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* [PATCH v4 7/7] net: wwan: t9xx: Add maintainers entry
From: Jack Wu via B4 Relay @ 2026-07-09 10:53 UTC (permalink / raw)
  To: Loic Poulain, Sergey Ryazanov, Johannes Berg, Andrew Lunn,
	David S. Miller, Eric Dumazet, Jakub Kicinski, Paolo Abeni,
	Jack Wu, Wen-Zhi Huang, Shi-Wei Yeh, Minano Tseng,
	Matthias Brugger, AngeloGioacchino Del Regno, Simon Horman,
	Jonathan Corbet, Shuah Khan
  Cc: linux-kernel, netdev, linux-arm-kernel, linux-mediatek, linux-doc
In-Reply-To: <20260709-t9xx_driver_v1-v4-0-a8c009d509c5@compal.com>

From: Jack Wu <jackbb_wu@compal.com>

Add MAINTAINERS entry for the MediaTek T9XX 5G WWAN modem device
driver.

Signed-off-by: Jack Wu <jackbb_wu@compal.com>
---
 MAINTAINERS | 9 +++++++++
 1 file changed, 9 insertions(+)

diff --git a/MAINTAINERS b/MAINTAINERS
index 461a3eed6129..8155d26bff03 100644
--- a/MAINTAINERS
+++ b/MAINTAINERS
@@ -16494,6 +16494,15 @@ L:	netdev@vger.kernel.org
 S:	Supported
 F:	drivers/net/wwan/t7xx/
 
+MEDIATEK T9XX 5G WWAN MODEM DRIVER
+M:	Jack Wu <jackbb_wu@compal.com>
+R:	Wen-Zhi Huang <wen-zhi.huang@mediatek.com>
+R:	Shi-Wei Yeh <shi-wei.yeh@mediatek.com>
+R:	Minano Tseng <Minano.tseng@mediatek.com>
+L:	netdev@vger.kernel.org
+S:	Supported
+F:	drivers/net/wwan/t9xx/
+
 MEDIATEK USB3 DRD IP DRIVER
 M:	Chunfeng Yun <chunfeng.yun@mediatek.com>
 L:	linux-usb@vger.kernel.org

-- 
2.34.1



^ permalink raw reply related

* [PATCH v4 5/7] net: wwan: t9xx: Add FSM thread
From: Jack Wu via B4 Relay @ 2026-07-09 10:53 UTC (permalink / raw)
  To: Loic Poulain, Sergey Ryazanov, Johannes Berg, Andrew Lunn,
	David S. Miller, Eric Dumazet, Jakub Kicinski, Paolo Abeni,
	Jack Wu, Wen-Zhi Huang, Shi-Wei Yeh, Minano Tseng,
	Matthias Brugger, AngeloGioacchino Del Regno, Simon Horman,
	Jonathan Corbet, Shuah Khan
  Cc: linux-kernel, netdev, linux-arm-kernel, linux-mediatek, linux-doc
In-Reply-To: <20260709-t9xx_driver_v1-v4-0-a8c009d509c5@compal.com>

From: Jack Wu <jackbb_wu@compal.com>

The FSM (Finite-state Machine) thread is responsible for
synchronizing the actions of different modules. The
asynchronous events from the device or the OS will trigger
a state transition.

The FSM thread will append it to the event queue when an
event arrives. It handles the events sequentially. After
processing the event, the FSM thread notifies other modules
before and after the state transition.

Seven FSM states are defined. They can transition from one
state to another, self-transition in some states, and
transition in some sub-states.

Signed-off-by: Jack Wu <jackbb_wu@compal.com>
---
 drivers/net/wwan/t9xx/Makefile                  |   3 +-
 drivers/net/wwan/t9xx/mtk_ctrl_plane.c          |  46 ++
 drivers/net/wwan/t9xx/mtk_ctrl_plane.h          |   2 +
 drivers/net/wwan/t9xx/mtk_dev.h                 |   1 +
 drivers/net/wwan/t9xx/mtk_fsm.c                 | 946 ++++++++++++++++++++++++
 drivers/net/wwan/t9xx/mtk_fsm.h                 | 140 ++++
 drivers/net/wwan/t9xx/mtk_port.c                |  65 ++
 drivers/net/wwan/t9xx/mtk_port.h                |   2 +
 drivers/net/wwan/t9xx/mtk_utility.h             |  33 +
 drivers/net/wwan/t9xx/pcie/mtk_cldma.c          | 222 +++++-
 drivers/net/wwan/t9xx/pcie/mtk_cldma.h          |   3 +
 drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.h      |   3 -
 drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.c |   7 +-
 drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.h |   2 -
 drivers/net/wwan/t9xx/pcie/mtk_pci.c            |  16 +-
 drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c     |  10 +
 drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h     |   1 -
 17 files changed, 1486 insertions(+), 16 deletions(-)

diff --git a/drivers/net/wwan/t9xx/Makefile b/drivers/net/wwan/t9xx/Makefile
index db3b1aa1928b..75760b2039dc 100644
--- a/drivers/net/wwan/t9xx/Makefile
+++ b/drivers/net/wwan/t9xx/Makefile
@@ -10,4 +10,5 @@ mtk_t9xx-y := \
 	mtk_dev.o \
 	mtk_ctrl_plane.o \
 	mtk_port.o \
-	mtk_port_io.o
+	mtk_port_io.o \
+	mtk_fsm.o
diff --git a/drivers/net/wwan/t9xx/mtk_ctrl_plane.c b/drivers/net/wwan/t9xx/mtk_ctrl_plane.c
index 6ed47d074556..1d9dc5348240 100644
--- a/drivers/net/wwan/t9xx/mtk_ctrl_plane.c
+++ b/drivers/net/wwan/t9xx/mtk_ctrl_plane.c
@@ -5,10 +5,46 @@
  */
 
 #include <linux/device.h>
+#include <linux/freezer.h>
+#include <linux/kthread.h>
+#include <linux/list.h>
+#include <linux/pm_runtime.h>
+#include <linux/sched.h>
+#include <linux/wait.h>
 
 #include "mtk_ctrl_plane.h"
 #include "mtk_port.h"
 
+#define TAG "CTRL"
+
+static void mtk_ctrl_trans_fsm_state_handler(struct mtk_fsm_param *param,
+					     struct mtk_ctrl_blk *ctrl_blk)
+{
+	struct mtk_md_dev *mdev = ctrl_blk->mdev;
+
+	switch (param->to) {
+	case FSM_STATE_OFF:
+		ctrl_blk->ops->fsm_indication(mdev, param);
+		ctrl_blk->ops->exit(mdev);
+		break;
+	case FSM_STATE_ON:
+		ctrl_blk->ops->init(mdev);
+		fallthrough;
+	default:
+		ctrl_blk->ops->fsm_indication(mdev, param);
+		break;
+	}
+}
+
+static void mtk_ctrl_fsm_state_listener(struct mtk_fsm_param *param, void *data)
+{
+	struct mtk_ctrl_blk *ctrl_blk = data;
+
+	mtk_port_mngr_fsm_state_handler(param, ctrl_blk->port_mngr);
+	mtk_ctrl_trans_fsm_state_handler(param, ctrl_blk);
+	mtk_port_mngr_fsm_state_handler_late(param, ctrl_blk->port_mngr);
+}
+
 /**
  * mtk_ctrl_init() - Initialize the control plane block.
  * @mdev: Pointer to the MTK modem device.
@@ -39,8 +75,17 @@ int mtk_ctrl_init(struct mtk_md_dev *mdev, struct mtk_ctrl_hif_ops *ops, struct
 	if (err)
 		goto err_free_mem;
 
+	err = mtk_fsm_notifier_register(mdev, MTK_USER_CTRL, mtk_ctrl_fsm_state_listener,
+					ctrl_blk, FSM_PRIO_1, false);
+	if (err) {
+		dev_err(mdev->dev, "Fail to register fsm notification(ret = %d)\n", err);
+		goto err_port_exit;
+	}
+
 	return 0;
 
+err_port_exit:
+	mtk_port_mngr_exit(ctrl_blk);
 err_free_mem:
 	return err;
 }
@@ -56,6 +101,7 @@ void mtk_ctrl_exit(struct mtk_md_dev *mdev)
 {
 	struct mtk_ctrl_blk *ctrl_blk = mdev->ctrl_blk;
 
+	mtk_fsm_notifier_unregister(mdev, MTK_USER_CTRL);
 	mtk_port_mngr_exit(ctrl_blk);
 	mdev->ctrl_blk = NULL;
 }
diff --git a/drivers/net/wwan/t9xx/mtk_ctrl_plane.h b/drivers/net/wwan/t9xx/mtk_ctrl_plane.h
index d7fcccde8a1b..92817e92a2e4 100644
--- a/drivers/net/wwan/t9xx/mtk_ctrl_plane.h
+++ b/drivers/net/wwan/t9xx/mtk_ctrl_plane.h
@@ -10,6 +10,7 @@
 #include <linux/skbuff.h>
 
 #include "mtk_dev.h"
+#include "mtk_fsm.h"
 
 #define Q_MTU_2K			(0x800)
 #define Q_MTU_3_5K			(0xE00)
@@ -62,6 +63,7 @@ struct mtk_ctrl_hif_ops {
 	int (*init)(struct mtk_md_dev *mdev);
 	int (*exit)(struct mtk_md_dev *mdev);
 	int (*submit_skb)(struct mtk_md_dev *mdev, struct sk_buff *skb, bool force_send);
+	void (*fsm_indication)(struct mtk_md_dev *mdev, struct mtk_fsm_param *param);
 	int (*send_cmd)(struct mtk_md_dev *mdev, int cmd, void *data);
 };
 
diff --git a/drivers/net/wwan/t9xx/mtk_dev.h b/drivers/net/wwan/t9xx/mtk_dev.h
index 9843171fe2ae..b4777b7c5d49 100644
--- a/drivers/net/wwan/t9xx/mtk_dev.h
+++ b/drivers/net/wwan/t9xx/mtk_dev.h
@@ -59,6 +59,7 @@ struct mtk_md_dev {
 	u32 hw_ver;
 	char dev_str[MTK_DEV_STR_LEN];
 	struct mtk_ctrl_blk *ctrl_blk;
+	struct mtk_md_fsm *fsm;
 };
 
 static inline u32 mtk_dev_get_dev_state(struct mtk_md_dev *mdev)
diff --git a/drivers/net/wwan/t9xx/mtk_fsm.c b/drivers/net/wwan/t9xx/mtk_fsm.c
new file mode 100644
index 000000000000..daefb7581ce0
--- /dev/null
+++ b/drivers/net/wwan/t9xx/mtk_fsm.c
@@ -0,0 +1,946 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#include <linux/bitfield.h>
+#include <linux/device.h>
+#include <linux/kref.h>
+#include <linux/kthread.h>
+#include <linux/list.h>
+#include <linux/pci.h>
+#include <linux/sched/signal.h>
+#include <linux/skbuff.h>
+#include <linux/wait.h>
+
+#include "mtk_fsm.h"
+#include "mtk_port.h"
+#include "mtk_port_io.h"
+#include "mtk_utility.h"
+
+#define EVT_TF_GATECLOSED (1)
+#define MTK_FSM_INFO_LEN	(64)
+
+#define FSM_HS_START_MASK	(FSM_F_SAP_HS_START | FSM_F_MD_HS_START)
+#define FSM_HS2_DONE_MASK	(FSM_F_SAP_HS2_DONE | FSM_F_MD_HS2_DONE)
+
+#define RTFT_DATA_SIZE		(3 * 1024)
+#define EVT_HANDLER_TIMEOUT	(HZ * 30)
+#define BLOCKING_EVT_TIMEOUT	(2 * EVT_HANDLER_TIMEOUT)
+
+#define REGION_BITMASK		0xF
+#define DEVICE_CFG_SHIFT	24
+#define DEVICE_CFG_REGION_MASK	0x3
+
+enum device_stage {
+	DEV_STAGE_IDLE = 4,
+	DEV_STAGE_MAX
+};
+
+enum device_cfg {
+	DEV_CFG_NORMAL = 0,
+	DEV_CFG_MD_ONLY,
+};
+
+enum runtime_feature_support_type {
+	RTFT_TYPE_NOT_EXIST = 0,
+	RTFT_TYPE_NOT_SUPPORT = 1,
+	RTFT_TYPE_MUST_SUPPORT = 2,
+	RTFT_TYPE_OPTIONAL_SUPPORT = 3,
+	RTFT_TYPE_SUPPORT_BACKWARD_COMPAT = 4,
+};
+
+enum query_runtime_feature_id {
+	QUERY_RTFT_ID_MD_PORT_ENUM = 0,
+	QUERY_RTFT_ID_SAP_PORT_ENUM = 1,
+	QUERY_RTFT_ID_MD_PORT_CFG = 2,
+	QUERY_RTFT_ID_MAX
+};
+
+enum ctrl_msg_id {
+	CTRL_MSG_HS1 = 0,
+	CTRL_MSG_HS2 = 1,
+	CTRL_MSG_HS3 = 2,
+};
+
+struct ctrl_msg_header {
+	__le32 id;
+	__le32 ex_msg;
+	__le32 data_len;
+	u8 reserved[];
+} __packed;
+
+struct runtime_feature_entry {
+	u8 feature_id;
+	struct runtime_feature_info support_info;
+	u8 reserved[2];
+	__le32 data_len;
+	u8 data[];
+};
+
+struct feature_query {
+	__le32 head_pattern;
+	struct runtime_feature_info ft_set[FEATURE_CNT];
+	__le32 tail_pattern;
+};
+
+static int mtk_fsm_send_hs1_msg(struct fsm_hs_info *hs_info)
+{
+	struct ctrl_msg_header *ctrl_msg_h;
+	struct feature_query *ft_query;
+	struct sk_buff *skb;
+	int ret, msg_size;
+
+	msg_size = sizeof(*ctrl_msg_h) + sizeof(*ft_query);
+	skb = __dev_alloc_skb(msg_size, GFP_KERNEL);
+	if (!skb)
+		return -ENOMEM;
+
+	skb_put(skb, msg_size);
+	ctrl_msg_h = (struct ctrl_msg_header *)skb->data;
+	ctrl_msg_h->id = cpu_to_le32(CTRL_MSG_HS1);
+	ctrl_msg_h->ex_msg = 0;
+	ctrl_msg_h->data_len = cpu_to_le32(sizeof(*ft_query));
+
+	ft_query = (struct feature_query *)(skb->data + sizeof(*ctrl_msg_h));
+	ft_query->head_pattern = cpu_to_le32(FEATURE_QUERY_PATTERN);
+	memcpy(ft_query->ft_set, hs_info->query_ft_set, sizeof(hs_info->query_ft_set));
+	ft_query->tail_pattern = cpu_to_le32(FEATURE_QUERY_PATTERN);
+
+	/* send handshake1 message to device */
+	ret = mtk_port_internal_write(hs_info->ctrl_port, skb);
+	if (ret <= 0)
+		return ret;
+
+	return 0;
+}
+
+static int mtk_fsm_feature_set_match(enum runtime_feature_support_type *cur_ft_spt,
+				     struct runtime_feature_info rtft_info_st,
+				     struct runtime_feature_info rtft_info_cfg)
+{
+	int ret = 0;
+
+	switch (FIELD_GET(FEATURE_TYPE, rtft_info_st.feature)) {
+	case RTFT_TYPE_NOT_EXIST:
+		fallthrough;
+	case RTFT_TYPE_NOT_SUPPORT:
+		*cur_ft_spt = RTFT_TYPE_NOT_EXIST;
+		break;
+	case RTFT_TYPE_MUST_SUPPORT:
+		if (FIELD_GET(FEATURE_TYPE, rtft_info_cfg.feature) == RTFT_TYPE_NOT_EXIST ||
+		    FIELD_GET(FEATURE_TYPE, rtft_info_cfg.feature) == RTFT_TYPE_NOT_SUPPORT)
+			ret = -EPROTO;
+		else
+			*cur_ft_spt = RTFT_TYPE_MUST_SUPPORT;
+		break;
+	case RTFT_TYPE_OPTIONAL_SUPPORT:
+		if (FIELD_GET(FEATURE_TYPE, rtft_info_cfg.feature) == RTFT_TYPE_NOT_EXIST ||
+		    FIELD_GET(FEATURE_TYPE, rtft_info_cfg.feature) == RTFT_TYPE_NOT_SUPPORT) {
+			*cur_ft_spt = RTFT_TYPE_NOT_SUPPORT;
+		} else {
+			if (FIELD_GET(FEATURE_VER, rtft_info_st.feature) ==
+			    FIELD_GET(FEATURE_VER, rtft_info_cfg.feature))
+				*cur_ft_spt = RTFT_TYPE_MUST_SUPPORT;
+			else
+				*cur_ft_spt = RTFT_TYPE_NOT_SUPPORT;
+		}
+		break;
+	case RTFT_TYPE_SUPPORT_BACKWARD_COMPAT:
+		if (FIELD_GET(FEATURE_VER, rtft_info_st.feature) >=
+		    FIELD_GET(FEATURE_VER, rtft_info_cfg.feature))
+			*cur_ft_spt = RTFT_TYPE_MUST_SUPPORT;
+		else
+			*cur_ft_spt = RTFT_TYPE_NOT_EXIST;
+		break;
+	default:
+		ret = -EPROTO;
+	}
+
+	return ret;
+}
+
+static int (*query_rtft_action[FEATURE_CNT])(struct mtk_md_dev *mdev, void *rt_data) = {
+	[QUERY_RTFT_ID_MD_PORT_ENUM] = mtk_port_status_update,
+	[QUERY_RTFT_ID_SAP_PORT_ENUM] = mtk_port_status_update,
+};
+
+static int mtk_fsm_parse_hs2_msg(struct fsm_hs_info *hs_info)
+{
+	struct mtk_md_fsm *fsm = container_of(hs_info, struct mtk_md_fsm, hs_info[hs_info->id]);
+	char *rt_data = ((struct sk_buff *)hs_info->rt_data)->data;
+	enum runtime_feature_support_type cur_ft_spt;
+	struct runtime_feature_entry *rtft_entry;
+	unsigned int ft_id, offset, data_len;
+	int ret = 0;
+
+	offset = sizeof(struct feature_query);
+	for (ft_id = 0; ft_id < FEATURE_CNT; ft_id++) {
+		if (offset + sizeof(*rtft_entry) > hs_info->rt_data_len)
+			break;
+
+		rtft_entry = (struct runtime_feature_entry *)(rt_data + offset);
+		ret = mtk_fsm_feature_set_match(&cur_ft_spt,
+						rtft_entry->support_info,
+						hs_info->query_ft_set[ft_id]);
+		if (ret < 0)
+			break;
+
+		if (cur_ft_spt == RTFT_TYPE_MUST_SUPPORT)
+			if (query_rtft_action[ft_id])
+				ret = query_rtft_action[ft_id](fsm->mdev, rtft_entry->data);
+		if (ret < 0)
+			break;
+
+		data_len = le32_to_cpu(rtft_entry->data_len);
+		if (data_len > hs_info->rt_data_len - offset - sizeof(*rtft_entry))
+			break;
+
+		offset += sizeof(*rtft_entry) + data_len;
+	}
+
+	if (ft_id != FEATURE_CNT) {
+		dev_err((fsm->mdev)->dev, "Unable to handle mistake hs2 msg, ft_id=%d\n", ft_id);
+		ret = -EPROTO;
+	}
+
+	return ret;
+}
+
+static int mtk_fsm_append_rtft_entries(struct mtk_md_dev *mdev, void *feature_data,
+				       unsigned int *len, struct fsm_hs_info *hs_info)
+{
+	char *rt_data = ((struct sk_buff *)hs_info->rt_data)->data;
+	struct runtime_feature_entry *rtft_entry;
+	int ft_id, ret = 0, rtdata_len = 0;
+	struct feature_query *ft_query;
+
+	ft_query = (struct feature_query *)rt_data;
+	if (le32_to_cpu(ft_query->head_pattern) != FEATURE_QUERY_PATTERN ||
+	    le32_to_cpu(ft_query->tail_pattern) != FEATURE_QUERY_PATTERN) {
+		ret = -EPROTO;
+		goto hs_err;
+	}
+
+	/* parse runtime feature query and fill runtime feature entry */
+	rtft_entry = feature_data;
+	for (ft_id = 0; ft_id < FEATURE_CNT && rtdata_len < RTFT_DATA_SIZE; ft_id++) {
+		rtft_entry->feature_id = ft_id;
+		rtft_entry->data_len = 0;
+
+		switch (FIELD_GET(FEATURE_TYPE, ft_query->ft_set[ft_id].feature)) {
+		case RTFT_TYPE_NOT_EXIST:
+			fallthrough;
+		case RTFT_TYPE_NOT_SUPPORT:
+			fallthrough;
+		case RTFT_TYPE_MUST_SUPPORT:
+			rtft_entry->support_info = ft_query->ft_set[ft_id];
+			break;
+		case RTFT_TYPE_OPTIONAL_SUPPORT:
+			fallthrough;
+		case RTFT_TYPE_SUPPORT_BACKWARD_COMPAT:
+			rtft_entry->support_info.feature = FEATURE_TYPE_NOT;
+			rtft_entry->support_info.feature |= FEATURE_VER_0;
+			break;
+		}
+
+		rtdata_len += sizeof(*rtft_entry) + le32_to_cpu(rtft_entry->data_len);
+		rtft_entry = (struct runtime_feature_entry *)(feature_data + rtdata_len);
+	}
+	*len = rtdata_len;
+	return 0;
+
+hs_err:
+	*len = 0;
+	return ret;
+}
+
+static int mtk_fsm_send_hs3_msg(struct fsm_hs_info *hs_info)
+{
+	struct mtk_md_fsm *fsm = container_of(hs_info, struct mtk_md_fsm, hs_info[hs_info->id]);
+	unsigned int data_len, msg_size = 0;
+	struct ctrl_msg_header *ctrl_msg_h;
+	struct sk_buff *skb;
+	int ret;
+
+	skb = __dev_alloc_skb(RTFT_DATA_SIZE, GFP_KERNEL);
+	if (!skb)
+		return -ENOMEM;
+
+	msg_size += sizeof(*ctrl_msg_h);
+	ctrl_msg_h = (struct ctrl_msg_header *)skb->data;
+	ctrl_msg_h->id = cpu_to_le32(CTRL_MSG_HS3);
+	ctrl_msg_h->ex_msg = 0;
+	ret = mtk_fsm_append_rtft_entries(fsm->mdev,
+					  skb->data + sizeof(*ctrl_msg_h),
+					  &data_len, hs_info);
+	if (ret) {
+		dev_kfree_skb(skb);
+		return ret;
+	}
+
+	ctrl_msg_h->data_len = cpu_to_le32(data_len);
+	msg_size += data_len;
+	skb_put(skb, msg_size);
+	ret = mtk_port_internal_write(hs_info->ctrl_port, skb);
+	if (ret <= 0)
+		return ret;
+
+	return 0;
+}
+
+static int mtk_fsm_sap_ctrl_msg_handler(void *__fsm, struct sk_buff *skb)
+{
+	struct ctrl_msg_header *ctrl_msg_h;
+	struct mtk_md_fsm *fsm = __fsm;
+	struct fsm_hs_info *hs_info;
+	int ret;
+
+	if (skb->len < sizeof(*ctrl_msg_h)) {
+		dev_kfree_skb(skb);
+		return -EINVAL;
+	}
+
+	ctrl_msg_h = (struct ctrl_msg_header *)skb->data;
+	skb_pull(skb, sizeof(*ctrl_msg_h));
+
+	hs_info = &fsm->hs_info[HS_ID_SAP];
+	if (le32_to_cpu(ctrl_msg_h->id) != CTRL_MSG_HS2) {
+		dev_kfree_skb(skb);
+		return -EPROTO;
+	}
+
+	hs_info->rt_data = skb;
+	hs_info->rt_data_len = skb->len;
+	ret = mtk_fsm_evt_submit(fsm->mdev, FSM_EVT_STARTUP,
+				 hs_info->fsm_flag_hs2, hs_info, sizeof(*hs_info), 0);
+	if (ret == FSM_EVT_RET_FAIL)
+		dev_kfree_skb(skb);
+
+	return 0;
+}
+
+static int mtk_fsm_md_ctrl_msg_handler(void *__fsm, struct sk_buff *skb)
+{
+	struct ctrl_msg_header *ctrl_msg_h;
+	struct mtk_md_fsm *fsm = __fsm;
+	struct fsm_hs_info *hs_info;
+	bool consumed_skb = false;
+	int ret;
+
+	if (skb->len < sizeof(*ctrl_msg_h)) {
+		dev_kfree_skb(skb);
+		return -EINVAL;
+	}
+
+	ctrl_msg_h = (struct ctrl_msg_header *)skb->data;
+	hs_info = &fsm->hs_info[HS_ID_MD];
+	switch (le32_to_cpu(ctrl_msg_h->id)) {
+	case CTRL_MSG_HS2:
+		skb_pull(skb, sizeof(*ctrl_msg_h));
+		hs_info->rt_data = skb;
+		hs_info->rt_data_len = skb->len;
+		ret = mtk_fsm_evt_submit(fsm->mdev, FSM_EVT_STARTUP,
+					 hs_info->fsm_flag_hs2, hs_info, sizeof(*hs_info), 0);
+		if (ret != FSM_EVT_RET_FAIL)
+			consumed_skb = true;
+		break;
+	default:
+		dev_err(fsm->mdev->dev, "Invalid ctrl msg id\n");
+	}
+
+	if (!consumed_skb)
+		dev_kfree_skb(skb);
+
+	return 0;
+}
+
+static int (*ctrl_msg_handler[HS_ID_MAX])(void *__fsm, struct sk_buff *skb) = {
+	[HS_ID_MD] = mtk_fsm_md_ctrl_msg_handler,
+	[HS_ID_SAP] = mtk_fsm_sap_ctrl_msg_handler,
+};
+
+static void mtk_fsm_idle_evt_handler(struct mtk_md_dev *mdev,
+				     u32 dev_state, struct mtk_md_fsm *fsm)
+{
+	u32 dev_cfg = dev_state >> DEVICE_CFG_SHIFT & DEVICE_CFG_REGION_MASK;
+	int hs_id;
+
+	if (dev_cfg == DEV_CFG_MD_ONLY)
+		fsm->hs_done_flag = FSM_F_MD_HS_START | FSM_F_MD_HS2_DONE;
+	else
+		fsm->hs_done_flag = FSM_HS_START_MASK | FSM_HS2_DONE_MASK;
+
+	mtk_fsm_evt_submit(mdev, FSM_EVT_STARTUP, FSM_F_DFLT, NULL, 0, 0);
+
+	for (hs_id = 0; hs_id < HS_ID_MAX; hs_id++)
+		mtk_dev_unmask_dev_evt(mdev, fsm->hs_info[hs_id].mhccif_ch);
+}
+
+static int mtk_fsm_early_bootup_handler(u32 status, void *__fsm)
+{
+	struct mtk_md_fsm *fsm = __fsm;
+	struct mtk_md_dev *mdev;
+	u32 dev_state, dev_stage;
+
+	mdev = fsm->mdev;
+	mtk_dev_mask_dev_evt(mdev, status);
+	mtk_dev_clear_dev_evt(mdev, status);
+
+	dev_state = mtk_dev_get_dev_state(mdev);
+	dev_stage = dev_state & REGION_BITMASK;
+	if (dev_stage >= DEV_STAGE_MAX) {
+		dev_err(mdev->dev, "Invalid dev state 0x%x\n", dev_state);
+		return -ENXIO;
+	}
+
+	if (dev_state == fsm->last_dev_state)
+		goto exit;
+	fsm->last_dev_state = dev_state;
+
+	if (dev_stage == DEV_STAGE_IDLE)
+		mtk_fsm_idle_evt_handler(mdev, dev_state, fsm);
+
+exit:
+	return 0;
+}
+
+static int mtk_fsm_ctrl_ch_start(struct mtk_md_fsm *fsm, struct fsm_hs_info *hs_info, int flag)
+{
+	if (!hs_info->ctrl_port) {
+		hs_info->ctrl_port = mtk_port_internal_open(fsm->mdev, hs_info->port_name, flag);
+		if (!hs_info->ctrl_port) {
+			dev_err(fsm->mdev->dev, "Failed to open ctrl port(%s)\n",
+				hs_info->port_name);
+			return -ENODEV;
+		}
+
+		mtk_port_internal_recv_register(hs_info->ctrl_port,
+						ctrl_msg_handler[hs_info->id], fsm);
+	}
+
+	return 0;
+}
+
+static void mtk_fsm_ctrl_ch_stop(struct mtk_md_fsm *fsm)
+{
+	struct fsm_hs_info *hs_info;
+	int hs_id;
+
+	for (hs_id = 0; hs_id < HS_ID_MAX; hs_id++) {
+		hs_info = &fsm->hs_info[hs_id];
+		if (hs_info->ctrl_port) {
+			mtk_port_internal_close(hs_info->ctrl_port);
+			hs_info->ctrl_port = NULL;
+		}
+	}
+}
+
+static void mtk_fsm_switch_state(struct mtk_md_fsm *fsm,
+				 enum mtk_fsm_state to_state, struct mtk_fsm_evt *event)
+{
+	char fsm_info[MTK_FSM_INFO_LEN];
+	struct mtk_fsm_notifier *nt;
+	struct mtk_fsm_param param;
+
+	param.from = fsm->state;
+	param.to = to_state;
+	param.evt_id = event ? event->id : FSM_EVT_MAX;
+	param.fsm_flag = event ? event->fsm_flag : FSM_F_DFLT;
+
+	list_for_each_entry(nt, &fsm->pre_notifiers, entry)
+		nt->cb(&param, nt->data);
+
+	fsm->state = to_state;
+	fsm->fsm_flag |= event ? event->fsm_flag : FSM_F_DFLT;
+
+	snprintf(fsm_info, MTK_FSM_INFO_LEN,
+		 "state=%d, fsm_flag=0x%x", to_state, fsm->fsm_flag);
+	mtk_uevent_notify(fsm->mdev->dev, MTK_UEVENT_FSM, fsm_info);
+
+	list_for_each_entry(nt, &fsm->post_notifiers, entry)
+		nt->cb(&param, nt->data);
+}
+
+static int mtk_fsm_startup_act(struct mtk_md_fsm *fsm, struct mtk_fsm_evt *event)
+{
+	enum mtk_fsm_state to_state = FSM_STATE_BOOTUP;
+	struct fsm_hs_info *hs_info = event->data;
+	struct mtk_md_dev *mdev = fsm->mdev;
+	int ret = 0;
+
+	if (fsm->state != FSM_STATE_ON && fsm->state != FSM_STATE_BOOTUP) {
+		ret = -EPROTO;
+		goto free_rt_data;
+	}
+
+	if (fsm->state != FSM_STATE_BOOTUP) {
+		mtk_fsm_switch_state(fsm, to_state, event);
+		return 0;
+	}
+
+	if (event->fsm_flag & FSM_HS_START_MASK) {
+		mtk_fsm_switch_state(fsm, to_state, event);
+
+		ret = mtk_fsm_ctrl_ch_start(fsm, hs_info, O_NONBLOCK);
+		if (!ret)
+			ret = mtk_fsm_send_hs1_msg(hs_info);
+		if (ret)
+			goto hs_err;
+	} else if (event->fsm_flag & FSM_HS2_DONE_MASK) {
+		ret = mtk_fsm_parse_hs2_msg(hs_info);
+		if (!ret) {
+			mtk_fsm_switch_state(fsm, to_state, event);
+			ret = mtk_fsm_send_hs3_msg(hs_info);
+		}
+		dev_kfree_skb(hs_info->rt_data);
+		hs_info->rt_data = NULL;
+		if (ret)
+			goto hs_err;
+	}
+
+	if (((fsm->fsm_flag | event->fsm_flag) & fsm->hs_done_flag) == fsm->hs_done_flag) {
+		to_state = FSM_STATE_READY;
+		mtk_fsm_switch_state(fsm, to_state, NULL);
+	}
+
+	return 0;
+
+free_rt_data:
+	if (hs_info && hs_info->rt_data) {
+		dev_kfree_skb(hs_info->rt_data);
+		hs_info->rt_data = NULL;
+	}
+hs_err:
+	dev_err(mdev->dev, "Failed to hs with device %d:0x%x, ret=%d",
+		fsm->state, fsm->fsm_flag, ret);
+	return ret;
+}
+
+static void mtk_fsm_evt_release(struct kref *kref)
+{
+	struct mtk_fsm_evt *event = container_of(kref, struct mtk_fsm_evt, kref);
+
+	kfree(event);
+}
+
+static void mtk_fsm_evt_put(struct mtk_fsm_evt *event)
+{
+	kref_put(&event->kref, mtk_fsm_evt_release);
+}
+
+static void mtk_fsm_evt_finish(struct mtk_md_fsm *fsm,
+			       struct mtk_fsm_evt *event, int retval)
+{
+	if (event->mode & EVT_MODE_BLOCKING) {
+		event->status = retval;
+		wake_up(&fsm->evt_waitq);
+	}
+	mtk_fsm_evt_put(event);
+}
+
+static void mtk_fsm_evt_cleanup(struct mtk_md_fsm *fsm, struct list_head *evtq)
+{
+	struct mtk_fsm_evt *event, *tmp;
+
+	list_for_each_entry_safe(event, tmp, evtq, entry) {
+		list_del(&event->entry);
+		mtk_fsm_evt_finish(fsm, event, FSM_EVT_RET_FAIL);
+	}
+}
+
+static int mtk_fsm_enter_off_state(struct mtk_md_fsm *fsm, struct mtk_fsm_evt *event)
+{
+	struct mtk_md_dev *mdev = fsm->mdev;
+	int hs_id;
+
+	if (fsm->state == FSM_STATE_OFF || fsm->state == FSM_STATE_INVALID)
+		return -EPROTO;
+
+	mtk_dev_mask_dev_evt(mdev, DEV_EVT_D2H_BOOT_FLOW_SYNC);
+	for (hs_id = 0; hs_id < HS_ID_MAX; hs_id++)
+		mtk_dev_mask_dev_evt(mdev, fsm->hs_info[hs_id].mhccif_ch);
+
+	mtk_fsm_ctrl_ch_stop(fsm);
+	mtk_fsm_switch_state(fsm, FSM_STATE_OFF, event);
+
+	return 0;
+}
+
+static int mtk_fsm_dev_rm_act(struct mtk_md_fsm *fsm, struct mtk_fsm_evt *event)
+{
+	unsigned long flags;
+
+	spin_lock_irqsave(&fsm->evtq_lock, flags);
+	set_bit(EVT_TF_GATECLOSED, &fsm->t_flag);
+	mtk_fsm_evt_cleanup(fsm, &fsm->evtq);
+	spin_unlock_irqrestore(&fsm->evtq_lock, flags);
+
+	return mtk_fsm_enter_off_state(fsm, event);
+}
+
+static int mtk_fsm_hs1_handler(u32 status, void *__hs_info)
+{
+	struct fsm_hs_info *hs_info = __hs_info;
+	struct mtk_md_dev *mdev;
+	struct mtk_md_fsm *fsm;
+
+	fsm = container_of(hs_info, struct mtk_md_fsm, hs_info[hs_info->id]);
+	mdev = fsm->mdev;
+	mtk_fsm_evt_submit(mdev, FSM_EVT_STARTUP,
+			   hs_info->fsm_flag_hs1, hs_info, sizeof(*hs_info), 0);
+	mtk_dev_mask_dev_evt(mdev, hs_info->mhccif_ch);
+	mtk_dev_clear_dev_evt(mdev, hs_info->mhccif_ch);
+
+	return 0;
+}
+
+static void mtk_fsm_hs_info_init_by_hsid(struct mtk_md_fsm *fsm, int hs_id)
+{
+	struct fsm_hs_info *hs_info;
+
+	if (hs_id < 0 || hs_id >= HS_ID_MAX) {
+		dev_warn((fsm->mdev)->dev, "hs_id = %d, invalid.\n", hs_id);
+		return;
+	}
+
+	hs_info = &fsm->hs_info[hs_id];
+	hs_info->id = hs_id;
+	hs_info->ctrl_port = NULL;
+	hs_info->rt_data = NULL;
+	switch (hs_id) {
+	case HS_ID_MD:
+		snprintf(hs_info->port_name, PORT_NAME_LEN, "MDCTRL");
+		hs_info->mhccif_ch = DEV_EVT_D2H_ASYNC_HS_NOTIFY_MD;
+		hs_info->fsm_flag_hs1 = FSM_F_MD_HS_START;
+		hs_info->fsm_flag_hs2 = FSM_F_MD_HS2_DONE;
+		hs_info->query_ft_set[QUERY_RTFT_ID_MD_PORT_ENUM].feature =
+			FIELD_PREP(FEATURE_TYPE, RTFT_TYPE_MUST_SUPPORT);
+		hs_info->query_ft_set[QUERY_RTFT_ID_MD_PORT_ENUM].feature |=
+			FIELD_PREP(FEATURE_VER, 0);
+		hs_info->query_ft_set[QUERY_RTFT_ID_MD_PORT_CFG].feature =
+			FIELD_PREP(FEATURE_TYPE, RTFT_TYPE_NOT_SUPPORT);
+		break;
+	case HS_ID_SAP:
+		snprintf(hs_info->port_name, PORT_NAME_LEN, "SAPCTRL");
+		hs_info->mhccif_ch = DEV_EVT_D2H_ASYNC_HS_NOTIFY_SAP;
+		hs_info->fsm_flag_hs1 = FSM_F_SAP_HS_START;
+		hs_info->fsm_flag_hs2 = FSM_F_SAP_HS2_DONE;
+		hs_info->query_ft_set[QUERY_RTFT_ID_SAP_PORT_ENUM].feature =
+			FIELD_PREP(FEATURE_TYPE, RTFT_TYPE_MUST_SUPPORT);
+		hs_info->query_ft_set[QUERY_RTFT_ID_SAP_PORT_ENUM].feature |=
+			FIELD_PREP(FEATURE_VER, 0);
+		break;
+	}
+}
+
+static void mtk_fsm_hs_info_init(struct mtk_md_fsm *fsm)
+{
+	struct mtk_md_dev *mdev = fsm->mdev;
+	struct fsm_hs_info *hs_info;
+	int hs_id;
+
+	for (hs_id = 0; hs_id < HS_ID_MAX; hs_id++) {
+		mtk_fsm_hs_info_init_by_hsid(fsm, hs_id);
+		hs_info = &fsm->hs_info[hs_id];
+		mtk_dev_register_dev_evt(mdev, hs_info->mhccif_ch,
+					 mtk_fsm_hs1_handler, hs_info);
+	}
+}
+
+static void mtk_fsm_hs_info_exit(struct mtk_md_fsm *fsm)
+{
+	struct mtk_md_dev *mdev = fsm->mdev;
+	struct fsm_hs_info *hs_info;
+	int hs_id;
+
+	for (hs_id = 0; hs_id < HS_ID_MAX; hs_id++) {
+		hs_info = &fsm->hs_info[hs_id];
+		mtk_dev_unregister_dev_evt(mdev, hs_info->mhccif_ch);
+	}
+}
+
+static int mtk_fsm_dev_add_act(struct mtk_md_fsm *fsm, struct mtk_fsm_evt *event)
+{
+	if (fsm->state != FSM_STATE_OFF && fsm->state != FSM_STATE_INVALID)
+		return -EPROTO;
+
+	mtk_fsm_switch_state(fsm, FSM_STATE_ON, event);
+	mtk_dev_unmask_dev_evt(fsm->mdev, DEV_EVT_D2H_BOOT_FLOW_SYNC);
+
+	return 0;
+}
+
+static int (*evts_act_tbl[FSM_EVT_MAX])(struct mtk_md_fsm *__fsm, struct mtk_fsm_evt *event) = {
+	[FSM_EVT_STARTUP] = mtk_fsm_startup_act,
+	[FSM_EVT_DEV_RM] = mtk_fsm_dev_rm_act,
+	[FSM_EVT_DEV_ADD] = mtk_fsm_dev_add_act,
+};
+
+int mtk_fsm_start(struct mtk_md_dev *mdev)
+{
+	struct mtk_md_fsm *fsm = mdev->fsm;
+
+	if (!fsm)
+		return -EINVAL;
+
+	if (!fsm->fsm_handler)
+		return -EFAULT;
+
+	wake_up_process(fsm->fsm_handler);
+	return 0;
+}
+EXPORT_SYMBOL(mtk_fsm_start);
+
+static void mkt_fsm_notifier_cleanup(struct mtk_md_dev *mdev, struct list_head *ntq)
+{
+	struct mtk_fsm_notifier *nt, *tmp;
+
+	list_for_each_entry_safe(nt, tmp, ntq, entry) {
+		list_del(&nt->entry);
+		dev_warn(mdev->dev, "Having to free notifier(%d) by FSM!\n", nt->id);
+		kfree(nt);
+	}
+}
+
+static void mtk_fsm_notifier_insert(struct mtk_fsm_notifier *notifier, struct list_head *head)
+{
+	struct mtk_fsm_notifier *nt;
+
+	list_for_each_entry(nt, head, entry) {
+		if (notifier->prio > nt->prio) {
+			list_add(&notifier->entry, nt->entry.prev);
+			return;
+		}
+	}
+	list_add_tail(&notifier->entry, head);
+}
+
+int mtk_fsm_notifier_register(struct mtk_md_dev *mdev, enum mtk_user_id id,
+			      void (*cb)(struct mtk_fsm_param *, void *data),
+			      void *data, enum mtk_fsm_prio prio, bool is_pre)
+{
+	struct mtk_md_fsm *fsm = mdev->fsm;
+	struct mtk_fsm_notifier *notifier;
+
+	if (!fsm)
+		return -EINVAL;
+
+	if (id >= MTK_USER_MAX || !cb || prio >= FSM_PRIO_MAX)
+		return -EINVAL;
+
+	notifier = kzalloc_obj(*notifier);
+	if (!notifier)
+		return -ENOMEM;
+
+	INIT_LIST_HEAD(&notifier->entry);
+	notifier->id = id;
+	notifier->cb = cb;
+	notifier->data = data;
+	notifier->prio = prio;
+
+	if (is_pre)
+		mtk_fsm_notifier_insert(notifier, &fsm->pre_notifiers);
+	else
+		mtk_fsm_notifier_insert(notifier, &fsm->post_notifiers);
+
+	return 0;
+}
+EXPORT_SYMBOL(mtk_fsm_notifier_register);
+
+int mtk_fsm_notifier_unregister(struct mtk_md_dev *mdev, enum mtk_user_id id)
+{
+	struct mtk_md_fsm *fsm = mdev->fsm;
+	struct mtk_fsm_notifier *nt, *tmp;
+
+	if (!fsm)
+		return -EINVAL;
+
+	list_for_each_entry_safe(nt, tmp, &fsm->pre_notifiers, entry) {
+		if (nt->id == id) {
+			list_del(&nt->entry);
+			kfree(nt);
+			break;
+		}
+	}
+	list_for_each_entry_safe(nt, tmp, &fsm->post_notifiers, entry) {
+		if (nt->id == id) {
+			list_del(&nt->entry);
+			kfree(nt);
+			break;
+		}
+	}
+	return 0;
+}
+EXPORT_SYMBOL(mtk_fsm_notifier_unregister);
+
+int mtk_fsm_evt_submit(struct mtk_md_dev *mdev,
+		       enum mtk_fsm_evt_id id, enum mtk_fsm_flag flag,
+		       void *data, unsigned int len, unsigned char mode)
+{
+	struct mtk_md_fsm *fsm = mdev->fsm;
+	struct mtk_fsm_evt *event;
+	unsigned long flags;
+	int ret = 0;
+
+	if (!fsm || id >= FSM_EVT_MAX) {
+		dev_err(mdev->dev, "Invalid param!\n");
+		return FSM_EVT_RET_FAIL;
+	}
+
+	if (test_bit(EVT_TF_GATECLOSED, &fsm->t_flag)) {
+		dev_err(mdev->dev, "Failed to submit evt, fsm has been removed!\n");
+		return FSM_EVT_RET_FAIL;
+	}
+
+	event = kzalloc(sizeof(*event),
+			(in_hardirq() || in_softirq() || irqs_disabled()) ?
+			GFP_ATOMIC : GFP_KERNEL);
+	if (!event)
+		return FSM_EVT_RET_FAIL;
+
+	kref_init(&event->kref);
+	event->mdev = mdev;
+	event->id = id;
+	event->fsm_flag = flag;
+	event->status = FSM_EVT_RET_ONGOING;
+	event->data = data;
+	event->len = len;
+	event->mode = mode;
+
+	spin_lock_irqsave(&fsm->evtq_lock, flags);
+	if (test_bit(EVT_TF_GATECLOSED, &fsm->t_flag)) {
+		spin_unlock_irqrestore(&fsm->evtq_lock, flags);
+		mtk_fsm_evt_put(event);
+		dev_err(mdev->dev, "Failed to add event, fsm dev has been removed!\n");
+		return FSM_EVT_RET_FAIL;
+	}
+
+	kref_get(&event->kref);
+	if (mode & EVT_MODE_TOHEAD)
+		list_add(&event->entry, &fsm->evtq);
+	else
+		list_add_tail(&event->entry, &fsm->evtq);
+	spin_unlock_irqrestore(&fsm->evtq_lock, flags);
+
+	wake_up_process(fsm->fsm_handler);
+	if (mode & EVT_MODE_BLOCKING) {
+		ret = wait_event_timeout(fsm->evt_waitq,
+					 (event->status != 0), BLOCKING_EVT_TIMEOUT);
+		if (!ret && event->status != FSM_EVT_RET_DONE) {
+			dev_err(mdev->dev, "Handling fsm blocking event timeout!\n");
+			ret = -ETIMEDOUT;
+		} else {
+			ret = event->status;
+		}
+	}
+	mtk_fsm_evt_put(event);
+
+	return ret;
+}
+EXPORT_SYMBOL(mtk_fsm_evt_submit);
+
+static int mtk_fsm_evt_handler(void *__fsm)
+{
+	struct mtk_md_fsm *fsm = __fsm;
+	struct mtk_fsm_evt *event;
+	unsigned long flags;
+	int ret;
+
+wake_up:
+	set_current_state(TASK_UNINTERRUPTIBLE);
+	while (!kthread_should_stop() && !list_empty(&fsm->evtq)) {
+		set_current_state(TASK_RUNNING);
+		spin_lock_irqsave(&fsm->evtq_lock, flags);
+		event = list_first_entry(&fsm->evtq, struct mtk_fsm_evt, entry);
+		list_del(&event->entry);
+		spin_unlock_irqrestore(&fsm->evtq_lock, flags);
+
+		if (event->id < FSM_EVT_MAX) {
+			ret = evts_act_tbl[event->id](fsm, event);
+			if (ret) {
+				dev_err((fsm->mdev)->dev,
+					"Failed to handle evt, fsm state = %d, ret = %d\n",
+					fsm->state, ret);
+				mtk_fsm_evt_finish(fsm, event, FSM_EVT_RET_FAIL);
+			} else {
+				mtk_fsm_evt_finish(fsm, event, FSM_EVT_RET_DONE);
+			}
+		} else {
+			mtk_fsm_evt_finish(fsm, event, FSM_EVT_RET_DONE);
+		}
+	}
+
+	if (kthread_should_stop()) {
+		set_current_state(TASK_RUNNING);
+		return 0;
+	}
+
+	schedule();
+	goto wake_up;
+}
+
+int mtk_fsm_init(struct mtk_md_dev *mdev)
+{
+	struct mtk_md_fsm *fsm;
+	int ret;
+
+	fsm = devm_kzalloc(mdev->dev, sizeof(*fsm), GFP_KERNEL);
+	if (!fsm)
+		return -ENOMEM;
+
+	fsm->fsm_handler = kthread_create(mtk_fsm_evt_handler, fsm, "fsm_evt_thread%d_%s",
+					  mdev->hw_ver, mdev->dev_str);
+	if (IS_ERR(fsm->fsm_handler)) {
+		ret = PTR_ERR(fsm->fsm_handler);
+		goto exit;
+	}
+
+	fsm->mdev = mdev;
+	fsm->state = FSM_STATE_INVALID;
+	fsm->fsm_flag = FSM_F_DFLT;
+
+	INIT_LIST_HEAD(&fsm->evtq);
+	spin_lock_init(&fsm->evtq_lock);
+	init_waitqueue_head(&fsm->evt_waitq);
+
+	INIT_LIST_HEAD(&fsm->pre_notifiers);
+	INIT_LIST_HEAD(&fsm->post_notifiers);
+
+	mtk_fsm_hs_info_init(fsm);
+	mtk_dev_register_dev_evt(mdev, DEV_EVT_D2H_BOOT_FLOW_SYNC,
+				 mtk_fsm_early_bootup_handler, fsm);
+	mdev->fsm = fsm;
+	return 0;
+exit:
+	return ret;
+}
+EXPORT_SYMBOL(mtk_fsm_init);
+
+int mtk_fsm_exit(struct mtk_md_dev *mdev)
+{
+	struct mtk_md_fsm *fsm = mdev->fsm;
+	unsigned long flags;
+
+	if (!fsm)
+		return -EINVAL;
+
+	if (fsm->fsm_handler) {
+		kthread_stop(fsm->fsm_handler);
+		fsm->fsm_handler = NULL;
+	}
+
+	spin_lock_irqsave(&fsm->evtq_lock, flags);
+	if (WARN_ON(!list_empty(&fsm->evtq)))
+		mtk_fsm_evt_cleanup(fsm, &fsm->evtq);
+	spin_unlock_irqrestore(&fsm->evtq_lock, flags);
+
+	mkt_fsm_notifier_cleanup(mdev, &fsm->pre_notifiers);
+	mkt_fsm_notifier_cleanup(mdev, &fsm->post_notifiers);
+
+	mtk_dev_unregister_dev_evt(mdev, DEV_EVT_D2H_BOOT_FLOW_SYNC);
+	mtk_fsm_hs_info_exit(fsm);
+
+	return 0;
+}
+EXPORT_SYMBOL(mtk_fsm_exit);
diff --git a/drivers/net/wwan/t9xx/mtk_fsm.h b/drivers/net/wwan/t9xx/mtk_fsm.h
new file mode 100644
index 000000000000..f2fc66bcef61
--- /dev/null
+++ b/drivers/net/wwan/t9xx/mtk_fsm.h
@@ -0,0 +1,140 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#ifndef __MTK_FSM_H__
+#define __MTK_FSM_H__
+
+#include "mtk_dev.h"
+
+#define FEATURE_CNT		(64)
+#define FEATURE_QUERY_PATTERN	(0x49434343)
+
+#define FEATURE_TYPE		GENMASK(3, 0)
+#define FEATURE_VER		GENMASK(7, 4)
+
+#define FEATURE_TYPE_NOT	FIELD_PREP(FEATURE_TYPE, RTFT_TYPE_NOT_SUPPORT)
+#define FEATURE_TYPE_MUST	FIELD_PREP(FEATURE_TYPE, RTFT_TYPE_MUST_SUPPORT)
+#define FEATURE_TYPE_OPTIONAL	FIELD_PREP(FEATURE_TYPE, RTFT_TYPE_OPTIONAL_SUPPORT)
+#define FEATURE_VER_0		FIELD_PREP(FEATURE_VER, 0)
+
+#define EVT_MODE_BLOCKING	(0x01)
+#define EVT_MODE_TOHEAD		(0x02)
+
+#define FSM_EVT_RET_FAIL	(-1)
+#define FSM_EVT_RET_ONGOING	(0)
+#define FSM_EVT_RET_DONE	(1)
+
+enum mtk_fsm_flag {
+	FSM_F_DFLT = 0,
+	FSM_F_SAP_HS_START	= BIT(0),
+	FSM_F_SAP_HS2_DONE	= BIT(1),
+	FSM_F_MD_HS_START	= BIT(2),
+	FSM_F_MD_HS2_DONE	= BIT(3),
+};
+
+enum mtk_fsm_state {
+	FSM_STATE_INVALID = 0,
+	FSM_STATE_OFF,
+	FSM_STATE_ON,
+	FSM_STATE_BOOTUP,
+	FSM_STATE_READY,
+};
+
+enum mtk_fsm_evt_id {
+	FSM_EVT_STARTUP = 0,
+	FSM_EVT_DEV_RM,
+	FSM_EVT_DEV_ADD,
+	FSM_EVT_MAX
+};
+
+enum mtk_fsm_prio {
+	FSM_PRIO_0 = 0,
+	FSM_PRIO_1 = 1,
+	FSM_PRIO_MAX
+};
+
+struct mtk_fsm_param {
+	enum mtk_fsm_state from;
+	enum mtk_fsm_state to;
+	enum mtk_fsm_evt_id evt_id;
+	enum mtk_fsm_flag fsm_flag;
+};
+
+#define PORT_NAME_LEN 20
+
+enum handshake_info_id {
+	HS_ID_MD = 0,
+	HS_ID_SAP,
+	HS_ID_MAX
+};
+
+struct runtime_feature_info {
+	u8 feature;
+};
+
+struct fsm_hs_info {
+	unsigned char id;
+	void *ctrl_port;
+	char port_name[PORT_NAME_LEN];
+	unsigned int mhccif_ch;
+	unsigned int fsm_flag_hs1;
+	unsigned int fsm_flag_hs2;
+	/* the feature that the device should support */
+	struct runtime_feature_info query_ft_set[FEATURE_CNT];
+	/* runtime data from device need to be parsed by host */
+	void *rt_data;
+	unsigned int rt_data_len;
+};
+
+struct mtk_md_fsm {
+	struct mtk_md_dev *mdev;
+	struct task_struct *fsm_handler;
+	struct fsm_hs_info hs_info[HS_ID_MAX];
+	unsigned int hs_done_flag;
+	unsigned long t_flag;
+	u32 last_dev_state;
+	enum mtk_fsm_state state;
+	unsigned int fsm_flag;
+	struct list_head evtq;
+	/* protect evtq */
+	spinlock_t evtq_lock;
+	/* waitq for fsm blocking submit */
+	wait_queue_head_t evt_waitq;
+	struct list_head pre_notifiers;
+	struct list_head post_notifiers;
+};
+
+struct mtk_fsm_evt {
+	struct list_head entry;
+	struct kref kref;
+	struct mtk_md_dev *mdev;
+	enum mtk_fsm_evt_id id;
+	unsigned int fsm_flag;
+	int status;
+	unsigned char mode;
+	unsigned int len;
+	void *data;
+};
+
+struct mtk_fsm_notifier {
+	struct list_head entry;
+	enum mtk_user_id id;
+	void (*cb)(struct mtk_fsm_param *param, void *data);
+	void *data;
+	enum mtk_fsm_prio prio;
+};
+
+int mtk_fsm_init(struct mtk_md_dev *mdev);
+int mtk_fsm_exit(struct mtk_md_dev *mdev);
+int mtk_fsm_start(struct mtk_md_dev *mdev);
+int mtk_fsm_notifier_register(struct mtk_md_dev *mdev, enum mtk_user_id id,
+			      void (*cb)(struct mtk_fsm_param *, void *data),
+			      void *data, enum mtk_fsm_prio prio, bool is_pre);
+int mtk_fsm_notifier_unregister(struct mtk_md_dev *mdev, enum mtk_user_id id);
+int mtk_fsm_evt_submit(struct mtk_md_dev *mdev,
+		       enum mtk_fsm_evt_id id, enum mtk_fsm_flag flag,
+		       void *data, unsigned int len, unsigned char mode);
+
+#endif /* __MTK_FSM_H__ */
diff --git a/drivers/net/wwan/t9xx/mtk_port.c b/drivers/net/wwan/t9xx/mtk_port.c
index 06436422133b..5d2819d52883 100644
--- a/drivers/net/wwan/t9xx/mtk_port.c
+++ b/drivers/net/wwan/t9xx/mtk_port.c
@@ -819,6 +819,71 @@ int mtk_port_ch_disable(struct mtk_port *port)
 	return ret;
 }
 
+static void mtk_port_disable(struct mtk_port_mngr *port_mngr)
+{
+	struct mtk_port **ports;
+	int tbl_type;
+	int ret, idx;
+
+	ports = kcalloc(port_mngr->port_cnt, sizeof(struct mtk_port *), GFP_KERNEL);
+	if (!ports)
+		return;
+
+	tbl_type = PORT_TBL_SAP;
+	do {
+		ret = radix_tree_gang_lookup(&port_mngr->port_tbl[tbl_type],
+					     (void **)ports, 0, port_mngr->port_cnt);
+		for (idx = 0; idx < ret; idx++)
+			ports_ops[ports[idx]->info.type]->disable(ports[idx]);
+	} while (++tbl_type < PORT_TBL_MAX);
+	kfree(ports);
+}
+
+void mtk_port_mngr_fsm_state_handler(struct mtk_fsm_param *fsm_param, void *arg)
+{
+	struct mtk_port_mngr *port_mngr;
+
+	if (!fsm_param || !arg)
+		return;
+
+	port_mngr = arg;
+
+	switch (fsm_param->to) {
+	case FSM_STATE_OFF:
+		mtk_port_disable(port_mngr);
+		break;
+	default:
+		break;
+	}
+}
+
+void mtk_port_mngr_fsm_state_handler_late(struct mtk_fsm_param *fsm_param, void *arg)
+{
+	struct mtk_port_mngr *port_mngr;
+	struct mtk_port *port;
+
+	if (!fsm_param || !arg)
+		return;
+
+	port_mngr = arg;
+
+	switch (fsm_param->to) {
+	case FSM_STATE_BOOTUP:
+		if (fsm_param->fsm_flag & FSM_F_MD_HS_START) {
+			port = mtk_port_search_by_id(port_mngr, CCCI_CONTROL_RX);
+			if (port)
+				ports_ops[port->info.type]->enable(port);
+		} else if (fsm_param->fsm_flag & FSM_F_SAP_HS_START) {
+			port = mtk_port_search_by_id(port_mngr, CCCI_SAP_CONTROL_RX);
+			if (port)
+				ports_ops[port->info.type]->enable(port);
+		}
+		break;
+	default:
+		break;
+	}
+}
+
 int mtk_port_mngr_init(struct mtk_ctrl_blk *ctrl_blk, struct mtk_port_cfg *port_cfg, int port_cnt)
 {
 	struct mtk_port_mngr *port_mngr;
diff --git a/drivers/net/wwan/t9xx/mtk_port.h b/drivers/net/wwan/t9xx/mtk_port.h
index bd4291408bc2..a201c0007878 100644
--- a/drivers/net/wwan/t9xx/mtk_port.h
+++ b/drivers/net/wwan/t9xx/mtk_port.h
@@ -152,6 +152,8 @@ int mtk_port_send_data(struct mtk_port *port, void *data);
 int mtk_port_status_update(struct mtk_md_dev *mdev, void *data);
 int mtk_port_ch_enable(struct mtk_port *port);
 int mtk_port_ch_disable(struct mtk_port *port);
+void mtk_port_mngr_fsm_state_handler(struct mtk_fsm_param *fsm_param, void *arg);
+void mtk_port_mngr_fsm_state_handler_late(struct mtk_fsm_param *fsm_param, void *arg);
 int mtk_port_mngr_init(struct mtk_ctrl_blk *ctrl_blk, struct mtk_port_cfg *port_cfg, int port_cnt);
 void mtk_port_mngr_exit(struct mtk_ctrl_blk *ctrl_blk);
 void mtk_port_trb_init(struct mtk_port *port, struct trb *trb, enum mtk_trb_cmd_type cmd,
diff --git a/drivers/net/wwan/t9xx/mtk_utility.h b/drivers/net/wwan/t9xx/mtk_utility.h
new file mode 100644
index 000000000000..b72db3842d2d
--- /dev/null
+++ b/drivers/net/wwan/t9xx/mtk_utility.h
@@ -0,0 +1,33 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#ifndef __MTK_UTILITY_H__
+#define __MTK_UTILITY_H__
+
+#include <linux/device.h>
+#include "mtk_dev.h"
+
+#define MTK_UEVENT_INFO_LEN 128
+
+/* MTK uevent */
+enum mtk_uevent_id {
+	MTK_UEVENT_UNDEF = 0,
+	MTK_UEVENT_FSM = 1,
+	MTK_UEVENT_MINIDUMP = 2,
+	MTK_UEVENT_LOWPOWER = 3,
+	MTK_UEVENT_MAX
+};
+
+static inline void mtk_uevent_notify(struct device *dev, enum mtk_uevent_id id, const char *info)
+{
+	char buf[MTK_UEVENT_INFO_LEN];
+	char *ext[2] = {NULL, NULL};
+
+	snprintf(buf, MTK_UEVENT_INFO_LEN, "%s:event_id=%d, info=%s",
+		 dev->kobj.name, id, info);
+	ext[0] = buf;
+	kobject_uevent_env(&dev->kobj, KOBJ_CHANGE, ext);
+}
+#endif /* __MTK_UTILITY_H__ */
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_cldma.c b/drivers/net/wwan/t9xx/pcie/mtk_cldma.c
index 3bab14d35d78..3ac553b99255 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_cldma.c
+++ b/drivers/net/wwan/t9xx/pcie/mtk_cldma.c
@@ -34,12 +34,172 @@
 #define CLDMA_RETRY_DELAY_MS	(100)
 #define NO_BUDGET		(0)
 
