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* [PATCH v6 17/17] ASoC: cs47l90: Add codec driver for Cirrus Logic CS47L90
From: Richard Fitzgerald @ 2017-11-23 17:13 UTC (permalink / raw)
  To: lee.jones, broonie, linus.walleij, gnurou, robh+dt, tglx, jason
  Cc: alsa-devel, patches, linux-gpio, devicetree, linux-kernel,
	Richard Fitzgerald, Nikesh Oswal, Charles Keepax
In-Reply-To: <20171123171316.10868-1-rf@opensource.wolfsonmicro.com>

Adds the codec driver for the CS47L90 SmartCodec. This is a
multi-functional codec based on the Cirrus Logic Madera platform.

Signed-off-by: Nikesh Oswal <nikesh@opensource.wolfsonmicro.com>
Signed-off-by: Charles Keepax <ckeepax@opensource.wolfsonmicro.com>
Signed-off-by: Richard Fitzgerald <rf@opensource.wolfsonmicro.com>
---
 sound/soc/codecs/Kconfig   |    6 +
 sound/soc/codecs/Makefile  |    2 +
 sound/soc/codecs/cs47l90.c | 2661 ++++++++++++++++++++++++++++++++++++++++++++
 3 files changed, 2669 insertions(+)
 create mode 100644 sound/soc/codecs/cs47l90.c

diff --git a/sound/soc/codecs/Kconfig b/sound/soc/codecs/Kconfig
index 164666cf3957..5da9c109c76d 100644
--- a/sound/soc/codecs/Kconfig
+++ b/sound/soc/codecs/Kconfig
@@ -65,6 +65,7 @@ config SND_SOC_ALL_CODECS
 	select SND_SOC_CS47L24 if MFD_CS47L24
 	select SND_SOC_CS47L35 if MFD_CS47L35
 	select SND_SOC_CS47L85 if MFD_CS47L85
+	select SND_SOC_CS47L90 if MFD_CS47L90
 	select SND_SOC_CS53L30 if I2C
 	select SND_SOC_CX20442 if TTY
 	select SND_SOC_DA7210 if SND_SOC_I2C_AND_SPI
@@ -512,6 +513,9 @@ config SND_SOC_CS47L35
 config SND_SOC_CS47L85
 	tristate
 
+config SND_SOC_CS47L90
+	tristate
+
 # Cirrus Logic Quad-Channel ADC
 config SND_SOC_CS53L30
 	tristate "Cirrus Logic CS53L30 CODEC"
@@ -605,8 +609,10 @@ config SND_SOC_MADERA
 	tristate
 	default y if SND_SOC_CS47L35=y
 	default y if SND_SOC_CS47L85=y
+	default y if SND_SOC_CS47L90=y
 	default m if SND_SOC_CS47L35=m
 	default m if SND_SOC_CS47L85=m
+	default m if SND_SOC_CS47L90=m
 
