adapter, SDIO_REG_HISR, v32);
+			sdio_local_cmd52_write4byte(adapter, SDIO_REG_HISR,
+						    v32);
 
 		sd_int_dpc(adapter);
 	}
@@ -843,7 +821,8 @@ u8 HalQueryTxBufferStatus8723BSdio(struct adapter *adapter)
 
 	hal = GET_HAL_DATA(adapter);
 
-	numof_free_page = sdio_local_cmd53_read4byte(adapter, SDIO_REG_FREE_TXPG);
+	numof_free_page =
+		sdio_local_cmd53_read4byte(adapter, SDIO_REG_FREE_TXPG);
 
 	memcpy(hal->SdioTxFIFOFreePage, &numof_free_page, 4);
 
@@ -855,5 +834,6 @@ void HalQueryTxOQTBufferStatus8723BSdio(struct adapter *adapter)
 {
 	struct hal_com_data *haldata = GET_HAL_DATA(adapter);
 
-	haldata->SdioTxOQTFreeSpace = SdioLocalCmd52Read1Byte(adapter, SDIO_REG_OQT_FREE_PG);
+	haldata->SdioTxOQTFreeSpace =
+		SdioLocalCmd52Read1Byte(adapter, SDIO_REG_OQT_FREE_PG);
 }
diff --git a/drivers/staging/rtl8723bs/include/Hal8192CPhyReg.h b/drivers/staging/rtl8723bs/include/Hal8192CPhyReg.h
index f8cf2aee5157b..0265c31b7e885 100644
--- a/drivers/staging/rtl8723bs/include/Hal8192CPhyReg.h
+++ b/drivers/staging/rtl8723bs/include/Hal8192CPhyReg.h
@@ -30,7 +30,6 @@
 #ifndef __INC_HAL8192CPHYREG_H
 #define __INC_HAL8192CPHYREG_H
 
-
 /*--------------------------Define Parameters-------------------------------*/
 
 /*  */
@@ -49,184 +48,185 @@
 /*  */
 /*  3. Page8(0x800) */
 /*  */
-#define		rFPGA0_RFMOD				0x800	/* RF mode & CCK TxSC  RF BW Setting?? */
+#define rFPGA0_RFMOD 0x800 /* RF mode & CCK TxSC  RF BW Setting?? */
 
-#define		rFPGA0_XA_HSSIParameter1		0x820	/*  RF 3 wire register */
-#define		rFPGA0_XA_HSSIParameter2		0x824
-#define		rFPGA0_XB_HSSIParameter1		0x828
-#define		rFPGA0_XB_HSSIParameter2		0x82c
-#define		rTxAGC_B_Rate18_06				0x830
-#define		rTxAGC_B_Rate54_24				0x834
-#define		rTxAGC_B_CCK1_55_Mcs32		0x838
-#define		rTxAGC_B_Mcs03_Mcs00			0x83c
+#define rFPGA0_XA_HSSIParameter1 0x820 /*  RF 3 wire register */
+#define rFPGA0_XA_HSSIParameter2 0x824
+#define rFPGA0_XB_HSSIParameter1 0x828
+#define rFPGA0_XB_HSSIParameter2 0x82c
+#define rTxAGC_B_Rate18_06 0x830
+#define rTxAGC_B_Rate54_24 0x834
+#define rTxAGC_B_CCK1_55_Mcs32 0x838
+#define rTxAGC_B_Mcs03_Mcs00 0x83c
 
-#define		rTxAGC_B_Mcs07_Mcs04			0x848
+#define rTxAGC_B_Mcs07_Mcs04 0x848
 
-#define		rFPGA0_XA_LSSIParameter		0x840
-#define		rFPGA0_XB_LSSIParameter		0x844
+#define rFPGA0_XA_LSSIParameter 0x840
+#define rFPGA0_XB_LSSIParameter 0x844
 
-#define		rFPGA0_XCD_SwitchControl		0x85c
+#define rFPGA0_XCD_SwitchControl 0x85c
 
-#define		rFPGA0_XA_RFInterfaceOE		0x860	/*  RF Channel switch */
-#define		rFPGA0_XB_RFInterfaceOE		0x864
+#define rFPGA0_XA_RFInterfaceOE 0x860 /*  RF Channel switch */
+#define rFPGA0_XB_RFInterfaceOE 0x864
 
-#define		rTxAGC_B_CCK11_A_CCK2_11		0x86c
+#define rTxAGC_B_CCK11_A_CCK2_11 0x86c
 
-#define		rFPGA0_XAB_RFInterfaceSW		0x870	/*  RF Interface Software Control */
-#define		rFPGA0_XCD_RFInterfaceSW		0x874
+#define rFPGA0_XAB_RFInterfaceSW 0x870 /*  RF Interface Software Control */
+#define rFPGA0_XCD_RFInterfaceSW 0x874
 
-#define		rFPGA0_XA_LSSIReadBack		0x8a0	/*  Transceiver LSSI Readback */
-#define		rFPGA0_XB_LSSIReadBack		0x8a4
+#define rFPGA0_XA_LSSIReadBack 0x8a0 /*  Transceiver LSSI Readback */
+#define rFPGA0_XB_LSSIReadBack 0x8a4
 
-#define		TransceiverA_HSPI_Readback	0x8b8	/*  Transceiver A HSPI Readback */
-#define		TransceiverB_HSPI_Readback	0x8bc	/*  Transceiver B HSPI Readback */
+#define TransceiverA_HSPI_Readback 0x8b8 /*  Transceiver A HSPI Readback */
+#define TransceiverB_HSPI_Readback 0x8bc /*  Transceiver B HSPI Readback */
 
 /*  */
 /*  4. Page9(0x900) */
 /*  */
-#define		rFPGA1_RFMOD				0x900	/* RF mode & OFDM TxSC  RF BW Setting?? */
+#define rFPGA1_RFMOD 0x900 /* RF mode & OFDM TxSC  RF BW Setting?? */
 
-#define		rS0S1_PathSwitch			0x948
+#define rS0S1_PathSwitch 0x948
 
 /*  */
 /*  5. PageA(0xA00) */
 /*  */
 /*  Set Control channel to upper or lower. These settings are required only for 40MHz */
-#define		rCCK0_System				0xa00
+#define rCCK0_System 0xa00
 
-#define		rCCK0_AFESetting			0xa04	/*  Disable init gain now Select RX path by RSSI */
+#define rCCK0_AFESetting \
+	0xa04 /*  Disable init gain now Select RX path by RSSI */
 
 /*  */
 /*  PageB(0xB00) */
 /*  */
-#define		rConfig_AntA				0xb68
-#define		rConfig_AntB				0xb6c
+#define rConfig_AntA 0xb68
+#define rConfig_AntB 0xb6c
 
 /*  */
 /*  6. PageC(0xC00) */
 /*  */
-#define		rOFDM0_TRxPathEnable		0xc04
-#define		rOFDM0_TRMuxPar			0xc08
+#define rOFDM0_TRxPathEnable 0xc04
+#define rOFDM0_TRMuxPar 0xc08
 
-#define		rOFDM0_XARxIQImbalance		0xc14  /* RxIQ imbalance matrix */
-#define		rOFDM0_XBRxIQImbalance		0xc1c
+#define rOFDM0_XARxIQImbalance 0xc14 /* RxIQ imbalance matrix */
+#define rOFDM0_XBRxIQImbalance 0xc1c
 
-#define		rOFDM0_RxDSP				0xc40  /* Rx Sync Path */
-#define		rOFDM0_ECCAThreshold		0xc4c /*  energy CCA */
+#define rOFDM0_RxDSP 0xc40 /* Rx Sync Path */
+#define rOFDM0_ECCAThreshold 0xc4c /*  energy CCA */
 
-#define		rOFDM0_AGCRSSITable			0xc78
+#define rOFDM0_AGCRSSITable 0xc78
 
-#define		rOFDM0_XATxIQImbalance		0xc80	/*  TX PWR TRACK and DIG */
-#define		rOFDM0_XBTxIQImbalance		0xc88
-#define		rOFDM0_XCTxAFE					0xc94
-#define		rOFDM0_XDTxAFE				0xc9c
+#define rOFDM0_XATxIQImbalance 0xc80 /*  TX PWR TRACK and DIG */
+#define rOFDM0_XBTxIQImbalance 0xc88
+#define rOFDM0_XCTxAFE 0xc94
+#define rOFDM0_XDTxAFE 0xc9c
 
-#define		rOFDM0_RxIQExtAnta			0xca0
-#define		rOFDM0_TxPseudoNoiseWgt		0xce4
+#define rOFDM0_RxIQExtAnta 0xca0
+#define rOFDM0_TxPseudoNoiseWgt 0xce4
 
 /*  */
 /*  7. PageD(0xD00) */
 /*  */
-#define		rOFDM1_LSTF					0xd00
+#define rOFDM1_LSTF 0xd00
 
 /*  */
 /*  8. PageE(0xE00) */
 /*  */
-#define		rTxAGC_A_Rate18_06			0xe00
-#define		rTxAGC_A_Rate54_24			0xe04
-#define		rTxAGC_A_CCK1_Mcs32			0xe08
-#define		rTxAGC_A_Mcs03_Mcs00			0xe10
-#define		rTxAGC_A_Mcs07_Mcs04			0xe14
-
-#define		rFPGA0_IQK					0xe28
-#define		rTx_IQK_Tone_A				0xe30
-#define		rRx_IQK_Tone_A				0xe34
-#define		rTx_IQK_PI_A					0xe38
-#define		rRx_IQK_PI_A					0xe3c
-
-#define		rTx_IQK							0xe40
-#define		rRx_IQK						0xe44
-#define		rIQK_AGC_Pts					0xe48
-#define		rIQK_AGC_Rsp					0xe4c
-#define		rTx_IQK_Tone_B				0xe50
-#define		rRx_IQK_Tone_B				0xe54
-#define		rTx_IQK_PI_B					0xe58
-#define		rRx_IQK_PI_B					0xe5c
-
-#define		rBlue_Tooth					0xe6c
-#define		rRx_Wait_CCA					0xe70
-#define		rTx_CCK_RFON					0xe74
-#define		rTx_CCK_BBON				0xe78
-#define		rTx_OFDM_RFON				0xe7c
-#define		rTx_OFDM_BBON				0xe80
-#define		rTx_To_Rx					0xe84
-#define		rTx_To_Tx					0xe88
-#define		rRx_CCK						0xe8c
-
-#define		rTx_Power_Before_IQK_A		0xe94
-#define		rTx_Power_After_IQK_A			0xe9c
-
-#define		rRx_Power_Before_IQK_A_2		0xea4
-#define		rRx_Power_After_IQK_A_2		0xeac
-
-#define		rRx_OFDM					0xed0
-#define		rRx_Wait_RIFS				0xed4
-#define		rRx_TO_Rx					0xed8
-#define		rStandby						0xedc
-#define		rSleep						0xee0
-#define		rPMPD_ANAEN				0xeec
+#define rTxAGC_A_Rate18_06 0xe00
+#define rTxAGC_A_Rate54_24 0xe04
+#define rTxAGC_A_CCK1_Mcs32 0xe08
+#define rTxAGC_A_Mcs03_Mcs00 0xe10
+#define rTxAGC_A_Mcs07_Mcs04 0xe14
+
+#define rFPGA0_IQK 0xe28
+#define rTx_IQK_Tone_A 0xe30
+#define rRx_IQK_Tone_A 0xe34
+#define rTx_IQK_PI_A 0xe38
+#define rRx_IQK_PI_A 0xe3c
+
+#define rTx_IQK 0xe40
+#define rRx_IQK 0xe44
+#define rIQK_AGC_Pts 0xe48
+#define rIQK_AGC_Rsp 0xe4c
+#define rTx_IQK_Tone_B 0xe50
+#define rRx_IQK_Tone_B 0xe54
+#define rTx_IQK_PI_B 0xe58
+#define rRx_IQK_PI_B 0xe5c
+
+#define rBlue_Tooth 0xe6c
+#define rRx_Wait_CCA 0xe70
+#define rTx_CCK_RFON 0xe74
+#define rTx_CCK_BBON 0xe78
+#define rTx_OFDM_RFON 0xe7c
+#define rTx_OFDM_BBON 0xe80
+#define rTx_To_Rx 0xe84
+#define rTx_To_Tx 0xe88
+#define rRx_CCK 0xe8c
+
+#define rTx_Power_Before_IQK_A 0xe94
+#define rTx_Power_After_IQK_A 0xe9c
+
+#define rRx_Power_Before_IQK_A_2 0xea4
+#define rRx_Power_After_IQK_A_2 0xeac
+
+#define rRx_OFDM 0xed0
+#define rRx_Wait_RIFS 0xed4
+#define rRx_TO_Rx 0xed8
+#define rStandby 0xedc
+#define rSleep 0xee0
+#define rPMPD_ANAEN 0xeec
 
 /*  */
 /*  RL6052 Register definition */
 /*  */
-#define		RF_AC						0x00	/*  */
+#define RF_AC 0x00 /*  */
 
-#define		RF_TXM_IDAC				0x08	/*  */
+#define RF_TXM_IDAC 0x08 /*  */
 
-#define		RF_CHNLBW					0x18	/*  RF channel and BW switch */
+#define RF_CHNLBW 0x18 /*  RF channel and BW switch */
 
-#define		RF_RCK_OS					0x30	/*  RF TX PA control */
+#define RF_RCK_OS 0x30 /*  RF TX PA control */
 
-#define		RF_TXPA_G1					0x31	/*  RF TX PA control */
-#define		RF_TXPA_G2					0x32	/*  RF TX PA control */
+#define RF_TXPA_G1 0x31 /*  RF TX PA control */
+#define RF_TXPA_G2 0x32 /*  RF TX PA control */
 
-#define		RF_WE_LUT					0xEF
+#define RF_WE_LUT 0xEF
 
 /*  2. Page8(0x800) */
-#define		bRFMOD							0x1	/*  Reg 0x800 rFPGA0_RFMOD */
+#define bRFMOD 0x1 /*  Reg 0x800 rFPGA0_RFMOD */
 
-#define		b3WireDataLength			0x800	/*  Reg 0x820~84f rFPGA0_XA_HSSIParameter1 */
-#define		b3WireAddressLength			0x400
+#define b3WireDataLength 0x800 /*  Reg 0x820~84f rFPGA0_XA_HSSIParameter1 */
+#define b3WireAddressLength 0x400
 
-#define		bRFSI_RFENV				0x10	/*  Reg 0x870 rFPGA0_XAB_RFInterfaceSW */
+#define bRFSI_RFENV 0x10 /*  Reg 0x870 rFPGA0_XAB_RFInterfaceSW */
 
-#define		bLSSIReadAddress			0x7f800000   /*  T65 RF */
+#define bLSSIReadAddress 0x7f800000 /*  T65 RF */
 
-#define		bLSSIReadEdge				0x80000000   /* LSSI "Read" edge signal */
+#define bLSSIReadEdge 0x80000000 /* LSSI "Read" edge signal */
 
-#define		bLSSIReadBackData			0xfffff		/*  T65 RF */
+#define bLSSIReadBackData 0xfffff /*  T65 RF */
 
 /*  4. PageA(0xA00) */
-#define		bCCKSideBand			0x10	/*  Reg 0xa00 rCCK0_System 20/40 switch */
+#define bCCKSideBand 0x10 /*  Reg 0xa00 rCCK0_System 20/40 switch */
 
 /*  */
 /*  Other Definition */
 /*  */
 
 /* for PutRegsetting & GetRegSetting BitMask */
-#define		bMaskByte0			0xff	/*  Reg 0xc50 rOFDM0_XAAGCCore~0xC6f */
-#define		bMaskByte1			0xff00
-#define		bMaskByte2			0xff0000
-#define		bMaskByte3			0xff000000
-#define		bMaskHWord		0xffff0000
-#define		bMaskLWord			0x0000ffff
-#define		bMaskDWord		0xffffffff
-#define		bMaskH3Bytes		0xffffff00
-#define		bMask12Bits			0xfff
-#define		bMaskH4Bits			0xf0000000
-
-#define		bEnable			0x1	/*  Useless */
-
-#define rDPDT_control				0x92c
-
-#endif	/* __INC_HAL8192SPHYREG_H */
+#define bMaskByte0 0xff /*  Reg 0xc50 rOFDM0_XAAGCCore~0xC6f */
+#define bMaskByte1 0xff00
+#define bMaskByte2 0xff0000
+#define bMaskByte3 0xff000000
+#define bMaskHWord 0xffff0000
+#define bMaskLWord 0x0000ffff
+#define bMaskDWord 0xffffffff
+#define bMaskH3Bytes 0xffffff00
+#define bMask12Bits 0xfff
+#define bMaskH4Bits 0xf0000000
+
+#define bEnable 0x1 /*  Useless */
+
+#define rDPDT_control 0x92c
+
+#endif /* __INC_HAL8192SPHYREG_H */
diff --git a/drivers/staging/rtl8723bs/include/HalPwrSeqCmd.h b/drivers/staging/rtl8723bs/include/HalPwrSeqCmd.h
index b81252d374efb..27f3686c25e1e 100644
--- a/drivers/staging/rtl8723bs/include/HalPwrSeqCmd.h
+++ b/drivers/staging/rtl8723bs/include/HalPwrSeqCmd.h
@@ -12,64 +12,63 @@
 /*---------------------------------------------*/
 /* 3 The value of cmd: 4 bits */
 /*---------------------------------------------*/
-#define PWR_CMD_READ			0x00
-     /*  offset: the read register offset */
-     /*  msk: the mask of the read value */
-     /*  value: N/A, left by 0 */
-     /*  note: dirver shall implement this function by read & msk */
-
-#define PWR_CMD_WRITE			0x01
-     /*  offset: the read register offset */
-     /*  msk: the mask of the write bits */
-     /*  value: write value */
-     /*  note: driver shall implement this cmd by read & msk after write */
-
-#define PWR_CMD_POLLING			0x02
-     /*  offset: the read register offset */
-     /*  msk: the mask of the polled value */
-     /*  value: the value to be polled, masked by the msd field. */
-     /*  note: driver shall implement this cmd by */
-     /*  do{ */
-     /*  if ((Read(offset) & msk) == (value & msk)) */
-     /*  break; */
-     /*  } while (not timeout); */
-
-#define PWR_CMD_DELAY			0x03
-     /*  offset: the value to delay */
-     /*  msk: N/A */
-     /*  value: the unit of delay, 0: us, 1: ms */
-
-#define PWR_CMD_END				0x04
-     /*  offset: N/A */
-     /*  msk: N/A */
-     /*  value: N/A */
+#define PWR_CMD_READ 0x00
+/*  offset: the read register offset */
+/*  msk: the mask of the read value */
+/*  value: N/A, left by 0 */
+/*  note: dirver shall implement this function by read & msk */
+
+#define PWR_CMD_WRITE 0x01
+/*  offset: the read register offset */
+/*  msk: the mask of the write bits */
+/*  value: write value */
+/*  note: driver shall implement this cmd by read & msk after write */
+
+#define PWR_CMD_POLLING 0x02
+/*  offset: the read register offset */
+/*  msk: the mask of the polled value */
+/*  value: the value to be polled, masked by the msd field. */
+/*  note: driver shall implement this cmd by */
+/*  do{ */
+/*  if ((Read(offset) & msk) == (value & msk)) */
+/*  break; */
+/*  } while (not timeout); */
+
+#define PWR_CMD_DELAY 0x03
+/*  offset: the value to delay */
+/*  msk: N/A */
+/*  value: the unit of delay, 0: us, 1: ms */
+
+#define PWR_CMD_END 0x04
+/*  offset: N/A */
+/*  msk: N/A */
+/*  value: N/A */
 
 /*---------------------------------------------*/
 /* 3 The value of base: 4 bits */
 /*---------------------------------------------*/
-   /*  define the base address of each block */
-#define PWR_BASEADDR_MAC		0x00
-#define PWR_BASEADDR_SDIO		0x03
+/*  define the base address of each block */
+#define PWR_BASEADDR_MAC 0x00
+#define PWR_BASEADDR_SDIO 0x03
 
 /*---------------------------------------------*/
 /* 3 The value of interface_msk: 4 bits */
 /*---------------------------------------------*/
-#define	PWR_INTF_SDIO_MSK		BIT(0)
-#define	PWR_INTF_USB_MSK		BIT(1)
-#define	PWR_INTF_PCI_MSK		BIT(2)
-#define	PWR_INTF_ALL_MSK		(BIT(0)|BIT(1)|BIT(2)|BIT(3))
+#define PWR_INTF_SDIO_MSK BIT(0)
+#define PWR_INTF_USB_MSK BIT(1)
+#define PWR_INTF_PCI_MSK BIT(2)
+#define PWR_INTF_ALL_MSK (BIT(0) | BIT(1) | BIT(2) | BIT(3))
 
 /*---------------------------------------------*/
 /* 3 The value of fab_msk: 4 bits */
 /*---------------------------------------------*/
-#define	PWR_FAB_ALL_MSK			(BIT(0)|BIT(1)|BIT(2)|BIT(3))
+#define PWR_FAB_ALL_MSK (BIT(0) | BIT(1) | BIT(2) | BIT(3))
 
 /*---------------------------------------------*/
 /* 3 The value of cut_msk: 8 bits */
 /*---------------------------------------------*/
-#define	PWR_CUT_TESTCHIP_MSK	BIT(0)
-#define	PWR_CUT_ALL_MSK			0xFF
-
+#define PWR_CUT_TESTCHIP_MSK BIT(0)
+#define PWR_CUT_ALL_MSK 0xFF
 
 enum {
 	PWRSEQ_DELAY_US,
@@ -79,33 +78,27 @@ enum {
 struct wlan_pwr_cfg {
 	u16 offset;
 	u8 cut_msk;
-	u8 fab_msk:4;
-	u8 interface_msk:4;
-	u8 base:4;
-	u8 cmd:4;
+	u8 fab_msk : 4;
+	u8 interface_msk : 4;
+	u8 base : 4;
+	u8 cmd : 4;
 	u8 msk;
 	u8 value;
 };
 
-
-#define GET_PWR_CFG_OFFSET(__PWR_CMD)		__PWR_CMD.offset
-#define GET_PWR_CFG_CUT_MASK(__PWR_CMD)		__PWR_CMD.cut_msk
-#define GET_PWR_CFG_FAB_MASK(__PWR_CMD)		__PWR_CMD.fab_msk
-#define GET_PWR_CFG_INTF_MASK(__PWR_CMD)	__PWR_CMD.interface_msk
-#define GET_PWR_CFG_BASE(__PWR_CMD)			__PWR_CMD.base
-#define GET_PWR_CFG_CMD(__PWR_CMD)			__PWR_CMD.cmd
-#define GET_PWR_CFG_MASK(__PWR_CMD)			__PWR_CMD.msk
-#define GET_PWR_CFG_VALUE(__PWR_CMD)		__PWR_CMD.value
-
+#define GET_PWR_CFG_OFFSET(__PWR_CMD) __PWR_CMD.offset
+#define GET_PWR_CFG_CUT_MASK(__PWR_CMD) __PWR_CMD.cut_msk
+#define GET_PWR_CFG_FAB_MASK(__PWR_CMD) __PWR_CMD.fab_msk
+#define GET_PWR_CFG_INTF_MASK(__PWR_CMD) __PWR_CMD.interface_msk
+#define GET_PWR_CFG_BASE(__PWR_CMD) __PWR_CMD.base
+#define GET_PWR_CFG_CMD(__PWR_CMD) __PWR_CMD.cmd
+#define GET_PWR_CFG_MASK(__PWR_CMD) __PWR_CMD.msk
+#define GET_PWR_CFG_VALUE(__PWR_CMD) __PWR_CMD.value
 
 /*  */
 /* 	Prototype of protected function. */
 /*  */
-u8 HalPwrSeqCmdParsing(
-	struct adapter *padapter,
-	u8 		CutVersion,
-	u8 		FabVersion,
-	u8 		InterfaceType,
-	struct wlan_pwr_cfg	PwrCfgCmd[]);
+u8 HalPwrSeqCmdParsing(struct adapter *padapter, u8 CutVersion, u8 FabVersion,
+		       u8 InterfaceType, struct wlan_pwr_cfg PwrCfgCmd[]);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/include/basic_types.h b/drivers/staging/rtl8723bs/include/basic_types.h
index b6b1afaa9ab84..d197a2c8b37fa 100644
--- a/drivers/staging/rtl8723bs/include/basic_types.h
+++ b/drivers/staging/rtl8723bs/include/basic_types.h
@@ -7,8 +7,8 @@
 #ifndef __BASIC_TYPES_H__
 #define __BASIC_TYPES_H__
 
-#define SUCCESS	0
-#define FAIL	(-1)
+#define SUCCESS 0
+#define FAIL (-1)
 
 #include <linux/types.h>
 #include <linux/stddef.h>
@@ -29,17 +29,14 @@
 /*  */
 /*  Byte Swapping routine. */
 /*  */
-#define EF1Byte	(u8)
-#define EF2Byte		le16_to_cpu
-#define EF4Byte	le32_to_cpu
+#define EF1Byte (u8)
+#define EF2Byte le16_to_cpu
+#define EF4Byte le32_to_cpu
 
 /* Convert little data endian to host ordering */
-#define EF1BYTE(_val)		\
-	((u8)(_val))
-#define EF2BYTE(_val)		\
-	(le16_to_cpu(_val))
-#define EF4BYTE(_val)		\
-	(le32_to_cpu(_val))
+#define EF1BYTE(_val) ((u8)(_val))
+#define EF2BYTE(_val) (le16_to_cpu(_val))
+#define EF4BYTE(_val) (le32_to_cpu(_val))
 
 /*
  * Create a bit mask
@@ -49,12 +46,9 @@
  * BIT_LEN_MASK_32(2) => 0x00000003
  * BIT_LEN_MASK_32(32) => 0xFFFFFFFF
  */
-#define BIT_LEN_MASK_32(__bitlen)	 \
-	(0xFFFFFFFF >> (32 - (__bitlen)))
-#define BIT_LEN_MASK_16(__bitlen)	 \
-	(0xFFFF >> (16 - (__bitlen)))
-#define BIT_LEN_MASK_8(__bitlen) \
-	(0xFF >> (8 - (__bitlen)))
+#define BIT_LEN_MASK_32(__bitlen) (0xFFFFFFFF >> (32 - (__bitlen)))
+#define BIT_LEN_MASK_16(__bitlen) (0xFFFF >> (16 - (__bitlen)))
+#define BIT_LEN_MASK_8(__bitlen) (0xFF >> (8 - (__bitlen)))
 
 /*
  * Create an offset bit mask
@@ -74,33 +68,24 @@
  * Return 4-byte value in host byte ordering from
  * 4-byte pointer in little-endian system.
  */
-#define LE_P4BYTE_TO_HOST_4BYTE(__pstart) \
-	(EF4BYTE(*((__le32 *)(__pstart))))
-#define LE_P2BYTE_TO_HOST_2BYTE(__pstart) \
-	(EF2BYTE(*((__le16 *)(__pstart))))
-#define LE_P1BYTE_TO_HOST_1BYTE(__pstart) \
-	(EF1BYTE(*((u8 *)(__pstart))))
+#define LE_P4BYTE_TO_HOST_4BYTE(__pstart) (EF4BYTE(*((__le32 *)(__pstart))))
+#define LE_P2BYTE_TO_HOST_2BYTE(__pstart) (EF2BYTE(*((__le16 *)(__pstart))))
+#define LE_P1BYTE_TO_HOST_1BYTE(__pstart) (EF1BYTE(*((u8 *)(__pstart))))
 
 /*
  * Description:
  * Translate subfield (continuous bits in little-endian) of 4-byte value in
  * little byte to 4-byte value in host byte ordering.
  */
-#define LE_BITS_TO_4BYTE(__pstart, __bitoffset, __bitlen) \
-	(\
-		(LE_P4BYTE_TO_HOST_4BYTE(__pstart) >> (__bitoffset))  & \
-		BIT_LEN_MASK_32(__bitlen) \
-	)
-#define LE_BITS_TO_2BYTE(__pstart, __bitoffset, __bitlen) \
-	(\
-		(LE_P2BYTE_TO_HOST_2BYTE(__pstart) >> (__bitoffset)) & \
-		BIT_LEN_MASK_16(__bitlen) \
-	)
-#define LE_BITS_TO_1BYTE(__pstart, __bitoffset, __bitlen) \
-	(\
-		(LE_P1BYTE_TO_HOST_1BYTE(__pstart) >> (__bitoffset)) & \
-		BIT_LEN_MASK_8(__bitlen) \
-	)
+#define LE_BITS_TO_4BYTE(__pstart, __bitoffset, __bitlen)       \
+	((LE_P4BYTE_TO_HOST_4BYTE(__pstart) >> (__bitoffset)) & \
+	 BIT_LEN_MASK_32(__bitlen))
+#define LE_BITS_TO_2BYTE(__pstart, __bitoffset, __bitlen)       \
+	((LE_P2BYTE_TO_HOST_2BYTE(__pstart) >> (__bitoffset)) & \
+	 BIT_LEN_MASK_16(__bitlen))
+#define LE_BITS_TO_1BYTE(__pstart, __bitoffset, __bitlen)       \
+	((LE_P1BYTE_TO_HOST_1BYTE(__pstart) >> (__bitoffset)) & \
+	 BIT_LEN_MASK_8(__bitlen))
 
 /*
  * Description:
@@ -108,68 +93,58 @@
  * byte ordering and return the result in 4-byte value in host byte ordering.
  */
 #define LE_BITS_CLEARED_TO_4BYTE(__pstart, __bitoffset, __bitlen) \
-	(\
-		LE_P4BYTE_TO_HOST_4BYTE(__pstart)  & \
-		(~BIT_OFFSET_LEN_MASK_32(__bitoffset, __bitlen)) \
-	)
+	(LE_P4BYTE_TO_HOST_4BYTE(__pstart) &                      \
+	 (~BIT_OFFSET_LEN_MASK_32(__bitoffset, __bitlen)))
 #define LE_BITS_CLEARED_TO_2BYTE(__pstart, __bitoffset, __bitlen) \
-	(\
-		LE_P2BYTE_TO_HOST_2BYTE(__pstart) & \
-		(~BIT_OFFSET_LEN_MASK_16(__bitoffset, __bitlen)) \
-	)
+	(LE_P2BYTE_TO_HOST_2BYTE(__pstart) &                      \
+	 (~BIT_OFFSET_LEN_MASK_16(__bitoffset, __bitlen)))
 #define LE_BITS_CLEARED_TO_1BYTE(__pstart, __bitoffset, __bitlen) \
-	(\
-		LE_P1BYTE_TO_HOST_1BYTE(__pstart) & \
-		(~BIT_OFFSET_LEN_MASK_8(__bitoffset, __bitlen)) \
-	)
+	(LE_P1BYTE_TO_HOST_1BYTE(__pstart) &                      \
+	 (~BIT_OFFSET_LEN_MASK_8(__bitoffset, __bitlen)))
 
 /*
  * Description:
  * Set subfield of little-endian 4-byte value to specified value.
  */
-#define SET_BITS_TO_LE_4BYTE(__pstart, __bitoffset, __bitlen, __val) \
-		(*((u32 *)(__pstart)) =				\
-		(						\
-		LE_BITS_CLEARED_TO_4BYTE(__pstart, __bitoffset, __bitlen) | \
-		((((u32)__val) & BIT_LEN_MASK_32(__bitlen)) << (__bitoffset)) \
-		))
-
-#define SET_BITS_TO_LE_2BYTE(__pstart, __bitoffset, __bitlen, __val) \
-		(*((u16 *)(__pstart)) =				\
-		(					\
-		LE_BITS_CLEARED_TO_2BYTE(__pstart, __bitoffset, __bitlen) | \
-		((((u16)__val) & BIT_LEN_MASK_16(__bitlen)) << (__bitoffset)) \
-		))
-
-#define SET_BITS_TO_LE_1BYTE(__pstart, __bitoffset, __bitlen, __val) \
-		(*((u8 *)(__pstart)) = EF1BYTE			\
-		(					\
-		LE_BITS_CLEARED_TO_1BYTE(__pstart, __bitoffset, __bitlen) | \
-		((((u8)__val) & BIT_LEN_MASK_8(__bitlen)) << (__bitoffset)) \
-		))
+#define SET_BITS_TO_LE_4BYTE(__pstart, __bitoffset, __bitlen, __val)          \
+	(*((u32 *)(__pstart)) =                                               \
+		 (LE_BITS_CLEARED_TO_4BYTE(__pstart, __bitoffset, __bitlen) | \
+		  ((((u32)__val) & BIT_LEN_MASK_32(__bitlen))                 \
+		   << (__bitoffset))))
+
+#define SET_BITS_TO_LE_2BYTE(__pstart, __bitoffset, __bitlen, __val)          \
+	(*((u16 *)(__pstart)) =                                               \
+		 (LE_BITS_CLEARED_TO_2BYTE(__pstart, __bitoffset, __bitlen) | \
+		  ((((u16)__val) & BIT_LEN_MASK_16(__bitlen))                 \
+		   << (__bitoffset))))
+
+#define SET_BITS_TO_LE_1BYTE(__pstart, __bitoffset, __bitlen, __val)         \
+	(*((u8 *)(__pstart)) = EF1BYTE(                                      \
+		 LE_BITS_CLEARED_TO_1BYTE(__pstart, __bitoffset, __bitlen) | \
+		 ((((u8)__val) & BIT_LEN_MASK_8(__bitlen)) << (__bitoffset))))
 
 #define LE_BITS_CLEARED_TO_1BYTE_8BIT(__pStart, __BitOffset, __BitLen) \
-	(\
-		LE_P1BYTE_TO_HOST_1BYTE(__pStart) \
-	)
-
-#define SET_BITS_TO_LE_1BYTE_8BIT(__pStart, __BitOffset, __BitLen, __Value) \
-{ \
-	*((u8 *)(__pStart)) = \
-		EF1Byte(\
-			LE_BITS_CLEARED_TO_1BYTE_8BIT(__pStart, __BitOffset, __BitLen) \
-			| \
-			((u8)__Value) \
-		); \
-}
+	(LE_P1BYTE_TO_HOST_1BYTE(__pStart))
 
-/*  Get the N-bytes alignent offset from the current length */
-#define N_BYTE_ALIGMENT(__Value, __Aligment) ((__Aligment == 1) ? (__Value) : (((__Value + __Aligment - 1) / __Aligment) * __Aligment))
+#define SET_BITS_TO_LE_1BYTE_8BIT(__pStart, __BitOffset, __BitLen, __Value)  \
+	{                                                                    \
+		*((u8 *)(__pStart)) = EF1Byte(                               \
+			LE_BITS_CLEARED_TO_1BYTE_8BIT(__pStart, __BitOffset, \
+						      __BitLen) |            \
+			((u8)__Value));                                      \
+	}
 
-#define TEST_FLAG(__Flag, __testFlag)		(((__Flag) & (__testFlag)) != 0)
-#define SET_FLAG(__Flag, __setFlag)			((__Flag) |= __setFlag)
-#define CLEAR_FLAG(__Flag, __clearFlag)		((__Flag) &= ~(__clearFlag))
-#define CLEAR_FLAGS(__Flag)					((__Flag) = 0)
-#define TEST_FLAGS(__Flag, __testFlags)		(((__Flag) & (__testFlags)) == (__testFlags))
+/*  Get the N-bytes alignent offset from the current length */
+#define N_BYTE_ALIGMENT(__Value, __Aligment) \
+	((__Aligment == 1) ?                 \
+		 (__Value) :                 \
+		 (((__Value + __Aligment - 1) / __Aligment) * __Aligment))
+
+#define TEST_FLAG(__Flag, __testFlag) (((__Flag) & (__testFlag)) != 0)
+#define SET_FLAG(__Flag, __setFlag) ((__Flag) |= __setFlag)
+#define CLEAR_FLAG(__Flag, __clearFlag) ((__Flag) &= ~(__clearFlag))
+#define CLEAR_FLAGS(__Flag) ((__Flag) = 0)
+#define TEST_FLAGS(__Flag, __testFlags) \
+	(((__Flag) & (__testFlags)) == (__testFlags))
 
 #endif /* __BASIC_TYPES_H__ */
diff --git a/drivers/staging/rtl8723bs/include/cmd_osdep.h b/drivers/staging/rtl8723bs/include/cmd_osdep.h
index 91d933d71945d..3d09242391ab2 100644
--- a/drivers/staging/rtl8723bs/include/cmd_osdep.h
+++ b/drivers/staging/rtl8723bs/include/cmd_osdep.h
@@ -7,10 +7,10 @@
 #ifndef __CMD_OSDEP_H_
 #define __CMD_OSDEP_H_
 
-int rtw_init_cmd_priv(struct	cmd_priv *pcmdpriv);
+int rtw_init_cmd_priv(struct cmd_priv *pcmdpriv);
 int rtw_init_evt_priv(struct evt_priv *pevtpriv);
-extern void _rtw_free_evt_priv(struct	evt_priv *pevtpriv);
-extern void _rtw_free_cmd_priv(struct	cmd_priv *pcmdpriv);
-extern struct	cmd_obj	*_rtw_dequeue_cmd(struct __queue *queue);
+extern void _rtw_free_evt_priv(struct evt_priv *pevtpriv);
+extern void _rtw_free_cmd_priv(struct cmd_priv *pcmdpriv);
+extern struct cmd_obj *_rtw_dequeue_cmd(struct __queue *queue);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/include/drv_types.h b/drivers/staging/rtl8723bs/include/drv_types.h
index 552d0c5fa47ff..4970cdde5b9e5 100644
--- a/drivers/staging/rtl8723bs/include/drv_types.h
+++ b/drivers/staging/rtl8723bs/include/drv_types.h
@@ -10,7 +10,6 @@
 
 --------------------------------------------------------------------------------*/
 
-
 #ifndef __DRV_TYPES_H__
 #define __DRV_TYPES_H__
 
@@ -66,32 +65,32 @@ struct registry_priv {
 	u8 rfintfs;
 	u8 lbkmode;
 	u8 hci;
-	struct ndis_802_11_ssid	ssid;
-	u8 network_mode;	/* infra, ad-hoc, auto */
-	u8 channel;/* ad-hoc support requirement */
-	u8 wireless_mode;/* A, B, G, auto */
-	u8 scan_mode;/* active, passive */
+	struct ndis_802_11_ssid ssid;
+	u8 network_mode; /* infra, ad-hoc, auto */
+	u8 channel; /* ad-hoc support requirement */
+	u8 wireless_mode; /* A, B, G, auto */
+	u8 scan_mode; /* active, passive */
 	u8 radio_enable;
-	u8 preamble;/* long, short, auto */
-	u8 vrtl_carrier_sense;/* Enable, Disable, Auto */
-	u8 vcs_type;/* RTS/CTS, CTS-to-self */
+	u8 preamble; /* long, short, auto */
+	u8 vrtl_carrier_sense; /* Enable, Disable, Auto */
+	u8 vcs_type; /* RTS/CTS, CTS-to-self */
 	u16 rts_thresh;
-	u16  frag_thresh;
+	u16 frag_thresh;
 	u8 adhoc_tx_pwr;
 	u8 soft_ap;
 	u8 power_mgnt;
 	u8 ips_mode;
 	u8 smart_ps;
-	u8   usb_rxagg_mode;
+	u8 usb_rxagg_mode;
 	u8 long_retry_lmt;
 	u8 short_retry_lmt;
 	u16 busy_thresh;
 	u8 ack_policy;
-	u8  mp_dm;
+	u8 mp_dm;
 	u8 software_encrypt;
 	u8 software_decrypt;
 	u8 acm_method;
-	  /* UAPSD */
+	/* UAPSD */
 	u8 wmm_enable;
 	u8 uapsd_enable;
 	u8 uapsd_max_sp;
@@ -100,7 +99,7 @@ struct registry_priv {
 	u8 uapsd_acvi_en;
 	u8 uapsd_acvo_en;
 
-	struct wlan_bssid_ex    dev_network;
+	struct wlan_bssid_ex dev_network;
 
 	u8 ht_enable;
 	/*
@@ -109,9 +108,9 @@ struct registry_priv {
 	 * 0x01 means enable 2.4G 40MHz
 	 */
 	u8 bw_mode;
-	u8 ampdu_enable;/* for tx */
+	u8 ampdu_enable; /* for tx */
 	u8 rx_stbc;
-	u8 ampdu_amsdu;/* A-MPDU Supports A-MSDU is permitted */
+	u8 ampdu_amsdu; /* A-MPDU Supports A-MSDU is permitted */
 	/*  Short GI support Bit Map */
 	/*  BIT0 - 20MHz, 1: support, 0: non-support */
 	/*  BIT1 - 40MHz, 1: support, 0: non-support */
@@ -129,23 +128,23 @@ struct registry_priv {
 
 	u8 low_power;
 
-	u8 wifi_spec;/*  !turbo_mode */
+	u8 wifi_spec; /*  !turbo_mode */
 
 	u8 channel_plan;
 
-	s8	ant_num;
+	s8 ant_num;
 
 	/* false:Reject AP's Add BA req, true:accept AP's Add BA req */
-	bool	accept_addba_req;
+	bool accept_addba_req;
 
 	u8 antdiv_cfg;
 	u8 antdiv_type;
 
-	u8 usbss_enable;/* 0:disable, 1:enable */
-	u8 hwpdn_mode;/* 0:disable, 1:enable, 2:decide by EFUSE config */
-	u8 hwpwrp_detect;/* 0:disable, 1:enable */
+	u8 usbss_enable; /* 0:disable, 1:enable */
+	u8 hwpdn_mode; /* 0:disable, 1:enable, 2:decide by EFUSE config */
+	u8 hwpwrp_detect; /* 0:disable, 1:enable */
 
-	u8 hw_wps_pbc;/* 0:disable, 1:enable */
+	u8 hw_wps_pbc; /* 0:disable, 1:enable */
 
 	u8 max_roaming_times; /*  the max number driver will try to roaming */
 
@@ -160,7 +159,7 @@ struct registry_priv {
 	u8 reg_enable_tx_power_by_rate;
 	u8 reg_power_base;
 	u8 reg_pwr_tbl_sel;
-	u8  check_fw_ps;
+	u8 check_fw_ps;
 
 	u8 qos_opt_enable;
 
@@ -170,24 +169,26 @@ struct registry_priv {
 #include <drv_types_sdio.h>
 
 #define GET_PRIMARY_ADAPTER(padapter) (((struct adapter *)padapter)->dvobj->if1)
-#define GET_IFACE_NUMS(padapter) (((struct adapter *)padapter)->dvobj->iface_nums)
-#define GET_ADAPTER(padapter, iface_id) (((struct adapter *)padapter)->dvobj->padapters[iface_id])
+#define GET_IFACE_NUMS(padapter) \
+	(((struct adapter *)padapter)->dvobj->iface_nums)
+#define GET_ADAPTER(padapter, iface_id) \
+	(((struct adapter *)padapter)->dvobj->padapters[iface_id])
 
 struct rtw_traffic_statistics {
 	/*  tx statistics */
-	u64	tx_bytes;
-	u64	tx_pkts;
-	u64	tx_drop;
-	u64	cur_tx_bytes;
-	u64	last_tx_bytes;
+	u64 tx_bytes;
+	u64 tx_pkts;
+	u64 tx_drop;
+	u64 cur_tx_bytes;
+	u64 last_tx_bytes;
 	u32 cur_tx_tp; /*  Tx throughput in MBps. */
 
 	/*  rx statistics */
-	u64	rx_bytes;
-	u64	rx_pkts;
-	u64	rx_drop;
-	u64	cur_rx_bytes;
-	u64	last_rx_bytes;
+	u64 rx_bytes;
+	u64 rx_pkts;
+	u64 rx_drop;
+	u64 cur_rx_bytes;
+	u64 last_rx_bytes;
 	u32 cur_rx_tp; /*  Rx throughput in MBps. */
 };
 
@@ -206,11 +207,11 @@ struct dvobj_priv {
 	/*-------- below is common data --------*/
 	struct adapter *if1; /* PRIMARY_ADAPTER */
 
-	s32	processing_dev_remove;
+	s32 processing_dev_remove;
 
 	/* for local/global synchronization */
 	/*  */
-	spinlock_t	lock;
+	spinlock_t lock;
 	int macid[NUM_STA];
 
 	struct mutex hw_init_mutex;
@@ -218,9 +219,10 @@ struct dvobj_priv {
 	struct mutex setch_mutex;
 	struct mutex setbw_mutex;
 
-	unsigned char oper_channel; /* saved channel info when call set_channel_bw */
+	unsigned char
+		oper_channel; /* saved channel info when call set_channel_bw */
 	unsigned char oper_bwmode;
-	unsigned char oper_ch_offset;/* PRIME_CHNL_OFFSET */
+	unsigned char oper_ch_offset; /* PRIME_CHNL_OFFSET */
 	unsigned long on_oper_ch_time;
 
 	struct adapter *padapters;
@@ -229,9 +231,9 @@ struct dvobj_priv {
 	struct cam_entry_cache cam_cache[TOTAL_CAM_ENTRY];
 
 	/* In /Out Pipe information */
-	int	RtInPipe[2];
-	int	RtOutPipe[4];
-	u8 Queue2Pipe[HW_QUEUE_ENTRY];/* for out pipe mapping */
+	int RtInPipe[2];
+	int RtOutPipe[4];
+	u8 Queue2Pipe[HW_QUEUE_ENTRY]; /* for out pipe mapping */
 
 	u8 irq_alloc;
 	atomic_t continual_io_error;
@@ -240,17 +242,17 @@ struct dvobj_priv {
 
 	struct pwrctrl_priv pwrctl_priv;
 
-	struct rtw_traffic_statistics	traffic_stat;
-
-/*-------- below is for SDIO INTERFACE --------*/
+	struct rtw_traffic_statistics traffic_stat;
 
-struct sdio_data intf_data;
+	/*-------- below is for SDIO INTERFACE --------*/
 
+	struct sdio_data intf_data;
 };
 
 #define dvobj_to_pwrctl(dvobj) (&(dvobj->pwrctl_priv))
 
-static inline struct dvobj_priv *pwrctl_to_dvobj(struct pwrctrl_priv *pwrctl_priv)
+static inline struct dvobj_priv *
+pwrctl_to_dvobj(struct pwrctrl_priv *pwrctl_priv)
 {
 	return container_of(pwrctl_priv, struct dvobj_priv, pwrctl_priv);
 }
@@ -268,35 +270,36 @@ enum {
 };
 
 struct adapter {
-	int	DriverState;/*  for disable driver using module, use dongle to replace module. */
-	int	pid[3];/* process id from UI, 0:wps, 1:hostapd, 2:dhcpcd */
-	int	bDongle;/* build-in module or external dongle */
+	int DriverState; /*  for disable driver using module, use dongle to replace module. */
+	int pid[3]; /* process id from UI, 0:wps, 1:hostapd, 2:dhcpcd */
+	int bDongle; /* build-in module or external dongle */
 
 	struct dvobj_priv *dvobj;
-	struct	mlme_priv mlmepriv;
-	struct	mlme_ext_priv mlmeextpriv;
-	struct	cmd_priv cmdpriv;
-	struct	evt_priv evtpriv;
+	struct mlme_priv mlmepriv;
+	struct mlme_ext_priv mlmeextpriv;
+	struct cmd_priv cmdpriv;
+	struct evt_priv evtpriv;
 	/* struct	io_queue	*pio_queue; */
-	struct	io_priv iopriv;
-	struct	xmit_priv xmitpriv;
-	struct	recv_priv recvpriv;
-	struct	sta_priv stapriv;
-	struct	security_priv securitypriv;
-	spinlock_t   security_key_mutex; /*  add for CONFIG_IEEE80211W, none 11w also can use */
-	struct	registry_priv registrypriv;
-	struct	eeprom_priv eeprompriv;
-
-	struct	hostapd_priv *phostapdpriv;
+	struct io_priv iopriv;
+	struct xmit_priv xmitpriv;
+	struct recv_priv recvpriv;
+	struct sta_priv stapriv;
+	struct security_priv securitypriv;
+	spinlock_t
+		security_key_mutex; /*  add for CONFIG_IEEE80211W, none 11w also can use */
+	struct registry_priv registrypriv;
+	struct eeprom_priv eeprompriv;
+
+	struct hostapd_priv *phostapdpriv;
 
 	u32 setband;
 
 	void *HalData;
 	u32 hal_data_sz;
 
-	s32	bDriverStopped;
-	s32	bSurpriseRemoved;
-	s32  bCardDisableWOHSM;
+	s32 bDriverStopped;
+	s32 bSurpriseRemoved;
+	s32 bCardDisableWOHSM;
 
 	u32 IsrContent;
 	u32 ImrContent;
@@ -317,7 +320,6 @@ struct adapter {
 	int (*intf_alloc_irq)(struct dvobj_priv *dvobj);
 	void (*intf_free_irq)(struct dvobj_priv *dvobj);
 
-
 	void (*intf_start)(struct adapter *adapter);
 	void (*intf_stop)(struct adapter *adapter);
 
@@ -359,18 +361,18 @@ struct adapter {
 	struct adapter *pbuddy_adapter;
 
 	/* extend to support multi interface */
-       /* IFACE_ID0 is equals to PRIMARY_ADAPTER */
-       /* IFACE_ID1 is equals to SECONDARY_ADAPTER */
+	/* IFACE_ID0 is equals to PRIMARY_ADAPTER */
+	/* IFACE_ID1 is equals to SECONDARY_ADAPTER */
 	u8 iface_id;
 
 	/* for debug purpose */
 	u8 fix_rate;
 	u8 driver_vcs_en; /* Enable = 1, Disable = 0 driver control vrtl_carrier_sense for tx */
-	u8 driver_vcs_type;/* force 0:disable VCS, 1:RTS-CTS, 2:CTS-to-self when vcs_en = 1. */
-	u8 driver_ampdu_spacing;/* driver control AMPDU Density for peer sta's rx */
-	u8 driver_rx_ampdu_factor;/* 0xff: disable drv ctrl, 0:8k, 1:16k, 2:32k, 3:64k; */
+	u8 driver_vcs_type; /* force 0:disable VCS, 1:RTS-CTS, 2:CTS-to-self when vcs_en = 1. */
+	u8 driver_ampdu_spacing; /* driver control AMPDU Density for peer sta's rx */
+	u8 driver_rx_ampdu_factor; /* 0xff: disable drv ctrl, 0:8k, 1:16k, 2:32k, 3:64k; */
 
-	unsigned char     in_cta_test;
+	unsigned char in_cta_test;
 };
 
 #define adapter_to_dvobj(adapter) (adapter->dvobj)
@@ -380,34 +382,33 @@ struct adapter {
 /*  */
 /*  Function disabled. */
 /*  */
-#define DF_TX_BIT		BIT(0)
-#define DF_RX_BIT		BIT(1)
-#define DF_IO_BIT		BIT(2)
+#define DF_TX_BIT BIT(0)
+#define DF_RX_BIT BIT(1)
+#define DF_IO_BIT BIT(2)
 
 /* define RTW_ENABLE_FUNC(padapter, func) (atomic_sub(&adapter_to_dvobj(padapter)->disable_func, (func))) */
 
 static inline void RTW_ENABLE_FUNC(struct adapter *padapter, int func_bit)
 {
-	int	df = atomic_read(&adapter_to_dvobj(padapter)->disable_func);
+	int df = atomic_read(&adapter_to_dvobj(padapter)->disable_func);
 	df &= ~(func_bit);
 	atomic_set(&adapter_to_dvobj(padapter)->disable_func, df);
 }
 
-#define RTW_IS_FUNC_DISABLED(padapter, func_bit) (atomic_read(&adapter_to_dvobj(padapter)->disable_func) & (func_bit))
+#define RTW_IS_FUNC_DISABLED(padapter, func_bit) \
+	(atomic_read(&adapter_to_dvobj(padapter)->disable_func) & (func_bit))
 
-#define RTW_CANNOT_IO(padapter) \
-			((padapter)->bSurpriseRemoved || \
-			 RTW_IS_FUNC_DISABLED((padapter), DF_IO_BIT))
+#define RTW_CANNOT_IO(padapter)          \
+	((padapter)->bSurpriseRemoved || \
+	 RTW_IS_FUNC_DISABLED((padapter), DF_IO_BIT))
 
-#define RTW_CANNOT_RX(padapter) \
-			((padapter)->bDriverStopped || \
-			 (padapter)->bSurpriseRemoved || \
-			 RTW_IS_FUNC_DISABLED((padapter), DF_RX_BIT))
+#define RTW_CANNOT_RX(padapter)                                        \
+	((padapter)->bDriverStopped || (padapter)->bSurpriseRemoved || \
+	 RTW_IS_FUNC_DISABLED((padapter), DF_RX_BIT))
 
-#define RTW_CANNOT_TX(padapter) \
-			((padapter)->bDriverStopped || \
-			 (padapter)->bSurpriseRemoved || \
-			 RTW_IS_FUNC_DISABLED((padapter), DF_TX_BIT))
+#define RTW_CANNOT_TX(padapter)                                        \
+	((padapter)->bDriverStopped || (padapter)->bSurpriseRemoved || \
+	 RTW_IS_FUNC_DISABLED((padapter), DF_TX_BIT))
 
 static inline u8 *myid(struct eeprom_priv *peepriv)
 {
diff --git a/drivers/staging/rtl8723bs/include/drv_types_sdio.h b/drivers/staging/rtl8723bs/include/drv_types_sdio.h
index 25b3c3a39ee44..8ec4b4ed8f1eb 100644
--- a/drivers/staging/rtl8723bs/include/drv_types_sdio.h
+++ b/drivers/staging/rtl8723bs/include/drv_types_sdio.h
@@ -8,17 +8,17 @@
 #define __DRV_TYPES_SDIO_H__
 
 /*  SDIO Header Files */
-	#include <linux/mmc/sdio_func.h>
-	#include <linux/mmc/sdio_ids.h>
+#include <linux/mmc/sdio_func.h>
+#include <linux/mmc/sdio_ids.h>
 
 struct sdio_data {
-	u8  func_number;
+	u8 func_number;
 
-	u8  tx_block_mode;
-	u8  rx_block_mode;
+	u8 tx_block_mode;
+	u8 rx_block_mode;
 	u32 block_transfer_len;
 
-	struct sdio_func	 *func;
+	struct sdio_func *func;
 	void *sys_sdio_irq_thd;
 };
 
diff --git a/drivers/staging/rtl8723bs/include/hal_btcoex.h b/drivers/staging/rtl8723bs/include/hal_btcoex.h
index 525cce3574fe1..504aa40ce11fd 100644
--- a/drivers/staging/rtl8723bs/include/hal_btcoex.h
+++ b/drivers/staging/rtl8723bs/include/hal_btcoex.h
@@ -9,7 +9,7 @@
 
 #include <drv_types.h>
 
-#define LPS_RPWM_WAIT_MS	300
+#define LPS_RPWM_WAIT_MS 300
 
 /*  Some variables can't get from outsrc BT-Coex, */
 /*  so we need to save here */
diff --git a/drivers/staging/rtl8723bs/include/hal_com.h b/drivers/staging/rtl8723bs/include/hal_com.h
index 7bbf62cfd8257..0ea6019f48199 100644
--- a/drivers/staging/rtl8723bs/include/hal_com.h
+++ b/drivers/staging/rtl8723bs/include/hal_com.h
@@ -20,106 +20,92 @@
 /* 	Rate */
 /*  */
 /*  CCK Rates, TxHT = 0 */
-#define DESC_RATE1M					0x00
-#define DESC_RATE2M					0x01
-#define DESC_RATE5_5M				0x02
-#define DESC_RATE11M				0x03
+#define DESC_RATE1M 0x00
+#define DESC_RATE2M 0x01
+#define DESC_RATE5_5M 0x02
+#define DESC_RATE11M 0x03
 
 /*  OFDM Rates, TxHT = 0 */
-#define DESC_RATE6M					0x04
-#define DESC_RATE9M					0x05
-#define DESC_RATE12M				0x06
-#define DESC_RATE18M				0x07
-#define DESC_RATE24M				0x08
-#define DESC_RATE36M				0x09
-#define DESC_RATE48M				0x0a
-#define DESC_RATE54M				0x0b
+#define DESC_RATE6M 0x04
+#define DESC_RATE9M 0x05
+#define DESC_RATE12M 0x06
+#define DESC_RATE18M 0x07
+#define DESC_RATE24M 0x08
+#define DESC_RATE36M 0x09
+#define DESC_RATE48M 0x0a
+#define DESC_RATE54M 0x0b
 
 /*  MCS Rates, TxHT = 1 */
-#define DESC_RATEMCS0				0x0c
-#define DESC_RATEMCS1				0x0d
-#define DESC_RATEMCS2				0x0e
-#define DESC_RATEMCS3				0x0f
-#define DESC_RATEMCS4				0x10
-#define DESC_RATEMCS5				0x11
-#define DESC_RATEMCS6				0x12
-#define DESC_RATEMCS7				0x13
-
-#define HDATA_RATE(rate)\
-(rate == DESC_RATE1M) ? "CCK_1M" : \
-(rate == DESC_RATE2M) ? "CCK_2M" : \
-(rate == DESC_RATE5_5M) ? "CCK5_5M" : \
-(rate == DESC_RATE11M) ? "CCK_11M" : \
-(rate == DESC_RATE6M) ? "OFDM_6M" : \
-(rate == DESC_RATE9M) ? "OFDM_9M" : \
-(rate == DESC_RATE12M) ? "OFDM_12M" : \
-(rate == DESC_RATE18M) ? "OFDM_18M" : \
-(rate == DESC_RATE24M) ? "OFDM_24M" : \
-(rate == DESC_RATE36M) ? "OFDM_36M" : \
-(rate == DESC_RATE48M) ? "OFDM_48M" : \
-(rate == DESC_RATE54M) ? "OFDM_54M" : \
-(rate == DESC_RATEMCS0) ? "MCS0" : \
-(rate == DESC_RATEMCS1) ? "MCS1" : \
-(rate == DESC_RATEMCS2) ? "MCS2" : \
-(rate == DESC_RATEMCS3) ? "MCS3" : \
-(rate == DESC_RATEMCS4) ? "MCS4" : \
-(rate == DESC_RATEMCS5) ? "MCS5" : \
-(rate == DESC_RATEMCS6) ? "MCS6" : \
-(rate == DESC_RATEMCS7) ? "MCS7" : "UNKNOWN"
-
-enum{
+#define DESC_RATEMCS0 0x0c
+#define DESC_RATEMCS1 0x0d
+#define DESC_RATEMCS2 0x0e
+#define DESC_RATEMCS3 0x0f
+#define DESC_RATEMCS4 0x10
+#define DESC_RATEMCS5 0x11
+#define DESC_RATEMCS6 0x12
+#define DESC_RATEMCS7 0x13
+
+#define HDATA_RATE(rate)                       \
+	(rate == DESC_RATE1M)	? "CCK_1M" :   \
+	(rate == DESC_RATE2M)	? "CCK_2M" :   \
+	(rate == DESC_RATE5_5M) ? "CCK5_5M" :  \
+	(rate == DESC_RATE11M)	? "CCK_11M" :  \
+	(rate == DESC_RATE6M)	? "OFDM_6M" :  \
+	(rate == DESC_RATE9M)	? "OFDM_9M" :  \
+	(rate == DESC_RATE12M)	? "OFDM_12M" : \
+	(rate == DESC_RATE18M)	? "OFDM_18M" : \
+	(rate == DESC_RATE24M)	? "OFDM_24M" : \
+	(rate == DESC_RATE36M)	? "OFDM_36M" : \
+	(rate == DESC_RATE48M)	? "OFDM_48M" : \
+	(rate == DESC_RATE54M)	? "OFDM_54M" : \
+	(rate == DESC_RATEMCS0) ? "MCS0" :     \
+	(rate == DESC_RATEMCS1) ? "MCS1" :     \
+	(rate == DESC_RATEMCS2) ? "MCS2" :     \
+	(rate == DESC_RATEMCS3) ? "MCS3" :     \
+	(rate == DESC_RATEMCS4) ? "MCS4" :     \
+	(rate == DESC_RATEMCS5) ? "MCS5" :     \
+	(rate == DESC_RATEMCS6) ? "MCS6" :     \
+	(rate == DESC_RATEMCS7) ? "MCS7" :     \
+				  "UNKNOWN"
+
+enum {
 	UP_LINK,
 	DOWN_LINK,
 };
-enum rt_media_status {
-	RT_MEDIA_DISCONNECT = 0,
-	RT_MEDIA_CONNECT       = 1
-};
+enum rt_media_status { RT_MEDIA_DISCONNECT = 0, RT_MEDIA_CONNECT = 1 };
 
-#define MAX_DLFW_PAGE_SIZE			4096	/*  @ page : 4k bytes */
+#define MAX_DLFW_PAGE_SIZE 4096 /*  @ page : 4k bytes */
 
 /*  BK, BE, VI, VO, HCCA, MANAGEMENT, COMMAND, HIGH, BEACON. */
 /* define MAX_TX_QUEUE		9 */
 
-#define TX_SELE_HQ			BIT(0)		/*  High Queue */
-#define TX_SELE_LQ			BIT(1)		/*  Low Queue */
-#define TX_SELE_NQ			BIT(2)		/*  Normal Queue */
-#define TX_SELE_EQ			BIT(3)		/*  Extern Queue */
+#define TX_SELE_HQ BIT(0) /*  High Queue */
+#define TX_SELE_LQ BIT(1) /*  Low Queue */
+#define TX_SELE_NQ BIT(2) /*  Normal Queue */
+#define TX_SELE_EQ BIT(3) /*  Extern Queue */
 
-#define PageNum_128(_Len)		((u32)(((_Len) >> 7) + ((_Len) & 0x7F ? 1 : 0)))
+#define PageNum_128(_Len) ((u32)(((_Len) >> 7) + ((_Len) & 0x7F ? 1 : 0)))
 
 u8 rtw_hal_data_init(struct adapter *padapter);
 void rtw_hal_data_deinit(struct adapter *padapter);
 
 u8 /* return the final channel plan decision */
 hal_com_config_channel_plan(
-struct adapter *padapter,
-u8 	hw_channel_plan,	/* channel plan from HW (efuse/eeprom) */
-u8 	sw_channel_plan,	/* channel plan from SW (registry/module param) */
-u8 	def_channel_plan,	/* channel plan used when the former two is invalid */
-bool		AutoLoadFail
-	);
-
-bool
-HAL_IsLegalChannel(
-struct adapter *Adapter,
-u32 		Channel
-	);
+	struct adapter *padapter,
+	u8 hw_channel_plan, /* channel plan from HW (efuse/eeprom) */
+	u8 sw_channel_plan, /* channel plan from SW (registry/module param) */
+	u8 def_channel_plan, /* channel plan used when the former two is invalid */
+	bool AutoLoadFail);
+
+bool HAL_IsLegalChannel(struct adapter *Adapter, u32 Channel);
 
 u8 MRateToHwRate(u8 rate);
 
 u8 HwRateToMRate(u8 rate);
 
-void HalSetBrateCfg(
-	struct adapter *Adapter,
-	u8 *mBratesOS,
-	u16	*pBrateCfg);
+void HalSetBrateCfg(struct adapter *Adapter, u8 *mBratesOS, u16 *pBrateCfg);
 
-bool
-Hal_MappingOutPipe(
-struct adapter *padapter,
-u8 NumOutPipe
-	);
+bool Hal_MappingOutPipe(struct adapter *padapter, u8 NumOutPipe);
 
 void hal_init_macaddr(struct adapter *adapter);
 
@@ -129,7 +115,8 @@ void c2h_evt_clear(struct adapter *adapter);
 s32 c2h_evt_read_88xx(struct adapter *adapter, u8 *buf);
 
 u8 rtw_get_mgntframe_raid(struct adapter *adapter, unsigned char network_type);
-void rtw_hal_update_sta_rate_mask(struct adapter *padapter, struct sta_info *psta);
+void rtw_hal_update_sta_rate_mask(struct adapter *padapter,
+				  struct sta_info *psta);
 
 void SetHwReg(struct adapter *padapter, u8 variable, u8 *val);
 void GetHwReg(struct adapter *padapter, u8 variable, u8 *val);
@@ -140,13 +127,10 @@ u8 GetHalDefVar(struct adapter *adapter, enum hal_def_variable variable,
 
 bool GetU1ByteIntegerFromStringInDecimal(char *str, u8 *in);
 
-#define		HWSET_MAX_SIZE			512
+#define HWSET_MAX_SIZE 512
 
 void rtw_bb_rf_gain_offset(struct adapter *padapter);
 
-void SetHalODMVar(
-	struct adapter *Adapter,
-	enum hal_odm_variable		eVariable,
-	void *pValue1,
-	bool					bSet);
+void SetHalODMVar(struct adapter *Adapter, enum hal_odm_variable eVariable,
+		  void *pValue1, bool bSet);
 #endif /* __HAL_COMMON_H__ */
diff --git a/drivers/staging/rtl8723bs/include/hal_com_h2c.h b/drivers/staging/rtl8723bs/include/hal_com_h2c.h
index a59d130905659..c6e167cf9d5fe 100644
--- a/drivers/staging/rtl8723bs/include/hal_com_h2c.h
+++ b/drivers/staging/rtl8723bs/include/hal_com_h2c.h
@@ -7,12 +7,12 @@
 #ifndef __COMMON_H2C_H__
 #define __COMMON_H2C_H__
 
-#define H2C_RSVDPAGE_LOC_LEN		5
-#define H2C_MEDIA_STATUS_RPT_LEN		3
-#define H2C_PWRMODE_LEN			7
-#define H2C_PSTUNEPARAM_LEN			4
-#define H2C_MACID_CFG_LEN		7
-#define H2C_RSSI_SETTING_LEN		4
+#define H2C_RSVDPAGE_LOC_LEN 5
+#define H2C_MEDIA_STATUS_RPT_LEN 3
+#define H2C_PWRMODE_LEN 7
+#define H2C_PSTUNEPARAM_LEN 4
+#define H2C_MACID_CFG_LEN 7
+#define H2C_RSSI_SETTING_LEN 4
 
 /*  */
 /*     Structure    -------------------------------------------------- */
diff --git a/drivers/staging/rtl8723bs/include/hal_com_phycfg.h b/drivers/staging/rtl8723bs/include/hal_com_phycfg.h
index cb7c7ed741468..906f4ddaf3523 100644
--- a/drivers/staging/rtl8723bs/include/hal_com_phycfg.h
+++ b/drivers/staging/rtl8723bs/include/hal_com_phycfg.h
@@ -7,10 +7,10 @@
 #ifndef __HAL_COM_PHYCFG_H__
 #define __HAL_COM_PHYCFG_H__
 
-#define		PathA		0x0	/*  Useless */
-#define		PathB		0x1
-#define		PathC		0x2
-#define		PathD		0x3
+#define PathA 0x0 /*  Useless */
+#define PathB 0x1
+#define PathC 0x2
+#define PathD 0x3
 
 enum rate_section {
 	CCK = 0,
@@ -18,7 +18,7 @@ enum rate_section {
 	HT_MCS0_MCS7,
 };
 
-#define MAX_POWER_INDEX			0x3F
+#define MAX_POWER_INDEX 0x3F
 
 enum {
 	TXPWR_LMT_FCC = 0,
@@ -30,34 +30,33 @@ enum {
 
 /*------------------------------Define structure----------------------------*/
 struct bb_register_def {
-	u32 rfintfs;			/*  set software control: */
-					/* 	0x870~0x877[8 bytes] */
+	u32 rfintfs; /*  set software control: */
+	/* 	0x870~0x877[8 bytes] */
 
-	u32 rfintfo;			/*  output data: */
-					/* 	0x860~0x86f [16 bytes] */
+	u32 rfintfo; /*  output data: */
+	/* 	0x860~0x86f [16 bytes] */
 
-	u32 rfintfe;			/*  output enable: */
-					/* 	0x860~0x86f [16 bytes] */
+	u32 rfintfe; /*  output enable: */
+	/* 	0x860~0x86f [16 bytes] */
 
-	u32 rf3wireOffset;		/*  LSSI data: */
-					/* 	0x840~0x84f [16 bytes] */
+	u32 rf3wireOffset; /*  LSSI data: */
+	/* 	0x840~0x84f [16 bytes] */
 
-	u32 rfHSSIPara2;		/*  wire parameter control2 : */
-					/* 	0x824~0x827, 0x82c~0x82f,
+	u32 rfHSSIPara2; /*  wire parameter control2 : */
+	/* 	0x824~0x827, 0x82c~0x82f,
 					 *	0x834~0x837, 0x83c~0x83f
 					 */
-	u32 rfLSSIReadBack;		/* LSSI RF readback data SI mode */
-					/* 	0x8a0~0x8af [16 bytes] */
+	u32 rfLSSIReadBack; /* LSSI RF readback data SI mode */
+	/* 	0x8a0~0x8af [16 bytes] */
 
-	u32 rfLSSIReadBackPi;		/* LSSI RF readback data PI mode
+	u32 rfLSSIReadBackPi; /* LSSI RF readback data PI mode
 					 *	0x8b8-8bc for Path A and B */
-
 };
 
 u8 PHY_GetTxPowerByRateBase(struct adapter *Adapter, u8 RfPath,
 			    enum rate_section RateSection);
 
-u8 PHY_GetRateSectionIndexOfTxPowerByRate(struct adapter *padapter, u32	RegAddr,
+u8 PHY_GetRateSectionIndexOfTxPowerByRate(struct adapter *padapter, u32 RegAddr,
 					  u32 BitMask);
 
 void PHY_GetRateValuesOfTxPowerByRate(struct adapter *padapter, u32 RegAddr,
@@ -66,8 +65,8 @@ void PHY_GetRateValuesOfTxPowerByRate(struct adapter *padapter, u32 RegAddr,
 
 u8 PHY_GetRateIndexOfTxPowerByRate(u8 Rate);
 
-void PHY_SetTxPowerIndexByRateSection(struct adapter *padapter, u8 RFPath, u8 Channel,
-				      u8 RateSection);
+void PHY_SetTxPowerIndexByRateSection(struct adapter *padapter, u8 RFPath,
+				      u8 Channel, u8 RateSection);
 
 s8 PHY_GetTxPowerByRate(struct adapter *padapter, u8 RFPath, u8 RateIndex);
 
@@ -82,8 +81,8 @@ void PHY_SetTxPowerIndexByRateArray(struct adapter *padapter, u8 RFPath,
 
 void PHY_InitTxPowerByRate(struct adapter *padapter);
 
-void PHY_StoreTxPowerByRate(struct adapter *padapter, u32 RfPath,
-			    u32	RegAddr, u32 BitMask, u32 Data);
+void PHY_StoreTxPowerByRate(struct adapter *padapter, u32 RfPath, u32 RegAddr,
+			    u32 BitMask, u32 Data);
 
 void PHY_TxPowerByRateConfiguration(struct adapter *padapter);
 
@@ -95,7 +94,8 @@ s8 phy_get_tx_pwr_lmt(struct adapter *adapter, u32 RegPwrTblSel,
 		      u8 Channel);
 
 void PHY_SetTxPowerLimit(struct adapter *Adapter, u8 *Regulation, u8 *Bandwidth,
-			 u8 *RateSection, u8 *RfPath, u8 *Channel, u8 *PowerLimit);
+			 u8 *RateSection, u8 *RfPath, u8 *Channel,
+			 u8 *PowerLimit);
 
 void PHY_ConvertTxPowerLimitToPowerIndex(struct adapter *Adapter);
 
diff --git a/drivers/staging/rtl8723bs/include/hal_com_reg.h b/drivers/staging/rtl8723bs/include/hal_com_reg.h
index 479748d856261..edb5654ea96bb 100644
--- a/drivers/staging/rtl8723bs/include/hal_com_reg.h
+++ b/drivers/staging/rtl8723bs/include/hal_com_reg.h
@@ -9,262 +9,263 @@
 
 /*  */
 /*  */
-/* 	0x0000h ~ 0x00FFh	System Configuration */
+/*	0x0000h ~ 0x00FFh	System Configuration */
 /*  */
 /*  */
-#define REG_SYS_FUNC_EN				0x0002
-#define REG_APS_FSMCO					0x0004
-#define REG_SYS_CLKR					0x0008
-#define REG_9346CR						0x000A
-#define REG_SYS_EEPROM_CTRL			0x000A
-#define REG_RSV_CTRL					0x001C
-#define REG_RF_CTRL						0x001F
-#define REG_AFE_XTAL_CTRL				0x0024
-#define REG_MAC_PHY_CTRL				0x002c /* for 92d, DMDP, SMSP, DMSP contrl */
-#define REG_EFUSE_CTRL					0x0030
-#define REG_EFUSE_TEST					0x0034
-#define REG_PWR_DATA					0x0038
-#define REG_GPIO_MUXCFG				0x0040
-#define REG_GPIO_INTM					0x0048
-#define REG_LEDCFG0						0x004C
-#define REG_LEDCFG2						0x004E
-#define REG_HSIMR						0x0058
-#define REG_GPIO_IO_SEL_2				0x0062 /*  RTL8723 WIFI/BT/GPS Multi-Function GPIO Select. */
-#define REG_MULTI_FUNC_CTRL			0x0068 /*  RTL8723 WIFI/BT/GPS Multi-Function control source. */
-#define REG_MCUFWDL					0x0080
-#define REG_EFUSE_ACCESS				0x00CF	/*  Efuse access protection for RTL8723 */
-#define REG_SYS_CFG						0x00F0
-#define REG_GPIO_OUTSTS				0x00F4	/*  For RTL8723 only. */
+#define REG_SYS_FUNC_EN 0x0002
+#define REG_APS_FSMCO 0x0004
+#define REG_SYS_CLKR 0x0008
+#define REG_9346CR 0x000A
+#define REG_SYS_EEPROM_CTRL 0x000A
+#define REG_RSV_CTRL 0x001C
+#define REG_RF_CTRL 0x001F
+#define REG_AFE_XTAL_CTRL 0x0024
+#define REG_MAC_PHY_CTRL 0x002c /* for 92d, DMDP, SMSP, DMSP contrl */
+#define REG_EFUSE_CTRL 0x0030
+#define REG_EFUSE_TEST 0x0034
+#define REG_PWR_DATA 0x0038
+#define REG_GPIO_MUXCFG 0x0040
+#define REG_GPIO_INTM 0x0048
+#define REG_LEDCFG0 0x004C
+#define REG_LEDCFG2 0x004E
+#define REG_HSIMR 0x0058
+#define REG_GPIO_IO_SEL_2 \
+	0x0062 /*  RTL8723 WIFI/BT/GPS Multi-Function GPIO Select. */
+#define REG_MULTI_FUNC_CTRL \
+	0x0068 /*  RTL8723 WIFI/BT/GPS Multi-Function control source. */
+#define REG_MCUFWDL 0x0080
+#define REG_EFUSE_ACCESS 0x00CF /*  Efuse access protection for RTL8723 */
+#define REG_SYS_CFG 0x00F0
+#define REG_GPIO_OUTSTS 0x00F4 /*  For RTL8723 only. */
 
 /*  */
 /*  */
-/* 	0x0100h ~ 0x01FFh	MACTOP General Configuration */
+/*	0x0100h ~ 0x01FFh	MACTOP General Configuration */
 /*  */
 /*  */
-#define REG_CR							0x0100
-#define REG_PBP							0x0104
-#define REG_TRXDMA_CTRL				0x010C
-#define REG_TRXFF_BNDY					0x0114
-#define REG_HIMR						0x0120
-#define REG_HISR						0x0124
+#define REG_CR 0x0100
+#define REG_PBP 0x0104
+#define REG_TRXDMA_CTRL 0x010C
+#define REG_TRXFF_BNDY 0x0114
+#define REG_HIMR 0x0120
+#define REG_HISR 0x0124
 
-#define REG_C2HEVT_MSG_NORMAL		0x01A0
-#define REG_C2HEVT_CLEAR				0x01AF
-#define REG_HMETFR						0x01CC
-#define REG_HMEBOX_0					0x01D0
+#define REG_C2HEVT_MSG_NORMAL 0x01A0
+#define REG_C2HEVT_CLEAR 0x01AF
+#define REG_HMETFR 0x01CC
+#define REG_HMEBOX_0 0x01D0
 
 /*  */
 /*  */
-/* 	0x0200h ~ 0x027Fh	TXDMA Configuration */
+/*	0x0200h ~ 0x027Fh	TXDMA Configuration */
 /*  */
 /*  */
-#define REG_RQPN						0x0200
-#define REG_TDECTRL						0x0208
-#define REG_TXDMA_STATUS				0x0210
-#define REG_RQPN_NPQ					0x0214
-#define REG_AUTO_LLT					0x0224
-
+#define REG_RQPN 0x0200
+#define REG_TDECTRL 0x0208
+#define REG_TXDMA_STATUS 0x0210
+#define REG_RQPN_NPQ 0x0214
+#define REG_AUTO_LLT 0x0224
 
 /*  */
 /*  */
-/* 	0x0280h ~ 0x02FFh	RXDMA Configuration */
+/*	0x0280h ~ 0x02FFh	RXDMA Configuration */
 /*  */
 /*  */
-#define REG_RXDMA_AGG_PG_TH			0x0280
-#define REG_RXPKT_NUM					0x0284
+#define REG_RXDMA_AGG_PG_TH 0x0280
+#define REG_RXPKT_NUM 0x0284
 
 /*  */
 /*  */
-/* 	0x0400h ~ 0x047Fh	Protocol Configuration */
+/*	0x0400h ~ 0x047Fh	Protocol Configuration */
 /*  */
 /*  */
-#define REG_TXPKT_EMPTY				0x041A
-#define REG_FWHW_TXQ_CTRL				0x0420
-#define REG_HWSEQ_CTRL					0x0423
-#define REG_SPEC_SIFS					0x0428
-#define REG_RL							0x042A
-#define REG_RRSR						0x0440
+#define REG_TXPKT_EMPTY 0x041A
+#define REG_FWHW_TXQ_CTRL 0x0420
+#define REG_HWSEQ_CTRL 0x0423
+#define REG_SPEC_SIFS 0x0428
+#define REG_RL 0x042A
+#define REG_RRSR 0x0440
 
-#define REG_PKT_VO_VI_LIFE_TIME		0x04C0
-#define REG_PKT_BE_BK_LIFE_TIME		0x04C2
-#define REG_BAR_MODE_CTRL				0x04CC
-#define REG_EARLY_MODE_CONTROL		0x04D0
-#define REG_MACID_SLEEP				0x04D4
-#define REG_NQOS_SEQ					0x04DC
+#define REG_PKT_VO_VI_LIFE_TIME 0x04C0
+#define REG_PKT_BE_BK_LIFE_TIME 0x04C2
+#define REG_BAR_MODE_CTRL 0x04CC
+#define REG_EARLY_MODE_CONTROL 0x04D0
+#define REG_MACID_SLEEP 0x04D4
+#define REG_NQOS_SEQ 0x04DC
 
 /*  */
 /*  */
-/* 	0x0500h ~ 0x05FFh	EDCA Configuration */
+/*	0x0500h ~ 0x05FFh	EDCA Configuration */
 /*  */
 /*  */
-#define REG_EDCA_VO_PARAM				0x0500
-#define REG_EDCA_VI_PARAM				0x0504
-#define REG_EDCA_BE_PARAM				0x0508
-#define REG_EDCA_BK_PARAM				0x050C
-#define REG_BCNTCFG						0x0510
-#define REG_SIFS_CTX					0x0514
-#define REG_SIFS_TRX					0x0516
-#define REG_TSFTR_SYN_OFFSET			0x0518
-#define REG_SLOT						0x051B
-#define REG_TXPAUSE						0x0522
-#define REG_RD_CTRL						0x0524
+#define REG_EDCA_VO_PARAM 0x0500
+#define REG_EDCA_VI_PARAM 0x0504
+#define REG_EDCA_BE_PARAM 0x0508
+#define REG_EDCA_BK_PARAM 0x050C
+#define REG_BCNTCFG 0x0510
+#define REG_SIFS_CTX 0x0514
+#define REG_SIFS_TRX 0x0516
+#define REG_TSFTR_SYN_OFFSET 0x0518
+#define REG_SLOT 0x051B
+#define REG_TXPAUSE 0x0522
+#define REG_RD_CTRL 0x0524
 /*  */
 /*  Format for offset 540h-542h: */
-/* 	[3:0]:   TBTT prohibit setup in unit of 32us. The time for HW getting beacon content before TBTT. */
-/* 	[7:4]:   Reserved. */
-/* 	[19:8]:  TBTT prohibit hold in unit of 32us. The time for HW holding to send the beacon packet. */
-/* 	[23:20]: Reserved */
+/*	[3:0]:   TBTT prohibit setup in unit of 32us. The time for HW getting beacon content before TBTT. */
+/*	[7:4]:   Reserved. */
+/*	[19:8]:  TBTT prohibit hold in unit of 32us. The time for HW holding to send the beacon packet. */
+/*	[23:20]: Reserved */
 /*  Description: */
-/* 	              | */
+/*	              | */
 /*      |<--Setup--|--Hold------------>| */
-/* 	--------------|---------------------- */
+/*	--------------|---------------------- */
 /*                 | */
 /*                TBTT */
 /*  Note: We cannot update beacon content to HW or send any AC packets during the time between Setup and Hold. */
 /*  Described by Designer Tim and Bruce, 2011-01-14. */
 /*  */
-#define REG_TBTT_PROHIBIT				0x0540
-#define REG_BCN_CTRL					0x0550
-#define REG_BCN_CTRL_1					0x0551
-#define REG_DUAL_TSF_RST				0x0553
-#define REG_BCN_INTERVAL				0x0554	/*  The same as REG_MBSSID_BCN_SPACE */
-#define REG_DRVERLYINT					0x0558
-#define REG_BCNDMATIM					0x0559
-#define REG_ATIMWND					0x055A
-#define REG_BCN_MAX_ERR				0x055D
-#define REG_RXTSF_OFFSET_CCK			0x055E
-#define REG_RXTSF_OFFSET_OFDM			0x055F
-#define REG_TSFTR						0x0560
-#define REG_ACMHWCTRL					0x05C0
+#define REG_TBTT_PROHIBIT 0x0540
+#define REG_BCN_CTRL 0x0550
+#define REG_BCN_CTRL_1 0x0551
+#define REG_DUAL_TSF_RST 0x0553
+#define REG_BCN_INTERVAL 0x0554 /*  The same as REG_MBSSID_BCN_SPACE */
+#define REG_DRVERLYINT 0x0558
+#define REG_BCNDMATIM 0x0559
+#define REG_ATIMWND 0x055A
+#define REG_BCN_MAX_ERR 0x055D
+#define REG_RXTSF_OFFSET_CCK 0x055E
+#define REG_RXTSF_OFFSET_OFDM 0x055F
+#define REG_TSFTR 0x0560
+#define REG_ACMHWCTRL 0x05C0
 
 /*  */
 /*  */
-/* 	0x0600h ~ 0x07FFh	WMAC Configuration */
+/*	0x0600h ~ 0x07FFh	WMAC Configuration */
 /*  */
 /*  */
-#define REG_BWOPMODE					0x0603
-#define REG_TCR							0x0604
-#define REG_RCR							0x0608
-#define REG_RX_DRVINFO_SZ				0x060F
+#define REG_BWOPMODE 0x0603
+#define REG_TCR 0x0604
+#define REG_RCR 0x0608
+#define REG_RX_DRVINFO_SZ 0x060F
 
-#define REG_MACID						0x0610
-#define REG_BSSID						0x0618
-#define REG_MAR							0x0620
+#define REG_MACID 0x0610
+#define REG_BSSID 0x0618
+#define REG_MAR 0x0620
 
-#define REG_MAC_SPEC_SIFS				0x063A
+#define REG_MAC_SPEC_SIFS 0x063A
 /*  20100719 Joseph: Hardware register definition change. (HW datasheet v54) */
-#define REG_RESP_SIFS_CCK				0x063C	/*  [15:8]SIFS_R2T_OFDM, [7:0]SIFS_R2T_CCK */
-#define REG_RESP_SIFS_OFDM                    0x063E	/*  [15:8]SIFS_T2T_OFDM, [7:0]SIFS_T2T_CCK */
+#define REG_RESP_SIFS_CCK 0x063C /*  [15:8]SIFS_R2T_OFDM, [7:0]SIFS_R2T_CCK */
+#define REG_RESP_SIFS_OFDM 0x063E /*  [15:8]SIFS_T2T_OFDM, [7:0]SIFS_T2T_CCK */
 
-#define REG_ACKTO						0x0640
+#define REG_ACKTO 0x0640
 
 /*  */
 /*  Note: */
-/* 	The NAV upper value is very important to WiFi 11n 5.2.3 NAV test. The default value is */
-/* 	always too small, but the WiFi TestPlan test by 25, 000 microseconds of NAV through sending */
-/* 	CTS in the air. We must update this value greater than 25, 000 microseconds to pass the item. */
-/* 	The offset of NAV_UPPER in 8192C Spec is incorrect, and the offset should be 0x0652. Commented */
-/* 	by SD1 Scott. */
+/*	The NAV upper value is very important to WiFi 11n 5.2.3 NAV test. The default value is */
+/*	always too small, but the WiFi TestPlan test by 25, 000 microseconds of NAV through sending */
+/*	CTS in the air. We must update this value greater than 25, 000 microseconds to pass the item. */
+/*	The offset of NAV_UPPER in 8192C Spec is incorrect, and the offset should be 0x0652. Commented */
+/*	by SD1 Scott. */
 /*  By Bruce, 2011-07-18. */
 /*  */
-#define REG_NAV_UPPER					0x0652	/*  unit of 128 */
+#define REG_NAV_UPPER 0x0652 /*  unit of 128 */
 
 /* WMA, BA, CCX */
-#define REG_RXERR_RPT					0x0664
+#define REG_RXERR_RPT 0x0664
 
 /*  Security */
-#define REG_CAMCMD						0x0670
-#define REG_CAMWRITE					0x0674
-#define REG_CAMREAD					0x0678
-#define REG_SECCFG						0x0680
+#define REG_CAMCMD 0x0670
+#define REG_CAMWRITE 0x0674
+#define REG_CAMREAD 0x0678
+#define REG_SECCFG 0x0680
 
 /*  Power */
-#define REG_RXFLTMAP0					0x06A0
-#define REG_RXFLTMAP1					0x06A2
-#define REG_RXFLTMAP2					0x06A4
-#define REG_BCN_PSR_RPT				0x06A8
+#define REG_RXFLTMAP0 0x06A0
+#define REG_RXFLTMAP1 0x06A2
+#define REG_RXFLTMAP2 0x06A4
+#define REG_BCN_PSR_RPT 0x06A8
 
 /*  */
 /*  */
-/* 	Redifine 8192C register definition for compatibility */
+/*	Redifine 8192C register definition for compatibility */
 /*  */
 /*  */
-#define EFUSE_CTRL				REG_EFUSE_CTRL		/*  E-Fuse Control. */
-#define EFUSE_TEST				REG_EFUSE_TEST		/*  E-Fuse Test. */
-#define MSR						(REG_CR + 2)		/*  Media Status register */
+#define EFUSE_CTRL REG_EFUSE_CTRL /*  E-Fuse Control. */
+#define EFUSE_TEST REG_EFUSE_TEST /*  E-Fuse Test. */
+#define MSR (REG_CR + 2) /*  Media Status register */
 
-#define PBP						REG_PBP
+#define PBP REG_PBP
 
 /*  */
 /*  9. Security Control Registers	(Offset:) */
 /*  */
-#define RWCAM					REG_CAMCMD		/* IN 8190 Data Sheet is called CAMcmd */
-#define WCAMI					REG_CAMWRITE	/*  Software write CAM input content */
+#define RWCAM REG_CAMCMD /* IN 8190 Data Sheet is called CAMcmd */
+#define WCAMI REG_CAMWRITE /*  Software write CAM input content */
 
 /*  */
 /*        8723/8188E Host System Interrupt Status Register (offset 0x5C, 32 byte) */
 /*  */
-#define HSISR_GPIO12_0_INT				BIT(0)
-#define HSISR_SPS_OCP_INT				BIT(5)
-#define HSISR_RON_INT					BIT(6)
-#define HSISR_PDNINT					BIT(7)
-#define HSISR_GPIO9_INT					BIT(25)
+#define HSISR_GPIO12_0_INT BIT(0)
+#define HSISR_SPS_OCP_INT BIT(5)
+#define HSISR_RON_INT BIT(6)
+#define HSISR_PDNINT BIT(7)
+#define HSISR_GPIO9_INT BIT(25)
 
 /*  */
 /*        Response Rate Set Register	(offset 0x440, 24bits) */
 /*  */
-#define RRSR_1M					BIT(0)
-#define RRSR_2M					BIT(1)
-#define RRSR_5_5M				BIT(2)
-#define RRSR_11M				BIT(3)
-#define RRSR_6M					BIT(4)
-#define RRSR_12M				BIT(6)
-#define RRSR_24M				BIT(8)
+#define RRSR_1M BIT(0)
+#define RRSR_2M BIT(1)
+#define RRSR_5_5M BIT(2)
+#define RRSR_11M BIT(3)
+#define RRSR_6M BIT(4)
+#define RRSR_12M BIT(6)
+#define RRSR_24M BIT(8)
 
-#define RRSR_CCK_RATES (RRSR_11M|RRSR_5_5M|RRSR_2M|RRSR_1M)
+#define RRSR_CCK_RATES (RRSR_11M | RRSR_5_5M | RRSR_2M | RRSR_1M)
 
 /*  */
 /*        Rate Definition */
 /*  */
 /* CCK */
-#define RATE_1M					BIT(0)
-#define RATE_2M					BIT(1)
-#define RATE_5_5M				BIT(2)
-#define RATE_11M				BIT(3)
+#define RATE_1M BIT(0)
+#define RATE_2M BIT(1)
+#define RATE_5_5M BIT(2)
+#define RATE_11M BIT(3)
 /* OFDM */
-#define RATE_6M					BIT(4)
-#define RATE_9M					BIT(5)
-#define RATE_12M				BIT(6)
-#define RATE_18M				BIT(7)
-#define RATE_24M				BIT(8)
-#define RATE_36M				BIT(9)
-#define RATE_48M				BIT(10)
-#define RATE_54M				BIT(11)
+#define RATE_6M BIT(4)
+#define RATE_9M BIT(5)
+#define RATE_12M BIT(6)
+#define RATE_18M BIT(7)
+#define RATE_24M BIT(8)
+#define RATE_36M BIT(9)
+#define RATE_48M BIT(10)
+#define RATE_54M BIT(11)
 
 /*  ALL CCK Rate */
-#define RATE_BITMAP_ALL			0xFFFFF
+#define RATE_BITMAP_ALL 0xFFFFF
 
 /*  Only use CCK 1M rate for ACK */
-#define RATE_RRSR_CCK_ONLY_1M		0xFFFF1
+#define RATE_RRSR_CCK_ONLY_1M 0xFFFF1
 
 /*  */
 /*        BW_OPMODE bits				(Offset 0x603, 8bit) */
 /*  */
-#define BW_OPMODE_20MHZ			BIT(2)
+#define BW_OPMODE_20MHZ BIT(2)
 
 /*  */
 /*        CAM Config Setting (offset 0x680, 1 byte) */
 /*  */
-#define CAM_VALID				BIT(15)
+#define CAM_VALID BIT(15)
 
-#define CAM_CONTENT_COUNT	8
+#define CAM_CONTENT_COUNT 8
 
-#define CAM_AES					0x04
+#define CAM_AES 0x04
 
-#define TOTAL_CAM_ENTRY		32
+#define TOTAL_CAM_ENTRY 32
 
-#define CAM_WRITE				BIT(16)
-#define CAM_POLLINIG			BIT(31)
+#define CAM_WRITE BIT(16)
+#define CAM_POLLINIG BIT(31)
 
 /*  */
 /*  12. Host Interrupt Status Registers */
@@ -273,150 +274,151 @@
 /*  */
 /*        8192C (RCR) Receive Configuration Register	(Offset 0x608, 32 bits) */
 /*  */
-#define RCR_APPFCS				BIT(31)	/*  WMAC append FCS after pauload */
-#define RCR_APP_MIC				BIT(30)	/*  MACRX will retain the MIC at the bottom of the packet. */
-#define RCR_APP_ICV				BIT(29)	/*  MACRX will retain the ICV at the bottom of the packet. */
-#define RCR_APP_PHYST_RXFF		BIT(28)	/*  PHY Status is appended before RX packet in RXFF */
-#define RCR_APP_BA_SSN			BIT(27)	/*  SSN of previous TXBA is appended as after original RXDESC as the 4-th DW of RXDESC. */
-#define RCR_HTC_LOC_CTRL		BIT(14)	/*  MFC<--HTC = 1 MFC-->HTC = 0 */
-#define RCR_AMF					BIT(13)	/*  Accept management type frame */
-#define RCR_ADF					BIT(11)	/*  Accept data type frame. This bit also regulates BA, BAR, and PS-Poll (AP mode only). */
-#define RCR_ACRC32				BIT(8)		/*  Accept CRC32 error packet */
-#define RCR_CBSSID_BCN			BIT(7)		/*  Accept BSSID match packet (Rx beacon, probe rsp) */
-#define RCR_CBSSID_DATA		BIT(6)		/*  Accept BSSID match packet (Data) */
-#define RCR_AB					BIT(3)		/*  Accept broadcast packet */
-#define RCR_AM					BIT(2)		/*  Accept multicast packet */
-#define RCR_APM					BIT(1)		/*  Accept physical match packet */
-
+#define RCR_APPFCS BIT(31) /*  WMAC append FCS after pauload */
+#define RCR_APP_MIC \
+	BIT(30) /*  MACRX will retain the MIC at the bottom of the packet. */
+#define RCR_APP_ICV \
+	BIT(29) /*  MACRX will retain the ICV at the bottom of the packet. */
+#define RCR_APP_PHYST_RXFF \
+	BIT(28) /*  PHY Status is appended before RX packet in RXFF */
+#define RCR_APP_BA_SSN \
+	BIT(27) /*  SSN of previous TXBA is appended as after original RXDESC as the 4-th DW of RXDESC. */
+#define RCR_HTC_LOC_CTRL BIT(14) /*  MFC<--HTC = 1 MFC-->HTC = 0 */
+#define RCR_AMF BIT(13) /*  Accept management type frame */
+#define RCR_ADF \
+	BIT(11) /*  Accept data type frame. This bit also regulates BA, BAR, and PS-Poll (AP mode only). */
+#define RCR_ACRC32 BIT(8) /*  Accept CRC32 error packet */
+#define RCR_CBSSID_BCN \
+	BIT(7) /*  Accept BSSID match packet (Rx beacon, probe rsp) */
+#define RCR_CBSSID_DATA BIT(6) /*  Accept BSSID match packet (Data) */
+#define RCR_AB BIT(3) /*  Accept broadcast packet */
+#define RCR_AM BIT(2) /*  Accept multicast packet */
+#define RCR_APM BIT(1) /*  Accept physical match packet */
 
 /*  */
 /*  */
-/* 	0x0000h ~ 0x00FFh	System Configuration */
+/*	0x0000h ~ 0x00FFh	System Configuration */
 /*  */
 /*  */
 
 /* 2 SYS_FUNC_EN */
-#define FEN_BBRSTB				BIT(0)
-#define FEN_BB_GLB_RSTn		BIT(1)
-#define FEN_DIO_PCIE			BIT(5)
-#define FEN_PCIEA				BIT(6)
-#define FEN_PPLL					BIT(7)
-#define FEN_CPUEN				BIT(10)
-#define FEN_ELDR				BIT(12)
+#define FEN_BBRSTB BIT(0)
+#define FEN_BB_GLB_RSTn BIT(1)
+#define FEN_DIO_PCIE BIT(5)
+#define FEN_PCIEA BIT(6)
+#define FEN_PPLL BIT(7)
+#define FEN_CPUEN BIT(10)
+#define FEN_ELDR BIT(12)
 
 /* 2 APS_FSMCO */
-#define EnPDN					BIT(4)
+#define EnPDN BIT(4)
 
 /* 2 SYS_CLKR */
-#define ANA8M					BIT(1)
-#define LOADER_CLK_EN			BIT(5)
-
+#define ANA8M BIT(1)
+#define LOADER_CLK_EN BIT(5)
 
 /* 2 9346CR /REG_SYS_EEPROM_CTRL */
-#define BOOT_FROM_EEPROM		BIT(4)
-#define EEPROM_EN				BIT(5)
-
+#define BOOT_FROM_EEPROM BIT(4)
+#define EEPROM_EN BIT(5)
 
 /* 2 RF_CTRL */
-#define RF_EN					BIT(0)
-#define RF_RSTB					BIT(1)
-#define RF_SDMRSTB				BIT(2)
+#define RF_EN BIT(0)
+#define RF_RSTB BIT(1)
+#define RF_SDMRSTB BIT(2)
 
 /* 2 EFUSE_TEST (For RTL8723 partially) */
-#define EFUSE_SEL(x)				(((x) & 0x3) << 8)
-#define EFUSE_SEL_MASK			0x300
-#define EFUSE_WIFI_SEL_0		0x0
-#define EFUSE_BT_SEL_0			0x1
-#define EFUSE_BT_SEL_1			0x2
-#define EFUSE_BT_SEL_2			0x3
-
+#define EFUSE_SEL(x) (((x) & 0x3) << 8)
+#define EFUSE_SEL_MASK 0x300
+#define EFUSE_WIFI_SEL_0 0x0
+#define EFUSE_BT_SEL_0 0x1
+#define EFUSE_BT_SEL_1 0x2
+#define EFUSE_BT_SEL_2 0x3
 