+static struct cldma_drv_info_desc cldma_drv_info_tbl[] = {
+	{0x01CA, &drv_ops_name(m9xx), &cldma_regs_name(m9xx)},
+	{0, NULL},
+};
+
+static void mtk_cldma_get_drv_info(struct cldma_drv_info *drv_info, u32 hw_ver)
+{
+	struct cldma_drv_info_desc *p_drv_info;
+	u8 i;
+
+	for (i = 0; (p_drv_info = &cldma_drv_info_tbl[i]) && p_drv_info &&
+	     p_drv_info->drv_ops && p_drv_info->hw_regs; i++)
+		if (p_drv_info->hw_ver == hw_ver) {
+			drv_info->drv_ops = p_drv_info->drv_ops;
+			drv_info->hw_regs = p_drv_info->hw_regs;
+		}
+}
+
+static int mtk_cldma_isr(int irq_id, void *param)
+{
+	struct cldma_drv_info *drv_info = param;
+	struct mtk_md_dev *mdev;
+	u32 tx_done, rx_done;
+	u32 tx_sta, rx_sta;
+	struct txq *txq;
+	struct rxq *rxq;
+	int i;
+
+	mdev = drv_info->mdev;
+	drv_info->drv_ops->cldma_get_intr_status(drv_info, &tx_sta, &rx_sta);
+	tx_done = (tx_sta >> QUEUE_XFER_DONE) & 0xFF;
+	rx_done = (rx_sta >> QUEUE_XFER_DONE) & 0xFF;
+
+	if (tx_done) {
+		for (i = 0; i < HW_QUEUE_NUM; i++) {
+			txq = drv_info->txq[i];
+			if (!(tx_done & BIT(i)) || !txq)
+				continue;
+			queue_work(drv_info->wq, &txq->tx_done_work);
+		}
+	}
+	if (rx_done) {
+		for (i = 0; i < HW_QUEUE_NUM; i++) {
+			rxq = drv_info->rxq[i];
+			if (!(rx_done & BIT(i)) || !rxq)
+				continue;
+			queue_work(drv_info->wq, &rxq->rx_done_work);
+		}
+	}
+
+	mtk_pci_clear_irq(mdev, drv_info->pci_ext_irq_id);
+	mtk_pci_unmask_irq(mdev, drv_info->pci_ext_irq_id);
+
+	return IRQ_HANDLED;
+}
+
 static const int mtk_cldma_hw_id_tbl[NR_CLDMA] = {
 	[CLDMA0] = CLDMA0_HW_ID,
 	[CLDMA1] = CLDMA1_HW_ID,
-	[CLDMA4] = CLDMA4_HW_ID,
 };
 
+static int mtk_cldma_dev_init(struct cldma_dev *cd, int hif_id)
+{
+	char gpd_pool_name[DMA_POOL_NAME_LEN];
+	char bd_pool_name[DMA_POOL_NAME_LEN];
+	struct cldma_drv_info *drv_info;
+	struct cldma_hw_regs *hw_regs;
+	struct mtk_md_dev *mdev;
+	unsigned int flag;
+	int hw_id, ret;
+
+	if (!cd || hif_id >= NR_CLDMA)
+		return -EINVAL;
+
+	if (cd->cldma_drv_info[hif_id])
+		return 0;
+
+	hw_id = mtk_cldma_hw_id_tbl[hif_id];
+	mdev = cd->trans->mdev;
+	drv_info = kzalloc_obj(*drv_info);
+	if (!drv_info)
+		return -ENOMEM;
+
+	drv_info->cd = cd;
+	drv_info->mdev = mdev;
+	drv_info->hif_id = hif_id;
+	drv_info->hw_id = hw_id;
+	mtk_cldma_get_drv_info(drv_info, mdev->hw_ver);
+
+	if (!drv_info->drv_ops || !drv_info->hw_regs) {
+		dev_err(mdev->dev, "Failed to find CLDMA Driver for PCI %x\n", mdev->hw_ver);
+		ret = -EIO;
+		goto err_free_drv_info;
+	}
+
+	hw_regs = drv_info->hw_regs;
+	snprintf(gpd_pool_name, DMA_POOL_NAME_LEN, "cldma%d_gpd_pool_%s",
+		 hw_id, mdev->dev_str);
+	snprintf(bd_pool_name, DMA_POOL_NAME_LEN, "cldma%d_bd_pool_%s",
+		 hw_id, mdev->dev_str);
+	drv_info->gpd_dma_pool = dma_pool_create(gpd_pool_name, mdev->dev,
+						 sizeof(union gpd), 4, 0);
+	if (!drv_info->gpd_dma_pool) {
+		dev_err(mdev->dev, "Failed to alloc gpd dma pool for cldma%d\n", hw_id);
+		ret = -ENOMEM;
+		goto err_free_drv_info;
+	}
+	drv_info->bd_dma_pool = dma_pool_create(bd_pool_name, mdev->dev,
+						sizeof(union bd), 4, 0);
+	if (!drv_info->bd_dma_pool) {
+		dev_err(mdev->dev, "Failed to alloc bd dma pool for cldma%d\n", hw_id);
+		ret = -ENOMEM;
+		goto err_destroy_gpd_pool;
+	}
+
+	switch (hif_id) {
+	case CLDMA0:
+		drv_info->pci_ext_irq_id = mtk_pci_get_irq_id(mdev, MTK_IRQ_SRC_CLDMA0);
+		drv_info->base_addr = hw_regs->cldma0_base_addr;
+		break;
+	case CLDMA1:
+		drv_info->pci_ext_irq_id = mtk_pci_get_irq_id(mdev, MTK_IRQ_SRC_CLDMA1);
+		drv_info->base_addr = hw_regs->cldma1_base_addr;
+		break;
+	default:
+		ret = -EINVAL;
+		goto err_destroy_dma_pool;
+	}
+
+	flag = WQ_UNBOUND | WQ_MEM_RECLAIM | WQ_HIGHPRI;
+	drv_info->wq = alloc_workqueue("cldma%d_workq_%s", flag, 0, hw_id, mdev->dev_str);
+	if (!drv_info->wq) {
+		dev_err(mdev->dev, "Failed to alloc work queue for cldma%d\n", hw_id);
+		ret = -ENOMEM;
+		goto err_destroy_dma_pool;
+	}
+
+	drv_info->drv_ops->cldma_drv_init(drv_info);
+
+	/* mask/clear PCI CLDMA L1 interrupt */
+	mtk_pci_mask_irq(mdev, drv_info->pci_ext_irq_id);
+	mtk_pci_clear_irq(mdev, drv_info->pci_ext_irq_id);
+
+	/* register CLDMA interrupt handler */
+	ret = mtk_pci_register_irq(mdev, drv_info->pci_ext_irq_id, mtk_cldma_isr, drv_info);
+	if (ret)
+		goto err_destroy_wq;
+
+	/* unmask PCI CLDMA L1 interrupt */
+	mtk_pci_unmask_irq(mdev, drv_info->pci_ext_irq_id);
+
+	cd->cldma_drv_info[hif_id] = drv_info;
+	return 0;
+
+err_destroy_wq:
+	destroy_workqueue(drv_info->wq);
+err_destroy_dma_pool:
+	dma_pool_destroy(drv_info->bd_dma_pool);
+err_destroy_gpd_pool:
+	dma_pool_destroy(drv_info->gpd_dma_pool);
+err_free_drv_info:
+	kfree(drv_info);
+
+	return ret;
+}
+
 static void mtk_cldma_clr_bd_dsc(struct cldma_drv_info *drv_info,
 				 struct bd_dsc *bd_dsc_pool, int nr_bds)
 {
@@ -823,6 +983,7 @@ static void mtk_cldma_rxq_free(struct cldma_drv_info *drv_info, u32 rxqno)
 		if (req->skb) {
 			if (rxq->nr_bds) {
 				skb_shinfo(req->skb)->frag_list = NULL;
+				dev_kfree_skb_any(req->skb);
 			} else {
 				if (req->data_dma_addr)
 					dma_unmap_single(mdev->dev, req->data_dma_addr,
@@ -851,6 +1012,44 @@ static void mtk_cldma_rxq_free(struct cldma_drv_info *drv_info, u32 rxqno)
 	kfree(rxq);
 }
 
+static int mtk_cldma_dev_exit(struct cldma_dev *cd, int hif_id)
+{
+	struct cldma_drv_info *drv_info;
+	struct mtk_md_dev *mdev;
+	int virq_id;
+	int i;
+
+	if (!cd || hif_id >= NR_CLDMA)
+		return -EINVAL;
+
+	if (!cd->cldma_drv_info[hif_id])
+		return 0;
+
+	/* free cldma descriptor */
+	drv_info = cd->cldma_drv_info[hif_id];
+	mdev = cd->trans->mdev;
+	virq_id = mtk_pci_get_virq_id(mdev, drv_info->pci_ext_irq_id);
+	mtk_pci_mask_irq(mdev, drv_info->pci_ext_irq_id);
+	synchronize_irq(virq_id);
+	for (i = 0; i < HW_QUEUE_NUM; i++) {
+		if (drv_info->txq[i])
+			mtk_cldma_txq_free(drv_info, drv_info->txq[i]->txqno);
+		if (drv_info->rxq[i])
+			mtk_cldma_rxq_free(drv_info, drv_info->rxq[i]->rxqno);
+	}
+
+	flush_workqueue(drv_info->wq);
+	destroy_workqueue(drv_info->wq);
+	dma_pool_destroy(drv_info->bd_dma_pool);
+	dma_pool_destroy(drv_info->gpd_dma_pool);
+	mtk_pci_unregister_irq(mdev, drv_info->pci_ext_irq_id);
+
+	kfree(drv_info);
+	cd->cldma_drv_info[hif_id] = NULL;
+
+	return 0;
+}
+
 static int mtk_cldma_start_xfer(struct cldma_drv_info *drv_info, u32 qno)
 {
 	struct cldma_drv_ops *drv_ops;
@@ -1161,6 +1360,27 @@ int mtk_cldma_trb_process(void *dev, struct sk_buff *skb)
 	return trb_act_tbl[trb->cmd](cd, skb);
 }
 
+void mtk_cldma_fsm_state_listener(struct mtk_fsm_param *param, struct mtk_ctrl_trans *trans)
+{
+	struct cldma_dev *cd = trans->dev;
+	int i;
+
+	switch (param->to) {
+	case FSM_STATE_BOOTUP:
+		if (param->fsm_flag & FSM_F_SAP_HS_START)
+			mtk_cldma_dev_init(cd, CLDMA0);
+		else if (param->fsm_flag & FSM_F_MD_HS_START)
+			mtk_cldma_dev_init(cd, CLDMA1);
+		break;
+	case FSM_STATE_OFF:
+		for (i = 0; i < NR_CLDMA; i++)
+			mtk_cldma_dev_exit(cd, i);
+		break;
+	default:
+		break;
+	}
+}
+
 int mtk_cldma_check_ch_cfg(void *dev, struct queue_info *que)
 {
 	struct cldma_drv_info *drv_info;
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_cldma.h b/drivers/net/wwan/t9xx/pcie/mtk_cldma.h
index 74ce4f2f0b30..4686f7b178e5 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_cldma.h
+++ b/drivers/net/wwan/t9xx/pcie/mtk_cldma.h
@@ -167,4 +167,7 @@ int mtk_cldma_check_ch_cfg(void *dev, struct queue_info *que);
 #define drv_ops_name(NAME) cldma_drv_ops_##NAME
 #define cldma_regs_name(NAME) mtk_cldma_regs_##NAME
 
+extern struct cldma_drv_ops cldma_drv_ops_m9xx;
+extern struct cldma_hw_regs mtk_cldma_regs_m9xx;
+
 #endif
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.h b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.h
index 8763c23abf54..6de87b7ffd45 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.h
+++ b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.h
@@ -11,7 +11,6 @@
 #define LINK_ERROR_VAL		(0xFFFFFFFF)
 #define CLDMA0_HW_ID		(0)
 #define CLDMA1_HW_ID		(1)
-#define CLDMA4_HW_ID		(4)
 
 struct cldma_hw_regs {
 	u8 cldma_rx_skb_pool_max_size;
@@ -36,7 +35,6 @@ struct cldma_hw_regs {
 	u16 reg_cldma_l2rimsr0;
 	u16 reg_cldma_l2rimsr1;
 	u16 reg_cldma_int_mask;
-	u16 reg_cldma4_int_mask;
 	u16 reg_cldma_slp_mem_ctl;
 	u16 reg_cldma_busy_mask;
 	u16 reg_cldma_ip_busy_to_pcie_mask;
@@ -58,7 +56,6 @@ struct cldma_hw_regs {
 	u32 rq_err_int_bitmask;
 	u32 cldma0_base_addr;
 	u32 cldma1_base_addr;
-	u32 cldma4_base_addr;
 	u32 rq_active_start_err_int_bitmask;
 	u32 reg_cldma_ul_start_addrl_0;
 	u32 reg_cldma_ul_start_addrh_0;
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.c b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.c
index d9145d146a5c..a59c35fc1577 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.c
+++ b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.c
@@ -34,7 +34,6 @@
 struct cldma_hw_regs mtk_cldma_regs_m9xx = {
 	.cldma0_base_addr = CLDMA0_BASE_ADDR,
 	.cldma1_base_addr = CLDMA1_BASE_ADDR,
-	.cldma4_base_addr = CLDMA4_BASE_ADDR,
 	.cldma_rx_skb_pool_max_size = CLDMA_RX_SKB_POOL_MAX_SIZE,
 	.cldma_rx_skb_reload_threshold = CLDMA_RX_SKB_RELOAD_THRESHOLD,
 	.tq_err_int_offset = TQ_ERR_INT_OFFSET,
@@ -93,7 +92,6 @@ struct cldma_hw_regs mtk_cldma_regs_m9xx = {
 	.reg_cldma_l3risar1 = REG_CLDMA_L3RISAR1,
 	.reg_cldma_ip_busy = REG_CLDMA_IP_BUSY,
 	.reg_cldma_int_mask = REG_CLDMA_INT_EAP_USIP_MASK,
-	.reg_cldma4_int_mask = REG_CLDMA_INT_WF_MASK,
 	.reg_cldma_ip_busy_to_pcie_mask = REG_CLDMA_IP_BUSY_TO_PCIE_MASK,
 	.reg_cldma_ip_busy_to_pcie_mask_set = REG_CLDMA_IP_BUSY_TO_PCIE_MASK_SET,
 	.reg_cldma_ip_busy_to_pcie_mask_clr = REG_CLDMA_IP_BUSY_TO_PCIE_MASK_CLR,
@@ -135,10 +133,7 @@ static void mtk_cldma_drv_init_m9xx(struct cldma_drv_info *drv_info)
 			ALLQ << 24);
 
 	/* enable interrupt to PCIe */
-	if (drv_info->hw_id == CLDMA4_HW_ID)
-		mtk_pci_write32(mdev, base + hw_regs->reg_cldma4_int_mask, 0);
-	else
-		mtk_pci_write32(mdev, base + hw_regs->reg_cldma_int_mask, 0);
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_int_mask, 0);
 
 	/* disable illegal memory check */
 	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_ul_dummy_0, 1);
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.h b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.h
index 2c63c43ff065..f113c4c1068a 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.h
+++ b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.h
@@ -8,7 +8,6 @@
 
 #define CLDMA0_BASE_ADDR				(0x1021C000)
 #define CLDMA1_BASE_ADDR				(0x1021E000)
-#define CLDMA4_BASE_ADDR				(0x10224000)
 
 #define CLDMA_RX_SKB_POOL_MAX_SIZE			(64)
 #define CLDMA_RX_SKB_RELOAD_THRESHOLD			(16)
@@ -80,7 +79,6 @@
 #define REG_CLDMA_L2RIMSR1				(0x0800 + 0x00FC)
 
 #define REG_CLDMA_INT_EAP_USIP_MASK			(0x0800 + 0x011C)
-#define REG_CLDMA_INT_WF_MASK				(0x0800 + 0x0120)
 #define REG_CLDMA_RQ1_GPD_DONE_CNT			(0x0800 + 0x0174)
 #define REG_CLDMA_TQ1_GPD_DONE_CNT			(0x0800 + 0x0184)
 
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_pci.c b/drivers/net/wwan/t9xx/pcie/mtk_pci.c
index b354a33b747c..13cebe23fb4a 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_pci.c
+++ b/drivers/net/wwan/t9xx/pcie/mtk_pci.c
@@ -885,22 +885,34 @@ static int mtk_pci_dev_init(struct mtk_md_dev *mdev)
 {
 	int ret;
 
-	ret = mtk_trans_ctrl_init(mdev);
+	ret = mtk_fsm_init(mdev);
 	if (ret) {
-		dev_err(mdev->dev, "Failed to initialize control plane: %d\n", ret);
+		dev_err(mdev->dev, "Failed to initialize FSM: %d\n", ret);
 		return ret;
 	}
 
+	ret = mtk_trans_ctrl_init(mdev);
+	if (ret)
+		goto free_fsm;
+
 	return 0;
+free_fsm:
+	mtk_fsm_exit(mdev);
+	return ret;
 }
 
 static void mtk_pci_dev_exit(struct mtk_md_dev *mdev)
 {
+	mtk_fsm_evt_submit(mdev, FSM_EVT_DEV_RM, 0, NULL, 0,
+			   EVT_MODE_BLOCKING | EVT_MODE_TOHEAD);
 	mtk_trans_ctrl_exit(mdev);
+	mtk_fsm_exit(mdev);
 }
 
 static int mtk_pci_dev_start(struct mtk_md_dev *mdev)
 {
+	mtk_fsm_evt_submit(mdev, FSM_EVT_DEV_ADD, 0, NULL, 0, 0);
+	mtk_fsm_start(mdev);
 	return 0;
 }
 static const struct mtk_dev_ops pci_hw_ops = {
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c
index 6a0a415a556e..fa36a94014ea 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c
+++ b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c
@@ -455,6 +455,15 @@ static int mtk_pcie_hif_submit_skb(struct mtk_md_dev *mdev, struct sk_buff *skb,
 	return 0;
 }
 
+static void mtk_pcie_hif_fsm_indication(struct mtk_md_dev *mdev, struct mtk_fsm_param *param)
+{
+	struct mtk_ctrl_blk *ctrl_blk = mdev->ctrl_blk;
+	struct mtk_ctrl_trans *trans;
+
+	trans = ctrl_blk->ctrl_hw_priv;
+	mtk_cldma_fsm_state_listener(param, trans);
+}
+
 static int mtk_pcie_hif_cmd_func(struct mtk_md_dev *mdev, int cmd, void *data)
 {
 	struct mtk_ctrl_blk *ctrl_blk = mdev->ctrl_blk;
@@ -482,6 +491,7 @@ static struct mtk_ctrl_hif_ops pcie_ctrl_ops = {
 	.init = mtk_pcie_hif_init,
 	.exit = mtk_pcie_hif_exit,
 	.submit_skb = mtk_pcie_hif_submit_skb,
+	.fsm_indication = mtk_pcie_hif_fsm_indication,
 	.send_cmd = mtk_pcie_hif_cmd_func,
 };
 
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h
index a3ff56ddf86f..4b9c9db6ad71 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h
+++ b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h
@@ -29,7 +29,6 @@
 enum mtk_hif_id {
 	CLDMA0,
 	CLDMA1,
-	CLDMA4,
 	NR_CLDMA
 };
 

-- 
2.34.1



^ permalink raw reply related

* [PATCH v4 6/7] net: wwan: t9xx: Add AT & MBIM WWAN ports
From: Jack Wu via B4 Relay @ 2026-07-09 10:53 UTC (permalink / raw)
  To: Loic Poulain, Sergey Ryazanov, Johannes Berg, Andrew Lunn,
	David S. Miller, Eric Dumazet, Jakub Kicinski, Paolo Abeni,
	Jack Wu, Wen-Zhi Huang, Shi-Wei Yeh, Minano Tseng,
	Matthias Brugger, AngeloGioacchino Del Regno, Simon Horman,
	Jonathan Corbet, Shuah Khan
  Cc: linux-kernel, netdev, linux-arm-kernel, linux-mediatek, linux-doc
In-Reply-To: <20260709-t9xx_driver_v1-v4-0-a8c009d509c5@compal.com>

From: Jack Wu <jackbb_wu@compal.com>

Add AT & MBIM ports to the port infrastructure.
The WWAN initialization method is responsible for creating the
corresponding ports using the WWAN framework infrastructure. The
implemented WWAN port operations are start, stop, tx, tx_blocking
and tx_poll.

Signed-off-by: Jack Wu <jackbb_wu@compal.com>
---
 drivers/net/wwan/t9xx/mtk_port.c               |  26 ++
 drivers/net/wwan/t9xx/mtk_port.h               |  13 +
 drivers/net/wwan/t9xx/mtk_port_io.c            | 336 ++++++++++++++++++++++++-
 drivers/net/wwan/t9xx/mtk_port_io.h            |   5 +
 drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c |   8 +
 5 files changed, 387 insertions(+), 1 deletion(-)

diff --git a/drivers/net/wwan/t9xx/mtk_port.c b/drivers/net/wwan/t9xx/mtk_port.c
index 5d2819d52883..0f37137f127a 100644
--- a/drivers/net/wwan/t9xx/mtk_port.c
+++ b/drivers/net/wwan/t9xx/mtk_port.c
@@ -819,6 +819,29 @@ int mtk_port_ch_disable(struct mtk_port *port)
 	return ret;
 }
 
+static int mtk_port_enable_by_type(struct mtk_port_mngr *port_mngr, int tbl_type)
+{
+	struct mtk_port **ports;
+	int ret, idx;
+
+	if (tbl_type < 0 || tbl_type >= PORT_TBL_MAX)
+		return -EINVAL;
+
+	ports = kcalloc(port_mngr->port_cnt, sizeof(struct mtk_port *), GFP_KERNEL);
+	if (!ports)
+		return -ENOMEM;
+
+	ret = radix_tree_gang_lookup(&port_mngr->port_tbl[tbl_type],
+				     (void **)ports, 0, port_mngr->port_cnt);
+	for (idx = 0; idx < ret; idx++) {
+		if (ports[idx]->enable)
+			ports_ops[ports[idx]->info.type]->enable(ports[idx]);
+	}
+
+	kfree(ports);
+	return 0;
+}
+
 static void mtk_port_disable(struct mtk_port_mngr *port_mngr)
 {
 	struct mtk_port **ports;
@@ -852,6 +875,9 @@ void mtk_port_mngr_fsm_state_handler(struct mtk_fsm_param *fsm_param, void *arg)
 	case FSM_STATE_OFF:
 		mtk_port_disable(port_mngr);
 		break;
+	case FSM_STATE_READY:
+		mtk_port_enable_by_type(port_mngr, PORT_TBL_MD);
+		break;
 	default:
 		break;
 	}
diff --git a/drivers/net/wwan/t9xx/mtk_port.h b/drivers/net/wwan/t9xx/mtk_port.h
index a201c0007878..4846354981d7 100644
--- a/drivers/net/wwan/t9xx/mtk_port.h
+++ b/drivers/net/wwan/t9xx/mtk_port.h
@@ -56,6 +56,10 @@ enum mtk_ccci_ch {
 	/* to MD */
 	CCCI_CONTROL_RX				= 0x2000,
 	CCCI_CONTROL_TX				= 0x2001,
+	CCCI_UART2_RX				= 0x200A,
+	CCCI_UART2_TX				= 0x200C,
+	CCCI_MBIM_RX				= 0x20D0,
+	CCCI_MBIM_TX				= 0x20D1,
 };
 
 enum mtk_port_flag {
@@ -73,6 +77,7 @@ enum mtk_port_tbl {
 
 enum mtk_port_type {
 	PORT_TYPE_INTERNAL,
+	PORT_TYPE_WWAN,
 	PORT_TYPE_MAX
 };
 
@@ -81,6 +86,13 @@ struct mtk_internal_port {
 	int (*recv_cb)(void *arg, struct sk_buff *skb);
 };
 
+struct mtk_wwan_port {
+	/* w_lock protects wwan_port when recv data and disable port at the same time */
+	struct mutex w_lock;
+	int w_type;
+	void *w_port;
+};
+
 struct mtk_port_cfg {
 	enum mtk_ccci_ch tx_ch;
 	enum mtk_ccci_ch rx_ch;
@@ -110,6 +122,7 @@ struct mtk_port {
 	char dev_str[MTK_DEV_STR_LEN];
 	struct mtk_port_mngr *port_mngr;
 	struct mtk_internal_port i_priv;
+	struct mtk_wwan_port w_priv;
 };
 
 struct mtk_port_mngr {
diff --git a/drivers/net/wwan/t9xx/mtk_port_io.c b/drivers/net/wwan/t9xx/mtk_port_io.c
index e3a2de6d2f29..882254b74026 100644
--- a/drivers/net/wwan/t9xx/mtk_port_io.c
+++ b/drivers/net/wwan/t9xx/mtk_port_io.c
@@ -3,6 +3,10 @@
  * Copyright (c) 2022, MediaTek Inc.
  */
 #include <linux/netdevice.h>
+#include <linux/poll.h>
+#include <linux/slab.h>
+#include <linux/wait.h>
+#include <linux/wwan.h>
 
 #include "mtk_port_io.h"
 
@@ -41,6 +45,145 @@ static void mtk_port_struct_init(struct mtk_port *port)
 	init_waitqueue_head(&port->rx_wq);
 }
 
+static int mtk_port_copy_data_from(void *to, union user_buf from, unsigned int len,
+				   unsigned int offset, bool from_user_space)
+{
+	if (from_user_space) {
+		if (copy_from_user(to, from.ubuf + offset, len))
+			return -EINVAL;
+	} else {
+		memcpy(to, from.kbuf + offset, len);
+	}
+
+	return 0;
+}
+
+static int mtk_port_common_write_frag_skb(struct mtk_port *port, struct sk_buff *skb,
+					  union user_buf buf, u32 packet_size,
+					  u32 cur_pos, bool from_user_space)
+{
+	struct sk_buff *frag_skb, *tmp = NULL;
+	u32 frag_size;
+	int ret;
+
+	frag_size = min(packet_size, port->tx_frag_size);
+	ret = mtk_port_copy_data_from(skb_put(skb, frag_size),
+				      buf, frag_size,
+				      cur_pos, from_user_space);
+	if (ret) {
+		dev_err(port->port_mngr->ctrl_blk->mdev->dev,
+			"Failed to copy skb for port(%s)\n", port->info.name);
+		goto err_reset_skb;
+	}
+	cur_pos += frag_size;
+	packet_size -= frag_size;
+	if (!packet_size)
+		return cur_pos;
+
+	while (packet_size > 0) {
+		frag_skb = __dev_alloc_skb(port->tx_mtu, GFP_KERNEL);
+		if (!frag_skb) {
+			ret = -ENOMEM;
+			goto err_free_frag_list;
+		}
+
+		frag_size = min(packet_size, port->tx_frag_size);
+		ret = mtk_port_copy_data_from(skb_put(frag_skb, frag_size),
+					      buf, frag_size,
+					      cur_pos, from_user_space);
+		if (ret) {
+			dev_err(port->port_mngr->ctrl_blk->mdev->dev,
+				"Failed to copy frag_skb for port(%s)\n", port->info.name);
+			dev_kfree_skb_any(frag_skb);
+			goto err_free_frag_list;
+		}
+		skb->data_len += frag_size;
+		skb->len += frag_size;
+		cur_pos += frag_size;
+		packet_size -= frag_size;
+		if (!tmp)
+			skb_shinfo(skb)->frag_list = frag_skb;
+		else
+			tmp->next = frag_skb;
+		tmp = frag_skb;
+	}
+	return cur_pos;
+
+err_free_frag_list:
+	frag_skb = skb_shinfo(skb)->frag_list;
+	while (frag_skb) {
+		tmp = frag_skb->next;
+		frag_skb->next = NULL;
+		dev_kfree_skb_any(frag_skb);
+		frag_skb = tmp;
+	}
+	skb_shinfo(skb)->frag_list = NULL;
+err_reset_skb:
+	skb->data_len = 0;
+	return ret;
+}
+
+static int mtk_port_common_write(struct mtk_port *port, union user_buf buf, unsigned int len,
+				 bool from_user_space)
+{
+	u32 packet_size, left_cnt = len, cur_pos;
+	struct sk_buff *skb;
+	int ret;
+
+	if (len == 0)
+		return -EINVAL;
+
+start_write:
+	ret = mtk_port_status_check(port);
+	if (ret)
+		goto end_write;
+
+	skb = __dev_alloc_skb(port->tx_mtu, GFP_KERNEL);
+	if (!skb) {
+		ret = -ENOMEM;
+		goto end_write;
+	}
+
+	skb_reserve(skb, sizeof(struct mtk_ccci_header));
+
+	packet_size = min_t(u32, left_cnt, port->tx_mtu - sizeof(struct mtk_ccci_header));
+	cur_pos = len - left_cnt;
+	/* Support scatter gather transmission */
+	if (port->tx_mtu > port->tx_frag_size) {
+		ret = mtk_port_common_write_frag_skb(port, skb, buf, packet_size,
+						     cur_pos, from_user_space);
+		if (ret < 0)
+			goto err_free_skb;
+	} else {
+		ret = mtk_port_copy_data_from(skb_put(skb, packet_size),
+					      buf, packet_size,
+					      cur_pos, from_user_space);
+		if (ret) {
+			dev_err(port->port_mngr->ctrl_blk->mdev->dev,
+				"Failed to copy data for port(%s)\n", port->info.name);
+			goto err_free_skb;
+		}
+	}
+
+	ret = mtk_port_send_data(port, skb);
+	if (ret < 0) {
+		if (ret == -EINTR)
+			left_cnt -= packet_size;
+		goto end_write;
+	}
+
+	left_cnt -= ret;
+	if (left_cnt)
+		goto start_write;
+	else
+		goto end_write;
+
+err_free_skb:
+	dev_kfree_skb_any(skb);
+end_write:
+	return (len > left_cnt) ? (len - left_cnt) : ret;
+}
+
 static int mtk_port_internal_init(struct mtk_port *port)
 {
 	mtk_port_struct_init(port);
@@ -101,7 +244,6 @@ static int mtk_port_internal_recv(struct mtk_port *port, struct sk_buff *skb)
 	return ret;
 
 drop_data:
-	dev_kfree_skb_any(skb);
 	return ret;
 }
 
@@ -234,6 +376,198 @@ static const struct port_ops port_internal_ops = {
 	.recv = mtk_port_internal_recv,
 };
 
+static int mtk_port_wwan_open(struct wwan_port *w_port)
+{
+	struct mtk_port *port;
+	int ret;
+
+	port = wwan_port_get_drvdata(w_port);
+	ret = mtk_port_get_locked(port);
+	if (ret)
+		return ret;
+
+	ret = mtk_port_common_open(port);
+	if (ret)
+		mtk_port_put_locked(port);
+
+	return ret;
+}
+
+static void mtk_port_wwan_close(struct wwan_port *w_port)
+{
+	struct mtk_port *port = wwan_port_get_drvdata(w_port);
+
+	mtk_port_common_close(port);
+	mtk_port_put_locked(port);
+}
+
+static int mtk_port_wwan_write(struct wwan_port *w_port, struct sk_buff *skb)
+{
+	struct mtk_port *port = wwan_port_get_drvdata(w_port);
+	union user_buf user_buf;
+	int ret;
+
+	if (unlikely(!skb->len)) {
+		consume_skb(skb);
+		return 0;
+	}
+
+	port->info.flags &= ~PORT_F_BLOCKING;
+	user_buf.kbuf = (void *)skb->data;
+	ret = mtk_port_common_write(port, user_buf, skb->len, false);
+	if (ret < 0)
+		return ret;
+
+	consume_skb(skb);
+	return 0;
+}
+
+static int mtk_port_wwan_write_blocking(struct wwan_port *w_port, struct sk_buff *skb)
+{
+	struct mtk_port *port = wwan_port_get_drvdata(w_port);
+	union user_buf user_buf;
+	int ret;
+
+	if (unlikely(!skb->len)) {
+		consume_skb(skb);
+		return 0;
+	}
+
+	port->info.flags |= PORT_F_BLOCKING;
+	user_buf.kbuf = (void *)skb->data;
+	ret = mtk_port_common_write(port, user_buf, skb->len, false);
+	if (ret < 0)
+		return ret;
+
+	consume_skb(skb);
+	return 0;
+}
+
+static __poll_t mtk_port_wwan_poll(struct wwan_port *w_port, struct file *file,
+				   struct poll_table_struct *poll)
+{
+	struct mtk_port *port = wwan_port_get_drvdata(w_port);
+	union ctrl_hif_cmd_data hif_cmd;
+	struct mtk_ctrl_blk *ctrl_blk;
+	__poll_t mask = 0;
+
+	poll_wait(file, &port->trb_wq, poll);
+	if (mtk_port_status_check(port))
+		return EPOLLERR | EPOLLHUP;
+
+	ctrl_blk = port->port_mngr->ctrl_blk;
+	hif_cmd.rx_ch = port->info.rx_ch;
+	if (!ctrl_blk->ops->send_cmd(ctrl_blk->mdev, HIF_CTRL_CMD_CHECK_TX_FULL, &hif_cmd))
+		mask |= EPOLLOUT | EPOLLWRNORM;
+
+	return mask;
+}
+
+static const struct wwan_port_ops wwan_ops = {
+	.start = mtk_port_wwan_open,
+	.stop = mtk_port_wwan_close,
+	.tx = mtk_port_wwan_write,
+	.tx_blocking = mtk_port_wwan_write_blocking,
+	.tx_poll = mtk_port_wwan_poll,
+};
+
+static int mtk_port_wwan_init(struct mtk_port *port)
+{
+	mtk_port_struct_init(port);
+	port->enable = false;
+
+	mutex_init(&port->w_priv.w_lock);
+
+	switch (port->info.rx_ch) {
+	case CCCI_MBIM_RX:
+		port->w_priv.w_type = WWAN_PORT_MBIM;
+		break;
+	case CCCI_UART2_RX:
+		port->w_priv.w_type = WWAN_PORT_AT;
+		break;
+	default:
+		port->w_priv.w_type = WWAN_PORT_UNKNOWN;
+		break;
+	}
+
+	return 0;
+}
+
+static void mtk_port_wwan_exit(struct mtk_port *port)
+{
+	if (test_bit(PORT_S_ENABLE, &port->status))
+		ports_ops[port->info.type]->disable(port);
+}
+
+static void mtk_port_wwan_enable(struct mtk_port *port)
+{
+	struct mtk_port_mngr *port_mngr;
+	int ret;
+
+	port_mngr = port->port_mngr;
+
+	if (test_bit(PORT_S_ENABLE, &port->status))
+		return;
+
+	ret = mtk_port_ch_enable(port);
+	if (ret && ret != -EBUSY)
+		return;
+
+	port->w_priv.w_port = wwan_create_port(port_mngr->ctrl_blk->mdev->dev,
+					       port->w_priv.w_type,
+					       &wwan_ops, NULL, port);
+	if (IS_ERR(port->w_priv.w_port)) {
+		dev_warn(port_mngr->ctrl_blk->mdev->dev,
+			 "Failed to create wwan port for (%s)\n", port->info.name);
+		port->w_priv.w_port = NULL;
+		mtk_port_ch_disable(port);
+		return;
+	}
+
+	set_bit(PORT_S_WR, &port->status);
+	set_bit(PORT_S_ENABLE, &port->status);
+}
+
+static void mtk_port_wwan_disable(struct mtk_port *port)
+{
+	struct wwan_port *w_port;
+
+	if (!test_and_clear_bit(PORT_S_ENABLE, &port->status))
+		return;
+
+	clear_bit(PORT_S_WR, &port->status);
+	w_port = port->w_priv.w_port;
+	mutex_lock(&port->w_priv.w_lock);
+	port->w_priv.w_port = NULL;
+	mutex_unlock(&port->w_priv.w_lock);
+
+	mtk_port_ch_disable(port);
+	wwan_remove_port(w_port);
+}
+
+static int mtk_port_wwan_recv(struct mtk_port *port, struct sk_buff *skb)
+{
+	mutex_lock(&port->w_priv.w_lock);
+	if (!port->w_priv.w_port) {
+		mutex_unlock(&port->w_priv.w_lock);
+		return -ENXIO;
+	}
+
+	wwan_port_rx(port->w_priv.w_port, skb);
+	mutex_unlock(&port->w_priv.w_lock);
+	return 0;
+}
+
+static const struct port_ops port_wwan_ops = {
+	.init = mtk_port_wwan_init,
+	.exit = mtk_port_wwan_exit,
+	.reset = mtk_port_reset,
+	.enable = mtk_port_wwan_enable,
+	.disable = mtk_port_wwan_disable,
+	.recv = mtk_port_wwan_recv,
+};
+
 const struct port_ops *ports_ops[PORT_TYPE_MAX] = {
 	&port_internal_ops,
+	&port_wwan_ops,
 };
diff --git a/drivers/net/wwan/t9xx/mtk_port_io.h b/drivers/net/wwan/t9xx/mtk_port_io.h
index 0c10e893b7e0..ea92cd22dba0 100644
--- a/drivers/net/wwan/t9xx/mtk_port_io.h
+++ b/drivers/net/wwan/t9xx/mtk_port_io.h
@@ -23,6 +23,11 @@ struct port_ops {
 	int (*recv)(struct mtk_port *port, struct sk_buff *skb);
 };
 
+union user_buf {
+	void __user *ubuf;
+	void *kbuf;
+};
+
 void *mtk_port_internal_open(struct mtk_md_dev *mdev, char *name, int flag);
 int mtk_port_internal_close(void *i_port);
 int mtk_port_internal_write(void *i_port, struct sk_buff *skb);
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c b/drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c
index 8611561dd67c..aab09cab360c 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c
+++ b/drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c
@@ -16,6 +16,10 @@ static const int mtk_srv_cfg_m9xx[NR_CLDMA][HW_QUE_NUM] = {
 
 /* the number of RX GPDs should be at last two */
 static const struct queue_info mtk_queue_info_m9xx[] = {
+	{CCCI_UART2_TX, CCCI_UART2_RX, CLDMA1, TXQ(5), RXQ(5),
+	 Q_MTU_3_5K, Q_MTU_3_5K, TX_GPD_NUM, RX_GPD_NUM, Q_FRAG_3_5K, Q_FRAG_3_5K, 0},
+	{CCCI_MBIM_TX, CCCI_MBIM_RX, CLDMA1, TXQ(2), RXQ(2),
+	 Q_MTU_3_5K, Q_MTU_3_5K, TX_GPD_NUM, RX_GPD_NUM, Q_FRAG_3_5K, Q_FRAG_3_5K, 0},
 	{CCCI_CONTROL_TX, CCCI_CONTROL_RX, CLDMA1, TXQ(0), RXQ(0),
 	 Q_MTU_3_5K, Q_MTU_3_5K, TX_GPD_NUM, RX_GPD_NUM, Q_FRAG_3_5K, Q_FRAG_3_5K, 0},
 	{CCCI_SAP_CONTROL_TX, CCCI_SAP_CONTROL_RX, CLDMA0, TXQ(0), RXQ(0),
@@ -23,6 +27,10 @@ static const struct queue_info mtk_queue_info_m9xx[] = {
 };
 
 static const struct mtk_port_cfg port_cfg_m9xx[] = {
+	{CCCI_UART2_TX, CCCI_UART2_RX, PORT_TYPE_WWAN, "AT",
+		PORT_F_ALLOW_DROP},
+	{CCCI_MBIM_TX, CCCI_MBIM_RX, PORT_TYPE_WWAN, "MBIM",
+		PORT_F_ALLOW_DROP},
 	{CCCI_CONTROL_TX, CCCI_CONTROL_RX, PORT_TYPE_INTERNAL, "MDCTRL",
 		PORT_F_ALLOW_DROP},
 	{CCCI_SAP_CONTROL_TX, CCCI_SAP_CONTROL_RX, PORT_TYPE_INTERNAL, "SAPCTRL",

-- 
2.34.1



^ permalink raw reply related

* [PATCH v4 3/7] net: wwan: t9xx: Add control DMA interface
From: Jack Wu via B4 Relay @ 2026-07-09 10:53 UTC (permalink / raw)
  To: Loic Poulain, Sergey Ryazanov, Johannes Berg, Andrew Lunn,
	David S. Miller, Eric Dumazet, Jakub Kicinski, Paolo Abeni,
	Jack Wu, Wen-Zhi Huang, Shi-Wei Yeh, Minano Tseng,
	Matthias Brugger, AngeloGioacchino Del Regno, Simon Horman,
	Jonathan Corbet, Shuah Khan
  Cc: linux-kernel, netdev, linux-arm-kernel, linux-mediatek, linux-doc
In-Reply-To: <20260709-t9xx_driver_v1-v4-0-a8c009d509c5@compal.com>

From: Jack Wu <jackbb_wu@compal.com>

Cross Layer Direct Memory Access(CLDMA) is the hardware
interface used by the control plane and designated to
translate data between the host and the device. It supports
8 hardware queues for the device AP and modem respectively.

CLDMA driver uses General Purpose Descriptor (GPD) to
describe transaction information that can be recognized by
CLDMA hardware. Once CLDMA hardware transaction is started,
it would fetch and parse GPD to transfer data correctly.
To facilitate the CLDMA transaction, a GPD ring for each
queue is used. Once the transaction is started, CLDMA
hardware will traverse the GPD ring to transfer data between
the host and the device until no GPD is available.

CLDMA TX flow:
Once a TX service receives the TX data from the port layer,
it uses APIs exported by the CLDMA driver to configure GPD
with the DMA address of TX data. After that, the service
triggers CLDMA to fetch the first available GPD to transfer
data.

CLDMA RX flow:
When there is RX data from the MD, CLDMA hardware asserts an
interrupt to notify the host to fetch data and dispatch it
to FSM (for handshake messages) or the port layer.
After CLDMA opening is finished, All RX GPDs are fulfilled
and ready to receive data from the device.

Signed-off-by: Jack Wu <jackbb_wu@compal.com>
---
 drivers/net/wwan/t9xx/mtk_ctrl_plane.c          |    4 +-
 drivers/net/wwan/t9xx/mtk_ctrl_plane.h          |   52 +-
 drivers/net/wwan/t9xx/pcie/Makefile             |    7 +-
 drivers/net/wwan/t9xx/pcie/mtk_cldma.c          | 1198 +++++++++++++++++++++++
 drivers/net/wwan/t9xx/pcie/mtk_cldma.h          |  170 ++++
 drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.c      |  369 +++++++
 drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.h      |  177 ++++
 drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.c |  183 ++++
 drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.h |  103 ++
 drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c  |   24 +
 drivers/net/wwan/t9xx/pcie/mtk_pci.c            |   39 +
 drivers/net/wwan/t9xx/pcie/mtk_pci_reg.h        |    1 +
 drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c     |  541 ++++++++++
 drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h     |   86 ++
 14 files changed, 2950 insertions(+), 4 deletions(-)

diff --git a/drivers/net/wwan/t9xx/mtk_ctrl_plane.c b/drivers/net/wwan/t9xx/mtk_ctrl_plane.c
index cf6079218e1c..4be699d1ec00 100644
--- a/drivers/net/wwan/t9xx/mtk_ctrl_plane.c
+++ b/drivers/net/wwan/t9xx/mtk_ctrl_plane.c
@@ -11,13 +11,14 @@
 /**
  * mtk_ctrl_init() - Initialize the control plane block.
  * @mdev: Pointer to the MTK modem device.
+ * @ops: HIF operations for the control plane.
  *
  * Allocates and initializes the control plane block
  * associated with @mdev.
  *
  * Return: 0 on success, -ENOMEM on allocation failure.
  */
-int mtk_ctrl_init(struct mtk_md_dev *mdev)
+int mtk_ctrl_init(struct mtk_md_dev *mdev, struct mtk_ctrl_hif_ops *ops)
 {
 	struct mtk_ctrl_blk *ctrl_blk;
 
@@ -27,6 +28,7 @@ int mtk_ctrl_init(struct mtk_md_dev *mdev)
 
 	ctrl_blk->mdev = mdev;
 	mdev->ctrl_blk = ctrl_blk;
+	ctrl_blk->ops = ops;
 
 	return 0;
 }
diff --git a/drivers/net/wwan/t9xx/mtk_ctrl_plane.h b/drivers/net/wwan/t9xx/mtk_ctrl_plane.h
index c141876ef95d..88d71ac92084 100644
--- a/drivers/net/wwan/t9xx/mtk_ctrl_plane.h
+++ b/drivers/net/wwan/t9xx/mtk_ctrl_plane.h
@@ -11,12 +11,60 @@
 
 #include "mtk_dev.h"
 
+enum mtk_trb_cmd_type {
+	TRB_CMD_MIN,
+	TRB_CMD_ENABLE,
+	TRB_CMD_TX,
+	TRB_CMD_DISABLE,
+	TRB_CMD_STOP,
+	TRB_CMD_RECOVER,
+	TRB_CMD_MAX,
+};
+
+enum mtk_hif_dev_ctrl_cmd {
+	HIF_CTRL_CMD_CHECK_TX_FULL,
+};
+
+struct trb_open_priv {
+	u8 log_rg_offset;
+	u32 tx_mtu;
+	u32 rx_mtu;
+	u32 tx_frag_size;
+	u32 rx_frag_size;
+	int (*rx_done)(struct sk_buff *skb, void *priv, bool force_recv);
+};
+
+struct trb {
+	u32 channel_id;
+	enum mtk_trb_cmd_type cmd;
+	int status;
+	struct kref kref;
+	void *priv;
+	int (*trb_complete)(struct sk_buff *skb);
+};
+
+union ctrl_hif_cmd_data {
+	u32 rx_ch;
+};
+
+struct mtk_ctrl_hif_ops {
+	int (*init)(struct mtk_md_dev *mdev);
+	int (*exit)(struct mtk_md_dev *mdev);
+	int (*submit_skb)(struct mtk_md_dev *mdev, struct sk_buff *skb, bool force_send);
+	int (*send_cmd)(struct mtk_md_dev *mdev, int cmd, void *data);
+};
+
+struct mtk_ctrl_cfg;
+struct mtk_ctrl_trans;
+
 struct mtk_ctrl_blk {
 	struct mtk_md_dev *mdev;
-	struct mtk_ctrl_trans *trans;
+	struct mtk_ctrl_hif_ops *ops;
+	void *ctrl_hw_priv;
+	struct mtk_ctrl_cfg *cfg;
 };
 
-int mtk_ctrl_init(struct mtk_md_dev *mdev);
+int mtk_ctrl_init(struct mtk_md_dev *mdev, struct mtk_ctrl_hif_ops *ops);
 void mtk_ctrl_exit(struct mtk_md_dev *mdev);
 
 #endif /* __MTK_CTRL_PLANE_H__ */
diff --git a/drivers/net/wwan/t9xx/pcie/Makefile b/drivers/net/wwan/t9xx/pcie/Makefile
index 7410d1796d27..5252f158b058 100644
--- a/drivers/net/wwan/t9xx/pcie/Makefile
+++ b/drivers/net/wwan/t9xx/pcie/Makefile
@@ -7,4 +7,9 @@ obj-$(CONFIG_MTK_T9XX_PCI) += mtk_t9xx_pcie.o
 