 config SND_SOC_MAX98088
        tristate
diff --git a/sound/soc/codecs/Makefile b/sound/soc/codecs/Makefile
index 122f6d004b20..12265d243405 100644
--- a/sound/soc/codecs/Makefile
+++ b/sound/soc/codecs/Makefile
@@ -59,6 +59,7 @@ snd-soc-cs4349-objs := cs4349.o
 snd-soc-cs47l24-objs := cs47l24.o
 snd-soc-cs47l35-objs := cs47l35.o
 snd-soc-cs47l85-objs := cs47l85.o
+snd-soc-cs47l90-objs := cs47l90.o
 snd-soc-cs53l30-objs := cs53l30.o
 snd-soc-cx20442-objs := cx20442.o
 snd-soc-da7210-objs := da7210.o
@@ -302,6 +303,7 @@ obj-$(CONFIG_SND_SOC_CS4349)	+= snd-soc-cs4349.o
 obj-$(CONFIG_SND_SOC_CS47L24)	+= snd-soc-cs47l24.o
 obj-$(CONFIG_SND_SOC_CS47L35)	+= snd-soc-cs47l35.o
 obj-$(CONFIG_SND_SOC_CS47L85)	+= snd-soc-cs47l85.o
+obj-$(CONFIG_SND_SOC_CS47L90)	+= snd-soc-cs47l90.o
 obj-$(CONFIG_SND_SOC_CS53L30)	+= snd-soc-cs53l30.o
 obj-$(CONFIG_SND_SOC_CX20442)	+= snd-soc-cx20442.o
 obj-$(CONFIG_SND_SOC_DA7210)	+= snd-soc-da7210.o
diff --git a/sound/soc/codecs/cs47l90.c b/sound/soc/codecs/cs47l90.c
new file mode 100644
index 000000000000..4e610348d8eb
--- /dev/null
+++ b/sound/soc/codecs/cs47l90.c
@@ -0,0 +1,2661 @@
+/*
+ * cs47l90.c  --  ALSA SoC Audio driver for CS47L90 codecs
+ *
+ * Copyright 2015-2017 Cirrus Logic
+ *
+ * Author: Nikesh Oswal <nikesh@opensource.wolfsonmicro.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License version 2 as
+ * published by the Free Software Foundation.
+ */
+
+#include <linux/module.h>
+#include <linux/moduleparam.h>
+#include <linux/device.h>
+#include <linux/delay.h>
+#include <linux/init.h>
+#include <linux/pm.h>
+#include <linux/pm_runtime.h>
+#include <linux/regmap.h>
+#include <sound/core.h>
+#include <sound/pcm.h>
+#include <sound/pcm_params.h>
+#include <sound/soc.h>
+#include <sound/tlv.h>
+
+#include <linux/mfd/madera/core.h>
+#include <linux/mfd/madera/registers.h>
+
+#include "madera.h"
+#include "wm_adsp.h"
+
+#define CS47L90_NUM_ADSP	7
+#define CS47L90_MONO_OUTPUTS	3
+
+struct cs47l90 {
+	struct madera_priv core;
+	struct madera_fll fll[3];
+};
+
+static const struct wm_adsp_region cs47l90_dsp1_regions[] = {
+	{ .type = WMFW_ADSP2_PM, .base = 0x080000 },
+	{ .type = WMFW_ADSP2_ZM, .base = 0x0e0000 },
+	{ .type = WMFW_ADSP2_XM, .base = 0x0a0000 },
+	{ .type = WMFW_ADSP2_YM, .base = 0x0c0000 },
+};
+
+static const struct wm_adsp_region cs47l90_dsp2_regions[] = {
+	{ .type = WMFW_ADSP2_PM, .base = 0x100000 },
+	{ .type = WMFW_ADSP2_ZM, .base = 0x160000 },
+	{ .type = WMFW_ADSP2_XM, .base = 0x120000 },
+	{ .type = WMFW_ADSP2_YM, .base = 0x140000 },
+};
+
+static const struct wm_adsp_region cs47l90_dsp3_regions[] = {
+	{ .type = WMFW_ADSP2_PM, .base = 0x180000 },
+	{ .type = WMFW_ADSP2_ZM, .base = 0x1e0000 },
+	{ .type = WMFW_ADSP2_XM, .base = 0x1a0000 },
+	{ .type = WMFW_ADSP2_YM, .base = 0x1c0000 },
+};
+
+static const struct wm_adsp_region cs47l90_dsp4_regions[] = {
+	{ .type = WMFW_ADSP2_PM, .base = 0x200000 },
+	{ .type = WMFW_ADSP2_ZM, .base = 0x260000 },
+	{ .type = WMFW_ADSP2_XM, .base = 0x220000 },
+	{ .type = WMFW_ADSP2_YM, .base = 0x240000 },
+};
+
+static const struct wm_adsp_region cs47l90_dsp5_regions[] = {
+	{ .type = WMFW_ADSP2_PM, .base = 0x280000 },
+	{ .type = WMFW_ADSP2_ZM, .base = 0x2e0000 },
+	{ .type = WMFW_ADSP2_XM, .base = 0x2a0000 },
+	{ .type = WMFW_ADSP2_YM, .base = 0x2c0000 },
+};
+
+static const struct wm_adsp_region cs47l90_dsp6_regions[] = {
+	{ .type = WMFW_ADSP2_PM, .base = 0x300000 },
+	{ .type = WMFW_ADSP2_ZM, .base = 0x360000 },
+	{ .type = WMFW_ADSP2_XM, .base = 0x320000 },
+	{ .type = WMFW_ADSP2_YM, .base = 0x340000 },
+};
+
+static const struct wm_adsp_region cs47l90_dsp7_regions[] = {
+	{ .type = WMFW_ADSP2_PM, .base = 0x380000 },
+	{ .type = WMFW_ADSP2_ZM, .base = 0x3e0000 },
+	{ .type = WMFW_ADSP2_XM, .base = 0x3a0000 },
+	{ .type = WMFW_ADSP2_YM, .base = 0x3c0000 },
+};
+
+static const struct wm_adsp_region *cs47l90_dsp_regions[] = {
+	cs47l90_dsp1_regions,
+	cs47l90_dsp2_regions,
+	cs47l90_dsp3_regions,
+	cs47l90_dsp4_regions,
+	cs47l90_dsp5_regions,
+	cs47l90_dsp6_regions,
+	cs47l90_dsp7_regions,
+};
+
+static const int cs47l90_dsp_control_bases[] = {
+	MADERA_DSP1_CONFIG_1,
+	MADERA_DSP2_CONFIG_1,
+	MADERA_DSP3_CONFIG_1,
+	MADERA_DSP4_CONFIG_1,
+	MADERA_DSP5_CONFIG_1,
+	MADERA_DSP6_CONFIG_1,
+	MADERA_DSP7_CONFIG_1,
+};
+
+static int cs47l90_adsp_power_ev(struct snd_soc_dapm_widget *w,
+				 struct snd_kcontrol *kcontrol,
+				 int event)
+{
+	struct snd_soc_codec *codec = snd_soc_dapm_to_codec(w->dapm);
+	struct cs47l90 *cs47l90 = snd_soc_codec_get_drvdata(codec);
+	struct madera_priv *priv = &cs47l90->core;
+	struct madera *madera = priv->madera;
+	unsigned int freq;
+	int ret;
+
+	ret = regmap_read(madera->regmap, MADERA_DSP_CLOCK_2, &freq);
+	if (ret != 0) {
+		dev_err(madera->dev,
+			"Failed to read MADERA_DSP_CLOCK_2: %d\n", ret);
+		return ret;
+	}
+
+	switch (event) {
+	case SND_SOC_DAPM_PRE_PMU:
+		ret = madera_set_adsp_clk(&cs47l90->core, w->shift, freq);
+		if (ret)
+			return ret;
+		break;
+	default:
+		break;
+	}
+
+	return wm_adsp2_early_event(w, kcontrol, event, freq);
+}
+
+#define CS47L90_NG_SRC(name, base) \
+	SOC_SINGLE(name " NG HPOUT1L Switch",  base,  0, 1, 0), \
+	SOC_SINGLE(name " NG HPOUT1R Switch",  base,  1, 1, 0), \
+	SOC_SINGLE(name " NG HPOUT2L Switch",  base,  2, 1, 0), \
+	SOC_SINGLE(name " NG HPOUT2R Switch",  base,  3, 1, 0), \
+	SOC_SINGLE(name " NG HPOUT3L Switch",  base,  4, 1, 0), \
+	SOC_SINGLE(name " NG HPOUT3R Switch",  base,  5, 1, 0), \
+	SOC_SINGLE(name " NG SPKDAT1L Switch", base,  8, 1, 0), \
+	SOC_SINGLE(name " NG SPKDAT1R Switch", base,  9, 1, 0)
+
+#define CS47L90_RXANC_INPUT_ROUTES(widget, name) \
+	{ widget, NULL, name " NG Mux" }, \
+	{ name " NG Internal", NULL, "RXANC NG Clock" }, \
+	{ name " NG Internal", NULL, name " Channel" }, \
+	{ name " NG External", NULL, "RXANC NG External Clock" }, \
+	{ name " NG External", NULL, name " Channel" }, \
+	{ name " NG Mux", "None", name " Channel" }, \
+	{ name " NG Mux", "Internal", name " NG Internal" }, \
+	{ name " NG Mux", "External", name " NG External" }, \
+	{ name " Channel", "Left", name " Left Input" }, \
+	{ name " Channel", "Combine", name " Left Input" }, \
+	{ name " Channel", "Right", name " Right Input" }, \
+	{ name " Channel", "Combine", name " Right Input" }, \
+	{ name " Left Input", "IN1", "IN1L PGA" }, \
+	{ name " Right Input", "IN1", "IN1R PGA" }, \
+	{ name " Left Input", "IN2", "IN2L PGA" }, \
+	{ name " Right Input", "IN2", "IN2R PGA" }, \
+	{ name " Left Input", "IN3", "IN3L PGA" }, \
+	{ name " Right Input", "IN3", "IN3R PGA" }, \
+	{ name " Left Input", "IN4", "IN4L PGA" }, \
+	{ name " Right Input", "IN4", "IN4R PGA" }, \
+	{ name " Left Input", "IN5", "IN5L PGA" }, \
+	{ name " Right Input", "IN5", "IN5R PGA" }
+
+#define CS47L90_RXANC_OUTPUT_ROUTES(widget, name) \
+	{ widget, NULL, name " ANC Source" }, \
+	{ name " ANC Source", "RXANCL", "RXANCL" }, \
+	{ name " ANC Source", "RXANCR", "RXANCR" }
+
+static const struct snd_kcontrol_new cs47l90_snd_controls[] = {
+SOC_ENUM("IN1 OSR", madera_in_dmic_osr[0]),
+SOC_ENUM("IN2 OSR", madera_in_dmic_osr[1]),
+SOC_ENUM("IN3 OSR", madera_in_dmic_osr[2]),
+SOC_ENUM("IN4 OSR", madera_in_dmic_osr[3]),
+SOC_ENUM("IN5 OSR", madera_in_dmic_osr[4]),
+
+SOC_SINGLE_RANGE_TLV("IN1L Volume", MADERA_IN1L_CONTROL,
+		     MADERA_IN1L_PGA_VOL_SHIFT, 0x40, 0x5f, 0, madera_ana_tlv),
+SOC_SINGLE_RANGE_TLV("IN1R Volume", MADERA_IN1R_CONTROL,
+		     MADERA_IN1R_PGA_VOL_SHIFT, 0x40, 0x5f, 0, madera_ana_tlv),
+SOC_SINGLE_RANGE_TLV("IN2L Volume", MADERA_IN2L_CONTROL,
+		     MADERA_IN2L_PGA_VOL_SHIFT, 0x40, 0x5f, 0, madera_ana_tlv),
+SOC_SINGLE_RANGE_TLV("IN2R Volume", MADERA_IN2R_CONTROL,
+		     MADERA_IN2R_PGA_VOL_SHIFT, 0x40, 0x5f, 0, madera_ana_tlv),
+
+SOC_ENUM("IN HPF Cutoff Frequency", madera_in_hpf_cut_enum),
+
+SOC_SINGLE_EXT("IN1L LP Switch", MADERA_ADC_DIGITAL_VOLUME_1L,
+		MADERA_IN1L_LP_MODE_SHIFT, 1, 0,
+		snd_soc_get_volsw, madera_lp_mode_put),
+SOC_SINGLE_EXT("IN1R LP Switch", MADERA_ADC_DIGITAL_VOLUME_1R,
+		MADERA_IN1R_LP_MODE_SHIFT, 1, 0,
+		snd_soc_get_volsw, madera_lp_mode_put),
+SOC_SINGLE_EXT("IN2L LP Switch", MADERA_ADC_DIGITAL_VOLUME_2L,
+		MADERA_IN2L_LP_MODE_SHIFT, 1, 0,
+		snd_soc_get_volsw, madera_lp_mode_put),
+SOC_SINGLE_EXT("IN2R LP Switch", MADERA_ADC_DIGITAL_VOLUME_2R,
+		MADERA_IN2R_LP_MODE_SHIFT, 1, 0,
+		snd_soc_get_volsw, madera_lp_mode_put),
+
+SOC_SINGLE("IN1L HPF Switch", MADERA_IN1L_CONTROL,
+	   MADERA_IN1L_HPF_SHIFT, 1, 0),
+SOC_SINGLE("IN1R HPF Switch", MADERA_IN1R_CONTROL,
+	   MADERA_IN1R_HPF_SHIFT, 1, 0),
+SOC_SINGLE("IN2L HPF Switch", MADERA_IN2L_CONTROL,
+	   MADERA_IN2L_HPF_SHIFT, 1, 0),
+SOC_SINGLE("IN2R HPF Switch", MADERA_IN2R_CONTROL,
+	   MADERA_IN2R_HPF_SHIFT, 1, 0),
+SOC_SINGLE("IN3L HPF Switch", MADERA_IN3L_CONTROL,
+	   MADERA_IN3L_HPF_SHIFT, 1, 0),
+SOC_SINGLE("IN3R HPF Switch", MADERA_IN3R_CONTROL,
+	   MADERA_IN3R_HPF_SHIFT, 1, 0),
+SOC_SINGLE("IN4L HPF Switch", MADERA_IN4L_CONTROL,
+	   MADERA_IN4L_HPF_SHIFT, 1, 0),
+SOC_SINGLE("IN4R HPF Switch", MADERA_IN4R_CONTROL,
+	   MADERA_IN4R_HPF_SHIFT, 1, 0),
+SOC_SINGLE("IN5L HPF Switch", MADERA_IN5L_CONTROL,
+	   MADERA_IN5L_HPF_SHIFT, 1, 0),
+SOC_SINGLE("IN5R HPF Switch", MADERA_IN5R_CONTROL,
+	   MADERA_IN5R_HPF_SHIFT, 1, 0),
+
+SOC_SINGLE_TLV("IN1L Digital Volume", MADERA_ADC_DIGITAL_VOLUME_1L,
+	       MADERA_IN1L_DIG_VOL_SHIFT, 0xbf, 0, madera_digital_tlv),
+SOC_SINGLE_TLV("IN1R Digital Volume", MADERA_ADC_DIGITAL_VOLUME_1R,
+	       MADERA_IN1R_DIG_VOL_SHIFT, 0xbf, 0, madera_digital_tlv),
+SOC_SINGLE_TLV("IN2L Digital Volume", MADERA_ADC_DIGITAL_VOLUME_2L,
+	       MADERA_IN2L_DIG_VOL_SHIFT, 0xbf, 0, madera_digital_tlv),
+SOC_SINGLE_TLV("IN2R Digital Volume", MADERA_ADC_DIGITAL_VOLUME_2R,
+	       MADERA_IN2R_DIG_VOL_SHIFT, 0xbf, 0, madera_digital_tlv),
+SOC_SINGLE_TLV("IN3L Digital Volume", MADERA_ADC_DIGITAL_VOLUME_3L,
+	       MADERA_IN3L_DIG_VOL_SHIFT, 0xbf, 0, madera_digital_tlv),
+SOC_SINGLE_TLV("IN3R Digital Volume", MADERA_ADC_DIGITAL_VOLUME_3R,
+	       MADERA_IN3R_DIG_VOL_SHIFT, 0xbf, 0, madera_digital_tlv),
+SOC_SINGLE_TLV("IN4L Digital Volume", MADERA_ADC_DIGITAL_VOLUME_4L,
+	       MADERA_IN4L_DIG_VOL_SHIFT, 0xbf, 0, madera_digital_tlv),
+SOC_SINGLE_TLV("IN4R Digital Volume", MADERA_ADC_DIGITAL_VOLUME_4R,
+	       MADERA_IN4R_DIG_VOL_SHIFT, 0xbf, 0, madera_digital_tlv),
+SOC_SINGLE_TLV("IN5L Digital Volume", MADERA_ADC_DIGITAL_VOLUME_5L,
+	       MADERA_IN5L_DIG_VOL_SHIFT, 0xbf, 0, madera_digital_tlv),
+SOC_SINGLE_TLV("IN5R Digital Volume", MADERA_ADC_DIGITAL_VOLUME_5R,
+	       MADERA_IN5R_DIG_VOL_SHIFT, 0xbf, 0, madera_digital_tlv),
+
+SOC_ENUM("Input Ramp Up", madera_in_vi_ramp),
+SOC_ENUM("Input Ramp Down", madera_in_vd_ramp),
+
+SND_SOC_BYTES("RXANC Coefficients", MADERA_ANC_COEFF_START,
+	      MADERA_ANC_COEFF_END - MADERA_ANC_COEFF_START + 1),
+SND_SOC_BYTES("RXANCL Config", MADERA_FCL_FILTER_CONTROL, 1),
+SND_SOC_BYTES("RXANCL Coefficients", MADERA_FCL_COEFF_START,
+	      MADERA_FCL_COEFF_END - MADERA_FCL_COEFF_START + 1),
+SND_SOC_BYTES("RXANCR Config", MADERA_FCR_FILTER_CONTROL, 1),
+SND_SOC_BYTES("RXANCR Coefficients", MADERA_FCR_COEFF_START,
+	      MADERA_FCR_COEFF_END - MADERA_FCR_COEFF_START + 1),
+
+MADERA_MIXER_CONTROLS("EQ1", MADERA_EQ1MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("EQ2", MADERA_EQ2MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("EQ3", MADERA_EQ3MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("EQ4", MADERA_EQ4MIX_INPUT_1_SOURCE),
+
+MADERA_EQ_CONTROL("EQ1 Coefficients", MADERA_EQ1_2),
+SOC_SINGLE_TLV("EQ1 B1 Volume", MADERA_EQ1_1, MADERA_EQ1_B1_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ1 B2 Volume", MADERA_EQ1_1, MADERA_EQ1_B2_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ1 B3 Volume", MADERA_EQ1_1, MADERA_EQ1_B3_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ1 B4 Volume", MADERA_EQ1_2, MADERA_EQ1_B4_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ1 B5 Volume", MADERA_EQ1_2, MADERA_EQ1_B5_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+
+MADERA_EQ_CONTROL("EQ2 Coefficients", MADERA_EQ2_2),
+SOC_SINGLE_TLV("EQ2 B1 Volume", MADERA_EQ2_1, MADERA_EQ2_B1_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ2 B2 Volume", MADERA_EQ2_1, MADERA_EQ2_B2_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ2 B3 Volume", MADERA_EQ2_1, MADERA_EQ2_B3_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ2 B4 Volume", MADERA_EQ2_2, MADERA_EQ2_B4_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ2 B5 Volume", MADERA_EQ2_2, MADERA_EQ2_B5_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+
+MADERA_EQ_CONTROL("EQ3 Coefficients", MADERA_EQ3_2),
+SOC_SINGLE_TLV("EQ3 B1 Volume", MADERA_EQ3_1, MADERA_EQ3_B1_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ3 B2 Volume", MADERA_EQ3_1, MADERA_EQ3_B2_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ3 B3 Volume", MADERA_EQ3_1, MADERA_EQ3_B3_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ3 B4 Volume", MADERA_EQ3_2, MADERA_EQ3_B4_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ3 B5 Volume", MADERA_EQ3_2, MADERA_EQ3_B5_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+
+MADERA_EQ_CONTROL("EQ4 Coefficients", MADERA_EQ4_2),
+SOC_SINGLE_TLV("EQ4 B1 Volume", MADERA_EQ4_1, MADERA_EQ4_B1_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ4 B2 Volume", MADERA_EQ4_1, MADERA_EQ4_B2_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ4 B3 Volume", MADERA_EQ4_1, MADERA_EQ4_B3_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ4 B4 Volume", MADERA_EQ4_2, MADERA_EQ4_B4_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+SOC_SINGLE_TLV("EQ4 B5 Volume", MADERA_EQ4_2, MADERA_EQ4_B5_GAIN_SHIFT,
+	       24, 0, madera_eq_tlv),
+
+MADERA_MIXER_CONTROLS("DRC1L", MADERA_DRC1LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DRC1R", MADERA_DRC1RMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DRC2L", MADERA_DRC2LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DRC2R", MADERA_DRC2RMIX_INPUT_1_SOURCE),
+
+SND_SOC_BYTES_MASK("DRC1", MADERA_DRC1_CTRL1, 5,
+		   MADERA_DRC1R_ENA | MADERA_DRC1L_ENA),
+SND_SOC_BYTES_MASK("DRC2", MADERA_DRC2_CTRL1, 5,
+		   MADERA_DRC2R_ENA | MADERA_DRC2L_ENA),
+
+MADERA_MIXER_CONTROLS("LHPF1", MADERA_HPLP1MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("LHPF2", MADERA_HPLP2MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("LHPF3", MADERA_HPLP3MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("LHPF4", MADERA_HPLP4MIX_INPUT_1_SOURCE),
+
+MADERA_LHPF_CONTROL("LHPF1 Coefficients", MADERA_HPLPF1_2),
+MADERA_LHPF_CONTROL("LHPF2 Coefficients", MADERA_HPLPF2_2),
+MADERA_LHPF_CONTROL("LHPF3 Coefficients", MADERA_HPLPF3_2),
+MADERA_LHPF_CONTROL("LHPF4 Coefficients", MADERA_HPLPF4_2),
+
+SOC_ENUM("LHPF1 Mode", madera_lhpf1_mode),
+SOC_ENUM("LHPF2 Mode", madera_lhpf2_mode),
+SOC_ENUM("LHPF3 Mode", madera_lhpf3_mode),
+SOC_ENUM("LHPF4 Mode", madera_lhpf4_mode),
+
+SOC_ENUM("Sample Rate 2", madera_sample_rate[0]),
+SOC_ENUM("Sample Rate 3", madera_sample_rate[1]),
+SOC_ENUM("ASYNC Sample Rate 2", madera_sample_rate[2]),
+
+MADERA_RATE_ENUM("ISRC1 FSL", madera_isrc_fsl[0]),
+MADERA_RATE_ENUM("ISRC2 FSL", madera_isrc_fsl[1]),
+MADERA_RATE_ENUM("ISRC3 FSL", madera_isrc_fsl[2]),
+MADERA_RATE_ENUM("ISRC4 FSL", madera_isrc_fsl[3]),
+MADERA_RATE_ENUM("ISRC1 FSH", madera_isrc_fsh[0]),
+MADERA_RATE_ENUM("ISRC2 FSH", madera_isrc_fsh[1]),
+MADERA_RATE_ENUM("ISRC3 FSH", madera_isrc_fsh[2]),
+MADERA_RATE_ENUM("ISRC4 FSH", madera_isrc_fsh[3]),
+MADERA_RATE_ENUM("ASRC1 Rate 1", madera_asrc1_rate[0]),
+MADERA_RATE_ENUM("ASRC1 Rate 2", madera_asrc1_rate[1]),
+MADERA_RATE_ENUM("ASRC2 Rate 1", madera_asrc2_rate[0]),
+MADERA_RATE_ENUM("ASRC2 Rate 2", madera_asrc2_rate[1]),
+
+MADERA_MIXER_CONTROLS("DSP1L", MADERA_DSP1LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP1R", MADERA_DSP1RMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP2L", MADERA_DSP2LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP2R", MADERA_DSP2RMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP3L", MADERA_DSP3LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP3R", MADERA_DSP3RMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP4L", MADERA_DSP4LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP4R", MADERA_DSP4RMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP5L", MADERA_DSP5LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP5R", MADERA_DSP5RMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP6L", MADERA_DSP6LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP6R", MADERA_DSP6RMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP7L", MADERA_DSP7LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("DSP7R", MADERA_DSP7RMIX_INPUT_1_SOURCE),
+
+SOC_SINGLE_TLV("Noise Generator Volume", MADERA_COMFORT_NOISE_GENERATOR,
+	       MADERA_NOISE_GEN_GAIN_SHIFT, 0x16, 0, madera_noise_tlv),
+
+MADERA_MIXER_CONTROLS("HPOUT1L", MADERA_OUT1LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("HPOUT1R", MADERA_OUT1RMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("HPOUT2L", MADERA_OUT2LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("HPOUT2R", MADERA_OUT2RMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("HPOUT3L", MADERA_OUT3LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("HPOUT3R", MADERA_OUT3RMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("SPKDAT1L", MADERA_OUT5LMIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("SPKDAT1R", MADERA_OUT5RMIX_INPUT_1_SOURCE),
+
+SOC_SINGLE("HPOUT1 SC Protect Switch", MADERA_HP1_SHORT_CIRCUIT_CTRL,
+	   MADERA_HP1_SC_ENA_SHIFT, 1, 0),
+SOC_SINGLE("HPOUT2 SC Protect Switch", MADERA_HP2_SHORT_CIRCUIT_CTRL,
+	   MADERA_HP2_SC_ENA_SHIFT, 1, 0),
+SOC_SINGLE("HPOUT3 SC Protect Switch", MADERA_HP3_SHORT_CIRCUIT_CTRL,
+	   MADERA_HP3_SC_ENA_SHIFT, 1, 0),
+
+SOC_SINGLE("SPKDAT1 High Performance Switch", MADERA_OUTPUT_PATH_CONFIG_5L,
+	   MADERA_OUT5_OSR_SHIFT, 1, 0),
+
+SOC_DOUBLE_R("HPOUT1 Digital Switch", MADERA_DAC_DIGITAL_VOLUME_1L,
+	     MADERA_DAC_DIGITAL_VOLUME_1R, MADERA_OUT1L_MUTE_SHIFT, 1, 1),
+SOC_DOUBLE_R("HPOUT2 Digital Switch", MADERA_DAC_DIGITAL_VOLUME_2L,
+	     MADERA_DAC_DIGITAL_VOLUME_2R, MADERA_OUT2L_MUTE_SHIFT, 1, 1),
+SOC_DOUBLE_R("HPOUT3 Digital Switch", MADERA_DAC_DIGITAL_VOLUME_3L,
+	     MADERA_DAC_DIGITAL_VOLUME_3R, MADERA_OUT3L_MUTE_SHIFT, 1, 1),
+SOC_DOUBLE_R("SPKDAT1 Digital Switch", MADERA_DAC_DIGITAL_VOLUME_5L,
+	     MADERA_DAC_DIGITAL_VOLUME_5R, MADERA_OUT5L_MUTE_SHIFT, 1, 1),
+
+SOC_DOUBLE_R_TLV("HPOUT1 Digital Volume", MADERA_DAC_DIGITAL_VOLUME_1L,
+		 MADERA_DAC_DIGITAL_VOLUME_1R, MADERA_OUT1L_VOL_SHIFT,
+		 0xbf, 0, madera_digital_tlv),
+SOC_DOUBLE_R_TLV("HPOUT2 Digital Volume", MADERA_DAC_DIGITAL_VOLUME_2L,
+		 MADERA_DAC_DIGITAL_VOLUME_2R, MADERA_OUT2L_VOL_SHIFT,
+		 0xbf, 0, madera_digital_tlv),
+SOC_DOUBLE_R_TLV("HPOUT3 Digital Volume", MADERA_DAC_DIGITAL_VOLUME_3L,
+		 MADERA_DAC_DIGITAL_VOLUME_3R, MADERA_OUT3L_VOL_SHIFT,
+		 0xbf, 0, madera_digital_tlv),
+SOC_DOUBLE_R_TLV("SPKDAT1 Digital Volume", MADERA_DAC_DIGITAL_VOLUME_5L,
+		 MADERA_DAC_DIGITAL_VOLUME_5R, MADERA_OUT5L_VOL_SHIFT,
+		 0xbf, 0, madera_digital_tlv),
+
+SOC_DOUBLE("SPKDAT1 Switch", MADERA_PDM_SPK1_CTRL_1, MADERA_SPK1L_MUTE_SHIFT,
+	   MADERA_SPK1R_MUTE_SHIFT, 1, 1),
+
+SOC_DOUBLE("HPOUT1 EDRE Switch", MADERA_EDRE_ENABLE,
+	   MADERA_EDRE_OUT1L_THR1_ENA_SHIFT,
+	   MADERA_EDRE_OUT1R_THR1_ENA_SHIFT, 1, 0),
+SOC_DOUBLE("HPOUT2 EDRE Switch", MADERA_EDRE_ENABLE,
+	   MADERA_EDRE_OUT2L_THR1_ENA_SHIFT,
+	   MADERA_EDRE_OUT2R_THR1_ENA_SHIFT, 1, 0),
+SOC_DOUBLE("HPOUT3 EDRE Switch", MADERA_EDRE_ENABLE,
+	   MADERA_EDRE_OUT3L_THR1_ENA_SHIFT,
+	   MADERA_EDRE_OUT3R_THR1_ENA_SHIFT, 1, 0),
+
+SOC_ENUM("Output Ramp Up", madera_out_vi_ramp),
+SOC_ENUM("Output Ramp Down", madera_out_vd_ramp),
+
+SOC_SINGLE("Noise Gate Switch", MADERA_NOISE_GATE_CONTROL,
+	   MADERA_NGATE_ENA_SHIFT, 1, 0),
+SOC_SINGLE_TLV("Noise Gate Threshold Volume", MADERA_NOISE_GATE_CONTROL,
+	       MADERA_NGATE_THR_SHIFT, 7, 1, madera_ng_tlv),
+SOC_ENUM("Noise Gate Hold", madera_ng_hold),
+
+SOC_ENUM_EXT("DFC1RX Width", madera_dfc_width[0],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC1RX Type", madera_dfc_type[0],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC1TX Width", madera_dfc_width[1],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC1TX Type", madera_dfc_type[1],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC2RX Width", madera_dfc_width[2],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC2RX Type", madera_dfc_type[2],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC2TX Width", madera_dfc_width[3],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC2TX Type", madera_dfc_type[3],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC3RX Width", madera_dfc_width[4],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC3RX Type", madera_dfc_type[4],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC3TX Width", madera_dfc_width[5],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC3TX Type", madera_dfc_type[5],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC4RX Width", madera_dfc_width[6],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC4RX Type", madera_dfc_type[6],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC4TX Width", madera_dfc_width[7],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC4TX Type", madera_dfc_type[7],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC5RX Width", madera_dfc_width[8],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC5RX Type", madera_dfc_type[8],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC5TX Width", madera_dfc_width[9],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC5TX Type", madera_dfc_type[9],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC6RX Width", madera_dfc_width[10],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC6RX Type", madera_dfc_type[10],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC6TX Width", madera_dfc_width[11],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC6TX Type", madera_dfc_type[11],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC7RX Width", madera_dfc_width[12],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC7RX Type", madera_dfc_type[12],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC7TX Width", madera_dfc_width[13],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC7TX Type", madera_dfc_type[13],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC8RX Width", madera_dfc_width[14],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC8RX Type", madera_dfc_type[14],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC8TX Width", madera_dfc_width[15],
+	     snd_soc_get_enum_double, madera_dfc_put),
+SOC_ENUM_EXT("DFC8TX Type", madera_dfc_type[15],
+	     snd_soc_get_enum_double, madera_dfc_put),
+
+CS47L90_NG_SRC("HPOUT1L", MADERA_NOISE_GATE_SELECT_1L),
+CS47L90_NG_SRC("HPOUT1R", MADERA_NOISE_GATE_SELECT_1R),
+CS47L90_NG_SRC("HPOUT2L", MADERA_NOISE_GATE_SELECT_2L),
+CS47L90_NG_SRC("HPOUT2R", MADERA_NOISE_GATE_SELECT_2R),
+CS47L90_NG_SRC("HPOUT3L", MADERA_NOISE_GATE_SELECT_3L),
+CS47L90_NG_SRC("HPOUT3R", MADERA_NOISE_GATE_SELECT_3R),
+CS47L90_NG_SRC("SPKDAT1L", MADERA_NOISE_GATE_SELECT_5L),
+CS47L90_NG_SRC("SPKDAT1R", MADERA_NOISE_GATE_SELECT_5R),
+
+MADERA_MIXER_CONTROLS("AIF1TX1", MADERA_AIF1TX1MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF1TX2", MADERA_AIF1TX2MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF1TX3", MADERA_AIF1TX3MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF1TX4", MADERA_AIF1TX4MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF1TX5", MADERA_AIF1TX5MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF1TX6", MADERA_AIF1TX6MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF1TX7", MADERA_AIF1TX7MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF1TX8", MADERA_AIF1TX8MIX_INPUT_1_SOURCE),
+
+MADERA_MIXER_CONTROLS("AIF2TX1", MADERA_AIF2TX1MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF2TX2", MADERA_AIF2TX2MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF2TX3", MADERA_AIF2TX3MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF2TX4", MADERA_AIF2TX4MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF2TX5", MADERA_AIF2TX5MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF2TX6", MADERA_AIF2TX6MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF2TX7", MADERA_AIF2TX7MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF2TX8", MADERA_AIF2TX8MIX_INPUT_1_SOURCE),
+
+MADERA_MIXER_CONTROLS("AIF3TX1", MADERA_AIF3TX1MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF3TX2", MADERA_AIF3TX2MIX_INPUT_1_SOURCE),
+
+MADERA_MIXER_CONTROLS("AIF4TX1", MADERA_AIF4TX1MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("AIF4TX2", MADERA_AIF4TX2MIX_INPUT_1_SOURCE),
+
+MADERA_MIXER_CONTROLS("SLIMTX1", MADERA_SLIMTX1MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("SLIMTX2", MADERA_SLIMTX2MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("SLIMTX3", MADERA_SLIMTX3MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("SLIMTX4", MADERA_SLIMTX4MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("SLIMTX5", MADERA_SLIMTX5MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("SLIMTX6", MADERA_SLIMTX6MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("SLIMTX7", MADERA_SLIMTX7MIX_INPUT_1_SOURCE),
+MADERA_MIXER_CONTROLS("SLIMTX8", MADERA_SLIMTX8MIX_INPUT_1_SOURCE),
+
+MADERA_GAINMUX_CONTROLS("SPDIF1TX1", MADERA_SPDIF1TX1MIX_INPUT_1_SOURCE),
+MADERA_GAINMUX_CONTROLS("SPDIF1TX2", MADERA_SPDIF1TX2MIX_INPUT_1_SOURCE),
+};
+
+MADERA_MIXER_ENUMS(EQ1, MADERA_EQ1MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(EQ2, MADERA_EQ2MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(EQ3, MADERA_EQ3MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(EQ4, MADERA_EQ4MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(DRC1L, MADERA_DRC1LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(DRC1R, MADERA_DRC1RMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(DRC2L, MADERA_DRC2LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(DRC2R, MADERA_DRC2RMIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(LHPF1, MADERA_HPLP1MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(LHPF2, MADERA_HPLP2MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(LHPF3, MADERA_HPLP3MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(LHPF4, MADERA_HPLP4MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(DSP1L, MADERA_DSP1LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(DSP1R, MADERA_DSP1RMIX_INPUT_1_SOURCE);
+MADERA_DSP_AUX_ENUMS(DSP1, MADERA_DSP1AUX1MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(DSP2L, MADERA_DSP2LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(DSP2R, MADERA_DSP2RMIX_INPUT_1_SOURCE);
+MADERA_DSP_AUX_ENUMS(DSP2, MADERA_DSP2AUX1MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(DSP3L, MADERA_DSP3LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(DSP3R, MADERA_DSP3RMIX_INPUT_1_SOURCE);
+MADERA_DSP_AUX_ENUMS(DSP3, MADERA_DSP3AUX1MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(DSP4L, MADERA_DSP4LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(DSP4R, MADERA_DSP4RMIX_INPUT_1_SOURCE);
+MADERA_DSP_AUX_ENUMS(DSP4, MADERA_DSP4AUX1MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(DSP5L, MADERA_DSP5LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(DSP5R, MADERA_DSP5RMIX_INPUT_1_SOURCE);
+MADERA_DSP_AUX_ENUMS(DSP5, MADERA_DSP5AUX1MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(DSP6L, MADERA_DSP6LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(DSP6R, MADERA_DSP6RMIX_INPUT_1_SOURCE);
+MADERA_DSP_AUX_ENUMS(DSP6, MADERA_DSP6AUX1MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(DSP7L, MADERA_DSP7LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(DSP7R, MADERA_DSP7RMIX_INPUT_1_SOURCE);
+MADERA_DSP_AUX_ENUMS(DSP7, MADERA_DSP7AUX1MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(PWM1, MADERA_PWM1MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(PWM2, MADERA_PWM2MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(OUT1L, MADERA_OUT1LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(OUT1R, MADERA_OUT1RMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(OUT2L, MADERA_OUT2LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(OUT2R, MADERA_OUT2RMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(OUT3L, MADERA_OUT3LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(OUT3R, MADERA_OUT3RMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(SPKDAT1L, MADERA_OUT5LMIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(SPKDAT1R, MADERA_OUT5RMIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(AIF1TX1, MADERA_AIF1TX1MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF1TX2, MADERA_AIF1TX2MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF1TX3, MADERA_AIF1TX3MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF1TX4, MADERA_AIF1TX4MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF1TX5, MADERA_AIF1TX5MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF1TX6, MADERA_AIF1TX6MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF1TX7, MADERA_AIF1TX7MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF1TX8, MADERA_AIF1TX8MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(AIF2TX1, MADERA_AIF2TX1MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF2TX2, MADERA_AIF2TX2MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF2TX3, MADERA_AIF2TX3MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF2TX4, MADERA_AIF2TX4MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF2TX5, MADERA_AIF2TX5MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF2TX6, MADERA_AIF2TX6MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF2TX7, MADERA_AIF2TX7MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF2TX8, MADERA_AIF2TX8MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(AIF3TX1, MADERA_AIF3TX1MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF3TX2, MADERA_AIF3TX2MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(AIF4TX1, MADERA_AIF4TX1MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(AIF4TX2, MADERA_AIF4TX2MIX_INPUT_1_SOURCE);
+
+MADERA_MIXER_ENUMS(SLIMTX1, MADERA_SLIMTX1MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(SLIMTX2, MADERA_SLIMTX2MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(SLIMTX3, MADERA_SLIMTX3MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(SLIMTX4, MADERA_SLIMTX4MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(SLIMTX5, MADERA_SLIMTX5MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(SLIMTX6, MADERA_SLIMTX6MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(SLIMTX7, MADERA_SLIMTX7MIX_INPUT_1_SOURCE);
+MADERA_MIXER_ENUMS(SLIMTX8, MADERA_SLIMTX8MIX_INPUT_1_SOURCE);
+
+MADERA_MUX_ENUMS(SPD1TX1, MADERA_SPDIF1TX1MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(SPD1TX2, MADERA_SPDIF1TX2MIX_INPUT_1_SOURCE);
+
+MADERA_MUX_ENUMS(ASRC1IN1L, MADERA_ASRC1_1LMIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ASRC1IN1R, MADERA_ASRC1_1RMIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ASRC1IN2L, MADERA_ASRC1_2LMIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ASRC1IN2R, MADERA_ASRC1_2RMIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ASRC2IN1L, MADERA_ASRC2_1LMIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ASRC2IN1R, MADERA_ASRC2_1RMIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ASRC2IN2L, MADERA_ASRC2_2LMIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ASRC2IN2R, MADERA_ASRC2_2RMIX_INPUT_1_SOURCE);
+
+MADERA_MUX_ENUMS(ISRC1INT1, MADERA_ISRC1INT1MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC1INT2, MADERA_ISRC1INT2MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC1INT3, MADERA_ISRC1INT3MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC1INT4, MADERA_ISRC1INT4MIX_INPUT_1_SOURCE);
+
+MADERA_MUX_ENUMS(ISRC1DEC1, MADERA_ISRC1DEC1MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC1DEC2, MADERA_ISRC1DEC2MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC1DEC3, MADERA_ISRC1DEC3MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC1DEC4, MADERA_ISRC1DEC4MIX_INPUT_1_SOURCE);
+
+MADERA_MUX_ENUMS(ISRC2INT1, MADERA_ISRC2INT1MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC2INT2, MADERA_ISRC2INT2MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC2INT3, MADERA_ISRC2INT3MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC2INT4, MADERA_ISRC2INT4MIX_INPUT_1_SOURCE);
+
+MADERA_MUX_ENUMS(ISRC2DEC1, MADERA_ISRC2DEC1MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC2DEC2, MADERA_ISRC2DEC2MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC2DEC3, MADERA_ISRC2DEC3MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC2DEC4, MADERA_ISRC2DEC4MIX_INPUT_1_SOURCE);
+
+MADERA_MUX_ENUMS(ISRC3INT1, MADERA_ISRC3INT1MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC3INT2, MADERA_ISRC3INT2MIX_INPUT_1_SOURCE);
+
+MADERA_MUX_ENUMS(ISRC3DEC1, MADERA_ISRC3DEC1MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC3DEC2, MADERA_ISRC3DEC2MIX_INPUT_1_SOURCE);
+
+MADERA_MUX_ENUMS(ISRC4INT1, MADERA_ISRC4INT1MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC4INT2, MADERA_ISRC4INT2MIX_INPUT_1_SOURCE);
+
+MADERA_MUX_ENUMS(ISRC4DEC1, MADERA_ISRC4DEC1MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(ISRC4DEC2, MADERA_ISRC4DEC2MIX_INPUT_1_SOURCE);
+
+MADERA_MUX_ENUMS(DFC1, MADERA_DFC1MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(DFC2, MADERA_DFC2MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(DFC3, MADERA_DFC3MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(DFC4, MADERA_DFC4MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(DFC5, MADERA_DFC5MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(DFC6, MADERA_DFC6MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(DFC7, MADERA_DFC7MIX_INPUT_1_SOURCE);