 /* 2 8051FWDL */
 /* 2 MCUFWDL */
-#define MCUFWDL_RDY			BIT(1)
-#define FWDL_ChkSum_rpt		BIT(2)
-#define WINTINI_RDY				BIT(6)
-#define RAM_DL_SEL				BIT(7)
+#define MCUFWDL_RDY BIT(1)
+#define FWDL_ChkSum_rpt BIT(2)
+#define WINTINI_RDY BIT(6)
+#define RAM_DL_SEL BIT(7)
 
 /* 2 REG_SYS_CFG */
-#define VENDOR_ID				BIT(19)
-
-#define RTL_ID					BIT(23) /*  TestChip ID, 1:Test(RLE); 0:MP(RL) */
-#define SPS_SEL					BIT(24) /*  1:LDO regulator mode; 0:Switching regulator mode */
+#define VENDOR_ID BIT(19)
 
+#define RTL_ID BIT(23) /*  TestChip ID, 1:Test(RLE); 0:MP(RL) */
+#define SPS_SEL BIT(24) /*  1:LDO regulator mode; 0:Switching regulator mode */
 
-#define CHIP_VER_RTL_MASK		0xF000	/* Bit 12 ~ 15 */
-#define CHIP_VER_RTL_SHIFT		12
+#define CHIP_VER_RTL_MASK 0xF000 /* Bit 12 ~ 15 */
+#define CHIP_VER_RTL_SHIFT 12
 
 /* 2 REG_GPIO_OUTSTS (For RTL8723 only) */
-#define RF_RL_ID					(BIT(31)|BIT(30)|BIT(29)|BIT(28))
+#define RF_RL_ID (BIT(31) | BIT(30) | BIT(29) | BIT(28))
 
 /*  */
 /*  */
-/* 	0x0100h ~ 0x01FFh	MACTOP General Configuration */
+/*	0x0100h ~ 0x01FFh	MACTOP General Configuration */
 /*  */
 /*  */
 
 /* 2 Function Enable Registers */
 /* 2 CR */
-#define HCI_TXDMA_EN			BIT(0)
-#define HCI_RXDMA_EN			BIT(1)
-#define TXDMA_EN				BIT(2)
-#define RXDMA_EN				BIT(3)
-#define PROTOCOL_EN				BIT(4)
-#define SCHEDULE_EN				BIT(5)
-#define MACTXEN					BIT(6)
-#define MACRXEN					BIT(7)
-#define ENSWBCN					BIT(8)
-#define ENSEC					BIT(9)
-#define CALTMR_EN				BIT(10)	/*  32k CAL TMR enable */
+#define HCI_TXDMA_EN BIT(0)
+#define HCI_RXDMA_EN BIT(1)
+#define TXDMA_EN BIT(2)
+#define RXDMA_EN BIT(3)
+#define PROTOCOL_EN BIT(4)
+#define SCHEDULE_EN BIT(5)
+#define MACTXEN BIT(6)
+#define MACRXEN BIT(7)
+#define ENSWBCN BIT(8)
+#define ENSEC BIT(9)
+#define CALTMR_EN BIT(10) /*  32k CAL TMR enable */
 
 /*  Network type */
-#define _NETTYPE(x)				(((x) & 0x3) << 16)
-#define MASK_NETTYPE			0x30000
-#define NT_LINK_AD_HOC			0x1
-#define NT_LINK_AP				0x2
+#define _NETTYPE(x) (((x) & 0x3) << 16)
+#define MASK_NETTYPE 0x30000
+#define NT_LINK_AD_HOC 0x1
+#define NT_LINK_AP 0x2
 
 /* 2 PBP - Page Size Register */
-#define _PSRX(x)				(x)
-#define _PSTX(x)				((x) << 4)
+#define _PSRX(x) (x)
+#define _PSTX(x) ((x) << 4)
 
-#define PBP_128					0x1
+#define PBP_128 0x1
 
 /* 2 TX/RXDMA */
-#define RXDMA_AGG_EN			BIT(2)
+#define RXDMA_AGG_EN BIT(2)
 
 /*  For normal driver, 0x10C */
-#define _TXDMA_HIQ_MAP(x)			(((x)&0x3) << 14)
-#define _TXDMA_MGQ_MAP(x)			(((x)&0x3) << 12)
-#define _TXDMA_BKQ_MAP(x)			(((x)&0x3) << 10)
-#define _TXDMA_BEQ_MAP(x)			(((x)&0x3) << 8)
-#define _TXDMA_VIQ_MAP(x)			(((x)&0x3) << 6)
-#define _TXDMA_VOQ_MAP(x)			(((x)&0x3) << 4)
+#define _TXDMA_HIQ_MAP(x) (((x) & 0x3) << 14)
+#define _TXDMA_MGQ_MAP(x) (((x) & 0x3) << 12)
+#define _TXDMA_BKQ_MAP(x) (((x) & 0x3) << 10)
+#define _TXDMA_BEQ_MAP(x) (((x) & 0x3) << 8)
+#define _TXDMA_VIQ_MAP(x) (((x) & 0x3) << 6)
+#define _TXDMA_VOQ_MAP(x) (((x) & 0x3) << 4)
 
-#define QUEUE_LOW				1
-#define QUEUE_NORMAL			2
-#define QUEUE_HIGH				3
+#define QUEUE_LOW 1
+#define QUEUE_NORMAL 2
+#define QUEUE_HIGH 3
 
 /*  */
 /*  */
-/* 	0x0200h ~ 0x027Fh	TXDMA Configuration */
+/*	0x0200h ~ 0x027Fh	TXDMA Configuration */
 /*  */
 /*  */
 /* 2 RQPN */
-#define _HPQ(x)					((x) & 0xFF)
-#define _LPQ(x)					(((x) & 0xFF) << 8)
-#define _PUBQ(x)					(((x) & 0xFF) << 16)
-#define _NPQ(x)					((x) & 0xFF)			/*  NOTE: in RQPN_NPQ register */
+#define _HPQ(x) ((x) & 0xFF)
+#define _LPQ(x) (((x) & 0xFF) << 8)
+#define _PUBQ(x) (((x) & 0xFF) << 16)
+#define _NPQ(x) ((x) & 0xFF) /*  NOTE: in RQPN_NPQ register */
 
-#define LD_RQPN					BIT(31)
+#define LD_RQPN BIT(31)
 
 /* 2 AUTO_LLT */
 #define BIT_AUTO_INIT_LLT BIT(16)
 
 /*  */
 /*  */
-/* 	0x0280h ~ 0x028Bh	RX DMA Configuration */
+/*	0x0280h ~ 0x028Bh	RX DMA Configuration */
 /*  */
 /*  */
 
@@ -432,167 +434,159 @@
 /* define RW_RELEASE_EN				BIT(2) */
 
 /* 2 REG_RXPKT_NUM, 0x0284 */
-#define		RXPKT_RELEASE_POLL	BIT(16)
-#define	RXDMA_IDLE				BIT(17)
-#define	RW_RELEASE_EN			BIT(18)
+#define RXPKT_RELEASE_POLL BIT(16)
+#define RXDMA_IDLE BIT(17)
+#define RW_RELEASE_EN BIT(18)
 
 /*  */
 /*  */
-/* 	0x0400h ~ 0x047Fh	Protocol Configuration */
+/*	0x0400h ~ 0x047Fh	Protocol Configuration */
 /*  */
 /*  */
 /* 2 FWHW_TXQ_CTRL */
-#define EN_AMPDU_RTY_NEW			BIT(7)
-
+#define EN_AMPDU_RTY_NEW BIT(7)
 
 /* 2 SPEC SIFS */
-#define _SPEC_SIFS_CCK(x)			((x) & 0xFF)
-#define _SPEC_SIFS_OFDM(x)			(((x) & 0xFF) << 8)
+#define _SPEC_SIFS_CCK(x) ((x) & 0xFF)
+#define _SPEC_SIFS_OFDM(x) (((x) & 0xFF) << 8)
 
 /* 2 RL */
-#define	RETRY_LIMIT_SHORT_SHIFT			8
-#define	RETRY_LIMIT_LONG_SHIFT			0
+#define RETRY_LIMIT_SHORT_SHIFT 8
+#define RETRY_LIMIT_LONG_SHIFT 0
 
 /*  */
 /*  */
-/* 	0x0500h ~ 0x05FFh	EDCA Configuration */
+/*	0x0500h ~ 0x05FFh	EDCA Configuration */
 /*  */
 /*  */
 
-#define _LRL(x)					((x) & 0x3F)
-#define _SRL(x)					(((x) & 0x3F) << 8)
-
+#define _LRL(x) ((x) & 0x3F)
+#define _SRL(x) (((x) & 0x3F) << 8)
 
 /* 2 BCN_CTRL */
-#define EN_TXBCN_RPT			BIT(2)
-#define EN_BCN_FUNCTION		BIT(3)
+#define EN_TXBCN_RPT BIT(2)
+#define EN_BCN_FUNCTION BIT(3)
 
-#define DIS_ATIM					BIT(0)
-#define DIS_BCNQ_SUB			BIT(1)
-#define DIS_TSF_UDT				BIT(4)
+#define DIS_ATIM BIT(0)
+#define DIS_BCNQ_SUB BIT(1)
+#define DIS_TSF_UDT BIT(4)
 
 /* 2 ACMHWCTRL */
-#define AcmHw_HwEn				BIT(0)
-#define AcmHw_BeqEn			BIT(1)
-#define AcmHw_ViqEn				BIT(2)
-#define AcmHw_VoqEn			BIT(3)
+#define AcmHw_HwEn BIT(0)
+#define AcmHw_BeqEn BIT(1)
+#define AcmHw_ViqEn BIT(2)
+#define AcmHw_VoqEn BIT(3)
 
 /*  */
 /*  */
-/* 	0x0600h ~ 0x07FFh	WMAC Configuration */
+/*	0x0600h ~ 0x07FFh	WMAC Configuration */
 /*  */
 /*  */
 
 /* 2 TCR */
-#define TSFRST					BIT(0)
+#define TSFRST BIT(0)
 
 /* 2 RCR */
-#define AB						BIT(3)
+#define AB BIT(3)
 
 /* 2 SECCFG */
-#define SCR_TxUseDK				BIT(0)			/* Force Tx Use Default Key */
-#define SCR_RxUseDK				BIT(1)			/* Force Rx Use Default Key */
-#define SCR_TxEncEnable			BIT(2)			/* Enable Tx Encryption */
-#define SCR_RxDecEnable			BIT(3)			/* Enable Rx Decryption */
-#define SCR_TXBCUSEDK			BIT(6)			/*  Force Tx Broadcast packets Use Default Key */
-#define SCR_RXBCUSEDK			BIT(7)			/*  Force Rx Broadcast packets Use Default Key */
-#define SCR_CHK_KEYID			BIT(8)
+#define SCR_TxUseDK BIT(0) /* Force Tx Use Default Key */
+#define SCR_RxUseDK BIT(1) /* Force Rx Use Default Key */
+#define SCR_TxEncEnable BIT(2) /* Enable Tx Encryption */
+#define SCR_RxDecEnable BIT(3) /* Enable Rx Decryption */
+#define SCR_TXBCUSEDK BIT(6) /*  Force Tx Broadcast packets Use Default Key */
+#define SCR_RXBCUSEDK BIT(7) /*  Force Rx Broadcast packets Use Default Key */
+#define SCR_CHK_KEYID BIT(8)
 
 /*  */
 /*  */
-/* 	SDIO Bus Specification */
+/*	SDIO Bus Specification */
 /*  */
 /*  */
 
 /*  I/O bus domain address mapping */
-#define SDIO_LOCAL_BASE		0x10250000
+#define SDIO_LOCAL_BASE 0x10250000
 
 /* SDIO host local register space mapping. */
-#define SDIO_LOCAL_MSK				0x0FFF
-#define WLAN_IOREG_MSK			0x7FFF
-#define WLAN_FIFO_MSK				0x1FFF	/*  Aggregation Length[12:0] */
-#define WLAN_RX0FF_MSK				0x0003
-
-#define SDIO_LOCAL_DEVICE_ID			0	/*  0b[16], 000b[15:13] */
-#define WLAN_TX_HIQ_DEVICE_ID			4	/*  0b[16], 100b[15:13] */
-#define WLAN_TX_MIQ_DEVICE_ID		5	/*  0b[16], 101b[15:13] */
-#define WLAN_TX_LOQ_DEVICE_ID		6	/*  0b[16], 110b[15:13] */
-#define WLAN_RX0FF_DEVICE_ID			7	/*  0b[16], 111b[15:13] */
-#define WLAN_IOREG_DEVICE_ID			8	/*  1b[16] */
+#define SDIO_LOCAL_MSK 0x0FFF
+#define WLAN_IOREG_MSK 0x7FFF
+#define WLAN_FIFO_MSK 0x1FFF /*  Aggregation Length[12:0] */
+#define WLAN_RX0FF_MSK 0x0003
+
+#define SDIO_LOCAL_DEVICE_ID 0 /*  0b[16], 000b[15:13] */
+#define WLAN_TX_HIQ_DEVICE_ID 4 /*  0b[16], 100b[15:13] */
+#define WLAN_TX_MIQ_DEVICE_ID 5 /*  0b[16], 101b[15:13] */
+#define WLAN_TX_LOQ_DEVICE_ID 6 /*  0b[16], 110b[15:13] */
+#define WLAN_RX0FF_DEVICE_ID 7 /*  0b[16], 111b[15:13] */
+#define WLAN_IOREG_DEVICE_ID 8 /*  1b[16] */
 
 /* SDIO Tx Free Page Index */
-#define HI_QUEUE_IDX				0
-#define MID_QUEUE_IDX				1
-#define LOW_QUEUE_IDX				2
-#define PUBLIC_QUEUE_IDX			3
+#define HI_QUEUE_IDX 0
+#define MID_QUEUE_IDX 1
+#define LOW_QUEUE_IDX 2
+#define PUBLIC_QUEUE_IDX 3
 
-#define SDIO_MAX_TX_QUEUE			3		/*  HIQ, MIQ and LOQ */
+#define SDIO_MAX_TX_QUEUE 3 /*  HIQ, MIQ and LOQ */
 
-#define SDIO_REG_TX_CTRL			0x0000 /*  SDIO Tx Control */
-#define SDIO_REG_HIMR				0x0014 /*  SDIO Host Interrupt Mask */
-#define SDIO_REG_HISR				0x0018 /*  SDIO Host Interrupt Service Routine */
-#define SDIO_REG_RX0_REQ_LEN		0x001C /*  RXDMA Request Length */
-#define SDIO_REG_OQT_FREE_PG		0x001E /*  OQT Free Page */
-#define SDIO_REG_FREE_TXPG			0x0020 /*  Free Tx Buffer Page */
-#define SDIO_REG_HRPWM1			0x0080 /*  HCI Request Power Mode 1 */
-#define SDIO_REG_HSUS_CTRL			0x0086 /*  SDIO HCI Suspend Control */
+#define SDIO_REG_TX_CTRL 0x0000 /*  SDIO Tx Control */
+#define SDIO_REG_HIMR 0x0014 /*  SDIO Host Interrupt Mask */
+#define SDIO_REG_HISR 0x0018 /*  SDIO Host Interrupt Service Routine */
+#define SDIO_REG_RX0_REQ_LEN 0x001C /*  RXDMA Request Length */
+#define SDIO_REG_OQT_FREE_PG 0x001E /*  OQT Free Page */
+#define SDIO_REG_FREE_TXPG 0x0020 /*  Free Tx Buffer Page */
+#define SDIO_REG_HRPWM1 0x0080 /*  HCI Request Power Mode 1 */
+#define SDIO_REG_HSUS_CTRL 0x0086 /*  SDIO HCI Suspend Control */
 
-#define SDIO_HIMR_DISABLED			0
+#define SDIO_HIMR_DISABLED 0
 
 /*  RTL8723/RTL8188E SDIO Host Interrupt Mask Register */
-#define SDIO_HIMR_RX_REQUEST_MSK		BIT(0)
-#define SDIO_HIMR_AVAL_MSK			BIT(1)
+#define SDIO_HIMR_RX_REQUEST_MSK BIT(0)
+#define SDIO_HIMR_AVAL_MSK BIT(1)
 
 /*  SDIO Host Interrupt Service Routine */
-#define SDIO_HISR_RX_REQUEST			BIT(0)
-#define SDIO_HISR_AVAL					BIT(1)
-#define SDIO_HISR_TXERR					BIT(2)
-#define SDIO_HISR_RXERR					BIT(3)
-#define SDIO_HISR_TXFOVW				BIT(4)
-#define SDIO_HISR_RXFOVW				BIT(5)
-#define SDIO_HISR_TXBCNOK				BIT(6)
-#define SDIO_HISR_TXBCNERR				BIT(7)
-#define SDIO_HISR_C2HCMD				BIT(17)
-#define SDIO_HISR_CPWM1				BIT(18)
-#define SDIO_HISR_CPWM2				BIT(19)
-#define SDIO_HISR_HSISR_IND			BIT(20)
-#define SDIO_HISR_GTINT3_IND			BIT(21)
-#define SDIO_HISR_GTINT4_IND			BIT(22)
-#define SDIO_HISR_PSTIMEOUT			BIT(23)
-#define SDIO_HISR_OCPINT				BIT(24)
-
-#define MASK_SDIO_HISR_CLEAR		(SDIO_HISR_TXERR |\
-									SDIO_HISR_RXERR |\
-									SDIO_HISR_TXFOVW |\
-									SDIO_HISR_RXFOVW |\
-									SDIO_HISR_TXBCNOK |\
-									SDIO_HISR_TXBCNERR |\
-									SDIO_HISR_C2HCMD |\
-									SDIO_HISR_CPWM1 |\
-									SDIO_HISR_CPWM2 |\
-									SDIO_HISR_HSISR_IND |\
-									SDIO_HISR_GTINT3_IND |\
-									SDIO_HISR_GTINT4_IND |\
-									SDIO_HISR_PSTIMEOUT |\
-									SDIO_HISR_OCPINT)
+#define SDIO_HISR_RX_REQUEST BIT(0)
+#define SDIO_HISR_AVAL BIT(1)
+#define SDIO_HISR_TXERR BIT(2)
+#define SDIO_HISR_RXERR BIT(3)
+#define SDIO_HISR_TXFOVW BIT(4)
+#define SDIO_HISR_RXFOVW BIT(5)
+#define SDIO_HISR_TXBCNOK BIT(6)
+#define SDIO_HISR_TXBCNERR BIT(7)
+#define SDIO_HISR_C2HCMD BIT(17)
+#define SDIO_HISR_CPWM1 BIT(18)
+#define SDIO_HISR_CPWM2 BIT(19)
+#define SDIO_HISR_HSISR_IND BIT(20)
+#define SDIO_HISR_GTINT3_IND BIT(21)
+#define SDIO_HISR_GTINT4_IND BIT(22)
+#define SDIO_HISR_PSTIMEOUT BIT(23)
+#define SDIO_HISR_OCPINT BIT(24)
+
+#define MASK_SDIO_HISR_CLEAR                                                 \
+	(SDIO_HISR_TXERR | SDIO_HISR_RXERR | SDIO_HISR_TXFOVW |              \
+	 SDIO_HISR_RXFOVW | SDIO_HISR_TXBCNOK | SDIO_HISR_TXBCNERR |         \
+	 SDIO_HISR_C2HCMD | SDIO_HISR_CPWM1 | SDIO_HISR_CPWM2 |              \
+	 SDIO_HISR_HSISR_IND | SDIO_HISR_GTINT3_IND | SDIO_HISR_GTINT4_IND | \
+	 SDIO_HISR_PSTIMEOUT | SDIO_HISR_OCPINT)
 
 /*  SDIO Tx FIFO related */
-#define SDIO_TX_FREE_PG_QUEUE			4	/*  The number of Tx FIFO free page */
+#define SDIO_TX_FREE_PG_QUEUE 4 /*  The number of Tx FIFO free page */
 
 /*  */
 /*  */
-/* 	0xFE00h ~ 0xFE55h	USB Configuration */
+/*	0xFE00h ~ 0xFE55h	USB Configuration */
 /*  */
 /*  */
 
 /* 2REG_C2HEVT_CLEAR */
-#define C2H_EVT_HOST_CLOSE		0x00	/*  Set by driver and notify FW that the driver has read the C2H command message */
-#define C2H_EVT_FW_CLOSE		0xFF	/*  Set by FW indicating that FW had set the C2H command message and it's not yet read by driver. */
+#define C2H_EVT_HOST_CLOSE \
+	0x00 /*  Set by driver and notify FW that the driver has read the C2H command message */
+#define C2H_EVT_FW_CLOSE \
+	0xFF /*  Set by FW indicating that FW had set the C2H command message and it's not yet read by driver. */
 
 /* 2REG_MULTI_FUNC_CTRL(For RTL8723 Only) */
-#define WL_HWPDN_SL			BIT(1)	/*  WiFi HW PDn polarity control */
-#define WL_FUNC_EN				BIT(2)	/*  WiFi function enable */
-#define BT_FUNC_EN				BIT(18)	/*  BT function enable */
-#define GPS_FUNC_EN			BIT(22)	/*  GPS function enable */
+#define WL_HWPDN_SL BIT(1) /*  WiFi HW PDn polarity control */
+#define WL_FUNC_EN BIT(2) /*  WiFi function enable */
+#define BT_FUNC_EN BIT(18) /*  BT function enable */
+#define GPS_FUNC_EN BIT(22) /*  GPS function enable */
 
 #endif /* __HAL_COMMON_H__ */
diff --git a/drivers/staging/rtl8723bs/include/hal_data.h b/drivers/staging/rtl8723bs/include/hal_data.h
index 3a93ac312ded9..11e8f568a1120 100644
--- a/drivers/staging/rtl8723bs/include/hal_data.h
+++ b/drivers/staging/rtl8723bs/include/hal_data.h
@@ -16,44 +16,44 @@
 /*  <Roger_Notes> For RTL8723 WiFi/BT/GPS multi-function configuration. 2010.10.06. */
 /*  */
 enum rt_multi_func {
-	RT_MULTI_FUNC_NONE	= 0x00,
-	RT_MULTI_FUNC_WIFI	= 0x01,
-	RT_MULTI_FUNC_BT		= 0x02,
-	RT_MULTI_FUNC_GPS	= 0x04,
+	RT_MULTI_FUNC_NONE = 0x00,
+	RT_MULTI_FUNC_WIFI = 0x01,
+	RT_MULTI_FUNC_BT = 0x02,
+	RT_MULTI_FUNC_GPS = 0x04,
 };
 /*  */
 /*  <Roger_Notes> For RTL8723 WiFi PDn/GPIO polarity control configuration. 2010.10.08. */
 /*  */
 enum rt_polarity_ctl {
-	RT_POLARITY_LOW_ACT	= 0,
-	RT_POLARITY_HIGH_ACT	= 1,
+	RT_POLARITY_LOW_ACT = 0,
+	RT_POLARITY_HIGH_ACT = 1,
 };
 
 /*  For RTL8723 regulator mode. by tynli. 2011.01.14. */
 enum rt_regulator_mode {
-	RT_SWITCHING_REGULATOR	= 0,
-	RT_LDO_REGULATOR	= 1,
+	RT_SWITCHING_REGULATOR = 0,
+	RT_LDO_REGULATOR = 1,
 };
 
 enum rt_ampdu_burst {
-	RT_AMPDU_BURST_NONE	= 0,
-	RT_AMPDU_BURST_92D	= 1,
-	RT_AMPDU_BURST_88E	= 2,
-	RT_AMPDU_BURST_8812_4	= 3,
-	RT_AMPDU_BURST_8812_8	= 4,
-	RT_AMPDU_BURST_8812_12	= 5,
-	RT_AMPDU_BURST_8812_15	= 6,
-	RT_AMPDU_BURST_8723B	= 7,
+	RT_AMPDU_BURST_NONE = 0,
+	RT_AMPDU_BURST_92D = 1,
+	RT_AMPDU_BURST_88E = 2,
+	RT_AMPDU_BURST_8812_4 = 3,
+	RT_AMPDU_BURST_8812_8 = 4,
+	RT_AMPDU_BURST_8812_12 = 5,
+	RT_AMPDU_BURST_8812_15 = 6,
+	RT_AMPDU_BURST_8723B = 7,
 };
 
-#define CHANNEL_MAX_NUMBER		(14)	/*  14 is the max channel number */
-#define CHANNEL_MAX_NUMBER_2G		14
-#define MAX_PG_GROUP			13
+#define CHANNEL_MAX_NUMBER (14) /*  14 is the max channel number */
+#define CHANNEL_MAX_NUMBER_2G 14
+#define MAX_PG_GROUP 13
 
 /*  Tx Power Limit Table Size */
-#define MAX_REGULATION_NUM			4
-#define MAX_2_4G_BANDWIDTH_NUM			2
-#define MAX_RATE_SECTION_NUM			3 /* CCK:1, OFDM:1, HT:1 */
+#define MAX_REGULATION_NUM 4
+#define MAX_2_4G_BANDWIDTH_NUM 2
+#define MAX_RATE_SECTION_NUM 3 /* CCK:1, OFDM:1, HT:1 */
 
 /*  duplicate code, will move to ODM ######### */
 /* define IQK_MAC_REG_NUM		4 */
@@ -65,14 +65,14 @@ enum rt_ampdu_burst {
 /*  duplicate code, will move to ODM ######### */
 
 enum {
-	SINGLEMAC_SINGLEPHY,	/* SMSP */
-	DUALMAC_DUALPHY,		/* DMDP */
-	DUALMAC_SINGLEPHY,	/* DMSP */
+	SINGLEMAC_SINGLEPHY, /* SMSP */
+	DUALMAC_DUALPHY, /* DMDP */
+	DUALMAC_SINGLEPHY, /* DMSP */
 };
 
-#define PAGE_SIZE_128	128
-#define PAGE_SIZE_256	256
-#define PAGE_SIZE_512	512
+#define PAGE_SIZE_128 128
+#define PAGE_SIZE_256 256
+#define PAGE_SIZE_512 512
 
 struct dm_priv {
 	u8 DM_Type;
@@ -85,29 +85,29 @@ struct dm_priv {
 
 	u32 InitODMFlag;
 	/*  Upper and Lower Signal threshold for Rate Adaptive */
-	int	UndecoratedSmoothedPWDB;
-	int	UndecoratedSmoothedCCK;
-	int	EntryMinUndecoratedSmoothedPWDB;
-	int	EntryMaxUndecoratedSmoothedPWDB;
-	int	MinUndecoratedPWDBForDM;
-	int	LastMinUndecoratedPWDBForDM;
+	int UndecoratedSmoothedPWDB;
+	int UndecoratedSmoothedCCK;
+	int EntryMinUndecoratedSmoothedPWDB;
+	int EntryMaxUndecoratedSmoothedPWDB;
+	int MinUndecoratedPWDBForDM;
+	int LastMinUndecoratedPWDBForDM;
 
-	s32	UndecoratedSmoothedBeacon;
+	s32 UndecoratedSmoothedBeacon;
 
-/*  duplicate code, will move to ODM ######### */
+	/*  duplicate code, will move to ODM ######### */
 	/* for High Power */
 	u8 bDynamicTxPowerEnable;
 	u8 LastDTPLvl;
-	u8 DynamicTxHighPowerLvl;/* Add by Jacken Tx Power Control for Near/Far Range 2008/03/06 */
+	u8 DynamicTxHighPowerLvl; /* Add by Jacken Tx Power Control for Near/Far Range 2008/03/06 */
 
 	/* for tx power tracking */
 	u8 bTXPowerTracking;
 	u8 TXPowercount;
 	u8 bTXPowerTrackingInit;
-	u8 TxPowerTrackControl;	/* for mp mode, turn off txpwrtracking as default */
+	u8 TxPowerTrackControl; /* for mp mode, turn off txpwrtracking as default */
 	u8 TM_Trigger;
 
-	u8 ThermalMeter[2];				/*  ThermalMeter, index 0 for RFIC0, and 1 for RFIC1 */
+	u8 ThermalMeter[2]; /*  ThermalMeter, index 0 for RFIC0, and 1 for RFIC1 */
 	u8 ThermalValue;
 	u8 ThermalValue_LCK;
 	u8 ThermalValue_IQK;
@@ -116,7 +116,7 @@ struct dm_priv {
 	/* u8   RSVD_2; */
 
 	/* for APK */
-	u32 APKoutput[2][2];	/* path A/B; output1_1a/output1_2a */
+	u32 APKoutput[2][2]; /* path A/B; output1_1a/output1_2a */
 	u8 bAPKdone;
 	u8 bAPKThermalMeterIgnore;
 	u8 bDPdone;
@@ -146,25 +146,24 @@ struct dm_priv {
 	/* u8   RSVD_6; */
 
 	/* for TxPwrTracking2 */
-	s32	RegE94;
-	s32  RegE9C;
-	s32	RegEB4;
-	s32	RegEBC;
+	s32 RegE94;
+	s32 RegE9C;
+	s32 RegEB4;
+	s32 RegEBC;
 
-	u32 TXPowerTrackingCallbackCnt;	/* cosa add for debug */
+	u32 TXPowerTrackingCallbackCnt; /* cosa add for debug */
 
 	u32 prv_traffic_idx; /*  edca turbo */
-/*  duplicate code, will move to ODM ######### */
+	/*  duplicate code, will move to ODM ######### */
 
 	/*  Add for Reading Initial Data Rate SEL Register 0x484 during watchdog. Using for fill tx desc. 2011.3.21 by Thomas */
 	u8 INIDATA_RATE[32];
 };
 
-
 struct hal_com_data {
 	enum rt_multi_func MultiFunc; /*  For multi-function consideration. */
 	enum rt_polarity_ctl PolarityCtl; /*  For Wifi PDn Polarity control. */
-	enum rt_regulator_mode	RegulatorMode; /*  switching regulator or LDO */
+	enum rt_regulator_mode RegulatorMode; /*  switching regulator or LDO */
 
 	u16 FirmwareVersion;
 	u16 FirmwareVersionRev;
@@ -176,12 +175,12 @@ struct hal_com_data {
 	enum channel_width CurrentChannelBW;
 	u8 CurrentChannel;
 	u8 CurrentCenterFrequencyIndex1;
-	u8 nCur40MhzPrimeSC;/*  Control channel sub-carrier */
-	u8 nCur80MhzPrimeSC;   /* used for primary 40MHz of 80MHz mode */
+	u8 nCur40MhzPrimeSC; /*  Control channel sub-carrier */
+	u8 nCur80MhzPrimeSC; /* used for primary 40MHz of 80MHz mode */
 
 	u16 CustomerID;
 	u16 BasicRateSet;
-	u16 ForcedDataRate;/*  Force Data Rate. 0: Auto, 0x02: 1M ~ 0x6C: 54M. */
+	u16 ForcedDataRate; /*  Force Data Rate. 0: Auto, 0x02: 1M ~ 0x6C: 54M. */
 	u32 ReceiveConfig;
 
 	/* rf_ctrl */
@@ -212,19 +211,19 @@ struct hal_com_data {
 	u8 bAPKThermalMeterIgnore;
 	u8 bDisableSWChannelPlan; /*  flag of disable software change channel plan */
 
-	bool		EepromOrEfuse;
-	u8 		EfuseUsedPercentage;
-	u16 			EfuseUsedBytes;
-	struct efuse_hal		EfuseHal;
+	bool EepromOrEfuse;
+	u8 EfuseUsedPercentage;
+	u16 EfuseUsedBytes;
+	struct efuse_hal EfuseHal;
 
 	/* 3 [2.4G] */
 	u8 Index24G_CCK_Base[MAX_RF_PATH][CHANNEL_MAX_NUMBER];
 	u8 Index24G_BW40_Base[MAX_RF_PATH][CHANNEL_MAX_NUMBER];
 	/* If only one tx, only BW20 and OFDM are used. */
-	s8	CCK_24G_Diff[MAX_RF_PATH][MAX_TX_COUNT];
-	s8	OFDM_24G_Diff[MAX_RF_PATH][MAX_TX_COUNT];
-	s8	BW20_24G_Diff[MAX_RF_PATH][MAX_TX_COUNT];
-	s8	BW40_24G_Diff[MAX_RF_PATH][MAX_TX_COUNT];
+	s8 CCK_24G_Diff[MAX_RF_PATH][MAX_TX_COUNT];
+	s8 OFDM_24G_Diff[MAX_RF_PATH][MAX_TX_COUNT];
+	s8 BW20_24G_Diff[MAX_RF_PATH][MAX_TX_COUNT];
+	s8 BW40_24G_Diff[MAX_RF_PATH][MAX_TX_COUNT];
 
 	u8 Regulation2_4G;
 
@@ -241,17 +240,19 @@ struct hal_com_data {
 
 	/* 2 Power Limit Table */
 	u8 TxPwrLevelCck[RF_PATH_MAX_92C_88E][CHANNEL_MAX_NUMBER];
-	u8 TxPwrLevelHT40_1S[RF_PATH_MAX_92C_88E][CHANNEL_MAX_NUMBER];	/*  For HT 40MHZ pwr */
-	u8 TxPwrLevelHT40_2S[RF_PATH_MAX_92C_88E][CHANNEL_MAX_NUMBER];	/*  For HT 40MHZ pwr */
-	s8	TxPwrHt20Diff[RF_PATH_MAX_92C_88E][CHANNEL_MAX_NUMBER];/*  HT 20<->40 Pwr diff */
-	u8 TxPwrLegacyHtDiff[RF_PATH_MAX_92C_88E][CHANNEL_MAX_NUMBER];/*  For HT<->legacy pwr diff */
+	u8 TxPwrLevelHT40_1S[RF_PATH_MAX_92C_88E]
+			    [CHANNEL_MAX_NUMBER]; /*  For HT 40MHZ pwr */
+	u8 TxPwrLevelHT40_2S[RF_PATH_MAX_92C_88E]
+			    [CHANNEL_MAX_NUMBER]; /*  For HT 40MHZ pwr */
+	s8 TxPwrHt20Diff[RF_PATH_MAX_92C_88E]
+			[CHANNEL_MAX_NUMBER]; /*  HT 20<->40 Pwr diff */
+	u8 TxPwrLegacyHtDiff[RF_PATH_MAX_92C_88E]
+			    [CHANNEL_MAX_NUMBER]; /*  For HT<->legacy pwr diff */
 
 	/*  Power Limit Table for 2.4G */
-	s8	TxPwrLimit_2_4G[MAX_REGULATION_NUM]
-						[MAX_2_4G_BANDWIDTH_NUM]
-	                                [MAX_RATE_SECTION_NUM]
-	                                [CHANNEL_MAX_NUMBER_2G]
-						[MAX_RF_PATH_NUM];
+	s8 TxPwrLimit_2_4G[MAX_REGULATION_NUM][MAX_2_4G_BANDWIDTH_NUM]
+			  [MAX_RATE_SECTION_NUM][CHANNEL_MAX_NUMBER_2G]
+			  [MAX_RF_PATH_NUM];
 
 	/*  Store the original power by rate value of the base of each rate section of rf path A & B */
 	u8 TxPwrByRateBase2_4G[MAX_RF_PATH_NUM][MAX_RATE_SECTION_NUM];
@@ -260,11 +261,8 @@ struct hal_com_data {
 	u8 PwrGroupHT20[RF_PATH_MAX_92C_88E][CHANNEL_MAX_NUMBER];
 	u8 PwrGroupHT40[RF_PATH_MAX_92C_88E][CHANNEL_MAX_NUMBER];
 
-
-
-
 	u8 PGMaxGroup;
-	u8 LegacyHTTxPowerDiff;/*  Legacy to HT rate power diff */
+	u8 LegacyHTTxPowerDiff; /*  Legacy to HT rate power diff */
 	/*  The current Tx Power Level */
 	u8 CurrentCckTxPwrIdx;
 	u8 CurrentOfdm24GTxPwrIdx;
@@ -277,8 +275,8 @@ struct hal_com_data {
 	u32 CCKTxPowerLevelOriginalOffset;
 
 	u8 CrystalCap;
-	u32 AntennaTxPath;					/*  Antenna path Tx */
-	u32 AntennaRxPath;					/*  Antenna path Rx */
+	u32 AntennaTxPath; /*  Antenna path Tx */
+	u32 AntennaRxPath; /*  Antenna path Rx */
 
 	u8 PAType_2G;
 	u8 LNAType_2G;
@@ -292,25 +290,25 @@ struct hal_com_data {
 	u8 BoardType;
 	u8 ExternalPA;
 	u8 bIQKInitialized;
-	bool		bLCKInProgress;
+	bool bLCKInProgress;
 
-	bool		bSwChnl;
-	bool		bSetChnlBW;
-	bool		bChnlBWInitialized;
-	bool		bNeedIQK;
+	bool bSwChnl;
+	bool bSetChnlBW;
+	bool bChnlBWInitialized;
+	bool bNeedIQK;
 
 	u8 bLedOpenDrain; /*  Support Open-drain arrangement for controlling the LED. Added by Roger, 2009.10.16. */
 	u8 TxPowerTrackControl; /* for mp mode, turn off txpwrtracking as default */
-	u8 b1x1RecvCombine;	/*  for 1T1R receive combining */
+	u8 b1x1RecvCombine; /*  for 1T1R receive combining */
 
 	u32 AcParam_BE; /* Original parameter for BE, use for EDCA turbo. */
 
-	struct bb_register_def PHYRegDef[4];	/* Radio A/B/C/D */
+	struct bb_register_def PHYRegDef[4]; /* Radio A/B/C/D */
 
 	u32 RfRegChnlVal[2];
 
 	/* RDG enable */
-	bool	 bRDGEnable;
+	bool bRDGEnable;
 
 	/* for host message to fw */
 	u8 LastHMEBoxNum;
@@ -332,14 +330,14 @@ struct hal_com_data {
 	u8 TRxAntDivType;
 	u8 ant_path; /* for 8723B s0/s1 selection */
 
-	u8 u1ForcedIgiLb;			/*  forced IGI lower bound */
+	u8 u1ForcedIgiLb; /*  forced IGI lower bound */
 
-	u8 bDumpRxPkt;/* for debug */
-	u8 bDumpTxPkt;/* for debug */
+	u8 bDumpRxPkt; /* for debug */
+	u8 bDumpTxPkt; /* for debug */
 	u8 FwRsvdPageStartOffset; /* 2010.06.23. Added by tynli. Reserve page start offset except beacon in TxQ. */
 
 	/*  2010/08/09 MH Add CU power down mode. */
-	bool		pwrdown;
+	bool pwrdown;
 
 	/*  Add for dual MAC  0--Mac0 1--Mac1 */
 	u32 interfaceIndex;
@@ -348,11 +346,11 @@ struct hal_com_data {
 	u8 OutEpNumber;
 
 	/*  2010/12/10 MH Add for USB aggregation mode dynamic scheme. */
-	bool		UsbRxHighSpeedMode;
+	bool UsbRxHighSpeedMode;
 
 	/*  2010/11/22 MH Add for slim combo debug mode selective. */
 	/*  This is used for fix the drawback of CU TSMC-A/UMC-A cut. HW auto suspend ability. Close BT clock. */
-	bool		SlimComboDbg;
+	bool SlimComboDbg;
 
 	/* u8 AMPDUDensity; */
 
@@ -360,39 +358,43 @@ struct hal_com_data {
 	u8 bMacPwrCtrlOn;
 
 	u8 RegIQKFWOffload;
-	struct submit_ctx	iqk_sctx;
+	struct submit_ctx iqk_sctx;
 
-	enum rt_ampdu_burst	AMPDUBurstMode; /* 92C maybe not use, but for compile successfully */
+	enum rt_ampdu_burst
+		AMPDUBurstMode; /* 92C maybe not use, but for compile successfully */
 
-	u32 		sdio_himr;
-	u32 		sdio_hisr;
+	u32 sdio_himr;
+	u32 sdio_hisr;
 
 	/*  SDIO Tx FIFO related. */
 	/*  HIQ, MID, LOW, PUB free pages; padapter->xmitpriv.free_txpg */
-	u8 	SdioTxFIFOFreePage[SDIO_TX_FREE_PG_QUEUE];
-	spinlock_t		SdioTxFIFOFreePageLock;
-	u8 	SdioTxOQTMaxFreeSpace;
-	u8 	SdioTxOQTFreeSpace;
-
+	u8 SdioTxFIFOFreePage[SDIO_TX_FREE_PG_QUEUE];
+	spinlock_t SdioTxFIFOFreePageLock;
+	u8 SdioTxOQTMaxFreeSpace;
+	u8 SdioTxOQTFreeSpace;
 
 	/*  SDIO Rx FIFO related. */
-	u8 	SdioRxFIFOCnt;
-	u16 		SdioRxFIFOSize;
+	u8 SdioRxFIFOCnt;
+	u16 SdioRxFIFOSize;
 
-	u32 		sdio_tx_max_len[SDIO_MAX_TX_QUEUE];/*  H, N, L, used for sdio tx aggregation max length per queue */
+	u32 sdio_tx_max_len
+		[SDIO_MAX_TX_QUEUE]; /*  H, N, L, used for sdio tx aggregation max length per queue */
 
 	struct dm_priv dmpriv;
-	struct dm_odm_t		odmpriv;
+	struct dm_odm_t odmpriv;
 
 	/*  For bluetooth co-existence */
-	struct bt_coexist		bt_coexist;
+	struct bt_coexist bt_coexist;
 
 	/* Chip version information */
-	bool chip_normal;	/* true - normal chip, false - test chip */
+	bool chip_normal; /* true - normal chip, false - test chip */
 };
 
-#define GET_HAL_DATA(__padapter)	((struct hal_com_data *)((__padapter)->HalData))
-#define GET_HAL_RFPATH_NUM(__padapter) (((struct hal_com_data *)((__padapter)->HalData))->NumTotalRFPath)
-#define RT_GetInterfaceSelection(_Adapter)	(GET_HAL_DATA(_Adapter)->InterfaceSel)
+#define GET_HAL_DATA(__padapter) \
+	((struct hal_com_data *)((__padapter)->HalData))
+#define GET_HAL_RFPATH_NUM(__padapter) \
+	(((struct hal_com_data *)((__padapter)->HalData))->NumTotalRFPath)
+#define RT_GetInterfaceSelection(_Adapter) \
+	(GET_HAL_DATA(_Adapter)->InterfaceSel)
 
 #endif /* __HAL_DATA_H__ */
diff --git a/drivers/staging/rtl8723bs/include/hal_intf.h b/drivers/staging/rtl8723bs/include/hal_intf.h
index ee8ad26325b5d..20a15c5d47df4 100644
--- a/drivers/staging/rtl8723bs/include/hal_intf.h
+++ b/drivers/staging/rtl8723bs/include/hal_intf.h
@@ -7,12 +7,11 @@
 #ifndef __HAL_INTF_H__
 #define __HAL_INTF_H__
 
-
 enum {
-	RTW_PCIE	= BIT(0),
-	RTW_USB		= BIT(1),
-	RTW_SDIO	= BIT(2),
-	RTW_GSPI	= BIT(3),
+	RTW_PCIE = BIT(0),
+	RTW_USB = BIT(1),
+	RTW_SDIO = BIT(2),
+	RTW_GSPI = BIT(3),
 };
 
 enum {
@@ -119,17 +118,17 @@ enum hal_def_variable {
 	HAL_DEF_DRVINFO_SZ,
 	HAL_DEF_MAX_RECVBUF_SZ,
 	HAL_DEF_RX_PACKET_OFFSET,
-	HAL_DEF_DBG_DUMP_RXPKT,/* for dbg */
-	HAL_DEF_DBG_DM_FUNC,/* for dbg */
+	HAL_DEF_DBG_DUMP_RXPKT, /* for dbg */
+	HAL_DEF_DBG_DM_FUNC, /* for dbg */
 	HAL_DEF_RA_DECISION_RATE,
 	HAL_DEF_RA_SGI,
 	HAL_DEF_PT_PWR_STATUS,
-	HAL_DEF_TX_LDPC,				/*  LDPC support */
-	HAL_DEF_RX_LDPC,				/*  LDPC support */
-	HAL_DEF_TX_STBC,				/*  TX STBC support */
-	HAL_DEF_RX_STBC,				/*  RX STBC support */
-	HAL_DEF_EXPLICIT_BEAMFORMER,/*  Explicit  Compressed Steering Capable */
-	HAL_DEF_EXPLICIT_BEAMFORMEE,/*  Explicit Compressed Beamforming Feedback Capable */
+	HAL_DEF_TX_LDPC, /*  LDPC support */
+	HAL_DEF_RX_LDPC, /*  LDPC support */
+	HAL_DEF_TX_STBC, /*  TX STBC support */
+	HAL_DEF_RX_STBC, /*  RX STBC support */
+	HAL_DEF_EXPLICIT_BEAMFORMER, /*  Explicit  Compressed Steering Capable */
+	HAL_DEF_EXPLICIT_BEAMFORMEE, /*  Explicit Compressed Beamforming Feedback Capable */
 	HW_VAR_MAX_RX_AMPDU_FACTOR,
 	HW_DEF_RA_INFO_DUMP,
 	HAL_DEF_DBG_DUMP_TXPKT,
@@ -139,7 +138,7 @@ enum hal_def_variable {
 	HAL_DEF_TX_PAGE_SIZE,
 	HAL_DEF_TX_PAGE_BOUNDARY,
 	HAL_DEF_TX_PAGE_BOUNDARY_WOWLAN,
-	HAL_DEF_ANT_DETECT,/* to do for 8723a */
+	HAL_DEF_ANT_DETECT, /* to do for 8723a */
 	HAL_DEF_PCI_SUUPORT_L1_BACKDOOR, /*  Determine if the L1 Backdoor setting is turned on. */
 	HAL_DEF_PCI_AMD_L1_SUPPORT,
 	HAL_DEF_PCI_ASPM_OSC, /*  Support for ASPM OSC, added by Roger, 2013.03.27. */
@@ -160,26 +159,26 @@ enum hal_intf_ps_func {
 
 typedef s32 (*c2h_id_filter)(u8 *c2h_evt);
 
-#define RF_CHANGE_BY_INIT	0
-#define RF_CHANGE_BY_IPS	BIT(28)
-#define RF_CHANGE_BY_PS		BIT(29)
-#define RF_CHANGE_BY_HW		BIT(30)
-#define RF_CHANGE_BY_SW		BIT(31)
+#define RF_CHANGE_BY_INIT 0
+#define RF_CHANGE_BY_IPS BIT(28)
+#define RF_CHANGE_BY_PS BIT(29)
+#define RF_CHANGE_BY_HW BIT(30)
+#define RF_CHANGE_BY_SW BIT(31)
 
 #define GET_EEPROM_EFUSE_PRIV(adapter) (&adapter->eeprompriv)
 #define is_boot_from_eeprom(adapter) (adapter->eeprompriv.EepromOrEfuse)
 
-#define Rx_Pairwisekey			0x01
-#define Rx_GTK					0x02
-#define Rx_DisAssoc				0x04
-#define Rx_DeAuth				0x08
-#define Rx_ARPReq				0x09
-#define FWDecisionDisconnect	0x10
-#define Rx_MagicPkt				0x21
-#define Rx_UnicastPkt			0x22
-#define Rx_PatternPkt			0x23
-#define	RX_PNOWakeUp			0x55
-#define	AP_WakeUp			0x66
+#define Rx_Pairwisekey 0x01
+#define Rx_GTK 0x02
+#define Rx_DisAssoc 0x04
+#define Rx_DeAuth 0x08
+#define Rx_ARPReq 0x09
+#define FWDecisionDisconnect 0x10
+#define Rx_MagicPkt 0x21
+#define Rx_UnicastPkt 0x22
+#define Rx_PatternPkt 0x23
+#define RX_PNOWakeUp 0x55
+#define AP_WakeUp 0x66
 
 uint rtw_hal_init(struct adapter *padapter);
 uint rtw_hal_deinit(struct adapter *padapter);
@@ -187,44 +186,59 @@ void rtw_hal_stop(struct adapter *padapter);
 void rtw_hal_set_hwreg(struct adapter *padapter, u8 variable, u8 *val);
 void rtw_hal_get_hwreg(struct adapter *padapter, u8 variable, u8 *val);
 
-void rtw_hal_set_hwreg_with_buf(struct adapter *padapter, u8 variable, u8 *pbuf, int len);
+void rtw_hal_set_hwreg_with_buf(struct adapter *padapter, u8 variable, u8 *pbuf,
+				int len);
 
-u8 rtw_hal_get_def_var(struct adapter *padapter, enum hal_def_variable eVariable, void *pValue);
+u8 rtw_hal_get_def_var(struct adapter *padapter,
+		       enum hal_def_variable eVariable, void *pValue);
 
-void rtw_hal_set_odm_var(struct adapter *padapter, enum hal_odm_variable eVariable, void *pValue1, bool bSet);
+void rtw_hal_set_odm_var(struct adapter *padapter,
+			 enum hal_odm_variable eVariable, void *pValue1,
+			 bool bSet);
 
 u8 rtw_hal_check_ips_status(struct adapter *padapter);
 
-int rtw_hal_xmitframe_enqueue(struct adapter *padapter, struct xmit_frame *pxmitframe);
-s32	rtw_hal_xmit(struct adapter *padapter, struct xmit_frame *pxmitframe);
-s32	rtw_hal_mgnt_xmit(struct adapter *padapter, struct xmit_frame *pmgntframe);
+int rtw_hal_xmitframe_enqueue(struct adapter *padapter,
+			      struct xmit_frame *pxmitframe);
+s32 rtw_hal_xmit(struct adapter *padapter, struct xmit_frame *pxmitframe);
+s32 rtw_hal_mgnt_xmit(struct adapter *padapter, struct xmit_frame *pmgntframe);
 
-s32	rtw_hal_init_xmit_priv(struct adapter *padapter);
+s32 rtw_hal_init_xmit_priv(struct adapter *padapter);
 void rtw_hal_free_xmit_priv(struct adapter *padapter);
 
-s32	rtw_hal_init_recv_priv(struct adapter *padapter);
+s32 rtw_hal_init_recv_priv(struct adapter *padapter);
 void rtw_hal_free_recv_priv(struct adapter *padapter);
 
 void rtw_hal_update_ra_mask(struct sta_info *psta, u8 rssi_level);
-void rtw_hal_add_ra_tid(struct adapter *padapter, u32 bitmap, u8 *arg, u8 rssi_level);
+void rtw_hal_add_ra_tid(struct adapter *padapter, u32 bitmap, u8 *arg,
+			u8 rssi_level);
 
 void beacon_timing_control(struct adapter *padapter);
 
 u32 rtw_hal_read_bbreg(struct adapter *padapter, u32 RegAddr, u32 BitMask);
-void rtw_hal_write_bbreg(struct adapter *padapter, u32 RegAddr, u32 BitMask, u32 Data);
-u32 rtw_hal_read_rfreg(struct adapter *padapter, u32 eRFPath, u32 RegAddr, u32 BitMask);
-void rtw_hal_write_rfreg(struct adapter *padapter, u32 eRFPath, u32 RegAddr, u32 BitMask, u32 Data);
+void rtw_hal_write_bbreg(struct adapter *padapter, u32 RegAddr, u32 BitMask,
+			 u32 Data);
+u32 rtw_hal_read_rfreg(struct adapter *padapter, u32 eRFPath, u32 RegAddr,
+		       u32 BitMask);
+void rtw_hal_write_rfreg(struct adapter *padapter, u32 eRFPath, u32 RegAddr,
+			 u32 BitMask, u32 Data);
 
-#define PHY_QueryBBReg(Adapter, RegAddr, BitMask) rtw_hal_read_bbreg((Adapter), (RegAddr), (BitMask))
-#define PHY_SetBBReg(Adapter, RegAddr, BitMask, Data) rtw_hal_write_bbreg((Adapter), (RegAddr), (BitMask), (Data))
-#define PHY_QueryRFReg(Adapter, eRFPath, RegAddr, BitMask) rtw_hal_read_rfreg((Adapter), (eRFPath), (RegAddr), (BitMask))
-#define PHY_SetRFReg(Adapter, eRFPath, RegAddr, BitMask, Data) rtw_hal_write_rfreg((Adapter), (eRFPath), (RegAddr), (BitMask), (Data))
+#define PHY_QueryBBReg(Adapter, RegAddr, BitMask) \
+	rtw_hal_read_bbreg((Adapter), (RegAddr), (BitMask))
+#define PHY_SetBBReg(Adapter, RegAddr, BitMask, Data) \
+	rtw_hal_write_bbreg((Adapter), (RegAddr), (BitMask), (Data))
+#define PHY_QueryRFReg(Adapter, eRFPath, RegAddr, BitMask) \
+	rtw_hal_read_rfreg((Adapter), (eRFPath), (RegAddr), (BitMask))
+#define PHY_SetRFReg(Adapter, eRFPath, RegAddr, BitMask, Data) \
+	rtw_hal_write_rfreg((Adapter), (eRFPath), (RegAddr), (BitMask), (Data))
 
-#define PHY_SetMacReg	PHY_SetBBReg
+#define PHY_SetMacReg PHY_SetBBReg
 #define PHY_QueryMacReg PHY_QueryBBReg
 
 void rtw_hal_set_chan(struct adapter *padapter, u8 channel);
-void rtw_hal_set_chnl_bw(struct adapter *padapter, u8 channel, enum channel_width Bandwidth, u8 Offset40, u8 Offset80);
+void rtw_hal_set_chnl_bw(struct adapter *padapter, u8 channel,
+			 enum channel_width Bandwidth, u8 Offset40,
+			 u8 Offset80);
 void rtw_hal_dm_watchdog(struct adapter *padapter);
 void rtw_hal_dm_watchdog_in_lps(struct adapter *padapter);
 
@@ -239,12 +253,15 @@ c2h_id_filter rtw_hal_c2h_id_filter_ccx(struct adapter *adapter);
 s32 rtw_hal_macid_sleep(struct adapter *padapter, u32 macid);
 s32 rtw_hal_macid_wakeup(struct adapter *padapter, u32 macid);
 
-s32 rtw_hal_fill_h2c_cmd(struct adapter *, u8 ElementID, u32 CmdLen, u8 *pCmdBuffer);
+s32 rtw_hal_fill_h2c_cmd(struct adapter *, u8 ElementID, u32 CmdLen,
+			 u8 *pCmdBuffer);
 
 void SetHwReg8723BS(struct adapter *padapter, u8 variable, u8 *val);
 void GetHwReg8723BS(struct adapter *padapter, u8 variable, u8 *val);
-void SetHwRegWithBuf8723B(struct adapter *padapter, u8 variable, u8 *pbuf, int len);
-u8 GetHalDefVar8723BSDIO(struct adapter *Adapter, enum hal_def_variable eVariable, void *pValue);
+void SetHwRegWithBuf8723B(struct adapter *padapter, u8 variable, u8 *pbuf,
+			  int len);
+u8 GetHalDefVar8723BSDIO(struct adapter *Adapter,
+			 enum hal_def_variable eVariable, void *pValue);
 void UpdateHalRAMask8723B(struct adapter *padapter, u32 mac_id, u8 rssi_level);
 void rtl8723b_SetBeaconRelatedRegisters(struct adapter *padapter);
 void Hal_EfusePowerSwitch(struct adapter *padapter, u8 PwrState);
diff --git a/drivers/staging/rtl8723bs/include/hal_pg.h b/drivers/staging/rtl8723bs/include/hal_pg.h
index 7cb9c441fc013..9bb7ed26a49b8 100644
--- a/drivers/staging/rtl8723bs/include/hal_pg.h
+++ b/drivers/staging/rtl8723bs/include/hal_pg.h
@@ -8,44 +8,44 @@
 #ifndef __HAL_PG_H__
 #define __HAL_PG_H__
 
-#define	MAX_RF_PATH				4
+#define MAX_RF_PATH 4
 /* MAX_TX_COUNT must always be set to 4, otherwise the read efuse table
  * sequence will be wrong.
  */
-#define MAX_TX_COUNT				4
+#define MAX_TX_COUNT 4
 
 /*  TX power by rate table. */
 /*  RF: = AB = 0/1 */
 /*  CCK = 0 OFDM = 1 HT-MCS 0-7 = 2 */
-#define TX_PWR_BY_RATE_NUM_RATE			84
-#define MAX_RF_PATH_NUM				2
-#define	MAX_CHNL_GROUP_24G			6
-#define EEPROM_DEFAULT_BOARD_OPTION		0x00
+#define TX_PWR_BY_RATE_NUM_RATE 84
+#define MAX_RF_PATH_NUM 2
+#define MAX_CHNL_GROUP_24G 6
+#define EEPROM_DEFAULT_BOARD_OPTION 0x00
 
 /* EEPROM/Efuse PG Offset for 8723BE/8723BU/8723BS */
 /*  0x10 ~ 0x63 = TX power area. */
-#define	EEPROM_TX_PWR_INX_8723B			0x10
+#define EEPROM_TX_PWR_INX_8723B 0x10
 /* New EFUSE default value */
-#define EEPROM_DEFAULT_24G_INDEX		0x2D
-#define EEPROM_DEFAULT_24G_HT20_DIFF		0X02
-#define EEPROM_DEFAULT_24G_OFDM_DIFF		0X04
-#define	EEPROM_Default_ThermalMeter_8723B	0x18
-#define EEPROM_Default_CrystalCap_8723B		0x20
+#define EEPROM_DEFAULT_24G_INDEX 0x2D
+#define EEPROM_DEFAULT_24G_HT20_DIFF 0X02
+#define EEPROM_DEFAULT_24G_OFDM_DIFF 0X04
+#define EEPROM_Default_ThermalMeter_8723B 0x18
+#define EEPROM_Default_CrystalCap_8723B 0x20
 
-#define	EEPROM_ChannelPlan_8723B		0xB8
-#define	EEPROM_XTAL_8723B			0xB9
-#define	EEPROM_THERMAL_METER_8723B		0xBA
+#define EEPROM_ChannelPlan_8723B 0xB8
+#define EEPROM_XTAL_8723B 0xB9
+#define EEPROM_THERMAL_METER_8723B 0xBA
 
-#define	EEPROM_RF_BOARD_OPTION_8723B		0xC1
-#define	EEPROM_RF_BT_SETTING_8723B		0xC3
-#define	EEPROM_VERSION_8723B			0xC4
-#define	EEPROM_CustomID_8723B			0xC5
-#define EEPROM_DEFAULT_DIFF			0XFE
+#define EEPROM_RF_BOARD_OPTION_8723B 0xC1
+#define EEPROM_RF_BT_SETTING_8723B 0xC3
+#define EEPROM_VERSION_8723B 0xC4
+#define EEPROM_CustomID_8723B 0xC5
+#define EEPROM_DEFAULT_DIFF 0XFE
 
 /* RTL8723BS */
-#define	EEPROM_MAC_ADDR_8723BS			0x11A
-#define EEPROM_Voltage_ADDR_8723B		0x8
-#define RTL_EEPROM_ID				0x8129
+#define EEPROM_MAC_ADDR_8723BS 0x11A
+#define EEPROM_Voltage_ADDR_8723B 0x8
+#define RTL_EEPROM_ID 0x8129
 
 struct TxPowerInfo24G {
 	u8 IndexCCK_Base[MAX_RF_PATH][MAX_CHNL_GROUP_24G];
@@ -57,10 +57,7 @@ struct TxPowerInfo24G {
 	s8 BW40_Diff[MAX_RF_PATH][MAX_TX_COUNT];
 };
 
-enum {
-	Ant_x2	= 0,
-	Ant_x1	= 1
-};
+enum { Ant_x2 = 0, Ant_x1 = 1 };
 
 enum {
 	BT_RTL8723B = 8,
diff --git a/drivers/staging/rtl8723bs/include/hal_phy.h b/drivers/staging/rtl8723bs/include/hal_phy.h
index abc0f27fdaa46..8187ac10949ca 100644
--- a/drivers/staging/rtl8723bs/include/hal_phy.h
+++ b/drivers/staging/rtl8723bs/include/hal_phy.h
@@ -10,36 +10,33 @@
 /*  Antenna detection method, i.e., using single tone detection or RSSI reported from each antenna detected. */
 /*  Added by Roger, 2013.05.22. */
 /*  */
-#define ANT_DETECT_BY_SINGLE_TONE	BIT(0)
-#define ANT_DETECT_BY_RSSI				BIT(1)
-#define IS_ANT_DETECT_SUPPORT_SINGLE_TONE(__Adapter)		((GET_HAL_DATA(__Adapter)->AntDetection) & ANT_DETECT_BY_SINGLE_TONE)
-#define IS_ANT_DETECT_SUPPORT_RSSI(__Adapter)		((GET_HAL_DATA(__Adapter)->AntDetection) & ANT_DETECT_BY_RSSI)
-
+#define ANT_DETECT_BY_SINGLE_TONE BIT(0)
+#define ANT_DETECT_BY_RSSI BIT(1)
+#define IS_ANT_DETECT_SUPPORT_SINGLE_TONE(__Adapter) \
+	((GET_HAL_DATA(__Adapter)->AntDetection) & ANT_DETECT_BY_SINGLE_TONE)
+#define IS_ANT_DETECT_SUPPORT_RSSI(__Adapter) \
+	((GET_HAL_DATA(__Adapter)->AntDetection) & ANT_DETECT_BY_RSSI)
 
 /*--------------------------Define Parameters-------------------------------*/
 enum {
-	RF_TYPE_MIN = 0,	/*  0 */
-	RF_8225 = 1,		/*  1 11b/g RF for verification only */
-	RF_8256 = 2,		/*  2 11b/g/n */
-	RF_8258 = 3,		/*  3 11a/b/g/n RF */
-	RF_6052 = 4,		/*  4 11b/g/n RF */
-	RF_PSEUDO_11N = 5,	/*  5, It is a temporality RF. */
+	RF_TYPE_MIN = 0, /*  0 */
+	RF_8225 = 1, /*  1 11b/g RF for verification only */
+	RF_8256 = 2, /*  2 11b/g/n */
+	RF_8258 = 3, /*  3 11a/b/g/n RF */
+	RF_6052 = 4, /*  4 11b/g/n RF */
+	RF_PSEUDO_11N = 5, /*  5, It is a temporality RF. */
 	RF_TYPE_MAX
 };
 
-enum rf_path {
-	RF_PATH_A = 0,
-	RF_PATH_B,
-	RF_PATH_MAX
-};
+enum rf_path { RF_PATH_A = 0, RF_PATH_B, RF_PATH_MAX };
 
-#define	TX_1S			0
-#define	TX_2S			1
-#define	TX_3S			2
-#define	TX_4S			3
+#define TX_1S 0
+#define TX_2S 1
+#define TX_3S 2
+#define TX_4S 3
 
-#define	RF_PATH_MAX_92C_88E		2
-#define	RF_PATH_MAX_90_8812		4	/* Max RF number 90 support */
+#define RF_PATH_MAX_92C_88E 2
+#define RF_PATH_MAX_90_8812 4 /* Max RF number 90 support */
 
 enum wireless_mode {
 	WIRELESS_MODE_UNKNOWN = 0x00,
@@ -47,8 +44,8 @@ enum wireless_mode {
 	WIRELESS_MODE_G = 0x04,
 	WIRELESS_MODE_AUTO = 0x08,
 	WIRELESS_MODE_N_24G = 0x10,
-	WIRELESS_MODE_AC_24G  = 0x80,
-	WIRELESS_MODE_AC_ONLY  = 0x100,
+	WIRELESS_MODE_AC_24G = 0x80,
+	WIRELESS_MODE_AC_ONLY = 0x100,
 };
 
 enum SwChnlCmdID {
@@ -62,10 +59,10 @@ enum SwChnlCmdID {
 };
 
 struct SwChnlCmd {
-	enum SwChnlCmdID	CmdID;
-	u32 			Para1;
-	u32 			Para2;
-	u32 			msDelay;
+	enum SwChnlCmdID CmdID;
+	u32 Para1;
+	u32 Para2;
+	u32 msDelay;
 };
 
 /*--------------------------Exported Function prototype---------------------*/
diff --git a/drivers/staging/rtl8723bs/include/hal_phy_cfg.h b/drivers/staging/rtl8723bs/include/hal_phy_cfg.h
index 07bf0a8d019aa..3943c444cd15a 100644
--- a/drivers/staging/rtl8723bs/include/hal_phy_cfg.h
+++ b/drivers/staging/rtl8723bs/include/hal_phy_cfg.h
@@ -8,18 +8,17 @@
 #define __INC_HAL8723BPHYCFG_H__
 
 /*--------------------------Define Parameters-------------------------------*/
-#define LOOP_LIMIT		5
-#define MAX_STALL_TIME		50	/* us */
-#define AntennaDiversityValue	0x80	/* Adapter->bSoftwareAntennaDiversity ? 0x00:0x80) */
-#define MAX_TXPWR_IDX_NMODE_92S	63
-#define Reset_Cnt_Limit		3
-
-#define MAX_AGGR_NUM	0x07
+#define LOOP_LIMIT 5
+#define MAX_STALL_TIME 50 /* us */
+#define AntennaDiversityValue \
+	0x80 /* Adapter->bSoftwareAntennaDiversity ? 0x00:0x80) */
+#define MAX_TXPWR_IDX_NMODE_92S 63
+#define Reset_Cnt_Limit 3
 
+#define MAX_AGGR_NUM 0x07
 
 /*--------------------------Define Parameters End-------------------------------*/
 
-
 /*------------------------------Define structure----------------------------*/
 
 /*------------------------------Define structure End----------------------------*/
@@ -27,14 +26,14 @@
 /*--------------------------Exported Function prototype---------------------*/
 u32 PHY_QueryBBReg_8723B(struct adapter *Adapter, u32 RegAddr, u32 BitMask);
 
-void PHY_SetBBReg_8723B(struct adapter *Adapter, u32 RegAddr,
-			u32 BitMask, u32 Data);
+void PHY_SetBBReg_8723B(struct adapter *Adapter, u32 RegAddr, u32 BitMask,
+			u32 Data);
 
-u32 PHY_QueryRFReg_8723B(struct adapter *Adapter, u8 eRFPath,
-			 u32 RegAddr, u32 BitMask);
+u32 PHY_QueryRFReg_8723B(struct adapter *Adapter, u8 eRFPath, u32 RegAddr,
+			 u32 BitMask);
 
-void PHY_SetRFReg_8723B(struct adapter *Adapter, u8 eRFPath,
-			u32 RegAddr, u32 BitMask, u32 Data);
+void PHY_SetRFReg_8723B(struct adapter *Adapter, u8 eRFPath, u32 RegAddr,
+			u32 BitMask, u32 Data);
 
 /* MAC/BB/RF HAL config */
 int PHY_BBConfig8723B(struct adapter *Adapter);
@@ -43,11 +42,11 @@ int PHY_RFConfig8723B(struct adapter *Adapter);
 
 s32 PHY_MACConfig8723B(struct adapter *padapter);
 
-void PHY_SetTxPowerIndex(struct adapter *Adapter, u32 PowerIndex,
-			 u8 RFPath, u8 Rate);
+void PHY_SetTxPowerIndex(struct adapter *Adapter, u32 PowerIndex, u8 RFPath,
+			 u8 Rate);
 
 u8 PHY_GetTxPowerIndex(struct adapter *padapter, u8 RFPath, u8 Rate,
-			enum channel_width BandWidth, u8 Channel);
+		       enum channel_width BandWidth, u8 Channel);
 
 void PHY_SetTxPowerLevel8723B(struct adapter *Adapter, u8 channel);
 
@@ -55,8 +54,8 @@ void PHY_SetTxPowerLevel8723B(struct adapter *Adapter, u8 channel);
 void PHY_SwChnl8723B(struct adapter *Adapter, u8 channel);
 
 void PHY_SetSwChnlBWMode8723B(struct adapter *Adapter, u8 channel,
-				enum channel_width Bandwidth,
-				u8 Offset40, u8 Offset80);
+			      enum channel_width Bandwidth, u8 Offset40,
+			      u8 Offset80);
 
 /*--------------------------Exported Function prototype End---------------------*/
 
diff --git a/drivers/staging/rtl8723bs/include/hal_phy_reg.h b/drivers/staging/rtl8723bs/include/hal_phy_reg.h
index 682cdd6655ab2..caa1f6ebdfcdd 100644
--- a/drivers/staging/rtl8723bs/include/hal_phy_reg.h
+++ b/drivers/staging/rtl8723bs/include/hal_phy_reg.h
@@ -11,7 +11,7 @@
 /* if (RTL92SE_FPGA_VERIFY == 1) */
 /* define		bRFRegOffsetMask	0xfff */
 /* else */
-#define			bRFRegOffsetMask	0xfffff
+#define bRFRegOffsetMask 0xfffff
 /* endif */
 
 #endif /* __HAL_PHY_REG_H__ */
diff --git a/drivers/staging/rtl8723bs/include/hal_pwr_seq.h b/drivers/staging/rtl8723bs/include/hal_pwr_seq.h
index 9639eef8a51d2..b3c8154b1624d 100644
--- a/drivers/staging/rtl8723bs/include/hal_pwr_seq.h
+++ b/drivers/staging/rtl8723bs/include/hal_pwr_seq.h
@@ -25,202 +25,829 @@
 
 	TRANS_END
 */
-#define	RTL8723B_TRANS_CARDEMU_TO_ACT_STEPS	26
-#define	RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS	15
-#define	RTL8723B_TRANS_CARDEMU_TO_SUS_STEPS	15
-#define	RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS	15
-#define	RTL8723B_TRANS_ACT_TO_LPS_STEPS		15
-#define	RTL8723B_TRANS_LPS_TO_ACT_STEPS		15
-#define	RTL8723B_TRANS_ACT_TO_SWLPS_STEPS		22
-#define	RTL8723B_TRANS_SWLPS_TO_ACT_STEPS		15
-#define	RTL8723B_TRANS_END_STEPS		1
-
-
-#define RTL8723B_TRANS_CARDEMU_TO_ACT														\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value },  comments here*/								\
-	{0x0020, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_USB_MSK|PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)}, /*0x20[0] = 1b'1 enable LDOA12 MACRO block for all interface*/   \
-	{0x0067, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_USB_MSK|PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(4), 0}, /*0x67[0] = 0 to disable BT_GPS_SEL pins*/	\
-	{0x0001, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_USB_MSK|PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_DELAY, 1, PWRSEQ_DELAY_MS},/*Delay 1ms*/   \
-	{0x0000, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_USB_MSK|PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(5), 0}, /*0x00[5] = 1b'0 release analog Ips to digital , 1:isolation*/   \
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, (BIT(4)|BIT(3)|BIT(2)), 0},/* disable SW LPS 0x04[10]= 0 and WLSUS_EN 0x04[11]= 0*/	\
-	{0x0075, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_PCI_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)},/* Disable USB suspend */	\
-	{0x0006, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, BIT(1), BIT(1)},/* wait till 0x04[17] = 1    power ready*/	\
-	{0x0075, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_PCI_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), (0)},/* Enable USB suspend */	\
-	{0x0006, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)},/* release WLON reset  0x04[16]= 1*/	\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(7), 0},/* disable HWPDN 0x04[15]= 0*/	\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, (BIT(4)|BIT(3)), 0},/* disable WL suspend*/	\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)},/* polling until return 0*/	\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, BIT(0), 0},/**/	\
-	{0x0010, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(6), BIT(6)},/* Enable WL control XTAL setting*/	\
-	{0x0049, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), BIT(1)},/*Enable falling edge triggering interrupt*/\
-	{0x0063, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), BIT(1)},/*Enable GPIO9 interrupt mode*/\
-	{0x0062, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), 0},/*Enable GPIO9 input mode*/\
-	{0x0058, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)},/*Enable HSISR GPIO[C:0] interrupt*/\
-	{0x005A, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), BIT(1)},/*Enable HSISR GPIO9 interrupt*/\
-	{0x0068, PWR_CUT_TESTCHIP_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(3), BIT(3)},/*For GPIO9 internal pull high setting by test chip*/\
-	{0x0069, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(6), BIT(6)},/*For GPIO9 internal pull high setting*/\
-
-
-#define RTL8723B_TRANS_ACT_TO_CARDEMU													\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value },  comments here*/								\
-	{0x001F, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0},/*0x1F[7:0] = 0 turn off RF*/	\
-	{0x0049, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), 0},/*Enable rising edge triggering interrupt*/ \
-	{0x0006, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)},/* release WLON reset  0x04[16]= 1*/	\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), BIT(1)}, /*0x04[9] = 1 turn off MAC by HW state machine*/	\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, BIT(1), 0}, /*wait till 0x04[9] = 0 polling until return 0 to disable*/	\
-	{0x0010, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(6), 0},/* Enable BT control XTAL setting*/\
-	{0x0000, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_USB_MSK|PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(5), BIT(5)}, /*0x00[5] = 1b'1 analog Ips to digital , 1:isolation*/   \
-	{0x0020, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_USB_MSK|PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 0}, /*0x20[0] = 1b'0 disable LDOA12 MACRO block*/\
-
-
-#define RTL8723B_TRANS_CARDEMU_TO_SUS													\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value },  comments here*/								\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_PCI_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(4)|BIT(3), (BIT(4)|BIT(3))}, /*0x04[12:11] = 2b'11 enable WL suspend for PCIe*/	\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_USB_MSK|PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(3)|BIT(4), BIT(3)}, /*0x04[12:11] = 2b'01 enable WL suspend*/	\
-	{0x0023, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(4), BIT(4)}, /*0x23[4] = 1b'1 12H LDO enter sleep mode*/   \
-	{0x0007, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0x20}, /*0x07[7:0] = 0x20 SDIO SOP option to disable BG/MB/ACK/SWR*/   \
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_PCI_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(3)|BIT(4), BIT(3)|BIT(4)}, /*0x04[12:11] = 2b'11 enable WL suspend for PCIe*/	\
-	{0x0086, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_SDIO, PWR_CMD_WRITE, BIT(0), BIT(0)}, /*Set SDIO suspend local register*/	\
-	{0x0086, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_SDIO, PWR_CMD_POLLING, BIT(1), 0}, /*wait power state to suspend*/
-
-#define RTL8723B_TRANS_SUS_TO_CARDEMU													\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value },  comments here*/								\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(3) | BIT(7), 0}, /*clear suspend enable and power down enable*/	\
-	{0x0086, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_SDIO, PWR_CMD_WRITE, BIT(0), 0}, /*Set SDIO suspend local register*/	\
-	{0x0086, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_SDIO, PWR_CMD_POLLING, BIT(1), BIT(1)}, /*wait power state to suspend*/\
-	{0x0023, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(4), 0}, /*0x23[4] = 1b'0 12H LDO enter normal mode*/   \
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(3)|BIT(4), 0}, /*0x04[12:11] = 2b'01enable WL suspend*/
-
-#define RTL8723B_TRANS_CARDEMU_TO_CARDDIS													\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, omments here*/								\
-	{0x0007, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0x20}, /*0x07 = 0x20 , SOP option to disable BG/MB*/	\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_USB_MSK|PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(3)|BIT(4), BIT(3)}, /*0x04[12:11] = 2b'01 enable WL suspend*/	\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_PCI_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(2), BIT(2)}, /*0x04[10] = 1, enable SW LPS*/	\
-	{0x004A, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_USB_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 1}, /*0x48[16] = 1 to enable GPIO9 as EXT WAKEUP*/   \
-	{0x0023, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(4), BIT(4)}, /*0x23[4] = 1b'1 12H LDO enter sleep mode*/   \
-	{0x0086, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_SDIO, PWR_CMD_WRITE, BIT(0), BIT(0)}, /*Set SDIO suspend local register*/	\
-	{0x0086, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_SDIO, PWR_CMD_POLLING, BIT(1), 0}, /*wait power state to suspend*/
-
-#define RTL8723B_TRANS_CARDDIS_TO_CARDEMU													\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/								\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(3) | BIT(7), 0}, /*clear suspend enable and power down enable*/	\
-	{0x0086, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_SDIO, PWR_CMD_WRITE, BIT(0), 0}, /*Set SDIO suspend local register*/	\
-	{0x0086, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_SDIO, PWR_CMD_POLLING, BIT(1), BIT(1)}, /*wait power state to suspend*/\
-	    {0x004A, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_USB_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 0}, /*0x48[16] = 0 to disable GPIO9 as EXT WAKEUP*/   \
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(3)|BIT(4), 0}, /*0x04[12:11] = 2b'01enable WL suspend*/\
-	{0x0023, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(4), 0}, /*0x23[4] = 1b'0 12H LDO enter normal mode*/   \
-	{0x0301, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_PCI_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0},/*PCIe DMA start*/
-
-
-#define RTL8723B_TRANS_CARDEMU_TO_PDN												\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/								\
-	{0x0023, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(4), BIT(4)}, /*0x23[4] = 1b'1 12H LDO enter sleep mode*/   \
-	{0x0007, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK|PWR_INTF_USB_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0x20}, /*0x07[7:0] = 0x20 SOP option to disable BG/MB/ACK/SWR*/   \
-	{0x0006, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 0},/* 0x04[16] = 0*/\
-	{0x0005, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(7), BIT(7)},/* 0x04[15] = 1*/
-
-#define RTL8723B_TRANS_ACT_TO_LPS														\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/								\
-	{0x0301, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_PCI_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0xFF},/*PCIe DMA stop*/	\
-	{0x0522, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0xFF},/*Tx Pause*/	\
-	{0x05F8, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, 0xFF, 0},/*Should be zero if no packet is transmitting*/	\
-	{0x05F9, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, 0xFF, 0},/*Should be zero if no packet is transmitting*/	\
-	{0x05FA, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, 0xFF, 0},/*Should be zero if no packet is transmitting*/	\
-	{0x05FB, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, 0xFF, 0},/*Should be zero if no packet is transmitting*/	\
-	{0x0002, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 0},/*CCK and OFDM are disabled, and clock are gated*/	\
-	{0x0002, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_DELAY, 0, PWRSEQ_DELAY_US},/*Delay 1us*/	\
-	{0x0002, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), 0},/*Whole BB is reset*/	\
-	{0x0100, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0x03},/*Reset MAC TRX*/	\
-	{0x0101, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), 0},/*check if removed later*/	\
-	{0x0093, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0x00},/*When driver enter Sus/ Disable, enable LOP for BT*/	\
-	{0x0553, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(5), BIT(5)},/*Respond TxOK to scheduler*/	\
-
-
-#define RTL8723B_TRANS_LPS_TO_ACT															\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/								\
-	{0x0080, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_SDIO, PWR_CMD_WRITE, 0xFF, 0x84}, /*SDIO RPWM*/\
-	{0xFE58, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_USB_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0x84}, /*USB RPWM*/\
-	{0x0361, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_PCI_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0x84}, /*PCIe RPWM*/\
-	{0x0002, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_DELAY, 0, PWRSEQ_DELAY_MS}, /*Delay*/\
-	{0x0008, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(4), 0}, /*.	0x08[4] = 0		 switch TSF to 40M*/\
-	{0x0109, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, BIT(7), 0}, /*Polling 0x109[7]= 0  TSF in 40M*/\
-	{0x0029, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(6)|BIT(7), 0}, /*.	0x29[7:6] = 2b'00	 enable BB clock*/\
-	{0x0101, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), BIT(1)}, /*.	0x101[1] = 1*/\
-	{0x0100, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0xFF}, /*.	0x100[7:0] = 0xFF	 enable WMAC TRX*/\
-	{0x0002, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1)|BIT(0), BIT(1)|BIT(0)}, /*.	0x02[1:0] = 2b'11	 enable BB macro*/\
-	{0x0522, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0}, /*.	0x522 = 0*/
-
-
- #define RTL8723B_TRANS_ACT_TO_SWLPS														\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/								\
-	{0x0194, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)},/*enable 32 K source*/	\
-	{0x0002, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 0},/*CCK and OFDM are disabled, and clock are gated*/	\
-	{0x0002, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 1},/*CCK and OFDM are enable*/	\
-	{0x0002, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 0},/*CCK and OFDM are disabled, and clock are gated*/	\
-	{0x0002, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 1},/*CCK and OFDM are enable*/	\
-	{0x0002, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 0},/*CCK and OFDM are disabled, and clock are gated*/	\
-	{0x0100, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0x3F},/*Reset MAC TRX*/	\
-	{0x0101, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), 0},/*disable security engine*/	\
-	{0x0093, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0x40},/*When driver enter Sus/ Disable, enable LOP for BT*/	\
-	{0x0553, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(5), BIT(5)},/*reset dual TSF*/	\
-	{0x0003, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(2), 0},/*Reset CPU*/	\
-	{0x0080, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0},/*Reset MCUFWDL register*/	\
-	{0x001D, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 0},/*Reset CPU IO Wrapper*/	\
-	{0x001D, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 1},/*Reset CPU IO Wrapper*/	\
-	{0x0287, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, 0xFF, 0},/*polling RXFF packet number = 0 */	\
-	{0x0286, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, BIT(1), BIT(1)},/*polling RXDMA idle */	\
-	{0x013D, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)},/*Clear FW RPWM interrupt */\
-	{0x0139, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)},/*Set FW RPWM interrupt source*/\
-	{0x0008, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(4), BIT(4)},/*switch TSF to 32K*/\
-	{0x0109, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(7), BIT(7)},/*polling TSF stable*/\
-	{0x0090, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)},/*Set FW LPS*/	\
-	{0x0090, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, BIT(0), 0},/*polling FW LPS ready */
-
-
-#define RTL8723B_TRANS_SWLPS_TO_ACT															\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/								\
-	{0x0008, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(4), 0},/*switch TSF to 32K*/\
-	{0x0109, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(7), 0},/*polling TSF stable*/\
-	{0x0101, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), BIT(1)}, /*.	0x101[1] = 1, enable security engine*/\
-	{0x0100, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0xFF}, /*.	0x100[7:0] = 0xFF	 enable WMAC TRX*/\
-	{0x06B7, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0x09}, /*.	reset MAC rx state machine*/\
-	{0x06B4, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0x86}, /*.	reset MAC rx state machine*/\
-	{0x0080, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(1), BIT(1)},/* set CPU RAM code ready*/	\
-	{0x001D, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), 0},/*Reset CPU IO Wrapper*/	\
-	{0x0003, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(2), 0},/* Enable CPU*/	\
-	{0x001D, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)},/*enable CPU IO Wrapper*/	\
-	{0x0003, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(2), BIT(2)},/* Enable CPU*/	\
-	{0x0080, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, BIT(7), BIT(7)},/*polling FW init ready */	\
-	{0x0080, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_POLLING, BIT(6), BIT(6)},/*polling FW init ready */	\
-	{0x0002, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, BIT(0), BIT(0)}, /*.	0x02[1:0] = 2b'11	 enable BB macro*/\
-	{0x0522, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_SDIO_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE, 0xFF, 0}, /*.	0x522 = 0*/
-
-#define RTL8723B_TRANS_END															\
-	/* format */																\
-	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/								\
-	{0xFFFF, PWR_CUT_ALL_MSK, PWR_FAB_ALL_MSK, PWR_INTF_ALL_MSK, 0, PWR_CMD_END, 0, 0},
-
-
-extern struct wlan_pwr_cfg rtl8723B_power_on_flow[RTL8723B_TRANS_CARDEMU_TO_ACT_STEPS+RTL8723B_TRANS_END_STEPS];
-extern struct wlan_pwr_cfg rtl8723B_radio_off_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+RTL8723B_TRANS_END_STEPS];
-extern struct wlan_pwr_cfg rtl8723B_card_disable_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS+RTL8723B_TRANS_END_STEPS];
-extern struct wlan_pwr_cfg rtl8723B_card_enable_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS+RTL8723B_TRANS_END_STEPS];
-extern struct wlan_pwr_cfg rtl8723B_suspend_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+RTL8723B_TRANS_CARDEMU_TO_SUS_STEPS+RTL8723B_TRANS_END_STEPS];
-extern struct wlan_pwr_cfg rtl8723B_resume_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+RTL8723B_TRANS_CARDEMU_TO_SUS_STEPS+RTL8723B_TRANS_END_STEPS];
-extern struct wlan_pwr_cfg rtl8723B_hwpdn_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS+RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS+RTL8723B_TRANS_END_STEPS];
-extern struct wlan_pwr_cfg rtl8723B_enter_lps_flow[RTL8723B_TRANS_ACT_TO_LPS_STEPS+RTL8723B_TRANS_END_STEPS];
-extern struct wlan_pwr_cfg rtl8723B_leave_lps_flow[RTL8723B_TRANS_LPS_TO_ACT_STEPS+RTL8723B_TRANS_END_STEPS];
-extern struct wlan_pwr_cfg rtl8723B_enter_swlps_flow[RTL8723B_TRANS_ACT_TO_SWLPS_STEPS+RTL8723B_TRANS_END_STEPS];
-extern struct wlan_pwr_cfg rtl8723B_leave_swlps_flow[RTL8723B_TRANS_SWLPS_TO_ACT_STEPS+RTL8723B_TRANS_END_STEPS];
+#define RTL8723B_TRANS_CARDEMU_TO_ACT_STEPS 26
+#define RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS 15
+#define RTL8723B_TRANS_CARDEMU_TO_SUS_STEPS 15
+#define RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS 15
+#define RTL8723B_TRANS_ACT_TO_LPS_STEPS 15
+#define RTL8723B_TRANS_LPS_TO_ACT_STEPS 15
+#define RTL8723B_TRANS_ACT_TO_SWLPS_STEPS 22
+#define RTL8723B_TRANS_SWLPS_TO_ACT_STEPS 15
+#define RTL8723B_TRANS_END_STEPS 1
+
+#define RTL8723B_TRANS_CARDEMU_TO_ACT                                                         \
+	/* format */                                                                          \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value },  comments here*/ \
+	{                                                                                     \
+		0x0020,		  PWR_CUT_ALL_MSK,                                            \
+		PWR_FAB_ALL_MSK,  PWR_INTF_USB_MSK | PWR_INTF_SDIO_MSK,                       \
+		PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                              \
+		BIT(0),		  BIT(0)                                                      \
+	}, /*0x20[0] = 1b'1 enable LDOA12 MACRO block for all interface*/                     \
+		{                                                                             \
+			0x0067,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_USB_MSK | PWR_INTF_SDIO_MSK,               \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(4),		  0                                                   \
+		}, /*0x67[0] = 0 to disable BT_GPS_SEL pins*/                                 \
+		{ 0x0001,                                                                     \
+		  PWR_CUT_ALL_MSK,                                                            \
+		  PWR_FAB_ALL_MSK,                                                            \
+		  PWR_INTF_USB_MSK | PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC,                                                           \
+		  PWR_CMD_DELAY,                                                              \
+		  1,                                                                          \
+		  PWRSEQ_DELAY_MS }, /*Delay 1ms*/                                            \
+		{                                                                             \
+			0x0000,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_USB_MSK | PWR_INTF_SDIO_MSK,               \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(5),		  0                                                   \
+		}, /*0x00[5] = 1b'0 release analog Ips to digital , 1:isolation*/             \
+		{ 0x0005,                                                                     \
+		  PWR_CUT_ALL_MSK,                                                            \
+		  PWR_FAB_ALL_MSK,                                                            \
+		  PWR_INTF_ALL_MSK,                                                           \
+		  PWR_BASEADDR_MAC,                                                           \
+		  PWR_CMD_WRITE,                                                              \
+		  (BIT(4) | BIT(3) | BIT(2)),                                                 \
+		  0 }, /* disable SW LPS 0x04[10]= 0 and WLSUS_EN 0x04[11]= 0*/               \
+		{ 0x0075,	    PWR_CUT_ALL_MSK,                                          \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_PCI_MSK,                                         \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                            \
+		  BIT(0),	    BIT(0) }, /* Disable USB suspend */                       \
+		{                                                                             \
+			0x0006,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_POLLING,                                    \
+			BIT(1),		  BIT(1)                                              \
+		}, /* wait till 0x04[17] = 1    power ready*/                                 \
+		{ 0x0075,	    PWR_CUT_ALL_MSK,                                          \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_PCI_MSK,                                         \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                            \
+		  BIT(0),	    (0) }, /* Enable USB suspend */                           \
+		{                                                                             \
+			0x0006,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(0),		  BIT(0)                                              \
+		}, /* release WLON reset  0x04[16]= 1*/                                       \
+		{ 0x0005,	    PWR_CUT_ALL_MSK,                                          \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                         \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                            \
+		  BIT(7),	    0 }, /* disable HWPDN 0x04[15]= 0*/                       \
+		{ 0x0005,                                                                     \
+		  PWR_CUT_ALL_MSK,                                                            \
+		  PWR_FAB_ALL_MSK,                                                            \
+		  PWR_INTF_ALL_MSK,                                                           \
+		  PWR_BASEADDR_MAC,                                                           \
+		  PWR_CMD_WRITE,                                                              \
+		  (BIT(4) | BIT(3)),                                                          \
+		  0 }, /* disable WL suspend*/                                                \
+		{ 0x0005,	    PWR_CUT_ALL_MSK,                                          \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                         \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                            \
+		  BIT(0),	    BIT(0) }, /* polling until return 0*/                     \
+		{ 0x0005,	    PWR_CUT_ALL_MSK,                                          \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                         \
+		  PWR_BASEADDR_MAC, PWR_CMD_POLLING,                                          \
+		  BIT(0),	    0 }, /**/                                                 \
+		{                                                                             \
+			0x0010,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(6),		  BIT(6)                                              \
+		}, /* Enable WL control XTAL setting*/                                        \
+		{                                                                             \
+			0x0049,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(1),		  BIT(1)                                              \
+		}, /*Enable falling edge triggering interrupt*/                               \
+		{ 0x0063,	    PWR_CUT_ALL_MSK,                                          \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                         \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                            \
+		  BIT(1),	    BIT(1) }, /*Enable GPIO9 interrupt mode*/                 \
+		{ 0x0062,	    PWR_CUT_ALL_MSK,                                          \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                         \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                            \
+		  BIT(1),	    0 }, /*Enable GPIO9 input mode*/                          \
+		{                                                                             \
+			0x0058,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(0),		  BIT(0)                                              \
+		}, /*Enable HSISR GPIO[C:0] interrupt*/                                       \
+		{ 0x005A,	    PWR_CUT_ALL_MSK,                                          \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                         \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                            \
+		  BIT(1),	    BIT(1) }, /*Enable HSISR GPIO9 interrupt*/                \
+		{                                                                             \
+			0x0068,		  PWR_CUT_TESTCHIP_MSK,                               \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(3),		  BIT(3)                                              \
+		}, /*For GPIO9 internal pull high setting by test chip*/                      \
+		{                                                                             \
+			0x0069,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(6),		  BIT(6)                                              \
+		}, /*For GPIO9 internal pull high setting*/
+
+#define RTL8723B_TRANS_ACT_TO_CARDEMU                                                         \
+	/* format */                                                                          \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value },  comments here*/ \
+	{ 0x001F,                                                                             \
+	  PWR_CUT_ALL_MSK,                                                                    \
+	  PWR_FAB_ALL_MSK,                                                                    \
+	  PWR_INTF_ALL_MSK,                                                                   \
+	  PWR_BASEADDR_MAC,                                                                   \
+	  PWR_CMD_WRITE,                                                                      \
+	  0xFF,                                                                               \
+	  0 }, /*0x1F[7:0] = 0 turn off RF*/                                                  \
+		{                                                                             \
+			0x0049,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(1),		  0                                                   \
+		}, /*Enable rising edge triggering interrupt*/                                \
+		{                                                                             \
+			0x0006,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(0),		  BIT(0)                                              \
+		}, /* release WLON reset  0x04[16]= 1*/                                       \
+		{                                                                             \
+			0x0005,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(1),		  BIT(1)                                              \
+		}, /*0x04[9] = 1 turn off MAC by HW state machine*/                           \
+		{                                                                             \
+			0x0005,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_POLLING,                                    \
+			BIT(1),		  0                                                   \
+		}, /*wait till 0x04[9] = 0 polling until return 0 to disable*/                \
+		{ 0x0010,	    PWR_CUT_ALL_MSK,                                          \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                         \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                            \
+		  BIT(6),	    0 }, /* Enable BT control XTAL setting*/                  \
+		{                                                                             \
+			0x0000,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_USB_MSK | PWR_INTF_SDIO_MSK,               \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(5),		  BIT(5)                                              \
+		}, /*0x00[5] = 1b'1 analog Ips to digital , 1:isolation*/                     \
+		{                                                                             \
+			0x0020,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_USB_MSK | PWR_INTF_SDIO_MSK,               \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(0),		  0                                                   \
+		}, /*0x20[0] = 1b'0 disable LDOA12 MACRO block*/
+
+#define RTL8723B_TRANS_CARDEMU_TO_SUS                                                         \
+	/* format */                                                                          \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value },  comments here*/ \
+	{                                                                                     \
+		0x0005,		  PWR_CUT_ALL_MSK,  PWR_FAB_ALL_MSK,                          \
+		PWR_INTF_PCI_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE,                            \
+		BIT(4) | BIT(3),  (BIT(4) | BIT(3))                                           \
+	}, /*0x04[12:11] = 2b'11 enable WL suspend for PCIe*/                                 \
+		{                                                                             \
+			0x0005,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_USB_MSK | PWR_INTF_SDIO_MSK,               \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(3) | BIT(4),  BIT(3)                                              \
+		}, /*0x04[12:11] = 2b'01 enable WL suspend*/                                  \
+		{                                                                             \
+			0x0023,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                  \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(4),		  BIT(4)                                              \
+		}, /*0x23[4] = 1b'1 12H LDO enter sleep mode*/                                \
+		{                                                                             \
+			0x0007,                                                               \
+			PWR_CUT_ALL_MSK,                                                      \
+			PWR_FAB_ALL_MSK,                                                      \
+			PWR_INTF_SDIO_MSK,                                                    \
+			PWR_BASEADDR_MAC,                                                     \
+			PWR_CMD_WRITE,                                                        \
+			0xFF,                                                                 \
+			0x20                                                                  \
+		}, /*0x07[7:0] = 0x20 SDIO SOP option to disable BG/MB/ACK/SWR*/              \
+		{                                                                             \
+			0x0005,		  PWR_CUT_ALL_MSK,  PWR_FAB_ALL_MSK,                  \
+			PWR_INTF_PCI_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE,                    \
+			BIT(3) | BIT(4),  BIT(3) | BIT(4)                                     \
+		}, /*0x04[12:11] = 2b'11 enable WL suspend for PCIe*/                         \
+		{ 0x0086,                                                                     \
+		  PWR_CUT_ALL_MSK,                                                            \
+		  PWR_FAB_ALL_MSK,                                                            \
+		  PWR_INTF_SDIO_MSK,                                                          \
+		  PWR_BASEADDR_SDIO,                                                          \
+		  PWR_CMD_WRITE,                                                              \
+		  BIT(0),                                                                     \
+		  BIT(0) }, /*Set SDIO suspend local register*/                               \
+		{ 0x0086,                                                                     \
+		  PWR_CUT_ALL_MSK,                                                            \
+		  PWR_FAB_ALL_MSK,                                                            \
+		  PWR_INTF_SDIO_MSK,                                                          \
+		  PWR_BASEADDR_SDIO,                                                          \
+		  PWR_CMD_POLLING,                                                            \
+		  BIT(1),                                                                     \
+		  0 }, /*wait power state to suspend*/
+
+#define RTL8723B_TRANS_SUS_TO_CARDEMU                                                         \
+	/* format */                                                                          \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value },  comments here*/ \
+	{                                                                                     \
+		0x0005,		  PWR_CUT_ALL_MSK,                                            \
+		PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                           \
+		PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                              \
+		BIT(3) | BIT(7),  0                                                           \
+	}, /*clear suspend enable and power down enable*/                                     \
+		{ 0x0086,                                                                     \
+		  PWR_CUT_ALL_MSK,                                                            \
+		  PWR_FAB_ALL_MSK,                                                            \
+		  PWR_INTF_SDIO_MSK,                                                          \
+		  PWR_BASEADDR_SDIO,                                                          \
+		  PWR_CMD_WRITE,                                                              \
+		  BIT(0),                                                                     \
+		  0 }, /*Set SDIO suspend local register*/                                    \
+		{ 0x0086,                                                                     \
+		  PWR_CUT_ALL_MSK,                                                            \
+		  PWR_FAB_ALL_MSK,                                                            \
+		  PWR_INTF_SDIO_MSK,                                                          \
+		  PWR_BASEADDR_SDIO,                                                          \
+		  PWR_CMD_POLLING,                                                            \
+		  BIT(1),                                                                     \
+		  BIT(1) }, /*wait power state to suspend*/                                   \
+		{                                                                             \
+			0x0023,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                  \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(4),		  0                                                   \
+		}, /*0x23[4] = 1b'0 12H LDO enter normal mode*/                               \
+		{                                                                             \
+			0x0005,		  PWR_CUT_ALL_MSK,                                    \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                   \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                      \
+			BIT(3) | BIT(4),  0                                                   \
+		}, /*0x04[12:11] = 2b'01enable WL suspend*/
+
+#define RTL8723B_TRANS_CARDEMU_TO_CARDDIS                                                   \
+	/* format */                                                                        \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, omments here*/ \
+	{ 0x0007,                                                                           \
+	  PWR_CUT_ALL_MSK,                                                                  \
+	  PWR_FAB_ALL_MSK,                                                                  \
+	  PWR_INTF_SDIO_MSK,                                                                \
+	  PWR_BASEADDR_MAC,                                                                 \
+	  PWR_CMD_WRITE,                                                                    \
+	  0xFF,                                                                             \
+	  0x20 }, /*0x07 = 0x20 , SOP option to disable BG/MB*/                             \
+		{                                                                           \
+			0x0005,		  PWR_CUT_ALL_MSK,                                  \
+			PWR_FAB_ALL_MSK,  PWR_INTF_USB_MSK | PWR_INTF_SDIO_MSK,             \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                    \
+			BIT(3) | BIT(4),  BIT(3)                                            \
+		}, /*0x04[12:11] = 2b'01 enable WL suspend*/                                \
+		{ 0x0005,	    PWR_CUT_ALL_MSK,                                        \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_PCI_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                          \
+		  BIT(2),	    BIT(2) }, /*0x04[10] = 1, enable SW LPS*/               \
+		{                                                                           \
+			0x004A,		  PWR_CUT_ALL_MSK,                                  \
+			PWR_FAB_ALL_MSK,  PWR_INTF_USB_MSK,                                 \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                    \
+			BIT(0),		  1                                                 \
+		}, /*0x48[16] = 1 to enable GPIO9 as EXT WAKEUP*/                           \
+		{                                                                           \
+			0x0023,		  PWR_CUT_ALL_MSK,                                  \
+			PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                    \
+			BIT(4),		  BIT(4)                                            \
+		}, /*0x23[4] = 1b'1 12H LDO enter sleep mode*/                              \
+		{ 0x0086,                                                                   \
+		  PWR_CUT_ALL_MSK,                                                          \
+		  PWR_FAB_ALL_MSK,                                                          \
+		  PWR_INTF_SDIO_MSK,                                                        \
+		  PWR_BASEADDR_SDIO,                                                        \
+		  PWR_CMD_WRITE,                                                            \
+		  BIT(0),                                                                   \
+		  BIT(0) }, /*Set SDIO suspend local register*/                             \
+		{ 0x0086,                                                                   \
+		  PWR_CUT_ALL_MSK,                                                          \
+		  PWR_FAB_ALL_MSK,                                                          \
+		  PWR_INTF_SDIO_MSK,                                                        \
+		  PWR_BASEADDR_SDIO,                                                        \
+		  PWR_CMD_POLLING,                                                          \
+		  BIT(1),                                                                   \
+		  0 }, /*wait power state to suspend*/
+
+#define RTL8723B_TRANS_CARDDIS_TO_CARDEMU                                                    \
+	/* format */                                                                         \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/ \
+	{                                                                                    \
+		0x0005,		  PWR_CUT_ALL_MSK,                                           \
+		PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                          \
+		PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                             \
+		BIT(3) | BIT(7),  0                                                          \
+	}, /*clear suspend enable and power down enable*/                                    \
+		{ 0x0086,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_SDIO_MSK,                                                         \
+		  PWR_BASEADDR_SDIO,                                                         \
+		  PWR_CMD_WRITE,                                                             \
+		  BIT(0),                                                                    \
+		  0 }, /*Set SDIO suspend local register*/                                   \
+		{ 0x0086,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_SDIO_MSK,                                                         \
+		  PWR_BASEADDR_SDIO,                                                         \
+		  PWR_CMD_POLLING,                                                           \
+		  BIT(1),                                                                    \
+		  BIT(1) }, /*wait power state to suspend*/                                  \
+		{                                                                            \
+			0x004A,		  PWR_CUT_ALL_MSK,                                   \
+			PWR_FAB_ALL_MSK,  PWR_INTF_USB_MSK,                                  \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                     \
+			BIT(0),		  0                                                  \
+		}, /*0x48[16] = 0 to disable GPIO9 as EXT WAKEUP*/                           \
+		{                                                                            \
+			0x0005,		  PWR_CUT_ALL_MSK,                                   \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                  \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                     \
+			BIT(3) | BIT(4),  0                                                  \
+		}, /*0x04[12:11] = 2b'01enable WL suspend*/                                  \
+		{                                                                            \
+			0x0023,		  PWR_CUT_ALL_MSK,                                   \
+			PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                 \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                     \
+			BIT(4),		  0                                                  \
+		}, /*0x23[4] = 1b'0 12H LDO enter normal mode*/                              \
+		{ 0x0301,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_PCI_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0 }, /*PCIe DMA start*/
+
+#define RTL8723B_TRANS_CARDEMU_TO_PDN                                                        \
+	/* format */                                                                         \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/ \
+	{                                                                                    \
+		0x0023,		  PWR_CUT_ALL_MSK,                                           \
+		PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                         \
+		PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                             \
+		BIT(4),		  BIT(4)                                                     \
+	}, /*0x23[4] = 1b'1 12H LDO enter sleep mode*/                                       \
+		{                                                                            \
+			0x0007,                                                              \
+			PWR_CUT_ALL_MSK,                                                     \
+			PWR_FAB_ALL_MSK,                                                     \
+			PWR_INTF_SDIO_MSK | PWR_INTF_USB_MSK,                                \
+			PWR_BASEADDR_MAC,                                                    \
+			PWR_CMD_WRITE,                                                       \
+			0xFF,                                                                \
+			0x20                                                                 \
+		}, /*0x07[7:0] = 0x20 SOP option to disable BG/MB/ACK/SWR*/                  \
+		{ 0x0006,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                        \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(0),	    0 }, /* 0x04[16] = 0*/                                   \
+		{ 0x0005,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                        \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(7),	    BIT(7) }, /* 0x04[15] = 1*/
+
+#define RTL8723B_TRANS_ACT_TO_LPS                                                            \
+	/* format */                                                                         \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/ \
+	{ 0x0301,                                                                            \
+	  PWR_CUT_ALL_MSK,                                                                   \
+	  PWR_FAB_ALL_MSK,                                                                   \
+	  PWR_INTF_PCI_MSK,                                                                  \
+	  PWR_BASEADDR_MAC,                                                                  \
+	  PWR_CMD_WRITE,                                                                     \
+	  0xFF,                                                                              \
+	  0xFF }, /*PCIe DMA stop*/                                                          \
+		{ 0x0522,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_ALL_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0xFF }, /*Tx Pause*/                                                       \
+		{ 0x05F8,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_ALL_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_POLLING,                                                           \
+		  0xFF,                                                                      \
+		  0 }, /*Should be zero if no packet is transmitting*/                       \
+		{ 0x05F9,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_ALL_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_POLLING,                                                           \
+		  0xFF,                                                                      \
+		  0 }, /*Should be zero if no packet is transmitting*/                       \
+		{ 0x05FA,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_ALL_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_POLLING,                                                           \
+		  0xFF,                                                                      \
+		  0 }, /*Should be zero if no packet is transmitting*/                       \
+		{ 0x05FB,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_ALL_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_POLLING,                                                           \
+		  0xFF,                                                                      \
+		  0 }, /*Should be zero if no packet is transmitting*/                       \
+		{                                                                            \
+			0x0002,		  PWR_CUT_ALL_MSK,                                   \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                  \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                     \
+			BIT(0),		  0                                                  \
+		}, /*CCK and OFDM are disabled, and clock are gated*/                        \
+		{ 0x0002,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_ALL_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_DELAY,                                                             \
+		  0,                                                                         \
+		  PWRSEQ_DELAY_US }, /*Delay 1us*/                                           \
+		{ 0x0002,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                        \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(1),	    0 }, /*Whole BB is reset*/                               \
+		{ 0x0100,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_ALL_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0x03 }, /*Reset MAC TRX*/                                                  \
+		{ 0x0101,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                        \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(1),	    0 }, /*check if removed later*/                          \
+		{ 0x0093,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_SDIO_MSK,                                                         \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0x00 }, /*When driver enter Sus/ Disable, enable LOP for BT*/              \
+		{ 0x0553,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                        \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(5),	    BIT(5) }, /*Respond TxOK to scheduler*/
+
+#define RTL8723B_TRANS_LPS_TO_ACT                                                            \
+	/* format */                                                                         \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/ \
+	{ 0x0080,                                                                            \
+	  PWR_CUT_ALL_MSK,                                                                   \
+	  PWR_FAB_ALL_MSK,                                                                   \
+	  PWR_INTF_SDIO_MSK,                                                                 \
+	  PWR_BASEADDR_SDIO,                                                                 \
+	  PWR_CMD_WRITE,                                                                     \
+	  0xFF,                                                                              \
+	  0x84 }, /*SDIO RPWM*/                                                              \
+		{ 0xFE58,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_USB_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0x84 }, /*USB RPWM*/                                                       \
+		{ 0x0361,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_PCI_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0x84 }, /*PCIe RPWM*/                                                      \
+		{ 0x0002,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_ALL_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_DELAY,                                                             \
+		  0,                                                                         \
+		  PWRSEQ_DELAY_MS }, /*Delay*/                                               \
+		{                                                                            \
+			0x0008,		  PWR_CUT_ALL_MSK,                                   \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                  \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                     \
+			BIT(4),		  0                                                  \
+		}, /*.	0x08[4] = 0		 switch TSF to 40M*/                                     \
+		{ 0x0109,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                        \
+		  PWR_BASEADDR_MAC, PWR_CMD_POLLING,                                         \
+		  BIT(7),	    0 }, /*Polling 0x109[7]= 0  TSF in 40M*/                 \
+		{                                                                            \
+			0x0029,		  PWR_CUT_ALL_MSK,                                   \
+			PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                  \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                     \
+			BIT(6) | BIT(7),  0                                                  \
+		}, /*.	0x29[7:6] = 2b'00	 enable BB clock*/                                  \
+		{ 0x0101,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_ALL_MSK,                                        \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(1),	    BIT(1) }, /*.	0x101[1] = 1*/                             \
+		{ 0x0100,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_ALL_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0xFF }, /*.	0x100[7:0] = 0xFF	 enable WMAC TRX*/                           \
+		{                                                                            \
+			0x0002,		  PWR_CUT_ALL_MSK,  PWR_FAB_ALL_MSK,                 \
+			PWR_INTF_ALL_MSK, PWR_BASEADDR_MAC, PWR_CMD_WRITE,                   \
+			BIT(1) | BIT(0),  BIT(1) | BIT(0)                                    \
+		}, /*.	0x02[1:0] = 2b'11	 enable BB macro*/                                  \
+		{ 0x0522,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_ALL_MSK,                                                          \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0 }, /*.	0x522 = 0*/
+
+#define RTL8723B_TRANS_ACT_TO_SWLPS                                                          \
+	/* format */                                                                         \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/ \
+	{                                                                                    \
+		0x0194,		  PWR_CUT_ALL_MSK,                                           \
+		PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                         \
+		PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                             \
+		BIT(0),		  BIT(0)                                                     \
+	}, /*enable 32 K source*/                                                            \
+		{                                                                            \
+			0x0002,		  PWR_CUT_ALL_MSK,                                   \
+			PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                 \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                     \
+			BIT(0),		  0                                                  \
+		}, /*CCK and OFDM are disabled, and clock are gated*/                        \
+		{ 0x0002,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(0),	    1 }, /*CCK and OFDM are enable*/                         \
+		{                                                                            \
+			0x0002,		  PWR_CUT_ALL_MSK,                                   \
+			PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                 \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                     \
+			BIT(0),		  0                                                  \
+		}, /*CCK and OFDM are disabled, and clock are gated*/                        \
+		{ 0x0002,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(0),	    1 }, /*CCK and OFDM are enable*/                         \
+		{                                                                            \
+			0x0002,		  PWR_CUT_ALL_MSK,                                   \
+			PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                 \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                     \
+			BIT(0),		  0                                                  \
+		}, /*CCK and OFDM are disabled, and clock are gated*/                        \
+		{ 0x0100,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_SDIO_MSK,                                                         \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0x3F }, /*Reset MAC TRX*/                                                  \
+		{ 0x0101,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(1),	    0 }, /*disable security engine*/                         \
+		{ 0x0093,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_SDIO_MSK,                                                         \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0x40 }, /*When driver enter Sus/ Disable, enable LOP for BT*/              \
+		{ 0x0553,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(5),	    BIT(5) }, /*reset dual TSF*/                             \
+		{ 0x0003,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(2),	    0 }, /*Reset CPU*/                                       \
+		{ 0x0080,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_SDIO_MSK,                                                         \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0 }, /*Reset MCUFWDL register*/                                            \
+		{ 0x001D,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(0),	    0 }, /*Reset CPU IO Wrapper*/                            \
+		{ 0x001D,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(0),	    1 }, /*Reset CPU IO Wrapper*/                            \
+		{ 0x0287,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_SDIO_MSK,                                                         \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_POLLING,                                                           \
+		  0xFF,                                                                      \
+		  0 }, /*polling RXFF packet number = 0 */                                   \
+		{ 0x0286,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_POLLING,                                         \
+		  BIT(1),	    BIT(1) }, /*polling RXDMA idle */                        \
+		{ 0x013D,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(0),	    BIT(0) }, /*Clear FW RPWM interrupt */                   \
+		{ 0x0139,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(0),	    BIT(0) }, /*Set FW RPWM interrupt source*/               \
+		{ 0x0008,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(4),	    BIT(4) }, /*switch TSF to 32K*/                          \
+		{ 0x0109,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(7),	    BIT(7) }, /*polling TSF stable*/                         \
+		{ 0x0090,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(0),	    BIT(0) }, /*Set FW LPS*/                                 \
+		{ 0x0090,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_POLLING,                                         \
+		  BIT(0),	    0 }, /*polling FW LPS ready */
+
+#define RTL8723B_TRANS_SWLPS_TO_ACT                                                          \
+	/* format */                                                                         \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/ \
+	{                                                                                    \
+		0x0008,		  PWR_CUT_ALL_MSK,                                           \
+		PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                         \
+		PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                             \
+		BIT(4),		  0                                                          \
+	}, /*switch TSF to 32K*/                                                             \
+		{ 0x0109,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(7),	    0 }, /*polling TSF stable*/                              \
+		{                                                                            \
+			0x0101,		  PWR_CUT_ALL_MSK,                                   \
+			PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                 \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                     \
+			BIT(1),		  BIT(1)                                             \
+		}, /*.	0x101[1] = 1, enable security engine*/                                \
+		{ 0x0100,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_SDIO_MSK,                                                         \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0xFF }, /*.	0x100[7:0] = 0xFF	 enable WMAC TRX*/                           \
+		{ 0x06B7,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_SDIO_MSK,                                                         \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0x09 }, /*.	reset MAC rx state machine*/                                   \
+		{ 0x06B4,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_SDIO_MSK,                                                         \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0x86 }, /*.	reset MAC rx state machine*/                                   \
+		{ 0x0080,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(1),	    BIT(1) }, /* set CPU RAM code ready*/                    \
+		{ 0x001D,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(0),	    0 }, /*Reset CPU IO Wrapper*/                            \
+		{ 0x0003,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(2),	    0 }, /* Enable CPU*/                                     \
+		{ 0x001D,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(0),	    BIT(0) }, /*enable CPU IO Wrapper*/                      \
+		{ 0x0003,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                           \
+		  BIT(2),	    BIT(2) }, /* Enable CPU*/                                \
+		{ 0x0080,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_POLLING,                                         \
+		  BIT(7),	    BIT(7) }, /*polling FW init ready */                     \
+		{ 0x0080,	    PWR_CUT_ALL_MSK,                                         \
+		  PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                       \
+		  PWR_BASEADDR_MAC, PWR_CMD_POLLING,                                         \
+		  BIT(6),	    BIT(6) }, /*polling FW init ready */                     \
+		{                                                                            \
+			0x0002,		  PWR_CUT_ALL_MSK,                                   \
+			PWR_FAB_ALL_MSK,  PWR_INTF_SDIO_MSK,                                 \
+			PWR_BASEADDR_MAC, PWR_CMD_WRITE,                                     \
+			BIT(0),		  BIT(0)                                             \
+		}, /*.	0x02[1:0] = 2b'11	 enable BB macro*/                                  \
+		{ 0x0522,                                                                    \
+		  PWR_CUT_ALL_MSK,                                                           \
+		  PWR_FAB_ALL_MSK,                                                           \
+		  PWR_INTF_SDIO_MSK,                                                         \
+		  PWR_BASEADDR_MAC,                                                          \
+		  PWR_CMD_WRITE,                                                             \
+		  0xFF,                                                                      \
+		  0 }, /*.	0x522 = 0*/
+
+#define RTL8723B_TRANS_END                                                                   \
+	/* format */                                                                         \
+	/* { offset, cut_msk, fab_msk|interface_msk, base|cmd, msk, value }, comments here*/ \
+	{ 0xFFFF,                                                                            \
+	  PWR_CUT_ALL_MSK,                                                                   \
+	  PWR_FAB_ALL_MSK,                                                                   \
+	  PWR_INTF_ALL_MSK,                                                                  \
+	  0,                                                                                 \
+	  PWR_CMD_END,                                                                       \
+	  0,                                                                                 \
+	  0 },
+
+extern struct wlan_pwr_cfg
+	rtl8723B_power_on_flow[RTL8723B_TRANS_CARDEMU_TO_ACT_STEPS +
+			       RTL8723B_TRANS_END_STEPS];
+extern struct wlan_pwr_cfg
+	rtl8723B_radio_off_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+				RTL8723B_TRANS_END_STEPS];
+extern struct wlan_pwr_cfg
+	rtl8723B_card_disable_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+				   RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS +
+				   RTL8723B_TRANS_END_STEPS];
+extern struct wlan_pwr_cfg
+	rtl8723B_card_enable_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+				  RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS +
+				  RTL8723B_TRANS_END_STEPS];
+extern struct wlan_pwr_cfg
+	rtl8723B_suspend_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+			      RTL8723B_TRANS_CARDEMU_TO_SUS_STEPS +
+			      RTL8723B_TRANS_END_STEPS];
+extern struct wlan_pwr_cfg
+	rtl8723B_resume_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+			     RTL8723B_TRANS_CARDEMU_TO_SUS_STEPS +
+			     RTL8723B_TRANS_END_STEPS];
+extern struct wlan_pwr_cfg
+	rtl8723B_hwpdn_flow[RTL8723B_TRANS_ACT_TO_CARDEMU_STEPS +
+			    RTL8723B_TRANS_CARDEMU_TO_PDN_STEPS +
+			    RTL8723B_TRANS_END_STEPS];
+extern struct wlan_pwr_cfg
+	rtl8723B_enter_lps_flow[RTL8723B_TRANS_ACT_TO_LPS_STEPS +
+				RTL8723B_TRANS_END_STEPS];
+extern struct wlan_pwr_cfg
+	rtl8723B_leave_lps_flow[RTL8723B_TRANS_LPS_TO_ACT_STEPS +
+				RTL8723B_TRANS_END_STEPS];
+extern struct wlan_pwr_cfg
+	rtl8723B_enter_swlps_flow[RTL8723B_TRANS_ACT_TO_SWLPS_STEPS +
+				  RTL8723B_TRANS_END_STEPS];
+extern struct wlan_pwr_cfg
+	rtl8723B_leave_swlps_flow[RTL8723B_TRANS_SWLPS_TO_ACT_STEPS +
+				  RTL8723B_TRANS_END_STEPS];
 #endif
diff --git a/drivers/staging/rtl8723bs/include/hal_sdio.h b/drivers/staging/rtl8723bs/include/hal_sdio.h
index 3fc8acb430e57..e0938a4894020 100644
--- a/drivers/staging/rtl8723bs/include/hal_sdio.h
+++ b/drivers/staging/rtl8723bs/include/hal_sdio.h
@@ -7,12 +7,15 @@
 #ifndef __HAL_SDIO_H_
 #define __HAL_SDIO_H_
 