 mtk_t9xx_pcie-y := \
 	mtk_pci_drv_m9xx.o \
-	mtk_pci.o
+	mtk_cldma_drv_m9xx.o \
+	mtk_ctrl_cfg_m9xx.o \
+	mtk_pci.o \
+	mtk_trans_ctrl.o \
+	mtk_cldma.o \
+	mtk_cldma_drv.o
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_cldma.c b/drivers/net/wwan/t9xx/pcie/mtk_cldma.c
new file mode 100644
index 000000000000..3bab14d35d78
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_cldma.c
@@ -0,0 +1,1198 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#include <linux/delay.h>
+#include <linux/device.h>
+#include <linux/dma-mapping.h>
+#include <linux/dmapool.h>
+#include <linux/err.h>
+#include <linux/interrupt.h>
+#include <linux/kdev_t.h>
+#include <linux/kernel.h>
+#include <linux/kthread.h>
+#include <linux/list.h>
+#include <linux/module.h>
+#include <linux/mutex.h>
+#include <linux/netdevice.h>
+#include <linux/sched.h>
+#include <linux/skbuff.h>
+#include <linux/slab.h>
+#include <linux/timer.h>
+#include <linux/wait.h>
+#include <linux/workqueue.h>
+#include "mtk_pci.h"
+#include "mtk_cldma.h"
+#include "mtk_cldma_drv.h"
+#include "mtk_dev.h"
+
+#define cldma_drv_ops_null	NULL
+#define DMA_POOL_NAME_LEN	(64)
+#define WAIT_HWO_ROUND		(10)
+#define WAIT_HWO_TIME		(5)
+#define CLDMA_RETRY_DELAY_MS	(100)
+#define NO_BUDGET		(0)
+
+static const int mtk_cldma_hw_id_tbl[NR_CLDMA] = {
+	[CLDMA0] = CLDMA0_HW_ID,
+	[CLDMA1] = CLDMA1_HW_ID,
+	[CLDMA4] = CLDMA4_HW_ID,
+};
+
+static void mtk_cldma_clr_bd_dsc(struct cldma_drv_info *drv_info,
+				 struct bd_dsc *bd_dsc_pool, int nr_bds)
+{
+	struct bd_dsc *bd_dsc;
+	int i;
+
+	for (i = 0; i < nr_bds; i++) {
+		bd_dsc = bd_dsc_pool + i;
+		dma_unmap_single(drv_info->mdev->dev, bd_dsc->data_dma_addr,
+				 bd_dsc->data_len, DMA_TO_DEVICE);
+		bd_dsc->data_dma_addr = 0;
+		bd_dsc->data_len = 0;
+		if (bd_dsc->bd->tx_bd.bd_flags & CLDMA_BD_FLAG_EOL) {
+			bd_dsc->bd->tx_bd.bd_flags &= ~CLDMA_BD_FLAG_EOL;
+			break;
+		}
+	}
+}
+
+static void mtk_cldma_tx_done_work(struct work_struct *work)
+{
+	struct txq *txq = container_of(work, struct txq, tx_done_work);
+	struct cldma_drv_info *drv_info;
+	struct cldma_drv_ops *drv_ops;
+	struct mtk_ctrl_trans *trans;
+	struct mtk_md_dev *mdev;
+	struct tx_req *req;
+	unsigned int state;
+	struct trb *trb;
+	int i, hif_id;
+	u32 txqno;
+
+	drv_info = txq->drv_info;
+	hif_id = drv_info->hif_id;
+	txqno = txq->txqno;
+	mdev = drv_info->mdev;
+	drv_ops = drv_info->drv_ops;
+	trans = drv_info->cd->trans;
+
+again:
+	for (i = 0; i < txq->nr_gpds; i++) {
+		req = txq->req_pool + txq->free_idx;
+
+		rmb(); /* ensure HWO setup done before HWO read */
+
+		if (!req->data_vm_addr || (req->gpd->tx_gpd.gpd_flags & CLDMA_GPD_FLAG_HWO))
+			break;
+
+		if (txq->nr_bds)
+			mtk_cldma_clr_bd_dsc(drv_info, req->bd_dsc_pool, txq->nr_bds);
+		else
+			dma_unmap_single(mdev->dev, req->data_dma_addr,
+					 req->data_len, DMA_TO_DEVICE);
+
+		trb = (struct trb *)req->skb->cb;
+		trb->status = 0;
+		trb->trb_complete(req->skb);
+
+		req->data_vm_addr = NULL;
+		req->data_dma_addr = 0;
+		req->data_len = 0;
+		req->skb = NULL;
+
+		txq->free_idx = (txq->free_idx + 1) % txq->nr_gpds;
+		if (atomic_fetch_inc(&txq->req_budget) == NO_BUDGET)
+			wake_up(&trans->trb_srv[trans->srv_cfg[hif_id][txqno]]->trb_waitq);
+	}
+
+	state = drv_ops->cldma_check_intr_status(drv_info, DIR_TX, txqno, QUEUE_XFER_DONE);
+	if (state) {
+		if (unlikely(state == LINK_ERROR_VAL))
+			goto out;
+
+		drv_ops->cldma_clr_intr_status(drv_info, DIR_TX, txqno, QUEUE_XFER_DONE);
+
+		cond_resched();
+
+		goto again;
+	}
+
+out:
+	drv_ops->cldma_unmask_intr(drv_info, DIR_TX, txqno, QUEUE_XFER_DONE);
+}
+
+static void mtk_cldma_rx_skb_adjust(struct mtk_md_dev *mdev, struct rxq *rxq,
+				    struct rx_req *req)
+{
+	struct bd_dsc *bd_dsc;
+	int i;
+
+	for (i = 0; i < rxq->nr_bds; i++) {
+		bd_dsc = req->bd_dsc_pool + i;
+		if (bd_dsc->data_dma_addr) {
+			dma_unmap_single(mdev->dev, bd_dsc->data_dma_addr,
+					 req->frag_size, DMA_FROM_DEVICE);
+			bd_dsc->data_dma_addr = 0;
+		}
+		bd_dsc->skb->len = 0;
+		skb_reset_tail_pointer(bd_dsc->skb);
+		skb_put(bd_dsc->skb,
+			min_t(u16, le16_to_cpu(bd_dsc->bd->rx_bd.data_recv_len),
+			      req->frag_size));
+		if (req->skb != bd_dsc->skb) {
+			req->skb->len += bd_dsc->skb->len;
+			req->skb->data_len += bd_dsc->skb->len;
+		}
+		bd_dsc->bd->rx_bd.data_recv_len = 0;
+		bd_dsc->skb = NULL;
+	}
+	if (!rxq->nr_bds) {
+		if (req->data_dma_addr) {
+			dma_unmap_single(mdev->dev, req->data_dma_addr,
+					 req->mtu, DMA_FROM_DEVICE);
+			req->data_dma_addr = 0;
+		}
+		req->skb->len = 0;
+		skb_reset_tail_pointer(req->skb);
+		skb_put(req->skb,
+			min_t(u16, le16_to_cpu(req->gpd->rx_gpd.data_recv_len),
+			      req->mtu));
+	}
+
+	req->gpd->rx_gpd.data_recv_len = 0;
+}
+
+static int mtk_cldma_reload_rx_skb(struct mtk_md_dev *mdev, struct rxq *rxq,
+				   struct rx_req *req)
+{
+	struct sk_buff *tail = NULL;
+	struct bd_dsc *bd_dsc;
+	int nr_bds;
+	int i, ret;
+
+	nr_bds = rxq->nr_bds;
+
+	for (i = 0; i < nr_bds; i++) {
+		bd_dsc = req->bd_dsc_pool + i;
+		bd_dsc->skb = __dev_alloc_skb(req->frag_size, GFP_KERNEL);
+		if (!bd_dsc->skb) {
+			dev_warn_ratelimited(mdev->dev, "Failed to alloc SKB\n");
+			ret = -ENOMEM;
+			goto err_free_skb;
+		}
+		bd_dsc->skb->next = NULL;
+		bd_dsc->data_dma_addr = dma_map_single(mdev->dev, bd_dsc->skb->data,
+						       req->frag_size, DMA_FROM_DEVICE);
+		ret = dma_mapping_error(mdev->dev, bd_dsc->data_dma_addr);
+		if (unlikely(ret)) {
+			dev_warn_ratelimited(mdev->dev, "Failed to map SKB data\n");
+			ret = -EFAULT;
+			goto err_free_skb;
+		}
+		bd_dsc->bd->rx_bd.data_buff_ptr_h =
+			cpu_to_le32((u64)(bd_dsc->data_dma_addr) >> 32);
+		bd_dsc->bd->rx_bd.data_buff_ptr_l =
+			cpu_to_le32(bd_dsc->data_dma_addr);
+		if (tail) {
+			tail->next = bd_dsc->skb;
+			tail = bd_dsc->skb;
+			continue;
+		}
+		if (!req->skb) {
+			req->skb = bd_dsc->skb;
+		} else {
+			skb_shinfo(req->skb)->frag_list = bd_dsc->skb;
+			tail = bd_dsc->skb;
+		}
+	}
+	if (!nr_bds) {
+		req->skb = __dev_alloc_skb(req->mtu, GFP_KERNEL);
+		if (!req->skb) {
+			ret = -ENOMEM;
+			goto err_free_skb;
+		}
+
+		req->data_dma_addr = dma_map_single(mdev->dev, req->skb->data,
+						    req->mtu, DMA_FROM_DEVICE);
+		ret = dma_mapping_error(mdev->dev, req->data_dma_addr);
+		if (unlikely(ret)) {
+			dev_warn_ratelimited(mdev->dev, "Failed to map SKB data\n");
+			ret = -EFAULT;
+			goto err_free_skb;
+		}
+		req->gpd->rx_gpd.data_buff_ptr_h = cpu_to_le32((u64)req->data_dma_addr >> 32);
+		req->gpd->rx_gpd.data_buff_ptr_l = cpu_to_le32(req->data_dma_addr);
+	}
+	return 0;
+
+err_free_skb:
+	if (nr_bds) {
+		if (req->skb)
+			skb_shinfo(req->skb)->frag_list = NULL;
+		for (i = 0; i < nr_bds; i++) {
+			bd_dsc = req->bd_dsc_pool + i;
+			if (!bd_dsc->skb)
+				break;
+			if (!dma_mapping_error(mdev->dev, bd_dsc->data_dma_addr))
+				dma_unmap_single(mdev->dev, bd_dsc->data_dma_addr,
+						 req->frag_size, DMA_FROM_DEVICE);
+			bd_dsc->data_dma_addr = 0;
+			bd_dsc->skb->next = NULL;
+			dev_kfree_skb_any(bd_dsc->skb);
+		}
+	} else {
+		req->data_dma_addr = 0;
+		if (req->skb)
+			dev_kfree_skb_any(req->skb);
+	}
+	req->skb = NULL;
+
+	return ret;
+}
+
+static int mtk_cldma_check_rx_req(struct cldma_drv_info *drv_info, struct rxq *rxq)
+{
+	struct rx_req *req = rxq->req_pool + rxq->free_idx;
+	u64 curr_addr;
+	int i;
+
+	curr_addr = drv_info->drv_ops->cldma_get_rx_curr_addr(drv_info, rxq->rxqno);
+	if (unlikely(!curr_addr))
+		return -ENXIO;
+
+	if (req->gpd_dma_addr == curr_addr)
+		return -EAGAIN;
+	for (i = 0; i < WAIT_HWO_ROUND; i++) {
+		udelay(WAIT_HWO_TIME);
+		if (!(READ_ONCE(req->gpd->rx_gpd.gpd_flags) & CLDMA_GPD_FLAG_HWO))
+			break;
+	}
+	if (i == WAIT_HWO_ROUND) {
+		dev_err((drv_info->mdev)->dev, "Failed to check HWO=0\n");
+		return -EAGAIN;
+	}
+
+	return 0;
+}
+
+static bool mtk_cldma_rx_check_again(struct rxq *rxq)
+{
+	struct cldma_drv_info *drv_info;
+	struct cldma_drv_ops *drv_ops;
+	bool need_check_again = false;
+	u32 state;
+	int rxqno;
+
+	drv_info = rxq->drv_info;
+	drv_ops = drv_info->drv_ops;
+	rxqno = rxq->rxqno;
+
+	do {
+		state = drv_ops->cldma_check_intr_status(drv_info, DIR_RX,
+							 rxqno, QUEUE_XFER_DONE);
+		if (state) {
+			if (unlikely(state == LINK_ERROR_VAL))
+				break;
+
+			drv_ops->cldma_clr_intr_status(drv_info, DIR_RX,
+						       rxqno, QUEUE_XFER_DONE);
+			cond_resched();
+			return true;
+		}
+	} while (need_check_again);
+
+	return false;
+}
+
+static void mtk_cldma_rx_done_work(struct work_struct *work)
+{
+	struct rx_req *req = NULL, *pre_req = NULL;
+	struct rxq *rxq = container_of(work, struct rxq, rx_done_work);
+	struct cldma_drv_info *drv_info;
+	struct cldma_drv_ops *drv_ops;
+	struct mtk_md_dev *mdev;
+	int i, ret, idx;
+
+	drv_info = rxq->drv_info;
+	mdev = drv_info->mdev;
+	drv_ops = drv_info->drv_ops;
+
+again:
+	for (i = 0; i < rxq->nr_gpds; i++) {
+		req = rxq->req_pool + rxq->free_idx;
+		if (!req->skb) {
+			dev_err(mdev->dev,
+				"Failed to get valid req cldma%d rxq%d req%d\n",
+				drv_info->hw_id, rxq->rxqno, rxq->free_idx);
+			goto out;
+		}
+
+		if (req->gpd->rx_gpd.gpd_flags & CLDMA_GPD_FLAG_HWO)
+			break;
+
+		mtk_cldma_rx_skb_adjust(mdev, rxq, req);
+		do {
+			ret = rxq->rx_done(req->skb, rxq->arg,
+					   atomic_read(&rxq->need_exit) ? true : false);
+			if (ret == -EAGAIN)
+				usleep_range(1000, 2000);
+			else
+				req->skb = NULL;
+		} while (ret == -EAGAIN);
+
+		ret = mtk_cldma_reload_rx_skb(mdev, rxq, req);
+		if (ret)
+			goto out;
+
+		wmb(); /* ensure addr set done before HWO setup done  */
+
+		idx = rxq->free_idx == 0 ? rxq->nr_gpds - 1 : rxq->free_idx - 1;
+		pre_req = rxq->req_pool + idx;
+		pre_req->gpd->rx_gpd.gpd_flags |= CLDMA_GPD_FLAG_HWO;
+		rxq->free_idx = (rxq->free_idx + 1) % rxq->nr_gpds;
+	}
+
+	ret = mtk_cldma_check_rx_req(drv_info, rxq);
+	if (!ret)
+		goto again;
+	else if (ret == -ENXIO)
+		goto out;
+
+	if (!atomic_read(&rxq->need_exit))
+		drv_ops->cldma_resume_queue(drv_info, DIR_RX, rxq->rxqno);
+
+	if (mtk_cldma_rx_check_again(rxq))
+		goto again;
+
+out:
+	drv_ops->cldma_unmask_intr(drv_info, DIR_RX, rxq->rxqno, QUEUE_XFER_DONE);
+	drv_ops->cldma_clear_ip_busy(drv_info);
+}
+
+static int mtk_cldma_alloc_tx_bd(struct cldma_drv_info *drv_info, struct txq *txq,
+				 struct tx_req *req)
+{
+	struct bd_dsc *bd_dsc, *last_bd_dsc = NULL;
+	int i;
+
+	req->bd_dsc_pool = devm_kcalloc(drv_info->mdev->dev, txq->nr_bds,
+					sizeof(*bd_dsc), GFP_KERNEL);
+	if (!req->bd_dsc_pool)
+		return -ENOMEM;
+
+	for (i = 0; i < txq->nr_bds; i++) {
+		bd_dsc = req->bd_dsc_pool + i;
+		bd_dsc->bd = dma_pool_zalloc(drv_info->bd_dma_pool, GFP_KERNEL,
+					     &bd_dsc->bd_dma_addr);
+		if (!bd_dsc->bd)
+			return -ENOMEM;
+		if (!last_bd_dsc) {
+			req->gpd->tx_gpd.data_buff_ptr_h =
+				cpu_to_le32((u64)(bd_dsc->bd_dma_addr) >> 32);
+			req->gpd->tx_gpd.data_buff_ptr_l =
+				cpu_to_le32(bd_dsc->bd_dma_addr);
+		} else {
+			last_bd_dsc->bd->tx_bd.next_bd_ptr_h =
+				cpu_to_le32((u64)(bd_dsc->bd_dma_addr) >> 32);
+			last_bd_dsc->bd->tx_bd.next_bd_ptr_l =
+				cpu_to_le32(bd_dsc->bd_dma_addr);
+		}
+		last_bd_dsc = bd_dsc;
+	}
+	return 0;
+}
+
+static struct txq *mtk_cldma_txq_alloc(struct cldma_drv_info *drv_info, struct sk_buff *skb)
+{
+	struct trb *trb = (struct trb *)skb->cb;
+	struct cldma_drv_ops *drv_ops;
+	struct mtk_ctrl_trans *trans;
+	struct mtk_ctrl_blk *ctrl_blk;
+	struct mtk_md_dev *mdev;
+	struct bd_dsc *bd_dsc;
+	struct tx_req *next;
+	struct tx_req *req;
+	u16 tx_frag_size;
+	struct txq *txq;
+	int i, j, ret;
+
+	mdev = drv_info->mdev;
+	ctrl_blk = mdev->ctrl_blk;
+	trans = ctrl_blk->ctrl_hw_priv;
+	drv_ops = drv_info->drv_ops;
+
+	txq = kzalloc_obj(*txq);
+	if (!txq)
+		return NULL;
+
+	txq->que = radix_tree_lookup(&trans->queue_tbl, trb->channel_id & 0xFFFF);
+	txq->drv_info = drv_info;
+	txq->txqno = txq->que->txqno;
+	txq->nr_gpds = txq->que->tx_nr_gpds;
+	atomic_set(&txq->req_budget, txq->que->tx_nr_gpds);
+	txq->is_stopping = false;
+	tx_frag_size = txq->que->tx_frag_size;
+	if (txq->que->tx_mtu > tx_frag_size && tx_frag_size)
+		txq->nr_bds = (txq->que->tx_mtu + tx_frag_size - 1) / tx_frag_size;
+
+	txq->req_pool = devm_kcalloc(mdev->dev, txq->nr_gpds, sizeof(*req), GFP_KERNEL);
+	if (!txq->req_pool)
+		goto err_free_txq;
+
+	for (i = 0; i < txq->nr_gpds; i++) {
+		req = txq->req_pool + i;
+		req->mtu = txq->que->tx_mtu;
+		req->frag_size = tx_frag_size;
+		req->gpd = dma_pool_zalloc(drv_info->gpd_dma_pool, GFP_KERNEL, &req->gpd_dma_addr);
+		if (!req->gpd)
+			goto err_free_req;
+		if (txq->nr_bds) {
+			ret = mtk_cldma_alloc_tx_bd(drv_info, txq, req);
+			if (ret)
+				goto err_free_req;
+			req->gpd->tx_gpd.gpd_flags |= CLDMA_GPD_FLAG_BDP;
+		}
+	}
+
+	for (i = 0; i < txq->nr_gpds; i++) {
+		req = txq->req_pool + i;
+		next = txq->req_pool + ((i + 1) % txq->nr_gpds);
+		req->gpd->tx_gpd.gpd_flags |= CLDMA_GPD_FLAG_IOC;
+		req->gpd->tx_gpd.next_gpd_ptr_h = cpu_to_le32((u64)(next->gpd_dma_addr) >> 32);
+		req->gpd->tx_gpd.next_gpd_ptr_l = cpu_to_le32(next->gpd_dma_addr);
+	}
+
+	INIT_WORK(&txq->tx_done_work, mtk_cldma_tx_done_work);
+
+	drv_ops->cldma_stop_queue(drv_info, DIR_TX, txq->txqno);
+	txq->tx_started = false;
+	drv_ops->cldma_setup_start_addr(drv_info, DIR_TX, txq->txqno,
+					txq->req_pool[0].gpd_dma_addr);
+	drv_ops->cldma_unmask_intr(drv_info, DIR_TX, txq->txqno, QUEUE_ERROR);
+	drv_ops->cldma_unmask_intr(drv_info, DIR_TX, txq->txqno, QUEUE_XFER_DONE);
+
+	drv_info->txq[txq->txqno] = txq;
+	return txq;
+
+err_free_req:
+	for (i = 0; i < txq->nr_gpds; i++) {
+		req = txq->req_pool + i;
+		if (!req->gpd)
+			break;
+		if (req->bd_dsc_pool) {
+			for (j = 0; j < txq->nr_bds; j++) {
+				bd_dsc = req->bd_dsc_pool + j;
+				if (!bd_dsc->bd)
+					break;
+				dma_pool_free(drv_info->bd_dma_pool, bd_dsc->bd,
+					      bd_dsc->bd_dma_addr);
+			}
+			kfree(req->bd_dsc_pool);
+		}
+		dma_pool_free(drv_info->gpd_dma_pool, req->gpd, req->gpd_dma_addr);
+	}
+	kfree(txq->req_pool);
+err_free_txq:
+	kfree(txq);
+	return NULL;
+}
+
+static void mtk_cldma_txq_free(struct cldma_drv_info *drv_info, u32 txqno)
+{
+	struct cldma_drv_ops *drv_ops;
+	struct mtk_md_dev *mdev;
+	struct bd_dsc *bd_dsc;
+	struct tx_req *req;
+	struct txq *txq;
+	struct trb *trb;
+	int irq_id;
+	int i, j;
+
+	mdev = drv_info->mdev;
+	drv_ops = drv_info->drv_ops;
+
+	txq = drv_info->txq[txqno];
+	drv_info->txq[txqno] = NULL;
+	/* stop HW tx transaction */
+	drv_ops->cldma_stop_queue(drv_info, DIR_TX, txqno);
+	txq->tx_started = false;
+
+	irq_id = mtk_pci_get_virq_id(mdev, drv_info->pci_ext_irq_id);
+	synchronize_irq(irq_id);
+	/* flush on-going work */
+	flush_work(&txq->tx_done_work);
+	drv_ops->cldma_mask_intr(drv_info, DIR_TX, txqno, QUEUE_XFER_DONE);
+	drv_ops->cldma_mask_intr(drv_info, DIR_TX, txqno, QUEUE_ERROR);
+
+	/* free tx req resource */
+	for (i = 0; i < txq->nr_gpds; i++) {
+		req = txq->req_pool + txq->free_idx;
+		if (req->skb && req->data_len) {
+			if (!txq->nr_bds)
+				dma_unmap_single(mdev->dev, req->data_dma_addr,
+						 req->data_len, DMA_TO_DEVICE);
+			for (j = 0; j < txq->nr_bds; j++) {
+				bd_dsc = req->bd_dsc_pool + j;
+				if (!bd_dsc->data_dma_addr)
+					continue;
+				dma_unmap_single(mdev->dev, bd_dsc->data_dma_addr,
+						 bd_dsc->data_len, DMA_TO_DEVICE);
+			}
+			trb = (struct trb *)req->skb->cb;
+			trb->status = -EPIPE;
+			trb->trb_complete(req->skb);
+		}
+		for (j = 0; j < txq->nr_bds; j++) {
+			bd_dsc = req->bd_dsc_pool + j;
+			dma_pool_free(drv_info->bd_dma_pool, bd_dsc->bd,
+				      bd_dsc->bd_dma_addr);
+		}
+		kfree(req->bd_dsc_pool);
+		dma_pool_free(drv_info->gpd_dma_pool, req->gpd, req->gpd_dma_addr);
+		txq->free_idx = (txq->free_idx + 1) % txq->nr_gpds;
+	}
+
+	kfree(txq->req_pool);
+	kfree(txq);
+}
+
+static int mtk_cldma_alloc_rx_bd(struct cldma_drv_info *drv_info, struct rx_req *req,
+				 int nr_bds)
+{
+	struct bd_dsc *bd_dsc, *last_bd_dsc = NULL;
+	struct sk_buff *tail = NULL;
+	struct mtk_md_dev *mdev;
+	u32 left_size;
+	int ret;
+	int i;
+
+	mdev = drv_info->mdev;
+	left_size = req->mtu;
+
+	req->bd_dsc_pool = devm_kcalloc(mdev->dev, nr_bds,
+					sizeof(*bd_dsc), GFP_KERNEL);
+	if (!req->bd_dsc_pool)
+		return -ENOMEM;
+	for (i = 0; i < nr_bds; i++) {
+		bd_dsc = req->bd_dsc_pool + i;
+		bd_dsc->bd = dma_pool_zalloc(drv_info->bd_dma_pool, GFP_KERNEL,
+					     &bd_dsc->bd_dma_addr);
+		if (!bd_dsc->bd)
+			return -ENOMEM;
+
+		bd_dsc->skb = __dev_alloc_skb(req->frag_size, GFP_KERNEL);
+		if (!bd_dsc->skb)
+			return -ENOMEM;
+		bd_dsc->skb->next = NULL;
+		bd_dsc->data_dma_addr =
+			dma_map_single(mdev->dev, bd_dsc->skb->data,
+				       req->frag_size, DMA_FROM_DEVICE);
+		ret = dma_mapping_error(mdev->dev, bd_dsc->data_dma_addr);
+		if (unlikely(ret))
+			return -ENOMEM;
+
+		bd_dsc->bd->rx_bd.data_buff_ptr_h =
+			cpu_to_le32((u64)(bd_dsc->data_dma_addr) >> 32);
+		bd_dsc->bd->rx_bd.data_buff_ptr_l =
+			cpu_to_le32(bd_dsc->data_dma_addr);
+		bd_dsc->bd->rx_bd.data_allow_len =
+			cpu_to_le16(min(req->frag_size, left_size));
+		left_size -= min(req->frag_size, left_size);
+		if (!last_bd_dsc) {
+			req->gpd->rx_gpd.data_buff_ptr_h =
+				cpu_to_le32((u64)(bd_dsc->bd_dma_addr) >> 32);
+			req->gpd->rx_gpd.data_buff_ptr_l =
+				cpu_to_le32(bd_dsc->bd_dma_addr);
+		} else {
+			last_bd_dsc->bd->rx_bd.next_bd_ptr_h =
+				cpu_to_le32((u64)(bd_dsc->bd_dma_addr) >> 32);
+			last_bd_dsc->bd->rx_bd.next_bd_ptr_l =
+				cpu_to_le32(bd_dsc->bd_dma_addr);
+		}
+		last_bd_dsc = bd_dsc;
+		if (tail) {
+			tail->next = bd_dsc->skb;
+			tail = bd_dsc->skb;
+			continue;
+		}
+		if (!req->skb) {
+			req->skb = bd_dsc->skb;
+		} else {
+			skb_shinfo(req->skb)->frag_list = bd_dsc->skb;
+			tail = bd_dsc->skb;
+		}
+	}
+	last_bd_dsc->bd->rx_bd.bd_flags |= CLDMA_BD_FLAG_EOL;
+	return 0;
+}
+
+static void mtk_cldma_rxq_alloc_cancel(struct cldma_drv_info *drv_info, struct rx_req *req,
+				       int nr_bds)
+{
+	struct mtk_md_dev *mdev;
+	struct bd_dsc *bd_dsc;
+	int i;
+
+	mdev = drv_info->mdev;
+
+	if (nr_bds) {
+		if (req->skb)
+			skb_shinfo(req->skb)->frag_list = NULL;
+		if (req->bd_dsc_pool) {
+			for (i = 0; i < nr_bds; i++) {
+				bd_dsc = req->bd_dsc_pool + i;
+				if (!bd_dsc->bd)
+					break;
+				if (bd_dsc->skb) {
+					if (!dma_mapping_error(mdev->dev, bd_dsc->data_dma_addr))
+						dma_unmap_single(mdev->dev, bd_dsc->data_dma_addr,
+								 req->frag_size, DMA_FROM_DEVICE);
+					bd_dsc->data_dma_addr = 0;
+					bd_dsc->skb->next = NULL;
+					dev_kfree_skb_any(bd_dsc->skb);
+				}
+				dma_pool_free(drv_info->bd_dma_pool, bd_dsc->bd,
+					      bd_dsc->bd_dma_addr);
+			}
+			kfree(req->bd_dsc_pool);
+		}
+	} else {
+		if (req->skb) {
+			if (!dma_mapping_error(mdev->dev, req->data_dma_addr))
+				dma_unmap_single(mdev->dev, req->data_dma_addr,
+						 req->mtu, DMA_FROM_DEVICE);
+			req->data_dma_addr = 0;
+			dev_kfree_skb_any(req->skb);
+		}
+	}
+	dma_pool_free(drv_info->gpd_dma_pool, req->gpd, req->gpd_dma_addr);
+}
+
+static struct rxq *mtk_cldma_rxq_alloc(struct cldma_drv_info *drv_info, struct sk_buff *skb)
+{
+	struct trb_open_priv *trb_open_priv = (struct trb_open_priv *)skb->data;
+	struct trb *trb = (struct trb *)skb->cb;
+	struct cldma_drv_ops *drv_ops;
+	struct mtk_ctrl_trans *trans;
+	struct mtk_ctrl_blk *ctrl_blk;
+	struct mtk_md_dev *mdev;
+	struct rx_req *next;
+	struct rx_req *req;
+	u16 rx_frag_size;
+	struct rxq *rxq;
+	int ret;
+	int i;
+
+	mdev = drv_info->mdev;
+	ctrl_blk = mdev->ctrl_blk;
+	trans = ctrl_blk->ctrl_hw_priv;
+	drv_ops = drv_info->drv_ops;
+
+	rxq = kzalloc_obj(*rxq);
+	if (!rxq)
+		return NULL;
+
+	rxq->que = radix_tree_lookup(&trans->queue_tbl, trb->channel_id & 0xFFFF);
+	if (rxq->que->rx_nr_gpds < MIN_GPD_NUM) {
+		dev_err(mdev->dev,
+			"Failed to alloc cldma%d rxq%d due to gpd number < 2\n",
+			drv_info->hw_id, rxq->rxqno);
+		goto err_free_rxq;
+	}
+	rxq->drv_info = drv_info;
+	rxq->rxqno = rxq->que->rxqno;
+	rxq->nr_gpds = rxq->que->rx_nr_gpds;
+	rxq->arg = trb->priv;
+	rxq->rx_done = trb_open_priv->rx_done;
+	atomic_set(&rxq->need_exit, 0);
+	rx_frag_size = rxq->que->rx_frag_size;
+	if (rxq->que->rx_mtu > rx_frag_size && rx_frag_size)
+		rxq->nr_bds = (rxq->que->rx_mtu + rx_frag_size - 1) / rx_frag_size;
+
+	rxq->req_pool = devm_kcalloc(mdev->dev, rxq->nr_gpds, sizeof(*req), GFP_KERNEL);
+	if (!rxq->req_pool)
+		goto err_free_rxq;
+
+	/* setup rx request */
+	for (i = 0; i < rxq->nr_gpds; i++) {
+		req = rxq->req_pool + i;
+		req->mtu = rxq->que->rx_mtu;
+		req->frag_size = rx_frag_size;
+		req->gpd = dma_pool_zalloc(drv_info->gpd_dma_pool, GFP_KERNEL, &req->gpd_dma_addr);
+		if (!req->gpd)
+			goto err_free_req;
+		if (rxq->nr_bds) {
+			ret = mtk_cldma_alloc_rx_bd(drv_info, req, rxq->nr_bds);
+			if (ret)
+				goto err_free_req;
+			req->gpd->rx_gpd.gpd_flags |= CLDMA_GPD_FLAG_BDP;
+		} else {
+			req->skb = __dev_alloc_skb(req->mtu, GFP_KERNEL);
+			if (!req->skb)
+				goto err_free_req;
+			req->data_dma_addr = dma_map_single(mdev->dev, req->skb->data,
+							    req->mtu, DMA_FROM_DEVICE);
+			ret = dma_mapping_error(mdev->dev, req->data_dma_addr);
+			if (unlikely(ret))
+				goto err_free_req;
+		}
+	}
+
+	for (i = 0; i < rxq->nr_gpds; i++) {
+		req = rxq->req_pool + i;
+		next = rxq->req_pool + ((i + 1) % rxq->nr_gpds);
+		req->gpd->rx_gpd.gpd_flags |= CLDMA_GPD_FLAG_IOC;
+		req->gpd->rx_gpd.data_allow_len = cpu_to_le16(req->mtu);
+		req->gpd->rx_gpd.next_gpd_ptr_h = cpu_to_le32((u64)(next->gpd_dma_addr) >> 32);
+		req->gpd->rx_gpd.next_gpd_ptr_l = cpu_to_le32(next->gpd_dma_addr);
+		if (!rxq->nr_bds) {
+			req->gpd->rx_gpd.data_buff_ptr_h =
+				cpu_to_le32((u64)(req->data_dma_addr) >> 32);
+			req->gpd->rx_gpd.data_buff_ptr_l = cpu_to_le32(req->data_dma_addr);
+		}
+		if (i != rxq->nr_gpds - 1)
+			req->gpd->rx_gpd.gpd_flags |= CLDMA_GPD_FLAG_HWO;
+	}
+
+	INIT_WORK(&rxq->rx_done_work, mtk_cldma_rx_done_work);
+
+	drv_info->rxq[rxq->rxqno] = rxq;
+	drv_ops->cldma_stop_queue(drv_info, DIR_RX, rxq->rxqno);
+	drv_ops->cldma_setup_start_addr(drv_info, DIR_RX,
+					rxq->rxqno, rxq->req_pool[0].gpd_dma_addr);
+	drv_ops->cldma_start_queue(drv_info, DIR_RX, rxq->rxqno);
+	drv_ops->cldma_unmask_intr(drv_info, DIR_RX, rxq->rxqno, QUEUE_ERROR);
+	drv_ops->cldma_unmask_intr(drv_info, DIR_RX, rxq->rxqno, QUEUE_XFER_DONE);
+
+	return rxq;
+
+err_free_req:
+	for (i = 0; i < rxq->nr_gpds; i++) {
+		req = rxq->req_pool + i;
+		if (!req->gpd)
+			break;
+		mtk_cldma_rxq_alloc_cancel(drv_info, req, rxq->nr_bds);
+	}
+
+	kfree(rxq->req_pool);
+err_free_rxq:
+	kfree(rxq);
+	return NULL;
+}
+
+static void mtk_cldma_rxq_free(struct cldma_drv_info *drv_info, u32 rxqno)
+{
+	struct cldma_drv_ops *drv_ops;
+	struct mtk_md_dev *mdev;
+	struct bd_dsc *bd_dsc;
+	struct rx_req *req;
+	struct rxq *rxq;
+	int irq_id;
+	int i, j;
+
+	mdev = drv_info->mdev;
+	drv_ops = drv_info->drv_ops;
+
+	rxq = drv_info->rxq[rxqno];
+	drv_info->rxq[rxqno] = NULL;
+
+	/* stop HW rx transaction */
+	atomic_set(&rxq->need_exit, 1);
+	drv_ops->cldma_stop_queue(drv_info, DIR_RX, rxqno);
+
+	irq_id = mtk_pci_get_virq_id(mdev, drv_info->pci_ext_irq_id);
+	synchronize_irq(irq_id);
+	/* flush on-going work */
+	flush_work(&rxq->rx_done_work);
+	/* mask L2 RX interrupt again to avoid race condition causing use-after-free issue */
+	drv_ops->cldma_mask_intr(drv_info, DIR_RX, rxqno, QUEUE_XFER_DONE);
+	drv_ops->cldma_mask_intr(drv_info, DIR_RX, rxqno, QUEUE_ERROR);
+
+	/* free rx req resource */
+	for (i = 0; i < rxq->nr_gpds; i++) {
+		req = rxq->req_pool + rxq->free_idx;
+		if (!(req->gpd->rx_gpd.gpd_flags & CLDMA_GPD_FLAG_HWO) &&
+		    le16_to_cpu(req->gpd->rx_gpd.data_recv_len)) {
+			mtk_cldma_rx_skb_adjust(mdev, rxq, req);
+			rxq->rx_done(req->skb, rxq->arg, true);
+			req->skb = NULL;
+		}
+		if (req->skb) {
+			if (rxq->nr_bds) {
+				skb_shinfo(req->skb)->frag_list = NULL;
+			} else {
+				if (req->data_dma_addr)
+					dma_unmap_single(mdev->dev, req->data_dma_addr,
+							 req->mtu, DMA_FROM_DEVICE);
+				dev_kfree_skb_any(req->skb);
+			}
+		}
+		for (j = 0; j < rxq->nr_bds; j++) {
+			bd_dsc = req->bd_dsc_pool + j;
+			if (bd_dsc->skb) {
+				if (bd_dsc->data_dma_addr)
+					dma_unmap_single(mdev->dev, bd_dsc->data_dma_addr,
+							 req->frag_size, DMA_FROM_DEVICE);
+				bd_dsc->skb->next = NULL;
+				dev_kfree_skb_any(bd_dsc->skb);
+			}
+			dma_pool_free(drv_info->bd_dma_pool,
+				      bd_dsc->bd, bd_dsc->bd_dma_addr);
+		}
+		kfree(req->bd_dsc_pool);
+		dma_pool_free(drv_info->gpd_dma_pool, req->gpd, req->gpd_dma_addr);
+		rxq->free_idx = (rxq->free_idx + 1) % rxq->nr_gpds;
+	}
+
+	kfree(rxq->req_pool);
+	kfree(rxq);
+}
+
+static int mtk_cldma_start_xfer(struct cldma_drv_info *drv_info, u32 qno)
+{
+	struct cldma_drv_ops *drv_ops;
+	struct txq *txq;
+	u32 val;
+
+	txq = drv_info->txq[qno];
+	drv_ops = drv_info->drv_ops;
+
+	val = drv_ops->cldma_get_tx_start_addr(drv_info, qno);
+	if (unlikely(val == LINK_ERROR_VAL))
+		return -EIO;
+
+	if (unlikely(!val)) {
+		drv_ops->cldma_drv_init(drv_info);
+		txq = drv_info->txq[qno];
+		drv_ops->cldma_setup_start_addr(drv_info, DIR_TX, qno,
+						txq->req_pool[txq->free_idx].gpd_dma_addr);
+		drv_ops->cldma_start_queue(drv_info, DIR_TX, qno);
+		txq->tx_started = true;
+	} else if (unlikely(!txq->tx_started)) {
+		drv_ops->cldma_start_queue(drv_info, DIR_TX, qno);
+		txq->tx_started = true;
+	} else {
+		drv_ops->cldma_resume_queue(drv_info, DIR_TX, qno);
+	}
+
+	return 0;
+}
+
+int mtk_cldma_init(struct mtk_ctrl_trans *trans)
+{
+	struct cldma_dev *cd;
+
+	cd = kzalloc_obj(*cd);
+	if (!cd)
+		return -ENOMEM;
+
+	cd->trans = trans;
+	trans->dev = cd;
+
+	return 0;
+}
+
+void mtk_cldma_exit(struct mtk_ctrl_trans *trans)
+{
+	if (!trans->dev)
+		return;
+
+	kfree(trans->dev);
+	trans->dev = NULL;
+}
+
+static int mtk_cldma_open(struct cldma_dev *cd, struct sk_buff *skb)
+{
+	struct trb_open_priv *trb_open_priv = (struct trb_open_priv *)skb->data;
+	struct trb *trb = (struct trb *)skb->cb;
+	struct cldma_drv_info *drv_info;
+	struct queue_info *que;
+	struct txq *txq;
+	struct rxq *rxq;
+	int ret = 0;
+
+	que = radix_tree_lookup(&cd->trans->queue_tbl, trb->channel_id & 0xFFFF);
+	drv_info = cd->cldma_drv_info[que->hif_id];
+	if (!drv_info) {
+		ret = -EIO;
+		goto out;
+	}
+
+	if (que->tx_mtu == 0 || que->rx_mtu == 0) {
+		dev_err((cd->trans->mdev)->dev,
+			"Failed to enable cldma%d txq%d rxq%d due to wrong mtu\n",
+			drv_info->hw_id, que->txqno, que->rxqno);
+		ret = -EINVAL;
+		goto out;
+	}
+
+	trb_open_priv->tx_mtu = que->tx_mtu;
+	trb_open_priv->rx_mtu = que->rx_mtu;
+	trb_open_priv->tx_frag_size = que->tx_frag_size;
+	trb_open_priv->rx_frag_size = que->rx_frag_size;
+
+	if (drv_info->txq[que->txqno] || drv_info->rxq[que->rxqno]) {
+		ret = -EBUSY;
+		goto out;
+	}
+
+	txq = mtk_cldma_txq_alloc(drv_info, skb);
+	if (!txq) {
+		ret = -ENOMEM;
+		goto out;
+	}
+
+	rxq = mtk_cldma_rxq_alloc(drv_info, skb);
+	if (!rxq) {
+		ret = -ENOMEM;
+		mtk_cldma_txq_free(drv_info, txq->txqno);
+		goto out;
+	}
+
+out:
+	trb->status = ret;
+	trb->trb_complete(skb);
+
+	return ret;
+}
+
+static int mtk_cldma_tx(struct cldma_dev *cd, struct sk_buff *skb)
+{
+	struct trb *trb = (struct trb *)skb->cb;
+	struct cldma_drv_info *drv_info;
+	struct mtk_md_dev *mdev;
+	struct queue_info *que;
+	struct txq *txq;
+	int ret;
+
+	que = radix_tree_lookup(&cd->trans->queue_tbl, trb->channel_id & 0xFFFF);
+	drv_info = cd->cldma_drv_info[que->hif_id];
+	if (unlikely(!drv_info))
+		return -EPIPE;
+	txq = drv_info->txq[que->txqno];
+	if (unlikely(!txq) || txq->is_stopping)
+		return -EPIPE;
+
+	mdev = drv_info->mdev;
+
+	ret = mtk_cldma_start_xfer(drv_info, que->txqno);
+	if (unlikely(ret))
+		dev_err(mdev->dev, "Failed to trigger cldma tx\n");
+
+	return ret;
+}
+
+static int mtk_cldma_close(struct cldma_dev *cd, struct sk_buff *skb)
+{
+	struct trb *trb = (struct trb *)skb->cb;
+	struct cldma_drv_info *drv_info;
+	struct queue_info *que;
+
+	que = radix_tree_lookup(&cd->trans->queue_tbl, trb->channel_id & 0xFFFF);
+	drv_info = cd->cldma_drv_info[que->hif_id];
+	if (unlikely(!drv_info))
+		return -EPIPE;
+
+	if (drv_info->txq[que->txqno])
+		mtk_cldma_txq_free(drv_info, que->txqno);
+	if (drv_info->rxq[que->rxqno])
+		mtk_cldma_rxq_free(drv_info, que->rxqno);
+
+	trb->status = 0;
+	trb->trb_complete(skb);
+
+	return 0;
+}
+
+static int mtk_cldma_txbuf_set(struct cldma_drv_info *drv_info, struct sk_buff *skb,
+			       struct tx_req *req, int nr_bds)
+{
+	struct sk_buff *curr_skb, *next_skb;
+	struct mtk_md_dev *mdev;
+	struct bd_dsc *bd_dsc;
+	int ret;
+	int i;
+
+	mdev = drv_info->mdev;
+
+	if (nr_bds) {
+		bd_dsc = req->bd_dsc_pool;
+		curr_skb = skb;
+		for (i = 0; i < nr_bds && curr_skb; i++) {
+			bd_dsc = req->bd_dsc_pool + i;
+			if (req->bd_dsc_pool == bd_dsc) {
+				bd_dsc->data_len = skb->len - skb->data_len;
+				next_skb = skb_shinfo(skb)->frag_list;
+			} else {
+				bd_dsc->data_len = curr_skb->len;
+				next_skb = curr_skb->next;
+			}
+			bd_dsc->data_dma_addr = dma_map_single(mdev->dev, curr_skb->data,
+							       bd_dsc->data_len, DMA_TO_DEVICE);
+			ret = dma_mapping_error(mdev->dev, bd_dsc->data_dma_addr);
+			if (unlikely(ret))
+				goto err_unmap_buffer;
+
+			bd_dsc->bd->tx_bd.data_buff_ptr_h =
+				cpu_to_le32((u64)(bd_dsc->data_dma_addr) >> 32);
+			bd_dsc->bd->tx_bd.data_buff_ptr_l = cpu_to_le32(bd_dsc->data_dma_addr);
+			bd_dsc->bd->tx_bd.data_buffer_len = cpu_to_le16(bd_dsc->data_len);
+			curr_skb = next_skb;
+		}
+		bd_dsc->bd->tx_bd.bd_flags = CLDMA_BD_FLAG_EOL;
+	} else {
+		req->data_dma_addr = dma_map_single(mdev->dev, skb->data,
+						    skb->len, DMA_TO_DEVICE);
+		ret = dma_mapping_error(mdev->dev, req->data_dma_addr);
+		if (unlikely(ret)) {
+			req->data_dma_addr = 0;
+			goto err_exit;
+		}
+
+		req->gpd->tx_gpd.data_buff_ptr_h = cpu_to_le32((u64)(req->data_dma_addr) >> 32);
+		req->gpd->tx_gpd.data_buff_ptr_l = cpu_to_le32(req->data_dma_addr);
+	}
+
+	return 0;
+
+err_unmap_buffer:
+	for (i = 0; i < nr_bds; i++) {
+		bd_dsc = req->bd_dsc_pool + i;
+		if (dma_mapping_error(mdev->dev, bd_dsc->data_dma_addr)) {
+			bd_dsc->data_dma_addr = 0;
+			break;
+		}
+		dma_unmap_single(mdev->dev, bd_dsc->data_dma_addr,
+				 bd_dsc->data_len, DMA_TO_DEVICE);
+		bd_dsc->data_dma_addr = 0;
+	}
+err_exit:
+	dev_err(mdev->dev, "Failed to map dma! error:%d\n", ret);
+	return -EAGAIN;
+}
+
+int mtk_cldma_submit_tx(void *dev, struct sk_buff *skb)
+{
+	struct trb *trb = (struct trb *)skb->cb;
+	struct cldma_drv_info *drv_info;
+	struct cldma_dev *cd = dev;
+	struct queue_info *que;
+	struct tx_req *req;
+	struct txq *txq;
+	int ret;
+
+	que = radix_tree_lookup(&cd->trans->queue_tbl, trb->channel_id & 0xFFFF);
+	drv_info = cd->cldma_drv_info[que->hif_id];
+	if (unlikely(!drv_info))
+		return -EINVAL;
+
+	txq = drv_info->txq[que->txqno];
+	if (unlikely(!txq))
+		return -EINVAL;
+
+	if (!atomic_read(&txq->req_budget))
+		return -EAGAIN;
+
+	req = txq->req_pool + txq->wr_idx;
+	req->gpd->tx_gpd.debug_id = 0x01;
+	ret = mtk_cldma_txbuf_set(drv_info, skb, req, txq->nr_bds);
+	if (ret)
+		return ret;
+
+	req->gpd->tx_gpd.data_buff_len = cpu_to_le16(skb->len);
+
+	req->data_len = skb->len;
+	req->skb = skb;
+	req->data_vm_addr = skb->data;
+
+	wmb(); /* ensure req and data msg set done before HWO setup */
+
+	req->gpd->tx_gpd.gpd_flags |= CLDMA_GPD_FLAG_HWO;
+
+	wmb(); /* ensure HWO setup done before index update */
+
+	txq->wr_idx = (txq->wr_idx + 1) % txq->nr_gpds;
+	atomic_dec(&txq->req_budget);
+
+	return 0;
+}
+
+int mtk_cldma_get_tx_budget(void *dev, enum mtk_hif_id hif_id, u32 qno)
+{
+	struct cldma_drv_info *drv_info;
+	struct cldma_dev *cd = dev;
+	struct txq *txq;
+
+	if (unlikely(hif_id >= NR_CLDMA || qno >= HW_QUE_NUM || !cd))
+		return -EINVAL;
+
+	drv_info = cd->cldma_drv_info[hif_id];
+	if (!drv_info)
+		return -EINVAL;
+	txq = drv_info->txq[qno];
+	if (!txq)
+		return -EINVAL;
+	return atomic_read(&txq->req_budget);
+}
+
+static int (*trb_act_tbl[TRB_CMD_MAX])(struct cldma_dev *cd, struct sk_buff *skb) = {
+	[TRB_CMD_ENABLE] = mtk_cldma_open,
+	[TRB_CMD_TX] = mtk_cldma_tx,
+	[TRB_CMD_DISABLE] = mtk_cldma_close,
+};
+
+int mtk_cldma_trb_process(void *dev, struct sk_buff *skb)
+{
+	struct cldma_dev *cd;
+	struct trb *trb;
+
+	if (!dev || !skb)
+		return -EINVAL;
+
+	cd = (struct cldma_dev *)dev;
+	trb = (struct trb *)skb->cb;
+
+	if (!(trb->cmd > TRB_CMD_MIN && trb->cmd < TRB_CMD_STOP))
+		return -EINVAL;
+
+	return trb_act_tbl[trb->cmd](cd, skb);
+}
+
+int mtk_cldma_check_ch_cfg(void *dev, struct queue_info *que)
+{
+	struct cldma_drv_info *drv_info;
+	struct cldma_dev *cd = dev;
+	struct mtk_md_dev *mdev;
+	struct txq *txq;
+	struct rxq *rxq;
+
+	mdev = cd->trans->mdev;
+	drv_info = cd->cldma_drv_info[que->hif_id];
+
+	if (!drv_info) {
+		dev_err(mdev->dev, "CLDMA%d has not been initialized\n",
+			mtk_cldma_hw_id_tbl[que->hif_id]);
+		return -EINVAL;
+	}
+
+	txq = drv_info->txq[que->txqno];
+	rxq = drv_info->rxq[que->rxqno];
+	if (!txq || !rxq) {
+		dev_err(mdev->dev,
+			"CLDMA%d txq%d rxq%d has not been enabled\n",
+			mtk_cldma_hw_id_tbl[que->hif_id], que->txqno, que->rxqno);
+		return -EINVAL;
+	}
+
+	if (que->tx_mtu != txq->que->tx_mtu || que->rx_mtu != rxq->que->rx_mtu) {
+		dev_err(mdev->dev,
+			"Channel:%08x tx_mtu:%08x rx_mtu:%08x do not match ch cfg\n",
+			que->tx_chl, que->tx_mtu, que->rx_mtu);
+		return -EINVAL;
+	}
+
+	return 0;
+}
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_cldma.h b/drivers/net/wwan/t9xx/pcie/mtk_cldma.h
new file mode 100644
index 000000000000..74ce4f2f0b30
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_cldma.h
@@ -0,0 +1,170 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#ifndef __MTK_CLDMA_H__
+#define __MTK_CLDMA_H__
+
+#include <linux/dma-mapping.h>
+#include <linux/dmapool.h>
+#include <linux/interrupt.h>
+#include <linux/list.h>
+#include <linux/spinlock.h>
+#include <linux/types.h>
+
+#include "mtk_ctrl_plane.h"
+#include "mtk_trans_ctrl.h"
+
+struct mtk_fsm_param;
+
+#define TXQ(N)					(N)
+#define RXQ(N)					(N)
+
+#define CLDMA_GPD_FLAG_HWO			BIT(0)
+#define CLDMA_GPD_FLAG_BDP			BIT(1)
+#define CLDMA_GPD_FLAG_BPS			BIT(2)
+#define CLDMA_GPD_FLAG_IOC			BIT(7)
+#define CLDMA_BD_FLAG_EOL			BIT(0)
+
+union gpd {
+	struct {
+		u8 gpd_flags;
+		u8 non_used1;
+		__le16 data_allow_len;
+		__le32 next_gpd_ptr_h;
+		__le32 next_gpd_ptr_l;
+		__le32 data_buff_ptr_h;
+		__le32 data_buff_ptr_l;
+		__le16 data_recv_len;
+		u8 non_used2;
+		u8 debug_id;
+	} rx_gpd;
+
+	struct {
+		u8 gpd_flags;
+		u8 non_used1;
+		u8 non_used2;
+		u8 debug_id;
+		__le32 next_gpd_ptr_h;
+		__le32 next_gpd_ptr_l;
+		__le32 data_buff_ptr_h;
+		__le32 data_buff_ptr_l;
+		__le16 data_buff_len;
+		__le16 non_used3;
+	} tx_gpd;
+} __packed;
+
+union bd {
+	struct {
+		u8 bd_flags;
+		u8 non_used1;
+		__le16 data_allow_len;
+		__le32 next_bd_ptr_h;
+		__le32 next_bd_ptr_l;
+		__le32 data_buff_ptr_h;
+		__le32 data_buff_ptr_l;
+		__le16 data_recv_len;
+		__le16 non_used2;
+	} rx_bd;
+
+	struct {
+		u8 bd_flags;
+		u8 non_used1;
+		__le16 non_used2;
+		__le32 next_bd_ptr_h;
+		__le32 next_bd_ptr_l;
+		__le32 data_buff_ptr_h;
+		__le32 data_buff_ptr_l;
+		__le16 data_buffer_len;
+		u8 extension_len;
+		u8 non_used3;
+	} tx_bd;
+} __packed;
+
+struct bd_dsc {
+	union bd *bd;
+	struct sk_buff *skb;
+	dma_addr_t bd_dma_addr;
+	dma_addr_t data_dma_addr;
+	size_t data_len;
+};
+
+struct rx_req {
+	union gpd *gpd;
+	u32 mtu;
+	struct sk_buff *skb;
+	size_t data_len;
+	dma_addr_t gpd_dma_addr;
+	dma_addr_t data_dma_addr;
+	u32 frag_size;
+	struct bd_dsc *bd_dsc_pool;
+};
+
+struct rxq {
+	struct cldma_drv_info *drv_info;
+	u32 rxqno;
+	struct queue_info *que;
+	struct work_struct rx_done_work;
+	struct rx_req *req_pool;
+	u32 nr_gpds;
+	u32 free_idx;
+	unsigned short rx_done_cnt;
+	void *arg;
+	int (*rx_done)(struct sk_buff *skb, void *priv, bool force_recv);
+	u32 nr_bds;
+	atomic_t need_exit;
+};
+
+struct tx_req {
+	union gpd *gpd;
+	u32 mtu;
+	void *data_vm_addr;
+	size_t data_len;
+	dma_addr_t data_dma_addr;
+	dma_addr_t gpd_dma_addr;
+	struct sk_buff *skb;
+	int (*trb_complete)(struct sk_buff *skb);
+	u32 frag_size;
+	struct bd_dsc *bd_dsc_pool;
+};
+
+struct txq {
+	struct cldma_drv_info *drv_info;
+	u32 txqno;
+	struct queue_info *que;
+	struct work_struct tx_done_work;
+	struct tx_req *req_pool;
+	u32 nr_gpds;
+	atomic_t req_budget;
+	u32 wr_idx;
+	u32 free_idx;
+	bool tx_started;
+	bool is_stopping;
+	unsigned short tx_done_cnt;
+	u32 nr_bds;
+};
+
+struct cldma_dev {
+	struct cldma_drv_info *cldma_drv_info[NR_CLDMA];
+	struct mtk_ctrl_trans *trans;
+};
+
+struct cldma_drv_info_desc {
+	u32 hw_ver;
+	struct cldma_drv_ops *drv_ops;
+	struct cldma_hw_regs *hw_regs;
+};
+
+int mtk_cldma_init(struct mtk_ctrl_trans *trans);
+void mtk_cldma_exit(struct mtk_ctrl_trans *trans);
+int mtk_cldma_submit_tx(void *dev, struct sk_buff *skb);
+int mtk_cldma_get_tx_budget(void *dev, enum mtk_hif_id hif_id, u32 qno);
+int mtk_cldma_trb_process(void *dev, struct sk_buff *skb);
+void mtk_cldma_fsm_state_listener(struct mtk_fsm_param *param, struct mtk_ctrl_trans *trans);
+int mtk_cldma_check_ch_cfg(void *dev, struct queue_info *que);
+
+#define drv_ops_name(NAME) cldma_drv_ops_##NAME
+#define cldma_regs_name(NAME) mtk_cldma_regs_##NAME
+
+#endif
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.c b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.c
new file mode 100644
index 000000000000..8745c1470891
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.c
@@ -0,0 +1,369 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2023, MediaTek Inc.
+ */
+
+#include <linux/delay.h>
+#include <linux/device.h>
+#include <linux/iopoll.h>
+#include <linux/dma-mapping.h>
+#include <linux/dmapool.h>
+#include <linux/err.h>
+#include <linux/interrupt.h>
+#include <linux/kdev_t.h>
+#include <linux/kernel.h>
+#include <linux/kthread.h>
+#include <linux/list.h>
+#include <linux/module.h>
+#include <linux/mutex.h>
+#include <linux/netdevice.h>
+#include <linux/sched.h>
+#include <linux/skbuff.h>
+#include <linux/slab.h>
+#include <linux/timer.h>
+#include <linux/wait.h>
+#include <linux/workqueue.h>
+
+#include "mtk_cldma_drv.h"
+#include "mtk_dev.h"
+#include "mtk_pci.h"
+#include "mtk_pci_reg.h"
+
+#define WAIT_QUEUE_STOP		(70)
+
+void mtk_cldma_drv_init(struct cldma_drv_info *drv_info)
+{
+	struct cldma_hw_regs *hw_regs;
+	struct mtk_md_dev *mdev;
+	int base;
+	u32 val;
+
+	mdev = drv_info->mdev;
+	base = drv_info->base_addr;
+	hw_regs = drv_info->hw_regs;
+
+	/* set CLDMA to 64 bit mode GPD */
+	val = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_ul_cfg);
+	val = (val & (~(0x7 << 5))) | ((0x4) << 5);
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_ul_cfg, val);
+
+	val = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_so_cfg);
+	val = (val & (~(0x7 << 10))) | ((0x4) << 10) | (1 << 2);
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_so_cfg, val);
+
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_rx_work_to_reg_mask_set, ALLQ);
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_ip_busy_to_pcie_mask_set,
+			ALLQ << 16);
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_ip_busy_to_pcie_mask_clr,
+			ALLQ << 24);
+
+	/* enable interrupt to PCIe */
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_int_mask, 0);
+
+	/* disable illegal memory check */
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_ul_dummy_0, 1);
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_so_dummy_0, 1);
+}
+
+void mtk_cldma_setup_start_addr(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+				u32 qno, dma_addr_t addr)
+{
+	struct cldma_hw_regs *hw_regs;
+	unsigned int addr_l;
+	unsigned int addr_h;
+	int base;
+
+	hw_regs = drv_info->hw_regs;
+	base = drv_info->base_addr;
+
+	if (dir == DIR_TX) {
+		addr_l = base + hw_regs->reg_cldma_ul_start_addrl_0 + qno * HW_QUEUE_NUM;
+		addr_h = base + hw_regs->reg_cldma_ul_start_addrh_0 + qno * HW_QUEUE_NUM;
+	} else {
+		addr_l = base + hw_regs->reg_cldma_so_start_addrl_0 + qno * HW_QUEUE_NUM;
+		addr_h = base + hw_regs->reg_cldma_so_start_addrh_0 + qno * HW_QUEUE_NUM;
+	}
+
+	mtk_pci_write32(drv_info->mdev, addr_l, (u32)addr);
+	mtk_pci_write32(drv_info->mdev, addr_h, (u32)((u64)addr >> 32));
+}
+
+void mtk_cldma_mask_intr(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+			 u32 qno, enum mtk_intr_type type)
+{
+	struct cldma_hw_regs *hw_regs;
+	int base;
+	u32 addr;
+	u32 val;
+
+	hw_regs = drv_info->hw_regs;
+	base = drv_info->base_addr;
+
+	if (dir == DIR_TX)
+		addr = base + hw_regs->reg_cldma_l2timsr0;
+	else
+		addr = base + hw_regs->reg_cldma_l2rimsr0;
+
+	if (qno == ALLQ)
+		val = qno << type;
+	else
+		val = BIT(qno) << type;
+
+	mtk_pci_write32(drv_info->mdev, addr, val);
+}
+
+void mtk_cldma_unmask_intr(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+			   u32 qno, enum mtk_intr_type type)
+{
+	struct cldma_hw_regs *hw_regs;
+	int base;
+	u32 addr;
+	u32 val;
+
+	hw_regs = drv_info->hw_regs;
+	base = drv_info->base_addr;
+
+	if (dir == DIR_TX)
+		addr = base + hw_regs->reg_cldma_l2timcr0;
+	else
+		addr = base + hw_regs->reg_cldma_l2rimcr0;
+
+	if (qno == ALLQ)
+		val = qno << type;
+	else
+		val = BIT(qno) << type;
+
+	mtk_pci_write32(drv_info->mdev, addr, val);
+}
+
+void mtk_cldma_clr_intr_status(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+			       u32 qno, enum mtk_intr_type type)
+{
+	struct cldma_hw_regs *hw_regs;
+	struct mtk_md_dev *mdev;
+	int base;
+	u32 addr;
+	u32 val;
+
+	hw_regs = drv_info->hw_regs;
+	base = drv_info->base_addr;
+	mdev = drv_info->mdev;
+
+	if (type == QUEUE_ERROR) {
+		if (dir == DIR_TX) {
+			val = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_l3tisar0);
+			mtk_pci_write32(mdev, base + hw_regs->reg_cldma_l3tisar0, val);
+			val = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_l3tisar1);
+			mtk_pci_write32(mdev, base + hw_regs->reg_cldma_l3tisar1, val);
+			val = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_l3tisar2);
+			mtk_pci_write32(mdev, base + hw_regs->reg_cldma_l3tisar2, val);
+		} else {
+			val = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_l3risar0);
+			mtk_pci_write32(mdev, base + hw_regs->reg_cldma_l3risar0, val);
+			val = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_l3risar1);
+			mtk_pci_write32(mdev, base + hw_regs->reg_cldma_l3risar1, val);
+		}
+	}
+
+	if (dir == DIR_TX)
+		addr = base + hw_regs->reg_cldma_l2tisar0;
+	else
+		addr = base + hw_regs->reg_cldma_l2risar0;
+
+	if (qno == ALLQ)
+		val = qno << type;
+	else
+		val = BIT(qno) << type;
+
+	mtk_pci_write32(mdev, addr, val);
+	val = mtk_pci_read32(mdev, addr);
+}
+
+u32 mtk_cldma_check_intr_status(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+				u32 qno, enum mtk_intr_type type)
+{
+	struct cldma_hw_regs *hw_regs;
+	u32 addr, val, sta;
+	int base;
+
+	hw_regs = drv_info->hw_regs;
+	base = drv_info->base_addr;
+
+	if (dir == DIR_TX)
+		addr = base + hw_regs->reg_cldma_l2tisar0;
+	else
+		addr = base + hw_regs->reg_cldma_l2risar0;
+
+	val = mtk_pci_read32(drv_info->mdev, addr);
+	if (val == LINK_ERROR_VAL)
+		sta = val;
+	else if (qno == ALLQ)
+		sta = (val >> type) & 0xFF;
+	else
+		sta = (val >> type) & BIT(qno);
+
+	return sta;
+}
+
+void mtk_cldma_start_queue(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno)
+{
+	struct cldma_hw_regs *hw_regs;
+	u32 val = BIT(qno);
+	int base;
+	u32 addr;
+
+	hw_regs = drv_info->hw_regs;
+	base = drv_info->base_addr;
+
+	if (dir == DIR_TX)
+		addr = base + hw_regs->reg_cldma_ul_start_cmd;
+	else
+		addr = base + hw_regs->reg_cldma_so_start_cmd;
+
+	mtk_pci_write32(drv_info->mdev, addr, val);
+}
+
+void mtk_cldma_resume_queue(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno)
+{
+	struct cldma_hw_regs *hw_regs;
+	u32 val = BIT(qno);
+	int base;
+	u32 addr;
+
+	hw_regs = drv_info->hw_regs;
+	base = drv_info->base_addr;
+
+	if (dir == DIR_TX)
+		addr = base + hw_regs->reg_cldma_ul_resume_cmd;
+	else
+		addr = base + hw_regs->reg_cldma_so_resume_cmd;
+
+	mtk_pci_write32(drv_info->mdev, addr, val);
+}
+
+u32 mtk_cldma_queue_status(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno)
+{
+	struct cldma_hw_regs *hw_regs;
+	int base;
+	u32 addr;
+	u32 val;
+
+	hw_regs = drv_info->hw_regs;
+	base = drv_info->base_addr;
+
+	if (dir == DIR_TX)
+		addr = base + hw_regs->reg_cldma_ul_status;
+	else
+		addr = base + hw_regs->reg_cldma_so_status;
+
+	val = mtk_pci_read32(drv_info->mdev, addr);
+
+	if (qno == ALLQ || val == LINK_ERROR_VAL)
+		return val;
+
+	return val & BIT(qno);
+}
+
+u32 mtk_cldma_stop_queue(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno)
+{
+	u32 val = (qno == ALLQ) ? qno : BIT(qno);
+	struct cldma_hw_regs *hw_regs;
+	unsigned int active;
+	int base;
+	u32 addr;
+
+	hw_regs = drv_info->hw_regs;
+	base = drv_info->base_addr;
+
+	if (dir == DIR_TX)
+		addr = base + hw_regs->reg_cldma_ul_stop_cmd;
+	else
+		addr = base + hw_regs->reg_cldma_so_stop_cmd;
+
+	mtk_pci_write32(drv_info->mdev, addr, val);
+
+	read_poll_timeout(mtk_cldma_queue_status, active,
+			  active == LINK_ERROR_VAL || !active,
+			  WAIT_QUEUE_STOP, WAIT_QUEUE_STOP * 10, false,
+			  drv_info, dir, qno);
+
+	return active;
+}
+
+void mtk_cldma_clear_ip_busy(struct cldma_drv_info *drv_info)
+{
+	mtk_pci_write32(drv_info->mdev, drv_info->base_addr +
+			drv_info->hw_regs->reg_cldma_ip_busy, 0x01);
+}
+
+void mtk_cldma_get_intr_status(struct cldma_drv_info *drv_info, u32 *tx_sta, u32 *rx_sta)
+{
+	struct cldma_hw_regs *hw_regs;
+	struct mtk_md_dev *mdev;
+	u32 tx_mask, rx_mask;
+	int base;
+
+	mdev = drv_info->mdev;
+	base = drv_info->base_addr;
+	hw_regs = drv_info->hw_regs;
+
+	*tx_sta = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_l2tisar0);
+	tx_mask = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_l2timr0);
+	*rx_sta = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_l2risar0);
+	rx_mask = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_l2rimr0);
+
+	*tx_sta = (*tx_sta) & (~tx_mask);
+	*rx_sta = (*rx_sta) & (~rx_mask);
+
+	if (*tx_sta) {
+		/* TX XFER_DONE and QUEUE_ERROR mask */
+		mtk_pci_write32(mdev, base + hw_regs->reg_cldma_l2timsr0, *tx_sta);
+		/* TX XFER_DONE clear */
+		mtk_pci_write32(mdev, base + hw_regs->reg_cldma_l2tisar0,
+				(*tx_sta) & (0xFF << QUEUE_XFER_DONE));
+	}
+
+	if (*rx_sta) {
+		/* RX XFER_DONE and QUEUE_ERROR mask */
+		mtk_pci_write32(mdev, base + hw_regs->reg_cldma_l2rimsr0, *rx_sta);
+		/* RX XFER_DONE clear */
+		mtk_pci_write32(mdev, base + hw_regs->reg_cldma_l2risar0,
+				(*rx_sta) & (0xFF << QUEUE_XFER_DONE));
+	}
+}
+
+u32 mtk_cldma_get_tx_start_addr(struct cldma_drv_info *drv_info, u32 qno)
+{
+	u32 addr, val;
+
+	addr = drv_info->base_addr + drv_info->hw_regs->reg_cldma_ul_start_addrl_0 +
+	       qno * HW_QUEUE_NUM;
+	val = mtk_pci_read32(drv_info->mdev, addr);
+
+	return val;
+}
+
+u64 mtk_cldma_get_rx_curr_addr(struct cldma_drv_info *drv_info, u32 qno)
+{
+	struct cldma_hw_regs *hw_regs;
+	u32 curr_addr_h, curr_addr_l;
+	struct mtk_md_dev *mdev;
+	u64 curr_addr;
+	int base;
+	u64 addr;
+
+	hw_regs = drv_info->hw_regs;
+	base = drv_info->base_addr;
+	mdev = drv_info->mdev;
+
+	addr = base + hw_regs->reg_cldma_so_current_addrh_0 +
+	       (u64)qno * HW_QUEUE_NUM;
+	curr_addr_h = mtk_pci_read32(mdev, addr);
+	addr = base + hw_regs->reg_cldma_so_current_addrl_0 +
+	       (u64)qno * HW_QUEUE_NUM;
+	curr_addr_l = mtk_pci_read32(mdev, addr);
+	curr_addr = ((u64)curr_addr_h << 32) | curr_addr_l;
+	if (curr_addr_h == LINK_ERROR_VAL && curr_addr_l == LINK_ERROR_VAL)
+		curr_addr = 0;
+	return curr_addr;
+}
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.h b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.h
new file mode 100644
index 000000000000..8763c23abf54
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.h
@@ -0,0 +1,177 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2023, MediaTek Inc.
+ */
+
+#ifndef __MTK_CLDMA_DRV_H__
+#define __MTK_CLDMA_DRV_H__
+
+#define HW_QUEUE_NUM		(8)
+#define ALLQ			(0xFF)
+#define LINK_ERROR_VAL		(0xFFFFFFFF)
+#define CLDMA0_HW_ID		(0)
+#define CLDMA1_HW_ID		(1)
+#define CLDMA4_HW_ID		(4)
+
+struct cldma_hw_regs {
+	u8 cldma_rx_skb_pool_max_size;
+	u8 cldma_rx_skb_reload_threshold;
+	u8 tq_err_int_offset;
+	u8 tq_active_start_err_int_offset;
+	u8 rq_err_int_offset;
+	u8 rq_active_start_err_int_offset;
+	u16 reg_cldma_so_cfg;
+	u16 reg_cldma_so_start_addrl_0;
+	u16 reg_cldma_so_start_addrh_0;
+	u16 reg_cldma_so_current_addrl_0;
+	u16 reg_cldma_so_current_addrh_0;
+	u16 reg_cldma_so_status;
+	u16 reg_cldma_debug_id_en;
+	u16 reg_cldma_so_last_update_addrl_0;
+	u16 reg_cldma_so_last_update_addrh_0;
+	u16 reg_cldma_l2rimr0;
+	u16 reg_cldma_l2rimr1;
+	u16 reg_cldma_l2rimcr0;
+	u16 reg_cldma_l2rimcr1;
+	u16 reg_cldma_l2rimsr0;
+	u16 reg_cldma_l2rimsr1;
+	u16 reg_cldma_int_mask;
+	u16 reg_cldma4_int_mask;
+	u16 reg_cldma_slp_mem_ctl;
+	u16 reg_cldma_busy_mask;
+	u16 reg_cldma_ip_busy_to_pcie_mask;
+	u16 reg_cldma_ip_busy_to_pcie_mask_set;
+	u16 reg_cldma_ip_busy_to_pcie_mask_clr;
+	u16 reg_cldma_ip_busy_to_ap_mask;
+	u16 reg_cldma_ip_busy_to_ap_mask_set;
+	u16 reg_cldma_ip_busy_to_ap_mask_clr;
+	u16 reg_cldma_ip_busy_to_md_mask_set;
+	u16 reg_cldma_rx_work_to_reg_mask_set;
+	u16 reg_infra_rst4_set;
+	u16 reg_infra_rst4_clr;
+	u16 reg_infra_rst2_set;
+	u16 reg_infra_rst2_clr;
+	u16 reg_infra_rst0_set;
+	u16 reg_infra_rst0_clr;
+	u32 tq_err_int_bitmask;
+	u32 tq_active_start_err_int_bitmask;
+	u32 rq_err_int_bitmask;
+	u32 cldma0_base_addr;
+	u32 cldma1_base_addr;
+	u32 cldma4_base_addr;
+	u32 rq_active_start_err_int_bitmask;
+	u32 reg_cldma_ul_start_addrl_0;
+	u32 reg_cldma_ul_start_addrh_0;
+	u32 reg_cldma_ul_current_addrl_0;
+	u32 reg_cldma_ul_current_addrh_0;
+	u32 reg_cldma_ul_status;
+	u32 reg_cldma_ul_start_cmd;
+	u32 reg_cldma_ul_resume_cmd;
+	u32 reg_cldma_ul_stop_cmd;
+	u32 reg_cldma_ul_error;
+	u32 reg_cldma_ul_cfg;
+	u32 reg_cldma_ul_dummy_0;
+	u32 reg_cldma_so_error;
+	u32 reg_cldma_so_start_cmd;
+	u32 reg_cldma_so_resume_cmd;
+	u32 reg_cldma_so_stop_cmd;
+	u32 reg_cldma_so_dummy_0;
+	u32 reg_cldma_l2tisar0;
+	u32 reg_cldma_l2tisar1;
+	u32 reg_cldma_l2timr0;
+	u32 reg_cldma_l2timr1;
+	u32 reg_cldma_l2timcr0;
+	u32 reg_cldma_l2timcr1;
+	u32 reg_cldma_l2timsr0;
+	u32 reg_cldma_l2timsr1;
+	u32 reg_cldma_l2risar0;
+	u32 reg_cldma_l2risar1;
+	u32 reg_cldma_l3tisar0;
+	u32 reg_cldma_l3tisar1;
+	u32 reg_cldma_l3tisar2;
+	u32 reg_cldma_l3risar0;
+	u32 reg_cldma_l3risar1;
+	u32 reg_cldma_ip_busy;
+};
+
+enum mtk_ip_busy_src {
+	IP_BUSY_TXDONE = 0,
+	IP_BUSY_TXEMPTY = 8,
+	IP_BUSY_TXACTIVE = 16,
+	IP_BUSY_RXDONE = 24
+};
+
+enum mtk_intr_type {
+	QUEUE_XFER_DONE = 0,
+	QUEUE_EMPTY = 8,
+	QUEUE_ERROR = 16,
+	QUEUE_ACTIVE_START = 24,
+	INVALID_TYPE
+};
+
+enum mtk_tx_rx {
+	DIR_TX,
+	DIR_RX,
+	DIR_MAX
+};
+
+struct cldma_drv_info {
+	int hif_id;
+	int hw_id;
+	int base_addr;
+	int pci_ext_irq_id;
+	struct mtk_md_dev *mdev;
+	struct cldma_dev *cd;
+	struct txq *txq[HW_QUEUE_NUM];
+	struct rxq *rxq[HW_QUEUE_NUM];
+	struct dma_pool *gpd_dma_pool;
+	struct dma_pool *bd_dma_pool;
+	struct workqueue_struct *wq;
+	struct cldma_hw_regs *hw_regs;
+	struct cldma_drv_ops *drv_ops;
+};
+
+struct cldma_drv_ops {
+	void (*cldma_drv_init)(struct cldma_drv_info *drv_info);
+	void (*cldma_drv_reset)(struct cldma_drv_info *drv_info);
+	void (*cldma_setup_start_addr)(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+				       u32 qno, dma_addr_t addr);
+	void (*cldma_mask_intr)(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+				u32 qno, enum mtk_intr_type type);
+	void (*cldma_unmask_intr)(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+				  u32 qno, enum mtk_intr_type type);
+	void (*cldma_clr_intr_status)(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+				      u32 qno, enum mtk_intr_type type);
+	u32 (*cldma_check_intr_status)(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+				       u32 qno, enum mtk_intr_type type);
+	void (*cldma_start_queue)(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno);
+	void (*cldma_resume_queue)(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno);
+	u32 (*cldma_queue_status)(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno);
+	u32 (*cldma_stop_queue)(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno);
+	void (*cldma_clear_ip_busy)(struct cldma_drv_info *drv_info);
+	void (*cldma_get_intr_status)(struct cldma_drv_info *drv_info, u32 *tx_sta, u32 *rx_sta);
+	u32 (*cldma_get_tx_start_addr)(struct cldma_drv_info *drv_info, u32 qno);
+	u64 (*cldma_get_rx_curr_addr)(struct cldma_drv_info *drv_info, u32 qno);
+};
+
+void mtk_cldma_drv_init(struct cldma_drv_info *drv_info);
+void mtk_cldma_setup_start_addr(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+				u32 qno, dma_addr_t addr);
+void mtk_cldma_mask_intr(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+			 u32 qno, enum mtk_intr_type type);
+void mtk_cldma_unmask_intr(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+			   u32 qno, enum mtk_intr_type type);
+void mtk_cldma_clr_intr_status(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+			       u32 qno, enum mtk_intr_type type);
+u32 mtk_cldma_check_intr_status(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir,
+				u32 qno, enum mtk_intr_type type);
+void mtk_cldma_start_queue(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno);
+void mtk_cldma_resume_queue(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno);
+u32 mtk_cldma_queue_status(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno);
+u32 mtk_cldma_stop_queue(struct cldma_drv_info *drv_info, enum mtk_tx_rx dir, u32 qno);
+void mtk_cldma_clear_ip_busy(struct cldma_drv_info *drv_info);
+void mtk_cldma_get_intr_status(struct cldma_drv_info *drv_info, u32 *tx_sta, u32 *rx_sta);
+u32 mtk_cldma_get_tx_start_addr(struct cldma_drv_info *drv_info, u32 qno);
+u64 mtk_cldma_get_rx_curr_addr(struct cldma_drv_info *drv_info, u32 qno);
+
+#endif
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.c b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.c
new file mode 100644
index 000000000000..d9145d146a5c
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.c
@@ -0,0 +1,183 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2023, MediaTek Inc.
+ */
+
+#include <linux/delay.h>
+#include <linux/device.h>
+#include <linux/dma-mapping.h>
+#include <linux/dmapool.h>
+#include <linux/err.h>
+#include <linux/interrupt.h>
+#include <linux/kdev_t.h>
+#include <linux/kernel.h>
+#include <linux/kthread.h>
+#include <linux/list.h>
+#include <linux/module.h>
+#include <linux/mutex.h>
+#include <linux/netdevice.h>
+#include <linux/sched.h>
+#include <linux/skbuff.h>
+#include <linux/slab.h>
+#include <linux/timer.h>
+#include <linux/wait.h>
+#include <linux/workqueue.h>
+
+#include "mtk_cldma.h"
+#include "mtk_cldma_drv.h"
+#include "mtk_cldma_drv_m9xx.h"
+#include "mtk_dev.h"
+#include "mtk_pci.h"
+#include "mtk_pci_reg.h"
+#include "mtk_trans_ctrl.h"
+
+struct cldma_hw_regs mtk_cldma_regs_m9xx = {
+	.cldma0_base_addr = CLDMA0_BASE_ADDR,
+	.cldma1_base_addr = CLDMA1_BASE_ADDR,
+	.cldma4_base_addr = CLDMA4_BASE_ADDR,
+	.cldma_rx_skb_pool_max_size = CLDMA_RX_SKB_POOL_MAX_SIZE,
+	.cldma_rx_skb_reload_threshold = CLDMA_RX_SKB_RELOAD_THRESHOLD,
+	.tq_err_int_offset = TQ_ERR_INT_OFFSET,
+	.tq_err_int_bitmask = TQ_ERR_INT_BITMASK,
+	.tq_active_start_err_int_offset = TQ_ACTIVE_START_ERR_INT_OFFSET,
+	.tq_active_start_err_int_bitmask = TQ_ACTIVE_START_ERR_INT_BITMASK,
+	.rq_err_int_offset = RQ_ERR_INT_OFFSET,
+	.rq_err_int_bitmask = RQ_ERR_INT_BITMASK,
+	.rq_active_start_err_int_offset = RQ_ACTIVE_START_ERR_INT_OFFSET,
+	.rq_active_start_err_int_bitmask = RQ_ACTIVE_START_ERR_INT_BITMASK,
+	.reg_cldma_ul_start_addrl_0 = REG_CLDMA_UL_START_ADDRL_0,
+	.reg_cldma_ul_start_addrh_0 = REG_CLDMA_UL_START_ADDRH_0,
+	.reg_cldma_ul_current_addrl_0 = REG_CLDMA_UL_CURRENT_ADDRL_0,
+	.reg_cldma_ul_current_addrh_0 = REG_CLDMA_UL_CURRENT_ADDRH_0,
+	.reg_cldma_ul_status = REG_CLDMA_UL_STATUS,
+	.reg_cldma_ul_start_cmd = REG_CLDMA_UL_START_CMD,
+	.reg_cldma_ul_resume_cmd = REG_CLDMA_UL_RESUME_CMD,
+	.reg_cldma_ul_stop_cmd = REG_CLDMA_UL_STOP_CMD,
+	.reg_cldma_ul_error = REG_CLDMA_UL_ERROR,
+	.reg_cldma_ul_cfg = REG_CLDMA_UL_CFG,
+	.reg_cldma_ul_dummy_0 = REG_CLDMA_UL_DUMMY_0,
+	.reg_cldma_so_error = REG_CLDMA_SO_ERROR,
+	.reg_cldma_so_start_cmd = REG_CLDMA_SO_START_CMD,
+	.reg_cldma_so_resume_cmd = REG_CLDMA_SO_RESUME_CMD,
+	.reg_cldma_so_stop_cmd = REG_CLDMA_SO_STOP_CMD,
+	.reg_cldma_so_dummy_0 = REG_CLDMA_SO_DUMMY_0,
+	.reg_cldma_so_cfg = REG_CLDMA_SO_CFG,
+	.reg_cldma_so_start_addrl_0 = REG_CLDMA_SO_START_ADDRL_0,
+	.reg_cldma_so_start_addrh_0 = REG_CLDMA_SO_START_ADDRH_0,
+	.reg_cldma_so_current_addrl_0 = REG_CLDMA_SO_CUR_ADDRL_0,
+	.reg_cldma_so_current_addrh_0 = REG_CLDMA_SO_CUR_ADDRH_0,
+	.reg_cldma_so_status = REG_CLDMA_SO_STATUS,
+	.reg_cldma_debug_id_en = REG_CLDMA_DEBUG_ID_EN,
+	.reg_cldma_so_last_update_addrl_0 = REG_CLDMA_SO_LAST_UPDATE_ADDRL_0,
+	.reg_cldma_so_last_update_addrh_0 = REG_CLDMA_SO_LAST_UPDATE_ADDRH_0,
+	.reg_cldma_l2tisar0 = REG_CLDMA_L2TISAR0,
+	.reg_cldma_l2tisar1 = REG_CLDMA_L2TISAR1,
+	.reg_cldma_l2timr0 = REG_CLDMA_L2TIMR0,
+	.reg_cldma_l2timr1 = REG_CLDMA_L2TIMR1,
+	.reg_cldma_l2timcr0 = REG_CLDMA_L2TIMCR0,
+	.reg_cldma_l2timcr1 = REG_CLDMA_L2TIMCR1,
+	.reg_cldma_l2timsr0 = REG_CLDMA_L2TIMSR0,
+	.reg_cldma_l2timsr1 = REG_CLDMA_L2TIMSR1,
+	.reg_cldma_l3tisar0 = REG_CLDMA_L3TISAR0,
+	.reg_cldma_l3tisar1 = REG_CLDMA_L3TISAR1,
+	.reg_cldma_l3tisar2 = REG_CLDMA_L3TISAR2,
+	.reg_cldma_l2risar0 = REG_CLDMA_L2RISAR0,
+	.reg_cldma_l2risar1 = REG_CLDMA_L2RISAR1,
+	.reg_cldma_l2rimr0 = REG_CLDMA_L2RIMR0,
+	.reg_cldma_l2rimr1 = REG_CLDMA_L2RIMR1,
+	.reg_cldma_l2rimcr0 = REG_CLDMA_L2RIMCR0,
+	.reg_cldma_l2rimcr1 = REG_CLDMA_L2RIMCR1,
+	.reg_cldma_l2rimsr0 = REG_CLDMA_L2RIMSR0,
+	.reg_cldma_l2rimsr1 = REG_CLDMA_L2RIMSR1,
+	.reg_cldma_l3risar0 = REG_CLDMA_L3RISAR0,
+	.reg_cldma_l3risar1 = REG_CLDMA_L3RISAR1,
+	.reg_cldma_ip_busy = REG_CLDMA_IP_BUSY,
+	.reg_cldma_int_mask = REG_CLDMA_INT_EAP_USIP_MASK,
+	.reg_cldma4_int_mask = REG_CLDMA_INT_WF_MASK,
+	.reg_cldma_ip_busy_to_pcie_mask = REG_CLDMA_IP_BUSY_TO_PCIE_MASK,
+	.reg_cldma_ip_busy_to_pcie_mask_set = REG_CLDMA_IP_BUSY_TO_PCIE_MASK_SET,
+	.reg_cldma_ip_busy_to_pcie_mask_clr = REG_CLDMA_IP_BUSY_TO_PCIE_MASK_CLR,
+	.reg_cldma_ip_busy_to_ap_mask = REG_CLDMA_IP_BUSY_TO_AP_MASK,
+	.reg_cldma_ip_busy_to_ap_mask_set = REG_CLDMA_IP_BUSY_TO_AP_MASK_SET,
+	.reg_cldma_ip_busy_to_ap_mask_clr = REG_CLDMA_IP_BUSY_TO_AP_MASK_CLR,
+	.reg_cldma_ip_busy_to_md_mask_set = REG_CLDMA_IP_BUSY_TO_MD_MASK_SET,
+	.reg_cldma_rx_work_to_reg_mask_set = REG_CLDMA_RX_WORK_TO_REG_MASK_SET,
+	.reg_infra_rst0_set = REG_INFRA_RST0_SET,
+	.reg_infra_rst0_clr = REG_INFRA_RST0_CLR,
+};
+
+static void mtk_cldma_drv_init_m9xx(struct cldma_drv_info *drv_info)
+{
+	struct cldma_hw_regs *hw_regs;
+	struct mtk_md_dev *mdev;
+	int base;
+	u32 val;
+
+	mdev = drv_info->mdev;
+	base = drv_info->base_addr;
+	hw_regs = drv_info->hw_regs;
+
+	/* set CLDMA to 64 bit mode GPD */
+	val = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_ul_cfg);
+
+	val = (val & (~(0x7 << 5))) | ((0x4) << 5);
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_ul_cfg, val);
+
+	val = mtk_pci_read32(mdev, base + hw_regs->reg_cldma_so_cfg);
+	val = (val & (~(0x7 << 10))) | ((0x4) << 10) | (1 << 2);
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_so_cfg, val);
+
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_rx_work_to_reg_mask_set, ALLQ);
+
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_ip_busy_to_pcie_mask_set,
+			ALLQ << 16);
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_ip_busy_to_pcie_mask_clr,
+			ALLQ << 24);
+
+	/* enable interrupt to PCIe */
+	if (drv_info->hw_id == CLDMA4_HW_ID)
+		mtk_pci_write32(mdev, base + hw_regs->reg_cldma4_int_mask, 0);
+	else
+		mtk_pci_write32(mdev, base + hw_regs->reg_cldma_int_mask, 0);
+
+	/* disable illegal memory check */
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_ul_dummy_0, 1);
+	mtk_pci_write32(mdev, base + hw_regs->reg_cldma_so_dummy_0, 1);
+}
+
+static void mtk_cldma_drv_reset_m9xx(struct cldma_drv_info *drv_info)
+{
+	struct cldma_hw_regs *hw_regs;
+	struct mtk_md_dev *mdev;
+	u32 val;
+
+	mdev = drv_info->mdev;
+	hw_regs = drv_info->hw_regs;
+
+	val = mtk_pci_read32(mdev, REG_DEV_INFRA_BASE + hw_regs->reg_infra_rst0_set);
+
+	val |= 1 << (REG_CLDMA0_RST_SET_BIT + drv_info->hw_id);
+	mtk_pci_write32(mdev, REG_DEV_INFRA_BASE + hw_regs->reg_infra_rst0_set, val);
+	udelay(1);
+	val = mtk_pci_read32(mdev, REG_DEV_INFRA_BASE + hw_regs->reg_infra_rst0_clr);
+	val |= 1 << (REG_CLDMA0_RST_CLR_BIT + drv_info->hw_id);
+	mtk_pci_write32(mdev, REG_DEV_INFRA_BASE + hw_regs->reg_infra_rst0_clr, val);
+}
+
+struct cldma_drv_ops cldma_drv_ops_m9xx = {
+	.cldma_drv_init = mtk_cldma_drv_init_m9xx,
+	.cldma_drv_reset = mtk_cldma_drv_reset_m9xx,
+	.cldma_setup_start_addr = mtk_cldma_setup_start_addr,
+	.cldma_mask_intr = mtk_cldma_mask_intr,
+	.cldma_unmask_intr = mtk_cldma_unmask_intr,
+	.cldma_clr_intr_status = mtk_cldma_clr_intr_status,
+	.cldma_check_intr_status = mtk_cldma_check_intr_status,
+	.cldma_start_queue = mtk_cldma_start_queue,
+	.cldma_resume_queue = mtk_cldma_resume_queue,
+	.cldma_queue_status = mtk_cldma_queue_status,
+	.cldma_stop_queue = mtk_cldma_stop_queue,
+	.cldma_clear_ip_busy = mtk_cldma_clear_ip_busy,
+	.cldma_get_intr_status = mtk_cldma_get_intr_status,
+	.cldma_get_tx_start_addr = mtk_cldma_get_tx_start_addr,
+	.cldma_get_rx_curr_addr = mtk_cldma_get_rx_curr_addr,
+};
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.h b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.h
new file mode 100644
index 000000000000..2c63c43ff065
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.h
@@ -0,0 +1,103 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2023, MediaTek Inc.
+ */
+
+#ifndef __MTK_CLDMA_DRV_M9XX_H__
+#define __MTK_CLDMA_DRV_M9XX_H__
+
+#define CLDMA0_BASE_ADDR				(0x1021C000)
+#define CLDMA1_BASE_ADDR				(0x1021E000)
+#define CLDMA4_BASE_ADDR				(0x10224000)
+
+#define CLDMA_RX_SKB_POOL_MAX_SIZE			(64)
+#define CLDMA_RX_SKB_RELOAD_THRESHOLD			(16)
+
+/* L2TISAR0 */
+#define TQ_ERR_INT_OFFSET				(16)
+#define TQ_ERR_INT_BITMASK				(0x00FF0000)
+#define TQ_ACTIVE_START_ERR_INT_OFFSET			(24)
+#define TQ_ACTIVE_START_ERR_INT_BITMASK			(0xFF000000)
+
+/* L2RISAR0 */
+#define RQ_ERR_INT_OFFSET				(16)
+#define RQ_ERR_INT_BITMASK				(0x00FF0000)
+#define RQ_ACTIVE_START_ERR_INT_OFFSET			(24)
+#define RQ_ACTIVE_START_ERR_INT_BITMASK			(0xFF000000)
+
+/* CLDMA IN(Tx) */
+#define REG_CLDMA_UL_START_ADDRL_0			(0x0004)
+#define REG_CLDMA_UL_START_ADDRH_0			(0x0008)
+#define REG_CLDMA_UL_CURRENT_ADDRL_0			(0x0044)
+#define REG_CLDMA_UL_CURRENT_ADDRH_0			(0x0048)
+#define REG_CLDMA_UL_STATUS				(0x0084)
+#define REG_CLDMA_UL_START_CMD				(0x0088)
+#define REG_CLDMA_UL_RESUME_CMD				(0x008C)
+#define REG_CLDMA_UL_STOP_CMD				(0x0090)
+#define REG_CLDMA_UL_ERROR				(0x0094)
+#define REG_CLDMA_UL_CFG				(0x0098)
+#define REG_CLDMA_UL_DUMMY_0				(0x009C)
+
+/* CLDMA OUT(Rx) */
+#define REG_CLDMA_SO_ERROR				(0x0400 + 0x0100)
+#define REG_CLDMA_SO_START_CMD				(0x0400 + 0x01BC)
+#define REG_CLDMA_SO_RESUME_CMD				(0x0400 + 0x01C0)
+#define REG_CLDMA_SO_STOP_CMD				(0x0400 + 0x01C4)
+#define REG_CLDMA_SO_DUMMY_0				(0x0400 + 0x0108)
+#define REG_CLDMA_SO_CFG				(0x0400 + 0x0004)
+#define REG_CLDMA_SO_START_ADDRL_0			(0x0400 + 0x0078)
+#define REG_CLDMA_SO_START_ADDRH_0			(0x0400 + 0x007C)
+#define REG_CLDMA_SO_CUR_ADDRL_0			(0x0400 + 0x00B8)
+#define REG_CLDMA_SO_CUR_ADDRH_0			(0x0400 + 0x00BC)
+#define REG_CLDMA_SO_STATUS				(0x0400 + 0x00F8)
+#define REG_CLDMA_DEBUG_ID_EN				(0x0400 + 0x00FC)
+#define REG_CLDMA_SO_LAST_UPDATE_ADDRL_0		(0x0400 + 0x01C8)
+#define REG_CLDMA_SO_LAST_UPDATE_ADDRH_0		(0x0400 + 0x01CC)
+
+/* CLDMA MISC */
+#define REG_CLDMA_L2TISAR0				(0x0800 + 0x0010)
+#define REG_CLDMA_L2TISAR1				(0x0800 + 0x0014)
+#define REG_CLDMA_L2TIMR0				(0x0800 + 0x0018)
+#define REG_CLDMA_L2TIMR1				(0x0800 + 0x001C)
+#define REG_CLDMA_L2TIMCR0				(0x0800 + 0x0020)
+#define REG_CLDMA_L2TIMCR1				(0x0800 + 0x0024)
+#define REG_CLDMA_L2TIMSR0				(0x0800 + 0x0028)
+#define REG_CLDMA_L2TIMSR1				(0x0800 + 0x002C)
+#define REG_CLDMA_L3TISAR0				(0x0800 + 0x0030)
+#define REG_CLDMA_L3TISAR1				(0x0800 + 0x0034)
+#define REG_CLDMA_L2RISAR0				(0x0800 + 0x0050)
+#define REG_CLDMA_L2RISAR1				(0x0800 + 0x0054)
+#define REG_CLDMA_L3RISAR0				(0x0800 + 0x0070)
+#define REG_CLDMA_L3RISAR1				(0x0800 + 0x0074)
+#define REG_CLDMA_IP_BUSY				(0x0800 + 0x00B4)
+#define REG_CLDMA_L3TISAR2				(0x0800 + 0x00C0)
+
+#define REG_CLDMA_L2RIMR0				(0x0800 + 0x00E8)
+#define REG_CLDMA_L2RIMR1				(0x0800 + 0x00EC)
+#define REG_CLDMA_L2RIMCR0				(0x0800 + 0x00F0)
+#define REG_CLDMA_L2RIMCR1				(0x0800 + 0x00F4)
+#define REG_CLDMA_L2RIMSR0				(0x0800 + 0x00F8)
+#define REG_CLDMA_L2RIMSR1				(0x0800 + 0x00FC)
+
+#define REG_CLDMA_INT_EAP_USIP_MASK			(0x0800 + 0x011C)
+#define REG_CLDMA_INT_WF_MASK				(0x0800 + 0x0120)
+#define REG_CLDMA_RQ1_GPD_DONE_CNT			(0x0800 + 0x0174)
+#define REG_CLDMA_TQ1_GPD_DONE_CNT			(0x0800 + 0x0184)
+
+#define REG_CLDMA_IP_BUSY_TO_PCIE_MASK			(0x0800 + 0x0194)
+#define REG_CLDMA_IP_BUSY_TO_PCIE_MASK_SET		(0x0800 + 0x0198)
+#define REG_CLDMA_IP_BUSY_TO_PCIE_MASK_CLR		(0x0800 + 0x019C)
+
+#define REG_CLDMA_IP_BUSY_TO_AP_MASK			(0x0800 + 0x0200)
+#define REG_CLDMA_IP_BUSY_TO_AP_MASK_SET		(0x0800 + 0x0204)
+#define REG_CLDMA_IP_BUSY_TO_AP_MASK_CLR		(0x0800 + 0x0208)
+#define REG_CLDMA_IP_BUSY_TO_MD_MASK_SET		(0x0800 + 0x0210)
+#define REG_CLDMA_RX_WORK_TO_REG_MASK_SET		(0x0800 + 0x021C)
+
+/* CLDMA RESET */
+#define REG_INFRA_RST0_SET				(0x120)
+#define REG_INFRA_RST0_CLR				(0x124)
+#define REG_CLDMA0_RST_SET_BIT				(8)
+#define REG_CLDMA0_RST_CLR_BIT				(8)
+
+#endif
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c b/drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c
new file mode 100644
index 000000000000..c1bb787ee981
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c
@@ -0,0 +1,24 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#include "mtk_cldma.h"
+#include "mtk_trans_ctrl.h"
+
+#define TRB_SRV_NUM	(1)
+
+static const int mtk_srv_cfg_m9xx[NR_CLDMA][HW_QUE_NUM] = {
+	{0},
+	{0},
+};
+
+static const struct queue_info mtk_queue_info_m9xx[] = {
+};
+
+struct mtk_ctrl_info mtk_ctrl_info_m9xx = {
+	.queue_info = (struct queue_info *)mtk_queue_info_m9xx,
+	.queue_info_num = ARRAY_SIZE(mtk_queue_info_m9xx),
+	.srv_cfg = (int **)mtk_srv_cfg_m9xx,
+	.trb_srv_num = TRB_SRV_NUM,
+};
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_pci.c b/drivers/net/wwan/t9xx/pcie/mtk_pci.c
index 68dddd652eff..2f51e150750d 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_pci.c
+++ b/drivers/net/wwan/t9xx/pcie/mtk_pci.c
@@ -879,6 +879,28 @@ static void mtk_pci_free_irq(struct mtk_md_dev *mdev)
 	pci_free_irq_vectors(pdev);
 }
 