+MADERA_MUX_ENUMS(DFC8, MADERA_DFC8MIX_INPUT_1_SOURCE);
+
+static const char * const cs47l90_aec_loopback_texts[] = {
+	"HPOUT1L", "HPOUT1R", "HPOUT2L", "HPOUT2R", "HPOUT3L", "HPOUT3R",
+	"SPKDAT1L", "SPKDAT1R",
+};
+
+static const unsigned int cs47l90_aec_loopback_values[] = {
+	0, 1, 2, 3, 4, 5, 8, 9,
+};
+
+static const struct soc_enum cs47l90_aec_loopback =
+	SOC_VALUE_ENUM_SINGLE(MADERA_DAC_AEC_CONTROL_1,
+			      MADERA_AEC1_LOOPBACK_SRC_SHIFT, 0xf,
+			      ARRAY_SIZE(cs47l90_aec_loopback_texts),
+			      cs47l90_aec_loopback_texts,
+			      cs47l90_aec_loopback_values);
+
+static const struct snd_kcontrol_new cs47l90_aec_loopback_mux =
+	SOC_DAPM_ENUM("AEC1 Loopback", cs47l90_aec_loopback);
+
+static const struct snd_kcontrol_new cs47l90_anc_input_mux[] = {
+	SOC_DAPM_ENUM("RXANCL Input", madera_anc_input_src[0]),
+	SOC_DAPM_ENUM("RXANCL Channel", madera_anc_input_src[1]),
+	SOC_DAPM_ENUM("RXANCR Input", madera_anc_input_src[2]),
+	SOC_DAPM_ENUM("RXANCR Channel", madera_anc_input_src[3]),
+};
+
+static const struct snd_kcontrol_new cs47l90_anc_ng_mux =
+	SOC_DAPM_ENUM("RXANC NG Source", madera_anc_ng_enum);
+
+static const struct snd_kcontrol_new cs47l90_output_anc_src[] = {
+	SOC_DAPM_ENUM("HPOUT1L ANC Source", madera_output_anc_src[0]),
+	SOC_DAPM_ENUM("HPOUT1R ANC Source", madera_output_anc_src[1]),
+	SOC_DAPM_ENUM("HPOUT2L ANC Source", madera_output_anc_src[2]),
+	SOC_DAPM_ENUM("HPOUT2R ANC Source", madera_output_anc_src[3]),
+	SOC_DAPM_ENUM("HPOUT3L ANC Source", madera_output_anc_src[4]),
+	SOC_DAPM_ENUM("HPOUT3R ANC Source", madera_output_anc_src[0]),
+	SOC_DAPM_ENUM("SPKDAT1L ANC Source", madera_output_anc_src[8]),
+	SOC_DAPM_ENUM("SPKDAT1R ANC Source", madera_output_anc_src[9]),
+};
+
+static const struct snd_soc_dapm_widget cs47l90_dapm_widgets[] = {
+SND_SOC_DAPM_SUPPLY("SYSCLK", MADERA_SYSTEM_CLOCK_1, MADERA_SYSCLK_ENA_SHIFT,
+		    0, madera_sysclk_ev,
+		    SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
+SND_SOC_DAPM_SUPPLY("ASYNCCLK", MADERA_ASYNC_CLOCK_1,
+		    MADERA_ASYNC_CLK_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_SUPPLY("OPCLK", MADERA_OUTPUT_SYSTEM_CLOCK,
+		    MADERA_OPCLK_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_SUPPLY("ASYNCOPCLK", MADERA_OUTPUT_ASYNC_CLOCK,
+		    MADERA_OPCLK_ASYNC_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_SUPPLY("DSPCLK", MADERA_DSP_CLOCK_1,
+		    MADERA_DSP_CLK_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_REGULATOR_SUPPLY("DBVDD2", 0, 0),
+SND_SOC_DAPM_REGULATOR_SUPPLY("DBVDD3", 0, 0),
+SND_SOC_DAPM_REGULATOR_SUPPLY("DBVDD4", 0, 0),
+SND_SOC_DAPM_REGULATOR_SUPPLY("CPVDD1", 20, 0),
+SND_SOC_DAPM_REGULATOR_SUPPLY("CPVDD2", 20, 0),
+SND_SOC_DAPM_REGULATOR_SUPPLY("MICVDD", 0, SND_SOC_DAPM_REGULATOR_BYPASS),
+
+SND_SOC_DAPM_SUPPLY("MICBIAS1", MADERA_MIC_BIAS_CTRL_1,
+		    MADERA_MICB1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_SUPPLY("MICBIAS2", MADERA_MIC_BIAS_CTRL_2,
+		    MADERA_MICB1_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_SUPPLY("MICBIAS1A", MADERA_MIC_BIAS_CTRL_5,
+			MADERA_MICB1A_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_SUPPLY("MICBIAS1B", MADERA_MIC_BIAS_CTRL_5,
+			MADERA_MICB1B_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_SUPPLY("MICBIAS1C", MADERA_MIC_BIAS_CTRL_5,
+			MADERA_MICB1C_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_SUPPLY("MICBIAS1D", MADERA_MIC_BIAS_CTRL_5,
+			MADERA_MICB1D_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_SUPPLY("MICBIAS2A", MADERA_MIC_BIAS_CTRL_6,
+			MADERA_MICB2A_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_SUPPLY("MICBIAS2B", MADERA_MIC_BIAS_CTRL_6,
+			MADERA_MICB2B_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_SUPPLY("MICBIAS2C", MADERA_MIC_BIAS_CTRL_6,
+			MADERA_MICB2C_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_SUPPLY("MICBIAS2D", MADERA_MIC_BIAS_CTRL_6,
+			MADERA_MICB2D_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_SUPPLY("FXCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_FX, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ASRC1R1CLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ASRC1_RATE_1, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ASRC1R2CLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ASRC1_RATE_2, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ASRC2R1CLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ASRC2_RATE_1, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ASRC2R2CLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ASRC2_RATE_2, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ISRC1DECCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ISRC1_DEC, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ISRC1INTCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ISRC1_INT, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ISRC2DECCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ISRC2_DEC, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ISRC2INTCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ISRC2_INT, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ISRC3DECCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ISRC3_DEC, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ISRC3INTCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ISRC3_INT, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ISRC4DECCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ISRC4_DEC, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("ISRC4INTCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_ISRC4_INT, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("OUTCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_OUT, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("SPDCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_SPD, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("DSP1CLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_DSP1, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("DSP2CLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_DSP2, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("DSP3CLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_DSP3, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("DSP4CLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_DSP4, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("DSP5CLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_DSP5, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("DSP6CLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_DSP6, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("DSP7CLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_DSP7, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("AIF1TXCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_AIF1, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("AIF2TXCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_AIF2, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("AIF3TXCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_AIF3, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("AIF4TXCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_AIF4, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("SLIMBUSCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_SLIMBUS, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("PWMCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_PWM, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+SND_SOC_DAPM_SUPPLY("DFCCLK", SND_SOC_NOPM,
+		    MADERA_DOM_GRP_DFC, 0,
+		    madera_domain_clk_ev,
+		    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
+
+SND_SOC_DAPM_SIGGEN("TONE"),
+SND_SOC_DAPM_SIGGEN("NOISE"),
+
+SND_SOC_DAPM_INPUT("IN1AL"),
+SND_SOC_DAPM_INPUT("IN1BL"),
+SND_SOC_DAPM_INPUT("IN1AR"),
+SND_SOC_DAPM_INPUT("IN1BR"),
+SND_SOC_DAPM_INPUT("IN2AL"),
+SND_SOC_DAPM_INPUT("IN2BL"),
+SND_SOC_DAPM_INPUT("IN2R"),
+SND_SOC_DAPM_INPUT("IN3L"),
+SND_SOC_DAPM_INPUT("IN3R"),
+SND_SOC_DAPM_INPUT("IN4L"),
+SND_SOC_DAPM_INPUT("IN4R"),
+SND_SOC_DAPM_INPUT("IN5L"),
+SND_SOC_DAPM_INPUT("IN5R"),
+
+SND_SOC_DAPM_OUTPUT("DRC1 Signal Activity"),
+SND_SOC_DAPM_OUTPUT("DRC2 Signal Activity"),
+
+SND_SOC_DAPM_OUTPUT("DSP Trigger Out"),
+
+SND_SOC_DAPM_MUX("IN1L Mux", SND_SOC_NOPM, 0, 0, &madera_inmux[0]),
+SND_SOC_DAPM_MUX("IN1R Mux", SND_SOC_NOPM, 0, 0, &madera_inmux[1]),
+SND_SOC_DAPM_MUX("IN2L Mux", SND_SOC_NOPM, 0, 0, &madera_inmux[2]),
+
+SND_SOC_DAPM_PGA("PWM1 Driver", MADERA_PWM_DRIVE_1, MADERA_PWM1_ENA_SHIFT,
+		 0, NULL, 0),
+SND_SOC_DAPM_PGA("PWM2 Driver", MADERA_PWM_DRIVE_1, MADERA_PWM2_ENA_SHIFT,
+		 0, NULL, 0),
+
+SND_SOC_DAPM_SUPPLY("RXANC NG External Clock", SND_SOC_NOPM,
+		    MADERA_EXT_NG_SEL_SET_SHIFT, 0, madera_anc_ev,
+		    SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
+SND_SOC_DAPM_PGA("RXANCL NG External", SND_SOC_NOPM, 0, 0, NULL, 0),
+SND_SOC_DAPM_PGA("RXANCR NG External", SND_SOC_NOPM, 0, 0, NULL, 0),
+
+SND_SOC_DAPM_SUPPLY("RXANC NG Clock", SND_SOC_NOPM,
+		    MADERA_CLK_NG_ENA_SET_SHIFT, 0, madera_anc_ev,
+		    SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
+SND_SOC_DAPM_PGA("RXANCL NG Internal", SND_SOC_NOPM, 0, 0, NULL, 0),
+SND_SOC_DAPM_PGA("RXANCR NG Internal", SND_SOC_NOPM, 0, 0, NULL, 0),
+
+SND_SOC_DAPM_MUX("RXANCL Left Input", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_anc_input_mux[0]),
+SND_SOC_DAPM_MUX("RXANCL Right Input", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_anc_input_mux[0]),
+SND_SOC_DAPM_MUX("RXANCL Channel", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_anc_input_mux[1]),
+SND_SOC_DAPM_MUX("RXANCL NG Mux", SND_SOC_NOPM, 0, 0, &cs47l90_anc_ng_mux),
+SND_SOC_DAPM_MUX("RXANCR Left Input", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_anc_input_mux[2]),
+SND_SOC_DAPM_MUX("RXANCR Right Input", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_anc_input_mux[2]),
+SND_SOC_DAPM_MUX("RXANCR Channel", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_anc_input_mux[3]),
+SND_SOC_DAPM_MUX("RXANCR NG Mux", SND_SOC_NOPM, 0, 0, &cs47l90_anc_ng_mux),
+
+SND_SOC_DAPM_PGA_E("RXANCL", SND_SOC_NOPM, MADERA_CLK_L_ENA_SET_SHIFT,
+		   0, NULL, 0, madera_anc_ev,
+		   SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
+SND_SOC_DAPM_PGA_E("RXANCR", SND_SOC_NOPM, MADERA_CLK_R_ENA_SET_SHIFT,
+		   0, NULL, 0, madera_anc_ev,
+		   SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
+
+SND_SOC_DAPM_MUX("HPOUT1L ANC Source", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_output_anc_src[0]),
+SND_SOC_DAPM_MUX("HPOUT1R ANC Source", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_output_anc_src[1]),
+SND_SOC_DAPM_MUX("HPOUT2L ANC Source", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_output_anc_src[2]),
+SND_SOC_DAPM_MUX("HPOUT2R ANC Source", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_output_anc_src[3]),
+SND_SOC_DAPM_MUX("HPOUT3L ANC Source", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_output_anc_src[4]),
+SND_SOC_DAPM_MUX("HPOUT3R ANC Source", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_output_anc_src[5]),
+SND_SOC_DAPM_MUX("SPKDAT1L ANC Source", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_output_anc_src[6]),
+SND_SOC_DAPM_MUX("SPKDAT1R ANC Source", SND_SOC_NOPM, 0, 0,
+		 &cs47l90_output_anc_src[7]),
+
+SND_SOC_DAPM_AIF_OUT("AIF1TX1", NULL, 0,
+		     MADERA_AIF1_TX_ENABLES, MADERA_AIF1TX1_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF1TX2", NULL, 0,
+		     MADERA_AIF1_TX_ENABLES, MADERA_AIF1TX2_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF1TX3", NULL, 0,
+		     MADERA_AIF1_TX_ENABLES, MADERA_AIF1TX3_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF1TX4", NULL, 0,
+		     MADERA_AIF1_TX_ENABLES, MADERA_AIF1TX4_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF1TX5", NULL, 0,
+		     MADERA_AIF1_TX_ENABLES, MADERA_AIF1TX5_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF1TX6", NULL, 0,
+		     MADERA_AIF1_TX_ENABLES, MADERA_AIF1TX6_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF1TX7", NULL, 0,
+		     MADERA_AIF1_TX_ENABLES, MADERA_AIF1TX7_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF1TX8", NULL, 0,
+		     MADERA_AIF1_TX_ENABLES, MADERA_AIF1TX8_ENA_SHIFT, 0),
+
+SND_SOC_DAPM_AIF_OUT("AIF2TX1", NULL, 0,
+		     MADERA_AIF2_TX_ENABLES, MADERA_AIF2TX1_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF2TX2", NULL, 0,
+		     MADERA_AIF2_TX_ENABLES, MADERA_AIF2TX2_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF2TX3", NULL, 0,
+		     MADERA_AIF2_TX_ENABLES, MADERA_AIF2TX3_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF2TX4", NULL, 0,
+		     MADERA_AIF2_TX_ENABLES, MADERA_AIF2TX4_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF2TX5", NULL, 0,
+		     MADERA_AIF2_TX_ENABLES, MADERA_AIF2TX5_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF2TX6", NULL, 0,
+		     MADERA_AIF2_TX_ENABLES, MADERA_AIF2TX6_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF2TX7", NULL, 0,
+		     MADERA_AIF2_TX_ENABLES, MADERA_AIF2TX7_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF2TX8", NULL, 0,
+		     MADERA_AIF2_TX_ENABLES, MADERA_AIF2TX8_ENA_SHIFT, 0),
+
+SND_SOC_DAPM_AIF_OUT("SLIMTX1", NULL, 0,
+		     MADERA_SLIMBUS_TX_CHANNEL_ENABLE,
+		     MADERA_SLIMTX1_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("SLIMTX2", NULL, 0,
+		     MADERA_SLIMBUS_TX_CHANNEL_ENABLE,
+		     MADERA_SLIMTX2_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("SLIMTX3", NULL, 0,
+		     MADERA_SLIMBUS_TX_CHANNEL_ENABLE,
+		     MADERA_SLIMTX3_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("SLIMTX4", NULL, 0,
+		     MADERA_SLIMBUS_TX_CHANNEL_ENABLE,
+		     MADERA_SLIMTX4_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("SLIMTX5", NULL, 0,
+		     MADERA_SLIMBUS_TX_CHANNEL_ENABLE,
+		     MADERA_SLIMTX5_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("SLIMTX6", NULL, 0,
+		     MADERA_SLIMBUS_TX_CHANNEL_ENABLE,
+		     MADERA_SLIMTX6_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("SLIMTX7", NULL, 0,
+		     MADERA_SLIMBUS_TX_CHANNEL_ENABLE,
+		     MADERA_SLIMTX7_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("SLIMTX8", NULL, 0,
+		     MADERA_SLIMBUS_TX_CHANNEL_ENABLE,
+		     MADERA_SLIMTX8_ENA_SHIFT, 0),
+
+SND_SOC_DAPM_AIF_OUT("AIF3TX1", NULL, 0,
+		     MADERA_AIF3_TX_ENABLES, MADERA_AIF3TX1_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF3TX2", NULL, 0,
+		     MADERA_AIF3_TX_ENABLES, MADERA_AIF3TX2_ENA_SHIFT, 0),
+
+SND_SOC_DAPM_AIF_OUT("AIF4TX1", NULL, 0,
+		     MADERA_AIF4_TX_ENABLES, MADERA_AIF4TX1_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_OUT("AIF4TX2", NULL, 0,
+		     MADERA_AIF4_TX_ENABLES, MADERA_AIF4TX2_ENA_SHIFT, 0),
+
+SND_SOC_DAPM_PGA_E("OUT1L", SND_SOC_NOPM,
+		   MADERA_OUT1L_ENA_SHIFT, 0, NULL, 0, madera_hp_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("OUT1R", SND_SOC_NOPM,
+		   MADERA_OUT1R_ENA_SHIFT, 0, NULL, 0, madera_hp_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("OUT2L", SND_SOC_NOPM,
+		   MADERA_OUT2L_ENA_SHIFT, 0, NULL, 0, madera_hp_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("OUT2R", SND_SOC_NOPM,
+		   MADERA_OUT2R_ENA_SHIFT, 0, NULL, 0, madera_hp_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("OUT3L", SND_SOC_NOPM,
+		   MADERA_OUT3L_ENA_SHIFT, 0, NULL, 0, madera_hp_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("OUT3R", SND_SOC_NOPM,
+		   MADERA_OUT3R_ENA_SHIFT, 0, NULL, 0, madera_hp_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("OUT5L", MADERA_OUTPUT_ENABLES_1,
+		   MADERA_OUT5L_ENA_SHIFT, 0, NULL, 0, madera_out_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("OUT5R", MADERA_OUTPUT_ENABLES_1,
+		   MADERA_OUT5R_ENA_SHIFT, 0, NULL, 0, madera_out_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMU),
+
+SND_SOC_DAPM_PGA("SPD1TX1", MADERA_SPD1_TX_CONTROL,
+		   MADERA_SPD1_VAL1_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("SPD1TX2", MADERA_SPD1_TX_CONTROL,
+		   MADERA_SPD1_VAL2_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_OUT_DRV("SPD1", MADERA_SPD1_TX_CONTROL,
+		     MADERA_SPD1_ENA_SHIFT, 0, NULL, 0),
+
+/*
+ * mux_in widgets : arranged in the order of sources
+ * specified in MADERA_MIXER_INPUT_ROUTES
+ */
+
+SND_SOC_DAPM_PGA("Noise Generator", MADERA_COMFORT_NOISE_GENERATOR,
+		 MADERA_NOISE_GEN_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_PGA("Tone Generator 1", MADERA_TONE_GENERATOR_1,
+		 MADERA_TONE1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("Tone Generator 2", MADERA_TONE_GENERATOR_1,
+		 MADERA_TONE2_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_SIGGEN("HAPTICS"),
+
+SND_SOC_DAPM_MUX("AEC1 Loopback", MADERA_DAC_AEC_CONTROL_1,
+		       MADERA_AEC1_LOOPBACK_ENA_SHIFT, 0,
+		       &cs47l90_aec_loopback_mux),
+
+SND_SOC_DAPM_PGA_E("IN1L PGA", MADERA_INPUT_ENABLES, MADERA_IN1L_ENA_SHIFT,
+		   0, NULL, 0, madera_in_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("IN1R PGA", MADERA_INPUT_ENABLES, MADERA_IN1R_ENA_SHIFT,
+		   0, NULL, 0, madera_in_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("IN2L PGA", MADERA_INPUT_ENABLES, MADERA_IN2L_ENA_SHIFT,
+		   0, NULL, 0, madera_in_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("IN2R PGA", MADERA_INPUT_ENABLES, MADERA_IN2R_ENA_SHIFT,
+		   0, NULL, 0, madera_in_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("IN3L PGA", MADERA_INPUT_ENABLES, MADERA_IN3L_ENA_SHIFT,
+		   0, NULL, 0, madera_in_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("IN3R PGA", MADERA_INPUT_ENABLES, MADERA_IN3R_ENA_SHIFT,
+		   0, NULL, 0, madera_in_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("IN4L PGA", MADERA_INPUT_ENABLES, MADERA_IN4L_ENA_SHIFT,
+		   0, NULL, 0, madera_in_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("IN4R PGA", MADERA_INPUT_ENABLES, MADERA_IN4R_ENA_SHIFT,
+		   0, NULL, 0, madera_in_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("IN5L PGA", MADERA_INPUT_ENABLES, MADERA_IN5L_ENA_SHIFT,
+		   0, NULL, 0, madera_in_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+SND_SOC_DAPM_PGA_E("IN5R PGA", MADERA_INPUT_ENABLES, MADERA_IN5R_ENA_SHIFT,
+		   0, NULL, 0, madera_in_ev,
+		   SND_SOC_DAPM_PRE_PMD | SND_SOC_DAPM_POST_PMD |
+		   SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU),
+
+SND_SOC_DAPM_AIF_IN("AIF1RX1", NULL, 0,
+			MADERA_AIF1_RX_ENABLES, MADERA_AIF1RX1_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF1RX2", NULL, 0,
+			MADERA_AIF1_RX_ENABLES, MADERA_AIF1RX2_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF1RX3", NULL, 0,
+			MADERA_AIF1_RX_ENABLES, MADERA_AIF1RX3_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF1RX4", NULL, 0,
+			MADERA_AIF1_RX_ENABLES, MADERA_AIF1RX4_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF1RX5", NULL, 0,
+			MADERA_AIF1_RX_ENABLES, MADERA_AIF1RX5_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF1RX6", NULL, 0,
+			MADERA_AIF1_RX_ENABLES, MADERA_AIF1RX6_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF1RX7", NULL, 0,
+			MADERA_AIF1_RX_ENABLES, MADERA_AIF1RX7_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF1RX8", NULL, 0,
+			MADERA_AIF1_RX_ENABLES, MADERA_AIF1RX8_ENA_SHIFT, 0),
+
+SND_SOC_DAPM_AIF_IN("AIF2RX1", NULL, 0,
+			MADERA_AIF2_RX_ENABLES, MADERA_AIF2RX1_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF2RX2", NULL, 0,
+			MADERA_AIF2_RX_ENABLES, MADERA_AIF2RX2_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF2RX3", NULL, 0,
+			MADERA_AIF2_RX_ENABLES, MADERA_AIF2RX3_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF2RX4", NULL, 0,
+			MADERA_AIF2_RX_ENABLES, MADERA_AIF2RX4_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF2RX5", NULL, 0,
+			MADERA_AIF2_RX_ENABLES, MADERA_AIF2RX5_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF2RX6", NULL, 0,
+			MADERA_AIF2_RX_ENABLES, MADERA_AIF2RX6_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF2RX7", NULL, 0,
+			MADERA_AIF2_RX_ENABLES, MADERA_AIF2RX7_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF2RX8", NULL, 0,
+			MADERA_AIF2_RX_ENABLES, MADERA_AIF2RX8_ENA_SHIFT, 0),
+
+SND_SOC_DAPM_AIF_IN("AIF3RX1", NULL, 0,
+			MADERA_AIF3_RX_ENABLES, MADERA_AIF3RX1_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF3RX2", NULL, 0,
+			MADERA_AIF3_RX_ENABLES, MADERA_AIF3RX2_ENA_SHIFT, 0),
+
+SND_SOC_DAPM_AIF_IN("AIF4RX1", NULL, 0,
+			MADERA_AIF4_RX_ENABLES, MADERA_AIF4RX1_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("AIF4RX2", NULL, 0,
+			MADERA_AIF4_RX_ENABLES, MADERA_AIF4RX2_ENA_SHIFT, 0),
+
+SND_SOC_DAPM_AIF_IN("SLIMRX1", NULL, 0,
+			MADERA_SLIMBUS_RX_CHANNEL_ENABLE,
+			MADERA_SLIMRX1_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("SLIMRX2", NULL, 0,
+			MADERA_SLIMBUS_RX_CHANNEL_ENABLE,
+			MADERA_SLIMRX2_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("SLIMRX3", NULL, 0,
+			MADERA_SLIMBUS_RX_CHANNEL_ENABLE,
+			MADERA_SLIMRX3_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("SLIMRX4", NULL, 0,
+			MADERA_SLIMBUS_RX_CHANNEL_ENABLE,
+			MADERA_SLIMRX4_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("SLIMRX5", NULL, 0,
+			MADERA_SLIMBUS_RX_CHANNEL_ENABLE,
+			MADERA_SLIMRX5_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("SLIMRX6", NULL, 0,
+			MADERA_SLIMBUS_RX_CHANNEL_ENABLE,
+			MADERA_SLIMRX6_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("SLIMRX7", NULL, 0,
+			MADERA_SLIMBUS_RX_CHANNEL_ENABLE,
+			MADERA_SLIMRX7_ENA_SHIFT, 0),
+SND_SOC_DAPM_AIF_IN("SLIMRX8", NULL, 0,
+			MADERA_SLIMBUS_RX_CHANNEL_ENABLE,
+			MADERA_SLIMRX8_ENA_SHIFT, 0),
+
+SND_SOC_DAPM_PGA("EQ1", MADERA_EQ1_1, MADERA_EQ1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("EQ2", MADERA_EQ2_1, MADERA_EQ2_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("EQ3", MADERA_EQ3_1, MADERA_EQ3_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("EQ4", MADERA_EQ4_1, MADERA_EQ4_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_PGA("DRC1L", MADERA_DRC1_CTRL1, MADERA_DRC1L_ENA_SHIFT, 0,
+		 NULL, 0),
+SND_SOC_DAPM_PGA("DRC1R", MADERA_DRC1_CTRL1, MADERA_DRC1R_ENA_SHIFT, 0,
+		 NULL, 0),
+SND_SOC_DAPM_PGA("DRC2L", MADERA_DRC2_CTRL1, MADERA_DRC2L_ENA_SHIFT, 0,
+		 NULL, 0),
+SND_SOC_DAPM_PGA("DRC2R", MADERA_DRC2_CTRL1, MADERA_DRC2R_ENA_SHIFT, 0,
+		 NULL, 0),
+
+SND_SOC_DAPM_PGA("LHPF1", MADERA_HPLPF1_1, MADERA_LHPF1_ENA_SHIFT, 0,
+		 NULL, 0),
+SND_SOC_DAPM_PGA("LHPF2", MADERA_HPLPF2_1, MADERA_LHPF2_ENA_SHIFT, 0,
+		 NULL, 0),
+SND_SOC_DAPM_PGA("LHPF3", MADERA_HPLPF3_1, MADERA_LHPF3_ENA_SHIFT, 0,
+		 NULL, 0),
+SND_SOC_DAPM_PGA("LHPF4", MADERA_HPLPF4_1, MADERA_LHPF4_ENA_SHIFT, 0,
+		 NULL, 0),
+
+SND_SOC_DAPM_PGA("ASRC1IN1L", MADERA_ASRC1_ENABLE,
+		MADERA_ASRC1_IN1L_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ASRC1IN1R", MADERA_ASRC1_ENABLE,
+		MADERA_ASRC1_IN1R_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ASRC1IN2L", MADERA_ASRC1_ENABLE,
+		MADERA_ASRC1_IN2L_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ASRC1IN2R", MADERA_ASRC1_ENABLE,
+		MADERA_ASRC1_IN2R_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_PGA("ASRC2IN1L", MADERA_ASRC2_ENABLE,
+		MADERA_ASRC2_IN1L_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ASRC2IN1R", MADERA_ASRC2_ENABLE,
+		MADERA_ASRC2_IN1R_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ASRC2IN2L", MADERA_ASRC2_ENABLE,
+		MADERA_ASRC2_IN2L_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ASRC2IN2R", MADERA_ASRC2_ENABLE,
+		MADERA_ASRC2_IN2R_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_PGA("ISRC1DEC1", MADERA_ISRC_1_CTRL_3,
+		 MADERA_ISRC1_DEC1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC1DEC2", MADERA_ISRC_1_CTRL_3,
+		 MADERA_ISRC1_DEC2_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC1DEC3", MADERA_ISRC_1_CTRL_3,
+		 MADERA_ISRC1_DEC3_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC1DEC4", MADERA_ISRC_1_CTRL_3,
+		 MADERA_ISRC1_DEC4_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_PGA("ISRC1INT1", MADERA_ISRC_1_CTRL_3,
+		 MADERA_ISRC1_INT1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC1INT2", MADERA_ISRC_1_CTRL_3,
+		 MADERA_ISRC1_INT2_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC1INT3", MADERA_ISRC_1_CTRL_3,
+		 MADERA_ISRC1_INT3_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC1INT4", MADERA_ISRC_1_CTRL_3,
+		 MADERA_ISRC1_INT4_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_PGA("ISRC2DEC1", MADERA_ISRC_2_CTRL_3,
+		 MADERA_ISRC2_DEC1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC2DEC2", MADERA_ISRC_2_CTRL_3,
+		 MADERA_ISRC2_DEC2_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC2DEC3", MADERA_ISRC_2_CTRL_3,
+		 MADERA_ISRC2_DEC3_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC2DEC4", MADERA_ISRC_2_CTRL_3,
+		 MADERA_ISRC2_DEC4_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_PGA("ISRC2INT1", MADERA_ISRC_2_CTRL_3,
+		 MADERA_ISRC2_INT1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC2INT2", MADERA_ISRC_2_CTRL_3,
+		 MADERA_ISRC2_INT2_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC2INT3", MADERA_ISRC_2_CTRL_3,
+		 MADERA_ISRC2_INT3_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC2INT4", MADERA_ISRC_2_CTRL_3,
+		 MADERA_ISRC2_INT4_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_PGA("ISRC3DEC1", MADERA_ISRC_3_CTRL_3,
+		 MADERA_ISRC3_DEC1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC3DEC2", MADERA_ISRC_3_CTRL_3,
+		 MADERA_ISRC3_DEC2_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_PGA("ISRC3INT1", MADERA_ISRC_3_CTRL_3,
+		 MADERA_ISRC3_INT1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC3INT2", MADERA_ISRC_3_CTRL_3,
+		 MADERA_ISRC3_INT2_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_PGA("ISRC4DEC1", MADERA_ISRC_4_CTRL_3,
+		 MADERA_ISRC4_DEC1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC4DEC2", MADERA_ISRC_4_CTRL_3,
+		 MADERA_ISRC4_DEC2_ENA_SHIFT, 0, NULL, 0),
+
+SND_SOC_DAPM_PGA("ISRC4INT1", MADERA_ISRC_4_CTRL_3,
+		 MADERA_ISRC4_INT1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("ISRC4INT2", MADERA_ISRC_4_CTRL_3,
+		 MADERA_ISRC4_INT2_ENA_SHIFT, 0, NULL, 0),
+
+WM_ADSP2("DSP1", 0, cs47l90_adsp_power_ev),
+WM_ADSP2("DSP2", 1, cs47l90_adsp_power_ev),
+WM_ADSP2("DSP3", 2, cs47l90_adsp_power_ev),
+WM_ADSP2("DSP4", 3, cs47l90_adsp_power_ev),
+WM_ADSP2("DSP5", 4, cs47l90_adsp_power_ev),
+WM_ADSP2("DSP6", 5, cs47l90_adsp_power_ev),
+WM_ADSP2("DSP7", 6, cs47l90_adsp_power_ev),
+
+/* end of ordered widget list */
+
+SND_SOC_DAPM_PGA("DFC1", MADERA_DFC1_CTRL, MADERA_DFC1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("DFC2", MADERA_DFC2_CTRL, MADERA_DFC1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("DFC3", MADERA_DFC3_CTRL, MADERA_DFC1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("DFC4", MADERA_DFC4_CTRL, MADERA_DFC1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("DFC5", MADERA_DFC5_CTRL, MADERA_DFC1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("DFC6", MADERA_DFC6_CTRL, MADERA_DFC1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("DFC7", MADERA_DFC7_CTRL, MADERA_DFC1_ENA_SHIFT, 0, NULL, 0),
+SND_SOC_DAPM_PGA("DFC8", MADERA_DFC8_CTRL, MADERA_DFC1_ENA_SHIFT, 0, NULL, 0),
+
+MADERA_MIXER_WIDGETS(EQ1, "EQ1"),
+MADERA_MIXER_WIDGETS(EQ2, "EQ2"),
+MADERA_MIXER_WIDGETS(EQ3, "EQ3"),
+MADERA_MIXER_WIDGETS(EQ4, "EQ4"),
+
+MADERA_MIXER_WIDGETS(DRC1L, "DRC1L"),
+MADERA_MIXER_WIDGETS(DRC1R, "DRC1R"),
+MADERA_MIXER_WIDGETS(DRC2L, "DRC2L"),
+MADERA_MIXER_WIDGETS(DRC2R, "DRC2R"),
+
+SND_SOC_DAPM_SWITCH("DRC1 Activity Output", SND_SOC_NOPM, 0, 0,
+		    &madera_drc_activity_output_mux[0]),
+SND_SOC_DAPM_SWITCH("DRC2 Activity Output", SND_SOC_NOPM, 0, 0,
+		    &madera_drc_activity_output_mux[1]),
+
+MADERA_MIXER_WIDGETS(LHPF1, "LHPF1"),
+MADERA_MIXER_WIDGETS(LHPF2, "LHPF2"),
+MADERA_MIXER_WIDGETS(LHPF3, "LHPF3"),
+MADERA_MIXER_WIDGETS(LHPF4, "LHPF4"),
+
+MADERA_MIXER_WIDGETS(PWM1, "PWM1"),
+MADERA_MIXER_WIDGETS(PWM2, "PWM2"),
+
+MADERA_MIXER_WIDGETS(OUT1L, "HPOUT1L"),
+MADERA_MIXER_WIDGETS(OUT1R, "HPOUT1R"),
+MADERA_MIXER_WIDGETS(OUT2L, "HPOUT2L"),
+MADERA_MIXER_WIDGETS(OUT2R, "HPOUT2R"),
+MADERA_MIXER_WIDGETS(OUT3L, "HPOUT3L"),
+MADERA_MIXER_WIDGETS(OUT3R, "HPOUT3R"),
+MADERA_MIXER_WIDGETS(SPKDAT1L, "SPKDAT1L"),
+MADERA_MIXER_WIDGETS(SPKDAT1R, "SPKDAT1R"),
+
+MADERA_MIXER_WIDGETS(AIF1TX1, "AIF1TX1"),
+MADERA_MIXER_WIDGETS(AIF1TX2, "AIF1TX2"),
+MADERA_MIXER_WIDGETS(AIF1TX3, "AIF1TX3"),
+MADERA_MIXER_WIDGETS(AIF1TX4, "AIF1TX4"),
+MADERA_MIXER_WIDGETS(AIF1TX5, "AIF1TX5"),
+MADERA_MIXER_WIDGETS(AIF1TX6, "AIF1TX6"),
+MADERA_MIXER_WIDGETS(AIF1TX7, "AIF1TX7"),
+MADERA_MIXER_WIDGETS(AIF1TX8, "AIF1TX8"),
+
+MADERA_MIXER_WIDGETS(AIF2TX1, "AIF2TX1"),
+MADERA_MIXER_WIDGETS(AIF2TX2, "AIF2TX2"),
+MADERA_MIXER_WIDGETS(AIF2TX3, "AIF2TX3"),
+MADERA_MIXER_WIDGETS(AIF2TX4, "AIF2TX4"),
+MADERA_MIXER_WIDGETS(AIF2TX5, "AIF2TX5"),
+MADERA_MIXER_WIDGETS(AIF2TX6, "AIF2TX6"),
+MADERA_MIXER_WIDGETS(AIF2TX7, "AIF2TX7"),
+MADERA_MIXER_WIDGETS(AIF2TX8, "AIF2TX8"),
+
+MADERA_MIXER_WIDGETS(AIF3TX1, "AIF3TX1"),
+MADERA_MIXER_WIDGETS(AIF3TX2, "AIF3TX2"),
+
+MADERA_MIXER_WIDGETS(AIF4TX1, "AIF4TX1"),
+MADERA_MIXER_WIDGETS(AIF4TX2, "AIF4TX2"),
+
+MADERA_MIXER_WIDGETS(SLIMTX1, "SLIMTX1"),
+MADERA_MIXER_WIDGETS(SLIMTX2, "SLIMTX2"),
+MADERA_MIXER_WIDGETS(SLIMTX3, "SLIMTX3"),
+MADERA_MIXER_WIDGETS(SLIMTX4, "SLIMTX4"),
+MADERA_MIXER_WIDGETS(SLIMTX5, "SLIMTX5"),
+MADERA_MIXER_WIDGETS(SLIMTX6, "SLIMTX6"),
+MADERA_MIXER_WIDGETS(SLIMTX7, "SLIMTX7"),
+MADERA_MIXER_WIDGETS(SLIMTX8, "SLIMTX8"),
+
+MADERA_MUX_WIDGETS(SPD1TX1, "SPDIF1TX1"),
+MADERA_MUX_WIDGETS(SPD1TX2, "SPDIF1TX2"),
+
+MADERA_MUX_WIDGETS(ASRC1IN1L, "ASRC1IN1L"),
+MADERA_MUX_WIDGETS(ASRC1IN1R, "ASRC1IN1R"),
+MADERA_MUX_WIDGETS(ASRC1IN2L, "ASRC1IN2L"),
+MADERA_MUX_WIDGETS(ASRC1IN2R, "ASRC1IN2R"),
+MADERA_MUX_WIDGETS(ASRC2IN1L, "ASRC2IN1L"),
+MADERA_MUX_WIDGETS(ASRC2IN1R, "ASRC2IN1R"),
+MADERA_MUX_WIDGETS(ASRC2IN2L, "ASRC2IN2L"),
+MADERA_MUX_WIDGETS(ASRC2IN2R, "ASRC2IN2R"),
+
+MADERA_DSP_WIDGETS(DSP1, "DSP1"),
+MADERA_DSP_WIDGETS(DSP2, "DSP2"),
+MADERA_DSP_WIDGETS(DSP3, "DSP3"),
+MADERA_DSP_WIDGETS(DSP4, "DSP4"),
+MADERA_DSP_WIDGETS(DSP5, "DSP5"),
+MADERA_DSP_WIDGETS(DSP6, "DSP6"),
+MADERA_DSP_WIDGETS(DSP7, "DSP7"),
+
+SND_SOC_DAPM_SWITCH("DSP1 Trigger Output", SND_SOC_NOPM, 0, 0,
+		    &madera_dsp_trigger_output_mux[0]),
+SND_SOC_DAPM_SWITCH("DSP2 Trigger Output", SND_SOC_NOPM, 0, 0,
+		    &madera_dsp_trigger_output_mux[1]),
+SND_SOC_DAPM_SWITCH("DSP3 Trigger Output", SND_SOC_NOPM, 0, 0,
+		    &madera_dsp_trigger_output_mux[2]),
+SND_SOC_DAPM_SWITCH("DSP4 Trigger Output", SND_SOC_NOPM, 0, 0,
+		    &madera_dsp_trigger_output_mux[3]),
+SND_SOC_DAPM_SWITCH("DSP5 Trigger Output", SND_SOC_NOPM, 0, 0,
+		    &madera_dsp_trigger_output_mux[4]),
+SND_SOC_DAPM_SWITCH("DSP6 Trigger Output", SND_SOC_NOPM, 0, 0,
+		    &madera_dsp_trigger_output_mux[5]),
+SND_SOC_DAPM_SWITCH("DSP7 Trigger Output", SND_SOC_NOPM, 0, 0,
+		    &madera_dsp_trigger_output_mux[6]),
+
+MADERA_MUX_WIDGETS(ISRC1DEC1, "ISRC1DEC1"),
+MADERA_MUX_WIDGETS(ISRC1DEC2, "ISRC1DEC2"),
+MADERA_MUX_WIDGETS(ISRC1DEC3, "ISRC1DEC3"),
+MADERA_MUX_WIDGETS(ISRC1DEC4, "ISRC1DEC4"),
+
+MADERA_MUX_WIDGETS(ISRC1INT1, "ISRC1INT1"),
+MADERA_MUX_WIDGETS(ISRC1INT2, "ISRC1INT2"),
+MADERA_MUX_WIDGETS(ISRC1INT3, "ISRC1INT3"),
+MADERA_MUX_WIDGETS(ISRC1INT4, "ISRC1INT4"),
+
+MADERA_MUX_WIDGETS(ISRC2DEC1, "ISRC2DEC1"),
+MADERA_MUX_WIDGETS(ISRC2DEC2, "ISRC2DEC2"),
+MADERA_MUX_WIDGETS(ISRC2DEC3, "ISRC2DEC3"),
+MADERA_MUX_WIDGETS(ISRC2DEC4, "ISRC2DEC4"),
+
+MADERA_MUX_WIDGETS(ISRC2INT1, "ISRC2INT1"),
+MADERA_MUX_WIDGETS(ISRC2INT2, "ISRC2INT2"),
+MADERA_MUX_WIDGETS(ISRC2INT3, "ISRC2INT3"),
+MADERA_MUX_WIDGETS(ISRC2INT4, "ISRC2INT4"),
+
+MADERA_MUX_WIDGETS(ISRC3DEC1, "ISRC3DEC1"),
+MADERA_MUX_WIDGETS(ISRC3DEC2, "ISRC3DEC2"),
+
+MADERA_MUX_WIDGETS(ISRC3INT1, "ISRC3INT1"),
+MADERA_MUX_WIDGETS(ISRC3INT2, "ISRC3INT2"),
+
+MADERA_MUX_WIDGETS(ISRC4DEC1, "ISRC4DEC1"),
+MADERA_MUX_WIDGETS(ISRC4DEC2, "ISRC4DEC2"),
+
+MADERA_MUX_WIDGETS(ISRC4INT1, "ISRC4INT1"),
+MADERA_MUX_WIDGETS(ISRC4INT2, "ISRC4INT2"),
+
+MADERA_MUX_WIDGETS(DFC1, "DFC1"),
+MADERA_MUX_WIDGETS(DFC2, "DFC2"),
+MADERA_MUX_WIDGETS(DFC3, "DFC3"),
+MADERA_MUX_WIDGETS(DFC4, "DFC4"),
+MADERA_MUX_WIDGETS(DFC5, "DFC5"),
+MADERA_MUX_WIDGETS(DFC6, "DFC6"),
+MADERA_MUX_WIDGETS(DFC7, "DFC7"),
+MADERA_MUX_WIDGETS(DFC8, "DFC8"),
+
+SND_SOC_DAPM_OUTPUT("HPOUT1L"),
+SND_SOC_DAPM_OUTPUT("HPOUT1R"),
+SND_SOC_DAPM_OUTPUT("HPOUT2L"),
+SND_SOC_DAPM_OUTPUT("HPOUT2R"),
+SND_SOC_DAPM_OUTPUT("HPOUT3L"),
+SND_SOC_DAPM_OUTPUT("HPOUT3R"),
+SND_SOC_DAPM_OUTPUT("SPKDAT1L"),
+SND_SOC_DAPM_OUTPUT("SPKDAT1R"),
+SND_SOC_DAPM_OUTPUT("SPDIF1"),
+
+SND_SOC_DAPM_OUTPUT("MICSUPP"),
+};
+
+#define MADERA_MIXER_INPUT_ROUTES(name)	\
+	{ name, "Noise Generator", "Noise Generator" }, \
+	{ name, "Tone Generator 1", "Tone Generator 1" }, \
+	{ name, "Tone Generator 2", "Tone Generator 2" }, \
+	{ name, "Haptics", "HAPTICS" }, \
+	{ name, "AEC1", "AEC1 Loopback" }, \
+	{ name, "IN1L", "IN1L PGA" }, \
+	{ name, "IN1R", "IN1R PGA" }, \
+	{ name, "IN2L", "IN2L PGA" }, \
+	{ name, "IN2R", "IN2R PGA" }, \
+	{ name, "IN3L", "IN3L PGA" }, \
+	{ name, "IN3R", "IN3R PGA" }, \
+	{ name, "IN4L", "IN4L PGA" }, \
+	{ name, "IN4R", "IN4R PGA" }, \
+	{ name, "IN5L", "IN5L PGA" }, \
+	{ name, "IN5R", "IN5R PGA" }, \
+	{ name, "AIF1RX1", "AIF1RX1" }, \
+	{ name, "AIF1RX2", "AIF1RX2" }, \
+	{ name, "AIF1RX3", "AIF1RX3" }, \
+	{ name, "AIF1RX4", "AIF1RX4" }, \
+	{ name, "AIF1RX5", "AIF1RX5" }, \
+	{ name, "AIF1RX6", "AIF1RX6" }, \
+	{ name, "AIF1RX7", "AIF1RX7" }, \
+	{ name, "AIF1RX8", "AIF1RX8" }, \
+	{ name, "AIF2RX1", "AIF2RX1" }, \
+	{ name, "AIF2RX2", "AIF2RX2" }, \
+	{ name, "AIF2RX3", "AIF2RX3" }, \
+	{ name, "AIF2RX4", "AIF2RX4" }, \