-#define ffaddr2deviceId(pdvobj, addr)	(pdvobj->Queue2Pipe[addr])
+#define ffaddr2deviceId(pdvobj, addr) (pdvobj->Queue2Pipe[addr])
 
 u8 rtw_hal_sdio_max_txoqt_free_space(struct adapter *padapter);
-u8 rtw_hal_sdio_query_tx_freepage(struct adapter *padapter, u8 PageIdx, u8 RequiredPageNum);
-void rtw_hal_sdio_update_tx_freepage(struct adapter *padapter, u8 PageIdx, u8 RequiredPageNum);
-void rtw_hal_set_sdio_tx_max_length(struct adapter *padapter, u8 numHQ, u8 numNQ, u8 numLQ, u8 numPubQ);
+u8 rtw_hal_sdio_query_tx_freepage(struct adapter *padapter, u8 PageIdx,
+				  u8 RequiredPageNum);
+void rtw_hal_sdio_update_tx_freepage(struct adapter *padapter, u8 PageIdx,
+				     u8 RequiredPageNum);
+void rtw_hal_set_sdio_tx_max_length(struct adapter *padapter, u8 numHQ,
+				    u8 numNQ, u8 numLQ, u8 numPubQ);
 u32 rtw_hal_get_sdio_tx_max_length(struct adapter *padapter, u8 queue_idx);
 
 #endif /* __RTW_LED_H_ */
diff --git a/drivers/staging/rtl8723bs/include/ieee80211.h b/drivers/staging/rtl8723bs/include/ieee80211.h
index 39ee139f1da96..fd80af502e023 100644
--- a/drivers/staging/rtl8723bs/include/ieee80211.h
+++ b/drivers/staging/rtl8723bs/include/ieee80211.h
@@ -11,8 +11,8 @@
 
 #define MGMT_QUEUE_NUM 5
 
-#define ETH_TYPE_LEN		2
-#define PAYLOAD_TYPE_LEN	1
+#define ETH_TYPE_LEN 2
+#define PAYLOAD_TYPE_LEN 1
 
 #define RTL_IOCTL_HOSTAPD (SIOCIWFIRSTPRIV + 28)
 
@@ -61,39 +61,36 @@ enum {
 #define WLAN_STA_MAYBE_WPS BIT(13)
 #define WLAN_STA_NONERP BIT(31)
 
-#define IEEE_CMD_SET_WPA_PARAM			1
-#define IEEE_CMD_SET_WPA_IE				2
-#define IEEE_CMD_SET_ENCRYPTION			3
-#define IEEE_CMD_MLME						4
-
-#define IEEE_PARAM_WPA_ENABLED				1
-#define IEEE_PARAM_TKIP_COUNTERMEASURES		2
-#define IEEE_PARAM_DROP_UNENCRYPTED			3
-#define IEEE_PARAM_PRIVACY_INVOKED			4
-#define IEEE_PARAM_AUTH_ALGS					5
-#define IEEE_PARAM_IEEE_802_1X				6
-#define IEEE_PARAM_WPAX_SELECT				7
-
-#define IEEE_MLME_STA_DEAUTH				1
-#define IEEE_MLME_STA_DISASSOC			2
-
-#define IEEE_CRYPT_ERR_UNKNOWN_ALG			2
-#define IEEE_CRYPT_ERR_UNKNOWN_ADDR			3
-#define IEEE_CRYPT_ERR_CRYPT_INIT_FAILED		4
-#define IEEE_CRYPT_ERR_KEY_SET_FAILED			5
-#define IEEE_CRYPT_ERR_TX_KEY_SET_FAILED		6
-#define IEEE_CRYPT_ERR_CARD_CONF_FAILED		7
-
-
-#define	IEEE_CRYPT_ALG_NAME_LEN			16
-
-#define WPA_CIPHER_NONE		BIT(0)
-#define WPA_CIPHER_WEP40	BIT(1)
+#define IEEE_CMD_SET_WPA_PARAM 1
+#define IEEE_CMD_SET_WPA_IE 2
+#define IEEE_CMD_SET_ENCRYPTION 3
+#define IEEE_CMD_MLME 4
+
+#define IEEE_PARAM_WPA_ENABLED 1
+#define IEEE_PARAM_TKIP_COUNTERMEASURES 2
+#define IEEE_PARAM_DROP_UNENCRYPTED 3
+#define IEEE_PARAM_PRIVACY_INVOKED 4
+#define IEEE_PARAM_AUTH_ALGS 5
+#define IEEE_PARAM_IEEE_802_1X 6
+#define IEEE_PARAM_WPAX_SELECT 7
+
+#define IEEE_MLME_STA_DEAUTH 1
+#define IEEE_MLME_STA_DISASSOC 2
+
+#define IEEE_CRYPT_ERR_UNKNOWN_ALG 2
+#define IEEE_CRYPT_ERR_UNKNOWN_ADDR 3
+#define IEEE_CRYPT_ERR_CRYPT_INIT_FAILED 4
+#define IEEE_CRYPT_ERR_KEY_SET_FAILED 5
+#define IEEE_CRYPT_ERR_TX_KEY_SET_FAILED 6
+#define IEEE_CRYPT_ERR_CARD_CONF_FAILED 7
+
+#define IEEE_CRYPT_ALG_NAME_LEN 16
+
+#define WPA_CIPHER_NONE BIT(0)
+#define WPA_CIPHER_WEP40 BIT(1)
 #define WPA_CIPHER_WEP104 BIT(2)
-#define WPA_CIPHER_TKIP		BIT(3)
-#define WPA_CIPHER_CCMP		BIT(4)
-
-
+#define WPA_CIPHER_TKIP BIT(3)
+#define WPA_CIPHER_CCMP BIT(4)
 
 #define WPA_SELECTOR_LEN 4
 extern u8 RTW_WPA_OUI_TYPE[];
@@ -108,7 +105,6 @@ extern u8 WPA_CIPHER_SUITE_WRAP[];
 extern u8 WPA_CIPHER_SUITE_CCMP[];
 extern u8 WPA_CIPHER_SUITE_WEP104[];
 
-
 #define RSN_HEADER_LEN 4
 #define RSN_SELECTOR_LEN 4
 
@@ -122,7 +118,6 @@ extern u8 RSN_CIPHER_SUITE_WRAP[];
 extern u8 RSN_CIPHER_SUITE_CCMP[];
 extern u8 RSN_CIPHER_SUITE_WEP104[];
 
-
 enum {
 	RATEID_IDX_BGN_40M_2SS = 0,
 	RATEID_IDX_BGN_40M_1SS = 1,
@@ -139,26 +134,40 @@ enum network_type {
 	WIRELESS_INVALID = 0,
 	/* Sub-Element */
 	WIRELESS_11B = BIT(0), /*  tx: cck only , rx: cck only, hw: cck */
-	WIRELESS_11G = BIT(1), /*  tx: ofdm only, rx: ofdm & cck, hw: cck & ofdm */
-	WIRELESS_11_24N = BIT(3), /*  tx: MCS only, rx: MCS & cck, hw: MCS & cck */
+	WIRELESS_11G =
+		BIT(1), /*  tx: ofdm only, rx: ofdm & cck, hw: cck & ofdm */
+	WIRELESS_11_24N =
+		BIT(3), /*  tx: MCS only, rx: MCS & cck, hw: MCS & cck */
 	WIRELESS_AUTO = BIT(5),
 
 	/* Combination */
 	/* Type for current wireless mode */
-	WIRELESS_11BG = (WIRELESS_11B|WIRELESS_11G), /*  tx: cck & ofdm, rx: cck & ofdm & MCS, hw: cck & ofdm */
-	WIRELESS_11G_24N = (WIRELESS_11G|WIRELESS_11_24N), /*  tx: ofdm & MCS, rx: ofdm & cck & MCS, hw: cck & ofdm */
-	WIRELESS_11B_24N = (WIRELESS_11B|WIRELESS_11_24N), /*  tx: ofdm & cck & MCS, rx: ofdm & cck & MCS, hw: ofdm & cck */
-	WIRELESS_11BG_24N = (WIRELESS_11B|WIRELESS_11G|WIRELESS_11_24N), /*  tx: ofdm & cck & MCS, rx: ofdm & cck & MCS, hw: ofdm & cck */
+	WIRELESS_11BG =
+		(WIRELESS_11B |
+		 WIRELESS_11G), /*  tx: cck & ofdm, rx: cck & ofdm & MCS, hw: cck & ofdm */
+	WIRELESS_11G_24N =
+		(WIRELESS_11G |
+		 WIRELESS_11_24N), /*  tx: ofdm & MCS, rx: ofdm & cck & MCS, hw: cck & ofdm */
+	WIRELESS_11B_24N =
+		(WIRELESS_11B |
+		 WIRELESS_11_24N), /*  tx: ofdm & cck & MCS, rx: ofdm & cck & MCS, hw: ofdm & cck */
+	WIRELESS_11BG_24N =
+		(WIRELESS_11B | WIRELESS_11G |
+		 WIRELESS_11_24N), /*  tx: ofdm & cck & MCS, rx: ofdm & cck & MCS, hw: ofdm & cck */
 };
 
-#define SUPPORTED_24G_NETTYPE_MSK (WIRELESS_11B | WIRELESS_11G | WIRELESS_11_24N)
+#define SUPPORTED_24G_NETTYPE_MSK \
+	(WIRELESS_11B | WIRELESS_11G | WIRELESS_11_24N)
 
-#define is_legacy_only(net_type)  ((net_type) == ((net_type) & (WIRELESS_11BG)))
+#define is_legacy_only(net_type) ((net_type) == ((net_type) & (WIRELESS_11BG)))
 
-#define is_supported_24g(net_type) ((net_type) & SUPPORTED_24G_NETTYPE_MSK ? true : false)
+#define is_supported_24g(net_type) \
+	((net_type) & SUPPORTED_24G_NETTYPE_MSK ? true : false)
 
-#define is_supported_tx_cck(net_type) (((net_type) & (WIRELESS_11B)) ? true : false)
-#define is_supported_ht(net_type) (((net_type) & (WIRELESS_11_24N)) ? true : false)
+#define is_supported_tx_cck(net_type) \
+	(((net_type) & (WIRELESS_11B)) ? true : false)
+#define is_supported_ht(net_type) \
+	(((net_type) & (WIRELESS_11_24N)) ? true : false)
 
 struct ieee_param {
 	u32 cmd;
@@ -173,7 +182,7 @@ struct ieee_param {
 			u8 reserved[32];
 			u8 data[];
 		} wpa_ie;
-		struct{
+		struct {
 			int command;
 			int reason_code;
 		} mlme;
@@ -194,7 +203,7 @@ struct ieee_param {
 			struct ieee80211_ht_cap ht_cap;
 		} add_sta;
 		struct {
-			u8 reserved[2];/* for set max_num_sta */
+			u8 reserved[2]; /* for set max_num_sta */
 			u8 buf[];
 		} bcn_ie;
 	} u;
@@ -214,12 +223,12 @@ struct sta_data {
 	u8 tx_supp_rates[16];
 	u32 tx_supp_rates_len;
 	struct ieee80211_ht_cap ht_cap;
-	u64	rx_pkts;
-	u64	rx_bytes;
-	u64	rx_drops;
-	u64	tx_pkts;
-	u64	tx_bytes;
-	u64	tx_drops;
+	u64 rx_pkts;
+	u64 rx_bytes;
+	u64 rx_drops;
+	u64 tx_pkts;
+	u64 tx_bytes;
+	u64 tx_drops;
 };
 
 /* this is stolen from ipw2200 driver */
@@ -233,25 +242,24 @@ struct eapol {
 	u16 length;
 } __packed;
 
-#define IEEE80211_FCS_LEN    4
+#define IEEE80211_FCS_LEN 4
 
-#define MIN_FRAG_THRESHOLD     256U
-#define	MAX_FRAG_THRESHOLD     2346U
+#define MIN_FRAG_THRESHOLD 256U
+#define MAX_FRAG_THRESHOLD 2346U
 
 /* sequence control field */
-#define RTW_IEEE80211_SCTL_FRAG	0x000F
-#define RTW_IEEE80211_SCTL_SEQ	0xFFF0
-
+#define RTW_IEEE80211_SCTL_FRAG 0x000F
+#define RTW_IEEE80211_SCTL_SEQ 0xFFF0
 
 #define RTW_ERP_INFO_NON_ERP_PRESENT BIT(0)
 #define RTW_ERP_INFO_USE_PROTECTION BIT(1)
 #define RTW_ERP_INFO_BARKER_PREAMBLE_MODE BIT(2)
 
 /* QoS, QOS */
-#define NORMAL_ACK			0
-#define NO_ACK				1
-#define NON_EXPLICIT_ACK	2
-#define BLOCK_ACK			3
+#define NORMAL_ACK 0
+#define NO_ACK 1
+#define NON_EXPLICIT_ACK 2
+#define BLOCK_ACK 3
 
 #ifndef ETH_P_PAE
 #define ETH_P_PAE 0x888E /* Port Access Entity (IEEE 802.1X) */
@@ -259,7 +267,7 @@ struct eapol {
 
 #define ETH_P_PREAUTH 0x88C7 /* IEEE 802.11i pre-authentication */
 
-#define ETH_P_ECONET	0x0018
+#define ETH_P_ECONET 0x0018
 
 #ifndef ETH_P_80211_RAW
 #define ETH_P_80211_RAW (ETH_P_ECONET + 1)
@@ -270,10 +278,10 @@ struct eapol {
 #define P80211_OUI_LEN 3
 
 struct ieee80211_snap_hdr {
-	u8    dsap;   /* always 0xAA */
-	u8    ssap;   /* always 0xAA */
-	u8    ctrl;   /* always 0x03 */
-	u8    oui[P80211_OUI_LEN];    /* organizational universal id */
+	u8 dsap; /* always 0xAA */
+	u8 ssap; /* always 0xAA */
+	u8 ctrl; /* always 0x03 */
+	u8 oui[P80211_OUI_LEN]; /* organizational universal id */
 } __packed;
 
 #define SNAP_SIZE sizeof(struct ieee80211_snap_hdr)
@@ -284,104 +292,96 @@ struct ieee80211_snap_hdr {
 #define WLAN_QC_GET_TID(qc) ((qc) & 0x0f)
 
 #define WLAN_GET_SEQ_FRAG(seq) ((seq) & RTW_IEEE80211_SCTL_FRAG)
-#define WLAN_GET_SEQ_SEQ(seq)  ((seq) & RTW_IEEE80211_SCTL_SEQ)
+#define WLAN_GET_SEQ_SEQ(seq) ((seq) & RTW_IEEE80211_SCTL_SEQ)
 
 /* Reason codes */
 #define WLAN_REASON_ACTIVE_ROAM 65533
-#define WLAN_REASON_JOIN_WRONG_CHANNEL       65534
+#define WLAN_REASON_JOIN_WRONG_CHANNEL 65534
 #define WLAN_REASON_EXPIRATION_CHK 65535
 
 #define IEEE80211_MGMT_HDR_LEN 24
 #define IEEE80211_DATA_HDR3_LEN 24
 #define IEEE80211_DATA_HDR4_LEN 30
 
-
-#define IEEE80211_STATMASK_SIGNAL (1<<0)
-#define IEEE80211_STATMASK_RSSI (1<<1)
-#define IEEE80211_STATMASK_NOISE (1<<2)
-#define IEEE80211_STATMASK_RATE (1<<3)
+#define IEEE80211_STATMASK_SIGNAL (1 << 0)
+#define IEEE80211_STATMASK_RSSI (1 << 1)
+#define IEEE80211_STATMASK_NOISE (1 << 2)
+#define IEEE80211_STATMASK_RATE (1 << 3)
 #define IEEE80211_STATMASK_WEMASK 0x7
 
-
-#define IEEE80211_CCK_MODULATION    (1<<0)
-#define IEEE80211_OFDM_MODULATION   (1<<1)
-
-#define IEEE80211_24GHZ_BAND     (1<<0)
-#define IEEE80211_52GHZ_BAND     (1<<1)
-
-#define IEEE80211_CCK_RATE_LEN			4
-#define IEEE80211_NUM_OFDM_RATESLEN	8
-
-
-#define IEEE80211_CCK_RATE_1MB		        0x02
-#define IEEE80211_CCK_RATE_2MB		        0x04
-#define IEEE80211_CCK_RATE_5MB		        0x0B
-#define IEEE80211_CCK_RATE_11MB		        0x16
-#define IEEE80211_OFDM_RATE_LEN			8
-#define IEEE80211_OFDM_RATE_6MB		        0x0C
-#define IEEE80211_OFDM_RATE_9MB		        0x12
-#define IEEE80211_OFDM_RATE_12MB		0x18
-#define IEEE80211_OFDM_RATE_18MB		0x24
-#define IEEE80211_OFDM_RATE_24MB		0x30
-#define IEEE80211_OFDM_RATE_36MB		0x48
-#define IEEE80211_OFDM_RATE_48MB		0x60
-#define IEEE80211_OFDM_RATE_54MB		0x6C
-#define IEEE80211_BASIC_RATE_MASK		0x80
-
-#define IEEE80211_CCK_RATE_1MB_MASK		(1<<0)
-#define IEEE80211_CCK_RATE_2MB_MASK		(1<<1)
-#define IEEE80211_CCK_RATE_5MB_MASK		(1<<2)
-#define IEEE80211_CCK_RATE_11MB_MASK		(1<<3)
-#define IEEE80211_OFDM_RATE_6MB_MASK		(1<<4)
-#define IEEE80211_OFDM_RATE_9MB_MASK		(1<<5)
-#define IEEE80211_OFDM_RATE_12MB_MASK		(1<<6)
-#define IEEE80211_OFDM_RATE_18MB_MASK		(1<<7)
-#define IEEE80211_OFDM_RATE_24MB_MASK		(1<<8)
-#define IEEE80211_OFDM_RATE_36MB_MASK		(1<<9)
-#define IEEE80211_OFDM_RATE_48MB_MASK		(1<<10)
-#define IEEE80211_OFDM_RATE_54MB_MASK		(1<<11)
-
-#define IEEE80211_CCK_RATES_MASK		0x0000000F
-#define IEEE80211_CCK_BASIC_RATES_MASK	(IEEE80211_CCK_RATE_1MB_MASK | \
-	IEEE80211_CCK_RATE_2MB_MASK)
-#define IEEE80211_CCK_DEFAULT_RATES_MASK	\
-	(IEEE80211_CCK_BASIC_RATES_MASK |	\
-	 IEEE80211_CCK_RATE_5MB_MASK |		\
+#define IEEE80211_CCK_MODULATION (1 << 0)
+#define IEEE80211_OFDM_MODULATION (1 << 1)
+
+#define IEEE80211_24GHZ_BAND (1 << 0)
+#define IEEE80211_52GHZ_BAND (1 << 1)
+
+#define IEEE80211_CCK_RATE_LEN 4
+#define IEEE80211_NUM_OFDM_RATESLEN 8
+
+#define IEEE80211_CCK_RATE_1MB 0x02
+#define IEEE80211_CCK_RATE_2MB 0x04
+#define IEEE80211_CCK_RATE_5MB 0x0B
+#define IEEE80211_CCK_RATE_11MB 0x16
+#define IEEE80211_OFDM_RATE_LEN 8
+#define IEEE80211_OFDM_RATE_6MB 0x0C
+#define IEEE80211_OFDM_RATE_9MB 0x12
+#define IEEE80211_OFDM_RATE_12MB 0x18
+#define IEEE80211_OFDM_RATE_18MB 0x24
+#define IEEE80211_OFDM_RATE_24MB 0x30
+#define IEEE80211_OFDM_RATE_36MB 0x48
+#define IEEE80211_OFDM_RATE_48MB 0x60
+#define IEEE80211_OFDM_RATE_54MB 0x6C
+#define IEEE80211_BASIC_RATE_MASK 0x80
+
+#define IEEE80211_CCK_RATE_1MB_MASK (1 << 0)
+#define IEEE80211_CCK_RATE_2MB_MASK (1 << 1)
+#define IEEE80211_CCK_RATE_5MB_MASK (1 << 2)
+#define IEEE80211_CCK_RATE_11MB_MASK (1 << 3)
+#define IEEE80211_OFDM_RATE_6MB_MASK (1 << 4)
+#define IEEE80211_OFDM_RATE_9MB_MASK (1 << 5)
+#define IEEE80211_OFDM_RATE_12MB_MASK (1 << 6)
+#define IEEE80211_OFDM_RATE_18MB_MASK (1 << 7)
+#define IEEE80211_OFDM_RATE_24MB_MASK (1 << 8)
+#define IEEE80211_OFDM_RATE_36MB_MASK (1 << 9)
+#define IEEE80211_OFDM_RATE_48MB_MASK (1 << 10)
+#define IEEE80211_OFDM_RATE_54MB_MASK (1 << 11)
+
+#define IEEE80211_CCK_RATES_MASK 0x0000000F
+#define IEEE80211_CCK_BASIC_RATES_MASK \
+	(IEEE80211_CCK_RATE_1MB_MASK | IEEE80211_CCK_RATE_2MB_MASK)
+#define IEEE80211_CCK_DEFAULT_RATES_MASK                                \
+	(IEEE80211_CCK_BASIC_RATES_MASK | IEEE80211_CCK_RATE_5MB_MASK | \
 	 IEEE80211_CCK_RATE_11MB_MASK)
 
-#define IEEE80211_OFDM_RATES_MASK		0x00000FF0
-#define IEEE80211_OFDM_BASIC_RATES_MASK	(IEEE80211_OFDM_RATE_6MB_MASK | \
-	IEEE80211_OFDM_RATE_12MB_MASK | \
-	IEEE80211_OFDM_RATE_24MB_MASK)
-#define IEEE80211_OFDM_DEFAULT_RATES_MASK	(IEEE80211_OFDM_BASIC_RATES_MASK | \
-	IEEE80211_OFDM_RATE_9MB_MASK  | \
-	IEEE80211_OFDM_RATE_18MB_MASK | \
-	IEEE80211_OFDM_RATE_36MB_MASK | \
-	IEEE80211_OFDM_RATE_48MB_MASK | \
-	IEEE80211_OFDM_RATE_54MB_MASK)
-#define IEEE80211_DEFAULT_RATES_MASK		\
-	(IEEE80211_OFDM_DEFAULT_RATES_MASK |	\
-	 IEEE80211_CCK_DEFAULT_RATES_MASK)
-
-#define IEEE80211_NUM_OFDM_RATES	    8
-#define IEEE80211_NUM_CCK_RATES	            4
-#define IEEE80211_OFDM_SHIFT_MASK_A         4
-
+#define IEEE80211_OFDM_RATES_MASK 0x00000FF0
+#define IEEE80211_OFDM_BASIC_RATES_MASK                                 \
+	(IEEE80211_OFDM_RATE_6MB_MASK | IEEE80211_OFDM_RATE_12MB_MASK | \
+	 IEEE80211_OFDM_RATE_24MB_MASK)
+#define IEEE80211_OFDM_DEFAULT_RATES_MASK                                 \
+	(IEEE80211_OFDM_BASIC_RATES_MASK | IEEE80211_OFDM_RATE_9MB_MASK | \
+	 IEEE80211_OFDM_RATE_18MB_MASK | IEEE80211_OFDM_RATE_36MB_MASK |  \
+	 IEEE80211_OFDM_RATE_48MB_MASK | IEEE80211_OFDM_RATE_54MB_MASK)
+#define IEEE80211_DEFAULT_RATES_MASK \
+	(IEEE80211_OFDM_DEFAULT_RATES_MASK | IEEE80211_CCK_DEFAULT_RATES_MASK)
+
+#define IEEE80211_NUM_OFDM_RATES 8
+#define IEEE80211_NUM_CCK_RATES 4
+#define IEEE80211_OFDM_SHIFT_MASK_A 4
 
 enum {
-	MGN_1M		= 0x02,
-	MGN_2M		= 0x04,
-	MGN_5_5M	= 0x0B,
-	MGN_6M		= 0x0C,
-	MGN_9M		= 0x12,
-	MGN_11M		= 0x16,
-	MGN_12M	= 0x18,
-	MGN_18M	= 0x24,
-	MGN_24M	= 0x30,
-	MGN_36M	= 0x48,
-	MGN_48M	= 0x60,
-	MGN_54M	= 0x6C,
-	MGN_MCS32	= 0x7F,
+	MGN_1M = 0x02,
+	MGN_2M = 0x04,
+	MGN_5_5M = 0x0B,
+	MGN_6M = 0x0C,
+	MGN_9M = 0x12,
+	MGN_11M = 0x16,
+	MGN_12M = 0x18,
+	MGN_18M = 0x24,
+	MGN_24M = 0x30,
+	MGN_36M = 0x48,
+	MGN_48M = 0x60,
+	MGN_54M = 0x6C,
+	MGN_MCS32 = 0x7F,
 	MGN_MCS0,
 	MGN_MCS1,
 	MGN_MCS2,
@@ -393,10 +393,12 @@ enum {
 	MGN_UNKNOWN
 };
 
-#define IS_HT_RATE(_rate)				(_rate >= MGN_MCS0 && _rate <= MGN_MCS31)
-#define IS_CCK_RATE(_rate)				(_rate == MGN_1M || _rate == MGN_2M || _rate == MGN_5_5M || _rate == MGN_11M)
-#define IS_OFDM_RATE(_rate)				(_rate >= MGN_6M && _rate <= MGN_54M  && _rate != MGN_11M)
-
+#define IS_HT_RATE(_rate) (_rate >= MGN_MCS0 && _rate <= MGN_MCS31)
+#define IS_CCK_RATE(_rate)                                          \
+	(_rate == MGN_1M || _rate == MGN_2M || _rate == MGN_5_5M || \
+	 _rate == MGN_11M)
+#define IS_OFDM_RATE(_rate) \
+	(_rate >= MGN_6M && _rate <= MGN_54M && _rate != MGN_11M)
 
 /* NOTE: This data is for statistical purposes; not all hardware provides this
  *       information for frames received.  Not setting these will not cause
@@ -410,27 +412,27 @@ enum {
  */
 #define IEEE80211_FRAG_CACHE_LEN 4
 
-#define SEC_KEY_1         (1<<0)
-#define SEC_KEY_2         (1<<1)
-#define SEC_KEY_3         (1<<2)
-#define SEC_KEY_4         (1<<3)
-#define SEC_ACTIVE_KEY    (1<<4)
-#define SEC_AUTH_MODE     (1<<5)
-#define SEC_UNICAST_GROUP (1<<6)
-#define SEC_LEVEL         (1<<7)
-#define SEC_ENABLED       (1<<8)
-
-#define SEC_LEVEL_0      0 /* None */
-#define SEC_LEVEL_1      1 /* WEP 40 and 104 bit */
-#define SEC_LEVEL_2      2 /* Level 1 + TKIP */
+#define SEC_KEY_1 (1 << 0)
+#define SEC_KEY_2 (1 << 1)
+#define SEC_KEY_3 (1 << 2)
+#define SEC_KEY_4 (1 << 3)
+#define SEC_ACTIVE_KEY (1 << 4)
+#define SEC_AUTH_MODE (1 << 5)
+#define SEC_UNICAST_GROUP (1 << 6)
+#define SEC_LEVEL (1 << 7)
+#define SEC_ENABLED (1 << 8)
+
+#define SEC_LEVEL_0 0 /* None */
+#define SEC_LEVEL_1 1 /* WEP 40 and 104 bit */
+#define SEC_LEVEL_2 2 /* Level 1 + TKIP */
 #define SEC_LEVEL_2_CKIP 3 /* Level 1 + CKIP */
-#define SEC_LEVEL_3      4 /* Level 2 + CCMP */
+#define SEC_LEVEL_3 4 /* Level 2 + CCMP */
 
 #define WEP_KEYS 4
 #define WEP_KEY_LEN 13
 
 #define BIP_MAX_KEYID 5
-#define BIP_AAD_SIZE  20
+#define BIP_AAD_SIZE 20
 
 /*
  * 802.11 data frame from AP
@@ -448,45 +450,45 @@ enum {
 #define BEACON_PROBE_SSID_ID_POSITION 12
 
 /* Management Frame Information Element Types */
-#define MFIE_TYPE_SSID       0
-#define MFIE_TYPE_RATES      1
-#define MFIE_TYPE_FH_SET     2
-#define MFIE_TYPE_DS_SET     3
-#define MFIE_TYPE_CF_SET     4
-#define MFIE_TYPE_TIM        5
-#define MFIE_TYPE_IBSS_SET   6
-#define MFIE_TYPE_CHALLENGE  16
-#define MFIE_TYPE_ERP        42
-#define MFIE_TYPE_RSN	     48
-#define MFIE_TYPE_RATES_EX   50
-#define MFIE_TYPE_GENERIC    221
+#define MFIE_TYPE_SSID 0
+#define MFIE_TYPE_RATES 1
+#define MFIE_TYPE_FH_SET 2
+#define MFIE_TYPE_DS_SET 3
+#define MFIE_TYPE_CF_SET 4
+#define MFIE_TYPE_TIM 5
+#define MFIE_TYPE_IBSS_SET 6
+#define MFIE_TYPE_CHALLENGE 16
+#define MFIE_TYPE_ERP 42
+#define MFIE_TYPE_RSN 48
+#define MFIE_TYPE_RATES_EX 50
+#define MFIE_TYPE_GENERIC 221
 
 /* SWEEP TABLE ENTRIES NUMBER*/
-#define MAX_SWEEP_TAB_ENTRIES		  42
-#define MAX_SWEEP_TAB_ENTRIES_PER_PACKET  7
+#define MAX_SWEEP_TAB_ENTRIES 42
+#define MAX_SWEEP_TAB_ENTRIES_PER_PACKET 7
 /* MAX_RATES_LENGTH needs to be 12.  The spec says 8, and many APs
  * only use 8, and then use extended rates for the remaining supported
  * rates.  Other APs, however, stick all of their supported rates on the
  * main rates information element...
  */
-#define MAX_RATES_LENGTH                  ((u8)12)
-#define MAX_RATES_EX_LENGTH               ((u8)16)
-#define MAX_NETWORK_COUNT                  128
-#define MAX_CHANNEL_NUMBER                 161
-#define IEEE80211_SOFTMAC_SCAN_TIME	  400
+#define MAX_RATES_LENGTH ((u8)12)
+#define MAX_RATES_EX_LENGTH ((u8)16)
+#define MAX_NETWORK_COUNT 128
+#define MAX_CHANNEL_NUMBER 161
+#define IEEE80211_SOFTMAC_SCAN_TIME 400
 /* HZ / 2) */
 #define IEEE80211_SOFTMAC_ASSOC_RETRY_TIME (HZ * 2)
 
-#define CRC_LENGTH                 4U
+#define CRC_LENGTH 4U
 
 #define MAX_WPA_IE_LEN (256)
 #define MAX_WPS_IE_LEN (512)
 #define MAX_P2P_IE_LEN (256)
 #define MAX_WFD_IE_LEN (128)
 
-#define NETWORK_EMPTY_ESSID (1<<0)
-#define NETWORK_HAS_OFDM    (1<<1)
-#define NETWORK_HAS_CCK     (1<<2)
+#define NETWORK_EMPTY_ESSID (1 << 0)
+#define NETWORK_HAS_OFDM (1 << 1)
+#define NETWORK_HAS_CCK (1 << 2)
 
 #define IEEE80211_DTIM_MBCAST 4
 #define IEEE80211_DTIM_UCAST 2
@@ -508,15 +510,15 @@ enum {
 #define DEFAULT_FTS 2346
 #define IP_ARG(x) (x)
 
-#define CFG_IEEE80211_RESERVE_FCS (1<<0)
-#define CFG_IEEE80211_COMPUTE_FCS (1<<1)
+#define CFG_IEEE80211_RESERVE_FCS (1 << 0)
+#define CFG_IEEE80211_COMPUTE_FCS (1 << 1)
 
-#define MAXTID	16
+#define MAXTID 16
 
-#define IEEE_A            (1<<0)
-#define IEEE_B            (1<<1)
-#define IEEE_G            (1<<2)
-#define IEEE_MODE_MASK    (IEEE_A|IEEE_B|IEEE_G)
+#define IEEE_A (1 << 0)
+#define IEEE_B (1 << 1)
+#define IEEE_G (1 << 2)
+#define IEEE_MODE_MASK (IEEE_A | IEEE_B | IEEE_G)
 
 /* Action category code */
 enum {
@@ -525,15 +527,17 @@ enum {
 	RTW_WLAN_CATEGORY_DLS = 2,
 	RTW_WLAN_CATEGORY_BACK = 3,
 	RTW_WLAN_CATEGORY_PUBLIC = 4, /* IEEE 802.11 public action frames */
-	RTW_WLAN_CATEGORY_RADIO_MEASUREMENT  = 5,
+	RTW_WLAN_CATEGORY_RADIO_MEASUREMENT = 5,
 	RTW_WLAN_CATEGORY_FT = 6,
 	RTW_WLAN_CATEGORY_HT = 7,
 	RTW_WLAN_CATEGORY_SA_QUERY = 8,
-	RTW_WLAN_CATEGORY_UNPROTECTED_WNM = 11, /*  add for CONFIG_IEEE80211W, none 11w also can use */
+	RTW_WLAN_CATEGORY_UNPROTECTED_WNM =
+		11, /*  add for CONFIG_IEEE80211W, none 11w also can use */
 	RTW_WLAN_CATEGORY_TDLS = 12,
-	RTW_WLAN_CATEGORY_SELF_PROTECTED = 15, /*  add for CONFIG_IEEE80211W, none 11w also can use */
+	RTW_WLAN_CATEGORY_SELF_PROTECTED =
+		15, /*  add for CONFIG_IEEE80211W, none 11w also can use */
 	RTW_WLAN_CATEGORY_WMM = 17,
-	RTW_WLAN_CATEGORY_P2P = 0x7f,/* P2P action frames */
+	RTW_WLAN_CATEGORY_P2P = 0x7f, /* P2P action frames */
 };
 
 enum {
@@ -575,7 +579,6 @@ enum {
 #define WME_TSPEC_DIRECTION_DOWNLINK 1
 #define WME_TSPEC_DIRECTION_BI_DIRECTIONAL 3
 
-
 #define OUI_BROADCOM 0x00904c /* Broadcom (Epigram) */
 
 #define VENDOR_HT_CAPAB_OUI_TYPE 0x33 /* 00-90-4c:0x33 */
@@ -596,17 +599,16 @@ enum {
  *      is not permitted.
  */
 enum rtw_ieee80211_channel_flags {
-	RTW_IEEE80211_CHAN_DISABLED         = 1<<0,
-	RTW_IEEE80211_CHAN_PASSIVE_SCAN     = 1<<1,
-	RTW_IEEE80211_CHAN_NO_IBSS          = 1<<2,
-	RTW_IEEE80211_CHAN_RADAR            = 1<<3,
-	RTW_IEEE80211_CHAN_NO_HT40PLUS      = 1<<4,
-	RTW_IEEE80211_CHAN_NO_HT40MINUS     = 1<<5,
+	RTW_IEEE80211_CHAN_DISABLED = 1 << 0,
+	RTW_IEEE80211_CHAN_PASSIVE_SCAN = 1 << 1,
+	RTW_IEEE80211_CHAN_NO_IBSS = 1 << 2,
+	RTW_IEEE80211_CHAN_RADAR = 1 << 3,
+	RTW_IEEE80211_CHAN_NO_HT40PLUS = 1 << 4,
+	RTW_IEEE80211_CHAN_NO_HT40MINUS = 1 << 5,
 };
 
-#define RTW_IEEE80211_CHAN_NO_HT40	  \
-	(RTW_IEEE80211_CHAN_NO_HT40PLUS | \
-	 RTW_IEEE80211_CHAN_NO_HT40MINUS)
+#define RTW_IEEE80211_CHAN_NO_HT40 \
+	(RTW_IEEE80211_CHAN_NO_HT40PLUS | RTW_IEEE80211_CHAN_NO_HT40MINUS)
 
 /* Represent channel details, subset of ieee80211_channel */
 struct rtw_ieee80211_channel {
@@ -623,31 +625,22 @@ struct rtw_ieee80211_channel {
 	/* int orig_mpwr; */
 };
 
-#define CHAN_FMT \
-	/*"band:%d, "*/ \
-	/*"center_freq:%u, "*/ \
-	"hw_value:%u, " \
-	"flags:0x%08x" \
-	/*"max_antenna_gain:%d\n"*/ \
-	/*"max_power:%d\n"*/ \
-	/*"max_reg_power:%d\n"*/ \
-	/*"beacon_found:%u\n"*/ \
-	/*"orig_flags:0x%08x\n"*/ \
-	/*"orig_mag:%d\n"*/ \
-	/*"orig_mpwr:%d\n"*/
-
-#define CHAN_ARG(channel) \
-	/*(channel)->band*/ \
-	/*, (channel)->center_freq*/ \
-	(channel)->hw_value \
-	, (channel)->flags \
-	/*, (channel)->max_antenna_gain*/ \
-	/*, (channel)->max_power*/ \
-	/*, (channel)->max_reg_power*/ \
-	/*, (channel)->beacon_found*/ \
-	/*, (channel)->orig_flags*/ \
-	/*, (channel)->orig_mag*/ \
-	/*, (channel)->orig_mpwr*/ \
+#define CHAN_FMT                                                        \
+	/*"band:%d, "*/                                                 \
+	/*"center_freq:%u, "*/                                          \
+	"hw_value:%u, "                                                 \
+	"flags:0x%08x" /*"max_antenna_gain:%d\n"*/ /*"max_power:%d\n"*/ \
+		/*"max_reg_power:%d\n"*/ /*"beacon_found:%u\n"*/        \
+		/*"orig_flags:0x%08x\n"*/ /*"orig_mag:%d\n"*/ /*"orig_mpwr:%d\n"*/
+
+#define CHAN_ARG(channel)                                                 \
+	/*(channel)->band*/                                               \
+	/*, (channel)->center_freq*/                                      \
+	(channel)->hw_value,                                              \
+		(channel)->flags /*, (channel)->max_antenna_gain*/        \
+		/*, (channel)->max_power*/ /*, (channel)->max_reg_power*/ \
+		/*, (channel)->beacon_found*/ /*, (channel)->orig_flags*/ \
+		/*, (channel)->orig_mag*/ /*, (channel)->orig_mpwr*/
 
 /* Parsed Information Elements */
 struct rtw_ieee802_11_elems {
@@ -705,22 +698,21 @@ struct rtw_ieee802_11_elems {
 	u8 vht_op_mode_notify_len;
 };
 
-enum parse_result {
-	PARSE_OK = 0,
-	PARSE_UNKNOWN = 1,
-	PARSE_FAILED = -1
-};
+enum parse_result { PARSE_OK = 0, PARSE_UNKNOWN = 1, PARSE_FAILED = -1 };
 
 enum parse_result rtw_ieee802_11_parse_elems(u8 *start, uint len,
 					     struct rtw_ieee802_11_elems *elems,
 					     int show_errors);
 
-u8 *rtw_set_fixed_ie(unsigned char *pbuf, unsigned int len, unsigned char *source, unsigned int *frlen);
+u8 *rtw_set_fixed_ie(unsigned char *pbuf, unsigned int len,
+		     unsigned char *source, unsigned int *frlen);
 u8 *rtw_set_ie(u8 *pbuf, signed int index, uint len, u8 *source, uint *frlen);
 
 u8 *rtw_get_ie(u8 *pbuf, signed int index, signed int *len, signed int limit);
-u8 *rtw_get_ie_ex(u8 *in_ie, uint in_len, u8 eid, u8 *oui, u8 oui_len, u8 *ie, uint *ielen);
-int rtw_ies_remove_ie(u8 *ies, uint *ies_len, uint offset, u8 eid, u8 *oui, u8 oui_len);
+u8 *rtw_get_ie_ex(u8 *in_ie, uint in_len, u8 eid, u8 *oui, u8 oui_len, u8 *ie,
+		  uint *ielen);
+int rtw_ies_remove_ie(u8 *ies, uint *ies_len, uint offset, u8 eid, u8 *oui,
+		      u8 oui_len);
 
 void rtw_set_supported_rate(u8 *SupportedRates, uint mode);
 
@@ -729,14 +721,19 @@ unsigned char *rtw_get_wpa2_ie(unsigned char *pie, int *rsn_ie_len, int limit);
 int rtw_get_wpa_cipher_suite(u8 *s);
 int rtw_get_wpa2_cipher_suite(u8 *s);
 int rtw_get_wapi_ie(u8 *in_ie, uint in_len, u8 *wapi_ie, u16 *wapi_len);
-int rtw_parse_wpa_ie(u8 *wpa_ie, int wpa_ie_len, int *group_cipher, int *pairwise_cipher, int *is_8021x);
-int rtw_parse_wpa2_ie(u8 *wpa_ie, int wpa_ie_len, int *group_cipher, int *pairwise_cipher, int *is_8021x);
+int rtw_parse_wpa_ie(u8 *wpa_ie, int wpa_ie_len, int *group_cipher,
+		     int *pairwise_cipher, int *is_8021x);
+int rtw_parse_wpa2_ie(u8 *wpa_ie, int wpa_ie_len, int *group_cipher,
+		      int *pairwise_cipher, int *is_8021x);
 
-void rtw_get_sec_ie(u8 *in_ie, uint in_len, u8 *rsn_ie, u16 *rsn_len, u8 *wpa_ie, u16 *wpa_len);
+void rtw_get_sec_ie(u8 *in_ie, uint in_len, u8 *rsn_ie, u16 *rsn_len,
+		    u8 *wpa_ie, u16 *wpa_len);
 
 u8 *rtw_get_wps_ie(u8 *in_ie, uint in_len, u8 *wps_ie, uint *wps_ielen);
-u8 *rtw_get_wps_attr(u8 *wps_ie, uint wps_ielen, u16 target_attr_id, u8 *buf_attr, u32 *len_attr);
-u8 *rtw_get_wps_attr_content(u8 *wps_ie, uint wps_ielen, u16 target_attr_id, u8 *buf_content, uint *len_content);
+u8 *rtw_get_wps_attr(u8 *wps_ie, uint wps_ielen, u16 target_attr_id,
+		     u8 *buf_attr, u32 *len_attr);
+u8 *rtw_get_wps_attr_content(u8 *wps_ie, uint wps_ielen, u16 target_attr_id,
+			     u8 *buf_content, uint *len_content);
 
 /**
  * for_each_ie - iterate over continuous IEs
@@ -744,16 +741,15 @@ u8 *rtw_get_wps_attr_content(u8 *wps_ie, uint wps_ielen, u16 target_attr_id, u8
  * @buf:
  * @buf_len:
  */
-#define for_each_ie(ie, buf, buf_len) \
+#define for_each_ie(ie, buf, buf_len)                                    \
 	for (ie = (void *)buf; (((u8 *)ie) - ((u8 *)buf) + 1) < buf_len; \
-		ie = (void *)(((u8 *)ie) + *(((u8 *)ie) + 1) + 2))
+	     ie = (void *)(((u8 *)ie) + *(((u8 *)ie) + 1) + 2))
 
-uint	rtw_get_rateset_len(u8 *rateset);
+uint rtw_get_rateset_len(u8 *rateset);
 
 struct registry_priv;
 int rtw_generate_ie(struct registry_priv *pregistrypriv);
 
-
 int rtw_get_bit_value_from_ieee_value(u8 val);
 
 bool rtw_is_cckrates_included(u8 *rate);
@@ -768,7 +764,8 @@ void rtw_macaddr_cfg(struct device *dev, u8 *mac_addr);
 
 u16 rtw_mcs_rate(u8 bw_40MHz, u8 short_GI, unsigned char *MCS_rate);
 
-int rtw_action_frame_parse(const u8 *frame, u32 frame_len, u8 *category, u8 *action);
+int rtw_action_frame_parse(const u8 *frame, u32 frame_len, u8 *category,
+			   u8 *action);
 const char *action_public_str(u8 action);
 
 #endif /* IEEE80211_H */
diff --git a/drivers/staging/rtl8723bs/include/ioctl_cfg80211.h b/drivers/staging/rtl8723bs/include/ioctl_cfg80211.h
index bc62b7285950f..f9fd4c8d76733 100644
--- a/drivers/staging/rtl8723bs/include/ioctl_cfg80211.h
+++ b/drivers/staging/rtl8723bs/include/ioctl_cfg80211.h
@@ -15,7 +15,7 @@ struct rtw_wdev_priv {
 	struct cfg80211_scan_request *scan_request;
 	spinlock_t scan_req_lock;
 
-	struct net_device *pmon_ndev;/* for monitor interface */
+	struct net_device *pmon_ndev; /* for monitor interface */
 	char ifname_mon[IFNAMSIZ + 1]; /* interface name for monitor interface */
 
 	bool block;
@@ -32,27 +32,42 @@ void rtw_wdev_unregister(struct wireless_dev *wdev);
 
 void rtw_cfg80211_init_wiphy(struct adapter *padapter);
 
-void rtw_cfg80211_unlink_bss(struct adapter *padapter, struct wlan_network *pnetwork);
+void rtw_cfg80211_unlink_bss(struct adapter *padapter,
+			     struct wlan_network *pnetwork);
 void rtw_cfg80211_surveydone_event_callback(struct adapter *padapter);
 int rtw_ieee80211_channel_to_frequency(int chan);
-struct cfg80211_bss *rtw_cfg80211_inform_bss(struct adapter *padapter, struct wlan_network *pnetwork);
+struct cfg80211_bss *rtw_cfg80211_inform_bss(struct adapter *padapter,
+					     struct wlan_network *pnetwork);
 int rtw_cfg80211_check_bss(struct adapter *padapter);
 void rtw_cfg80211_ibss_indicate_connect(struct adapter *padapter);
 void rtw_cfg80211_indicate_connect(struct adapter *padapter);
 void rtw_cfg80211_indicate_disconnect(struct adapter *padapter);
 void rtw_cfg80211_indicate_scan_done(struct adapter *adapter, bool aborted);
 
-void rtw_cfg80211_indicate_sta_assoc(struct adapter *padapter, u8 *pmgmt_frame, uint frame_len);
-void rtw_cfg80211_indicate_sta_disassoc(struct adapter *padapter, unsigned char *da, unsigned short reason);
+void rtw_cfg80211_indicate_sta_assoc(struct adapter *padapter, u8 *pmgmt_frame,
+				     uint frame_len);
+void rtw_cfg80211_indicate_sta_disassoc(struct adapter *padapter,
+					unsigned char *da,
+					unsigned short reason);
 
-void rtw_cfg80211_rx_action(struct adapter *adapter, u8 *frame, uint frame_len, const char *msg);
+void rtw_cfg80211_rx_action(struct adapter *adapter, u8 *frame, uint frame_len,
+			    const char *msg);
 
 bool rtw_cfg80211_pwr_mgmt(struct adapter *adapter);
 
-#define rtw_cfg80211_rx_mgmt(adapter, freq, sig_dbm, buf, len, gfp) cfg80211_rx_mgmt((adapter)->rtw_wdev, freq, sig_dbm, buf, len, 0)
-#define rtw_cfg80211_send_rx_assoc(adapter, bss, buf, len) cfg80211_send_rx_assoc((adapter)->pnetdev, bss, buf, len)
-#define rtw_cfg80211_mgmt_tx_status(adapter, cookie, buf, len, ack, gfp) cfg80211_mgmt_tx_status((adapter)->rtw_wdev, cookie, buf, len, ack, gfp)
-#define rtw_cfg80211_ready_on_channel(adapter, cookie, chan, channel_type, duration, gfp)  cfg80211_ready_on_channel((adapter)->rtw_wdev, cookie, chan, duration, gfp)
-#define rtw_cfg80211_remain_on_channel_expired(adapter, cookie, chan, chan_type, gfp) cfg80211_remain_on_channel_expired((adapter)->rtw_wdev, cookie, chan, gfp)
+#define rtw_cfg80211_rx_mgmt(adapter, freq, sig_dbm, buf, len, gfp) \
+	cfg80211_rx_mgmt((adapter)->rtw_wdev, freq, sig_dbm, buf, len, 0)
+#define rtw_cfg80211_send_rx_assoc(adapter, bss, buf, len) \
+	cfg80211_send_rx_assoc((adapter)->pnetdev, bss, buf, len)
+#define rtw_cfg80211_mgmt_tx_status(adapter, cookie, buf, len, ack, gfp) \
+	cfg80211_mgmt_tx_status((adapter)->rtw_wdev, cookie, buf, len, ack, gfp)
+#define rtw_cfg80211_ready_on_channel(adapter, cookie, chan, channel_type,     \
+				      duration, gfp)                           \
+	cfg80211_ready_on_channel((adapter)->rtw_wdev, cookie, chan, duration, \
+				  gfp)
+#define rtw_cfg80211_remain_on_channel_expired(adapter, cookie, chan,         \
+					       chan_type, gfp)                \
+	cfg80211_remain_on_channel_expired((adapter)->rtw_wdev, cookie, chan, \
+					   gfp)
 
 #endif /* __IOCTL_CFG80211_H__ */
diff --git a/drivers/staging/rtl8723bs/include/osdep_intf.h b/drivers/staging/rtl8723bs/include/osdep_intf.h
index 83a25598e9627..cdc4867798698 100644
--- a/drivers/staging/rtl8723bs/include/osdep_intf.h
+++ b/drivers/staging/rtl8723bs/include/osdep_intf.h
@@ -39,4 +39,4 @@ int rtw_resume_common(struct adapter *padapter);
 
 int netdev_open(struct net_device *pnetdev);
 
-#endif	/* _OSDEP_INTF_H_ */
+#endif /* _OSDEP_INTF_H_ */
diff --git a/drivers/staging/rtl8723bs/include/osdep_service.h b/drivers/staging/rtl8723bs/include/osdep_service.h
index 2f5011a8210cd..4b03acb94bb94 100644
--- a/drivers/staging/rtl8723bs/include/osdep_service.h
+++ b/drivers/staging/rtl8723bs/include/osdep_service.h
@@ -7,14 +7,12 @@
 #ifndef __OSDEP_SERVICE_H_
 #define __OSDEP_SERVICE_H_
 
-
-#define _FAIL		0
-#define _SUCCESS	1
+#define _FAIL 0
+#define _SUCCESS 1
 #define RTW_RX_HANDLED 2
 
 #include <osdep_service_linux.h>
 
-
 extern int RTW_STATUS_CODE(int error_code);
 
 int _rtw_netif_rx(struct net_device *ndev, struct sk_buff *skb);
@@ -27,7 +25,7 @@ static inline void flush_signals_thread(void)
 		flush_signals(current);
 }
 
-#define _RND(sz, r) ((((sz)+((r)-1))/(r))*(r))
+#define _RND(sz, r) ((((sz) + ((r) - 1)) / (r)) * (r))
 
 extern void rtw_free_netdev(struct net_device *netdev);
 
@@ -49,5 +47,4 @@ bool rtw_cbuf_push(struct rtw_cbuf *cbuf, void *buf);
 void *rtw_cbuf_pop(struct rtw_cbuf *cbuf);
 struct rtw_cbuf *rtw_cbuf_alloc(u32 size);
 
-
 #endif
diff --git a/drivers/staging/rtl8723bs/include/osdep_service_linux.h b/drivers/staging/rtl8723bs/include/osdep_service_linux.h
index 2ec54f9e180c2..b53f6996789fe 100644
--- a/drivers/staging/rtl8723bs/include/osdep_service_linux.h
+++ b/drivers/staging/rtl8723bs/include/osdep_service_linux.h
@@ -29,7 +29,7 @@
 #include <linux/if_arp.h>
 #include <linux/rtnetlink.h>
 #include <linux/delay.h>
-#include <linux/interrupt.h>	/*  for struct tasklet_struct */
+#include <linux/interrupt.h> /*  for struct tasklet_struct */
 #include <linux/ip.h>
 #include <linux/kthread.h>
 #include <linux/list.h>
@@ -38,17 +38,17 @@
 #include <net/ieee80211_radiotap.h>
 #include <net/cfg80211.h>
 
-struct	__queue	{
-	struct	list_head	queue;
-	spinlock_t	lock;
+struct __queue {
+	struct list_head queue;
+	spinlock_t lock;
 };
 
-static inline struct list_head *get_next(struct list_head	*list)
+static inline struct list_head *get_next(struct list_head *list)
 {
 	return list->next;
 }
 
-static inline struct list_head	*get_list_head(struct __queue	*queue)
+static inline struct list_head *get_list_head(struct __queue *queue)
 {
 	return (&(queue->queue));
 }
@@ -58,7 +58,8 @@ static inline void _set_timer(struct timer_list *ptimer, u32 delay_time)
 	mod_timer(ptimer, (jiffies + (delay_time * HZ / 1000)));
 }
 
-static inline void _init_workitem(struct work_struct *pwork, void *pfunc, void *cntx)
+static inline void _init_workitem(struct work_struct *pwork, void *pfunc,
+				  void *cntx)
 {
 	INIT_WORK(pwork, pfunc);
 }
@@ -115,7 +116,8 @@ static inline struct adapter *rtw_netdev_priv(struct net_device *netdev)
 	return ((struct rtw_netdev_priv_indicator *)netdev_priv(netdev))->priv;
 }
 
-struct net_device *rtw_alloc_etherdev_with_old_priv(int sizeof_priv, void *old_priv);
+struct net_device *rtw_alloc_etherdev_with_old_priv(int sizeof_priv,
+						    void *old_priv);
 extern struct net_device *rtw_alloc_etherdev(int sizeof_priv);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/include/rtl8192c_recv.h b/drivers/staging/rtl8723bs/include/rtl8192c_recv.h
index 1f86654f04033..8c6649405835f 100644
--- a/drivers/staging/rtl8723bs/include/rtl8192c_recv.h
+++ b/drivers/staging/rtl8723bs/include/rtl8192c_recv.h
@@ -28,9 +28,11 @@ struct phy_stat {
 };
 
 /*  Rx smooth factor */
-#define	Rx_Smooth_Factor (20)
+#define Rx_Smooth_Factor (20)
 
-void rtl8192c_translate_rx_signal_stuff(union recv_frame *precvframe, struct phy_stat *pphy_status);
-void rtl8192c_query_rx_desc_status(union recv_frame *precvframe, struct recv_stat *pdesc);
+void rtl8192c_translate_rx_signal_stuff(union recv_frame *precvframe,
+					struct phy_stat *pphy_status);
+void rtl8192c_query_rx_desc_status(union recv_frame *precvframe,
+				   struct recv_stat *pdesc);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/include/rtl8723b_cmd.h b/drivers/staging/rtl8723bs/include/rtl8723b_cmd.h
index 6b2d79e19088e..7ace4fa2e3ae3 100644
--- a/drivers/staging/rtl8723bs/include/rtl8723b_cmd.h
+++ b/drivers/staging/rtl8723bs/include/rtl8723b_cmd.h
@@ -75,88 +75,147 @@ enum {
 /*     H2C CMD CONTENT    -------------------------------------------------- */
 /*  */
 /* _RSVDPAGE_LOC_CMD_0x00 */
-#define SET_8723B_H2CCMD_RSVDPAGE_LOC_PROBE_RSP(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd, 0, 8, __Value)
-#define SET_8723B_H2CCMD_RSVDPAGE_LOC_PSPOLL(__pH2CCmd, __Value)				SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd)+1, 0, 8, __Value)
-#define SET_8723B_H2CCMD_RSVDPAGE_LOC_NULL_DATA(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd)+2, 0, 8, __Value)
-#define SET_8723B_H2CCMD_RSVDPAGE_LOC_QOS_NULL_DATA(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd)+3, 0, 8, __Value)
-#define SET_8723B_H2CCMD_RSVDPAGE_LOC_BT_QOS_NULL_DATA(__pH2CCmd, __Value)	SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd)+4, 0, 8, __Value)
+#define SET_8723B_H2CCMD_RSVDPAGE_LOC_PROBE_RSP(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd, 0, 8, __Value)
+#define SET_8723B_H2CCMD_RSVDPAGE_LOC_PSPOLL(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd) + 1, 0, 8, __Value)
+#define SET_8723B_H2CCMD_RSVDPAGE_LOC_NULL_DATA(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd) + 2, 0, 8, __Value)
+#define SET_8723B_H2CCMD_RSVDPAGE_LOC_QOS_NULL_DATA(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd) + 3, 0, 8, __Value)
+#define SET_8723B_H2CCMD_RSVDPAGE_LOC_BT_QOS_NULL_DATA(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd) + 4, 0, 8, __Value)
 
 /* _MEDIA_STATUS_RPT_PARM_CMD_0x01 */
-#define SET_8723B_H2CCMD_MSRRPT_PARM_OPMODE(__pH2CCmd, __Value)				SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 1, __Value)
-#define SET_8723B_H2CCMD_MSRRPT_PARM_MACID_IND(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE(__pH2CCmd, 1, 1, __Value)
-#define SET_8723B_H2CCMD_MSRRPT_PARM_MACID(__pH2CCmd, __Value)				SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd+1, 0, 8, __Value)
-#define SET_8723B_H2CCMD_MSRRPT_PARM_MACID_END(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd+2, 0, 8, __Value)
+#define SET_8723B_H2CCMD_MSRRPT_PARM_OPMODE(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 1, __Value)
+#define SET_8723B_H2CCMD_MSRRPT_PARM_MACID_IND(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 1, 1, __Value)
+#define SET_8723B_H2CCMD_MSRRPT_PARM_MACID(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd + 1, 0, 8, __Value)
+#define SET_8723B_H2CCMD_MSRRPT_PARM_MACID_END(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd + 2, 0, 8, __Value)
 
 /* _KEEP_ALIVE_CMD_0x03 */
-#define SET_8723B_H2CCMD_KEEPALIVE_PARM_ENABLE(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 1, __Value)
-#define SET_8723B_H2CCMD_KEEPALIVE_PARM_ADOPT(__pH2CCmd, __Value)				SET_BITS_TO_LE_1BYTE(__pH2CCmd, 1, 1, __Value)
-#define SET_8723B_H2CCMD_KEEPALIVE_PARM_PKT_TYPE(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE(__pH2CCmd, 2, 1, __Value)
-#define SET_8723B_H2CCMD_KEEPALIVE_PARM_CHECK_PERIOD(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd+1, 0, 8, __Value)
+#define SET_8723B_H2CCMD_KEEPALIVE_PARM_ENABLE(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 1, __Value)
+#define SET_8723B_H2CCMD_KEEPALIVE_PARM_ADOPT(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 1, 1, __Value)
+#define SET_8723B_H2CCMD_KEEPALIVE_PARM_PKT_TYPE(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 2, 1, __Value)
+#define SET_8723B_H2CCMD_KEEPALIVE_PARM_CHECK_PERIOD(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd + 1, 0, 8, __Value)
 
 /* _DISCONNECT_DECISION_CMD_0x04 */
-#define SET_8723B_H2CCMD_DISCONDECISION_PARM_ENABLE(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 1, __Value)
-#define SET_8723B_H2CCMD_DISCONDECISION_PARM_ADOPT(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE(__pH2CCmd, 1, 1, __Value)
-#define SET_8723B_H2CCMD_DISCONDECISION_PARM_CHECK_PERIOD(__pH2CCmd, __Value)	SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd+1, 0, 8, __Value)
-#define SET_8723B_H2CCMD_DISCONDECISION_PARM_TRY_PKT_NUM(__pH2CCmd, __Value)	SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd+2, 0, 8, __Value)
+#define SET_8723B_H2CCMD_DISCONDECISION_PARM_ENABLE(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 1, __Value)
+#define SET_8723B_H2CCMD_DISCONDECISION_PARM_ADOPT(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 1, 1, __Value)
+#define SET_8723B_H2CCMD_DISCONDECISION_PARM_CHECK_PERIOD(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd + 1, 0, 8, __Value)
+#define SET_8723B_H2CCMD_DISCONDECISION_PARM_TRY_PKT_NUM(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd + 2, 0, 8, __Value)
 
 /*  _PWR_MOD_CMD_0x20 */
-#define SET_8723B_H2CCMD_PWRMODE_PARM_MODE(__pH2CCmd, __Value)				SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd, 0, 8, __Value)
-#define SET_8723B_H2CCMD_PWRMODE_PARM_RLBM(__pH2CCmd, __Value)				SET_BITS_TO_LE_1BYTE((__pH2CCmd)+1, 0, 4, __Value)
-#define SET_8723B_H2CCMD_PWRMODE_PARM_SMART_PS(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE((__pH2CCmd)+1, 4, 4, __Value)
-#define SET_8723B_H2CCMD_PWRMODE_PARM_BCN_PASS_TIME(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd)+2, 0, 8, __Value)
-#define SET_8723B_H2CCMD_PWRMODE_PARM_ALL_QUEUE_UAPSD(__pH2CCmd, __Value)	SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd)+3, 0, 8, __Value)
-#define SET_8723B_H2CCMD_PWRMODE_PARM_PWR_STATE(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd)+4, 0, 8, __Value)
-#define SET_8723B_H2CCMD_PWRMODE_PARM_BYTE5(__pH2CCmd, __Value)				SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd)+5, 0, 8, __Value)
-
-#define GET_8723B_H2CCMD_PWRMODE_PARM_MODE(__pH2CCmd)					LE_BITS_TO_1BYTE(__pH2CCmd, 0, 8)
+#define SET_8723B_H2CCMD_PWRMODE_PARM_MODE(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd, 0, 8, __Value)
+#define SET_8723B_H2CCMD_PWRMODE_PARM_RLBM(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE((__pH2CCmd) + 1, 0, 4, __Value)
+#define SET_8723B_H2CCMD_PWRMODE_PARM_SMART_PS(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE((__pH2CCmd) + 1, 4, 4, __Value)
+#define SET_8723B_H2CCMD_PWRMODE_PARM_BCN_PASS_TIME(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd) + 2, 0, 8, __Value)
+#define SET_8723B_H2CCMD_PWRMODE_PARM_ALL_QUEUE_UAPSD(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd) + 3, 0, 8, __Value)
+#define SET_8723B_H2CCMD_PWRMODE_PARM_PWR_STATE(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd) + 4, 0, 8, __Value)
+#define SET_8723B_H2CCMD_PWRMODE_PARM_BYTE5(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT((__pH2CCmd) + 5, 0, 8, __Value)
+
+#define GET_8723B_H2CCMD_PWRMODE_PARM_MODE(__pH2CCmd) \
+	LE_BITS_TO_1BYTE(__pH2CCmd, 0, 8)
 
 /*  _PS_TUNE_PARAM_CMD_0x21 */
-#define SET_8723B_H2CCMD_PSTUNE_PARM_BCN_TO_LIMIT(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 8, __Value)
-#define SET_8723B_H2CCMD_PSTUNE_PARM_DTIM_TIMEOUT(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE(__pH2CCmd+1, 0, 8, __Value)
-#define SET_8723B_H2CCMD_PSTUNE_PARM_ADOPT(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE(__pH2CCmd+2, 0, 1, __Value)
-#define SET_8723B_H2CCMD_PSTUNE_PARM_PS_TIMEOUT(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE(__pH2CCmd+2, 1, 7, __Value)
-#define SET_8723B_H2CCMD_PSTUNE_PARM_DTIM_PERIOD(__pH2CCmd, __Value)			SET_BITS_TO_LE_1BYTE(__pH2CCmd+3, 0, 8, __Value)
+#define SET_8723B_H2CCMD_PSTUNE_PARM_BCN_TO_LIMIT(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 8, __Value)
+#define SET_8723B_H2CCMD_PSTUNE_PARM_DTIM_TIMEOUT(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 1, 0, 8, __Value)
+#define SET_8723B_H2CCMD_PSTUNE_PARM_ADOPT(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 2, 0, 1, __Value)
+#define SET_8723B_H2CCMD_PSTUNE_PARM_PS_TIMEOUT(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 2, 1, 7, __Value)
+#define SET_8723B_H2CCMD_PSTUNE_PARM_DTIM_PERIOD(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 3, 0, 8, __Value)
 
 /* _MACID_CFG_CMD_0x40 */
-#define SET_8723B_H2CCMD_MACID_CFG_MACID(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 8, __Value)
-#define SET_8723B_H2CCMD_MACID_CFG_RAID(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+1, 0, 5, __Value)
-#define SET_8723B_H2CCMD_MACID_CFG_SGI_EN(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+1, 7, 1, __Value)
-#define SET_8723B_H2CCMD_MACID_CFG_BW(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+2, 0, 2, __Value)
-#define SET_8723B_H2CCMD_MACID_CFG_NO_UPDATE(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+2, 3, 1, __Value)
-#define SET_8723B_H2CCMD_MACID_CFG_VHT_EN(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+2, 4, 2, __Value)
-#define SET_8723B_H2CCMD_MACID_CFG_DISPT(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+2, 6, 1, __Value)
-#define SET_8723B_H2CCMD_MACID_CFG_DISRA(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+2, 7, 1, __Value)
-#define SET_8723B_H2CCMD_MACID_CFG_RATE_MASK0(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+3, 0, 8, __Value)
-#define SET_8723B_H2CCMD_MACID_CFG_RATE_MASK1(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+4, 0, 8, __Value)
-#define SET_8723B_H2CCMD_MACID_CFG_RATE_MASK2(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+5, 0, 8, __Value)
-#define SET_8723B_H2CCMD_MACID_CFG_RATE_MASK3(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+6, 0, 8, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_MACID(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 8, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_RAID(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 1, 0, 5, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_SGI_EN(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 1, 7, 1, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_BW(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 2, 0, 2, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_NO_UPDATE(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 2, 3, 1, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_VHT_EN(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 2, 4, 2, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_DISPT(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 2, 6, 1, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_DISRA(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 2, 7, 1, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_RATE_MASK0(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 3, 0, 8, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_RATE_MASK1(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 4, 0, 8, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_RATE_MASK2(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 5, 0, 8, __Value)
+#define SET_8723B_H2CCMD_MACID_CFG_RATE_MASK3(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 6, 0, 8, __Value)
 
 /* _RSSI_SETTING_CMD_0x42 */
-#define SET_8723B_H2CCMD_RSSI_SETTING_MACID(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 8, __Value)
-#define SET_8723B_H2CCMD_RSSI_SETTING_RSSI(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+2, 0, 7, __Value)
-#define SET_8723B_H2CCMD_RSSI_SETTING_ULDL_STATE(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+3, 0, 8, __Value)
+#define SET_8723B_H2CCMD_RSSI_SETTING_MACID(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 8, __Value)
+#define SET_8723B_H2CCMD_RSSI_SETTING_RSSI(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 2, 0, 7, __Value)
+#define SET_8723B_H2CCMD_RSSI_SETTING_ULDL_STATE(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 3, 0, 8, __Value)
 
 /*  _AP_REQ_TXRPT_CMD_0x43 */
-#define SET_8723B_H2CCMD_APREQRPT_PARM_MACID1(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 8, __Value)
-#define SET_8723B_H2CCMD_APREQRPT_PARM_MACID2(__pH2CCmd, __Value)		SET_BITS_TO_LE_1BYTE(__pH2CCmd+1, 0, 8, __Value)
+#define SET_8723B_H2CCMD_APREQRPT_PARM_MACID1(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 8, __Value)
+#define SET_8723B_H2CCMD_APREQRPT_PARM_MACID2(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 1, 0, 8, __Value)
 
 /*  _FORCE_BT_TXPWR_CMD_0x62 */
-#define SET_8723B_H2CCMD_BT_PWR_IDX(__pH2CCmd, __Value)							SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd, 0, 8, __Value)
+#define SET_8723B_H2CCMD_BT_PWR_IDX(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE_8BIT(__pH2CCmd, 0, 8, __Value)
 
 /*  _FORCE_BT_MP_OPER_CMD_0x67 */
-#define SET_8723B_H2CCMD_BT_MPOPER_VER(__pH2CCmd, __Value)							SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 4, __Value)
-#define SET_8723B_H2CCMD_BT_MPOPER_REQNUM(__pH2CCmd, __Value)							SET_BITS_TO_LE_1BYTE(__pH2CCmd, 4, 4, __Value)
-#define SET_8723B_H2CCMD_BT_MPOPER_IDX(__pH2CCmd, __Value)							SET_BITS_TO_LE_1BYTE(__pH2CCmd+1, 0, 8, __Value)
-#define SET_8723B_H2CCMD_BT_MPOPER_PARAM1(__pH2CCmd, __Value)							SET_BITS_TO_LE_1BYTE(__pH2CCmd+2, 0, 8, __Value)
-#define SET_8723B_H2CCMD_BT_MPOPER_PARAM2(__pH2CCmd, __Value)							SET_BITS_TO_LE_1BYTE(__pH2CCmd+3, 0, 8, __Value)
-#define SET_8723B_H2CCMD_BT_MPOPER_PARAM3(__pH2CCmd, __Value)							SET_BITS_TO_LE_1BYTE(__pH2CCmd+4, 0, 8, __Value)
+#define SET_8723B_H2CCMD_BT_MPOPER_VER(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 0, 4, __Value)
+#define SET_8723B_H2CCMD_BT_MPOPER_REQNUM(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd, 4, 4, __Value)
+#define SET_8723B_H2CCMD_BT_MPOPER_IDX(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 1, 0, 8, __Value)
+#define SET_8723B_H2CCMD_BT_MPOPER_PARAM1(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 2, 0, 8, __Value)
+#define SET_8723B_H2CCMD_BT_MPOPER_PARAM2(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 3, 0, 8, __Value)
+#define SET_8723B_H2CCMD_BT_MPOPER_PARAM3(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE(__pH2CCmd + 4, 0, 8, __Value)
 
 /*  _BT_FW_PATCH_0x6A */
-#define SET_8723B_H2CCMD_BT_FW_PATCH_SIZE(__pH2CCmd, __Value)					SET_BITS_TO_LE_2BYTE((u8 *)(__pH2CCmd), 0, 16, __Value)
-#define SET_8723B_H2CCMD_BT_FW_PATCH_ADDR0(__pH2CCmd, __Value)					SET_BITS_TO_LE_1BYTE((__pH2CCmd)+2, 0, 8, __Value)
-#define SET_8723B_H2CCMD_BT_FW_PATCH_ADDR1(__pH2CCmd, __Value)					SET_BITS_TO_LE_1BYTE((__pH2CCmd)+3, 0, 8, __Value)
-#define SET_8723B_H2CCMD_BT_FW_PATCH_ADDR2(__pH2CCmd, __Value)					SET_BITS_TO_LE_1BYTE((__pH2CCmd)+4, 0, 8, __Value)
-#define SET_8723B_H2CCMD_BT_FW_PATCH_ADDR3(__pH2CCmd, __Value)					SET_BITS_TO_LE_1BYTE((__pH2CCmd)+5, 0, 8, __Value)
+#define SET_8723B_H2CCMD_BT_FW_PATCH_SIZE(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_2BYTE((u8 *)(__pH2CCmd), 0, 16, __Value)
+#define SET_8723B_H2CCMD_BT_FW_PATCH_ADDR0(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE((__pH2CCmd) + 2, 0, 8, __Value)
+#define SET_8723B_H2CCMD_BT_FW_PATCH_ADDR1(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE((__pH2CCmd) + 3, 0, 8, __Value)
+#define SET_8723B_H2CCMD_BT_FW_PATCH_ADDR2(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE((__pH2CCmd) + 4, 0, 8, __Value)
+#define SET_8723B_H2CCMD_BT_FW_PATCH_ADDR3(__pH2CCmd, __Value) \
+	SET_BITS_TO_LE_1BYTE((__pH2CCmd) + 5, 0, 8, __Value)
 
 /*  */
 /*     Function Statement     -------------------------------------------------- */
@@ -166,17 +225,21 @@ enum {
 void rtl8723b_set_FwPwrMode_cmd(struct adapter *padapter, u8 Mode);
 void rtl8723b_set_FwJoinBssRpt_cmd(struct adapter *padapter, u8 mstatus);
 void rtl8723b_set_rssi_cmd(struct adapter *padapter, u8 *param);
-void rtl8723b_Add_RateATid(struct adapter *padapter, u32 bitmap, u8 *arg, u8 rssi_level);
+void rtl8723b_Add_RateATid(struct adapter *padapter, u32 bitmap, u8 *arg,
+			   u8 rssi_level);
 void rtl8723b_fw_try_ap_cmd(struct adapter *padapter, u32 need_ack);
 /* s32 rtl8723b_set_lowpwr_lps_cmd(struct adapter *padapter, u8 enable); */
 void rtl8723b_set_FwPsTuneParam_cmd(struct adapter *padapter);
-void rtl8723b_set_FwMacIdConfig_cmd(struct adapter *padapter, u8 mac_id, u8 raid, u8 bw, u8 sgi, u32 mask);
-void rtl8723b_set_FwMediaStatusRpt_cmd(struct adapter *padapter, u8 mstatus, u8 macid);
+void rtl8723b_set_FwMacIdConfig_cmd(struct adapter *padapter, u8 mac_id,
+				    u8 raid, u8 bw, u8 sgi, u32 mask);
+void rtl8723b_set_FwMediaStatusRpt_cmd(struct adapter *padapter, u8 mstatus,
+				       u8 macid);
 void rtl8723b_download_rsvd_page(struct adapter *padapter, u8 mstatus);
 void rtl8723b_download_BTCoex_AP_mode_rsvd_page(struct adapter *padapter);
 
 void rtl8723b_set_FwPwrModeInIPS_cmd(struct adapter *padapter, u8 cmd_param);
 
-s32 FillH2CCmd8723B(struct adapter *padapter, u8 ElementID, u32 CmdLen, u8 *pCmdBuffer);
+s32 FillH2CCmd8723B(struct adapter *padapter, u8 ElementID, u32 CmdLen,
+		    u8 *pCmdBuffer);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/include/rtl8723b_hal.h b/drivers/staging/rtl8723bs/include/rtl8723b_hal.h
index b6006110ad6b0..c3df320947861 100644
--- a/drivers/staging/rtl8723bs/include/rtl8723b_hal.h
+++ b/drivers/staging/rtl8723bs/include/rtl8723b_hal.h
@@ -23,9 +23,9 @@
 /* RTL8723B From header */
 /*  */
 
-#define FW_8723B_SIZE          0x8000
+#define FW_8723B_SIZE 0x8000
 #define FW_8723B_START_ADDRESS 0x1000
-#define FW_8723B_END_ADDRESS   0x1FFF /* 0x5FFF */
+#define FW_8723B_END_ADDRESS 0x1FFF /* 0x5FFF */
 
 #define IS_FW_HEADER_EXIST_8723B(fw_hdr) \
 	((le16_to_cpu(fw_hdr->signature) & 0xFFF0) == 0x5300)
@@ -40,28 +40,28 @@ struct rt_firmware_hdr {
 	/*  8-byte alignment required */
 
 	/*  LONG WORD 0 ---- */
-	__le16 signature;  /* 92C0: test chip; 92C, 88C0: test chip;
+	__le16 signature; /* 92C0: test chip; 92C, 88C0: test chip;
 			    * 88C1: MP A-cut; 92C1: MP A-cut
 			    */
-	u8 category;	   /* AP/NIC and USB/PCI */
-	u8 function;	   /* Reserved for different FW function indications,
+	u8 category; /* AP/NIC and USB/PCI */
+	u8 function; /* Reserved for different FW function indications,
 			    * for further use when driver needs to download
 			    * different FW in different conditions.
 			    */
-	__le16 version;    /* FW Version */
+	__le16 version; /* FW Version */
 	__le16 subversion; /* FW Subversion, default 0x00 */
 
 	/*  LONG WORD 1 ---- */
-	u8 month;  /* Release time Month field */
-	u8 date;   /* Release time Date field */
-	u8 hour;   /* Release time Hour field */
+	u8 month; /* Release time Month field */
+	u8 date; /* Release time Date field */
+	u8 hour; /* Release time Hour field */
 	u8 minute; /* Release time Minute field */
 
 	__le16 ram_code_size; /* The size of RAM code */
 	__le16 rsvd2;
 
 	/*  LONG WORD 2 ---- */
-	__le32 svn_idx;	/* The SVN entry index */
+	__le32 svn_idx; /* The SVN entry index */
 	__le32 rsvd3;
 
 	/*  LONG WORD 3 ---- */
@@ -69,7 +69,7 @@ struct rt_firmware_hdr {
 	__le32 rsvd5;
 };
 
-#define DRIVER_EARLY_INT_TIME_8723B  0x05
+#define DRIVER_EARLY_INT_TIME_8723B 0x05
 #define BCN_DMA_ATIME_INT_TIME_8723B 0x02
 
 /* for 8723B */
@@ -77,8 +77,8 @@ struct rt_firmware_hdr {
 #define PAGE_SIZE_TX_8723B 128
 #define PAGE_SIZE_RX_8723B 8
 
-#define RX_DMA_SIZE_8723B          0x4000 /* 16K */
-#define RX_DMA_RESERVED_SIZE_8723B 0x80   /* 128B, reserved for tx report */
+#define RX_DMA_SIZE_8723B 0x4000 /* 16K */
+#define RX_DMA_RESERVED_SIZE_8723B 0x80 /* 128B, reserved for tx report */
 #define RX_DMA_BOUNDARY_8723B \
 	(RX_DMA_SIZE_8723B - RX_DMA_RESERVED_SIZE_8723B - 1)
 
@@ -88,7 +88,7 @@ struct rt_firmware_hdr {
 
 /* For General Reserved Page Number(Beacon Queue is reserved page) */
 /* Beacon:2, PS-Poll:1, Null Data:1, Qos Null Data:1, BT Qos Null Data:1 */
-#define BCNQ_PAGE_NUM_8723B  0x08
+#define BCNQ_PAGE_NUM_8723B 0x08
 #define BCNQ1_PAGE_NUM_8723B 0x00
 
 #define MAX_RX_DMA_BUFFER_SIZE_8723B 0x2800 /* RX 10K */
@@ -97,10 +97,9 @@ struct rt_firmware_hdr {
 /* ARP Rsp:1, RWC:1, GTK Info:1, GTK RSP:2, GTK EXT MEM:2, PNO: 6 */
 #define WOWLAN_PAGE_NUM_8723B 0x00
 