+static int mtk_pci_dev_init(struct mtk_md_dev *mdev)
+{
+	int ret;
+
+	ret = mtk_trans_ctrl_init(mdev);
+	if (ret) {
+		dev_err(mdev->dev, "Failed to initialize control plane: %d\n", ret);
+		return ret;
+	}
+
+	return 0;
+}
+
+static void mtk_pci_dev_exit(struct mtk_md_dev *mdev)
+{
+	mtk_trans_ctrl_exit(mdev);
+}
+
+static int mtk_pci_dev_start(struct mtk_md_dev *mdev)
+{
+	return 0;
+}
 static const struct mtk_dev_ops pci_hw_ops = {
 	.get_dev_state = mtk_pci_get_dev_state,
 	.ack_dev_state = mtk_pci_ack_dev_state,
@@ -955,6 +977,12 @@ static int mtk_pci_probe(struct pci_dev *pdev, const struct pci_device_id *id)
 	if (ret)
 		goto free_mhccif;
 
+	ret = mtk_pci_dev_init(mdev);
+	if (ret) {
+		dev_err(mdev->dev, "Failed to init dev.\n");
+		goto free_irq;
+	}
+
 	pci_set_master(pdev);
 	mtk_pci_unmask_irq(mdev, priv->mhccif_irq_id);
 
@@ -971,10 +999,20 @@ static int mtk_pci_probe(struct pci_dev *pdev, const struct pci_device_id *id)
 		goto clear_master;
 	}
 
+	ret = mtk_pci_dev_start(mdev);
+	if (ret) {
+		dev_err(mdev->dev, "Failed to start dev.\n");
+		goto free_saved_state;
+	}
+
 	return 0;
 
+free_saved_state:
+	pci_load_and_free_saved_state(pdev, &priv->saved_state);
 clear_master:
 	pci_clear_master(pdev);
+	mtk_pci_dev_exit(mdev);
+free_irq:
 	mtk_pci_free_irq(mdev);
 free_mhccif:
 	mtk_mhccif_exit(mdev);
@@ -998,6 +1036,7 @@ static void mtk_pci_remove(struct pci_dev *pdev)
 	}
 
 	pci_clear_master(pdev);
+	mtk_pci_dev_exit(mdev);
 	mtk_pci_free_irq(mdev);
 	mtk_mhccif_exit(mdev);
 	pci_load_and_free_saved_state(pdev, &priv->saved_state);
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_pci_reg.h b/drivers/net/wwan/t9xx/pcie/mtk_pci_reg.h
index 3f0667e8a846..73299ae03f89 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_pci_reg.h
+++ b/drivers/net/wwan/t9xx/pcie/mtk_pci_reg.h
@@ -21,6 +21,7 @@
 #define REG_IMASK_HOST_MSIX_SET_GRP0_0		0x3000
 #define REG_IMASK_HOST_MSIX_CLR_GRP0_0		0x3080
 #define REG_IMASK_HOST_MSIX_GRP0_0		0x3100
+#define REG_DEV_INFRA_BASE			0x10001000
 
 /* mhccif registers */
 #define MHCCIF_RC2EP_SW_BSY			0x4
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c
new file mode 100644
index 000000000000..55297cfcdbc6
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c
@@ -0,0 +1,541 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#include <linux/device.h>
+#include <linux/freezer.h>
+#include <linux/hashtable.h>
+#include <linux/kthread.h>
+#include <linux/list.h>
+#include <linux/nospec.h>
+#include <linux/sched.h>
+#include <linux/wait.h>
+
+#include "mtk_cldma.h"
+#include "mtk_ctrl_plane.h"
+#include "mtk_dev.h"
+#include "mtk_pci.h"
+#include "mtk_trans_ctrl.h"
+
+#define MTK_DFLT_PORT_NAME_LEN			(20)
+
+static struct mtk_ctrl_info_desc mtk_ctrl_info_tbl[] = {
+	{2304, &ctrl_info_name(m9xx)},
+	{0, NULL},
+};
+
+#define QUEUE_CHL_MASK	0xFFFF
+
+static bool mtk_queue_list_is_full(struct mtk_ctrl_trans *trans, struct queue_info *que)
+{
+	return trans->trans_list[que->hif_id].skb_list[que->txqno].qlen >= SKB_LIST_MAX_LEN;
+}
+
+static bool mtk_ctrl_chs_is_busy_or_empty(struct trb_srv *srv)
+{
+	struct srv_que *srv_que;
+	int i;
+
+	for (i = 0; i < NR_CLDMA; i++)
+		list_for_each_entry(srv_que, &srv->srv_q_list[i], list)
+			if (!skb_queue_empty(&srv->trans->trans_list[i].skb_list[srv_que->qno]) &&
+			    mtk_cldma_get_tx_budget(srv->trans->dev, i, srv_que->qno))
+				return false;
+
+	return true;
+}
+
+static void mtk_ctrl_ch_flush(struct sk_buff_head *skb_list)
+{
+	struct sk_buff *skb;
+	struct trb *trb;
+
+	while (!skb_queue_empty(skb_list)) {
+		skb = skb_dequeue(skb_list);
+		trb = (struct trb *)skb->cb;
+		trb->status = -EIO;
+		trb->trb_complete(skb);
+	}
+}
+
+static void mtk_ctrl_chs_flush(struct trb_srv *srv)
+{
+	struct srv_que *srv_que;
+	int i;
+
+	for (i = 0; i < NR_CLDMA; i++)
+		list_for_each_entry(srv_que, &srv->srv_q_list[i], list)
+			mtk_ctrl_ch_flush(&srv->trans->trans_list[i].skb_list[srv_que->qno]);
+}
+
+static int mtk_ch_status_check(struct mtk_ctrl_trans *trans, struct sk_buff *skb)
+{
+	struct trb *trb = (struct trb *)skb->cb;
+	struct trb_open_priv *trb_open_priv;
+	struct queue_info *que;
+	int ret = 0;
+
+	que = radix_tree_lookup(&trans->queue_tbl, trb->channel_id & QUEUE_CHL_MASK);
+
+	switch (trb->cmd) {
+	case TRB_CMD_ENABLE:
+		trb_open_priv = (struct trb_open_priv *)skb->data;
+		trb_open_priv->log_rg_offset = que->log_rg_offset;
+		trans->usr_cnt[que->hif_id][que->txqno]++;
+		if (trans->usr_cnt[que->hif_id][que->txqno] == 1)
+			break;
+		trb_open_priv->tx_mtu = que->tx_mtu;
+		trb_open_priv->rx_mtu = que->rx_mtu;
+		trb_open_priv->tx_frag_size = que->tx_frag_size;
+		trb_open_priv->rx_frag_size = que->rx_frag_size;
+		if (mtk_cldma_check_ch_cfg(trans->dev, que)) {
+			trb->status = -EINVAL;
+			ret = -EINVAL;
+		} else {
+			trb->status = -EBUSY;
+			ret = -EBUSY;
+		}
+		trb->trb_complete(skb);
+		break;
+	case TRB_CMD_DISABLE:
+		if (trans->usr_cnt[que->hif_id][que->txqno] > 0) {
+			trans->usr_cnt[que->hif_id][que->txqno]--;
+			if (!trans->usr_cnt[que->hif_id][que->txqno])
+				break;
+		}
+		trb->status = -EBUSY;
+		trb->trb_complete(skb);
+		ret = -EBUSY;
+		break;
+	default:
+		dev_err((trans->mdev)->dev, "Invalid trb command(%d)\n", trb->cmd);
+		ret = -EINVAL;
+		break;
+	}
+	return ret;
+}
+
+static void mtk_ctrl_trb_handler(struct trb_srv *srv, struct trans_list *trans_list, u32 qno)
+{
+	struct sk_buff_head *skb_list = &trans_list->skb_list[qno];
+	struct mtk_ctrl_trans *trans = srv->trans;
+	struct sk_buff *skb, *skb_next;
+	struct trb *trb, *trb_next;
+	bool kick = false;
+	int loop = 0;
+	int err;
+
+	do {
+		skb = skb_peek(skb_list);
+		if (!skb)
+			break;
+		trb = (struct trb *)skb->cb;
+
+		switch (trb->cmd) {
+		case TRB_CMD_ENABLE:
+		case TRB_CMD_DISABLE:
+			skb_unlink(skb, skb_list);
+			err = mtk_ch_status_check(trans, skb);
+			if (!err) {
+				kick = true;
+				if (trb->cmd == TRB_CMD_DISABLE)
+					mtk_ctrl_ch_flush(skb_list);
+			}
+			break;
+		case TRB_CMD_TX:
+			err = mtk_cldma_submit_tx(trans->dev, skb);
+			if (err) {
+				if (trans_list->tx_burst_cnt[qno]) {
+					kick = true;
+					break;
+				}
+				if (err == -EAGAIN)
+					return;
+
+				skb_unlink(skb, skb_list);
+				trb->status = err;
+				trb->trb_complete(skb);
+				break;
+			}
+
+			trans_list->tx_burst_cnt[qno]++;
+			if (trans_list->tx_burst_cnt[qno] >= TX_BURST_MAX_CNT ||
+			    skb_queue_is_last(skb_list, skb)) {
+				kick = true;
+			} else {
+				skb_next = skb_peek_next(skb, skb_list);
+				trb_next = (struct trb *)skb_next->cb;
+				if (trb_next->cmd != TRB_CMD_TX)
+					kick = true;
+			}
+
+			skb_unlink(skb, skb_list);
+			break;
+		default:
+			skb_unlink(skb, skb_list);
+		}
+
+		if (kick) {
+			mtk_cldma_trb_process(trans->dev, skb);
+			trans_list->tx_burst_cnt[qno] = 0;
+			kick = false;
+		}
+
+		loop++;
+	} while (loop < TRB_NUM_PER_ROUND);
+}
+
+static void mtk_ctrl_trb_process(struct trb_srv *srv)
+{
+	struct mtk_ctrl_trans *trans = srv->trans;
+	struct srv_que *srv_que;
+	int i;
+
+	for (i = 0; i < NR_CLDMA; i++)
+		list_for_each_entry(srv_que, &srv->srv_q_list[i], list)
+			mtk_ctrl_trb_handler(srv, &trans->trans_list[i], srv_que->qno);
+}
+
+static int mtk_ctrl_trb_thread(void *args)
+{
+	struct trb_srv *srv = args;
+
+	for (;;) {
+		wait_event_interruptible(srv->trb_waitq,
+					 !mtk_ctrl_chs_is_busy_or_empty(srv) ||
+					 kthread_should_stop() || kthread_should_park());
+		if (kthread_should_stop())
+			break;
+
+		if (kthread_should_park())
+			kthread_parkme();
+
+		do {
+			mtk_ctrl_trb_process(srv);
+			cond_resched();
+		} while (!mtk_ctrl_chs_is_busy_or_empty(srv) && !kthread_should_stop() &&
+			 !kthread_should_park());
+	}
+	mtk_ctrl_chs_flush(srv);
+	return 0;
+}
+
+static int mtk_ctrl_trb_srv_init(struct mtk_ctrl_trans *trans)
+{
+	struct srv_que *srv_que;
+	struct trb_srv *srv;
+	int i, j;
+	int ret;
+
+	for (i = 0; i < trans->trb_srv_num; i++) {
+		srv = kzalloc_obj(*srv);
+		if (!srv) {
+			ret = -ENOMEM;
+			goto err_free_srv;
+		}
+
+		srv->trans = trans;
+		srv->srv_id = i;
+		trans->trb_srv[i] = srv;
+
+		init_waitqueue_head(&srv->trb_waitq);
+		for (j = 0; j < NR_CLDMA; j++)
+			INIT_LIST_HEAD(&srv->srv_q_list[j]);
+	}
+
+	for (i = 0; i < NR_CLDMA; i++)
+		for (j = 0; j < HW_QUE_NUM; j++) {
+			if (trans->srv_cfg[i][j] < 0 ||
+			    trans->srv_cfg[i][j] >= trans->trb_srv_num)
+				trans->srv_cfg[i][j] = 0;
+			srv_que = kzalloc_obj(*srv_que);
+			if (!srv_que) {
+				ret = -ENOMEM;
+				goto err_free_srv_que;
+			}
+			srv_que->hif_id = i;
+			srv_que->qno = j;
+			list_add_tail(&srv_que->list,
+				      &trans->trb_srv[trans->srv_cfg[i][j]]->srv_q_list[i]);
+		}
+
+	for (i = 0; i < trans->trb_srv_num; i++) {
+		trans->trb_srv[i]->trb_thread = kthread_run(mtk_ctrl_trb_thread, trans->trb_srv[i],
+							    "mtk_trb_srv%d_%s", i,
+							    trans->mdev->dev_str);
+		if (IS_ERR(trans->trb_srv[i]->trb_thread)) {
+			ret = PTR_ERR(trans->trb_srv[i]->trb_thread);
+			trans->trb_srv[i]->trb_thread = NULL;
+			goto err_stop_kthread;
+		}
+	}
+
+	return 0;
+err_stop_kthread:
+	while (--i >= 0)
+		kthread_stop(trans->trb_srv[i]->trb_thread);
+err_free_srv_que:
+	for (i = 0; i < trans->trb_srv_num; i++) {
+		for (j = 0; j < NR_CLDMA; j++) {
+			struct srv_que *next_srv_que;
+
+			list_for_each_entry_safe(srv_que, next_srv_que,
+						 &trans->trb_srv[i]->srv_q_list[j], list) {
+				list_del(&srv_que->list);
+				kfree(srv_que);
+			}
+		}
+	}
+err_free_srv:
+	for (i = 0; i < trans->trb_srv_num; i++) {
+		if (!trans->trb_srv[i])
+			break;
+		kfree(trans->trb_srv[i]);
+		trans->trb_srv[i] = NULL;
+	}
+
+	return ret;
+}
+
+static void mtk_ctrl_trb_srv_exit(struct mtk_ctrl_trans *trans)
+{
+	struct srv_que *srv_que, *next_srv_que;
+	struct trb_srv *srv;
+	int i, j;
+
+	for (i = 0; i < trans->trb_srv_num; i++) {
+		srv = trans->trb_srv[i];
+		kthread_stop(srv->trb_thread);
+		for (j = 0; j < NR_CLDMA; j++) {
+			list_for_each_entry_safe(srv_que, next_srv_que,
+						 &trans->trb_srv[i]->srv_q_list[j], list) {
+				list_del(&srv_que->list);
+				kfree(srv_que);
+			}
+		}
+		kfree(srv);
+		trans->trb_srv[i] = NULL;
+	}
+}
+
+static void mtk_ctrl_remove_radix_tree(struct mtk_ctrl_trans *trans)
+{
+	struct radix_tree_iter iter;
+	struct queue_info *queue;
+	void __rcu **slot;
+
+	radix_tree_for_each_slot(slot, &trans->queue_tbl, &iter, 0) {
+		queue = radix_tree_deref_slot(slot);
+		if (!queue)
+			continue;
+		radix_tree_delete(&trans->queue_tbl, iter.index);
+		kfree(queue);
+	}
+}
+
+static int mtk_pcie_hif_init(struct mtk_md_dev *mdev)
+{
+	struct mtk_ctrl_blk *ctrl_blk = mdev->ctrl_blk;
+	struct queue_info *queue, *queue_info;
+	struct mtk_ctrl_trans *trans;
+	int i, j;
+	int ret;
+
+	trans = ctrl_blk->ctrl_hw_priv;
+	trans->ctrl_blk = ctrl_blk;
+	queue_info = trans->queue_info;
+
+	INIT_RADIX_TREE(&trans->queue_tbl, GFP_KERNEL);
+	for (i = 0; i < trans->queue_info_num; i++) {
+		queue = kmemdup(queue_info + i, sizeof(*queue), GFP_KERNEL);
+		if (!queue) {
+			ret = -ENOMEM;
+			goto err_free_radix_tree;
+		}
+		if (queue->txqno >= HW_QUE_NUM || queue->rxqno >= HW_QUE_NUM ||
+		    queue->hif_id >= NR_CLDMA) {
+			dev_err(mdev->dev, "Failed to get correct queue info %x\n",
+				queue->rx_chl);
+			kfree(queue);
+			ret = -EINVAL;
+			goto err_free_radix_tree;
+		}
+		ret = radix_tree_insert(&trans->queue_tbl, queue->rx_chl & QUEUE_CHL_MASK, queue);
+		if (ret) {
+			dev_err(mdev->dev, "Insert %x fail, ret: %d", queue->rx_chl, ret);
+			kfree(queue);
+			goto err_free_radix_tree;
+		}
+		trans->queues_cnt++;
+	}
+
+	for (i = 0; i < NR_CLDMA; i++) {
+		for (j = 0; j < HW_QUE_NUM; j++) {
+			skb_queue_head_init(&trans->trans_list[i].skb_list[j]);
+			trans->trans_list[i].tx_burst_cnt[j] = 0;
+		}
+	}
+	ret = mtk_cldma_init(trans);
+	if (ret)
+		goto err_free_radix_tree;
+
+	ret = mtk_ctrl_trb_srv_init(trans);
+	if (ret)
+		goto err_cldma_exit;
+
+	atomic_set(&trans->available, 1);
+
+	return 0;
+
+err_cldma_exit:
+	mtk_cldma_exit(trans);
+err_free_radix_tree:
+	mtk_ctrl_remove_radix_tree(trans);
+
+	return ret;
+}
+
+static int mtk_pcie_hif_exit(struct mtk_md_dev *mdev)
+{
+	struct mtk_ctrl_blk *ctrl_blk = mdev->ctrl_blk;
+	struct mtk_ctrl_trans *trans;
+
+	trans = ctrl_blk->ctrl_hw_priv;
+
+	atomic_set(&trans->available, 0);
+	mtk_ctrl_trb_srv_exit(trans);
+	mtk_ctrl_remove_radix_tree(trans);
+	mtk_cldma_exit(trans);
+
+	return 0;
+}
+
+static int mtk_pcie_hif_submit_skb(struct mtk_md_dev *mdev, struct sk_buff *skb, bool force_send)
+{
+	struct mtk_ctrl_blk *ctrl_blk = mdev->ctrl_blk;
+	struct mtk_ctrl_trans *trans;
+	struct queue_info *que;
+	struct trb *trb;
+
+	trans = ctrl_blk->ctrl_hw_priv;
+	trb = (struct trb *)skb->cb;
+
+	if (trb->cmd == TRB_CMD_STOP || trb->cmd == TRB_CMD_RECOVER) {
+		trb->trb_complete(skb);
+		return 0;
+	}
+
+	que = radix_tree_lookup(&trans->queue_tbl, trb->channel_id & QUEUE_CHL_MASK);
+	if (!que) {
+		dev_warn(mdev->dev, "lookup que fail, ch_id: %x, que: 0x%p\n",
+			 trb->channel_id, que);
+		return -EINVAL;
+	}
+
+	if (!atomic_read(&trans->available))
+		return -EIO;
+
+	if (mtk_queue_list_is_full(trans, que) && !force_send)
+		return -EAGAIN;
+
+	if (trb->cmd == TRB_CMD_DISABLE)
+		skb_queue_head(&trans->trans_list[que->hif_id].skb_list[que->txqno], skb);
+	else
+		skb_queue_tail(&trans->trans_list[que->hif_id].skb_list[que->txqno], skb);
+
+	wake_up(&trans->trb_srv[trans->srv_cfg[que->hif_id][que->txqno]]->trb_waitq);
+
+	return 0;
+}
+
+static int mtk_pcie_hif_cmd_func(struct mtk_md_dev *mdev, int cmd, void *data)
+{
+	struct mtk_ctrl_blk *ctrl_blk = mdev->ctrl_blk;
+	struct mtk_ctrl_trans *trans;
+	struct queue_info *que;
+
+	switch (cmd) {
+	case HIF_CTRL_CMD_CHECK_TX_FULL:
+		trans = ctrl_blk->ctrl_hw_priv;
+		que = radix_tree_lookup(&trans->queue_tbl,
+					((union ctrl_hif_cmd_data *)data)->rx_ch & QUEUE_CHL_MASK);
+		if (!que) {
+			dev_warn(mdev->dev, "Failed to find que to check tx full\n");
+			return -EINVAL;
+		}
+		return mtk_queue_list_is_full(trans, que);
+	default:
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static struct mtk_ctrl_hif_ops pcie_ctrl_ops = {
+	.init = mtk_pcie_hif_init,
+	.exit = mtk_pcie_hif_exit,
+	.submit_skb = mtk_pcie_hif_submit_skb,
+	.send_cmd = mtk_pcie_hif_cmd_func,
+};
+
+static void mtk_trans_get_ctrl_info(struct mtk_ctrl_cfg *cfg,
+				    struct mtk_ctrl_trans *trans, u32 hw_ver)
+{
+	struct mtk_ctrl_info_desc *ctrl_info_desc;
+	struct mtk_ctrl_info *ctrl_info;
+	u8 i;
+
+	for (i = 0; (ctrl_info_desc = &mtk_ctrl_info_tbl[i]) && ctrl_info_desc &&
+	     ctrl_info_desc->ctrl_info; i++) {
+		if (ctrl_info_desc->hw_ver != hw_ver)
+			continue;
+
+		ctrl_info = ctrl_info_desc->ctrl_info;
+		memcpy(trans->srv_cfg, ctrl_info->srv_cfg,
+		       sizeof(int) * NR_CLDMA * HW_QUE_NUM);
+		trans->queue_info = ctrl_info->queue_info;
+		trans->queue_info_num = ctrl_info->queue_info_num;
+		trans->trb_srv_num = ctrl_info->trb_srv_num;
+	}
+}
+
+int mtk_trans_ctrl_init(struct mtk_md_dev *mdev)
+{
+	struct mtk_ctrl_trans *trans;
+	struct mtk_ctrl_blk *ctrl_blk;
+	int err;
+
+	trans = devm_kzalloc(mdev->dev, sizeof(*trans), GFP_KERNEL);
+	if (!trans)
+		return -ENOMEM;
+	trans->mdev = mdev;
+	trans->queues_cnt = 0;
+
+	mtk_trans_get_ctrl_info(NULL, trans, mdev->hw_ver);
+	if (!trans->queue_info ||
+	    trans->trb_srv_num <= 0 || trans->trb_srv_num > TRB_SRV_MAX_NUM ||
+	    trans->queue_info_num <= 0) {
+		dev_err(mdev->dev, "Failed to get ctrl info!\n");
+		goto err_free_cfg;
+	}
+
+	err = mtk_ctrl_init(mdev, &pcie_ctrl_ops);
+	if (err)
+		goto err_free_cfg;
+
+	ctrl_blk = mdev->ctrl_blk;
+	ctrl_blk->ctrl_hw_priv = trans;
+
+	return 0;
+
+err_free_cfg:
+	return -ENOMEM;
+}
+
+int mtk_trans_ctrl_exit(struct mtk_md_dev *mdev)
+{
+	mtk_ctrl_exit(mdev);
+
+	return 0;
+}
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h
index d6de4c43b529..0d25d1f51671 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h
+++ b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h
@@ -13,9 +13,95 @@
 
 #include "mtk_dev.h"
 
+#define TRB_SRV_MAX_NUM			(1)
+#define HW_QUE_NUM			(8)
+#define TX_GPD_NUM			(16)
+#define RX_GPD_NUM			(TX_GPD_NUM)
+#define MIN_GPD_NUM			(2)
+#define SKB_LIST_MAX_LEN		(16)
+#define MTU_RSV_ROOM			(0x100)
+#define TRB_NUM_PER_ROUND		(TX_GPD_NUM)
+#define TX_BURST_MAX_CNT		(TX_GPD_NUM / 4 + 1)
+
+#define HIF_ID(peer_id)			((peer_id) - 1)
+
+enum mtk_hif_id {
+	CLDMA0,
+	CLDMA1,
+	CLDMA4,
+	NR_CLDMA
+};
+
+struct queue_info {
+	u32 tx_chl;
+	u32 rx_chl;
+	enum mtk_hif_id hif_id;
+	u32 txqno;
+	u32 rxqno;
+	u32 tx_mtu;
+	u32 rx_mtu;
+	u32 tx_nr_gpds;
+	u32 rx_nr_gpds;
+	u32 tx_frag_size;
+	u32 rx_frag_size;
+	u8 log_rg_offset;
+};
+
+struct trans_list {
+	struct sk_buff_head skb_list[HW_QUE_NUM];
+	u8 tx_burst_cnt[HW_QUE_NUM];
+};
+
 struct mtk_ctrl_trans {
 	struct mtk_ctrl_blk *ctrl_blk;
+	struct trb_srv *trb_srv[TRB_SRV_MAX_NUM];
+	struct trans_list trans_list[NR_CLDMA];
+	void *dev;
+	struct radix_tree_root queue_tbl;
 	struct mtk_md_dev *mdev;
+	int usr_cnt[NR_CLDMA][HW_QUE_NUM];
+	u32 tx_mtu_cfg[NR_CLDMA][HW_QUE_NUM];
+	u32 rx_mtu_cfg[NR_CLDMA][HW_QUE_NUM];
+	atomic_t available;
+	int queues_cnt;
+	int srv_cfg[NR_CLDMA][HW_QUE_NUM];
+	struct queue_info *queue_info;
+	int queue_info_num;
+	int trb_srv_num;
+};
+
+struct srv_que {
+	u32 hif_id;
+	u32 qno;
+	struct list_head list;
 };
 
+struct trb_srv {
+	u32 srv_id;
+	struct list_head srv_q_list[NR_CLDMA];
+	struct mtk_ctrl_trans *trans;
+	wait_queue_head_t trb_waitq;
+	struct task_struct *trb_thread;
+};
+
+struct mtk_ctrl_info {
+	struct mtk_ctrl_cfg *ctrl_cfg;
+	int **srv_cfg;
+	struct queue_info *queue_info;
+	u32 queue_info_num;
+	u32 trb_srv_num;
+};
+
+struct mtk_ctrl_info_desc {
+	u32 hw_ver;
+	struct mtk_ctrl_info *ctrl_info;
+};
+
+#define ctrl_info_name(NAME)	mtk_ctrl_info_##NAME
+
+extern struct mtk_ctrl_info mtk_ctrl_info_m9xx;
+
+int mtk_trans_ctrl_init(struct mtk_md_dev *mdev);
+int mtk_trans_ctrl_exit(struct mtk_md_dev *mdev);
+
 #endif

-- 
2.34.1



^ permalink raw reply related

* [PATCH v4 4/7] net: wwan: t9xx: Add control port
From: Jack Wu via B4 Relay @ 2026-07-09 10:53 UTC (permalink / raw)
  To: Loic Poulain, Sergey Ryazanov, Johannes Berg, Andrew Lunn,
	David S. Miller, Eric Dumazet, Jakub Kicinski, Paolo Abeni,
	Jack Wu, Wen-Zhi Huang, Shi-Wei Yeh, Minano Tseng,
	Matthias Brugger, AngeloGioacchino Del Regno, Simon Horman,
	Jonathan Corbet, Shuah Khan
  Cc: linux-kernel, netdev, linux-arm-kernel, linux-mediatek, linux-doc
In-Reply-To: <20260709-t9xx_driver_v1-v4-0-a8c009d509c5@compal.com>

From: Jack Wu <jackbb_wu@compal.com>

The control port consists of port I/O and port manager.
Port I/O provides a common operation as defined by "struct port_ops",
and the operation is managed by the "port manager". It provides
interfaces to internal users, the implemented internal interfaces are
open, close, write and recv_register.

The port manager defines and implements port management interfaces and
structures. It is responsible for port creation, destroying, and managing
port states. It sends data from port I/O to CLDMA via TRB ( Transaction
Request Block ), and dispatches received data from CLDMA to port I/O.
The using port will be held in the "stale list" when the driver destroys
it, and after creating it again, the user can continue to use it.