+	{ name, "AIF2RX5", "AIF2RX5" }, \
+	{ name, "AIF2RX6", "AIF2RX6" }, \
+	{ name, "AIF2RX7", "AIF2RX7" }, \
+	{ name, "AIF2RX8", "AIF2RX8" }, \
+	{ name, "AIF3RX1", "AIF3RX1" }, \
+	{ name, "AIF3RX2", "AIF3RX2" }, \
+	{ name, "AIF4RX1", "AIF4RX1" }, \
+	{ name, "AIF4RX2", "AIF4RX2" }, \
+	{ name, "SLIMRX1", "SLIMRX1" }, \
+	{ name, "SLIMRX2", "SLIMRX2" }, \
+	{ name, "SLIMRX3", "SLIMRX3" }, \
+	{ name, "SLIMRX4", "SLIMRX4" }, \
+	{ name, "SLIMRX5", "SLIMRX5" }, \
+	{ name, "SLIMRX6", "SLIMRX6" }, \
+	{ name, "SLIMRX7", "SLIMRX7" }, \
+	{ name, "SLIMRX8", "SLIMRX8" }, \
+	{ name, "EQ1", "EQ1" }, \
+	{ name, "EQ2", "EQ2" }, \
+	{ name, "EQ3", "EQ3" }, \
+	{ name, "EQ4", "EQ4" }, \
+	{ name, "DRC1L", "DRC1L" }, \
+	{ name, "DRC1R", "DRC1R" }, \
+	{ name, "DRC2L", "DRC2L" }, \
+	{ name, "DRC2R", "DRC2R" }, \
+	{ name, "LHPF1", "LHPF1" }, \
+	{ name, "LHPF2", "LHPF2" }, \
+	{ name, "LHPF3", "LHPF3" }, \
+	{ name, "LHPF4", "LHPF4" }, \
+	{ name, "ASRC1IN1L", "ASRC1IN1L" }, \
+	{ name, "ASRC1IN1R", "ASRC1IN1R" }, \
+	{ name, "ASRC1IN2L", "ASRC1IN2L" }, \
+	{ name, "ASRC1IN2R", "ASRC1IN2R" }, \
+	{ name, "ASRC2IN1L", "ASRC2IN1L" }, \
+	{ name, "ASRC2IN1R", "ASRC2IN1R" }, \
+	{ name, "ASRC2IN2L", "ASRC2IN2L" }, \
+	{ name, "ASRC2IN2R", "ASRC2IN2R" }, \
+	{ name, "ISRC1DEC1", "ISRC1DEC1" }, \
+	{ name, "ISRC1DEC2", "ISRC1DEC2" }, \
+	{ name, "ISRC1DEC3", "ISRC1DEC3" }, \
+	{ name, "ISRC1DEC4", "ISRC1DEC4" }, \
+	{ name, "ISRC1INT1", "ISRC1INT1" }, \
+	{ name, "ISRC1INT2", "ISRC1INT2" }, \
+	{ name, "ISRC1INT3", "ISRC1INT3" }, \
+	{ name, "ISRC1INT4", "ISRC1INT4" }, \
+	{ name, "ISRC2DEC1", "ISRC2DEC1" }, \
+	{ name, "ISRC2DEC2", "ISRC2DEC2" }, \
+	{ name, "ISRC2DEC3", "ISRC2DEC3" }, \
+	{ name, "ISRC2DEC4", "ISRC2DEC4" }, \
+	{ name, "ISRC2INT1", "ISRC2INT1" }, \
+	{ name, "ISRC2INT2", "ISRC2INT2" }, \
+	{ name, "ISRC2INT3", "ISRC2INT3" }, \
+	{ name, "ISRC2INT4", "ISRC2INT4" }, \
+	{ name, "ISRC3DEC1", "ISRC3DEC1" }, \
+	{ name, "ISRC3DEC2", "ISRC3DEC2" }, \
+	{ name, "ISRC3INT1", "ISRC3INT1" }, \
+	{ name, "ISRC3INT2", "ISRC3INT2" }, \
+	{ name, "ISRC4DEC1", "ISRC4DEC1" }, \
+	{ name, "ISRC4DEC2", "ISRC4DEC2" }, \
+	{ name, "ISRC4INT1", "ISRC4INT1" }, \
+	{ name, "ISRC4INT2", "ISRC4INT2" }, \
+	{ name, "DSP1.1", "DSP1" }, \
+	{ name, "DSP1.2", "DSP1" }, \
+	{ name, "DSP1.3", "DSP1" }, \
+	{ name, "DSP1.4", "DSP1" }, \
+	{ name, "DSP1.5", "DSP1" }, \
+	{ name, "DSP1.6", "DSP1" }, \
+	{ name, "DSP2.1", "DSP2" }, \
+	{ name, "DSP2.2", "DSP2" }, \
+	{ name, "DSP2.3", "DSP2" }, \
+	{ name, "DSP2.4", "DSP2" }, \
+	{ name, "DSP2.5", "DSP2" }, \
+	{ name, "DSP2.6", "DSP2" }, \
+	{ name, "DSP3.1", "DSP3" }, \
+	{ name, "DSP3.2", "DSP3" }, \
+	{ name, "DSP3.3", "DSP3" }, \
+	{ name, "DSP3.4", "DSP3" }, \
+	{ name, "DSP3.5", "DSP3" }, \
+	{ name, "DSP3.6", "DSP3" }, \
+	{ name, "DSP4.1", "DSP4" }, \
+	{ name, "DSP4.2", "DSP4" }, \
+	{ name, "DSP4.3", "DSP4" }, \
+	{ name, "DSP4.4", "DSP4" }, \
+	{ name, "DSP4.5", "DSP4" }, \
+	{ name, "DSP4.6", "DSP4" }, \
+	{ name, "DSP5.1", "DSP5" }, \
+	{ name, "DSP5.2", "DSP5" }, \
+	{ name, "DSP5.3", "DSP5" }, \
+	{ name, "DSP5.4", "DSP5" }, \
+	{ name, "DSP5.5", "DSP5" }, \
+	{ name, "DSP5.6", "DSP5" }, \
+	{ name, "DSP6.1", "DSP6" }, \
+	{ name, "DSP6.2", "DSP6" }, \
+	{ name, "DSP6.3", "DSP6" }, \
+	{ name, "DSP6.4", "DSP6" }, \
+	{ name, "DSP6.5", "DSP6" }, \
+	{ name, "DSP6.6", "DSP6" }, \
+	{ name, "DSP7.1", "DSP7" }, \
+	{ name, "DSP7.2", "DSP7" }, \
+	{ name, "DSP7.3", "DSP7" }, \
+	{ name, "DSP7.4", "DSP7" }, \
+	{ name, "DSP7.5", "DSP7" }, \
+	{ name, "DSP7.6", "DSP7" }, \
+	{ name, "DFC1", "DFC1" }, \
+	{ name, "DFC2", "DFC2" }, \
+	{ name, "DFC3", "DFC3" }, \
+	{ name, "DFC4", "DFC4" }, \
+	{ name, "DFC5", "DFC5" }, \
+	{ name, "DFC6", "DFC6" }, \
+	{ name, "DFC7", "DFC7" }, \
+	{ name, "DFC8", "DFC8" }
+
+static const struct snd_soc_dapm_route cs47l90_dapm_routes[] = {
+	/* Internal clock domains */
+	{ "EQ1", NULL, "FXCLK" },
+	{ "EQ2", NULL, "FXCLK" },
+	{ "EQ3", NULL, "FXCLK" },
+	{ "EQ4", NULL, "FXCLK" },
+	{ "DRC1L", NULL, "FXCLK" },
+	{ "DRC1R", NULL, "FXCLK" },
+	{ "DRC2L", NULL, "FXCLK" },
+	{ "DRC2R", NULL, "FXCLK" },
+	{ "LHPF1", NULL, "FXCLK" },
+	{ "LHPF2", NULL, "FXCLK" },
+	{ "LHPF3", NULL, "FXCLK" },
+	{ "LHPF4", NULL, "FXCLK" },
+	{ "PWM1 Mixer", NULL, "PWMCLK" },
+	{ "PWM2 Mixer", NULL, "PWMCLK" },
+	{ "OUT1L", NULL, "OUTCLK" },
+	{ "OUT1R", NULL, "OUTCLK" },
+	{ "OUT2L", NULL, "OUTCLK" },
+	{ "OUT2R", NULL, "OUTCLK" },
+	{ "OUT3L", NULL, "OUTCLK" },
+	{ "OUT3R", NULL, "OUTCLK" },
+	{ "OUT5L", NULL, "OUTCLK" },
+	{ "OUT5R", NULL, "OUTCLK" },
+	{ "AIF1TX1", NULL, "AIF1TXCLK" },
+	{ "AIF1TX2", NULL, "AIF1TXCLK" },
+	{ "AIF1TX3", NULL, "AIF1TXCLK" },
+	{ "AIF1TX4", NULL, "AIF1TXCLK" },
+	{ "AIF1TX5", NULL, "AIF1TXCLK" },
+	{ "AIF1TX6", NULL, "AIF1TXCLK" },
+	{ "AIF1TX7", NULL, "AIF1TXCLK" },
+	{ "AIF1TX8", NULL, "AIF1TXCLK" },
+	{ "AIF2TX1", NULL, "AIF2TXCLK" },
+	{ "AIF2TX2", NULL, "AIF2TXCLK" },
+	{ "AIF2TX3", NULL, "AIF2TXCLK" },
+	{ "AIF2TX4", NULL, "AIF2TXCLK" },
+	{ "AIF2TX5", NULL, "AIF2TXCLK" },
+	{ "AIF2TX6", NULL, "AIF2TXCLK" },
+	{ "AIF2TX7", NULL, "AIF2TXCLK" },
+	{ "AIF2TX8", NULL, "AIF2TXCLK" },
+	{ "AIF3TX1", NULL, "AIF3TXCLK" },
+	{ "AIF3TX2", NULL, "AIF3TXCLK" },
+	{ "AIF4TX1", NULL, "AIF4TXCLK" },
+	{ "AIF4TX2", NULL, "AIF4TXCLK" },
+	{ "SLIMTX1", NULL, "SLIMBUSCLK" },
+	{ "SLIMTX2", NULL, "SLIMBUSCLK" },
+	{ "SLIMTX3", NULL, "SLIMBUSCLK" },
+	{ "SLIMTX4", NULL, "SLIMBUSCLK" },
+	{ "SLIMTX5", NULL, "SLIMBUSCLK" },
+	{ "SLIMTX6", NULL, "SLIMBUSCLK" },
+	{ "SLIMTX7", NULL, "SLIMBUSCLK" },
+	{ "SLIMTX8", NULL, "SLIMBUSCLK" },
+	{ "SPD1TX1", NULL, "SPDCLK" },
+	{ "SPD1TX2", NULL, "SPDCLK" },
+	{ "DSP1", NULL, "DSP1CLK" },
+	{ "DSP2", NULL, "DSP2CLK" },
+	{ "DSP3", NULL, "DSP3CLK" },
+	{ "DSP4", NULL, "DSP4CLK" },
+	{ "DSP5", NULL, "DSP5CLK" },
+	{ "DSP6", NULL, "DSP6CLK" },
+	{ "DSP7", NULL, "DSP7CLK" },
+	{ "ISRC1DEC1", NULL, "ISRC1DECCLK" },
+	{ "ISRC1DEC2", NULL, "ISRC1DECCLK" },
+	{ "ISRC1DEC3", NULL, "ISRC1DECCLK" },
+	{ "ISRC1DEC4", NULL, "ISRC1DECCLK" },
+	{ "ISRC1INT1", NULL, "ISRC1INTCLK" },
+	{ "ISRC1INT2", NULL, "ISRC1INTCLK" },
+	{ "ISRC1INT3", NULL, "ISRC1INTCLK" },
+	{ "ISRC1INT4", NULL, "ISRC1INTCLK" },
+	{ "ISRC2DEC1", NULL, "ISRC2DECCLK" },
+	{ "ISRC2DEC2", NULL, "ISRC2DECCLK" },
+	{ "ISRC2DEC3", NULL, "ISRC2DECCLK" },
+	{ "ISRC2DEC4", NULL, "ISRC2DECCLK" },
+	{ "ISRC2INT1", NULL, "ISRC2INTCLK" },
+	{ "ISRC2INT2", NULL, "ISRC2INTCLK" },
+	{ "ISRC2INT3", NULL, "ISRC2INTCLK" },
+	{ "ISRC2INT4", NULL, "ISRC2INTCLK" },
+	{ "ISRC3DEC1", NULL, "ISRC3DECCLK" },
+	{ "ISRC3DEC2", NULL, "ISRC3DECCLK" },
+	{ "ISRC3INT1", NULL, "ISRC3INTCLK" },
+	{ "ISRC3INT2", NULL, "ISRC3INTCLK" },
+	{ "ISRC4DEC1", NULL, "ISRC4DECCLK" },
+	{ "ISRC4DEC2", NULL, "ISRC4DECCLK" },
+	{ "ISRC4INT1", NULL, "ISRC4INTCLK" },
+	{ "ISRC4INT2", NULL, "ISRC4INTCLK" },
+	{ "ASRC1IN1L", NULL, "ASRC1R1CLK" },
+	{ "ASRC1IN1R", NULL, "ASRC1R1CLK" },
+	{ "ASRC1IN2L", NULL, "ASRC1R2CLK" },
+	{ "ASRC1IN2L", NULL, "ASRC1R2CLK" },
+	{ "ASRC2IN1L", NULL, "ASRC2R1CLK" },
+	{ "ASRC2IN1R", NULL, "ASRC2R1CLK" },
+	{ "ASRC2IN2L", NULL, "ASRC2R2CLK" },
+	{ "ASRC2IN2L", NULL, "ASRC2R2CLK" },
+	{ "DFC1", NULL, "DFCCLK" },
+	{ "DFC2", NULL, "DFCCLK" },
+	{ "DFC3", NULL, "DFCCLK" },
+	{ "DFC4", NULL, "DFCCLK" },
+	{ "DFC5", NULL, "DFCCLK" },
+	{ "DFC6", NULL, "DFCCLK" },
+	{ "DFC7", NULL, "DFCCLK" },
+	{ "DFC8", NULL, "DFCCLK" },
+
+	{ "AIF2 Capture", NULL, "DBVDD2" },
+	{ "AIF2 Playback", NULL, "DBVDD2" },
+
+	{ "AIF3 Capture", NULL, "DBVDD3" },
+	{ "AIF3 Playback", NULL, "DBVDD3" },
+
+	{ "AIF4 Capture", NULL, "DBVDD3" },
+	{ "AIF4 Playback", NULL, "DBVDD3" },
+
+	{ "OUT1L", NULL, "CPVDD1" },
+	{ "OUT1L", NULL, "CPVDD2" },
+	{ "OUT1R", NULL, "CPVDD1" },
+	{ "OUT1R", NULL, "CPVDD2" },
+	{ "OUT2L", NULL, "CPVDD1" },
+	{ "OUT2L", NULL, "CPVDD2" },
+	{ "OUT2R", NULL, "CPVDD1" },
+	{ "OUT2R", NULL, "CPVDD2" },
+	{ "OUT3L", NULL, "CPVDD1" },
+	{ "OUT3L", NULL, "CPVDD2" },
+	{ "OUT3R", NULL, "CPVDD1" },
+	{ "OUT3R", NULL, "CPVDD2" },
+
+	{ "OUT1L", NULL, "SYSCLK" },
+	{ "OUT1R", NULL, "SYSCLK" },
+	{ "OUT2L", NULL, "SYSCLK" },
+	{ "OUT2R", NULL, "SYSCLK" },
+	{ "OUT3L", NULL, "SYSCLK" },
+	{ "OUT3R", NULL, "SYSCLK" },
+	{ "OUT5L", NULL, "SYSCLK" },
+	{ "OUT5R", NULL, "SYSCLK" },
+
+	{ "SPD1", NULL, "SYSCLK" },
+	{ "SPD1", NULL, "SPD1TX1" },
+	{ "SPD1", NULL, "SPD1TX2" },
+
+	{ "IN1AL", NULL, "SYSCLK" },
+	{ "IN1BL", NULL, "SYSCLK" },
+	{ "IN1AR", NULL, "SYSCLK" },
+	{ "IN1BR", NULL, "SYSCLK" },
+	{ "IN2AL", NULL, "SYSCLK" },
+	{ "IN2BL", NULL, "SYSCLK" },
+	{ "IN2R", NULL, "SYSCLK" },
+	{ "IN3L", NULL, "SYSCLK" },
+	{ "IN3R", NULL, "SYSCLK" },
+	{ "IN4L", NULL, "SYSCLK" },
+	{ "IN4R", NULL, "SYSCLK" },
+	{ "IN5L", NULL, "SYSCLK" },
+	{ "IN5R", NULL, "SYSCLK" },
+
+	{ "IN3L", NULL, "DBVDD4" },
+	{ "IN3R", NULL, "DBVDD4" },
+	{ "IN4L", NULL, "DBVDD4" },
+	{ "IN4R", NULL, "DBVDD4" },
+	{ "IN5L", NULL, "DBVDD4" },
+	{ "IN5R", NULL, "DBVDD4" },
+
+	{ "ASRC1IN1L", NULL, "SYSCLK" },
+	{ "ASRC1IN1R", NULL, "SYSCLK" },
+	{ "ASRC1IN2L", NULL, "SYSCLK" },
+	{ "ASRC1IN2R", NULL, "SYSCLK" },
+	{ "ASRC2IN1L", NULL, "SYSCLK" },
+	{ "ASRC2IN1R", NULL, "SYSCLK" },
+	{ "ASRC2IN2L", NULL, "SYSCLK" },
+	{ "ASRC2IN2R", NULL, "SYSCLK" },
+
+	{ "ASRC1IN1L", NULL, "ASYNCCLK" },
+	{ "ASRC1IN1R", NULL, "ASYNCCLK" },
+	{ "ASRC1IN2L", NULL, "ASYNCCLK" },
+	{ "ASRC1IN2R", NULL, "ASYNCCLK" },
+	{ "ASRC2IN1L", NULL, "ASYNCCLK" },
+	{ "ASRC2IN1R", NULL, "ASYNCCLK" },
+	{ "ASRC2IN2L", NULL, "ASYNCCLK" },
+	{ "ASRC2IN2R", NULL, "ASYNCCLK" },
+
+	{ "MICBIAS1", NULL, "MICVDD" },
+	{ "MICBIAS2", NULL, "MICVDD" },
+
+	{ "MICBIAS1A", NULL, "MICBIAS1" },
+	{ "MICBIAS1B", NULL, "MICBIAS1" },
+	{ "MICBIAS1C", NULL, "MICBIAS1" },
+	{ "MICBIAS1D", NULL, "MICBIAS1" },
+
+	{ "MICBIAS2A", NULL, "MICBIAS2" },
+	{ "MICBIAS2B", NULL, "MICBIAS2" },
+	{ "MICBIAS2C", NULL, "MICBIAS2" },
+	{ "MICBIAS2D", NULL, "MICBIAS2" },
+
+	{ "Noise Generator", NULL, "SYSCLK" },
+	{ "Tone Generator 1", NULL, "SYSCLK" },
+	{ "Tone Generator 2", NULL, "SYSCLK" },
+
+	{ "Noise Generator", NULL, "NOISE" },
+	{ "Tone Generator 1", NULL, "TONE" },
+	{ "Tone Generator 2", NULL, "TONE" },
+
+	{ "AIF1 Capture", NULL, "AIF1TX1" },
+	{ "AIF1 Capture", NULL, "AIF1TX2" },
+	{ "AIF1 Capture", NULL, "AIF1TX3" },
+	{ "AIF1 Capture", NULL, "AIF1TX4" },
+	{ "AIF1 Capture", NULL, "AIF1TX5" },
+	{ "AIF1 Capture", NULL, "AIF1TX6" },
+	{ "AIF1 Capture", NULL, "AIF1TX7" },
+	{ "AIF1 Capture", NULL, "AIF1TX8" },
+
+	{ "AIF1RX1", NULL, "AIF1 Playback" },
+	{ "AIF1RX2", NULL, "AIF1 Playback" },
+	{ "AIF1RX3", NULL, "AIF1 Playback" },
+	{ "AIF1RX4", NULL, "AIF1 Playback" },
+	{ "AIF1RX5", NULL, "AIF1 Playback" },
+	{ "AIF1RX6", NULL, "AIF1 Playback" },
+	{ "AIF1RX7", NULL, "AIF1 Playback" },
+	{ "AIF1RX8", NULL, "AIF1 Playback" },
+
+	{ "AIF2 Capture", NULL, "AIF2TX1" },
+	{ "AIF2 Capture", NULL, "AIF2TX2" },
+	{ "AIF2 Capture", NULL, "AIF2TX3" },
+	{ "AIF2 Capture", NULL, "AIF2TX4" },
+	{ "AIF2 Capture", NULL, "AIF2TX5" },
+	{ "AIF2 Capture", NULL, "AIF2TX6" },
+	{ "AIF2 Capture", NULL, "AIF2TX7" },
+	{ "AIF2 Capture", NULL, "AIF2TX8" },
+
+	{ "AIF2RX1", NULL, "AIF2 Playback" },
+	{ "AIF2RX2", NULL, "AIF2 Playback" },
+	{ "AIF2RX3", NULL, "AIF2 Playback" },
+	{ "AIF2RX4", NULL, "AIF2 Playback" },
+	{ "AIF2RX5", NULL, "AIF2 Playback" },
+	{ "AIF2RX6", NULL, "AIF2 Playback" },
+	{ "AIF2RX7", NULL, "AIF2 Playback" },
+	{ "AIF2RX8", NULL, "AIF2 Playback" },
+
+	{ "AIF3 Capture", NULL, "AIF3TX1" },
+	{ "AIF3 Capture", NULL, "AIF3TX2" },
+
+	{ "AIF3RX1", NULL, "AIF3 Playback" },
+	{ "AIF3RX2", NULL, "AIF3 Playback" },
+
+	{ "AIF4 Capture", NULL, "AIF4TX1" },
+	{ "AIF4 Capture", NULL, "AIF4TX2" },
+
+	{ "AIF4RX1", NULL, "AIF4 Playback" },
+	{ "AIF4RX2", NULL, "AIF4 Playback" },
+
+	{ "Slim1 Capture", NULL, "SLIMTX1" },
+	{ "Slim1 Capture", NULL, "SLIMTX2" },
+	{ "Slim1 Capture", NULL, "SLIMTX3" },
+	{ "Slim1 Capture", NULL, "SLIMTX4" },
+
+	{ "SLIMRX1", NULL, "Slim1 Playback" },
+	{ "SLIMRX2", NULL, "Slim1 Playback" },
+	{ "SLIMRX3", NULL, "Slim1 Playback" },
+	{ "SLIMRX4", NULL, "Slim1 Playback" },
+
+	{ "Slim2 Capture", NULL, "SLIMTX5" },
+	{ "Slim2 Capture", NULL, "SLIMTX6" },
+
+	{ "SLIMRX5", NULL, "Slim2 Playback" },
+	{ "SLIMRX6", NULL, "Slim2 Playback" },
+
+	{ "Slim3 Capture", NULL, "SLIMTX7" },
+	{ "Slim3 Capture", NULL, "SLIMTX8" },
+
+	{ "SLIMRX7", NULL, "Slim3 Playback" },
+	{ "SLIMRX8", NULL, "Slim3 Playback" },
+
+	{ "AIF1 Playback", NULL, "SYSCLK" },
+	{ "AIF2 Playback", NULL, "SYSCLK" },
+	{ "AIF3 Playback", NULL, "SYSCLK" },
+	{ "AIF4 Playback", NULL, "SYSCLK" },
+	{ "Slim1 Playback", NULL, "SYSCLK" },
+	{ "Slim2 Playback", NULL, "SYSCLK" },
+	{ "Slim3 Playback", NULL, "SYSCLK" },
+
+	{ "AIF1 Capture", NULL, "SYSCLK" },
+	{ "AIF2 Capture", NULL, "SYSCLK" },
+	{ "AIF3 Capture", NULL, "SYSCLK" },
+	{ "AIF4 Capture", NULL, "SYSCLK" },
+	{ "Slim1 Capture", NULL, "SYSCLK" },
+	{ "Slim2 Capture", NULL, "SYSCLK" },
+	{ "Slim3 Capture", NULL, "SYSCLK" },
+
+	{ "Voice Control DSP", NULL, "DSP6" },
+
+	{ "Audio Trace DSP", NULL, "DSP1" },
+
+	{ "IN1L Mux", "A", "IN1AL" },
+	{ "IN1L Mux", "B", "IN1BL" },
+	{ "IN1R Mux", "A", "IN1AR" },
+	{ "IN1R Mux", "B", "IN1BR" },
+
+	{ "IN2L Mux", "A", "IN2AL" },
+	{ "IN2L Mux", "B", "IN2BL" },
+
+	{ "IN1L PGA", NULL, "IN1L Mux" },
+	{ "IN1R PGA", NULL, "IN1R Mux" },
+
+	{ "IN2L PGA", NULL, "IN2L Mux" },
+	{ "IN2R PGA", NULL, "IN2R" },
+
+	{ "IN3L PGA", NULL, "IN3L" },
+	{ "IN3R PGA", NULL, "IN3R" },
+
+	{ "IN4L PGA", NULL, "IN4L" },
+	{ "IN4R PGA", NULL, "IN4R" },
+
+	{ "IN5L PGA", NULL, "IN5L" },
+	{ "IN5R PGA", NULL, "IN5R" },
+
+	MADERA_MIXER_ROUTES("OUT1L", "HPOUT1L"),
+	MADERA_MIXER_ROUTES("OUT1R", "HPOUT1R"),
+	MADERA_MIXER_ROUTES("OUT2L", "HPOUT2L"),
+	MADERA_MIXER_ROUTES("OUT2R", "HPOUT2R"),
+	MADERA_MIXER_ROUTES("OUT3L", "HPOUT3L"),
+	MADERA_MIXER_ROUTES("OUT3R", "HPOUT3R"),
+
+	MADERA_MIXER_ROUTES("OUT5L", "SPKDAT1L"),
+	MADERA_MIXER_ROUTES("OUT5R", "SPKDAT1R"),
+
+	MADERA_MIXER_ROUTES("PWM1 Driver", "PWM1"),
+	MADERA_MIXER_ROUTES("PWM2 Driver", "PWM2"),
+
+	MADERA_MIXER_ROUTES("AIF1TX1", "AIF1TX1"),
+	MADERA_MIXER_ROUTES("AIF1TX2", "AIF1TX2"),
+	MADERA_MIXER_ROUTES("AIF1TX3", "AIF1TX3"),
+	MADERA_MIXER_ROUTES("AIF1TX4", "AIF1TX4"),
+	MADERA_MIXER_ROUTES("AIF1TX5", "AIF1TX5"),
+	MADERA_MIXER_ROUTES("AIF1TX6", "AIF1TX6"),
+	MADERA_MIXER_ROUTES("AIF1TX7", "AIF1TX7"),
+	MADERA_MIXER_ROUTES("AIF1TX8", "AIF1TX8"),
+
+	MADERA_MIXER_ROUTES("AIF2TX1", "AIF2TX1"),
+	MADERA_MIXER_ROUTES("AIF2TX2", "AIF2TX2"),
+	MADERA_MIXER_ROUTES("AIF2TX3", "AIF2TX3"),
+	MADERA_MIXER_ROUTES("AIF2TX4", "AIF2TX4"),
+	MADERA_MIXER_ROUTES("AIF2TX5", "AIF2TX5"),
+	MADERA_MIXER_ROUTES("AIF2TX6", "AIF2TX6"),
+	MADERA_MIXER_ROUTES("AIF2TX7", "AIF2TX7"),
+	MADERA_MIXER_ROUTES("AIF2TX8", "AIF2TX8"),
+
+	MADERA_MIXER_ROUTES("AIF3TX1", "AIF3TX1"),
+	MADERA_MIXER_ROUTES("AIF3TX2", "AIF3TX2"),
+
+	MADERA_MIXER_ROUTES("AIF4TX1", "AIF4TX1"),
+	MADERA_MIXER_ROUTES("AIF4TX2", "AIF4TX2"),
+
+	MADERA_MIXER_ROUTES("SLIMTX1", "SLIMTX1"),
+	MADERA_MIXER_ROUTES("SLIMTX2", "SLIMTX2"),
+	MADERA_MIXER_ROUTES("SLIMTX3", "SLIMTX3"),
+	MADERA_MIXER_ROUTES("SLIMTX4", "SLIMTX4"),
+	MADERA_MIXER_ROUTES("SLIMTX5", "SLIMTX5"),
+	MADERA_MIXER_ROUTES("SLIMTX6", "SLIMTX6"),
+	MADERA_MIXER_ROUTES("SLIMTX7", "SLIMTX7"),
+	MADERA_MIXER_ROUTES("SLIMTX8", "SLIMTX8"),
+
+	MADERA_MUX_ROUTES("SPD1TX1", "SPDIF1TX1"),
+	MADERA_MUX_ROUTES("SPD1TX2", "SPDIF1TX2"),
+
+	MADERA_MIXER_ROUTES("EQ1", "EQ1"),
+	MADERA_MIXER_ROUTES("EQ2", "EQ2"),
+	MADERA_MIXER_ROUTES("EQ3", "EQ3"),
+	MADERA_MIXER_ROUTES("EQ4", "EQ4"),
+
+	MADERA_MIXER_ROUTES("DRC1L", "DRC1L"),
+	MADERA_MIXER_ROUTES("DRC1R", "DRC1R"),
+	MADERA_MIXER_ROUTES("DRC2L", "DRC2L"),
+	MADERA_MIXER_ROUTES("DRC2R", "DRC2R"),
+
+	MADERA_MIXER_ROUTES("LHPF1", "LHPF1"),
+	MADERA_MIXER_ROUTES("LHPF2", "LHPF2"),
+	MADERA_MIXER_ROUTES("LHPF3", "LHPF3"),
+	MADERA_MIXER_ROUTES("LHPF4", "LHPF4"),
+
+	MADERA_MUX_ROUTES("ASRC1IN1L", "ASRC1IN1L"),
+	MADERA_MUX_ROUTES("ASRC1IN1R", "ASRC1IN1R"),
+	MADERA_MUX_ROUTES("ASRC1IN2L", "ASRC1IN2L"),
+	MADERA_MUX_ROUTES("ASRC1IN2R", "ASRC1IN2R"),
+	MADERA_MUX_ROUTES("ASRC2IN1L", "ASRC2IN1L"),
+	MADERA_MUX_ROUTES("ASRC2IN1R", "ASRC2IN1R"),
+	MADERA_MUX_ROUTES("ASRC2IN2L", "ASRC2IN2L"),
+	MADERA_MUX_ROUTES("ASRC2IN2R", "ASRC2IN2R"),
+
+	MADERA_DSP_ROUTES("DSP1"),
+	MADERA_DSP_ROUTES("DSP2"),
+	MADERA_DSP_ROUTES("DSP3"),
+	MADERA_DSP_ROUTES("DSP4"),
+	MADERA_DSP_ROUTES("DSP5"),
+	MADERA_DSP_ROUTES("DSP6"),
+	MADERA_DSP_ROUTES("DSP7"),
+
+	{ "DSP Trigger Out", NULL, "DSP1 Trigger Output" },
+	{ "DSP Trigger Out", NULL, "DSP2 Trigger Output" },
+	{ "DSP Trigger Out", NULL, "DSP3 Trigger Output" },
+	{ "DSP Trigger Out", NULL, "DSP4 Trigger Output" },
+	{ "DSP Trigger Out", NULL, "DSP5 Trigger Output" },
+	{ "DSP Trigger Out", NULL, "DSP6 Trigger Output" },
+	{ "DSP Trigger Out", NULL, "DSP7 Trigger Output" },
+
+	{ "DSP1 Trigger Output", "Switch", "DSP1" },
+	{ "DSP2 Trigger Output", "Switch", "DSP2" },
+	{ "DSP3 Trigger Output", "Switch", "DSP3" },
+	{ "DSP4 Trigger Output", "Switch", "DSP4" },
+	{ "DSP5 Trigger Output", "Switch", "DSP5" },
+	{ "DSP6 Trigger Output", "Switch", "DSP6" },
+	{ "DSP7 Trigger Output", "Switch", "DSP7" },
+
+	MADERA_MUX_ROUTES("ISRC1INT1", "ISRC1INT1"),
+	MADERA_MUX_ROUTES("ISRC1INT2", "ISRC1INT2"),
+	MADERA_MUX_ROUTES("ISRC1INT3", "ISRC1INT3"),
+	MADERA_MUX_ROUTES("ISRC1INT4", "ISRC1INT4"),
+
+	MADERA_MUX_ROUTES("ISRC1DEC1", "ISRC1DEC1"),
+	MADERA_MUX_ROUTES("ISRC1DEC2", "ISRC1DEC2"),
+	MADERA_MUX_ROUTES("ISRC1DEC3", "ISRC1DEC3"),
+	MADERA_MUX_ROUTES("ISRC1DEC4", "ISRC1DEC4"),
+
+	MADERA_MUX_ROUTES("ISRC2INT1", "ISRC2INT1"),
+	MADERA_MUX_ROUTES("ISRC2INT2", "ISRC2INT2"),
+	MADERA_MUX_ROUTES("ISRC2INT3", "ISRC2INT3"),
+	MADERA_MUX_ROUTES("ISRC2INT4", "ISRC2INT4"),
+
+	MADERA_MUX_ROUTES("ISRC2DEC1", "ISRC2DEC1"),
+	MADERA_MUX_ROUTES("ISRC2DEC2", "ISRC2DEC2"),
+	MADERA_MUX_ROUTES("ISRC2DEC3", "ISRC2DEC3"),
+	MADERA_MUX_ROUTES("ISRC2DEC4", "ISRC2DEC4"),
+
+	MADERA_MUX_ROUTES("ISRC3INT1", "ISRC3INT1"),
+	MADERA_MUX_ROUTES("ISRC3INT2", "ISRC3INT2"),
+
+	MADERA_MUX_ROUTES("ISRC3DEC1", "ISRC3DEC1"),
+	MADERA_MUX_ROUTES("ISRC3DEC2", "ISRC3DEC2"),
+
+	MADERA_MUX_ROUTES("ISRC4INT1", "ISRC4INT1"),
+	MADERA_MUX_ROUTES("ISRC4INT2", "ISRC4INT2"),
+
+	MADERA_MUX_ROUTES("ISRC4DEC1", "ISRC4DEC1"),
+	MADERA_MUX_ROUTES("ISRC4DEC2", "ISRC4DEC2"),
+
+	{ "AEC1 Loopback", "HPOUT1L", "OUT1L" },
+	{ "AEC1 Loopback", "HPOUT1R", "OUT1R" },
+	{ "HPOUT1L", NULL, "OUT1L" },
+	{ "HPOUT1R", NULL, "OUT1R" },
+
+	{ "AEC1 Loopback", "HPOUT2L", "OUT2L" },
+	{ "AEC1 Loopback", "HPOUT2R", "OUT2R" },
+	{ "HPOUT2L", NULL, "OUT2L" },
+	{ "HPOUT2R", NULL, "OUT2R" },
+
+	{ "AEC1 Loopback", "HPOUT3L", "OUT3L" },
+	{ "AEC1 Loopback", "HPOUT3R", "OUT3R" },
+	{ "HPOUT3L", NULL, "OUT3L" },
+	{ "HPOUT3R", NULL, "OUT3R" },
+
+	{ "AEC1 Loopback", "SPKDAT1L", "OUT5L" },
+	{ "AEC1 Loopback", "SPKDAT1R", "OUT5R" },
+	{ "SPKDAT1L", NULL, "OUT5L" },
+	{ "SPKDAT1R", NULL, "OUT5R" },
+
+	CS47L90_RXANC_INPUT_ROUTES("RXANCL", "RXANCL"),
+	CS47L90_RXANC_INPUT_ROUTES("RXANCR", "RXANCR"),
+
+	CS47L90_RXANC_OUTPUT_ROUTES("OUT1L", "HPOUT1L"),
+	CS47L90_RXANC_OUTPUT_ROUTES("OUT1R", "HPOUT1R"),
+	CS47L90_RXANC_OUTPUT_ROUTES("OUT2L", "HPOUT2L"),
+	CS47L90_RXANC_OUTPUT_ROUTES("OUT2R", "HPOUT2R"),
+	CS47L90_RXANC_OUTPUT_ROUTES("OUT3L", "HPOUT3L"),
+	CS47L90_RXANC_OUTPUT_ROUTES("OUT3R", "HPOUT3R"),
+	CS47L90_RXANC_OUTPUT_ROUTES("OUT5L", "SPKDAT1L"),
+	CS47L90_RXANC_OUTPUT_ROUTES("OUT5R", "SPKDAT1R"),
+
+	{ "SPDIF1", NULL, "SPD1" },
+
+	{ "MICSUPP", NULL, "SYSCLK" },
+
+	{ "DRC1 Signal Activity", NULL, "DRC1 Activity Output" },
+	{ "DRC2 Signal Activity", NULL, "DRC2 Activity Output" },
+	{ "DRC1 Activity Output", "Switch", "DRC1L" },
+	{ "DRC1 Activity Output", "Switch", "DRC1R" },
+	{ "DRC2 Activity Output", "Switch", "DRC2L" },
+	{ "DRC2 Activity Output", "Switch", "DRC2R" },
+
+	MADERA_MUX_ROUTES("DFC1", "DFC1"),
+	MADERA_MUX_ROUTES("DFC2", "DFC2"),
+	MADERA_MUX_ROUTES("DFC3", "DFC3"),
+	MADERA_MUX_ROUTES("DFC4", "DFC4"),
+	MADERA_MUX_ROUTES("DFC5", "DFC5"),
+	MADERA_MUX_ROUTES("DFC6", "DFC6"),
+	MADERA_MUX_ROUTES("DFC7", "DFC7"),
+	MADERA_MUX_ROUTES("DFC8", "DFC8"),
+};
+
+static int cs47l90_set_fll(struct snd_soc_codec *codec, int fll_id, int source,
+			   unsigned int Fref, unsigned int Fout)
+{
+	struct cs47l90 *cs47l90 = snd_soc_codec_get_drvdata(codec);
+
+	switch (fll_id) {
+	case MADERA_FLL1_REFCLK:
+		return madera_set_fll_refclk(&cs47l90->fll[0], source, Fref,
+					     Fout);
+	case MADERA_FLL2_REFCLK:
+		return madera_set_fll_refclk(&cs47l90->fll[1], source, Fref,
+					     Fout);
+	case MADERA_FLLAO_REFCLK:
+		return madera_set_fll_ao_refclk(&cs47l90->fll[2], source, Fref,
+						Fout);
+	case MADERA_FLL1_SYNCCLK:
+		return madera_set_fll_syncclk(&cs47l90->fll[0], source, Fref,
+					      Fout);
+	case MADERA_FLL2_SYNCCLK:
+		return madera_set_fll_syncclk(&cs47l90->fll[1], source, Fref,
+					      Fout);
+	default:
+		return -EINVAL;
+	}
+}
+
+static struct snd_soc_dai_driver cs47l90_dai[] = {
+	{
+		.name = "cs47l90-aif1",
+		.id = 1,
+		.base = MADERA_AIF1_BCLK_CTRL,
+		.playback = {
+			.stream_name = "AIF1 Playback",
+			.channels_min = 1,
+			.channels_max = 8,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		},
+		.capture = {
+			.stream_name = "AIF1 Capture",
+			.channels_min = 1,
+			.channels_max = 8,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		 },
+		.ops = &madera_dai_ops,
+		.symmetric_rates = 1,
+		.symmetric_samplebits = 1,
+	},
+	{
+		.name = "cs47l90-aif2",
+		.id = 2,
+		.base = MADERA_AIF2_BCLK_CTRL,
+		.playback = {
+			.stream_name = "AIF2 Playback",
+			.channels_min = 1,
+			.channels_max = 8,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		},
+		.capture = {
+			.stream_name = "AIF2 Capture",
+			.channels_min = 1,
+			.channels_max = 8,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		 },
+		.ops = &madera_dai_ops,
+		.symmetric_rates = 1,
+		.symmetric_samplebits = 1,
+	},
+	{
+		.name = "cs47l90-aif3",
+		.id = 3,
+		.base = MADERA_AIF3_BCLK_CTRL,
+		.playback = {
+			.stream_name = "AIF3 Playback",
+			.channels_min = 1,
+			.channels_max = 2,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		},
+		.capture = {
+			.stream_name = "AIF3 Capture",
+			.channels_min = 1,
+			.channels_max = 2,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		 },
+		.ops = &madera_dai_ops,
+		.symmetric_rates = 1,
+		.symmetric_samplebits = 1,
+	},
+	{
+		.name = "cs47l90-aif4",
+		.id = 4,
+		.base = MADERA_AIF4_BCLK_CTRL,
+		.playback = {
+			.stream_name = "AIF4 Playback",
+			.channels_min = 1,
+			.channels_max = 2,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		},
+		.capture = {
+			.stream_name = "AIF4 Capture",
+			.channels_min = 1,
+			.channels_max = 2,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		 },
+		.ops = &madera_dai_ops,
+		.symmetric_rates = 1,
+		.symmetric_samplebits = 1,
+	},
+	{
+		.name = "cs47l90-slim1",
+		.id = 5,
+		.playback = {
+			.stream_name = "Slim1 Playback",
+			.channels_min = 1,
+			.channels_max = 4,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		},
+		.capture = {
+			.stream_name = "Slim1 Capture",
+			.channels_min = 1,
+			.channels_max = 4,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		 },
+		.ops = &madera_simple_dai_ops,
+	},
+	{
+		.name = "cs47l90-slim2",
+		.id = 6,
+		.playback = {
+			.stream_name = "Slim2 Playback",
+			.channels_min = 1,
+			.channels_max = 2,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		},
+		.capture = {
+			.stream_name = "Slim2 Capture",
+			.channels_min = 1,
+			.channels_max = 2,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		 },
+		.ops = &madera_simple_dai_ops,
+	},
+	{
+		.name = "cs47l90-slim3",
+		.id = 7,
+		.playback = {
+			.stream_name = "Slim3 Playback",
+			.channels_min = 1,
+			.channels_max = 2,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		},
+		.capture = {
+			.stream_name = "Slim3 Capture",
+			.channels_min = 1,
+			.channels_max = 2,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		 },
+		.ops = &madera_simple_dai_ops,
+	},
+	{
+		.name = "cs47l90-cpu-voicectrl",
+		.capture = {
+			.stream_name = "Voice Control CPU",
+			.channels_min = 1,
+			.channels_max = 1,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		},
+		.compress_new = snd_soc_new_compress,
+	},
+	{
+		.name = "cs47l90-dsp-voicectrl",
+		.capture = {
+			.stream_name = "Voice Control DSP",
+			.channels_min = 1,
+			.channels_max = 1,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		},
+	},
+	{
+		.name = "cs47l90-cpu-trace",
+		.capture = {
+			.stream_name = "Audio Trace CPU",
+			.channels_min = 1,
+			.channels_max = 6,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		},
+		.compress_new = snd_soc_new_compress,
+	},
+	{
+		.name = "cs47l90-dsp-trace",
+		.capture = {
+			.stream_name = "Audio Trace DSP",
+			.channels_min = 1,
+			.channels_max = 6,
+			.rates = MADERA_RATES,
+			.formats = MADERA_FORMATS,
+		},
+	},
+};
+
+static int cs47l90_open(struct snd_compr_stream *stream)
+{
+	struct snd_soc_pcm_runtime *rtd = stream->private_data;
+	struct cs47l90 *cs47l90 = snd_soc_platform_get_drvdata(rtd->platform);
+	struct madera_priv *priv = &cs47l90->core;
+	struct madera *madera = priv->madera;
+	int n_adsp;
+
+	if (strcmp(rtd->codec_dai->name, "cs47l90-dsp-voicectrl") == 0) {
+		n_adsp = 5;
+	} else if (strcmp(rtd->codec_dai->name, "cs47l90-dsp-trace") == 0) {
+		n_adsp = 0;
+	} else {
+		dev_err(madera->dev,
+			"No suitable compressed stream for DAI '%s'\n",
+			rtd->codec_dai->name);
+		return -EINVAL;
+	}
+
+	return wm_adsp_compr_open(&priv->adsp[n_adsp], stream);
+}
+
+static irqreturn_t cs47l90_adsp2_irq(int irq, void *data)
+{
+	struct cs47l90 *cs47l90 = data;
+	struct madera_priv *priv = &cs47l90->core;
+	struct madera *madera = priv->madera;
+	struct madera_voice_trigger_info trig_info;
+	int serviced = 0;
+	int i, ret;
+
+	for (i = 0; i < CS47L90_NUM_ADSP; ++i) {
+		ret = wm_adsp_compr_handle_irq(&priv->adsp[i]);
+		if (ret != -ENODEV)
+			serviced++;
+		if (ret == WM_ADSP_COMPR_VOICE_TRIGGER) {
+			trig_info.core_num = i + 1;
+			blocking_notifier_call_chain(&madera->notifier,
+						MADERA_NOTIFY_VOICE_TRIGGER,
+						&trig_info);
+		}
+	}
+
+	if (!serviced) {
+		dev_err(madera->dev, "Spurious compressed data IRQ\n");
+		return IRQ_NONE;
+	}
+
+	return IRQ_HANDLED;
+}
+
+static irqreturn_t cs47l90_dsp_bus_error(int irq, void *data)
+{
+	struct wm_adsp *dsp = (struct wm_adsp *)data;
+
+	return wm_adsp2_bus_error(dsp);
+}
+
+static const char * const cs47l90_dmic_refs[] = {
+	"MICVDD",
+	"MICBIAS1",
+	"MICBIAS2",
+	"MICBIAS3",
+};
+
+static const char * const cs47l90_dmic_inputs[] = {
+	"IN1L Mux",
+	"IN1R Mux",
+	"IN2L Mux",
+	"IN2R",
+	"IN3L",
+	"IN3R",
+	"IN4L",
+	"IN4R",
+	"IN5L",
+	"IN5R",
+};
+
+static int cs47l90_codec_probe(struct snd_soc_codec *codec)
+{
+	struct cs47l90 *cs47l90 = snd_soc_codec_get_drvdata(codec);
+	struct madera *madera = cs47l90->core.madera;
+	int ret, i;
+
+	madera->dapm = snd_soc_codec_get_dapm(codec);
+
+	ret = madera_init_inputs(codec,
+				 cs47l90_dmic_inputs,
+				 ARRAY_SIZE(cs47l90_dmic_inputs),
+				 cs47l90_dmic_refs,
+				 ARRAY_SIZE(cs47l90_dmic_refs));
+	if (ret)
+		return ret;
+
+	ret = madera_init_outputs(codec, CS47L90_MONO_OUTPUTS);
+	if (ret)
+		return ret;
+
+	snd_soc_component_disable_pin(snd_soc_dapm_to_component(madera->dapm),
+				      "HAPTICS");
+
+	ret = snd_soc_add_codec_controls(codec, madera_adsp_rate_controls,
+					 CS47L90_NUM_ADSP);
+	if (ret)
+		return ret;
+
+	for (i = 0; i < CS47L90_NUM_ADSP; i++)
+		wm_adsp2_codec_probe(&cs47l90->core.adsp[i], codec);
+
+	return 0;
+}
+
+static int cs47l90_codec_remove(struct snd_soc_codec *codec)
+{
+	int i;
+	struct cs47l90 *cs47l90 = snd_soc_codec_get_drvdata(codec);
+
+	for (i = 0; i < CS47L90_NUM_ADSP; i++) {
+		wm_adsp2_codec_remove(&cs47l90->core.adsp[i], codec);
+		madera_destroy_bus_error_irq(&cs47l90->core, i);
+	}
+
+	cs47l90->core.madera->dapm = NULL;
+
+	return 0;
+}
+
+#define CS47L90_DIG_VU 0x0200
+
+static unsigned int cs47l90_digital_vu[] = {
+	MADERA_DAC_DIGITAL_VOLUME_1L,
+	MADERA_DAC_DIGITAL_VOLUME_1R,
+	MADERA_DAC_DIGITAL_VOLUME_2L,
+	MADERA_DAC_DIGITAL_VOLUME_2R,
+	MADERA_DAC_DIGITAL_VOLUME_3L,
+	MADERA_DAC_DIGITAL_VOLUME_3R,
+	MADERA_DAC_DIGITAL_VOLUME_5L,
+	MADERA_DAC_DIGITAL_VOLUME_5R,
+};
+
+static struct regmap *cs47l90_get_regmap(struct device *dev)
+{
+	struct cs47l90 *cs47l90 = dev_get_drvdata(dev);
+
+	return cs47l90->core.madera->regmap;
+}
+
+static struct snd_soc_codec_driver soc_codec_dev_cs47l90 = {
+	.probe = cs47l90_codec_probe,
+	.remove = cs47l90_codec_remove,
+	.get_regmap = cs47l90_get_regmap,
+
+	.idle_bias_off = true,
+
+	.set_sysclk = madera_set_sysclk,
+	.set_pll = cs47l90_set_fll,
+
+	.component_driver = {
+		.controls = cs47l90_snd_controls,
+		.num_controls = ARRAY_SIZE(cs47l90_snd_controls),
+		.dapm_widgets = cs47l90_dapm_widgets,
+		.num_dapm_widgets = ARRAY_SIZE(cs47l90_dapm_widgets),
+		.dapm_routes = cs47l90_dapm_routes,
+		.num_dapm_routes = ARRAY_SIZE(cs47l90_dapm_routes),
+	},
+};
+
+static struct snd_compr_ops cs47l90_compr_ops = {
+	.open = cs47l90_open,
+	.free = wm_adsp_compr_free,
+	.set_params = wm_adsp_compr_set_params,
+	.get_caps = wm_adsp_compr_get_caps,
+	.trigger = wm_adsp_compr_trigger,
+	.pointer = wm_adsp_compr_pointer,
+	.copy = wm_adsp_compr_copy,
+};
+
+static struct snd_soc_platform_driver cs47l90_compr_platform = {
+	.compr_ops = &cs47l90_compr_ops,
+};
+
+static int cs47l90_probe(struct platform_device *pdev)
+{
+	struct madera *madera = dev_get_drvdata(pdev->dev.parent);
+	struct cs47l90 *cs47l90;
+	int i, ret;
+
+	BUILD_BUG_ON(ARRAY_SIZE(cs47l90_dai) > MADERA_MAX_DAI);
+
+	/* quick exit if Madera irqchip driver hasn't completed probe */
+	if (!madera->irq_dev) {
+		dev_dbg(&pdev->dev, "irqchip driver not ready\n");
+		return -EPROBE_DEFER;
+	}
+
+	cs47l90 = devm_kzalloc(&pdev->dev, sizeof(struct cs47l90),
+			      GFP_KERNEL);
+	if (!cs47l90)
+		return -ENOMEM;
+
+	platform_set_drvdata(pdev, cs47l90);
+
+	cs47l90->core.madera = madera;
+	cs47l90->core.dev = &pdev->dev;
+	cs47l90->core.num_inputs = 10;
+
+	ret = madera_core_init(&cs47l90->core);
+	if (ret)
+		return ret;
+
+	ret = madera_request_irq(madera, MADERA_IRQ_DSP_IRQ1,
+				 "ADSP2 Compressed IRQ", cs47l90_adsp2_irq,
+				 cs47l90);
+	if (ret != 0) {
+		dev_err(&pdev->dev, "Failed to request DSP IRQ: %d\n", ret);
+		return ret;
+	}
+
+	for (i = 0; i < CS47L90_NUM_ADSP; i++) {
+		cs47l90->core.adsp[i].part = "cs47l90";
+		cs47l90->core.adsp[i].num = i + 1;
+		cs47l90->core.adsp[i].type = WMFW_ADSP2;
+		cs47l90->core.adsp[i].rev = 2;
+		cs47l90->core.adsp[i].dev = madera->dev;
+		cs47l90->core.adsp[i].regmap = madera->regmap_32bit;
+
+		cs47l90->core.adsp[i].base = cs47l90_dsp_control_bases[i];
+		cs47l90->core.adsp[i].mem = cs47l90_dsp_regions[i];
+		cs47l90->core.adsp[i].num_mems
+			= ARRAY_SIZE(cs47l90_dsp1_regions);
+
+		cs47l90->core.adsp[i].lock_regions = WM_ADSP2_REGION_1_9;
+
+		ret = wm_adsp2_init(&cs47l90->core.adsp[i]);
+
+		if (ret == 0) {
+			ret = madera_init_bus_error_irq(&cs47l90->core,
+							i,
+							cs47l90_dsp_bus_error);
+			if (ret != 0)
+				wm_adsp2_remove(&cs47l90->core.adsp[i]);
+		}
+
+		if (ret != 0) {
+			for (--i; i >= 0; --i) {
+				madera_destroy_bus_error_irq(&cs47l90->core, i);
+				wm_adsp2_remove(&cs47l90->core.adsp[i]);
+			}
+			goto error_core;
+		}
+	}
+
+	madera_init_fll(madera, 1, MADERA_FLL1_CONTROL_1 - 1,
+			&cs47l90->fll[0]);
+	madera_init_fll(madera, 2, MADERA_FLL2_CONTROL_1 - 1,
+			&cs47l90->fll[1]);
+	madera_init_fll(madera, 4, MADERA_FLLAO_CONTROL_1 - 1,
+			&cs47l90->fll[2]);
+
+	for (i = 0; i < ARRAY_SIZE(cs47l90_dai); i++)
+		madera_init_dai(&cs47l90->core, i);
+
+	/* Latch volume update bits */
+	for (i = 0; i < ARRAY_SIZE(cs47l90_digital_vu); i++)
+		regmap_update_bits(madera->regmap, cs47l90_digital_vu[i],
+				   CS47L90_DIG_VU, CS47L90_DIG_VU);
+
+	pm_runtime_enable(&pdev->dev);
+	pm_runtime_idle(&pdev->dev);
+
+	ret = snd_soc_register_platform(&pdev->dev, &cs47l90_compr_platform);
+	if (ret < 0) {
+		dev_err(&pdev->dev, "Failed to register platform: %d\n", ret);
+		goto error;
+	}
+
+	ret = snd_soc_register_codec(&pdev->dev, &soc_codec_dev_cs47l90,
+				     cs47l90_dai, ARRAY_SIZE(cs47l90_dai));
+	if (ret < 0) {
+		dev_err(&pdev->dev,
+			"Failed to register codec: %d\n", ret);
+		snd_soc_unregister_platform(&pdev->dev);
+		goto error;
+	}
+
+	return ret;
+
+error:
+	for (i = 0; i < CS47L90_NUM_ADSP; i++) {
+		madera_destroy_bus_error_irq(&cs47l90->core, i);
+		wm_adsp2_remove(&cs47l90->core.adsp[i]);
+	}
+
+error_core:
+	madera_free_irq(madera, MADERA_IRQ_DSP_IRQ1, cs47l90);
+	madera_core_destroy(&cs47l90->core);
+
+	return ret;
+}
+
+static int cs47l90_remove(struct platform_device *pdev)
+{
+	struct cs47l90 *cs47l90 = platform_get_drvdata(pdev);
+	int i;
+
+	snd_soc_unregister_platform(&pdev->dev);
+	snd_soc_unregister_codec(&pdev->dev);
+	pm_runtime_disable(&pdev->dev);
+
+	for (i = 0; i < CS47L90_NUM_ADSP; i++) {
+		madera_destroy_bus_error_irq(&cs47l90->core, i);
+		wm_adsp2_remove(&cs47l90->core.adsp[i]);
+	}
+
+	madera_free_irq(cs47l90->core.madera, MADERA_IRQ_DSP_IRQ1, cs47l90);
+	madera_core_destroy(&cs47l90->core);
+
+	return 0;
+}
+
+static struct platform_driver cs47l90_codec_driver = {
+	.driver = {
+		.name = "cs47l90-codec",
+	},
+	.probe = cs47l90_probe,
+	.remove = cs47l90_remove,
+};
+
+module_platform_driver(cs47l90_codec_driver);
+
+MODULE_DESCRIPTION("ASoC CS47L90 driver");
+MODULE_AUTHOR("Nikesh Oswal <nikesh@opensource.wolfsonmicro.com>");
+MODULE_LICENSE("GPL v2");
+MODULE_ALIAS("platform:cs47l90-codec");
-- 
2.11.0