-#define TX_TOTAL_PAGE_NUMBER_8723B     \
-	(0xFF - BCNQ_PAGE_NUM_8723B  - \
-		BCNQ1_PAGE_NUM_8723B - \
-		WOWLAN_PAGE_NUM_8723B)
+#define TX_TOTAL_PAGE_NUMBER_8723B                           \
+	(0xFF - BCNQ_PAGE_NUM_8723B - BCNQ1_PAGE_NUM_8723B - \
+	 WOWLAN_PAGE_NUM_8723B)
 #define TX_PAGE_BOUNDARY_8723B (TX_TOTAL_PAGE_NUMBER_8723B + 1)
 
 #define WMM_NORMAL_TX_TOTAL_PAGE_NUMBER_8723B TX_TOTAL_PAGE_NUMBER_8723B
@@ -124,26 +123,27 @@ struct rt_firmware_hdr {
 
 #define HAL_EFUSE_MEMORY
 
-#define HWSET_MAX_SIZE_8723B         512
+#define HWSET_MAX_SIZE_8723B 512
 #define EFUSE_REAL_CONTENT_LEN_8723B 512
-#define EFUSE_MAP_LEN_8723B          512
-#define EFUSE_MAX_SECTION_8723B      64
+#define EFUSE_MAP_LEN_8723B 512
+#define EFUSE_MAX_SECTION_8723B 64
 
-#define EFUSE_IC_ID_OFFSET 506 /* For some inferiority IC purpose.
+#define EFUSE_IC_ID_OFFSET \
+	506 /* For some inferiority IC purpose.
 				* Added by Roger, 2009.09.02.
 				*/
 #define AVAILABLE_EFUSE_ADDR(addr) (addr < EFUSE_REAL_CONTENT_LEN_8723B)
 
-#define EFUSE_ACCESS_ON  0x69 /* For RTL8723 only. */
+#define EFUSE_ACCESS_ON 0x69 /* For RTL8723 only. */
 #define EFUSE_ACCESS_OFF 0x00 /* For RTL8723 only. */
 
 /*  */
 /* EFUSE for BT definition */
 /*  */
 #define EFUSE_BT_REAL_BANK_CONTENT_LEN 512
-#define EFUSE_BT_REAL_CONTENT_LEN      1536 /* 512*3 */
-#define EFUSE_BT_MAP_LEN               1024 /* 1k bytes */
-#define EFUSE_BT_MAX_SECTION           128  /* 1024/8 */
+#define EFUSE_BT_REAL_CONTENT_LEN 1536 /* 512*3 */
+#define EFUSE_BT_MAP_LEN 1024 /* 1k bytes */
+#define EFUSE_BT_MAX_SECTION 128 /* 1024/8 */
 
 #define EFUSE_PROTECT_BYTES_BANK 16
 
@@ -173,20 +173,20 @@ struct c2h_evt_hdr_t {
 } __packed;
 
 enum { /* tag_Package_Definition */
-	PACKAGE_DEFAULT,
-	PACKAGE_QFN68,
-	PACKAGE_TFBGA90,
-	PACKAGE_TFBGA80,
-	PACKAGE_TFBGA79
+       PACKAGE_DEFAULT,
+       PACKAGE_QFN68,
+       PACKAGE_TFBGA90,
+       PACKAGE_TFBGA80,
+       PACKAGE_TFBGA79
 };
 
-#define INCLUDE_MULTI_FUNC_BT(_Adapter)  \
+#define INCLUDE_MULTI_FUNC_BT(_Adapter) \
 	(GET_HAL_DATA(_Adapter)->MultiFunc & RT_MULTI_FUNC_BT)
 #define INCLUDE_MULTI_FUNC_GPS(_Adapter) \
 	(GET_HAL_DATA(_Adapter)->MultiFunc & RT_MULTI_FUNC_GPS)
 
 /*  rtl8723a_hal_init.c */
-s32 rtl8723b_FirmwareDownload(struct adapter *padapter, bool  bUsedWoWLANFw);
+s32 rtl8723b_FirmwareDownload(struct adapter *padapter, bool bUsedWoWLANFw);
 void rtl8723b_FirmwareSelfReset(struct adapter *padapter);
 void rtl8723b_InitializeFirmwareVars(struct adapter *padapter);
 
diff --git a/drivers/staging/rtl8723bs/include/rtl8723b_recv.h b/drivers/staging/rtl8723bs/include/rtl8723b_recv.h
index e9ebecb224a6f..f0d8e52f02be4 100644
--- a/drivers/staging/rtl8723bs/include/rtl8723b_recv.h
+++ b/drivers/staging/rtl8723bs/include/rtl8723b_recv.h
@@ -11,71 +11,71 @@
 
 struct rxreport_8723b {
 	/* DWORD 0 */
-	u32 pktlen:14;
-	u32 crc32:1;
-	u32 icverr:1;
-	u32 drvinfosize:4;
-	u32 security:3;
-	u32 qos:1;
-	u32 shift:2;
-	u32 physt:1;
-	u32 swdec:1;
-	u32 rsvd0028:2;
-	u32 eor:1;
-	u32 rsvd0031:1;
+	u32 pktlen : 14;
+	u32 crc32 : 1;
+	u32 icverr : 1;
+	u32 drvinfosize : 4;
+	u32 security : 3;
+	u32 qos : 1;
+	u32 shift : 2;
+	u32 physt : 1;
+	u32 swdec : 1;
+	u32 rsvd0028 : 2;
+	u32 eor : 1;
+	u32 rsvd0031 : 1;
 
 	/* DWORD 1 */
-	u32 macid:7;
-	u32 rsvd0407:1;
-	u32 tid:4;
-	u32 macid_vld:1;
-	u32 amsdu:1;
-	u32 rxid_match:1;
-	u32 paggr:1;
-	u32 a1fit:4;
-	u32 chkerr:1;  /* 20 */
-	u32 rx_ipv:1;
-	u32 rx_is_tcp_udp:1;
-	u32 chk_vld:1;   /* 23 */
-	u32 pam:1;
-	u32 pwr:1;
-	u32 md:1;
-	u32 mf:1;
-	u32 type:2;
-	u32 mc:1;
-	u32 bc:1;
+	u32 macid : 7;
+	u32 rsvd0407 : 1;
+	u32 tid : 4;
+	u32 macid_vld : 1;
+	u32 amsdu : 1;
+	u32 rxid_match : 1;
+	u32 paggr : 1;
+	u32 a1fit : 4;
+	u32 chkerr : 1; /* 20 */
+	u32 rx_ipv : 1;
+	u32 rx_is_tcp_udp : 1;
+	u32 chk_vld : 1; /* 23 */
+	u32 pam : 1;
+	u32 pwr : 1;
+	u32 md : 1;
+	u32 mf : 1;
+	u32 type : 2;
+	u32 mc : 1;
+	u32 bc : 1;
 
 	/* DWORD 2 */
-	u32 seq:12;
-	u32 frag:4;
-	u32 rx_is_qos:1;
-	u32 rsvd0817:1;
-	u32 wlanhd_iv_len:6;
-	u32 hwrsvd0824:4;
-	u32 c2h_ind:1;
-	u32 rsvd0829:2;
-	u32 fcs_ok:1;
+	u32 seq : 12;
+	u32 frag : 4;
+	u32 rx_is_qos : 1;
+	u32 rsvd0817 : 1;
+	u32 wlanhd_iv_len : 6;
+	u32 hwrsvd0824 : 4;
+	u32 c2h_ind : 1;
+	u32 rsvd0829 : 2;
+	u32 fcs_ok : 1;
 
 	/* DWORD 3 */
-	u32 rx_rate:7;
-	u32 rsvd1207:3;
-	u32 htc:1;
-	u32 esop:1;
-	u32 bssid_fit:2;
-	u32 rsvd1214:2;
-	u32 dma_agg_num:8;
-	u32 rsvd1224:5;
-	u32 patternmatch:1;
-	u32 unicastwake:1;
-	u32 magicwake:1;
+	u32 rx_rate : 7;
+	u32 rsvd1207 : 3;
+	u32 htc : 1;
+	u32 esop : 1;
+	u32 bssid_fit : 2;
+	u32 rsvd1214 : 2;
+	u32 dma_agg_num : 8;
+	u32 rsvd1224 : 5;
+	u32 patternmatch : 1;
+	u32 unicastwake : 1;
+	u32 magicwake : 1;
 
 	/* DWORD 4 */
-	u32 splcp:1;	/* Ofdm sgi or cck_splcp */
-	u32 ldpc:1;
-	u32 stbc:1;
-	u32 not_sounding:1;
-	u32 bw:2;
-	u32 rsvd1606:26;
+	u32 splcp : 1; /* Ofdm sgi or cck_splcp */
+	u32 ldpc : 1;
+	u32 stbc : 1;
+	u32 not_sounding : 1;
+	u32 bw : 2;
+	u32 rsvd1606 : 26;
 
 	/* DWORD 5 */
 	u32 tsfl;
@@ -84,7 +84,8 @@ struct rxreport_8723b {
 s32 rtl8723bs_init_recv_priv(struct adapter *padapter);
 void rtl8723bs_free_recv_priv(struct adapter *padapter);
 
-void rtl8723b_query_rx_phy_status(union recv_frame *prframe, struct phy_stat *pphy_stat);
+void rtl8723b_query_rx_phy_status(union recv_frame *prframe,
+				  struct phy_stat *pphy_stat);
 void rtl8723b_process_phy_info(struct adapter *padapter, void *prframe);
 
 void rtl8723b_read_chip_version(struct adapter *padapter);
diff --git a/drivers/staging/rtl8723bs/include/rtl8723b_rf.h b/drivers/staging/rtl8723bs/include/rtl8723b_rf.h
index 525eb2facca06..b7b3271b96e01 100644
--- a/drivers/staging/rtl8723bs/include/rtl8723b_rf.h
+++ b/drivers/staging/rtl8723bs/include/rtl8723b_rf.h
@@ -7,11 +7,9 @@
 #ifndef __RTL8723B_RF_H__
 #define __RTL8723B_RF_H__
 
+int PHY_RF6052_Config8723B(struct adapter *Adapter);
 
-int	PHY_RF6052_Config8723B(struct adapter *Adapter);
-
-void
-PHY_RF6052SetBandwidth8723B(struct adapter *Adapter,
-	enum channel_width		Bandwidth);
+void PHY_RF6052SetBandwidth8723B(struct adapter *Adapter,
+				 enum channel_width Bandwidth);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/include/rtl8723b_spec.h b/drivers/staging/rtl8723bs/include/rtl8723b_spec.h
index 7f749e32a5b97..5553ba7c6c61b 100644
--- a/drivers/staging/rtl8723bs/include/rtl8723b_spec.h
+++ b/drivers/staging/rtl8723bs/include/rtl8723b_spec.h
@@ -7,43 +7,43 @@
 #ifndef __RTL8723B_SPEC_H__
 #define __RTL8723B_SPEC_H__
 
-#define HAL_NAV_UPPER_UNIT_8723B		128		/*  micro-second */
+#define HAL_NAV_UPPER_UNIT_8723B 128 /*  micro-second */
 
 /*  */
 /*  */
 /*	0x0000h ~ 0x00FFh	System Configuration */
 /*  */
 /*  */
-#define REG_RSV_CTRL_8723B				0x001C	/*  3 Byte */
-#define REG_BT_WIFI_ANTENNA_SWITCH_8723B	0x0038
-#define REG_HSISR_8723B					0x005c
-#define REG_PAD_CTRL1_8723B		0x0064
-#define REG_AFE_CTRL_4_8723B		0x0078
-#define REG_HMEBOX_DBG_0_8723B	0x0088
-#define REG_HMEBOX_DBG_1_8723B	0x008A
-#define REG_HMEBOX_DBG_2_8723B	0x008C
-#define REG_HMEBOX_DBG_3_8723B	0x008E
-#define REG_HIMR0_8723B					0x00B0
-#define REG_HISR0_8723B					0x00B4
-#define REG_HIMR1_8723B					0x00B8
-#define REG_HISR1_8723B					0x00BC
-#define REG_PMC_DBG_CTRL2_8723B			0x00CC
+#define REG_RSV_CTRL_8723B 0x001C /*  3 Byte */
+#define REG_BT_WIFI_ANTENNA_SWITCH_8723B 0x0038
+#define REG_HSISR_8723B 0x005c
+#define REG_PAD_CTRL1_8723B 0x0064
+#define REG_AFE_CTRL_4_8723B 0x0078
+#define REG_HMEBOX_DBG_0_8723B 0x0088
+#define REG_HMEBOX_DBG_1_8723B 0x008A
+#define REG_HMEBOX_DBG_2_8723B 0x008C
+#define REG_HMEBOX_DBG_3_8723B 0x008E
+#define REG_HIMR0_8723B 0x00B0
+#define REG_HISR0_8723B 0x00B4
+#define REG_HIMR1_8723B 0x00B8
+#define REG_HISR1_8723B 0x00BC
+#define REG_PMC_DBG_CTRL2_8723B 0x00CC
 
 /*  */
 /*  */
 /*	0x0100h ~ 0x01FFh	MACTOP General Configuration */
 /*  */
 /*  */
-#define REG_C2HEVT_CMD_ID_8723B	0x01A0
-#define REG_C2HEVT_CMD_LEN_8723B	0x01AE
+#define REG_C2HEVT_CMD_ID_8723B 0x01A0
+#define REG_C2HEVT_CMD_LEN_8723B 0x01AE
 #define REG_WOWLAN_WAKE_REASON 0x01C7
-#define REG_WOWLAN_GTK_DBG1	0x630
-#define REG_WOWLAN_GTK_DBG2	0x634
+#define REG_WOWLAN_GTK_DBG1 0x630
+#define REG_WOWLAN_GTK_DBG2 0x634
 
-#define REG_HMEBOX_EXT0_8723B			0x01F0
-#define REG_HMEBOX_EXT1_8723B			0x01F4
-#define REG_HMEBOX_EXT2_8723B			0x01F8
-#define REG_HMEBOX_EXT3_8723B			0x01FC
+#define REG_HMEBOX_EXT0_8723B 0x01F0
+#define REG_HMEBOX_EXT1_8723B 0x01F4
+#define REG_HMEBOX_EXT2_8723B 0x01F8
+#define REG_HMEBOX_EXT3_8723B 0x01FC
 
 /*  */
 /*  */
@@ -56,52 +56,52 @@
 /*	0x0280h ~ 0x02FFh	RXDMA Configuration */
 /*  */
 /*  */
-#define REG_RXDMA_CONTROL_8723B		0x0286 /*  Control the RX DMA. */
-#define REG_RXDMA_MODE_CTRL_8723B		0x0290
+#define REG_RXDMA_CONTROL_8723B 0x0286 /*  Control the RX DMA. */
+#define REG_RXDMA_MODE_CTRL_8723B 0x0290
 
 /*  */
 /*  */
 /*	0x0300h ~ 0x03FFh	PCIe */
 /*  */
 /*  */
-#define	REG_PCIE_CTRL_REG_8723B		0x0300
-#define	REG_INT_MIG_8723B				0x0304	/*  Interrupt Migration */
-#define	REG_BCNQ_DESA_8723B			0x0308	/*  TX Beacon Descriptor Address */
-#define	REG_HQ_DESA_8723B				0x0310	/*  TX High Queue Descriptor Address */
-#define	REG_MGQ_DESA_8723B			0x0318	/*  TX Manage Queue Descriptor Address */
-#define	REG_VOQ_DESA_8723B			0x0320	/*  TX VO Queue Descriptor Address */
-#define	REG_VIQ_DESA_8723B				0x0328	/*  TX VI Queue Descriptor Address */
-#define	REG_BEQ_DESA_8723B			0x0330	/*  TX BE Queue Descriptor Address */
-#define	REG_BKQ_DESA_8723B			0x0338	/*  TX BK Queue Descriptor Address */
-#define	REG_RX_DESA_8723B				0x0340	/*  RX Queue	Descriptor Address */
-#define	REG_DBI_WDATA_8723B			0x0348	/*  DBI Write Data */
-#define	REG_DBI_RDATA_8723B			0x034C	/*  DBI Read Data */
-#define	REG_DBI_ADDR_8723B				0x0350	/*  DBI Address */
-#define	REG_DBI_FLAG_8723B				0x0352	/*  DBI Read/Write Flag */
-#define	REG_MDIO_WDATA_8723B		0x0354	/*  MDIO for Write PCIE PHY */
-#define	REG_MDIO_RDATA_8723B			0x0356	/*  MDIO for Reads PCIE PHY */
-#define	REG_MDIO_CTL_8723B			0x0358	/*  MDIO for Control */
-#define	REG_DBG_SEL_8723B				0x0360	/*  Debug Selection Register */
-#define	REG_PCIE_HRPWM_8723B			0x0361	/* PCIe RPWM */
-#define	REG_PCIE_HCPWM_8723B			0x0363	/* PCIe CPWM */
-#define	REG_PCIE_MULTIFET_CTRL_8723B	0x036A	/* PCIE Multi-Fethc Control */
+#define REG_PCIE_CTRL_REG_8723B 0x0300
+#define REG_INT_MIG_8723B 0x0304 /*  Interrupt Migration */
+#define REG_BCNQ_DESA_8723B 0x0308 /*  TX Beacon Descriptor Address */
+#define REG_HQ_DESA_8723B 0x0310 /*  TX High Queue Descriptor Address */
+#define REG_MGQ_DESA_8723B 0x0318 /*  TX Manage Queue Descriptor Address */
+#define REG_VOQ_DESA_8723B 0x0320 /*  TX VO Queue Descriptor Address */
+#define REG_VIQ_DESA_8723B 0x0328 /*  TX VI Queue Descriptor Address */
+#define REG_BEQ_DESA_8723B 0x0330 /*  TX BE Queue Descriptor Address */
+#define REG_BKQ_DESA_8723B 0x0338 /*  TX BK Queue Descriptor Address */
+#define REG_RX_DESA_8723B 0x0340 /*  RX Queue	Descriptor Address */
+#define REG_DBI_WDATA_8723B 0x0348 /*  DBI Write Data */
+#define REG_DBI_RDATA_8723B 0x034C /*  DBI Read Data */
+#define REG_DBI_ADDR_8723B 0x0350 /*  DBI Address */
+#define REG_DBI_FLAG_8723B 0x0352 /*  DBI Read/Write Flag */
+#define REG_MDIO_WDATA_8723B 0x0354 /*  MDIO for Write PCIE PHY */
+#define REG_MDIO_RDATA_8723B 0x0356 /*  MDIO for Reads PCIE PHY */
+#define REG_MDIO_CTL_8723B 0x0358 /*  MDIO for Control */
+#define REG_DBG_SEL_8723B 0x0360 /*  Debug Selection Register */
+#define REG_PCIE_HRPWM_8723B 0x0361 /* PCIe RPWM */
+#define REG_PCIE_HCPWM_8723B 0x0363 /* PCIe CPWM */
+#define REG_PCIE_MULTIFET_CTRL_8723B 0x036A /* PCIE Multi-Fethc Control */
 
 /*  */
 /*  */
 /*	0x0400h ~ 0x047Fh	Protocol Configuration */
 /*  */
 /*  */
-#define REG_TXPKTBUF_BCNQ_BDNY_8723B	0x0424
-#define REG_TXPKTBUF_MGQ_BDNY_8723B	0x0425
-#define REG_TXPKTBUF_WMAC_LBK_BF_HD_8723B	0x045D
-#define REG_AMPDU_BURST_MODE_8723B	0x04BC
+#define REG_TXPKTBUF_BCNQ_BDNY_8723B 0x0424
+#define REG_TXPKTBUF_MGQ_BDNY_8723B 0x0425
+#define REG_TXPKTBUF_WMAC_LBK_BF_HD_8723B 0x045D
+#define REG_AMPDU_BURST_MODE_8723B 0x04BC
 
 /*  */
 /*  */
 /*	0x0500h ~ 0x05FFh	EDCA Configuration */
 /*  */
 /*  */
-#define REG_SECONDARY_CCA_CTRL_8723B	0x0577
+#define REG_SECONDARY_CCA_CTRL_8723B 0x0577
 
 /*  */
 /*  */
@@ -124,7 +124,7 @@
 /*  */
 /*  SDIO register */
 /*  */
-#define SDIO_REG_HCPWM1_8723B	0x025 /*  HCI Current Power Mode 1 */
+#define SDIO_REG_HCPWM1_8723B 0x025 /*  HCI Current Power Mode 1 */
 
 /*  */
 /*	8723 Register Bit and Content definition */
@@ -132,11 +132,9 @@
 
 /* 2 HSISR */
 /*  interrupt mask which needs to clear */
-#define MASK_HSISR_CLEAR		(HSISR_GPIO12_0_INT |\
-								HSISR_SPS_OCP_INT |\
-								HSISR_RON_INT |\
-								HSISR_PDNINT |\
-								HSISR_GPIO9_INT)
+#define MASK_HSISR_CLEAR                                          \
+	(HSISR_GPIO12_0_INT | HSISR_SPS_OCP_INT | HSISR_RON_INT | \
+	 HSISR_PDNINT | HSISR_GPIO9_INT)
 
 /*  */
 /*  */
@@ -155,8 +153,8 @@
 /*	0x0280h ~ 0x02FFh	RXDMA Configuration */
 /*  */
 /*  */
-#define BIT_USB_RXDMA_AGG_EN	BIT(31)
-#define RXDMA_AGG_MODE_EN		BIT(1)
+#define BIT_USB_RXDMA_AGG_EN BIT(31)
+#define RXDMA_AGG_MODE_EN BIT(1)
 
 /*  */
 /*  */
@@ -167,7 +165,7 @@
 /*  */
 /*        8723B REG_CCK_CHECK						(offset 0x454) */
 /*  */
-#define BIT_BCN_PORT_SEL		BIT(5)
+#define BIT_BCN_PORT_SEL BIT(5)
 
 /*  */
 /*  */
@@ -180,58 +178,67 @@
 /*	0x0600h ~ 0x07FFh	WMAC Configuration */
 /*  */
 /*  */
-#define EEPROM_RF_GAIN_OFFSET			0xC1
-#define EEPROM_RF_GAIN_VAL			0x1F6
+#define EEPROM_RF_GAIN_OFFSET 0xC1
+#define EEPROM_RF_GAIN_VAL 0x1F6
 
 /*  */
 /*        8195 IMR/ISR bits						(offset 0xB0,  8bits) */
 /*  */
-#define	IMR_DISABLED_8723B					0
+#define IMR_DISABLED_8723B 0
 /*  IMR DW0(0x00B0-00B3) Bit 0-31 */
-#define	IMR_TIMER2_8723B					BIT(31)		/*  Timeout interrupt 2 */
-#define	IMR_TIMER1_8723B					BIT(30)		/*  Timeout interrupt 1 */
-#define	IMR_PSTIMEOUT_8723B				BIT(29)		/*  Power Save Time Out Interrupt */
-#define	IMR_GTINT4_8723B					BIT(28)		/*  When GTIMER4 expires, this bit is set to 1 */
-#define	IMR_GTINT3_8723B					BIT(27)		/*  When GTIMER3 expires, this bit is set to 1 */
-#define	IMR_TXBCN0ERR_8723B				BIT(26)		/*  Transmit Beacon0 Error */
-#define	IMR_TXBCN0OK_8723B				BIT(25)		/*  Transmit Beacon0 OK */
-#define	IMR_TSF_BIT32_TOGGLE_8723B		BIT(24)		/*  TSF Timer BIT32 toggle indication interrupt */
-#define	IMR_BCNDMAINT0_8723B				BIT(20)		/*  Beacon DMA Interrupt 0 */
-#define	IMR_BCNDERR0_8723B				BIT(16)		/*  Beacon Queue DMA OK0 */
-#define	IMR_HSISR_IND_ON_INT_8723B		BIT(15)		/*  HSISR Indicator (HSIMR & HSISR is true, this bit is set to 1) */
-#define	IMR_BCNDMAINT_E_8723B			BIT(14)		/*  Beacon DMA Interrupt Extension for Win7 */
-#define	IMR_ATIMEND_8723B				BIT(12)		/*  CTWidnow End or ATIM Window End */
-#define	IMR_C2HCMD_8723B					BIT(10)		/*  CPU to Host Command INT Status, Write 1 clear */
-#define	IMR_CPWM2_8723B					BIT(9)			/*  CPU power Mode exchange INT Status, Write 1 clear */
-#define	IMR_CPWM_8723B					BIT(8)			/*  CPU power Mode exchange INT Status, Write 1 clear */
-#define	IMR_HIGHDOK_8723B				BIT(7)			/*  High Queue DMA OK */
-#define	IMR_MGNTDOK_8723B				BIT(6)			/*  Management Queue DMA OK */
-#define	IMR_BKDOK_8723B					BIT(5)			/*  AC_BK DMA OK */
-#define	IMR_BEDOK_8723B					BIT(4)			/*  AC_BE DMA OK */
-#define	IMR_VIDOK_8723B					BIT(3)			/*  AC_VI DMA OK */
-#define	IMR_VODOK_8723B					BIT(2)			/*  AC_VO DMA OK */
-#define	IMR_RDU_8723B					BIT(1)			/*  Rx Descriptor Unavailable */
-#define	IMR_ROK_8723B					BIT(0)			/*  Receive DMA OK */
+#define IMR_TIMER2_8723B BIT(31) /*  Timeout interrupt 2 */
+#define IMR_TIMER1_8723B BIT(30) /*  Timeout interrupt 1 */
+#define IMR_PSTIMEOUT_8723B BIT(29) /*  Power Save Time Out Interrupt */
+#define IMR_GTINT4_8723B \
+	BIT(28) /*  When GTIMER4 expires, this bit is set to 1 */
+#define IMR_GTINT3_8723B \
+	BIT(27) /*  When GTIMER3 expires, this bit is set to 1 */
+#define IMR_TXBCN0ERR_8723B BIT(26) /*  Transmit Beacon0 Error */
+#define IMR_TXBCN0OK_8723B BIT(25) /*  Transmit Beacon0 OK */
+#define IMR_TSF_BIT32_TOGGLE_8723B \
+	BIT(24) /*  TSF Timer BIT32 toggle indication interrupt */
+#define IMR_BCNDMAINT0_8723B BIT(20) /*  Beacon DMA Interrupt 0 */
+#define IMR_BCNDERR0_8723B BIT(16) /*  Beacon Queue DMA OK0 */
+#define IMR_HSISR_IND_ON_INT_8723B \
+	BIT(15) /*  HSISR Indicator (HSIMR & HSISR is true, this bit is set to 1) */
+#define IMR_BCNDMAINT_E_8723B \
+	BIT(14) /*  Beacon DMA Interrupt Extension for Win7 */
+#define IMR_ATIMEND_8723B BIT(12) /*  CTWidnow End or ATIM Window End */
+#define IMR_C2HCMD_8723B \
+	BIT(10) /*  CPU to Host Command INT Status, Write 1 clear */
+#define IMR_CPWM2_8723B \
+	BIT(9) /*  CPU power Mode exchange INT Status, Write 1 clear */
+#define IMR_CPWM_8723B \
+	BIT(8) /*  CPU power Mode exchange INT Status, Write 1 clear */
+#define IMR_HIGHDOK_8723B BIT(7) /*  High Queue DMA OK */
+#define IMR_MGNTDOK_8723B BIT(6) /*  Management Queue DMA OK */
+#define IMR_BKDOK_8723B BIT(5) /*  AC_BK DMA OK */
+#define IMR_BEDOK_8723B BIT(4) /*  AC_BE DMA OK */
+#define IMR_VIDOK_8723B BIT(3) /*  AC_VI DMA OK */
+#define IMR_VODOK_8723B BIT(2) /*  AC_VO DMA OK */
+#define IMR_RDU_8723B BIT(1) /*  Rx Descriptor Unavailable */
+#define IMR_ROK_8723B BIT(0) /*  Receive DMA OK */
 
 /*  IMR DW1(0x00B4-00B7) Bit 0-31 */
-#define	IMR_BCNDMAINT7_8723B				BIT(27)		/*  Beacon DMA Interrupt 7 */
-#define	IMR_BCNDMAINT6_8723B				BIT(26)		/*  Beacon DMA Interrupt 6 */
-#define	IMR_BCNDMAINT5_8723B				BIT(25)		/*  Beacon DMA Interrupt 5 */
-#define	IMR_BCNDMAINT4_8723B				BIT(24)		/*  Beacon DMA Interrupt 4 */
-#define	IMR_BCNDMAINT3_8723B				BIT(23)		/*  Beacon DMA Interrupt 3 */
-#define	IMR_BCNDMAINT2_8723B				BIT(22)		/*  Beacon DMA Interrupt 2 */
-#define	IMR_BCNDMAINT1_8723B				BIT(21)		/*  Beacon DMA Interrupt 1 */
-#define	IMR_BCNDOK7_8723B					BIT(20)		/*  Beacon Queue DMA OK Interrupt 7 */
-#define	IMR_BCNDOK6_8723B					BIT(19)		/*  Beacon Queue DMA OK Interrupt 6 */
-#define	IMR_BCNDOK5_8723B					BIT(18)		/*  Beacon Queue DMA OK Interrupt 5 */
-#define	IMR_BCNDOK4_8723B					BIT(17)		/*  Beacon Queue DMA OK Interrupt 4 */
-#define	IMR_BCNDOK3_8723B					BIT(16)		/*  Beacon Queue DMA OK Interrupt 3 */
-#define	IMR_BCNDOK2_8723B					BIT(15)		/*  Beacon Queue DMA OK Interrupt 2 */
-#define	IMR_BCNDOK1_8723B					BIT(14)		/*  Beacon Queue DMA OK Interrupt 1 */
-#define	IMR_ATIMEND_E_8723B				BIT(13)		/*  ATIM Window End Extension for Win7 */
-#define	IMR_TXERR_8723B					BIT(11)		/*  Tx Error Flag Interrupt Status, write 1 clear. */
-#define	IMR_RXERR_8723B					BIT(10)		/*  Rx Error Flag INT Status, Write 1 clear */
-#define	IMR_TXFOVW_8723B					BIT(9)			/*  Transmit FIFO Overflow */
-#define	IMR_RXFOVW_8723B					BIT(8)			/*  Receive FIFO Overflow */
+#define IMR_BCNDMAINT7_8723B BIT(27) /*  Beacon DMA Interrupt 7 */
+#define IMR_BCNDMAINT6_8723B BIT(26) /*  Beacon DMA Interrupt 6 */
+#define IMR_BCNDMAINT5_8723B BIT(25) /*  Beacon DMA Interrupt 5 */
+#define IMR_BCNDMAINT4_8723B BIT(24) /*  Beacon DMA Interrupt 4 */
+#define IMR_BCNDMAINT3_8723B BIT(23) /*  Beacon DMA Interrupt 3 */
+#define IMR_BCNDMAINT2_8723B BIT(22) /*  Beacon DMA Interrupt 2 */
+#define IMR_BCNDMAINT1_8723B BIT(21) /*  Beacon DMA Interrupt 1 */
+#define IMR_BCNDOK7_8723B BIT(20) /*  Beacon Queue DMA OK Interrupt 7 */
+#define IMR_BCNDOK6_8723B BIT(19) /*  Beacon Queue DMA OK Interrupt 6 */
+#define IMR_BCNDOK5_8723B BIT(18) /*  Beacon Queue DMA OK Interrupt 5 */
+#define IMR_BCNDOK4_8723B BIT(17) /*  Beacon Queue DMA OK Interrupt 4 */
+#define IMR_BCNDOK3_8723B BIT(16) /*  Beacon Queue DMA OK Interrupt 3 */
+#define IMR_BCNDOK2_8723B BIT(15) /*  Beacon Queue DMA OK Interrupt 2 */
+#define IMR_BCNDOK1_8723B BIT(14) /*  Beacon Queue DMA OK Interrupt 1 */
+#define IMR_ATIMEND_E_8723B BIT(13) /*  ATIM Window End Extension for Win7 */
+#define IMR_TXERR_8723B \
+	BIT(11) /*  Tx Error Flag Interrupt Status, write 1 clear. */
+#define IMR_RXERR_8723B BIT(10) /*  Rx Error Flag INT Status, Write 1 clear */
+#define IMR_TXFOVW_8723B BIT(9) /*  Transmit FIFO Overflow */
+#define IMR_RXFOVW_8723B BIT(8) /*  Receive FIFO Overflow */
 
 #endif
diff --git a/drivers/staging/rtl8723bs/include/rtl8723b_xmit.h b/drivers/staging/rtl8723bs/include/rtl8723b_xmit.h
index ddf868c7899ba..962cab21dc567 100644
--- a/drivers/staging/rtl8723bs/include/rtl8723b_xmit.h
+++ b/drivers/staging/rtl8723bs/include/rtl8723b_xmit.h
@@ -10,408 +10,534 @@
 /*  */
 /*  Queue Select Value in TxDesc */
 /*  */
-#define QSLT_BK							0x2/* 0x01 */
-#define QSLT_BE							0x0
-#define QSLT_VI							0x5/* 0x4 */
-#define QSLT_VO							0x7/* 0x6 */
-#define QSLT_BEACON						0x10
-#define QSLT_HIGH						0x11
-#define QSLT_MGNT						0x12
-#define QSLT_CMD						0x13
+#define QSLT_BK 0x2 /* 0x01 */
+#define QSLT_BE 0x0
+#define QSLT_VI 0x5 /* 0x4 */
+#define QSLT_VO 0x7 /* 0x6 */
+#define QSLT_BEACON 0x10
+#define QSLT_HIGH 0x11
+#define QSLT_MGNT 0x12
+#define QSLT_CMD 0x13
 
 #define MAX_TID (15)
 
 /* OFFSET 0 */
-#define OFFSET_SZ	0
-#define OFFSET_SHT	16
-#define BMC		BIT(24)
-#define LSG		BIT(26)
-#define FSG		BIT(27)
-#define OWN		BIT(31)
-
+#define OFFSET_SZ 0
+#define OFFSET_SHT 16
+#define BMC BIT(24)
+#define LSG BIT(26)
+#define FSG BIT(27)
+#define OWN BIT(31)
 
 /* OFFSET 4 */
-#define PKT_OFFSET_SZ	0
-#define BK		BIT(6)
-#define QSEL_SHT	8
-#define Rate_ID_SHT	16
-#define NAVUSEHDR	BIT(20)
-#define PKT_OFFSET_SHT	26
-#define HWPC		BIT(31)
+#define PKT_OFFSET_SZ 0
+#define BK BIT(6)
+#define QSEL_SHT 8
+#define Rate_ID_SHT 16
+#define NAVUSEHDR BIT(20)
+#define PKT_OFFSET_SHT 26
+#define HWPC BIT(31)
 
 /* OFFSET 8 */
-#define AGG_EN		BIT(29)
+#define AGG_EN BIT(29)
 
 /* OFFSET 12 */
-#define SEQ_SHT		16
+#define SEQ_SHT 16
 
 /* OFFSET 16 */
-#define QoS		BIT(6)
-#define HW_SEQ_EN	BIT(7)
-#define USERATE		BIT(8)
-#define DISDATAFB	BIT(10)
-#define DATA_SHORT	BIT(24)
-#define DATA_BW		BIT(25)
+#define QoS BIT(6)
+#define HW_SEQ_EN BIT(7)
+#define USERATE BIT(8)
+#define DISDATAFB BIT(10)
+#define DATA_SHORT BIT(24)
+#define DATA_BW BIT(25)
 
 /* OFFSET 20 */
-#define SGI		BIT(6)
+#define SGI BIT(6)
 
 /*  */
 /* defined for TX DESC Operation */
 /*  */
 struct txdesc_8723b {
 	/*  Offset 0 */
-	u32 pktlen:16;
-	u32 offset:8;
-	u32 bmc:1;
-	u32 htc:1;
-	u32 rsvd0026:1;
-	u32 rsvd0027:1;
-	u32 linip:1;
-	u32 noacm:1;
-	u32 gf:1;
-	u32 rsvd0031:1;
+	u32 pktlen : 16;
+	u32 offset : 8;
+	u32 bmc : 1;
+	u32 htc : 1;
+	u32 rsvd0026 : 1;
+	u32 rsvd0027 : 1;
+	u32 linip : 1;
+	u32 noacm : 1;
+	u32 gf : 1;
+	u32 rsvd0031 : 1;
 
 	/*  Offset 4 */
-	u32 macid:7;
-	u32 rsvd0407:1;
-	u32 qsel:5;
-	u32 rdg_nav_ext:1;
-	u32 lsig_txop_en:1;
-	u32 pifs:1;
-	u32 rate_id:5;
-	u32 en_desc_id:1;
-	u32 sectype:2;
-	u32 pkt_offset:5; /*  unit: 8 bytes */
-	u32 moredata:1;
-	u32 txop_ps_cap:1;
-	u32 txop_ps_mode:1;
+	u32 macid : 7;
+	u32 rsvd0407 : 1;
+	u32 qsel : 5;
+	u32 rdg_nav_ext : 1;
+	u32 lsig_txop_en : 1;
+	u32 pifs : 1;
+	u32 rate_id : 5;
+	u32 en_desc_id : 1;
+	u32 sectype : 2;
+	u32 pkt_offset : 5; /*  unit: 8 bytes */
+	u32 moredata : 1;
+	u32 txop_ps_cap : 1;
+	u32 txop_ps_mode : 1;
 
 	/*  Offset 8 */
-	u32 p_aid:9;
-	u32 rsvd0809:1;
-	u32 cca_rts:2;
-	u32 agg_en:1;
-	u32 rdg_en:1;
-	u32 null_0:1;
-	u32 null_1:1;
-	u32 bk:1;
-	u32 morefrag:1;
-	u32 raw:1;
-	u32 spe_rpt:1;
-	u32 ampdu_density:3;
-	u32 bt_null:1;
-	u32 g_id:6;
-	u32 rsvd0830:2;
+	u32 p_aid : 9;
+	u32 rsvd0809 : 1;
+	u32 cca_rts : 2;
+	u32 agg_en : 1;
+	u32 rdg_en : 1;
+	u32 null_0 : 1;
+	u32 null_1 : 1;
+	u32 bk : 1;
+	u32 morefrag : 1;
+	u32 raw : 1;
+	u32 spe_rpt : 1;
+	u32 ampdu_density : 3;
+	u32 bt_null : 1;
+	u32 g_id : 6;
+	u32 rsvd0830 : 2;
 
 	/*  Offset 12 */
-	u32 wheader_len:4;
-	u32 chk_en:1;
-	u32 early_rate:1;
-	u32 hw_ssn_sel:2;
-	u32 userate:1;
-	u32 disrtsfb:1;
-	u32 disdatafb:1;
-	u32 cts2self:1;
-	u32 rtsen:1;
-	u32 hw_rts_en:1;
-	u32 port_id:1;
-	u32 navusehdr:1;
-	u32 use_max_len:1;
-	u32 max_agg_num:5;
-	u32 ndpa:2;
-	u32 ampdu_max_time:8;
+	u32 wheader_len : 4;
+	u32 chk_en : 1;
+	u32 early_rate : 1;
+	u32 hw_ssn_sel : 2;
+	u32 userate : 1;
+	u32 disrtsfb : 1;
+	u32 disdatafb : 1;
+	u32 cts2self : 1;
+	u32 rtsen : 1;
+	u32 hw_rts_en : 1;
+	u32 port_id : 1;
+	u32 navusehdr : 1;
+	u32 use_max_len : 1;
+	u32 max_agg_num : 5;
+	u32 ndpa : 2;
+	u32 ampdu_max_time : 8;
 
 	/*  Offset 16 */
-	u32 datarate:7;
-	u32 try_rate:1;
-	u32 data_ratefb_lmt:5;
-	u32 rts_ratefb_lmt:4;
-	u32 rty_lmt_en:1;
-	u32 data_rt_lmt:6;
-	u32 rtsrate:5;
-	u32 pcts_en:1;
-	u32 pcts_mask_idx:2;
+	u32 datarate : 7;
+	u32 try_rate : 1;
+	u32 data_ratefb_lmt : 5;
+	u32 rts_ratefb_lmt : 4;
+	u32 rty_lmt_en : 1;
+	u32 data_rt_lmt : 6;
+	u32 rtsrate : 5;
+	u32 pcts_en : 1;
+	u32 pcts_mask_idx : 2;
 
 	/*  Offset 20 */
-	u32 data_sc:4;
-	u32 data_short:1;
-	u32 data_bw:2;
-	u32 data_ldpc:1;
-	u32 data_stbc:2;
-	u32 vcs_stbc:2;
-	u32 rts_short:1;
-	u32 rts_sc:4;
-	u32 rsvd2016:7;
-	u32 tx_ant:4;
-	u32 txpwr_offset:3;
-	u32 rsvd2031:1;
+	u32 data_sc : 4;
+	u32 data_short : 1;
+	u32 data_bw : 2;
+	u32 data_ldpc : 1;
+	u32 data_stbc : 2;
+	u32 vcs_stbc : 2;
+	u32 rts_short : 1;
+	u32 rts_sc : 4;
+	u32 rsvd2016 : 7;
+	u32 tx_ant : 4;
+	u32 txpwr_offset : 3;
+	u32 rsvd2031 : 1;
 
 	/*  Offset 24 */
-	u32 sw_define:12;
-	u32 mbssid:4;
-	u32 antsel_A:3;
-	u32 antsel_B:3;
-	u32 antsel_C:3;
-	u32 antsel_D:3;
-	u32 rsvd2428:4;
+	u32 sw_define : 12;
+	u32 mbssid : 4;
+	u32 antsel_A : 3;
+	u32 antsel_B : 3;
+	u32 antsel_C : 3;
+	u32 antsel_D : 3;
+	u32 rsvd2428 : 4;
 
 	/*  Offset 28 */
-	u32 checksum:16;
-	u32 rsvd2816:8;
-	u32 usb_txagg_num:8;
+	u32 checksum : 16;
+	u32 rsvd2816 : 8;
+	u32 usb_txagg_num : 8;
 
 	/*  Offset 32 */
-	u32 rts_rc:6;
-	u32 bar_rty_th:2;
-	u32 data_rc:6;
-	u32 rsvd3214:1;
-	u32 en_hwseq:1;
-	u32 nextneadpage:8;
-	u32 tailpage:8;
+	u32 rts_rc : 6;
+	u32 bar_rty_th : 2;
+	u32 data_rc : 6;
+	u32 rsvd3214 : 1;
+	u32 en_hwseq : 1;
+	u32 nextneadpage : 8;
+	u32 tailpage : 8;
 
 	/*  Offset 36 */
-	u32 padding_len:11;
-	u32 txbf_path:1;
-	u32 seq:12;
-	u32 final_data_rate:8;
+	u32 padding_len : 11;
+	u32 txbf_path : 1;
+	u32 seq : 12;
+	u32 final_data_rate : 8;
 };
 
 #ifndef __INC_HAL8723BDESC_H
 #define __INC_HAL8723BDESC_H
 
-#define RX_STATUS_DESC_SIZE_8723B		24
+#define RX_STATUS_DESC_SIZE_8723B 24
 #define RX_DRV_INFO_SIZE_UNIT_8723B 8
 
-
 /* DWORD 0 */
-#define SET_RX_STATUS_DESC_PKT_LEN_8723B(__pRxStatusDesc, __Value)		SET_BITS_TO_LE_4BYTE(__pRxStatusDesc, 0, 14, __Value)
-#define SET_RX_STATUS_DESC_EOR_8723B(__pRxStatusDesc, __Value)		SET_BITS_TO_LE_4BYTE(__pRxStatusDesc, 30, 1, __Value)
-#define SET_RX_STATUS_DESC_OWN_8723B(__pRxStatusDesc, __Value)		SET_BITS_TO_LE_4BYTE(__pRxStatusDesc, 31, 1, __Value)
-
-#define GET_RX_STATUS_DESC_PKT_LEN_8723B(__pRxStatusDesc)			LE_BITS_TO_4BYTE(__pRxStatusDesc, 0, 14)
-#define GET_RX_STATUS_DESC_CRC32_8723B(__pRxStatusDesc)			LE_BITS_TO_4BYTE(__pRxStatusDesc, 14, 1)
-#define GET_RX_STATUS_DESC_ICV_8723B(__pRxStatusDesc)				LE_BITS_TO_4BYTE(__pRxStatusDesc, 15, 1)
-#define GET_RX_STATUS_DESC_DRVINFO_SIZE_8723B(__pRxStatusDesc)		LE_BITS_TO_4BYTE(__pRxStatusDesc, 16, 4)
-#define GET_RX_STATUS_DESC_SECURITY_8723B(__pRxStatusDesc)			LE_BITS_TO_4BYTE(__pRxStatusDesc, 20, 3)
-#define GET_RX_STATUS_DESC_QOS_8723B(__pRxStatusDesc)				LE_BITS_TO_4BYTE(__pRxStatusDesc, 23, 1)
-#define GET_RX_STATUS_DESC_SHIFT_8723B(__pRxStatusDesc)			LE_BITS_TO_4BYTE(__pRxStatusDesc, 24, 2)
-#define GET_RX_STATUS_DESC_PHY_STATUS_8723B(__pRxStatusDesc)			LE_BITS_TO_4BYTE(__pRxStatusDesc, 26, 1)
-#define GET_RX_STATUS_DESC_SWDEC_8723B(__pRxStatusDesc)			LE_BITS_TO_4BYTE(__pRxStatusDesc, 27, 1)
-#define GET_RX_STATUS_DESC_LAST_SEG_8723B(__pRxStatusDesc)			LE_BITS_TO_4BYTE(__pRxStatusDesc, 28, 1)
-#define GET_RX_STATUS_DESC_FIRST_SEG_8723B(__pRxStatusDesc)		LE_BITS_TO_4BYTE(__pRxStatusDesc, 29, 1)
-#define GET_RX_STATUS_DESC_EOR_8723B(__pRxStatusDesc)				LE_BITS_TO_4BYTE(__pRxStatusDesc, 30, 1)
-#define GET_RX_STATUS_DESC_OWN_8723B(__pRxStatusDesc)				LE_BITS_TO_4BYTE(__pRxStatusDesc, 31, 1)
+#define SET_RX_STATUS_DESC_PKT_LEN_8723B(__pRxStatusDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pRxStatusDesc, 0, 14, __Value)
+#define SET_RX_STATUS_DESC_EOR_8723B(__pRxStatusDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pRxStatusDesc, 30, 1, __Value)
+#define SET_RX_STATUS_DESC_OWN_8723B(__pRxStatusDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pRxStatusDesc, 31, 1, __Value)
+
+#define GET_RX_STATUS_DESC_PKT_LEN_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 0, 14)
+#define GET_RX_STATUS_DESC_CRC32_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 14, 1)
+#define GET_RX_STATUS_DESC_ICV_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 15, 1)
+#define GET_RX_STATUS_DESC_DRVINFO_SIZE_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 16, 4)
+#define GET_RX_STATUS_DESC_SECURITY_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 20, 3)
+#define GET_RX_STATUS_DESC_QOS_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 23, 1)
+#define GET_RX_STATUS_DESC_SHIFT_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 24, 2)
+#define GET_RX_STATUS_DESC_PHY_STATUS_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 26, 1)
+#define GET_RX_STATUS_DESC_SWDEC_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 27, 1)
+#define GET_RX_STATUS_DESC_LAST_SEG_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 28, 1)
+#define GET_RX_STATUS_DESC_FIRST_SEG_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 29, 1)
+#define GET_RX_STATUS_DESC_EOR_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 30, 1)
+#define GET_RX_STATUS_DESC_OWN_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc, 31, 1)
 
 /* DWORD 1 */
-#define GET_RX_STATUS_DESC_MACID_8723B(__pRxDesc)					LE_BITS_TO_4BYTE(__pRxDesc+4, 0, 7)
-#define GET_RX_STATUS_DESC_TID_8723B(__pRxDesc)						LE_BITS_TO_4BYTE(__pRxDesc+4, 8, 4)
-#define GET_RX_STATUS_DESC_AMSDU_8723B(__pRxDesc)					LE_BITS_TO_4BYTE(__pRxDesc+4, 13, 1)
-#define GET_RX_STATUS_DESC_RXID_MATCH_8723B(__pRxDesc)		LE_BITS_TO_4BYTE(__pRxDesc+4, 14, 1)
-#define GET_RX_STATUS_DESC_PAGGR_8723B(__pRxDesc)				LE_BITS_TO_4BYTE(__pRxDesc+4, 15, 1)
-#define GET_RX_STATUS_DESC_A1_FIT_8723B(__pRxDesc)				LE_BITS_TO_4BYTE(__pRxDesc+4, 16, 4)
-#define GET_RX_STATUS_DESC_CHKERR_8723B(__pRxDesc)				LE_BITS_TO_4BYTE(__pRxDesc+4, 20, 1)
-#define GET_RX_STATUS_DESC_IPVER_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+4, 21, 1)
-#define GET_RX_STATUS_DESC_IS_TCPUDP__8723B(__pRxDesc)		LE_BITS_TO_4BYTE(__pRxDesc+4, 22, 1)
-#define GET_RX_STATUS_DESC_CHK_VLD_8723B(__pRxDesc)	LE_BITS_TO_4BYTE(__pRxDesc+4, 23, 1)
-#define GET_RX_STATUS_DESC_PAM_8723B(__pRxDesc)				LE_BITS_TO_4BYTE(__pRxDesc+4, 24, 1)
-#define GET_RX_STATUS_DESC_PWR_8723B(__pRxDesc)				LE_BITS_TO_4BYTE(__pRxDesc+4, 25, 1)
-#define GET_RX_STATUS_DESC_MORE_DATA_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+4, 26, 1)
-#define GET_RX_STATUS_DESC_MORE_FRAG_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+4, 27, 1)
-#define GET_RX_STATUS_DESC_TYPE_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+4, 28, 2)
-#define GET_RX_STATUS_DESC_MC_8723B(__pRxDesc)				LE_BITS_TO_4BYTE(__pRxDesc+4, 30, 1)
-#define GET_RX_STATUS_DESC_BC_8723B(__pRxDesc)				LE_BITS_TO_4BYTE(__pRxDesc+4, 31, 1)
+#define GET_RX_STATUS_DESC_MACID_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 0, 7)
+#define GET_RX_STATUS_DESC_TID_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 8, 4)
+#define GET_RX_STATUS_DESC_AMSDU_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 13, 1)
+#define GET_RX_STATUS_DESC_RXID_MATCH_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 14, 1)
+#define GET_RX_STATUS_DESC_PAGGR_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 15, 1)
+#define GET_RX_STATUS_DESC_A1_FIT_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 16, 4)
+#define GET_RX_STATUS_DESC_CHKERR_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 20, 1)
+#define GET_RX_STATUS_DESC_IPVER_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 21, 1)
+#define GET_RX_STATUS_DESC_IS_TCPUDP__8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 22, 1)
+#define GET_RX_STATUS_DESC_CHK_VLD_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 23, 1)
+#define GET_RX_STATUS_DESC_PAM_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 24, 1)
+#define GET_RX_STATUS_DESC_PWR_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 25, 1)
+#define GET_RX_STATUS_DESC_MORE_DATA_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 26, 1)
+#define GET_RX_STATUS_DESC_MORE_FRAG_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 27, 1)
+#define GET_RX_STATUS_DESC_TYPE_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 28, 2)
+#define GET_RX_STATUS_DESC_MC_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 30, 1)
+#define GET_RX_STATUS_DESC_BC_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 4, 31, 1)
 
 /* DWORD 2 */
-#define GET_RX_STATUS_DESC_SEQ_8723B(__pRxStatusDesc)					LE_BITS_TO_4BYTE(__pRxStatusDesc+8, 0, 12)
-#define GET_RX_STATUS_DESC_FRAG_8723B(__pRxStatusDesc)				LE_BITS_TO_4BYTE(__pRxStatusDesc+8, 12, 4)
-#define GET_RX_STATUS_DESC_RX_IS_QOS_8723B(__pRxStatusDesc)		LE_BITS_TO_4BYTE(__pRxStatusDesc+8, 16, 1)
-#define GET_RX_STATUS_DESC_WLANHD_IV_LEN_8723B(__pRxStatusDesc)		LE_BITS_TO_4BYTE(__pRxStatusDesc+8, 18, 6)
-#define GET_RX_STATUS_DESC_RPT_SEL_8723B(__pRxStatusDesc)			LE_BITS_TO_4BYTE(__pRxStatusDesc+8, 28, 1)
+#define GET_RX_STATUS_DESC_SEQ_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc + 8, 0, 12)
+#define GET_RX_STATUS_DESC_FRAG_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc + 8, 12, 4)
+#define GET_RX_STATUS_DESC_RX_IS_QOS_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc + 8, 16, 1)
+#define GET_RX_STATUS_DESC_WLANHD_IV_LEN_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc + 8, 18, 6)
+#define GET_RX_STATUS_DESC_RPT_SEL_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc + 8, 28, 1)
 
 /* DWORD 3 */
-#define GET_RX_STATUS_DESC_RX_RATE_8723B(__pRxStatusDesc)				LE_BITS_TO_4BYTE(__pRxStatusDesc+12, 0, 7)
-#define GET_RX_STATUS_DESC_HTC_8723B(__pRxStatusDesc)					LE_BITS_TO_4BYTE(__pRxStatusDesc+12, 10, 1)
-#define GET_RX_STATUS_DESC_EOSP_8723B(__pRxStatusDesc)					LE_BITS_TO_4BYTE(__pRxStatusDesc+12, 11, 1)
-#define GET_RX_STATUS_DESC_BSSID_FIT_8723B(__pRxStatusDesc)		LE_BITS_TO_4BYTE(__pRxStatusDesc+12, 12, 2)
-#define GET_RX_STATUS_DESC_PATTERN_MATCH_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+12, 29, 1)
-#define GET_RX_STATUS_DESC_UNICAST_MATCH_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+12, 30, 1)
-#define GET_RX_STATUS_DESC_MAGIC_MATCH_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+12, 31, 1)
+#define GET_RX_STATUS_DESC_RX_RATE_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc + 12, 0, 7)
+#define GET_RX_STATUS_DESC_HTC_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc + 12, 10, 1)
+#define GET_RX_STATUS_DESC_EOSP_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc + 12, 11, 1)
+#define GET_RX_STATUS_DESC_BSSID_FIT_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc + 12, 12, 2)
+#define GET_RX_STATUS_DESC_PATTERN_MATCH_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 12, 29, 1)
+#define GET_RX_STATUS_DESC_UNICAST_MATCH_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 12, 30, 1)
+#define GET_RX_STATUS_DESC_MAGIC_MATCH_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 12, 31, 1)
 
 /* DWORD 6 */
-#define GET_RX_STATUS_DESC_SPLCP_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+16, 0, 1)
-#define GET_RX_STATUS_DESC_LDPC_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+16, 1, 1)
-#define GET_RX_STATUS_DESC_STBC_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+16, 2, 1)
-#define GET_RX_STATUS_DESC_BW_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+16, 4, 2)
+#define GET_RX_STATUS_DESC_SPLCP_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 16, 0, 1)
+#define GET_RX_STATUS_DESC_LDPC_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 16, 1, 1)
+#define GET_RX_STATUS_DESC_STBC_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 16, 2, 1)
+#define GET_RX_STATUS_DESC_BW_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 16, 4, 2)
 
 /* DWORD 5 */
-#define GET_RX_STATUS_DESC_TSFL_8723B(__pRxStatusDesc)				LE_BITS_TO_4BYTE(__pRxStatusDesc+20, 0, 32)
-
-#define GET_RX_STATUS_DESC_BUFF_ADDR_8723B(__pRxDesc)		LE_BITS_TO_4BYTE(__pRxDesc+24, 0, 32)
-#define GET_RX_STATUS_DESC_BUFF_ADDR64_8723B(__pRxDesc)			LE_BITS_TO_4BYTE(__pRxDesc+28, 0, 32)
+#define GET_RX_STATUS_DESC_TSFL_8723B(__pRxStatusDesc) \
+	LE_BITS_TO_4BYTE(__pRxStatusDesc + 20, 0, 32)
 
-#define SET_RX_STATUS_DESC_BUFF_ADDR_8723B(__pRxDesc, __Value)	SET_BITS_TO_LE_4BYTE(__pRxDesc+24, 0, 32, __Value)
+#define GET_RX_STATUS_DESC_BUFF_ADDR_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 24, 0, 32)
+#define GET_RX_STATUS_DESC_BUFF_ADDR64_8723B(__pRxDesc) \
+	LE_BITS_TO_4BYTE(__pRxDesc + 28, 0, 32)
 
+#define SET_RX_STATUS_DESC_BUFF_ADDR_8723B(__pRxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pRxDesc + 24, 0, 32, __Value)
 
 /*  Dword 0 */
-#define GET_TX_DESC_OWN_8723B(__pTxDesc)				LE_BITS_TO_4BYTE(__pTxDesc, 31, 1)
-
-#define SET_TX_DESC_PKT_SIZE_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc, 0, 16, __Value)
-#define SET_TX_DESC_OFFSET_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc, 16, 8, __Value)
-#define SET_TX_DESC_BMC_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc, 24, 1, __Value)
-#define SET_TX_DESC_HTC_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc, 25, 1, __Value)
-#define SET_TX_DESC_LAST_SEG_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc, 26, 1, __Value)
-#define SET_TX_DESC_FIRST_SEG_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc, 27, 1, __Value)
-#define SET_TX_DESC_LINIP_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc, 28, 1, __Value)
-#define SET_TX_DESC_NO_ACM_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc, 29, 1, __Value)
-#define SET_TX_DESC_GF_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc, 30, 1, __Value)
-#define SET_TX_DESC_OWN_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc, 31, 1, __Value)
+#define GET_TX_DESC_OWN_8723B(__pTxDesc) LE_BITS_TO_4BYTE(__pTxDesc, 31, 1)
+
+#define SET_TX_DESC_PKT_SIZE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc, 0, 16, __Value)
+#define SET_TX_DESC_OFFSET_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc, 16, 8, __Value)
+#define SET_TX_DESC_BMC_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc, 24, 1, __Value)
+#define SET_TX_DESC_HTC_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc, 25, 1, __Value)
+#define SET_TX_DESC_LAST_SEG_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc, 26, 1, __Value)
+#define SET_TX_DESC_FIRST_SEG_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc, 27, 1, __Value)
+#define SET_TX_DESC_LINIP_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc, 28, 1, __Value)
+#define SET_TX_DESC_NO_ACM_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc, 29, 1, __Value)
+#define SET_TX_DESC_GF_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc, 30, 1, __Value)
+#define SET_TX_DESC_OWN_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc, 31, 1, __Value)
 
 /*  Dword 1 */
-#define SET_TX_DESC_MACID_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+4, 0, 7, __Value)
-#define SET_TX_DESC_QUEUE_SEL_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+4, 8, 5, __Value)
-#define SET_TX_DESC_RDG_NAV_EXT_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+4, 13, 1, __Value)
-#define SET_TX_DESC_LSIG_TXOP_EN_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+4, 14, 1, __Value)
-#define SET_TX_DESC_PIFS_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+4, 15, 1, __Value)
-#define SET_TX_DESC_RATE_ID_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+4, 16, 5, __Value)
-#define SET_TX_DESC_EN_DESC_ID_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+4, 21, 1, __Value)
-#define SET_TX_DESC_SEC_TYPE_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+4, 22, 2, __Value)
-#define SET_TX_DESC_PKT_OFFSET_8723B(__pTxDesc, __Value)		SET_BITS_TO_LE_4BYTE(__pTxDesc+4, 24, 5, __Value)
-
+#define SET_TX_DESC_MACID_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 4, 0, 7, __Value)
+#define SET_TX_DESC_QUEUE_SEL_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 4, 8, 5, __Value)
+#define SET_TX_DESC_RDG_NAV_EXT_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 4, 13, 1, __Value)
+#define SET_TX_DESC_LSIG_TXOP_EN_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 4, 14, 1, __Value)
+#define SET_TX_DESC_PIFS_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 4, 15, 1, __Value)
+#define SET_TX_DESC_RATE_ID_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 4, 16, 5, __Value)
+#define SET_TX_DESC_EN_DESC_ID_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 4, 21, 1, __Value)
+#define SET_TX_DESC_SEC_TYPE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 4, 22, 2, __Value)
+#define SET_TX_DESC_PKT_OFFSET_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 4, 24, 5, __Value)
 
 /*  Dword 2 */
-#define SET_TX_DESC_PAID_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+8, 0,  9, __Value)
-#define SET_TX_DESC_CCA_RTS_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+8, 10, 2, __Value)
-#define SET_TX_DESC_AGG_ENABLE_8723B(__pTxDesc, __Value)		SET_BITS_TO_LE_4BYTE(__pTxDesc+8, 12, 1, __Value)
-#define SET_TX_DESC_RDG_ENABLE_8723B(__pTxDesc, __Value)		SET_BITS_TO_LE_4BYTE(__pTxDesc+8, 13, 1, __Value)
-#define SET_TX_DESC_AGG_BREAK_8723B(__pTxDesc, __Value)					SET_BITS_TO_LE_4BYTE(__pTxDesc+8, 16, 1, __Value)
-#define SET_TX_DESC_MORE_FRAG_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+8, 17, 1, __Value)
-#define SET_TX_DESC_RAW_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+8, 18, 1, __Value)
-#define SET_TX_DESC_SPE_RPT_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+8, 19, 1, __Value)
-#define SET_TX_DESC_AMPDU_DENSITY_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+8, 20, 3, __Value)
-#define SET_TX_DESC_BT_INT_8723B(__pTxDesc, __Value)			SET_BITS_TO_LE_4BYTE(__pTxDesc+8, 23, 1, __Value)
-#define SET_TX_DESC_GID_8723B(__pTxDesc, __Value)			SET_BITS_TO_LE_4BYTE(__pTxDesc+8, 24, 6, __Value)
-
+#define SET_TX_DESC_PAID_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 8, 0, 9, __Value)
+#define SET_TX_DESC_CCA_RTS_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 8, 10, 2, __Value)
+#define SET_TX_DESC_AGG_ENABLE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 8, 12, 1, __Value)
+#define SET_TX_DESC_RDG_ENABLE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 8, 13, 1, __Value)
+#define SET_TX_DESC_AGG_BREAK_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 8, 16, 1, __Value)
+#define SET_TX_DESC_MORE_FRAG_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 8, 17, 1, __Value)
+#define SET_TX_DESC_RAW_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 8, 18, 1, __Value)
+#define SET_TX_DESC_SPE_RPT_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 8, 19, 1, __Value)
+#define SET_TX_DESC_AMPDU_DENSITY_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 8, 20, 3, __Value)
+#define SET_TX_DESC_BT_INT_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 8, 23, 1, __Value)
+#define SET_TX_DESC_GID_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 8, 24, 6, __Value)
 
 /*  Dword 3 */
-#define SET_TX_DESC_WHEADER_LEN_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 0, 4, __Value)
-#define SET_TX_DESC_CHK_EN_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 4, 1, __Value)
-#define SET_TX_DESC_EARLY_MODE_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 5, 1, __Value)
-#define SET_TX_DESC_HWSEQ_SEL_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 6, 2, __Value)
-#define SET_TX_DESC_USE_RATE_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 8, 1, __Value)
-#define SET_TX_DESC_DISABLE_RTS_FB_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 9, 1, __Value)
-#define SET_TX_DESC_DISABLE_FB_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 10, 1, __Value)
-#define SET_TX_DESC_CTS2SELF_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 11, 1, __Value)
-#define SET_TX_DESC_RTS_ENABLE_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 12, 1, __Value)
-#define SET_TX_DESC_HW_RTS_ENABLE_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 13, 1, __Value)
-#define SET_TX_DESC_NAV_USE_HDR_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 15, 1, __Value)
-#define SET_TX_DESC_USE_MAX_LEN_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 16, 1, __Value)
-#define SET_TX_DESC_MAX_AGG_NUM_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 17, 5, __Value)
-#define SET_TX_DESC_NDPA_8723B(__pTxDesc, __Value)		SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 22, 2, __Value)
-#define SET_TX_DESC_AMPDU_MAX_TIME_8723B(__pTxDesc, __Value)		SET_BITS_TO_LE_4BYTE(__pTxDesc+12, 24, 8, __Value)
+#define SET_TX_DESC_WHEADER_LEN_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 0, 4, __Value)
+#define SET_TX_DESC_CHK_EN_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 4, 1, __Value)
+#define SET_TX_DESC_EARLY_MODE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 5, 1, __Value)
+#define SET_TX_DESC_HWSEQ_SEL_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 6, 2, __Value)
+#define SET_TX_DESC_USE_RATE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 8, 1, __Value)
+#define SET_TX_DESC_DISABLE_RTS_FB_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 9, 1, __Value)
+#define SET_TX_DESC_DISABLE_FB_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 10, 1, __Value)
+#define SET_TX_DESC_CTS2SELF_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 11, 1, __Value)
+#define SET_TX_DESC_RTS_ENABLE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 12, 1, __Value)
+#define SET_TX_DESC_HW_RTS_ENABLE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 13, 1, __Value)
+#define SET_TX_DESC_NAV_USE_HDR_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 15, 1, __Value)
+#define SET_TX_DESC_USE_MAX_LEN_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 16, 1, __Value)
+#define SET_TX_DESC_MAX_AGG_NUM_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 17, 5, __Value)
+#define SET_TX_DESC_NDPA_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 22, 2, __Value)
+#define SET_TX_DESC_AMPDU_MAX_TIME_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 12, 24, 8, __Value)
 
 /*  Dword 4 */
-#define SET_TX_DESC_TX_RATE_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+16, 0, 7, __Value)
-#define SET_TX_DESC_DATA_RATE_FB_LIMIT_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+16, 8, 5, __Value)
-#define SET_TX_DESC_RTS_RATE_FB_LIMIT_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+16, 13, 4, __Value)
-#define SET_TX_DESC_RETRY_LIMIT_ENABLE_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+16, 17, 1, __Value)
-#define SET_TX_DESC_DATA_RETRY_LIMIT_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+16, 18, 6, __Value)
-#define SET_TX_DESC_RTS_RATE_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+16, 24, 5, __Value)
-
+#define SET_TX_DESC_TX_RATE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 16, 0, 7, __Value)
+#define SET_TX_DESC_DATA_RATE_FB_LIMIT_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 16, 8, 5, __Value)
+#define SET_TX_DESC_RTS_RATE_FB_LIMIT_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 16, 13, 4, __Value)
+#define SET_TX_DESC_RETRY_LIMIT_ENABLE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 16, 17, 1, __Value)
+#define SET_TX_DESC_DATA_RETRY_LIMIT_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 16, 18, 6, __Value)
+#define SET_TX_DESC_RTS_RATE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 16, 24, 5, __Value)
 
 /*  Dword 5 */
-#define SET_TX_DESC_DATA_SC_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+20, 0, 4, __Value)
-#define SET_TX_DESC_DATA_SHORT_8723B(__pTxDesc, __Value)	SET_BITS_TO_LE_4BYTE(__pTxDesc+20, 4, 1, __Value)
-#define SET_TX_DESC_DATA_BW_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+20, 5, 2, __Value)
-#define SET_TX_DESC_DATA_LDPC_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+20, 7, 1, __Value)
-#define SET_TX_DESC_DATA_STBC_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+20, 8, 2, __Value)
-#define SET_TX_DESC_CTROL_STBC_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+20, 10, 2, __Value)
-#define SET_TX_DESC_RTS_SHORT_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+20, 12, 1, __Value)
-#define SET_TX_DESC_RTS_SC_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+20, 13, 4, __Value)
-
+#define SET_TX_DESC_DATA_SC_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 20, 0, 4, __Value)
+#define SET_TX_DESC_DATA_SHORT_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 20, 4, 1, __Value)
+#define SET_TX_DESC_DATA_BW_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 20, 5, 2, __Value)
+#define SET_TX_DESC_DATA_LDPC_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 20, 7, 1, __Value)
+#define SET_TX_DESC_DATA_STBC_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 20, 8, 2, __Value)
+#define SET_TX_DESC_CTROL_STBC_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 20, 10, 2, __Value)
+#define SET_TX_DESC_RTS_SHORT_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 20, 12, 1, __Value)
+#define SET_TX_DESC_RTS_SC_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 20, 13, 4, __Value)
 
 /*  Dword 6 */
-#define SET_TX_DESC_SW_DEFINE_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+24, 0, 12, __Value)
-#define SET_TX_DESC_ANTSEL_A_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+24, 16, 3, __Value)
-#define SET_TX_DESC_ANTSEL_B_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+24, 19, 3, __Value)
-#define SET_TX_DESC_ANTSEL_C_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+24, 22, 3, __Value)
-#define SET_TX_DESC_ANTSEL_D_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+24, 25, 3, __Value)
+#define SET_TX_DESC_SW_DEFINE_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 24, 0, 12, __Value)
+#define SET_TX_DESC_ANTSEL_A_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 24, 16, 3, __Value)
+#define SET_TX_DESC_ANTSEL_B_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 24, 19, 3, __Value)
+#define SET_TX_DESC_ANTSEL_C_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 24, 22, 3, __Value)
+#define SET_TX_DESC_ANTSEL_D_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 24, 25, 3, __Value)
 
 /*  Dword 7 */
-#define SET_TX_DESC_TX_DESC_CHECKSUM_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+28, 0, 16, __Value)
-#define SET_TX_DESC_USB_TXAGG_NUM_8723B(__pTxDesc, __Value) SET_BITS_TO_LE_4BYTE(__pTxDesc+28, 24, 8, __Value)
-#define SET_TX_DESC_SDIO_TXSEQ_8723B(__pTxDesc, __Value)			SET_BITS_TO_LE_4BYTE(__pTxDesc+28, 16, 8, __Value)
+#define SET_TX_DESC_TX_DESC_CHECKSUM_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 28, 0, 16, __Value)
+#define SET_TX_DESC_USB_TXAGG_NUM_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 28, 24, 8, __Value)
+#define SET_TX_DESC_SDIO_TXSEQ_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 28, 16, 8, __Value)
 
 /*  Dword 8 */
-#define SET_TX_DESC_HWSEQ_EN_8723B(__pTxDesc, __Value)			SET_BITS_TO_LE_4BYTE(__pTxDesc+32, 15, 1, __Value)
+#define SET_TX_DESC_HWSEQ_EN_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 32, 15, 1, __Value)
 
 /*  Dword 9 */
-#define SET_TX_DESC_SEQ_8723B(__pTxDesc, __Value)					SET_BITS_TO_LE_4BYTE(__pTxDesc+36, 12, 12, __Value)
+#define SET_TX_DESC_SEQ_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 36, 12, 12, __Value)
 
 /*  Dword 10 */
-#define SET_TX_DESC_TX_BUFFER_ADDRESS_8723B(__pTxDesc, __Value)		SET_BITS_TO_LE_4BYTE(__pTxDesc+40, 0, 32, __Value)
-#define GET_TX_DESC_TX_BUFFER_ADDRESS_8723B(__pTxDesc)	LE_BITS_TO_4BYTE(__pTxDesc+40, 0, 32)
+#define SET_TX_DESC_TX_BUFFER_ADDRESS_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 40, 0, 32, __Value)
+#define GET_TX_DESC_TX_BUFFER_ADDRESS_8723B(__pTxDesc) \
+	LE_BITS_TO_4BYTE(__pTxDesc + 40, 0, 32)
 
 /*  Dword 11 */
-#define SET_TX_DESC_NEXT_DESC_ADDRESS_8723B(__pTxDesc, __Value)		SET_BITS_TO_LE_4BYTE(__pTxDesc+48, 0, 32, __Value)
-
-
-#define SET_EARLYMODE_PKTNUM_8723B(__pAddr, __Value)					SET_BITS_TO_LE_4BYTE(__pAddr, 0, 4, __Value)
-#define SET_EARLYMODE_LEN0_8723B(__pAddr, __Value)					SET_BITS_TO_LE_4BYTE(__pAddr, 4, 15, __Value)
-#define SET_EARLYMODE_LEN1_1_8723B(__pAddr, __Value)					SET_BITS_TO_LE_4BYTE(__pAddr, 19, 13, __Value)
-#define SET_EARLYMODE_LEN1_2_8723B(__pAddr, __Value)					SET_BITS_TO_LE_4BYTE(__pAddr+4, 0, 2, __Value)
-#define SET_EARLYMODE_LEN2_8723B(__pAddr, __Value)					SET_BITS_TO_LE_4BYTE(__pAddr+4, 2, 15,	__Value)
-#define SET_EARLYMODE_LEN3_8723B(__pAddr, __Value)					SET_BITS_TO_LE_4BYTE(__pAddr+4, 17, 15, __Value)
+#define SET_TX_DESC_NEXT_DESC_ADDRESS_8723B(__pTxDesc, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pTxDesc + 48, 0, 32, __Value)
+
+#define SET_EARLYMODE_PKTNUM_8723B(__pAddr, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pAddr, 0, 4, __Value)
+#define SET_EARLYMODE_LEN0_8723B(__pAddr, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pAddr, 4, 15, __Value)
+#define SET_EARLYMODE_LEN1_1_8723B(__pAddr, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pAddr, 19, 13, __Value)
+#define SET_EARLYMODE_LEN1_2_8723B(__pAddr, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pAddr + 4, 0, 2, __Value)
+#define SET_EARLYMODE_LEN2_8723B(__pAddr, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pAddr + 4, 2, 15, __Value)
+#define SET_EARLYMODE_LEN3_8723B(__pAddr, __Value) \
+	SET_BITS_TO_LE_4BYTE(__pAddr + 4, 17, 15, __Value)
 
 #endif
 /*  */
 /*  */
-/* 	Rate */
+/*	Rate */
 /*  */
 /*  */
 /*  CCK Rates, TxHT = 0 */
-#define DESC8723B_RATE1M				0x00
-#define DESC8723B_RATE2M				0x01
-#define DESC8723B_RATE5_5M				0x02
-#define DESC8723B_RATE11M				0x03
+#define DESC8723B_RATE1M 0x00
+#define DESC8723B_RATE2M 0x01
+#define DESC8723B_RATE5_5M 0x02
+#define DESC8723B_RATE11M 0x03
 
 /*  OFDM Rates, TxHT = 0 */
-#define DESC8723B_RATE6M				0x04
-#define DESC8723B_RATE9M				0x05
-#define DESC8723B_RATE12M				0x06
-#define DESC8723B_RATE18M				0x07
-#define DESC8723B_RATE24M				0x08
-#define DESC8723B_RATE36M				0x09
-#define DESC8723B_RATE48M				0x0a
-#define DESC8723B_RATE54M				0x0b
+#define DESC8723B_RATE6M 0x04
+#define DESC8723B_RATE9M 0x05
+#define DESC8723B_RATE12M 0x06
+#define DESC8723B_RATE18M 0x07
+#define DESC8723B_RATE24M 0x08
+#define DESC8723B_RATE36M 0x09
+#define DESC8723B_RATE48M 0x0a
+#define DESC8723B_RATE54M 0x0b
 
 /*  MCS Rates, TxHT = 1 */
-#define DESC8723B_RATEMCS0				0x0c
-#define DESC8723B_RATEMCS1				0x0d
-#define DESC8723B_RATEMCS2				0x0e
-#define DESC8723B_RATEMCS3				0x0f
-#define DESC8723B_RATEMCS4				0x10
-#define DESC8723B_RATEMCS5				0x11
-#define DESC8723B_RATEMCS6				0x12
-#define DESC8723B_RATEMCS7				0x13
-
-#define		RX_HAL_IS_CCK_RATE_8723B(pDesc)\
-			(GET_RX_STATUS_DESC_RX_RATE_8723B(pDesc) == DESC8723B_RATE1M ||\
-			GET_RX_STATUS_DESC_RX_RATE_8723B(pDesc) == DESC8723B_RATE2M ||\
-			GET_RX_STATUS_DESC_RX_RATE_8723B(pDesc) == DESC8723B_RATE5_5M ||\
-			GET_RX_STATUS_DESC_RX_RATE_8723B(pDesc) == DESC8723B_RATE11M)
-
+#define DESC8723B_RATEMCS0 0x0c
+#define DESC8723B_RATEMCS1 0x0d
+#define DESC8723B_RATEMCS2 0x0e
+#define DESC8723B_RATEMCS3 0x0f
+#define DESC8723B_RATEMCS4 0x10
+#define DESC8723B_RATEMCS5 0x11
+#define DESC8723B_RATEMCS6 0x12
+#define DESC8723B_RATEMCS7 0x13
+
+#define RX_HAL_IS_CCK_RATE_8723B(pDesc)                                   \
+	(GET_RX_STATUS_DESC_RX_RATE_8723B(pDesc) == DESC8723B_RATE1M ||   \
+	 GET_RX_STATUS_DESC_RX_RATE_8723B(pDesc) == DESC8723B_RATE2M ||   \
+	 GET_RX_STATUS_DESC_RX_RATE_8723B(pDesc) == DESC8723B_RATE5_5M || \
+	 GET_RX_STATUS_DESC_RX_RATE_8723B(pDesc) == DESC8723B_RATE11M)
 
 void rtl8723b_update_txdesc(struct xmit_frame *pxmitframe, u8 *pmem);
-void rtl8723b_fill_fake_txdesc(struct adapter *padapter, u8 *pDesc, u32 BufferLen, u8 IsPsPoll, u8 IsBTQosNull, u8 bDataFrame);
+void rtl8723b_fill_fake_txdesc(struct adapter *padapter, u8 *pDesc,
+			       u32 BufferLen, u8 IsPsPoll, u8 IsBTQosNull,
+			       u8 bDataFrame);
 
 u32 rtl8723bs_hal_init(struct adapter *padapter);
 u32 rtl8723bs_hal_deinit(struct adapter *padapter);
 s32 rtl8723bs_init_xmit_priv(struct adapter *padapter);
 void rtl8723bs_free_xmit_priv(struct adapter *padapter);
 s32 rtl8723bs_hal_xmit(struct adapter *padapter, struct xmit_frame *pxmitframe);
-s32 rtl8723bs_mgnt_xmit(struct adapter *padapter, struct xmit_frame *pmgntframe);
-s32	rtl8723bs_hal_xmitframe_enqueue(struct adapter *padapter, struct xmit_frame *pxmitframe);
+s32 rtl8723bs_mgnt_xmit(struct adapter *padapter,
+			struct xmit_frame *pmgntframe);
+s32 rtl8723bs_hal_xmitframe_enqueue(struct adapter *padapter,
+				    struct xmit_frame *pxmitframe);
 s32 rtl8723bs_xmit_buf_handler(struct adapter *padapter);
 int rtl8723bs_xmit_thread(void *context);
 
diff --git a/drivers/staging/rtl8723bs/include/rtw_ap.h b/drivers/staging/rtl8723bs/include/rtw_ap.h
index 83e835eb6513f..b147ce36fb92b 100644
--- a/drivers/staging/rtl8723bs/include/rtw_ap.h
+++ b/drivers/staging/rtl8723bs/include/rtw_ap.h
@@ -15,7 +15,7 @@ void add_ratid(struct adapter *padapter, struct sta_info *psta, u8 rssi_level);
 void expire_timeout_chk(struct adapter *padapter);
 void update_sta_info_apmode(struct adapter *padapter, struct sta_info *psta);
 void start_bss_network(struct adapter *padapter);
-int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf,  int len);
+int rtw_check_beacon_data(struct adapter *padapter, u8 *pbuf, int len);
 void rtw_ap_restore_network(struct adapter *padapter);
 void rtw_set_macaddr_acl(struct adapter *padapter, int mode);
 int rtw_acl_add_sta(struct adapter *padapter, u8 *addr);
@@ -23,14 +23,17 @@ void rtw_acl_remove_sta(struct adapter *padapter, u8 *addr);
 
 u8 rtw_ap_set_pairwise_key(struct adapter *padapter, struct sta_info *psta);
 int rtw_ap_set_group_key(struct adapter *padapter, u8 *key, u8 alg, int keyid);
-int rtw_ap_set_wep_key(struct adapter *padapter, u8 *key, u8 keylen, int keyid, u8 set_tx);
+int rtw_ap_set_wep_key(struct adapter *padapter, u8 *key, u8 keylen, int keyid,
+		       u8 set_tx);
 
 void associated_clients_update(struct adapter *padapter, u8 updated);
-void bss_cap_update_on_sta_join(struct adapter *padapter, struct sta_info *psta);
+void bss_cap_update_on_sta_join(struct adapter *padapter,
+				struct sta_info *psta);
 u8 bss_cap_update_on_sta_leave(struct adapter *padapter, struct sta_info *psta);
 void sta_info_update(struct adapter *padapter, struct sta_info *psta);
 void ap_sta_info_defer_update(struct adapter *padapter, struct sta_info *psta);
-u8 ap_free_sta(struct adapter *padapter, struct sta_info *psta, bool active, u16 reason);
+u8 ap_free_sta(struct adapter *padapter, struct sta_info *psta, bool active,
+	       u16 reason);
 void rtw_sta_flush(struct adapter *padapter);
 void start_ap_mode(struct adapter *padapter);
 void stop_ap_mode(struct adapter *padapter);
diff --git a/drivers/staging/rtl8723bs/include/rtw_btcoex.h b/drivers/staging/rtl8723bs/include/rtw_btcoex.h
index 7651034987898..48cb2a202ae7e 100644
--- a/drivers/staging/rtl8723bs/include/rtw_btcoex.h
+++ b/drivers/staging/rtl8723bs/include/rtw_btcoex.h
@@ -9,10 +9,10 @@
 
 #include <drv_types.h>
 
-#define	PACKET_NORMAL			0
-#define	PACKET_DHCP				1
-#define	PACKET_ARP				2
-#define	PACKET_EAPOL			3
+#define PACKET_NORMAL 0
+#define PACKET_DHCP 1
+#define PACKET_ARP 2
+#define PACKET_EAPOL 3
 
 void rtw_btcoex_media_status_notify(struct adapter *padapter, u8 media_status);
 void rtw_btcoex_halt_notify(struct adapter *padapter);
@@ -20,7 +20,8 @@ void rtw_btcoex_halt_notify(struct adapter *padapter);
 /*  ================================================== */
 /*  Below Functions are called by BT-Coex */
 /*  ================================================== */
-void rtw_btcoex_reject_ap_aggregated_packet(struct adapter *padapter, u8 enable);
+void rtw_btcoex_reject_ap_aggregated_packet(struct adapter *padapter,
+					    u8 enable);
 void rtw_btcoex_lps_enter(struct adapter *padapter);
 void rtw_btcoex_lps_leave(struct adapter *padapter);
 
diff --git a/drivers/staging/rtl8723bs/include/rtw_byteorder.h b/drivers/staging/rtl8723bs/include/rtw_byteorder.h
index c3a65f9717932..0d16ca4f69f15 100644
--- a/drivers/staging/rtl8723bs/include/rtw_byteorder.h
+++ b/drivers/staging/rtl8723bs/include/rtw_byteorder.h
@@ -10,7 +10,7 @@
 #if defined(__LITTLE_ENDIAN)
 #include <linux/byteorder/little_endian.h>
 #else
-#  include <linux/byteorder/big_endian.h>
+#include <linux/byteorder/big_endian.h>
 #endif
 
 #endif /* _RTL871X_BYTEORDER_H_ */
diff --git a/drivers/staging/rtl8723bs/include/rtw_cmd.h b/drivers/staging/rtl8723bs/include/rtw_cmd.h
index f78aa0d7abc5a..ba10de8f4c170 100644
--- a/drivers/staging/rtl8723bs/include/rtw_cmd.h
+++ b/drivers/staging/rtl8723bs/include/rtw_cmd.h
@@ -9,90 +9,90 @@
 
 #include <linux/completion.h>
 
-#define C2H_MEM_SZ (16*1024)
-
-	#define FREE_CMDOBJ_SZ	128
-
-	#define MAX_CMDSZ	1024
-	#define MAX_RSPSZ	512
-	#define MAX_EVTSZ	1024
-
-	#define CMDBUFF_ALIGN_SZ 512
-
-	struct cmd_obj {
-		struct adapter *padapter;
-		u16 cmdcode;
-		u8 res;
-		u8 *parmbuf;
-		u32 cmdsz;
-		u8 *rsp;
-		u32 rspsz;
-		struct submit_ctx *sctx;
-		struct list_head	list;
-	};
-
-	/* cmd flags */
-	enum {
-		RTW_CMDF_DIRECTLY = BIT(0),
-		RTW_CMDF_WAIT_ACK = BIT(1),
-	};
-
-	struct cmd_priv {
-		struct completion cmd_queue_comp;
-		struct completion terminate_cmdthread_comp;
-		struct __queue	cmd_queue;
-		u8 cmd_seq;
-		u8 *cmd_buf;	/* shall be non-paged, and 4 bytes aligned */
-		u8 *cmd_allocated_buf;
-		u8 *rsp_buf;	/* shall be non-paged, and 4 bytes aligned */
-		u8 *rsp_allocated_buf;
-		u32 cmd_issued_cnt;
-		u32 cmd_done_cnt;
-		u32 rsp_cnt;
-		atomic_t cmdthd_running;
-		/* u8 cmdthd_running; */
-		u8 stop_req;
-		struct adapter *padapter;
-		struct mutex sctx_mutex;
-	};
-
-	struct	evt_priv {
-		struct work_struct c2h_wk;
-		bool c2h_wk_alive;
-		struct rtw_cbuf *c2h_queue;
-		#define C2H_QUEUE_MAX_LEN 10
-
-		atomic_t event_seq;
-		u8 *evt_buf;	/* shall be non-paged, and 4 bytes aligned */
-		u8 *evt_allocated_buf;
-		u32 evt_done_cnt;
-		u8 *c2h_mem;
-		u8 *allocated_c2h_mem;
-	};
+#define C2H_MEM_SZ (16 * 1024)
+
+#define FREE_CMDOBJ_SZ 128
+
+#define MAX_CMDSZ 1024
+#define MAX_RSPSZ 512
+#define MAX_EVTSZ 1024
+
+#define CMDBUFF_ALIGN_SZ 512
+
+struct cmd_obj {
+	struct adapter *padapter;
+	u16 cmdcode;
+	u8 res;
+	u8 *parmbuf;
+	u32 cmdsz;
+	u8 *rsp;
+	u32 rspsz;
+	struct submit_ctx *sctx;
+	struct list_head list;
+};
+
+/* cmd flags */
+enum {
+	RTW_CMDF_DIRECTLY = BIT(0),
+	RTW_CMDF_WAIT_ACK = BIT(1),
+};
+
+struct cmd_priv {
+	struct completion cmd_queue_comp;
+	struct completion terminate_cmdthread_comp;
+	struct __queue cmd_queue;
+	u8 cmd_seq;
+	u8 *cmd_buf; /* shall be non-paged, and 4 bytes aligned */
+	u8 *cmd_allocated_buf;
+	u8 *rsp_buf; /* shall be non-paged, and 4 bytes aligned */
+	u8 *rsp_allocated_buf;
+	u32 cmd_issued_cnt;
+	u32 cmd_done_cnt;
+	u32 rsp_cnt;
+	atomic_t cmdthd_running;
+	/* u8 cmdthd_running; */
+	u8 stop_req;
+	struct adapter *padapter;
+	struct mutex sctx_mutex;
+};
+
+struct evt_priv {
+	struct work_struct c2h_wk;
+	bool c2h_wk_alive;
+	struct rtw_cbuf *c2h_queue;
+#define C2H_QUEUE_MAX_LEN 10
+
+	atomic_t event_seq;
+	u8 *evt_buf; /* shall be non-paged, and 4 bytes aligned */
+	u8 *evt_allocated_buf;
+	u32 evt_done_cnt;
+	u8 *c2h_mem;
+	u8 *allocated_c2h_mem;
+};
 
 #define init_h2fwcmd_w_parm_no_rsp(pcmd, pparm, code) \
-do {\
-	INIT_LIST_HEAD(&pcmd->list);\
-	pcmd->cmdcode = code;\
-	pcmd->parmbuf = (u8 *)(pparm);\
-	pcmd->cmdsz = sizeof(*pparm);\
-	pcmd->rsp = NULL;\
-	pcmd->rspsz = 0;\
-} while (0)
+	do {                                          \
+		INIT_LIST_HEAD(&pcmd->list);          \
+		pcmd->cmdcode = code;                 \
+		pcmd->parmbuf = (u8 *)(pparm);        \
+		pcmd->cmdsz = sizeof(*pparm);         \
+		pcmd->rsp = NULL;                     \
+		pcmd->rspsz = 0;                      \
+	} while (0)
 
 #define init_h2fwcmd_w_parm_no_parm_rsp(pcmd, code) \
-do {\
-	INIT_LIST_HEAD(&pcmd->list);\
-	pcmd->cmdcode = code;\
-	pcmd->parmbuf = NULL;\
-	pcmd->cmdsz = 0;\
-	pcmd->rsp = NULL;\
-	pcmd->rspsz = 0;\
-} while (0)
+	do {                                        \
+		INIT_LIST_HEAD(&pcmd->list);        \
+		pcmd->cmdcode = code;               \
+		pcmd->parmbuf = NULL;               \
+		pcmd->cmdsz = 0;                    \
+		pcmd->rsp = NULL;                   \
+		pcmd->rspsz = 0;                    \
+	} while (0)
 
 struct c2h_evt_hdr {
-	u8 id:4;
-	u8 plen:4;
+	u8 id : 4;
+	u8 plen : 4;
 	u8 seq;
 	u8 payload[];
 };
@@ -124,12 +124,12 @@ enum {
 	DYNAMIC_CHK_WK_CID,
 	DM_CTRL_WK_CID,
 	PBC_POLLING_WK_CID,
-	POWER_SAVING_CTRL_WK_CID,/* IPS, AUTOSuspend */
+	POWER_SAVING_CTRL_WK_CID, /* IPS, AUTOSuspend */
 	LPS_CTRL_WK_CID,
 	ANT_SELECT_WK_CID,
 	P2P_PS_WK_CID,
 	P2P_PROTO_WK_CID,
-	CHECK_HIQ_WK_CID,/* for softap mode, check hi queue if empty */
+	CHECK_HIQ_WK_CID, /* for softap mode, check hi queue if empty */
 	INTEl_WIDI_WK_CID,
 	C2H_WK_CID,
 	RTP_TIMER_CFG_WK_CID,
@@ -221,7 +221,7 @@ The definition of mode:
 #define IW_MODE_MONITOR	6	 Passive monitor (listen only)
 
 */
-struct	setopmode_parm {
+struct setopmode_parm {
 	u8 mode;
 	u8 rsvd[3];
 };
@@ -236,9 +236,9 @@ Command-Event Mode
 */
 
 #define RTW_SSID_SCAN_AMOUNT 9 /*  for WEXT_CSCAN_AMOUNT 9 */
-#define RTW_CHANNEL_SCAN_AMOUNT (14+37)
+#define RTW_CHANNEL_SCAN_AMOUNT (14 + 37)
 struct sitesurvey_parm {
-	signed int scan_mode;	/* active: 1, passive: 0 */
+	signed int scan_mode; /* active: 1, passive: 0 */
 	u8 ssid_num;
 	u8 ch_num;
 	struct ndis_802_11_ssid ssid[RTW_SSID_SCAN_AMOUNT];
@@ -254,8 +254,8 @@ Command Mode
 
 */
 struct setauth_parm {
-	u8 mode;  /* 0: legacy open, 1: legacy shared 2: 802.1x */
-	u8 _1x;   /* 0: PSK, 1: TLS */
+	u8 mode; /* 0: legacy open, 1: legacy shared 2: 802.1x */
+	u8 _1x; /* 0: PSK, 1: TLS */
 	u8 rsvd[2];
 };
 
@@ -272,11 +272,11 @@ when 802.1x ==> keyid > 2 ==> unicast key
 
 */
 struct setkey_parm {
-	u8 algorithm;	/*  encryption algorithm, could be none, wep40, TKIP, CCMP, wep104 */
+	u8 algorithm; /*  encryption algorithm, could be none, wep40, TKIP, CCMP, wep104 */
 	u8 keyid;
-	u8 grpkey;		/*  1: this is the grpkey for 802.1x. 0: this is the unicast key for 802.1x */
-	u8 set_tx;		/*  1: main tx key for wep. 0: other key. */
-	u8 key[16];	/*  this could be 40 or 104 */
+	u8 grpkey; /*  1: this is the grpkey for 802.1x. 0: this is the unicast key for 802.1x */
+	u8 set_tx; /*  1: main tx key for wep. 0: other key. */
+	u8 key[16]; /*  this could be 40 or 104 */
 };
 
 /*
@@ -356,7 +356,7 @@ Notes: To setup the basic rate of RTL8711
 Command Mode
 
 */
-struct	setbasicrate_parm {
+struct setbasicrate_parm {
 	u8 basicrates[NumRates];
 };
 
@@ -395,7 +395,6 @@ Command-Rsp Mode
 */
 struct getdatarate_parm {
 	u32 rsvd;
-
 };
 
 /*
@@ -412,12 +411,12 @@ Command Mode
 
 */
 
-struct	setphyinfo_parm {
+struct setphyinfo_parm {
 	struct regulatory_class class_sets[NUM_REGULATORYS];
 	u8 status;
 };
 
-struct	getphyinfo_parm {
+struct getphyinfo_parm {
 	u32 rsvd;
 };
 
@@ -430,7 +429,7 @@ This command will be used when channel/modem/band is changed.
 Command Mode
 
 */
-struct	setphy_parm {
+struct setphy_parm {
 	u8 rfchannel;
 	u8 modem;
 };
@@ -443,9 +442,8 @@ Notes: To get the current setting of channel/modem/band
 Command-Rsp Mode
 
 */
-struct	getphy_parm {
+struct getphy_parm {
 	u32 rsvd;
-
 };
 
 struct Tx_Beacon_param {
@@ -550,9 +548,7 @@ struct RunInThread_param {
 	void *context;
 };
 
-
-#define GEN_CMD_CODE(cmd)	cmd ## _CMD_
-
+#define GEN_CMD_CODE(cmd) cmd##_CMD_
 
 /*
 
@@ -565,31 +561,39 @@ struct RunInThread_param {
 
 */
 
-#define H2C_RSP_OFFSET			512
+#define H2C_RSP_OFFSET 512
 
-#define H2C_SUCCESS			0x00
-#define H2C_SUCCESS_RSP			0x01
-#define H2C_DUPLICATED			0x02
-#define H2C_DROPPED			0x03
-#define H2C_PARAMETERS_ERROR		0x04
-#define H2C_REJECTED			0x05
-#define H2C_CMD_OVERFLOW		0x06
-#define H2C_RESERVED			0x07
+#define H2C_SUCCESS 0x00
+#define H2C_SUCCESS_RSP 0x01
+#define H2C_DUPLICATED 0x02
+#define H2C_DROPPED 0x03
+#define H2C_PARAMETERS_ERROR 0x04
+#define H2C_REJECTED 0x05
+#define H2C_CMD_OVERFLOW 0x06
+#define H2C_RESERVED 0x07
 
-u8 rtw_sitesurvey_cmd(struct adapter  *padapter, struct ndis_802_11_ssid *ssid, int ssid_num, struct rtw_ieee80211_channel *ch, int ch_num);
-extern u8 rtw_createbss_cmd(struct adapter  *padapter);
-int rtw_startbss_cmd(struct adapter  *padapter, int flags);
+u8 rtw_sitesurvey_cmd(struct adapter *padapter, struct ndis_802_11_ssid *ssid,
+		      int ssid_num, struct rtw_ieee80211_channel *ch,
+		      int ch_num);
+extern u8 rtw_createbss_cmd(struct adapter *padapter);
+int rtw_startbss_cmd(struct adapter *padapter, int flags);
 
 struct sta_info;
-extern u8 rtw_setstakey_cmd(struct adapter  *padapter, struct sta_info *sta, u8 unicast_key, bool enqueue);
-extern u8 rtw_clearstakey_cmd(struct adapter *padapter, struct sta_info *sta, u8 enqueue);
-
-extern u8 rtw_joinbss_cmd(struct adapter *padapter, struct wlan_network *pnetwork);
-u8 rtw_disassoc_cmd(struct adapter *padapter, u32 deauth_timeout_ms, bool enqueue);
-extern u8 rtw_setopmode_cmd(struct adapter  *padapter, enum ndis_802_11_network_infrastructure networktype, bool enqueue);
-extern u8 rtw_setrfintfs_cmd(struct adapter  *padapter, u8 mode);
-
-extern u8 rtw_gettssi_cmd(struct adapter  *padapter, u8 offset, u8 *pval);
+extern u8 rtw_setstakey_cmd(struct adapter *padapter, struct sta_info *sta,
+			    u8 unicast_key, bool enqueue);
+extern u8 rtw_clearstakey_cmd(struct adapter *padapter, struct sta_info *sta,
+			      u8 enqueue);
+
+extern u8 rtw_joinbss_cmd(struct adapter *padapter,
+			  struct wlan_network *pnetwork);
+u8 rtw_disassoc_cmd(struct adapter *padapter, u32 deauth_timeout_ms,
+		    bool enqueue);
+extern u8 rtw_setopmode_cmd(struct adapter *padapter,
+			    enum ndis_802_11_network_infrastructure networktype,
+			    bool enqueue);
+extern u8 rtw_setrfintfs_cmd(struct adapter *padapter, u8 mode);
+
+extern u8 rtw_gettssi_cmd(struct adapter *padapter, u8 offset, u8 *pval);
 extern u8 rtw_setfwdig_cmd(struct adapter *padapter, u8 type);
 extern u8 rtw_setfwra_cmd(struct adapter *padapter, u8 type);
 