Signed-off-by: Jack Wu <jackbb_wu@compal.com>
---
 drivers/net/wwan/t9xx/Makefile                 |   4 +-
 drivers/net/wwan/t9xx/mtk_ctrl_plane.c         |  19 +-
 drivers/net/wwan/t9xx/mtk_ctrl_plane.h         |  20 +-
 drivers/net/wwan/t9xx/mtk_dev.c                |  22 +
 drivers/net/wwan/t9xx/mtk_port.c               | 875 +++++++++++++++++++++++++
 drivers/net/wwan/t9xx/mtk_port.h               | 159 +++++
 drivers/net/wwan/t9xx/mtk_port_io.c            | 239 +++++++
 drivers/net/wwan/t9xx/mtk_port_io.h            |  36 +
 drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c |  25 +-
 drivers/net/wwan/t9xx/pcie/mtk_pci.c           |   2 +
 drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c    |  22 +-
 drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h    |   1 +
 12 files changed, 1413 insertions(+), 11 deletions(-)

diff --git a/drivers/net/wwan/t9xx/Makefile b/drivers/net/wwan/t9xx/Makefile
index ae9d6f2344ab..db3b1aa1928b 100644
--- a/drivers/net/wwan/t9xx/Makefile
+++ b/drivers/net/wwan/t9xx/Makefile
@@ -8,4 +8,6 @@ obj-$(CONFIG_MTK_T9XX_PCI) += pcie/
 
 mtk_t9xx-y := \
 	mtk_dev.o \
-	mtk_ctrl_plane.o
+	mtk_ctrl_plane.o \
+	mtk_port.o \
+	mtk_port_io.o
diff --git a/drivers/net/wwan/t9xx/mtk_ctrl_plane.c b/drivers/net/wwan/t9xx/mtk_ctrl_plane.c
index 4be699d1ec00..6ed47d074556 100644
--- a/drivers/net/wwan/t9xx/mtk_ctrl_plane.c
+++ b/drivers/net/wwan/t9xx/mtk_ctrl_plane.c
@@ -7,20 +7,23 @@
 #include <linux/device.h>
 
 #include "mtk_ctrl_plane.h"
+#include "mtk_port.h"
 
 /**
  * mtk_ctrl_init() - Initialize the control plane block.
  * @mdev: Pointer to the MTK modem device.
  * @ops: HIF operations for the control plane.
+ * @cfg: Control plane configuration.
  *
  * Allocates and initializes the control plane block
  * associated with @mdev.
  *
- * Return: 0 on success, -ENOMEM on allocation failure.
+ * Return: 0 on success, negative error code on failure.
  */
-int mtk_ctrl_init(struct mtk_md_dev *mdev, struct mtk_ctrl_hif_ops *ops)
+int mtk_ctrl_init(struct mtk_md_dev *mdev, struct mtk_ctrl_hif_ops *ops, struct mtk_ctrl_cfg *cfg)
 {
 	struct mtk_ctrl_blk *ctrl_blk;
+	int err;
 
 	ctrl_blk = devm_kzalloc(mdev->dev, sizeof(*ctrl_blk), GFP_KERNEL);
 	if (!ctrl_blk)
@@ -29,8 +32,17 @@ int mtk_ctrl_init(struct mtk_md_dev *mdev, struct mtk_ctrl_hif_ops *ops)
 	ctrl_blk->mdev = mdev;
 	mdev->ctrl_blk = ctrl_blk;
 	ctrl_blk->ops = ops;
+	ctrl_blk->cfg = cfg;
+
+	err = mtk_port_mngr_init(ctrl_blk, cfg->port_layer_cfg->port_cfg,
+				 cfg->port_layer_cfg->port_cnt);
+	if (err)
+		goto err_free_mem;
 
 	return 0;
+
+err_free_mem:
+	return err;
 }
 EXPORT_SYMBOL(mtk_ctrl_init);
 
@@ -42,6 +54,9 @@ EXPORT_SYMBOL(mtk_ctrl_init);
  */
 void mtk_ctrl_exit(struct mtk_md_dev *mdev)
 {
+	struct mtk_ctrl_blk *ctrl_blk = mdev->ctrl_blk;
+
+	mtk_port_mngr_exit(ctrl_blk);
 	mdev->ctrl_blk = NULL;
 }
 EXPORT_SYMBOL(mtk_ctrl_exit);
diff --git a/drivers/net/wwan/t9xx/mtk_ctrl_plane.h b/drivers/net/wwan/t9xx/mtk_ctrl_plane.h
index 88d71ac92084..d7fcccde8a1b 100644
--- a/drivers/net/wwan/t9xx/mtk_ctrl_plane.h
+++ b/drivers/net/wwan/t9xx/mtk_ctrl_plane.h
@@ -11,6 +11,17 @@
 
 #include "mtk_dev.h"
 
+#define Q_MTU_2K			(0x800)
+#define Q_MTU_3_5K			(0xE00)
+#define Q_MTU_7K			(0x1C00)
+#define Q_MTU_32K			(0x8000)
+#define Q_MTU_63K			(0xFC00)
+#define Q_FRAG_2K			(0x800)
+#define Q_FRAG_3_5K			(0xE00)
+#define Q_FRAG_7K			(0x1C00)
+#define Q_FRAG_32K			(0x8000)
+#define Q_FRAG_63K			(0xFC00)
+
 enum mtk_trb_cmd_type {
 	TRB_CMD_MIN,
 	TRB_CMD_ENABLE,
@@ -54,17 +65,22 @@ struct mtk_ctrl_hif_ops {
 	int (*send_cmd)(struct mtk_md_dev *mdev, int cmd, void *data);
 };
 
-struct mtk_ctrl_cfg;
+struct mtk_ctrl_cfg {
+	struct mtk_port_layer_cfg *port_layer_cfg;
+};
+
 struct mtk_ctrl_trans;
 
 struct mtk_ctrl_blk {
 	struct mtk_md_dev *mdev;
+	struct mtk_port_mngr *port_mngr;
 	struct mtk_ctrl_hif_ops *ops;
 	void *ctrl_hw_priv;
 	struct mtk_ctrl_cfg *cfg;
 };
 
-int mtk_ctrl_init(struct mtk_md_dev *mdev, struct mtk_ctrl_hif_ops *ops);
+int mtk_ctrl_init(struct mtk_md_dev *mdev, struct mtk_ctrl_hif_ops *ops,
+		  struct mtk_ctrl_cfg *cfg);
 void mtk_ctrl_exit(struct mtk_md_dev *mdev);
 
 #endif /* __MTK_CTRL_PLANE_H__ */
diff --git a/drivers/net/wwan/t9xx/mtk_dev.c b/drivers/net/wwan/t9xx/mtk_dev.c
index 50f77d5a210c..7c449030a35f 100644
--- a/drivers/net/wwan/t9xx/mtk_dev.c
+++ b/drivers/net/wwan/t9xx/mtk_dev.c
@@ -6,6 +6,28 @@
 #include <linux/module.h>
 
 #include "mtk_dev.h"
+#include "mtk_port.h"
+#include "mtk_port_io.h"
+
+static int __init mtk_common_drv_init(void)
+{
+	int ret;
+
+	ret = mtk_port_io_init();
+	if (ret)
+		goto err_init_devid;
+
+err_init_devid:
+	return ret;
+}
+module_init(mtk_common_drv_init);
+
+static void __exit mtk_common_drv_exit(void)
+{
+	mtk_port_io_exit();
+	mtk_port_stale_list_grp_cleanup();
+}
+module_exit(mtk_common_drv_exit);
 
 MODULE_DESCRIPTION("MediaTek T9xx PCIe WWAN driver");
 MODULE_LICENSE("GPL");
diff --git a/drivers/net/wwan/t9xx/mtk_port.c b/drivers/net/wwan/t9xx/mtk_port.c
new file mode 100644
index 000000000000..06436422133b
--- /dev/null
+++ b/drivers/net/wwan/t9xx/mtk_port.c
@@ -0,0 +1,875 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#include <linux/bitfield.h>
+#include <linux/device.h>
+#include <linux/err.h>
+#include <linux/kernel.h>
+#include <linux/list.h>
+#include <linux/netdevice.h>
+#include <linux/slab.h>
+#include <linux/wait.h>
+
+#include "mtk_port.h"
+#include "mtk_port_io.h"
+
+#define MTK_DFLT_TRB_TIMEOUT		(5 * HZ)
+#define MTK_DFLT_TRB_STATUS		(0x1)
+#define MTK_TRB_HEADER_ADDED		(0xADDED)
+#define MTK_CHECK_RX_SEQ_MASK		(0x7fff)
+
+#define MTK_PORT_ENUM_VER		(0)
+#define MTK_PORT_ENUM_HEAD_PATTERN	(0x5a5a5a5a)
+#define MTK_PORT_ENUM_TAIL_PATTERN	(0xa5a5a5a5)
+
+#define MTK_PORT_SEARCH_FROM_RADIX_TREE(p, s) ({\
+	struct mtk_port *_p;			\
+	_p = rcu_dereference_raw(*(s));		\
+	if (!_p)				\
+		continue;			\
+	p = _p;					\
+})
+
+#define MTK_PORT_INTERNAL_NODE_CHECK(p, s, i) ({\
+	if (radix_tree_is_internal_node(p)) {	\
+		s = radix_tree_iter_retry(&(i));\
+		continue;			\
+	}					\
+})
+
+struct mtk_port_info {
+	__le16 channel;
+	__le16 reserved;
+} __packed;
+
+struct mtk_port_enum_msg {
+	__le32 head_pattern;
+	__le16 port_cnt;
+	__le16 version;
+	__le32 tail_pattern;
+	u8 data[];
+} __packed;
+
+/* global group for stale ports */
+static LIST_HEAD(stale_list_grp);
+/* mutex lock for stale_list_group */
+DEFINE_MUTEX(port_mngr_grp_mtx);
+
+static DEFINE_IDA(ccci_dev_ids);
+
+/* This function working always under mutex lock port_mngr_grp_mtx */
+void mtk_port_release(struct kref *port_kref)
+{
+	struct mtk_stale_list *s_list;
+	struct mtk_port *port;
+
+	port = container_of(port_kref, struct mtk_port, kref);
+	if (!test_bit(PORT_S_ON_STALE_LIST, &port->status))
+		goto port_exit;
+
+	list_del(&port->stale_entry);
+	list_for_each_entry(s_list, &stale_list_grp, entry) {
+		if (!strncmp(s_list->dev_str, port->dev_str, MTK_DEV_STR_LEN) &&
+		    list_empty(&s_list->ports) && s_list->dev_id >= 0) {
+			ida_free(&ccci_dev_ids, s_list->dev_id);
+			s_list->dev_id = -1;
+			break;
+		}
+	}
+port_exit:
+	ports_ops[port->info.type]->exit(port);
+	kfree(port);
+}
+
+static int mtk_port_tbl_add(struct mtk_port_mngr *port_mngr, struct mtk_port *port)
+{
+	int ret;
+
+	ret = radix_tree_insert(&port_mngr->port_tbl[MTK_PORT_TBL_TYPE(port->info.rx_ch)],
+				port->info.rx_ch & 0xFFF, port);
+	if (ret)
+		dev_err(port_mngr->ctrl_blk->mdev->dev,
+			"port(%s) add to port_tbl failed, return %d\n",
+			port->info.name, ret);
+	else
+		port_mngr->port_cnt++;
+
+	return ret;
+}
+
+static void mtk_port_tbl_del(struct mtk_port_mngr *port_mngr, struct mtk_port *port)
+{
+	radix_tree_delete(&port_mngr->port_tbl[MTK_PORT_TBL_TYPE(port->info.rx_ch)],
+			  port->info.rx_ch & 0xFFF);
+	port_mngr->port_cnt--;
+}
+
+static struct mtk_port *mtk_port_restore_from_stale_list(struct mtk_port_mngr *port_mngr,
+							 struct mtk_stale_list *s_list)
+{
+	struct mtk_port *port, *next_port;
+	int ret;
+
+	mutex_lock(&port_mngr_grp_mtx);
+	list_for_each_entry_safe(port, next_port, &s_list->ports, stale_entry) {
+		kref_get(&port->kref);
+		list_del(&port->stale_entry);
+		ret = mtk_port_tbl_add(port_mngr, port);
+		if (ret) {
+			list_add_tail(&port->stale_entry, &s_list->ports);
+			kref_put(&port->kref, mtk_port_release);
+			mutex_unlock(&port_mngr_grp_mtx);
+			dev_err(port_mngr->ctrl_blk->mdev->dev,
+				"Failed when adding (%s) to port mngr\n",
+				port->info.name);
+			return ERR_PTR(ret);
+		}
+
+		port->port_mngr = port_mngr;
+		clear_bit(PORT_S_ON_STALE_LIST, &port->status);
+		ports_ops[port->info.type]->reset(port);
+	}
+	mutex_unlock(&port_mngr_grp_mtx);
+
+	return NULL;
+}
+
+static struct mtk_port *mtk_port_alloc_and_add(struct mtk_port_mngr *port_mngr,
+					       struct mtk_port_cfg *dflt_info)
+{
+	struct mtk_port *port;
+	int ret;
+
+	port = kzalloc_obj(*port, GFP_KERNEL);
+	if (!port) {
+		ret = -ENOMEM;
+		goto err_alloc_port;
+	}
+	memcpy(&port->info, dflt_info, sizeof(*dflt_info));
+
+	ret = mtk_port_tbl_add(port_mngr, port);
+	if (ret < 0) {
+		dev_err(port_mngr->ctrl_blk->mdev->dev,
+			"Failed to add port(%s) to port tbl\n", dflt_info->name);
+		goto err_free_port;
+	}
+
+	port->port_mngr = port_mngr;
+	ret = ports_ops[port->info.type]->init(port);
+	if (ret < 0) {
+		mtk_port_tbl_del(port_mngr, port);
+		goto err_free_port;
+	}
+
+	memcpy(port->dev_str, port_mngr->ctrl_blk->mdev->dev_str, MTK_DEV_STR_LEN);
+	return port;
+
+err_free_port:
+	kfree(port);
+err_alloc_port:
+	return ERR_PTR(ret);
+}
+
+static void mtk_port_free_or_backup(struct mtk_port_mngr *port_mngr,
+				    struct mtk_port *port, struct mtk_stale_list *s_list)
+{
+	mutex_lock(&port_mngr_grp_mtx);
+	mtk_port_tbl_del(port_mngr, port);
+	if (port->info.type != PORT_TYPE_INTERNAL) {
+		if (test_bit(PORT_S_OPEN, &port->status)) {
+			list_add_tail(&port->stale_entry, &s_list->ports);
+			set_bit(PORT_S_ON_STALE_LIST, &port->status);
+			memcpy(port->dev_str, port_mngr->ctrl_blk->mdev->dev_str,
+			       MTK_DEV_STR_LEN);
+			port->port_mngr = NULL;
+		}
+		kref_put(&port->kref, mtk_port_release);
+	} else {
+		mtk_port_release(&port->kref);
+	}
+	mutex_unlock(&port_mngr_grp_mtx);
+}
+
+static struct mtk_port *mtk_port_search_by_id(struct mtk_port_mngr *port_mngr, int rx_ch)
+{
+	int tbl_type = MTK_PORT_TBL_TYPE(rx_ch);
+
+	if (tbl_type < PORT_TBL_SAP || tbl_type >= PORT_TBL_MAX)
+		return NULL;
+
+	return radix_tree_lookup(&port_mngr->port_tbl[tbl_type], MTK_CH_ID(rx_ch));
+}
+
+struct mtk_port *mtk_port_search_by_name(struct mtk_port_mngr *port_mngr, char *name)
+{
+	int tbl_type = PORT_TBL_SAP;
+	struct radix_tree_iter iter;
+	struct mtk_port *port;
+	void __rcu **slot;
+
+	do {
+		radix_tree_for_each_slot(slot, &port_mngr->port_tbl[tbl_type], &iter, 0) {
+			MTK_PORT_SEARCH_FROM_RADIX_TREE(port, slot);
+			MTK_PORT_INTERNAL_NODE_CHECK(port, slot, iter);
+			if (!strncmp(port->info.name, name, MTK_DFLT_PORT_NAME_LEN))
+				return port;
+		}
+		tbl_type++;
+	} while (tbl_type < PORT_TBL_MAX);
+
+	return NULL;
+}
+
+static int mtk_port_tbl_create(struct mtk_port_mngr *port_mngr, struct mtk_port_cfg *cfg,
+			       const int port_cnt, struct mtk_stale_list *s_list)
+{
+	struct mtk_port_cfg *dflt_port;
+	struct mtk_port *port;
+	int i;
+
+	INIT_RADIX_TREE(&port_mngr->port_tbl[PORT_TBL_SAP], GFP_KERNEL);
+	INIT_RADIX_TREE(&port_mngr->port_tbl[PORT_TBL_MD], GFP_KERNEL);
+
+	mtk_port_restore_from_stale_list(port_mngr, s_list);
+
+	/* copy ports from static port cfg table */
+	for (i = 0; i < port_cnt; i++) {
+		dflt_port = cfg + i;
+		if (!mtk_port_search_by_id(port_mngr, dflt_port->rx_ch)) {
+			port = mtk_port_alloc_and_add(port_mngr, dflt_port);
+			if (IS_ERR(port))
+				return PTR_ERR(port);
+		}
+	}
+
+	return 0;
+}
+
+static void mtk_port_tbl_destroy(struct mtk_port_mngr *port_mngr, struct mtk_stale_list *s_list)
+{
+	struct radix_tree_iter iter;
+	struct mtk_port *port;
+	void __rcu **slot;
+	int tbl_type;
+
+	tbl_type = PORT_TBL_SAP;
+	do {
+		radix_tree_for_each_slot(slot, &port_mngr->port_tbl[tbl_type], &iter, 0) {
+			port = radix_tree_deref_slot(slot);
+			if (!port)
+				continue;
+			ports_ops[port->info.type]->disable(port);
+		}
+
+		while (radix_tree_gang_lookup(&port_mngr->port_tbl[tbl_type],
+					      (void **)&port, 0, 1))
+			mtk_port_free_or_backup(port_mngr, port, s_list);
+	} while (++tbl_type < PORT_TBL_MAX);
+}
+
+static struct mtk_stale_list *mtk_port_stale_list_create(struct mtk_ctrl_blk *ctrl_blk)
+{
+	struct mtk_stale_list *s_list;
+
+	s_list = kzalloc_obj(*s_list, GFP_KERNEL);
+	if (!s_list)
+		return NULL;
+
+	memcpy(s_list->dev_str, ctrl_blk->mdev->dev_str, MTK_DEV_STR_LEN);
+	s_list->dev_id = -1;
+	INIT_LIST_HEAD(&s_list->ports);
+	rwlock_init(&s_list->port_mngr_lock);
+
+	mutex_lock(&port_mngr_grp_mtx);
+	list_add_tail(&s_list->entry, &stale_list_grp);
+	mutex_unlock(&port_mngr_grp_mtx);
+
+	return s_list;
+}
+
+static void mtk_port_stale_list_destroy(struct mtk_stale_list *s_list)
+{
+	mutex_lock(&port_mngr_grp_mtx);
+	list_del(&s_list->entry);
+	mutex_unlock(&port_mngr_grp_mtx);
+	kfree(s_list);
+}
+
+static struct mtk_stale_list *mtk_port_stale_list_search(const char *dev_str)
+{
+	struct mtk_stale_list *tmp, *s_list = NULL;
+
+	mutex_lock(&port_mngr_grp_mtx);
+	list_for_each_entry(tmp, &stale_list_grp, entry) {
+		if (!strncmp(tmp->dev_str, dev_str, MTK_DEV_STR_LEN)) {
+			s_list = tmp;
+			break;
+		}
+	}
+	mutex_unlock(&port_mngr_grp_mtx);
+
+	return s_list;
+}
+
+void mtk_port_stale_list_grp_cleanup(void)
+{
+	struct mtk_stale_list *s_list, *next_s_list;
+	struct mtk_port *port, *next_port;
+
+	mutex_lock(&port_mngr_grp_mtx);
+	list_for_each_entry_safe(s_list, next_s_list, &stale_list_grp, entry) {
+		list_del(&s_list->entry);
+
+		list_for_each_entry_safe(port, next_port, &s_list->ports, stale_entry) {
+			clear_bit(PORT_S_ON_STALE_LIST, &port->status);
+			mtk_port_release(&port->kref);
+		}
+
+		kfree(s_list);
+	}
+	mutex_unlock(&port_mngr_grp_mtx);
+}
+
+static struct mtk_stale_list *mtk_port_stale_list_init(struct mtk_ctrl_blk *ctrl_blk, int *dev_id)
+{
+	struct mtk_stale_list *s_list;
+
+	s_list = mtk_port_stale_list_search(ctrl_blk->mdev->dev_str);
+	if (!s_list) {
+		s_list = mtk_port_stale_list_create(ctrl_blk);
+		if (unlikely(!s_list))
+			return NULL;
+	}
+
+	mutex_lock(&port_mngr_grp_mtx);
+	if (s_list->dev_id < 0) {
+		*dev_id = ida_alloc_range(&ccci_dev_ids, 0, MTK_DFLT_MAX_DEV_CNT - 1, GFP_KERNEL);
+	} else {
+		*dev_id = s_list->dev_id;
+		s_list->dev_id = -1;
+	}
+	mutex_unlock(&port_mngr_grp_mtx);
+
+	return s_list;
+}
+
+static void mtk_port_stale_list_exit(struct mtk_ctrl_blk *ctrl_blk,
+				     struct mtk_stale_list *s_list, int dev_id)
+{
+	if (!s_list)
+		return;
+	mutex_lock(&port_mngr_grp_mtx);
+	if (list_empty(&s_list->ports)) {
+		ida_free(&ccci_dev_ids, dev_id);
+		mutex_unlock(&port_mngr_grp_mtx);
+		mtk_port_stale_list_destroy(s_list);
+	} else {
+		s_list->dev_id = dev_id;
+		mutex_unlock(&port_mngr_grp_mtx);
+	}
+}
+
+void mtk_port_trb_init(struct mtk_port *port, struct trb *trb, enum mtk_trb_cmd_type cmd,
+		       int (*trb_complete)(struct sk_buff *skb))
+{
+	kref_init(&trb->kref);
+	trb->channel_id = port->info.rx_ch;
+	trb->status = MTK_DFLT_TRB_STATUS;
+	trb->priv = port;
+	trb->cmd = cmd;
+	trb->trb_complete = trb_complete;
+}
+
+void mtk_port_trb_free(struct kref *trb_kref)
+{
+	struct trb *trb = container_of(trb_kref, struct trb, kref);
+	struct sk_buff *skb, *frag_skb, *next_skb;
+
+	skb = container_of((char *)trb, struct sk_buff, cb[0]);
+	/* Free frag_list for scatter gather TX */
+	if (trb->cmd == TRB_CMD_TX && skb_has_frag_list(skb)) {
+		frag_skb = skb_shinfo(skb)->frag_list;
+		while (frag_skb) {
+			next_skb = frag_skb->next;
+			frag_skb->next = NULL;
+			dev_kfree_skb_any(frag_skb);
+			frag_skb = next_skb;
+		}
+		skb_shinfo(skb)->frag_list = NULL;
+		skb->data_len = 0;
+	}
+	dev_kfree_skb_any(skb);
+}
+EXPORT_SYMBOL(mtk_port_trb_free);
+
+static int mtk_port_open_trb_complete(struct sk_buff *skb)
+{
+	struct trb_open_priv *trb_open_priv = (struct trb_open_priv *)skb->data;
+	struct trb *trb = (struct trb *)skb->cb;
+	struct mtk_port *port = trb->priv;
+
+	if (!trb->status) {
+		port->tx_mtu = trb_open_priv->tx_mtu;
+		port->rx_mtu = trb_open_priv->rx_mtu;
+		port->tx_frag_size = trb_open_priv->tx_frag_size;
+		port->rx_frag_size = trb_open_priv->rx_frag_size;
+		port->tx_mtu -= MTK_CCCI_H_ELEN;
+		port->rx_mtu -= MTK_CCCI_H_ELEN;
+	}
+
+	wake_up_interruptible_all(&port->trb_wq);
+
+	kref_put(&trb->kref, mtk_port_trb_free);
+	return 0;
+}
+
+static int mtk_port_close_trb_complete(struct sk_buff *skb)
+{
+	struct trb *trb = (struct trb *)skb->cb;
+	struct mtk_port *port = trb->priv;
+
+	wake_up_interruptible_all(&port->trb_wq);
+	wake_up_interruptible_all(&port->rx_wq);
+	kref_put(&trb->kref, mtk_port_trb_free);
+
+	return 0;
+}
+
+static int mtk_port_tx_complete(struct sk_buff *skb)
+{
+	struct trb *trb = (struct trb *)skb->cb;
+	struct mtk_port *port = trb->priv;
+
+	if (trb->status < 0)
+		dev_warn(port->port_mngr->ctrl_blk->mdev->dev,
+			 "Failed to send data: status:%d, port:%s\n",
+			 trb->status, port->info.name);
+
+	wake_up_interruptible_all(&port->trb_wq);
+	kref_put(&trb->kref, mtk_port_trb_free);
+
+	return 0;
+}
+
+int mtk_port_status_check(struct mtk_port *port)
+{
+	if (!test_bit(PORT_S_ENABLE, &port->status))
+		return -ENODEV;
+
+	if (!test_bit(PORT_S_OPEN, &port->status) || test_bit(PORT_S_FLUSH, &port->status) ||
+	    !test_bit(PORT_S_WR, &port->status))
+		return -EBADF;
+
+	return 0;
+}
+
+int mtk_port_send_data(struct mtk_port *port, void *data)
+{
+	struct mtk_port_mngr *port_mngr;
+	struct sk_buff *skb = data;
+	bool force_send;
+	struct trb *trb;
+	int ret, len;
+
+	port_mngr = port->port_mngr;
+
+	force_send = !!(port->info.flags & (PORT_F_BLOCKING | PORT_F_FORCE_SEND));
+	trb = (struct trb *)skb->cb;
+	mtk_port_trb_init(port, trb, TRB_CMD_TX, mtk_port_tx_complete);
+	len = skb->len;
+	kref_get(&trb->kref); /* kref count 1->2 */
+
+	/* add ccci header */
+	mtk_port_add_header(skb);
+	ret = mtk_port_status_check(port);
+	if (!ret)
+		ret = port_mngr->ctrl_blk->ops->submit_skb(port_mngr->ctrl_blk->mdev,
+							   skb, force_send);
+
+	if (ret < 0) {
+		kref_put(&trb->kref, mtk_port_trb_free); /* kref count 2->1 */
+		kref_put(&trb->kref, mtk_port_trb_free); /* kref count 1->0 */
+		port->tx_seq--;
+		goto out;
+	}
+
+	if (!(port->info.flags & PORT_F_BLOCKING)) {
+		kref_put(&trb->kref, mtk_port_trb_free);
+		ret = len;
+		goto out;
+	}
+start_wait:
+
+	/* wait trb done, and no timeout in tx blocking mode */
+	ret = wait_event_interruptible_timeout(port->trb_wq,
+					       trb->status <= 0 ||
+					       test_bit(PORT_S_FLUSH, &port->status) ||
+					       !test_bit(PORT_S_WR, &port->status),
+					       MTK_DFLT_TRB_TIMEOUT);
+	if (!ret) {
+		goto start_wait;
+	} else if (ret == -ERESTARTSYS) {
+		ret = -EINTR;
+	} else if (ret > 0) {
+		if (test_bit(PORT_S_FLUSH, &port->status))
+			ret = len;
+		else
+			ret = (!trb->status) ? len : trb->status;
+	}
+	kref_put(&trb->kref, mtk_port_trb_free);
+
+out:
+	return ret;
+}
+
+static int mtk_port_check_rx_seq(struct mtk_port *port, struct mtk_ccci_header *ccci_h)
+{
+	u16 seq_num, assert_bit, channel;
+	struct mtk_md_dev *mdev;
+
+	seq_num = FIELD_GET(MTK_HDR_FLD_SEQ, le32_to_cpu(ccci_h->status));
+	assert_bit = FIELD_GET(MTK_HDR_FLD_AST, le32_to_cpu(ccci_h->status));
+	if (assert_bit && port->rx_seq &&
+	    ((seq_num - port->rx_seq) & MTK_CHECK_RX_SEQ_MASK) != 1) {
+		mdev = port->port_mngr->ctrl_blk->mdev;
+		channel = FIELD_GET(MTK_HDR_FLD_CHN, le32_to_cpu(ccci_h->status));
+		dev_warn(mdev->dev,
+			 "<ch: %04x> seq num out-of-order %d->%d, len(%u)\n",
+			 channel, seq_num, port->rx_seq,
+			 le32_to_cpu(ccci_h->packet_len));
+
+		port->rx_seq = seq_num;
+		return -EPROTO;
+	}
+
+	return 0;
+}
+
+static int mtk_port_rx_dispatch_frag_skb(struct mtk_port *port, struct sk_buff *skb)
+{
+	struct sk_buff *frag_skb, *frag_next;
+	int ret;
+
+	frag_skb = skb_shinfo(skb)->frag_list;
+	skb->len -= skb->data_len;
+	skb->data_len = 0;
+	skb_shinfo(skb)->frag_list = NULL;
+
+	ret = ports_ops[port->info.type]->recv(port, skb);
+	if (ret < 0) {
+		skb_shinfo(skb)->frag_list = frag_skb;
+		return ret;
+	}
+
+	while (frag_skb) {
+		frag_next = frag_skb->next;
+		if (!frag_skb->len) {
+			frag_skb->next = NULL;
+			dev_kfree_skb_any(frag_skb);
+			frag_skb = frag_next;
+			continue;
+		}
+		frag_skb->next = NULL;
+		ret = ports_ops[port->info.type]->recv(port, frag_skb);
+		if (ret < 0) {
+			frag_skb->next = frag_next;
+			while (frag_skb) {
+				frag_next = frag_skb->next;
+				frag_skb->next = NULL;
+				dev_kfree_skb_any(frag_skb);
+				frag_skb = frag_next;
+			}
+			return -EIO;
+		}
+		frag_skb = frag_next;
+	}
+
+	return 0;
+}
+
+static int mtk_port_rx_dispatch(struct sk_buff *skb, void *priv, bool force_recv)
+{
+	struct mtk_port_mngr *port_mngr;
+	struct mtk_ccci_header *ccci_h;
+	struct mtk_port *port = priv;
+	int ret = -EPROTO;
+	u16 channel;
+
+	if (!skb || !priv) {
+		pr_err("Invalid input value in rx dispatch\n");
+		return -EINVAL;
+	}
+
+	port_mngr = port->port_mngr;
+
+	ccci_h = mtk_port_strip_header(skb);
+	if (unlikely(!ccci_h)) {
+		dev_warn(port_mngr->ctrl_blk->mdev->dev,
+			 "Unsupported: skb length(%d) is less than ccci header\n",
+			 skb->len);
+		goto drop_data;
+	}
+
+	channel = FIELD_GET(MTK_HDR_FLD_CHN, le32_to_cpu(ccci_h->status));
+	port = mtk_port_search_by_id(port_mngr, channel);
+	if (unlikely(!port)) {
+		dev_warn(port_mngr->ctrl_blk->mdev->dev,
+			 "Failed to find port by channel:%d\n", channel);
+		goto drop_data;
+	}
+
+	ret = mtk_port_check_rx_seq(port, ccci_h);
+	if (unlikely(ret))
+		goto drop_data;
+
+	port->rx_seq = FIELD_GET(MTK_HDR_FLD_SEQ, le32_to_cpu(ccci_h->status));
+	skb_pull(skb, sizeof(*ccci_h));
+
+	/* Support scatter gather transmission */
+	if (port->rx_mtu > port->rx_frag_size) {
+		ret = mtk_port_rx_dispatch_frag_skb(port, skb);
+		/* -EIO means partial data dispatch complete, does not goto drop flow */
+		if (ret < 0 && ret != -EIO)
+			goto drop_frag_skb;
+	} else {
+		ret = ports_ops[port->info.type]->recv(port, skb);
+		if (ret < 0)
+			goto drop_data;
+	}
+
+	return ret;
+
+drop_frag_skb:
+	{
+		struct sk_buff *frag_skb, *tmp;
+
+		frag_skb = skb_shinfo(skb)->frag_list;
+		while (frag_skb) {
+			tmp = frag_skb->next;
+			frag_skb->next = NULL;
+			dev_kfree_skb_any(frag_skb);
+			frag_skb = tmp;
+		}
+		skb_shinfo(skb)->frag_list = NULL;
+	}
+drop_data:
+	dev_kfree_skb_any(skb);
+	return ret;
+}
+
+int mtk_port_add_header(struct sk_buff *skb)
+{
+	struct mtk_ccci_header *ccci_h;
+	struct mtk_port *port;
+	struct trb *trb;
+
+	trb = (struct trb *)skb->cb;
+	if (trb->status == MTK_TRB_HEADER_ADDED)
+		return 0;
+
+	port = trb->priv;
+	if (!port)
+		return -EINVAL;
+
+	ccci_h = skb_push(skb, sizeof(*ccci_h));
+
+	ccci_h->packet_header = cpu_to_le32(0);
+	ccci_h->packet_len = cpu_to_le32(skb->len);
+	ccci_h->ex_msg = cpu_to_le32(0);
+	ccci_h->status = cpu_to_le32(FIELD_PREP(MTK_HDR_FLD_CHN, port->info.tx_ch) |
+				     FIELD_PREP(MTK_HDR_FLD_SEQ, port->tx_seq++) |
+				     FIELD_PREP(MTK_HDR_FLD_AST, 1));
+
+	trb->status = MTK_TRB_HEADER_ADDED;
+
+	return 0;
+}
+
+struct mtk_ccci_header *mtk_port_strip_header(struct sk_buff *skb)
+{
+	struct mtk_ccci_header *ccci_h;
+
+	if (skb->len < sizeof(*ccci_h)) {
+		pr_err("Invalid input value\n");
+		return NULL;
+	}
+
+	ccci_h = (struct mtk_ccci_header *)skb->data;
+
+	return ccci_h;
+}
+
+int mtk_port_status_update(struct mtk_md_dev *mdev, void *data)
+{
+	struct mtk_port_enum_msg *msg = data;
+	struct mtk_port_info *port_info;
+	struct mtk_port_mngr *port_mngr;
+	struct mtk_ctrl_blk *ctrl_blk;
+	struct mtk_port *port;
+	int port_id;
+	u16 ch_id;
+
+	if (unlikely(!mdev || !msg))
+		return -EINVAL;
+
+	ctrl_blk = mdev->ctrl_blk;
+	port_mngr = ctrl_blk->port_mngr;
+	if (le16_to_cpu(msg->version) != MTK_PORT_ENUM_VER ||
+	    le32_to_cpu(msg->head_pattern) != MTK_PORT_ENUM_HEAD_PATTERN ||
+	    le32_to_cpu(msg->tail_pattern) != MTK_PORT_ENUM_TAIL_PATTERN)
+		return -EPROTO;
+
+	for (port_id = 0; port_id < le16_to_cpu(msg->port_cnt); port_id++) {
+		port_info = (struct mtk_port_info *)(msg->data +
+						   (sizeof(*port_info) * port_id));
+		ch_id = FIELD_GET(MTK_INFO_FLD_CHID, le16_to_cpu(port_info->channel));
+		port = mtk_port_search_by_id(port_mngr, ch_id);
+		if (!port)
+			continue;
+		port->enable = FIELD_GET(MTK_INFO_FLD_EN, le16_to_cpu(port_info->channel));
+	}
+
+	return 0;
+}
+
+int mtk_port_ch_enable(struct mtk_port *port)
+{
+	struct mtk_port_mngr *port_mngr = port->port_mngr;
+	struct trb_open_priv *trb_open_priv;
+	struct sk_buff *skb;
+	struct trb *trb;
+	int ret;
+
+	skb = __dev_alloc_skb(Q_MTU_3_5K, GFP_KERNEL);
+	if (!skb)
+		return -ENOMEM;
+
+	trb_open_priv = (struct trb_open_priv *)skb->data;
+	trb_open_priv->rx_done = mtk_port_rx_dispatch;
+
+	skb_put(skb, sizeof(struct trb_open_priv));
+	trb = (struct trb *)skb->cb;
+	mtk_port_trb_init(port, trb, TRB_CMD_ENABLE, mtk_port_open_trb_complete);
+	kref_get(&trb->kref);
+
+	ret = port_mngr->ctrl_blk->ops->submit_skb(port_mngr->ctrl_blk->mdev, skb, true);
+	if (ret) {
+		dev_err(port_mngr->ctrl_blk->mdev->dev,
+			"Failed to submit trb for port(%s), ret=%d\n",
+			port->info.name, ret);
+		kref_put(&trb->kref, mtk_port_trb_free);
+		kref_put(&trb->kref, mtk_port_trb_free);
+		return ret;
+	}
+
+start_wait:
+	ret = wait_event_interruptible_timeout(port->trb_wq, trb->status <= 0,
+					       MTK_DFLT_TRB_TIMEOUT);
+	if (ret == -ERESTARTSYS)
+		goto start_wait;
+	else if (!ret)
+		ret = -ETIMEDOUT;
+	else
+		ret = trb->status;
+
+	kref_put(&trb->kref, mtk_port_trb_free);
+
+	return ret;
+}
+
+int mtk_port_ch_disable(struct mtk_port *port)
+{
+	struct mtk_port_mngr *port_mngr = port->port_mngr;
+	struct sk_buff *skb;
+	struct trb *trb;
+	int ret;
+
+	skb = __dev_alloc_skb(Q_MTU_3_5K, GFP_KERNEL);
+	if (!skb)
+		return -ENOMEM;
+
+	trb = (struct trb *)skb->cb;
+	mtk_port_trb_init(port, trb, TRB_CMD_DISABLE, mtk_port_close_trb_complete);
+	kref_get(&trb->kref);
+
+	ret = port_mngr->ctrl_blk->ops->submit_skb(port_mngr->ctrl_blk->mdev, skb, true);
+	if (ret) {
+		dev_warn(port_mngr->ctrl_blk->mdev->dev,
+			 "Failed to submit trb for port(%s), ret=%d\n",
+			 port->info.name, ret);
+		kref_put(&trb->kref, mtk_port_trb_free);
+		kref_put(&trb->kref, mtk_port_trb_free);
+		return ret;
+	}
+
+start_wait:
+	ret = wait_event_interruptible_timeout(port->trb_wq, trb->status <= 0,
+					       MTK_DFLT_TRB_TIMEOUT);
+	if (ret == -ERESTARTSYS)
+		goto start_wait;
+	else if (!ret)
+		ret = -ETIMEDOUT;
+	else
+		ret = trb->status;
+
+	kref_put(&trb->kref, mtk_port_trb_free);
+
+	return ret;
+}
+
+int mtk_port_mngr_init(struct mtk_ctrl_blk *ctrl_blk, struct mtk_port_cfg *port_cfg, int port_cnt)
+{
+	struct mtk_port_mngr *port_mngr;
+	struct mtk_stale_list *s_list;
+	int ret = -ENOMEM;
+	int dev_id;
+
+	s_list = mtk_port_stale_list_init(ctrl_blk, &dev_id);
+	if (!s_list) {
+		dev_err((ctrl_blk->mdev)->dev, "Failed to init mtk_stale_list\n");
+		goto err_out;
+	}
+
+	port_mngr = devm_kzalloc(ctrl_blk->mdev->dev, sizeof(*port_mngr), GFP_KERNEL);
+	if (unlikely(!port_mngr)) {
+		dev_err((ctrl_blk->mdev)->dev, "Failed to alloc memory for port_mngr\n");
+		goto err_exit_stale_list;
+	}
+
+	port_mngr->ctrl_blk = ctrl_blk;
+	port_mngr->dev_id = dev_id;
+
+	ret = mtk_port_tbl_create(port_mngr, port_cfg, port_cnt, s_list);
+	if (unlikely(ret)) {
+		dev_err((ctrl_blk->mdev)->dev, "Failed to create port_tbl\n");
+		goto err_free_port_mngr;
+	}
+
+	ctrl_blk->port_mngr = port_mngr;
+
+	return ret;
+
+err_free_port_mngr:
+	mtk_port_tbl_destroy(port_mngr, s_list);
+err_exit_stale_list:
+	mtk_port_stale_list_exit(ctrl_blk, s_list, dev_id);
+err_out:
+	return ret;
+}
+
+void mtk_port_mngr_exit(struct mtk_ctrl_blk *ctrl_blk)
+{
+	struct mtk_port_mngr *port_mngr = ctrl_blk->port_mngr;
+	struct mtk_stale_list *s_list;
+	int dev_id;
+
+	s_list = mtk_port_stale_list_search(port_mngr->ctrl_blk->mdev->dev_str);
+	dev_id = port_mngr->dev_id;
+
+	mtk_port_tbl_destroy(port_mngr, s_list);
+
+	ctrl_blk->port_mngr = NULL;
+	mtk_port_stale_list_exit(ctrl_blk, s_list, dev_id);
+}
diff --git a/drivers/net/wwan/t9xx/mtk_port.h b/drivers/net/wwan/t9xx/mtk_port.h
new file mode 100644
index 000000000000..bd4291408bc2
--- /dev/null
+++ b/drivers/net/wwan/t9xx/mtk_port.h
@@ -0,0 +1,159 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#ifndef __MTK_PORT_H__
+#define __MTK_PORT_H__
+
+#include <linux/bits.h>
+#include <linux/device.h>
+#include <linux/radix-tree.h>
+#include <linux/skbuff.h>
+#include <linux/types.h>
+
+#include "mtk_ctrl_plane.h"
+#include "mtk_dev.h"
+
+#define MTK_PEER_ID_MASK			(0xF000)
+#define MTK_PEER_ID_SHIFT			(12)
+#define MTK_PEER_ID(ch)				(((ch) & MTK_PEER_ID_MASK) >> MTK_PEER_ID_SHIFT)
+#define MTK_PEER_ID_SAP				(0x1)
+#define MTK_PEER_ID_MD				(0x2)
+#define MTK_CH_ID_MASK				(0x0FFF)
+#define MTK_CH_ID(ch)				((ch) & MTK_CH_ID_MASK)
+#define MTK_DFLT_MAX_DEV_CNT			(10)
+#define MTK_DFLT_PORT_NAME_LEN			(20)
+
+/* Mapping MTK_PEER_ID and mtk_port_tbl index */
+#define MTK_PORT_TBL_TYPE(ch)			(MTK_PEER_ID(ch) - 1)
+
+/* ccci header length + reserved space that is used in exception flow */
+#define MTK_CCCI_H_ELEN		(128)
+
+#define MTK_HDR_FLD_AST		((u32)BIT(31))
+#define MTK_HDR_FLD_SEQ		GENMASK(30, 16)
+#define MTK_HDR_FLD_CHN		GENMASK(15, 0)
+
+#define MTK_INFO_FLD_EN		((u16)BIT(15))
+#define MTK_INFO_FLD_CHID	GENMASK(14, 0)
+
+enum mtk_port_status {
+	PORT_S_DFLT = 0,
+	PORT_S_ENABLE,
+	PORT_S_OPEN,
+	PORT_S_RD,
+	PORT_S_WR,
+	PORT_S_FLUSH,
+	PORT_S_ON_STALE_LIST,
+	PORT_S_STOP,
+};
+
+enum mtk_ccci_ch {
+	/* to sAP */
+	CCCI_SAP_CONTROL_RX			= 0x1000,
+	CCCI_SAP_CONTROL_TX			= 0x1001,
+	/* to MD */
+	CCCI_CONTROL_RX				= 0x2000,
+	CCCI_CONTROL_TX				= 0x2001,
+};
+
+enum mtk_port_flag {
+	PORT_F_DFLT = 0,
+	PORT_F_BLOCKING = BIT(1),
+	PORT_F_ALLOW_DROP = BIT(2),
+	PORT_F_FORCE_SEND = BIT(6),
+};
+
+enum mtk_port_tbl {
+	PORT_TBL_SAP,
+	PORT_TBL_MD,
+	PORT_TBL_MAX
+};
+
+enum mtk_port_type {
+	PORT_TYPE_INTERNAL,
+	PORT_TYPE_MAX
+};
+
+struct mtk_internal_port {
+	void *arg;
+	int (*recv_cb)(void *arg, struct sk_buff *skb);
+};
+
+struct mtk_port_cfg {
+	enum mtk_ccci_ch tx_ch;
+	enum mtk_ccci_ch rx_ch;
+	enum mtk_port_type type;
+	char name[MTK_DFLT_PORT_NAME_LEN];
+	unsigned char flags;
+};
+
+struct mtk_port {
+	struct mtk_port_cfg info;
+	struct kref kref;
+	bool enable;
+	unsigned long status;
+	unsigned int minor;
+	unsigned short tx_seq;
+	unsigned short rx_seq;
+	unsigned int tx_mtu;
+	unsigned int rx_mtu;
+	u32 tx_frag_size;
+	u32 rx_frag_size;
+	struct sk_buff_head rx_skb_list;
+	unsigned int rx_data_len;
+	unsigned int rx_buf_size;
+	wait_queue_head_t trb_wq;
+	wait_queue_head_t rx_wq;
+	struct list_head stale_entry;
+	char dev_str[MTK_DEV_STR_LEN];
+	struct mtk_port_mngr *port_mngr;
+	struct mtk_internal_port i_priv;
+};
+
+struct mtk_port_mngr {
+	struct mtk_ctrl_blk *ctrl_blk;
+	struct radix_tree_root port_tbl[PORT_TBL_MAX];
+	unsigned int port_cnt;
+	int dev_id;
+};
+
+struct mtk_stale_list {
+	struct list_head entry;
+	struct list_head ports;
+	char dev_str[MTK_DEV_STR_LEN];
+	int dev_id;
+	rwlock_t port_mngr_lock;
+};
+
+struct mtk_ccci_header {
+	__le32 packet_header;
+	__le32 packet_len;
+	__le32 status;
+	__le32 ex_msg;
+};
+
+struct mtk_port_layer_cfg {
+	struct mtk_port_cfg *port_cfg;
+	int port_cnt;
+};
+
+extern const struct port_ops *ports_ops[PORT_TYPE_MAX];
+
+void mtk_port_release(struct kref *port_kref);
+void mtk_port_trb_free(struct kref *trb_kref);
+struct mtk_port *mtk_port_search_by_name(struct mtk_port_mngr *port_mngr, char *name);
+void mtk_port_stale_list_grp_cleanup(void);
+int mtk_port_add_header(struct sk_buff *skb);
+struct mtk_ccci_header *mtk_port_strip_header(struct sk_buff *skb);
+int mtk_port_status_check(struct mtk_port *port);
+int mtk_port_send_data(struct mtk_port *port, void *data);
+int mtk_port_status_update(struct mtk_md_dev *mdev, void *data);
+int mtk_port_ch_enable(struct mtk_port *port);
+int mtk_port_ch_disable(struct mtk_port *port);
+int mtk_port_mngr_init(struct mtk_ctrl_blk *ctrl_blk, struct mtk_port_cfg *port_cfg, int port_cnt);
+void mtk_port_mngr_exit(struct mtk_ctrl_blk *ctrl_blk);
+void mtk_port_trb_init(struct mtk_port *port, struct trb *trb, enum mtk_trb_cmd_type cmd,
+		       int (*trb_complete)(struct sk_buff *skb));
+#endif /* __MTK_PORT_H__ */
diff --git a/drivers/net/wwan/t9xx/mtk_port_io.c b/drivers/net/wwan/t9xx/mtk_port_io.c
new file mode 100644
index 000000000000..e3a2de6d2f29
--- /dev/null
+++ b/drivers/net/wwan/t9xx/mtk_port_io.c
@@ -0,0 +1,239 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+#include <linux/netdevice.h>
+
+#include "mtk_port_io.h"
+
+static int mtk_port_get_locked(struct mtk_port *port)
+{
+	int ret = 0;
+
+	mutex_lock(&port_mngr_grp_mtx);
+	if (!port) {
+		mutex_unlock(&port_mngr_grp_mtx);
+		pr_err("Port does not exist\n");
+		return -ENODEV;
+	}
+	kref_get(&port->kref);
+	mutex_unlock(&port_mngr_grp_mtx);
+
+	return ret;
+}
+
+static void mtk_port_put_locked(struct mtk_port *port)
+{
+	mutex_lock(&port_mngr_grp_mtx);
+	kref_put(&port->kref, mtk_port_release);
+	mutex_unlock(&port_mngr_grp_mtx);
+}
+
+static void mtk_port_struct_init(struct mtk_port *port)
+{
+	port->tx_seq = 0;
+	port->rx_seq = -1;
+	clear_bit(PORT_S_ENABLE, &port->status);
+	kref_init(&port->kref);
+	skb_queue_head_init(&port->rx_skb_list);
+	port->rx_buf_size = MTK_RX_BUF_SIZE;
+	init_waitqueue_head(&port->trb_wq);
+	init_waitqueue_head(&port->rx_wq);
+}
+
+static int mtk_port_internal_init(struct mtk_port *port)
+{
+	mtk_port_struct_init(port);
+	port->enable = false;
+
+	return 0;
+}
+
+static void mtk_port_internal_exit(struct mtk_port *port)
+{
+	if (test_bit(PORT_S_ENABLE, &port->status))
+		ports_ops[port->info.type]->disable(port);
+}
+
+static void mtk_port_reset(struct mtk_port *port)
+{
+	port->tx_seq = 0;
+	port->rx_seq = -1;
+}
+
+static void mtk_port_internal_enable(struct mtk_port *port)
+{
+	int ret;
+
+	if (test_bit(PORT_S_ENABLE, &port->status))
+		return;
+
+	ret = mtk_port_ch_enable(port);
+	if (ret && ret != -EBUSY)
+		return;
+
+	set_bit(PORT_S_WR, &port->status);
+	set_bit(PORT_S_ENABLE, &port->status);
+}
+
+static void mtk_port_internal_disable(struct mtk_port *port)
+{
+	if (!test_and_clear_bit(PORT_S_ENABLE, &port->status))
+		return;
+
+	clear_bit(PORT_S_WR, &port->status);
+	mtk_port_ch_disable(port);
+}
+
+static int mtk_port_internal_recv(struct mtk_port *port, struct sk_buff *skb)
+{
+	struct mtk_internal_port *priv;
+	int ret = -ENXIO;
+
+	if (!test_bit(PORT_S_OPEN, &port->status))
+		goto drop_data;
+
+	priv = &port->i_priv;
+	if (!priv->recv_cb || !priv->arg)
+		goto drop_data;
+
+	ret = priv->recv_cb(priv->arg, skb);
+	return ret;
+
+drop_data:
+	dev_kfree_skb_any(skb);
+	return ret;
+}
+
+static int mtk_port_common_open(struct mtk_port *port)
+{
+	int ret = 0;
+
+	if (!test_bit(PORT_S_ENABLE, &port->status))
+		return -ENODEV;
+
+	if (test_bit(PORT_S_OPEN, &port->status))
+		return -EBUSY;
+
+	skb_queue_purge(&port->rx_skb_list);
+	set_bit(PORT_S_OPEN, &port->status);
+	clear_bit(PORT_S_FLUSH, &port->status);
+
+	return ret;
+}
+
+static void mtk_port_common_close(struct mtk_port *port)
+{
+	clear_bit(PORT_S_OPEN, &port->status);
+
+	skb_queue_purge(&port->rx_skb_list);
+	port->rx_data_len = 0;
+
+	set_bit(PORT_S_FLUSH, &port->status);
+	wake_up_interruptible_all(&port->trb_wq);
+	wake_up_interruptible_all(&port->rx_wq);
+}
+
+void *mtk_port_internal_open(struct mtk_md_dev *mdev, char *name, int flag)
+{
+	struct mtk_port_mngr *port_mngr;
+	struct mtk_ctrl_blk *ctrl_blk;
+	struct mtk_port *port;
+	int ret;
+
+	ctrl_blk = mdev->ctrl_blk;
+	port_mngr = ctrl_blk->port_mngr;
+
+	port = mtk_port_search_by_name(port_mngr, name);
+	if (port && port->info.type != PORT_TYPE_INTERNAL) {
+		port = NULL;
+		goto out;
+	}
+
+	ret = mtk_port_get_locked(port);
+	if (ret)
+		goto out;
+
+	ret = mtk_port_common_open(port);
+	if (ret) {
+		mtk_port_put_locked(port);
+		port = NULL;
+		goto out;
+	}
+
+	if (flag & O_NONBLOCK)
+		port->info.flags &= ~PORT_F_BLOCKING;
+	else
+		port->info.flags |= PORT_F_BLOCKING;
+out:
+	return port;
+}
+
+int mtk_port_internal_close(void *i_port)
+{
+	struct mtk_port *port = i_port;
+	int ret = 0;
+
+	if (!port) {
+		ret = -EINVAL;
+		goto end;
+	}
+
+	if (!test_bit(PORT_S_OPEN, &port->status)) {
+		pr_err("Port(%s) has been closed\n", port->info.name);
+		ret = -EBADF;
+		goto end;
+	}
+
+	mtk_port_common_close(port);
+	mtk_port_put_locked(port);
+end:
+	return ret;
+}
+
+int mtk_port_internal_write(void *i_port, struct sk_buff *skb)
+{
+	struct mtk_port *port = i_port;
+
+	if (!port || !skb) {
+		if (skb)
+			dev_kfree_skb_any(skb);
+		pr_err_ratelimited("Internal write: invalid input\n");
+		return -EINVAL;
+	}
+	return mtk_port_send_data(port, skb);
+}
+
+void mtk_port_internal_recv_register(void *i_port,
+				     int (*cb)(void *priv, struct sk_buff *skb),
+				     void *arg)
+{
+	struct mtk_port *port = i_port;
+	struct mtk_internal_port *priv;
+
+	priv = &port->i_priv;
+	priv->arg = arg;
+	priv->recv_cb = cb;
+}
+
+int mtk_port_io_init(void)
+{
+	return 0;
+}
+
+void mtk_port_io_exit(void)
+{
+}
+
+static const struct port_ops port_internal_ops = {
+	.init = mtk_port_internal_init,
+	.exit = mtk_port_internal_exit,
+	.reset = mtk_port_reset,
+	.enable = mtk_port_internal_enable,
+	.disable = mtk_port_internal_disable,
+	.recv = mtk_port_internal_recv,
+};
+
+const struct port_ops *ports_ops[PORT_TYPE_MAX] = {
+	&port_internal_ops,
+};
diff --git a/drivers/net/wwan/t9xx/mtk_port_io.h b/drivers/net/wwan/t9xx/mtk_port_io.h
new file mode 100644
index 000000000000..0c10e893b7e0
--- /dev/null
+++ b/drivers/net/wwan/t9xx/mtk_port_io.h
@@ -0,0 +1,36 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#ifndef __MTK_PORT_IO_H__
+#define __MTK_PORT_IO_H__
+
+#include <linux/skbuff.h>
+
+#include "mtk_port.h"
+
+#define MTK_RX_BUF_SIZE			(1024 * 1024)
+
+extern struct mutex port_mngr_grp_mtx;
+
+struct port_ops {
+	int (*init)(struct mtk_port *port);
+	void (*exit)(struct mtk_port *port);
+	void (*reset)(struct mtk_port *port);
+	void (*enable)(struct mtk_port *port);
+	void (*disable)(struct mtk_port *port);
+	int (*recv)(struct mtk_port *port, struct sk_buff *skb);
+};
+
+void *mtk_port_internal_open(struct mtk_md_dev *mdev, char *name, int flag);
+int mtk_port_internal_close(void *i_port);
+int mtk_port_internal_write(void *i_port, struct sk_buff *skb);
+void mtk_port_internal_recv_register(void *i_port,
+				     int (*cb)(void *priv, struct sk_buff *skb),
+				     void *arg);
+
+int mtk_port_io_init(void);
+void mtk_port_io_exit(void);
+
+#endif /* __MTK_PORT_IO_H__ */
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c b/drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c
index c1bb787ee981..8611561dd67c 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c
+++ b/drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c
@@ -4,6 +4,7 @@
  */
 
 #include "mtk_cldma.h"
+#include "mtk_port.h"
 #include "mtk_trans_ctrl.h"
 
 #define TRB_SRV_NUM	(1)
@@ -13,12 +14,34 @@ static const int mtk_srv_cfg_m9xx[NR_CLDMA][HW_QUE_NUM] = {
 	{0},
 };
 
+/* the number of RX GPDs should be at last two */
 static const struct queue_info mtk_queue_info_m9xx[] = {
+	{CCCI_CONTROL_TX, CCCI_CONTROL_RX, CLDMA1, TXQ(0), RXQ(0),
+	 Q_MTU_3_5K, Q_MTU_3_5K, TX_GPD_NUM, RX_GPD_NUM, Q_FRAG_3_5K, Q_FRAG_3_5K, 0},
+	{CCCI_SAP_CONTROL_TX, CCCI_SAP_CONTROL_RX, CLDMA0, TXQ(0), RXQ(0),
+	 Q_MTU_3_5K, Q_MTU_3_5K, TX_GPD_NUM, RX_GPD_NUM, Q_FRAG_3_5K, Q_FRAG_3_5K, 0},
+};
+
+static const struct mtk_port_cfg port_cfg_m9xx[] = {
+	{CCCI_CONTROL_TX, CCCI_CONTROL_RX, PORT_TYPE_INTERNAL, "MDCTRL",
+		PORT_F_ALLOW_DROP},
+	{CCCI_SAP_CONTROL_TX, CCCI_SAP_CONTROL_RX, PORT_TYPE_INTERNAL, "SAPCTRL",
+		PORT_F_ALLOW_DROP},
+};
+
+static struct mtk_port_layer_cfg port_layer_cfg_m9xx = {
+	.port_cfg = (struct mtk_port_cfg *)port_cfg_m9xx,
+	.port_cnt = ARRAY_SIZE(port_cfg_m9xx),
+};
+
+static struct mtk_ctrl_cfg mtk_ctrl_cfg_m9xx = {
+	.port_layer_cfg = &port_layer_cfg_m9xx,
 };
 
 struct mtk_ctrl_info mtk_ctrl_info_m9xx = {
+	.ctrl_cfg = &mtk_ctrl_cfg_m9xx,
+	.srv_cfg = (int **)mtk_srv_cfg_m9xx,
 	.queue_info = (struct queue_info *)mtk_queue_info_m9xx,
 	.queue_info_num = ARRAY_SIZE(mtk_queue_info_m9xx),
-	.srv_cfg = (int **)mtk_srv_cfg_m9xx,
 	.trb_srv_num = TRB_SRV_NUM,
 };
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_pci.c b/drivers/net/wwan/t9xx/pcie/mtk_pci.c
index 2f51e150750d..b354a33b747c 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_pci.c
+++ b/drivers/net/wwan/t9xx/pcie/mtk_pci.c
@@ -17,6 +17,8 @@
 #include "mtk_trans_ctrl.h"
 #include "mtk_pci.h"
 #include "mtk_pci_reg.h"
+#include "mtk_port.h"
+#include "mtk_port_io.h"
 
 #define MTK_PCI_BAR_NUM		6
 #define MTK_PCI_TRANSPARENT_ATR_SIZE	(0x3F)
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c
index 55297cfcdbc6..6a0a415a556e 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c
+++ b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c
@@ -16,12 +16,13 @@
 #include "mtk_ctrl_plane.h"
 #include "mtk_dev.h"
 #include "mtk_pci.h"
+#include "mtk_port.h"
 #include "mtk_trans_ctrl.h"
 
 #define MTK_DFLT_PORT_NAME_LEN			(20)
 
 static struct mtk_ctrl_info_desc mtk_ctrl_info_tbl[] = {
-	{2304, &ctrl_info_name(m9xx)},
+	{0x01CA, &ctrl_info_name(m9xx)},
 	{0, NULL},
 };
 
@@ -131,6 +132,7 @@ static void mtk_ctrl_trb_handler(struct trb_srv *srv, struct trans_list *trans_l
 		if (!skb)
 			break;
 		trb = (struct trb *)skb->cb;
+		kref_get(&trb->kref);
 
 		switch (trb->cmd) {
 		case TRB_CMD_ENABLE:
@@ -150,8 +152,10 @@ static void mtk_ctrl_trb_handler(struct trb_srv *srv, struct trans_list *trans_l
 					kick = true;
 					break;
 				}
-				if (err == -EAGAIN)
+				if (err == -EAGAIN) {
+					kref_put(&trb->kref, mtk_port_trb_free);
 					return;
+				}
 
 				skb_unlink(skb, skb_list);
 				trb->status = err;
@@ -182,6 +186,8 @@ static void mtk_ctrl_trb_handler(struct trb_srv *srv, struct trans_list *trans_l
 			kick = false;
 		}
 
+		kref_put(&trb->kref, mtk_port_trb_free);
+
 		loop++;
 	} while (loop < TRB_NUM_PER_ROUND);
 }
@@ -492,6 +498,7 @@ static void mtk_trans_get_ctrl_info(struct mtk_ctrl_cfg *cfg,
 			continue;
 
 		ctrl_info = ctrl_info_desc->ctrl_info;
+		cfg->port_layer_cfg = ctrl_info->ctrl_cfg->port_layer_cfg;
 		memcpy(trans->srv_cfg, ctrl_info->srv_cfg,
 		       sizeof(int) * NR_CLDMA * HW_QUE_NUM);
 		trans->queue_info = ctrl_info->queue_info;
@@ -504,6 +511,7 @@ int mtk_trans_ctrl_init(struct mtk_md_dev *mdev)
 {
 	struct mtk_ctrl_trans *trans;
 	struct mtk_ctrl_blk *ctrl_blk;
+	struct mtk_ctrl_cfg *cfg;
 	int err;
 
 	trans = devm_kzalloc(mdev->dev, sizeof(*trans), GFP_KERNEL);
@@ -512,15 +520,19 @@ int mtk_trans_ctrl_init(struct mtk_md_dev *mdev)
 	trans->mdev = mdev;
 	trans->queues_cnt = 0;
 
-	mtk_trans_get_ctrl_info(NULL, trans, mdev->hw_ver);
-	if (!trans->queue_info ||
+	cfg = devm_kzalloc(mdev->dev, sizeof(*cfg), GFP_KERNEL);
+	if (!cfg)
+		return -ENOMEM;
+
+	mtk_trans_get_ctrl_info(cfg, trans, mdev->hw_ver);
+	if (!cfg->port_layer_cfg || !trans->queue_info ||
 	    trans->trb_srv_num <= 0 || trans->trb_srv_num > TRB_SRV_MAX_NUM ||
 	    trans->queue_info_num <= 0) {
 		dev_err(mdev->dev, "Failed to get ctrl info!\n");
 		goto err_free_cfg;
 	}
 
-	err = mtk_ctrl_init(mdev, &pcie_ctrl_ops);
+	err = mtk_ctrl_init(mdev, &pcie_ctrl_ops, cfg);
 	if (err)
 		goto err_free_cfg;
 
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h
index 0d25d1f51671..a3ff56ddf86f 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h
+++ b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h
@@ -12,6 +12,7 @@
 #include <linux/types.h>
 
 #include "mtk_dev.h"
+#include "mtk_port.h"
 
 #define TRB_SRV_MAX_NUM			(1)
 #define HW_QUE_NUM			(8)

-- 
2.34.1



^ permalink raw reply related

* [PATCH v4 1/7] net: wwan: t9xx: Add PCIe core
From: Jack Wu via B4 Relay @ 2026-07-09 10:53 UTC (permalink / raw)
  To: Loic Poulain, Sergey Ryazanov, Johannes Berg, Andrew Lunn,
	David S. Miller, Eric Dumazet, Jakub Kicinski, Paolo Abeni,
	Jack Wu, Wen-Zhi Huang, Shi-Wei Yeh, Minano Tseng,
	Matthias Brugger, AngeloGioacchino Del Regno, Simon Horman,
	Jonathan Corbet, Shuah Khan
  Cc: linux-kernel, netdev, linux-arm-kernel, linux-mediatek, linux-doc
In-Reply-To: <20260709-t9xx_driver_v1-v4-0-a8c009d509c5@compal.com>

From: Jack Wu <jackbb_wu@compal.com>

Registers the T900 device driver with the kernel. Set up all
the fundamental configurations for the device: PCIe layer,
Modem Host Cross Core Interface (MHCCIF), Reset Generation
Unit (RGU), modem common control operations and build
infrastructure.

* PCIe layer code implements driver probe and removal, MSI-X
  interrupt initialization and de-initialization, and the way
  of resetting the device.
* MHCCIF provides interrupt channels to communicate events
  such as handshake, PM and port enumeration.
* RGU provides interrupt channels to generate notifications
  from the device so that the T900 driver could get the
  device reset.
* Modem common control operations provide the basic read/write
  functions of the device's hardware registers,
  mask/unmask/get/clear functions of the device's interrupt
  registers and inquiry functions of the device's status.

Signed-off-by: Jack Wu <jackbb_wu@compal.com>
---
 drivers/net/wwan/Kconfig                      |   12 +
 drivers/net/wwan/Makefile                     |    1 +
 drivers/net/wwan/t9xx/Makefile                |   10 +
 drivers/net/wwan/t9xx/mtk_dev.h               |  108 +++
 drivers/net/wwan/t9xx/pcie/mtk_pci.c          | 1030 +++++++++++++++++++++++++
 drivers/net/wwan/t9xx/pcie/mtk_pci.h          |  234 ++++++
 drivers/net/wwan/t9xx/pcie/mtk_pci_drv_m9xx.c |   69 ++
 drivers/net/wwan/t9xx/pcie/mtk_pci_reg.h      |   70 ++
 8 files changed, 1534 insertions(+)

diff --git a/drivers/net/wwan/Kconfig b/drivers/net/wwan/Kconfig
index 88df55d78d90..18bd40b3b8d2 100644
--- a/drivers/net/wwan/Kconfig
+++ b/drivers/net/wwan/Kconfig
@@ -121,6 +121,18 @@ config MTK_T7XX
 
 	  If unsure, say N.
 