^ permalink raw reply related

* [PATCH] arm64: allwinner: a64: Enable AXP803 for Orangepi Win
From: Jagan Teki @ 2017-11-23 17:35 UTC (permalink / raw)
  To: Maxime Ripard
  Cc: Chen-Yu Tsai, Icenowy Zheng, Rob Herring, Mark Rutland,
	Catalin Marinas, Will Deacon, Michael Trimarchi,
	linux-arm-kernel-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r,
	devicetree-u79uwXL29TY76Z2rM5mHXA,
	linux-kernel-u79uwXL29TY76Z2rM5mHXA,
	linux-sunxi-/JYPxA39Uh5TLH3MbocFFw, Jagan Teki

Enable AXP803 PMIC and regulators for Orangepi Win.

Signed-off-by: Jagan Teki <jagan-dyjBcgdgk7Pe9wHmmfpqLFaTQe2KTcn/@public.gmane.org>
---
 .../boot/dts/allwinner/sun50i-a64-orangepi-win.dts | 125 +++++++++++++++++++--
 1 file changed, 117 insertions(+), 8 deletions(-)

diff --git a/arch/arm64/boot/dts/allwinner/sun50i-a64-orangepi-win.dts b/arch/arm64/boot/dts/allwinner/sun50i-a64-orangepi-win.dts
index 5f8ff40..240d357 100644
--- a/arch/arm64/boot/dts/allwinner/sun50i-a64-orangepi-win.dts
+++ b/arch/arm64/boot/dts/allwinner/sun50i-a64-orangepi-win.dts
@@ -57,13 +57,6 @@
 	chosen {
 		stdout-path = "serial0:115200n8";
 	};
-
-	reg_vcc3v3: vcc3v3 {
-		compatible = "regulator-fixed";
-		regulator-name = "vcc3v3";
-		regulator-min-microvolt = <3300000>;
-		regulator-max-microvolt = <3300000>;
-	};
 };
 
 &ehci1 {
@@ -73,7 +66,7 @@
 &mmc0 {
 	pinctrl-names = "default";
 	pinctrl-0 = <&mmc0_pins>;
-	vmmc-supply = <&reg_vcc3v3>;
+	vmmc-supply = <&reg_dcdc1>;
 	cd-gpios = <&pio 5 6 GPIO_ACTIVE_HIGH>;
 	cd-inverted;
 	status = "okay";
@@ -83,6 +76,122 @@
 	status = "okay";
 };
 
+&r_rsb {
+	status = "okay";
+
+	axp803: pmic@3a3 {
+		compatible = "x-powers,axp803";
+		reg = <0x3a3>;
+		interrupt-parent = <&r_intc>;
+		interrupts = <0 IRQ_TYPE_LEVEL_LOW>;
+	};
+};
+
+#include "axp803.dtsi"
+
+&reg_aldo1 {
+	regulator-always-on;
+	regulator-min-microvolt = <1800000>;
+	regulator-max-microvolt = <3300000>;
+	regulator-name = "afvcc-csi";
+};
+
+&reg_aldo2 {
+	regulator-always-on;
+	regulator-min-microvolt = <1800000>;
+	regulator-max-microvolt = <3300000>;
+	regulator-name = "vcc-pl";
+};
+
+&reg_aldo3 {
+	regulator-always-on;
+	regulator-min-microvolt = <3000000>;
+	regulator-max-microvolt = <3000000>;
+	regulator-name = "vcc-pll-avcc";
+};
+
+&reg_dcdc1 {
+	regulator-always-on;
+	regulator-min-microvolt = <3300000>;
+	regulator-max-microvolt = <3300000>;
+	regulator-name = "vcc-3v3";
+};
+
+&reg_dcdc2 {
+	regulator-always-on;
+	regulator-min-microvolt = <1040000>;
+	regulator-max-microvolt = <1300000>;
+	regulator-name = "vdd-cpux";
+};
+
+/* DCDC3 is polyphased with DCDC2 */
+
+&reg_dcdc5 {
+	regulator-always-on;
+	regulator-min-microvolt = <1500000>;
+	regulator-max-microvolt = <1500000>;
+	regulator-name = "vcc-dram";
+};
+
+&reg_dcdc6 {
+	regulator-always-on;
+	regulator-min-microvolt = <1100000>;
+	regulator-max-microvolt = <1100000>;
+	regulator-name = "vdd-sys";
+};
+
+&reg_dldo1 {
+	regulator-min-microvolt = <3300000>;
+	regulator-max-microvolt = <3300000>;
+	regulator-name = "vcc-hdmi-dsi";
+};
+
+&reg_dldo2 {
+	regulator-min-microvolt = <3300000>;
+	regulator-max-microvolt = <3300000>;
+	regulator-name = "vcc-wifi";
+};
+
+&reg_dldo3 {
+	regulator-min-microvolt = <3300000>;
+	regulator-max-microvolt = <3300000>;
+	regulator-name = "avdd-csi";
+};
+
+&reg_dldo4 {
+	regulator-min-microvolt = <3300000>;
+	regulator-max-microvolt = <3300000>;
+	regulator-name = "vcc-wifi-io";
+};
+
+&reg_eldo1 {
+	regulator-min-microvolt = <1800000>;
+	regulator-max-microvolt = <1800000>;
+	regulator-name = "cpvdd";
+};
+
+&reg_fldo1 {
+	regulator-min-microvolt = <1200000>;
+	regulator-max-microvolt = <1200000>;
+	regulator-name = "vcc-1v2-hsic";
+};
+
+/*
+ * The A64 chip cannot work without this regulator off, although
+ * it seems to be only driving the AR100 core.
+ * Maybe we don't still know well about CPUs domain.
+ */
+&reg_fldo2 {
+	regulator-always-on;
+	regulator-min-microvolt = <1100000>;
+	regulator-max-microvolt = <1100000>;
+	regulator-name = "vdd-cpus";
+};
+
+&reg_rtc_ldo {
+	regulator-name = "vcc-rtc";
+};
+
 &uart0 {
 	pinctrl-names = "default";
 	pinctrl-0 = <&uart0_pins_a>;
-- 
2.7.4

^ permalink raw reply related

* Re: [PATCH 2/3] hwrng: exynos - add Samsung Exynos True RNG driver
From: Łukasz Stelmach @ 2017-11-23 18:46 UTC (permalink / raw)
  To: Krzysztof Kozlowski
  Cc: Rob Herring, Matt Mackall, Herbert Xu, devicetree, linux-crypto,
	linux-samsung-soc, linux-kernel, Marek Szyprowski,
	Bartlomiej Zolnierkiewicz
In-Reply-To: <CAJKOXPfaofwB7Sp5Lg0JuZzFwC2RahdWDG5KfsJyNcKDt3b_mA@mail.gmail.com>

[-- Attachment #1: Type: text/plain, Size: 3683 bytes --]

It was <2017-11-23 czw 17:31>, when Krzysztof Kozlowski wrote:
> On Thu, Nov 23, 2017 at 4:09 PM, Łukasz Stelmach <l.stelmach@samsung.com> wrote:
>> Add support for True Random Number Generator found in Samsung Exynos
>> 5250+ SoCs.
>>
>> Signed-off-by: Łukasz Stelmach <l.stelmach@samsung.com>
>> ---
>>  MAINTAINERS                          |   7 +
>>  drivers/char/hw_random/Kconfig       |  12 ++
>>  drivers/char/hw_random/Makefile      |   1 +
>>  drivers/char/hw_random/exynos-trng.c | 256 +++++++++++++++++++++++++++++++++++
>>  4 files changed, 276 insertions(+)
>>  create mode 100644 drivers/char/hw_random/exynos-trng.c
>>

[...]

>>  endif # HW_RANDOM
>
> Thanks for working on TRNG.
>
> 1. I was rather thinking about extending existing exynos-rng.c [1] so
> it would be using TRNG as seed for PRNG as this gives you much more
> random data. Instead you developed totally separate driver which has
> its own benefits - one can choose which interface he wants. Although
> it is a little bit duplication.

As far as I can tell, these are two different devices. However, PRNG
shares hardware with the hash engine. Indeed there is a hardware to
connect TRNG and PRNG, but, IMHO, it might be hard to model that
dependency in kernel. To me it seems easier to read TRNG (or
/dev/random) and and write the result to PRNG manually (in software).

> 2. I understand that in your current version of TRNG driver there is
> no conflict with PRNG and they can work both at the same time?

I guess so. I expect no problems as long as TRNG_SEED_START is not set
in the HASH_SEED_CONF register.

> [1]
> https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git/tree/drivers/crypto/exynos-rng.c
>

>> +
>> +       trng->rng.init = exynos_trng_init;
>> +       trng->rng.read = exynos_trng_do_read;
>> +       trng->rng.priv = (unsigned long) trng;
>> +
>> +       platform_set_drvdata(pdev, trng);
>> +       trng->dev = &pdev->dev;
>> +
>> +       res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
>> +       trng->mem = devm_ioremap_resource(&pdev->dev, res);
>> +       if (IS_ERR(trng->mem)) {
>> +               dev_err(&pdev->dev, "Couldn't map IO resources.\n");
>> +               ret = PTR_ERR(trng->mem);
>> +               goto err_ioremap;
>> +       }
>> +
>> +       pm_runtime_enable(&pdev->dev);
>> +       ret = pm_runtime_get_sync(&pdev->dev);
>> +       if (ret < 0) {
>> +               dev_err(&pdev->dev, "pm_runtime_get_sync() failed: %d.\n", ret);
>> +               goto err_ioremap;
>
> Missing pm_runtime_disable?

Added a separate label down below.

>> +               dev_err(&pdev->dev, "Couldn't get clock.\n");
>> +               ret = PTR_ERR(trng->clk);
>> +               goto err_clock;
>> +       }
>> +
>> +       ret = clk_prepare_enable(trng->clk);
>> +       if (ret) {
>> +               dev_err(&pdev->dev, "Unable to enable the clk: %d.\n", ret);
>> +               goto err_clock;
>> +       }
>> +
>> +       ret = hwrng_register(&trng->rng);
>> +       if (ret) {
>> +               dev_err(&pdev->dev, "Couldn't register hwrng device.\n");
>> +               goto err_register;
>> +       }
>> +
>> +       dev_info(&pdev->dev, "Exynos True Random Number Generator.\n");
>> +
>> +       return 0;
>> +
>> +err_register:
>> +       clk_disable_unprepare(trng->clk);
>> +
>> +err_clock:
>> +       trng->mem = NULL;
>
> Why this has to be null-ified?

I found this pattern in omap-rng.c.

Removed.

I'll wait a little bit more before posting v2.

-- 
Łukasz Stelmach
Samsung R&D Institute Poland
Samsung Electronics

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^ permalink raw reply

* [PATCH v8 1/2] of: documentation: add bindings documentation for TS-4600
From: Sebastien Bourdelin @ 2017-11-23 21:04 UTC (permalink / raw)
  To: linux-kernel-u79uwXL29TY76Z2rM5mHXA,
	kernel-4ysUXcep3aM1wj+D4I0NRVaTQe2KTcn/,
	linux-arm-kernel-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r,
	fabio.estevam-3arQi8VN3Tc, kernel-bIcnvbaLZ9MEGnE8C9+IrQ,
	shawnguo-DgEjT+Ai2ygdnm+yROfE0A,
	devicetree-u79uwXL29TY76Z2rM5mHXA, mark.rutland-5wv7dgnIgG8,
	robh+dt-DgEjT+Ai2ygdnm+yROfE0A
  Cc: mark-L1vi/lXTdtvnC/t2CciAbw, kris-L1vi/lXTdtvnC/t2CciAbw,
	Sebastien Bourdelin

This adds the documentation for the TS-4600 by Technologic Systems.

Signed-off-by: Sebastien Bourdelin <sebastien.bourdelin-4ysUXcep3aM1wj+D4I0NRVaTQe2KTcn/@public.gmane.org>
Acked-by: Rob Herring <robh-DgEjT+Ai2ygdnm+yROfE0A@public.gmane.org>
---
Changes v7 -> v8:
  - rebase on master

Changes v6 -> v7:
  - rebase on master

Changes v5 -> v6:
  - rebase on master
  - split the previous patch series into series by subsystem

Changes v4 -> v5:
  - fix missing signed off

Changes v3 -> v4:
  - rebase on master

Changes v2 -> v3:
  - rebase on master

Changes v1 -> v2:
  - rebase on master
  - add ack by Rob Herring <robh-DgEjT+Ai2ygdnm+yROfE0A@public.gmane.org>
---
 Documentation/devicetree/bindings/arm/technologic.txt | 5 +++++
 1 file changed, 5 insertions(+)

diff --git a/Documentation/devicetree/bindings/arm/technologic.txt b/Documentation/devicetree/bindings/arm/technologic.txt
index 33797acad846..e9d6d6575566 100644
--- a/Documentation/devicetree/bindings/arm/technologic.txt
+++ b/Documentation/devicetree/bindings/arm/technologic.txt
@@ -1,6 +1,11 @@
 Technologic Systems Platforms Device Tree Bindings
 --------------------------------------------------
 
+TS-4600 is a System-on-Module based on the Freescale i.MX28 System-on-Chip.
+It can be mounted on a carrier board providing additional peripheral connectors.
+Required root node properties:
+	- compatible = "technologic,imx28-ts4600", "fsl,imx28"
+
 TS-4800 board
 Required root node properties:
 	- compatible = "technologic,imx51-ts4800", "fsl,imx51";
-- 
2.15.0

--
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^ permalink raw reply related

* [PATCH v8 2/2] ARM: dts: TS-4600: add basic device tree
From: Sebastien Bourdelin @ 2017-11-23 21:04 UTC (permalink / raw)
  To: linux-kernel, kernel, linux-arm-kernel, fabio.estevam, kernel,
	shawnguo, devicetree, mark.rutland, robh+dt
  Cc: mark, kris, Sebastien Bourdelin
In-Reply-To: <20171123210410.7107-1-sebastien.bourdelin@savoirfairelinux.com>

These device trees add support for the TS-4600 by Technologic Systems.

More details here:
  http://wiki.embeddedarm.com/wiki/TS-4600

Signed-off-by: Sebastien Bourdelin <sebastien.bourdelin@savoirfairelinux.com>
---
Changes v7 -> v8:
  - rebase on master
  - merge the rev A and B into one device tree based on the last rev B
  because only the memory size change between the two rev currently
  (suggested by Shawn Guo)

Changes v6 -> v7:
  - rebase on master
  - remove unneeded pinctrl-name (suggested by Shawn Guo)
  - add reg to the node en-sd-pwr (suggested by Shawn Guo)
  - use define for gpio polarity (suggested by Shawn Guo)
  - remove the fake bus container for regulator (suggested by Shawn Guo)

Changes v5 -> v6:
  - rebase on master
  - split the previous patch series into series by subsystem

Changes v4 -> v5:
  - fix missing signed off

Changes v3 -> v4:
  - rebase on master

Changes v2 -> v3:
  - rebase on master

Changes v1 -> v2:
  - rebase on master
---
 arch/arm/boot/dts/Makefile         |  1 +
 arch/arm/boot/dts/imx28-ts4600.dts | 79 ++++++++++++++++++++++++++++++++++++++
 2 files changed, 80 insertions(+)
 create mode 100644 arch/arm/boot/dts/imx28-ts4600.dts

diff --git a/arch/arm/boot/dts/Makefile b/arch/arm/boot/dts/Makefile
index d0381e9caf21..678373d299d8 100644
--- a/arch/arm/boot/dts/Makefile
+++ b/arch/arm/boot/dts/Makefile
@@ -558,6 +558,7 @@ dtb-$(CONFIG_ARCH_MXS) += \
 	imx28-m28cu3.dtb \
 	imx28-m28evk.dtb \
 	imx28-sps1.dtb \
+	imx28-ts4600.dtb \
 	imx28-tx28.dtb
 dtb-$(CONFIG_ARCH_NOMADIK) += \
 	ste-nomadik-s8815.dtb \
diff --git a/arch/arm/boot/dts/imx28-ts4600.dts b/arch/arm/boot/dts/imx28-ts4600.dts
new file mode 100644
index 000000000000..f37d81381620
--- /dev/null
+++ b/arch/arm/boot/dts/imx28-ts4600.dts
@@ -0,0 +1,79 @@
+/*
+ * Copyright (C) 2016 Savoir-Faire Linux
+ * Author: Sebastien Bourdelin <sebastien.bourdelin@savoirfairelinux.com>
+ *
+ * The code contained herein is licensed under the GNU General Public
+ * License. You may obtain a copy of the GNU General Public License
+ * Version 2 or later at the following locations:
+ *
+ * http://www.opensource.org/licenses/gpl-license.html
+ * http://www.gnu.org/copyleft/gpl.html
+ */
+
+/dts-v1/;
+#include "imx28.dtsi"
+#include "dt-bindings/gpio/gpio.h"
+
+/ {
+
+	model = "Technologic Systems i.MX28 TS-4600";
+	compatible = "technologic,imx28-ts4600", "fsl,imx28";
+
+	memory {
+		reg = <0x40000000 0x10000000>;   /* 256MB */
+	};
+
+	apb@80000000 {
+		apbh@80000000 {
+			ssp0: ssp@80010000 {
+				compatible = "fsl,imx28-mmc";
+				pinctrl-names = "default";
+				pinctrl-0 = <&mmc0_4bit_pins_a
+					     &mmc0_sck_cfg
+					     &en_sd_pwr>;
+				broken-cd = <1>;
+				bus-width = <4>;
+				vmmc-supply = <&reg_vddio_sd0>;
+				status = "okay";
+			};
+
+			pinctrl@80018000 {
+
+				en_sd_pwr: en-sd-pwr@0 {
+					reg = <0>;
+					fsl,pinmux-ids = <
+						MX28_PAD_PWM3__GPIO_3_28
+					>;
+					fsl,drive-strength = <MXS_DRIVE_4mA>;
+					fsl,voltage = <MXS_VOLTAGE_HIGH>;
+					fsl,pull-up = <MXS_PULL_DISABLE>;
+				};
+
+			};
+		};
+
+		apbx@80040000 {
+			pwm: pwm@80064000 {
+				pinctrl-names = "default";
+				pinctrl-0 = <&pwm2_pins_a>;
+				status = "okay";
+			};
+
+			duart: serial@80074000 {
+				pinctrl-names = "default";
+				pinctrl-0 = <&duart_pins_a>;
+				status = "okay";
+			};
+		};
+	};
+
+	reg_vddio_sd0: regulator-vddio-sd0 {
+		compatible = "regulator-fixed";
+		regulator-name = "vddio-sd0";
+		regulator-min-microvolt = <3300000>;
+		regulator-max-microvolt = <3300000>;
+		regulator-boot-on;
+		gpio = <&gpio3 28 GPIO_ACTIVE_HIGH>;
+	};
+
+};
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 0/2] Add support for UVIS25 uv sensor
From: Lorenzo Bianconi @ 2017-11-23 22:59 UTC (permalink / raw)
  To: jic23-DgEjT+Ai2ygdnm+yROfE0A
  Cc: linux-iio-u79uwXL29TY76Z2rM5mHXA,
	devicetree-u79uwXL29TY76Z2rM5mHXA

Changes since v1:
- use regmap API
- rename devicetree binding file to match compatible string
- move buffer/trigger code in st_uvis25_core.c
- improve comments
- fix potential race st_uvis25_read_oneshot()
- address Peter's comments

Lorenzo Bianconi (2):
  iio: light: add support for UVIS25 sensor
  dt-bindings: iio: light: add UVIS25 device bindings

 .../devicetree/bindings/iio/light/uvis25.txt       |  23 ++
 drivers/iio/light/Kconfig                          |  24 ++
 drivers/iio/light/Makefile                         |   3 +
 drivers/iio/light/st_uvis25.h                      |  37 +++
 drivers/iio/light/st_uvis25_core.c                 | 360 +++++++++++++++++++++
 drivers/iio/light/st_uvis25_i2c.c                  |  69 ++++
 drivers/iio/light/st_uvis25_spi.c                  |  68 ++++
 7 files changed, 584 insertions(+)
 create mode 100644 Documentation/devicetree/bindings/iio/light/uvis25.txt
 create mode 100644 drivers/iio/light/st_uvis25.h
 create mode 100644 drivers/iio/light/st_uvis25_core.c
 create mode 100644 drivers/iio/light/st_uvis25_i2c.c
 create mode 100644 drivers/iio/light/st_uvis25_spi.c

-- 
2.15.0

^ permalink raw reply

* [PATCH v2 1/2] iio: light: add support for UVIS25 sensor
From: Lorenzo Bianconi @ 2017-11-23 22:59 UTC (permalink / raw)
  To: jic23-DgEjT+Ai2ygdnm+yROfE0A
  Cc: linux-iio-u79uwXL29TY76Z2rM5mHXA,
	devicetree-u79uwXL29TY76Z2rM5mHXA
In-Reply-To: <20171123225906.31838-1-lorenzo.bianconi83-Re5JQEeQqe8AvxtiuMwx3w@public.gmane.org>

add support for STMicroelectronics UVIS25 uv sensor
http://www.st.com/resource/en/datasheet/uvis25.pdf

- continuos mode support
- i2c support
- spi support
- trigger mode support
- system PM support

Signed-off-by: Lorenzo Bianconi <lorenzo.bianconi83-Re5JQEeQqe8AvxtiuMwx3w@public.gmane.org>
---
 drivers/iio/light/Kconfig          |  24 +++
 drivers/iio/light/Makefile         |   3 +
 drivers/iio/light/st_uvis25.h      |  37 ++++
 drivers/iio/light/st_uvis25_core.c | 360 +++++++++++++++++++++++++++++++++++++
 drivers/iio/light/st_uvis25_i2c.c  |  69 +++++++
 drivers/iio/light/st_uvis25_spi.c  |  68 +++++++
 6 files changed, 561 insertions(+)
 create mode 100644 drivers/iio/light/st_uvis25.h
 create mode 100644 drivers/iio/light/st_uvis25_core.c
 create mode 100644 drivers/iio/light/st_uvis25_i2c.c
 create mode 100644 drivers/iio/light/st_uvis25_spi.c

diff --git a/drivers/iio/light/Kconfig b/drivers/iio/light/Kconfig
index 6a5835fab32e..93fd421b10d7 100644
--- a/drivers/iio/light/Kconfig
+++ b/drivers/iio/light/Kconfig
@@ -334,6 +334,30 @@ config STK3310
 	 Choosing M will build the driver as a module. If so, the module
 	 will be called stk3310.
 