@@ -613,24 +617,31 @@ extern u8 rtw_c2h_wk_cmd(struct adapter *padapter, u8 *c2h_evt);
 
 u8 rtw_drvextra_cmd_hdl(struct adapter *padapter, unsigned char *pbuf);
 
-extern void rtw_survey_cmd_callback(struct adapter  *padapter, struct cmd_obj *pcmd);
-extern void rtw_disassoc_cmd_callback(struct adapter  *padapter, struct cmd_obj *pcmd);
-extern void rtw_joinbss_cmd_callback(struct adapter  *padapter, struct cmd_obj *pcmd);
-extern void rtw_createbss_cmd_callback(struct adapter  *padapter, struct cmd_obj *pcmd);
-extern void rtw_getbbrfreg_cmdrsp_callback(struct adapter  *padapter, struct cmd_obj *pcmd);
-
-extern void rtw_setstaKey_cmdrsp_callback(struct adapter  *padapter,  struct cmd_obj *pcmd);
-extern void rtw_setassocsta_cmdrsp_callback(struct adapter  *padapter,  struct cmd_obj *pcmd);
-extern void rtw_getrttbl_cmdrsp_callback(struct adapter  *padapter,  struct cmd_obj *pcmd);
-
+extern void rtw_survey_cmd_callback(struct adapter *padapter,
+				    struct cmd_obj *pcmd);
+extern void rtw_disassoc_cmd_callback(struct adapter *padapter,
+				      struct cmd_obj *pcmd);
+extern void rtw_joinbss_cmd_callback(struct adapter *padapter,
+				     struct cmd_obj *pcmd);
+extern void rtw_createbss_cmd_callback(struct adapter *padapter,
+				       struct cmd_obj *pcmd);
+extern void rtw_getbbrfreg_cmdrsp_callback(struct adapter *padapter,
+					   struct cmd_obj *pcmd);
+
+extern void rtw_setstaKey_cmdrsp_callback(struct adapter *padapter,
+					  struct cmd_obj *pcmd);
+extern void rtw_setassocsta_cmdrsp_callback(struct adapter *padapter,
+					    struct cmd_obj *pcmd);
+extern void rtw_getrttbl_cmdrsp_callback(struct adapter *padapter,
+					 struct cmd_obj *pcmd);
 
 struct _cmd_callback {
 	u32 cmd_code;
-	void (*callback)(struct adapter  *padapter, struct cmd_obj *cmd);
+	void (*callback)(struct adapter *padapter, struct cmd_obj *cmd);
 };
 
 enum {
-	GEN_CMD_CODE(_Read_MACREG),	/*0*/
+	GEN_CMD_CODE(_Read_MACREG), /*0*/
 	GEN_CMD_CODE(_Write_MACREG),
 	GEN_CMD_CODE(_Read_BBREG),
 	GEN_CMD_CODE(_Write_BBREG),
@@ -641,18 +652,18 @@ enum {
 	GEN_CMD_CODE(_Read_EFUSE),
 	GEN_CMD_CODE(_Write_EFUSE),
 
-	GEN_CMD_CODE(_Read_CAM),	/*10*/
+	GEN_CMD_CODE(_Read_CAM), /*10*/
 	GEN_CMD_CODE(_Write_CAM),
 	GEN_CMD_CODE(_setBCNITV),
 	GEN_CMD_CODE(_setMBIDCFG),
-	GEN_CMD_CODE(_JoinBss),   /*14*/
+	GEN_CMD_CODE(_JoinBss), /*14*/
 	GEN_CMD_CODE(_DisConnect), /*15*/
 	GEN_CMD_CODE(_CreateBss),
 	GEN_CMD_CODE(_SetOpMode),
-	GEN_CMD_CODE(_SiteSurvey),  /*18*/
+	GEN_CMD_CODE(_SiteSurvey), /*18*/
 	GEN_CMD_CODE(_SetAuth),
 
-	GEN_CMD_CODE(_SetKey),	/*20*/
+	GEN_CMD_CODE(_SetKey), /*20*/
 	GEN_CMD_CODE(_SetStaKey),
 	GEN_CMD_CODE(_SetAssocSta),
 	GEN_CMD_CODE(_DelAssocSta),
@@ -663,7 +674,7 @@ enum {
 	GEN_CMD_CODE(_GetDataRate),
 	GEN_CMD_CODE(_SetPhyInfo),
 
-	GEN_CMD_CODE(_GetPhyInfo),	/*30*/
+	GEN_CMD_CODE(_GetPhyInfo), /*30*/
 	GEN_CMD_CODE(_SetPhy),
 	GEN_CMD_CODE(_GetPhy),
 	GEN_CMD_CODE(_readRssi),
@@ -686,7 +697,7 @@ enum {
 	GEN_CMD_CODE(_SetCrystalCap),
 	GEN_CMD_CODE(_SetSingleCarrierTx), /*50*/
 
-	GEN_CMD_CODE(_SetSingleToneTx),/*51*/
+	GEN_CMD_CODE(_SetSingleToneTx), /*51*/
 	GEN_CMD_CODE(_SetCarrierSuppressionTx),
 	GEN_CMD_CODE(_SetContinuousTx),
 	GEN_CMD_CODE(_SwitchBandwidth), /*54*/
@@ -707,9 +718,9 @@ enum {
 	MAX_H2CCMD
 };
 
-#define _GetBBReg_CMD_		_Read_BBREG_CMD_
-#define _SetBBReg_CMD_		_Write_BBREG_CMD_
-#define _GetRFReg_CMD_		_Read_RFREG_CMD_
-#define _SetRFReg_CMD_		_Write_RFREG_CMD_
+#define _GetBBReg_CMD_ _Read_BBREG_CMD_
+#define _SetBBReg_CMD_ _Write_BBREG_CMD_
+#define _GetRFReg_CMD_ _Read_RFREG_CMD_
+#define _SetRFReg_CMD_ _Write_RFREG_CMD_
 
 #endif /* __RTW_CMD_H_ */
diff --git a/drivers/staging/rtl8723bs/include/rtw_eeprom.h b/drivers/staging/rtl8723bs/include/rtw_eeprom.h
index 9b84105af816b..eac064d628736 100644
--- a/drivers/staging/rtl8723bs/include/rtw_eeprom.h
+++ b/drivers/staging/rtl8723bs/include/rtw_eeprom.h
@@ -7,32 +7,31 @@
 #ifndef __RTW_EEPROM_H__
 #define __RTW_EEPROM_H__
 
-
-#define	RTL8712_EEPROM_ID			0x8712
+#define RTL8712_EEPROM_ID 0x8712
 /* define	EEPROM_MAX_SIZE			256 */
 
-#define	HWSET_MAX_SIZE_128		128
-#define	HWSET_MAX_SIZE_256		256
-#define	HWSET_MAX_SIZE_512		512
+#define HWSET_MAX_SIZE_128 128
+#define HWSET_MAX_SIZE_256 256
+#define HWSET_MAX_SIZE_512 512
 
-#define	EEPROM_MAX_SIZE			HWSET_MAX_SIZE_512
+#define EEPROM_MAX_SIZE HWSET_MAX_SIZE_512
 
-#define	CLOCK_RATE					50			/* 100us */
+#define CLOCK_RATE 50 /* 100us */
 
 /*  EEPROM opcodes */
-#define EEPROM_READ_OPCODE		06
-#define EEPROM_WRITE_OPCODE		05
-#define EEPROM_ERASE_OPCODE		07
-#define EEPROM_EWEN_OPCODE		19      /*  Erase/write enable */
-#define EEPROM_EWDS_OPCODE		16      /*  Erase/write disable */
+#define EEPROM_READ_OPCODE 06
+#define EEPROM_WRITE_OPCODE 05
+#define EEPROM_ERASE_OPCODE 07
+#define EEPROM_EWEN_OPCODE 19 /*  Erase/write enable */
+#define EEPROM_EWDS_OPCODE 16 /*  Erase/write disable */
 
 /* Country codes */
-#define USA							0x555320
-#define EUROPE						0x1 /* temp, should be provided later */
-#define JAPAN						0x2 /* temp, should be provided later */
+#define USA 0x555320
+#define EUROPE 0x1 /* temp, should be provided later */
+#define JAPAN 0x2 /* temp, should be provided later */
 
-#define eeprom_cis0_sz	17
-#define eeprom_cis1_sz	50
+#define eeprom_cis0_sz 17
+#define eeprom_cis1_sz 50
 
 /*  */
 /*  Customer ID, note that: */
@@ -49,10 +48,10 @@ enum {
 	RT_CID_8187_HW_LED = 3,
 	RT_CID_8187_NETGEAR = 4,
 	RT_CID_WHQL = 5,
-	RT_CID_819x_CAMEO  = 6,
+	RT_CID_819x_CAMEO = 6,
 	RT_CID_819x_RUNTOP = 7,
 	RT_CID_819x_Senao = 8,
-	RT_CID_TOSHIBA = 9,	/*  Merge by Jacken, 2008/01/31. */
+	RT_CID_TOSHIBA = 9, /*  Merge by Jacken, 2008/01/31. */
 	RT_CID_819x_Netcore = 10,
 	RT_CID_Nettronix = 11,
 	RT_CID_DLINK = 12,
@@ -61,7 +60,8 @@ enum {
 	RT_CID_CHINA_MOBILE = 15,
 	RT_CID_819x_ALPHA = 16,
 	RT_CID_819x_Sitecom = 17,
-	RT_CID_CCX = 18, /*  It's set under CCX logo test and isn't demanded for CCX functions, but for test behavior like retry limit and tx report. By Bruce, 2009-02-17. */
+	RT_CID_CCX =
+		18, /*  It's set under CCX logo test and isn't demanded for CCX functions, but for test behavior like retry limit and tx report. By Bruce, 2009-02-17. */
 	RT_CID_819x_Lenovo = 19,
 	RT_CID_819x_QMI = 20,
 	RT_CID_819x_Edimax_Belkin = 21,
@@ -70,7 +70,8 @@ enum {
 	RT_CID_819x_MSI = 24,
 	RT_CID_819x_Acer = 25,
 	RT_CID_819x_AzWave_ASUS = 26,
-	RT_CID_819x_AzWave = 27, /*  For AzWave in PCIe, The ID is AzWave use and not only Asus */
+	RT_CID_819x_AzWave =
+		27, /*  For AzWave in PCIe, The ID is AzWave use and not only Asus */
 	RT_CID_819x_HP = 28,
 	RT_CID_819x_WNC_COREGA = 29,
 	RT_CID_819x_Arcadyan_Belkin = 30,
@@ -87,9 +88,10 @@ enum {
 	RT_CID_INTEL_CHINA = 41,
 	RT_CID_TPLINK_HPWR = 42,
 	RT_CID_819x_Sercomm_Netgear = 43,
-	RT_CID_819x_ALPHA_Dlink = 44,/* add by ylb 20121012 for customer led for alpha */
-	RT_CID_WNC_NEC = 45,/* add by page for NEC */
-	RT_CID_DNI_BUFFALO = 46,/* add by page for NEC */
+	RT_CID_819x_ALPHA_Dlink =
+		44, /* add by ylb 20121012 for customer led for alpha */
+	RT_CID_WNC_NEC = 45, /* add by page for NEC */
+	RT_CID_DNI_BUFFALO = 46, /* add by page for NEC */
 };
 
 struct eeprom_priv {
@@ -98,21 +100,22 @@ struct eeprom_priv {
 	u8 bloadmac_fail_flag;
 	u8 EepromOrEfuse;
 
-	u8 mac_addr[6];	/* PermanentAddress */
+	u8 mac_addr[6]; /* PermanentAddress */
 
-	u16 	channel_plan;
-	u16 	CustomerID;
+	u16 channel_plan;
+	u16 CustomerID;
 
-	u8 efuse_eeprom_data[EEPROM_MAX_SIZE]; /* 92C:256bytes, 88E:512bytes, we use union set (512bytes) */
+	u8 efuse_eeprom_data
+		[EEPROM_MAX_SIZE]; /* 92C:256bytes, 88E:512bytes, we use union set (512bytes) */
 	u8 adjuseVoltageVal;
 
 	u8 EEPROMRFGainOffset;
 	u8 EEPROMRFGainVal;
 
 	u8 sdio_setting;
-	u32 	ocr;
+	u32 ocr;
 	u8 cis0[eeprom_cis0_sz];
 	u8 cis1[eeprom_cis1_sz];
 };
 
-#endif  /* __RTL871X_EEPROM_H__ */
+#endif /* __RTL871X_EEPROM_H__ */
diff --git a/drivers/staging/rtl8723bs/include/rtw_efuse.h b/drivers/staging/rtl8723bs/include/rtw_efuse.h
index 808ba94a59987..e0b3f3ef2c44e 100644
--- a/drivers/staging/rtl8723bs/include/rtw_efuse.h
+++ b/drivers/staging/rtl8723bs/include/rtw_efuse.h
@@ -4,41 +4,41 @@
 #ifndef __RTW_EFUSE_H__
 #define __RTW_EFUSE_H__
 
-#define	PGPKT_DATA_SIZE		8
+#define PGPKT_DATA_SIZE 8
 
-#define	EFUSE_WIFI				0
-#define	EFUSE_BT				1
+#define EFUSE_WIFI 0
+#define EFUSE_BT 1
 
 enum {
-	TYPE_EFUSE_MAX_SECTION				= 0,
-	TYPE_EFUSE_REAL_CONTENT_LEN			= 1,
-	TYPE_AVAILABLE_EFUSE_BYTES_BANK		= 2,
-	TYPE_AVAILABLE_EFUSE_BYTES_TOTAL	= 3,
-	TYPE_EFUSE_MAP_LEN					= 4,
-	TYPE_EFUSE_PROTECT_BYTES_BANK		= 5,
-	TYPE_EFUSE_CONTENT_LEN_BANK			= 6,
+	TYPE_EFUSE_MAX_SECTION = 0,
+	TYPE_EFUSE_REAL_CONTENT_LEN = 1,
+	TYPE_AVAILABLE_EFUSE_BYTES_BANK = 2,
+	TYPE_AVAILABLE_EFUSE_BYTES_TOTAL = 3,
+	TYPE_EFUSE_MAP_LEN = 4,
+	TYPE_EFUSE_PROTECT_BYTES_BANK = 5,
+	TYPE_EFUSE_CONTENT_LEN_BANK = 6,
 };
 
-#define		EFUSE_MAX_MAP_LEN		512
+#define EFUSE_MAX_MAP_LEN 512
 
-#define		EFUSE_MAX_HW_SIZE		512
-#define		EFUSE_MAX_SECTION_BASE	16
+#define EFUSE_MAX_HW_SIZE 512
+#define EFUSE_MAX_SECTION_BASE 16
 
 #define EXT_HEADER(header) ((header & 0x1F) == 0x0F)
-#define ALL_WORDS_DISABLED(wde)	((wde & 0x0F) == 0x0F)
+#define ALL_WORDS_DISABLED(wde) ((wde & 0x0F) == 0x0F)
 #define GET_HDR_OFFSET_2_0(header) ((header & 0xE0) >> 5)
 
-#define		EFUSE_REPEAT_THRESHOLD_			3
+#define EFUSE_REPEAT_THRESHOLD_ 3
 
 /*  */
 /*	The following is for BT Efuse definition */
 /*  */
-#define		EFUSE_BT_MAX_MAP_LEN		1024
-#define		EFUSE_MAX_BANK			4
-#define		EFUSE_MAX_BT_BANK		(EFUSE_MAX_BANK-1)
+#define EFUSE_BT_MAX_MAP_LEN 1024
+#define EFUSE_MAX_BANK 4
+#define EFUSE_MAX_BT_BANK (EFUSE_MAX_BANK - 1)
 /*  */
 /*--------------------------Define Parameters-------------------------------*/
-#define		EFUSE_MAX_WORD_UNIT			4
+#define EFUSE_MAX_WORD_UNIT 4
 
 /*------------------------------Define structure----------------------------*/
 struct pgpkt_struct {
@@ -73,6 +73,7 @@ u8 rtw_efuse_one_byte_read(struct adapter *padapter, u16 addr, u8 *data);
 
 u8 rtw_efuse_read_1_byte(struct adapter *padapter, u16 Address);
 void rtw_efuse_shadow_map_update(struct adapter *padapter, u8 efuseType);
-void rtw_efuse_shadow_read(struct adapter *padapter, u8 Type, u16 Offset, u32 *Value);
+void rtw_efuse_shadow_read(struct adapter *padapter, u8 Type, u16 Offset,
+			   u32 *Value);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/include/rtw_event.h b/drivers/staging/rtl8723bs/include/rtw_event.h
index 62e0dec249adb..ef40dc49202f9 100644
--- a/drivers/staging/rtl8723bs/include/rtw_event.h
+++ b/drivers/staging/rtl8723bs/include/rtw_event.h
@@ -11,7 +11,7 @@
 Used to report a bss has been scanned
 
 */
-struct survey_event	{
+struct survey_event {
 	struct wlan_bssid_ex bss;
 };
 
@@ -23,8 +23,7 @@ bss_cnt indicates the number of bss that has been reported.
 
 */
 struct surveydone_event {
-	unsigned int	bss_cnt;
-
+	unsigned int bss_cnt;
 };
 
 /*
@@ -38,7 +37,7 @@ Used to report the link result of joining the given bss
 
 */
 struct joinbss_event {
-	struct	wlan_network	network;
+	struct wlan_network network;
 };
 
 /*
@@ -50,47 +49,42 @@ It is used in AP/Ad-HoC(M) mode.
 struct stassoc_event {
 	unsigned char macaddr[6];
 	unsigned char rsvd[2];
-	int    cam_id;
-
+	int cam_id;
 };
 
 struct stadel_event {
- unsigned char macaddr[6];
- unsigned char rsvd[2]; /* for reason */
- int mac_id;
+	unsigned char macaddr[6];
+	unsigned char rsvd[2]; /* for reason */
+	int mac_id;
 };
 
 struct wmm_event {
 	unsigned char wmm;
 };
 
-#define GEN_EVT_CODE(event)	event ## _EVT_
-
-
+#define GEN_EVT_CODE(event) event##_EVT_
 
 struct fwevent {
 	u32 parmsize;
 	void (*event_callback)(struct adapter *dev, u8 *pbuf);
 };
 
-
-#define C2HEVENT_SZ			32
+#define C2HEVENT_SZ 32
 
 struct event_node {
 	unsigned char *node;
 	unsigned char evt_code;
 	unsigned short evt_sz;
-	volatile int	*caller_ff_tail;
-	int	caller_ff_sz;
+	volatile int *caller_ff_tail;
+	int caller_ff_sz;
 };
 
-#define NETWORK_QUEUE_SZ	4
+#define NETWORK_QUEUE_SZ 4
 
 struct network_queue {
-	volatile int	head;
-	volatile int	tail;
+	volatile int head;
+	volatile int tail;
 	struct wlan_bssid_ex networks[NETWORK_QUEUE_SZ];
 };
 
-
 #endif /*  _WLANEVENT_H_ */
diff --git a/drivers/staging/rtl8723bs/include/rtw_ht.h b/drivers/staging/rtl8723bs/include/rtw_ht.h
index da3efba7112ae..31649b11148ef 100644
--- a/drivers/staging/rtl8723bs/include/rtw_ht.h
+++ b/drivers/staging/rtl8723bs/include/rtw_ht.h
@@ -7,12 +7,11 @@
 #ifndef _RTW_HT_H_
 #define _RTW_HT_H_
 
-
 struct ht_priv {
 	u8 ht_option;
-	u8 ampdu_enable;/* for enable Tx A-MPDU */
-	u8 tx_amsdu_enable;/* for enable Tx A-MSDU */
-	u8 bss_coexist;/* for 20/40 Bss coexist */
+	u8 ampdu_enable; /* for enable Tx A-MPDU */
+	u8 tx_amsdu_enable; /* for enable Tx A-MSDU */
+	u8 bss_coexist; /* for 20/40 Bss coexist */
 
 	/* u8 baddbareq_issued[16]; */
 	u32 tx_amsdu_maxlen; /*  1: 8k, 0:4k ; default:8k, for tx */
@@ -20,7 +19,7 @@ struct ht_priv {
 
 	u8 rx_ampdu_min_spacing;
 
-	u8 ch_offset;/* PRIME_CHNL_OFFSET */
+	u8 ch_offset; /* PRIME_CHNL_OFFSET */
 	u8 sgi_20m;
 	u8 sgi_40m;
 
@@ -34,7 +33,6 @@ struct ht_priv {
 	u8 beamform_cap;
 
 	struct ieee80211_ht_cap ht_cap;
-
 };
 
 enum {
@@ -52,7 +50,8 @@ enum {
 	RT_HT_CAP_USE_SOFTAP = 0x10,
 	RT_HT_CAP_USE_92SE = 0x20,
 	RT_HT_CAP_USE_88C_92C = 0x40,
-	RT_HT_CAP_USE_AP_CLIENT_MODE = 0x80,	/*  AP team request to reserve this bit, by Emily */
+	RT_HT_CAP_USE_AP_CLIENT_MODE =
+		0x80, /*  AP team request to reserve this bit, by Emily */
 };
 
 enum {
@@ -61,23 +60,29 @@ enum {
 	RT_HT_CAP_USE_JAGUAR_CCUT = 0x04,
 };
 
-#define	LDPC_HT_ENABLE_RX			BIT(0)
-#define	LDPC_HT_ENABLE_TX			BIT(1)
-#define	LDPC_HT_CAP_TX				BIT(3)
+#define LDPC_HT_ENABLE_RX BIT(0)
+#define LDPC_HT_ENABLE_TX BIT(1)
+#define LDPC_HT_CAP_TX BIT(3)
 
-#define	STBC_HT_ENABLE_RX			BIT(0)
-#define	STBC_HT_ENABLE_TX			BIT(1)
-#define	STBC_HT_CAP_TX				BIT(3)
+#define STBC_HT_ENABLE_RX BIT(0)
+#define STBC_HT_ENABLE_TX BIT(1)
+#define STBC_HT_CAP_TX BIT(3)
 
-#define	BEAMFORMING_HT_BEAMFORMER_ENABLE	BIT(0)	/*  Declare our NIC supports beamformer */
-#define	BEAMFORMING_HT_BEAMFORMEE_ENABLE	BIT(1)	/*  Declare our NIC supports beamformee */
+#define BEAMFORMING_HT_BEAMFORMER_ENABLE \
+	BIT(0) /*  Declare our NIC supports beamformer */
+#define BEAMFORMING_HT_BEAMFORMEE_ENABLE \
+	BIT(1) /*  Declare our NIC supports beamformee */
 
 /*  20/40 BSS Coexist */
-#define SET_EXT_CAPABILITY_ELE_BSS_COEXIST(_pEleStart, _val)			SET_BITS_TO_LE_1BYTE((_pEleStart), 0, 1, _val)
+#define SET_EXT_CAPABILITY_ELE_BSS_COEXIST(_pEleStart, _val) \
+	SET_BITS_TO_LE_1BYTE((_pEleStart), 0, 1, _val)
 
-#define GET_HT_CAPABILITY_ELE_LDPC_CAP(_pEleStart)				LE_BITS_TO_1BYTE(_pEleStart, 0, 1)
-#define GET_HT_CAPABILITY_ELE_TX_STBC(_pEleStart)					LE_BITS_TO_1BYTE(_pEleStart, 7, 1)
+#define GET_HT_CAPABILITY_ELE_LDPC_CAP(_pEleStart) \
+	LE_BITS_TO_1BYTE(_pEleStart, 0, 1)
+#define GET_HT_CAPABILITY_ELE_TX_STBC(_pEleStart) \
+	LE_BITS_TO_1BYTE(_pEleStart, 7, 1)
 
-#define GET_HT_CAPABILITY_ELE_RX_STBC(_pEleStart)					LE_BITS_TO_1BYTE((_pEleStart)+1, 0, 2)
+#define GET_HT_CAPABILITY_ELE_RX_STBC(_pEleStart) \
+	LE_BITS_TO_1BYTE((_pEleStart) + 1, 0, 2)
 
-#endif	/* _RTL871X_HT_H_ */
+#endif /* _RTL871X_HT_H_ */
diff --git a/drivers/staging/rtl8723bs/include/rtw_io.h b/drivers/staging/rtl8723bs/include/rtw_io.h
index 3c99a2bc19bd0..48633dac55b29 100644
--- a/drivers/staging/rtl8723bs/include/rtw_io.h
+++ b/drivers/staging/rtl8723bs/include/rtw_io.h
@@ -11,22 +11,23 @@
 struct intf_hdl;
 
 struct _io_ops {
-		u8 (*_read8)(struct intf_hdl *pintfhdl, u32 addr);
-		u16 (*_read16)(struct intf_hdl *pintfhdl, u32 addr);
-		u32 (*_read32)(struct intf_hdl *pintfhdl, u32 addr);
+	u8 (*_read8)(struct intf_hdl *pintfhdl, u32 addr);
+	u16 (*_read16)(struct intf_hdl *pintfhdl, u32 addr);
+	u32 (*_read32)(struct intf_hdl *pintfhdl, u32 addr);
 
-		int (*_write8)(struct intf_hdl *pintfhdl, u32 addr, u8 val);
-		int (*_write16)(struct intf_hdl *pintfhdl, u32 addr, u16 val);
-		int (*_write32)(struct intf_hdl *pintfhdl, u32 addr, u32 val);
+	int (*_write8)(struct intf_hdl *pintfhdl, u32 addr, u8 val);
+	int (*_write16)(struct intf_hdl *pintfhdl, u32 addr, u16 val);
+	int (*_write32)(struct intf_hdl *pintfhdl, u32 addr, u32 val);
 
-		u32 (*_write_port)(struct intf_hdl *pintfhdl, u32 addr, u32 cnt, u8 *pmem);
+	u32 (*_write_port)(struct intf_hdl *pintfhdl, u32 addr, u32 cnt,
+			   u8 *pmem);
 };
 
-struct	intf_hdl {
+struct intf_hdl {
 	struct adapter *padapter;
-	struct dvobj_priv *pintf_dev;/* 	pointer to &(padapter->dvobjpriv); */
+	struct dvobj_priv *pintf_dev; /* 	pointer to &(padapter->dvobjpriv); */
 
-	struct _io_ops	io_ops;
+	struct _io_ops io_ops;
 };
 
 #define SD_IO_TRY_CNT (8)
@@ -36,11 +37,9 @@ int rtw_inc_and_chk_continual_io_error(struct dvobj_priv *dvobj);
 void rtw_reset_continual_io_error(struct dvobj_priv *dvobj);
 
 struct io_priv {
-
 	struct adapter *padapter;
 
 	struct intf_hdl intf;
-
 };
 
 extern u8 rtw_read8(struct adapter *adapter, u32 addr);
@@ -53,6 +52,8 @@ extern int rtw_write32(struct adapter *adapter, u32 addr, u32 val);
 
 extern u32 rtw_write_port(struct adapter *adapter, u32 addr, u32 cnt, u8 *pmem);
 
-int rtw_init_io_priv(struct adapter *padapter, void (*set_intf_ops)(struct adapter *padapter, struct _io_ops *pops));
+int rtw_init_io_priv(struct adapter *padapter,
+		     void (*set_intf_ops)(struct adapter *padapter,
+					  struct _io_ops *pops));
 
-#endif	/* _RTL8711_IO_H_ */
+#endif /* _RTL8711_IO_H_ */
diff --git a/drivers/staging/rtl8723bs/include/rtw_ioctl_set.h b/drivers/staging/rtl8723bs/include/rtw_ioctl_set.h
index c3a1d1a84f789..bc49214425663 100644
--- a/drivers/staging/rtl8723bs/include/rtw_ioctl_set.h
+++ b/drivers/staging/rtl8723bs/include/rtw_ioctl_set.h
@@ -9,13 +9,20 @@
 
 typedef u8 NDIS_802_11_PMKID_VALUE[16];
 
-u8 rtw_set_802_11_authentication_mode(struct adapter *pdapter, enum ndis_802_11_authentication_mode authmode);
-u8 rtw_set_802_11_add_wep(struct adapter *padapter, struct ndis_802_11_wep *wep);
+u8 rtw_set_802_11_authentication_mode(
+	struct adapter *pdapter, enum ndis_802_11_authentication_mode authmode);
+u8 rtw_set_802_11_add_wep(struct adapter *padapter,
+			  struct ndis_802_11_wep *wep);
 u8 rtw_set_802_11_disassociate(struct adapter *padapter);
-u8 rtw_set_802_11_bssid_list_scan(struct adapter *padapter, struct ndis_802_11_ssid *pssid, int ssid_max_num);
-u8 rtw_set_802_11_infrastructure_mode(struct adapter *padapter, enum ndis_802_11_network_infrastructure networktype);
+u8 rtw_set_802_11_bssid_list_scan(struct adapter *padapter,
+				  struct ndis_802_11_ssid *pssid,
+				  int ssid_max_num);
+u8 rtw_set_802_11_infrastructure_mode(
+	struct adapter *padapter,
+	enum ndis_802_11_network_infrastructure networktype);
 u8 rtw_set_802_11_ssid(struct adapter *padapter, struct ndis_802_11_ssid *ssid);
-u8 rtw_set_802_11_connect(struct adapter *padapter, u8 *bssid, struct ndis_802_11_ssid *ssid);
+u8 rtw_set_802_11_connect(struct adapter *padapter, u8 *bssid,
+			  struct ndis_802_11_ssid *ssid);
 
 u8 rtw_validate_bssid(u8 *bssid);
 u8 rtw_validate_ssid(struct ndis_802_11_ssid *ssid);
diff --git a/drivers/staging/rtl8723bs/include/rtw_mlme.h b/drivers/staging/rtl8723bs/include/rtw_mlme.h
index 8cc96164e1cf2..77b4342c62c4d 100644
--- a/drivers/staging/rtl8723bs/include/rtw_mlme.h
+++ b/drivers/staging/rtl8723bs/include/rtw_mlme.h
@@ -7,49 +7,48 @@
 #ifndef __RTW_MLME_H_
 #define __RTW_MLME_H_
 
-
-#define	MAX_BSS_CNT	128
+#define MAX_BSS_CNT 128
 /* define   MAX_JOIN_TIMEOUT	2000 */
 /* define   MAX_JOIN_TIMEOUT	2500 */
-#define   MAX_JOIN_TIMEOUT	6500
+#define MAX_JOIN_TIMEOUT 6500
 
-/* 	Commented by Albert 20101105 */
-/* 	Increase the scanning timeout because of increasing the SURVEY_TO value. */
+/*	Commented by Albert 20101105 */
+/*	Increase the scanning timeout because of increasing the SURVEY_TO value. */
 
-#define		SCANNING_TIMEOUT	8000
+#define SCANNING_TIMEOUT 8000
 
-#define	SCANQUEUE_LIFETIME 20000 /*  20sec, unit:msec */
+#define SCANQUEUE_LIFETIME 20000 /*  20sec, unit:msec */
 
-#define WIFI_NULL_STATE		0x00000000
-#define WIFI_ASOC_STATE		0x00000001		/*  Under Linked state... */
-#define WIFI_SLEEP_STATE	0x00000004
-#define WIFI_STATION_STATE	0x00000008
-#define	WIFI_AP_STATE			0x00000010
-#define	WIFI_ADHOC_STATE		0x00000020
-#define WIFI_ADHOC_MASTER_STATE	0x00000040
-#define WIFI_UNDER_LINKING	0x00000080
+#define WIFI_NULL_STATE 0x00000000
+#define WIFI_ASOC_STATE 0x00000001 /*  Under Linked state... */
+#define WIFI_SLEEP_STATE 0x00000004
+#define WIFI_STATION_STATE 0x00000008
+#define WIFI_AP_STATE 0x00000010
+#define WIFI_ADHOC_STATE 0x00000020
+#define WIFI_ADHOC_MASTER_STATE 0x00000040
+#define WIFI_UNDER_LINKING 0x00000080
 
-#define WIFI_UNDER_WPS			0x00000100
-#define	WIFI_STA_ALIVE_CHK_STATE	0x00000400
-#define	WIFI_SITE_MONITOR			0x00000800		/* to indicate the station is under site surveying */
+#define WIFI_UNDER_WPS 0x00000100
+#define WIFI_STA_ALIVE_CHK_STATE 0x00000400
+#define WIFI_SITE_MONITOR \
+	0x00000800 /* to indicate the station is under site surveying */
 
 /* ifdef UNDER_MPTEST */
-#define	WIFI_MP_STATE							0x00010000
+#define WIFI_MP_STATE 0x00010000
 /* endif */
 
 /* define _FW_UNDER_CMD		WIFI_UNDER_CMD */
-#define _FW_UNDER_LINKING	WIFI_UNDER_LINKING
-#define _FW_LINKED			WIFI_ASOC_STATE
-#define _FW_UNDER_SURVEY	WIFI_SITE_MONITOR
-
+#define _FW_UNDER_LINKING WIFI_UNDER_LINKING
+#define _FW_LINKED WIFI_ASOC_STATE
+#define _FW_UNDER_SURVEY WIFI_SITE_MONITOR
 
 enum {
- dot11AuthAlgrthm_Open = 0,
- dot11AuthAlgrthm_Shared,
- dot11AuthAlgrthm_8021X,
- dot11AuthAlgrthm_Auto,
- dot11AuthAlgrthm_WAPI,
- dot11AuthAlgrthm_MaxNum
+	dot11AuthAlgrthm_Open = 0,
+	dot11AuthAlgrthm_Shared,
+	dot11AuthAlgrthm_8021X,
+	dot11AuthAlgrthm_Auto,
+	dot11AuthAlgrthm_WAPI,
+	dot11AuthAlgrthm_MaxNum
 };
 
 /*  Scan type including active and passive scan. */
@@ -86,27 +85,27 @@ which take __queue.lock.
 */
 
 struct sitesurvey_ctrl {
-	u64	last_tx_pkts;
-	uint	last_rx_pkts;
-	signed int	traffic_busy;
-	struct timer_list	sitesurvey_ctrl_timer;
+	u64 last_tx_pkts;
+	uint last_rx_pkts;
+	signed int traffic_busy;
+	struct timer_list sitesurvey_ctrl_timer;
 };
 
 struct rt_link_detect_t {
-	u32			num_tx_ok_in_period;
-	u32			num_rx_ok_in_period;
-	u32			num_rx_unicast_ok_in_period;
-	bool			busy_traffic;
-	bool			tx_busy_traffic;
-	bool			rx_busy_traffic;
+	u32 num_tx_ok_in_period;
+	u32 num_rx_ok_in_period;
+	u32 num_rx_unicast_ok_in_period;
+	bool busy_traffic;
+	bool tx_busy_traffic;
+	bool rx_busy_traffic;
 	/* For interrupt migration purpose. */
-	bool			higher_busy_traffic;
+	bool higher_busy_traffic;
 	/* We may disable Tx interrupt according as Rx traffic. */
-	bool			higher_busy_rx_traffic;
+	bool higher_busy_rx_traffic;
 	/* We may disable Tx interrupt according as Tx traffic. */
-	bool			higher_busy_tx_traffic;
-	u8			traffic_transition_count;
-	u32			low_power_transition_count;
+	bool higher_busy_tx_traffic;
+	u8 traffic_transition_count;
+	u32 low_power_transition_count;
 };
 
 /* used for mlme_priv.roam_flags */
@@ -117,9 +116,9 @@ enum {
 };
 
 struct mlme_priv {
-
-	spinlock_t	lock;
-	signed int	fw_state;	/* shall we protect this variable? maybe not necessarily... */
+	spinlock_t lock;
+	signed int
+		fw_state; /* shall we protect this variable? maybe not necessarily... */
 	u8 bScanInProcess;
 	u8 to_join; /* flag */
 
@@ -129,20 +128,21 @@ struct mlme_priv {
 	u8 roam_rssi_diff_th; /* rssi difference threshold for active scan candidate selection */
 	u32 roam_scan_int_ms; /* scan interval for active roam */
 	u32 roam_scanr_exp_ms; /* scan result expire time in ms  for roam */
-	u8 roam_tgt_addr[ETH_ALEN]; /* request to roam to specific target without other consideration */
+	u8 roam_tgt_addr
+		[ETH_ALEN]; /* request to roam to specific target without other consideration */
 
 	u8 *nic_hdl;
 
 	u8 not_indic_disco;
-	struct list_head		*pscanned;
-	struct __queue	free_bss_pool;
-	struct __queue	scanned_queue;
+	struct list_head *pscanned;
+	struct __queue free_bss_pool;
+	struct __queue scanned_queue;
 	u8 *free_bss_buf;
 
-	struct ndis_802_11_ssid	assoc_ssid;
+	struct ndis_802_11_ssid assoc_ssid;
 	u8 assoc_bssid[6];
 
-	struct wlan_network	cur_network;
+	struct wlan_network cur_network;
 	struct wlan_network *cur_network_scanned;
 
 	/* uint wireless_mode; no used, remove it */
@@ -154,8 +154,10 @@ struct mlme_priv {
 	uint assoc_by_bssid;
 	uint assoc_by_rssi;
 
-	struct timer_list scan_to_timer; /*  driver itself handles scan_timeout status. */
-	unsigned long scan_start_time; /*  used to evaluate the time spent in scanning */
+	struct timer_list
+		scan_to_timer; /*  driver itself handles scan_timeout status. */
+	unsigned long
+		scan_start_time; /*  used to evaluate the time spent in scanning */
 
 	struct timer_list set_scan_deny_timer;
 	atomic_t set_scan_deny; /* 0: allowed, 1: deny */
@@ -168,17 +170,16 @@ struct mlme_priv {
 	/* Number of HT AP/stations 20 MHz */
 	/* int num_sta_ht_20mhz; */
 
-
 	int num_FortyMHzIntolerant;
 
 	struct ht_priv htpriv;
 
-	struct rt_link_detect_t	link_detect_info;
-	struct timer_list	dynamic_chk_timer; /* dynamic/periodic check timer */
+	struct rt_link_detect_t link_detect_info;
+	struct timer_list dynamic_chk_timer; /* dynamic/periodic check timer */
 
 	u8 acm_mask; /*  for wmm acm mask */
 	u8 ChannelPlan;
-	enum rt_scan_type	scan_mode; /*  active: 1, passive: 0 */
+	enum rt_scan_type scan_mode; /*  active: 1, passive: 0 */
 
 	u8 *wps_probe_req_ie;
 	u32 wps_probe_req_ie_len;
@@ -236,11 +237,11 @@ struct mlme_priv {
 	u32 p2p_go_probe_resp_ie_len; /* for GO */
 	u32 p2p_assoc_req_ie_len;
 
-	spinlock_t	bcn_update_lock;
+	spinlock_t bcn_update_lock;
 	u8 update_bcn;
 
 	u8 NumOfBcnInfoChkFail;
-	unsigned long	timeBcnInfoChkStart;
+	unsigned long timeBcnInfoChkStart;
 };
 
 void rtw_mlme_reset_auto_scan_int(struct adapter *adapter);
@@ -268,22 +269,27 @@ extern void _rtw_scan_timeout_handler(struct timer_list *t);
 int event_thread(void *context);
 
 extern void rtw_free_network_queue(struct adapter *adapter, u8 isfreeall);
-extern int rtw_init_mlme_priv(struct adapter *adapter);/*  (struct mlme_priv *pmlmepriv); */
+extern int rtw_init_mlme_priv(
+	struct adapter *adapter); /*  (struct mlme_priv *pmlmepriv); */
 
 extern void rtw_free_mlme_priv(struct mlme_priv *pmlmepriv);
 
-
-extern signed int rtw_select_and_join_from_scanned_queue(struct mlme_priv *pmlmepriv);
-extern signed int rtw_set_key(struct adapter *adapter, struct security_priv *psecuritypriv, signed int keyid, u8 set_tx, bool enqueue);
-extern signed int rtw_set_auth(struct adapter *adapter, struct security_priv *psecuritypriv);
+extern signed int
+rtw_select_and_join_from_scanned_queue(struct mlme_priv *pmlmepriv);
+extern signed int rtw_set_key(struct adapter *adapter,
+			      struct security_priv *psecuritypriv,
+			      signed int keyid, u8 set_tx, bool enqueue);
+extern signed int rtw_set_auth(struct adapter *adapter,
+			       struct security_priv *psecuritypriv);
 
 static inline u8 *get_bssid(struct mlme_priv *pmlmepriv)
-{	/* if sta_mode:pmlmepriv->cur_network.network.mac_address => bssid */
+{ /* if sta_mode:pmlmepriv->cur_network.network.mac_address => bssid */
 	/*  if adhoc_mode:pmlmepriv->cur_network.network.mac_address => ibss mac address */
 	return pmlmepriv->cur_network.network.mac_address;
 }
 
-static inline signed int check_fwstate(struct mlme_priv *pmlmepriv, signed int state)
+static inline signed int check_fwstate(struct mlme_priv *pmlmepriv,
+				       signed int state)
 {
 	if (pmlmepriv->fw_state & state)
 		return true;
@@ -320,21 +326,30 @@ static inline void _clr_fwstate_(struct mlme_priv *pmlmepriv, signed int state)
 }
 
 extern u16 rtw_get_capability(struct wlan_bssid_ex *bss);
-extern void rtw_update_scanned_network(struct adapter *adapter, struct wlan_bssid_ex *target);
-extern void rtw_disconnect_hdl_under_linked(struct adapter *adapter, struct sta_info *psta, u8 free_assoc);
+extern void rtw_update_scanned_network(struct adapter *adapter,
+				       struct wlan_bssid_ex *target);
+extern void rtw_disconnect_hdl_under_linked(struct adapter *adapter,
+					    struct sta_info *psta,
+					    u8 free_assoc);
 extern void rtw_generate_random_ibss(u8 *pibss);
-extern struct wlan_network *rtw_find_network(struct __queue *scanned_queue, u8 *addr);
-extern struct wlan_network *rtw_get_oldest_wlan_network(struct __queue *scanned_queue);
-struct wlan_network *_rtw_find_same_network(struct __queue *scanned_queue, struct wlan_network *network);
-
-extern void rtw_free_assoc_resources(struct adapter *adapter, int lock_scanned_queue);
+extern struct wlan_network *rtw_find_network(struct __queue *scanned_queue,
+					     u8 *addr);
+extern struct wlan_network *
+rtw_get_oldest_wlan_network(struct __queue *scanned_queue);
+struct wlan_network *_rtw_find_same_network(struct __queue *scanned_queue,
+					    struct wlan_network *network);
+
+extern void rtw_free_assoc_resources(struct adapter *adapter,
+				     int lock_scanned_queue);
 extern void rtw_indicate_disconnect(struct adapter *adapter);
 extern void rtw_indicate_connect(struct adapter *adapter);
 void rtw_indicate_scan_done(struct adapter *padapter, bool aborted);
 void rtw_scan_abort(struct adapter *adapter);
 
-extern int rtw_restruct_sec_ie(struct adapter *adapter, u8 *in_ie, u8 *out_ie, uint in_len);
-extern int rtw_restruct_wmm_ie(struct adapter *adapter, u8 *in_ie, u8 *out_ie, uint in_len, uint initial_out_len);
+extern int rtw_restruct_sec_ie(struct adapter *adapter, u8 *in_ie, u8 *out_ie,
+			       uint in_len);
+extern int rtw_restruct_wmm_ie(struct adapter *adapter, u8 *in_ie, u8 *out_ie,
+			       uint in_len, uint initial_out_len);
 extern void rtw_init_registrypriv_dev_network(struct adapter *adapter);
 
 extern void rtw_update_registrypriv_dev_network(struct adapter *adapter);
@@ -355,12 +370,13 @@ extern void _rtw_free_mlme_priv(struct mlme_priv *pmlmepriv);
 
 extern struct wlan_network *rtw_alloc_network(struct mlme_priv *pmlmepriv);
 
+extern void _rtw_free_network(struct mlme_priv *pmlmepriv,
+			      struct wlan_network *pnetwork, u8 isfreeall);
+extern void _rtw_free_network_nolock(struct mlme_priv *pmlmepriv,
+				     struct wlan_network *pnetwork);
 
-extern void _rtw_free_network(struct mlme_priv *pmlmepriv, struct wlan_network *pnetwork, u8 isfreeall);
-extern void _rtw_free_network_nolock(struct mlme_priv *pmlmepriv, struct wlan_network *pnetwork);
-
-
-extern struct wlan_network *_rtw_find_network(struct __queue *scanned_queue, u8 *addr);
+extern struct wlan_network *_rtw_find_network(struct __queue *scanned_queue,
+					      u8 *addr);
 
 bool rtw_if_up(struct adapter *padapter);
 
@@ -369,21 +385,27 @@ bool rtw_linked_check(struct adapter *padapter);
 u8 *rtw_get_capability_from_ie(u8 *ie);
 u8 *rtw_get_beacon_interval_from_ie(u8 *ie);
 
-
 void rtw_joinbss_reset(struct adapter *padapter);
 
 void rtw_ht_use_default_setting(struct adapter *padapter);
 void rtw_build_wmm_ie_ht(struct adapter *padapter, u8 *out_ie, uint *pout_len);
-unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie, u8 *out_ie, uint in_len, uint *pout_len, u8 channel);
-void rtw_update_ht_cap(struct adapter *padapter, u8 *pie, uint ie_len, u8 channel);
-void rtw_issue_addbareq_cmd(struct adapter *padapter, struct xmit_frame *pxmitframe);
-void rtw_append_exented_cap(struct adapter *padapter, u8 *out_ie, uint *pout_len);
+unsigned int rtw_restructure_ht_ie(struct adapter *padapter, u8 *in_ie,
+				   u8 *out_ie, uint in_len, uint *pout_len,
+				   u8 channel);
+void rtw_update_ht_cap(struct adapter *padapter, u8 *pie, uint ie_len,
+		       u8 channel);
+void rtw_issue_addbareq_cmd(struct adapter *padapter,
+			    struct xmit_frame *pxmitframe);
+void rtw_append_exented_cap(struct adapter *padapter, u8 *out_ie,
+			    uint *pout_len);
 
 bool rtw_is_same_ibss(struct adapter *adapter, struct wlan_network *pnetwork);
-int is_same_network(struct wlan_bssid_ex *src, struct wlan_bssid_ex *dst, u8 feature);
+int is_same_network(struct wlan_bssid_ex *src, struct wlan_bssid_ex *dst,
+		    u8 feature);
 
 #define rtw_roam_flags(adapter) ((adapter)->mlmepriv.roam_flags)
-#define rtw_chk_roam_flags(adapter, flags) ((adapter)->mlmepriv.roam_flags & flags)
+#define rtw_chk_roam_flags(adapter, flags) \
+	((adapter)->mlmepriv.roam_flags & flags)
 
 void _rtw_roaming(struct adapter *adapter, struct wlan_network *tgt_network);
 void rtw_roaming(struct adapter *adapter, struct wlan_network *tgt_network);
@@ -392,7 +414,8 @@ u8 rtw_dec_to_roam(struct adapter *adapter);
 u8 rtw_to_roam(struct adapter *adapter);
 int rtw_select_roaming_candidate(struct mlme_priv *pmlmepriv);
 
-void rtw_sta_media_status_rpt(struct adapter *adapter, struct sta_info *psta, u32 mstatus);
+void rtw_sta_media_status_rpt(struct adapter *adapter, struct sta_info *psta,
+			      u32 mstatus);
 void rtw_reset_securitypriv(struct adapter *adapter);
 
 #endif /* __RTL871X_MLME_H_ */
diff --git a/drivers/staging/rtl8723bs/include/rtw_mlme_ext.h b/drivers/staging/rtl8723bs/include/rtw_mlme_ext.h
index cb23c6939bfc5..70cce58030819 100644
--- a/drivers/staging/rtl8723bs/include/rtw_mlme_ext.h
+++ b/drivers/staging/rtl8723bs/include/rtw_mlme_ext.h
@@ -7,58 +7,56 @@
 #ifndef __RTW_MLME_EXT_H_
 #define __RTW_MLME_EXT_H_
 
-
 /* 	Commented by Albert 20101105 */
 /* 	Increase the SURVEY_TO value from 100 to 150  (100ms to 150ms) */
 /* 	The Realtek 8188CE SoftAP will spend around 100ms to send the probe response after receiving the probe request. */
 /* 	So, this driver tried to extend the dwell time for each scanning channel. */
 /* 	This will increase the chance to receive the probe response from SoftAP. */
 
-#define SURVEY_TO		(100)
-#define REAUTH_TO		(300) /* 50) */
-#define REASSOC_TO		(300) /* 50) */
+#define SURVEY_TO (100)
+#define REAUTH_TO (300) /* 50) */
+#define REASSOC_TO (300) /* 50) */
 /* define DISCONNECT_TO	(3000) */
-#define ADDBA_TO			(2000)
+#define ADDBA_TO (2000)
 
-#define REAUTH_LIMIT	(4)
-#define REASSOC_LIMIT	(4)
+#define REAUTH_LIMIT (4)
+#define REASSOC_LIMIT (4)
 
-#define DYNAMIC_FUNC_DISABLE		(0x0)
+#define DYNAMIC_FUNC_DISABLE (0x0)
 
 /*  ====== ODM_ABILITY_E ======== */
 /*  BB ODM section BIT 0-15 */
-#define DYNAMIC_BB_DIG				BIT(0) /* ODM_BB_DIG */
-#define DYNAMIC_BB_DYNAMIC_TXPWR	BIT(2) /* ODM_BB_DYNAMIC_TXPWR */
-#define DYNAMIC_BB_ANT_DIV			BIT(6) /* ODM_BB_ANT_DIV */
+#define DYNAMIC_BB_DIG BIT(0) /* ODM_BB_DIG */
+#define DYNAMIC_BB_DYNAMIC_TXPWR BIT(2) /* ODM_BB_DYNAMIC_TXPWR */
+#define DYNAMIC_BB_ANT_DIV BIT(6) /* ODM_BB_ANT_DIV */
 
 /*  RF ODM section BIT 24-31 */
-#define DYNAMIC_RF_CALIBRATION		BIT(26)/* ODM_RF_CALIBRATION */
-
-#define DYNAMIC_ALL_FUNC_ENABLE		0xFFFFFFF
-
-#define _HW_STATE_NOLINK_		0x00
-#define _HW_STATE_ADHOC_		0x01
-#define _HW_STATE_STATION_	0x02
-#define _HW_STATE_AP_			0x03
-
-
-#define		_1M_RATE_	0
-#define		_2M_RATE_	1
-#define		_5M_RATE_	2
-#define		_11M_RATE_	3
-#define		_6M_RATE_	4
-#define		_9M_RATE_	5
-#define		_12M_RATE_	6
-#define		_18M_RATE_	7
-#define		_24M_RATE_	8
-#define		_36M_RATE_	9
-#define		_48M_RATE_	10
-#define		_54M_RATE_	11
+#define DYNAMIC_RF_CALIBRATION BIT(26) /* ODM_RF_CALIBRATION */
+
+#define DYNAMIC_ALL_FUNC_ENABLE 0xFFFFFFF
+
+#define _HW_STATE_NOLINK_ 0x00
+#define _HW_STATE_ADHOC_ 0x01
+#define _HW_STATE_STATION_ 0x02
+#define _HW_STATE_AP_ 0x03
+
+#define _1M_RATE_ 0
+#define _2M_RATE_ 1
+#define _5M_RATE_ 2
+#define _11M_RATE_ 3
+#define _6M_RATE_ 4
+#define _9M_RATE_ 5
+#define _12M_RATE_ 6
+#define _18M_RATE_ 7
+#define _24M_RATE_ 8
+#define _36M_RATE_ 9
+#define _48M_RATE_ 10
+#define _54M_RATE_ 11
 
 /********************************************************
 MCS rate definitions
 *********************************************************/
-#define MCS_RATE_1R	(0x000000ff)
+#define MCS_RATE_1R (0x000000ff)
 
 extern unsigned char RTW_WPA_OUI[];
 extern unsigned char WMM_OUI[];
@@ -69,7 +67,6 @@ extern unsigned char P2P_OUI[];
 extern unsigned char WMM_INFO_OUI[];
 extern unsigned char WMM_PARA_OUI[];
 
-
 /*  */
 /*  Channel Plan Type. */
 /*  Note: */
@@ -147,18 +144,20 @@ enum {
 };
 
 enum {
-	RT_CHANNEL_DOMAIN_2G_WORLD = 0x00,		/* Worldwird 13 */
-	RT_CHANNEL_DOMAIN_2G_ETSI1 = 0x01,		/* Europe */
-	RT_CHANNEL_DOMAIN_2G_FCC1 = 0x02,		/* US */
-	RT_CHANNEL_DOMAIN_2G_MKK1 = 0x03,		/* Japan */
-	RT_CHANNEL_DOMAIN_2G_ETSI2 = 0x04,		/* France */
-	RT_CHANNEL_DOMAIN_2G_GLOBAL = 0x05,		/* Global domain */
+	RT_CHANNEL_DOMAIN_2G_WORLD = 0x00, /* Worldwird 13 */
+	RT_CHANNEL_DOMAIN_2G_ETSI1 = 0x01, /* Europe */
+	RT_CHANNEL_DOMAIN_2G_FCC1 = 0x02, /* US */
+	RT_CHANNEL_DOMAIN_2G_MKK1 = 0x03, /* Japan */
+	RT_CHANNEL_DOMAIN_2G_ETSI2 = 0x04, /* France */
+	RT_CHANNEL_DOMAIN_2G_GLOBAL = 0x05, /* Global domain */
 	RT_CHANNEL_DOMAIN_2G_NULL = 0x06,
 	/*  Add new channel plan above this line =============== */
 	RT_CHANNEL_DOMAIN_2G_MAX,
 };
 
-#define rtw_is_channel_plan_valid(chplan) (chplan < RT_CHANNEL_DOMAIN_MAX || chplan == RT_CHANNEL_DOMAIN_REALTEK_DEFINE)
+#define rtw_is_channel_plan_valid(chplan)  \
+	(chplan < RT_CHANNEL_DOMAIN_MAX || \
+	 chplan == RT_CHANNEL_DOMAIN_REALTEK_DEFINE)
 
 struct rt_channel_plan {
 	unsigned char Channel[MAX_CHANNEL_NUM];
@@ -175,28 +174,28 @@ struct rt_channel_plan_map {
 };
 
 enum {
-	HT_IOT_PEER_UNKNOWN			= 0,
-	HT_IOT_PEER_REALTEK			= 1,
-	HT_IOT_PEER_REALTEK_92SE		= 2,
-	HT_IOT_PEER_BROADCOM		= 3,
-	HT_IOT_PEER_RALINK			= 4,
-	HT_IOT_PEER_ATHEROS			= 5,
-	HT_IOT_PEER_CISCO				= 6,
-	HT_IOT_PEER_MERU				= 7,
-	HT_IOT_PEER_MARVELL			= 8,
-	HT_IOT_PEER_REALTEK_SOFTAP	= 9,/*  peer is RealTek SOFT_AP, by Bohn, 2009.12.17 */
-	HT_IOT_PEER_SELF_SOFTAP			= 10, /*  Self is SoftAP */
-	HT_IOT_PEER_AIRGO				= 11,
-	HT_IOT_PEER_INTEL				= 12,
-	HT_IOT_PEER_RTK_APCLIENT		= 13,
-	HT_IOT_PEER_REALTEK_81XX		= 14,
-	HT_IOT_PEER_REALTEK_WOW			= 15,
+	HT_IOT_PEER_UNKNOWN = 0,
+	HT_IOT_PEER_REALTEK = 1,
+	HT_IOT_PEER_REALTEK_92SE = 2,
+	HT_IOT_PEER_BROADCOM = 3,
+	HT_IOT_PEER_RALINK = 4,
+	HT_IOT_PEER_ATHEROS = 5,
+	HT_IOT_PEER_CISCO = 6,
+	HT_IOT_PEER_MERU = 7,
+	HT_IOT_PEER_MARVELL = 8,
+	HT_IOT_PEER_REALTEK_SOFTAP =
+		9, /*  peer is RealTek SOFT_AP, by Bohn, 2009.12.17 */
+	HT_IOT_PEER_SELF_SOFTAP = 10, /*  Self is SoftAP */
+	HT_IOT_PEER_AIRGO = 11,
+	HT_IOT_PEER_INTEL = 12,
+	HT_IOT_PEER_RTK_APCLIENT = 13,
+	HT_IOT_PEER_REALTEK_81XX = 14,
+	HT_IOT_PEER_REALTEK_WOW = 15,
 	HT_IOT_PEER_REALTEK_JAGUAR_BCUTAP = 16,
 	HT_IOT_PEER_REALTEK_JAGUAR_CCUTAP = 17,
-	HT_IOT_PEER_MAX					= 18
+	HT_IOT_PEER_MAX = 18
 };
 
-
 enum {
 	SCAN_DISABLE = 0,
 	SCAN_START = 1,
@@ -207,22 +206,24 @@ enum {
 };
 
 struct mlme_handler {
-	unsigned int   num;
+	unsigned int num;
 	char *str;
-	unsigned int (*func)(struct adapter *padapter, union recv_frame *precv_frame);
+	unsigned int (*func)(struct adapter *padapter,
+			     union recv_frame *precv_frame);
 };
 
 struct action_handler {
-	unsigned int   num;
+	unsigned int num;
 	char *str;
-	unsigned int (*func)(struct adapter *padapter, union recv_frame *precv_frame);
+	unsigned int (*func)(struct adapter *padapter,
+			     union recv_frame *precv_frame);
 };
 
-struct	ss_res {
-	int	state;
-	int	bss_cnt;
-	int	channel_idx;
-	int	scan_mode;
+struct ss_res {
+	int state;
+	int bss_cnt;
+	int channel_idx;
+	int scan_mode;
 	u8 ssid_num;
 	u8 ch_num;
 	struct ndis_802_11_ssid ssid[RTW_SSID_SCAN_AMOUNT];
@@ -234,26 +235,28 @@ struct	ss_res {
 /* define AD_HOC_MODE		0x04 */
 /* define NO_LINK_MODE	0x00 */
 
-#define		WIFI_FW_NULL_STATE			_HW_STATE_NOLINK_
-#define	WIFI_FW_STATION_STATE		_HW_STATE_STATION_
-#define	WIFI_FW_AP_STATE				_HW_STATE_AP_
-#define	WIFI_FW_ADHOC_STATE			_HW_STATE_ADHOC_
+#define WIFI_FW_NULL_STATE _HW_STATE_NOLINK_
+#define WIFI_FW_STATION_STATE _HW_STATE_STATION_
+#define WIFI_FW_AP_STATE _HW_STATE_AP_
+#define WIFI_FW_ADHOC_STATE _HW_STATE_ADHOC_
 
-#define	WIFI_FW_AUTH_NULL			0x00000100
-#define	WIFI_FW_AUTH_STATE			0x00000200
-#define	WIFI_FW_AUTH_SUCCESS			0x00000400
+#define WIFI_FW_AUTH_NULL 0x00000100
+#define WIFI_FW_AUTH_STATE 0x00000200
+#define WIFI_FW_AUTH_SUCCESS 0x00000400
 
-#define	WIFI_FW_ASSOC_STATE			0x00002000
-#define	WIFI_FW_ASSOC_SUCCESS		0x00004000
+#define WIFI_FW_ASSOC_STATE 0x00002000
+#define WIFI_FW_ASSOC_SUCCESS 0x00004000
 
-#define	WIFI_FW_LINKING_STATE		(WIFI_FW_AUTH_NULL | WIFI_FW_AUTH_STATE | WIFI_FW_AUTH_SUCCESS | WIFI_FW_ASSOC_STATE)
+#define WIFI_FW_LINKING_STATE                                            \
+	(WIFI_FW_AUTH_NULL | WIFI_FW_AUTH_STATE | WIFI_FW_AUTH_SUCCESS | \
+	 WIFI_FW_ASSOC_STATE)
 
 struct FW_Sta_Info {
 	struct sta_info *psta;
 	u32 status;
 	u32 rx_pkt;
 	u32 retry;
-	NDIS_802_11_RATES_EX  SupportedRates;
+	NDIS_802_11_RATES_EX SupportedRates;
 };
 
 /*
@@ -280,10 +283,10 @@ struct mlme_ext_info {
 	u32 reassoc_count;
 	u32 link_count;
 	u32 auth_seq;
-	u32 auth_algo;	/*  802.11 auth, could be open, shared, auto */
+	u32 auth_algo; /*  802.11 auth, could be open, shared, auto */
 	u32 authModeToggle;
-	u32 enc_algo;/* encrypt algorithm; */
-	u32 key_index;	/*  this is only valid for legendary wep, 0~3 for key id. */
+	u32 enc_algo; /* encrypt algorithm; */
+	u32 key_index; /*  this is only valid for legendary wep, 0~3 for key id. */
 	u32 iv;
 	u8 chg_txt[128];
 	u16 aid;
@@ -312,18 +315,20 @@ struct mlme_ext_info {
 	u8 hidden_ssid_mode;
 	u8 VHT_enable;
 
-	struct ADDBA_request		ADDBA_req;
-	struct WMM_para_element	WMM_param;
-	struct HT_caps_element	HT_caps;
-	struct HT_info_element		HT_info;
-	struct wlan_bssid_ex			network;/* join network or bss_network, if in ap mode, it is the same to cur_network.network */
-	struct FW_Sta_Info		FW_sta_info[NUM_STA];
+	struct ADDBA_request ADDBA_req;
+	struct WMM_para_element WMM_param;
+	struct HT_caps_element HT_caps;
+	struct HT_info_element HT_info;
+	struct wlan_bssid_ex
+		network; /* join network or bss_network, if in ap mode, it is the same to cur_network.network */
+	struct FW_Sta_Info FW_sta_info[NUM_STA];
 };
 
 /*  The channel information about this channel including joining, scanning, and power constraints. */
 struct rt_channel_info {
-	u8 		ChannelNum;		/*  The channel number. */
-	enum rt_scan_type	ScanType;		/*  Scan type such as passive or active scan. */
+	u8 ChannelNum; /*  The channel number. */
+	enum rt_scan_type
+		ScanType; /*  Scan type such as passive or active scan. */
 };
 
 int rtw_ch_set_search_ch(struct rt_channel_info *ch_set, const u32 ch);
@@ -353,7 +358,7 @@ struct p2p_channels {
 };
 
 struct p2p_oper_class_map {
-	enum hw_mode {IEEE80211G, IEEE80211A} mode;
+	enum hw_mode { IEEE80211G, IEEE80211A } mode;
 	u8 op_class;
 	u8 min_chan;
 	u8 max_chan;
@@ -362,9 +367,9 @@ struct p2p_oper_class_map {
 };
 
 struct mlme_ext_priv {
-	struct adapter	*padapter;
+	struct adapter *padapter;
 	u8 mlmeext_init;
-	atomic_t		event_seq;
+	atomic_t event_seq;
 	u16 mgnt_seq;
 	u16 sa_query_seq;
 	u64 mgnt_80211w_IPN;
@@ -373,24 +378,25 @@ struct mlme_ext_priv {
 
 	unsigned char cur_channel;
 	unsigned char cur_bwmode;
-	unsigned char cur_ch_offset;/* PRIME_CHNL_OFFSET */
-	unsigned char cur_wireless_mode;	/*  NETWORK_TYPE */
+	unsigned char cur_ch_offset; /* PRIME_CHNL_OFFSET */
+	unsigned char cur_wireless_mode; /*  NETWORK_TYPE */
 
 	unsigned char max_chan_nums;
-	struct rt_channel_info		channel_set[MAX_CHANNEL_NUM];
+	struct rt_channel_info channel_set[MAX_CHANNEL_NUM];
 	struct p2p_channels channel_list;
 	unsigned char basicrate[NumRates];
 	unsigned char datarate[NumRates];
 	unsigned char default_supported_mcs_set[16];
 
-	struct ss_res		sitesurvey_res;
-	struct mlme_ext_info mlmext_info;	/* for sta/adhoc mode, including current scanning/connecting/connected related info. */
-						/* for ap mode, network includes ap's cap_info */
-	struct timer_list		survey_timer;
-	struct timer_list		link_timer;
-	struct timer_list		sa_query_timer;
+	struct ss_res sitesurvey_res;
+	struct mlme_ext_info
+		mlmext_info; /* for sta/adhoc mode, including current scanning/connecting/connected related info. */
+	/* for ap mode, network includes ap's cap_info */
+	struct timer_list survey_timer;
+	struct timer_list link_timer;
+	struct timer_list sa_query_timer;
 	/* struct timer_list		ADDBA_timer; */
-	u16 		chan_scan_time;
+	u16 chan_scan_time;
 	unsigned long last_scan_time;
 	u8 scan_abort;
 	u8 tx_rate; /*  TXRATE when USERATE is set. */
@@ -413,7 +419,7 @@ struct mlme_ext_priv {
 
 	/* recv_decache check for Action_public frame */
 	u8 action_public_dialog_token;
-	u16  action_public_rxseq;
+	u16 action_public_rxseq;
 
 	u8 active_keep_alive_check;
 };
@@ -428,7 +434,8 @@ extern struct xmit_frame *alloc_mgtxmitframe(struct xmit_priv *pxmitpriv);
 
 u8 networktype_to_raid_ex(struct adapter *adapter, struct sta_info *psta);
 
-void get_rate_set(struct adapter *padapter, unsigned char *pbssrate, int *bssrate_len);
+void get_rate_set(struct adapter *padapter, unsigned char *pbssrate,
+		  int *bssrate_len);
 void set_mcs_rate_by_mask(u8 *mcs_set, u32 mask);
 void update_basic_rate_table(struct adapter *padapter, u8 *mBratesOS);
 void update_basic_rate_table_soft_ap(u8 *bssrateset, u32 bssratelen);
@@ -446,7 +453,8 @@ void rtw_set_oper_choffset(struct adapter *adapter, u8 offset);
 u8 rtw_get_center_ch(u8 channel, u8 chnl_bw, u8 chnl_offset);
 unsigned long rtw_get_on_cur_ch_time(struct adapter *adapter);
 
-void set_channel_bwmode(struct adapter *padapter, unsigned char channel, unsigned char channel_offset, unsigned short bwmode);
+void set_channel_bwmode(struct adapter *padapter, unsigned char channel,
+			unsigned char channel_offset, unsigned short bwmode);
 void r8723bs_select_channel(struct adapter *padapter, unsigned char channel);
 
 unsigned int decide_wait_for_beacon_timeout(unsigned int bcn_interval);
@@ -460,18 +468,20 @@ void write_cam(struct adapter *padapter, u8 id, u16 ctrl, u8 *mac, u8 *key);
 void clear_cam_entry(struct adapter *padapter, u8 id);
 
 /* modify cache only */
-void write_cam_cache(struct adapter *adapter, u8 id, u16 ctrl, u8 *mac, u8 *key);
+void write_cam_cache(struct adapter *adapter, u8 id, u16 ctrl, u8 *mac,
+		     u8 *key);
 void clear_cam_cache(struct adapter *adapter, u8 id);
 
 void invalidate_cam_all(struct adapter *padapter);
 
-
 int allocate_fw_sta_entry(struct adapter *padapter);
 void flush_all_cam_entry(struct adapter *padapter);
 
 void site_survey(struct adapter *padapter);
-u8 collect_bss_info(struct adapter *padapter, union recv_frame *precv_frame, struct wlan_bssid_ex *bssid);
-void update_network(struct wlan_bssid_ex *dst, struct wlan_bssid_ex *src, struct adapter *padapter, bool update_ie);
+u8 collect_bss_info(struct adapter *padapter, union recv_frame *precv_frame,
+		    struct wlan_bssid_ex *bssid);
+void update_network(struct wlan_bssid_ex *dst, struct wlan_bssid_ex *src,
+		    struct adapter *padapter, bool update_ie);
 
 u8 *get_my_bssid(struct wlan_bssid_ex *pnetwork);
 u16 get_beacon_interval(struct wlan_bssid_ex *bss);
@@ -493,23 +503,27 @@ void ERP_IE_handler(struct adapter *padapter, struct ndis_80211_var_ie *pIE);
 void VCS_update(struct adapter *padapter, struct sta_info *psta);
 void update_ldpc_stbc_cap(struct sta_info *psta);
 
-void update_beacon_info(struct adapter *padapter, u8 *pframe, uint len, struct sta_info *psta);
+void update_beacon_info(struct adapter *padapter, u8 *pframe, uint len,
+			struct sta_info *psta);
 int rtw_check_bcn_info(struct adapter *Adapter, u8 *pframe, u32 packet_len);
 void update_IOT_info(struct adapter *padapter);
 void update_capinfo(struct adapter *Adapter, u16 updateCap);
 void update_wireless_mode(struct adapter *padapter);
 void update_sta_basic_rate(struct sta_info *psta, u8 wireless_mode);
-int update_sta_support_rate(struct adapter *padapter, u8 *pvar_ie, uint var_ie_len, int cam_idx);
+int update_sta_support_rate(struct adapter *padapter, u8 *pvar_ie,
+			    uint var_ie_len, int cam_idx);
 
 /* for sta/adhoc mode */
 void update_sta_info(struct adapter *padapter, struct sta_info *psta);
 void Update_RA_Entry(struct adapter *padapter, struct sta_info *psta);
 void set_sta_rate(struct adapter *padapter, struct sta_info *psta);
 
-unsigned int receive_disconnect(struct adapter *padapter, unsigned char *MacAddr, unsigned short reason);
+unsigned int receive_disconnect(struct adapter *padapter,
+				unsigned char *MacAddr, unsigned short reason);
 
 unsigned char get_highest_rate_idx(u32 mask);
-int support_short_GI(struct adapter *padapter, struct HT_caps_element *pHT_caps, u8 bwmode);
+int support_short_GI(struct adapter *padapter, struct HT_caps_element *pHT_caps,
+		     u8 bwmode);
 unsigned int is_ap_in_tkip(struct adapter *padapter);
 
 s16 rtw_camid_search(struct adapter *adapter, u8 *addr, s16 kid);
@@ -520,36 +534,55 @@ extern void rtw_alloc_macid(struct adapter *padapter, struct sta_info *psta);
 extern void rtw_release_macid(struct adapter *padapter, struct sta_info *psta);
 
 void report_join_res(struct adapter *padapter, int res);
-void report_survey_event(struct adapter *padapter, union recv_frame *precv_frame);
+void report_survey_event(struct adapter *padapter,
+			 union recv_frame *precv_frame);
 void report_surveydone_event(struct adapter *padapter);
-void report_del_sta_event(struct adapter *padapter, unsigned char *MacAddr, unsigned short reason);
-void report_add_sta_event(struct adapter *padapter, unsigned char *MacAddr, int cam_idx);
+void report_del_sta_event(struct adapter *padapter, unsigned char *MacAddr,
+			  unsigned short reason);
+void report_add_sta_event(struct adapter *padapter, unsigned char *MacAddr,
+			  int cam_idx);
 void report_wmm_edca_update(struct adapter *padapter);
 
 u8 chk_bmc_sleepq_cmd(struct adapter *padapter);
 extern u8 set_tx_beacon_cmd(struct adapter *padapter);
-unsigned int setup_beacon_frame(struct adapter *padapter, unsigned char *beacon_frame);
+unsigned int setup_beacon_frame(struct adapter *padapter,
+				unsigned char *beacon_frame);
 void update_mgnt_tx_rate(struct adapter *padapter, u8 rate);
-void update_mgntframe_attrib(struct adapter *padapter, struct pkt_attrib *pattrib);
-void update_mgntframe_attrib_addr(struct adapter *padapter, struct xmit_frame *pmgntframe);
+void update_mgntframe_attrib(struct adapter *padapter,
+			     struct pkt_attrib *pattrib);
+void update_mgntframe_attrib_addr(struct adapter *padapter,
+				  struct xmit_frame *pmgntframe);
 void dump_mgntframe(struct adapter *padapter, struct xmit_frame *pmgntframe);
-s32 dump_mgntframe_and_wait(struct adapter *padapter, struct xmit_frame *pmgntframe, int timeout_ms);
-s32 dump_mgntframe_and_wait_ack(struct adapter *padapter, struct xmit_frame *pmgntframe);
+s32 dump_mgntframe_and_wait(struct adapter *padapter,
+			    struct xmit_frame *pmgntframe, int timeout_ms);
+s32 dump_mgntframe_and_wait_ack(struct adapter *padapter,
+				struct xmit_frame *pmgntframe);
 
 void issue_beacon(struct adapter *padapter, int timeout_ms);
-void issue_probersp(struct adapter *padapter, unsigned char *da, u8 is_valid_p2p_probereq);
+void issue_probersp(struct adapter *padapter, unsigned char *da,
+		    u8 is_valid_p2p_probereq);
 void issue_assocreq(struct adapter *padapter);
-void issue_asocrsp(struct adapter *padapter, unsigned short status, struct sta_info *pstat, int pkt_type);
-void issue_auth(struct adapter *padapter, struct sta_info *psta, unsigned short status);
-void issue_probereq(struct adapter *padapter, struct ndis_802_11_ssid *pssid, u8 *da);
-s32 issue_probereq_ex(struct adapter *padapter, struct ndis_802_11_ssid *pssid, u8 *da, u8 ch, bool append_wps, int try_cnt, int wait_ms);
-int issue_nulldata(struct adapter *padapter, unsigned char *da, unsigned int power_mode, int try_cnt, int wait_ms);
+void issue_asocrsp(struct adapter *padapter, unsigned short status,
+		   struct sta_info *pstat, int pkt_type);
+void issue_auth(struct adapter *padapter, struct sta_info *psta,
+		unsigned short status);
+void issue_probereq(struct adapter *padapter, struct ndis_802_11_ssid *pssid,
+		    u8 *da);
+s32 issue_probereq_ex(struct adapter *padapter, struct ndis_802_11_ssid *pssid,
+		      u8 *da, u8 ch, bool append_wps, int try_cnt, int wait_ms);
+int issue_nulldata(struct adapter *padapter, unsigned char *da,
+		   unsigned int power_mode, int try_cnt, int wait_ms);
 s32 issue_nulldata_in_interrupt(struct adapter *padapter, u8 *da);
-int issue_qos_nulldata(struct adapter *padapter, unsigned char *da, u16 tid, int try_cnt, int wait_ms);
-int issue_deauth(struct adapter *padapter, unsigned char *da, unsigned short reason);
-int issue_deauth_ex(struct adapter *padapter, u8 *da, unsigned short reason, int try_cnt, int wait_ms);
-void issue_action_BA(struct adapter *padapter, unsigned char *raddr, unsigned char action, unsigned short status);
-void issue_action_SA_Query(struct adapter *padapter, unsigned char *raddr, unsigned char action, unsigned short tid);
+int issue_qos_nulldata(struct adapter *padapter, unsigned char *da, u16 tid,
+		       int try_cnt, int wait_ms);
+int issue_deauth(struct adapter *padapter, unsigned char *da,
+		 unsigned short reason);
+int issue_deauth_ex(struct adapter *padapter, u8 *da, unsigned short reason,
+		    int try_cnt, int wait_ms);
+void issue_action_BA(struct adapter *padapter, unsigned char *raddr,
+		     unsigned char action, unsigned short status);
+void issue_action_SA_Query(struct adapter *padapter, unsigned char *raddr,
+			   unsigned char action, unsigned short tid);
 unsigned int send_delba(struct adapter *padapter, u8 initiator, u8 *addr);
 unsigned int send_beacon(struct adapter *padapter);
 
@@ -558,28 +591,41 @@ void start_clnt_auth(struct adapter *padapter);
 void start_clnt_join(struct adapter *padapter);
 void start_create_ibss(struct adapter *padapter);
 
-unsigned int OnAssocReq(struct adapter *padapter, union recv_frame *precv_frame);
-unsigned int OnAssocRsp(struct adapter *padapter, union recv_frame *precv_frame);
-unsigned int OnProbeReq(struct adapter *padapter, union recv_frame *precv_frame);
-unsigned int OnProbeRsp(struct adapter *padapter, union recv_frame *precv_frame);
-unsigned int DoReserved(struct adapter *padapter, union recv_frame *precv_frame);
+unsigned int OnAssocReq(struct adapter *padapter,
+			union recv_frame *precv_frame);
+unsigned int OnAssocRsp(struct adapter *padapter,
+			union recv_frame *precv_frame);
+unsigned int OnProbeReq(struct adapter *padapter,
+			union recv_frame *precv_frame);
+unsigned int OnProbeRsp(struct adapter *padapter,
+			union recv_frame *precv_frame);
+unsigned int DoReserved(struct adapter *padapter,
+			union recv_frame *precv_frame);
 unsigned int OnBeacon(struct adapter *padapter, union recv_frame *precv_frame);
 unsigned int OnAtim(struct adapter *padapter, union recv_frame *precv_frame);
-unsigned int OnDisassoc(struct adapter *padapter, union recv_frame *precv_frame);
+unsigned int OnDisassoc(struct adapter *padapter,
+			union recv_frame *precv_frame);
 unsigned int OnAuth(struct adapter *padapter, union recv_frame *precv_frame);
-unsigned int OnAuthClient(struct adapter *padapter, union recv_frame *precv_frame);
+unsigned int OnAuthClient(struct adapter *padapter,
+			  union recv_frame *precv_frame);
 unsigned int OnDeAuth(struct adapter *padapter, union recv_frame *precv_frame);
 unsigned int OnAction(struct adapter *padapter, union recv_frame *precv_frame);
 
-unsigned int on_action_spct(struct adapter *padapter, union recv_frame *precv_frame);
-unsigned int OnAction_back(struct adapter *padapter, union recv_frame *precv_frame);
-unsigned int on_action_public(struct adapter *padapter, union recv_frame *precv_frame);
-unsigned int OnAction_ht(struct adapter *padapter, union recv_frame *precv_frame);
-unsigned int OnAction_sa_query(struct adapter *padapter, union recv_frame *precv_frame);
+unsigned int on_action_spct(struct adapter *padapter,
+			    union recv_frame *precv_frame);
+unsigned int OnAction_back(struct adapter *padapter,
+			   union recv_frame *precv_frame);
+unsigned int on_action_public(struct adapter *padapter,
+			      union recv_frame *precv_frame);
+unsigned int OnAction_ht(struct adapter *padapter,
+			 union recv_frame *precv_frame);
+unsigned int OnAction_sa_query(struct adapter *padapter,
+			       union recv_frame *precv_frame);
 
 void mlmeext_joinbss_event_callback(struct adapter *padapter, int join_res);
 void mlmeext_sta_del_event_callback(struct adapter *padapter);
-void mlmeext_sta_add_event_callback(struct adapter *padapter, struct sta_info *psta);
+void mlmeext_sta_add_event_callback(struct adapter *padapter,
+				    struct sta_info *psta);
 
 void linked_status_chk(struct adapter *padapter);
 
@@ -592,35 +638,38 @@ void sa_query_timer_hdl(struct timer_list *t);
 /* void reauth_timer_hdl(struct adapter *padapter); */
 /* void reassoc_timer_hdl(struct adapter *padapter); */
 
-#define set_survey_timer(mlmeext, ms) \
-	do { \
+#define set_survey_timer(mlmeext, ms)                       \
+	do {                                                \
 		_set_timer(&(mlmeext)->survey_timer, (ms)); \
 	} while (0)
 
-#define set_link_timer(mlmeext, ms) \
-	do { \
+#define set_link_timer(mlmeext, ms)                       \
+	do {                                              \
 		_set_timer(&(mlmeext)->link_timer, (ms)); \
 	} while (0)
-#define set_sa_query_timer(mlmeext, ms) \
-	do { \
+#define set_sa_query_timer(mlmeext, ms)                       \
+	do {                                                  \
 		_set_timer(&(mlmeext)->sa_query_timer, (ms)); \
 	} while (0)
 
-extern void process_addba_req(struct adapter *padapter, u8 *paddba_req, u8 *addr);
+extern void process_addba_req(struct adapter *padapter, u8 *paddba_req,
+			      u8 *addr);
 
 extern void update_TSF(struct mlme_ext_priv *pmlmeext, u8 *pframe, uint len);
-extern void correct_TSF(struct adapter *padapter, struct mlme_ext_priv *pmlmeext);
-extern void adaptive_early_32k(struct mlme_ext_priv *pmlmeext, u8 *pframe, uint len);
+extern void correct_TSF(struct adapter *padapter,
+			struct mlme_ext_priv *pmlmeext);
+extern void adaptive_early_32k(struct mlme_ext_priv *pmlmeext, u8 *pframe,
+			       uint len);
 extern bool traffic_status_watchdog(struct adapter *padapter, bool from_timer);
 
-int rtw_chk_start_clnt_join(struct adapter *padapter, u8 *ch, u8 *bw, u8 *offset);
+int rtw_chk_start_clnt_join(struct adapter *padapter, u8 *ch, u8 *bw,
+			    u8 *offset);
 
 struct cmd_hdl {
-	uint	parmsize;
+	uint parmsize;
 	u8 (*h2cfuns)(struct adapter *padapter, u8 *pbuf);
 };
 
-
 u8 read_macreg_hdl(struct adapter *padapter, u8 *pbuf);
 u8 write_macreg_hdl(struct adapter *padapter, u8 *pbuf);
 u8 read_bbreg_hdl(struct adapter *padapter, u8 *pbuf);
@@ -628,7 +677,6 @@ u8 write_bbreg_hdl(struct adapter *padapter, u8 *pbuf);
 u8 read_rfreg_hdl(struct adapter *padapter, u8 *pbuf);
 u8 write_rfreg_hdl(struct adapter *padapter, u8 *pbuf);
 
-
 u8 NULL_hdl(struct adapter *padapter, u8 *pbuf);
 u8 join_cmd_hdl(struct adapter *padapter, u8 *pbuf);
 u8 disconnect_hdl(struct adapter *padapter, u8 *pbuf);
@@ -648,25 +696,26 @@ u8 chk_bmc_sleepq_hdl(struct adapter *padapter, unsigned char *pbuf);
 u8 tx_beacon_hdl(struct adapter *padapter, unsigned char *pbuf);
 u8 set_ch_hdl(struct adapter *padapter, u8 *pbuf);
 u8 set_chplan_hdl(struct adapter *padapter, unsigned char *pbuf);
-u8 set_csa_hdl(struct adapter *padapter, unsigned char *pbuf);	/* Kurt: Handling DFS channel switch announcement ie. */
+u8 set_csa_hdl(
+	struct adapter *padapter,
+	unsigned char
+		*pbuf); /* Kurt: Handling DFS channel switch announcement ie. */
 u8 tdls_hdl(struct adapter *padapter, unsigned char *pbuf);
 u8 run_in_thread_hdl(struct adapter *padapter, u8 *pbuf);
 
-
-#define GEN_DRV_CMD_HANDLER(size, cmd)	{size, &cmd ## _hdl},
-#define GEN_MLME_EXT_HANDLER(size, cmd)	{size, cmd},
+#define GEN_DRV_CMD_HANDLER(size, cmd) { size, &cmd##_hdl },
+#define GEN_MLME_EXT_HANDLER(size, cmd) { size, cmd },
 
 struct C2HEvent_Header {
-
 #ifdef __LITTLE_ENDIAN
 
-	unsigned int len:16;
-	unsigned int ID:8;
-	unsigned int seq:8;
+	unsigned int len : 16;
+	unsigned int ID : 8;
+	unsigned int seq : 8;
 #else
-	unsigned int seq:8;
-	unsigned int ID:8;
-	unsigned int len:16;
+	unsigned int seq : 8;
+	unsigned int ID : 8;
+	unsigned int len : 16;
 #endif
 	unsigned int rsvd;
 };
@@ -680,28 +729,28 @@ enum {
 	GEN_EVT_CODE(_Read_RFREG),
 	GEN_EVT_CODE(_Read_EEPROM),
 	GEN_EVT_CODE(_Read_EFUSE),
-	GEN_EVT_CODE(_Read_CAM),			/*5*/
+	GEN_EVT_CODE(_Read_CAM), /*5*/
 	GEN_EVT_CODE(_Get_BasicRate),
 	GEN_EVT_CODE(_Get_DataRate),
-	GEN_EVT_CODE(_Survey),	 /*8*/
-	GEN_EVT_CODE(_SurveyDone),	 /*9*/
+	GEN_EVT_CODE(_Survey), /*8*/
+	GEN_EVT_CODE(_SurveyDone), /*9*/
 
 	GEN_EVT_CODE(_JoinBss), /*10*/
 	GEN_EVT_CODE(_AddSTA),
 	GEN_EVT_CODE(_DelSTA),
 	GEN_EVT_CODE(_AtimDone),
 	GEN_EVT_CODE(_TX_Report),
-	GEN_EVT_CODE(_CCX_Report),			/*15*/
+	GEN_EVT_CODE(_CCX_Report), /*15*/
 	GEN_EVT_CODE(_DTM_Report),
 	GEN_EVT_CODE(_TX_Rate_Statistics),
 	GEN_EVT_CODE(_C2HLBK),
 	GEN_EVT_CODE(_FWDBG),
-	GEN_EVT_CODE(_C2HFEEDBACK),               /*20*/
+	GEN_EVT_CODE(_C2HFEEDBACK), /*20*/
 	GEN_EVT_CODE(_ADDBA),
 	GEN_EVT_CODE(_C2HBCN),
-	GEN_EVT_CODE(_ReportPwrState),		/* filen: only for PCIE, USB */
-	GEN_EVT_CODE(_CloseRF),				/* filen: only for PCIE, work around ASPM */
-	GEN_EVT_CODE(_WMM),					/*25*/
+	GEN_EVT_CODE(_ReportPwrState), /* filen: only for PCIE, USB */
+	GEN_EVT_CODE(_CloseRF), /* filen: only for PCIE, work around ASPM */
+	GEN_EVT_CODE(_WMM), /*25*/
 	MAX_C2HEVT
 };
 
diff --git a/drivers/staging/rtl8723bs/include/rtw_pwrctrl.h b/drivers/staging/rtl8723bs/include/rtw_pwrctrl.h
index 6977892a57420..7e81b380cd653 100644
--- a/drivers/staging/rtl8723bs/include/rtw_pwrctrl.h
+++ b/drivers/staging/rtl8723bs/include/rtw_pwrctrl.h
@@ -9,16 +9,15 @@
 
 #include <linux/mutex.h>
 
-#define XMIT_ALIVE	BIT(0)
-#define CMD_ALIVE	BIT(2)
-#define BTCOEX_ALIVE	BIT(4)
-
+#define XMIT_ALIVE BIT(0)
+#define CMD_ALIVE BIT(2)
+#define BTCOEX_ALIVE BIT(4)
 
 enum {
-	PS_MODE_ACTIVE	= 0,
+	PS_MODE_ACTIVE = 0,
 	PS_MODE_MIN,
 	PS_MODE_MAX,
-	PS_MODE_DTIM,	/* PS_MODE_SELF_DEFINED */
+	PS_MODE_DTIM, /* PS_MODE_SELF_DEFINED */
 	PS_MODE_VOIP,
 	PS_MODE_UAPSD_WMM,
 	PS_MODE_UAPSD,
@@ -35,22 +34,22 @@ enum {
 	BIT[4] = sub-state
 */
 
-#define PS_DPS				BIT(0)
-#define PS_LCLK				(PS_DPS)
-#define PS_RF_OFF			BIT(1)
-#define PS_ALL_ON			BIT(2)
-#define PS_ST_ACTIVE		BIT(3)
+#define PS_DPS BIT(0)
+#define PS_LCLK (PS_DPS)
+#define PS_RF_OFF BIT(1)
+#define PS_ALL_ON BIT(2)
+#define PS_ST_ACTIVE BIT(3)
 
-#define PS_ACK				BIT(6)
-#define PS_TOGGLE			BIT(7)
+#define PS_ACK BIT(6)
+#define PS_TOGGLE BIT(7)
 
-#define PS_STATE_MASK		(0x0F)
+#define PS_STATE_MASK (0x0F)
 
-#define PS_STATE(x)		(PS_STATE_MASK & (x))
+#define PS_STATE(x) (PS_STATE_MASK & (x))
 
-#define PS_STATE_S0		(PS_DPS)
-#define PS_STATE_S2		(PS_RF_OFF)
-#define PS_STATE_S4		((PS_ST_ACTIVE) | (PS_ALL_ON))
+#define PS_STATE_S0 (PS_DPS)
+#define PS_STATE_S2 (PS_RF_OFF)
+#define PS_STATE_S4 ((PS_ST_ACTIVE) | (PS_ALL_ON))
 
 struct reportpwrstate_parm {
 	unsigned char mode;
@@ -58,36 +57,42 @@ struct reportpwrstate_parm {
 	unsigned short rsvd;
 };
 
-#define LPS_DELAY_TIME	(1 * HZ) /*  1 sec */
+#define LPS_DELAY_TIME (1 * HZ) /*  1 sec */
 
 /*  RF state. */
 enum rt_rf_power_state {
-	rf_on,		/*  RF is on after RFSleep or RFOff */
-	rf_sleep,	/*  802.11 Power Save mode */
-	rf_off,		/*  HW/SW Radio OFF or Inactive Power Save */
+	rf_on, /*  RF is on after RFSleep or RFOff */
+	rf_sleep, /*  802.11 Power Save mode */
+	rf_off, /*  HW/SW Radio OFF or Inactive Power Save */
 	/* Add the new RF state above this line ===== */
 	rf_max
 };
 
 /*  RF Off Level for IPS or HW/SW radio off */
-#define	RT_RF_OFF_LEVL_ASPM			BIT(0)	/*  PCI ASPM */
-#define	RT_RF_OFF_LEVL_CLK_REQ		BIT(1)	/*  PCI clock request */
-#define	RT_RF_OFF_LEVL_PCI_D3			BIT(2)	/*  PCI D3 mode */
-#define	RT_RF_OFF_LEVL_HALT_NIC		BIT(3)	/*  NIC halt, re-initialize hw parameters */
-#define	RT_RF_OFF_LEVL_FREE_FW		BIT(4)	/*  FW free, re-download the FW */
-#define	RT_RF_OFF_LEVL_FW_32K		BIT(5)	/*  FW in 32k */
-#define	RT_RF_PS_LEVEL_ALWAYS_ASPM	BIT(6)	/*  Always enable ASPM and Clock Req in initialization. */
-#define	RT_RF_LPS_DISALBE_2R			BIT(30)	/*  When LPS is on, disable 2R if no packet is received or transmitted. */
-#define	RT_RF_LPS_LEVEL_ASPM			BIT(31)	/*  LPS with ASPM */
-
-#define	RT_IN_PS_LEVEL(ppsc, _PS_FLAG)		((ppsc->cur_ps_level & _PS_FLAG) ? true : false)
-#define	RT_CLEAR_PS_LEVEL(ppsc, _PS_FLAG)	(ppsc->cur_ps_level &= (~(_PS_FLAG)))
-#define	RT_SET_PS_LEVEL(ppsc, _PS_FLAG)		(ppsc->cur_ps_level |= _PS_FLAG)
+#define RT_RF_OFF_LEVL_ASPM BIT(0) /*  PCI ASPM */
+#define RT_RF_OFF_LEVL_CLK_REQ BIT(1) /*  PCI clock request */
+#define RT_RF_OFF_LEVL_PCI_D3 BIT(2) /*  PCI D3 mode */
+#define RT_RF_OFF_LEVL_HALT_NIC \
+	BIT(3) /*  NIC halt, re-initialize hw parameters */
+#define RT_RF_OFF_LEVL_FREE_FW BIT(4) /*  FW free, re-download the FW */
+#define RT_RF_OFF_LEVL_FW_32K BIT(5) /*  FW in 32k */
+#define RT_RF_PS_LEVEL_ALWAYS_ASPM \
+	BIT(6) /*  Always enable ASPM and Clock Req in initialization. */
+#define RT_RF_LPS_DISALBE_2R \
+	BIT(30) /*  When LPS is on, disable 2R if no packet is received or transmitted. */
+#define RT_RF_LPS_LEVEL_ASPM BIT(31) /*  LPS with ASPM */
+
+#define RT_IN_PS_LEVEL(ppsc, _PS_FLAG) \
+	((ppsc->cur_ps_level & _PS_FLAG) ? true : false)
+#define RT_CLEAR_PS_LEVEL(ppsc, _PS_FLAG) (ppsc->cur_ps_level &= (~(_PS_FLAG)))
+#define RT_SET_PS_LEVEL(ppsc, _PS_FLAG) (ppsc->cur_ps_level |= _PS_FLAG)
 
 /*  ASPM OSC Control bit, added by Roger, 2013.03.29. */
-#define	RT_PCI_ASPM_OSC_IGNORE		0	 /*  PCI ASPM ignore OSC control in default */
-#define	RT_PCI_ASPM_OSC_ENABLE		BIT(0) /*  PCI ASPM controlled by OS according to ACPI Spec 5.0 */
-#define	RT_PCI_ASPM_OSC_DISABLE		BIT(1) /*  PCI ASPM controlled by driver or BIOS, i.e., force enable ASPM */
+#define RT_PCI_ASPM_OSC_IGNORE 0 /*  PCI ASPM ignore OSC control in default */
+#define RT_PCI_ASPM_OSC_ENABLE \
+	BIT(0) /*  PCI ASPM controlled by OS according to ACPI Spec 5.0 */
+#define RT_PCI_ASPM_OSC_DISABLE \
+	BIT(1) /*  PCI ASPM controlled by driver or BIOS, i.e., force enable ASPM */
 
 enum {
 	PSBBREG_RF0 = 0,
@@ -98,10 +103,10 @@ enum {
 };
 
 enum { /*  for ips_mode */
-	IPS_NONE = 0,
-	IPS_NORMAL,
-	IPS_LEVEL_2,
-	IPS_NUM
+       IPS_NONE = 0,
+       IPS_NORMAL,
+       IPS_LEVEL_2,
+       IPS_NUM
 };
 
 /*  Design for pwrctrl_priv.ips_deny, 32 bits for 32 reasons at most */
@@ -120,7 +125,8 @@ enum ps_deny_reason {
 struct pwrctrl_priv {
 	struct mutex lock;
 	volatile u8 rpwm; /*  requested power state for fw */
-	volatile u8 cpwm; /*  fw current power state. updated when 1. read from HCPWM 2. driver lowers power level */
+	volatile u8
+		cpwm; /*  fw current power state. updated when 1. read from HCPWM 2. driver lowers power level */
 	volatile u8 tog; /*  toggling */
 	volatile u8 cpwm_tog; /*  toggling */
 
@@ -145,15 +151,16 @@ struct pwrctrl_priv {
 	u32 cur_ps_level;
 	u32 reg_rfps_level;
 
-	uint	ips_enter_cnts;
-	uint	ips_leave_cnts;
+	uint ips_enter_cnts;
+	uint ips_leave_cnts;
 
 	u8 ips_mode;
 	u8 ips_org_mode;
 	u8 ips_mode_req; /*  used to accept the mode setting request, will update to ipsmode later */
 	bool bips_processing;
-	unsigned long ips_deny_time; /* will deny IPS when system time is smaller than this */
-	u8 pre_ips_type;/*  0: default flow, 1: carddisbale flow */
+	unsigned long
+		ips_deny_time; /* will deny IPS when system time is smaller than this */
+	u8 pre_ips_type; /*  0: default flow, 1: carddisbale flow */
 
 	/*  ps_deny: if 0, power save is free to go; otherwise deny all kinds of power save. */
 	/*  Use enum ps_deny_reason to decide reason. */
@@ -169,11 +176,10 @@ struct pwrctrl_priv {
 	u8 power_mgnt;
 	u8 org_power_mgnt;
 	bool fw_current_in_ps_mode;
-	unsigned long	delay_lps_last_time_stamp;
-	s32		pnp_current_pwr_state;
+	unsigned long delay_lps_last_time_stamp;
+	s32 pnp_current_pwr_state;
 	u8 pnp_bstop_trx;
 
-
 	u8 bInternalAutoSuspend;
 	u8 bInSuspend;
 
@@ -184,16 +190,16 @@ struct pwrctrl_priv {
 	u8 wowlan_wake_reason;
 	u8 wowlan_ap_mode;
 	u8 wowlan_mode;
-	struct timer_list	pwr_state_check_timer;
+	struct timer_list pwr_state_check_timer;
 	struct adapter *adapter;
-	int		pwr_state_check_interval;
+	int pwr_state_check_interval;
 	u8 pwr_state_check_cnts;
 
-	int		ps_flag; /* used by autosuspend */
+	int ps_flag; /* used by autosuspend */
 
-	enum rt_rf_power_state	rf_pwrstate;/* cur power state, only for IPS */
+	enum rt_rf_power_state rf_pwrstate; /* cur power state, only for IPS */
 	/* rt_rf_power_state	current_rfpwrstate; */
-	enum rt_rf_power_state	change_rfpwrstate;
+	enum rt_rf_power_state change_rfpwrstate;
 
 	u8 bHWPowerdown; /* power down mode selection. 0:radio off, 1:power down */
 	u8 bHWPwrPindetect; /* come from registrypriv.hwpwrp_detect. enable power down function. 0:disable, 1:enable */
@@ -202,13 +208,12 @@ struct pwrctrl_priv {
 	unsigned long PS_BBRegBackup[PSBBREG_TOTALCNT];
 };
 
-#define rtw_ips_mode_req(pwrctl, ips_mode) \
-	((pwrctl)->ips_mode_req = (ips_mode))
+#define rtw_ips_mode_req(pwrctl, ips_mode) ((pwrctl)->ips_mode_req = (ips_mode))
 
 #define RTW_PWR_STATE_CHK_INTERVAL 2000
 
-#define _rtw_set_pwr_state_check_timer(pwrctl, ms) \
-	do { \
+#define _rtw_set_pwr_state_check_timer(pwrctl, ms)                  \
+	do {                                                        \
 		_set_timer(&(pwrctl)->pwr_state_check_timer, (ms)); \
 	} while (0)
 