+config MTK_T9XX
+	tristate "MediaTek PCIe 5G WWAN modem T9xx device"
+	depends on PCI && ACPI
+	select NET_DEVLINK
+	help
+	  Enables MediaTek PCIe based 5G WWAN modem (T9xx series) device.
+
+	  To compile this driver as a module, choose M here: the module will be
+	  called mtk_t9xx.
+
+	  If unsure, say N.
+
 endif # WWAN
 
 endmenu
diff --git a/drivers/net/wwan/Makefile b/drivers/net/wwan/Makefile
index 3960c0ae2445..7361eef4c472 100644
--- a/drivers/net/wwan/Makefile
+++ b/drivers/net/wwan/Makefile
@@ -14,3 +14,4 @@ obj-$(CONFIG_QCOM_BAM_DMUX) += qcom_bam_dmux.o
 obj-$(CONFIG_RPMSG_WWAN_CTRL) += rpmsg_wwan_ctrl.o
 obj-$(CONFIG_IOSM) += iosm/
 obj-$(CONFIG_MTK_T7XX) += t7xx/
+obj-$(CONFIG_MTK_T9XX) += t9xx/
diff --git a/drivers/net/wwan/t9xx/Makefile b/drivers/net/wwan/t9xx/Makefile
new file mode 100644
index 000000000000..6f2dd3f91454
--- /dev/null
+++ b/drivers/net/wwan/t9xx/Makefile
@@ -0,0 +1,10 @@
+# SPDX-License-Identifier: GPL-2.0-only
+
+ccflags-y += -I$(src)/pcie
+ccflags-y += -I$(src)
+
+obj-$(CONFIG_MTK_T9XX) += mtk_t9xx.o
+
+mtk_t9xx-y := \
+	pcie/mtk_pci.o \
+	pcie/mtk_pci_drv_m9xx.o
diff --git a/drivers/net/wwan/t9xx/mtk_dev.h b/drivers/net/wwan/t9xx/mtk_dev.h
new file mode 100644
index 000000000000..8278a0e2875e
--- /dev/null
+++ b/drivers/net/wwan/t9xx/mtk_dev.h
@@ -0,0 +1,108 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#ifndef __MTK_DEV_H__
+#define __MTK_DEV_H__
+
+#include <linux/dma-mapping.h>
+#include <linux/dmapool.h>
+#include <linux/kernel.h>
+#include <linux/module.h>
+#include <linux/sched.h>
+#include <linux/slab.h>
+#include <linux/spinlock.h>
+
+#define MTK_DEV_STR_LEN 16
+
+enum mtk_user_id {
+	MTK_USER_MIN,
+	MTK_USER_CTRL,
+	MTK_USER_DATA,
+	MTK_USER_MAX
+};
+
+enum mtk_dev_evt_h2d {
+	DEV_EVT_H2D_DEVICE_RESET	= BIT(2),
+	DEV_EVT_H2D_MAX			= BIT(5)
+};
+
+enum mtk_dev_evt_d2h {
+	DEV_EVT_D2H_BOOT_FLOW_SYNC	= BIT(4),
+	DEV_EVT_D2H_ASYNC_HS_NOTIFY_SAP = BIT(5),
+	DEV_EVT_D2H_ASYNC_HS_NOTIFY_MD	= BIT(6),
+	DEV_EVT_D2H_MAX			= BIT(11)
+};
+
+struct mtk_md_dev;
+
+struct mtk_dev_ops {
+	u32 (*get_dev_state)(struct mtk_md_dev *mdev);
+	void (*ack_dev_state)(struct mtk_md_dev *mdev, u32 state);
+	u32 (*get_dev_cfg)(struct mtk_md_dev *mdev);
+	int (*register_dev_evt)(struct mtk_md_dev *mdev, u32 dev_evt,
+				int (*evt_cb)(u32 status, void *data), void *data);
+	void (*unregister_dev_evt)(struct mtk_md_dev *mdev, u32 dev_evt);
+	void (*mask_dev_evt)(struct mtk_md_dev *mdev, u32 dev_evt);
+	void (*unmask_dev_evt)(struct mtk_md_dev *mdev, u32 dev_evt);
+	void (*clear_dev_evt)(struct mtk_md_dev *mdev, u32 dev_evt);
+	int (*send_dev_evt)(struct mtk_md_dev *mdev, u32 dev_evt);
+};
+
+/* mtk_md_dev defines the structure of MTK modem device */
+struct mtk_md_dev {
+	struct device *dev;
+	const struct mtk_dev_ops *dev_ops;
+	void *hw_priv;
+	u32 hw_ver;
+	char dev_str[MTK_DEV_STR_LEN];
+};
+
+static inline u32 mtk_dev_get_dev_state(struct mtk_md_dev *mdev)
+{
+	return mdev->dev_ops->get_dev_state(mdev);
+}
+
+static inline void mtk_dev_ack_dev_state(struct mtk_md_dev *mdev, u32 state)
+{
+	return mdev->dev_ops->ack_dev_state(mdev, state);
+}
+
+static inline u32 mtk_dev_get_dev_cfg(struct mtk_md_dev *mdev)
+{
+	return mdev->dev_ops->get_dev_cfg(mdev);
+}
+
+static inline int mtk_dev_register_dev_evt(struct mtk_md_dev *mdev, u32 dev_evt,
+					   int (*evt_cb)(u32 status, void *data), void *data)
+{
+	return mdev->dev_ops->register_dev_evt(mdev, dev_evt, evt_cb, data);
+}
+
+static inline void mtk_dev_unregister_dev_evt(struct mtk_md_dev *mdev, u32 dev_evt)
+{
+	mdev->dev_ops->unregister_dev_evt(mdev, dev_evt);
+}
+
+static inline void mtk_dev_mask_dev_evt(struct mtk_md_dev *mdev, u32 dev_evt)
+{
+	mdev->dev_ops->mask_dev_evt(mdev, dev_evt);
+}
+
+static inline void mtk_dev_unmask_dev_evt(struct mtk_md_dev *mdev, u32 dev_evt)
+{
+	mdev->dev_ops->unmask_dev_evt(mdev, dev_evt);
+}
+
+static inline void mtk_dev_clear_dev_evt(struct mtk_md_dev *mdev, u32 dev_evt)
+{
+	mdev->dev_ops->clear_dev_evt(mdev, dev_evt);
+}
+
+static inline int mtk_dev_send_dev_evt(struct mtk_md_dev *mdev, u32 dev_evt)
+{
+	return mdev->dev_ops->send_dev_evt(mdev, dev_evt);
+}
+
+#endif /* __MTK_DEV_H__ */
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_pci.c b/drivers/net/wwan/t9xx/pcie/mtk_pci.c
new file mode 100644
index 000000000000..72259bf1b603
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_pci.c
@@ -0,0 +1,1030 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#include <linux/acpi.h>
+#include <linux/aer.h>
+#include <linux/bitfield.h>
+#include <linux/debugfs.h>
+#include <linux/delay.h>
+#include <linux/device.h>
+#include <linux/dma-mapping.h>
+#include <linux/kernel.h>
+#include <linux/module.h>
+
+#include "mtk_dev.h"
+#include "mtk_pci.h"
+#include "mtk_pci_reg.h"
+
+#define MTK_PCI_BAR_NUM		6
+#define MTK_PCI_TRANSPARENT_ATR_SIZE	(0x3F)
+#define MTK_PCI_MINIMUM_ATR_SIZE	(0x1000)
+#define ATR_SIZE_LO32_MASK		GENMASK_ULL(31, 0)
+#define ATR_SIZE_HI32_MASK		GENMASK_ULL(63, 32)
+#define ATR_SIZE_BIAS_FROM_LO32		2
+#define ATR_ADDR_ALIGN_MASK		0xFFFFF000
+#define ATR_EN				BIT(0)
+#define ATR_PARAM_OFFSET		16
+/* Delay between ACPI PXP._OFF and _ON for modem power cycle stabilization */
+#define MTK_PLDR_POWER_OFF_DELAY_MS	500
+#define LE32_TO_U32(x) ((__force u32)(__le32)(x))
+#define SET_HW_BITS(dest, chs, mhccif, dev)		\
+	({						\
+		if ((chs) & (dev))					\
+			(dest) |= FIELD_PREP(mhccif, 1);		\
+	})
+
+struct mtk_mhccif_cb {
+	struct list_head entry;
+	int (*evt_cb)(u32 status, void *data);
+	void *data;
+	u32 chs;
+};
+
+/**
+ * mtk_pci_setup_atr() - Configure a PCIe address translation rule
+ * @mdev: MTK MD device
+ * @cfg: ATR configuration parameters
+ *
+ * Return: 0 on success, negative error code on failure.
+ */
+int mtk_pci_setup_atr(struct mtk_md_dev *mdev, struct mtk_atr_cfg *cfg)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	u32 addr, val, size_h, size_l;
+	int atr_size, pos, offset;
+
+	if (cfg->transparent) {
+		/* No address conversion is performed */
+		atr_size = MTK_PCI_TRANSPARENT_ATR_SIZE;
+	} else {
+		if (cfg->size < MTK_PCI_MINIMUM_ATR_SIZE)
+			cfg->size = MTK_PCI_MINIMUM_ATR_SIZE;
+
+		if (cfg->src_addr & (cfg->size - 1)) {
+			dev_err(mdev->dev, "Invalid atr src addr is not aligned to size\n");
+			return -EFAULT;
+		}
+
+		if (cfg->trsl_addr & (cfg->size - 1)) {
+			dev_err(mdev->dev,
+				"Invalid atr trsl addr is not aligned to size, %llx, %llx\n",
+				cfg->trsl_addr, cfg->size - 1);
+			return -EFAULT;
+		}
+
+		size_l = FIELD_GET(ATR_SIZE_LO32_MASK, cfg->size);
+		size_h = FIELD_GET(ATR_SIZE_HI32_MASK, cfg->size);
+		pos = ffs(size_l);
+		if (pos) {
+			atr_size = pos - ATR_SIZE_BIAS_FROM_LO32;
+		} else {
+			pos = ffs(size_h);
+			atr_size = pos + 32 - ATR_SIZE_BIAS_FROM_LO32;
+		}
+	}
+
+	/* Calculate table offset */
+	offset = ATR_PORT_OFFSET * cfg->port + ATR_TABLE_OFFSET * cfg->table;
+	addr = REG_ATR_PCIE_WIN0_T0_SRC_ADDR_MSB + offset;
+	val = (u32)(cfg->src_addr >> 32);
+	mtk_pci_mac_write32(priv, addr, val);
+
+	addr = REG_ATR_PCIE_WIN0_T0_SRC_ADDR_LSB + offset;
+	val = (u32)(cfg->src_addr & ATR_ADDR_ALIGN_MASK) | (atr_size << 1) | ATR_EN;
+	mtk_pci_mac_write32(priv, addr, val);
+
+	addr = REG_ATR_PCIE_WIN0_T0_TRSL_ADDR_MSB + offset;
+	val = (u32)(cfg->trsl_addr >> 32);
+	mtk_pci_mac_write32(priv, addr, val);
+
+	addr = REG_ATR_PCIE_WIN0_T0_TRSL_ADDR_LSB + offset;
+	val = (u32)(cfg->trsl_addr & ATR_ADDR_ALIGN_MASK);
+	mtk_pci_mac_write32(priv, addr, val);
+
+	/* TRSL_PARAM */
+	addr = REG_ATR_PCIE_WIN0_T0_TRSL_PARAM + offset;
+	val = (cfg->trsl_param << ATR_PARAM_OFFSET) | cfg->trsl_id;
+	mtk_pci_mac_write32(priv, addr, val);
+
+	return 0;
+}
+
+/**
+ * mtk_pci_atr_disable() - Disable all PCIe address translation rules
+ * @priv: MTK PCI private data
+ */
+void mtk_pci_atr_disable(struct mtk_pci_priv *priv)
+{
+	int port, tbl, offset;
+	u32 val;
+
+	/* Disable all ATR table for all ports */
+	for (port = ATR_SRC_PCI_WIN0; port <= ATR_SRC_AXIS_3; port++)
+		for (tbl = 0; tbl < ATR_TABLE_NUM_PER_ATR; tbl++) {
+			/* Calculate table offset */
+			offset = ATR_PORT_OFFSET * port + ATR_TABLE_OFFSET * tbl;
+			val = mtk_pci_mac_read32(priv, REG_ATR_PCIE_WIN0_T0_SRC_ADDR_LSB + offset);
+			val = val & (~BIT(0));
+			/* Disable table by SRC_ADDR_L */
+			mtk_pci_mac_write32(priv, REG_ATR_PCIE_WIN0_T0_SRC_ADDR_LSB + offset, val);
+		}
+}
+
+static void mtk_pci_set_msix_merged(struct mtk_pci_priv *priv, int irq_cnt)
+{
+	mtk_pci_mac_write32(priv, REG_PCIE_CFG_MSIX, ffs(irq_cnt) * 2 - 1);
+}
+
+/**
+ * mtk_pci_get_dev_state() - Read the device state from the modem
+ * @mdev: MTK MD device
+ *
+ * Return: Device state value.
+ */
+u32 mtk_pci_get_dev_state(struct mtk_md_dev *mdev)
+{
+	return mtk_pci_mac_read32(mdev->hw_priv, REG_PCIE_DEBUG_DUMMY_7);
+}
+
+/**
+ * mtk_pci_ack_dev_state() - Acknowledge the device state to the modem
+ * @mdev: MTK MD device
+ * @state: State value to acknowledge
+ */
+void mtk_pci_ack_dev_state(struct mtk_md_dev *mdev, u32 state)
+{
+	mtk_pci_mac_write32(mdev->hw_priv, REG_PCIE_DEBUG_DUMMY_7, state);
+}
+
+/**
+ * mtk_pci_get_irq_id() - Map an IRQ source to its hardware IRQ ID
+ * @mdev: MTK MD device
+ * @irq_src: IRQ source enum
+ *
+ * Return: IRQ ID on success, -EINVAL on failure.
+ */
+int mtk_pci_get_irq_id(struct mtk_md_dev *mdev, enum mtk_irq_src irq_src)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	const int *irq_tbl = priv->cfg->irq_tbl;
+	int irq_id = -EINVAL;
+
+	if (irq_src > MTK_IRQ_SRC_MIN && irq_src < MTK_IRQ_SRC_MAX) {
+		irq_id = irq_tbl[irq_src];
+		if (irq_id < 0 || irq_id >= MTK_IRQ_CNT_MAX)
+			irq_id = -EINVAL;
+	}
+
+	return irq_id;
+}
+
+/**
+ * mtk_pci_get_virq_id() - Get the Linux virtual IRQ for a hardware IRQ ID
+ * @mdev: MTK MD device
+ * @irq_id: Hardware IRQ ID
+ *
+ * Return: Virtual IRQ number on success, negative error code on failure.
+ */
+int mtk_pci_get_virq_id(struct mtk_md_dev *mdev, int irq_id)
+{
+	struct pci_dev *pdev = to_pci_dev(mdev->dev);
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+
+	if (!priv->irq_cnt || irq_id < 0)
+		return -EINVAL;
+
+	return pci_irq_vector(pdev, irq_id % priv->irq_cnt);
+}
+
+/**
+ * mtk_pci_register_irq() - Register a callback for a hardware IRQ
+ * @mdev: MTK MD device
+ * @irq_id: Hardware IRQ ID
+ * @irq_cb: Callback function
+ * @data: Private data passed to callback
+ *
+ * Return: 0 on success, negative error code on failure.
+ */
+int mtk_pci_register_irq(struct mtk_md_dev *mdev, int irq_id,
+			 int (*irq_cb)(int irq_id, void *data), void *data)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+
+	if ((irq_id < 0 || irq_id >= MTK_IRQ_CNT_MAX) || !irq_cb)
+		return -EINVAL;
+
+	if (priv->irq_cb_list[irq_id]) {
+		dev_err(mdev->dev,
+			"Unable to register irq, irq_id=%d, it's already been register by %ps.\n",
+			irq_id, priv->irq_cb_list[irq_id]);
+		return -EFAULT;
+	}
+	priv->irq_cb_list[irq_id] = irq_cb;
+	priv->irq_cb_data[irq_id] = data;
+
+	return 0;
+}
+
+/**
+ * mtk_pci_unregister_irq() - Unregister a hardware IRQ callback
+ * @mdev: MTK MD device
+ * @irq_id: Hardware IRQ ID
+ *
+ * Return: 0 on success, negative error code on failure.
+ */
+int mtk_pci_unregister_irq(struct mtk_md_dev *mdev, int irq_id)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+
+	if (irq_id < 0 || irq_id >= MTK_IRQ_CNT_MAX)
+		return -EINVAL;
+
+	if (!priv->irq_cb_list[irq_id]) {
+		dev_err(mdev->dev, "irq_id=%d has not been registered\n", irq_id);
+		return -EFAULT;
+	}
+	priv->irq_cb_list[irq_id] = NULL;
+	priv->irq_cb_data[irq_id] = NULL;
+
+	return 0;
+}
+
+/**
+ * mtk_pci_mask_irq() - Mask (disable) a hardware IRQ
+ * @mdev: MTK MD device
+ * @irq_id: Hardware IRQ ID
+ *
+ * Return: 0 on success, negative error code on failure.
+ */
+int mtk_pci_mask_irq(struct mtk_md_dev *mdev, int irq_id)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+
+	if (irq_id < 0 || irq_id >= MTK_IRQ_CNT_MAX ||
+	    priv->irq_type != PCI_IRQ_MSIX) {
+		dev_err(mdev->dev, "Failed to mask irq: input irq_id=%d\n", irq_id);
+		return -EINVAL;
+	}
+
+	mtk_pci_mac_write32(priv, REG_IMASK_HOST_MSIX_CLR_GRP0_0, BIT(irq_id));
+
+	return 0;
+}
+
+/**
+ * mtk_pci_unmask_irq() - Unmask (enable) a hardware IRQ
+ * @mdev: MTK MD device
+ * @irq_id: Hardware IRQ ID
+ *
+ * Return: 0 on success, negative error code on failure.
+ */
+int mtk_pci_unmask_irq(struct mtk_md_dev *mdev, int irq_id)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+
+	if (irq_id < 0 || irq_id >= MTK_IRQ_CNT_MAX ||
+	    priv->irq_type != PCI_IRQ_MSIX) {
+		dev_err(mdev->dev, "Failed to unmask irq: input irq_id=%d\n", irq_id);
+		return -EINVAL;
+	}
+
+	mtk_pci_mac_write32(priv, REG_IMASK_HOST_MSIX_SET_GRP0_0, BIT(irq_id));
+
+	return 0;
+}
+
+/**
+ * mtk_pci_clear_irq() - Clear (acknowledge) a hardware IRQ
+ * @mdev: MTK MD device
+ * @irq_id: Hardware IRQ ID
+ *
+ * Return: 0 on success, negative error code on failure.
+ */
+int mtk_pci_clear_irq(struct mtk_md_dev *mdev, int irq_id)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+
+	if (irq_id < 0 || irq_id >= MTK_IRQ_CNT_MAX ||
+	    priv->irq_type != PCI_IRQ_MSIX) {
+		dev_err(mdev->dev, "Failed to clear irq: input irq_id=%d\n", irq_id);
+		return -EINVAL;
+	}
+
+	mtk_pci_mac_write32(priv, REG_MSIX_ISTATUS_HOST_GRP0_0, BIT(irq_id));
+
+	return 0;
+}
+
+static u32 mtk_pci_ext_d2h_evt_hw_bits(u32 chs)
+{
+	u32 hw_bits = 0;
+
+	SET_HW_BITS(hw_bits, chs, MHCCIF_EP2RC_EVT_BOOT_FLOW_SYNC,
+		    DEV_EVT_D2H_BOOT_FLOW_SYNC);
+	SET_HW_BITS(hw_bits, chs, MHCCIF_EP2RC_EVT_ASYNC_HS_NOTIFY_SAP,
+		    DEV_EVT_D2H_ASYNC_HS_NOTIFY_SAP);
+	SET_HW_BITS(hw_bits, chs, MHCCIF_EP2RC_EVT_ASYNC_HS_NOTIFY_MD,
+		    DEV_EVT_D2H_ASYNC_HS_NOTIFY_MD);
+
+	return LE32_TO_U32(cpu_to_le32(hw_bits));
+}
+
+static u32 mtk_pci_ext_d2h_evt_chs(u32 hw_bits)
+{
+	u32 chs = 0;
+
+	if (!hw_bits)
+		return chs;
+
+	chs = FIELD_PREP(DEV_EVT_D2H_BOOT_FLOW_SYNC,
+			 FIELD_GET(MHCCIF_EP2RC_EVT_BOOT_FLOW_SYNC, hw_bits)) |
+	      FIELD_PREP(DEV_EVT_D2H_ASYNC_HS_NOTIFY_SAP,
+			 FIELD_GET(MHCCIF_EP2RC_EVT_ASYNC_HS_NOTIFY_SAP, hw_bits)) |
+	      FIELD_PREP(DEV_EVT_D2H_ASYNC_HS_NOTIFY_MD,
+			 FIELD_GET(MHCCIF_EP2RC_EVT_ASYNC_HS_NOTIFY_MD, hw_bits));
+
+	return chs;
+}
+
+/**
+ * mtk_pci_register_ext_evt() - Register a callback for MHCCIF device events
+ * @mdev: MTK MD device
+ * @chs: Bitmask of event channels to register
+ * @evt_cb: Callback function
+ * @data: Private data passed to callback
+ *
+ * Return: 0 on success, negative error code on failure.
+ */
+int mtk_pci_register_ext_evt(struct mtk_md_dev *mdev, u32 chs,
+			     int (*evt_cb)(u32 status, void *data), void *data)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	struct mtk_mhccif_cb *cb;
+	int ret = 0;
+
+	if (!chs || !evt_cb)
+		return -EINVAL;
+
+	spin_lock_bh(&priv->mhccif_lock);
+	list_for_each_entry(cb, &priv->mhccif_cb_list, entry) {
+		if (cb->chs & chs) {
+			ret = -EFAULT;
+			dev_err(mdev->dev,
+				"Unable to register evt, intersection: chs=0x%08x&0x%08x cb=%ps\n",
+				chs, cb->chs, cb->evt_cb);
+			goto err_spin_unlock;
+		}
+	}
+	cb = kzalloc(sizeof(*cb), GFP_ATOMIC);
+	if (!cb) {
+		ret = -ENOMEM;
+		goto err_spin_unlock;
+	}
+	cb->evt_cb = evt_cb;
+	cb->data = data;
+	cb->chs = chs;
+	list_add_tail(&cb->entry, &priv->mhccif_cb_list);
+err_spin_unlock:
+	spin_unlock_bh(&priv->mhccif_lock);
+
+	return ret;
+}
+
+/**
+ * mtk_pci_unregister_ext_evt() - Unregister an MHCCIF device event callback
+ * @mdev: MTK MD device
+ * @chs: Bitmask of event channels to unregister
+ */
+void mtk_pci_unregister_ext_evt(struct mtk_md_dev *mdev, u32 chs)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	struct mtk_mhccif_cb *cb, *next;
+
+	if (!chs)
+		return;
+
+	spin_lock_bh(&priv->mhccif_lock);
+	list_for_each_entry_safe(cb, next, &priv->mhccif_cb_list, entry) {
+		if (cb->chs == chs) {
+			list_del(&cb->entry);
+			kfree(cb);
+			goto out;
+		}
+	}
+	dev_warn(mdev->dev,
+		 "Unable to unregister evt, no chs=0x%08x has been registered.\n", chs);
+out:
+	spin_unlock_bh(&priv->mhccif_lock);
+}
+
+/**
+ * mtk_pci_mask_ext_evt() - Mask (disable) MHCCIF device events
+ * @mdev: MTK MD device
+ * @chs: Bitmask of event channels to mask
+ */
+void mtk_pci_mask_ext_evt(struct mtk_md_dev *mdev, u32 chs)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	u32 hw_bits = mtk_pci_ext_d2h_evt_hw_bits(chs);
+
+	mtk_pci_write32(mdev, priv->cfg->mhccif_rc_base_addr +
+			MHCCIF_EP2RC_SW_INT_EAP_MASK_SET, hw_bits);
+}
+
+/**
+ * mtk_pci_unmask_ext_evt() - Unmask (enable) MHCCIF device events
+ * @mdev: MTK MD device
+ * @chs: Bitmask of event channels to unmask
+ */
+void mtk_pci_unmask_ext_evt(struct mtk_md_dev *mdev, u32 chs)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	u32 hw_bits = mtk_pci_ext_d2h_evt_hw_bits(chs);
+
+	mtk_pci_write32(mdev, priv->cfg->mhccif_rc_base_addr +
+			MHCCIF_EP2RC_SW_INT_EAP_MASK_CLR, hw_bits);
+}
+
+/**
+ * mtk_pci_clear_ext_evt() - Clear (acknowledge) MHCCIF device events
+ * @mdev: MTK MD device
+ * @chs: Bitmask of event channels to clear
+ */
+void mtk_pci_clear_ext_evt(struct mtk_md_dev *mdev, u32 chs)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	u32 hw_bits = mtk_pci_ext_d2h_evt_hw_bits(chs);
+
+	mtk_pci_write32(mdev, priv->cfg->mhccif_rc_base_addr +
+			MHCCIF_EP2RC_SW_INT_ACK, hw_bits);
+}
+
+static u32 mtk_pci_ext_h2d_evt_hw_bits(u32 chs)
+{
+	u32 hw_bits = 0;
+
+	SET_HW_BITS(hw_bits, chs, MHCCIF_RC2EP_EVT_DEVICE_RESET,
+		    DEV_EVT_H2D_DEVICE_RESET);
+	return LE32_TO_U32(cpu_to_le32(hw_bits));
+}
+
+/**
+ * mtk_pci_send_ext_evt() - Send an MHCCIF event to the modem
+ * @mdev: MTK MD device
+ * @ch: Event channel to trigger (must be a single bit)
+ *
+ * Return: 0 on success, negative error code on failure.
+ */
+int mtk_pci_send_ext_evt(struct mtk_md_dev *mdev, u32 ch)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	u32 rc_base, hw_bits;
+
+	rc_base = priv->cfg->mhccif_rc_base_addr;
+
+	/* Only allow one ch to be triggered at a time */
+	if (!is_power_of_2(ch)) {
+		dev_err(mdev->dev, "Unsupported ext evt ch=0x%08x\n", ch);
+		return -EINVAL;
+	}
+
+	hw_bits = mtk_pci_ext_h2d_evt_hw_bits(ch);
+	mtk_pci_write32(mdev, rc_base + MHCCIF_RC2EP_SW_BSY, hw_bits);
+	mtk_pci_write32(mdev, rc_base + MHCCIF_RC2EP_SW_TCHNUM, ffs(hw_bits) - 1);
+	return 0;
+}
+
+static u32 mtk_pci_get_ext_evt_hw_status(struct mtk_md_dev *mdev)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+
+	return mtk_pci_read32(mdev, priv->cfg->mhccif_rc_base_addr +
+			      MHCCIF_EP2RC_SW_INT_STS);
+}
+
+/**
+ * mtk_pci_fldr() - Perform a Function Level Device Reset via ACPI _RST
+ * @mdev: MTK MD device
+ *
+ * Return: 0 on success, negative error code on failure.
+ */
+int mtk_pci_fldr(struct mtk_md_dev *mdev)
+{
+	struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
+	acpi_status acpi_ret;
+	acpi_handle handle;
+
+	if (acpi_disabled) {
+		dev_err(mdev->dev, "Unsupported, acpi function isn't enable\n");
+		return -ENODEV;
+	}
+
+	handle = ACPI_HANDLE(mdev->dev);
+
+	if (!handle) {
+		dev_err(mdev->dev, "Unsupported, acpi handle isn't found\n");
+		return -ENODEV;
+	}
+
+	if (!acpi_has_method(handle, "_RST")) {
+		dev_err(mdev->dev, "Unsupported, _RST method isn't found\n");
+		return -ENODEV;
+	}
+
+	acpi_ret = acpi_evaluate_object(handle, "_RST", NULL, &buffer);
+	if (ACPI_FAILURE(acpi_ret)) {
+		dev_err(mdev->dev, "Failed to execute _RST method: %s\n",
+			acpi_format_exception(acpi_ret));
+		return -EFAULT;
+	}
+
+	acpi_os_free(buffer.pointer);
+
+	return 0;
+}
+
+/**
+ * mtk_pci_pldr() - Perform a PCIe Link Down Reset via ACPI PXP._OFF/_ON
+ * @mdev: MTK MD device
+ *
+ * Return: 0 on success, negative error code on failure.
+ */
+int mtk_pci_pldr(struct mtk_md_dev *mdev)
+{
+	struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
+	struct pci_dev *bridge;
+	acpi_status acpi_ret;
+	acpi_handle handle;
+
+	if (acpi_disabled) {
+		dev_err(mdev->dev, "Unsupported, acpi function isn't enable\n");
+		return -ENODEV;
+	}
+
+	bridge = pci_upstream_bridge(to_pci_dev(mdev->dev));
+	if (!bridge) {
+		dev_err(mdev->dev, "Unable to find bridge\n");
+		return -ENODEV;
+	}
+
+	handle = ACPI_HANDLE(&bridge->dev);
+	if (!handle) {
+		dev_err(mdev->dev, "Unsupported, acpi handle isn't found\n");
+		return -ENODEV;
+	}
+	if (!acpi_has_method(handle, "PXP._OFF") ||
+	    !acpi_has_method(handle, "PXP._ON")) {
+		dev_err(mdev->dev, "Unsupported, pldr method isn't supported\n");
+		return -ENODEV;
+	}
+	acpi_ret = acpi_evaluate_object(handle, "PXP._OFF", NULL, &buffer);
+	if (ACPI_FAILURE(acpi_ret)) {
+		dev_err(mdev->dev, "Failed to execute _OFF method: %s\n",
+			acpi_format_exception(acpi_ret));
+		return -EFAULT;
+	}
+	acpi_os_free(buffer.pointer);
+
+	msleep(MTK_PLDR_POWER_OFF_DELAY_MS);
+
+	buffer.length = ACPI_ALLOCATE_BUFFER;
+	buffer.pointer = NULL;
+	acpi_ret = acpi_evaluate_object(handle, "PXP._ON", NULL, &buffer);
+	if (ACPI_FAILURE(acpi_ret)) {
+		dev_err(mdev->dev, "Failed to execute _ON method: %s\n",
+			acpi_format_exception(acpi_ret));
+		return -EFAULT;
+	}
+	acpi_os_free(buffer.pointer);
+
+	return 0;
+}
+
+/**
+ * mtk_pci_get_dev_cfg() - Read the device configuration from the modem
+ * @mdev: MTK MD device
+ *
+ * Return: Device configuration value.
+ */
+u32 mtk_pci_get_dev_cfg(struct mtk_md_dev *mdev)
+{
+	u32 val;
+
+	val = mtk_pci_mac_read32(mdev->hw_priv, REG_PCIE_DEBUG_DUMMY_4);
+	return (val >> MTK_CFG_INFO_BIT_SHIFT);
+}
+
+static int mtk_pci_dev_reset(struct mtk_md_dev *mdev, enum mtk_reset_type type)
+{
+	switch (type) {
+	case RESET_MHCCIF:
+		return mtk_pci_send_ext_evt(mdev, DEV_EVT_H2D_DEVICE_RESET);
+	case RESET_FLDR:
+		return mtk_pci_fldr(mdev);
+	case RESET_PLDR:
+		return mtk_pci_pldr(mdev);
+	default:
+		return -EINVAL;
+	}
+}
+
+/**
+ * mtk_pci_reset() - Reset the modem device
+ * @mdev: MTK MD device
+ * @type: Reset type (MHCCIF, FLDR, or PLDR)
+ *
+ * Return: 0 on success, negative error code on failure.
+ */
+int mtk_pci_reset(struct mtk_md_dev *mdev, enum mtk_reset_type type)
+{
+	return mtk_pci_dev_reset(mdev, type);
+}
+
+/**
+ * mtk_pci_link_check() - Check if the PCIe link to the modem is active
+ * @mdev: MTK MD device
+ *
+ * Return: true if the device is present, false otherwise.
+ */
+bool mtk_pci_link_check(struct mtk_md_dev *mdev)
+{
+	return pci_device_is_present(to_pci_dev(mdev->dev));
+}
+
+static void mtk_mhccif_isr_work(struct work_struct *work)
+{
+	struct mtk_pci_priv *priv =
+		container_of(work, struct mtk_pci_priv, mhccif_work);
+	struct mtk_md_dev *mdev = priv->irq_desc->mdev;
+	struct mtk_mhccif_cb *cb;
+	u32 stat, mask, chs;
+
+	stat = mtk_pci_get_ext_evt_hw_status(mdev);
+	mask = mtk_pci_read32(mdev, priv->cfg->mhccif_rc_base_addr
+		+ MHCCIF_EP2RC_SW_INT_EAP_MASK);
+	if (unlikely(stat == U32_MAX && !(mtk_pci_link_check(mdev)))) {
+		/* When link failed, we don't need to unmask/clear. */
+		dev_err(mdev->dev, "Failed to check link in MHCCIF handler.\n");
+		return;
+	}
+
+	stat &= ~mask;
+	chs = mtk_pci_ext_d2h_evt_chs(stat);
+	spin_lock_bh(&priv->mhccif_lock);
+	list_for_each_entry(cb, &priv->mhccif_cb_list, entry) {
+		if (cb->chs & chs)
+			cb->evt_cb(cb->chs & chs, cb->data);
+	}
+	spin_unlock_bh(&priv->mhccif_lock);
+
+	mtk_pci_clear_irq(mdev, priv->mhccif_irq_id);
+	mtk_pci_unmask_irq(mdev, priv->mhccif_irq_id);
+}
+
+static const struct  pci_device_id t9xx_pci_table[] = {
+	MTK_PCI_DEV_CFG(0x0900, mtk_dev_cfg_0900),
+	CEI_PCI_DEV_CFG(0x01CA, mtk_dev_cfg_0900),
+	{/* end: all zeroes */}
+};
+
+MODULE_DEVICE_TABLE(pci, t9xx_pci_table);
+
+static int mtk_pci_bar_init(struct mtk_md_dev *mdev)
+{
+	struct pci_dev *pdev = to_pci_dev(mdev->dev);
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	u32 bar[MTK_PCI_BAR_NUM];
+	int i, ret;
+
+	for (i = 0; i < MTK_PCI_BAR_NUM; i++)
+		pci_read_config_dword(to_pci_dev(mdev->dev),
+				      PCI_BASE_ADDRESS_0 + (i << 2), bar + i);
+
+	ret = pcim_iomap_regions(pdev, MTK_REQUESTED_BARS, mdev->dev_str);
+	if (ret) {
+		dev_err(mdev->dev, "Failed to init MMIO. ret=%d\n", ret);
+		return ret;
+	}
+
+	/* get ioremapped memory */
+	priv->mac_reg_base = pcim_iomap_table(pdev)[MTK_BAR_0_1_IDX];
+	priv->bar23_addr = pcim_iomap_table(pdev)[MTK_BAR_2_3_IDX];
+	if (!priv->mac_reg_base || !priv->bar23_addr) {
+		dev_err(mdev->dev, "Failed to init BAR.\n");
+		return -EINVAL;
+	}
+	/* We use MD view base address "0" to observe registers */
+	priv->ext_reg_base = priv->bar23_addr - ATR_PCIE_REG_TRSL_ADDR;
+
+	return 0;
+}
+
+static int mtk_mhccif_irq_cb(int irq_id, void *data)
+{
+	struct mtk_md_dev *mdev = data;
+	struct mtk_pci_priv *priv;
+
+	priv = mdev->hw_priv;
+	queue_work(system_highpri_wq, &priv->mhccif_work);
+
+	return 0;
+}
+
+static int mtk_mhccif_init(struct mtk_md_dev *mdev)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	int ret;
+
+	INIT_LIST_HEAD(&priv->mhccif_cb_list);
+	spin_lock_init(&priv->mhccif_lock);
+	INIT_WORK(&priv->mhccif_work, mtk_mhccif_isr_work);
+
+	ret = mtk_pci_get_irq_id(mdev, MTK_IRQ_SRC_MHCCIF);
+	if (ret < 0) {
+		dev_err(mdev->dev, "Failed to get mhccif_irq_id. ret=%d\n", ret);
+		return ret;
+	}
+	priv->mhccif_irq_id = ret;
+
+	ret = mtk_pci_register_irq(mdev, priv->mhccif_irq_id, mtk_mhccif_irq_cb, mdev);
+	if (ret) {
+		dev_err(mdev->dev, "Failed to register mhccif_irq callback\n");
+		return ret;
+	}
+
+	return 0;
+}
+
+static void mtk_mhccif_exit(struct mtk_md_dev *mdev)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+
+	mtk_pci_unregister_irq(mdev, priv->mhccif_irq_id);
+	cancel_work_sync(&priv->mhccif_work);
+}
+
+static irqreturn_t mtk_pci_irq_handler(struct mtk_md_dev *mdev, u32 irq_state)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	int irq_id;
+
+	/* Check whether each set bit has a callback, if has, call it */
+	do {
+		irq_id = fls(irq_state) - 1;
+		irq_state &= ~BIT(irq_id);
+		if (likely(priv->irq_cb_list[irq_id]))
+			priv->irq_cb_list[irq_id](irq_id, priv->irq_cb_data[irq_id]);
+		else
+			dev_err(mdev->dev, "Unhandled irq_id=%d, no callback for it.\n", irq_id);
+	} while (irq_state);
+
+	return IRQ_HANDLED;
+}
+
+static irqreturn_t mtk_pci_irq_msix(int irq, void *data)
+{
+	struct mtk_pci_irq_desc *irq_desc = data;
+	struct mtk_md_dev *mdev = irq_desc->mdev;
+	struct mtk_pci_priv *priv;
+	u32 irq_state, irq_enable;
+
+	priv = mdev->hw_priv;
+	irq_state = mtk_pci_mac_read32(priv, REG_MSIX_ISTATUS_HOST_GRP0_0);
+	irq_enable = mtk_pci_mac_read32(priv, REG_IMASK_HOST_MSIX_GRP0_0);
+	irq_state &= irq_enable;
+
+	if (unlikely(!irq_state) ||
+	    unlikely(!((irq_state & GENMASK(priv->irq_cnt - 1, 0)) &
+		      irq_desc->msix_bits)))
+		return IRQ_NONE;
+
+	/* Mask the bit and user needs to unmask by itself */
+	mtk_pci_mac_write32(priv, REG_IMASK_HOST_MSIX_CLR_GRP0_0,
+			    irq_state & ~BIT(30));
+
+	return mtk_pci_irq_handler(mdev, irq_state);
+}
+
+static int mtk_pci_request_irq_msix(struct mtk_md_dev *mdev,
+				    int irq_cnt_allocated)
+{
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	struct mtk_pci_irq_desc *irq_desc;
+	struct pci_dev *pdev;
+	int irq_cnt;
+	int ret, i;
+
+	/* calculate the nearest 2's power number */
+	irq_cnt = BIT(fls(irq_cnt_allocated) - 1);
+	pdev = to_pci_dev(mdev->dev);
+	irq_desc = priv->irq_desc;
+	for (i = 0; i < irq_cnt; i++) {
+		irq_desc[i].mdev = mdev;
+		irq_desc[i].msix_bits = BIT(i);
+		snprintf(irq_desc[i].name, MTK_IRQ_NAME_LEN, "msix%d-%s", i, mdev->dev_str);
+		ret = pci_request_irq(pdev, i, mtk_pci_irq_msix, NULL,
+				      &irq_desc[i], irq_desc[i].name);
+		if (ret) {
+			dev_err(mdev->dev, "Failed to request %s: ret=%d\n",
+				irq_desc[i].name, ret);
+			for (i--; i >= 0; i--)
+				pci_free_irq(pdev, i, &irq_desc[i]);
+			return ret;
+		}
+	}
+	priv->irq_cnt = irq_cnt;
+	priv->irq_type = PCI_IRQ_MSIX;
+
+	if (irq_cnt != MTK_IRQ_CNT_MAX)
+		mtk_pci_set_msix_merged(priv, irq_cnt);
+
+	return 0;
+}
+
+static int mtk_pci_request_irq(struct mtk_md_dev *mdev)
+{
+	struct pci_dev *pdev = to_pci_dev(mdev->dev);
+	int irq_cnt, ret;
+
+	irq_cnt = pci_alloc_irq_vectors(pdev, MTK_IRQ_CNT_MIN,
+					MTK_IRQ_CNT_MAX, PCI_IRQ_MSIX);
+
+	if (irq_cnt < MTK_IRQ_CNT_MIN) {
+		dev_err(mdev->dev,
+			"Unable to alloc pci irq vectors. ret=%d maxirqcnt=%d irqtype=0x%x\n",
+			irq_cnt, MTK_IRQ_CNT_MAX, PCI_IRQ_MSIX);
+		return -EFAULT;
+	}
+
+	ret = mtk_pci_request_irq_msix(mdev, irq_cnt);
+	if (ret)
+		pci_free_irq_vectors(pdev);
+
+	return ret;
+}
+
+static void mtk_pci_free_irq(struct mtk_md_dev *mdev)
+{
+	struct pci_dev *pdev = to_pci_dev(mdev->dev);
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	int i;
+
+	for (i = 0; i < priv->irq_cnt; i++)
+		pci_free_irq(pdev, i, &priv->irq_desc[i]);
+
+	pci_free_irq_vectors(pdev);
+}
+
+static const struct mtk_dev_ops pci_hw_ops = {
+	.get_dev_state = mtk_pci_get_dev_state,
+	.ack_dev_state = mtk_pci_ack_dev_state,
+	.get_dev_cfg = mtk_pci_get_dev_cfg,
+	.register_dev_evt = mtk_pci_register_ext_evt,
+	.unregister_dev_evt = mtk_pci_unregister_ext_evt,
+	.mask_dev_evt = mtk_pci_mask_ext_evt,
+	.unmask_dev_evt = mtk_pci_unmask_ext_evt,
+	.clear_dev_evt = mtk_pci_clear_ext_evt,
+	.send_dev_evt = mtk_pci_send_ext_evt,
+};
+
+static int mtk_pci_probe(struct pci_dev *pdev, const struct pci_device_id *id)
+{
+	struct device *dev = &pdev->dev;
+	struct mtk_pci_priv *priv;
+	struct mtk_md_dev *mdev;
+	int ret;
+
+	mdev = devm_kzalloc(dev, sizeof(*mdev), GFP_KERNEL);
+	if (!mdev) {
+		ret = -ENOMEM;
+		goto log_err;
+	}
+	mdev->dev_ops = &pci_hw_ops;
+	mdev->dev = dev;
+
+	priv = devm_kzalloc(dev, sizeof(*priv), GFP_KERNEL);
+	if (!priv) {
+		ret = -ENOMEM;
+		goto log_err;
+	}
+
+	pci_set_drvdata(pdev, mdev);
+	priv->cfg = (void *)id->driver_data;
+	priv->mdev = mdev;
+	mdev->hw_ver  = pdev->device;
+	mdev->hw_priv = priv;
+	mdev->dev     = dev;
+	snprintf(mdev->dev_str, MTK_DEV_STR_LEN, "%02x%02x%d",
+		 pdev->bus->number, PCI_SLOT(pdev->devfn), PCI_FUNC(pdev->devfn));
+	if (pdev->state_saved)
+		pci_restore_state(pdev);
+
+	ret = pcim_enable_device(pdev);
+	if (ret) {
+		dev_err(mdev->dev, "Failed to enable pci device.\n");
+		goto log_err;
+	}
+
+	ret = dma_set_mask_and_coherent(&pdev->dev, DMA_BIT_MASK(64));
+	if (ret) {
+		dev_err(mdev->dev, "Failed to set DMA Mask and Coherent. (ret=%d)\n", ret);
+		goto log_err;
+	}
+
+	ret = mtk_pci_bar_init(mdev);
+	if (ret)
+		goto log_err;
+
+	ret = priv->cfg->atr_init(mdev);
+	if (ret)
+		goto log_err;
+
+	ret = mtk_mhccif_init(mdev);
+	if (ret)
+		goto log_err;
+
+	/* mask all irqs */
+	if (priv->cfg->flag & MTK_CFG_IRQ_DFLT_MASK)
+		mtk_pci_mac_write32(priv, REG_IMASK_HOST_MSIX_CLR_GRP0_0, U32_MAX);
+
+	ret = mtk_pci_request_irq(mdev);
+	if (ret)
+		goto free_mhccif;
+
+	pci_set_master(pdev);
+	mtk_pci_unmask_irq(mdev, priv->mhccif_irq_id);
+
+	if (mtk_pci_link_check(mdev)) {
+		pci_save_state(pdev);
+	} else {
+		ret = -ENOLINK;
+		goto clear_master;
+	}
+
+	priv->saved_state = pci_store_saved_state(pdev);
+	if (!priv->saved_state) {
+		ret = -EFAULT;
+		goto clear_master;
+	}
+
+	return 0;
+
+clear_master:
+	pci_clear_master(pdev);
+	mtk_pci_free_irq(mdev);
+free_mhccif:
+	mtk_mhccif_exit(mdev);
+log_err:
+	dev_err(dev, "Failed to probe device, ret=%d\n", ret);
+
+	return ret;
+}
+
+static void mtk_pci_remove(struct pci_dev *pdev)
+{
+	struct mtk_md_dev *mdev = pci_get_drvdata(pdev);
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	struct device *dev = &pdev->dev;
+
+	mtk_pci_mask_irq(mdev, priv->mhccif_irq_id);
+
+	if (mtk_pci_pldr(mdev)) {
+		dev_warn(dev, "Failed to execute PLDR, try external event\n");
+		mtk_pci_reset(mdev, RESET_MHCCIF);
+	}
+
+	pci_clear_master(pdev);
+	mtk_pci_free_irq(mdev);
+	mtk_mhccif_exit(mdev);
+	pci_load_and_free_saved_state(pdev, &priv->saved_state);
+}
+
+static pci_ers_result_t mtk_pci_error_detected(struct pci_dev *pdev,
+					       pci_channel_state_t state)
+{
+	struct mtk_md_dev *mdev = pci_get_drvdata(pdev);
+
+	dev_err(mdev->dev, "AER detected: pci_channel_state_t=%d\n", state);
+
+	/* Request a slot reset. */
+	return PCI_ERS_RESULT_CAN_RECOVER;
+}
+
+static const struct pci_error_handlers mtk_pci_err_handler = {
+	.error_detected = mtk_pci_error_detected,
+};
+
+static struct pci_driver mtk_pci_drv = {
+	.name = "mtk_pci_drv",
+	.id_table = t9xx_pci_table,
+	.probe = mtk_pci_probe,
+	.remove = mtk_pci_remove,
+	.err_handler = &mtk_pci_err_handler
+};
+
+module_pci_driver(mtk_pci_drv);
+
+MODULE_DESCRIPTION("MediaTek T9xx PCIe WWAN driver pcie layer");
+MODULE_LICENSE("GPL");
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_pci.h b/drivers/net/wwan/t9xx/pcie/mtk_pci.h
new file mode 100644
index 000000000000..9819a1b07c1b
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_pci.h
@@ -0,0 +1,234 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#ifndef __MTK_PCI_H__
+#define __MTK_PCI_H__
+
+#include <linux/pci.h>
+
+#include "../mtk_dev.h"
+
+enum mtk_irq_src {
+	MTK_IRQ_SRC_MIN,
+	MTK_IRQ_SRC_MHCCIF,
+	MTK_IRQ_SRC_DPMAIF,
+	MTK_IRQ_SRC_DPMAIF2,
+	MTK_IRQ_SRC_CLDMA0,
+	MTK_IRQ_SRC_CLDMA1,
+	MTK_IRQ_SRC_CLDMA2,
+	MTK_IRQ_SRC_CLDMA3,
+	MTK_IRQ_SRC_PM_LOCK,
+	MTK_IRQ_SRC_DPMAIF3,
+	MTK_IRQ_SRC_DPMAIF6,
+	MTK_IRQ_SRC_MAX
+};
+
+enum mtk_reset_type {
+	RESET_FLDR,
+	RESET_PLDR,
+	RESET_MHCCIF,
+};
+
+enum mtk_atr_type {
+	ATR_PCI2AXI = 0,
+	ATR_AXI2PCI,
+};
+
+enum mtk_atr_src_port {
+	ATR_SRC_PCI_WIN0 = 0,
+	ATR_SRC_PCI_WIN1,
+	ATR_SRC_AXIS_0,
+	ATR_SRC_AXIS_1,
+	ATR_SRC_AXIS_2,
+	ATR_SRC_AXIS_3,
+};
+
+enum mtk_atr_dst_port {
+	ATR_DST_PCI_TRX = 0,
+	ATR_DST_AXIM_0 = 4,
+	ATR_DST_AXIM_1,
+	ATR_DST_AXIM_2,
+	ATR_DST_AXIM_3,
+};
+
+enum mtk_pci_evt_h2d {
+	DEV_EVT_H2D_EXTEND_BASE            = DEV_EVT_H2D_MAX,
+	EXT_EVT_H2D_RESERVED_FOR_CLDMA0    = DEV_EVT_H2D_EXTEND_BASE << 1,
+	EXT_EVT_H2D_RESERVED_FOR_CLDMA1    = DEV_EVT_H2D_EXTEND_BASE << 2,
+	EXT_EVT_H2D_RESERVED_FOR_CLDMA3    = DEV_EVT_H2D_EXTEND_BASE << 3,
+	EXT_EVT_H2D_RESERVED_FOR_CLDMA2    = DEV_EVT_H2D_EXTEND_BASE << 4,
+	EXT_EVT_H2D_RESERVED_FOR_DPMAIF    = DEV_EVT_H2D_EXTEND_BASE << 5,
+	EXT_EVT_H2D_PCIE_PM_SUSPEND_REQ    = DEV_EVT_H2D_EXTEND_BASE << 6,
+	EXT_EVT_H2D_PCIE_PM_RESUME_REQ     = DEV_EVT_H2D_EXTEND_BASE << 7,
+	EXT_EVT_H2D_PCIE_PM_SUSPEND_REQ_AP = DEV_EVT_H2D_EXTEND_BASE << 8,
+	EXT_EVT_H2D_PCIE_PM_RESUME_REQ_AP  = DEV_EVT_H2D_EXTEND_BASE << 9,
+	EXT_EVT_H2D_RESERVED_FOR_TEST      = DEV_EVT_H2D_EXTEND_BASE << 11,
+};
+
+enum mtk_pci_evt_d2h {
+	DEV_EVT_D2H_EXTEND_BASE            = DEV_EVT_D2H_MAX,
+	EXT_EVT_D2H_RESERVED_FOR_CLDMA0    = DEV_EVT_D2H_EXTEND_BASE << 1,
+	EXT_EVT_D2H_RESERVED_FOR_CLDMA1    = DEV_EVT_D2H_EXTEND_BASE << 2,
+	EXT_EVT_D2H_RESERVED_FOR_CLDMA3    = DEV_EVT_D2H_EXTEND_BASE << 3,
+	EXT_EVT_D2H_RESERVED_FOR_CLDMA2    = DEV_EVT_D2H_EXTEND_BASE << 4,
+	EXT_EVT_D2H_RESERVED_FOR_DPMAIF    = DEV_EVT_D2H_EXTEND_BASE << 5,
+	EXT_EVT_D2H_PCIE_PM_SUSPEND_ACK    = DEV_EVT_D2H_EXTEND_BASE << 6,
+	EXT_EVT_D2H_PCIE_PM_RESUME_ACK     = DEV_EVT_D2H_EXTEND_BASE << 7,
+	EXT_EVT_D2H_PCIE_PM_SUSPEND_ACK_AP = DEV_EVT_D2H_EXTEND_BASE << 8,
+	EXT_EVT_D2H_PCIE_PM_RESUME_ACK_AP  = DEV_EVT_D2H_EXTEND_BASE << 9,
+	EXT_EVT_D2H_SOFT_OFF_NOTIFY        = DEV_EVT_D2H_EXTEND_BASE << 10,
+	EXT_EVT_D2H_FRC_DONE_NOTIFY        = DEV_EVT_D2H_EXTEND_BASE << 11,
+	EXT_EVT_D2H_RESERVED_FOR_TEST1	   = DEV_EVT_D2H_EXTEND_BASE << 12,
+	EXT_EVT_D2H_RESERVED_FOR_TEST2	   = DEV_EVT_D2H_EXTEND_BASE << 13,
+};
+
+#define MTK_PCI_CLASS                 0x0D4000
+#define MTK_PCI_VENDOR_ID             0x14C3
+#define CEI_PCI_VENDOR_ID             0x03F0
+
+#define MTK_CFG_INFO_BIT_SHIFT        4
+
+#define MTK_PCI_DEV_CFG(id, cfg) \
+{ \
+	PCI_DEVICE(MTK_PCI_VENDOR_ID, id), \
+	MTK_PCI_CLASS, PCI_ANY_ID, \
+	.driver_data = (kernel_ulong_t)&(cfg), \
+}
+
+#define CEI_PCI_DEV_CFG(id, cfg) \
+{ \
+	PCI_DEVICE(CEI_PCI_VENDOR_ID, id), \
+	MTK_PCI_CLASS, PCI_ANY_ID, \
+	.driver_data = (kernel_ulong_t)&(cfg), \
+}
+
+#define MTK_CFG_IRQ_DFLT_MASK		BIT(0)
+#define MTK_CFG_DISABLE_AP_DRM		BIT(2)
+#define MTK_CFG_PM_SW_IRQ		BIT(6)
+
+#define MTK_BAR_0_1_IDX                 0
+#define MTK_BAR_2_3_IDX                 2
+
+#define MTK_REQUESTED_BARS \
+	((1 << MTK_BAR_0_1_IDX) | \
+	 (1 << MTK_BAR_2_3_IDX))
+
+#define MTK_IRQ_CNT_MIN				1
+#define MTK_IRQ_CNT_MAX				32
+#define MTK_IRQ_NAME_LEN			32
+
+#define ATR_PORT_OFFSET				0x100
+#define ATR_TABLE_OFFSET			0x20
+#define ATR_TABLE_NUM_PER_ATR			8
+#define ATR_PCIE_REG_TRSL_ADDR			0x10000000
+#define ATR_PCIE_REG_SIZE			0x00400000
+#define ATR_PCIE_REG_PORT			ATR_SRC_PCI_WIN0
+#define ATR_PCIE_REG_TABLE_NUM			1
+#define ATR_PCIE_REG_TRSL_PORT			ATR_DST_AXIM_0
+#define ATR_PCIE_DEV_DMA_SRC_ADDR		0x00000000
+#define ATR_PCIE_DEV_DMA_TRANSPARENT		1
+#define ATR_PCIE_DEV_DMA_SIZE			0
+#define ATR_PCIE_DEV_DMA_TABLE_NUM		0
+#define ATR_PCIE_DEV_DMA_TRSL_ADDR		0x00000000
+
+struct mtk_pci_irq_desc {
+	struct mtk_md_dev *mdev;
+	u32 msix_bits;
+	char name[MTK_IRQ_NAME_LEN];
+};
+
+struct mtk_pci_dev_cfg {
+	u32 flag;
+	u32 mhccif_rc_base_addr;
+	u32 istatus_host_ctrl_addr;
+	int irq_tbl[MTK_IRQ_SRC_MAX];
+	int (*atr_init)(struct mtk_md_dev *mdev);
+};
+
+extern const struct mtk_pci_dev_cfg mtk_dev_cfg_0900;
+
+struct mtk_pci_priv {
+	struct mtk_md_dev *mdev;
+	const struct mtk_pci_dev_cfg *cfg;
+	void __iomem *bar23_addr;
+	void __iomem *mac_reg_base;
+	void __iomem *ext_reg_base;
+	int irq_cnt;
+	int irq_type;
+	void *irq_cb_data[MTK_IRQ_CNT_MAX];
+
+	int (*irq_cb_list[MTK_IRQ_CNT_MAX])(int irq_id, void *data);
+	struct mtk_pci_irq_desc irq_desc[MTK_IRQ_CNT_MAX];
+	struct list_head mhccif_cb_list;
+	/* mhccif_lock: lock to protect mhccif_cb_list */
+	spinlock_t mhccif_lock;
+	struct work_struct mhccif_work;
+	int mhccif_irq_id;
+	struct pci_saved_state *saved_state;
+};
+
+struct mtk_atr_cfg {
+	u64 src_addr;
+	u64 trsl_addr;
+	u64 size;
+	u32 type;      /* Port type */
+	u32 port;      /* Port number */
+	u32 table;     /* Table number (8 tables for each port) */
+	u32 trsl_id;
+	u32 trsl_param;
+	u32 transparent;
+};
+
+/* BAR 0/1 MMIO access */
+static inline u32 mtk_pci_mac_read32(struct mtk_pci_priv *priv, u64 addr)
+{
+	return ioread32(priv->mac_reg_base + addr);
+}
+
+static inline void mtk_pci_mac_write32(struct mtk_pci_priv *priv, u64 addr, u32 val)
+{
+	iowrite32(val, priv->mac_reg_base + addr);
+}
+
+/* BAR 2/3 MMIO access */
+static inline u32 mtk_pci_read32(struct mtk_md_dev *mdev, u64 addr)
+{
+	return ioread32(((struct mtk_pci_priv *)mdev->hw_priv)->ext_reg_base + addr);
+}
+
+static inline void mtk_pci_write32(struct mtk_md_dev *mdev, u64 addr, u32 val)
+{
+	iowrite32(val, ((struct mtk_pci_priv *)mdev->hw_priv)->ext_reg_base + addr);
+}
+
+/* Device operations */
+u32 mtk_pci_get_dev_state(struct mtk_md_dev *mdev);
+void mtk_pci_ack_dev_state(struct mtk_md_dev *mdev, u32 state);
+u32 mtk_pci_get_dev_cfg(struct mtk_md_dev *mdev);
+/* IRQ Related operations */
+int mtk_pci_get_irq_id(struct mtk_md_dev *mdev, enum mtk_irq_src irq_src);
+int mtk_pci_get_virq_id(struct mtk_md_dev *mdev, int irq_id);
+int mtk_pci_register_irq(struct mtk_md_dev *mdev, int irq_id,
+			 int (*irq_cb)(int irq_id, void *data), void *data);
+int mtk_pci_unregister_irq(struct mtk_md_dev *mdev, int irq_id);
+int mtk_pci_mask_irq(struct mtk_md_dev *mdev, int irq_id);
+int mtk_pci_unmask_irq(struct mtk_md_dev *mdev, int irq_id);
+int mtk_pci_clear_irq(struct mtk_md_dev *mdev, int irq_id);
+/* External event related */
+int mtk_pci_register_ext_evt(struct mtk_md_dev *mdev, u32 chs,
+			     int (*evt_cb)(u32 status, void *data), void *data);
+void mtk_pci_unregister_ext_evt(struct mtk_md_dev *mdev, u32 chs);
+void mtk_pci_mask_ext_evt(struct mtk_md_dev *mdev, u32 chs);
+void mtk_pci_unmask_ext_evt(struct mtk_md_dev *mdev, u32 chs);
+void mtk_pci_clear_ext_evt(struct mtk_md_dev *mdev, u32 chs);
+int mtk_pci_send_ext_evt(struct mtk_md_dev *mdev, u32 ch);
+int mtk_pci_fldr(struct mtk_md_dev *mdev);
+int mtk_pci_pldr(struct mtk_md_dev *mdev);
+int mtk_pci_reset(struct mtk_md_dev *mdev, enum mtk_reset_type type);
+bool mtk_pci_link_check(struct mtk_md_dev *mdev);
+int mtk_pci_setup_atr(struct mtk_md_dev *mdev, struct mtk_atr_cfg *cfg);
+void mtk_pci_atr_disable(struct mtk_pci_priv *priv);
+
+#endif /* __MTK_PCI_H__ */
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_pci_drv_m9xx.c b/drivers/net/wwan/t9xx/pcie/mtk_pci_drv_m9xx.c
new file mode 100644
index 000000000000..88b44142afb7
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_pci_drv_m9xx.c
@@ -0,0 +1,69 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+#include <linux/types.h>
+#include "mtk_pci.h"
+#include "mtk_pci_reg.h"
+
+static int mtk_pci_atr_init_m9xx(struct mtk_md_dev *mdev)
+{
+	struct pci_dev *pdev = to_pci_dev(mdev->dev);
+	struct mtk_pci_priv *priv = mdev->hw_priv;
+	struct mtk_atr_cfg cfg;
+	int port, ret;
+
+	mtk_pci_atr_disable(priv);
+
+	/* Config ATR for RC to access device's register */
+	cfg.src_addr = pci_resource_start(pdev, MTK_BAR_2_3_IDX);
+	cfg.size = ATR_PCIE_REG_SIZE;
+	cfg.trsl_addr = ATR_PCIE_REG_TRSL_ADDR;
+	cfg.type = ATR_PCI2AXI;
+	cfg.port = ATR_PCIE_REG_PORT;
+	cfg.table = ATR_PCIE_REG_TABLE_NUM;
+	cfg.trsl_id = ATR_PCIE_REG_TRSL_PORT;
+	cfg.trsl_param = 0x0;
+	cfg.transparent = 0x0;
+	ret = mtk_pci_setup_atr(mdev, &cfg);
+	if (ret)
+		return ret;
+
+	/* Config ATR for EP to access RC's memory */
+	for (port = ATR_SRC_AXIS_0; port <= ATR_SRC_AXIS_3; port++) {
+		cfg.src_addr = ATR_PCIE_DEV_DMA_SRC_ADDR;
+		cfg.size = ATR_PCIE_DEV_DMA_SIZE;
+		cfg.trsl_addr = ATR_PCIE_DEV_DMA_TRSL_ADDR;
+		cfg.type = ATR_AXI2PCI;
+		cfg.port = port;
+		cfg.table = ATR_PCIE_DEV_DMA_TABLE_NUM;
+		cfg.trsl_id = ATR_DST_PCI_TRX;
+		cfg.trsl_param = 0x0;
+		/* Enable transparent translation */
+		cfg.transparent = ATR_PCIE_DEV_DMA_TRANSPARENT;
+		ret = mtk_pci_setup_atr(mdev, &cfg);
+		if (ret)
+			return ret;
+	}
+
+	return 0;
+}
+
+const struct mtk_pci_dev_cfg mtk_dev_cfg_0900 = {
+	.flag = MTK_CFG_PM_SW_IRQ,
+	.mhccif_rc_base_addr = 0x1000A000,
+	.istatus_host_ctrl_addr = REG_ISTATUS_HOST_CTRL_NEW,
+	.irq_tbl = {
+		[MTK_IRQ_SRC_DPMAIF]  = 24,
+		[MTK_IRQ_SRC_CLDMA0]  = 27,
+		[MTK_IRQ_SRC_CLDMA1]  = 26,
+		[MTK_IRQ_SRC_CLDMA2]  = 25,
+		[MTK_IRQ_SRC_MHCCIF]  = 28,
+		[MTK_IRQ_SRC_DPMAIF2] = 29,
+		[MTK_IRQ_SRC_CLDMA3]  = 31,
+		[MTK_IRQ_SRC_PM_LOCK] = 0,
+		[MTK_IRQ_SRC_DPMAIF3] = 7,
+		[MTK_IRQ_SRC_DPMAIF6]  = 10,
+	},
+	.atr_init = mtk_pci_atr_init_m9xx,
+};
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_pci_reg.h b/drivers/net/wwan/t9xx/pcie/mtk_pci_reg.h
new file mode 100644
index 000000000000..3f0667e8a846
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_pci_reg.h
@@ -0,0 +1,70 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#ifndef __MTK_PCI_REG_H__
+#define __MTK_PCI_REG_H__
+
+#define REG_ISTATUS_HOST_CTRL_NEW		0x031C
+#define REG_PCIE_MISC_CTRL			0x0348
+#define REG_PCIE_CFG_MSIX			0x03EC
+#define REG_ATR_PCIE_WIN0_T0_SRC_ADDR_LSB	0x0600
+#define REG_ATR_PCIE_WIN0_T0_SRC_ADDR_MSB	0x0604
+#define REG_ATR_PCIE_WIN0_T0_TRSL_ADDR_LSB	0x0608
+#define REG_ATR_PCIE_WIN0_T0_TRSL_ADDR_MSB	0x060C
+#define REG_ATR_PCIE_WIN0_T0_TRSL_PARAM		0x0610
+#define REG_PCIE_DEBUG_DUMMY_3			0x0D0C
+#define REG_PCIE_DEBUG_DUMMY_4			0x0D10
+#define REG_PCIE_DEBUG_DUMMY_7			0x0D1C
+#define REG_MSIX_ISTATUS_HOST_GRP0_0		0x0F00
+#define REG_IMASK_HOST_MSIX_SET_GRP0_0		0x3000
+#define REG_IMASK_HOST_MSIX_CLR_GRP0_0		0x3080
+#define REG_IMASK_HOST_MSIX_GRP0_0		0x3100
+
+/* mhccif registers */
+#define MHCCIF_RC2EP_SW_BSY			0x4
+#define MHCCIF_RC2EP_SW_TCHNUM			0xC
+#define MHCCIF_RC2EP_EVT_RESERVED_FOR_CLDMA0	BIT(4)
+#define MHCCIF_RC2EP_EVT_RESERVED_FOR_CLDMA1	BIT(5)
+#define MHCCIF_RC2EP_EVT_RESERVED_FOR_CLDMA3	BIT(6)
+#define MHCCIF_RC2EP_EVT_RESERVED_FOR_CLDMA2	BIT(7)
+#define MHCCIF_RC2EP_EVT_RESERVED_FOR_DPMAIF	BIT(8)
+#define MHCCIF_RC2EP_EVT_PCIE_PM_SUSPEND_REQ	BIT(9)
+#define MHCCIF_RC2EP_EVT_PCIE_PM_RESUME_REQ	BIT(10)
+#define MHCCIF_RC2EP_EVT_PCIE_PM_SUSPEND_REQ_AP	BIT(11)
+#define MHCCIF_RC2EP_EVT_PCIE_PM_RESUME_REQ_AP	BIT(12)
+#define MHCCIF_RC2EP_EVT_DEVICE_RESET		BIT(13)
+#define MHCCIF_RC2EP_EVT_RESERVED_FOR_TEST	BIT(31)
+
+#define MHCCIF_EP2RC_SW_INT_STS			0x10
+#define MHCCIF_EP2RC_SW_INT_ACK			0x14
+#define MHCCIF_EP2RC_SW_INT_EAP_MASK		0x20
+#define MHCCIF_EP2RC_SW_INT_EAP_MASK_SET	0x30
+#define MHCCIF_EP2RC_SW_INT_EAP_MASK_CLR	0x40
+#define MHCCIF_EP2RC_SPARE_REG_1		0x0104
+#define MHCCIF_EP2RC_SPARE_REG_5		0x0114
+#define MHCCIF_EP2RC_SPARE_REG_13		0x0134
+#define MHCCIF_EP2RC_SPARE_REG_14		0x0138
+#define MHCCIF_EP2RC_EVT_BOOT_FLOW_SYNC		BIT(5)
+#define MHCCIF_EP2RC_EVT_RESERVED_FOR_CLDMA0	BIT(6)
+#define MHCCIF_EP2RC_EVT_RESERVED_FOR_CLDMA1	BIT(7)
+#define MHCCIF_EP2RC_EVT_RESERVED_FOR_CLDMA3	BIT(8)
+#define MHCCIF_EP2RC_EVT_RESERVED_FOR_CLDMA2	BIT(9)
+#define MHCCIF_EP2RC_EVT_RESERVED_FOR_DPMAIF	BIT(10)
+#define MHCCIF_EP2RC_EVT_PCIE_PM_SUSPEND_ACK	BIT(11)
+#define MHCCIF_EP2RC_EVT_PCIE_PM_RESUME_ACK	BIT(12)
+#define MHCCIF_EP2RC_EVT_PCIE_PM_SUSPEND_ACK_AP	BIT(13)
+#define MHCCIF_EP2RC_EVT_PCIE_PM_RESUME_ACK_AP	BIT(14)
+#define MHCCIF_EP2RC_EVT_ASYNC_HS_NOTIFY_SAP	BIT(15)
+#define MHCCIF_EP2RC_EVT_ASYNC_HS_NOTIFY_MD	BIT(16)
+#define MHCCIF_EP2RC_EVT_SOFT_OFF_NOTIFY	BIT(17)
+#define MHCCIF_EP2RC_EVT_MD_REBOOT		BIT(19)
+#define MHCCIF_EP2RC_EVT_MD_POWEROFF		BIT(20)
+#define MHCCIF_EP2RC_EVT_GNSS_ENABLE		BIT(21)
+#define MHCCIF_EP2RC_EVT_GNSS_DISABLE		BIT(22)
+#define MHCCIF_EP2RC_EVT_FRC_DONE_NOTIFY	BIT(24)
+#define MHCCIF_EP2RC_EVT_RESERVED_FOR_TEST1	BIT(30)
+#define MHCCIF_EP2RC_EVT_RESERVED_FOR_TEST2	BIT(31)
+
+#endif /* __MTK_PCI_REG_H__ */