+config ST_UVIS25
+	tristate "STMicroelectronics UVIS25 sensor driver"
+	depends on (I2C || SPI)
+	select IIO_BUFFER
+	select IIO_TRIGGERED_BUFFER
+	select ST_UVIS25_I2C if (I2C)
+	select ST_UVIS25_SPI if (SPI_MASTER)
+	help
+	  Say yes here to build support for STMicroelectronics UVIS25
+	  uv sensor
+
+	  To compile this driver as a module, choose M here: the module
+	  will be called st_uvis25.
+
+config ST_UVIS25_I2C
+	tristate
+	depends on ST_UVIS25
+	select REGMAP_I2C
+
+config ST_UVIS25_SPI
+	tristate
+	depends on ST_UVIS25
+	select REGMAP_SPI
+
 config TCS3414
 	tristate "TAOS TCS3414 digital color sensor"
 	depends on I2C
diff --git a/drivers/iio/light/Makefile b/drivers/iio/light/Makefile
index f0176a800e14..f714067a7816 100644
--- a/drivers/iio/light/Makefile
+++ b/drivers/iio/light/Makefile
@@ -33,6 +33,9 @@ obj-$(CONFIG_RPR0521)		+= rpr0521.o
 obj-$(CONFIG_SENSORS_TSL2563)	+= tsl2563.o
 obj-$(CONFIG_SI1145)		+= si1145.o
 obj-$(CONFIG_STK3310)          += stk3310.o
+obj-$(CONFIG_ST_UVIS25)		+= st_uvis25_core.o
+obj-$(CONFIG_ST_UVIS25_I2C)	+= st_uvis25_i2c.o
+obj-$(CONFIG_ST_UVIS25_SPI)	+= st_uvis25_spi.o
 obj-$(CONFIG_TCS3414)		+= tcs3414.o
 obj-$(CONFIG_TCS3472)		+= tcs3472.o
 obj-$(CONFIG_TSL2583)		+= tsl2583.o
diff --git a/drivers/iio/light/st_uvis25.h b/drivers/iio/light/st_uvis25.h
new file mode 100644
index 000000000000..5e970ab480cd
--- /dev/null
+++ b/drivers/iio/light/st_uvis25.h
@@ -0,0 +1,37 @@
+/*
+ * STMicroelectronics uvis25 sensor driver
+ *
+ * Copyright 2017 STMicroelectronics Inc.
+ *
+ * Lorenzo Bianconi <lorenzo.bianconi83-Re5JQEeQqe8AvxtiuMwx3w@public.gmane.org>
+ *
+ * Licensed under the GPL-2.
+ */
+
+#ifndef ST_UVIS25_H
+#define ST_UVIS25_H
+
+#define ST_UVIS25_DEV_NAME		"uvis25"
+
+#include <linux/iio/iio.h>
+
+/**
+ * struct st_uvis25_hw - ST UVIS25 sensor instance
+ * @regmap: Register map of the device.
+ * @trig: The trigger in use by the driver.
+ * @enabled: Status of the sensor (false->off, true->on).
+ * @irq: Device interrupt line (I2C or SPI).
+ */
+struct st_uvis25_hw {
+	struct regmap *regmap;
+
+	struct iio_trigger *trig;
+	bool enabled;
+	int irq;
+};
+
+extern const struct dev_pm_ops st_uvis25_pm_ops;
+
+int st_uvis25_probe(struct device *dev, int irq, struct regmap *regmap);
+
+#endif /* ST_UVIS25_H */
diff --git a/drivers/iio/light/st_uvis25_core.c b/drivers/iio/light/st_uvis25_core.c
new file mode 100644
index 000000000000..013da48df571
--- /dev/null
+++ b/drivers/iio/light/st_uvis25_core.c
@@ -0,0 +1,360 @@
+/*
+ * STMicroelectronics uvis25 sensor driver
+ *
+ * Copyright 2017 STMicroelectronics Inc.
+ *
+ * Lorenzo Bianconi <lorenzo.bianconi83-Re5JQEeQqe8AvxtiuMwx3w@public.gmane.org>
+ *
+ * Licensed under the GPL-2.
+ */
+
+#include <linux/kernel.h>
+#include <linux/module.h>
+#include <linux/device.h>
+#include <linux/iio/sysfs.h>
+#include <linux/delay.h>
+#include <linux/pm.h>
+#include <linux/interrupt.h>
+#include <linux/irqreturn.h>
+#include <linux/iio/trigger.h>
+#include <linux/iio/trigger_consumer.h>
+#include <linux/iio/triggered_buffer.h>
+#include <linux/iio/buffer.h>
+#include <linux/regmap.h>
+
+#include "st_uvis25.h"
+
+#define ST_UVIS25_REG_WHOAMI_ADDR	0x0f
+#define ST_UVIS25_REG_WHOAMI_VAL	0xca
+#define ST_UVIS25_REG_CTRL1_ADDR	0x20
+#define ST_UVIS25_REG_ODR_MASK		BIT(0)
+#define ST_UVIS25_REG_BDU_MASK		BIT(1)
+#define ST_UVIS25_REG_CTRL2_ADDR	0x21
+#define ST_UVIS25_REG_BOOT_MASK		BIT(7)
+#define ST_UVIS25_REG_CTRL3_ADDR	0x22
+#define ST_UVIS25_REG_HL_MASK		BIT(7)
+#define ST_UVIS25_REG_STATUS_ADDR	0x27
+#define ST_UVIS25_REG_UV_DA_MASK	BIT(0)
+#define ST_UVIS25_REG_OUT_ADDR		0x28
+
+static const struct iio_chan_spec st_uvis25_channels[] = {
+	{
+		.type = IIO_UVINDEX,
+		.address = ST_UVIS25_REG_OUT_ADDR,
+		.info_mask_separate = BIT(IIO_CHAN_INFO_PROCESSED),
+		.scan_index = 0,
+		.scan_type = {
+			.sign = 'u',
+			.realbits = 8,
+			.storagebits = 8,
+		},
+	},
+	IIO_CHAN_SOFT_TIMESTAMP(1),
+};
+
+static int st_uvis25_check_whoami(struct st_uvis25_hw *hw)
+{
+	int err, data;
+
+	err = regmap_read(hw->regmap, ST_UVIS25_REG_WHOAMI_ADDR, &data);
+	if (err < 0) {
+		dev_err(regmap_get_device(hw->regmap),
+			"failed to read whoami register\n");
+		return err;
+	}
+
+	if (data != ST_UVIS25_REG_WHOAMI_VAL) {
+		dev_err(regmap_get_device(hw->regmap),
+			"wrong whoami {%02x vs %02x}\n",
+			data, ST_UVIS25_REG_WHOAMI_VAL);
+		return -ENODEV;
+	}
+
+	return 0;
+}
+
+static int st_uvis25_set_enable(struct st_uvis25_hw *hw, bool enable)
+{
+	int err;
+
+	err = regmap_update_bits(hw->regmap, ST_UVIS25_REG_CTRL1_ADDR,
+				 ST_UVIS25_REG_ODR_MASK, enable);
+	if (err < 0)
+		return err;
+
+	hw->enabled = enable;
+
+	return 0;
+}
+
+static int st_uvis25_read_oneshot(struct st_uvis25_hw *hw, u8 addr, int *val)
+{
+	int err;
+
+	err = st_uvis25_set_enable(hw, true);
+	if (err < 0)
+		return err;
+
+	msleep(1500);
+
+	/*
+	 * in order to avoid possible race conditions with interrupt
+	 * generation, disable the sensor first and then poll output
+	 * register. That sequence guarantees the interrupt will be reset
+	 * when irq line is unmasked
+	 */
+	err = st_uvis25_set_enable(hw, false);
+	if (err < 0)
+		return err;
+
+	err = regmap_read(hw->regmap, addr, val);
+
+	return err < 0 ? err : IIO_VAL_INT;
+}
+
+static int st_uvis25_read_raw(struct iio_dev *iio_dev,
+			      struct iio_chan_spec const *ch,
+			      int *val, int *val2, long mask)
+{
+	int ret;
+
+	ret = iio_device_claim_direct_mode(iio_dev);
+	if (ret)
+		return ret;
+
+	switch (mask) {
+	case IIO_CHAN_INFO_PROCESSED: {
+		struct st_uvis25_hw *hw = iio_priv(iio_dev);
+
+		/*
+		 * mask irq line during oneshot read since the sensor
+		 * does not export the capability to disable data-ready line
+		 * in the register map and it is enabled by default.
+		 * If the line is unmasked during read_raw() it will be set
+		 * active and never reset since the trigger is disabled
+		 */
+		if (hw->irq > 0)
+			disable_irq(hw->irq);
+		ret = st_uvis25_read_oneshot(hw, ch->address, val);
+		if (hw->irq > 0)
+			enable_irq(hw->irq);
+		break;
+	}
+	default:
+		ret = -EINVAL;
+		break;
+	}
+
+	iio_device_release_direct_mode(iio_dev);
+
+	return ret;
+}
+
+static irqreturn_t st_uvis25_trigger_handler_thread(int irq, void *private)
+{
+	struct st_uvis25_hw *hw = private;
+	int err, status;
+
+	err = regmap_read(hw->regmap, ST_UVIS25_REG_STATUS_ADDR, &status);
+	if (err < 0)
+		return IRQ_HANDLED;
+
+	if (!(status & ST_UVIS25_REG_UV_DA_MASK))
+		return IRQ_NONE;
+
+	iio_trigger_poll_chained(hw->trig);
+
+	return IRQ_HANDLED;
+}
+
+static int st_uvis25_allocate_trigger(struct iio_dev *iio_dev)
+{
+	struct st_uvis25_hw *hw = iio_priv(iio_dev);
+	struct device *dev = regmap_get_device(hw->regmap);
+	bool irq_active_low = false;
+	unsigned long irq_type;
+	int err;
+
+	irq_type = irqd_get_trigger_type(irq_get_irq_data(hw->irq));
+
+	switch (irq_type) {
+	case IRQF_TRIGGER_HIGH:
+	case IRQF_TRIGGER_RISING:
+		break;
+	case IRQF_TRIGGER_LOW:
+	case IRQF_TRIGGER_FALLING:
+		irq_active_low = true;
+		break;
+	default:
+		dev_info(dev, "mode %lx unsupported\n", irq_type);
+		return -EINVAL;
+	}
+
+	err = regmap_update_bits(hw->regmap, ST_UVIS25_REG_CTRL3_ADDR,
+				 ST_UVIS25_REG_HL_MASK, irq_active_low);
+	if (err < 0)
+		return err;
+
+	err = devm_request_threaded_irq(dev, hw->irq, NULL,
+					st_uvis25_trigger_handler_thread,
+					irq_type | IRQF_ONESHOT,
+					iio_dev->name, hw);
+	if (err) {
+		dev_err(dev, "failed to request trigger irq %d\n",
+			hw->irq);
+		return err;
+	}
+
+	hw->trig = devm_iio_trigger_alloc(dev, "%s-trigger",
+					  iio_dev->name);
+	if (!hw->trig)
+		return -ENOMEM;
+
+	iio_trigger_set_drvdata(hw->trig, iio_dev);
+	hw->trig->dev.parent = dev;
+
+	return devm_iio_trigger_register(dev, hw->trig);
+}
+
+static int st_uvis25_buffer_preenable(struct iio_dev *iio_dev)
+{
+	return st_uvis25_set_enable(iio_priv(iio_dev), true);
+}
+
+static int st_uvis25_buffer_postdisable(struct iio_dev *iio_dev)
+{
+	return st_uvis25_set_enable(iio_priv(iio_dev), false);
+}
+
+static const struct iio_buffer_setup_ops st_uvis25_buffer_ops = {
+	.preenable = st_uvis25_buffer_preenable,
+	.postenable = iio_triggered_buffer_postenable,
+	.predisable = iio_triggered_buffer_predisable,
+	.postdisable = st_uvis25_buffer_postdisable,
+};
+
+static irqreturn_t st_uvis25_buffer_handler_thread(int irq, void *p)
+{
+	u8 buffer[ALIGN(sizeof(u8), sizeof(s64)) + sizeof(s64)];
+	struct iio_poll_func *pf = p;
+	struct iio_dev *iio_dev = pf->indio_dev;
+	struct st_uvis25_hw *hw = iio_priv(iio_dev);
+	int err;
+
+	err = regmap_read(hw->regmap, ST_UVIS25_REG_OUT_ADDR, (int *)buffer);
+	if (err < 0)
+		goto out;
+
+	iio_push_to_buffers_with_timestamp(iio_dev, buffer,
+					   iio_get_time_ns(iio_dev));
+
+out:
+	iio_trigger_notify_done(hw->trig);
+
+	return IRQ_HANDLED;
+}
+
+static int st_uvis25_allocate_buffer(struct iio_dev *iio_dev)
+{
+	struct st_uvis25_hw *hw = iio_priv(iio_dev);
+
+	return devm_iio_triggered_buffer_setup(regmap_get_device(hw->regmap),
+					       iio_dev, NULL,
+					       st_uvis25_buffer_handler_thread,
+					       &st_uvis25_buffer_ops);
+}
+
+static const struct iio_info st_uvis25_info = {
+	.read_raw = st_uvis25_read_raw,
+};
+
+static int st_uvis25_init_sensor(struct st_uvis25_hw *hw)
+{
+	int err;
+
+	err = regmap_update_bits(hw->regmap, ST_UVIS25_REG_CTRL2_ADDR,
+				 ST_UVIS25_REG_BOOT_MASK, 1);
+	if (err < 0)
+		return err;
+
+	msleep(2000);
+
+	return regmap_update_bits(hw->regmap, ST_UVIS25_REG_CTRL1_ADDR,
+				  ST_UVIS25_REG_BDU_MASK, 1);
+}
+
+int st_uvis25_probe(struct device *dev, int irq, struct regmap *regmap)
+{
+	struct st_uvis25_hw *hw;
+	struct iio_dev *iio_dev;
+	int err;
+
+	iio_dev = devm_iio_device_alloc(dev, sizeof(*hw));
+	if (!iio_dev)
+		return -ENOMEM;
+
+	dev_set_drvdata(dev, (void *)iio_dev);
+
+	hw = iio_priv(iio_dev);
+	hw->irq = irq;
+	hw->regmap = regmap;
+
+	err = st_uvis25_check_whoami(hw);
+	if (err < 0)
+		return err;
+
+	iio_dev->modes = INDIO_DIRECT_MODE;
+	iio_dev->dev.parent = dev;
+	iio_dev->channels = st_uvis25_channels;
+	iio_dev->num_channels = ARRAY_SIZE(st_uvis25_channels);
+	iio_dev->name = ST_UVIS25_DEV_NAME;
+	iio_dev->info = &st_uvis25_info;
+
+	err = st_uvis25_init_sensor(hw);
+	if (err < 0)
+		return err;
+
+	if (hw->irq > 0) {
+		err = st_uvis25_allocate_buffer(iio_dev);
+		if (err < 0)
+			return err;
+
+		err = st_uvis25_allocate_trigger(iio_dev);
+		if (err)
+			return err;
+	}
+
+	return devm_iio_device_register(dev, iio_dev);
+}
+EXPORT_SYMBOL(st_uvis25_probe);
+
+static int __maybe_unused st_uvis25_suspend(struct device *dev)
+{
+	struct iio_dev *iio_dev = dev_get_drvdata(dev);
+	struct st_uvis25_hw *hw = iio_priv(iio_dev);
+
+	return regmap_update_bits(hw->regmap, ST_UVIS25_REG_CTRL1_ADDR,
+				  ST_UVIS25_REG_ODR_MASK, 0);
+}
+
+static int __maybe_unused st_uvis25_resume(struct device *dev)
+{
+	struct iio_dev *iio_dev = dev_get_drvdata(dev);
+	struct st_uvis25_hw *hw = iio_priv(iio_dev);
+	int err = 0;
+
+	if (hw->enabled)
+		err = regmap_update_bits(hw->regmap, ST_UVIS25_REG_CTRL1_ADDR,
+					 ST_UVIS25_REG_ODR_MASK, 1);
+
+	return err;
+}
+
+const struct dev_pm_ops st_uvis25_pm_ops = {
+	SET_SYSTEM_SLEEP_PM_OPS(st_uvis25_suspend, st_uvis25_resume)
+};
+EXPORT_SYMBOL(st_uvis25_pm_ops);
+
+MODULE_AUTHOR("Lorenzo Bianconi <lorenzo.bianconi83-Re5JQEeQqe8AvxtiuMwx3w@public.gmane.org>");
+MODULE_DESCRIPTION("STMicroelectronics uvis25 sensor driver");
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/iio/light/st_uvis25_i2c.c b/drivers/iio/light/st_uvis25_i2c.c
new file mode 100644
index 000000000000..e49ec46e9bb8
--- /dev/null
+++ b/drivers/iio/light/st_uvis25_i2c.c
@@ -0,0 +1,69 @@
+/*
+ * STMicroelectronics uvis25 i2c driver
+ *
+ * Copyright 2017 STMicroelectronics Inc.
+ *
+ * Lorenzo Bianconi <lorenzo.bianconi83-Re5JQEeQqe8AvxtiuMwx3w@public.gmane.org>
+ *
+ * Licensed under the GPL-2.
+ */
+
+#include <linux/kernel.h>
+#include <linux/module.h>
+#include <linux/acpi.h>
+#include <linux/i2c.h>
+#include <linux/slab.h>
+#include <linux/regmap.h>
+
+#include "st_uvis25.h"
+
+#define I2C_AUTO_INCREMENT	BIT(7)
+
+const struct regmap_config st_uvis25_i2c_regmap_config = {
+	.reg_bits = 8,
+	.val_bits = 8,
+	.write_flag_mask = I2C_AUTO_INCREMENT,
+	.read_flag_mask = I2C_AUTO_INCREMENT,
+};
+
+static int st_uvis25_i2c_probe(struct i2c_client *client,
+			       const struct i2c_device_id *id)
+{
+	struct regmap *regmap;
+
+	regmap = devm_regmap_init_i2c(client, &st_uvis25_i2c_regmap_config);
+	if (IS_ERR(regmap)) {
+		dev_err(&client->dev, "Failed to register i2c regmap %d\n",
+			(int)PTR_ERR(regmap));
+		return PTR_ERR(regmap);
+	}
+
+	return st_uvis25_probe(&client->dev, client->irq, regmap);
+}
+
+static const struct of_device_id st_uvis25_i2c_of_match[] = {
+	{ .compatible = "st,uvis25", },
+	{},
+};
+MODULE_DEVICE_TABLE(of, st_uvis25_i2c_of_match);
+
+static const struct i2c_device_id st_uvis25_i2c_id_table[] = {
+	{ ST_UVIS25_DEV_NAME },
+	{},
+};
+MODULE_DEVICE_TABLE(i2c, st_uvis25_i2c_id_table);
+
+static struct i2c_driver st_uvis25_driver = {
+	.driver = {
+		.name = "st_uvis25_i2c",
+		.pm = &st_uvis25_pm_ops,
+		.of_match_table = of_match_ptr(st_uvis25_i2c_of_match),
+	},
+	.probe = st_uvis25_i2c_probe,
+	.id_table = st_uvis25_i2c_id_table,
+};
+module_i2c_driver(st_uvis25_driver);
+
+MODULE_AUTHOR("Lorenzo Bianconi <lorenzo.bianconi83-Re5JQEeQqe8AvxtiuMwx3w@public.gmane.org>");
+MODULE_DESCRIPTION("STMicroelectronics uvis25 i2c driver");
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/iio/light/st_uvis25_spi.c b/drivers/iio/light/st_uvis25_spi.c
new file mode 100644
index 000000000000..06e9f7cbe1e7
--- /dev/null
+++ b/drivers/iio/light/st_uvis25_spi.c
@@ -0,0 +1,68 @@
+/*
+ * STMicroelectronics uvis25 spi driver
+ *
+ * Copyright 2017 STMicroelectronics Inc.
+ *
+ * Lorenzo Bianconi <lorenzo.bianconi83-Re5JQEeQqe8AvxtiuMwx3w@public.gmane.org>
+ *
+ * Licensed under the GPL-2.
+ */
+
+#include <linux/kernel.h>
+#include <linux/module.h>
+#include <linux/spi/spi.h>
+#include <linux/slab.h>
+#include <linux/regmap.h>
+
+#include "st_uvis25.h"
+
+#define SENSORS_SPI_READ	BIT(7)
+#define SPI_AUTO_INCREMENT	BIT(6)
+
+const struct regmap_config st_uvis25_spi_regmap_config = {
+	.reg_bits = 8,
+	.val_bits = 8,
+	.read_flag_mask = SENSORS_SPI_READ | SPI_AUTO_INCREMENT,
+	.write_flag_mask = SPI_AUTO_INCREMENT,
+};
+
+static int st_uvis25_spi_probe(struct spi_device *spi)
+{
+	struct regmap *regmap;
+
+	regmap = devm_regmap_init_spi(spi, &st_uvis25_spi_regmap_config);
+	if (IS_ERR(regmap)) {
+		dev_err(&spi->dev, "Failed to register spi regmap %d\n",
+			(int)PTR_ERR(regmap));
+		return PTR_ERR(regmap);
+	}
+
+	return st_uvis25_probe(&spi->dev, spi->irq, regmap);
+}
+
+static const struct of_device_id st_uvis25_spi_of_match[] = {
+	{ .compatible = "st,uvis25", },
+	{},
+};
+MODULE_DEVICE_TABLE(of, st_uvis25_spi_of_match);
+
+static const struct spi_device_id st_uvis25_spi_id_table[] = {
+	{ ST_UVIS25_DEV_NAME },
+	{},
+};
+MODULE_DEVICE_TABLE(spi, st_uvis25_spi_id_table);
+
+static struct spi_driver st_uvis25_driver = {
+	.driver = {
+		.name = "st_uvis25_spi",
+		.pm = &st_uvis25_pm_ops,
+		.of_match_table = of_match_ptr(st_uvis25_spi_of_match),
+	},
+	.probe = st_uvis25_spi_probe,
+	.id_table = st_uvis25_spi_id_table,
+};
+module_spi_driver(st_uvis25_driver);
+
+MODULE_AUTHOR("Lorenzo Bianconi <lorenzo.bianconi83-Re5JQEeQqe8AvxtiuMwx3w@public.gmane.org>");
+MODULE_DESCRIPTION("STMicroelectronics uvis25 spi driver");
+MODULE_LICENSE("GPL v2");
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 2/2] dt-bindings: iio: light: add UVIS25 device bindings
From: Lorenzo Bianconi @ 2017-11-23 22:59 UTC (permalink / raw)
  To: jic23-DgEjT+Ai2ygdnm+yROfE0A
  Cc: linux-iio-u79uwXL29TY76Z2rM5mHXA,
	devicetree-u79uwXL29TY76Z2rM5mHXA
In-Reply-To: <20171123225906.31838-1-lorenzo.bianconi83-Re5JQEeQqe8AvxtiuMwx3w@public.gmane.org>

Acked-by: Rob Herring <robh-DgEjT+Ai2ygdnm+yROfE0A@public.gmane.org>
Signed-off-by: Lorenzo Bianconi <lorenzo.bianconi83-Re5JQEeQqe8AvxtiuMwx3w@public.gmane.org>
---
 .../devicetree/bindings/iio/light/uvis25.txt       | 23 ++++++++++++++++++++++
 1 file changed, 23 insertions(+)
 create mode 100644 Documentation/devicetree/bindings/iio/light/uvis25.txt

diff --git a/Documentation/devicetree/bindings/iio/light/uvis25.txt b/Documentation/devicetree/bindings/iio/light/uvis25.txt
new file mode 100644
index 000000000000..3041207e3f3c
--- /dev/null
+++ b/Documentation/devicetree/bindings/iio/light/uvis25.txt
@@ -0,0 +1,23 @@
+* ST UVIS25 uv sensor
+
+Required properties:
+- compatible: should be "st,uvis25"
+- reg: i2c address of the sensor / spi cs line
+
+Optional properties:
+- interrupt-parent: should be the phandle for the interrupt controller
+- interrupts: interrupt mapping for IRQ. It should be configured with
+  flags IRQ_TYPE_LEVEL_HIGH, IRQ_TYPE_EDGE_RISING, IRQ_TYPE_LEVEL_LOW or
+  IRQ_TYPE_EDGE_FALLING.
+
+  Refer to interrupt-controller/interrupts.txt for generic interrupt
+  client node bindings.
+
+Example:
+
+uvis25@47 {
+	compatible = "st,uvis25";
+	reg = <0x47>;
+	interrupt-parent = <&gpio0>;
+	interrupts = <0 IRQ_TYPE_EDGE_RISING>;
+};
-- 
2.15.0

^ permalink raw reply related

* RE: [PATCH] arm: dts: ls1021a: fix the value of TMR_FIPER1
From: Y.b. Lu @ 2017-11-24  2:31 UTC (permalink / raw)
  To: Y.b. Lu, devicetree-u79uwXL29TY76Z2rM5mHXA@public.gmane.org,
	linux-kernel-u79uwXL29TY76Z2rM5mHXA@public.gmane.org,
	linux-arm-kernel-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r@public.gmane.org,
	Rob Herring, Mark Rutland, Russell King, Shawn Guo
In-Reply-To: <20171110015847.29635-1-yangbo.lu-3arQi8VN3Tc@public.gmane.org>

Any comments?

+Shawn

Thanks.

-----Original Message-----
From: Yangbo Lu [mailto:yangbo.lu@nxp.com] 
Sent: 2017年11月10日 9:59
To: devicetree@vger.kernel.org; linux-kernel@vger.kernel.org; linux-arm-kernel@lists.infradead.org; Rob Herring <robh+dt@kernel.org>; Mark Rutland <mark.rutland@arm.com>; Russell King <linux@armlinux.org.uk>
Cc: Y.b. Lu <yangbo.lu@nxp.com>
Subject: [PATCH] arm: dts: ls1021a: fix the value of TMR_FIPER1

The timer fixed interval period pulse generator register is used to generate periodic pulses. The down count register loads the value programmed in the fixed period interval (FIPER). At every tick of the timer accumulator overflow, the counter decrements by the value of TMR_CTRL[TCLK_PERIOD]. It generates a pulse when the down counter value reaches zero. It reloads the down counter in the cycle following a pulse. To use the TMR_FIPER1 register to generate a 1 PPS event, the value
(10^9 nanoseconds) - TCLK_PERIOD should be programmed.
It should be 999999995 not 999999990 since TCLK_PERIOD is 5.

Signed-off-by: Yangbo Lu <yangbo.lu@nxp.com>
---
 arch/arm/boot/dts/ls1021a.dtsi | 2 +-
 1 file changed, 1 insertion(+), 1 deletion(-)

diff --git a/arch/arm/boot/dts/ls1021a.dtsi b/arch/arm/boot/dts/ls1021a.dtsi index 9319e1f0f1d8..10e536f338f7 100644
--- a/arch/arm/boot/dts/ls1021a.dtsi
+++ b/arch/arm/boot/dts/ls1021a.dtsi
@@ -575,7 +575,7 @@
 			fsl,tclk-period = <5>;
 			fsl,tmr-prsc    = <2>;
 			fsl,tmr-add     = <0xaaaaaaab>;
-			fsl,tmr-fiper1  = <999999990>;
+			fsl,tmr-fiper1  = <999999995>;
 			fsl,tmr-fiper2  = <99990>;
 			fsl,max-adj     = <499999999>;
 		};
--
2.14.1


^ permalink raw reply

* [PATCH v2 00/11] Rockchip ISP1 Driver
From: Jacob Chen @ 2017-11-24  2:36 UTC (permalink / raw)
  To: linux-rockchip-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r
  Cc: linux-kernel-u79uwXL29TY76Z2rM5mHXA,
	linux-arm-kernel-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r,
	mchehab-DgEjT+Ai2ygdnm+yROfE0A,
	linux-media-u79uwXL29TY76Z2rM5mHXA,
	sakari.ailus-VuQAYsv1563Yd54FQh9/CA,
	hans.verkuil-FYB4Gu1CFyUAvxtiuMwx3w, tfiga-F7+t8E8rja9g9hUCZPvPmw,
	zhengsq-TNX95d0MmH7DzftRWevZcw,
	laurent.pinchart-ryLnwIuWjnjg/C1BVhZhaw,
	zyc-TNX95d0MmH7DzftRWevZcw,
	eddie.cai.linux-Re5JQEeQqe8AvxtiuMwx3w,
	jeffy.chen-TNX95d0MmH7DzftRWevZcw,
	allon.huang-TNX95d0MmH7DzftRWevZcw,
	devicetree-u79uwXL29TY76Z2rM5mHXA, heiko-4mtYJXux2i+zQB+pC5nmwQ,
	robh+dt-DgEjT+Ai2ygdnm+yROfE0A, Jacob Chen

This patch series add a ISP(Camera) v4l2 driver for rockchip rk3288/rk3399 SoC.

Kernel Branch:
https://github.com/wzyy2/linux/tree/rkisp1/drivers/media/platform/rockchip/isp1

Below are some infomations about driver/hardware:

Rockchip ISP1 have many Hardware Blocks(simplied):

  MIPI      --> ISP --> DCrop(Mainpath) --> RSZ(Mainpath) --> DMA(Mainpath)
  DMA-Input -->     --> DCrop(Selfpath) --> RSZ(Selfpath) --> DMA(Selfpath);)

(Acutally the TRM(rk3288, isp) could be found online...... which contains a more detailed block diagrams ;-P)

The funcitons of each hardware block:

  Mainpath : up to 4k resolution, support raw/yuv format
  Selfpath : up tp 1080p, support rotate, support rgb/yuv format
  RSZ: scaling 
  DCrop: crop
  ISP: 3A, Color processing, Crop
  MIPI: MIPI Camera interface

Media pipelines:

  Mainpath, Selfpath <-- ISP subdev <-- MIPI  <-- Sensor
  3A stats           <--            <-- 3A parms

Code struct:

  capture.c : Mainpath, Selfpath, RSZ, DCROP : capture device.
  rkisp1.c : ISP : v4l2 sub-device.
  isp_params.c : 3A parms : output device.
  isp_stats.c : 3A stats : capture device.
  mipi_dphy_sy.c : MIPI : sperated v4l2 sub-device.

Usage:
  ChromiumOS:
    use below v4l2-ctl command to capture frames.

      v4l2-ctl --verbose -d /dev/video4 --stream-mmap=2
      --stream-to=/tmp/stream.out --stream-count=60 --stream-poll

    use below command to playback the video on your PC.

      mplayer /tmp/stream.out -loop 0 --demuxer=rawvideo
      --rawvideo=w=800:h=600:size=$((800*600*2)):format=yuy2
    or
      mplayer ./stream.out -loop 0 -demuxer rawvideo -rawvideo
      w=800:h=600:size=$((800*600*2)):format=yuy2

  Linux:
    use rkcamsrc gstreamer plugin(just a modified v4l2src) to preview.

      gst-launch-1.0 rkcamsrc device=/dev/video0 io-mode=4 disable-3A=true
      videoconvert ! video/x-raw,format=NV12,width=640,height=480 ! kmssink

Jacob Chen (7):
  media: rkisp1: add rockchip isp1 driver
  media: rkisp1: add Rockchip MIPI Synopsys DPHY driver
  dt-bindings: Document the Rockchip ISP1 bindings
  dt-bindings: Document the Rockchip MIPI RX D-PHY bindings
  ARM: dts: rockchip: add isp node for rk3288
  ARM: dts: rockchip: add rx0 mipi-phy for rk3288
  MAINTAINERS: add entry for Rockchip ISP1 driver

Jeffy Chen (1):
  media: rkisp1: Add user space ABI definitions

Shunqian Zheng (3):
  media: videodev2.h, v4l2-ioctl: add rkisp1 meta buffer format
  arm64: dts: rockchip: add isp0 node for rk3399
  arm64: dts: rockchip: add rx0 mipi-phy for rk3399

 .../devicetree/bindings/media/rockchip-isp1.txt    |   61 +
 .../bindings/media/rockchip-mipi-dphy.txt          |   77 +
 MAINTAINERS                                        |   10 +
 arch/arm/boot/dts/rk3288.dtsi                      |   24 +
 arch/arm64/boot/dts/rockchip/rk3399.dtsi           |   26 +
 drivers/media/platform/Kconfig                     |   10 +
 drivers/media/platform/Makefile                    |    1 +
 drivers/media/platform/rockchip/isp1/Makefile      |    8 +
 drivers/media/platform/rockchip/isp1/capture.c     | 1691 ++++++++++++++++++++
 drivers/media/platform/rockchip/isp1/capture.h     |   46 +
 drivers/media/platform/rockchip/isp1/common.h      |  330 ++++
 drivers/media/platform/rockchip/isp1/dev.c         |  632 ++++++++
 drivers/media/platform/rockchip/isp1/isp_params.c  | 1556 ++++++++++++++++++
 drivers/media/platform/rockchip/isp1/isp_params.h  |   81 +
 drivers/media/platform/rockchip/isp1/isp_stats.c   |  537 +++++++
 drivers/media/platform/rockchip/isp1/isp_stats.h   |   81 +
 .../media/platform/rockchip/isp1/mipi_dphy_sy.c    |  805 ++++++++++
 drivers/media/platform/rockchip/isp1/regs.c        |  251 +++
 drivers/media/platform/rockchip/isp1/regs.h        | 1578 ++++++++++++++++++
 drivers/media/platform/rockchip/isp1/rkisp1.c      | 1230 ++++++++++++++
 drivers/media/platform/rockchip/isp1/rkisp1.h      |  130 ++
 drivers/media/v4l2-core/v4l2-ioctl.c               |    2 +
 include/uapi/linux/rkisp1-config.h                 |  554 +++++++
 include/uapi/linux/videodev2.h                     |    4 +
 24 files changed, 9725 insertions(+)
 create mode 100644 Documentation/devicetree/bindings/media/rockchip-isp1.txt
 create mode 100644 Documentation/devicetree/bindings/media/rockchip-mipi-dphy.txt
 create mode 100644 drivers/media/platform/rockchip/isp1/Makefile
 create mode 100644 drivers/media/platform/rockchip/isp1/capture.c
 create mode 100644 drivers/media/platform/rockchip/isp1/capture.h
 create mode 100644 drivers/media/platform/rockchip/isp1/common.h
 create mode 100644 drivers/media/platform/rockchip/isp1/dev.c
 create mode 100644 drivers/media/platform/rockchip/isp1/isp_params.c
 create mode 100644 drivers/media/platform/rockchip/isp1/isp_params.h
 create mode 100644 drivers/media/platform/rockchip/isp1/isp_stats.c
 create mode 100644 drivers/media/platform/rockchip/isp1/isp_stats.h
 create mode 100644 drivers/media/platform/rockchip/isp1/mipi_dphy_sy.c
 create mode 100644 drivers/media/platform/rockchip/isp1/regs.c
 create mode 100644 drivers/media/platform/rockchip/isp1/regs.h
 create mode 100644 drivers/media/platform/rockchip/isp1/rkisp1.c
 create mode 100644 drivers/media/platform/rockchip/isp1/rkisp1.h
 create mode 100644 include/uapi/linux/rkisp1-config.h

-- 
2.15.0

--
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^ permalink raw reply

* [PATCH v2 01/11] media: videodev2.h, v4l2-ioctl: add rkisp1 meta buffer format
From: Jacob Chen @ 2017-11-24  2:36 UTC (permalink / raw)
  To: linux-rockchip-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r
  Cc: linux-kernel-u79uwXL29TY76Z2rM5mHXA,
	linux-arm-kernel-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r,
	mchehab-DgEjT+Ai2ygdnm+yROfE0A,
	linux-media-u79uwXL29TY76Z2rM5mHXA,
	sakari.ailus-VuQAYsv1563Yd54FQh9/CA,
	hans.verkuil-FYB4Gu1CFyUAvxtiuMwx3w, tfiga-F7+t8E8rja9g9hUCZPvPmw,
	zhengsq-TNX95d0MmH7DzftRWevZcw,
	laurent.pinchart-ryLnwIuWjnjg/C1BVhZhaw,
	zyc-TNX95d0MmH7DzftRWevZcw,
	eddie.cai.linux-Re5JQEeQqe8AvxtiuMwx3w,
	jeffy.chen-TNX95d0MmH7DzftRWevZcw,
	allon.huang-TNX95d0MmH7DzftRWevZcw,
	devicetree-u79uwXL29TY76Z2rM5mHXA, heiko-4mtYJXux2i+zQB+pC5nmwQ,
	robh+dt-DgEjT+Ai2ygdnm+yROfE0A, Jacob Chen
In-Reply-To: <20171124023706.5702-1-jacob-chen-fyOeoxGR3m/QT0dZR+AlfA@public.gmane.org>

From: Shunqian Zheng <zhengsq-TNX95d0MmH7DzftRWevZcw@public.gmane.org>

Add the Rockchip ISP1 specific processing parameter format
V4L2_META_FMT_RK_ISP1_PARAMS and metadata format
V4L2_META_FMT_RK_ISP1_STAT_3A for 3A.

Signed-off-by: Shunqian Zheng <zhengsq-TNX95d0MmH7DzftRWevZcw@public.gmane.org>
Signed-off-by: Jacob Chen <jacob2.chen-TNX95d0MmH7DzftRWevZcw@public.gmane.org>
---
 drivers/media/v4l2-core/v4l2-ioctl.c | 2 ++
 include/uapi/linux/videodev2.h       | 4 ++++
 2 files changed, 6 insertions(+)

diff --git a/drivers/media/v4l2-core/v4l2-ioctl.c b/drivers/media/v4l2-core/v4l2-ioctl.c
index d6587b3ec33e..0604ae9ea444 100644
--- a/drivers/media/v4l2-core/v4l2-ioctl.c
+++ b/drivers/media/v4l2-core/v4l2-ioctl.c
@@ -1252,6 +1252,8 @@ static void v4l_fill_fmtdesc(struct v4l2_fmtdesc *fmt)
 	case V4L2_TCH_FMT_TU08:		descr = "8-bit unsigned touch data"; break;
 	case V4L2_META_FMT_VSP1_HGO:	descr = "R-Car VSP1 1-D Histogram"; break;
 	case V4L2_META_FMT_VSP1_HGT:	descr = "R-Car VSP1 2-D Histogram"; break;
+	case V4L2_META_FMT_RK_ISP1_PARAMS:	descr = "Rockchip ISP1 3A params"; break;
+	case V4L2_META_FMT_RK_ISP1_STAT_3A:	descr = "Rockchip ISP1 3A statistics"; break;
 
 	default:
 		/* Compressed formats */
diff --git a/include/uapi/linux/videodev2.h b/include/uapi/linux/videodev2.h
index 7c871291c1fa..961545e64c12 100644
--- a/include/uapi/linux/videodev2.h
+++ b/include/uapi/linux/videodev2.h
@@ -691,6 +691,10 @@ struct v4l2_pix_format {
 #define V4L2_META_FMT_VSP1_HGO    v4l2_fourcc('V', 'S', 'P', 'H') /* R-Car VSP1 1-D Histogram */
 #define V4L2_META_FMT_VSP1_HGT    v4l2_fourcc('V', 'S', 'P', 'T') /* R-Car VSP1 2-D Histogram */
 
+/* Vendor specific - used for IPU3 camera sub-system */
+#define V4L2_META_FMT_RK_ISP1_PARAMS	v4l2_fourcc('R', 'K', '1', 'P') /* Rockchip ISP1 params */
+#define V4L2_META_FMT_RK_ISP1_STAT_3A	v4l2_fourcc('R', 'K', '1', 'S') /* Rockchip ISP1 3A statistics */
+
 /* priv field value to indicates that subsequent fields are valid. */
 #define V4L2_PIX_FMT_PRIV_MAGIC		0xfeedcafe
 
-- 
2.15.0

--
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^ permalink raw reply related

* [PATCH v2 02/11] media: rkisp1: Add user space ABI definitions
From: Jacob Chen @ 2017-11-24  2:36 UTC (permalink / raw)
  To: linux-rockchip
  Cc: linux-kernel, linux-arm-kernel, mchehab, linux-media,
	sakari.ailus, hans.verkuil, tfiga, zhengsq, laurent.pinchart, zyc,
	eddie.cai.linux, jeffy.chen, allon.huang, devicetree, heiko,
	robh+dt, Jacob Chen
In-Reply-To: <20171124023706.5702-1-jacob-chen@iotwrt.com>