@@ -221,7 +226,8 @@ extern s32 rtw_register_tx_alive(struct adapter *padapter);
 extern void rtw_unregister_tx_alive(struct adapter *padapter);
 extern s32 rtw_register_cmd_alive(struct adapter *padapter);
 extern void rtw_unregister_cmd_alive(struct adapter *padapter);
-extern void cpwm_int_hdl(struct adapter *padapter, struct reportpwrstate_parm *preportpwrstate);
+extern void cpwm_int_hdl(struct adapter *padapter,
+			 struct reportpwrstate_parm *preportpwrstate);
 extern void LPS_Leave_check(struct adapter *padapter);
 
 extern void LeaveAllPowerSaveMode(struct adapter *Adapter);
@@ -236,14 +242,19 @@ void rtw_ps_processor(struct adapter *padapter);
 s32 LPS_RF_ON_check(struct adapter *padapter, u32 delay_ms);
 void LPS_Enter(struct adapter *padapter, const char *msg);
 void LPS_Leave(struct adapter *padapter, const char *msg);
-void traffic_check_for_leave_lps(struct adapter *padapter, u8 tx, u32 tx_packets);
-void rtw_set_ps_mode(struct adapter *padapter, u8 ps_mode, u8 smart_ps, u8 bcn_ant_mode, const char *msg);
+void traffic_check_for_leave_lps(struct adapter *padapter, u8 tx,
+				 u32 tx_packets);
+void rtw_set_ps_mode(struct adapter *padapter, u8 ps_mode, u8 smart_ps,
+		     u8 bcn_ant_mode, const char *msg);
 void rtw_set_rpwm(struct adapter *padapter, u8 val8);
 
 void rtw_set_ips_deny(struct adapter *padapter, u32 ms);
-int _rtw_pwr_wakeup(struct adapter *padapter, u32 ips_deffer_ms, const char *caller);
-#define rtw_pwr_wakeup(adapter) _rtw_pwr_wakeup(adapter, RTW_PWR_STATE_CHK_INTERVAL, __func__)
-#define rtw_pwr_wakeup_ex(adapter, ips_deffer_ms) _rtw_pwr_wakeup(adapter, ips_deffer_ms, __func__)
+int _rtw_pwr_wakeup(struct adapter *padapter, u32 ips_deffer_ms,
+		    const char *caller);
+#define rtw_pwr_wakeup(adapter) \
+	_rtw_pwr_wakeup(adapter, RTW_PWR_STATE_CHK_INTERVAL, __func__)
+#define rtw_pwr_wakeup_ex(adapter, ips_deffer_ms) \
+	_rtw_pwr_wakeup(adapter, ips_deffer_ms, __func__)
 int rtw_pm_set_ips(struct adapter *padapter, u8 mode);
 int rtw_pm_set_lps(struct adapter *padapter, u8 mode);
 
@@ -251,4 +262,4 @@ void rtw_ps_deny(struct adapter *padapter, enum ps_deny_reason reason);
 void rtw_ps_deny_cancel(struct adapter *padapter, enum ps_deny_reason reason);
 u32 rtw_ps_deny_get(struct adapter *padapter);
 
-#endif  /* __RTL871X_PWRCTRL_H_ */
+#endif /* __RTL871X_PWRCTRL_H_ */
diff --git a/drivers/staging/rtl8723bs/include/rtw_qos.h b/drivers/staging/rtl8723bs/include/rtw_qos.h
index 1f28837f6c27c..d6fbf9c37479e 100644
--- a/drivers/staging/rtl8723bs/include/rtw_qos.h
+++ b/drivers/staging/rtl8723bs/include/rtw_qos.h
@@ -5,15 +5,12 @@
  *
  ******************************************************************************/
 
-
 #ifndef _RTW_QOS_H_
 #define _RTW_QOS_H_
 
-
-
-struct	qos_priv {
-	unsigned int	  qos_option;	/* bit mask option: u-apsd, s-apsd, ts, block ack... */
+struct qos_priv {
+	unsigned int
+		qos_option; /* bit mask option: u-apsd, s-apsd, ts, block ack... */
 };
 
-
-#endif	/* _RTL871X_QOS_H_ */
+#endif /* _RTL871X_QOS_H_ */
diff --git a/drivers/staging/rtl8723bs/include/rtw_recv.h b/drivers/staging/rtl8723bs/include/rtw_recv.h
index 9c32d480a20a1..4af452934f542 100644
--- a/drivers/staging/rtl8723bs/include/rtw_recv.h
+++ b/drivers/staging/rtl8723bs/include/rtw_recv.h
@@ -11,34 +11,34 @@
 
 #define NR_RECVFRAME 256
 
-#define RXFRAME_ALIGN	8
-#define RXFRAME_ALIGN_SZ	(1<<RXFRAME_ALIGN)
+#define RXFRAME_ALIGN 8
+#define RXFRAME_ALIGN_SZ (1 << RXFRAME_ALIGN)
 
-#define DRVINFO_SZ	4 /*  unit is 8bytes */
+#define DRVINFO_SZ 4 /*  unit is 8bytes */
 
-#define MAX_RX_NUMBLKS		(32)
+#define MAX_RX_NUMBLKS (32)
 #define RECVFRAME_HDR_ALIGN 128
 
 #define SNAP_SIZE sizeof(struct ieee80211_snap_hdr)
 
-#define MAX_SUBFRAME_COUNT	64
+#define MAX_SUBFRAME_COUNT 64
 
-#define LLC_HEADER_LENGTH	6
+#define LLC_HEADER_LENGTH 6
 
 /* for Rx reordering buffer control */
 struct recv_reorder_ctrl {
-	struct adapter	*padapter;
+	struct adapter *padapter;
 	u8 enable;
-	u16 indicate_seq;/* wstart_b, init_value = 0xffff */
+	u16 indicate_seq; /* wstart_b, init_value = 0xffff */
 	u16 wend_b;
 	u8 wsize_b;
 	struct __queue pending_recvframe_queue;
 	struct timer_list reordering_ctrl_timer;
 };
 
-struct	stainfo_rxcache	{
+struct stainfo_rxcache {
 	u16 tid_rxseq[16];
-/*
+	/*
 	unsigned short	tid0_rxseq;
 	unsigned short	tid1_rxseq;
 	unsigned short	tid2_rxseq;
@@ -58,38 +58,37 @@ struct	stainfo_rxcache	{
 */
 };
 
-
 struct signal_stat {
-	u8 update_req;		/* used to indicate */
-	u8 avg_val;		/* avg of valid elements */
-	u32 total_num;		/* num of valid elements */
-	u32 total_val;		/* sum of valid elements */
+	u8 update_req; /* used to indicate */
+	u8 avg_val; /* avg of valid elements */
+	u32 total_num; /* num of valid elements */
+	u32 total_val; /* sum of valid elements */
 };
 
 struct phy_info {
 	u8 rx_pwd_ba11;
 
-	u8 SignalQuality;	 /*  in 0-100 index. */
-	s8		rx_mimo_signal_quality[4];	/* per-path's EVM */
-	u8 RxMIMOEVMdbm[4];		/* per-path's EVM dbm */
+	u8 SignalQuality; /*  in 0-100 index. */
+	s8 rx_mimo_signal_quality[4]; /* per-path's EVM */
+	u8 RxMIMOEVMdbm[4]; /* per-path's EVM dbm */
 
-	u8 rx_mimo_signal_strength[4];/*  in 0~100 index */
+	u8 rx_mimo_signal_strength[4]; /*  in 0~100 index */
 
-	u16 	Cfo_short[4];			/*  per-path's Cfo_short */
-	u16 	Cfo_tail[4];			/*  per-path's Cfo_tail */
+	u16 Cfo_short[4]; /*  per-path's Cfo_short */
+	u16 Cfo_tail[4]; /*  per-path's Cfo_tail */
 
-	s8		RxPower; /*  in dBm Translate from PWdB */
-	s8		RecvSignalPower;/*  Real power in dBm for this packet, no beautification and aggregation. Keep this raw info to be used for the other procedures. */
+	s8 RxPower; /*  in dBm Translate from PWdB */
+	s8 RecvSignalPower; /*  Real power in dBm for this packet, no beautification and aggregation. Keep this raw info to be used for the other procedures. */
 	u8 bt_rx_rssi_percentage;
 	u8 SignalStrength; /*  in 0-100 index. */
 
-	s8		RxPwr[4];				/* per-path's pwdb */
-	u8 RxSNR[4];				/* per-path's SNR */
+	s8 RxPwr[4]; /* per-path's pwdb */
+	u8 RxSNR[4]; /* per-path's SNR */
 	u8 BandWidth;
 	u8 btCoexPwrAdjust;
 };
 
-struct rx_pkt_attrib	{
+struct rx_pkt_attrib {
 	u16 pkt_len;
 	u8 physt;
 	u8 drvinfo_sz;
@@ -128,9 +127,9 @@ struct rx_pkt_attrib	{
 	u8 data_rate;
 	u8 sgi;
 	u8 pkt_rpt_type;
-	u32 MacIDValidEntry[2];	/*  64 bits present 64 entry. */
+	u32 MacIDValidEntry[2]; /*  64 bits present 64 entry. */
 
-/*
+	/*
 	u8 signal_qual;
 	s8	rx_mimo_signal_qual[2];
 	u8 signal_strength;
@@ -140,17 +139,16 @@ struct rx_pkt_attrib	{
 	struct phy_info phy_info;
 };
 
-
 /* These definition is used for Rx packet reordering. */
-#define SN_LESS(a, b)		(((a - b) & 0x800) != 0)
-#define SN_EQUAL(a, b)	(a == b)
+#define SN_LESS(a, b) (((a - b) & 0x800) != 0)
+#define SN_EQUAL(a, b) (a == b)
 /* define REORDER_WIN_SIZE	128 */
 /* define REORDER_ENTRY_NUM	128 */
-#define REORDER_WAIT_TIME	(50) /*  (ms) */
+#define REORDER_WAIT_TIME (50) /*  (ms) */
 
 #define RECVBUFF_ALIGN_SZ 8
 
-#define RXDESC_SIZE	24
+#define RXDESC_SIZE 24
 
 struct recv_stat {
 	__le32 rxdw0;
@@ -170,22 +168,22 @@ accesser of recv_priv: rtw_recv_entry(dispatch / passive level); recv_thread(pas
 using enter_critical section to protect
 */
 struct recv_priv {
-	spinlock_t	lock;
-	struct __queue	free_recv_queue;
-	struct __queue	recv_pending_queue;
-	struct __queue	uc_swdec_pending_queue;
+	spinlock_t lock;
+	struct __queue free_recv_queue;
+	struct __queue recv_pending_queue;
+	struct __queue uc_swdec_pending_queue;
 	u8 *pallocated_frame_buf;
 	u8 *precv_frame_buf;
 	uint free_recvframe_cnt;
-	struct adapter	*adapter;
+	struct adapter *adapter;
 	u32 bIsAnyNonBEPkts;
-	u64	rx_bytes;
-	u64	rx_pkts;
-	u64	rx_drop;
-	uint  rx_icv_err;
-	uint  rx_largepacket_crcerr;
-	uint  rx_smallpacket_crcerr;
-	uint  rx_middlepacket_crcerr;
+	u64 rx_bytes;
+	u64 rx_pkts;
+	u64 rx_drop;
+	uint rx_icv_err;
+	uint rx_largepacket_crcerr;
+	uint rx_smallpacket_crcerr;
+	uint rx_middlepacket_crcerr;
 
 	struct tasklet_struct irq_prepare_beacon_tasklet;
 	struct tasklet_struct recv_tasklet;
@@ -193,26 +191,25 @@ struct recv_priv {
 	struct sk_buff_head rx_skb_queue;
 
 	u8 *pallocated_recv_buf;
-	u8 *precv_buf;    /*  4 alignment */
-	struct __queue	free_recv_buf_queue;
+	u8 *precv_buf; /*  4 alignment */
+	struct __queue free_recv_buf_queue;
 	u32 free_recv_buf_queue_cnt;
 
-	struct __queue	recv_buf_pending_queue;
+	struct __queue recv_buf_pending_queue;
 
 	/* For display the phy information */
-	u8 is_signal_dbg;	/*  for debug */
-	u8 signal_strength_dbg;	/*  for debug */
+	u8 is_signal_dbg; /*  for debug */
+	u8 signal_strength_dbg; /*  for debug */
 
 	u8 signal_strength;
 	u8 signal_qual;
-	s8 rssi;	/* translate_percentage_to_dbm(ptarget_wlan->network.PhyInfo.SignalStrength); */
+	s8 rssi; /* translate_percentage_to_dbm(ptarget_wlan->network.PhyInfo.SignalStrength); */
 	/* s8 rxpwdb; */
 	s16 noise;
 	/* int RxSNRdB[2]; */
 	/* s8 RxRssi[2]; */
 	/* int FalseAlmCnt_all; */
 
-
 	struct timer_list signal_stat_timer;
 	u32 signal_stat_sampling_interval;
 	/* u32 signal_stat_converging_constant; */
@@ -220,25 +217,24 @@ struct recv_priv {
 	struct signal_stat signal_strength_data;
 };
 
-#define rtw_set_signal_stat_timer(recvpriv) _set_timer(&(recvpriv)->signal_stat_timer, (recvpriv)->signal_stat_sampling_interval)
+#define rtw_set_signal_stat_timer(recvpriv)        \
+	_set_timer(&(recvpriv)->signal_stat_timer, \
+		   (recvpriv)->signal_stat_sampling_interval)
 
 struct sta_recv_priv {
-
-	spinlock_t	lock;
-	signed int	option;
+	spinlock_t lock;
+	signed int option;
 
 	/* struct __queue	blk_strms[MAX_RX_NUMBLKS]; */
-	struct __queue defrag_q;	 /* keeping the fragment frame until defrag */
+	struct __queue defrag_q; /* keeping the fragment frame until defrag */
 
-	struct	stainfo_rxcache rxcache;
+	struct stainfo_rxcache rxcache;
 
 	/* uint	sta_rx_bytes; */
 	/* uint	sta_rx_pkts; */
 	/* uint	sta_rx_fail; */
-
 };
 
-
 struct recv_buf {
 	struct list_head list;
 
@@ -257,11 +253,10 @@ struct recv_buf {
 	u8 *ptail;
 	u8 *pend;
 
-	struct sk_buff	*pskb;
+	struct sk_buff *pskb;
 	u8 reuse;
 };
 
-
 /*
 	head  ----->
 
@@ -278,11 +273,11 @@ struct recv_buf {
 
 */
 struct recv_frame_hdr {
-	struct list_head	list;
-	struct sk_buff	 *pkt;
-	struct sk_buff	 *pkt_newalloc;
+	struct list_head list;
+	struct sk_buff *pkt;
+	struct sk_buff *pkt_newalloc;
 
-	struct adapter  *adapter;
+	struct adapter *adapter;
 
 	u8 fragcnt;
 
@@ -290,7 +285,7 @@ struct recv_frame_hdr {
 
 	struct rx_pkt_attrib attrib;
 
-	uint  len;
+	uint len;
 	u8 *rx_head;
 	u8 *rx_data;
 	u8 *rx_tail;
@@ -298,7 +293,6 @@ struct recv_frame_hdr {
 
 	void *precvbuf;
 
-
 	/*  */
 	struct sta_info *psta;
 
@@ -306,45 +300,54 @@ struct recv_frame_hdr {
 	struct recv_reorder_ctrl *preorder_ctrl;
 };
 
-
 union recv_frame {
-	union{
+	union {
 		struct list_head list;
 		struct recv_frame_hdr hdr;
-		uint mem[RECVFRAME_HDR_ALIGN>>2];
+		uint mem[RECVFRAME_HDR_ALIGN >> 2];
 	} u;
 
 	/* uint mem[MAX_RXSZ>>2]; */
-
 };
 
 enum {
-	NORMAL_RX,/* Normal rx packet */
-	TX_REPORT1,/* CCX */
-	TX_REPORT2,/* TX RPT */
-	HIS_REPORT,/*  USB HISR RPT */
+	NORMAL_RX, /* Normal rx packet */
+	TX_REPORT1, /* CCX */
+	TX_REPORT2, /* TX RPT */
+	HIS_REPORT, /*  USB HISR RPT */
 	C2H_PACKET
 };
 
-extern union recv_frame *_rtw_alloc_recvframe(struct __queue *pfree_recv_queue);  /* get a free recv_frame from pfree_recv_queue */
-extern union recv_frame *rtw_alloc_recvframe(struct __queue *pfree_recv_queue);  /* get a free recv_frame from pfree_recv_queue */
-extern int	 rtw_free_recvframe(union recv_frame *precvframe, struct __queue *pfree_recv_queue);
-
-extern int _rtw_enqueue_recvframe(union recv_frame *precvframe, struct __queue *queue);
-extern int rtw_enqueue_recvframe(union recv_frame *precvframe, struct __queue *queue);
-
-extern void rtw_free_recvframe_queue(struct __queue *pframequeue,  struct __queue *pfree_recv_queue);
+extern union recv_frame *_rtw_alloc_recvframe(
+	struct __queue *
+		pfree_recv_queue); /* get a free recv_frame from pfree_recv_queue */
+extern union recv_frame *rtw_alloc_recvframe(
+	struct __queue *
+		pfree_recv_queue); /* get a free recv_frame from pfree_recv_queue */
+extern int rtw_free_recvframe(union recv_frame *precvframe,
+			      struct __queue *pfree_recv_queue);
+
+extern int _rtw_enqueue_recvframe(union recv_frame *precvframe,
+				  struct __queue *queue);
+extern int rtw_enqueue_recvframe(union recv_frame *precvframe,
+				 struct __queue *queue);
+
+extern void rtw_free_recvframe_queue(struct __queue *pframequeue,
+				     struct __queue *pfree_recv_queue);
 u32 rtw_free_uc_swdec_pending_queue(struct adapter *adapter);
 
-signed int rtw_enqueue_recvbuf_to_head(struct recv_buf *precvbuf, struct __queue *queue);
-signed int rtw_enqueue_recvbuf(struct recv_buf *precvbuf, struct __queue *queue);
+signed int rtw_enqueue_recvbuf_to_head(struct recv_buf *precvbuf,
+				       struct __queue *queue);
+signed int rtw_enqueue_recvbuf(struct recv_buf *precvbuf,
+			       struct __queue *queue);
 struct recv_buf *rtw_dequeue_recvbuf(struct __queue *queue);
 
 void rtw_reordering_ctrl_timeout_handler(struct timer_list *t);
 
-signed int _rtw_init_recv_priv(struct recv_priv *precvpriv, struct adapter *padapter);
+signed int _rtw_init_recv_priv(struct recv_priv *precvpriv,
+			       struct adapter *padapter);
 void _rtw_free_recv_priv(struct recv_priv *precvpriv);
-s32  rtw_recv_entry(union recv_frame *precv_frame);
+s32 rtw_recv_entry(union recv_frame *precv_frame);
 
 static inline u8 *get_rxmem(union recv_frame *precvframe)
 {
@@ -361,11 +364,9 @@ static inline u8 *recvframe_pull(union recv_frame *precvframe, signed int sz)
 
 	/* used for extract sz bytes from rx_data, update rx_data and return the updated rx_data to the caller */
 
-
 	if (!precvframe)
 		return NULL;
 
-
 	precvframe->u.hdr.rx_data += sz;
 
 	if (precvframe->u.hdr.rx_data > precvframe->u.hdr.rx_tail) {
@@ -376,7 +377,6 @@ static inline u8 *recvframe_pull(union recv_frame *precvframe, signed int sz)
 	precvframe->u.hdr.len -= sz;
 
 	return precvframe->u.hdr.rx_data;
-
 }
 
 static inline u8 *recvframe_put(union recv_frame *precvframe, signed int sz)
@@ -402,12 +402,10 @@ static inline u8 *recvframe_put(union recv_frame *precvframe, signed int sz)
 	precvframe->u.hdr.len += sz;
 
 	return precvframe->u.hdr.rx_tail;
-
 }
 
-
-
-static inline u8 *recvframe_pull_tail(union recv_frame *precvframe, signed int sz)
+static inline u8 *recvframe_pull_tail(union recv_frame *precvframe,
+				      signed int sz)
 {
 	/*  rmv data from rx_tail (by yitsen) */
 
@@ -427,7 +425,6 @@ static inline u8 *recvframe_pull_tail(union recv_frame *precvframe, signed int s
 	precvframe->u.hdr.len -= sz;
 
 	return precvframe->u.hdr.rx_tail;
-
 }
 
 static inline signed int get_recvframe_len(union recv_frame *precvframe)
@@ -435,10 +432,9 @@ static inline signed int get_recvframe_len(union recv_frame *precvframe)
 	return precvframe->u.hdr.len;
 }
 
-
 static inline s32 translate_percentage_to_dbm(u32 SignalStrengthIndex)
 {
-	s32	SignalPower; /*  in dBm. */
+	s32 SignalPower; /*  in dBm. */
 
 	/*  Translate to dBm (x = 0.5y-95). */
 	SignalPower = (s32)((SignalStrengthIndex + 1) >> 1);
@@ -447,11 +443,11 @@ static inline s32 translate_percentage_to_dbm(u32 SignalStrengthIndex)
 	return SignalPower;
 }
 
-
 struct sta_info;
 
 extern void _rtw_init_sta_recv_priv(struct sta_recv_priv *psta_recvpriv);
 
-extern void  mgt_dispatcher(struct adapter *padapter, union recv_frame *precv_frame);
+extern void mgt_dispatcher(struct adapter *padapter,
+			   union recv_frame *precv_frame);
 
 #endif
diff --git a/drivers/staging/rtl8723bs/include/rtw_rf.h b/drivers/staging/rtl8723bs/include/rtw_rf.h
index 9f98b3f5a2e35..fab4c5e099e00 100644
--- a/drivers/staging/rtl8723bs/include/rtw_rf.h
+++ b/drivers/staging/rtl8723bs/include/rtw_rf.h
@@ -4,77 +4,76 @@
  * Copyright(c) 2007 - 2011 Realtek Corporation. All rights reserved.
  *
  ******************************************************************************/
-#ifndef	__RTW_RF_H_
+#ifndef __RTW_RF_H_
 #define __RTW_RF_H_
 
+#define OFDM_PHY 1
+#define MIXED_PHY 2
+#define CCK_PHY 3
 
-#define OFDM_PHY		1
-#define MIXED_PHY		2
-#define CCK_PHY			3
-
-#define NumRates		13
+#define NumRates 13
 
 /*  slot time for 11g */
-#define SHORT_SLOT_TIME		9
-#define NON_SHORT_SLOT_TIME	20
+#define SHORT_SLOT_TIME 9
+#define NON_SHORT_SLOT_TIME 20
 
-#define RTL8711_RF_MAX_SENS	 6
-#define RTL8711_RF_DEF_SENS	 4
+#define RTL8711_RF_MAX_SENS 6
+#define RTL8711_RF_DEF_SENS 4
 
 /*
  * We now define the following channels as the max channels in each channel plan.
  * 2G, total 14 chnls
  * {1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14}
  */
-#define	MAX_CHANNEL_NUM_2G	14
-#define	MAX_CHANNEL_NUM		14
+#define MAX_CHANNEL_NUM_2G 14
+#define MAX_CHANNEL_NUM 14
 
-#define NUM_REGULATORYS	1
+#define NUM_REGULATORYS 1
 
 /* Country codes */
-#define USA			0x555320
-#define EUROPE			0x1 /* temp, should be provided later */
-#define JAPAN			0x2 /* temp, should be provided later */
+#define USA 0x555320
+#define EUROPE 0x1 /* temp, should be provided later */
+#define JAPAN 0x2 /* temp, should be provided later */
 
-struct	regulatory_class {
-	u32 starting_freq;			/* MHz, */
+struct regulatory_class {
+	u32 starting_freq; /* MHz, */
 	u8 channel_set[MAX_CHANNEL_NUM];
-	u8 channel_cck_power[MAX_CHANNEL_NUM];/* dbm */
-	u8 channel_ofdm_power[MAX_CHANNEL_NUM];/* dbm */
-	u8 txpower_limit;			/* dbm */
-	u8 channel_spacing;			/* MHz */
+	u8 channel_cck_power[MAX_CHANNEL_NUM]; /* dbm */
+	u8 channel_ofdm_power[MAX_CHANNEL_NUM]; /* dbm */
+	u8 txpower_limit; /* dbm */
+	u8 channel_spacing; /* MHz */
 	u8 modem;
 };
 
 enum {
-	cESS			= 0x0001,
-	cIBSS			= 0x0002,
-	cPollable		= 0x0004,
-	cPollReq		= 0x0008,
-	cPrivacy		= 0x0010,
-	cShortPreamble		= 0x0020,
-	cPBCC			= 0x0040,
-	cChannelAgility		= 0x0080,
-	cSpectrumMgnt		= 0x0100,
-	cQos			= 0x0200,	/*  For HCCA, use with CF-Pollable and CF-PollReq */
-	cShortSlotTime		= 0x0400,
-	cAPSD			= 0x0800,
-	cRM			= 0x1000,	/*  RRM (Radio Request Measurement) */
-	cDSSS_OFDM		= 0x2000,
-	cDelayedBA		= 0x4000,
-	cImmediateBA		= 0x8000,
+	cESS = 0x0001,
+	cIBSS = 0x0002,
+	cPollable = 0x0004,
+	cPollReq = 0x0008,
+	cPrivacy = 0x0010,
+	cShortPreamble = 0x0020,
+	cPBCC = 0x0040,
+	cChannelAgility = 0x0080,
+	cSpectrumMgnt = 0x0100,
+	cQos = 0x0200, /*  For HCCA, use with CF-Pollable and CF-PollReq */
+	cShortSlotTime = 0x0400,
+	cAPSD = 0x0800,
+	cRM = 0x1000, /*  RRM (Radio Request Measurement) */
+	cDSSS_OFDM = 0x2000,
+	cDelayedBA = 0x4000,
+	cImmediateBA = 0x8000,
 };
 
 enum {
-	PREAMBLE_LONG	= 1,
-	PREAMBLE_AUTO	= 2,
-	PREAMBLE_SHORT	= 3,
+	PREAMBLE_LONG = 1,
+	PREAMBLE_AUTO = 2,
+	PREAMBLE_SHORT = 3,
 };
 
 /*  Bandwidth Offset */
-#define HAL_PRIME_CHNL_OFFSET_DONT_CARE	0
-#define HAL_PRIME_CHNL_OFFSET_LOWER	1
-#define HAL_PRIME_CHNL_OFFSET_UPPER	2
+#define HAL_PRIME_CHNL_OFFSET_DONT_CARE 0
+#define HAL_PRIME_CHNL_OFFSET_LOWER 1
+#define HAL_PRIME_CHNL_OFFSET_UPPER 2
 
 /*  Represent Channel Width in HT Capabilities */
 enum channel_width {
diff --git a/drivers/staging/rtl8723bs/include/rtw_security.h b/drivers/staging/rtl8723bs/include/rtw_security.h
index 32f6d3a5e3092..e41d0fa7c6d83 100644
--- a/drivers/staging/rtl8723bs/include/rtw_security.h
+++ b/drivers/staging/rtl8723bs/include/rtw_security.h
@@ -9,15 +9,15 @@
 
 #include <crypto/arc4.h>
 
-#define _NO_PRIVACY_		0x0
-#define _WEP40_				0x1
-#define _TKIP_				0x2
-#define _TKIP_WTMIC_		0x3
-#define _AES_				0x4
-#define _WEP104_			0x5
-#define _WEP_WPA_MIXED_	0x07  /*  WEP + WPA */
-#define _SMS4_				0x06
-#define _BIP_				0x8
+#define _NO_PRIVACY_ 0x0
+#define _WEP40_ 0x1
+#define _TKIP_ 0x2
+#define _TKIP_WTMIC_ 0x3
+#define _AES_ 0x4
+#define _WEP104_ 0x5
+#define _WEP_WPA_MIXED_ 0x07 /*  WEP + WPA */
+#define _SMS4_ 0x06
+#define _BIP_ 0x8
 #define is_wep_enc(alg) (((alg) == _WEP40_) || ((alg) == _WEP104_))
 
 const char *security_type_str(u8 value);
@@ -26,15 +26,14 @@ const char *security_type_str(u8 value);
 #define AES_PRIV_SIZE (4 * 44)
 
 enum {
-	ENCRYP_PROTOCOL_OPENSYS,   /* open system */
-	ENCRYP_PROTOCOL_WEP,       /* WEP */
-	ENCRYP_PROTOCOL_WPA,       /* WPA */
-	ENCRYP_PROTOCOL_WPA2,      /* WPA2 */
-	ENCRYP_PROTOCOL_WAPI,      /* WAPI: Not support in this version */
+	ENCRYP_PROTOCOL_OPENSYS, /* open system */
+	ENCRYP_PROTOCOL_WEP, /* WEP */
+	ENCRYP_PROTOCOL_WPA, /* WPA */
+	ENCRYP_PROTOCOL_WPA2, /* WPA2 */
+	ENCRYP_PROTOCOL_WAPI, /* WAPI: Not support in this version */
 	ENCRYP_PROTOCOL_MAX
 };
 
-
 #ifndef Ndis802_11AuthModeWPA2
 #define Ndis802_11AuthModeWPA2 (Ndis802_11AuthModeWPANone + 1)
 #endif
@@ -43,84 +42,83 @@ enum {
 #define Ndis802_11AuthModeWPA2PSK (Ndis802_11AuthModeWPANone + 2)
 #endif
 
-union pn48	{
-
-	u64	val;
+union pn48 {
+	u64 val;
 
 #ifdef __LITTLE_ENDIAN
 
-struct {
-	u8 TSC0;
-	u8 TSC1;
-	u8 TSC2;
-	u8 TSC3;
-	u8 TSC4;
-	u8 TSC5;
-	u8 TSC6;
-	u8 TSC7;
-} _byte_;
+	struct {
+		u8 TSC0;
+		u8 TSC1;
+		u8 TSC2;
+		u8 TSC3;
+		u8 TSC4;
+		u8 TSC5;
+		u8 TSC6;
+		u8 TSC7;
+	} _byte_;
 #else
-struct {
-	u8 TSC7;
-	u8 TSC6;
-	u8 TSC5;
-	u8 TSC4;
-	u8 TSC3;
-	u8 TSC2;
-	u8 TSC1;
-	u8 TSC0;
-} _byte_;
+	struct {
+		u8 TSC7;
+		u8 TSC6;
+		u8 TSC5;
+		u8 TSC4;
+		u8 TSC3;
+		u8 TSC2;
+		u8 TSC1;
+		u8 TSC0;
+	} _byte_;
 #endif
-
 };
 
 union Keytype {
-	u8   skey[16];
-	u32    lkey[4];
+	u8 skey[16];
+	u32 lkey[4];
 };
 
-
 struct rt_pmkid_list {
-	u8				bUsed;
-	u8				Bssid[6];
-	u8				PMKID[16];
-	u8				SsidBuf[33];
+	u8 bUsed;
+	u8 Bssid[6];
+	u8 PMKID[16];
+	u8 SsidBuf[33];
 	u8 *ssid_octet;
-	u16					ssid_length;
+	u16 ssid_length;
 };
 
-
 struct security_priv {
-	u32   dot11AuthAlgrthm;		/*  802.11 auth, could be open, shared, 8021x and authswitch */
-	u32   dot11PrivacyAlgrthm;	/*  This specify the privacy for shared auth. algorithm. */
+	u32 dot11AuthAlgrthm; /*  802.11 auth, could be open, shared, 8021x and authswitch */
+	u32 dot11PrivacyAlgrthm; /*  This specify the privacy for shared auth. algorithm. */
 
 	/* WEP */
-	u32   dot11PrivacyKeyIndex;	/*  this is only valid for legendary wep, 0~3 for key id. (tx key index) */
-	union Keytype dot11DefKey[4];	/*  this is only valid for def. key */
+	u32 dot11PrivacyKeyIndex; /*  this is only valid for legendary wep, 0~3 for key id. (tx key index) */
+	union Keytype dot11DefKey[4]; /*  this is only valid for def. key */
 	u32 dot11DefKeylen[4];
 	u8 key_mask; /* use to restore wep key after hal_init */
 
-	u32 dot118021XGrpPrivacy;	/*  This specify the privacy algthm. used for Grp key */
-	u32 dot118021XGrpKeyid;		/*  key id used for Grp Key (tx key index) */
-	union Keytype	dot118021XGrpKey[BIP_MAX_KEYID + 1];	/*  802.1x Group Key, for inx0 and inx1 */
-	union Keytype	dot118021XGrptxmickey[BIP_MAX_KEYID + 1];
-	union Keytype	dot118021XGrprxmickey[BIP_MAX_KEYID + 1];
-	union pn48		dot11Grptxpn;			/*  PN48 used for Grp Key xmit. */
-	union pn48		dot11Grprxpn;			/*  PN48 used for Grp Key recv. */
-	u32 dot11wBIPKeyid;						/*  key id used for BIP Key (tx key index) */
-	union Keytype	dot11wBIPKey[BIP_MAX_KEYID + 1];	/*  BIP Key, for index4 and index5 */
-	union pn48		dot11wBIPtxpn;			/*  PN48 used for Grp Key xmit. */
-	union pn48		dot11wBIPrxpn;			/*  PN48 used for Grp Key recv. */
+	u32 dot118021XGrpPrivacy; /*  This specify the privacy algthm. used for Grp key */
+	u32 dot118021XGrpKeyid; /*  key id used for Grp Key (tx key index) */
+	union Keytype
+		dot118021XGrpKey[BIP_MAX_KEYID +
+				 1]; /*  802.1x Group Key, for inx0 and inx1 */
+	union Keytype dot118021XGrptxmickey[BIP_MAX_KEYID + 1];
+	union Keytype dot118021XGrprxmickey[BIP_MAX_KEYID + 1];
+	union pn48 dot11Grptxpn; /*  PN48 used for Grp Key xmit. */
+	union pn48 dot11Grprxpn; /*  PN48 used for Grp Key recv. */
+	u32 dot11wBIPKeyid; /*  key id used for BIP Key (tx key index) */
+	union Keytype dot11wBIPKey[BIP_MAX_KEYID +
+				   1]; /*  BIP Key, for index4 and index5 */
+	union pn48 dot11wBIPtxpn; /*  PN48 used for Grp Key xmit. */
+	union pn48 dot11wBIPrxpn; /*  PN48 used for Grp Key recv. */
 
 	/* extend security capabilities for AP_MODE */
-	unsigned int dot8021xalg;/* 0:disable, 1:psk, 2:802.1x */
-	unsigned int wpa_psk;/* 0:disable, bit(0): WPA, bit(1):WPA2 */
+	unsigned int dot8021xalg; /* 0:disable, 1:psk, 2:802.1x */
+	unsigned int wpa_psk; /* 0:disable, bit(0): WPA, bit(1):WPA2 */
 	unsigned int wpa_group_cipher;
 	unsigned int wpa2_group_cipher;
 	unsigned int wpa_pairwise_cipher;
 	unsigned int wpa2_pairwise_cipher;
 
-	u8 wps_ie[MAX_WPS_IE_LEN];/* added in assoc req */
+	u8 wps_ie[MAX_WPS_IE_LEN]; /* added in assoc req */
 	int wps_ie_len;
 
 	struct arc4_ctx xmit_arc4_ctx;
@@ -133,26 +131,24 @@ struct security_priv {
 	u8 bcheck_grpkey;
 	u8 bgrpkey_handshake;
 
-	s32	sw_encrypt;/* from registry_priv */
-	s32	sw_decrypt;/* from registry_priv */
-
-	s32	hw_decrypted;/* if the rx packets is hw_decrypted ==false, it means the hw has not been ready. */
+	s32 sw_encrypt; /* from registry_priv */
+	s32 sw_decrypt; /* from registry_priv */
 
+	s32 hw_decrypted; /* if the rx packets is hw_decrypted ==false, it means the hw has not been ready. */
 
 	/* keeps the auth_type & enc_status from upper layer ioctl(wpa_supplicant or wzc) */
-	u32 ndisauthtype;	/*  enum ndis_802_11_authentication_mode */
-	u32 ndisencryptstatus;	/*  NDIS_802_11_ENCRYPTION_STATUS */
+	u32 ndisauthtype; /*  enum ndis_802_11_authentication_mode */
+	u32 ndisencryptstatus; /*  NDIS_802_11_ENCRYPTION_STATUS */
 
-	struct wlan_bssid_ex sec_bss;  /* for joinbss (h2c buffer) usage */
+	struct wlan_bssid_ex sec_bss; /* for joinbss (h2c buffer) usage */
 
 	struct ndis_802_11_wep ndiswep;
 
 	u8 assoc_info[600];
 	u8 szofcapability[256]; /* for wpa2 usage */
 	u8 oidassociation[512]; /* for wpa/wpa2 usage */
-	u8 authenticator_ie[256];  /* store ap security information element */
-	u8 supplicant_ie[256];  /* store sta security information element */
-
+	u8 authenticator_ie[256]; /* store ap security information element */
+	u8 supplicant_ie[256]; /* store sta security information element */
 
 	/* for tkip countermeasure */
 	unsigned long last_mic_err_time;
@@ -161,80 +157,79 @@ struct security_priv {
 	u32 btkip_countermeasure_time;
 
 	/*  For WPA2 Pre-Authentication. */
-	struct rt_pmkid_list		PMKIDList[NUM_PMKID_CACHE];	/*  Renamed from PreAuthKey[NUM_PRE_AUTH_KEY]. Annie, 2006-10-13. */
-	u8		PMKIDIndex;
+	struct rt_pmkid_list PMKIDList
+		[NUM_PMKID_CACHE]; /*  Renamed from PreAuthKey[NUM_PRE_AUTH_KEY]. Annie, 2006-10-13. */
+	u8 PMKIDIndex;
 
 	u8 bWepDefaultKeyIdxSet;
-
 };
 
-#define GET_ENCRY_ALGO(psecuritypriv, psta, encry_algo, bmcst)\
-do {\
-	switch (psecuritypriv->dot11AuthAlgrthm) {\
-	case dot11AuthAlgrthm_Open:\
-	case dot11AuthAlgrthm_Shared:\
-	case dot11AuthAlgrthm_Auto:\
-		encry_algo = (u8)psecuritypriv->dot11PrivacyAlgrthm;\
-		break;\
-	case dot11AuthAlgrthm_8021X:\
-		if (bmcst)\
-			encry_algo = (u8)psecuritypriv->dot118021XGrpPrivacy;\
-		else\
-			encry_algo = (u8)psta->dot118021XPrivacy;\
-		break;\
-	case dot11AuthAlgrthm_WAPI:\
-		encry_algo = (u8)psecuritypriv->dot11PrivacyAlgrthm;\
-		break;\
-	} \
-} while (0)
-
-#define SET_ICE_IV_LEN(iv_len, icv_len, encrypt)\
-do {\
-	switch (encrypt) {\
-	case _WEP40_:\
-	case _WEP104_:\
-		iv_len = 4;\
-		icv_len = 4;\
-		break;\
-	case _TKIP_:\
-		iv_len = 8;\
-		icv_len = 4;\
-		break;\
-	case _AES_:\
-		iv_len = 8;\
-		icv_len = 8;\
-		break;\
-	case _SMS4_:\
-		iv_len = 18;\
-		icv_len = 16;\
-		break;\
-	default:\
-		iv_len = 0;\
-		icv_len = 0;\
-		break;\
-	} \
-} while (0)
-
-
-#define GET_TKIP_PN(iv, dot11txpn)\
-do {\
-	dot11txpn._byte_.TSC0 = iv[2];\
-	dot11txpn._byte_.TSC1 = iv[0];\
-	dot11txpn._byte_.TSC2 = iv[4];\
-	dot11txpn._byte_.TSC3 = iv[5];\
-	dot11txpn._byte_.TSC4 = iv[6];\
-	dot11txpn._byte_.TSC5 = iv[7];\
-} while (0)
-
-
-#define ROL32(A, n)	(((A) << (n)) | (((A)>>(32-(n)))  & ((1UL << (n)) - 1)))
-#define ROR32(A, n)	ROL32((A), 32-(n))
+#define GET_ENCRY_ALGO(psecuritypriv, psta, encry_algo, bmcst)               \
+	do {                                                                 \
+		switch (psecuritypriv->dot11AuthAlgrthm) {                   \
+		case dot11AuthAlgrthm_Open:                                  \
+		case dot11AuthAlgrthm_Shared:                                \
+		case dot11AuthAlgrthm_Auto:                                  \
+			encry_algo = (u8)psecuritypriv->dot11PrivacyAlgrthm; \
+			break;                                               \
+		case dot11AuthAlgrthm_8021X:                                 \
+			if (bmcst)                                           \
+				encry_algo = (u8)psecuritypriv               \
+						     ->dot118021XGrpPrivacy; \
+			else                                                 \
+				encry_algo = (u8)psta->dot118021XPrivacy;    \
+			break;                                               \
+		case dot11AuthAlgrthm_WAPI:                                  \
+			encry_algo = (u8)psecuritypriv->dot11PrivacyAlgrthm; \
+			break;                                               \
+		}                                                            \
+	} while (0)
+
+#define SET_ICE_IV_LEN(iv_len, icv_len, encrypt) \
+	do {                                     \
+		switch (encrypt) {               \
+		case _WEP40_:                    \
+		case _WEP104_:                   \
+			iv_len = 4;              \
+			icv_len = 4;             \
+			break;                   \
+		case _TKIP_:                     \
+			iv_len = 8;              \
+			icv_len = 4;             \
+			break;                   \
+		case _AES_:                      \
+			iv_len = 8;              \
+			icv_len = 8;             \
+			break;                   \
+		case _SMS4_:                     \
+			iv_len = 18;             \
+			icv_len = 16;            \
+			break;                   \
+		default:                         \
+			iv_len = 0;              \
+			icv_len = 0;             \
+			break;                   \
+		}                                \
+	} while (0)
+
+#define GET_TKIP_PN(iv, dot11txpn)             \
+	do {                                   \
+		dot11txpn._byte_.TSC0 = iv[2]; \
+		dot11txpn._byte_.TSC1 = iv[0]; \
+		dot11txpn._byte_.TSC2 = iv[4]; \
+		dot11txpn._byte_.TSC3 = iv[5]; \
+		dot11txpn._byte_.TSC4 = iv[6]; \
+		dot11txpn._byte_.TSC5 = iv[7]; \
+	} while (0)
+
+#define ROL32(A, n) (((A) << (n)) | (((A) >> (32 - (n))) & ((1UL << (n)) - 1)))
+#define ROR32(A, n) ROL32((A), 32 - (n))
 
 struct mic_data {
-	u32  K0, K1;         /*  Key */
-	u32  L, R;           /*  Current state */
-	u32  M;              /*  Message accumulator (single word) */
-	u32     nBytesInM;      /*  # bytes in M */
+	u32 K0, K1; /*  Key */
+	u32 L, R; /*  Current state */
+	u32 M; /*  Message accumulator (single word) */
+	u32 nBytesInM; /*  # bytes in M */
 };
 
 /* ===== start - public domain SHA256 implementation ===== */
@@ -249,24 +244,19 @@ void rtw_secmicappendbyte(struct mic_data *pmicdata, u8 b);
 void rtw_secmicappend(struct mic_data *pmicdata, u8 *src, u32 nBytes);
 void rtw_secgetmic(struct mic_data *pmicdata, u8 *dst);
 
-void rtw_seccalctkipmic(
-	u8 *key,
-	u8 *header,
-	u8 *data,
-	u32 data_len,
-	u8 *Miccode,
-	u8   priority);
+void rtw_seccalctkipmic(u8 *key, u8 *header, u8 *data, u32 data_len,
+			u8 *Miccode, u8 priority);
 
 u32 rtw_aes_encrypt(struct adapter *padapter, u8 *pxmitframe);
 u32 rtw_tkip_encrypt(struct adapter *padapter, u8 *pxmitframe);
-void rtw_wep_encrypt(struct adapter *padapter, u8  *pxmitframe);
+void rtw_wep_encrypt(struct adapter *padapter, u8 *pxmitframe);
 
-u32 rtw_aes_decrypt(struct adapter *padapter, u8  *precvframe);
-u32 rtw_tkip_decrypt(struct adapter *padapter, u8  *precvframe);
-void rtw_wep_decrypt(struct adapter *padapter, u8  *precvframe);
+u32 rtw_aes_decrypt(struct adapter *padapter, u8 *precvframe);
+u32 rtw_tkip_decrypt(struct adapter *padapter, u8 *precvframe);
+void rtw_wep_decrypt(struct adapter *padapter, u8 *precvframe);
 u32 rtw_BIP_verify(struct adapter *padapter, u8 *precvframe);
 
 void rtw_sec_restore_wep_key(struct adapter *adapter);
 u8 rtw_handle_tkip_countermeasure(struct adapter *adapter, const char *caller);
 
-#endif	/* __RTL871X_SECURITY_H_ */
+#endif /* __RTL871X_SECURITY_H_ */
diff --git a/drivers/staging/rtl8723bs/include/rtw_version.h b/drivers/staging/rtl8723bs/include/rtw_version.h
index 55e907b097aef..008a74c2644ca 100644
--- a/drivers/staging/rtl8723bs/include/rtw_version.h
+++ b/drivers/staging/rtl8723bs/include/rtw_version.h
@@ -1,3 +1,3 @@
 /* SPDX-License-Identifier: GPL-2.0 */
-#define DRIVERVERSION	"v4.3.5.5_12290.20140916_BTCOEX20140507-4E40"
-#define BTCOEXVERSION	"BTCOEX20140507-4E40"
+#define DRIVERVERSION "v4.3.5.5_12290.20140916_BTCOEX20140507-4E40"
+#define BTCOEXVERSION "BTCOEX20140507-4E40"
diff --git a/drivers/staging/rtl8723bs/include/rtw_xmit.h b/drivers/staging/rtl8723bs/include/rtw_xmit.h
index f67cb22e3396f..480d5d3db5d2c 100644
--- a/drivers/staging/rtl8723bs/include/rtw_xmit.h
+++ b/drivers/staging/rtl8723bs/include/rtw_xmit.h
@@ -9,73 +9,76 @@
 
 #include <linux/completion.h>
 
-#define MAX_XMITBUF_SZ	(20480)	/*  20k */
+#define MAX_XMITBUF_SZ (20480) /*  20k */
 
-#define NR_XMITBUFF	(16)
+#define NR_XMITBUFF (16)
 
 #define XMITBUF_ALIGN_SZ 512
 
 /*  xmit extension buff definition */
-#define MAX_XMIT_EXTBUF_SZ	(1536)
-#define NR_XMIT_EXTBUFF	(32)
+#define MAX_XMIT_EXTBUF_SZ (1536)
+#define NR_XMIT_EXTBUFF (32)
 
-#define MAX_CMDBUF_SZ	(5120)	/* 4096) */
+#define MAX_CMDBUF_SZ (5120) /* 4096) */
 
-#define MAX_NUMBLKS		(1)
+#define MAX_NUMBLKS (1)
 
 #define XMIT_VO_QUEUE (0)
 #define XMIT_VI_QUEUE (1)
 #define XMIT_BE_QUEUE (2)
 #define XMIT_BK_QUEUE (3)
 
-#define VO_QUEUE_INX		0
-#define VI_QUEUE_INX		1
-#define BE_QUEUE_INX		2
-#define BK_QUEUE_INX		3
-#define BCN_QUEUE_INX		4
-#define MGT_QUEUE_INX		5
-#define HIGH_QUEUE_INX		6
-
-#define HW_QUEUE_ENTRY	8
-
-#define WEP_IV(pattrib_iv, dot11txpn, keyidx)\
-do {\
-	pattrib_iv[0] = dot11txpn._byte_.TSC0;\
-	pattrib_iv[1] = dot11txpn._byte_.TSC1;\
-	pattrib_iv[2] = dot11txpn._byte_.TSC2;\
-	pattrib_iv[3] = ((keyidx & 0x3)<<6);\
-	dot11txpn.val = (dot11txpn.val == 0xffffff) ? 0 : (dot11txpn.val + 1);\
-} while (0)
-
-
-#define TKIP_IV(pattrib_iv, dot11txpn, keyidx)\
-do {\
-	pattrib_iv[0] = dot11txpn._byte_.TSC1;\
-	pattrib_iv[1] = (dot11txpn._byte_.TSC1 | 0x20) & 0x7f;\
-	pattrib_iv[2] = dot11txpn._byte_.TSC0;\
-	pattrib_iv[3] = BIT(5) | ((keyidx & 0x3)<<6);\
-	pattrib_iv[4] = dot11txpn._byte_.TSC2;\
-	pattrib_iv[5] = dot11txpn._byte_.TSC3;\
-	pattrib_iv[6] = dot11txpn._byte_.TSC4;\
-	pattrib_iv[7] = dot11txpn._byte_.TSC5;\
-	dot11txpn.val = dot11txpn.val == 0xffffffffffffULL ? 0 : (dot11txpn.val + 1);\
-} while (0)
-
-#define AES_IV(pattrib_iv, dot11txpn, keyidx)\
-do {\
-	pattrib_iv[0] = dot11txpn._byte_.TSC0;\
-	pattrib_iv[1] = dot11txpn._byte_.TSC1;\
-	pattrib_iv[2] = 0;\
-	pattrib_iv[3] = BIT(5) | ((keyidx & 0x3)<<6);\
-	pattrib_iv[4] = dot11txpn._byte_.TSC2;\
-	pattrib_iv[5] = dot11txpn._byte_.TSC3;\
-	pattrib_iv[6] = dot11txpn._byte_.TSC4;\
-	pattrib_iv[7] = dot11txpn._byte_.TSC5;\
-	dot11txpn.val = dot11txpn.val == 0xffffffffffffULL ? 0 : (dot11txpn.val + 1);\
-} while (0)
-
-
-#define HWXMIT_ENTRY	4
+#define VO_QUEUE_INX 0
+#define VI_QUEUE_INX 1
+#define BE_QUEUE_INX 2
+#define BK_QUEUE_INX 3
+#define BCN_QUEUE_INX 4
+#define MGT_QUEUE_INX 5
+#define HIGH_QUEUE_INX 6
+
+#define HW_QUEUE_ENTRY 8
+
+#define WEP_IV(pattrib_iv, dot11txpn, keyidx)                                  \
+	do {                                                                   \
+		pattrib_iv[0] = dot11txpn._byte_.TSC0;                         \
+		pattrib_iv[1] = dot11txpn._byte_.TSC1;                         \
+		pattrib_iv[2] = dot11txpn._byte_.TSC2;                         \
+		pattrib_iv[3] = ((keyidx & 0x3) << 6);                         \
+		dot11txpn.val =                                                \
+			(dot11txpn.val == 0xffffff) ? 0 : (dot11txpn.val + 1); \
+	} while (0)
+
+#define TKIP_IV(pattrib_iv, dot11txpn, keyidx)                         \
+	do {                                                           \
+		pattrib_iv[0] = dot11txpn._byte_.TSC1;                 \
+		pattrib_iv[1] = (dot11txpn._byte_.TSC1 | 0x20) & 0x7f; \
+		pattrib_iv[2] = dot11txpn._byte_.TSC0;                 \
+		pattrib_iv[3] = BIT(5) | ((keyidx & 0x3) << 6);        \
+		pattrib_iv[4] = dot11txpn._byte_.TSC2;                 \
+		pattrib_iv[5] = dot11txpn._byte_.TSC3;                 \
+		pattrib_iv[6] = dot11txpn._byte_.TSC4;                 \
+		pattrib_iv[7] = dot11txpn._byte_.TSC5;                 \
+		dot11txpn.val = dot11txpn.val == 0xffffffffffffULL ?   \
+					0 :                            \
+					(dot11txpn.val + 1);           \
+	} while (0)
+
+#define AES_IV(pattrib_iv, dot11txpn, keyidx)                        \
+	do {                                                         \
+		pattrib_iv[0] = dot11txpn._byte_.TSC0;               \
+		pattrib_iv[1] = dot11txpn._byte_.TSC1;               \
+		pattrib_iv[2] = 0;                                   \
+		pattrib_iv[3] = BIT(5) | ((keyidx & 0x3) << 6);      \
+		pattrib_iv[4] = dot11txpn._byte_.TSC2;               \
+		pattrib_iv[5] = dot11txpn._byte_.TSC3;               \
+		pattrib_iv[6] = dot11txpn._byte_.TSC4;               \
+		pattrib_iv[7] = dot11txpn._byte_.TSC5;               \
+		dot11txpn.val = dot11txpn.val == 0xffffffffffffULL ? \
+					0 :                          \
+					(dot11txpn.val + 1);         \
+	} while (0)
+
+#define HWXMIT_ENTRY 4
 
 /*  For Buffer Descriptor ring architecture */
 #define TXDESC_SIZE 40
@@ -102,16 +105,16 @@ struct tx_desc {
 
 union txdesc {
 	struct tx_desc txdesc;
-	unsigned int value[TXDESC_SIZE>>2];
+	unsigned int value[TXDESC_SIZE >> 2];
 };
 
-struct	hw_xmit	{
+struct hw_xmit {
 	/* spinlock_t xmit_lock; */
 	/* struct list_head	pending; */
 	struct __queue *sta_queue;
 	/* struct hw_txqueue *phwtxqueue; */
 	/* signed int	txcmdcnt; */
-	int	accnt;
+	int accnt;
 };
 
 /* reduce size */
@@ -122,12 +125,12 @@ struct pkt_attrib {
 	u8 dhcp_pkt;
 	u16 ether_type;
 	u16 seqnum;
-	u16 pkt_hdrlen;	/* the original 802.3 pkt header len */
-	u16 hdrlen;		/* the WLAN Header Len */
-	u32 pktlen;		/* the original 802.3 pkt raw_data len (not include ether_hdr data) */
+	u16 pkt_hdrlen; /* the original 802.3 pkt header len */
+	u16 hdrlen; /* the WLAN Header Len */
+	u32 pktlen; /* the original 802.3 pkt raw_data len (not include ether_hdr data) */
 	u32 last_txcmdsz;
 	u8 nr_frags;
-	u8 encrypt;	/* when 0 indicates no encryption; when non-zero, indicates the encryption algorithm */
+	u8 encrypt; /* when 0 indicates no encryption; when non-zero, indicates the encryption algorithm */
 	u8 iv_len;
 	u8 icv_len;
 	u8 iv[18];
@@ -135,7 +138,7 @@ struct pkt_attrib {
 	u8 priority;
 	u8 ack_policy;
 	u8 mac_id;
-	u8 vcs_mode;	/* virtual carrier sense method */
+	u8 vcs_mode; /* virtual carrier sense method */
 	u8 dst[ETH_ALEN];
 	u8 src[ETH_ALEN];
 	u8 ta[ETH_ALEN];
@@ -143,41 +146,40 @@ struct pkt_attrib {
 	u8 key_idx;
 	u8 qos_en;
 	u8 ht_en;
-	u8 raid;/* rate adpative id */
+	u8 raid; /* rate adpative id */
 	u8 bwmode;
-	u8 ch_offset;/* PRIME_CHNL_OFFSET */
-	u8 sgi;/* short GI */
-	u8 ampdu_en;/* tx ampdu enable */
+	u8 ch_offset; /* PRIME_CHNL_OFFSET */
+	u8 sgi; /* short GI */
+	u8 ampdu_en; /* tx ampdu enable */
 	u8 ampdu_spacing; /* ampdu_min_spacing for peer sta's rx */
-	u8 mdata;/* more data bit */
-	u8 pctrl;/* per packet txdesc control enable */
-	u8 triggered;/* for ap mode handling Power Saving sta */
+	u8 mdata; /* more data bit */
+	u8 pctrl; /* per packet txdesc control enable */
+	u8 triggered; /* for ap mode handling Power Saving sta */
 	u8 qsel;
-	u8 order;/* order bit */
+	u8 order; /* order bit */
 	u8 eosp;
 	u8 rate;
 	u8 intel_proxim;
 	u8 retry_ctrl;
-	u8   mbssid;
+	u8 mbssid;
 	u8 ldpc;
 	u8 stbc;
 	struct sta_info *psta;
 
 	u8 rtsen;
 	u8 cts2self;
-	union Keytype	dot11tkiptxmickey;
+	union Keytype dot11tkiptxmickey;
 	/* union Keytype	dot11tkiprxmickey; */
-	union Keytype	dot118021x_UncstKey;
+	union Keytype dot118021x_UncstKey;
 
 	u8 icmp_pkt;
-
 };
 
-#define WLANHDR_OFFSET	64
+#define WLANHDR_OFFSET 64
 
-#define NULL_FRAMETAG		(0x0)
-#define DATA_FRAMETAG		0x01
-#define MGNT_FRAMETAG		0x03
+#define NULL_FRAMETAG (0x0)
+#define DATA_FRAMETAG 0x01
+#define MGNT_FRAMETAG 0x03
 
 enum {
 	XMITBUF_DATA = 0,
@@ -185,7 +187,7 @@ enum {
 	XMITBUF_CMD = 2,
 };
 
-struct  submit_ctx {
+struct submit_ctx {
 	unsigned long submit_time; /* */
 	u32 timeout_ms; /* <0: not synchronous, 0: wait forever, >0: up to ms waiting */
 	int status; /* status for operation */
@@ -208,14 +210,13 @@ enum {
 	RTW_SCTX_DONE_CMD_ERROR,
 };
 
-
 void rtw_sctx_init(struct submit_ctx *sctx, int timeout_ms);
 int rtw_sctx_wait(struct submit_ctx *sctx);
 void rtw_sctx_done_err(struct submit_ctx **sctx, int status);
 void rtw_sctx_done(struct submit_ctx **sctx);
 
 struct xmit_buf {
-	struct list_head	list;
+	struct list_head list;
 
 	struct adapter *padapter;
 
@@ -229,7 +230,7 @@ struct xmit_buf {
 	u16 flags;
 	u32 alloc_sz;
 
-	u32  len;
+	u32 len;
 
 	struct submit_ctx *sctx;
 
@@ -242,15 +243,14 @@ struct xmit_buf {
 	u8 agg_num;
 };
 
-
 struct xmit_frame {
-	struct list_head	list;
+	struct list_head list;
 
 	struct pkt_attrib attrib;
 
 	struct sk_buff *pkt;
 
-	int	frame_tag;
+	int frame_tag;
 
 	struct adapter *padapter;
 
@@ -265,70 +265,60 @@ struct xmit_frame {
 
 	u8 *alloc_addr; /* the actual address this xmitframe allocated */
 	u8 ext_tag; /* 0:data, 1:mgmt */
-
 };
 
 struct tx_servq {
-	struct list_head	tx_pending;
-	struct __queue	sta_pending;
+	struct list_head tx_pending;
+	struct __queue sta_pending;
 	int qcnt;
 };
 
-
 struct sta_xmit_priv {
-	spinlock_t	lock;
-	signed int	option;
-	signed int	apsd_setting;	/* When bit mask is on, the associated edca queue supports APSD. */
-
+	spinlock_t lock;
+	signed int option;
+	signed int
+		apsd_setting; /* When bit mask is on, the associated edca queue supports APSD. */
 
 	/* struct tx_servq blk_q[MAX_NUMBLKS]; */
-	struct tx_servq	be_q;			/* priority == 0, 3 */
-	struct tx_servq	bk_q;			/* priority == 1, 2 */
-	struct tx_servq	vi_q;			/* priority == 4, 5 */
-	struct tx_servq	vo_q;			/* priority == 6, 7 */
-	struct list_head	legacy_dz;
-	struct list_head  apsd;
+	struct tx_servq be_q; /* priority == 0, 3 */
+	struct tx_servq bk_q; /* priority == 1, 2 */
+	struct tx_servq vi_q; /* priority == 4, 5 */
+	struct tx_servq vo_q; /* priority == 6, 7 */
+	struct list_head legacy_dz;
+	struct list_head apsd;
 
 	u16 txseq_tid[16];
 
 	/* uint	sta_tx_bytes; */
 	/* u64	sta_tx_pkts; */
 	/* uint	sta_tx_fail; */
-
-
 };
 
-
-struct	hw_txqueue	{
-	volatile signed int	head;
-	volatile signed int	tail;
-	volatile signed int	free_sz;	/* in units of 64 bytes */
-	volatile signed int      free_cmdsz;
-	volatile signed int	 txsz[8];
-	uint	ff_hwaddr;
-	uint	cmd_hwaddr;
-	signed int	ac_tag;
-};
-
-enum cmdbuf_type {
-	CMDBUF_BEACON = 0x00,
-	CMDBUF_RSVD,
-	CMDBUF_MAX
+struct hw_txqueue {
+	volatile signed int head;
+	volatile signed int tail;
+	volatile signed int free_sz; /* in units of 64 bytes */
+	volatile signed int free_cmdsz;
+	volatile signed int txsz[8];
+	uint ff_hwaddr;
+	uint cmd_hwaddr;
+	signed int ac_tag;
 };
 
-struct	xmit_priv {
+enum cmdbuf_type { CMDBUF_BEACON = 0x00, CMDBUF_RSVD, CMDBUF_MAX };
 
-	spinlock_t	lock;
+struct xmit_priv {
+	spinlock_t lock;
 
 	struct completion xmit_comp;
 	struct completion terminate_xmitthread_comp;
 
 	/* struct __queue	blk_strms[MAX_NUMBLKS]; */
-	struct __queue	be_pending;
-	struct __queue	bk_pending;
-	struct __queue	vi_pending;
-	struct __queue	vo_pending;
-	struct __queue	bm_pending;
+	struct __queue be_pending;
+	struct __queue bk_pending;
+	struct __queue vi_pending;
+	struct __queue vo_pending;
+	struct __queue bm_pending;
 
 	/* struct __queue	legacy_dz_queue; */
 	/* struct __queue	apsd_queue; */
@@ -336,7 +326,7 @@ struct	xmit_priv {
 	u8 *pallocated_frame_buf;
 	u8 *pxmit_frame_buf;
 	uint free_xmitframe_cnt;
-	struct __queue	free_xmit_queue;
+	struct __queue free_xmit_queue;
 
 	/* uint mapping_addr; */
 	/* uint pkt_sz; */
@@ -352,24 +342,25 @@ struct	xmit_priv {
 	/* struct	hw_txqueue	vo_txqueue; */
 	/* struct	hw_txqueue	bmc_txqueue; */
 
-	uint	frag_len;
+	uint frag_len;
 
-	struct adapter	*adapter;
+	struct adapter *adapter;
 
-	u8   vcs_setting;
+	u8 vcs_setting;
 	u8 vcs;
 	u8 vcs_type;
 	/* u16  rts_thresh; */
 
-	u64	tx_bytes;
-	u64	tx_pkts;
-	u64	tx_drop;
-	u64	last_tx_pkts;
+	u64 tx_bytes;
+	u64 tx_pkts;
+	u64 tx_drop;
+	u64 last_tx_pkts;
 
 	struct hw_xmit *hwxmits;
 	u8 hwxmit_entry;
 
-	u8 wmm_para_seq[4];/* sequence for wmm ac parameter strength from large to small. it's value is 0->vo, 1->vi, 2->be, 3->bk. */
+	u8 wmm_para_seq
+		[4]; /* sequence for wmm ac parameter strength from large to small. it's value is 0->vo, 1->vi, 2->be, 3->bk. */
 
 	void *SdioXmitThread;
 	struct completion SdioXmitStart;
@@ -386,11 +377,11 @@ struct	xmit_priv {
 	u8 *pxmit_extbuf;
 	uint free_xmit_extbuf_cnt;
 
-	struct xmit_buf	pcmd_xmitbuf[CMDBUF_MAX];
+	struct xmit_buf pcmd_xmitbuf[CMDBUF_MAX];
 
 	u16 nqos_ssn;
 
-	int	ack_tx;
+	int ack_tx;
 	struct mutex ack_tx_mutex;
 	struct submit_ctx ack_tx_ops;
 	u8 seq_no;
@@ -398,68 +389,82 @@ struct	xmit_priv {
 };
 
 extern struct xmit_frame *__rtw_alloc_cmdxmitframe(struct xmit_priv *pxmitpriv,
-		enum cmdbuf_type buf_type);
+						   enum cmdbuf_type buf_type);
 #define rtw_alloc_cmdxmitframe(p) __rtw_alloc_cmdxmitframe(p, CMDBUF_RSVD)
 #define rtw_alloc_bcnxmitframe(p) __rtw_alloc_cmdxmitframe(p, CMDBUF_BEACON)
 
 extern struct xmit_buf *rtw_alloc_xmitbuf_ext(struct xmit_priv *pxmitpriv);
-extern s32 rtw_free_xmitbuf_ext(struct xmit_priv *pxmitpriv, struct xmit_buf *pxmitbuf);
+extern s32 rtw_free_xmitbuf_ext(struct xmit_priv *pxmitpriv,
+				struct xmit_buf *pxmitbuf);
 
 extern struct xmit_buf *rtw_alloc_xmitbuf(struct xmit_priv *pxmitpriv);
-extern s32 rtw_free_xmitbuf(struct xmit_priv *pxmitpriv, struct xmit_buf *pxmitbuf);
-
-void rtw_count_tx_stats(struct adapter *padapter, struct xmit_frame *pxmitframe, int sz);
-extern void rtw_update_protection(struct adapter *padapter, u8 *ie, uint ie_len);
-extern s32 rtw_make_wlanhdr(struct adapter *padapter, u8 *hdr, struct pkt_attrib *pattrib);
+extern s32 rtw_free_xmitbuf(struct xmit_priv *pxmitpriv,
+			    struct xmit_buf *pxmitbuf);
+
+void rtw_count_tx_stats(struct adapter *padapter, struct xmit_frame *pxmitframe,
+			int sz);
+extern void rtw_update_protection(struct adapter *padapter, u8 *ie,
+				  uint ie_len);
+extern s32 rtw_make_wlanhdr(struct adapter *padapter, u8 *hdr,
+			    struct pkt_attrib *pattrib);
 extern s32 rtw_put_snap(u8 *data, u16 h_proto);
 
 extern struct xmit_frame *rtw_alloc_xmitframe(struct xmit_priv *pxmitpriv);
 struct xmit_frame *rtw_alloc_xmitframe_ext(struct xmit_priv *pxmitpriv);
 struct xmit_frame *rtw_alloc_xmitframe_once(struct xmit_priv *pxmitpriv);
-extern s32 rtw_free_xmitframe(struct xmit_priv *pxmitpriv, struct xmit_frame *pxmitframe);
-extern void rtw_free_xmitframe_queue(struct xmit_priv *pxmitpriv, struct __queue *pframequeue);
-struct tx_servq *rtw_get_sta_pending(struct adapter *padapter, struct sta_info *psta, signed int up, u8 *ac);
-int rtw_xmitframe_enqueue(struct adapter *padapter, struct xmit_frame *pxmitframe);
+extern s32 rtw_free_xmitframe(struct xmit_priv *pxmitpriv,
+			      struct xmit_frame *pxmitframe);
+extern void rtw_free_xmitframe_queue(struct xmit_priv *pxmitpriv,
+				     struct __queue *pframequeue);
+struct tx_servq *rtw_get_sta_pending(struct adapter *padapter,
+				     struct sta_info *psta, signed int up,
+				     u8 *ac);
+int rtw_xmitframe_enqueue(struct adapter *padapter,
+			  struct xmit_frame *pxmitframe);
 
 extern u32 rtw_calculate_wlan_pkt_size_by_attribue(struct pkt_attrib *pattrib);
 #define rtw_wlan_pkt_size(f) rtw_calculate_wlan_pkt_size_by_attribue(&f->attrib)
-extern s32 rtw_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, struct xmit_frame *pxmitframe);
-extern s32 rtw_mgmt_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt, struct xmit_frame *pxmitframe);
+extern s32 rtw_xmitframe_coalesce(struct adapter *padapter, struct sk_buff *pkt,
+				  struct xmit_frame *pxmitframe);
+extern s32 rtw_mgmt_xmitframe_coalesce(struct adapter *padapter,
+				       struct sk_buff *pkt,
+				       struct xmit_frame *pxmitframe);
 s32 _rtw_init_hw_txqueue(struct hw_txqueue *phw_txqueue, u8 ac_tag);
 void _rtw_init_sta_xmit_priv(struct sta_xmit_priv *psta_xmitpriv);
 
-
 s32 rtw_txframes_pending(struct adapter *padapter);
 void rtw_init_hwxmits(struct hw_xmit *phwxmit, signed int entry);
 
-
 s32 _rtw_init_xmit_priv(struct xmit_priv *pxmitpriv, struct adapter *padapter);
 void _rtw_free_xmit_priv(struct xmit_priv *pxmitpriv);
 
-
 void rtw_free_hwxmits(struct adapter *padapter);
 
-
 s32 rtw_xmit(struct adapter *padapter, struct sk_buff **pkt);
 bool xmitframe_hiq_filter(struct xmit_frame *xmitframe);
 
-signed int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter, struct xmit_frame *pxmitframe);
+signed int xmitframe_enqueue_for_sleeping_sta(struct adapter *padapter,
+					      struct xmit_frame *pxmitframe);
 void stop_sta_xmit(struct adapter *padapter, struct sta_info *psta);
 void wakeup_sta_to_xmit(struct adapter *padapter, struct sta_info *psta);
-void xmit_delivery_enabled_frames(struct adapter *padapter, struct sta_info *psta);
+void xmit_delivery_enabled_frames(struct adapter *padapter,
+				  struct sta_info *psta);
 
 u8 query_ra_short_GI(struct sta_info *psta);
 
 u8 qos_acm(u8 acm_mask, u8 priority);
 
-void enqueue_pending_xmitbuf(struct xmit_priv *pxmitpriv, struct xmit_buf *pxmitbuf);
-void enqueue_pending_xmitbuf_to_head(struct xmit_priv *pxmitpriv, struct xmit_buf *pxmitbuf);
+void enqueue_pending_xmitbuf(struct xmit_priv *pxmitpriv,
+			     struct xmit_buf *pxmitbuf);
+void enqueue_pending_xmitbuf_to_head(struct xmit_priv *pxmitpriv,
+				     struct xmit_buf *pxmitbuf);
 struct xmit_buf *dequeue_pending_xmitbuf(struct xmit_priv *pxmitpriv);
-struct xmit_buf *dequeue_pending_xmitbuf_under_survey(struct xmit_priv *pxmitpriv);
-signed int	check_pending_xmitbuf(struct xmit_priv *pxmitpriv);
-int	rtw_xmit_thread(void *context);
+struct xmit_buf *
+dequeue_pending_xmitbuf_under_survey(struct xmit_priv *pxmitpriv);
+signed int check_pending_xmitbuf(struct xmit_priv *pxmitpriv);
+int rtw_xmit_thread(void *context);
 
-u32 rtw_get_ff_hwaddr(struct xmit_frame	*pxmitframe);
+u32 rtw_get_ff_hwaddr(struct xmit_frame *pxmitframe);
 
 int rtw_ack_tx_wait(struct xmit_priv *pxmitpriv, u32 timeout_ms);
 void rtw_ack_tx_done(struct xmit_priv *pxmitpriv, int status);
@@ -467,4 +472,4 @@ void rtw_ack_tx_done(struct xmit_priv *pxmitpriv, int status);
 /* include after declaring struct xmit_buf, in order to avoid warning */
 #include <xmit_osdep.h>
 
-#endif	/* _RTL871X_XMIT_H_ */
+#endif /* _RTL871X_XMIT_H_ */
diff --git a/drivers/staging/rtl8723bs/include/sdio_ops.h b/drivers/staging/rtl8723bs/include/sdio_ops.h
index 252b0e1646e51..0f89e4765c3be 100644
--- a/drivers/staging/rtl8723bs/include/sdio_ops.h
+++ b/drivers/staging/rtl8723bs/include/sdio_ops.h
@@ -7,7 +7,6 @@
 #ifndef __SDIO_OPS_H__
 #define __SDIO_OPS_H__
 
-
 #include <sdio_ops_linux.h>
 
 extern void sdio_set_intf_ops(struct adapter *padapter, struct _io_ops *pops);
@@ -16,8 +15,10 @@ extern void sdio_set_intf_ops(struct adapter *padapter, struct _io_ops *pops);
 /* extern void sdio_func1cmd52_write(struct intf_hdl *pintfhdl, u32 addr, u32 cnt, u8 *wmem); */
 extern u8 SdioLocalCmd52Read1Byte(struct adapter *padapter, u32 addr);
 extern void SdioLocalCmd52Write1Byte(struct adapter *padapter, u32 addr, u8 v);
-extern s32 sdio_local_read(struct adapter *padapter, u32 addr, u32 cnt, u8 *pbuf);
-extern s32 sdio_local_write(struct adapter *padapter, u32 addr, u32 cnt, u8 *pbuf);
+extern s32 sdio_local_read(struct adapter *padapter, u32 addr, u32 cnt,
+			   u8 *pbuf);
+extern s32 sdio_local_write(struct adapter *padapter, u32 addr, u32 cnt,
+			    u8 *pbuf);
 
 u32 _sdio_read32(struct adapter *padapter, u32 addr);
 s32 _sdio_write32(struct adapter *padapter, u32 addr, u32 val);
diff --git a/drivers/staging/rtl8723bs/include/sdio_ops_linux.h b/drivers/staging/rtl8723bs/include/sdio_ops_linux.h
index cd67a7201065f..c02c2d9e98caf 100644
--- a/drivers/staging/rtl8723bs/include/sdio_ops_linux.h
+++ b/drivers/staging/rtl8723bs/include/sdio_ops_linux.h
@@ -7,9 +7,9 @@
 #ifndef __SDIO_OPS_LINUX_H__
 #define __SDIO_OPS_LINUX_H__
 
-#define SDIO_ERR_VAL8	0xEA
-#define SDIO_ERR_VAL16	0xEAEA
-#define SDIO_ERR_VAL32	0xEAEAEAEA
+#define SDIO_ERR_VAL8 0xEA
+#define SDIO_ERR_VAL16 0xEAEA
+#define SDIO_ERR_VAL32 0xEAEAEAEA
 
 s32 _sd_cmd52_read(struct intf_hdl *pintfhdl, u32 addr, u32 cnt, u8 *pdata);
 s32 _sd_cmd52_write(struct intf_hdl *pintfhdl, u32 addr, u32 cnt, u8 *pdata);
diff --git a/drivers/staging/rtl8723bs/include/sta_info.h b/drivers/staging/rtl8723bs/include/sta_info.h
index 63343998266ad..e3e87cee83e86 100644
--- a/drivers/staging/rtl8723bs/include/sta_info.h
+++ b/drivers/staging/rtl8723bs/include/sta_info.h
@@ -7,18 +7,16 @@
 #ifndef __STA_INFO_H_
 #define __STA_INFO_H_
 
-
-#define IBSS_START_MAC_ID	2
+#define IBSS_START_MAC_ID 2
 #define NUM_STA 32
 #define NUM_ACL 16
 
-
 /* if mode == 0, then the sta is allowed once the addr is hit. */
 /* if mode == 1, then the sta is rejected once the addr is non-hit. */
 struct rtw_wlan_acl_node {
 	struct list_head list;
-	u8		 addr[ETH_ALEN];
-	u8		 valid;
+	u8 addr[ETH_ALEN];
+	u8 valid;
 };
 
 /* mode = 0, disable */
@@ -28,50 +26,48 @@ struct wlan_acl_pool {
 	int mode;
 	int num;
 	struct rtw_wlan_acl_node aclnode[NUM_ACL];
-	struct __queue	acl_node_q;
+	struct __queue acl_node_q;
 };
 
 struct rssi_sta {
-	s32	UndecoratedSmoothedPWDB;
-	s32	UndecoratedSmoothedCCK;
-	s32	UndecoratedSmoothedOFDM;
-	u64	PacketMap;
+	s32 UndecoratedSmoothedPWDB;
+	s32 UndecoratedSmoothedCCK;
+	s32 UndecoratedSmoothedOFDM;
+	u64 PacketMap;
 	u8 ValidBit;
 };
 
-struct	stainfo_stats	{
-
+struct stainfo_stats {
 	u64 rx_mgnt_pkts;
-		u64 rx_beacon_pkts;
-		u64 rx_probereq_pkts;
-		u64 rx_probersp_pkts;
-		u64 rx_probersp_bm_pkts;
-		u64 rx_probersp_uo_pkts;
+	u64 rx_beacon_pkts;
+	u64 rx_probereq_pkts;
+	u64 rx_probersp_pkts;
+	u64 rx_probersp_bm_pkts;
+	u64 rx_probersp_uo_pkts;
 	u64 rx_ctrl_pkts;
 	u64 rx_data_pkts;
 
-	u64	last_rx_mgnt_pkts;
-		u64 last_rx_beacon_pkts;
-		u64 last_rx_probereq_pkts;
-		u64 last_rx_probersp_pkts;
-		u64 last_rx_probersp_bm_pkts;
-		u64 last_rx_probersp_uo_pkts;
-	u64	last_rx_ctrl_pkts;
-	u64	last_rx_data_pkts;
-
-	u64	rx_bytes;
-	u64	rx_drops;
-
-	u64	tx_pkts;
-	u64	tx_bytes;
-	u64  tx_drops;
+	u64 last_rx_mgnt_pkts;
+	u64 last_rx_beacon_pkts;
+	u64 last_rx_probereq_pkts;
+	u64 last_rx_probersp_pkts;
+	u64 last_rx_probersp_bm_pkts;
+	u64 last_rx_probersp_uo_pkts;
+	u64 last_rx_ctrl_pkts;
+	u64 last_rx_data_pkts;
+
+	u64 rx_bytes;
+	u64 rx_drops;
+
+	u64 tx_pkts;
+	u64 tx_bytes;
+	u64 tx_drops;
 };
 
 struct sta_info {
-
-	spinlock_t	lock;
-	struct list_head	list; /* free_sta_queue */
-	struct list_head	hash_list; /* sta_hash */
+	spinlock_t lock;
+	struct list_head list; /* free_sta_queue */
+	struct list_head hash_list; /* sta_hash */
 	struct adapter *padapter;
 
 	struct sta_xmit_priv sta_xmitpriv;
@@ -87,19 +83,18 @@ struct sta_info {
 	u8 hwaddr[ETH_ALEN];
 
 	bool ieee8021x_blocked;
-	uint	dot118021XPrivacy; /* aes, tkip... */
-	union Keytype	dot11tkiptxmickey;
-	union Keytype	dot11tkiprxmickey;
-	union Keytype	dot118021x_UncstKey;
-	union pn48		dot11txpn;			/*  PN48 used for Unicast xmit */
-	union pn48		dot11wtxpn;			/*  PN48 used for Unicast mgmt xmit. */
-	union pn48		dot11rxpn;			/*  PN48 used for Unicast recv. */
-
+	uint dot118021XPrivacy; /* aes, tkip... */
+	union Keytype dot11tkiptxmickey;
+	union Keytype dot11tkiprxmickey;
+	union Keytype dot118021x_UncstKey;
+	union pn48 dot11txpn; /*  PN48 used for Unicast xmit */
+	union pn48 dot11wtxpn; /*  PN48 used for Unicast mgmt xmit. */
+	union pn48 dot11rxpn; /*  PN48 used for Unicast recv. */
 
 	u8 bssrateset[16];
 	u32 bssratelen;
-	s32  rssi;
-	s32	signal_quality;
+	s32 rssi;
+	s32 signal_quality;
 
 	u8 cts2self;
 	u8 rtsen;
@@ -107,7 +102,7 @@ struct sta_info {
 	u8 raid;
 	u8 init_rate;
 	u32 ra_mask;
-	u8 wireless_mode;	/*  NETWORK_TYPE */
+	u8 wireless_mode; /*  NETWORK_TYPE */
 	u8 bw_mode;
 
 	u8 ldpc;
@@ -122,10 +117,9 @@ struct sta_info {
 	struct recv_reorder_ctrl recvreorder_ctrl[16];
 
 	/* for A-MPDU Tx */
-	/* unsigned char 	ampdu_txen_bitmap; */
+	/* unsigned char	ampdu_txen_bitmap; */
 	u16 BA_starting_seqctrl[16];
 
-
 	struct ht_priv htpriv;
 
 	/* Notes: */
@@ -148,8 +142,8 @@ struct sta_info {
 	u16 capability;
 	int flags;
 
-	int dot8021xalg;/* 0:disable, 1:psk, 2:802.1x */
-	int wpa_psk;/* 0:disable, bit(0): WPA, bit(1):WPA2 */
+	int dot8021xalg; /* 0:disable, 1:psk, 2:802.1x */
+	int wpa_psk; /* 0:disable, bit(0): WPA, bit(1):WPA2 */
 	int wpa_group_cipher;
 	int wpa2_group_cipher;
 	int wpa_pairwise_cipher;
@@ -170,7 +164,7 @@ struct sta_info {
 	u8 qos_info;
 
 	u8 max_sp_len;
-	u8 uapsd_bk;/* BIT(0): Delivery enabled, BIT(1): Trigger enabled */
+	u8 uapsd_bk; /* BIT(0): Delivery enabled, BIT(1): Trigger enabled */
 	u8 uapsd_be;
 	u8 uapsd_vi;
 	u8 uapsd_vo;
@@ -186,7 +180,7 @@ struct sta_info {
 	u32 assoc_req_len;
 
 	/* for DM */
-	struct rssi_sta	 rssi_stat;
+	struct rssi_sta rssi_stat;
 
 	/* ODM_STA_INFO_T */
 	/*  ================ODM Relative Info ======================= */
@@ -196,16 +190,16 @@ struct sta_info {
 	/*  2011/10/20 MH Add for ODM STA info. */
 	/*  */
 	/*  Driver Write */
-	u8 bValid;				/*  record the sta status link or not? */
-	u8 IOTPeer;			/*  Enum value.	HT_IOT_PEER_E */
+	u8 bValid; /*  record the sta status link or not? */
+	u8 IOTPeer; /*  Enum value.	HT_IOT_PEER_E */
 	/*  ODM Write */
 	/* 1 PHY_STATUS_INFO */
-	u8 RSSI_Path[4];		/*  */
+	u8 RSSI_Path[4]; /*  */
 	u8 RSSI_Ave;
 	u8 RXEVM[4];
 	u8 RXSNR[4];
 
-	u8 rssi_level;			/* for Refresh RA mask */
+	u8 rssi_level; /* for Refresh RA mask */
 	/*  ODM Write */
 	/* 1 TX_INFO (may changed by IC) */
 	/* TX_INFO_T		pTxInfo;		 Define in IC folder. Move lower layer. */
@@ -217,51 +211,51 @@ struct sta_info {
 	u16 RxMgmtFrameSeqNum;
 };
 
-#define sta_rx_pkts(sta) \
-	(sta->sta_stats.rx_mgnt_pkts \
-	+ sta->sta_stats.rx_ctrl_pkts \
-	+ sta->sta_stats.rx_data_pkts)
+#define sta_rx_pkts(sta)                                             \
+	(sta->sta_stats.rx_mgnt_pkts + sta->sta_stats.rx_ctrl_pkts + \
+	 sta->sta_stats.rx_data_pkts)
 
-#define sta_rx_data_pkts(sta) \
-	(sta->sta_stats.rx_data_pkts)
+#define sta_rx_data_pkts(sta) (sta->sta_stats.rx_data_pkts)
 
-#define sta_last_rx_data_pkts(sta) \
-	(sta->sta_stats.last_rx_data_pkts)
+#define sta_last_rx_data_pkts(sta) (sta->sta_stats.last_rx_data_pkts)
 
-#define sta_rx_beacon_pkts(sta) \
-	(sta->sta_stats.rx_beacon_pkts)
+#define sta_rx_beacon_pkts(sta) (sta->sta_stats.rx_beacon_pkts)
 
-#define sta_last_rx_beacon_pkts(sta) \
-	(sta->sta_stats.last_rx_beacon_pkts)
+#define sta_last_rx_beacon_pkts(sta) (sta->sta_stats.last_rx_beacon_pkts)
 
-#define sta_rx_probersp_pkts(sta) \
-	(sta->sta_stats.rx_probersp_pkts)
+#define sta_rx_probersp_pkts(sta) (sta->sta_stats.rx_probersp_pkts)
 
-#define sta_last_rx_probersp_pkts(sta) \
-	(sta->sta_stats.last_rx_probersp_pkts)
+#define sta_last_rx_probersp_pkts(sta) (sta->sta_stats.last_rx_probersp_pkts)
 
-#define sta_update_last_rx_pkts(sta) \
-	do { \
-		sta->sta_stats.last_rx_mgnt_pkts = sta->sta_stats.rx_mgnt_pkts; \
-		sta->sta_stats.last_rx_beacon_pkts = sta->sta_stats.rx_beacon_pkts; \
-		sta->sta_stats.last_rx_probereq_pkts = sta->sta_stats.rx_probereq_pkts; \
-		sta->sta_stats.last_rx_probersp_pkts = sta->sta_stats.rx_probersp_pkts; \
-		sta->sta_stats.last_rx_probersp_bm_pkts = sta->sta_stats.rx_probersp_bm_pkts; \
-		sta->sta_stats.last_rx_probersp_uo_pkts = sta->sta_stats.rx_probersp_uo_pkts; \
-		sta->sta_stats.last_rx_ctrl_pkts = sta->sta_stats.rx_ctrl_pkts; \
-		sta->sta_stats.last_rx_data_pkts = sta->sta_stats.rx_data_pkts; \
+#define sta_update_last_rx_pkts(sta)                        \
+	do {                                                \
+		sta->sta_stats.last_rx_mgnt_pkts =          \
+			sta->sta_stats.rx_mgnt_pkts;        \
+		sta->sta_stats.last_rx_beacon_pkts =        \
+			sta->sta_stats.rx_beacon_pkts;      \
+		sta->sta_stats.last_rx_probereq_pkts =      \
+			sta->sta_stats.rx_probereq_pkts;    \
+		sta->sta_stats.last_rx_probersp_pkts =      \
+			sta->sta_stats.rx_probersp_pkts;    \
+		sta->sta_stats.last_rx_probersp_bm_pkts =   \
+			sta->sta_stats.rx_probersp_bm_pkts; \
+		sta->sta_stats.last_rx_probersp_uo_pkts =   \
+			sta->sta_stats.rx_probersp_uo_pkts; \
+		sta->sta_stats.last_rx_ctrl_pkts =          \
+			sta->sta_stats.rx_ctrl_pkts;        \
+		sta->sta_stats.last_rx_data_pkts =          \
+			sta->sta_stats.rx_data_pkts;        \
 	} while (0)
 
 #define STA_PKTS_FMT "(m:%llu, c:%llu, d:%llu)"
 
-struct	sta_priv {
-
+struct sta_priv {
 	u8 *pallocated_stainfo_buf;
 	u8 *pstainfo_buf;
-	struct __queue	free_sta_queue;
+	struct __queue free_sta_queue;
 
 	spinlock_t sta_hash_lock;
-	struct list_head   sta_hash[NUM_STA];
+	struct list_head sta_hash[NUM_STA];
 	int asoc_sta_count;
 	struct __queue sleep_q;
 	struct __queue wakeup_q;
@@ -275,7 +269,7 @@ struct	sta_priv {
 	u8 asoc_list_cnt;
 	u8 auth_list_cnt;
 
-	unsigned int auth_to;  /* sec, time to expire in authenticating. */
+	unsigned int auth_to; /* sec, time to expire in authenticating. */
 	unsigned int assoc_to; /* sec, time to expire before associating. */
 	unsigned int expire_to; /* sec , time to expire after associated. */
 
@@ -285,15 +279,14 @@ struct	sta_priv {
 	 */
 	struct sta_info *sta_aid[NUM_STA];
 
-	u16 sta_dz_bitmap;/* only support for 15 stations, aid bitmap for sleeping stations. */
-	u16 tim_bitmap;/* only support 15 stations, aid = 0~15 mapping bit0~bit15 */
+	u16 sta_dz_bitmap; /* only support for 15 stations, aid bitmap for sleeping stations. */
+	u16 tim_bitmap; /* only support 15 stations, aid = 0~15 mapping bit0~bit15 */
 
 	u16 max_num_sta;
 
 	struct wlan_acl_pool acl_list;
 };
 
-
 static inline u32 wifi_mac_hash(u8 *mac)
 {
 	u32 x;
@@ -306,20 +299,21 @@ static inline u32 wifi_mac_hash(u8 *mac)
 	x = (x << 2) ^ mac[5];
 
 	x ^= x >> 8;
-	x  = x & (NUM_STA - 1);
+	x = x & (NUM_STA - 1);
 
 	return x;
 }
 
-
 extern u32 _rtw_init_sta_priv(struct sta_priv *pstapriv);
 extern u32 _rtw_free_sta_priv(struct sta_priv *pstapriv);
 
 #define stainfo_offset_valid(offset) (offset < NUM_STA && offset >= 0)
 int rtw_stainfo_offset(struct sta_priv *stapriv, struct sta_info *sta);
-struct sta_info *rtw_get_stainfo_by_offset(struct sta_priv *stapriv, int offset);
+struct sta_info *rtw_get_stainfo_by_offset(struct sta_priv *stapriv,
+					   int offset);
 
-extern struct sta_info *rtw_alloc_stainfo(struct	sta_priv *pstapriv, u8 *hwaddr);
+extern struct sta_info *rtw_alloc_stainfo(struct sta_priv *pstapriv,
+					  u8 *hwaddr);
 extern u32 rtw_free_stainfo(struct adapter *padapter, struct sta_info *psta);
 extern void rtw_free_all_stainfo(struct adapter *padapter);
 extern struct sta_info *rtw_get_stainfo(struct sta_priv *pstapriv, u8 *hwaddr);
diff --git a/drivers/staging/rtl8723bs/include/wifi.h b/drivers/staging/rtl8723bs/include/wifi.h
index c8844e2bf7b45..f7c0c0256041f 100644
--- a/drivers/staging/rtl8723bs/include/wifi.h
+++ b/drivers/staging/rtl8723bs/include/wifi.h
@@ -7,187 +7,171 @@
 #ifndef _WIFI_H_
 #define _WIFI_H_
 
-#define WLAN_HDR_A3_LEN		24
-#define WLAN_HDR_A3_QOS_LEN	26
+#define WLAN_HDR_A3_LEN 24
+#define WLAN_HDR_A3_QOS_LEN 26
 
-#define WLAN_WMM_LEN		24
+#define WLAN_WMM_LEN 24
 
 /*  This value is tested by WiFi 11n Test Plan 5.2.3. */
 /*  This test verifies the WLAN NIC can update the NAV through sending the CTS with large duration. */
-#define	WiFiNavUpperUs				30000	/*  30 ms */
+#define WiFiNavUpperUs 30000 /*  30 ms */
 
 enum {
-	WIFI_MGT_TYPE  =	(0),
-	WIFI_CTRL_TYPE =	(BIT(2)),
-	WIFI_DATA_TYPE =	(BIT(3)),
-	WIFI_QOS_DATA_TYPE	= (BIT(7)|BIT(3)),	/*  QoS Data */
+	WIFI_MGT_TYPE = (0),
+	WIFI_CTRL_TYPE = (BIT(2)),
+	WIFI_DATA_TYPE = (BIT(3)),
+	WIFI_QOS_DATA_TYPE = (BIT(7) | BIT(3)), /*  QoS Data */
 };
 
 enum {
 
-    /*  below is for mgt frame */
-    WIFI_ASSOCREQ       = (0 | WIFI_MGT_TYPE),
-    WIFI_ASSOCRSP       = (BIT(4) | WIFI_MGT_TYPE),
-    WIFI_REASSOCREQ     = (BIT(5) | WIFI_MGT_TYPE),
-    WIFI_REASSOCRSP     = (BIT(5) | BIT(4) | WIFI_MGT_TYPE),
-    WIFI_PROBEREQ       = (BIT(6) | WIFI_MGT_TYPE),
-    WIFI_PROBERSP       = (BIT(6) | BIT(4) | WIFI_MGT_TYPE),
-    WIFI_BEACON         = (BIT(7) | WIFI_MGT_TYPE),
-    WIFI_ATIM           = (BIT(7) | BIT(4) | WIFI_MGT_TYPE),
-    WIFI_DISASSOC       = (BIT(7) | BIT(5) | WIFI_MGT_TYPE),
-    WIFI_AUTH           = (BIT(7) | BIT(5) | BIT(4) | WIFI_MGT_TYPE),
-    WIFI_DEAUTH         = (BIT(7) | BIT(6) | WIFI_MGT_TYPE),
-    WIFI_ACTION         = (BIT(7) | BIT(6) | BIT(4) | WIFI_MGT_TYPE),
-    WIFI_ACTION_NOACK = (BIT(7) | BIT(6) | BIT(5) | WIFI_MGT_TYPE),
-
-    /*  below is for control frame */
-    WIFI_NDPA         = (BIT(6) | BIT(4) | WIFI_CTRL_TYPE),
-    WIFI_PSPOLL         = (BIT(7) | BIT(5) | WIFI_CTRL_TYPE),
-    WIFI_RTS            = (BIT(7) | BIT(5) | BIT(4) | WIFI_CTRL_TYPE),
-    WIFI_CTS            = (BIT(7) | BIT(6) | WIFI_CTRL_TYPE),
-    WIFI_ACK            = (BIT(7) | BIT(6) | BIT(4) | WIFI_CTRL_TYPE),
-    WIFI_CFEND          = (BIT(7) | BIT(6) | BIT(5) | WIFI_CTRL_TYPE),
-    WIFI_CFEND_CFACK    = (BIT(7) | BIT(6) | BIT(5) | BIT(4) | WIFI_CTRL_TYPE),
-
-    /*  below is for data frame */
-    WIFI_DATA           = (0 | WIFI_DATA_TYPE),
-    WIFI_DATA_CFACK     = (BIT(4) | WIFI_DATA_TYPE),
-    WIFI_DATA_CFPOLL    = (BIT(5) | WIFI_DATA_TYPE),
-    WIFI_DATA_CFACKPOLL = (BIT(5) | BIT(4) | WIFI_DATA_TYPE),
-    WIFI_DATA_NULL      = (BIT(6) | WIFI_DATA_TYPE),
-    WIFI_CF_ACK         = (BIT(6) | BIT(4) | WIFI_DATA_TYPE),
-    WIFI_CF_POLL        = (BIT(6) | BIT(5) | WIFI_DATA_TYPE),
-    WIFI_CF_ACKPOLL     = (BIT(6) | BIT(5) | BIT(4) | WIFI_DATA_TYPE),
-    WIFI_QOS_DATA_NULL	= (BIT(6) | WIFI_QOS_DATA_TYPE),
+	/*  below is for mgt frame */
+	WIFI_ASSOCREQ = (0 | WIFI_MGT_TYPE),
+	WIFI_ASSOCRSP = (BIT(4) | WIFI_MGT_TYPE),
+	WIFI_REASSOCREQ = (BIT(5) | WIFI_MGT_TYPE),
+	WIFI_REASSOCRSP = (BIT(5) | BIT(4) | WIFI_MGT_TYPE),
+	WIFI_PROBEREQ = (BIT(6) | WIFI_MGT_TYPE),
+	WIFI_PROBERSP = (BIT(6) | BIT(4) | WIFI_MGT_TYPE),
+	WIFI_BEACON = (BIT(7) | WIFI_MGT_TYPE),
+	WIFI_ATIM = (BIT(7) | BIT(4) | WIFI_MGT_TYPE),
+	WIFI_DISASSOC = (BIT(7) | BIT(5) | WIFI_MGT_TYPE),
+	WIFI_AUTH = (BIT(7) | BIT(5) | BIT(4) | WIFI_MGT_TYPE),
+	WIFI_DEAUTH = (BIT(7) | BIT(6) | WIFI_MGT_TYPE),
+	WIFI_ACTION = (BIT(7) | BIT(6) | BIT(4) | WIFI_MGT_TYPE),
+	WIFI_ACTION_NOACK = (BIT(7) | BIT(6) | BIT(5) | WIFI_MGT_TYPE),
+
+	/*  below is for control frame */
+	WIFI_NDPA = (BIT(6) | BIT(4) | WIFI_CTRL_TYPE),
+	WIFI_PSPOLL = (BIT(7) | BIT(5) | WIFI_CTRL_TYPE),
+	WIFI_RTS = (BIT(7) | BIT(5) | BIT(4) | WIFI_CTRL_TYPE),
+	WIFI_CTS = (BIT(7) | BIT(6) | WIFI_CTRL_TYPE),
+	WIFI_ACK = (BIT(7) | BIT(6) | BIT(4) | WIFI_CTRL_TYPE),
+	WIFI_CFEND = (BIT(7) | BIT(6) | BIT(5) | WIFI_CTRL_TYPE),
+	WIFI_CFEND_CFACK = (BIT(7) | BIT(6) | BIT(5) | BIT(4) | WIFI_CTRL_TYPE),
+
+	/*  below is for data frame */
+	WIFI_DATA = (0 | WIFI_DATA_TYPE),
+	WIFI_DATA_CFACK = (BIT(4) | WIFI_DATA_TYPE),
+	WIFI_DATA_CFPOLL = (BIT(5) | WIFI_DATA_TYPE),
+	WIFI_DATA_CFACKPOLL = (BIT(5) | BIT(4) | WIFI_DATA_TYPE),
+	WIFI_DATA_NULL = (BIT(6) | WIFI_DATA_TYPE),
+	WIFI_CF_ACK = (BIT(6) | BIT(4) | WIFI_DATA_TYPE),
+	WIFI_CF_POLL = (BIT(6) | BIT(5) | WIFI_DATA_TYPE),
+	WIFI_CF_ACKPOLL = (BIT(6) | BIT(5) | BIT(4) | WIFI_DATA_TYPE),
+	WIFI_QOS_DATA_NULL = (BIT(6) | WIFI_QOS_DATA_TYPE),
 };
 