-- 
2.34.1



^ permalink raw reply related

* [PATCH v4 0/7] net: wwan: t9xx: Add MediaTek T9XX WWAN driver
From: Jack Wu via B4 Relay @ 2026-07-09 10:53 UTC (permalink / raw)
  To: Loic Poulain, Sergey Ryazanov, Johannes Berg, Andrew Lunn,
	David S. Miller, Eric Dumazet, Jakub Kicinski, Paolo Abeni,
	Jack Wu, Wen-Zhi Huang, Shi-Wei Yeh, Minano Tseng,
	Matthias Brugger, AngeloGioacchino Del Regno, Simon Horman,
	Jonathan Corbet, Shuah Khan
  Cc: linux-kernel, netdev, linux-arm-kernel, linux-mediatek, linux-doc

T9XX is the PCIe host device driver for MediaTek's
t900 modem. The driver uses the WWAN framework
infrastructure to create the following control ports
and network interfaces for data transactions.
* /dev/wwan0at0 - Interface that supports AT commands.
* /dev/wwan0mbim0 - Interface conforming to the MBIM
  protocol.
* wwan0-X - Primary network interface for IP traffic.

The main blocks in the T9XX driver are:
* HW layer - Abstracts the hardware bus operations for
   the device, and provides generic interfaces for the
   transaction layer to get the device's information and
   control the device's behavior. It includes:

   * PCIe - Implements probe, removal and interrupt
     handling.
   * MHCCIF (Modem Host Cross-Core Interface) - Provides
     interrupt channels for bidirectional event
     notification such as handshake and port enumeration.

* Transaction layer - Implements data transactions for
   the control plane and the data plane. It includes:

   * DPMAIF (Data Plane Modem AP Interface) - Controls
     the hardware that provides uplink and downlink
     queues for the data path. The data exchange takes
     place using circular buffers to share data buffer
     addresses and metadata to describe the packets.
   * CLDMA (Cross Layer DMA) - Manages the hardware
     used by the port layer to send control messages to
     the device using MediaTek's CCCI (Cross-Core
     Communication Interface) protocol.
   * TX Services - Dispatch packets from the port layer
     to the device.
   * RX Services - Dispatch packets to the port layer
     when receiving packets from the device.

* Port layer - Provides control plane and data plane
   interfaces to userspace. It includes:

   * Control Plane - Provides device node interfaces
     for controlling data transactions.
   * Data Plane - Provides network link interfaces
     wwanX (0, 1, 2...) for IP data transactions.

* Core logic - Contains the core logic to keep the
   device working. It includes:

   * FSM (Finite State Machine) - Monitors the state
     of the device, and notifies each module when the
     state changes.

The compilation of the T9XX driver is enabled by the
CONFIG_MTK_T9XX and CONFIG_MTK_T9XX_PCI config option
which depends on CONFIG_WWAN.

This v2 submission covers the control plane only
(patches 1-6). The data plane will follow in a
separate series once the control plane is accepted.

---
Changes in v4:
- Patch 1 (Add PCIe core):
  - Add ACPI dependency to Kconfig (depends on PCI && ACPI)
    and remove #ifdef CONFIG_ACPI / #else guards from
    mtk_pci_fldr() and mtk_pci_pldr()
  - Remove unnecessary parentheses in (mdev)->dev across
    all dev_err/dev_warn calls
  - Remove devm_kfree() calls from mtk_pci_probe() error
    path and mtk_pci_remove(), devres handles cleanup
  - Remove mtk_dev_alloc()/mtk_dev_free() wrappers, use
    devm_kzalloc() directly in mtk_pci_probe()
  - Convert ext_evt callbacks from devm_kzalloc/devm_kfree
    to kzalloc/kfree for runtime-managed resources
- Patch 2 (Add control plane transaction layer):
  - Remove mtk_dev_alloc()/mtk_dev_free() declarations and
    implementations from mtk_dev.h and mtk_dev.c
  - Remove empty module_init/module_exit stubs, defer to
    Patch 4 where they have actual content
  - Remove devm_kfree() and unused ctrl_blk variable in
    mtk_ctrl_exit(), devres handles cleanup
- Patch 3 (Add control DMA interface):
  - Remove inline keyword from mtk_cldma_clr_bd_dsc() in
    .c file, let compiler decide inlining
  - Replace dev_warn() with dev_warn_ratelimited() for SKB
    alloc/map failure messages in data path
  - Replace open-coded do/while polling loop with
    read_poll_timeout() from <linux/iopoll.h> in
    mtk_cldma_stop_queue()
  - Remove ctrl_port_chl_mtu module_param, MODULE_PARM_DESC,
    and mtk_ctrl_queue_info_update() with associated macros
  - Remove unnecessary parentheses in (mdev)->dev across
    mtk_cldma.c and mtk_trans_ctrl.c
  - Convert CLDMA txq/rxq/cd from devm_kzalloc/devm_kfree
    to kzalloc/kfree for runtime-managed resources
  - Convert trb_srv/srv_que from devm_kzalloc/devm_kfree
    to kzalloc/kfree for runtime-managed resources
  - Remove devm_kfree() and unused variables from
    mtk_cldma_exit() and mtk_trans_ctrl_exit(), devres
    handles cleanup for device-lifetime resources
  - Remove unnecessary NULL checks before kfree() for
    bd_dsc_pool in txq_free/rxq_free
- Patch 4 (Add control port):
  - Add module_init/module_exit with mtk_port_io_init/exit
    content, moved from Patch 2
  - Remove unnecessary parentheses in (mdev)->dev in
    mtk_port.c
  - Remove devm_kfree() from mtk_port_mngr_init() error
    path and mtk_port_mngr_exit(), devres handles cleanup
  - Simplify mtk_trans_ctrl_init() error path: replace goto
    err_free_trans with direct return -ENOMEM
- Patch 5 (Add FSM thread):
  - Remove unnecessary parentheses in (mdev)->dev across
    mtk_fsm.c and mtk_ctrl_plane.c
  - Convert FSM notifiers from devm_kzalloc/devm_kfree to
    kzalloc/kfree for runtime-managed resources
  - Convert CLDMA drv_info from devm_kzalloc/devm_kfree to
    kzalloc/kfree for runtime-managed resources
  - Remove devm_kfree() from mtk_fsm_init()/mtk_fsm_exit()
    and mtk_ctrl_init()/mtk_ctrl_exit(), devres handles
    cleanup for device-lifetime resources
- Link to v3: https://patch.msgid.link/20260624-t9xx_driver_v1-v3-0-73ff03f60c48@compal.com

Changes in v3:
- Address sashiko AI code review comments and fix sparse warnings
- Patch 1 (Add PCIe core):
  - Move extern declaration of mtk_dev_cfg_0900 from mtk_pci.c to mtk_pci.h to fix sparse warning
  - Remove mtk_pci_bar_exit(): pcim_iounmap_region() was called with bitmask instead of BAR index, and pcim_iomap_regions() is devres-managed so manual unmap is redundant [sashiko]
  - Remove pci_disable_device() from probe error path and remove path: pcim_enable_device() registers devres cleanup, manual disable causes enable_cnt underflow [sashiko]
- Patch 3 (Add control DMA interface):
  - Add #include "mtk_cldma.h" in mtk_cldma_drv_m9xx.c to fix sparse undeclared symbol warnings for mtk_cldma_regs_m9xx and cldma_drv_ops_m9xx
  - Move extern declaration of mtk_ctrl_info_m9xx from mtk_trans_ctrl.c to mtk_trans_ctrl.h to fix sparse undeclared symbol warning
  - Replace kcalloc + radix_tree_gang_lookup with radix_tree_for_each_slot() in mtk_ctrl_remove_radix_tree() to eliminate allocation in teardown path [sashiko]
  - Add missing mtk_pci_dev_exit() call in mtk_pci_remove() to properly clean up FSM and trans_ctrl resources before device removal [sashiko]
- Patch 4 (Add control port):
  - Replace kcalloc + radix_tree_gang_lookup with radix_tree_for_each_slot() and single-entry gang_lookup in mtk_port_tbl_destroy() to eliminate allocation failure in teardown path [sashiko]
  - Add port = NULL after mtk_port_put_locked() in mtk_port_internal_open() error path to prevent returning un-refcounted pointer [sashiko]
  - Restore skb_unlink + trb_complete for non-EAGAIN errors in mtk_ctrl_trb_handler() TX path to prevent infinite retry loop [sashiko]
- Patch 5 (Add FSM thread):
  - Check mtk_pci_register_irq() return value in mtk_cldma_dev_init() and add err_destroy_wq error label to fix unreachable dead code [sashiko]
  - Propagate specific error codes (ENOMEM/EIO/EINVAL) from mtk_cldma_dev_init() error paths instead of generic -EIO [sashiko]
  - Free head SKB after detaching frag_list in mtk_cldma_rxq_free() scatter-gather mode to fix memory leak [sashiko]
- Patch 6 (Add AT & MBIM WWAN ports):
  - Remove unused write_lock mutex from struct mtk_port and its mutex_init call [sashiko]
- Link to v2: https://patch.msgid.link/20260610-t9xx_driver_v1-v2-0-c65addf23b3f@compal.com

Changes in v2:
- Split series into control plane (this v2) and data plane (follow-up)
- Patch 1 (Add PCIe core):
  - Rename BAR_NUM to MTK_PCI_BAR_NUM for driver prefix consistency
  - Replace magic numbers in mtk_pci_setup_atr() with named defines
  - Remove redundant ATR register comments, use blank line separators
  - Add kernel-doc comments to all non-static functions
  - Convert 4 MMIO wrapper functions to static inline in header [sashiko]
  - Remove unnecessary unlikely() from IRQ validation paths
  - Add irq_cnt == 0 and irq_id < 0 guards in mtk_pci_get_virq_id() [sashiko]
  - Initialize hw_bits at declaration for consistency
  - Merge same-type variable declarations into single lines
  - Add #else/#endif comments for CONFIG_ACPI blocks
  - Add newlines in mtk_pci_pldr() for readability
  - Move return into default case in mtk_pci_dev_reset()
  - Simplify mtk_mhccif_init() error path to use direct returns
  - Change -EFAULT to -ENOLINK for PCIe link check failure
  - Rename goto label "out" to "log_err" in mtk_pci_probe()
  - Wrap long lines to stay within 80 columns
  - Fix IRQ vector leak: add pci_free_irq_vectors() on error path [sashiko]
  - Fix mtk_pci_remove() ordering: free IRQ before cancel_work_sync [sashiko]
  - Fix mtk_pci_pldr() ACPI buffer leak: free first result before second call [sashiko]
  - Replace msleep(500) with MTK_PLDR_POWER_OFF_DELAY_MS define
  - Remove unused EXT_EVT_H2D_DRM_DISABLE_AP and related register define [sashiko]
  - Increase MTK_IRQ_NAME_LEN from 20 to 32 to fix W=1 format-truncation warning [sashiko]
- Patch 2 (Add control plane transaction layer):
  - Add kernel-doc comments to mtk_ctrl_init() and mtk_ctrl_exit()
  - Change mtk_ctrl_exit() return type from int to void
  - Set mdev->ctrl_blk to NULL after freeing in mtk_ctrl_exit() [sashiko]
  - Change ctrl_blk from void* to typed struct mtk_ctrl_blk* [sashiko]
  - Remove redundant "depends on MTK_T9XX" from MTK_T9XX_PCI Kconfig [sashiko]
  - Use mtk_dev_free() instead of devm_kfree() in mtk_pci_probe() error path [sashiko]
- Patch 3 (Add control DMA interface):
  - Add @ops kernel-doc parameter for mtk_ctrl_init()
  - Rename 'err' to 'ret' consistently throughout the patch
  - Reorder variable declarations to follow reverse Christmas tree style
  - Change mtk_cldma_txq_free() return type from int to void
  - Change mtk_cldma_rxq_free() return type from int to void
  - Change mtk_cldma_exit() return type from int to void
  - Remove unnecessary zero-initialization of ret in mtk_cldma_start_xfer()
  - Remove unnecessary zero-initialization of ret in mtk_cldma_tx()
  - Use direct return instead of goto out in mtk_cldma_submit_tx() error paths
  - Move software state before HWO flag in mtk_cldma_submit_tx()
  - Squash variable declarations in mtk_cldma_check_intr_status()
  - Remove unlikely() from validation paths in mtk_cldma_check_ch_cfg()
  - Clamp data_recv_len with min_t to prevent skb_over_panic in mtk_cldma_rx_skb_adjust() [sashiko]
  - Use READ_ONCE() for HWO flag polling in mtk_cldma_check_rx_req() [sashiko]
  - Fix mtk_cldma_rx_done_work() to always unmask interrupt on error path [sashiko]
  - Add DMA address guard in mtk_cldma_txq_free() teardown loop [sashiko]
  - Add IS_ERR() check for kthread_run() in mtk_ctrl_trb_srv_init() [sashiko]
  - Fix queue_info memory leak on validation failure in mtk_pcie_hif_init() [sashiko]
  - Handle non-EAGAIN errors in mtk_ctrl_trb_handler() TX path [sashiko]
  - Fix 'err' typo to 'ret' in mtk_cldma_txbuf_set() error message
  - Remove unused variable mdev in mtk_cldma_rx_check_again() [sashiko]
  - Remove unused variables trans and ctrl_blk in mtk_cldma_txq_free() and mtk_cldma_rxq_free() [sashiko]
- Patch 4 (Add control port):
  - Add @cfg kernel-doc parameter for mtk_ctrl_init()
  - Update mtk_ctrl_init() return description to cover additional error codes
  - Fix double list_del in mtk_port_stale_list_grp_cleanup() [sashiko]
  - Fix direct mtk_port_trb_free() call to use kref_put() in mtk_port_ch_enable() error path [sashiko]
  - Fix direct mtk_port_trb_free() call to use kref_put() in mtk_port_ch_disable() error path [sashiko]
  - Add mtk_port_tbl_destroy() in mtk_port_mngr_init() error path to prevent port memory leak [sashiko]
  - Change port_ops exit/reset/enable/disable callbacks from int to void
  - Move -EIO dispatch comment to where the code was introduced
- Patch 5 (Add FSM thread):
  - Add bounds check for rtft_entry in mtk_fsm_parse_hs2_msg() [sashiko]
  - Add skb length validation before accessing ctrl_msg_header in mtk_fsm_sap_ctrl_msg_handler() [sashiko]
  - Fix skb leak on CTRL_MSG_HS2 mismatch return in mtk_fsm_sap_ctrl_msg_handler() [sashiko]
  - Add skb length validation before accessing ctrl_msg_header in mtk_fsm_md_ctrl_msg_handler() [sashiko]
  - Replace devm_kzalloc/devm_kfree with kzalloc/kfree for FSM events [sashiko]
  - Fix mtk_fsm_evt_submit() to return -ETIMEDOUT on blocking event timeout [sashiko]
  - Change FSM kthread from TASK_INTERRUPTIBLE to TASK_UNINTERRUPTIBLE [sashiko]
  - Remove unused variable hw_id in mtk_cldma_dev_exit() [sashiko]
- Patch 6 (Add AT & MBIM WWAN ports):
  - Use imperative mode in commit message
  - Remove unnecessary zero-initialization of ret in mtk_port_copy_data_from()
  - Change copy_from_user() error code from -EFAULT to -EINVAL in mtk_port_copy_data_from()
  - Return -EINVAL for zero-length write in mtk_port_common_write()
  - Change mtk_port_wwan_exit/enable/disable() return type from int to void
  - Fix packet_size to account for CCCI header reservation in mtk_port_common_write() [sashiko]
  - Fix WWAN tx callbacks to consume skb and return 0 per wwan_port_ops contract [sashiko]
  - Fix wwan_create_port() error path: clear ERR_PTR to NULL and call mtk_port_ch_disable() [sashiko]
- Patch 7 (Add maintainers entry): new patch
- Link to v1: https://patch.msgid.link/20260529-t9xx_driver_v1-v1-0-bdbfe2c01e57@compal.com

---
Jack Wu (7):
      net: wwan: t9xx: Add PCIe core
      net: wwan: t9xx: Add control plane transaction layer
      net: wwan: t9xx: Add control DMA interface
      net: wwan: t9xx: Add control port
      net: wwan: t9xx: Add FSM thread
      net: wwan: t9xx: Add AT & MBIM WWAN ports
      net: wwan: t9xx: Add maintainers entry

 MAINTAINERS                                     |    9 +
 drivers/net/wwan/Kconfig                        |   17 +
 drivers/net/wwan/Makefile                       |    1 +
 drivers/net/wwan/t9xx/Makefile                  |   14 +
 drivers/net/wwan/t9xx/mtk_ctrl_plane.c          |  108 ++
 drivers/net/wwan/t9xx/mtk_ctrl_plane.h          |   88 ++
 drivers/net/wwan/t9xx/mtk_dev.c                 |   33 +
 drivers/net/wwan/t9xx/mtk_dev.h                 |  111 ++
 drivers/net/wwan/t9xx/mtk_fsm.c                 |  946 +++++++++++++++
 drivers/net/wwan/t9xx/mtk_fsm.h                 |  140 +++
 drivers/net/wwan/t9xx/mtk_port.c                |  966 +++++++++++++++
 drivers/net/wwan/t9xx/mtk_port.h                |  174 +++
 drivers/net/wwan/t9xx/mtk_port_io.c             |  573 +++++++++
 drivers/net/wwan/t9xx/mtk_port_io.h             |   41 +
 drivers/net/wwan/t9xx/mtk_utility.h             |   33 +
 drivers/net/wwan/t9xx/pcie/Makefile             |   15 +
 drivers/net/wwan/t9xx/pcie/mtk_cldma.c          | 1418 +++++++++++++++++++++++
 drivers/net/wwan/t9xx/pcie/mtk_cldma.h          |  173 +++
 drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.c      |  369 ++++++
 drivers/net/wwan/t9xx/pcie/mtk_cldma_drv.h      |  174 +++
 drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.c |  178 +++
 drivers/net/wwan/t9xx/pcie/mtk_cldma_drv_m9xx.h |  101 ++
 drivers/net/wwan/t9xx/pcie/mtk_ctrl_cfg_m9xx.c  |   55 +
 drivers/net/wwan/t9xx/pcie/mtk_pci.c            | 1085 +++++++++++++++++
 drivers/net/wwan/t9xx/pcie/mtk_pci.h            |  234 ++++
 drivers/net/wwan/t9xx/pcie/mtk_pci_drv_m9xx.c   |   69 ++
 drivers/net/wwan/t9xx/pcie/mtk_pci_reg.h        |   71 ++
 drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.c     |  563 +++++++++
 drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h     |  107 ++
 29 files changed, 7866 insertions(+)
---
base-commit: eb3f4b7426cfd2b79d65b7d37155480b32259a11
change-id: 20260529-t9xx_driver_v1-1744f8af7739

Best regards,
--  
Jack Wu <jackbb_wu@compal.com>



^ permalink raw reply

* [PATCH v4 2/7] net: wwan: t9xx: Add control plane transaction layer
From: Jack Wu via B4 Relay @ 2026-07-09 10:53 UTC (permalink / raw)
  To: Loic Poulain, Sergey Ryazanov, Johannes Berg, Andrew Lunn,
	David S. Miller, Eric Dumazet, Jakub Kicinski, Paolo Abeni,
	Jack Wu, Wen-Zhi Huang, Shi-Wei Yeh, Minano Tseng,
	Matthias Brugger, AngeloGioacchino Del Regno, Simon Horman,
	Jonathan Corbet, Shuah Khan
  Cc: linux-kernel, netdev, linux-arm-kernel, linux-mediatek, linux-doc
In-Reply-To: <20260709-t9xx_driver_v1-v4-0-a8c009d509c5@compal.com>

From: Jack Wu <jackbb_wu@compal.com>

The control plane implements TX services that reside in the
transaction layer. The services receive the packets from the
port layer and call the corresponding DMA components to
transmit data to the device. Meanwhile, TX services receive
and manage the port control commands from the port layer.

The control plane implements RX services that reside in the
transaction layer. The services receive the downlink packets
from the modem and transfer the packets to the corresponding
port layer interfaces.

Signed-off-by: Jack Wu <jackbb_wu@compal.com>
---
 drivers/net/wwan/Kconfig                    |  5 ++++
 drivers/net/wwan/t9xx/Makefile              |  5 ++--
 drivers/net/wwan/t9xx/mtk_ctrl_plane.c      | 45 +++++++++++++++++++++++++++++
 drivers/net/wwan/t9xx/mtk_ctrl_plane.h      | 22 ++++++++++++++
 drivers/net/wwan/t9xx/mtk_dev.c             | 11 +++++++
 drivers/net/wwan/t9xx/mtk_dev.h             |  2 ++
 drivers/net/wwan/t9xx/pcie/Makefile         | 10 +++++++
 drivers/net/wwan/t9xx/pcie/mtk_pci.c        |  2 ++
 drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h | 21 ++++++++++++++
 9 files changed, 121 insertions(+), 2 deletions(-)

diff --git a/drivers/net/wwan/Kconfig b/drivers/net/wwan/Kconfig
index 18bd40b3b8d2..a2ffed346acc 100644
--- a/drivers/net/wwan/Kconfig
+++ b/drivers/net/wwan/Kconfig
@@ -124,6 +124,7 @@ config MTK_T7XX
 config MTK_T9XX
 	tristate "MediaTek PCIe 5G WWAN modem T9xx device"
 	depends on PCI && ACPI
+	select MTK_T9XX_PCI
 	select NET_DEVLINK
 	help
 	  Enables MediaTek PCIe based 5G WWAN modem (T9xx series) device.
@@ -133,6 +134,10 @@ config MTK_T9XX
 
 	  If unsure, say N.
 
+config MTK_T9XX_PCI
+	tristate
+	depends on PCI
+
 endif # WWAN
 
 endmenu
diff --git a/drivers/net/wwan/t9xx/Makefile b/drivers/net/wwan/t9xx/Makefile
index 6f2dd3f91454..ae9d6f2344ab 100644
--- a/drivers/net/wwan/t9xx/Makefile
+++ b/drivers/net/wwan/t9xx/Makefile
@@ -4,7 +4,8 @@ ccflags-y += -I$(src)/pcie
 ccflags-y += -I$(src)
 
 obj-$(CONFIG_MTK_T9XX) += mtk_t9xx.o
+obj-$(CONFIG_MTK_T9XX_PCI) += pcie/
 
 mtk_t9xx-y := \
-	pcie/mtk_pci.o \
-	pcie/mtk_pci_drv_m9xx.o
+	mtk_dev.o \
+	mtk_ctrl_plane.o
diff --git a/drivers/net/wwan/t9xx/mtk_ctrl_plane.c b/drivers/net/wwan/t9xx/mtk_ctrl_plane.c
new file mode 100644
index 000000000000..cf6079218e1c
--- /dev/null
+++ b/drivers/net/wwan/t9xx/mtk_ctrl_plane.c
@@ -0,0 +1,45 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2022, MediaTek Inc.
+ * Copyright (c) 2022-2023, Intel Corporation.
+ */
+
+#include <linux/device.h>
+
+#include "mtk_ctrl_plane.h"
+
+/**
+ * mtk_ctrl_init() - Initialize the control plane block.
+ * @mdev: Pointer to the MTK modem device.
+ *
+ * Allocates and initializes the control plane block
+ * associated with @mdev.
+ *
+ * Return: 0 on success, -ENOMEM on allocation failure.
+ */
+int mtk_ctrl_init(struct mtk_md_dev *mdev)
+{
+	struct mtk_ctrl_blk *ctrl_blk;
+
+	ctrl_blk = devm_kzalloc(mdev->dev, sizeof(*ctrl_blk), GFP_KERNEL);
+	if (!ctrl_blk)
+		return -ENOMEM;
+
+	ctrl_blk->mdev = mdev;
+	mdev->ctrl_blk = ctrl_blk;
+
+	return 0;
+}
+EXPORT_SYMBOL(mtk_ctrl_init);
+
+/**
+ * mtk_ctrl_exit() - Clean up the control plane block.
+ * @mdev: Pointer to the MTK modem device.
+ *
+ * Frees the control plane block associated with @mdev.
+ */
+void mtk_ctrl_exit(struct mtk_md_dev *mdev)
+{
+	mdev->ctrl_blk = NULL;
+}
+EXPORT_SYMBOL(mtk_ctrl_exit);
diff --git a/drivers/net/wwan/t9xx/mtk_ctrl_plane.h b/drivers/net/wwan/t9xx/mtk_ctrl_plane.h
new file mode 100644
index 000000000000..c141876ef95d
--- /dev/null
+++ b/drivers/net/wwan/t9xx/mtk_ctrl_plane.h
@@ -0,0 +1,22 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#ifndef __MTK_CTRL_PLANE_H__
+#define __MTK_CTRL_PLANE_H__
+
+#include <linux/kref.h>
+#include <linux/skbuff.h>
+
+#include "mtk_dev.h"
+
+struct mtk_ctrl_blk {
+	struct mtk_md_dev *mdev;
+	struct mtk_ctrl_trans *trans;
+};
+
+int mtk_ctrl_init(struct mtk_md_dev *mdev);
+void mtk_ctrl_exit(struct mtk_md_dev *mdev);
+
+#endif /* __MTK_CTRL_PLANE_H__ */
diff --git a/drivers/net/wwan/t9xx/mtk_dev.c b/drivers/net/wwan/t9xx/mtk_dev.c
new file mode 100644
index 000000000000..50f77d5a210c
--- /dev/null
+++ b/drivers/net/wwan/t9xx/mtk_dev.c
@@ -0,0 +1,11 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#include <linux/module.h>
+
+#include "mtk_dev.h"
+
+MODULE_DESCRIPTION("MediaTek T9xx PCIe WWAN driver");
+MODULE_LICENSE("GPL");
diff --git a/drivers/net/wwan/t9xx/mtk_dev.h b/drivers/net/wwan/t9xx/mtk_dev.h
index 8278a0e2875e..9843171fe2ae 100644
--- a/drivers/net/wwan/t9xx/mtk_dev.h
+++ b/drivers/net/wwan/t9xx/mtk_dev.h
@@ -36,6 +36,7 @@ enum mtk_dev_evt_d2h {
 };
 
 struct mtk_md_dev;
+struct mtk_ctrl_blk;
 
 struct mtk_dev_ops {
 	u32 (*get_dev_state)(struct mtk_md_dev *mdev);
@@ -57,6 +58,7 @@ struct mtk_md_dev {
 	void *hw_priv;
 	u32 hw_ver;
 	char dev_str[MTK_DEV_STR_LEN];
+	struct mtk_ctrl_blk *ctrl_blk;
 };
 
 static inline u32 mtk_dev_get_dev_state(struct mtk_md_dev *mdev)
diff --git a/drivers/net/wwan/t9xx/pcie/Makefile b/drivers/net/wwan/t9xx/pcie/Makefile
new file mode 100644
index 000000000000..7410d1796d27
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/Makefile
@@ -0,0 +1,10 @@
+# SPDX-License-Identifier: GPL-2.0-only
+
+ccflags-y += -I$(src)
+ccflags-y += -I$(src)/..
+
+obj-$(CONFIG_MTK_T9XX_PCI) += mtk_t9xx_pcie.o
+
+mtk_t9xx_pcie-y := \
+	mtk_pci_drv_m9xx.o \
+	mtk_pci.o
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_pci.c b/drivers/net/wwan/t9xx/pcie/mtk_pci.c
index 72259bf1b603..68dddd652eff 100644
--- a/drivers/net/wwan/t9xx/pcie/mtk_pci.c
+++ b/drivers/net/wwan/t9xx/pcie/mtk_pci.c
@@ -14,6 +14,7 @@
 #include <linux/module.h>
 
 #include "mtk_dev.h"
+#include "mtk_trans_ctrl.h"
 #include "mtk_pci.h"
 #include "mtk_pci_reg.h"
 
@@ -467,6 +468,7 @@ static u32 mtk_pci_ext_h2d_evt_hw_bits(u32 chs)
 
 	SET_HW_BITS(hw_bits, chs, MHCCIF_RC2EP_EVT_DEVICE_RESET,
 		    DEV_EVT_H2D_DEVICE_RESET);
+
 	return LE32_TO_U32(cpu_to_le32(hw_bits));
 }
 
diff --git a/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h
new file mode 100644
index 000000000000..d6de4c43b529
--- /dev/null
+++ b/drivers/net/wwan/t9xx/pcie/mtk_trans_ctrl.h
@@ -0,0 +1,21 @@
+/* SPDX-License-Identifier: GPL-2.0-only
+ *
+ * Copyright (c) 2022, MediaTek Inc.
+ */
+
+#ifndef __MTK_TRANS_CTRL_H__
+#define __MTK_TRANS_CTRL_H__
+
+#include <linux/kref.h>
+#include <linux/list.h>
+#include <linux/skbuff.h>
+#include <linux/types.h>
+
+#include "mtk_dev.h"
+
+struct mtk_ctrl_trans {
+	struct mtk_ctrl_blk *ctrl_blk;
+	struct mtk_md_dev *mdev;
+};
+
+#endif

-- 
2.34.1



^ permalink raw reply related

* [PATCH] net: gre: fix lltx regression for GRE tunnels with SEQ/CSUM
From: Yun Zhou @ 2026-07-09 10:52 UTC (permalink / raw)
  To: dsahern, idosch, davem, edumazet, kuba, pabeni, horms
  Cc: netdev, linux-kernel, yun.zhou

Before commit 00d066a4d4ed ("netdev_features: convert NETIF_F_LLTX to
dev->lltx"), NETIF_F_LLTX was set unconditionally in __gre_tunnel_init()
alongside GRE_FEATURES:

    dev->features |= GRE_FEATURES | NETIF_F_LLTX;

When that commit converted NETIF_F_LLTX to the dev->lltx flag, it
placed 'dev->lltx = true' after the SEQ/CSUM early returns instead
of before them. This causes GRE/GRETAP tunnels with SEQ or CSUM+encap
to lose lockless TX, reintroducing _xmit_lock acquisition around their
ndo_start_xmit. Since GRE xmit re-enters the stack via
ip_tunnel_xmit(), holding _xmit_lock risks ABBA deadlock with the
underlay device.

  CPU0                        CPU1
  ----                        ----
  lock(&qdisc_xmit_lock_key#6);
                              lock(&qdisc_xmit_lock_key#3);
                              lock(&qdisc_xmit_lock_key#6);
  lock(&qdisc_xmit_lock_key#3);

Fix by moving dev->lltx = true before the early returns, restoring
the original unconditional behavior.

Fixes: 00d066a4d4ed ("netdev_features: convert NETIF_F_LLTX to dev->lltx")
Signed-off-by: Yun Zhou <yun.zhou@windriver.com>
---
 net/ipv4/ip_gre.c | 4 ++--
 1 file changed, 2 insertions(+), 2 deletions(-)

diff --git a/net/ipv4/ip_gre.c b/net/ipv4/ip_gre.c
index 9fbff16cda1d..8c5ad8ec8d09 100644
--- a/net/ipv4/ip_gre.c
+++ b/net/ipv4/ip_gre.c
@@ -1018,6 +1018,8 @@ static void __gre_tunnel_init(struct net_device *dev)
 	dev->features		|= GRE_FEATURES;
 	dev->hw_features	|= GRE_FEATURES;
 
+	dev->lltx = true;
+
 	/* TCP offload with GRE SEQ is not supported, nor can we support 2
 	 * levels of outer headers requiring an update.
 	 */
@@ -1029,8 +1031,6 @@ static void __gre_tunnel_init(struct net_device *dev)
 
 	dev->features |= NETIF_F_GSO_SOFTWARE;
 	dev->hw_features |= NETIF_F_GSO_SOFTWARE;
-
-	dev->lltx = true;
 }
 
 static int ipgre_tunnel_init(struct net_device *dev)
-- 
2.43.0


^ permalink raw reply related

* Re: [PATCH net-next 00/15] net/mlx5e: PSP cleanups and improvements
From: Cosmin Ratiu @ 2026-07-09 10:51 UTC (permalink / raw)
  To: andrew+netdev@lunn.ch, davem@davemloft.net, Tariq Toukan,
	kuba@kernel.org, pabeni@redhat.com, edumazet@google.com,
	daniel.zahka@gmail.com, netdev@vger.kernel.org
  Cc: Boris Pismenny, willemdebruijn.kernel@gmail.com, Jianbo Liu,
	leon@kernel.org, Rahul Rameshbabu, linux-kernel@vger.kernel.org,
	linux-rdma@vger.kernel.org, Raed Salem, Chris Mi, Dragos Tatulea,
	sdf.kernel@gmail.com, Mark Bloch, sdf@fomichev.me, Saeed Mahameed,
	aleksandr.loktionov@intel.com, Gal Pressman, Lama Kayal,
	jacob.e.keller@intel.com
In-Reply-To: <9c6a65b7e54a31dea87e7ea1c5b1b3931240f3ac.camel@nvidia.com>

On Wed, 2026-07-08 at 12:37 +0000, Cosmin Ratiu wrote:
> On Tue, 2026-07-07 at 14:29 -0400, Daniel Zahka wrote:
> > 
> > On 7/7/26 9:08 AM, Tariq Toukan wrote:
> > > Hi,
> > > 
> > > This series by Cosmin refactors mlx5 PSP support in preparation
> > > for
> > > HW-GRO support.
> > > There are almost no functionality changes in all but the last two
> > > patches, which address a long-standing TODO in
> > > mlx5e_psp_set_config().
> > > 
> > > Regards,
> > > Tariq
> > > 
> > > Cosmin Ratiu (15):
> > >    net/mlx5e: psp: Rename the saved psp_dev to 'psd'
> > >    net/mlx5e: psp: Remove PSP steering mutexes
> > >    net/mlx5e: psp: Remove unneeded ref counting for PSP steering
> > >    net/mlx5e: psp: Merge rx_err rule add/delete with ft
> > > create/delete
> > >    net/mlx5e: psp: Use helpers for steering object manipulation
> > >    net/mlx5e: psp: Factor out drop rule creation code
> > >    net/mlx5e: psp: Remove unused PSP syndrome copy action
> > >    net/mlx5e: psp: Rename and consolidate steering functions
> > >    net/mlx5e: psp: Adjust rx_check FT size and use a drop_group
> > >    net/mlx5e: psp: Add an RX steering table
> > >    net/mlx5e: psp: Use a single rx_check table
> > >    net/mlx5e: psp: Flatten steering structures
> > >    net/mlx5e: psp: Make PSP steering config dynamic
> > >    net/mlx5e: Return errors from profile->enable
> > >    net/mlx5e: psp: Report PSP dev registration errors
> > > 
> > >   drivers/net/ethernet/mellanox/mlx5/core/en.h  |    2 +-
> > >   .../net/ethernet/mellanox/mlx5/core/en/fs.h   |    7 +-
> > >   .../mellanox/mlx5/core/en_accel/en_accel.h    |   19 +-
> > >   .../mellanox/mlx5/core/en_accel/psp.c         | 1007 ++++++++--
> > > --
> > > -----
> > >   .../mellanox/mlx5/core/en_accel/psp.h         |   18 +-
> > >   .../mellanox/mlx5/core/en_accel/psp_rxtx.c    |   13 +-
> > >   .../mellanox/mlx5/core/en_accel/psp_rxtx.h    |    3 +-
> > >   .../net/ethernet/mellanox/mlx5/core/en_main.c |   23 +-
> > >   .../net/ethernet/mellanox/mlx5/core/en_rep.c  |    8 +-
> > >   9 files changed, 516 insertions(+), 584 deletions(-)
> > > 
> > > 
> > > base-commit: 31816fc5d9acf8cdf226cdd0dc296e8cf15cc033
> > 
> > Thanks. Excited about the support for mlx5e_psp_set_config(). Jakub
> > and 
> > I had a test case for psp_dev_ops::set_config() that we were
> > waiting
> > to 
> > upstream. I just rebased it onto net-next here: 
> > https://github.com/danieldzahka/linux/commit/b58e9a99573cf6b884e5fe3227c9af7a1f0d80b0
> > 
> > I ran it with the series but am seeing an error trying to catch 
> > undecrypted PSP-UDP packets after disabling all versions with
> > set_config()
> > 
> > TAP version 13
> > 1..30
> > ok 1 psp.data_basic_send.v0_ip4 # SKIP Test requires IPv4
> > connectivity
> > ok 2 psp.data_basic_send.v0_ip6
> > ok 3 psp.data_basic_send.v1_ip4 # SKIP Test requires IPv4
> > connectivity
> > ok 4 psp.data_basic_send.v1_ip6
> > ok 5 psp.data_basic_send.v2_ip4 # SKIP Test requires IPv4
> > connectivity
> > ok 6 psp.data_basic_send.v2_ip6 # SKIP ('PSP version not
> > supported', 
> > 'hdr0-aes-gmac-128')
> > ok 7 psp.data_basic_send.v3_ip4 # SKIP Test requires IPv4
> > connectivity
> > ok 8 psp.data_basic_send.v3_ip6 # SKIP ('PSP version not
> > supported', 
> > 'hdr0-aes-gmac-256')
> > ok 9 psp.data_mss_adjust.ip4 # SKIP Test requires IPv4 connectivity
> > ok 10 psp.data_mss_adjust.ip6
> > ok 11 psp.data_send_off.ip4 # SKIP Test requires IPv4 connectivity
> > # Exception| Traceback (most recent call last):
> > # Exception|   File "/root/ksft-psp-set-config/net/lib/py/ksft.py",
> > line 
> > 420, in ksft_run
> > # Exception|     func(*args)
> > # Exception|   File "/root/./ksft-psp-set-
> > config/drivers/net/psp.py",
> > line 608, in data_send_off
> > # Exception|     udps.recv(8192, socket.MSG_DONTWAIT)
> > # Exception| BlockingIOError: [Errno 11] Resource temporarily
> > unavailable
> > # Exception|
> > not ok 12 psp.data_send_off.ip6
> > ok 13 psp.dev_list_devices
> > ok 14 psp.dev_get_device
> > ok 15 psp.dev_get_device_bad
> > ok 16 psp.dev_rotate
> > ok 17 psp.dev_rotate_spi
> > ok 18 psp.assoc_basic
> > ok 19 psp.assoc_bad_dev
> > ok 20 psp.assoc_sk_only_conn
> > ok 21 psp.assoc_sk_only_mismatch
> > ok 22 psp.assoc_sk_only_mismatch_tx
> > ok 23 psp.assoc_sk_only_unconn
> > ok 24 psp.assoc_version_mismatch
> > ok 25 psp.assoc_twice
> > ok 26 psp.data_send_bad_key
> > ok 27 psp.data_send_disconnect
> > ok 28 psp.data_stale_key
> > ok 29 psp.removal_device_rx # XFAIL Test only works on netdevsim
> > ok 30 psp.removal_device_bi # XFAIL Test only works on netdevsim
> > # Totals: pass:19 fail:1 xfail:2 xpass:0 skip:8 error:0
> > #
> > # Responder logs (0):
> > # STDERR:
> > # #  Set PSP enable on device 1 to 0x3
> > # #  Set PSP enable on device 1 to 0x0
> > 
> > I recall this working on an earlier prototype of this feature for
> > mlx5. 
> > Are the steering rules setup to drop PSP-UDP packets when the 
> > corresponding psp version is disabled?
> > 
> 
> We don't have per-psp version steering rules. If either version is
> requested, steering rules are configured. When all versions are
> disabled, steering rules are removed.
> With no steering rules installed, UDP traffic should not be affected.
> 
> I will take the test and debug what's going on, and get back to you.

So the test relies on TCP retransmissions to catch the encrypted echo
from the responder on the UDP socket. The timeline seems to be:
1. data_send_off disables PSP on its end.
2. data_send_off opens a UDP socket and binds it to port 1000.
3. data_send_off sends "data echo" to psp_responder on the control
connection.
4. psp_responder send "echo" on the now sabotaged PSP connection.
5. psp_responder acks the "echo request" on the control connection.
6. data_send_off receives the ack.
7. data_send_off tries to receive "echo" on the PSP connection but
expect_fail==True so stops after 100 ms.
8. data_send_off reenables PSP on its end.
9. data_send_off waits for "echo" to be received now that connectivity
is back for up to 350 ms.
10. data_send_off asserts that something is in the UDP socket queue.

So UDP packets could be enqueued if PSP packets are received between
steps 4-8.

It seems disabling PSP steering rules isn't as atomic as we thought,
and sometimes the first echo is discarded by steering. The default TCP
retransmission timeout is 200 ms so there are no retransmissions in the
~150-170 ms between steps 4-8.

With a slightly modified test that directly requests data echoes, the
test becomes more reliable. Additionally, you need the UDP_NO_CHECK6_RX
(102) socket options for the ipv6 version, otherwise zero-checksum UDP
packets are discarded by the stack. I vaguely remember doing this
change for this test in Jakub's repo a few years ago.

Anyway, here's the diff that makes both tests reliably pass:

--- a/tools/testing/selftests/drivers/net/psp.py
+++ b/tools/testing/selftests/drivers/net/psp.py
@@ -569,7 +569,8 @@ def _get_psp_ver_ip_variants():
 
 def _get_ip_variants():
     for ipv in ("4", "6"):
-        yield KsftNamedVariant(f"ip{ipv}", ipv)
+        for _ in range(0, 100):
+            yield KsftNamedVariant(f"ip{ipv}", ipv)
 
 
 @ksft_variants(_get_ip_variants())
@@ -604,16 +605,28 @@ def data_send_off(cfg, ipver):
             udps.bind(('0.0.0.0', 1000))
         else:
             udps = socket.socket(socket.AF_INET6, socket.SOCK_DGRAM)
+            # PSP packets have a zero UDP csum, accept them
(UDP_NO_CHECK6_RX)
+            udps.setsockopt(socket.IPPROTO_UDP, 102, 1)
             udps.bind(('::', 1000))
         wait_port_listen(1000, proto="udp")
 
         _req_echo(cfg, s, expect_fail=True)
 
+        echoes = 1
+        for _ in range(10):
+            try:
+                udps.recv(8192, socket.MSG_DONTWAIT | socket.MSG_PEEK)
+                break
+            except BlockingIOError:
+                _send_with_ack(cfg, b'data echo\0')
+                echoes += 1
+                time.sleep(0.05)
+
         cfg.pspnl.dev_set({"id": cfg.psp_dev_id,
                          "psp-versions-ena": info['psp-versions-
ena']})
         info = None
-        # We need some more TCP RTOs so lots of rounds
-        _recv_careful(s, 5, rounds=350)
+        # Drain the socket now that connectivity is back
+        _recv_careful(s, 5 * echoes, rounds=1000)
 
         # Will raise BlockingIOError if there are no packets
         udps.recv(8192, socket.MSG_DONTWAIT)


-------

With this (plus disabling all other test cases), I get:
# ./tools/testing/selftests/drivers/net/psp.py 
TAP version 13
1..200
ok 1 psp.data_send_off.ip4
...
ok 200 psp.data_send_off.ip6
# Totals: pass:200 fail:0 xfail:0 xpass:0 skip:0 error:0

I will continue to dig into what exactly happens in steering when PSP
gets disabled and why a packet is eaten with no traces.

Cosmin.

^ permalink raw reply

* [PATCH net] can: esd_usb: kill anchored URBs before freeing netdevs
From: Fan Wu @ 2026-07-09 10:46 UTC (permalink / raw)
  To: linux-can
  Cc: frank.jungclaus, socketcan, mkl, mailhol, netdev, linux-kernel,
	Fan Wu, stable

esd_usb_disconnect() frees each CAN netdev with free_candev() inside
its per-netdev loop and only calls unlink_all_urbs(dev) afterwards.
The per-netdev private data (struct esd_usb_net_priv) is embedded in
the net_device allocation returned by alloc_candev(), so once
free_candev() has run, dev->nets[i] points to freed memory.
unlink_all_urbs() then dereferences the freed dev->nets[i] to kill the
per-netdev TX anchor (usb_kill_anchored_urbs(&priv->tx_submitted)),
clear active_tx_jobs, and reset priv->tx_contexts[].

Reorder the teardown so the anchored URBs are killed before the netdevs
are freed, matching other CAN/USB drivers in the same directory such as
ems_usb, usb_8dev and mcba_usb, which unregister, then unlink, then
free: unregister the netdevs first (which stops their TX queues), call
unlink_all_urbs(dev) once, then free the netdevs.

This issue was found by an in-house static analysis tool.

Fixes: 96d8e90382dc336b5de401164597edfdc2e8d9f1 ("can: Add driver for esd CAN-USB/2 device")
Cc: stable@vger.kernel.org
Assisted-by: Codex:gpt-5.5
Signed-off-by: Fan Wu <fanwu01@zju.edu.cn>
---
 drivers/net/can/usb/esd_usb.c | 5 ++++-
 1 file changed, 4 insertions(+), 1 deletion(-)

diff --git a/drivers/net/can/usb/esd_usb.c b/drivers/net/can/usb/esd_usb.c
index d257440fa..f41d4a0d1 100644
--- a/drivers/net/can/usb/esd_usb.c
+++ b/drivers/net/can/usb/esd_usb.c
@@ -1390,10 +1390,13 @@ static void esd_usb_disconnect(struct usb_interface *intf)
 				netdev = dev->nets[i]->netdev;
 				netdev_info(netdev, "unregister\n");
 				unregister_netdev(netdev);
-				free_candev(netdev);
 			}
 		}
 		unlink_all_urbs(dev);
+		for (i = 0; i < dev->net_count; i++) {
+			if (dev->nets[i])
+				free_candev(dev->nets[i]->netdev);
+		}
 		kfree(dev);
 	}
 }
-- 
2.34.1


^ permalink raw reply related

* Re: [PATCH net] dibs: loopback: validate offset and size in move_data()
From: Paolo Abeni @ 2026-07-09 10:46 UTC (permalink / raw)
  To: Andrew Lunn, Dust Li
  Cc: Alexandra Winter, Wenjia Zhang, Wen Gu, Mahanta Jambigi,
	D . Wythe, Sidraya Jayagond, netdev, linux-kernel, stable,
	Federico Kirschbaum
In-Reply-To: <c09ac69d-5f69-4634-81a0-5e629cf135ba@lunn.ch>

On 7/7/26 8:31 PM, Andrew Lunn wrote:
> On Tue, Jul 07, 2026 at 10:31:00PM +0800, Dust Li wrote:
>> On 2026-07-07 15:43:18, Dust Li wrote:
>>> The loopback move_data() performs a memcpy into the registered DMB
>>> without checking whether offset + size exceeds the DMB length.  Unlike
>>> real ISM hardware, which enforces memory region bounds natively, the
>>> software loopback has no such protection.
>>>
>>> A peer-supplied out-of-bounds offset or oversized write would result in
>>> an OOB write past the allocated kernel buffer.  Add an explicit bounds
>>> check before the memcpy to reject such requests with -EINVAL.
>>>
>>> Fixes: f7a22071dbf3("net/smc: implement DMB-related operations of loopback-ism")
>>> Cc: stable@vger.kernel.org
>>> Reported-by: Federico Kirschbaum <federico.kirschbaum@xbow.com>
>>
>> Reported-by: Baul Lee <baul.lee@xbow.com>
> 
> Could you provide a link to the report?

Since both reporters belong to the same org, I assume they
co-partecipated at the initial report.

Also there is a problem with the fixes tag that I'll address while
applying the patch.

/P


^ permalink raw reply

* Re: [PATCH net-next v7 08/15] net: ethernet: oa_tc6: Support for hardware timestamp
From: Vadim Fedorenko @ 2026-07-09 10:44 UTC (permalink / raw)
  To: Selvamani.Rajagopal, Andrew Lunn, Piergiorgio Beruto,
	Heiner Kallweit, Russell King, David S. Miller, Eric Dumazet,
	Jakub Kicinski, Paolo Abeni, Andrew Lunn, Parthiban Veerasooran,
	Richard Cochran, Rob Herring, Krzysztof Kozlowski, Conor Dooley,
	Simon Horman, Jonathan Corbet, Shuah Khan
  Cc: netdev, linux-kernel, devicetree, linux-doc, Jerry Ray
In-Reply-To: <20260708-s2500-mac-phy-support-v7-8-478c877aa1a9@onsemi.com>

On 08/07/2026 18:12, Selvamani Rajagopal via B4 Relay wrote:
> From: Selvamani Rajagopal <Selvamani.Rajagopal@onsemi.com>
> 
> PTP register/unregister calls are implemented in oa_tc6_ptp.c.
> The APIs that work with the hardware for timestamp is provided
> by vendor code as it may be vendor dependent.
> 
> Interface for ndo_hwtstamp_set/get, ioctl, control and status
> callback for ethtool are provided to support hardware timestamp
> feature.
> 
> Besides ioctl interface, hardware timestamp functions that handles
> header and footer data are in oa_tc6.c. Helper functions are in
> oa_tc6_tstamp.c.
> 
> Signed-off-by: Selvamani Rajagopal <Selvamani.Rajagopal@onsemi.com>
> 
> ---
> changes in v7
>    - Fixed the parameter name mismatch in function protoype and
>      definition
>    - CONFIG0 is set with 64 bit timestamp support by default.
>    - Added information about return value for API documentation.
> changes in v6
>    - Fixed the issue of function parameter in oa_tc6_get_ts_stats
>      not described in comments section for documentation.
>    - Avoided typecasting __be32 as u32
> changes in v5
>    - As subtracting skb len by FCS size is considered bug, changes
>      are removed. Will be fixed in stable branch (net repo)
> changes in v4
>    - Fixed the condition check for subtracting the FCS size
>      from skb len.
> changes in v3
>    - Replaced warning printk with ratelimited printk
>    - Checking the hardware register before enabling hardware
>      timestamp
> changes in v1
>    - Added hardware timestamp support to the OA TC6 framework.
> ---
>   MAINTAINERS                                  |   1 +
>   drivers/net/ethernet/oa_tc6/Makefile         |   2 +-
>   drivers/net/ethernet/oa_tc6/oa_tc6.c         | 218 +++++++++++++++++++++++++--
>   drivers/net/ethernet/oa_tc6/oa_tc6_ptp.c     |  70 +++++++++
>   drivers/net/ethernet/oa_tc6/oa_tc6_std_def.h |  34 +++++
>   drivers/net/ethernet/oa_tc6/oa_tc6_tstamp.c  | 205 +++++++++++++++++++++++++
>   include/linux/oa_tc6.h                       |  12 ++
>   7 files changed, 527 insertions(+), 15 deletions(-)
> 

[...]

> +/**
> + * oa_tc6_ioctl - generic ioctl interface for MAC-PHY drivers.
> + * @tc6: oa_tc6 struct.
> + * @rq: request from socket interface
> + * @cmd: value to set/get timestamp configuration
> + *
> + * Return: 0 on success otherwise failed.
> + */
> +int oa_tc6_ioctl(struct oa_tc6 *tc6, struct ifreq *rq, int cmd)
> +{
> +	if (!netif_running(tc6->netdev))
> +		return -EINVAL;
> +
> +	if (cmd == SIOCSHWTSTAMP || cmd == SIOCGHWTSTAMP)
> +		return oa_tc6_tstamp_ioctl(tc6, rq, cmd);

ioctl interface for HW timestamp configuration is deprecated, kernel
code was recently cleaned up to aviod these ioctl commands in favor of
ndo_hwtstamp_get/ndo_hwtstamp_set callbacks. New drivers must not use
deprecated ioctl commands.