From: Jeffy Chen <jeffy.chen@rock-chips.com>

Add the header for userspace

Signed-off-by: Jeffy Chen <jeffy.chen@rock-chips.com>
Signed-off-by: Jacob Chen <jacob2.chen@rock-chips.com>
---
 include/uapi/linux/rkisp1-config.h | 554 +++++++++++++++++++++++++++++++++++++
 1 file changed, 554 insertions(+)
 create mode 100644 include/uapi/linux/rkisp1-config.h

diff --git a/include/uapi/linux/rkisp1-config.h b/include/uapi/linux/rkisp1-config.h
new file mode 100644
index 000000000000..a801fbc9ef47
--- /dev/null
+++ b/include/uapi/linux/rkisp1-config.h
@@ -0,0 +1,554 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#ifndef _UAPI_RKISP1_CONFIG_H
+#define _UAPI_RKISP1_CONFIG_H
+
+#include <linux/types.h>
+#include <linux/v4l2-controls.h>
+
+#define CIFISP_MODULE_DPCC              (1 << 0)
+#define CIFISP_MODULE_BLS               (1 << 1)
+#define CIFISP_MODULE_SDG               (1 << 2)
+#define CIFISP_MODULE_HST               (1 << 3)
+#define CIFISP_MODULE_LSC               (1 << 4)
+#define CIFISP_MODULE_AWB_GAIN          (1 << 5)
+#define CIFISP_MODULE_FLT               (1 << 6)
+#define CIFISP_MODULE_BDM               (1 << 7)
+#define CIFISP_MODULE_CTK               (1 << 8)
+#define CIFISP_MODULE_GOC               (1 << 9)
+#define CIFISP_MODULE_CPROC             (1 << 10)
+#define CIFISP_MODULE_AFC               (1 << 11)
+#define CIFISP_MODULE_AWB               (1 << 12)
+#define CIFISP_MODULE_IE                (1 << 13)
+#define CIFISP_MODULE_AEC               (1 << 14)
+#define CIFISP_MODULE_WDR               (1 << 15)
+#define CIFISP_MODULE_DPF               (1 << 16)
+#define CIFISP_MODULE_DPF_STRENGTH      (1 << 17)
+
+#define CIFISP_CTK_COEFF_MAX            0x100
+#define CIFISP_CTK_OFFSET_MAX           0x800
+
+#define CIFISP_AE_MEAN_MAX              25
+#define CIFISP_HIST_BIN_N_MAX           16
+#define CIFISP_AFM_MAX_WINDOWS          3
+#define CIFISP_DEGAMMA_CURVE_SIZE       17
+
+#define CIFISP_BDM_MAX_TH               0xFF
+
+/* maximum value for horizontal start address */
+#define CIFISP_BLS_START_H_MAX             0x00000FFF
+/* maximum value for horizontal stop address */
+#define CIFISP_BLS_STOP_H_MAX              0x00000FFF
+/* maximum value for vertical start address */
+#define CIFISP_BLS_START_V_MAX             0x00000FFF
+/* maximum value for vertical stop address */
+#define CIFISP_BLS_STOP_V_MAX              0x00000FFF
+/* maximum is 2^18 = 262144*/
+#define CIFISP_BLS_SAMPLES_MAX             0x00000012
+/* maximum value for fixed black level */
+#define CIFISP_BLS_FIX_SUB_MAX             0x00000FFF
+/* minimum value for fixed black level */
+#define CIFISP_BLS_FIX_SUB_MIN             0xFFFFF000
+/* 13 bit range (signed)*/
+#define CIFISP_BLS_FIX_MASK                0x00001FFF
+/* AWB */
+#define CIFISP_AWB_MAX_GRID                1
+#define CIFISP_AWB_MAX_FRAMES              7
+
+/* Gamma out*/
+/* Maximum number of color samples supported */
+#define CIFISP_GAMMA_OUT_MAX_SAMPLES       17
+
+/* LSC */
+#define CIFISP_LSC_GRAD_TBL_SIZE           8
+#define CIFISP_LSC_SIZE_TBL_SIZE           8
+/*
+ * The following matches the tuning process,
+ * not the max capabilities of the chip.
+ * Last value unused.
+ */
+#define	CIFISP_LSC_DATA_TBL_SIZE           290
+/* HIST */
+/* Last 3 values unused. */
+#define CIFISP_HISTOGRAM_WEIGHT_GRIDS_SIZE 28
+
+/* DPCC */
+#define CIFISP_DPCC_METHODS_MAX       3
+
+/* DPF */
+#define CIFISP_DPF_MAX_NLF_COEFFS      17
+#define CIFISP_DPF_MAX_SPATIAL_COEFFS  6
+
+/* measurement types */
+#define CIFISP_STAT_AWB           (1 << 0)
+#define CIFISP_STAT_AUTOEXP       (1 << 1)
+#define CIFISP_STAT_AFM_FIN       (1 << 2)
+#define CIFISP_STAT_HIST          (1 << 3)
+
+enum cifisp_histogram_mode {
+	CIFISP_HISTOGRAM_MODE_DISABLE,
+	CIFISP_HISTOGRAM_MODE_RGB_COMBINED,
+	CIFISP_HISTOGRAM_MODE_R_HISTOGRAM,
+	CIFISP_HISTOGRAM_MODE_G_HISTOGRAM,
+	CIFISP_HISTOGRAM_MODE_B_HISTOGRAM,
+	CIFISP_HISTOGRAM_MODE_Y_HISTOGRAM
+};
+
+enum cifisp_exp_meas_mode {
+/* < Y = 16 + 0.25R + 0.5G + 0.1094B */
+	CIFISP_EXP_MEASURING_MODE_0,
+/* < Y = (R + G + B) x (85/256) */
+	CIFISP_EXP_MEASURING_MODE_1,
+};
+
+enum cifisp_exp_ctrl_auotostop {
+	CIFISP_EXP_CTRL_AUTOSTOP_0 = 0,
+	CIFISP_EXP_CTRL_AUTOSTOP_1 = 1,
+};
+
+struct cifisp_window {
+	unsigned short h_offs;
+	unsigned short v_offs;
+	unsigned short h_size;
+	unsigned short v_size;
+};
+
+enum cifisp_awb_mode_type {
+	CIFISP_AWB_MODE_MANUAL,
+	CIFISP_AWB_MODE_RGB,
+	CIFISP_AWB_MODE_YCBCR
+};
+
+enum cifisp_flt_mode {
+	CIFISP_FLT_STATIC_MODE,
+	CIFISP_FLT_DYNAMIC_MODE
+};
+
+/*
+ * BLS fixed subtraction values. The values will be subtracted from the sensor
+ * values. Therefore a negative value means addition instead of subtraction!
+ */
+struct cifisp_bls_fixed_val {
+	/*! Fixed (signed!) subtraction value for Bayer pattern R. */
+	signed short r;
+	/*! Fixed (signed!) subtraction value for Bayer pattern Gr. */
+	signed short gr;
+	/*! Fixed (signed!) subtraction value for Bayer pattern Gb. */
+	signed short gb;
+	/*! Fixed (signed!) subtraction value for Bayer pattern B. */
+	signed short b;
+};
+
+/* Configuration used by black level subtraction */
+struct cifisp_bls_config {
+	/*
+	 * Automatic mode activated means that the measured values
+	 * are subtracted.Otherwise the fixed subtraction
+	 * values will be subtracted.
+	 */
+	bool enable_auto;
+	unsigned char en_windows;
+	struct cifisp_window bls_window1;	/* < Measurement window 1. */
+	struct cifisp_window bls_window2;	/* !< Measurement window 2 */
+	/*
+	 * Set amount of measured pixels for each Bayer position
+	 * (A, B,C and D) to 2^bls_samples.
+	 */
+	unsigned char bls_samples;
+	/* !< Fixed subtraction values. */
+	struct cifisp_bls_fixed_val fixed_val;
+};
+
+struct cifisp_dpcc_methods_config {
+	unsigned int method;
+	unsigned int line_thresh;
+	unsigned int line_mad_fac;
+	unsigned int pg_fac;
+	unsigned int rnd_thresh;
+	unsigned int rg_fac;
+};
+
+struct cifisp_dpcc_config {
+	unsigned int mode;
+	unsigned int output_mode;
+	unsigned int set_use;
+	struct cifisp_dpcc_methods_config methods[CIFISP_DPCC_METHODS_MAX];
+	unsigned int ro_limits;
+	unsigned int rnd_offs;
+};
+
+struct cifisp_gamma_corr_curve {
+	unsigned short gamma_y[CIFISP_DEGAMMA_CURVE_SIZE];
+};
+
+struct cifisp_gamma_curve_x_axis_pnts {
+	unsigned int gamma_dx0;
+	unsigned int gamma_dx1;
+};
+
+/* Configuration used by sensor degamma */
+struct cifisp_sdg_config {
+	struct cifisp_gamma_corr_curve curve_r;
+	struct cifisp_gamma_corr_curve curve_g;
+	struct cifisp_gamma_corr_curve curve_b;
+	struct cifisp_gamma_curve_x_axis_pnts xa_pnts;
+};
+
+/* Configuration used by Lens shading correction */
+struct cifisp_lsc_config {
+	unsigned int r_data_tbl[CIFISP_LSC_DATA_TBL_SIZE];
+	unsigned int gr_data_tbl[CIFISP_LSC_DATA_TBL_SIZE];
+	unsigned int gb_data_tbl[CIFISP_LSC_DATA_TBL_SIZE];
+	unsigned int b_data_tbl[CIFISP_LSC_DATA_TBL_SIZE];
+
+	unsigned int x_grad_tbl[CIFISP_LSC_GRAD_TBL_SIZE];
+	unsigned int y_grad_tbl[CIFISP_LSC_GRAD_TBL_SIZE];
+
+	unsigned int x_size_tbl[CIFISP_LSC_SIZE_TBL_SIZE];
+	unsigned int y_size_tbl[CIFISP_LSC_SIZE_TBL_SIZE];
+	unsigned short config_width;
+	unsigned short config_height;
+};
+
+struct cifisp_ie_config {
+	enum v4l2_colorfx effect;
+	unsigned short color_sel;
+	/* 3x3 Matrix Coefficients for Emboss Effect 1 */
+	unsigned short eff_mat_1;
+	/* 3x3 Matrix Coefficients for Emboss Effect 2 */
+	unsigned short eff_mat_2;
+	/* 3x3 Matrix Coefficients for Emboss 3/Sketch 1 */
+	unsigned short eff_mat_3;
+	/* 3x3 Matrix Coefficients for Sketch Effect 2 */
+	unsigned short eff_mat_4;
+	/* 3x3 Matrix Coefficients for Sketch Effect 3 */
+	unsigned short eff_mat_5;
+	/* Chrominance increment values of tint (used for sepia effect) */
+	unsigned short eff_tint;
+};
+
+struct cifisp_cproc_config {
+	unsigned char c_out_range;
+	unsigned char y_in_range;
+	unsigned char y_out_range;
+	unsigned char contrast;
+	unsigned char brightness;
+	unsigned char sat;
+	unsigned char hue;
+};
+
+/* Configuration used by auto white balance */
+struct cifisp_awb_meas_config {
+	/*
+	 * white balance measurement window (in pixels)
+	 * Note: currently the h and v offsets are mapped to grid offsets
+	 */
+	struct cifisp_window awb_wnd;
+	enum cifisp_awb_mode_type awb_mode;
+	/*
+	 * only pixels values < max_y contribute to awb measurement
+	 * (set to 0 to disable this feature)
+	 */
+	unsigned char max_y;
+	/* only pixels values > min_y contribute to awb measurement */
+	unsigned char min_y;
+	/*
+	 * Chrominance sum maximum value, only consider pixels with Cb+Cr
+	 * smaller than threshold for awb measurements
+	 */
+	unsigned char max_csum;
+	/*
+	 * Chrominance minimum value, only consider pixels with Cb/Cr
+	 * each greater than threshold value for awb measurements
+	 */
+	unsigned char min_c;
+	/*
+	 * number of frames - 1 used for mean value calculation
+	 * (ucFrames=0 means 1 Frame)
+	 */
+	unsigned char frames;
+	/* reference Cr value for AWB regulation, target for AWB */
+	unsigned char awb_ref_cr;
+	/* reference Cb value for AWB regulation, target for AWB */
+	unsigned char awb_ref_cb;
+	bool enable_ymax_cmp;
+};
+
+struct cifisp_awb_gain_config {
+	unsigned short gain_red;
+	unsigned short gain_green_r;
+	unsigned short gain_blue;
+	unsigned short gain_green_b;
+};
+
+/* Configuration used by ISP filtering */
+struct cifisp_flt_config {
+	enum cifisp_flt_mode mode;	/* ISP_FILT_MODE register fields */
+	unsigned char grn_stage1;	/* ISP_FILT_MODE register fields */
+	unsigned char chr_h_mode;	/* ISP_FILT_MODE register fields */
+	unsigned char chr_v_mode;	/* ISP_FILT_MODE register fields */
+	unsigned int thresh_bl0;
+	unsigned int thresh_bl1;
+	unsigned int thresh_sh0;
+	unsigned int thresh_sh1;
+	unsigned int lum_weight;
+	unsigned int fac_sh1;
+	unsigned int fac_sh0;
+	unsigned int fac_mid;
+	unsigned int fac_bl0;
+	unsigned int fac_bl1;
+};
+
+/* Configuration used by Bayer DeMosaic */
+struct cifisp_bdm_config {
+	unsigned char demosaic_th;
+};
+
+/* Configuration used by Cross Talk correction */
+struct cifisp_ctk_config {
+	unsigned short coeff0;
+	unsigned short coeff1;
+	unsigned short coeff2;
+	unsigned short coeff3;
+	unsigned short coeff4;
+	unsigned short coeff5;
+	unsigned short coeff6;
+	unsigned short coeff7;
+	unsigned short coeff8;
+	/* offset for the crosstalk correction matrix */
+	unsigned short ct_offset_r;
+	unsigned short ct_offset_g;
+	unsigned short ct_offset_b;
+};
+
+enum cifisp_goc_mode {
+	CIFISP_GOC_MODE_LOGARITHMIC,
+	CIFISP_GOC_MODE_EQUIDISTANT
+};
+
+/* Configuration used by Gamma Out correction */
+struct cifisp_goc_config {
+	enum cifisp_goc_mode mode;
+	unsigned short gamma_y[CIFISP_GAMMA_OUT_MAX_SAMPLES];
+};
+
+/* Configuration used by Histogram */
+struct cifisp_hst_config {
+	enum cifisp_histogram_mode mode;
+	unsigned char histogram_predivider;
+	struct cifisp_window meas_window;
+	unsigned char hist_weight[CIFISP_HISTOGRAM_WEIGHT_GRIDS_SIZE];
+};
+
+/* Configuration used by Auto Exposure Control */
+struct cifisp_aec_config {
+	enum cifisp_exp_meas_mode mode;
+	__u32 autostop;
+	struct cifisp_window meas_window;
+};
+
+struct cifisp_afc_config {
+	unsigned char num_afm_win;	/* max CIFISP_AFM_MAX_WINDOWS */
+	struct cifisp_window afm_win[CIFISP_AFM_MAX_WINDOWS];
+	unsigned int thres;
+	unsigned int var_shift;
+};
+
+enum cifisp_dpf_gain_usage {
+/* don't use any gains in preprocessing stage */
+	CIFISP_DPF_GAIN_USAGE_DISABLED,
+/* use only the noise function gains  from registers DPF_NF_GAIN_R, ... */
+	CIFISP_DPF_GAIN_USAGE_NF_GAINS,
+/* use only the gains from LSC module */
+	CIFISP_DPF_GAIN_USAGE_LSC_GAINS,
+/* use the moise function gains and the gains from LSC module */
+	CIFISP_DPF_GAIN_USAGE_NF_LSC_GAINS,
+/* use only the gains from AWB module */
+	CIFISP_DPF_GAIN_USAGE_AWB_GAINS,
+/* use the gains from AWB and LSC module */
+	CIFISP_DPF_GAIN_USAGE_AWB_LSC_GAINS,
+/* upper border (only for an internal evaluation) */
+	CIFISP_DPF_GAIN_USAGE_MAX
+};
+
+enum cifisp_dpf_rb_filtersize {
+/* red and blue filter kernel size 13x9 (means 7x5 active pixel) */
+	CIFISP_DPF_RB_FILTERSIZE_13x9,
+/* red and blue filter kernel size 9x9 (means 5x5 active pixel) */
+	CIFISP_DPF_RB_FILTERSIZE_9x9,
+};
+
+enum cifisp_dpf_nll_scale_mode {
+/* use a linear scaling */
+	CIFISP_NLL_SCALE_LINEAR,
+/* use a logarithmic scaling */
+	CIFISP_NLL_SCALE_LOGARITHMIC,
+};
+
+struct cifisp_dpf_nll {
+	unsigned short coeff[CIFISP_DPF_MAX_NLF_COEFFS];
+	enum cifisp_dpf_nll_scale_mode scale_mode;
+};
+
+struct cifisp_dpf_rb_flt {
+	enum cifisp_dpf_rb_filtersize fltsize;
+	unsigned char spatial_coeff[CIFISP_DPF_MAX_SPATIAL_COEFFS];
+	bool r_enable;
+	bool b_enable;
+};
+
+struct cifisp_dpf_g_flt {
+	unsigned char spatial_coeff[CIFISP_DPF_MAX_SPATIAL_COEFFS];
+	bool gr_enable;
+	bool gb_enable;
+};
+
+struct cifisp_dpf_gain {
+	enum cifisp_dpf_gain_usage mode;
+	unsigned short nf_r_gain;
+	unsigned short nf_b_gain;
+	unsigned short nf_gr_gain;
+	unsigned short nf_gb_gain;
+};
+
+struct cifisp_dpf_config {
+	struct cifisp_dpf_gain gain;
+	struct cifisp_dpf_g_flt g_flt;
+	struct cifisp_dpf_rb_flt rb_flt;
+	struct cifisp_dpf_nll nll;
+};
+
+struct cifisp_dpf_strength_config {
+	unsigned char r;
+	unsigned char g;
+	unsigned char b;
+};
+
+struct cifisp_isp_other_cfg {
+	struct cifisp_dpcc_config dpcc_config;
+	struct cifisp_bls_config bls_config;
+	struct cifisp_sdg_config sdg_config;
+	struct cifisp_lsc_config lsc_config;
+	struct cifisp_awb_gain_config awb_gain_config;
+	struct cifisp_flt_config flt_config;
+	struct cifisp_bdm_config bdm_config;
+	struct cifisp_ctk_config ctk_config;
+	struct cifisp_goc_config goc_config;
+	struct cifisp_dpf_config dpf_config;
+	struct cifisp_dpf_strength_config dpf_strength_config;
+	/* post process configs, including hue, sharpness, brightness, contrast, color effect */
+	/* TODO: removed from here ? set by standard v4l2 controls ? */
+	struct cifisp_cproc_config cproc_config;
+	struct cifisp_ie_config ie_config;
+};
+
+struct cifisp_isp_meas_cfg {
+	struct cifisp_awb_meas_config awb_meas_config;
+	struct cifisp_hst_config hst_config;
+	struct cifisp_aec_config aec_config;
+	struct cifisp_afc_config afc_config;
+};
+
+struct rkisp1_isp_params_cfg {
+	/* mask the enable bits of which module  should be updated */
+	unsigned int module_en_update;
+	/* mask the enable value of each module, only update the module which correspond
+	  * bit was set in module_en_update
+	  */
+	unsigned int module_ens;
+	/* mask the config bits of which module  should be updated */
+	unsigned int module_cfg_update;
+
+	struct cifisp_isp_meas_cfg meas;
+	struct cifisp_isp_other_cfg others;
+};
+
+/* measurement statistics */
+
+struct cifisp_awb_meas {
+	unsigned int cnt;
+	unsigned char mean_y_or_g;
+	unsigned char mean_cb_or_b;
+	unsigned char mean_cr_or_r;
+};
+
+struct cifisp_awb_stat {
+	struct cifisp_awb_meas awb_mean[CIFISP_AWB_MAX_GRID];
+};
+
+struct cifisp_hist_stat {
+	unsigned short hist_bins[CIFISP_HIST_BIN_N_MAX];
+};
+
+/*! BLS mean measured values */
+struct cifisp_bls_meas_val {
+	/*! Mean measured value for Bayer pattern R. */
+	unsigned short meas_r;
+	/*! Mean measured value for Bayer pattern Gr. */
+	unsigned short meas_gr;
+	/*! Mean measured value for Bayer pattern Gb. */
+	unsigned short meas_gb;
+	/*! Mean measured value for Bayer pattern B. */
+	unsigned short meas_b;
+};
+
+struct cifisp_ae_stat {
+	unsigned char exp_mean[CIFISP_AE_MEAN_MAX];
+	struct cifisp_bls_meas_val bls_val;	/* available wit exposure results */
+};
+
+struct cifisp_af_meas_val {
+	unsigned int sum;
+	unsigned int lum;
+};
+
+struct cifisp_af_stat {
+	struct cifisp_af_meas_val window[CIFISP_AFM_MAX_WINDOWS];
+};
+
+struct cifisp_stat {
+	struct cifisp_awb_stat awb;
+	struct cifisp_ae_stat ae;
+	struct cifisp_af_stat af;
+	struct cifisp_hist_stat hist;
+};
+
+struct rkisp1_stat_buffer {
+	unsigned int meas_type;
+	unsigned int frame_id;
+	struct cifisp_stat params;
+};
+
+#endif /* _UAPI_RKISP1_CONFIG_H */
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 03/11] media: rkisp1: add rockchip isp1 driver
From: Jacob Chen @ 2017-11-24  2:36 UTC (permalink / raw)
  To: linux-rockchip
  Cc: linux-kernel, linux-arm-kernel, mchehab, linux-media,
	sakari.ailus, hans.verkuil, tfiga, zhengsq, laurent.pinchart, zyc,
	eddie.cai.linux, jeffy.chen, allon.huang, devicetree, heiko,
	robh+dt, Jacob Chen, Jacob Chen
In-Reply-To: <20171124023706.5702-1-jacob-chen@iotwrt.com>

From: Jacob Chen <jacob2.chen@rock-chips.com>

This commit adds a ISP(Camera) v4l2 driver for rockchip rk3288/rk3399 SoC.

Signed-off-by: Jacob Chen <jacob2.chen@rock-chips.com>
Signed-off-by: Shunqian Zheng <zhengsq@rock-chips.com>
Signed-off-by: Yichong Zhong <zyc@rock-chips.com>
Signed-off-by: Jacob Chen <cc@rock-chips.com>
Signed-off-by: Eddie Cai <eddie.cai.linux@gmail.com>
Signed-off-by: Jeffy Chen <jeffy.chen@rock-chips.com>
Signed-off-by: Allon Huang <allon.huang@rock-chips.com>
Signed-off-by: Tomasz Figa <tfiga@chromium.org>
---
 drivers/media/platform/Kconfig                    |   10 +
 drivers/media/platform/Makefile                   |    1 +
 drivers/media/platform/rockchip/isp1/Makefile     |    7 +
 drivers/media/platform/rockchip/isp1/capture.c    | 1691 +++++++++++++++++++++
 drivers/media/platform/rockchip/isp1/capture.h    |   46 +
 drivers/media/platform/rockchip/isp1/common.h     |  330 ++++
 drivers/media/platform/rockchip/isp1/dev.c        |  632 ++++++++
 drivers/media/platform/rockchip/isp1/isp_params.c | 1556 +++++++++++++++++++
 drivers/media/platform/rockchip/isp1/isp_params.h |   81 +
 drivers/media/platform/rockchip/isp1/isp_stats.c  |  537 +++++++
 drivers/media/platform/rockchip/isp1/isp_stats.h  |   81 +
 drivers/media/platform/rockchip/isp1/regs.c       |  251 +++
 drivers/media/platform/rockchip/isp1/regs.h       | 1578 +++++++++++++++++++
 drivers/media/platform/rockchip/isp1/rkisp1.c     | 1230 +++++++++++++++
 drivers/media/platform/rockchip/isp1/rkisp1.h     |  130 ++
 15 files changed, 8161 insertions(+)
 create mode 100644 drivers/media/platform/rockchip/isp1/Makefile
 create mode 100644 drivers/media/platform/rockchip/isp1/capture.c
 create mode 100644 drivers/media/platform/rockchip/isp1/capture.h
 create mode 100644 drivers/media/platform/rockchip/isp1/common.h
 create mode 100644 drivers/media/platform/rockchip/isp1/dev.c
 create mode 100644 drivers/media/platform/rockchip/isp1/isp_params.c
 create mode 100644 drivers/media/platform/rockchip/isp1/isp_params.h
 create mode 100644 drivers/media/platform/rockchip/isp1/isp_stats.c
 create mode 100644 drivers/media/platform/rockchip/isp1/isp_stats.h
 create mode 100644 drivers/media/platform/rockchip/isp1/regs.c
 create mode 100644 drivers/media/platform/rockchip/isp1/regs.h
 create mode 100644 drivers/media/platform/rockchip/isp1/rkisp1.c
 create mode 100644 drivers/media/platform/rockchip/isp1/rkisp1.h

diff --git a/drivers/media/platform/Kconfig b/drivers/media/platform/Kconfig
index fd0c99859d6f..062fffc9ffb6 100644
--- a/drivers/media/platform/Kconfig
+++ b/drivers/media/platform/Kconfig
@@ -117,6 +117,16 @@ config VIDEO_QCOM_CAMSS
 	select VIDEOBUF2_DMA_SG
 	select V4L2_FWNODE
 
+config VIDEO_ROCKCHIP_ISP1
+	tristate "Rockchip Image Signal Processing v1 Unit driver"
+	depends on VIDEO_V4L2 && VIDEO_V4L2_SUBDEV_API
+	depends on ARCH_ROCKCHIP || COMPILE_TEST
+	select VIDEOBUF2_DMA_CONTIG
+	select V4L2_FWNODE
+	default n
+	---help---
+	  Support for ISP1 on the rockchip SoC.
+
 config VIDEO_S3C_CAMIF
 	tristate "Samsung S3C24XX/S3C64XX SoC Camera Interface driver"
 	depends on VIDEO_V4L2 && I2C && VIDEO_V4L2_SUBDEV_API
diff --git a/drivers/media/platform/Makefile b/drivers/media/platform/Makefile
index 003b0bb2cddf..d235908df63e 100644
--- a/drivers/media/platform/Makefile
+++ b/drivers/media/platform/Makefile
@@ -67,6 +67,7 @@ obj-$(CONFIG_VIDEO_RENESAS_FDP1)	+= rcar_fdp1.o
 obj-$(CONFIG_VIDEO_RENESAS_JPU) 	+= rcar_jpu.o
 obj-$(CONFIG_VIDEO_RENESAS_VSP1)	+= vsp1/
 
+obj-$(CONFIG_VIDEO_ROCKCHIP_ISP1)	+= rockchip/isp1/
 obj-$(CONFIG_VIDEO_ROCKCHIP_RGA)	+= rockchip/rga/
 