-#define _TO_DS_		BIT(8)
-#define _FROM_DS_	BIT(9)
-#define _MORE_FRAG_	BIT(10)
-#define _RETRY_		BIT(11)
-#define _PWRMGT_	BIT(12)
-#define _MORE_DATA_	BIT(13)
-#define _PRIVACY_	BIT(14)
-#define _ORDER_			BIT(15)
+#define _TO_DS_ BIT(8)
+#define _FROM_DS_ BIT(9)
+#define _MORE_FRAG_ BIT(10)
+#define _RETRY_ BIT(11)
+#define _PWRMGT_ BIT(12)
+#define _MORE_DATA_ BIT(13)
+#define _PRIVACY_ BIT(14)
+#define _ORDER_ BIT(15)
 
-#define SetToDs(pbuf)	\
-	(*(__le16 *)(pbuf) |= cpu_to_le16(_TO_DS_))
+#define SetToDs(pbuf) (*(__le16 *)(pbuf) |= cpu_to_le16(_TO_DS_))
 
-#define GetToDs(pbuf)	(((*(__le16 *)(pbuf)) & cpu_to_le16(_TO_DS_)) != 0)
+#define GetToDs(pbuf) (((*(__le16 *)(pbuf)) & cpu_to_le16(_TO_DS_)) != 0)
 
-#define SetFrDs(pbuf)	\
-	(*(__le16 *)(pbuf) |= cpu_to_le16(_FROM_DS_))
+#define SetFrDs(pbuf) (*(__le16 *)(pbuf) |= cpu_to_le16(_FROM_DS_))
 
-#define GetFrDs(pbuf)	(((*(__le16 *)(pbuf)) & cpu_to_le16(_FROM_DS_)) != 0)
+#define GetFrDs(pbuf) (((*(__le16 *)(pbuf)) & cpu_to_le16(_FROM_DS_)) != 0)
 
-#define get_tofr_ds(pframe)	((GetToDs(pframe) << 1) | GetFrDs(pframe))
+#define get_tofr_ds(pframe) ((GetToDs(pframe) << 1) | GetFrDs(pframe))
 
-#define SetMFrag(pbuf)	\
-	(*(__le16 *)(pbuf) |= cpu_to_le16(_MORE_FRAG_))
+#define SetMFrag(pbuf) (*(__le16 *)(pbuf) |= cpu_to_le16(_MORE_FRAG_))
 
-#define GetMFrag(pbuf)	(((*(__le16 *)(pbuf)) & cpu_to_le16(_MORE_FRAG_)) != 0)
+#define GetMFrag(pbuf) (((*(__le16 *)(pbuf)) & cpu_to_le16(_MORE_FRAG_)) != 0)
 
-#define ClearMFrag(pbuf)	\
-	(*(__le16 *)(pbuf) &= (~cpu_to_le16(_MORE_FRAG_)))
+#define ClearMFrag(pbuf) (*(__le16 *)(pbuf) &= (~cpu_to_le16(_MORE_FRAG_)))
 
-#define GetRetry(pbuf)	(((*(__le16 *)(pbuf)) & cpu_to_le16(_RETRY_)) != 0)
+#define GetRetry(pbuf) (((*(__le16 *)(pbuf)) & cpu_to_le16(_RETRY_)) != 0)
 
-#define ClearRetry(pbuf)	\
-	(*(__le16 *)(pbuf) &= (~cpu_to_le16(_RETRY_)))
+#define ClearRetry(pbuf) (*(__le16 *)(pbuf) &= (~cpu_to_le16(_RETRY_)))
 
-#define SetPwrMgt(pbuf)	\
-	(*(__le16 *)(pbuf) |= cpu_to_le16(_PWRMGT_))
+#define SetPwrMgt(pbuf) (*(__le16 *)(pbuf) |= cpu_to_le16(_PWRMGT_))
 
-#define GetPwrMgt(pbuf)	(((*(__le16 *)(pbuf)) & cpu_to_le16(_PWRMGT_)) != 0)
+#define GetPwrMgt(pbuf) (((*(__le16 *)(pbuf)) & cpu_to_le16(_PWRMGT_)) != 0)
 
-#define ClearPwrMgt(pbuf)	\
-	(*(__le16 *)(pbuf) &= (~cpu_to_le16(_PWRMGT_)))
+#define ClearPwrMgt(pbuf) (*(__le16 *)(pbuf) &= (~cpu_to_le16(_PWRMGT_)))
 
-#define SetMData(pbuf)	\
-	(*(__le16 *)(pbuf) |= cpu_to_le16(_MORE_DATA_))
+#define SetMData(pbuf) (*(__le16 *)(pbuf) |= cpu_to_le16(_MORE_DATA_))
 
-#define GetMData(pbuf)	(((*(__le16 *)(pbuf)) & cpu_to_le16(_MORE_DATA_)) != 0)
+#define GetMData(pbuf) (((*(__le16 *)(pbuf)) & cpu_to_le16(_MORE_DATA_)) != 0)
 
-#define ClearMData(pbuf)	\
-	(*(__le16 *)(pbuf) &= (~cpu_to_le16(_MORE_DATA_)))
+#define ClearMData(pbuf) (*(__le16 *)(pbuf) &= (~cpu_to_le16(_MORE_DATA_)))
 
-#define SetPrivacy(pbuf)	\
-	(*(__le16 *)(pbuf) |= cpu_to_le16(_PRIVACY_))
+#define SetPrivacy(pbuf) (*(__le16 *)(pbuf) |= cpu_to_le16(_PRIVACY_))
 
-#define GetPrivacy(pbuf)					\
-	(((*(__le16 *)(pbuf)) & cpu_to_le16(_PRIVACY_)) != 0)
+#define GetPrivacy(pbuf) (((*(__le16 *)(pbuf)) & cpu_to_le16(_PRIVACY_)) != 0)
 
-#define GetOrder(pbuf)					\
-	(((*(__le16 *)(pbuf)) & cpu_to_le16(_ORDER_)) != 0)
+#define GetOrder(pbuf) (((*(__le16 *)(pbuf)) & cpu_to_le16(_ORDER_)) != 0)
 
-#define GetFrameType(pbuf)				\
-	(le16_to_cpu(*(__le16 *)(pbuf)) & (BIT(3) | BIT(2)))
+#define GetFrameType(pbuf) (le16_to_cpu(*(__le16 *)(pbuf)) & (BIT(3) | BIT(2)))
 
-#define SetFrameType(pbuf, type)	\
-	do {	\
+#define SetFrameType(pbuf, type)                                              \
+	do {                                                                  \
 		*(unsigned short *)(pbuf) &= cpu_to_le16(~(BIT(3) | BIT(2))); \
-		*(unsigned short *)(pbuf) |= cpu_to_le16(type); \
+		*(unsigned short *)(pbuf) |= cpu_to_le16(type);               \
 	} while (0)
 
-#define GetFrameSubType(pbuf)	(le16_to_cpu(*(__le16 *)(pbuf)) & (BIT(7) |\
-	 BIT(6) | BIT(5) | BIT(4) | BIT(3) | BIT(2)))
+#define GetFrameSubType(pbuf)             \
+	(le16_to_cpu(*(__le16 *)(pbuf)) & \
+	 (BIT(7) | BIT(6) | BIT(5) | BIT(4) | BIT(3) | BIT(2)))
 
-#define SetFrameSubType(pbuf, type) \
-	do {    \
-		*(__le16 *)(pbuf) &= cpu_to_le16(~(BIT(7) | BIT(6) |	\
-		 BIT(5) | BIT(4) | BIT(3) | BIT(2))); \
-		*(__le16 *)(pbuf) |= cpu_to_le16(type); \
+#define SetFrameSubType(pbuf, type)                                            \
+	do {                                                                   \
+		*(__le16 *)(pbuf) &= cpu_to_le16(~(BIT(7) | BIT(6) | BIT(5) |  \
+						   BIT(4) | BIT(3) | BIT(2))); \
+		*(__le16 *)(pbuf) |= cpu_to_le16(type);                        \
 	} while (0)
 
-#define GetSequence(pbuf)			\
-	(le16_to_cpu(*(__le16 *)((size_t)(pbuf) + 22)) >> 4)
+#define GetSequence(pbuf) (le16_to_cpu(*(__le16 *)((size_t)(pbuf) + 22)) >> 4)
 
-#define GetFragNum(pbuf)			\
-	(le16_to_cpu(*(__le16 *)((size_t)(pbuf) + 22)) & 0x0f)
+#define GetFragNum(pbuf) (le16_to_cpu(*(__le16 *)((size_t)(pbuf) + 22)) & 0x0f)
 
-#define SetFragNum(pbuf, num) \
-	do {    \
-		*(unsigned short *)((size_t)(pbuf) + 22) = \
-			((*(unsigned short *)((size_t)(pbuf) + 22)) &	\
-			le16_to_cpu(~(0x000f))) | \
-			cpu_to_le16(0x0f & (num));     \
+#define SetFragNum(pbuf, num)                                         \
+	do {                                                          \
+		*(unsigned short *)((size_t)(pbuf) + 22) =            \
+			((*(unsigned short *)((size_t)(pbuf) + 22)) & \
+			 le16_to_cpu(~(0x000f))) |                    \
+			cpu_to_le16(0x0f & (num));                    \
 	} while (0)
 
-#define SetSeqNum(pbuf, num) \
-	do {    \
-		*(__le16 *)((size_t)(pbuf) + 22) = \
-			((*(__le16 *)((size_t)(pbuf) + 22)) & cpu_to_le16((unsigned short)0x000f)) | \
+#define SetSeqNum(pbuf, num)                                                \
+	do {                                                                \
+		*(__le16 *)((size_t)(pbuf) + 22) =                          \
+			((*(__le16 *)((size_t)(pbuf) + 22)) &               \
+			 cpu_to_le16((unsigned short)0x000f)) |             \
 			cpu_to_le16((unsigned short)(0xfff0 & (num << 4))); \
 	} while (0)
 
 #define SetDuration(pbuf, dur) \
 	(*(__le16 *)((size_t)(pbuf) + 2) = cpu_to_le16(0xffff & (dur)))
 
+#define SetPriority(pbuf, tid) (*(__le16 *)(pbuf) |= cpu_to_le16(tid & 0xf))
 
-#define SetPriority(pbuf, tid)	\
-	(*(__le16 *)(pbuf) |= cpu_to_le16(tid & 0xf))
+#define GetPriority(pbuf) ((le16_to_cpu(*(__le16 *)(pbuf))) & 0xf)
 
-#define GetPriority(pbuf)	((le16_to_cpu(*(__le16 *)(pbuf))) & 0xf)
+#define SetEOSP(pbuf, eosp) (*(__le16 *)(pbuf) |= cpu_to_le16((eosp & 1) << 4))
 
-#define SetEOSP(pbuf, eosp)	\
-		(*(__le16 *)(pbuf) |= cpu_to_le16((eosp & 1) << 4))
-
-#define SetAckpolicy(pbuf, ack)	\
+#define SetAckpolicy(pbuf, ack) \
 	(*(__le16 *)(pbuf) |= cpu_to_le16((ack & 3) << 5))
 
 #define GetAckpolicy(pbuf) (((le16_to_cpu(*(__le16 *)pbuf)) >> 5) & 0x3)
 
 #define GetAMsdu(pbuf) (((le16_to_cpu(*(__le16 *)pbuf)) >> 7) & 0x1)
 
-#define GetAid(pbuf)	(le16_to_cpu(*(__le16 *)((size_t)(pbuf) + 2)) & 0x3fff)
+#define GetAid(pbuf) (le16_to_cpu(*(__le16 *)((size_t)(pbuf) + 2)) & 0x3fff)
 
-#define GetAddr1Ptr(pbuf)	((unsigned char *)((size_t)(pbuf) + 4))
+#define GetAddr1Ptr(pbuf) ((unsigned char *)((size_t)(pbuf) + 4))
 
-#define GetAddr2Ptr(pbuf)	((unsigned char *)((size_t)(pbuf) + 10))
+#define GetAddr2Ptr(pbuf) ((unsigned char *)((size_t)(pbuf) + 10))
 
-#define GetAddr3Ptr(pbuf)	((unsigned char *)((size_t)(pbuf) + 16))
+#define GetAddr3Ptr(pbuf) ((unsigned char *)((size_t)(pbuf) + 16))
 
-#define GetAddr4Ptr(pbuf)	((unsigned char *)((size_t)(pbuf) + 24))
+#define GetAddr4Ptr(pbuf) ((unsigned char *)((size_t)(pbuf) + 24))
 
 static inline unsigned char *rtl8723bs_get_ra(unsigned char *pframe)
 {
@@ -205,19 +189,19 @@ static inline unsigned char *get_ta(unsigned char *pframe)
 static inline unsigned char *get_da(unsigned char *pframe)
 {
 	unsigned char *da;
-	unsigned int	to_fr_ds	= (GetToDs(pframe) << 1) | GetFrDs(pframe);
+	unsigned int to_fr_ds = (GetToDs(pframe) << 1) | GetFrDs(pframe);
 
 	switch (to_fr_ds) {
-	case 0x00:	/*  ToDs = 0, FromDs = 0 */
+	case 0x00: /*  ToDs = 0, FromDs = 0 */
 		da = GetAddr1Ptr(pframe);
 		break;
-	case 0x01:	/*  ToDs = 0, FromDs = 1 */
+	case 0x01: /*  ToDs = 0, FromDs = 1 */
 		da = GetAddr1Ptr(pframe);
 		break;
-	case 0x02:	/*  ToDs = 1, FromDs = 0 */
+	case 0x02: /*  ToDs = 1, FromDs = 0 */
 		da = GetAddr3Ptr(pframe);
 		break;
-	default:	/*  ToDs = 1, FromDs = 1 */
+	default: /*  ToDs = 1, FromDs = 1 */
 		da = GetAddr3Ptr(pframe);
 		break;
 	}
@@ -225,23 +209,22 @@ static inline unsigned char *get_da(unsigned char *pframe)
 	return da;
 }
 
-
 static inline unsigned char *get_sa(unsigned char *pframe)
 {
 	unsigned char *sa;
-	unsigned int	to_fr_ds	= (GetToDs(pframe) << 1) | GetFrDs(pframe);
+	unsigned int to_fr_ds = (GetToDs(pframe) << 1) | GetFrDs(pframe);
 
 	switch (to_fr_ds) {
-	case 0x00:	/*  ToDs = 0, FromDs = 0 */
+	case 0x00: /*  ToDs = 0, FromDs = 0 */
 		sa = GetAddr2Ptr(pframe);
 		break;
-	case 0x01:	/*  ToDs = 0, FromDs = 1 */
+	case 0x01: /*  ToDs = 0, FromDs = 1 */
 		sa = GetAddr3Ptr(pframe);
 		break;
-	case 0x02:	/*  ToDs = 1, FromDs = 0 */
+	case 0x02: /*  ToDs = 1, FromDs = 0 */
 		sa = GetAddr2Ptr(pframe);
 		break;
-	default:	/*  ToDs = 1, FromDs = 1 */
+	default: /*  ToDs = 1, FromDs = 1 */
 		sa = GetAddr4Ptr(pframe);
 		break;
 	}
@@ -252,19 +235,19 @@ static inline unsigned char *get_sa(unsigned char *pframe)
 static inline unsigned char *get_hdr_bssid(unsigned char *pframe)
 {
 	unsigned char *sa = NULL;
-	unsigned int	to_fr_ds	= (GetToDs(pframe) << 1) | GetFrDs(pframe);
+	unsigned int to_fr_ds = (GetToDs(pframe) << 1) | GetFrDs(pframe);
 
 	switch (to_fr_ds) {
-	case 0x00:	/*  ToDs = 0, FromDs = 0 */
+	case 0x00: /*  ToDs = 0, FromDs = 0 */
 		sa = GetAddr3Ptr(pframe);
 		break;
-	case 0x01:	/*  ToDs = 0, FromDs = 1 */
+	case 0x01: /*  ToDs = 0, FromDs = 1 */
 		sa = GetAddr2Ptr(pframe);
 		break;
-	case 0x02:	/*  ToDs = 1, FromDs = 0 */
+	case 0x02: /*  ToDs = 1, FromDs = 0 */
 		sa = GetAddr1Ptr(pframe);
 		break;
-	case 0x03:	/*  ToDs = 1, FromDs = 1 */
+	case 0x03: /*  ToDs = 1, FromDs = 1 */
 		sa = GetAddr1Ptr(pframe);
 		break;
 	}
@@ -272,7 +255,6 @@ static inline unsigned char *get_hdr_bssid(unsigned char *pframe)
 	return sa;
 }
 
-
 static inline int IsFrameTypeCtrl(unsigned char *pframe)
 {
 	return GetFrameType(pframe) == WIFI_CTRL_TYPE;
@@ -281,45 +263,46 @@ static inline int IsFrameTypeCtrl(unsigned char *pframe)
 			Below is for the security related definition
 ------------------------------------------------------------------------------*/
 
-#define _ASOCREQ_IE_OFFSET_		4	/*  excluding wlan_hdr */
-#define _REASOCREQ_IE_OFFSET_	10
-#define _PROBEREQ_IE_OFFSET_	0
-#define	_PROBERSP_IE_OFFSET_	12
-#define _AUTH_IE_OFFSET_		6
-#define _BEACON_IE_OFFSET_		12
+#define _ASOCREQ_IE_OFFSET_ 4 /*  excluding wlan_hdr */
+#define _REASOCREQ_IE_OFFSET_ 10
+#define _PROBEREQ_IE_OFFSET_ 0
+#define _PROBERSP_IE_OFFSET_ 12
+#define _AUTH_IE_OFFSET_ 6
+#define _BEACON_IE_OFFSET_ 12
 
-#define _FIXED_IE_LENGTH_			_BEACON_IE_OFFSET_
+#define _FIXED_IE_LENGTH_ _BEACON_IE_OFFSET_
 
 /* ---------------------------------------------------------------------------
 					Below is the fixed elements...
 -----------------------------------------------------------------------------*/
-#define _AUTH_ALGM_NUM_			2
-#define _AUTH_SEQ_NUM_			2
-#define _BEACON_ITERVAL_		2
-#define _CAPABILITY_			2
-#define _RSON_CODE_				2
-#define _ASOC_ID_				2
-#define _STATUS_CODE_			2
-#define _TIMESTAMP_				8
+#define _AUTH_ALGM_NUM_ 2
+#define _AUTH_SEQ_NUM_ 2
+#define _BEACON_ITERVAL_ 2
+#define _CAPABILITY_ 2
+#define _RSON_CODE_ 2
+#define _ASOC_ID_ 2
+#define _STATUS_CODE_ 2
+#define _TIMESTAMP_ 8
 
 /*-----------------------------------------------------------------------------
 				Below is the definition for 802.11i / 802.1x
 ------------------------------------------------------------------------------*/
-#define _IEEE8021X_MGT_			1		/*  WPA */
-#define _IEEE8021X_PSK_			2		/*  WPA with pre-shared key */
+#define _IEEE8021X_MGT_ 1 /*  WPA */
+#define _IEEE8021X_PSK_ 2 /*  WPA with pre-shared key */
 
-#define _MME_IE_LENGTH_  18
+#define _MME_IE_LENGTH_ 18
 /*-----------------------------------------------------------------------------
 				Below is the definition for WMM
 ------------------------------------------------------------------------------*/
-#define _WMM_IE_Length_				7  /*  for WMM STA */
+#define _WMM_IE_Length_ 7 /*  for WMM STA */
 
 /*-----------------------------------------------------------------------------
 				Below is the definition for 802.11n
 ------------------------------------------------------------------------------*/
-#define GetOrderBit(pbuf)	(((*(unsigned short *)(pbuf)) & cpu_to_le16(_ORDER_)) != 0)
+#define GetOrderBit(pbuf) \
+	(((*(unsigned short *)(pbuf)) & cpu_to_le16(_ORDER_)) != 0)
 
-#define ACT_CAT_VENDOR				0x7F/* 127 */
+#define ACT_CAT_VENDOR 0x7F /* 127 */
 
 /**
  * struct rtw_ieee80211_ht_cap - HT additional information
@@ -329,21 +312,20 @@ static inline int IsFrameTypeCtrl(unsigned char *pframe)
  */
 struct ieee80211_ht_addt_info {
 	unsigned char control_chan;
-	unsigned char 	ht_param;
-	__le16	operation_mode;
-	__le16	stbc_param;
-	unsigned char 	basic_set[16];
+	unsigned char ht_param;
+	__le16 operation_mode;
+	__le16 stbc_param;
+	unsigned char basic_set[16];
 } __packed;
 
-
 struct HT_caps_element {
 	union {
 		struct {
-			__le16	HT_caps_info;
+			__le16 HT_caps_info;
 			unsigned char AMPDU_para;
 			unsigned char MCS_rate[16];
-			__le16	HT_ext_caps;
-			__le16	Beamforming_caps;
+			__le16 HT_ext_caps;
+			__le16 Beamforming_caps;
 			unsigned char ASEL_caps;
 		} HT_cap_element;
 		unsigned char HT_cap[26];
@@ -357,45 +339,45 @@ struct HT_info_element {
 } __packed;
 
 struct AC_param {
-	unsigned char 	ACI_AIFSN;
-	unsigned char 	CW;
-	__le16	TXOP_limit;
+	unsigned char ACI_AIFSN;
+	unsigned char CW;
+	__le16 TXOP_limit;
 } __packed;
 
 struct WMM_para_element {
-	unsigned char 	QoS_info;
-	unsigned char 	reserved;
-	struct AC_param	ac_param[4];
+	unsigned char QoS_info;
+	unsigned char reserved;
+	struct AC_param ac_param[4];
 } __packed;
 
 struct ADDBA_request {
-	unsigned char 	dialog_token;
-	__le16	BA_para_set;
-	__le16	BA_timeout_value;
-	__le16	BA_starting_seqctrl;
+	unsigned char dialog_token;
+	__le16 BA_para_set;
+	__le16 BA_timeout_value;
+	__le16 BA_starting_seqctrl;
 } __packed;
 
 /* 802.11n HT capabilities masks */
-#define IEEE80211_HT_CAP_LDPC_CODING		0x0001
-#define IEEE80211_HT_CAP_SUP_WIDTH		0x0002
-#define IEEE80211_HT_CAP_SM_PS			0x000C
-#define IEEE80211_HT_CAP_GRN_FLD		0x0010
-#define IEEE80211_HT_CAP_SGI_20			0x0020
-#define IEEE80211_HT_CAP_SGI_40			0x0040
-#define IEEE80211_HT_CAP_TX_STBC			0x0080
-#define IEEE80211_HT_CAP_RX_STBC_1R		0x0100
-#define IEEE80211_HT_CAP_RX_STBC_3R		0x0300
-#define IEEE80211_HT_CAP_MAX_AMSDU		0x0800
-#define IEEE80211_HT_CAP_DSSSCCK40		0x1000
+#define IEEE80211_HT_CAP_LDPC_CODING 0x0001
+#define IEEE80211_HT_CAP_SUP_WIDTH 0x0002
+#define IEEE80211_HT_CAP_SM_PS 0x000C
+#define IEEE80211_HT_CAP_GRN_FLD 0x0010
+#define IEEE80211_HT_CAP_SGI_20 0x0020
+#define IEEE80211_HT_CAP_SGI_40 0x0040
+#define IEEE80211_HT_CAP_TX_STBC 0x0080
+#define IEEE80211_HT_CAP_RX_STBC_1R 0x0100
+#define IEEE80211_HT_CAP_RX_STBC_3R 0x0300
+#define IEEE80211_HT_CAP_MAX_AMSDU 0x0800
+#define IEEE80211_HT_CAP_DSSSCCK40 0x1000
 /* 802.11n HT capability AMPDU settings */
-#define IEEE80211_HT_CAP_AMPDU_FACTOR		0x03
-#define IEEE80211_HT_CAP_AMPDU_DENSITY		0x1C
+#define IEEE80211_HT_CAP_AMPDU_FACTOR 0x03
+#define IEEE80211_HT_CAP_AMPDU_DENSITY 0x1C
 
 /* endif */
 
 /* 	===============WPS Section =============== */
 /* 	WPS attribute ID */
-#define WPS_ATTR_SELECTED_REGISTRAR	0x1041
+#define WPS_ATTR_SELECTED_REGISTRAR 0x1041
 
 /* 	=====================P2P Section ===================== */
 enum p2p_role {
@@ -406,40 +388,56 @@ enum p2p_role {
 };
 
 enum p2p_state {
-	P2P_STATE_NONE = 0,							/* 	P2P disable */
-	P2P_STATE_IDLE = 1,								/* 	P2P had enabled and do nothing */
-	P2P_STATE_LISTEN = 2,							/* 	In pure listen state */
-	P2P_STATE_SCAN = 3,							/* 	In scan phase */
-	P2P_STATE_FIND_PHASE_LISTEN = 4,				/* 	In the listen state of find phase */
-	P2P_STATE_FIND_PHASE_SEARCH = 5,				/* 	In the search state of find phase */
-	P2P_STATE_TX_PROVISION_DIS_REQ = 6,			/* 	In P2P provisioning discovery */
+	P2P_STATE_NONE = 0, /* 	P2P disable */
+	P2P_STATE_IDLE = 1, /* 	P2P had enabled and do nothing */
+	P2P_STATE_LISTEN = 2, /* 	In pure listen state */
+	P2P_STATE_SCAN = 3, /* 	In scan phase */
+	P2P_STATE_FIND_PHASE_LISTEN =
+		4, /* 	In the listen state of find phase */
+	P2P_STATE_FIND_PHASE_SEARCH =
+		5, /* 	In the search state of find phase */
+	P2P_STATE_TX_PROVISION_DIS_REQ =
+		6, /* 	In P2P provisioning discovery */
 	P2P_STATE_RX_PROVISION_DIS_RSP = 7,
 	P2P_STATE_RX_PROVISION_DIS_REQ = 8,
-	P2P_STATE_GONEGO_ING = 9,						/* 	Doing the group owner negotiation handshake */
-	P2P_STATE_GONEGO_OK = 10,						/* 	finish the group negotiation handshake with success */
-	P2P_STATE_GONEGO_FAIL = 11,					/* 	finish the group negotiation handshake with failure */
-	P2P_STATE_RECV_INVITE_REQ_MATCH = 12,		/* 	receiving the P2P Invitation request and match with the profile. */
-	P2P_STATE_PROVISIONING_ING = 13,				/* 	Doing the P2P WPS */
-	P2P_STATE_PROVISIONING_DONE = 14,			/* 	Finish the P2P WPS */
-	P2P_STATE_TX_INVITE_REQ = 15,					/* 	Transmit the P2P Invitation request */
-	P2P_STATE_RX_INVITE_RESP_OK = 16,				/* 	Receiving the P2P Invitation response */
-	P2P_STATE_RECV_INVITE_REQ_DISMATCH = 17,	/* 	receiving the P2P Invitation request and mismatch with the profile. */
-	P2P_STATE_RECV_INVITE_REQ_GO = 18,			/* 	receiving the P2P Invitation request and this wifi is GO. */
-	P2P_STATE_RECV_INVITE_REQ_JOIN = 19,			/* 	receiving the P2P Invitation request to join an existing P2P Group. */
-	P2P_STATE_RX_INVITE_RESP_FAIL = 20,			/* 	recveing the P2P Invitation response with failure */
-	P2P_STATE_RX_INFOR_NOREADY = 21,			/*  receiving p2p negotiation response with information is not available */
-	P2P_STATE_TX_INFOR_NOREADY = 22,			/*  sending p2p negotiation response with information is not available */
+	P2P_STATE_GONEGO_ING =
+		9, /* 	Doing the group owner negotiation handshake */
+	P2P_STATE_GONEGO_OK =
+		10, /* 	finish the group negotiation handshake with success */
+	P2P_STATE_GONEGO_FAIL =
+		11, /* 	finish the group negotiation handshake with failure */
+	P2P_STATE_RECV_INVITE_REQ_MATCH =
+		12, /* 	receiving the P2P Invitation request and match with the profile. */
+	P2P_STATE_PROVISIONING_ING = 13, /* 	Doing the P2P WPS */
+	P2P_STATE_PROVISIONING_DONE = 14, /* 	Finish the P2P WPS */
+	P2P_STATE_TX_INVITE_REQ = 15, /* 	Transmit the P2P Invitation request */
+	P2P_STATE_RX_INVITE_RESP_OK =
+		16, /* 	Receiving the P2P Invitation response */
+	P2P_STATE_RECV_INVITE_REQ_DISMATCH =
+		17, /* 	receiving the P2P Invitation request and mismatch with the profile. */
+	P2P_STATE_RECV_INVITE_REQ_GO =
+		18, /* 	receiving the P2P Invitation request and this wifi is GO. */
+	P2P_STATE_RECV_INVITE_REQ_JOIN =
+		19, /* 	receiving the P2P Invitation request to join an existing P2P Group. */
+	P2P_STATE_RX_INVITE_RESP_FAIL =
+		20, /* 	recveing the P2P Invitation response with failure */
+	P2P_STATE_RX_INFOR_NOREADY =
+		21, /*  receiving p2p negotiation response with information is not available */
+	P2P_STATE_TX_INFOR_NOREADY =
+		22, /*  sending p2p negotiation response with information is not available */
 };
 
 enum p2p_wpsinfo {
-	P2P_NO_WPSINFO						= 0,
-	P2P_GOT_WPSINFO_PEER_DISPLAY_PIN	= 1,
-	P2P_GOT_WPSINFO_SELF_DISPLAY_PIN	= 2,
-	P2P_GOT_WPSINFO_PBC					= 3,
+	P2P_NO_WPSINFO = 0,
+	P2P_GOT_WPSINFO_PEER_DISPLAY_PIN = 1,
+	P2P_GOT_WPSINFO_SELF_DISPLAY_PIN = 2,
+	P2P_GOT_WPSINFO_PBC = 3,
 };
 
-#define IP_MCAST_MAC(mac)		((mac[0] == 0x01) && (mac[1] == 0x00) && (mac[2] == 0x5e))
-#define ICMPV6_MCAST_MAC(mac)	((mac[0] == 0x33) && (mac[1] == 0x33) && (mac[2] != 0xff))
+#define IP_MCAST_MAC(mac) \
+	((mac[0] == 0x01) && (mac[1] == 0x00) && (mac[2] == 0x5e))
+#define ICMPV6_MCAST_MAC(mac) \
+	((mac[0] == 0x33) && (mac[1] == 0x33) && (mac[2] != 0xff))
 
 /* Regulatroy Domain */
 struct regd_pair_mapping {
diff --git a/drivers/staging/rtl8723bs/include/wlan_bssdef.h b/drivers/staging/rtl8723bs/include/wlan_bssdef.h
index 812a683942689..87d9fda58e57f 100644
--- a/drivers/staging/rtl8723bs/include/wlan_bssdef.h
+++ b/drivers/staging/rtl8723bs/include/wlan_bssdef.h
@@ -7,20 +7,20 @@
 #ifndef __WLAN_BSSDEF_H__
 #define __WLAN_BSSDEF_H__
 
+#define MAX_IE_SZ 768
 
-#define MAX_IE_SZ	768
+#define NDIS_802_11_LENGTH_SSID 32
+#define NDIS_802_11_LENGTH_RATES 8
+#define NDIS_802_11_LENGTH_RATES_EX 16
 
-
-#define NDIS_802_11_LENGTH_SSID         32
-#define NDIS_802_11_LENGTH_RATES        8
-#define NDIS_802_11_LENGTH_RATES_EX     16
-
-typedef unsigned char   NDIS_802_11_RATES[NDIS_802_11_LENGTH_RATES];        /*  Set of 8 data rates */
-typedef unsigned char   NDIS_802_11_RATES_EX[NDIS_802_11_LENGTH_RATES_EX];  /*  Set of 16 data rates */
+typedef unsigned char
+	NDIS_802_11_RATES[NDIS_802_11_LENGTH_RATES]; /*  Set of 8 data rates */
+typedef unsigned char NDIS_802_11_RATES_EX
+	[NDIS_802_11_LENGTH_RATES_EX]; /*  Set of 16 data rates */
 
 struct ndis_802_11_ssid {
-	u32  ssid_length;
-	u8  ssid[32];
+	u32 ssid_length;
+	u8 ssid[32];
 };
 
 enum ndis_802_11_network_type {
@@ -28,7 +28,7 @@ enum ndis_802_11_network_type {
 	Ndis802_11DS,
 	Ndis802_11OFDM5,
 	Ndis802_11OFDM24,
-	Ndis802_11NetworkTypeMax    /*  not a real type, defined as an upper bound */
+	Ndis802_11NetworkTypeMax /*  not a real type, defined as an upper bound */
 };
 
 /*
@@ -36,30 +36,30 @@ enum ndis_802_11_network_type {
 	ODI Handler will convert the channel number to freq. number.
 */
 struct ndis_802_11_conf {
-	u32 length;             /*  Length of structure */
-	u32 beacon_period;       /*  units are Kusec */
-	u32 atim_window;         /*  units are Kusec */
-	u32 ds_config;           /*  Frequency, units are kHz */
+	u32 length; /*  Length of structure */
+	u32 beacon_period; /*  units are Kusec */
+	u32 atim_window; /*  units are Kusec */
+	u32 ds_config; /*  Frequency, units are kHz */
 };
 
 enum ndis_802_11_network_infrastructure {
 	Ndis802_11IBSS,
 	Ndis802_11Infrastructure,
 	Ndis802_11AutoUnknown,
-	Ndis802_11InfrastructureMax,     /*  Not a real value, defined as upper bound */
+	Ndis802_11InfrastructureMax, /*  Not a real value, defined as upper bound */
 	Ndis802_11APMode,
 };
 
 struct ndis_802_11_fix_ie {
-	u8  time_stamp[8];
-	u16  beacon_interval;
-	u16  capabilities;
+	u8 time_stamp[8];
+	u16 beacon_interval;
+	u16 capabilities;
 };
 
 struct ndis_80211_var_ie {
-	u8  element_id;
-	u8  length;
-	u8  data[];
+	u8 element_id;
+	u8 length;
+	u8 data[];
 };
 
 /* Length is the 4 bytes multiples of the sum of
@@ -79,7 +79,7 @@ enum ndis_802_11_authentication_mode {
 	Ndis802_11AuthModeWPAPSK,
 	Ndis802_11AuthModeWPANone,
 	Ndis802_11AuthModeWAPI,
-	Ndis802_11AuthModeMax   /*  Not a real mode, defined as upper bound */
+	Ndis802_11AuthModeMax /*  Not a real mode, defined as upper bound */
 };
 
 enum {
@@ -98,54 +98,54 @@ enum {
 	Ndis802_11_EncrypteionWAPI
 };
 
-#define NDIS_802_11_AI_REQFI_CAPABILITIES      1
-#define NDIS_802_11_AI_REQFI_LISTENINTERVAL    2
-#define NDIS_802_11_AI_REQFI_CURRENTAPADDRESS  4
+#define NDIS_802_11_AI_REQFI_CAPABILITIES 1
+#define NDIS_802_11_AI_REQFI_LISTENINTERVAL 2
+#define NDIS_802_11_AI_REQFI_CURRENTAPADDRESS 4
 
-#define NDIS_802_11_AI_RESFI_CAPABILITIES      1
-#define NDIS_802_11_AI_RESFI_STATUSCODE        2
-#define NDIS_802_11_AI_RESFI_ASSOCIATIONID     4
+#define NDIS_802_11_AI_RESFI_CAPABILITIES 1
+#define NDIS_802_11_AI_RESFI_STATUSCODE 2
+#define NDIS_802_11_AI_RESFI_ASSOCIATIONID 4
 
 /*  Key mapping keys require a BSSID */
 
 struct ndis_802_11_wep {
-	u32 length;        /*  Length of this structure */
-	u32 key_index;      /*  0 is the per-client key, 1-N are the global keys */
-	u32 key_length;     /*  length of key in bytes */
-	u8 key_material[16];/*  variable length depending on above field */
+	u32 length; /*  Length of this structure */
+	u32 key_index; /*  0 is the per-client key, 1-N are the global keys */
+	u32 key_length; /*  length of key in bytes */
+	u8 key_material[16]; /*  variable length depending on above field */
 };
 
 /*  mask for authentication/integrity fields */
-#define NDIS_802_11_AUTH_REQUEST_AUTH_FIELDS        0x0f
-#define NDIS_802_11_AUTH_REQUEST_REAUTH			0x01
-#define NDIS_802_11_AUTH_REQUEST_KEYUPDATE		0x02
-#define NDIS_802_11_AUTH_REQUEST_PAIRWISE_ERROR		0x06
-#define NDIS_802_11_AUTH_REQUEST_GROUP_ERROR		0x0E
+#define NDIS_802_11_AUTH_REQUEST_AUTH_FIELDS 0x0f
+#define NDIS_802_11_AUTH_REQUEST_REAUTH 0x01
+#define NDIS_802_11_AUTH_REQUEST_KEYUPDATE 0x02
+#define NDIS_802_11_AUTH_REQUEST_PAIRWISE_ERROR 0x06
+#define NDIS_802_11_AUTH_REQUEST_GROUP_ERROR 0x0E
 
 /*  MIC check time, 60 seconds. */
-#define MIC_CHECK_TIME	60000000
+#define MIC_CHECK_TIME 60000000
 
 #ifndef Ndis802_11APMode
 #define Ndis802_11APMode (Ndis802_11InfrastructureMax + 1)
 #endif
 
 struct wlan_phy_info {
-	u8 signal_strength;/* in percentage) */
-	u8 signal_quality;/* in percentage) */
-	u8 optimum_antenna;  /* for Antenna diversity */
+	u8 signal_strength; /* in percentage) */
+	u8 signal_quality; /* in percentage) */
+	u8 optimum_antenna; /* for Antenna diversity */
 	u8 reserved_0;
 };
 
 struct wlan_bcn_info {
 	/* these infor get from rtw_get_encrypt_info when
 	 * * translate scan to UI */
-	u8 encryp_protocol;/* ENCRYP_PROTOCOL_E: OPEN/WEP/WPA/WPA2/WAPI */
+	u8 encryp_protocol; /* ENCRYP_PROTOCOL_E: OPEN/WEP/WPA/WPA2/WAPI */
 	int group_cipher; /* WPA/WPA2 group cipher */
-	int pairwise_cipher;/* WPA/WPA2/WEP pairwise cipher */
+	int pairwise_cipher; /* WPA/WPA2/WEP pairwise cipher */
 	int is_8021x;
 
 	/* bwmode 20/40 and ch_offset UP/LOW */
-	unsigned short	ht_cap_info;
+	unsigned short ht_cap_info;
 	unsigned char ht_info_infos_0;
 };
 
@@ -153,19 +153,19 @@ struct wlan_bcn_info {
 *   struct wlan_bssid_ex and get_wlan_bssid_ex_sz()
 */
 struct wlan_bssid_ex {
-	u32  length;
+	u32 length;
 	u8 mac_address[ETH_ALEN];
-	u8  reserved[2];/* 0]: IS beacon frame */
-	struct ndis_802_11_ssid  ssid;
-	u32  privacy;
-	long  rssi;/* in dBM, raw data , get from PHY) */
-	enum ndis_802_11_network_type  network_type_in_use;
-	struct ndis_802_11_conf  configuration;
-	enum ndis_802_11_network_infrastructure  infrastructure_mode;
-	NDIS_802_11_RATES_EX  supported_rates;
+	u8 reserved[2]; /* 0]: IS beacon frame */
+	struct ndis_802_11_ssid ssid;
+	u32 privacy;
+	long rssi; /* in dBM, raw data , get from PHY) */
+	enum ndis_802_11_network_type network_type_in_use;
+	struct ndis_802_11_conf configuration;
+	enum ndis_802_11_network_infrastructure infrastructure_mode;
+	NDIS_802_11_RATES_EX supported_rates;
 	struct wlan_phy_info phy_info;
-	u32  ie_length;
-	u8  ies[MAX_IE_SZ];	/* timestamp, beacon interval, and capability information) */
+	u32 ie_length;
+	u8 ies[MAX_IE_SZ]; /* timestamp, beacon interval, and capability information) */
 } __packed;
 
 static inline uint get_wlan_bssid_ex_sz(struct wlan_bssid_ex *bss)
@@ -173,28 +173,20 @@ static inline uint get_wlan_bssid_ex_sz(struct wlan_bssid_ex *bss)
 	return (sizeof(struct wlan_bssid_ex) - MAX_IE_SZ + bss->ie_length);
 }
 
-struct	wlan_network {
-	struct list_head	list;
-	int	network_type;	/* refer to ieee80211.h for WIRELESS_11A/B/G */
-	int	fixed;			/*  set to fixed when not to be removed as site-surveying */
-	unsigned long	last_scanned; /* timestamp for the network */
-	int	aid;			/* will only be valid when a BSS is joinned. */
-	int	join_res;
-	struct wlan_bssid_ex	network; /* must be the last item */
-	struct wlan_bcn_info	bcn_info;
+struct wlan_network {
+	struct list_head list;
+	int network_type; /* refer to ieee80211.h for WIRELESS_11A/B/G */
+	int fixed; /*  set to fixed when not to be removed as site-surveying */
+	unsigned long last_scanned; /* timestamp for the network */
+	int aid; /* will only be valid when a BSS is joinned. */
+	int join_res;
+	struct wlan_bssid_ex network; /* must be the last item */
+	struct wlan_bcn_info bcn_info;
 };
 
-enum {
-	DISABLE_VCS,
-	ENABLE_VCS,
-	AUTO_VCS
-};
+enum { DISABLE_VCS, ENABLE_VCS, AUTO_VCS };
 
-enum {
-	NONE_VCS,
-	RTS_CTS,
-	CTS_TO_SELF
-};
+enum { NONE_VCS, RTS_CTS, CTS_TO_SELF };
 
 #define PWR_CAM 0
 #define PWR_MINPS 1
@@ -202,12 +194,7 @@ enum {
 #define PWR_UAPSD 3
 #define PWR_VOIP 4
 
-enum {
-	NO_LIMIT,
-	TWO_MSDU,
-	FOUR_MSDU,
-	SIX_MSDU
-};
+enum { NO_LIMIT, TWO_MSDU, FOUR_MSDU, SIX_MSDU };
 
 #define NUM_PRE_AUTH_KEY 16
 #define NUM_PMKID_CACHE NUM_PRE_AUTH_KEY
diff --git a/drivers/staging/rtl8723bs/include/xmit_osdep.h b/drivers/staging/rtl8723bs/include/xmit_osdep.h
index 5b351652e31bd..aa6768d7ef9a5 100644
--- a/drivers/staging/rtl8723bs/include/xmit_osdep.h
+++ b/drivers/staging/rtl8723bs/include/xmit_osdep.h
@@ -7,17 +7,16 @@
 #ifndef __XMIT_OSDEP_H_
 #define __XMIT_OSDEP_H_
 
-
 struct pkt_file {
 	struct sk_buff *pkt;
-	__kernel_size_t pkt_len;	 /* the remainder length of the open_file */
+	__kernel_size_t pkt_len; /* the remainder length of the open_file */
 	unsigned char *cur_buffer;
 	u8 *buf_start;
 	u8 *cur_addr;
 	__kernel_size_t buf_len;
 };
 
-#define NR_XMITFRAME	256
+#define NR_XMITFRAME 256
 
 struct xmit_priv;
 struct pkt_attrib;
@@ -26,11 +25,13 @@ struct xmit_frame;
 struct xmit_buf;
 
 extern void _rtw_xmit_entry(struct sk_buff *pkt, struct net_device *pnetdev);
-extern netdev_tx_t rtw_xmit_entry(struct sk_buff *pkt, struct net_device *pnetdev);
+extern netdev_tx_t rtw_xmit_entry(struct sk_buff *pkt,
+				  struct net_device *pnetdev);
 
 void rtw_os_xmit_schedule(struct adapter *padapter);
 
-void rtw_os_xmit_resource_free(struct adapter *padapter, struct xmit_buf *pxmitbuf, u32 free_sz, u8 flag);
+void rtw_os_xmit_resource_free(struct adapter *padapter,
+			       struct xmit_buf *pxmitbuf, u32 free_sz, u8 flag);
 
 extern uint rtw_remainder_len(struct pkt_file *pfile);
 extern void _rtw_open_pktfile(struct sk_buff *pkt, struct pkt_file *pfile);
@@ -38,6 +39,7 @@ int _rtw_pktfile_read(struct pkt_file *pfile, u8 *rmem, unsigned int rlen);
 extern signed int rtw_endofpktfile(struct pkt_file *pfile);
 
 extern void rtw_os_pkt_complete(struct adapter *padapter, struct sk_buff *pkt);
-extern void rtw_os_xmit_complete(struct adapter *padapter, struct xmit_frame *pxframe);
+extern void rtw_os_xmit_complete(struct adapter *padapter,
+				 struct xmit_frame *pxframe);
 
 #endif /* __XMIT_OSDEP_H_ */
diff --git a/drivers/staging/rtl8723bs/os_dep/ioctl_cfg80211.c b/drivers/staging/rtl8723bs/os_dep/ioctl_cfg80211.c
index 6a97afd89dc78..7fb8cc3178b8a 100644
--- a/drivers/staging/rtl8723bs/os_dep/ioctl_cfg80211.c
+++ b/drivers/staging/rtl8723bs/os_dep/ioctl_cfg80211.c
@@ -13,33 +13,32 @@
 
 #define RTW_MAX_MGMT_TX_CNT (8)
 
-#define RTW_SCAN_IE_LEN_MAX      2304
+#define RTW_SCAN_IE_LEN_MAX 2304
 #define RTW_MAX_REMAIN_ON_CHANNEL_DURATION 5000 /* ms */
 #define RTW_MAX_NUM_PMKIDS 4
 
 static const u32 rtw_cipher_suites[] = {
-	WLAN_CIPHER_SUITE_WEP40,
-	WLAN_CIPHER_SUITE_WEP104,
-	WLAN_CIPHER_SUITE_TKIP,
-	WLAN_CIPHER_SUITE_CCMP,
+	WLAN_CIPHER_SUITE_WEP40,    WLAN_CIPHER_SUITE_WEP104,
+	WLAN_CIPHER_SUITE_TKIP,	    WLAN_CIPHER_SUITE_CCMP,
 	WLAN_CIPHER_SUITE_AES_CMAC,
 };
 
 #define RATETAB_ENT(_rate, _rateid, _flags) \
-	{								\
-		.bitrate	= (_rate),				\
-		.hw_value	= (_rateid),				\
-		.flags		= (_flags),				\
+	{                                   \
+		.bitrate = (_rate),         \
+		.hw_value = (_rateid),      \
+		.flags = (_flags),          \
 	}
 
-#define CHAN2G(_channel, _freq, _flags) {			\
-	.band			= NL80211_BAND_2GHZ,		\
-	.center_freq		= (_freq),			\
-	.hw_value		= (_channel),			\
-	.flags			= (_flags),			\
-	.max_antenna_gain	= 0,				\
-	.max_power		= 30,				\
-}
+#define CHAN2G(_channel, _freq, _flags)    \
+	{                                  \
+		.band = NL80211_BAND_2GHZ, \
+		.center_freq = (_freq),    \
+		.hw_value = (_channel),    \
+		.flags = (_flags),         \
+		.max_antenna_gain = 0,     \
+		.max_power = 30,           \
+	}
 
 /* if wowlan is not supported, kernel generate a disconnect at each suspend
  * cf: /net/wireless/sysfs.c, so register a stub wowlan.
@@ -55,59 +54,41 @@ static __maybe_unused const struct wiphy_wowlan_support wowlan_stub = {
 };
 
 static struct ieee80211_rate rtw_rates[] = {
-	RATETAB_ENT(10,  0x1,   0),
-	RATETAB_ENT(20,  0x2,   0),
-	RATETAB_ENT(55,  0x4,   0),
-	RATETAB_ENT(110, 0x8,   0),
-	RATETAB_ENT(60,  0x10,  0),
-	RATETAB_ENT(90,  0x20,  0),
-	RATETAB_ENT(120, 0x40,  0),
-	RATETAB_ENT(180, 0x80,  0),
-	RATETAB_ENT(240, 0x100, 0),
-	RATETAB_ENT(360, 0x200, 0),
-	RATETAB_ENT(480, 0x400, 0),
-	RATETAB_ENT(540, 0x800, 0),
+	RATETAB_ENT(10, 0x1, 0),    RATETAB_ENT(20, 0x2, 0),
+	RATETAB_ENT(55, 0x4, 0),    RATETAB_ENT(110, 0x8, 0),
+	RATETAB_ENT(60, 0x10, 0),   RATETAB_ENT(90, 0x20, 0),
+	RATETAB_ENT(120, 0x40, 0),  RATETAB_ENT(180, 0x80, 0),
+	RATETAB_ENT(240, 0x100, 0), RATETAB_ENT(360, 0x200, 0),
+	RATETAB_ENT(480, 0x400, 0), RATETAB_ENT(540, 0x800, 0),
 };
 
-#define rtw_g_rates		(rtw_rates + 0)
-#define RTW_G_RATES_NUM	12
+#define rtw_g_rates (rtw_rates + 0)
+#define RTW_G_RATES_NUM 12
 
 #define RTW_2G_CHANNELS_NUM 14
 
 static struct ieee80211_channel rtw_2ghz_channels[] = {
-	CHAN2G(1, 2412, 0),
-	CHAN2G(2, 2417, 0),
-	CHAN2G(3, 2422, 0),
-	CHAN2G(4, 2427, 0),
-	CHAN2G(5, 2432, 0),
-	CHAN2G(6, 2437, 0),
-	CHAN2G(7, 2442, 0),
-	CHAN2G(8, 2447, 0),
-	CHAN2G(9, 2452, 0),
-	CHAN2G(10, 2457, 0),
-	CHAN2G(11, 2462, 0),
-	CHAN2G(12, 2467, 0),
-	CHAN2G(13, 2472, 0),
-	CHAN2G(14, 2484, 0),
+	CHAN2G(1, 2412, 0),  CHAN2G(2, 2417, 0),  CHAN2G(3, 2422, 0),
+	CHAN2G(4, 2427, 0),  CHAN2G(5, 2432, 0),  CHAN2G(6, 2437, 0),
+	CHAN2G(7, 2442, 0),  CHAN2G(8, 2447, 0),  CHAN2G(9, 2452, 0),
+	CHAN2G(10, 2457, 0), CHAN2G(11, 2462, 0), CHAN2G(12, 2467, 0),
+	CHAN2G(13, 2472, 0), CHAN2G(14, 2484, 0),
 };
 
 static void rtw_2g_channels_init(struct ieee80211_channel *channels)
 {
 	memcpy(channels, rtw_2ghz_channels,
-	       sizeof(struct ieee80211_channel) * RTW_2G_CHANNELS_NUM
-	);
+	       sizeof(struct ieee80211_channel) * RTW_2G_CHANNELS_NUM);
 }
 
 static void rtw_2g_rates_init(struct ieee80211_rate *rates)
 {
 	memcpy(rates, rtw_g_rates,
-	       sizeof(struct ieee80211_rate) * RTW_G_RATES_NUM
-	);
+	       sizeof(struct ieee80211_rate) * RTW_G_RATES_NUM);
 }
 
-static struct ieee80211_supported_band *rtw_spt_band_alloc(
-	enum nl80211_band band
-	)
+static struct ieee80211_supported_band *
+rtw_spt_band_alloc(enum nl80211_band band)
 {
 	struct ieee80211_supported_band *spt_band = NULL;
 	int n_channels, n_bitrates;
@@ -121,14 +102,24 @@ static struct ieee80211_supported_band *rtw_spt_band_alloc(
 	}
 
 	alloc_sz = sizeof(*spt_band);
-	alloc_sz = size_add(alloc_sz, array_size(n_channels, sizeof(struct ieee80211_channel)));
-	alloc_sz = size_add(alloc_sz, array_size(n_bitrates, sizeof(struct ieee80211_rate)));
+	alloc_sz = size_add(alloc_sz,
+			    array_size(n_channels,
+				       sizeof(struct ieee80211_channel)));
+	alloc_sz =
+		size_add(alloc_sz,
+			 array_size(n_bitrates, sizeof(struct ieee80211_rate)));
 	spt_band = kzalloc(alloc_sz, GFP_KERNEL);
 	if (!spt_band)
 		goto exit;
 
-	spt_band->channels = (struct ieee80211_channel *)(((u8 *)spt_band) + sizeof(struct ieee80211_supported_band));
-	spt_band->bitrates = (struct ieee80211_rate *)(((u8 *)spt_band->channels) + sizeof(struct ieee80211_channel) * n_channels);
+	spt_band->channels =
+		(struct ieee80211_channel
+			 *)(((u8 *)spt_band) +
+			    sizeof(struct ieee80211_supported_band));
+	spt_band->bitrates =
+		(struct ieee80211_rate *)(((u8 *)spt_band->channels) +
+					  sizeof(struct ieee80211_channel) *
+						  n_channels);
 	spt_band->band = band;
 	spt_band->n_channels = n_channels;
 	spt_band->n_bitrates = n_bitrates;
@@ -207,7 +198,8 @@ int rtw_ieee80211_channel_to_frequency(int chan)
 }
 
 #define MAX_BSSINFO_LEN 1000
-struct cfg80211_bss *rtw_cfg80211_inform_bss(struct adapter *padapter, struct wlan_network *pnetwork)
+struct cfg80211_bss *rtw_cfg80211_inform_bss(struct adapter *padapter,
+					     struct wlan_network *pnetwork)
 {
 	struct ieee80211_channel *notify_channel;
 	struct cfg80211_bss *bss = NULL;
@@ -225,14 +217,17 @@ struct cfg80211_bss *rtw_cfg80211_inform_bss(struct adapter *padapter, struct wl
 	struct wiphy *wiphy = wdev->wiphy;
 	struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
 
-	bssinf_len = pnetwork->network.ie_length + sizeof(struct ieee80211_hdr_3addr);
+	bssinf_len = pnetwork->network.ie_length +
+		     sizeof(struct ieee80211_hdr_3addr);
 	if (bssinf_len > MAX_BSSINFO_LEN)
 		goto exit;
 
 	{
 		u16 wapi_len = 0;
 
-		if (rtw_get_wapi_ie(pnetwork->network.ies, pnetwork->network.ie_length, NULL, &wapi_len) > 0) {
+		if (rtw_get_wapi_ie(pnetwork->network.ies,
+				    pnetwork->network.ie_length, NULL,
+				    &wapi_len) > 0) {
 			if (wapi_len > 0)
 				goto exit;
 		}
@@ -243,22 +238,29 @@ struct cfg80211_bss *rtw_cfg80211_inform_bss(struct adapter *padapter, struct wl
 	if (adapter_wdev_data(padapter)->scan_request) {
 		u8 *psr = NULL, sr = 0;
 		struct ndis_802_11_ssid *pssid = &pnetwork->network.ssid;
-		struct cfg80211_scan_request *request = adapter_wdev_data(padapter)->scan_request;
+		struct cfg80211_scan_request *request =
+			adapter_wdev_data(padapter)->scan_request;
 		struct cfg80211_ssid *ssids = request->ssids;
 		u32 wpsielen = 0;
 		u8 *wpsie = NULL;
 
-		wpsie = rtw_get_wps_ie(pnetwork->network.ies + _FIXED_IE_LENGTH_, pnetwork->network.ie_length - _FIXED_IE_LENGTH_, NULL, &wpsielen);
+		wpsie = rtw_get_wps_ie(
+			pnetwork->network.ies + _FIXED_IE_LENGTH_,
+			pnetwork->network.ie_length - _FIXED_IE_LENGTH_, NULL,
+			&wpsielen);
 
 		if (wpsie && wpsielen > 0)
-			psr = rtw_get_wps_attr_content(wpsie, wpsielen, WPS_ATTR_SELECTED_REGISTRAR, (u8 *)(&sr), NULL);
+			psr = rtw_get_wps_attr_content(
+				wpsie, wpsielen, WPS_ATTR_SELECTED_REGISTRAR,
+				(u8 *)(&sr), NULL);
 
 		if (sr != 0) {
 			/* it means under processing WPS */
 			if (request->n_ssids == 1 && request->n_channels == 1) {
 				if (ssids[0].ssid_len != 0 &&
 				    (pssid->ssid_length != ssids[0].ssid_len ||
-				     memcmp(pssid->ssid, ssids[0].ssid, ssids[0].ssid_len))) {
+				     memcmp(pssid->ssid, ssids[0].ssid,
+					    ssids[0].ssid_len))) {
 					if (psr)
 						*psr = 0; /* clear sr */
 				}
@@ -276,10 +278,17 @@ struct cfg80211_bss *rtw_cfg80211_inform_bss(struct adapter *padapter, struct wl
 
 	/* We've set wiphy's signal_type as CFG80211_SIGNAL_TYPE_MBM: signal strength in mBm (100*dBm) */
 	if (check_fwstate(pmlmepriv, _FW_LINKED) &&
-	    is_same_network(&pmlmepriv->cur_network.network, &pnetwork->network, 0)) {
-		notify_signal = 100 * translate_percentage_to_dbm(padapter->recvpriv.signal_strength);/* dbm */
+	    is_same_network(&pmlmepriv->cur_network.network, &pnetwork->network,
+			    0)) {
+		notify_signal =
+			100 *
+			translate_percentage_to_dbm(
+				padapter->recvpriv.signal_strength); /* dbm */
 	} else {
-		notify_signal = 100 * translate_percentage_to_dbm(pnetwork->network.phy_info.signal_strength);/* dbm */
+		notify_signal =
+			100 * translate_percentage_to_dbm(
+				      pnetwork->network.phy_info
+					      .signal_strength); /* dbm */
 	}
 
 	buf = kzalloc(MAX_BSSINFO_LEN, GFP_ATOMIC);
@@ -291,14 +300,15 @@ struct cfg80211_bss *rtw_cfg80211_inform_bss(struct adapter *padapter, struct wl
 	fctrl = &(pwlanhdr->frame_control);
 	*(fctrl) = 0;
 
-	SetSeqNum(pwlanhdr, 0/*pmlmeext->mgnt_seq*/);
+	SetSeqNum(pwlanhdr, 0 /*pmlmeext->mgnt_seq*/);
 	/* pmlmeext->mgnt_seq++; */
 
 	if (pnetwork->network.reserved[0] == 1) { /*  WIFI_BEACON */
 		eth_broadcast_addr(pwlanhdr->addr1);
 		SetFrameSubType(pbuf, WIFI_BEACON);
 	} else {
-		memcpy(pwlanhdr->addr1, myid(&(padapter->eeprompriv)), ETH_ALEN);
+		memcpy(pwlanhdr->addr1, myid(&(padapter->eeprompriv)),
+		       ETH_ALEN);
 		SetFrameSubType(pbuf, WIFI_PROBERSP);
 	}
 
@@ -313,8 +323,9 @@ struct cfg80211_bss *rtw_cfg80211_inform_bss(struct adapter *padapter, struct wl
 
 	*((__le64 *)pbuf) = cpu_to_le64(notify_timestamp);
 
-	bss = cfg80211_inform_bss_frame(wiphy, notify_channel, (struct ieee80211_mgmt *)buf,
-					len, notify_signal, GFP_ATOMIC);
+	bss = cfg80211_inform_bss_frame(wiphy, notify_channel,
+					(struct ieee80211_mgmt *)buf, len,
+					notify_signal, GFP_ATOMIC);
 
 	if (unlikely(!bss))
 		goto free_buf;
@@ -335,7 +346,8 @@ struct cfg80211_bss *rtw_cfg80211_inform_bss(struct adapter *padapter, struct wl
  */
 int rtw_cfg80211_check_bss(struct adapter *padapter)
 {
-	struct wlan_bssid_ex  *pnetwork = &(padapter->mlmeextpriv.mlmext_info.network);
+	struct wlan_bssid_ex *pnetwork =
+		&(padapter->mlmeextpriv.mlmext_info.network);
 	struct cfg80211_bss *bss = NULL;
 	struct ieee80211_channel *notify_channel = NULL;
 	u32 freq;
@@ -343,7 +355,8 @@ int rtw_cfg80211_check_bss(struct adapter *padapter)
 	if (!(pnetwork) || !(padapter->rtw_wdev))
 		return false;
 
-	freq = rtw_ieee80211_channel_to_frequency(pnetwork->configuration.ds_config);
+	freq = rtw_ieee80211_channel_to_frequency(
+		pnetwork->configuration.ds_config);
 
 	notify_channel = ieee80211_get_channel(padapter->rtw_wdev->wiphy, freq);
 	bss = cfg80211_get_bss(padapter->rtw_wdev->wiphy, notify_channel,
@@ -353,13 +366,13 @@ int rtw_cfg80211_check_bss(struct adapter *padapter)
 
 	cfg80211_put_bss(padapter->rtw_wdev->wiphy, bss);
 
-	return	(bss != NULL);
+	return (bss != NULL);
 }
 
 void rtw_cfg80211_ibss_indicate_connect(struct adapter *padapter)
 {
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
-	struct wlan_network  *cur_network = &(pmlmepriv->cur_network);
+	struct wlan_network *cur_network = &(pmlmepriv->cur_network);
 	struct wireless_dev *pwdev = padapter->rtw_wdev;
 	struct wiphy *wiphy = pwdev->wiphy;
 	int freq = (int)cur_network->network.configuration.ds_config;
@@ -369,11 +382,13 @@ void rtw_cfg80211_ibss_indicate_connect(struct adapter *padapter)
 		return;
 
 	if (!rtw_cfg80211_check_bss(padapter)) {
-		struct wlan_bssid_ex  *pnetwork = &(padapter->mlmeextpriv.mlmext_info.network);
+		struct wlan_bssid_ex *pnetwork =
+			&(padapter->mlmeextpriv.mlmext_info.network);
 		struct wlan_network *scanned = pmlmepriv->cur_network_scanned;
 
 		if (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE)) {
-			memcpy(&cur_network->network, pnetwork, sizeof(struct wlan_bssid_ex));
+			memcpy(&cur_network->network, pnetwork,
+			       sizeof(struct wlan_bssid_ex));
 			rtw_cfg80211_inform_bss(padapter, cur_network);
 		} else {
 			if (!scanned) {
@@ -382,7 +397,8 @@ void rtw_cfg80211_ibss_indicate_connect(struct adapter *padapter)
 			}
 			if (!memcmp(&scanned->network.ssid, &pnetwork->ssid,
 				    sizeof(struct ndis_802_11_ssid)) &&
-			    !memcmp(scanned->network.mac_address, pnetwork->mac_address, ETH_ALEN))
+			    !memcmp(scanned->network.mac_address,
+				    pnetwork->mac_address, ETH_ALEN))
 				rtw_cfg80211_inform_bss(padapter, scanned);
 			else
 				WARN_ON(1);
@@ -395,18 +411,19 @@ void rtw_cfg80211_ibss_indicate_connect(struct adapter *padapter)
 	}
 	/* notify cfg80211 that device joined an IBSS */
 	chan = ieee80211_get_channel(wiphy, freq);
-	cfg80211_ibss_joined(padapter->pnetdev, cur_network->network.mac_address, chan, GFP_ATOMIC);
+	cfg80211_ibss_joined(padapter->pnetdev,
+			     cur_network->network.mac_address, chan,
+			     GFP_ATOMIC);
 }
 
 void rtw_cfg80211_indicate_connect(struct adapter *padapter)
 {
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
-	struct wlan_network  *cur_network = &(pmlmepriv->cur_network);
+	struct wlan_network *cur_network = &(pmlmepriv->cur_network);
 	struct wireless_dev *pwdev = padapter->rtw_wdev;
 
-	if (pwdev->iftype != NL80211_IFTYPE_STATION
-		&& pwdev->iftype != NL80211_IFTYPE_P2P_CLIENT
-	) {
+	if (pwdev->iftype != NL80211_IFTYPE_STATION &&
+	    pwdev->iftype != NL80211_IFTYPE_P2P_CLIENT) {
 		return;
 	}
 
@@ -414,7 +431,8 @@ void rtw_cfg80211_indicate_connect(struct adapter *padapter)
 		return;
 
 	{
-		struct wlan_bssid_ex  *pnetwork = &(padapter->mlmeextpriv.mlmext_info.network);
+		struct wlan_bssid_ex *pnetwork =
+			&(padapter->mlmeextpriv.mlmext_info.network);
 		struct wlan_network *scanned = pmlmepriv->cur_network_scanned;
 
 		if (!scanned) {
@@ -422,7 +440,8 @@ void rtw_cfg80211_indicate_connect(struct adapter *padapter)
 			goto check_bss;
 		}
 
-		if (!memcmp(scanned->network.mac_address, pnetwork->mac_address, ETH_ALEN) &&
+		if (!memcmp(scanned->network.mac_address, pnetwork->mac_address,
+			    ETH_ALEN) &&
 		    !memcmp(&scanned->network.ssid, &pnetwork->ssid,
 			    sizeof(struct ndis_802_11_ssid)))
 			rtw_cfg80211_inform_bss(padapter, scanned);
@@ -449,22 +468,27 @@ void rtw_cfg80211_indicate_connect(struct adapter *padapter)
 
 		roam_info.links[0].channel = notify_channel;
 		roam_info.links[0].bssid = cur_network->network.mac_address;
-		roam_info.req_ie =
-			pmlmepriv->assoc_req + sizeof(struct ieee80211_hdr_3addr) + 2;
-		roam_info.req_ie_len =
-			pmlmepriv->assoc_req_len - sizeof(struct ieee80211_hdr_3addr) - 2;
-		roam_info.resp_ie =
-			pmlmepriv->assoc_rsp + sizeof(struct ieee80211_hdr_3addr) + 6;
-		roam_info.resp_ie_len =
-			pmlmepriv->assoc_rsp_len - sizeof(struct ieee80211_hdr_3addr) - 6;
+		roam_info.req_ie = pmlmepriv->assoc_req +
+				   sizeof(struct ieee80211_hdr_3addr) + 2;
+		roam_info.req_ie_len = pmlmepriv->assoc_req_len -
+				       sizeof(struct ieee80211_hdr_3addr) - 2;
+		roam_info.resp_ie = pmlmepriv->assoc_rsp +
+				    sizeof(struct ieee80211_hdr_3addr) + 6;
+		roam_info.resp_ie_len = pmlmepriv->assoc_rsp_len -
+					sizeof(struct ieee80211_hdr_3addr) - 6;
 		cfg80211_roamed(padapter->pnetdev, &roam_info, GFP_ATOMIC);
 	} else {
-		cfg80211_connect_result(padapter->pnetdev, cur_network->network.mac_address
-			, pmlmepriv->assoc_req + sizeof(struct ieee80211_hdr_3addr) + 2
-			, pmlmepriv->assoc_req_len - sizeof(struct ieee80211_hdr_3addr) - 2
-			, pmlmepriv->assoc_rsp + sizeof(struct ieee80211_hdr_3addr) + 6
-			, pmlmepriv->assoc_rsp_len - sizeof(struct ieee80211_hdr_3addr) - 6
-			, WLAN_STATUS_SUCCESS, GFP_ATOMIC);
+		cfg80211_connect_result(
+			padapter->pnetdev, cur_network->network.mac_address,
+			pmlmepriv->assoc_req +
+				sizeof(struct ieee80211_hdr_3addr) + 2,
+			pmlmepriv->assoc_req_len -
+				sizeof(struct ieee80211_hdr_3addr) - 2,
+			pmlmepriv->assoc_rsp +
+				sizeof(struct ieee80211_hdr_3addr) + 6,
+			pmlmepriv->assoc_rsp_len -
+				sizeof(struct ieee80211_hdr_3addr) - 6,
+			WLAN_STATUS_SUCCESS, GFP_ATOMIC);
 	}
 }
 
@@ -473,9 +497,8 @@ void rtw_cfg80211_indicate_disconnect(struct adapter *padapter)
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 	struct wireless_dev *pwdev = padapter->rtw_wdev;
 
-	if (pwdev->iftype != NL80211_IFTYPE_STATION
-		&& pwdev->iftype != NL80211_IFTYPE_P2P_CLIENT
-	) {
+	if (pwdev->iftype != NL80211_IFTYPE_STATION &&
+	    pwdev->iftype != NL80211_IFTYPE_P2P_CLIENT) {
 		return;
 	}
 
@@ -484,33 +507,42 @@ void rtw_cfg80211_indicate_disconnect(struct adapter *padapter)
 
 	if (!padapter->mlmepriv.not_indic_disco) {
 		if (check_fwstate(&padapter->mlmepriv, _FW_LINKED)) {
-			cfg80211_disconnected(padapter->pnetdev, 0,
-					      NULL, 0, true, GFP_ATOMIC);
+			cfg80211_disconnected(padapter->pnetdev, 0, NULL, 0,
+					      true, GFP_ATOMIC);
 		} else {
-			cfg80211_connect_result(padapter->pnetdev, NULL, NULL, 0, NULL, 0,
-						WLAN_STATUS_UNSPECIFIED_FAILURE, GFP_ATOMIC/*GFP_KERNEL*/);
+			cfg80211_connect_result(padapter->pnetdev, NULL, NULL,
+						0, NULL, 0,
+						WLAN_STATUS_UNSPECIFIED_FAILURE,
+						GFP_ATOMIC /*GFP_KERNEL*/);
 		}
 	}
 }
 
-static int rtw_cfg80211_ap_set_encryption(struct net_device *dev, struct ieee_param *param, u32 param_len)
+static int rtw_cfg80211_ap_set_encryption(struct net_device *dev,
+					  struct ieee_param *param,
+					  u32 param_len)
 {
 	int ret = 0;
 	u32 wep_key_idx, wep_key_len;
 	struct sta_info *psta = NULL, *pbcmc_sta = NULL;
 	struct adapter *padapter = rtw_netdev_priv(dev);
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
-	struct security_priv *psecuritypriv =  &(padapter->securitypriv);
+	struct security_priv *psecuritypriv = &(padapter->securitypriv);
 	struct sta_priv *pstapriv = &padapter->stapriv;
-	char *grpkey = padapter->securitypriv.dot118021XGrpKey[param->u.crypt.idx].skey;
-	char *txkey = padapter->securitypriv.dot118021XGrptxmickey[param->u.crypt.idx].skey;
-	char *rxkey = padapter->securitypriv.dot118021XGrprxmickey[param->u.crypt.idx].skey;
+	char *grpkey =
+		padapter->securitypriv.dot118021XGrpKey[param->u.crypt.idx].skey;
+	char *txkey =
+		padapter->securitypriv.dot118021XGrptxmickey[param->u.crypt.idx]
+			.skey;
+	char *rxkey =
+		padapter->securitypriv.dot118021XGrprxmickey[param->u.crypt.idx]
+			.skey;
 
 	param->u.crypt.err = 0;
 	param->u.crypt.alg[IEEE_CRYPT_ALG_NAME_LEN - 1] = '\0';
 
-	if (param_len !=  sizeof(struct ieee_param) + param->u.crypt.key_len) {
-		ret =  -EINVAL;
+	if (param_len != sizeof(struct ieee_param) + param->u.crypt.key_len) {
+		ret = -EINVAL;
 		goto exit;
 	}
 
@@ -547,7 +579,8 @@ static int rtw_cfg80211_ap_set_encryption(struct net_device *dev, struct ieee_pa
 			/* wep default key has not been set, so use this key index as default key. */
 
 			psecuritypriv->dot11AuthAlgrthm = dot11AuthAlgrthm_Auto;
-			psecuritypriv->ndisencryptstatus = Ndis802_11Encryption1Enabled;
+			psecuritypriv->ndisencryptstatus =
+				Ndis802_11Encryption1Enabled;
 			psecuritypriv->dot11PrivacyAlgrthm = _WEP40_;
 			psecuritypriv->dot118021XGrpPrivacy = _WEP40_;
 
@@ -559,11 +592,13 @@ static int rtw_cfg80211_ap_set_encryption(struct net_device *dev, struct ieee_pa
 			psecuritypriv->dot11PrivacyKeyIndex = wep_key_idx;
 		}
 
-		memcpy(&(psecuritypriv->dot11DefKey[wep_key_idx].skey[0]), param->u.crypt.key, wep_key_len);
+		memcpy(&(psecuritypriv->dot11DefKey[wep_key_idx].skey[0]),
+		       param->u.crypt.key, wep_key_len);
 
 		psecuritypriv->dot11DefKeylen[wep_key_idx] = wep_key_len;
 
-		rtw_ap_set_wep_key(padapter, param->u.crypt.key, wep_key_len, wep_key_idx, 1);
+		rtw_ap_set_wep_key(padapter, param->u.crypt.key, wep_key_len,
+				   wep_key_idx, 1);
 
 		goto exit;
 	}
@@ -573,16 +608,23 @@ static int rtw_cfg80211_ap_set_encryption(struct net_device *dev, struct ieee_pa
 		/* group key */
 		if (param->u.crypt.set_tx == 0) {
 			if (strcmp(param->u.crypt.alg, "WEP") == 0) {
-				memcpy(grpkey, param->u.crypt.key, (param->u.crypt.key_len > 16 ? 16 : param->u.crypt.key_len));
+				memcpy(grpkey, param->u.crypt.key,
+				       (param->u.crypt.key_len > 16 ?
+						16 :
+						param->u.crypt.key_len));
 
 				psecuritypriv->dot118021XGrpPrivacy = _WEP40_;
 				if (param->u.crypt.key_len == 13)
-					psecuritypriv->dot118021XGrpPrivacy = _WEP104_;
+					psecuritypriv->dot118021XGrpPrivacy =
+						_WEP104_;
 
 			} else if (strcmp(param->u.crypt.alg, "TKIP") == 0) {
 				psecuritypriv->dot118021XGrpPrivacy = _TKIP_;
 
-				memcpy(grpkey, param->u.crypt.key, (param->u.crypt.key_len > 16 ? 16 : param->u.crypt.key_len));
+				memcpy(grpkey, param->u.crypt.key,
+				       (param->u.crypt.key_len > 16 ?
+						16 :
+						param->u.crypt.key_len));
 
 				/* set mic key */
 				memcpy(txkey, &(param->u.crypt.key[16]), 8);
@@ -593,48 +635,68 @@ static int rtw_cfg80211_ap_set_encryption(struct net_device *dev, struct ieee_pa
 			} else if (strcmp(param->u.crypt.alg, "CCMP") == 0) {
 				psecuritypriv->dot118021XGrpPrivacy = _AES_;
 
-				memcpy(grpkey, param->u.crypt.key, (param->u.crypt.key_len > 16 ? 16 : param->u.crypt.key_len));
+				memcpy(grpkey, param->u.crypt.key,
+				       (param->u.crypt.key_len > 16 ?
+						16 :
+						param->u.crypt.key_len));
 			} else {
-				psecuritypriv->dot118021XGrpPrivacy = _NO_PRIVACY_;
+				psecuritypriv->dot118021XGrpPrivacy =
+					_NO_PRIVACY_;
 			}
 
 			psecuritypriv->dot118021XGrpKeyid = param->u.crypt.idx;
 
 			psecuritypriv->binstallGrpkey = true;
 
-			psecuritypriv->dot11PrivacyAlgrthm = psecuritypriv->dot118021XGrpPrivacy;/*  */
+			psecuritypriv->dot11PrivacyAlgrthm =
+				psecuritypriv->dot118021XGrpPrivacy; /*  */
 
-			rtw_ap_set_group_key(padapter, param->u.crypt.key, psecuritypriv->dot118021XGrpPrivacy, param->u.crypt.idx);
+			rtw_ap_set_group_key(
+				padapter, param->u.crypt.key,
+				psecuritypriv->dot118021XGrpPrivacy,
+				param->u.crypt.idx);
 
 			pbcmc_sta = rtw_get_bcmc_stainfo(padapter);
 			if (pbcmc_sta) {
 				pbcmc_sta->ieee8021x_blocked = false;
-				pbcmc_sta->dot118021XPrivacy = psecuritypriv->dot118021XGrpPrivacy;/* rx will use bmc_sta's dot118021XPrivacy */
+				pbcmc_sta->dot118021XPrivacy =
+					psecuritypriv
+						->dot118021XGrpPrivacy; /* rx will use bmc_sta's dot118021XPrivacy */
 			}
 		}
 
 		goto exit;
 	}
 
-	if (psecuritypriv->dot11AuthAlgrthm == dot11AuthAlgrthm_8021X && psta) { /*  psk/802_1x */
+	if (psecuritypriv->dot11AuthAlgrthm == dot11AuthAlgrthm_8021X &&
+	    psta) { /*  psk/802_1x */
 		if (check_fwstate(pmlmepriv, WIFI_AP_STATE)) {
 			if (param->u.crypt.set_tx == 1) { /* pairwise key */
-				memcpy(psta->dot118021x_UncstKey.skey, param->u.crypt.key, (param->u.crypt.key_len > 16 ? 16 : param->u.crypt.key_len));
+				memcpy(psta->dot118021x_UncstKey.skey,
+				       param->u.crypt.key,
+				       (param->u.crypt.key_len > 16 ?
+						16 :
+						param->u.crypt.key_len));
 
 				if (strcmp(param->u.crypt.alg, "WEP") == 0) {
 					psta->dot118021XPrivacy = _WEP40_;
 					if (param->u.crypt.key_len == 13)
-						psta->dot118021XPrivacy = _WEP104_;
-				} else if (strcmp(param->u.crypt.alg, "TKIP") == 0) {
+						psta->dot118021XPrivacy =
+							_WEP104_;
+				} else if (strcmp(param->u.crypt.alg, "TKIP") ==
+					   0) {
 					psta->dot118021XPrivacy = _TKIP_;
 
 					/* set mic key */
-					memcpy(psta->dot11tkiptxmickey.skey, &(param->u.crypt.key[16]), 8);
-					memcpy(psta->dot11tkiprxmickey.skey, &(param->u.crypt.key[24]), 8);
+					memcpy(psta->dot11tkiptxmickey.skey,
+					       &(param->u.crypt.key[16]), 8);
+					memcpy(psta->dot11tkiprxmickey.skey,
+					       &(param->u.crypt.key[24]), 8);
 
 					psecuritypriv->busetkipkey = true;
 
-				} else if (strcmp(param->u.crypt.alg, "CCMP") == 0) {
+				} else if (strcmp(param->u.crypt.alg, "CCMP") ==
+					   0) {
 					psta->dot118021XPrivacy = _AES_;
 				} else {
 					psta->dot118021XPrivacy = _NO_PRIVACY_;
@@ -648,42 +710,69 @@ static int rtw_cfg80211_ap_set_encryption(struct net_device *dev, struct ieee_pa
 
 			} else { /* group key??? */
 				if (strcmp(param->u.crypt.alg, "WEP") == 0) {
-					memcpy(grpkey, param->u.crypt.key, (param->u.crypt.key_len > 16 ? 16 : param->u.crypt.key_len));
+					memcpy(grpkey, param->u.crypt.key,
+					       (param->u.crypt.key_len > 16 ?
+							16 :
+							param->u.crypt.key_len));
 
-					psecuritypriv->dot118021XGrpPrivacy = _WEP40_;
+					psecuritypriv->dot118021XGrpPrivacy =
+						_WEP40_;
 					if (param->u.crypt.key_len == 13)
-						psecuritypriv->dot118021XGrpPrivacy = _WEP104_;
-				} else if (strcmp(param->u.crypt.alg, "TKIP") == 0) {
-					psecuritypriv->dot118021XGrpPrivacy = _TKIP_;
-
-					memcpy(grpkey, param->u.crypt.key, (param->u.crypt.key_len > 16 ? 16 : param->u.crypt.key_len));
+						psecuritypriv
+							->dot118021XGrpPrivacy =
+							_WEP104_;
+				} else if (strcmp(param->u.crypt.alg, "TKIP") ==
+					   0) {
+					psecuritypriv->dot118021XGrpPrivacy =
+						_TKIP_;
+
+					memcpy(grpkey, param->u.crypt.key,
+					       (param->u.crypt.key_len > 16 ?
+							16 :
+							param->u.crypt.key_len));
 
 					/* set mic key */
-					memcpy(txkey, &(param->u.crypt.key[16]), 8);
-					memcpy(rxkey, &(param->u.crypt.key[24]), 8);
+					memcpy(txkey, &(param->u.crypt.key[16]),
+					       8);
+					memcpy(rxkey, &(param->u.crypt.key[24]),
+					       8);
 
 					psecuritypriv->busetkipkey = true;
 
-				} else if (strcmp(param->u.crypt.alg, "CCMP") == 0) {
-					psecuritypriv->dot118021XGrpPrivacy = _AES_;
+				} else if (strcmp(param->u.crypt.alg, "CCMP") ==
+					   0) {
+					psecuritypriv->dot118021XGrpPrivacy =
+						_AES_;
 
-					memcpy(grpkey, param->u.crypt.key, (param->u.crypt.key_len > 16 ? 16 : param->u.crypt.key_len));
+					memcpy(grpkey, param->u.crypt.key,
+					       (param->u.crypt.key_len > 16 ?
+							16 :
+							param->u.crypt.key_len));
 				} else {
-					psecuritypriv->dot118021XGrpPrivacy = _NO_PRIVACY_;
+					psecuritypriv->dot118021XGrpPrivacy =
+						_NO_PRIVACY_;
 				}
 
-				psecuritypriv->dot118021XGrpKeyid = param->u.crypt.idx;
+				psecuritypriv->dot118021XGrpKeyid =
+					param->u.crypt.idx;
 
 				psecuritypriv->binstallGrpkey = true;
 
-				psecuritypriv->dot11PrivacyAlgrthm = psecuritypriv->dot118021XGrpPrivacy;/*  */
+				psecuritypriv->dot11PrivacyAlgrthm =
+					psecuritypriv
+						->dot118021XGrpPrivacy; /*  */
 
-				rtw_ap_set_group_key(padapter, param->u.crypt.key, psecuritypriv->dot118021XGrpPrivacy, param->u.crypt.idx);
+				rtw_ap_set_group_key(
+					padapter, param->u.crypt.key,
+					psecuritypriv->dot118021XGrpPrivacy,
+					param->u.crypt.idx);
 
 				pbcmc_sta = rtw_get_bcmc_stainfo(padapter);
 				if (pbcmc_sta) {
 					pbcmc_sta->ieee8021x_blocked = false;
-					pbcmc_sta->dot118021XPrivacy = psecuritypriv->dot118021XGrpPrivacy;/* rx will use bmc_sta's dot118021XPrivacy */
+					pbcmc_sta->dot118021XPrivacy =
+						psecuritypriv
+							->dot118021XGrpPrivacy; /* rx will use bmc_sta's dot118021XPrivacy */
 				}
 			}
 		}
@@ -694,7 +783,8 @@ static int rtw_cfg80211_ap_set_encryption(struct net_device *dev, struct ieee_pa
 	return ret;
 }
 
-static int rtw_cfg80211_set_encryption(struct net_device *dev, struct ieee_param *param, u32 param_len)
+static int rtw_cfg80211_set_encryption(struct net_device *dev,
+				       struct ieee_param *param, u32 param_len)
 {
 	int ret = 0;
 	u8 max_idx;
@@ -706,8 +796,9 @@ static int rtw_cfg80211_set_encryption(struct net_device *dev, struct ieee_param
 	param->u.crypt.err = 0;
 	param->u.crypt.alg[IEEE_CRYPT_ALG_NAME_LEN - 1] = '\0';
 
-	if (param_len < (u32)((u8 *)param->u.crypt.key - (u8 *)param) + param->u.crypt.key_len) {
-		ret =  -EINVAL;
+	if (param_len < (u32)((u8 *)param->u.crypt.key - (u8 *)param) +
+				param->u.crypt.key_len) {
+		ret = -EINVAL;
 		goto exit;
 	}
 
@@ -724,7 +815,8 @@ static int rtw_cfg80211_set_encryption(struct net_device *dev, struct ieee_param
 		max_idx = BIP_MAX_KEYID;
 
 	if (param->u.crypt.idx > max_idx) {
-		netdev_err(dev, "Error crypt.idx %d > %d\n", param->u.crypt.idx, max_idx);
+		netdev_err(dev, "Error crypt.idx %d > %d\n", param->u.crypt.idx,
+			   max_idx);
 		ret = -EINVAL;
 		goto exit;
 	}
@@ -743,7 +835,8 @@ static int rtw_cfg80211_set_encryption(struct net_device *dev, struct ieee_param
 
 			wep_key_len = wep_key_len <= 5 ? 5 : 13;
 
-			psecuritypriv->ndisencryptstatus = Ndis802_11Encryption1Enabled;
+			psecuritypriv->ndisencryptstatus =
+				Ndis802_11Encryption1Enabled;
 			psecuritypriv->dot11PrivacyAlgrthm = _WEP40_;
 			psecuritypriv->dot118021XGrpPrivacy = _WEP40_;
 
@@ -755,7 +848,8 @@ static int rtw_cfg80211_set_encryption(struct net_device *dev, struct ieee_param
 			psecuritypriv->dot11PrivacyKeyIndex = wep_key_idx;
 		}
 
-		memcpy(&(psecuritypriv->dot11DefKey[wep_key_idx].skey[0]), param->u.crypt.key, wep_key_len);
+		memcpy(&(psecuritypriv->dot11DefKey[wep_key_idx].skey[0]),
+		       param->u.crypt.key, wep_key_len);
 
 		psecuritypriv->dot11DefKeylen[wep_key_idx] = wep_key_len;
 
@@ -764,49 +858,117 @@ static int rtw_cfg80211_set_encryption(struct net_device *dev, struct ieee_param
 		goto exit;
 	}
 
-	if (padapter->securitypriv.dot11AuthAlgrthm == dot11AuthAlgrthm_8021X) { /*  802_1x */
+	if (padapter->securitypriv.dot11AuthAlgrthm ==
+	    dot11AuthAlgrthm_8021X) { /*  802_1x */
 		struct sta_info *psta, *pbcmc_sta;
 		struct sta_priv *pstapriv = &padapter->stapriv;
 
-		if (check_fwstate(pmlmepriv, WIFI_STATION_STATE | WIFI_MP_STATE)) { /* sta mode */
+		if (check_fwstate(pmlmepriv,
+				  WIFI_STATION_STATE |
+					  WIFI_MP_STATE)) { /* sta mode */
 			psta = rtw_get_stainfo(pstapriv, get_bssid(pmlmepriv));
 			if (psta) {
 				/* Jeff: don't disable ieee8021x_blocked while clearing key */
 				if (strcmp(param->u.crypt.alg, "none") != 0)
 					psta->ieee8021x_blocked = false;
 
-				if ((padapter->securitypriv.ndisencryptstatus == Ndis802_11Encryption2Enabled) ||
-				    (padapter->securitypriv.ndisencryptstatus ==  Ndis802_11Encryption3Enabled)) {
-					psta->dot118021XPrivacy = padapter->securitypriv.dot11PrivacyAlgrthm;
+				if ((padapter->securitypriv.ndisencryptstatus ==
+				     Ndis802_11Encryption2Enabled) ||
+				    (padapter->securitypriv.ndisencryptstatus ==
+				     Ndis802_11Encryption3Enabled)) {
+					psta->dot118021XPrivacy =
+						padapter->securitypriv
+							.dot11PrivacyAlgrthm;
 				}
 
-				if (param->u.crypt.set_tx == 1) { /* pairwise key */
-
-					memcpy(psta->dot118021x_UncstKey.skey, param->u.crypt.key, (param->u.crypt.key_len > 16 ? 16 : param->u.crypt.key_len));
-
-					if (strcmp(param->u.crypt.alg, "TKIP") == 0) { /* set mic key */
-						memcpy(psta->dot11tkiptxmickey.skey, &(param->u.crypt.key[16]), 8);
-						memcpy(psta->dot11tkiprxmickey.skey, &(param->u.crypt.key[24]), 8);
-
-						padapter->securitypriv.busetkipkey = false;
+				if (param->u.crypt.set_tx ==
+				    1) { /* pairwise key */
+
+					memcpy(psta->dot118021x_UncstKey.skey,
+					       param->u.crypt.key,
+					       (param->u.crypt.key_len > 16 ?
+							16 :
+							param->u.crypt.key_len));
+
+					if (strcmp(param->u.crypt.alg,
+						   "TKIP") ==
+					    0) { /* set mic key */
+						memcpy(psta->dot11tkiptxmickey
+							       .skey,
+						       &(param->u.crypt.key[16]),
+						       8);
+						memcpy(psta->dot11tkiprxmickey
+							       .skey,
+						       &(param->u.crypt.key[24]),
+						       8);
+
+						padapter->securitypriv
+							.busetkipkey = false;
 						/* _set_timer(&padapter->securitypriv.tkip_timer, 50); */
 					}
 
-					rtw_setstakey_cmd(padapter, psta, true, true);
+					rtw_setstakey_cmd(padapter, psta, true,
+							  true);
 				} else { /* group key */
-					if (strcmp(param->u.crypt.alg, "TKIP") == 0 || strcmp(param->u.crypt.alg, "CCMP") == 0) {
-						memcpy(padapter->securitypriv.dot118021XGrpKey[param->u.crypt.idx].skey, param->u.crypt.key, (param->u.crypt.key_len > 16 ? 16 : param->u.crypt.key_len));
-						memcpy(padapter->securitypriv.dot118021XGrptxmickey[param->u.crypt.idx].skey, &(param->u.crypt.key[16]), 8);
-						memcpy(padapter->securitypriv.dot118021XGrprxmickey[param->u.crypt.idx].skey, &(param->u.crypt.key[24]), 8);
-						padapter->securitypriv.binstallGrpkey = true;
-
-						padapter->securitypriv.dot118021XGrpKeyid = param->u.crypt.idx;
-						rtw_set_key(padapter, &padapter->securitypriv, param->u.crypt.idx, 1, true);
-					} else if (strcmp(param->u.crypt.alg, "BIP") == 0) {
+					if (strcmp(param->u.crypt.alg,
+						   "TKIP") == 0 ||
+					    strcmp(param->u.crypt.alg,
+						   "CCMP") == 0) {
+						memcpy(padapter->securitypriv
+							       .dot118021XGrpKey
+								       [param->u.crypt
+										.idx]
+							       .skey,
+						       param->u.crypt.key,
+						       (param->u.crypt.key_len >
+									16 ?
+								16 :
+								param->u.crypt
+									.key_len));
+						memcpy(padapter->securitypriv
+							       .dot118021XGrptxmickey
+								       [param->u.crypt
+										.idx]
+							       .skey,
+						       &(param->u.crypt.key[16]),
+						       8);
+						memcpy(padapter->securitypriv
+							       .dot118021XGrprxmickey
+								       [param->u.crypt
+										.idx]
+							       .skey,
+						       &(param->u.crypt.key[24]),
+						       8);
+						padapter->securitypriv
+							.binstallGrpkey = true;
+
+						padapter->securitypriv
+							.dot118021XGrpKeyid =
+							param->u.crypt.idx;
+						rtw_set_key(
+							padapter,
+							&padapter->securitypriv,
+							param->u.crypt.idx, 1,
+							true);
+					} else if (strcmp(param->u.crypt.alg,
+							  "BIP") == 0) {
 						/* save the IGTK key, length 16 bytes */
-						memcpy(padapter->securitypriv.dot11wBIPKey[param->u.crypt.idx].skey, param->u.crypt.key, (param->u.crypt.key_len > 16 ? 16 : param->u.crypt.key_len));
-						padapter->securitypriv.dot11wBIPKeyid = param->u.crypt.idx;
-						padapter->securitypriv.binstallBIPkey = true;
+						memcpy(padapter->securitypriv
+							       .dot11wBIPKey
+								       [param->u.crypt
+										.idx]
+							       .skey,
+						       param->u.crypt.key,
+						       (param->u.crypt.key_len >
+									16 ?
+								16 :
+								param->u.crypt
+									.key_len));
+						padapter->securitypriv
+							.dot11wBIPKeyid =
+							param->u.crypt.idx;
+						padapter->securitypriv
+							.binstallBIPkey = true;
 					}
 				}
 			}
@@ -817,12 +979,17 @@ static int rtw_cfg80211_set_encryption(struct net_device *dev, struct ieee_param
 				if (strcmp(param->u.crypt.alg, "none") != 0)
 					pbcmc_sta->ieee8021x_blocked = false;
 
-				if ((padapter->securitypriv.ndisencryptstatus == Ndis802_11Encryption2Enabled) ||
-				    (padapter->securitypriv.ndisencryptstatus ==  Ndis802_11Encryption3Enabled)) {
-					pbcmc_sta->dot118021XPrivacy = padapter->securitypriv.dot11PrivacyAlgrthm;
+				if ((padapter->securitypriv.ndisencryptstatus ==
+				     Ndis802_11Encryption2Enabled) ||
+				    (padapter->securitypriv.ndisencryptstatus ==
+				     Ndis802_11Encryption3Enabled)) {
+					pbcmc_sta->dot118021XPrivacy =
+						padapter->securitypriv
+							.dot11PrivacyAlgrthm;
 				}
 			}
-		} else if (check_fwstate(pmlmepriv, WIFI_ADHOC_STATE)) { /* adhoc mode */
+		} else if (check_fwstate(pmlmepriv,
+					 WIFI_ADHOC_STATE)) { /* adhoc mode */
 		}
 	}
 
@@ -893,7 +1060,7 @@ static int cfg80211_rtw_add_key(struct wiphy *wiphy, struct wireless_dev *wdev,
 	}
 
 	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)) {
-		ret =  rtw_cfg80211_set_encryption(ndev, param, param_len);
+		ret = rtw_cfg80211_set_encryption(ndev, param, param_len);
 	} else if (check_fwstate(pmlmepriv, WIFI_AP_STATE)) {
 		if (mac_addr)
 			memcpy(param->sta_addr, mac_addr, ETH_ALEN);
@@ -901,7 +1068,7 @@ static int cfg80211_rtw_add_key(struct wiphy *wiphy, struct wireless_dev *wdev,
 		ret = rtw_cfg80211_ap_set_encryption(ndev, param, param_len);
 	} else if (check_fwstate(pmlmepriv, WIFI_ADHOC_STATE) ||
 		   check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE)) {
-		ret =  rtw_cfg80211_set_encryption(ndev, param, param_len);
+		ret = rtw_cfg80211_set_encryption(ndev, param, param_len);
 	}
 
 addkey_end:
@@ -914,7 +1081,7 @@ static int cfg80211_rtw_get_key(struct wiphy *wiphy, struct wireless_dev *wdev,
 				int link_id, u8 key_index, bool pairwise,
 				const u8 *mac_addr, void *cookie,
 				void (*callback)(void *cookie,
-						 struct key_params*))
+						 struct key_params *))
 {
 	return 0;
 }
@@ -942,7 +1109,10 @@ static int cfg80211_rtw_set_default_key(struct wiphy *wiphy,
 	struct adapter *padapter = rtw_netdev_priv(ndev);
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 
-	if ((key_index < WEP_KEYS) && ((psecuritypriv->dot11PrivacyAlgrthm == _WEP40_) || (psecuritypriv->dot11PrivacyAlgrthm == _WEP104_))) { /* set wep default key */
+	if ((key_index < WEP_KEYS) &&
+	    ((psecuritypriv->dot11PrivacyAlgrthm == _WEP40_) ||
+	     (psecuritypriv->dot11PrivacyAlgrthm ==
+	      _WEP104_))) { /* set wep default key */
 		psecuritypriv->ndisencryptstatus = Ndis802_11Encryption1Enabled;
 
 		psecuritypriv->dot11PrivacyKeyIndex = key_index;
@@ -954,16 +1124,16 @@ static int cfg80211_rtw_set_default_key(struct wiphy *wiphy,
 			psecuritypriv->dot118021XGrpPrivacy = _WEP104_;
 		}
 
-		psecuritypriv->bWepDefaultKeyIdxSet = 1; /* set the flag to represent that wep default key has been set */
+		psecuritypriv->bWepDefaultKeyIdxSet =
+			1; /* set the flag to represent that wep default key has been set */
 	}
 
 	return 0;
 }
 
 static int cfg80211_rtw_get_station(struct wiphy *wiphy,
-				    struct wireless_dev *wdev,
-				const u8 *mac,
-				struct station_info *sinfo)
+				    struct wireless_dev *wdev, const u8 *mac,
+				    struct station_info *sinfo)
 {
 	int ret = 0;
 	struct net_device *ndev = wdev_to_ndev(wdev);
@@ -986,17 +1156,19 @@ static int cfg80211_rtw_get_station(struct wiphy *wiphy,
 	}
 
 	/* for infra./P2PClient mode */
-	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)
-		&& check_fwstate(pmlmepriv, _FW_LINKED)) {
-		struct wlan_network  *cur_network = &(pmlmepriv->cur_network);
+	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE) &&
+	    check_fwstate(pmlmepriv, _FW_LINKED)) {
+		struct wlan_network *cur_network = &(pmlmepriv->cur_network);
 