> +	else
> +		return phy_do_ioctl_running(tc6->netdev, rq, cmd);
> +}
> +EXPORT_SYMBOL_GPL(oa_tc6_ioctl);
> +

^ permalink raw reply

* Re: [PATCH net-next] selftests: drv-net: rss_ctx: Add retries to test_rss_context_overlap to reduce flakes
From: patchwork-bot+netdevbpf @ 2026-07-09 10:40 UTC (permalink / raw)
  To: Zinc Lim
  Cc: andrew+netdev, davem, edumazet, kuba, pabeni, shuah, zinclim,
	netdev, linux-kselftest, linux-kernel
In-Reply-To: <20260702164932.2832916-1-limzhineng2@gmail.com>

Hello:

This patch was applied to netdev/net-next.git (main)
by Paolo Abeni <pabeni@redhat.com>:

On Thu,  2 Jul 2026 09:49:31 -0700 you wrote:
> Similar to commit 690043b95c18 ("selftests: drv-net: rss: Add
> retries to test_rss_key_indir to reduce flakes"), implement the
> retry mechanism for test_rss_context_overlap. This gives the test
> more attempts to distribute the flow evenly, as the chance of
> flow skewing to one queue is high.
> 
> Example failures:
> 
> [...]

Here is the summary with links:
  - [net-next] selftests: drv-net: rss_ctx: Add retries to test_rss_context_overlap to reduce flakes
    https://git.kernel.org/netdev/net-next/c/fe3e786ef4eb

You are awesome, thank you!
-- 
Deet-doot-dot, I am a bot.
https://korg.docs.kernel.org/patchwork/pwbot.html



^ permalink raw reply

* Re: [PATCH] net : bonding : Remove TODO comment about retrying setting the MAC
From: patchwork-bot+netdevbpf @ 2026-07-09 10:40 UTC (permalink / raw)
  To: Paritosh Potukuchi
  Cc: netdev, linux-kernel, jv, paritosh.potukuchi, andrew+netdev,
	davem, edumazet, kuba, pabeni
In-Reply-To: <20260703125513.694324-1-paritosh.potukuchi@amd.com>

Hello:

This patch was applied to netdev/net-next.git (main)
by Paolo Abeni <pabeni@redhat.com>:

On Fri,  3 Jul 2026 12:55:12 +0000 you wrote:
> As correctly pointed out by Jay Vosburgh,
> 
> "This comment dates to sometime before git, when it was common for
> network device drivers to lack the ability to change the MAC while the
> interface is up.  To the best of my knowledge, that isn't a issue
> today."
> 
> [...]

Here is the summary with links:
  - net : bonding : Remove TODO comment about retrying setting the MAC
    https://git.kernel.org/netdev/net-next/c/0e74441edefc

You are awesome, thank you!
-- 
Deet-doot-dot, I am a bot.
https://korg.docs.kernel.org/patchwork/pwbot.html



^ permalink raw reply

* Re: [PATCH net 4/4] rxrpc: Fix CHALLENGE packet overqueuing and simplify RESPONSE generation
From: Simon Horman @ 2026-07-09 10:37 UTC (permalink / raw)
  To: dhowells
  Cc: Simon Horman, netdev, marc.dionne, kuba, davem, edumazet, pabeni,
	linux-afs, linux-kernel, jaltman, jarkko, keyrings, stable
In-Reply-To: <20260702144919.172295-5-dhowells@redhat.com>

This is an AI-generated review of your patch. The human sending this
email has considered the AI review valid, or at least plausible.
Full review at: https://sashiko.dev
---
Subject: rxrpc: Fix CHALLENGE packet overqueuing and simplify RESPONSE generation

This commit removes the out-of-band queueing mechanism for CHALLENGE
packets. It transitions the connection event processor to handle
CHALLENGE parsing and RESPONSE generation directly, while allowing
application data to be passed via a user-type key.

Link: https://sashiko.dev/#/patchset/20260624163819.3017002-1-dhowells%40redhat.com

> diff --git a/fs/afs/cm_security.c b/fs/afs/cm_security.c
> index 103168c70dd4d..db2a3b30f0209 100644
> --- a/fs/afs/cm_security.c
> +++ b/fs/afs/cm_security.c
> @@ -295,13 +295,22 @@ static int afs_create_yfs_cm_token(struct sk_buff *challenge,
>  	if (ret < 0)
>  		goto out_aead;
>  
> -	server->cm_rxgk_appdata.len  = adatasize;
> -	server->cm_rxgk_appdata.data = appdata;
> -	appdata = NULL;
> +	appdata_key = key_alloc(&key_type_user, "rxrpc: afs rxgk appdata",
> +				GLOBAL_ROOT_UID, GLOBAL_ROOT_GID, current_cred(),
> +				KEY_POS_VIEW | KEY_POS_SEARCH | KEY_USR_VIEW,
> +				KEY_ALLOC_NOT_IN_QUOTA, NULL);
> +	if (IS_ERR(appdata_key)) {
> +		ret = PTR_ERR(appdata_key);
> +		goto out_aead;
> +	}
> +
> +	ret = key_instantiate_and_link(appdata_key, appdata, adatasize, NULL, NULL);
> +	if (ret < 0) {
> +		key_put(appdata_key);
> +		goto out_aead;
> +	}
> +
> +	server->cm_rxgk_appdata = appdata_key;

[Severity: Medium]
Does this plain store require memory barriers? afs_make_call() appears to
read call->server->cm_rxgk_appdata concurrently without holding the
cm_token_lock. Without smp_store_release() here and a corresponding
smp_load_acquire() or READ_ONCE() on the read side, could the reader
observe the pointer before the key object's initialization is completely
visible to other CPUs?

> diff --git a/fs/afs/rxrpc.c b/fs/afs/rxrpc.c
> index 05fcb9b6adde7..ae48c15b3db94 100644
> --- a/fs/afs/rxrpc.c
> +++ b/fs/afs/rxrpc.c
> @@ -373,8 +373,25 @@ void afs_make_call(struct afs_call *call, gfp_t gfp)
>  		call->drop_ref = true;
>  	}
>  
> +	if (call->key && call->server) {
> +		u32 krb5_enctype = 0;
> +		u8 security_index = 0;
> +
> +		rxrpc_kernel_query_key(call->key, &security_index, &krb5_enctype);
> +		switch (security_index) {
> +#ifdef CONFIG_RXGK
> +		case RXRPC_SECURITY_YFS_RXGK:
> +			app_data = call->server->cm_rxgk_appdata;
> +			break;

[Severity: Medium]
Following up on the previous observation, is it safe to perform a plain
read of the cm_rxgk_appdata pointer here in afs_make_call() without
READ_ONCE() or a lock?

> diff --git a/net/rxrpc/rxgk.c b/net/rxrpc/rxgk.c
> index 77a67ace1d248..9ab766d5f0b6c 100644
> --- a/net/rxrpc/rxgk.c
> +++ b/net/rxrpc/rxgk.c
> @@ -981,36 +981,36 @@ static int rxgk_construct_response(struct rxrpc_connection *conn,
> [ ... ]
> +	if (conn->bundle->app_data) {
> +		rcu_read_lock();
> +		appdata = (struct user_key_payload *)
> +			user_key_payload_rcu(conn->bundle->app_data);

[Severity: High]
If an attacker passes the ID of a non-user key (like an asymmetric key
or keyring) during sendmsg(), could casting that key's payload to struct
user_key_payload and modifying its refcount cause memory corruption?

> +		if (!refcount_inc_not_zero(&appdata->ref))

[Severity: High]
Can user_key_payload_rcu() return NULL here if the user key has been
revoked by userspace via keyctl(KEYCTL_REVOKE)? If appdata evaluates to
NULL, would calling refcount_inc_not_zero(&appdata->ref) attempt to
dereference a low offset address and trigger a kernel panic?

> diff --git a/net/rxrpc/sendmsg.c b/net/rxrpc/sendmsg.c
> index 4c754f78ece9a..225eec410bedc 100644
> --- a/net/rxrpc/sendmsg.c
> +++ b/net/rxrpc/sendmsg.c
> @@ -590,6 +592,18 @@ static int rxrpc_sendmsg_cmsg(struct msghdr *msg, struct rxrpc_send_params *p)
> [ ... ]
> +		case RXRPC_RESPONSE_APPDATA:
> +			if (len != sizeof(key_serial_t))
> +				return -EINVAL;
> +			if (p->call.app_data)
> +				return -EINVAL;
> +			key_id = *(key_serial_t *)CMSG_DATA(cmsg);
> +			key = lookup_user_key(key_id, 0, KEY_NEED_SEARCH);
> +			if (IS_ERR(key))
> +				return PTR_ERR(key);
> +			p->call.app_data = key_ref_to_ptr(key);
> +			break;

[Severity: High]
Should there be a check here in rxrpc_sendmsg_cmsg() to verify that the
fetched key is actually a user-type key (e.g., key->type == &key_type_user)?
Without validation, any key type could be assigned to p->call.app_data,
leading to the invalid cast mentioned previously in
rxgk_respond_to_challenge().

> @@ -677 +716 @@ int rxrpc_do_sendmsg(struct rxrpc_sock *rx, struct msghdr *msg, size_t len)
> [ ... ]
>  	call = rxrpc_find_call_by_user_ID(rx, p.call.user_call_ID);
>  	if (!call) {
> [ ... ]
> +		call = rxrpc_new_client_call_for_sendmsg(rx, msg, &p);
> +		/* The socket is now unlocked... */
> +		if (IS_ERR(call))
> +			return PTR_ERR(call);

[Severity: High]
Does this direct return leak the key reference acquired by lookup_user_key()
and stored in p.call.app_data when rxrpc_new_client_call_for_sendmsg()
fails?

> @@ -803,6 +803,7 @@ int rxrpc_do_sendmsg(struct rxrpc_sock *rx, struct msghdr *msg, size_t len)
>  out_put_unlock:
>  	if (!dropped_lock)
>  		mutex_unlock(&call->user_mutex);
>  error_put:
>  	rxrpc_put_call(call, rxrpc_call_put_sendmsg);
>  	_leave(" = %d", ret);
>  	return ret;
>  
>  error_release_sock:
>  	release_sock(&rx->sk);
> +	key_put(p.call.app_data);
>  	return ret;
>  }

[Severity: High]
Do the out_put_unlock and error_put paths in rxrpc_do_sendmsg() also need
to call key_put(p.call.app_data)? It appears rxrpc_alloc_client_call()
takes its own reference on the key via key_get(), which means the original
reference acquired during rxrpc_sendmsg_cmsg() will be leaked on successful
operations or when failing after the socket lock is released.

^ permalink raw reply

* [PATCH net v5] rtase: Workaround for TX hang caused by hardware packet parsing
From: Justin Lai @ 2026-07-09 10:34 UTC (permalink / raw)
  To: kuba
  Cc: davem, edumazet, pabeni, andrew+netdev, linux-kernel, netdev,
	stable, horms, richardcochran, david.laight.linux,
	aleksander.lobakin, pkshih, larry.chiu, Justin Lai

The hardware performs packet parsing before packet transmission.
Parsing incomplete IPv4, IPv6, TCP, or UDP headers may trigger a TX
hang because the hardware parser expects additional protocol header
data that is not present in the packet.

The hardware performs additional PTP parsing on UDP packets identified
by destination ports 319/320 at the expected UDP destination port
offset.

If such a packet has transport data smaller than RTASE_MIN_PAD_LEN,
the hardware parser expects additional packet data and may trigger a
TX hang.

To avoid these hardware issues, the driver applies the following
workarounds.

Drop malformed packets that may trigger this hardware issue before
transmission.

For IPv4 non-initial fragments, the hardware does not check the
fragment offset before parsing the expected transport header location.
As a result, these packets are still subject to transport header
parsing even though they do not contain a transport header. If the
transport data is shorter than the minimum transport header required
by the hardware parser, pad the transport data to the minimum
transport header length required by the hardware parser. Packets that
also match the hardware PTP parsing conditions continue to follow the
corresponding workaround.

For IPv6 fragmented packets, neither of the above hardware issues
occurs because the hardware only continues packet parsing when the
IPv6 Base Header Next Header field directly indicates UDP. Packets
carrying a Fragment Header do not continue through the subsequent
packet parsing stages.

For packets identified for hardware PTP parsing, pad the transport
data so it reaches RTASE_MIN_PAD_LEN before transmission.

Fixes: d6e882b89fdf ("rtase: Implement .ndo_start_xmit function")
Cc: stable@vger.kernel.org
Signed-off-by: Justin Lai <justinlai0215@realtek.com>
---
v4 -> v5:
- Drop packets that may trigger a TX hang during hardware packet
  parsing.
- Pad IPv4 non-initial fragments when the transport data is shorter
  than the minimum transport header required by the hardware parser.

v3 -> v4:
- Derive the L3 protocol and network offset from Ethernet/VLAN
headers instead of relying on vlan_get_protocol().
- Reject malformed packets when the computed UDP offset exceeds
skb->len.

v2 -> v3:
- Remove dependency on skb_transport_header_was_set().
- Determine UDP header offset from IPv4/IPv6 headers.
- Use skb_header_pointer() for UDP header access.
- Add non-linear skb handling.

v1 -> v2:
- Remove RTASE_SHORT_PKT_THRESH and the packet length check.
- Check transport data length before parsing the UDP header.
- Add Fixes tag.
- Add Cc: stable@vger.kernel.org.
- Target net tree.
---
 drivers/net/ethernet/realtek/rtase/rtase.h    |   8 +
 .../net/ethernet/realtek/rtase/rtase_main.c   | 197 ++++++++++++++++++
 2 files changed, 205 insertions(+)

diff --git a/drivers/net/ethernet/realtek/rtase/rtase.h b/drivers/net/ethernet/realtek/rtase/rtase.h
index 9bd6872474c1..03b12d83f6e9 100644
--- a/drivers/net/ethernet/realtek/rtase/rtase.h
+++ b/drivers/net/ethernet/realtek/rtase/rtase.h
@@ -192,6 +192,12 @@ enum rtase_sw_flag_content {
 	RTASE_SWF_MSIX_ENABLED = BIT(2),
 };
 
+enum rtase_parse_result {
+	RTASE_PARSE_OK,
+	RTASE_PARSE_SKIP,
+	RTASE_PARSE_DROP,
+};
+
 #define RSVD_MASK 0x3FFFC000
 
 struct rtase_tx_desc {
@@ -363,4 +369,6 @@ struct rtase_private {
 
 #define RTASE_MSS_MASK GENMASK(28, 18)
 
+#define RTASE_MIN_PAD_LEN 47
+
 #endif /* RTASE_H */
diff --git a/drivers/net/ethernet/realtek/rtase/rtase_main.c b/drivers/net/ethernet/realtek/rtase/rtase_main.c
index 255667775f0e..4168ad9e48ea 100644
--- a/drivers/net/ethernet/realtek/rtase/rtase_main.c
+++ b/drivers/net/ethernet/realtek/rtase/rtase_main.c
@@ -61,6 +61,7 @@
 #include <linux/pci.h>
 #include <linux/pm_runtime.h>
 #include <linux/prefetch.h>
+#include <linux/ptp_classify.h>
 #include <linux/rtnetlink.h>
 #include <linux/tcp.h>
 #include <asm/irq.h>
@@ -1252,6 +1253,199 @@ static u32 rtase_tx_csum(struct sk_buff *skb, const struct net_device *dev)
 	return csum_cmd;
 }
 
+static enum rtase_parse_result rtase_get_l3_proto(struct sk_buff *skb,
+						  __be16 *proto,
+						  u32 *network_offset)
+{
+	struct vlan_hdr *vh, _vh;
+	struct ethhdr *eh, _eh;
+	u32 offset = ETH_HLEN;
+
+	eh = skb_header_pointer(skb, 0, sizeof(_eh), &_eh);
+	if (!eh)
+		return RTASE_PARSE_DROP;
+
+	*proto = eh->h_proto;
+
+	while (eth_type_vlan(*proto)) {
+		vh = skb_header_pointer(skb, offset, sizeof(_vh), &_vh);
+		if (!vh)
+			return RTASE_PARSE_DROP;
+
+		*proto = vh->h_vlan_encapsulated_proto;
+		offset += VLAN_HLEN;
+	}
+
+	*network_offset = offset;
+
+	return RTASE_PARSE_OK;
+}
+
+static bool rtase_pad_to_transport_len(struct sk_buff *skb,
+				       u32 transport_offset,
+				       u32 pad_to_len)
+{
+	u32 trans_data_len;
+	u32 pad_len;
+
+	trans_data_len = skb->len - transport_offset;
+	if (trans_data_len >= pad_to_len)
+		return true;
+
+	if (skb_is_nonlinear(skb)) {
+		if (skb_linearize(skb))
+			return false;
+	}
+
+	pad_len = pad_to_len - trans_data_len;
+	if (__skb_put_padto(skb, skb->len + pad_len, false))
+		return false;
+
+	return true;
+}
+
+static enum rtase_parse_result rtase_get_transport_offset(struct sk_buff *skb,
+							  u32 *transport_offset,
+							  u8 *transport_proto,
+							  u32 *pad_to_len)
+{
+	enum rtase_parse_result ret;
+	struct ipv6hdr *i6h, _i6h;
+	struct iphdr *ih, _ih;
+	bool non_first_frag;
+	__be16 proto;
+	u32 offset;
+	u32 no;
+
+	ret = rtase_get_l3_proto(skb, &proto, &no);
+	if (ret != RTASE_PARSE_OK)
+		return ret;
+
+	switch (proto) {
+	case htons(ETH_P_IP):
+		ih = skb_header_pointer(skb, no, sizeof(_ih), &_ih);
+		if (!ih)
+			return RTASE_PARSE_DROP;
+
+		if (ih->ihl < 5)
+			return RTASE_PARSE_DROP;
+
+		offset = no + ih->ihl * 4;
+		if (offset > skb->len)
+			return RTASE_PARSE_DROP;
+
+		non_first_frag = ntohs(ih->frag_off) & IP_OFFSET;
+
+		if (ih->protocol == IPPROTO_TCP) {
+			if (skb->len - offset < sizeof(struct tcphdr)) {
+				if (non_first_frag) {
+					*transport_offset = offset;
+					*transport_proto = IPPROTO_TCP;
+					*pad_to_len = sizeof(struct tcphdr);
+
+					return RTASE_PARSE_OK;
+				}
+
+				return RTASE_PARSE_DROP;
+			}
+
+			return RTASE_PARSE_SKIP;
+		}
+
+		if (ih->protocol != IPPROTO_UDP)
+			return RTASE_PARSE_SKIP;
+
+		*transport_offset = offset;
+		*transport_proto = IPPROTO_UDP;
+
+		if (skb->len - offset < sizeof(struct udphdr)) {
+			if (non_first_frag) {
+				*pad_to_len = sizeof(struct udphdr);
+
+				return RTASE_PARSE_OK;
+			}
+
+			return RTASE_PARSE_DROP;
+		}
+
+		return RTASE_PARSE_OK;
+
+	case htons(ETH_P_IPV6):
+		i6h = skb_header_pointer(skb, no, sizeof(_i6h), &_i6h);
+		if (!i6h)
+			return RTASE_PARSE_DROP;
+
+		offset = no + sizeof(*i6h);
+
+		if (i6h->nexthdr == IPPROTO_TCP) {
+			if (skb->len - offset < sizeof(struct tcphdr))
+				return RTASE_PARSE_DROP;
+
+			return RTASE_PARSE_SKIP;
+		}
+
+		if (i6h->nexthdr != IPPROTO_UDP)
+			return RTASE_PARSE_SKIP;
+
+		if (skb->len - offset < sizeof(struct udphdr))
+			return RTASE_PARSE_DROP;
+
+		*transport_offset = offset;
+		*transport_proto = IPPROTO_UDP;
+
+		return RTASE_PARSE_OK;
+
+	default:
+		return RTASE_PARSE_SKIP;
+	}
+}
+
+static bool rtase_skb_pad(struct sk_buff *skb)
+{
+	enum rtase_parse_result ret;
+	u32 transport_offset;
+	__be16 *dest, _dest;
+	u32 trans_data_len;
+	u32 pad_to_len = 0;
+	u8 transport_proto;
+	u16 dest_port;
+
+	ret = rtase_get_transport_offset(skb, &transport_offset,
+					 &transport_proto, &pad_to_len);
+	if (ret == RTASE_PARSE_SKIP) {
+		return true;
+	} else if (ret == RTASE_PARSE_DROP) {
+		netdev_dbg(skb->dev, "drop malformed packet\n");
+		return false;
+	}
+
+	if (pad_to_len &&
+	    !rtase_pad_to_transport_len(skb, transport_offset, pad_to_len))
+		return false;
+
+	if (transport_proto != IPPROTO_UDP)
+		return true;
+
+	trans_data_len = skb->len - transport_offset;
+	if (trans_data_len < offsetof(struct udphdr, len) ||
+	    trans_data_len >= RTASE_MIN_PAD_LEN)
+		return true;
+
+	dest = skb_header_pointer(skb,
+				  transport_offset +
+				  offsetof(struct udphdr, dest),
+				  sizeof(_dest), &_dest);
+	if (!dest)
+		return true;
+
+	dest_port = ntohs(*dest);
+	if (dest_port != PTP_EV_PORT && dest_port != PTP_GEN_PORT)
+		return true;
+
+	return rtase_pad_to_transport_len(skb, transport_offset,
+					  RTASE_MIN_PAD_LEN);
+}
+
 static int rtase_xmit_frags(struct rtase_ring *ring, struct sk_buff *skb,
 			    u32 opts1, u32 opts2)
 {
@@ -1365,6 +1559,9 @@ static netdev_tx_t rtase_start_xmit(struct sk_buff *skb,
 		opts2 |= rtase_tx_csum(skb, dev);
 	}
 
+	if (!rtase_skb_pad(skb))
+		goto err_dma_0;
+
 	frags = rtase_xmit_frags(ring, skb, opts1, opts2);
 	if (unlikely(frags < 0))
 		goto err_dma_0;
-- 
2.40.1


^ permalink raw reply related

* [PATCH iproute2-next v2] ip: add OVPN device mode support
From: Marco Baffo @ 2026-07-09 10:28 UTC (permalink / raw)
  To: netdev; +Cc: David Ahern, Stephen Hemminger, Antonio Quartulli, Marco Baffo

ovpn devices (OpenVPN data channel offload, kernel v6.16) can already
be created with "ip link add ovpn0 type ovpn", but the mode is always
left to the kernel default (p2p mode).

Add ovpn link type support so that point-to-point (p2p) or multi-peer
(mp) mode can be selected at creation time and shown by
"ip -d link show".

Example:

  $ ip link add ovpn0 type ovpn mode mp

Signed-off-by: Marco Baffo <marco@mandelbit.com>
---

Changes in v2:
- Created a mode table to use for both parsing and printing.
- Used strcmp() instead of matches().

 ip/Makefile           |  2 +-
 ip/iplink.c           |  2 +-
 ip/iplink_ovpn.c      | 92 +++++++++++++++++++++++++++++++++++++++++++
 man/man8/ip-link.8.in | 24 +++++++++++
 4 files changed, 118 insertions(+), 2 deletions(-)
 create mode 100644 ip/iplink_ovpn.c

diff --git a/ip/Makefile b/ip/Makefile
index 3535ba78..978f6841 100644
--- a/ip/Makefile
+++ b/ip/Makefile
@@ -13,7 +13,7 @@ IPOBJ=ip.o ipaddress.o ipaddrlabel.o iproute.o iprule.o ipnetns.o \
     ipvrf.o iplink_xstats.o ipseg6.o iplink_netdevsim.o iplink_rmnet.o \
     ipnexthop.o ipmptcp.o iplink_bareudp.o iplink_wwan.o ipioam6.o \
     iplink_amt.o iplink_batadv.o iplink_gtp.o iplink_virt_wifi.o \
-    iplink_netkit.o ipstats.o
+    iplink_netkit.o ipstats.o iplink_ovpn.o
 
 RTMONOBJ=rtmon.o
 
diff --git a/ip/iplink.c b/ip/iplink.c
index 3f0b46c9..c6aee8b6 100644
--- a/ip/iplink.c
+++ b/ip/iplink.c
@@ -42,7 +42,7 @@ void iplink_types_usage(void)
 		"          ifb | ip6erspan | ip6gre | ip6gretap | ip6tnl |\n"
 		"          ipip | ipoib | ipvlan | ipvtap |\n"
 		"          macsec | macvlan | macvtap | netdevsim |\n"
-		"          netkit | nlmon | pfcp | rmnet | sit | team | team_slave |\n"
+		"          netkit | nlmon | ovpn | pfcp | rmnet | sit | team | team_slave |\n"
 		"          vcan | veth | vlan | vrf | vti | vxcan | vxlan | wwan |\n"
 		"          xfrm | virt_wifi }\n");
 }
diff --git a/ip/iplink_ovpn.c b/ip/iplink_ovpn.c
new file mode 100644
index 00000000..d3dff295
--- /dev/null
+++ b/ip/iplink_ovpn.c
@@ -0,0 +1,92 @@
+/* SPDX-License-Identifier: GPL-2.0-or-later */
+/*
+ * iplink_ovpn.c	OpenVPN DCO device support
+ *
+ * Author: Marco Baffo <marco@mandelbit.com>
+ *
+ */
+
+#include <stdio.h>
+#include <string.h>
+#include <linux/if_link.h>
+
+#include "utils.h"
+#include "ip_common.h"
+
+static const char * const ovpn_mode_strings[] = {
+	[OVPN_MODE_P2P] = "p2p",
+	[OVPN_MODE_MP] = "mp",
+};
+
+static const char *ovpn_mode_to_str(__u8 mode)
+{
+	if (mode >= ARRAY_SIZE(ovpn_mode_strings) || !ovpn_mode_strings[mode])
+		return "(unknown)";
+
+	return ovpn_mode_strings[mode];
+}
+
+static void print_explain(FILE *f)
+{
+	fprintf(f,
+		"Usage: ... ovpn [ mode { p2p | mp } ]\n"
+		"\n"
+		"MODE := p2p | mp\n"
+		"(p2p is the default if mode is not specified)\n");
+}
+
+static int ovpn_parse_opt(struct link_util *lu, int argc, char **argv,
+			  struct nlmsghdr *n)
+{
+	while (argc > 0) {
+		if (strcmp(*argv, "mode") == 0) {
+			int mode, err;
+
+			NEXT_ARG();
+			mode = parse_one_of("mode", *argv, ovpn_mode_strings,
+					    ARRAY_SIZE(ovpn_mode_strings),
+					    &err);
+			if (err)
+				return err;
+			addattr8(n, 1024, IFLA_OVPN_MODE, mode);
+		} else if (strcmp(*argv, "help") == 0) {
+			print_explain(stderr);
+			return -1;
+		} else {
+			fprintf(stderr, "ovpn: unknown option \"%s\"?\n", *argv);
+			print_explain(stderr);
+			return -1;
+		}
+		argc--;
+		argv++;
+	}
+
+	return 0;
+}
+
+static void ovpn_print_opt(struct link_util *lu, FILE *f, struct rtattr *tb[])
+{
+	__u8 mode;
+
+	if (!tb || !tb[IFLA_OVPN_MODE] ||
+	    RTA_PAYLOAD(tb[IFLA_OVPN_MODE]) < sizeof(mode))
+		return;
+
+	mode = rta_getattr_u8(tb[IFLA_OVPN_MODE]);
+
+	print_string(PRINT_ANY, "mode", "mode %s ", ovpn_mode_to_str(mode));
+}
+
+static void ovpn_print_help(struct link_util *lu, int argc, char **argv,
+			    FILE *f)
+{
+	print_explain(f);
+}
+
+struct link_util ovpn_link_util = {
+	.id		= "ovpn",
+	.maxattr	= IFLA_OVPN_MAX,
+	.parse_opt	= ovpn_parse_opt,
+	.print_opt	= ovpn_print_opt,
+	.print_help	= ovpn_print_help,
+};
diff --git a/man/man8/ip-link.8.in b/man/man8/ip-link.8.in
index fc7f0248..d54d2fbc 100644
--- a/man/man8/ip-link.8.in
+++ b/man/man8/ip-link.8.in
@@ -287,6 +287,7 @@ ip-link \- network device configuration
 .BR netdevsim " |"
 .BR netkit " |"
 .BR nlmon " |"
+.BR ovpn " |"
 .BR pfcp " |"
 .BR rmnet " |"
 .BR sit " |"
@@ -430,6 +431,9 @@ Link types:
 .BR nlmon
 - Netlink monitoring device
 .sp
+.BR ovpn
+- OpenVPN Data Channel Offload device
+.sp
 .BR pfcp
 - Packet Forwarding Control Protocol device
 .sp
@@ -1349,6 +1353,26 @@ the following additional arguments are supported:
 .BI  mode " MODE "
 - specifies the mode (datagram or connected) to use.
 
+.TP
+OVPN Type Support
+For a link of type
+.I OVPN
+the following additional arguments are supported:
+
+.BI "ip link add " DEVICE
+.BR "type ovpn " [ " mode " "{ " p2p " | " mp " }" " ]"
+
+.in +8
+.sp
+.BR mode " { " p2p " | " mp " }"
+- selects the OpenVPN device mode. The default,
+.BR p2p ,
+creates a point-to-point device for a single peer. The
+.B mp
+mode creates a multi-peer device.
+
+.in -8
+
 .TP
 ERSPAN Type Support
 For a link of type
-- 
2.43.0


^ permalink raw reply related

* Re: [PATCH net-next v2 0/8] netconsole: stop charging netpoll users for netconsole-only data
From: Paolo Abeni @ 2026-07-09 10:27 UTC (permalink / raw)
  To: Simon Horman, Breno Leitao
  Cc: David S. Miller, Eric Dumazet, Jakub Kicinski, Andrew Lunn,
	netdev, asantostc, gustavold, linux-kernel, kernel-team
In-Reply-To: <20260709101945.GN1364329@horms.kernel.org>

On 7/9/26 12:19 PM, Simon Horman wrote:
> On Mon, Jul 06, 2026 at 04:55:35AM -0700, Breno Leitao wrote:
>> On Thu, Jul 02, 2026 at 05:19:44AM -0700, Breno Leitao wrote:
>>> This work continue to untangle netconsole and netpoll, improving
>>> memory usage for netpoll users that are not netconsole.
>>
>> Quick follow up on the sashiko findings. most of them are assuming that
>> netconsole_write is called locklelly, which is not the case, except
>> on panic (CON_NBCON_ATOMIC_UNSAFE). 
>>
>>
>> There are in order as they appear in
>> https://sashiko.dev/#/patchset/20260702-netconsole_move_more-v2-0-1ebedd921dcb%40debian.org
>>
>> Tl;DR: There are two pre-existing issue that I will get fixed, but
>> I don't think they are blockers for this series (IMO).
> 
> Thanks, I agree.
> 
> For the series:
> 
> Reviewed-by: Simon Horman <horms@kernel.org>
> 
> I did notice that patch 2/8 now applies with some fuzz, which trips up git am.
> You may want to consider a rebase.

Yep, a rebase is needed, thanks!

Paolo


^ permalink raw reply

* Re: VXLAN FDB nexthop groups: per-nexthop UDP dst port / VNI feasibility
From: Ido Schimmel @ 2026-07-09 10:22 UTC (permalink / raw)
  To: Jack Ma
  Cc: David Ahern, Roopa Prabhu, netdev@vger.kernel.org,
	Nikolay Aleksandrov
In-Reply-To: <BL3PR17MB60675DF2E8769ABDA85CCE74E5FF2@BL3PR17MB6067.namprd17.prod.outlook.com>

Please use plain text instead of HTML. Otherwise your emails won't make
it to the list.

On Wed, Jul 08, 2026 at 05:52:05AM +0000, Jack Ma wrote:
>    Hi David, Ido, Roopa,
>    I am using VXLAN FDB nexthop groups (ip nexthop add ... fdb, then
>    bridge fdb add ... nhid) to do L2 ECMP across a set of HA endpoints.
>    In my design each leg is a distinct (VTEP IP, UDP destination port)
>    pair: several endpoints live behind the same node IP and are
>    disambiguated by the VXLAN UDP destination port.
>    Reading the current code (v6.12), it looks like an FDB nexthop can
>    only carry a gateway IP, so a per-leg port cannot be expressed:
>      * vxlan_fdb_nh_path_select() copies only nhc_gw into the synthetic
>        rdst; remote_port and remote_vni stay zero
>        (include/net/vxlan.h).
>      * vxlan_xmit_one() then falls back to the device-wide port:
>        dst_port = rdst->remote_port ? rdst->remote_port
>                                     : vxlan->cfg.dst_port
>        (drivers/net/vxlan/vxlan_core.c).
>      * rtm_to_nh_config() rejects NHA_ENCAP and NHA_OIF on fdb nexthops
>        ("Fdb attribute can not be used with encap, oif or blackhole",
>        net/ipv4/nexthop.c).
>      * vxlan_fdb_parse() rejects NDA_PORT / NDA_VNI / NDA_IFINDEX when
>        NDA_NH_ID is present ("DST, VNI, ifindex and port are mutually
>        exclusive with NH_ID").
>    The original commits (38428d68719c "nexthop: support for fdb ecmp
>    nexthops" and 1274e1cc4226 "vxlan: ecmp support for mac fdb entries")
>    say "these nexthops only have ip", which matches the EVPN multihoming
>    use case where every VTEP in the segment shares one UDP destination
>    port.
>    My questions:
>      1. Was IP-only a deliberate scoping decision for the EVPN-MH use
>         case, or is there a deeper reason a per-nexthop UDP destination
>         port (and VNI) could not be carried on an fdb nexthop, for
>         example via NHA_ENCAP / lwtunnel, which route nexthops already
>         accept?

IP-only was specific for EVPN-MH and it simply reuses the gateway IP
that is already present in the nexthop structure.

>      2. If legs genuinely need distinct UDP destination ports, is the
>         per-remote rdst path (bridge fdb ... dst ... port ...) the
>         intended mechanism, with the understanding that it gives
>         head-end replication semantics rather than nexthop-object ECMP?

Yes, but you will get packet replication instead of load balancing,
which I believe is not what you want.

>      3. Would you be open in principle to a patch that lets an fdb
>         nexthop carry a per-nexthop dst port (and VNI)? If so I am happy
>         to prototype it as an RFC.

I have some questions for you before I answer yours.

Can you explain why different VTEPs need to share a single IP? With
different IPs you can simply reuse the existing FDB nexthops without any
changes.

In addition, why disambiguate by the VXLAN UDP destination port and not
VNI? Even if we allow attaching tunnel encapsulation to FDB nexthops via
NHA_ENCAP, there does not seem to be uAPI in place to encode the
destination port (see ip_tun_policy).

Assuming you can live with a fixed port, I think you can achieve what
you want with BPF and no kernel changes. You can call
bpf_skb_set_tunnel_key [1] from a TC bpf program attached to the egress
of the VXLAN device (configured in "external" mode) and have it encode
the relevant VTEP based on the calculated hash.

[1] https://docs.ebpf.io/linux/helper-function/bpf_skb_set_tunnel_key/

^ permalink raw reply

* Re: [PATCH net-next v11 7/7] selftests: netconsole: validate target resume
From: Matthieu Baerts @ 2026-07-09 10:21 UTC (permalink / raw)
  To: Andre Carvalho
  Cc: Breno Leitao, netdev, linux-kernel, linux-kselftest, Andrew Lunn,
	David S. Miller, Eric Dumazet, Jakub Kicinski, Paolo Abeni,
	Shuah Khan, Simon Horman
In-Reply-To: <ak6jtwbct3C5lZPA@archlinux>

Hi Andre,

Thank you for your reply!

On 08/07/2026 22:24, Andre Carvalho wrote:
> Hello Matthieu,
> 
> On Wed, Jul 08, 2026 at 05:50:53PM +0200, Matthieu Baerts wrote:
>>
>>> +function trigger_reactivation() {
>>> +	# Add back low level module
>>> +	modprobe netdevsim
>>> +	# Recreate namespace and two interfaces
>>> +	set_network
>>> +	# Restore MACs
>>> +	ip netns exec "${NAMESPACE}" ip link set "${DSTIF}" \
>>> +		address "${SAVED_DSTMAC}"
>>> +	if [ "${BINDMODE}" == "mac" ]; then
>>> +		ip link set dev "${SRCIF}" down
>>> +		ip link set dev "${SRCIF}" address "${SAVED_SRCMAC}"
>>> +		# Rename device in order to trigger target resume, as initial
>>> +		# when device was recreated it didn't have correct mac address.
>>> +		ip link set dev "${SRCIF}" name "${TARGET}"
>>
>> When I execute the test, the "ifname" bind mode works without issues,
>> but the "mac" one not. From what I see, the socat process doesn't get
>> any UDP packet when expected. I wonder if the problem might not come
>> from here: the interface is disabled before changing the MAC address and
>> renaming the interface, but not re-enabled at the end. Is it normal?
> 
> Yes, the expectation is that the target would be automatically re-enabled by
> netconsole. That is why we don't 'up' the interface here explicitly.

OK, that's what I thought when I looked at the previous commit of this
series, but it was still feeling "strange" :)

> The problem is that the test has an implict dependency on interface mac address
> changing when we recreate them, which is why we have to do this whole down/update/rename
> flow to trigger the reactivation in this case.

OK!

>> If I add 'up' at the end of this last line here, or if I remove the
>> whole if-statement block, the test passes.
> 
> For cases where the mac is persistent (e.g with systemd MACAddressPolicy=persistent),
> the actual re-enablement should "just work", which I suspect is why it works when
> you remove the whole if-statement block.

I see, I just noticed the discussion on lore about that on the previous
patch and on the v10. I now understand why MACAddressPolicy should be
set to 'none', and I can do that on my side.

> I think to make the test more robust to such scenarios, we should skip the
> if-statement block when we detect that the interface came back with the same mac
> as previously. Something like this:
> 
> if [ "${BINDMODE}" == "mac" ]; then
> 	CURR_SRCMAC=$(mac_get "${SRCIF}")
> 	if [ "${CURR_SRCMAC}" == "${SAVED_SRCMAC}" ]; then
> 		# Interface came back with same mac, no need to restore
> 		return
> 	fi
> 	ip link set dev "${SRCIF}" down
> 	ip link set dev "${SRCIF}" address "${SAVED_SRCMAC}"
> 	# Rename device in order to trigger target resume, as initial
> 	# when device was recreated it didn't have correct mac address.
> 	ip link set dev "${SRCIF}" name "${TARGET}"
> fi
> 
> Could you confirm if this fixes the selftest in your environment?

Yes, it fixes the selftest (without MACAddressPolicy=none), thank you!

And maybe this could be used to avoid the 'return':

  if [ "${BINDMODE}" == "mac" ] &&
     [ "$(mac_get "${SRCIF}")" != "${SAVED_SRCMAC}" ]; then

A detail, up to you :)

I think it would be interesting to have such check. If the MAC policy
can cause issues here, it might be good to also add a warning, or to
continue to fail, but with an explicit error message to look at this.

>>> +	echo "Running with bind mode: ${BINDMODE}" >&2
>>> +	# Set current loglevel to KERN_INFO(6), and default to KERN_NOTICE(5)
>>> +	echo "6 5" > /proc/sys/kernel/printk
>>
>> Can we remove this? Without that, it is hard to understand what went
>> wrong in case of issues.
> 
> Can you elaborate? This is typical for netconsole tests and I think required to
> ensure the write will show up on netconsole. I'm not opposed to changing it if
> there is a reason, but we probably want to make it consistent with other tests too.

I understand, and I asked because I was not sure if this was needed for
some tests. If it doesn't break some tests, I think it would be good not
to change the loglevel, because on my side, all I had was:

  # Running with bind mode: mac
  not ok 1 selftests: drivers/net: netcons_resume.sh # exit=1

Even with the suggested modification to have "FAIL: File was not
generated.", that's not helpful enough to understand where the problem
came from. Having the extra info in the console was really helpful, but
it was not obvious I could do that.

There could be a message saying "comment this to have more debug", but
that means a CI will not get such useful debug info in case of error. So
I think this behaviour should be changed. Or at least printing debug
info only in case of errors.

>>> +	# Send the message
>>> +	echo "${MSG}: ${TARGET}" > /dev/kmsg
>>> +	# Wait until socat saves the file to disk
>>> +	busywait "${BUSYWAIT_TIMEOUT}" test -s "${OUTPUT_FILE}"
>>
>> In my case, the script was stopping here, without any message. I can
>> send a patch adding "|| true" to go to the next instruction, and display
>> "FAIL: File was not generated.".
>>
> 
> This seems reasonable to me.

Good! I will send this patch.

Just to avoid a deadlock, do you plan to send one to handle the MAC
address that has not been modified (and eventually one to get more debug
messages in case of errors)?

Cheers,
Matt

^ permalink raw reply

* Re: [PATCH net-next v2 0/8] netconsole: stop charging netpoll users for netconsole-only data
From: Paolo Abeni @ 2026-07-09 10:20 UTC (permalink / raw)
  To: Breno Leitao, David S. Miller, Eric Dumazet, Jakub Kicinski,
	Simon Horman, Andrew Lunn
  Cc: netdev, asantostc, gustavold, linux-kernel, kernel-team
In-Reply-To: <akuUkNgyjVOTHMuz@gmail.com>

On 7/6/26 1:55 PM, Breno Leitao wrote:
> On Thu, Jul 02, 2026 at 05:19:44AM -0700, Breno Leitao wrote:
>> This work continue to untangle netconsole and netpoll, improving
>> memory usage for netpoll users that are not netconsole.
> 
> Quick follow up on the sashiko findings. most of them are assuming that
> netconsole_write is called locklelly, which is not the case, except
> on panic (CON_NBCON_ATOMIC_UNSAFE). 
> 
> 
> There are in order as they appear in
> https://sashiko.dev/#/patchset/20260702-netconsole_move_more-v2-0-1ebedd921dcb%40debian.org
> 
> Tl;DR: There are two pre-existing issue that I will get fixed, but
> I don't think they are blockers for this series (IMO).
> 
> Details of the findings and analyzes:
> 
> 1) This isn't a bug introduced by this patch, but is it safe to modify
>    target_list using standard list primitives while netconsole_write()
>    iterates over it locklessly?
> 
> netconsole_write() is never called without the lock, unless on
> emergency, which is known to be unsafe (CON_NBCON_ATOMIC_UNSAFE).
> 
> Sashiko doesn't undersatnd that nbcon .device_lock
> (netconsole_device_lock), is called before netconsole_write
> 
> 2) This is a pre-existing issue, but I noticed a potential race
>    condition between netdevice events and configfs rmdir that skips
>    cleanup. If netconsole_netdev_event() processes NETDEV_RELEASE or
>    NETDEV_JOIN, it sets nt->state = STATE_DISABLED and moves the target
>    to target_cleanup_list:
> 
> This is a pre-existing issue, and I am happy to fix in here or as
> a follow-up
> 
> 
> 3) This isn't a bug introduced by this patch, but I found a potential
>    lockless iteration race in netconsole_write() in this file.
> 
> Again, netconsole_write() is not called locklelssly. 
> 
> 
> 4) This is a pre-existing issue, but does lockless iteration of
>    target_list in netconsole_write() race with non-RCU list
>    modifications?
> 
> Same as above.
> 
> 5) This is a pre-existing issue, but is there a race condition between
>    interface disablement and configfs removal that skips cleanup?
> 
> This is a pre-existing issue, and I am happy to fix in here or as
> a follow-up.
> 
> 6) This is a pre-existing issue, but does skb_dequeue() acquire
>    a spinlock_t in NMI contexts?
> 
> netconsole is not used on NMI contexts, unless on emergency
> (CON_NBCON_ATOMIC_UNSAFE).
> 
> 7) When netconsole_write() is called as an atomic console callback, it
>    iterates target_list locklessly. Concurrently, if a privileged user
>    removes the target via configfs:
> 
> netconsole_write() is only called on atomic context on emergencies.
> There is no conflict with configfs.
> 
> 8) This isn't a bug introduced by this patch, but could the lockless
>    iteration of target_list in netconsole_write() race with list
>    removal? In drivers/net/netconsole.c:netconsole_write():
> 
> Same as above, netconsole_write() are not called locklessly except on
> ops.
I think you forgot the following comment, which is BTW the only not
clearly marked as a pre-existing one.

Still looks like a pre-existing problem to me.

---
> @@ -335,17 +340,15 @@ static void refill_skbs_work_handler(struct work_struct *work)
>  static void netconsole_skb_pool_init(struct netconsole_target *nt)
>  {
> -	skb_queue_head_init(&nt->np.skb_pool);
> -	INIT_WORK(&nt->np.refill_wq, refill_skbs_work_handler);
> -	refill_skbs(&nt->np);
> +	skb_queue_head_init(&nt->skb_pool);
> +	INIT_WORK(&nt->refill_wq, refill_skbs_work_handler);
> +	refill_skbs(nt);
>  }
Can this race with target teardown?
If a network device linked to a deactivated target is unregistered, it queues
the target on target_cleanup_list and schedules
netconsole_process_cleanups_core(), which executes netconsole_skb_pool_flush()
under rtnl_lock.
---


^ permalink raw reply

* Re: [PATCH net-next v2 0/8] netconsole: stop charging netpoll users for netconsole-only data
From: Simon Horman @ 2026-07-09 10:19 UTC (permalink / raw)
  To: Breno Leitao
  Cc: David S. Miller, Eric Dumazet, Jakub Kicinski, Paolo Abeni,
	Andrew Lunn, netdev, asantostc, gustavold, linux-kernel,
	kernel-team
In-Reply-To: <akuUkNgyjVOTHMuz@gmail.com>

On Mon, Jul 06, 2026 at 04:55:35AM -0700, Breno Leitao wrote:
> On Thu, Jul 02, 2026 at 05:19:44AM -0700, Breno Leitao wrote:
> > This work continue to untangle netconsole and netpoll, improving
> > memory usage for netpoll users that are not netconsole.
> 
> Quick follow up on the sashiko findings. most of them are assuming that
> netconsole_write is called locklelly, which is not the case, except
> on panic (CON_NBCON_ATOMIC_UNSAFE). 
> 
> 
> There are in order as they appear in
> https://sashiko.dev/#/patchset/20260702-netconsole_move_more-v2-0-1ebedd921dcb%40debian.org
> 
> Tl;DR: There are two pre-existing issue that I will get fixed, but
> I don't think they are blockers for this series (IMO).

Thanks, I agree.

For the series:

Reviewed-by: Simon Horman <horms@kernel.org>

I did notice that patch 2/8 now applies with some fuzz, which trips up git am.
You may want to consider a rebase.

^ permalink raw reply

* [PATCH] wifi: brcmfmac: drain bus_reset work on device removal
From: Fan Wu @ 2026-07-09 10:16 UTC (permalink / raw)
  To: Arend van Spriel, Kalle Valo
  Cc: Franky Lin, Hante Meuleman, Chi-Hsien Lin, Wright Feng,
	Chung-Hsien Hsu, David S . Miller, Jakub Kicinski, linux-wireless,
	brcm80211-dev-list.pdl, SHA-cyfmac-dev-list, netdev, linux-kernel,
	Fan Wu, stable

brcmf_fw_crashed() and the debugfs "reset" entry both schedule
drvr->bus_reset, whose callback recovers drvr through container_of()
and dereferences it.  The teardown paths free drvr (brcmf_free ->
wiphy_free) without draining the work, so a bus_reset callback pending
or running during removal can outlive drvr.

Cancellation cannot live in brcmf_detach() or brcmf_free(): the work
callback reaches teardown through the bus .reset op (PCIe
brcmf_pcie_reset -> brcmf_detach; SDIO brcmf_sdio_bus_reset ->
brcmf_sdiod_remove -> brcmf_free), so cancelling there would wait for
the running work and deadlock.  Arming and the drain must also be
mutually exclusive: a debugfs writer can otherwise schedule bus_reset
after the drain and before the debugfs file is removed in
brcmf_cfg80211_detach(), re-opening the window.

Add a per-bus mutex and route all arming through
brcmf_bus_schedule_reset(), which under the lock skips when the bus is
marked removing.  Each bus remove entry calls
brcmf_bus_cancel_reset_work(), which under the same lock sets removing
and cancels the work.  Where applicable the remove entry first stops
the firmware-crash producer: on PCIe mask the mailbox and
synchronize_irq; on SDIO unregister the bus interrupt and cancel the
data worker, which also reports firmware halts through
brcmf_fw_crashed().  The mutex is initialized at bus allocation so it
is ready before any firmware-probe or removal path can reach it.  The
SDIO suspend power-off path frees drvr through the same
brcmf_sdiod_remove() and takes the same lock; resume re-allows the work
only on a successful re-probe.

This issue was found by an in-house static analysis tool.

Fixes: 4684997d9eea ("brcmfmac: reset PCIe bus on a firmware crash")
Cc: stable@vger.kernel.org
Signed-off-by: Fan Wu <fanwu01@zju.edu.cn>
Assisted-by: Codex:gpt-5.5
---
 .../broadcom/brcm80211/brcmfmac/bcmsdh.c      | 13 ++++++++
 .../broadcom/brcm80211/brcmfmac/bus.h         |  6 ++++
 .../broadcom/brcm80211/brcmfmac/core.c        | 33 +++++++++++++++++--
 .../broadcom/brcm80211/brcmfmac/pcie.c        |  6 ++++
 .../broadcom/brcm80211/brcmfmac/sdio.c        |  6 ++++
 .../broadcom/brcm80211/brcmfmac/sdio.h        |  1 +
 .../broadcom/brcm80211/brcmfmac/usb.c         |  3 ++
 7 files changed, 66 insertions(+), 2 deletions(-)

diff --git a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/bcmsdh.c b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/bcmsdh.c
index ac02244a6..c4bb32aec 100644
--- a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/bcmsdh.c
+++ b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/bcmsdh.c
@@ -1043,6 +1043,7 @@ static int brcmf_ops_sdio_probe(struct sdio_func *func,
 	bus_if = kzalloc(sizeof(struct brcmf_bus), GFP_KERNEL);
 	if (!bus_if)
 		return -ENOMEM;
+	mutex_init(&bus_if->bus_reset_lock);
 	sdiodev = kzalloc(sizeof(struct brcmf_sdio_dev), GFP_KERNEL);
 	if (!sdiodev) {
 		kfree(bus_if);
@@ -1102,6 +1103,14 @@ static void brcmf_ops_sdio_remove(struct sdio_func *func)
 		if (func->num != 1)
 			return;
 
+		/* Drain bus_reset before the shared brcmf_sdiod_remove()
+		 * teardown, which the SDIO reset callback also reaches.  The
+		 * data worker can arm bus_reset via brcmf_fw_crashed(); cancel
+		 * it first.
+		 */
+		brcmf_sdio_cancel_datawork(sdiodev->bus);
+		brcmf_bus_cancel_reset_work(bus_if);
+
 		/* only proceed with rest of cleanup if func 1 */
 		brcmf_sdiod_remove(sdiodev);
 
@@ -1163,6 +1172,8 @@ static int brcmf_ops_sdio_suspend(struct device *dev)
 	} else {
 		/* power will be cut so remove device, probe again in resume */
 		brcmf_sdiod_intr_unregister(sdiodev);
+		brcmf_sdio_cancel_datawork(sdiodev->bus);
+		brcmf_bus_cancel_reset_work(bus_if);
 		ret = brcmf_sdiod_remove(sdiodev);
 		if (ret)
 			brcmf_err("Failed to remove device on suspend\n");
@@ -1188,6 +1199,8 @@ static int brcmf_ops_sdio_resume(struct device *dev)
 		ret = brcmf_sdiod_probe(sdiodev);
 		if (ret)
 			brcmf_err("Failed to probe device on resume\n");
+		else
+			brcmf_bus_allow_reset_work(bus_if);
 	} else {
 		if (sdiodev->wowl_enabled &&
 		    sdiodev->settings->bus.sdio.oob_irq_supported)
diff --git a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/bus.h b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/bus.h
index 3f5da3bb6..b606094af 100644
--- a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/bus.h
+++ b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/bus.h
@@ -6,6 +6,7 @@
 #ifndef BRCMFMAC_BUS_H
 #define BRCMFMAC_BUS_H
 
+#include <linux/mutex.h>
 #include "debug.h"
 
 /* IDs of the 6 default common rings of msgbuf protocol */
@@ -149,11 +150,16 @@ struct brcmf_bus {
 	u32 chiprev;
 	bool always_use_fws_queue;
 	bool wowl_supported;
+	bool removing;		/* device removal in progress; quiesce async work */
+	struct mutex bus_reset_lock;
 
 	const struct brcmf_bus_ops *ops;
 	struct brcmf_bus_msgbuf *msgbuf;
 };
 
+void brcmf_bus_cancel_reset_work(struct brcmf_bus *bus_if);
+void brcmf_bus_allow_reset_work(struct brcmf_bus *bus_if);
+
 /*
  * callback wrappers
  */
diff --git a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/core.c b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/core.c
index fed9cd5f2..b934feb9b 100644
--- a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/core.c
+++ b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/core.c
@@ -1164,6 +1164,35 @@ static int brcmf_revinfo_read(struct seq_file *s, void *data)
 	return 0;
 }
 
+/* Serialize bus_reset arming (debugfs reset write, brcmf_fw_crashed) against the
+ * teardown drain: the remove path takes bus_reset_lock, sets ->removing and cancels
+ * the work under it, so a racing armer either schedules before the cancel (and is
+ * drained) or observes ->removing and desists.
+ */
+static void brcmf_bus_schedule_reset(struct brcmf_bus *bus_if)
+{
+	mutex_lock(&bus_if->bus_reset_lock);
+	if (bus_if->drvr && bus_if->drvr->bus_reset.func && !bus_if->removing)
+		schedule_work(&bus_if->drvr->bus_reset);
+	mutex_unlock(&bus_if->bus_reset_lock);
+}
+
+void brcmf_bus_cancel_reset_work(struct brcmf_bus *bus_if)
+{
+	mutex_lock(&bus_if->bus_reset_lock);
+	bus_if->removing = true;
+	if (bus_if->drvr)
+		cancel_work_sync(&bus_if->drvr->bus_reset);
+	mutex_unlock(&bus_if->bus_reset_lock);
+}
+
+void brcmf_bus_allow_reset_work(struct brcmf_bus *bus_if)
+{
+	mutex_lock(&bus_if->bus_reset_lock);
+	bus_if->removing = false;
+	mutex_unlock(&bus_if->bus_reset_lock);
+}
+
 static void brcmf_core_bus_reset(struct work_struct *work)
 {
 	struct brcmf_pub *drvr = container_of(work, struct brcmf_pub,
@@ -1184,7 +1213,7 @@ static ssize_t bus_reset_write(struct file *file, const char __user *user_buf,
 	if (value != 1)
 		return -EINVAL;
 
-	schedule_work(&drvr->bus_reset);
+	brcmf_bus_schedule_reset(drvr->bus_if);
 
 	return count;
 }
@@ -1408,7 +1437,7 @@ void brcmf_fw_crashed(struct device *dev)
 
 	brcmf_dev_coredump(dev);
 
-	schedule_work(&drvr->bus_reset);
+	brcmf_bus_schedule_reset(bus_if);
 }
 
 void brcmf_detach(struct device *dev)
diff --git a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/pcie.c b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/pcie.c
index 8b149996f..3c6775166 100644
--- a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/pcie.c
+++ b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/pcie.c
@@ -1914,6 +1914,7 @@ brcmf_pcie_probe(struct pci_dev *pdev, const struct pci_device_id *id)
 		ret = -ENOMEM;
 		goto fail;
 	}
+	mutex_init(&bus->bus_reset_lock);
 	bus->msgbuf = kzalloc(sizeof(*bus->msgbuf), GFP_KERNEL);
 	if (!bus->msgbuf) {
 		ret = -ENOMEM;
@@ -1985,6 +1986,11 @@ brcmf_pcie_remove(struct pci_dev *pdev)
 	if (devinfo->ci)
 		brcmf_pcie_intr_disable(devinfo);
 
+	if (devinfo->irq_allocated)
+		synchronize_irq(pdev->irq);
+
+	brcmf_bus_cancel_reset_work(bus);
+
 	brcmf_detach(&pdev->dev);
 	brcmf_free(&pdev->dev);
 
diff --git a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/sdio.c b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/sdio.c
index 8effeb7a7..31e37b0d4 100644
--- a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/sdio.c
+++ b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/sdio.c
@@ -4541,6 +4541,12 @@ struct brcmf_sdio *brcmf_sdio_probe(struct brcmf_sdio_dev *sdiodev)
 	return NULL;
 }
 
+void brcmf_sdio_cancel_datawork(struct brcmf_sdio *bus)
+{
+	if (bus)
+		cancel_work_sync(&bus->datawork);
+}
+
 /* Detach and free everything */
 void brcmf_sdio_remove(struct brcmf_sdio *bus)
 {
diff --git a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/sdio.h b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/sdio.h
index 15d2c02fa..3c68ebf8e 100644
--- a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/sdio.h
+++ b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/sdio.h
@@ -373,6 +373,7 @@ int brcmf_sdiod_remove(struct brcmf_sdio_dev *sdiodev);
 struct brcmf_sdio *brcmf_sdio_probe(struct brcmf_sdio_dev *sdiodev);
 void brcmf_sdio_remove(struct brcmf_sdio *bus);
 void brcmf_sdio_isr(struct brcmf_sdio *bus, bool in_isr);
+void brcmf_sdio_cancel_datawork(struct brcmf_sdio *bus);
 
 void brcmf_sdio_wd_timer(struct brcmf_sdio *bus, bool active);
 void brcmf_sdio_wowl_config(struct device *dev, bool enabled);
diff --git a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/usb.c b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/usb.c
index 9fb68c2dc..97d65ba36 100644
--- a/drivers/net/wireless/broadcom/brcm80211/brcmfmac/usb.c
+++ b/drivers/net/wireless/broadcom/brcm80211/brcmfmac/usb.c
@@ -1271,6 +1271,7 @@ static int brcmf_usb_probe_cb(struct brcmf_usbdev_info *devinfo)
 		ret = -ENOMEM;
 		goto fail;
 	}
+	mutex_init(&bus->bus_reset_lock);
 
 	bus->dev = dev;
 	bus_pub->bus = bus;
@@ -1336,6 +1337,8 @@ brcmf_usb_disconnect_cb(struct brcmf_usbdev_info *devinfo)
 		return;
 	brcmf_dbg(USB, "Enter, bus_pub %p\n", devinfo);
 
+	brcmf_bus_cancel_reset_work(devinfo->bus_pub.bus);
+
 	brcmf_detach(devinfo->dev);
 	brcmf_free(devinfo->dev);
 	kfree(devinfo->bus_pub.bus);
-- 
2.34.1


^ permalink raw reply related

* Please backport bridge multicast exponential field encoding fix series to 6.1.y/6.6.y/6.12.y/6.18.y/7.0.y
From: Ujjal Roy @ 2026-07-09 10:13 UTC (permalink / raw)
  To: Linux Stable, Greg KH, Greg Kroah-Hartman, David S . Miller,
	Eric Dumazet, Jakub Kicinski, Paolo Abeni, Simon Horman,
	Nikolay Aleksandrov, Ido Schimmel, David Ahern, Shuah Khan,
	Andy Roulin, Yong Wang, Petr Machata
  Cc: Ujjal Roy, bridge, netdev, linux-kernel, linux-kselftest

Hi Greg,

Please consider backporting the following bridge multicast fix series to 6.1.y, 6.6.y, 6.12.y, 6.18.y and 7.0.y.

726fa7da2d8c ("ipv4: igmp: get rid of IGMPV3_{QQIC,MRC} and simplify calculation")
12cfb4ecc471 ("ipv6: mld: rename mldv2_mrc() and add mldv2_qqi()")
95bfd196f0dc ("ipv4: igmp: encode multicast exponential fields")
e51560f4220a ("ipv6: mld: encode multicast exponential fields")
529dbe762de0 ("selftests: net: bridge: add MRC and QQIC field encoding tests")

This series was merged via: db314398f618 ("net: bridge: mcast: support
exponential field encoding")

I checked that the above upstream commits cherry-picked cleanly onto the following stable branches:

linux-7.0.y
linux-6.18.y
linux-6.12.y
linux-6.6.y
linux-6.1.y

Thanks,
Ujjal

^ permalink raw reply


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