-		if (memcmp((u8 *)mac, cur_network->network.mac_address, ETH_ALEN)) {
+		if (memcmp((u8 *)mac, cur_network->network.mac_address,
+			   ETH_ALEN)) {
 			ret = -ENOENT;
 			goto exit;
 		}
 
 		sinfo->filled |= BIT_ULL(NL80211_STA_INFO_SIGNAL);
-		sinfo->signal = translate_percentage_to_dbm(padapter->recvpriv.signal_strength);
+		sinfo->signal = translate_percentage_to_dbm(
+			padapter->recvpriv.signal_strength);
 
 		sinfo->filled |= BIT_ULL(NL80211_STA_INFO_TX_BITRATE);
 		sinfo->txrate.legacy = rtw_get_cur_max_rate(padapter);
@@ -1090,14 +1262,13 @@ static int cfg80211_rtw_change_iface(struct wiphy *wiphy,
 void rtw_cfg80211_indicate_scan_done(struct adapter *adapter, bool aborted)
 {
 	struct rtw_wdev_priv *pwdev_priv = adapter_wdev_data(adapter);
-	struct cfg80211_scan_info info = {
-		.aborted = aborted
-	};
+	struct cfg80211_scan_info info = { .aborted = aborted };
 
 	spin_lock_bh(&pwdev_priv->scan_req_lock);
 	if (pwdev_priv->scan_request) {
 		/* avoid WARN_ON(request != wiphy_to_dev(request->wiphy)->scan_req); */
-		if (pwdev_priv->scan_request->wiphy == pwdev_priv->rtw_wdev->wiphy)
+		if (pwdev_priv->scan_request->wiphy ==
+		    pwdev_priv->rtw_wdev->wiphy)
 			cfg80211_scan_done(pwdev_priv->scan_request, &info);
 
 		pwdev_priv->scan_request = NULL;
@@ -1105,14 +1276,15 @@ void rtw_cfg80211_indicate_scan_done(struct adapter *adapter, bool aborted)
 	spin_unlock_bh(&pwdev_priv->scan_req_lock);
 }
 
-void rtw_cfg80211_unlink_bss(struct adapter *padapter, struct wlan_network *pnetwork)
+void rtw_cfg80211_unlink_bss(struct adapter *padapter,
+			     struct wlan_network *pnetwork)
 {
 	struct wireless_dev *pwdev = padapter->rtw_wdev;
 	struct wiphy *wiphy = pwdev->wiphy;
 	struct cfg80211_bss *bss = NULL;
 	struct wlan_bssid_ex *select_network = &pnetwork->network;
 
-	bss = cfg80211_get_bss(wiphy, NULL/*notify_channel*/,
+	bss = cfg80211_get_bss(wiphy, NULL /*notify_channel*/,
 			       select_network->mac_address,
 			       select_network->ssid.ssid,
 			       select_network->ssid.ssid_length,
@@ -1126,21 +1298,22 @@ void rtw_cfg80211_unlink_bss(struct adapter *padapter, struct wlan_network *pnet
 
 void rtw_cfg80211_surveydone_event_callback(struct adapter *padapter)
 {
-	struct list_head					*plist, *phead;
-	struct	mlme_priv *pmlmepriv = &(padapter->mlmepriv);
-	struct __queue *queue	= &(pmlmepriv->scanned_queue);
-	struct	wlan_network	*pnetwork = NULL;
+	struct list_head *plist, *phead;
+	struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
+	struct __queue *queue = &(pmlmepriv->scanned_queue);
+	struct wlan_network *pnetwork = NULL;
 
 	spin_lock_bh(&(pmlmepriv->scanned_queue.lock));
 
 	phead = get_list_head(queue);
-	list_for_each(plist, phead)
-	{
+	list_for_each(plist, phead) {
 		pnetwork = list_entry(plist, struct wlan_network, list);
 
 		/* report network only if the current channel set contains the channel to which this network belongs */
-		if (rtw_ch_set_search_ch(padapter->mlmeextpriv.channel_set, pnetwork->network.configuration.ds_config) >= 0
-			&& true == rtw_validate_ssid(&(pnetwork->network.ssid))) {
+		if (rtw_ch_set_search_ch(
+			    padapter->mlmeextpriv.channel_set,
+			    pnetwork->network.configuration.ds_config) >= 0 &&
+		    true == rtw_validate_ssid(&(pnetwork->network.ssid))) {
 			/* ev =translate_scan(padapter, a, pnetwork, ev, stop); */
 			rtw_cfg80211_inform_bss(padapter, pnetwork);
 		}
@@ -1149,7 +1322,8 @@ void rtw_cfg80211_surveydone_event_callback(struct adapter *padapter)
 	spin_unlock_bh(&(pmlmepriv->scanned_queue.lock));
 }
 
-static int rtw_cfg80211_set_probe_req_wpsp2pie(struct adapter *padapter, char *buf, int len)
+static int rtw_cfg80211_set_probe_req_wpsp2pie(struct adapter *padapter,
+					       char *buf, int len)
 {
 	int ret = 0;
 	uint wps_ielen = 0;
@@ -1165,7 +1339,8 @@ static int rtw_cfg80211_set_probe_req_wpsp2pie(struct adapter *padapter, char *b
 				pmlmepriv->wps_probe_req_ie = NULL;
 			}
 
-			pmlmepriv->wps_probe_req_ie = kmemdup(wps_ie, wps_ielen, GFP_KERNEL);
+			pmlmepriv->wps_probe_req_ie =
+				kmemdup(wps_ie, wps_ielen, GFP_KERNEL);
 			if (!pmlmepriv->wps_probe_req_ie)
 				return -EINVAL;
 
@@ -1176,8 +1351,8 @@ static int rtw_cfg80211_set_probe_req_wpsp2pie(struct adapter *padapter, char *b
 	return ret;
 }
 
-static int cfg80211_rtw_scan(struct wiphy *wiphy
-	, struct cfg80211_scan_request *request)
+static int cfg80211_rtw_scan(struct wiphy *wiphy,
+			     struct cfg80211_scan_request *request)
 {
 	struct net_device *ndev = wdev_to_ndev(request->wdev);
 	int i;
@@ -1203,7 +1378,7 @@ static int cfg80211_rtw_scan(struct wiphy *wiphy
 	padapter = rtw_netdev_priv(ndev);
 	pwdev_priv = adapter_wdev_data(padapter);
 	pmlmepriv = &padapter->mlmepriv;
-/* endif */
+	/* endif */
 
 	spin_lock_bh(&pwdev_priv->scan_req_lock);
 	pwdev_priv->scan_request = request;
@@ -1211,7 +1386,7 @@ static int cfg80211_rtw_scan(struct wiphy *wiphy
 
 	if (check_fwstate(pmlmepriv, WIFI_AP_STATE)) {
 		if (check_fwstate(pmlmepriv, WIFI_UNDER_WPS | _FW_UNDER_SURVEY |
-					     _FW_UNDER_LINKING)) {
+						     _FW_UNDER_LINKING)) {
 			need_indicate_scan_done = true;
 			goto check_need_indicate_scan_done;
 		}
@@ -1224,7 +1399,8 @@ static int cfg80211_rtw_scan(struct wiphy *wiphy
 	}
 
 	if (request->ie && request->ie_len > 0)
-		rtw_cfg80211_set_probe_req_wpsp2pie(padapter, (u8 *)request->ie, request->ie_len);
+		rtw_cfg80211_set_probe_req_wpsp2pie(padapter, (u8 *)request->ie,
+						    request->ie_len);
 
 	if (check_fwstate(pmlmepriv, _FW_UNDER_SURVEY)) {
 		need_indicate_scan_done = true;
@@ -1264,8 +1440,10 @@ static int cfg80211_rtw_scan(struct wiphy *wiphy
 	}
 
 	/* parsing channels, n_channels */
-	memset(ch, 0, sizeof(struct rtw_ieee80211_channel) * RTW_CHANNEL_SCAN_AMOUNT);
-	for (i = 0; i < request->n_channels && i < RTW_CHANNEL_SCAN_AMOUNT; i++) {
+	memset(ch, 0,
+	       sizeof(struct rtw_ieee80211_channel) * RTW_CHANNEL_SCAN_AMOUNT);
+	for (i = 0; i < request->n_channels && i < RTW_CHANNEL_SCAN_AMOUNT;
+	     i++) {
 		ch[i].hw_value = request->channels[i]->hw_value;
 		ch[i].flags = request->channels[i]->flags;
 	}
@@ -1273,15 +1451,22 @@ static int cfg80211_rtw_scan(struct wiphy *wiphy
 	spin_lock_bh(&pmlmepriv->lock);
 	if (request->n_channels == 1) {
 		for (i = 1; i < survey_times_for_one_ch; i++)
-			memcpy(&ch[i], &ch[0], sizeof(struct rtw_ieee80211_channel));
-		_status = rtw_sitesurvey_cmd(padapter, ssid, RTW_SSID_SCAN_AMOUNT, ch, survey_times_for_one_ch);
+			memcpy(&ch[i], &ch[0],
+			       sizeof(struct rtw_ieee80211_channel));
+		_status = rtw_sitesurvey_cmd(padapter, ssid,
+					     RTW_SSID_SCAN_AMOUNT, ch,
+					     survey_times_for_one_ch);
 	} else if (request->n_channels <= 4) {
 		for (j = request->n_channels - 1; j >= 0; j--)
 			for (i = 0; i < survey_times; i++)
-				memcpy(&ch[j * survey_times + i], &ch[j], sizeof(struct rtw_ieee80211_channel));
-		_status = rtw_sitesurvey_cmd(padapter, ssid, RTW_SSID_SCAN_AMOUNT, ch, survey_times * request->n_channels);
+				memcpy(&ch[j * survey_times + i], &ch[j],
+				       sizeof(struct rtw_ieee80211_channel));
+		_status = rtw_sitesurvey_cmd(
+			padapter, ssid, RTW_SSID_SCAN_AMOUNT, ch,
+			survey_times * request->n_channels);
 	} else {
-		_status = rtw_sitesurvey_cmd(padapter, ssid, RTW_SSID_SCAN_AMOUNT, NULL, 0);
+		_status = rtw_sitesurvey_cmd(padapter, ssid,
+					     RTW_SSID_SCAN_AMOUNT, NULL, 0);
 	}
 	spin_unlock_bh(&pmlmepriv->lock);
 
@@ -1307,7 +1492,8 @@ static int cfg80211_rtw_set_wiphy_params(struct wiphy *wiphy, int radio_idx,
 	return 0;
 }
 
-static int rtw_cfg80211_set_wpa_version(struct security_priv *psecuritypriv, u32 wpa_version)
+static int rtw_cfg80211_set_wpa_version(struct security_priv *psecuritypriv,
+					u32 wpa_version)
 {
 	if (!wpa_version) {
 		psecuritypriv->ndisauthtype = Ndis802_11AuthModeOpen;
@@ -1334,7 +1520,8 @@ static int rtw_cfg80211_set_auth_type(struct security_priv *psecuritypriv,
 		psecuritypriv->dot11AuthAlgrthm = dot11AuthAlgrthm_Open;
 
 		if (psecuritypriv->ndisauthtype > Ndis802_11AuthModeWPA)
-			psecuritypriv->dot11AuthAlgrthm = dot11AuthAlgrthm_8021X;
+			psecuritypriv->dot11AuthAlgrthm =
+				dot11AuthAlgrthm_8021X;
 
 		break;
 	case NL80211_AUTHTYPE_SHARED_KEY:
@@ -1352,12 +1539,13 @@ static int rtw_cfg80211_set_auth_type(struct security_priv *psecuritypriv,
 	return 0;
 }
 
-static int rtw_cfg80211_set_cipher(struct security_priv *psecuritypriv, u32 cipher, bool ucast)
+static int rtw_cfg80211_set_cipher(struct security_priv *psecuritypriv,
+				   u32 cipher, bool ucast)
 {
 	u32 ndisencryptstatus = Ndis802_11EncryptionDisabled;
 
 	u32 *profile_cipher = ucast ? &psecuritypriv->dot11PrivacyAlgrthm :
-		&psecuritypriv->dot118021XGrpPrivacy;
+				      &psecuritypriv->dot118021XGrpPrivacy;
 
 	if (!cipher) {
 		*profile_cipher = _NO_PRIVACY_;
@@ -1400,7 +1588,8 @@ static int rtw_cfg80211_set_cipher(struct security_priv *psecuritypriv, u32 ciph
 	return 0;
 }
 
-static int rtw_cfg80211_set_key_mgt(struct security_priv *psecuritypriv, u32 key_mgt)
+static int rtw_cfg80211_set_key_mgt(struct security_priv *psecuritypriv,
+				    u32 key_mgt)
 {
 	if (key_mgt == WLAN_AKM_SUITE_8021X)
 		/* auth_type = UMAC_AUTH_TYPE_8021X; */
@@ -1412,7 +1601,8 @@ static int rtw_cfg80211_set_key_mgt(struct security_priv *psecuritypriv, u32 key
 	return 0;
 }
 
-static int rtw_cfg80211_set_wpa_ie(struct adapter *padapter, u8 *pie, size_t ielen)
+static int rtw_cfg80211_set_wpa_ie(struct adapter *padapter, u8 *pie,
+				   size_t ielen)
 {
 	u8 *buf = NULL;
 	int group_cipher = 0, pairwise_cipher = 0;
@@ -1420,7 +1610,7 @@ static int rtw_cfg80211_set_wpa_ie(struct adapter *padapter, u8 *pie, size_t iel
 	int wpa_ielen = 0;
 	int wpa2_ielen = 0;
 	u8 *pwpa, *pwpa2;
-	u8 null_addr[] = {0, 0, 0, 0, 0, 0};
+	u8 null_addr[] = { 0, 0, 0, 0, 0, 0 };
 
 	if (!pie || !ielen) {
 		/* Treat this as normal case, but need to clear WIFI_UNDER_WPS */
@@ -1435,38 +1625,48 @@ static int rtw_cfg80211_set_wpa_ie(struct adapter *padapter, u8 *pie, size_t iel
 
 	buf = kmemdup(pie, ielen, GFP_KERNEL);
 	if (!buf) {
-		ret =  -ENOMEM;
+		ret = -ENOMEM;
 		goto exit;
 	}
 
 	if (ielen < RSN_HEADER_LEN) {
-		ret  = -1;
+		ret = -1;
 		goto exit;
 	}
 
 	pwpa = rtw_get_wpa_ie(buf, &wpa_ielen, ielen);
 	if (pwpa && wpa_ielen > 0) {
-		if (wpa_ielen + 2 > sizeof(padapter->securitypriv.supplicant_ie)) {
+		if (wpa_ielen + 2 >
+		    sizeof(padapter->securitypriv.supplicant_ie)) {
 			ret = -EINVAL;
 			goto exit;
 		}
-		if (rtw_parse_wpa_ie(pwpa, wpa_ielen + 2, &group_cipher, &pairwise_cipher, NULL) == _SUCCESS) {
-			padapter->securitypriv.dot11AuthAlgrthm = dot11AuthAlgrthm_8021X;
-			padapter->securitypriv.ndisauthtype = Ndis802_11AuthModeWPAPSK;
-			memcpy(padapter->securitypriv.supplicant_ie, &pwpa[0], wpa_ielen + 2);
+		if (rtw_parse_wpa_ie(pwpa, wpa_ielen + 2, &group_cipher,
+				     &pairwise_cipher, NULL) == _SUCCESS) {
+			padapter->securitypriv.dot11AuthAlgrthm =
+				dot11AuthAlgrthm_8021X;
+			padapter->securitypriv.ndisauthtype =
+				Ndis802_11AuthModeWPAPSK;
+			memcpy(padapter->securitypriv.supplicant_ie, &pwpa[0],
+			       wpa_ielen + 2);
 		}
 	}
 
 	pwpa2 = rtw_get_wpa2_ie(buf, &wpa2_ielen, ielen);
 	if (pwpa2 && wpa2_ielen > 0) {
-		if (wpa2_ielen + 2 > sizeof(padapter->securitypriv.supplicant_ie)) {
+		if (wpa2_ielen + 2 >
+		    sizeof(padapter->securitypriv.supplicant_ie)) {
 			ret = -EINVAL;
 			goto exit;
 		}
-		if (rtw_parse_wpa2_ie(pwpa2, wpa2_ielen + 2, &group_cipher, &pairwise_cipher, NULL) == _SUCCESS) {
-			padapter->securitypriv.dot11AuthAlgrthm = dot11AuthAlgrthm_8021X;
-			padapter->securitypriv.ndisauthtype = Ndis802_11AuthModeWPA2PSK;
-			memcpy(padapter->securitypriv.supplicant_ie, &pwpa2[0], wpa2_ielen + 2);
+		if (rtw_parse_wpa2_ie(pwpa2, wpa2_ielen + 2, &group_cipher,
+				      &pairwise_cipher, NULL) == _SUCCESS) {
+			padapter->securitypriv.dot11AuthAlgrthm =
+				dot11AuthAlgrthm_8021X;
+			padapter->securitypriv.ndisauthtype =
+				Ndis802_11AuthModeWPA2PSK;
+			memcpy(padapter->securitypriv.supplicant_ie, &pwpa2[0],
+			       wpa2_ielen + 2);
 		}
 	}
 
@@ -1479,57 +1679,69 @@ static int rtw_cfg80211_set_wpa_ie(struct adapter *padapter, u8 *pie, size_t iel
 	switch (group_cipher) {
 	case WPA_CIPHER_NONE:
 		padapter->securitypriv.dot118021XGrpPrivacy = _NO_PRIVACY_;
-		padapter->securitypriv.ndisencryptstatus = Ndis802_11EncryptionDisabled;
+		padapter->securitypriv.ndisencryptstatus =
+			Ndis802_11EncryptionDisabled;
 		break;
 	case WPA_CIPHER_WEP40:
 		padapter->securitypriv.dot118021XGrpPrivacy = _WEP40_;
-		padapter->securitypriv.ndisencryptstatus = Ndis802_11Encryption1Enabled;
+		padapter->securitypriv.ndisencryptstatus =
+			Ndis802_11Encryption1Enabled;
 		break;
 	case WPA_CIPHER_TKIP:
 		padapter->securitypriv.dot118021XGrpPrivacy = _TKIP_;
-		padapter->securitypriv.ndisencryptstatus = Ndis802_11Encryption2Enabled;
+		padapter->securitypriv.ndisencryptstatus =
+			Ndis802_11Encryption2Enabled;
 		break;
 	case WPA_CIPHER_CCMP:
 		padapter->securitypriv.dot118021XGrpPrivacy = _AES_;
-		padapter->securitypriv.ndisencryptstatus = Ndis802_11Encryption3Enabled;
+		padapter->securitypriv.ndisencryptstatus =
+			Ndis802_11Encryption3Enabled;
 		break;
 	case WPA_CIPHER_WEP104:
 		padapter->securitypriv.dot118021XGrpPrivacy = _WEP104_;
-		padapter->securitypriv.ndisencryptstatus = Ndis802_11Encryption1Enabled;
+		padapter->securitypriv.ndisencryptstatus =
+			Ndis802_11Encryption1Enabled;
 		break;
 	}
 
 	switch (pairwise_cipher) {
 	case WPA_CIPHER_NONE:
 		padapter->securitypriv.dot11PrivacyAlgrthm = _NO_PRIVACY_;
-		padapter->securitypriv.ndisencryptstatus = Ndis802_11EncryptionDisabled;
+		padapter->securitypriv.ndisencryptstatus =
+			Ndis802_11EncryptionDisabled;
 		break;
 	case WPA_CIPHER_WEP40:
 		padapter->securitypriv.dot11PrivacyAlgrthm = _WEP40_;
-		padapter->securitypriv.ndisencryptstatus = Ndis802_11Encryption1Enabled;
+		padapter->securitypriv.ndisencryptstatus =
+			Ndis802_11Encryption1Enabled;
 		break;
 	case WPA_CIPHER_TKIP:
 		padapter->securitypriv.dot11PrivacyAlgrthm = _TKIP_;
-		padapter->securitypriv.ndisencryptstatus = Ndis802_11Encryption2Enabled;
+		padapter->securitypriv.ndisencryptstatus =
+			Ndis802_11Encryption2Enabled;
 		break;
 	case WPA_CIPHER_CCMP:
 		padapter->securitypriv.dot11PrivacyAlgrthm = _AES_;
-		padapter->securitypriv.ndisencryptstatus = Ndis802_11Encryption3Enabled;
+		padapter->securitypriv.ndisencryptstatus =
+			Ndis802_11Encryption3Enabled;
 		break;
 	case WPA_CIPHER_WEP104:
 		padapter->securitypriv.dot11PrivacyAlgrthm = _WEP104_;
-		padapter->securitypriv.ndisencryptstatus = Ndis802_11Encryption1Enabled;
+		padapter->securitypriv.ndisencryptstatus =
+			Ndis802_11Encryption1Enabled;
 		break;
 	}
 
-	{/* handle wps_ie */
+	{ /* handle wps_ie */
 		uint wps_ielen;
 		u8 *wps_ie;
 
 		wps_ie = rtw_get_wps_ie(buf, ielen, NULL, &wps_ielen);
 		if (wps_ie && wps_ielen > 0) {
-			padapter->securitypriv.wps_ie_len = min_t(uint, wps_ielen, MAX_WPS_IE_LEN);
-			memcpy(padapter->securitypriv.wps_ie, wps_ie, padapter->securitypriv.wps_ie_len);
+			padapter->securitypriv.wps_ie_len =
+				min_t(uint, wps_ielen, MAX_WPS_IE_LEN);
+			memcpy(padapter->securitypriv.wps_ie, wps_ie,
+			       padapter->securitypriv.wps_ie_len);
 			set_fwstate(&padapter->mlmepriv, WIFI_UNDER_WPS);
 		} else {
 			_clr_fwstate_(&padapter->mlmepriv, WIFI_UNDER_WPS);
@@ -1537,9 +1749,9 @@ static int rtw_cfg80211_set_wpa_ie(struct adapter *padapter, u8 *pie, size_t iel
 	}
 
 	/* TKIP and AES disallow multicast packets until installing group key */
-	if (padapter->securitypriv.dot11PrivacyAlgrthm == _TKIP_
-		|| padapter->securitypriv.dot11PrivacyAlgrthm == _TKIP_WTMIC_
-		|| padapter->securitypriv.dot11PrivacyAlgrthm == _AES_)
+	if (padapter->securitypriv.dot11PrivacyAlgrthm == _TKIP_ ||
+	    padapter->securitypriv.dot11PrivacyAlgrthm == _TKIP_WTMIC_ ||
+	    padapter->securitypriv.dot11PrivacyAlgrthm == _AES_)
 		/* WPS open need to enable multicast */
 		/*  check_fwstate(&padapter->mlmepriv, WIFI_UNDER_WPS) == true) */
 		rtw_hal_set_hwreg(padapter, HW_VAR_OFF_RCR_AM, null_addr);
@@ -1587,11 +1799,14 @@ static int cfg80211_rtw_join_ibss(struct wiphy *wiphy, struct net_device *ndev,
 	psecuritypriv->ndisencryptstatus = Ndis802_11EncryptionDisabled;
 	psecuritypriv->dot11PrivacyAlgrthm = _NO_PRIVACY_;
 	psecuritypriv->dot118021XGrpPrivacy = _NO_PRIVACY_;
-	psecuritypriv->dot11AuthAlgrthm = dot11AuthAlgrthm_Open; /* open system */
+	psecuritypriv->dot11AuthAlgrthm =
+		dot11AuthAlgrthm_Open; /* open system */
 	psecuritypriv->ndisauthtype = Ndis802_11AuthModeOpen;
 
-	ret = rtw_cfg80211_set_auth_type(psecuritypriv, NL80211_AUTHTYPE_OPEN_SYSTEM);
-	rtw_set_802_11_authentication_mode(padapter, psecuritypriv->ndisauthtype);
+	ret = rtw_cfg80211_set_auth_type(psecuritypriv,
+					 NL80211_AUTHTYPE_OPEN_SYSTEM);
+	rtw_set_802_11_authentication_mode(padapter,
+					   psecuritypriv->ndisauthtype);
 
 	if (!rtw_set_802_11_ssid(padapter, &ndis_ssid)) {
 		ret = -1;
@@ -1619,7 +1834,8 @@ static int cfg80211_rtw_leave_ibss(struct wiphy *wiphy, struct net_device *ndev)
 
 		rtw_wdev->iftype = NL80211_IFTYPE_STATION;
 
-		if (!rtw_set_802_11_infrastructure_mode(padapter, Ndis802_11Infrastructure)) {
+		if (!rtw_set_802_11_infrastructure_mode(
+			    padapter, Ndis802_11Infrastructure)) {
 			rtw_wdev->iftype = old_type;
 			ret = -EPERM;
 			goto leave_ibss;
@@ -1683,10 +1899,12 @@ static int cfg80211_rtw_connect(struct wiphy *wiphy, struct net_device *ndev,
 	psecuritypriv->ndisencryptstatus = Ndis802_11EncryptionDisabled;
 	psecuritypriv->dot11PrivacyAlgrthm = _NO_PRIVACY_;
 	psecuritypriv->dot118021XGrpPrivacy = _NO_PRIVACY_;
-	psecuritypriv->dot11AuthAlgrthm = dot11AuthAlgrthm_Open; /* open system */
+	psecuritypriv->dot11AuthAlgrthm =
+		dot11AuthAlgrthm_Open; /* open system */
 	psecuritypriv->ndisauthtype = Ndis802_11AuthModeOpen;
 
-	ret = rtw_cfg80211_set_wpa_version(psecuritypriv, sme->crypto.wpa_versions);
+	ret = rtw_cfg80211_set_wpa_version(psecuritypriv,
+					   sme->crypto.wpa_versions);
 	if (ret < 0)
 		goto exit;
 
@@ -1700,16 +1918,18 @@ static int cfg80211_rtw_connect(struct wiphy *wiphy, struct net_device *ndev,
 		goto exit;
 
 	if (sme->crypto.n_ciphers_pairwise) {
-		ret = rtw_cfg80211_set_cipher(psecuritypriv, sme->crypto.ciphers_pairwise[0], true);
+		ret = rtw_cfg80211_set_cipher(
+			psecuritypriv, sme->crypto.ciphers_pairwise[0], true);
 		if (ret < 0)
 			goto exit;
 	}
 
 	/* For WEP Shared auth */
 	if ((psecuritypriv->dot11AuthAlgrthm == dot11AuthAlgrthm_Shared ||
-	     psecuritypriv->dot11AuthAlgrthm == dot11AuthAlgrthm_Auto) && sme->key) {
+	     psecuritypriv->dot11AuthAlgrthm == dot11AuthAlgrthm_Auto) &&
+	    sme->key) {
 		u32 wep_key_idx, wep_key_len, wep_total_len;
-		struct ndis_802_11_wep	 *pwep = NULL;
+		struct ndis_802_11_wep *pwep = NULL;
 
 		wep_key_idx = sme->key_idx;
 		wep_key_len = sme->key_len;
@@ -1721,7 +1941,8 @@ static int cfg80211_rtw_connect(struct wiphy *wiphy, struct net_device *ndev,
 
 		if (wep_key_len > 0) {
 			wep_key_len = wep_key_len <= 5 ? 5 : 13;
-			wep_total_len = wep_key_len +
+			wep_total_len =
+				wep_key_len +
 				offsetof(struct ndis_802_11_wep, key_material);
 			pwep = kzalloc(wep_total_len, GFP_KERNEL);
 			if (!pwep) {
@@ -1733,8 +1954,10 @@ static int cfg80211_rtw_connect(struct wiphy *wiphy, struct net_device *ndev,
 			pwep->length = wep_total_len;
 
 			if (wep_key_len == 13) {
-				padapter->securitypriv.dot11PrivacyAlgrthm = _WEP104_;
-				padapter->securitypriv.dot118021XGrpPrivacy = _WEP104_;
+				padapter->securitypriv.dot11PrivacyAlgrthm =
+					_WEP104_;
+				padapter->securitypriv.dot118021XGrpPrivacy =
+					_WEP104_;
 			}
 		} else {
 			ret = -EINVAL;
@@ -1755,12 +1978,14 @@ static int cfg80211_rtw_connect(struct wiphy *wiphy, struct net_device *ndev,
 			goto exit;
 	}
 
-	ret = rtw_cfg80211_set_cipher(psecuritypriv, sme->crypto.cipher_group, false);
+	ret = rtw_cfg80211_set_cipher(psecuritypriv, sme->crypto.cipher_group,
+				      false);
 	if (ret < 0)
 		return ret;
 
 	if (sme->crypto.n_akm_suites) {
-		ret = rtw_cfg80211_set_key_mgt(psecuritypriv, sme->crypto.akm_suites[0]);
+		ret = rtw_cfg80211_set_key_mgt(psecuritypriv,
+					       sme->crypto.akm_suites[0]);
 		if (ret < 0)
 			goto exit;
 	}
@@ -1811,8 +2036,7 @@ static int cfg80211_rtw_set_txpower(struct wiphy *wiphy,
 }
 
 static int cfg80211_rtw_get_txpower(struct wiphy *wiphy,
-				    struct wireless_dev *wdev,
-				    int radio_idx,
+				    struct wireless_dev *wdev, int radio_idx,
 				    unsigned int link_id, int *dbm)
 {
 	*dbm = (12);
@@ -1828,8 +2052,8 @@ inline bool rtw_cfg80211_pwr_mgmt(struct adapter *adapter)
 }
 
 static int cfg80211_rtw_set_power_mgmt(struct wiphy *wiphy,
-				       struct net_device *ndev,
-				       bool enabled, int timeout)
+				       struct net_device *ndev, bool enabled,
+				       int timeout)
 {
 	struct adapter *padapter = rtw_netdev_priv(ndev);
 	struct rtw_wdev_priv *rtw_wdev_priv = adapter_wdev_data(padapter);
@@ -1842,8 +2066,7 @@ static int cfg80211_rtw_set_power_mgmt(struct wiphy *wiphy,
 	return 0;
 }
 
-static int cfg80211_rtw_set_pmksa(struct wiphy *wiphy,
-				  struct net_device *ndev,
+static int cfg80211_rtw_set_pmksa(struct wiphy *wiphy, struct net_device *ndev,
 				  struct cfg80211_pmksa *pmksa)
 {
 	u8 index, blInserted = false;
@@ -1856,9 +2079,11 @@ static int cfg80211_rtw_set_pmksa(struct wiphy *wiphy,
 	blInserted = false;
 
 	/* overwrite PMKID */
-	for (index = 0 ; index < NUM_PMKID_CACHE; index++) {
-		if (!memcmp(psecuritypriv->PMKIDList[index].Bssid, (u8 *)pmksa->bssid, ETH_ALEN)) {
-			memcpy(psecuritypriv->PMKIDList[index].PMKID, (u8 *)pmksa->pmkid, WLAN_PMKID_LEN);
+	for (index = 0; index < NUM_PMKID_CACHE; index++) {
+		if (!memcmp(psecuritypriv->PMKIDList[index].Bssid,
+			    (u8 *)pmksa->bssid, ETH_ALEN)) {
+			memcpy(psecuritypriv->PMKIDList[index].PMKID,
+			       (u8 *)pmksa->pmkid, WLAN_PMKID_LEN);
 			psecuritypriv->PMKIDList[index].bUsed = true;
 			psecuritypriv->PMKIDIndex = index + 1;
 			blInserted = true;
@@ -1867,10 +2092,13 @@ static int cfg80211_rtw_set_pmksa(struct wiphy *wiphy,
 	}
 
 	if (!blInserted) {
-		memcpy(psecuritypriv->PMKIDList[psecuritypriv->PMKIDIndex].Bssid, (u8 *)pmksa->bssid, ETH_ALEN);
-		memcpy(psecuritypriv->PMKIDList[psecuritypriv->PMKIDIndex].PMKID, (u8 *)pmksa->pmkid, WLAN_PMKID_LEN);
+		memcpy(psecuritypriv->PMKIDList[psecuritypriv->PMKIDIndex].Bssid,
+		       (u8 *)pmksa->bssid, ETH_ALEN);
+		memcpy(psecuritypriv->PMKIDList[psecuritypriv->PMKIDIndex].PMKID,
+		       (u8 *)pmksa->pmkid, WLAN_PMKID_LEN);
 
-		psecuritypriv->PMKIDList[psecuritypriv->PMKIDIndex].bUsed = true;
+		psecuritypriv->PMKIDList[psecuritypriv->PMKIDIndex].bUsed =
+			true;
 		psecuritypriv->PMKIDIndex++;
 		if (psecuritypriv->PMKIDIndex == 16)
 			psecuritypriv->PMKIDIndex = 0;
@@ -1879,22 +2107,23 @@ static int cfg80211_rtw_set_pmksa(struct wiphy *wiphy,
 	return 0;
 }
 
-static int cfg80211_rtw_del_pmksa(struct wiphy *wiphy,
-				  struct net_device *ndev,
+static int cfg80211_rtw_del_pmksa(struct wiphy *wiphy, struct net_device *ndev,
 				  struct cfg80211_pmksa *pmksa)
 {
 	u8 index, bMatched = false;
 	struct adapter *padapter = rtw_netdev_priv(ndev);
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 
-	for (index = 0 ; index < NUM_PMKID_CACHE; index++) {
-		if (!memcmp(psecuritypriv->PMKIDList[index].Bssid, (u8 *)pmksa->bssid, ETH_ALEN)) {
+	for (index = 0; index < NUM_PMKID_CACHE; index++) {
+		if (!memcmp(psecuritypriv->PMKIDList[index].Bssid,
+			    (u8 *)pmksa->bssid, ETH_ALEN)) {
 			/*
 			 * BSSID is matched, the same AP => Remove this PMKID information
 			 * and reset it.
 			 */
 			eth_zero_addr(psecuritypriv->PMKIDList[index].Bssid);
-			memset(psecuritypriv->PMKIDList[index].PMKID, 0x00, WLAN_PMKID_LEN);
+			memset(psecuritypriv->PMKIDList[index].PMKID, 0x00,
+			       WLAN_PMKID_LEN);
 			psecuritypriv->PMKIDList[index].bUsed = false;
 			bMatched = true;
 			break;
@@ -1913,13 +2142,15 @@ static int cfg80211_rtw_flush_pmksa(struct wiphy *wiphy,
 	struct adapter *padapter = rtw_netdev_priv(ndev);
 	struct security_priv *psecuritypriv = &padapter->securitypriv;
 
-	memset(&psecuritypriv->PMKIDList[0], 0x00, sizeof(struct rt_pmkid_list) * NUM_PMKID_CACHE);
+	memset(&psecuritypriv->PMKIDList[0], 0x00,
+	       sizeof(struct rt_pmkid_list) * NUM_PMKID_CACHE);
 	psecuritypriv->PMKIDIndex = 0;
 
 	return 0;
 }
 
-void rtw_cfg80211_indicate_sta_assoc(struct adapter *padapter, u8 *pmgmt_frame, uint frame_len)
+void rtw_cfg80211_indicate_sta_assoc(struct adapter *padapter, u8 *pmgmt_frame,
+				     uint frame_len)
 {
 	struct wireless_dev *wdev = padapter->rtw_wdev;
 
@@ -1934,12 +2165,16 @@ void rtw_cfg80211_indicate_sta_assoc(struct adapter *padapter, u8 *pmgmt_frame,
 
 		sinfo.filled = 0;
 		sinfo.assoc_req_ies = pmgmt_frame + WLAN_HDR_A3_LEN + ie_offset;
-		sinfo.assoc_req_ies_len = frame_len - WLAN_HDR_A3_LEN - ie_offset;
-		cfg80211_new_sta(wdev, GetAddr2Ptr(pmgmt_frame), &sinfo, GFP_ATOMIC);
+		sinfo.assoc_req_ies_len =
+			frame_len - WLAN_HDR_A3_LEN - ie_offset;
+		cfg80211_new_sta(wdev, GetAddr2Ptr(pmgmt_frame), &sinfo,
+				 GFP_ATOMIC);
 	}
 }
 
-void rtw_cfg80211_indicate_sta_disassoc(struct adapter *padapter, unsigned char *da, unsigned short reason)
+void rtw_cfg80211_indicate_sta_disassoc(struct adapter *padapter,
+					unsigned char *da,
+					unsigned short reason)
 {
 	struct wireless_dev *wdev = padapter->rtw_wdev;
 
@@ -1968,7 +2203,8 @@ static u8 rtw_get_chan_type(struct adapter *adapter)
 	return NL80211_CHAN_HT20;
 }
 
-static int cfg80211_rtw_get_channel(struct wiphy *wiphy, struct wireless_dev *wdev,
+static int cfg80211_rtw_get_channel(struct wiphy *wiphy,
+				    struct wireless_dev *wdev,
 				    unsigned int link_id,
 				    struct cfg80211_chan_def *chandef)
 {
@@ -2000,7 +2236,8 @@ static int cfg80211_rtw_get_channel(struct wiphy *wiphy, struct wireless_dev *wd
 	return 0;
 }
 
-static netdev_tx_t rtw_cfg80211_monitor_if_xmit_entry(struct sk_buff *skb, struct net_device *ndev)
+static netdev_tx_t rtw_cfg80211_monitor_if_xmit_entry(struct sk_buff *skb,
+						      struct net_device *ndev)
 {
 	int rtap_len;
 	int qos_len = 0;
@@ -2052,20 +2289,23 @@ static netdev_tx_t rtw_cfg80211_monitor_if_xmit_entry(struct sk_buff *skb, struc
 		/* Skip the 802.11 header, QoS (if any) and SNAP, but leave spaces for
 		 * two MAC addresses
 		 */
-		skb_pull(skb, dot11_hdr_len + qos_len + snap_len - sizeof(src_mac_addr) * 2);
+		skb_pull(skb, dot11_hdr_len + qos_len + snap_len -
+				      sizeof(src_mac_addr) * 2);
 		pdata = (unsigned char *)skb->data;
 		memcpy(pdata, dst_mac_addr, sizeof(dst_mac_addr));
-		memcpy(pdata + sizeof(dst_mac_addr), src_mac_addr, sizeof(src_mac_addr));
+		memcpy(pdata + sizeof(dst_mac_addr), src_mac_addr,
+		       sizeof(src_mac_addr));
 
 		/* Use the real net device to transmit the packet */
 		_rtw_xmit_entry(skb, padapter->pnetdev);
 		return NETDEV_TX_OK;
 
-	} else if ((frame_control & (IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
+	} else if ((frame_control &
+		    (IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
 		   (IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_ACTION)) {
 		/* only for action frames */
-		struct xmit_frame		*pmgntframe;
-		struct pkt_attrib	*pattrib;
+		struct xmit_frame *pmgntframe;
+		struct pkt_attrib *pattrib;
 		unsigned char *pframe;
 		/* u8 category, action, OUI_Subtype, dialogToken = 0; */
 		/* unsigned char *frame_body; */
@@ -2118,7 +2358,8 @@ static const struct net_device_ops rtw_cfg80211_monitor_if_ops = {
 	.ndo_start_xmit = rtw_cfg80211_monitor_if_xmit_entry,
 };
 
-static int rtw_cfg80211_add_monitor_if(struct adapter *padapter, char *name, struct net_device **ndev)
+static int rtw_cfg80211_add_monitor_if(struct adapter *padapter, char *name,
+				       struct net_device **ndev)
 {
 	int ret = 0;
 	struct net_device *mon_ndev = NULL;
@@ -2186,12 +2427,9 @@ static int rtw_cfg80211_add_monitor_if(struct adapter *padapter, char *name, str
 	return ret;
 }
 
-static struct wireless_dev *
-	cfg80211_rtw_add_virtual_intf(
-		struct wiphy *wiphy,
-		const char *name,
-		unsigned char name_assign_type,
-		enum nl80211_iftype type, struct vif_params *params)
+static struct wireless_dev *cfg80211_rtw_add_virtual_intf(
+	struct wiphy *wiphy, const char *name, unsigned char name_assign_type,
+	enum nl80211_iftype type, struct vif_params *params)
 {
 	int ret = 0;
 	struct net_device *ndev = NULL;
@@ -2205,7 +2443,8 @@ static struct wireless_dev *
 		ret = -ENODEV;
 		break;
 	case NL80211_IFTYPE_MONITOR:
-		ret = rtw_cfg80211_add_monitor_if(padapter, (char *)name, &ndev);
+		ret = rtw_cfg80211_add_monitor_if(padapter, (char *)name,
+						  &ndev);
 		break;
 	case NL80211_IFTYPE_P2P_CLIENT:
 	case NL80211_IFTYPE_STATION:
@@ -2224,8 +2463,7 @@ static struct wireless_dev *
 }
 
 static int cfg80211_rtw_del_virtual_intf(struct wiphy *wiphy,
-					 struct wireless_dev *wdev
-)
+					 struct wireless_dev *wdev)
 {
 	struct net_device *ndev = wdev_to_ndev(wdev);
 	int ret = 0;
@@ -2251,7 +2489,8 @@ static int cfg80211_rtw_del_virtual_intf(struct wiphy *wiphy,
 	return ret;
 }
 
-static int rtw_add_beacon(struct adapter *adapter, const u8 *head, size_t head_len, const u8 *tail, size_t tail_len)
+static int rtw_add_beacon(struct adapter *adapter, const u8 *head,
+			  size_t head_len, const u8 *tail, size_t tail_len)
 {
 	int ret = 0;
 	u8 *pbuf = NULL;
@@ -2268,19 +2507,22 @@ static int rtw_add_beacon(struct adapter *adapter, const u8 *head, size_t head_l
 	if (!pbuf)
 		return -ENOMEM;
 
-	memcpy(pbuf, head + 24, head_len - 24);/*  24 =beacon header len. */
+	memcpy(pbuf, head + 24, head_len - 24); /*  24 =beacon header len. */
 	memcpy(pbuf + head_len - 24, tail, tail_len);
 
 	len = head_len + tail_len - 24;
 
 	/* check wps ie if inclued */
-	rtw_get_wps_ie(pbuf + _FIXED_IE_LENGTH_, len - _FIXED_IE_LENGTH_, NULL, &wps_ielen);
+	rtw_get_wps_ie(pbuf + _FIXED_IE_LENGTH_, len - _FIXED_IE_LENGTH_, NULL,
+		       &wps_ielen);
 
 	/* pbss_network->ies will not include p2p_ie, wfd ie */
-	rtw_ies_remove_ie(pbuf, &len, _BEACON_IE_OFFSET_, WLAN_EID_VENDOR_SPECIFIC, P2P_OUI, 4);
-	rtw_ies_remove_ie(pbuf, &len, _BEACON_IE_OFFSET_, WLAN_EID_VENDOR_SPECIFIC, WFD_OUI, 4);
+	rtw_ies_remove_ie(pbuf, &len, _BEACON_IE_OFFSET_,
+			  WLAN_EID_VENDOR_SPECIFIC, P2P_OUI, 4);
+	rtw_ies_remove_ie(pbuf, &len, _BEACON_IE_OFFSET_,
+			  WLAN_EID_VENDOR_SPECIFIC, WFD_OUI, 4);
 
-	if (rtw_check_beacon_data(adapter, pbuf,  len) == _SUCCESS)
+	if (rtw_check_beacon_data(adapter, pbuf, len) == _SUCCESS)
 		ret = 0;
 	else
 		ret = -EINVAL;
@@ -2300,29 +2542,34 @@ static int cfg80211_rtw_start_ap(struct wiphy *wiphy, struct net_device *ndev,
 			     settings->beacon.head_len, settings->beacon.tail,
 			     settings->beacon.tail_len);
 
-	adapter->mlmeextpriv.mlmext_info.hidden_ssid_mode = settings->hidden_ssid;
+	adapter->mlmeextpriv.mlmext_info.hidden_ssid_mode =
+		settings->hidden_ssid;
 
 	if (settings->ssid && settings->ssid_len) {
-		struct wlan_bssid_ex *pbss_network = &adapter->mlmepriv.cur_network.network;
-		struct wlan_bssid_ex *pbss_network_ext = &adapter->mlmeextpriv.mlmext_info.network;
+		struct wlan_bssid_ex *pbss_network =
+			&adapter->mlmepriv.cur_network.network;
+		struct wlan_bssid_ex *pbss_network_ext =
+			&adapter->mlmeextpriv.mlmext_info.network;
 
-		memcpy(pbss_network->ssid.ssid, settings->ssid, settings->ssid_len);
+		memcpy(pbss_network->ssid.ssid, settings->ssid,
+		       settings->ssid_len);
 		pbss_network->ssid.ssid_length = settings->ssid_len;
-		memcpy(pbss_network_ext->ssid.ssid, settings->ssid, settings->ssid_len);
+		memcpy(pbss_network_ext->ssid.ssid, settings->ssid,
+		       settings->ssid_len);
 		pbss_network_ext->ssid.ssid_length = settings->ssid_len;
 	}
 
 	return ret;
 }
 
-static int cfg80211_rtw_change_beacon(struct wiphy *wiphy, struct net_device *ndev,
-		struct cfg80211_ap_update *info)
+static int cfg80211_rtw_change_beacon(struct wiphy *wiphy,
+				      struct net_device *ndev,
+				      struct cfg80211_ap_update *info)
 {
 	struct adapter *adapter = rtw_netdev_priv(ndev);
 
-	return rtw_add_beacon(adapter, info->beacon.head,
-			      info->beacon.head_len, info->beacon.tail,
-			      info->beacon.tail_len);
+	return rtw_add_beacon(adapter, info->beacon.head, info->beacon.head_len,
+			      info->beacon.tail, info->beacon.tail_len);
 }
 
 static int cfg80211_rtw_stop_ap(struct wiphy *wiphy, struct net_device *ndev,
@@ -2331,10 +2578,9 @@ static int cfg80211_rtw_stop_ap(struct wiphy *wiphy, struct net_device *ndev,
 	return 0;
 }
 
-static int	cfg80211_rtw_add_station(struct wiphy *wiphy,
-					 struct wireless_dev *wdev,
-					 const u8 *mac,
-					 struct station_parameters *params)
+static int cfg80211_rtw_add_station(struct wiphy *wiphy,
+				    struct wireless_dev *wdev, const u8 *mac,
+				    struct station_parameters *params)
 {
 	return 0;
 }
@@ -2356,16 +2602,15 @@ static int cfg80211_rtw_del_station(struct wiphy *wiphy,
 		return -EINVAL;
 
 	if (!mac) {
-		flush_all_cam_entry(padapter);	/* clear CAM */
+		flush_all_cam_entry(padapter); /* clear CAM */
 
 		rtw_sta_flush(padapter);
 
 		return 0;
 	}
 
-	if (mac[0] == 0xff && mac[1] == 0xff &&
-	    mac[2] == 0xff && mac[3] == 0xff &&
-	    mac[4] == 0xff && mac[5] == 0xff) {
+	if (mac[0] == 0xff && mac[1] == 0xff && mac[2] == 0xff &&
+	    mac[3] == 0xff && mac[4] == 0xff && mac[5] == 0xff) {
 		return -EINVAL;
 	}
 
@@ -2377,11 +2622,14 @@ static int cfg80211_rtw_del_station(struct wiphy *wiphy,
 		psta = list_entry(plist, struct sta_info, asoc_list);
 
 		if (!memcmp((u8 *)mac, psta->hwaddr, ETH_ALEN)) {
-			if (psta->dot8021xalg != 1 || psta->bpairwise_key_installed) {
+			if (psta->dot8021xalg != 1 ||
+			    psta->bpairwise_key_installed) {
 				list_del_init(&psta->asoc_list);
 				pstapriv->asoc_list_cnt--;
 
-				updated = ap_free_sta(padapter, psta, true, WLAN_REASON_DEAUTH_LEAVING);
+				updated =
+					ap_free_sta(padapter, psta, true,
+						    WLAN_REASON_DEAUTH_LEAVING);
 
 				psta = NULL;
 
@@ -2398,17 +2646,17 @@ static int cfg80211_rtw_del_station(struct wiphy *wiphy,
 }
 
 static int cfg80211_rtw_change_station(struct wiphy *wiphy,
-				       struct wireless_dev *wdev,
-				       const u8 *mac,
+				       struct wireless_dev *wdev, const u8 *mac,
 				       struct station_parameters *params)
 {
 	return 0;
 }
 
-static struct sta_info *rtw_sta_info_get_by_idx(const int idx, struct sta_priv *pstapriv)
+static struct sta_info *rtw_sta_info_get_by_idx(const int idx,
+						struct sta_priv *pstapriv)
 
 {
-	struct list_head	*phead, *plist;
+	struct list_head *phead, *plist;
 	struct sta_info *psta = NULL;
 	int i = 0;
 
@@ -2425,10 +2673,9 @@ static struct sta_info *rtw_sta_info_get_by_idx(const int idx, struct sta_priv *
 	return psta;
 }
 
-static int	cfg80211_rtw_dump_station(struct wiphy *wiphy,
-					 struct wireless_dev *wdev,
-					  int idx, u8 *mac,
-					  struct station_info *sinfo)
+static int cfg80211_rtw_dump_station(struct wiphy *wiphy,
+				     struct wireless_dev *wdev, int idx,
+				     u8 *mac, struct station_info *sinfo)
 {
 	int ret = 0;
 	struct adapter *padapter = rtw_netdev_priv(wdev_to_ndev(wdev));
@@ -2450,7 +2697,8 @@ static int	cfg80211_rtw_dump_station(struct wiphy *wiphy,
 	return ret;
 }
 
-void rtw_cfg80211_rx_action(struct adapter *adapter, u8 *frame, uint frame_len, const char *msg)
+void rtw_cfg80211_rx_action(struct adapter *adapter, u8 *frame, uint frame_len,
+			    const char *msg)
 {
 	s32 freq;
 	int channel;
@@ -2465,10 +2713,11 @@ void rtw_cfg80211_rx_action(struct adapter *adapter, u8 *frame, uint frame_len,
 	rtw_cfg80211_rx_mgmt(adapter, freq, 0, frame, frame_len, GFP_ATOMIC);
 }
 
-static int _cfg80211_rtw_mgmt_tx(struct adapter *padapter, u8 tx_ch, const u8 *buf, size_t len)
+static int _cfg80211_rtw_mgmt_tx(struct adapter *padapter, u8 tx_ch,
+				 const u8 *buf, size_t len)
 {
-	struct xmit_frame	*pmgntframe;
-	struct pkt_attrib	*pattrib;
+	struct xmit_frame *pmgntframe;
+	struct pkt_attrib *pattrib;
 	unsigned char *pframe;
 	int ret = _FAIL;
 	bool __maybe_unused ack = true;
@@ -2482,7 +2731,9 @@ static int _cfg80211_rtw_mgmt_tx(struct adapter *padapter, u8 tx_ch, const u8 *b
 	if (tx_ch != rtw_get_oper_ch(padapter)) {
 		if (!check_fwstate(&padapter->mlmepriv, _FW_LINKED))
 			pmlmeext->cur_channel = tx_ch;
-		set_channel_bwmode(padapter, tx_ch, HAL_PRIME_CHNL_OFFSET_DONT_CARE, CHANNEL_WIDTH_20);
+		set_channel_bwmode(padapter, tx_ch,
+				   HAL_PRIME_CHNL_OFFSET_DONT_CARE,
+				   CHANNEL_WIDTH_20);
 	}
 
 	/* starting alloc mgmt frame to dump it */
@@ -2556,7 +2807,8 @@ static int cfg80211_rtw_mgmt_tx(struct wiphy *wiphy, struct wireless_dev *wdev,
 	*cookie = (unsigned long)buf;
 
 	/* indicate ack before issue frame to avoid racing with rsp frame */
-	rtw_cfg80211_mgmt_tx_status(padapter, *cookie, buf, len, ack, GFP_KERNEL);
+	rtw_cfg80211_mgmt_tx_status(padapter, *cookie, buf, len, ack,
+				    GFP_KERNEL);
 
 	if (!rtw_action_frame_parse(buf, len, &category, &action))
 		goto exit;
@@ -2578,15 +2830,16 @@ static int cfg80211_rtw_mgmt_tx(struct wiphy *wiphy, struct wireless_dev *wdev,
 	return ret;
 }
 
-static void rtw_cfg80211_init_ht_capab(struct ieee80211_sta_ht_cap *ht_cap, enum nl80211_band band)
+static void rtw_cfg80211_init_ht_capab(struct ieee80211_sta_ht_cap *ht_cap,
+				       enum nl80211_band band)
 {
-#define MAX_BIT_RATE_40MHZ_MCS7		150	/* Mbps */
+#define MAX_BIT_RATE_40MHZ_MCS7 150 /* Mbps */
 
 	ht_cap->ht_supported = true;
 
 	ht_cap->cap = IEEE80211_HT_CAP_SUP_WIDTH_20_40 |
-					IEEE80211_HT_CAP_SGI_40 | IEEE80211_HT_CAP_SGI_20 |
-					IEEE80211_HT_CAP_DSSSCCK40 | IEEE80211_HT_CAP_MAX_AMSDU;
+		      IEEE80211_HT_CAP_SGI_40 | IEEE80211_HT_CAP_SGI_20 |
+		      IEEE80211_HT_CAP_DSSSCCK40 | IEEE80211_HT_CAP_MAX_AMSDU;
 
 	/*
 	 *Maximum length of AMPDU that the STA can receive.
@@ -2625,14 +2878,16 @@ void rtw_cfg80211_init_wiphy(struct adapter *padapter)
 	{
 		bands = wiphy->bands[NL80211_BAND_2GHZ];
 		if (bands)
-			rtw_cfg80211_init_ht_capab(&bands->ht_cap, NL80211_BAND_2GHZ);
+			rtw_cfg80211_init_ht_capab(&bands->ht_cap,
+						   NL80211_BAND_2GHZ);
 	}
 
 	/* copy mac_addr to wiphy */
 	memcpy(wiphy->perm_addr, padapter->eeprompriv.mac_addr, ETH_ALEN);
 }
 
-static void rtw_cfg80211_preinit_wiphy(struct adapter *padapter, struct wiphy *wiphy)
+static void rtw_cfg80211_preinit_wiphy(struct adapter *padapter,
+				       struct wiphy *wiphy)
 {
 	wiphy->signal_type = CFG80211_SIGNAL_TYPE_MBM;
 
@@ -2640,13 +2895,12 @@ static void rtw_cfg80211_preinit_wiphy(struct adapter *padapter, struct wiphy *w
 	wiphy->max_scan_ie_len = RTW_SCAN_IE_LEN_MAX;
 	wiphy->max_num_pmkids = RTW_MAX_NUM_PMKIDS;
 
-	wiphy->max_remain_on_channel_duration = RTW_MAX_REMAIN_ON_CHANNEL_DURATION;
+	wiphy->max_remain_on_channel_duration =
+		RTW_MAX_REMAIN_ON_CHANNEL_DURATION;
 
-	wiphy->interface_modes =	BIT(NL80211_IFTYPE_STATION)
-								| BIT(NL80211_IFTYPE_ADHOC)
-								| BIT(NL80211_IFTYPE_AP)
-								| BIT(NL80211_IFTYPE_MONITOR)
-								;
+	wiphy->interface_modes =
+		BIT(NL80211_IFTYPE_STATION) | BIT(NL80211_IFTYPE_ADHOC) |
+		BIT(NL80211_IFTYPE_AP) | BIT(NL80211_IFTYPE_MONITOR);
 
 	wiphy->mgmt_stypes = rtw_cfg80211_default_mgmt_stypes;
 
@@ -2744,9 +2998,10 @@ int rtw_wdev_alloc(struct adapter *padapter, struct device *dev)
 	wdev->wiphy = wiphy;
 	wdev->netdev = pnetdev;
 
-	wdev->iftype = NL80211_IFTYPE_STATION; /*  will be init in rtw_hal_init() */
-					   /*  Must sync with _rtw_init_mlme_priv() */
-					   /*  pmlmepriv->fw_state = WIFI_STATION_STATE */
+	wdev->iftype =
+		NL80211_IFTYPE_STATION; /*  will be init in rtw_hal_init() */
+	/*  Must sync with _rtw_init_mlme_priv() */
+	/*  pmlmepriv->fw_state = WIFI_STATION_STATE */
 	padapter->rtw_wdev = wdev;
 	pnetdev->ieee80211_ptr = wdev;
 
@@ -2768,7 +3023,7 @@ int rtw_wdev_alloc(struct adapter *padapter, struct device *dev)
 
 unregister_wiphy:
 	wiphy_unregister(wiphy);
- free_wiphy:
+free_wiphy:
 	wiphy_free(wiphy);
 exit:
 	return ret;
diff --git a/drivers/staging/rtl8723bs/os_dep/os_intfs.c b/drivers/staging/rtl8723bs/os_dep/os_intfs.c
index f31196f54b3e0..85b09f74d844d 100644
--- a/drivers/staging/rtl8723bs/os_dep/os_intfs.c
+++ b/drivers/staging/rtl8723bs/os_dep/os_intfs.c
@@ -16,19 +16,19 @@ MODULE_VERSION(DRIVERVERSION);
 /* module param defaults */
 static int rtw_chip_version;
 static int rtw_rfintfs = HWPI;
-static int rtw_lbkmode;/* RTL8712_AIR_TRX; */
+static int rtw_lbkmode; /* RTL8712_AIR_TRX; */
 
-
-static int rtw_network_mode = Ndis802_11IBSS;/* Ndis802_11Infrastructure;infra, ad-hoc, auto */
+static int rtw_network_mode =
+	Ndis802_11IBSS; /* Ndis802_11Infrastructure;infra, ad-hoc, auto */
 /* struct ndis_802_11_ssid	ssid; */
-static int rtw_channel = 1;/* ad-hoc support requirement */
+static int rtw_channel = 1; /* ad-hoc support requirement */
 static int rtw_wireless_mode = WIRELESS_11BG_24N;
 static int rtw_vrtl_carrier_sense = AUTO_VCS;
-static int rtw_vcs_type = RTS_CTS;/*  */
-static int rtw_rts_thresh = 2347;/*  */
-static int rtw_frag_thresh = 2346;/*  */
-static int rtw_preamble = PREAMBLE_LONG;/* long, short, auto */
-static int rtw_scan_mode = 1;/* active, passive */
+static int rtw_vcs_type = RTS_CTS; /*  */
+static int rtw_rts_thresh = 2347; /*  */
+static int rtw_frag_thresh = 2346; /*  */
+static int rtw_preamble = PREAMBLE_LONG; /* long, short, auto */
+static int rtw_scan_mode = 1; /* active, passive */
 static int rtw_adhoc_tx_pwr = 1;
 static int rtw_soft_ap;
 /* int smart_ps = 1; */
@@ -41,7 +41,7 @@ static int rtw_smart_ps = 2;
 
 static int rtw_check_fw_ps = 1;
 
-static int rtw_usb_rxagg_mode = 2;/* USB_RX_AGG_DMA = 1, USB_RX_AGG_USB =2 */
+static int rtw_usb_rxagg_mode = 2; /* USB_RX_AGG_DMA = 1, USB_RX_AGG_USB =2 */
 module_param(rtw_usb_rxagg_mode, int, 0644);
 
 static int rtw_radio_enable = 1;
@@ -54,9 +54,9 @@ static int rtw_ack_policy = NORMAL_ACK;
 static int rtw_software_encrypt;
 static int rtw_software_decrypt;
 
-static int rtw_acm_method;/*  0:By SW 1:By HW. */
+static int rtw_acm_method; /*  0:By SW 1:By HW. */
 
-static int rtw_wmm_enable = 1;/*  default is set to enable the wmm. */
+static int rtw_wmm_enable = 1; /*  default is set to enable the wmm. */
 static int rtw_uapsd_enable;
 static int rtw_uapsd_max_sp = NO_LIMIT;
 static int rtw_uapsd_acbk_en;
@@ -71,9 +71,11 @@ int rtw_ht_enable = 1;
  * 0x01 means enable 2.4G 40MHz
  */
 static int rtw_bw_mode = 0x01;
-static int rtw_ampdu_enable = 1;/* for enable tx_ampdu ,0: disable, 0x1:enable (but wifi_spec should be 0), 0x2: force enable (don't care wifi_spec) */
-static int rtw_rx_stbc = 1;/*  0: disable, 1:enable 2.4g */
-static int rtw_ampdu_amsdu;/*  0: disabled, 1:enabled, 2:auto . There is an IOT issu with DLINK DIR-629 when the flag turn on */
+static int rtw_ampdu_enable =
+	1; /* for enable tx_ampdu ,0: disable, 0x1:enable (but wifi_spec should be 0), 0x2: force enable (don't care wifi_spec) */
+static int rtw_rx_stbc = 1; /*  0: disable, 1:enable 2.4g */
+static int
+	rtw_ampdu_amsdu; /*  0: disabled, 1:enabled, 2:auto . There is an IOT issu with DLINK DIR-629 when the flag turn on */
 /*  Short GI support Bit Map */
 /*  BIT0 - 20MHz, 0: non-support, 1: support */
 /*  BIT1 - 40MHz, 0: non-support, 1: support */
@@ -87,7 +89,8 @@ static int rtw_stbc_cap = 0x13;
 /*  BIT0: Enable VHT Beamformer, BIT1: Enable VHT Beamformee, BIT4: Enable HT Beamformer, BIT5: Enable HT Beamformee */
 static int rtw_beamform_cap = 0x2;
 
-static int rtw_lowrate_two_xmit = 1;/* Use 2 path Tx to transmit MCS0~7 and legacy mode */
+static int rtw_lowrate_two_xmit =
+	1; /* Use 2 path Tx to transmit MCS0~7 and legacy mode */
 
 static int rtw_low_power;
 static int rtw_wifi_spec;
@@ -98,7 +101,8 @@ module_param(rtw_ant_num, int, 0644);
 MODULE_PARM_DESC(rtw_ant_num, "Antenna number setting");
 
 static int rtw_antdiv_cfg = 1; /*  0:OFF , 1:ON, 2:decide by Efuse config */
-static int rtw_antdiv_type; /* 0:decide by efuse  1: for 88EE, 1Tx and 1RxCG are diversity.(2 Ant with SPDT), 2:  for 88EE, 1Tx and 2Rx are diversity.(2 Ant, Tx and RxCG are both on aux port, RxCS is on main port), 3: for 88EE, 1Tx and 1RxCG are fixed.(1Ant, Tx and RxCG are both on aux port) */
+static int
+	rtw_antdiv_type; /* 0:decide by efuse  1: for 88EE, 1Tx and 1RxCG are diversity.(2 Ant with SPDT), 2:  for 88EE, 1Tx and 2Rx are diversity.(2 Ant, Tx and RxCG are both on aux port, RxCS is on main port), 3: for 88EE, 1Tx and 1RxCG are fixed.(1Ant, Tx and RxCG are both on aux port) */
 
 static int rtw_hw_wps_pbc;
 
@@ -106,14 +110,14 @@ int rtw_mc2u_disable;
 
 static int rtw_80211d;
 
-static int rtw_qos_opt_enable;/* 0: disable, 1:enable */
+static int rtw_qos_opt_enable; /* 0: disable, 1:enable */
 module_param(rtw_qos_opt_enable, int, 0644);
 
 static char *ifname = "wlan%d";
 module_param(ifname, charp, 0644);
 MODULE_PARM_DESC(ifname, "The default name to allocate for first interface");
 
-char *rtw_initmac;  /*  temp mac address if users want to use instead of the mac address in Efuse */
+char *rtw_initmac; /*  temp mac address if users want to use instead of the mac address in Efuse */
 
 module_param(rtw_initmac, charp, 0644);
 module_param(rtw_channel_plan, int, 0644);
@@ -143,7 +147,6 @@ module_param(rtw_wifi_spec, int, 0644);
 module_param(rtw_antdiv_cfg, int, 0644);
 module_param(rtw_antdiv_type, int, 0644);
 
-
 module_param(rtw_hw_wps_pbc, int, 0644);
 
 static uint rtw_max_roaming_times = 2;
@@ -157,7 +160,8 @@ MODULE_PARM_DESC(rtw_80211d, "Enable 802.11d mechanism");
 
 static uint rtw_notch_filter;
 module_param(rtw_notch_filter, uint, 0644);
-MODULE_PARM_DESC(rtw_notch_filter, "0:Disable, 1:Enable, 2:Enable only for P2P");
+MODULE_PARM_DESC(rtw_notch_filter,
+		 "0:Disable, 1:Enable, 2:Enable only for P2P");
 
 #define CONFIG_RTW_HIQ_FILTER 1
 
@@ -169,7 +173,8 @@ static int rtw_tx_pwr_lmt_enable;
 static int rtw_tx_pwr_by_rate;
 
 module_param(rtw_tx_pwr_lmt_enable, int, 0644);
-MODULE_PARM_DESC(rtw_tx_pwr_lmt_enable, "0:Disable, 1:Enable, 2: Depend on efuse");
+MODULE_PARM_DESC(rtw_tx_pwr_lmt_enable,
+		 "0:Disable, 1:Enable, 2: Depend on efuse");
 
 module_param(rtw_tx_pwr_by_rate, int, 0644);
 MODULE_PARM_DESC(rtw_tx_pwr_by_rate, "0:Disable, 1:Enable, 2: Depend on efuse");
@@ -178,13 +183,13 @@ static int netdev_close(struct net_device *pnetdev);
 
 static void loadparam(struct adapter *padapter, struct net_device *pnetdev)
 {
-	struct registry_priv  *registry_par = &padapter->registrypriv;
+	struct registry_priv *registry_par = &padapter->registrypriv;
 
 	registry_par->chip_version = (u8)rtw_chip_version;
 	registry_par->rfintfs = (u8)rtw_rfintfs;
 	registry_par->lbkmode = (u8)rtw_lbkmode;
 	/* registry_par->hci = (u8)hci; */
-	registry_par->network_mode  = (u8)rtw_network_mode;
+	registry_par->network_mode = (u8)rtw_network_mode;
 
 	memcpy(registry_par->ssid.ssid, "ANY", 3);
 	registry_par->ssid.ssid_length = 3;
@@ -199,8 +204,8 @@ static void loadparam(struct adapter *padapter, struct net_device *pnetdev)
 	registry_par->preamble = (u8)rtw_preamble;
 	registry_par->scan_mode = (u8)rtw_scan_mode;
 	registry_par->adhoc_tx_pwr = (u8)rtw_adhoc_tx_pwr;
-	registry_par->soft_ap =  (u8)rtw_soft_ap;
-	registry_par->smart_ps =  (u8)rtw_smart_ps;
+	registry_par->soft_ap = (u8)rtw_soft_ap;
+	registry_par->smart_ps = (u8)rtw_smart_ps;
 	registry_par->check_fw_ps = (u8)rtw_check_fw_ps;
 	registry_par->power_mgnt = (u8)rtw_power_mgnt;
 	registry_par->ips_mode = (u8)rtw_ips_mode;
@@ -216,7 +221,7 @@ static void loadparam(struct adapter *padapter, struct net_device *pnetdev)
 	registry_par->acm_method = (u8)rtw_acm_method;
 	registry_par->usb_rxagg_mode = (u8)rtw_usb_rxagg_mode;
 
-	 /* UAPSD */
+	/* UAPSD */
 	registry_par->wmm_enable = (u8)rtw_wmm_enable;
 	registry_par->uapsd_enable = (u8)rtw_uapsd_enable;
 	registry_par->uapsd_max_sp = (u8)rtw_uapsd_max_sp;
@@ -238,7 +243,6 @@ static void loadparam(struct adapter *padapter, struct net_device *pnetdev)
 	registry_par->lowrate_two_xmit = (u8)rtw_lowrate_two_xmit;
 	registry_par->low_power = (u8)rtw_low_power;
 
-
 	registry_par->wifi_spec = (u8)rtw_wifi_spec;
 
 	registry_par->channel_plan = (u8)rtw_channel_plan;
@@ -291,8 +295,10 @@ static struct net_device_stats *rtw_net_get_stats(struct net_device *pnetdev)
 	struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
 	struct recv_priv *precvpriv = &padapter->recvpriv;
 
-	padapter->stats.tx_packets = pxmitpriv->tx_pkts;/* pxmitpriv->tx_pkts++; */
-	padapter->stats.rx_packets = precvpriv->rx_pkts;/* precvpriv->rx_pkts++; */
+	padapter->stats.tx_packets =
+		pxmitpriv->tx_pkts; /* pxmitpriv->tx_pkts++; */
+	padapter->stats.rx_packets =
+		precvpriv->rx_pkts; /* precvpriv->rx_pkts++; */
 	padapter->stats.tx_dropped = pxmitpriv->tx_drop;
 	padapter->stats.rx_dropped = precvpriv->rx_drop;
 	padapter->stats.tx_bytes = pxmitpriv->tx_bytes;
@@ -335,11 +341,10 @@ static unsigned int rtw_classify8021d(struct sk_buff *skb)
 	return dscp >> 5;
 }
 
-
 static u16 rtw_select_queue(struct net_device *dev, struct sk_buff *skb,
 			    struct net_device *sb_dev)
 {
-	struct adapter	*padapter = rtw_netdev_priv(dev);
+	struct adapter *padapter = rtw_netdev_priv(dev);
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 
 	skb->priority = rtw_classify8021d(skb);
@@ -354,7 +359,7 @@ u16 rtw_recv_select_queue(struct sk_buff *skb)
 {
 	struct iphdr *piphdr;
 	unsigned int dscp;
-	__be16	eth_type;
+	__be16 eth_type;
 	u32 priority;
 	u8 *pdata = skb->data;
 
@@ -400,7 +405,7 @@ static const struct net_device_ops rtw_netdev_ops = {
 	.ndo_open = netdev_open,
 	.ndo_stop = netdev_close,
 	.ndo_start_xmit = rtw_xmit_entry,
-	.ndo_select_queue	= rtw_select_queue,
+	.ndo_select_queue = rtw_select_queue,
 	.ndo_set_mac_address = rtw_net_set_mac_address,
 	.ndo_get_stats = rtw_net_get_stats,
 };
@@ -423,7 +428,8 @@ struct net_device *rtw_init_netdev(struct adapter *old_padapter)
 	struct net_device *pnetdev;
 
 	if (old_padapter)
-		pnetdev = rtw_alloc_etherdev_with_old_priv(sizeof(struct adapter), (void *)old_padapter);
+		pnetdev = rtw_alloc_etherdev_with_old_priv(
+			sizeof(struct adapter), (void *)old_padapter);
 	else
 		pnetdev = rtw_alloc_etherdev(sizeof(struct adapter));
 
@@ -468,18 +474,22 @@ u32 rtw_start_drv_threads(struct adapter *padapter)
 {
 	u32 _status = _SUCCESS;
 
-	padapter->xmitThread = kthread_run(rtw_xmit_thread, padapter, "RTW_XMIT_THREAD");
+	padapter->xmitThread =
+		kthread_run(rtw_xmit_thread, padapter, "RTW_XMIT_THREAD");
 	if (IS_ERR(padapter->xmitThread))
 		_status = _FAIL;
 
-	padapter->cmdThread = kthread_run(rtw_cmd_thread, padapter, "RTW_CMD_THREAD");
+	padapter->cmdThread =
+		kthread_run(rtw_cmd_thread, padapter, "RTW_CMD_THREAD");
 	if (IS_ERR(padapter->cmdThread))
 		_status = _FAIL;
 	else
-		wait_for_completion(&padapter->cmdpriv.terminate_cmdthread_comp); /* wait for cmd_thread to run */
+		wait_for_completion(
+			&padapter->cmdpriv
+				 .terminate_cmdthread_comp); /* wait for cmd_thread to run */
 
-	padapter->xmitpriv.SdioXmitThread = kthread_run(rtl8723bs_xmit_thread,
-							padapter, "RTWHALXT");
+	padapter->xmitpriv.SdioXmitThread =
+		kthread_run(rtl8723bs_xmit_thread, padapter, "RTWHALXT");
 	if (IS_ERR(padapter->xmitpriv.SdioXmitThread)) {
 		padapter->xmitpriv.SdioXmitThread = NULL;
 		_status = _FAIL;
@@ -527,14 +537,15 @@ static void rtw_init_default_value(struct adapter *padapter)
 	/* pmlmepriv->qospriv.qos_option = pregistrypriv->wmm_enable; */
 
 	/* ht_priv */
-	pmlmepriv->htpriv.ampdu_enable = false;/* set to disabled */
+	pmlmepriv->htpriv.ampdu_enable = false; /* set to disabled */
 
 	/* security_priv */
 	psecuritypriv->binstallGrpkey = _FAIL;
 	psecuritypriv->sw_encrypt = pregistrypriv->software_encrypt;
 	psecuritypriv->sw_decrypt = pregistrypriv->software_decrypt;
 
-	psecuritypriv->dot11AuthAlgrthm = dot11AuthAlgrthm_Open; /* open system */
+	psecuritypriv->dot11AuthAlgrthm =
+		dot11AuthAlgrthm_Open; /* open system */
 	psecuritypriv->dot11PrivacyAlgrthm = _NO_PRIVACY_;
 
 	psecuritypriv->dot11PrivacyKeyIndex = 0;
@@ -561,7 +572,7 @@ static void rtw_init_default_value(struct adapter *padapter)
 	/* for debug purpose */
 	padapter->fix_rate = 0xFF;
 	padapter->driver_ampdu_spacing = 0xFF;
-	padapter->driver_rx_ampdu_factor =  0xFF;
+	padapter->driver_rx_ampdu_factor = 0xFF;
 }
 
 struct dvobj_priv *devobj_init(void)
@@ -633,7 +644,6 @@ void rtw_reset_drv_sw(struct adapter *padapter)
 	rtw_set_signal_stat_timer(&padapter->recvpriv);
 }
 
-
 u8 rtw_init_drv_sw(struct adapter *padapter)
 {
 	int res;
@@ -709,7 +719,8 @@ void rtw_cancel_all_timer(struct adapter *padapter)
 
 	timer_delete_sync(&padapter->mlmepriv.dynamic_chk_timer);
 
-	timer_delete_sync(&(adapter_to_pwrctl(padapter)->pwr_state_check_timer));
+	timer_delete_sync(
+		&(adapter_to_pwrctl(padapter)->pwr_state_check_timer));
 
 	timer_delete_sync(&padapter->mlmepriv.set_scan_deny_timer);
 	rtw_clear_scan_deny(padapter);
@@ -729,7 +740,8 @@ u8 rtw_free_drv_sw(struct adapter *padapter)
 
 	_rtw_free_xmit_priv(&padapter->xmitpriv);
 
-	_rtw_free_sta_priv(&padapter->stapriv); /* will free bcmc_stainfo here */
+	_rtw_free_sta_priv(
+		&padapter->stapriv); /* will free bcmc_stainfo here */
 
 	_rtw_free_recv_priv(&padapter->recvpriv);
 
@@ -855,7 +867,8 @@ int netdev_open(struct net_device *pnetdev)
 	if (pwrctrlpriv->bInSuspend)
 		return 0;
 
-	if (mutex_lock_interruptible(&(adapter_to_dvobj(padapter)->hw_init_mutex)))
+	if (mutex_lock_interruptible(
+		    &(adapter_to_dvobj(padapter)->hw_init_mutex)))
 		return -1;
 
 	ret = _netdev_open(pnetdev);
@@ -864,7 +877,7 @@ int netdev_open(struct net_device *pnetdev)
 	return ret;
 }
 
-static int  ips_netdrv_open(struct adapter *padapter)
+static int ips_netdrv_open(struct adapter *padapter)
 {
 	int status = _SUCCESS;
 	/* struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter); */
@@ -891,7 +904,6 @@ static int  ips_netdrv_open(struct adapter *padapter)
 	return _FAIL;
 }
 
-
 int rtw_ips_pwr_up(struct adapter *padapter)
 {
 	return ips_netdrv_open(padapter);
@@ -919,12 +931,14 @@ static int pm_netdev_open(struct net_device *pnetdev, u8 bnormal)
 	struct adapter *padapter = rtw_netdev_priv(pnetdev);
 
 	if (bnormal) {
-		if (mutex_lock_interruptible(&(adapter_to_dvobj(padapter)->hw_init_mutex)) == 0) {
+		if (mutex_lock_interruptible(&(
+			    adapter_to_dvobj(padapter)->hw_init_mutex)) == 0) {
 			status = _netdev_open(pnetdev);
-			mutex_unlock(&(adapter_to_dvobj(padapter)->hw_init_mutex));
+			mutex_unlock(
+				&(adapter_to_dvobj(padapter)->hw_init_mutex));
 		}
 	} else {
-		status =  (ips_netdrv_open(padapter) == _SUCCESS) ? (0) : (-1);
+		status = (ips_netdrv_open(padapter) == _SUCCESS) ? (0) : (-1);
 	}
 
 	return status;
@@ -980,7 +994,8 @@ void rtw_dev_unload(struct adapter *padapter)
 	if (padapter->bup) {
 		padapter->bDriverStopped = true;
 		if (padapter->xmitpriv.ack_tx)
-			rtw_ack_tx_done(&padapter->xmitpriv, RTW_SCTX_DONE_DRV_STOP);
+			rtw_ack_tx_done(&padapter->xmitpriv,
+					RTW_SCTX_DONE_DRV_STOP);
 
 		if (padapter->intf_stop)
 			padapter->intf_stop(padapter);
@@ -996,14 +1011,15 @@ void rtw_dev_unload(struct adapter *padapter)
 		}
 
 		/* check the status of IPS */
-		if (rtw_hal_check_ips_status(padapter) || pwrctl->rf_pwrstate == rf_off) {
+		if (rtw_hal_check_ips_status(padapter) ||
+		    pwrctl->rf_pwrstate == rf_off) {
 			/* check HW status and SW state */
 			netdev_dbg(padapter->pnetdev,
 				   "%s: driver in IPS-FWLPS\n", __func__);
 			LeaveAllPowerSaveMode(padapter);
 		} else {
-			netdev_dbg(padapter->pnetdev,
-				   "%s: driver not in IPS\n", __func__);
+			netdev_dbg(padapter->pnetdev, "%s: driver not in IPS\n",
+				   __func__);
 		}
 
 		if (!padapter->bSurpriseRemoved) {
@@ -1024,13 +1040,14 @@ static int rtw_suspend_free_assoc_resource(struct adapter *padapter)
 	struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
 
 	if (rtw_chk_roam_flags(padapter, RTW_ROAM_ON_RESUME)) {
-		if (check_fwstate(pmlmepriv, WIFI_STATION_STATE)
-			&& check_fwstate(pmlmepriv, _FW_LINKED)) {
+		if (check_fwstate(pmlmepriv, WIFI_STATION_STATE) &&
+		    check_fwstate(pmlmepriv, _FW_LINKED)) {
 			rtw_set_to_roam(padapter, 1);
 		}
 	}
 
-	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE) && check_fwstate(pmlmepriv, _FW_LINKED)) {
+	if (check_fwstate(pmlmepriv, WIFI_STATION_STATE) &&
+	    check_fwstate(pmlmepriv, _FW_LINKED)) {
 		rtw_disassoc_cmd(padapter, 0, false);
 		/* s2-2.  indicate disconnect to os */
 		rtw_indicate_disconnect(padapter);
@@ -1067,7 +1084,8 @@ static void rtw_suspend_normal(struct adapter *padapter)
 
 	rtw_suspend_free_assoc_resource(padapter);
 
-	if ((rtw_hal_check_ips_status(padapter)) || (adapter_to_pwrctl(padapter)->rf_pwrstate == rf_off))
+	if ((rtw_hal_check_ips_status(padapter)) ||
+	    (adapter_to_pwrctl(padapter)->rf_pwrstate == rf_off))
 		netdev_dbg(padapter->pnetdev,
 			   "%s: ### ERROR #### driver in IPS ####ERROR###!!!\n",
 			   __func__);
@@ -1094,7 +1112,8 @@ void rtw_suspend_common(struct adapter *padapter)
 	while (pwrpriv->bips_processing)
 		msleep(1);
 
-	if ((!padapter->bup) || (padapter->bDriverStopped) || (padapter->bSurpriseRemoved))
+	if ((!padapter->bup) || (padapter->bDriverStopped) ||
+	    (padapter->bSurpriseRemoved))
 		return;
 
 	rtw_ps_deny(padapter, PS_DENY_SUSPEND);
@@ -1143,7 +1162,9 @@ static int rtw_resume_process_normal(struct adapter *padapter)
 	}
 	rtw_sdio_disable_interrupt(padapter);
 	/* if (sdio_alloc_irq(adapter_to_dvobj(padapter)) != _SUCCESS) */
-	if ((padapter->intf_alloc_irq) && (padapter->intf_alloc_irq(adapter_to_dvobj(padapter)) != _SUCCESS)) {
+	if ((padapter->intf_alloc_irq) &&
+	    (padapter->intf_alloc_irq(adapter_to_dvobj(padapter)) !=
+	     _SUCCESS)) {
 		ret = -1;
 		goto exit;
 	}
diff --git a/drivers/staging/rtl8723bs/os_dep/osdep_service.c b/drivers/staging/rtl8723bs/os_dep/osdep_service.c
index 4cfdf7c623440..33b0989e3d396 100644
--- a/drivers/staging/rtl8723bs/os_dep/osdep_service.c
+++ b/drivers/staging/rtl8723bs/os_dep/osdep_service.c
@@ -20,12 +20,14 @@ inline int _rtw_netif_rx(struct net_device *ndev, struct sk_buff *skb)
 	return netif_rx(skb);
 }
 
-struct net_device *rtw_alloc_etherdev_with_old_priv(int sizeof_priv, void *old_priv)
+struct net_device *rtw_alloc_etherdev_with_old_priv(int sizeof_priv,
+						    void *old_priv)
 {
 	struct net_device *pnetdev;
 	struct rtw_netdev_priv_indicator *pnpi;
 
-	pnetdev = alloc_etherdev_mq(sizeof(struct rtw_netdev_priv_indicator), 4);
+	pnetdev =
+		alloc_etherdev_mq(sizeof(struct rtw_netdev_priv_indicator), 4);
 	if (!pnetdev)
 		goto RETURN;
 
@@ -42,7 +44,8 @@ struct net_device *rtw_alloc_etherdev(int sizeof_priv)
 	struct net_device *pnetdev;
 	struct rtw_netdev_priv_indicator *pnpi;
 
-	pnetdev = alloc_etherdev_mq(sizeof(struct rtw_netdev_priv_indicator), 4);
+	pnetdev =
+		alloc_etherdev_mq(sizeof(struct rtw_netdev_priv_indicator), 4);
 	if (!pnetdev)
 		goto RETURN;
 
diff --git a/drivers/staging/rtl8723bs/os_dep/sdio_intf.c b/drivers/staging/rtl8723bs/os_dep/sdio_intf.c
index c43a0391a5ca7..243efa8a18a3e 100644
--- a/drivers/staging/rtl8723bs/os_dep/sdio_intf.c
+++ b/drivers/staging/rtl8723bs/os_dep/sdio_intf.c
@@ -10,45 +10,56 @@
 #include <linux/jiffies.h>
 
 #ifndef dev_to_sdio_func
-#define dev_to_sdio_func(d)     container_of(d, struct sdio_func, dev)
+#define dev_to_sdio_func(d) container_of(d, struct sdio_func, dev)
 #endif
 
 static const struct sdio_device_id sdio_ids[] = {
-	{ SDIO_DEVICE(0x024c, 0x0523), },
-	{ SDIO_DEVICE(0x024c, 0x0525), },
-	{ SDIO_DEVICE(0x024c, 0x0623), },
-	{ SDIO_DEVICE(0x024c, 0x0626), },
-	{ SDIO_DEVICE(0x024c, 0x0627), },
-	{ SDIO_DEVICE(0x024c, 0xb723), },
-	{ /* end: all zeroes */				},
+	{
+		SDIO_DEVICE(0x024c, 0x0523),
+	},
+	{
+		SDIO_DEVICE(0x024c, 0x0525),
+	},
+	{
+		SDIO_DEVICE(0x024c, 0x0623),
+	},
+	{
+		SDIO_DEVICE(0x024c, 0x0626),
+	},
+	{
+		SDIO_DEVICE(0x024c, 0x0627),
+	},
+	{
+		SDIO_DEVICE(0x024c, 0xb723),
+	},
+	{ /* end: all zeroes */ },
 };
 MODULE_DEVICE_TABLE(sdio, sdio_ids);
 
-static int rtw_drv_init(struct sdio_func *func, const struct sdio_device_id *id);
+static int rtw_drv_init(struct sdio_func *func,
+			const struct sdio_device_id *id);
 static void rtw_dev_remove(struct sdio_func *func);
 static int rtw_sdio_resume(struct device *dev);
 static int rtw_sdio_suspend(struct device *dev);
 
 static const struct dev_pm_ops rtw_sdio_pm_ops = {
-	.suspend	= rtw_sdio_suspend,
-	.resume	= rtw_sdio_resume,
+	.suspend = rtw_sdio_suspend,
+	.resume = rtw_sdio_resume,
 };
 
-static struct sdio_driver rtl8723bs_sdio_driver = {
-	.probe = rtw_drv_init,
-	.remove = rtw_dev_remove,
-	.name = "rtl8723bs",
-	.id_table = sdio_ids,
-	.drv = {
-		.pm = &rtw_sdio_pm_ops,
-	}
-};
+static struct sdio_driver
+	rtl8723bs_sdio_driver = { .probe = rtw_drv_init,
+				  .remove = rtw_dev_remove,
+				  .name = "rtl8723bs",
+				  .id_table = sdio_ids,
+				  .drv = {
+					  .pm = &rtw_sdio_pm_ops,
+				  } };
 
 static void sd_sync_int_hdl(struct sdio_func *func)
 {
 	struct dvobj_priv *psdpriv;
 
-
 	psdpriv = sdio_get_drvdata(func);
 
 	if (!psdpriv->if1)
@@ -72,13 +83,14 @@ static int sdio_alloc_irq(struct dvobj_priv *dvobj)
 
 	err = sdio_claim_irq(func, &sd_sync_int_hdl);
 	if (err)
-		netdev_crit(dvobj->if1->pnetdev, "%s: sdio_claim_irq FAIL(%d)!\n", __func__, err);
+		netdev_crit(dvobj->if1->pnetdev,
+			    "%s: sdio_claim_irq FAIL(%d)!\n", __func__, err);
 	else
 		dvobj->irq_alloc = 1;
 
 	sdio_release_host(func);
 
-	return err?_FAIL:_SUCCESS;
+	return err ? _FAIL : _SUCCESS;
 }
 
 static void sdio_free_irq(struct dvobj_priv *dvobj)
@@ -214,8 +226,8 @@ static void sd_intf_stop(struct adapter *padapter)
 	rtw_sdio_disable_interrupt(padapter);
 }
 
-
-static struct adapter *rtw_sdio_if1_init(struct dvobj_priv *dvobj, const struct sdio_device_id  *pdid)
+static struct adapter *rtw_sdio_if1_init(struct dvobj_priv *dvobj,
+					 const struct sdio_device_id *pdid)
 {
 	int status = _FAIL;
 	struct net_device *pnetdev;
@@ -248,7 +260,6 @@ static struct adapter *rtw_sdio_if1_init(struct dvobj_priv *dvobj, const struct
 	/* 4 3.1 set hardware operation functions */
 	rtw_set_hal_ops(padapter);
 
-
 	/* 3 5. initialize Chip version */
 	padapter->intf_start = &sd_intf_start;
 	padapter->intf_stop = &sd_intf_stop;
@@ -334,9 +345,7 @@ static void rtw_sdio_if1_deinit(struct adapter *if1)
  * notes: drv_init() is called when the bus driver has located a card for us to support.
  *        We accept the new device by returning 0.
  */
-static int rtw_drv_init(
-	struct sdio_func *func,
-	const struct sdio_device_id *id)
+static int rtw_drv_init(struct sdio_func *func, const struct sdio_device_id *id)
 {
 	int status = _FAIL;
 	struct adapter *if1 = NULL;
diff --git a/drivers/staging/rtl8723bs/os_dep/sdio_ops_linux.c b/drivers/staging/rtl8723bs/os_dep/sdio_ops_linux.c
index e9a2f3f7ec747..3fc14f28cc53a 100644
--- a/drivers/staging/rtl8723bs/os_dep/sdio_ops_linux.c
+++ b/drivers/staging/rtl8723bs/os_dep/sdio_ops_linux.c
@@ -12,7 +12,8 @@ static bool rtw_sdio_claim_host_needed(struct sdio_func *func)
 	struct dvobj_priv *dvobj = sdio_get_drvdata(func);
 	struct sdio_data *sdio_data = &dvobj->intf_data;
 
-	if (sdio_data->sys_sdio_irq_thd && sdio_data->sys_sdio_irq_thd == current)
+	if (sdio_data->sys_sdio_irq_thd &&
+	    sdio_data->sys_sdio_irq_thd == current)
 		return false;
 	return true;
 }
@@ -230,7 +231,7 @@ u32 sd_read32(struct intf_hdl *pintfhdl, u32 addr, s32 *err)
 			}
 		}
 	}
-	return  v;
+	return v;
 }
 
 void sd_write8(struct intf_hdl *pintfhdl, u32 addr, u8 v, s32 *err)
@@ -423,7 +424,7 @@ s32 _sd_write(struct intf_hdl *pintfhdl, u32 addr, u32 cnt, void *pdata)
 
 	struct sdio_func *func;
 	u32 size;
-	s32 err =  -EPERM;
+	s32 err = -EPERM;
 
 	padapter = pintfhdl->padapter;
 	psdiodev = pintfhdl->pintf_dev;
@@ -433,7 +434,7 @@ s32 _sd_write(struct intf_hdl *pintfhdl, u32 addr, u32 cnt, void *pdata)
 		return err;
 
 	func = psdio->func;
-/*	size = sdio_align_size(func, cnt); */
+	/*	size = sdio_align_size(func, cnt); */
 
 	if (unlikely((cnt == 1) || (cnt == 2))) {
 		int i;
@@ -474,7 +475,7 @@ s32 sd_write(struct intf_hdl *pintfhdl, u32 addr, u32 cnt, void *pdata)
 	struct sdio_data *psdio;
 	struct sdio_func *func;
 	bool claim_needed;
-	s32 err =  -EPERM;
+	s32 err = -EPERM;
 
 	padapter = pintfhdl->padapter;
 	psdiodev = pintfhdl->pintf_dev;
diff --git a/drivers/staging/rtl8723bs/os_dep/wifi_regd.c b/drivers/staging/rtl8723bs/os_dep/wifi_regd.c
index c48a1e3ba4acc..14f1eaf73d158 100644
--- a/drivers/staging/rtl8723bs/os_dep/wifi_regd.c
+++ b/drivers/staging/rtl8723bs/os_dep/wifi_regd.c
@@ -19,8 +19,7 @@
  */
 
 /* 2G chan 01 - chan 11 */
-#define RTW_2GHZ_CH01_11	\
-	REG_RULE(2412 - 10, 2462 + 10, 40, 0, 20, 0)
+#define RTW_2GHZ_CH01_11 REG_RULE(2412 - 10, 2462 + 10, 40, 0, 20, 0)
 
 /*
  * We enable active scan on these a case
@@ -28,18 +27,16 @@
  */
 
 /* 2G chan 12 - chan 13, PASSIV SCAN */
-#define RTW_2GHZ_CH12_13	\
-	REG_RULE(2467 - 10, 2472 + 10, 40, 0, 20,	\
-	NL80211_RRF_PASSIVE_SCAN)
-
-static const struct ieee80211_regdomain rtw_regdom_rd = {
-	.n_reg_rules = 2,
-	.alpha2 = "99",
-	.reg_rules = {
-		RTW_2GHZ_CH01_11,
-		RTW_2GHZ_CH12_13,
-	}
-};
+#define RTW_2GHZ_CH12_13 \
+	REG_RULE(2467 - 10, 2472 + 10, 40, 0, 20, NL80211_RRF_PASSIVE_SCAN)
+
+static const struct ieee80211_regdomain
+	rtw_regdom_rd = { .n_reg_rules = 2,
+			  .alpha2 = "99",
+			  .reg_rules = {
+				  RTW_2GHZ_CH01_11,
+				  RTW_2GHZ_CH12_13,
+			  } };
 
 static void _rtw_reg_apply_flags(struct wiphy *wiphy)
 {
@@ -95,11 +92,10 @@ static const struct ieee80211_regdomain *_rtw_regdomain_select(void)
 	return &rtw_regdom_rd;
 }
 
-static void _rtw_regd_init_wiphy(struct wiphy *wiphy,
-				 void (*reg_notifier)(struct wiphy *wiphy,
-						      struct
-						      regulatory_request *
-						      request))
+static void
+_rtw_regd_init_wiphy(struct wiphy *wiphy,
+		     void (*reg_notifier)(struct wiphy *wiphy,
+					  struct regulatory_request *request))
 {
 	const struct ieee80211_regdomain *regd;
 
diff --git a/drivers/staging/rtl8723bs/os_dep/xmit_linux.c b/drivers/staging/rtl8723bs/os_dep/xmit_linux.c
index 4260ed5f4e974..a63ce84065eba 100644
--- a/drivers/staging/rtl8723bs/os_dep/xmit_linux.c
+++ b/drivers/staging/rtl8723bs/os_dep/xmit_linux.c
@@ -6,10 +6,10 @@
  ******************************************************************************/
 #include <drv_types.h>
 
-
 uint rtw_remainder_len(struct pkt_file *pfile)
 {
-	return (pfile->buf_len - ((SIZE_PTR)(pfile->cur_addr) - (SIZE_PTR)(pfile->buf_start)));
+	return (pfile->buf_len -
+		((SIZE_PTR)(pfile->cur_addr) - (SIZE_PTR)(pfile->buf_start)));
 }
 
 void _rtw_open_pktfile(struct sk_buff *pktptr, struct pkt_file *pfile)
@@ -31,7 +31,8 @@ int _rtw_pktfile_read(struct pkt_file *pfile, u8 *rmem, unsigned int rlen)
 		rlen = remain;
 
 	if (rmem) {
-		ret = skb_copy_bits(pfile->pkt, pfile->buf_len - pfile->pkt_len, rmem, rlen);
+		ret = skb_copy_bits(pfile->pkt, pfile->buf_len - pfile->pkt_len,
+				    rmem, rlen);
 		if (ret < 0)
 			return ret;
 	}
@@ -48,13 +49,14 @@ signed int rtw_endofpktfile(struct pkt_file *pfile)
 	return false;
 }
 
-void rtw_os_xmit_resource_free(struct adapter *padapter, struct xmit_buf *pxmitbuf, u32 free_sz, u8 flag)
+void rtw_os_xmit_resource_free(struct adapter *padapter,
+			       struct xmit_buf *pxmitbuf, u32 free_sz, u8 flag)
 {
 	if (free_sz > 0)
 		kfree(pxmitbuf->pallocated_buf);
 }
 
-#define WMM_XMIT_THRESHOLD	(NR_XMITFRAME * 2 / 5)
+#define WMM_XMIT_THRESHOLD (NR_XMITFRAME * 2 / 5)
 
 void rtw_os_pkt_complete(struct adapter *padapter, struct sk_buff *pkt)
 {
@@ -93,7 +95,8 @@ void rtw_os_xmit_schedule(struct adapter *padapter)
 		complete(&pri_adapter->xmitpriv.xmit_comp);
 }
 
-static void rtw_check_xmit_resource(struct adapter *padapter, struct sk_buff *pkt)
+static void rtw_check_xmit_resource(struct adapter *padapter,
+				    struct sk_buff *pkt)
 {
 	struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
 	u16 queue;
@@ -105,7 +108,8 @@ static void rtw_check_xmit_resource(struct adapter *padapter, struct sk_buff *pk
 			netif_stop_subqueue(padapter->pnetdev, queue);
 	} else {
 		if (pxmitpriv->free_xmitframe_cnt <= 4) {
-			if (!netif_tx_queue_stopped(netdev_get_tx_queue(padapter->pnetdev, queue)))
+			if (!netif_tx_queue_stopped(netdev_get_tx_queue(
+				    padapter->pnetdev, queue)))
 				netif_stop_subqueue(padapter->pnetdev, queue);
 		}
 	}
@@ -113,18 +117,18 @@ static void rtw_check_xmit_resource(struct adapter *padapter, struct sk_buff *pk
 
 static int rtw_mlcst2unicst(struct adapter *padapter, struct sk_buff *skb)
 {
-	struct	sta_priv *pstapriv = &padapter->stapriv;
+	struct sta_priv *pstapriv = &padapter->stapriv;
 	struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
-	struct list_head	*phead, *plist;
+	struct list_head *phead, *plist;
 	struct sk_buff *newskb;
 	struct sta_info *psta = NULL;
 	u8 chk_alive_num = 0;
 	char chk_alive_list[NUM_STA];
-	u8 bc_addr[6] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
-	u8 null_addr[6] = {0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
+	u8 bc_addr[6] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
+	u8 null_addr[6] = { 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
 
 	int i;
-	s32	res;
+	s32 res;
 
 	spin_lock_bh(&pstapriv->asoc_list_lock);
 	phead = &pstapriv->asoc_list;
@@ -162,7 +166,7 @@ static int rtw_mlcst2unicst(struct adapter *padapter, struct sk_buff *skb)
 		} else {
 			pxmitpriv->tx_drop++;
 			/* dev_kfree_skb_any(skb); */
-			return false;	/*  Caller shall tx this multicast frame via normal way. */
+			return false; /*  Caller shall tx this multicast frame via normal way. */
 		}
 	}
 
-- 
2.50.1 (Apple Git-155)


^ permalink raw reply related	[flat|nested] 3+ messages in thread

end of thread, other threads:[~2026-07-27  5:13 UTC | newest]

Thread overview: 3+ messages (download: mbox.gz follow: Atom feed
-- links below jump to the message on this page --
2026-07-27  4:06 [PATCH] staging: rtl8723bs: apply clang-format cleanup Aryan Krishnan
2026-07-27  4:35 ` Greg KH
2026-07-27  5:12   ` Aryan Krishnan

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