 obj-y	+= omap/
diff --git a/drivers/media/platform/rockchip/isp1/Makefile b/drivers/media/platform/rockchip/isp1/Makefile
new file mode 100644
index 000000000000..8f52f959398e
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/Makefile
@@ -0,0 +1,7 @@
+obj-$(CONFIG_VIDEO_ROCKCHIP_ISP1) += 	video_rkisp1.o
+video_rkisp1-objs 	   += 	rkisp1.o \
+				dev.o \
+				regs.o \
+				isp_stats.o \
+				isp_params.o \
+				capture.o
diff --git a/drivers/media/platform/rockchip/isp1/capture.c b/drivers/media/platform/rockchip/isp1/capture.c
new file mode 100644
index 000000000000..a751a923ba5d
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/capture.c
@@ -0,0 +1,1691 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#include <linux/delay.h>
+#include <linux/pm_runtime.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-event.h>
+#include <media/v4l2-fh.h>
+#include <media/v4l2-ioctl.h>
+#include <media/v4l2-subdev.h>
+#include <media/videobuf2-dma-contig.h>
+#include "capture.h"
+#include "rkisp1.h"
+#include "regs.h"
+
+#define CIF_ISP_REQ_BUFS_MIN 1
+#define CIF_ISP_REQ_BUFS_MAX 8
+
+/*
+ * mp sink source: isp
+ * sp sink source : isp, no dma now
+ * mp sink pad fmts: yuv 422, raw
+ * sp sink pad fmts: yuv422( source isp), yuv420......
+ * mp source fmts: yuv, raw, no jpeg now
+ * sp source fmts: yuv, rgb
+ */
+
+#define STREAM_PAD_SINK				0
+#define STREAM_PAD_SOURCE			1
+
+#define STREAM_MAX_MP_RSZ_OUTPUT_WIDTH		4416
+#define STREAM_MAX_MP_RSZ_OUTPUT_HEIGHT		3312
+#define STREAM_MAX_SP_RSZ_OUTPUT_WIDTH		1920
+#define STREAM_MAX_SP_RSZ_OUTPUT_HEIGHT		1080
+#define STREAM_MIN_RSZ_OUTPUT_WIDTH		32
+#define STREAM_MIN_RSZ_OUTPUT_HEIGHT		16
+
+#define STREAM_MAX_MP_SP_INPUT_WIDTH STREAM_MAX_MP_RSZ_OUTPUT_WIDTH
+#define STREAM_MAX_MP_SP_INPUT_HEIGHT STREAM_MAX_MP_RSZ_OUTPUT_HEIGHT
+#define STREAM_MIN_MP_SP_INPUT_WIDTH		32
+#define STREAM_MIN_MP_SP_INPUT_HEIGHT		32
+
+/*
+ * crop accepts only yuv422 format
+ * resizer can accept yuv444,yuv422,yuv420 format, can output yuv422, yuv420,
+ * yuv444 format
+ * sp resizer has two data source: DMA-reader or crop
+ * mp resizer has only one data source:  crop
+ * if format is unsupported by path, crop and resizer should be bypassed
+ * (disabled)
+ */
+
+/* Get xsubs and ysubs for fourcc formats
+ *
+ * @xsubs: horizon color samples in a 4*4 matrix, for yuv
+ * @ysubs: vertical color samples in a 4*4 matrix, for yuv
+ */
+static int fcc_xysubs(u32 fcc, u32 *xsubs, u32 *ysubs)
+{
+	switch (fcc) {
+	case V4L2_PIX_FMT_GREY:
+	case V4L2_PIX_FMT_YUV444M:
+		*xsubs = 1;
+		*ysubs = 1;
+		break;
+	case V4L2_PIX_FMT_YUYV:
+	case V4L2_PIX_FMT_YVYU:
+	case V4L2_PIX_FMT_VYUY:
+	case V4L2_PIX_FMT_YUV422P:
+	case V4L2_PIX_FMT_NV16:
+	case V4L2_PIX_FMT_NV61:
+	case V4L2_PIX_FMT_YVU422M:
+		*xsubs = 2;
+		*ysubs = 1;
+		break;
+	case V4L2_PIX_FMT_NV21:
+	case V4L2_PIX_FMT_NV12:
+	case V4L2_PIX_FMT_NV21M:
+	case V4L2_PIX_FMT_NV12M:
+	case V4L2_PIX_FMT_YUV420:
+	case V4L2_PIX_FMT_YVU420:
+		*xsubs = 2;
+		*ysubs = 2;
+		break;
+	default:
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int mbus_code_xysubs(u32 code, u32 *xsubs, u32 *ysubs)
+{
+	switch (code) {
+	case MEDIA_BUS_FMT_YUYV8_2X8:
+	case MEDIA_BUS_FMT_YUYV8_1X16:
+	case MEDIA_BUS_FMT_YVYU8_1X16:
+	case MEDIA_BUS_FMT_UYVY8_1X16:
+	case MEDIA_BUS_FMT_VYUY8_1X16:
+		*xsubs = 2;
+		*ysubs = 1;
+		break;
+	default:
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int mbus_code_sp_in_fmt(u32 code, u32 *format)
+{
+	switch (code) {
+	case MEDIA_BUS_FMT_YUYV8_2X8:
+		*format = MI_CTRL_SP_INPUT_YUV422;
+		break;
+	default:
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static const struct capture_fmt mp_fmts[] = {
+	/* yuv422 */
+	{
+		.fourcc = V4L2_PIX_FMT_YUYV,
+		.fmt_type = FMT_YUV,
+		.bpp = { 16 },
+		.cplanes = 1,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_MP_WRITE_YUVINT,
+	}, {
+		.fourcc = V4L2_PIX_FMT_YVYU,
+		.fmt_type = FMT_YUV,
+		.bpp = { 16 },
+		.cplanes = 1,
+		.mplanes = 1,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_MP_WRITE_YUVINT,
+	}, {
+		.fourcc = V4L2_PIX_FMT_VYUY,
+		.fmt_type = FMT_YUV,
+		.bpp = { 16 },
+		.cplanes = 1,
+		.mplanes = 1,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_MP_WRITE_YUVINT,
+	}, {
+		.fourcc = V4L2_PIX_FMT_YUV422P,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 4, 4 },
+		.cplanes = 3,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_MP_WRITE_YUV_PLA_OR_RAW8,
+	}, {
+		.fourcc = V4L2_PIX_FMT_NV16,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_MP_WRITE_YUV_SPLA,
+	}, {
+		.fourcc = V4L2_PIX_FMT_NV61,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 1,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_MP_WRITE_YUV_SPLA,
+	}, {
+		.fourcc = V4L2_PIX_FMT_YVU422M,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 8, 8 },
+		.cplanes = 3,
+		.mplanes = 3,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_MP_WRITE_YUV_PLA_OR_RAW8,
+	},
+	/* yuv420 */
+	{
+		.fourcc = V4L2_PIX_FMT_NV21,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 1,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_MP_WRITE_YUV_SPLA,
+	}, {
+		.fourcc = V4L2_PIX_FMT_NV12,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_MP_WRITE_YUV_SPLA,
+	}, {
+		.fourcc = V4L2_PIX_FMT_NV21M,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 2,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_MP_WRITE_YUV_SPLA,
+	}, {
+		.fourcc = V4L2_PIX_FMT_NV12M,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 2,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_MP_WRITE_YUV_SPLA,
+	}, {
+		.fourcc = V4L2_PIX_FMT_YUV420,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 8, 8 },
+		.cplanes = 3,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_MP_WRITE_YUV_PLA_OR_RAW8,
+	}, {
+		.fourcc = V4L2_PIX_FMT_YVU420,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 8, 8 },
+		.cplanes = 3,
+		.mplanes = 1,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_MP_WRITE_YUV_PLA_OR_RAW8,
+	},
+	/* yuv444 */
+	{
+		.fourcc = V4L2_PIX_FMT_YUV444M,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 8, 8 },
+		.cplanes = 3,
+		.mplanes = 3,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_MP_WRITE_YUV_PLA_OR_RAW8,
+	},
+	/* yuv400 */
+	{
+		.fourcc = V4L2_PIX_FMT_GREY,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8 },
+		.cplanes = 1,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_MP_WRITE_YUVINT,
+	},
+	/* raw */
+	{
+		.fourcc = V4L2_PIX_FMT_SRGGB8,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 8 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_YUV_PLA_OR_RAW8,
+	}, {
+		.fourcc = V4L2_PIX_FMT_SGRBG8,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 8 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_YUV_PLA_OR_RAW8,
+	}, {
+		.fourcc = V4L2_PIX_FMT_SGBRG8,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 8 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_YUV_PLA_OR_RAW8,
+	}, {
+		.fourcc = V4L2_PIX_FMT_SBGGR8,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 8 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_YUV_PLA_OR_RAW8,
+	}, {
+		.fourcc = V4L2_PIX_FMT_SRGGB8,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 10 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_RAW12,
+	}, {
+		.fourcc = V4L2_PIX_FMT_SGRBG10,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 10 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_RAW12,
+	}, {
+		.fourcc = V4L2_PIX_FMT_SGBRG10,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 10 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_RAW12,
+	}, {
+		.fourcc = V4L2_PIX_FMT_SBGGR10,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 10 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_RAW12,
+	}, {
+		.fourcc = V4L2_PIX_FMT_SRGGB12,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 12 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_RAW12,
+	}, {
+		.fourcc = V4L2_PIX_FMT_SGRBG12,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 12 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_RAW12,
+	}, {
+		.fourcc = V4L2_PIX_FMT_SGBRG12,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 12 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_RAW12,
+	}, {
+		.fourcc = V4L2_PIX_FMT_SBGGR12,
+		.fmt_type = FMT_BAYER,
+		.bpp = { 12 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_MP_WRITE_RAW12,
+	},
+};
+
+static const struct capture_fmt sp_fmts[] = {
+	/* yuv422 */
+	{
+		.fourcc = V4L2_PIX_FMT_YUYV,
+		.fmt_type = FMT_YUV,
+		.bpp = { 16 },
+		.cplanes = 1,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_SP_WRITE_INT,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV422,
+	}, {
+		.fourcc = V4L2_PIX_FMT_YVYU,
+		.fmt_type = FMT_YUV,
+		.bpp = { 16 },
+		.cplanes = 1,
+		.mplanes = 1,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_SP_WRITE_INT,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV422,
+	}, {
+		.fourcc = V4L2_PIX_FMT_VYUY,
+		.fmt_type = FMT_YUV,
+		.bpp = { 16 },
+		.cplanes = 1,
+		.mplanes = 1,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_SP_WRITE_INT,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV422,
+	}, {
+		.fourcc = V4L2_PIX_FMT_YUV422P,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 8, 8 },
+		.cplanes = 3,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_SP_WRITE_PLA,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV422,
+	}, {
+		.fourcc = V4L2_PIX_FMT_NV16,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_SP_WRITE_SPLA,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV422,
+	}, {
+		.fourcc = V4L2_PIX_FMT_NV61,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 1,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_SP_WRITE_SPLA,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV422,
+	}, {
+		.fourcc = V4L2_PIX_FMT_YVU422M,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 8, 8 },
+		.cplanes = 3,
+		.mplanes = 3,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_SP_WRITE_PLA,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV422,
+	},
+	/* yuv420 */
+	{
+		.fourcc = V4L2_PIX_FMT_NV21,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 1,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_SP_WRITE_SPLA,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV420,
+	}, {
+		.fourcc = V4L2_PIX_FMT_NV12,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_SP_WRITE_SPLA,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV420,
+	}, {
+		.fourcc = V4L2_PIX_FMT_NV21M,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 2,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_SP_WRITE_SPLA,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV420,
+	}, {
+		.fourcc = V4L2_PIX_FMT_NV12M,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 16 },
+		.cplanes = 2,
+		.mplanes = 2,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_SP_WRITE_SPLA,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV420,
+	}, {
+		.fourcc = V4L2_PIX_FMT_YUV420,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 8, 8 },
+		.cplanes = 3,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_SP_WRITE_PLA,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV420,
+	}, {
+		.fourcc = V4L2_PIX_FMT_YVU420,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 8, 8 },
+		.cplanes = 3,
+		.mplanes = 1,
+		.uv_swap = 1,
+		.write_format = MI_CTRL_SP_WRITE_PLA,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV420,
+	},
+	/* yuv444 */
+	{
+		.fourcc = V4L2_PIX_FMT_YUV444M,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8, 8, 8 },
+		.cplanes = 3,
+		.mplanes = 3,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_SP_WRITE_PLA,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV444,
+	},
+	/* yuv400 */
+	{
+		.fourcc = V4L2_PIX_FMT_GREY,
+		.fmt_type = FMT_YUV,
+		.bpp = { 8 },
+		.cplanes = 1,
+		.mplanes = 1,
+		.uv_swap = 0,
+		.write_format = MI_CTRL_SP_WRITE_INT,
+		.output_format = MI_CTRL_SP_OUTPUT_YUV400,
+	},
+	/* rgb */
+	{
+		.fourcc = V4L2_PIX_FMT_RGB24,
+		.fmt_type = FMT_RGB,
+		.bpp = { 24 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_SP_WRITE_PLA,
+		.output_format = MI_CTRL_SP_OUTPUT_RGB888,
+	}, {
+		.fourcc = V4L2_PIX_FMT_RGB565,
+		.fmt_type = FMT_RGB,
+		.bpp = { 16 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_SP_WRITE_PLA,
+		.output_format = MI_CTRL_SP_OUTPUT_RGB565,
+	}, {
+		.fourcc = V4L2_PIX_FMT_BGR666,
+		.fmt_type = FMT_RGB,
+		.bpp = { 18 },
+		.mplanes = 1,
+		.write_format = MI_CTRL_SP_WRITE_PLA,
+		.output_format = MI_CTRL_SP_OUTPUT_RGB666,
+	},
+};
+
+static struct stream_config rkisp1_mp_stream_config = {
+	.fmts = mp_fmts,
+	.fmt_size = ARRAY_SIZE(mp_fmts),
+	/* constrains */
+	.max_rsz_width = STREAM_MAX_MP_RSZ_OUTPUT_WIDTH,
+	.max_rsz_height = STREAM_MAX_MP_RSZ_OUTPUT_HEIGHT,
+	.min_rsz_width = STREAM_MIN_RSZ_OUTPUT_WIDTH,
+	.min_rsz_height = STREAM_MIN_RSZ_OUTPUT_HEIGHT,
+	/* registers */
+	.rsz = {
+		.ctrl = CIF_MRSZ_CTRL,
+		.scale_hy = CIF_MRSZ_SCALE_HY,
+		.scale_hcr = CIF_MRSZ_SCALE_HCR,
+		.scale_hcb = CIF_MRSZ_SCALE_HCB,
+		.scale_vy = CIF_MRSZ_SCALE_VY,
+		.scale_vc = CIF_MRSZ_SCALE_VC,
+		.scale_lut = CIF_MRSZ_SCALE_LUT,
+		.scale_lut_addr = CIF_MRSZ_SCALE_LUT_ADDR,
+		.scale_hy_shd = CIF_MRSZ_SCALE_HY_SHD,
+		.scale_hcr_shd = CIF_MRSZ_SCALE_HCR_SHD,
+		.scale_hcb_shd = CIF_MRSZ_SCALE_HCB_SHD,
+		.scale_vy_shd = CIF_MRSZ_SCALE_VY_SHD,
+		.scale_vc_shd = CIF_MRSZ_SCALE_VC_SHD,
+		.phase_hy = CIF_MRSZ_PHASE_HY,
+		.phase_hc = CIF_MRSZ_PHASE_HC,
+		.phase_vy = CIF_MRSZ_PHASE_VY,
+		.phase_vc = CIF_MRSZ_PHASE_VC,
+		.ctrl_shd = CIF_MRSZ_CTRL_SHD,
+		.phase_hy_shd = CIF_MRSZ_PHASE_HY_SHD,
+		.phase_hc_shd = CIF_MRSZ_PHASE_HC_SHD,
+		.phase_vy_shd = CIF_MRSZ_PHASE_VY_SHD,
+		.phase_vc_shd = CIF_MRSZ_PHASE_VC_SHD,
+	},
+	.dual_crop = {
+		.ctrl = CIF_DUAL_CROP_CTRL,
+		.yuvmode_mask = CIF_DUAL_CROP_MP_MODE_YUV,
+		.rawmode_mask = CIF_DUAL_CROP_MP_MODE_RAW,
+		.h_offset = CIF_DUAL_CROP_M_H_OFFS,
+		.v_offset = CIF_DUAL_CROP_M_V_OFFS,
+		.h_size = CIF_DUAL_CROP_M_H_SIZE,
+		.v_size = CIF_DUAL_CROP_M_V_SIZE,
+	},
+	.mi = {
+		.y_size_init = CIF_MI_MP_Y_SIZE_INIT,
+		.cb_size_init = CIF_MI_MP_CB_SIZE_INIT,
+		.cr_size_init = CIF_MI_MP_CR_SIZE_INIT,
+		.y_base_ad_init = CIF_MI_MP_Y_BASE_AD_INIT,
+		.cb_base_ad_init = CIF_MI_MP_CB_BASE_AD_INIT,
+		.cr_base_ad_init = CIF_MI_MP_CR_BASE_AD_INIT,
+		.y_offs_cnt_init = CIF_MI_MP_Y_OFFS_CNT_INIT,
+		.cb_offs_cnt_init = CIF_MI_MP_CB_OFFS_CNT_INIT,
+		.cr_offs_cnt_init = CIF_MI_MP_CR_OFFS_CNT_INIT,
+	},
+};
+
+static struct stream_config rkisp1_sp_stream_config = {
+	.fmts = sp_fmts,
+	.fmt_size = ARRAY_SIZE(sp_fmts),
+	/* constrains */
+	.max_rsz_width = STREAM_MAX_SP_RSZ_OUTPUT_WIDTH,
+	.max_rsz_height = STREAM_MAX_SP_RSZ_OUTPUT_HEIGHT,
+	.min_rsz_width = STREAM_MIN_RSZ_OUTPUT_WIDTH,
+	.min_rsz_height = STREAM_MIN_RSZ_OUTPUT_HEIGHT,
+	/* registers */
+	.rsz = {
+		.ctrl = CIF_SRSZ_CTRL,
+		.scale_hy = CIF_SRSZ_SCALE_HY,
+		.scale_hcr = CIF_SRSZ_SCALE_HCR,
+		.scale_hcb = CIF_SRSZ_SCALE_HCB,
+		.scale_vy = CIF_SRSZ_SCALE_VY,
+		.scale_vc = CIF_SRSZ_SCALE_VC,
+		.scale_lut = CIF_SRSZ_SCALE_LUT,
+		.scale_lut_addr = CIF_SRSZ_SCALE_LUT_ADDR,
+		.scale_hy_shd = CIF_SRSZ_SCALE_HY_SHD,
+		.scale_hcr_shd = CIF_SRSZ_SCALE_HCR_SHD,
+		.scale_hcb_shd = CIF_SRSZ_SCALE_HCB_SHD,
+		.scale_vy_shd = CIF_SRSZ_SCALE_VY_SHD,
+		.scale_vc_shd = CIF_SRSZ_SCALE_VC_SHD,
+		.phase_hy = CIF_SRSZ_PHASE_HY,
+		.phase_hc = CIF_SRSZ_PHASE_HC,
+		.phase_vy = CIF_SRSZ_PHASE_VY,
+		.phase_vc = CIF_SRSZ_PHASE_VC,
+		.ctrl_shd = CIF_SRSZ_CTRL_SHD,
+		.phase_hy_shd = CIF_SRSZ_PHASE_HY_SHD,
+		.phase_hc_shd = CIF_SRSZ_PHASE_HC_SHD,
+		.phase_vy_shd = CIF_SRSZ_PHASE_VY_SHD,
+		.phase_vc_shd = CIF_SRSZ_PHASE_VC_SHD,
+	},
+	.dual_crop = {
+		.ctrl = CIF_DUAL_CROP_CTRL,
+		.yuvmode_mask = CIF_DUAL_CROP_SP_MODE_YUV,
+		.rawmode_mask = CIF_DUAL_CROP_SP_MODE_RAW,
+		.h_offset = CIF_DUAL_CROP_S_H_OFFS,
+		.v_offset = CIF_DUAL_CROP_S_V_OFFS,
+		.h_size = CIF_DUAL_CROP_S_H_SIZE,
+		.v_size = CIF_DUAL_CROP_S_V_SIZE,
+	},
+	.mi = {
+		.y_size_init = CIF_MI_SP_Y_SIZE_INIT,
+		.cb_size_init = CIF_MI_SP_CB_SIZE_INIT,
+		.cr_size_init = CIF_MI_SP_CR_SIZE_INIT,
+		.y_base_ad_init = CIF_MI_SP_Y_BASE_AD_INIT,
+		.cb_base_ad_init = CIF_MI_SP_CB_BASE_AD_INIT,
+		.cr_base_ad_init = CIF_MI_SP_CR_BASE_AD_INIT,
+		.y_offs_cnt_init = CIF_MI_SP_Y_OFFS_CNT_INIT,
+		.cb_offs_cnt_init = CIF_MI_SP_CB_OFFS_CNT_INIT,
+		.cr_offs_cnt_init = CIF_MI_SP_CR_OFFS_CNT_INIT,
+	},
+};
+
+static const
+struct capture_fmt *find_fmt(struct rkisp1_stream *stream, const u32 pixelfmt)
+{
+	const struct capture_fmt *fmt;
+	int i;
+
+	for (i = 0; i < stream->config->fmt_size; i++) {
+		fmt = &stream->config->fmts[i];
+		if (fmt->fourcc == pixelfmt)
+			return fmt;
+	}
+	return NULL;
+}
+
+static int rkisp1_config_dcrop(struct rkisp1_stream *stream, bool async)
+{
+	struct rkisp1_device *dev = stream->ispdev;
+	struct v4l2_rect *dcrop = &stream->dcrop;
+	struct v4l2_rect *input_win;
+
+	input_win = rkisp1_get_isp_sd_win(dev);
+
+	if (dcrop->width == input_win->width &&
+	    dcrop->height == input_win->height &&
+	    dcrop->left == 0 && dcrop->top == 0) {
+		disable_dcrop(stream, async);
+		return 0;
+	}
+
+	config_dcrop(stream, dcrop, async);
+
+	return 0;
+}
+
+static int rkisp1_config_rsz(struct rkisp1_stream *stream, bool async)
+{
+	struct rkisp1_device *dev = stream->ispdev;
+	struct v4l2_pix_format_mplane output_fmt = stream->out_fmt;
+	struct capture_fmt *output_isp_fmt = &stream->out_isp_fmt;
+	struct ispsd_out_fmt *input_isp_fmt = rkisp1_get_ispsd_out_fmt(dev);
+	struct v4l2_rect in_y, in_c, out_y, out_c;
+	u32 xsubs_in, ysubs_in, xsubs_out, ysubs_out;
+
+	if (input_isp_fmt->fmt_type == FMT_BAYER)
+		goto disable;
+
+	/* set input and output sizes for scale calculation */
+	in_y.width = stream->dcrop.width;
+	in_y.height = stream->dcrop.height;
+	out_y.width = output_fmt.width;
+	out_y.height = output_fmt.height;
+
+	if (mbus_code_xysubs(input_isp_fmt->mbus_code, &xsubs_in, &ysubs_in)) {
+		v4l2_err(&dev->v4l2_dev, "Not xsubs/ysubs found\n");
+		return -EINVAL;
+	}
+	in_c.width = in_y.width / xsubs_in;
+	in_c.height = in_y.height / ysubs_in;
+
+	if (output_isp_fmt->fmt_type == FMT_YUV) {
+		fcc_xysubs(output_isp_fmt->fourcc, &xsubs_out, &ysubs_out);
+		out_c.width = out_y.width / xsubs_out;
+		out_c.height = out_y.height / ysubs_out;
+	} else {
+		out_c.width = out_y.width / xsubs_in;
+		out_c.height = out_y.height / ysubs_in;
+	}
+
+	if (in_c.width == out_c.width && in_c.height == out_c.height)
+		goto disable;
+
+	/* set RSZ input and output */
+	v4l2_dbg(1, rkisp1_debug, &dev->v4l2_dev,
+		 "stream: %d fmt: %08x %dx%d -> fmt: %08x %dx%d\n",
+		 stream->id, input_isp_fmt->mbus_code,
+		 stream->dcrop.width, stream->dcrop.height,
+		 output_isp_fmt->fourcc, output_fmt.width,
+		 output_fmt.height);
+	v4l2_dbg(1, rkisp1_debug, &dev->v4l2_dev,
+		 "chroma scaling %dx%d -> %dx%d\n",
+		 in_c.width, in_c.height, out_c.width, out_c.height);
+
+	/* calculate and set scale */
+	config_rsz(stream, &in_y, &in_c, &out_y, &out_c, async);
+
+	if (rkisp1_debug)
+		dump_rsz_regs(stream);
+
+	return 0;
+
+disable:
+	disable_rsz(stream, async);
+
+	return 0;
+}
+
+/***************************** stream operations*******************************/
+static int mp_config_mi(struct rkisp1_stream *stream)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+       /*
+	* plane_fmt[0].sizeimage is total size of all planes for single
+	* memory plane formats, so calculate the size explicitly.
+	*/
+	mi_set_y_size(stream, stream->out_fmt.plane_fmt[0].bytesperline *
+			 stream->out_fmt.height);
+	mi_set_cb_size(stream, stream->out_fmt.plane_fmt[1].sizeimage);
+	mi_set_cr_size(stream, stream->out_fmt.plane_fmt[2].sizeimage);
+
+	mp_frame_end_int_enable(base);
+	if (stream->out_isp_fmt.uv_swap)
+		mp_set_uv_swap(base);
+
+	config_mi_ctrl(stream);
+	mp_mi_ctrl_set_format(base, stream->out_isp_fmt.write_format);
+	mp_mi_ctrl_autoupdate_en(base);
+
+	return 0;
+}
+
+static int sp_config_mi(struct rkisp1_stream *stream)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+	struct rkisp1_device *dev = stream->ispdev;
+	struct capture_fmt *output_isp_fmt = &stream->out_isp_fmt;
+	struct ispsd_out_fmt *input_isp_fmt = rkisp1_get_ispsd_out_fmt(dev);
+	u32 sp_in_fmt;
+
+	if (mbus_code_sp_in_fmt(input_isp_fmt->mbus_code, &sp_in_fmt)) {
+		v4l2_err(&dev->v4l2_dev, "Can't find the input format\n");
+		return -EINVAL;
+	}
+	mi_set_y_size(stream, stream->out_fmt.plane_fmt[0].bytesperline *
+		      stream->out_fmt.height);
+	mi_set_cb_size(stream, stream->out_fmt.plane_fmt[1].sizeimage);
+	mi_set_cr_size(stream, stream->out_fmt.plane_fmt[2].sizeimage);
+
+	sp_set_y_width(base, stream->out_fmt.width);
+	sp_set_y_height(base, stream->out_fmt.height);
+	sp_set_y_line_length(base, stream->u.sp.y_stride);
+
+	sp_frame_end_int_enable(base);
+	if (output_isp_fmt->uv_swap)
+		sp_set_uv_swap(base);
+
+	config_mi_ctrl(stream);
+	sp_mi_ctrl_set_format(base, stream->out_isp_fmt.write_format |
+			      sp_in_fmt | output_isp_fmt->output_format);
+
+	sp_mi_ctrl_autoupdate_en(base);
+
+	return 0;
+}
+
+static struct rkisp1_stream *get_other_stream(struct rkisp1_stream *stream)
+{
+	struct rkisp1_device *dev = stream->ispdev;
+
+	return &dev->stream[stream->id ^ 1];
+}
+
+static int mp_check_against(struct rkisp1_stream *stream)
+{
+	struct rkisp1_stream *sp = get_other_stream(stream);
+
+	if (sp->state == RKISP1_STATE_STREAMING)
+		return -EAGAIN;
+
+	return 0;
+}
+
+static int sp_check_against(struct rkisp1_stream *stream)
+{
+	struct rkisp1_stream *mp = get_other_stream(stream);
+	struct v4l2_device *v4l2_dev = &stream->ispdev->v4l2_dev;
+
+	if (mp->u.mp.raw_enable && mp->state == RKISP1_STATE_STREAMING) {
+		v4l2_err(v4l2_dev, "can't start SP path when MP RAW active\n");
+		return -EBUSY;
+	}
+
+	if (mp->state == RKISP1_STATE_STREAMING)
+		return -EAGAIN;
+
+	return 0;
+}
+
+static void mp_enable_mi(struct rkisp1_stream *stream)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+	struct capture_fmt *isp_fmt = &stream->out_isp_fmt;
+
+	mi_ctrl_mp_disable(base);
+	if (isp_fmt->fmt_type == FMT_BAYER)
+		mi_ctrl_mpraw_enable(base);
+	else if (isp_fmt->fmt_type == FMT_YUV)
+		mi_ctrl_mpyuv_enable(base);
+}
+
+static void sp_enable_mi(struct rkisp1_stream *stream)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	mi_ctrl_spyuv_enable(base);
+}
+
+static void mp_disable_mi(struct rkisp1_stream *stream)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	mi_ctrl_mp_disable(base);
+}
+
+static void sp_disable_mi(struct rkisp1_stream *stream)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	mi_ctrl_spyuv_disable(base);
+}
+
+static void update_mi(struct rkisp1_stream *stream)
+{
+	struct rkisp1_dummy_buffer *dummy_buf = &stream->dummy_buf;
+
+	if (stream->next_buf) {
+		mi_set_y_addr(stream,
+			stream->next_buf->buff_addr[RKISP1_PLANE_Y]);
+		mi_set_cb_addr(stream,
+			stream->next_buf->buff_addr[RKISP1_PLANE_CB]);
+		mi_set_cr_addr(stream,
+			stream->next_buf->buff_addr[RKISP1_PLANE_CR]);
+	} else {
+		/* Throw data to dummy space */
+		mi_set_y_addr(stream, dummy_buf->dma_addr);
+		mi_set_cb_addr(stream, dummy_buf->dma_addr);
+		mi_set_cr_addr(stream, dummy_buf->dma_addr);
+	}
+
+	mi_set_y_offset(stream, 0);
+	mi_set_cb_offset(stream, 0);
+	mi_set_cr_offset(stream, 0);
+}
+
+static void mp_stop_mi(struct rkisp1_stream *stream)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	if (stream->state != RKISP1_STATE_STREAMING)
+		return;
+	/*mp_frame_end_int_disable(base);*/
+	stream->ops->clr_frame_end_int(base);
+	stream->ops->disable_mi(stream);
+}
+
+static void sp_stop_mi(struct rkisp1_stream *stream)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	if (stream->state != RKISP1_STATE_STREAMING)
+		return;
+	/*sp_frame_end_int_disable(base);*/
+	stream->ops->clr_frame_end_int(base);
+	stream->ops->disable_mi(stream);
+}
+
+static struct streams_ops rkisp1_mp_streams_ops = {
+	.check_against = mp_check_against,
+	.config_mi = mp_config_mi,
+	.enable_mi = mp_enable_mi,
+	.disable_mi = mp_disable_mi,
+	.stop_mi = mp_stop_mi,
+	.set_data_path = mp_set_data_path,
+	.clr_frame_end_int = mp_clr_frame_end_int,
+	.is_frame_end_int_masked = mp_is_frame_end_int_masked,
+};
+
+static struct streams_ops rkisp1_sp_streams_ops = {
+	.check_against = sp_check_against,
+	.config_mi = sp_config_mi,
+	.enable_mi = sp_enable_mi,
+	.disable_mi = sp_disable_mi,
+	.stop_mi = sp_stop_mi,
+	.set_data_path = sp_set_data_path,
+	.clr_frame_end_int = sp_clr_frame_end_int,
+	.is_frame_end_int_masked = sp_is_frame_end_int_masked,
+};
+
+static void rkisp1_stream_stop(struct rkisp1_stream *stream)
+{
+	struct rkisp1_device *dev = stream->ispdev;
+	struct v4l2_device *v4l2_dev = &dev->v4l2_dev;
+	int ret = 0;
+
+	stream->stop = true;
+	ret = wait_event_timeout(stream->done,
+				 stream->state != RKISP1_STATE_STREAMING,
+				 msecs_to_jiffies(1000));
+	if (!ret) {
+		v4l2_warn(v4l2_dev, "waiting on event return error %d\n", ret);
+		stream->ops->stop_mi(stream);
+		stream->stop = false;
+		stream->state = RKISP1_STATE_READY;
+	}
+	disable_dcrop(stream, true);
+	disable_rsz(stream, true);
+}
+
+static int mi_frame_end(struct rkisp1_stream *stream)
+{
+	struct rkisp1_isp_subdev *isp_sd = &stream->ispdev->isp_sdev;
+	struct capture_fmt *isp_fmt = &stream->out_isp_fmt;
+	unsigned long lock_flags = 0;
+	int i = 0;
+
+	if (stream->curr_buf) {
+		/* Dequeue a filled buffer */
+		for (i = 0; i < isp_fmt->mplanes; i++) {
+			u32 payload_size =
+				stream->out_fmt.plane_fmt[i].sizeimage;
+			vb2_set_plane_payload(
+				&stream->curr_buf->vb.vb2_buf, i,
+				payload_size);
+		}
+		stream->curr_buf->vb.sequence =
+				atomic_read(&isp_sd->frm_sync_seq) - 1;
+		stream->curr_buf->vb.vb2_buf.timestamp = ktime_get_ns();
+		vb2_buffer_done(&stream->curr_buf->vb.vb2_buf,
+				VB2_BUF_STATE_DONE);
+	}
+
+	/* Next frame is writing to it */
+	stream->curr_buf = stream->next_buf;
+	stream->next_buf = NULL;
+
+	/* Set up an empty buffer for the next-next frame */
+	spin_lock_irqsave(&stream->vbq_lock, lock_flags);
+	if (!list_empty(&stream->buf_queue)) {
+		stream->next_buf = list_first_entry(&stream->buf_queue,
+					struct rkisp1_buffer, queue);
+		list_del(&stream->next_buf->queue);
+	}
+
+	spin_unlock_irqrestore(&stream->vbq_lock, lock_flags);
+
+	update_mi(stream);
+
+	return 0;
+}
+
+/*
+ * Videobuf2 operations.
+ */
+static int rkisp1_start(struct rkisp1_stream *stream)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+	int ret;
+
+	stream->ops->set_data_path(base);
+	ret = stream->ops->config_mi(stream);
+	if (ret)
+		return ret;
+
+	/* Set up an buffer for the next frame */
+	mi_frame_end(stream);
+	/* Update shadow register */
+	force_cfg_update(base);
+	/* Set up an buffer for the next-next frame */
+	mi_frame_end(stream);
+
+	stream->ops->enable_mi(stream);
+	stream->state = RKISP1_STATE_STREAMING;
+
+	return 0;
+}
+
+static int rkisp1_restart(struct rkisp1_stream *stream)
+{
+	struct rkisp1_device *dev = stream->ispdev;
+	int ret;
+
+	rkisp1_stream_stop(stream);
+
+	ret = dev->pipe.set_stream(&dev->pipe, false);
+	if (ret < 0)
+		return ret;
+
+	ret = rkisp1_start(stream);
+	if (ret < 0)
+		return ret;
+
+	return 0;
+}
+
+static int rkisp1_queue_setup(struct vb2_queue *queue,
+			      unsigned int *num_buffers,
+			      unsigned int *num_planes,
+			      unsigned int sizes[],
+			      struct device *alloc_devs[])
+{
+	struct rkisp1_stream *stream = queue->drv_priv;
+	struct rkisp1_device *isp_dev = stream->ispdev;
+	const struct v4l2_pix_format_mplane *pixm = &stream->out_fmt;
+	const struct capture_fmt *isp_fmt = &stream->out_isp_fmt;
+	u32 i;
+
+	*num_buffers = clamp_t(u32, *num_buffers, CIF_ISP_REQ_BUFS_MIN,
+			       CIF_ISP_REQ_BUFS_MAX);
+	*num_planes = isp_fmt->mplanes;
+
+	for (i = 0; i < isp_fmt->mplanes; i++) {
+		const struct v4l2_plane_pix_format *plane_fmt;
+
+		plane_fmt = &pixm->plane_fmt[i];
+
+		sizes[i] = plane_fmt->sizeimage;
+		alloc_devs[i] = isp_dev->dev;
+	}
+
+	v4l2_dbg(1, rkisp1_debug, &isp_dev->v4l2_dev, "%s count %d, size %d\n",
+		 v4l2_type_names[queue->type], *num_buffers, sizes[0]);
+
+	return 0;
+}
+
+static void rkisp1_buf_queue(struct vb2_buffer *vb)
+{
+	struct vb2_v4l2_buffer *vbuf = to_vb2_v4l2_buffer(vb);
+	struct rkisp1_buffer *ispbuf = to_rkisp1_buffer(vbuf);
+	struct vb2_queue *queue = vb->vb2_queue;
+	struct rkisp1_stream *stream = queue->drv_priv;
+	unsigned long lock_flags = 0;
+	struct v4l2_pix_format_mplane *pixm = &stream->out_fmt;
+	struct capture_fmt *isp_fmt = &stream->out_isp_fmt;
+	int i;
+
+	memset(ispbuf->buff_addr, 0, sizeof(ispbuf->buff_addr));
+	for (i = 0; i < isp_fmt->mplanes; i++)
+		ispbuf->buff_addr[i] = vb2_dma_contig_plane_dma_addr(vb, i);
+
+	if (isp_fmt->mplanes == 1) {
+		for (i = 0; i < isp_fmt->cplanes - 1; i++) {
+			ispbuf->buff_addr[i + 1] =
+				ispbuf->buff_addr[i] +
+				pixm->plane_fmt[i].bytesperline *
+				pixm->height;
+		}
+	}
+
+	spin_lock_irqsave(&stream->vbq_lock, lock_flags);
+	list_add_tail(&ispbuf->queue, &stream->buf_queue);
+	spin_unlock_irqrestore(&stream->vbq_lock, lock_flags);
+}
+
+static int rkisp1_create_dummy_buf(struct rkisp1_stream *stream)
+{
+	struct rkisp1_dummy_buffer *dummy_buf = &stream->dummy_buf;
+	struct rkisp1_device *dev = stream->ispdev;
+
+	/* get a minimum size */
+	dummy_buf->size = max3(stream->out_fmt.plane_fmt[0].bytesperline *
+		stream->out_fmt.height,
+		stream->out_fmt.plane_fmt[1].sizeimage,
+		stream->out_fmt.plane_fmt[2].sizeimage);
+
+	dummy_buf->vaddr = dma_alloc_coherent(dev->dev, dummy_buf->size,
+					      &dummy_buf->dma_addr,
+					      GFP_KERNEL);
+	if (!dummy_buf->vaddr) {
+		v4l2_err(&dev->v4l2_dev,
+			 "Failed to allocate the memory for dummy buffer\n");
+		return -ENOMEM;
+	}
+
+	return 0;
+}
+
+static void rkisp1_destory_dummy_buf(struct rkisp1_stream *stream)
+{
+	struct rkisp1_dummy_buffer *dummy_buf = &stream->dummy_buf;
+	struct rkisp1_device *dev = stream->ispdev;
+
+	dma_free_coherent(dev->dev, dummy_buf->size,
+			  dummy_buf->vaddr, dummy_buf->dma_addr);
+}
+
+static void rkisp1_stop_streaming(struct vb2_queue *queue)
+{
+	struct rkisp1_stream *stream = queue->drv_priv;
+	struct rkisp1_vdev_node *node = &stream->vnode;
+	struct rkisp1_device *dev = stream->ispdev;
+	struct v4l2_device *v4l2_dev = &dev->v4l2_dev;
+	struct rkisp1_buffer *buf;
+	unsigned long lock_flags = 0;
+	int ret;
+	LIST_HEAD(queued_buffers);
+
+	rkisp1_stream_stop(stream);
+	ret = dev->pipe.set_stream(&dev->pipe, false);
+	if (ret < 0)
+		return;
+
+	stream->state = RKISP1_STATE_READY;
+
+	spin_lock_irqsave(&stream->vbq_lock, lock_flags);
+	if (stream->curr_buf) {
+		list_add_tail(&stream->curr_buf->queue, &stream->buf_queue);
+		stream->curr_buf = NULL;
+	}
+	if (stream->next_buf) {
+		list_add_tail(&stream->next_buf->queue, &stream->buf_queue);
+		stream->next_buf = NULL;
+	}
+	while (!list_empty(&stream->buf_queue)) {
+		buf = list_first_entry(&stream->buf_queue,
+				       struct rkisp1_buffer, queue);
+		list_del(&buf->queue);
+		vb2_buffer_done(&buf->vb.vb2_buf, VB2_BUF_STATE_ERROR);
+	}
+	spin_unlock_irqrestore(&stream->vbq_lock, lock_flags);
+
+	ret = dev->pipe.close(&dev->pipe);
+	if (ret < 0) {
+		v4l2_err(v4l2_dev, "pipeline close failed error:%d\n", ret);
+		return;
+	}
+
+	media_pipeline_stop(&node->vdev.entity);
+
+	rkisp1_destory_dummy_buf(stream);
+}
+
+static int
+rkisp1_start_streaming(struct vb2_queue *queue, unsigned int count)
+{
+	struct rkisp1_stream *stream = queue->drv_priv;
+	struct rkisp1_vdev_node *node = &stream->vnode;
+	struct rkisp1_device *dev = stream->ispdev;
+	struct v4l2_device *v4l2_dev = &dev->v4l2_dev;
+	int ret;
+
+	ret = rkisp1_create_dummy_buf(stream);
+	if (ret < 0)
+		return ret;
+
+	ret = media_pipeline_start(&node->vdev.entity, &dev->pipe.pipe);
+	if (ret < 0) {
+		v4l2_err(&dev->v4l2_dev, "start pipeline failed %d\n", ret);
+		goto err;
+	}
+
+	ret = dev->pipe.open(&dev->pipe, &node->vdev.entity, true);
+	if (ret < 0) {
+		v4l2_err(v4l2_dev, "open cif pipeline failed %d\n", ret);
+		goto err;
+	}
+
+	if (stream->state != RKISP1_STATE_READY) {
+		v4l2_err(v4l2_dev, "stream not enabled\n");
+		ret = -EBUSY;
+		goto err;
+	}
+
+	ret = stream->ops->check_against(stream);
+	if (ret == -EAGAIN) {
+		struct rkisp1_stream *other;
+
+		other = get_other_stream(stream);
+		if (other)
+			rkisp1_restart(other);
+	} else if (ret == -EBUSY) {
+		goto err;
+	}
+
+	ret = rkisp1_start(stream);
+	if (ret < 0)
+		goto err;
+
+	ret = rkisp1_config_rsz(stream, false);
+	if (ret < 0) {
+		v4l2_err(v4l2_dev, "failed with error %d\n", ret);
+		goto err;
+	}
+
+	ret = rkisp1_config_dcrop(stream, false);
+	if (ret < 0) {
+		v4l2_err(v4l2_dev, "failed with error %d\n", ret);
+		goto err;
+	}
+
+	/* pipeline stream on */
+	ret = dev->pipe.set_stream(&dev->pipe, true);
+	if (ret < 0)
+		goto err;
+	return 0;
+
+err:
+	rkisp1_destory_dummy_buf(stream);
+
+	return ret;
+}
+
+static struct vb2_ops rkisp1_vb2_ops = {
+	.queue_setup = rkisp1_queue_setup,
+	.buf_queue = rkisp1_buf_queue,
+	.wait_prepare = vb2_ops_wait_prepare,
+	.wait_finish = vb2_ops_wait_finish,
+	.stop_streaming = rkisp1_stop_streaming,
+	.start_streaming = rkisp1_start_streaming,
+};
+
+static int rkisp_init_vb2_queue(struct vb2_queue *q,
+				struct rkisp1_stream *stream,
+				enum v4l2_buf_type buf_type)
+{
+	struct rkisp1_vdev_node *node;
+
+	node = queue_to_node(q);
+
+	q->type = buf_type;
+	q->io_modes = VB2_MMAP | VB2_USERPTR | VB2_DMABUF;
+	q->drv_priv = stream;
+	q->ops = &rkisp1_vb2_ops;
+	q->mem_ops = &vb2_dma_contig_memops;
+	q->buf_struct_size = sizeof(struct rkisp1_buffer);
+	q->min_buffers_needed = CIF_ISP_REQ_BUFS_MIN;
+	q->timestamp_flags = V4L2_BUF_FLAG_TIMESTAMP_MONOTONIC;
+	q->lock = &node->vlock;
+
+	return vb2_queue_init(q);
+}
+
+static void rkisp1_set_fmt(struct rkisp1_stream *stream,
+			   struct v4l2_pix_format_mplane *pixm,
+			   bool try)
+{
+	const struct capture_fmt *fmt;
+	unsigned int imagsize = 0;
+	unsigned int planes;
+	u32 xsubs = 1, ysubs = 1;
+	int i;
+
+	fmt = find_fmt(stream, pixm->pixelformat);
+	if (!fmt)
+		fmt = stream->config->fmts;
+
+	/* do checks on resolution */
+	pixm->width = clamp_t(u32, pixm->width,
+			      stream->config->min_rsz_width,
+			      stream->config->max_rsz_width);
+	pixm->height = clamp_t(u32, pixm->height,
+			      stream->config->min_rsz_height,
+			      stream->config->max_rsz_height);
+	pixm->num_planes = fmt->mplanes;
+	pixm->colorspace = rkisp1_get_colorspace(fmt->fmt_type);
+	pixm->field = V4L2_FIELD_NONE;
+	/* TODO: quantization */
+	pixm->quantization = 0;
+
+	fcc_xysubs(fmt->fourcc, &xsubs, &ysubs);
+	planes = fmt->cplanes ? fmt->cplanes : fmt->mplanes;
+	for (i = 0; i < planes; i++) {
+		struct v4l2_plane_pix_format *plane_fmt;
+		int width, height, bytesperline;
+
+		plane_fmt = pixm->plane_fmt + i;
+
+		if (i == 0) {
+			width = pixm->width;
+			height = pixm->height;
+		} else {
+			width = pixm->width / xsubs;
+			height = pixm->height / ysubs;
+		}
+
+		bytesperline = width * DIV_ROUND_UP(fmt->bpp[i], 8);
+		/* stride is only available for sp stream and y plane */
+		if (stream->id != RKISP1_STREAM_SP || i != 0 ||
+		    plane_fmt->bytesperline < bytesperline)
+			plane_fmt->bytesperline = bytesperline;
+
+		plane_fmt->sizeimage = plane_fmt->bytesperline * height;
+
+		imagsize += plane_fmt->sizeimage;
+	}
+
+	/* convert to non-MPLANE format */
+	if (fmt->mplanes == 1)
+		pixm->plane_fmt[0].sizeimage = imagsize;
+
+	if (!try) {
+		stream->out_isp_fmt = *fmt;
+		stream->out_fmt = *pixm;
+
+		if (stream->id == RKISP1_STREAM_SP) {
+			stream->u.sp.y_stride =
+				pixm->plane_fmt[0].bytesperline /
+				DIV_ROUND_UP(fmt->bpp[0], 8);
+		} else {
+			stream->u.mp.raw_enable = (fmt->fmt_type == FMT_BAYER);
+		}
+	}
+}
+
+/************************* v4l2_file_operations***************************/
+void rkisp1_stream_init(struct rkisp1_device *dev, u32 id)
+{
+	struct rkisp1_stream *stream = &dev->stream[id];
+	struct v4l2_pix_format_mplane pixm;
+
+	memset(stream, 0, sizeof(*stream));
+	stream->id = id;
+	stream->ispdev = dev;
+
+	INIT_LIST_HEAD(&stream->buf_queue);
+	init_waitqueue_head(&stream->done);
+	spin_lock_init(&stream->vbq_lock);
+	if (stream->id == RKISP1_STREAM_SP) {
+		stream->ops = &rkisp1_sp_streams_ops;
+		stream->config = &rkisp1_sp_stream_config;
+	} else {
+		stream->ops = &rkisp1_mp_streams_ops;
+		stream->config = &rkisp1_mp_stream_config;
+	}
+
+	stream->state = RKISP1_STATE_READY;
+
+	memset(&pixm, 0, sizeof(pixm));
+	pixm.pixelformat = V4L2_PIX_FMT_YUYV;
+	pixm.width = RKISP1_DEFAULT_WIDTH;
+	pixm.height = RKISP1_DEFAULT_HEIGHT;
+	rkisp1_set_fmt(stream, &pixm, false);
+
+	stream->dcrop.left = 0;
+	stream->dcrop.top = 0;
+	stream->dcrop.width = RKISP1_DEFAULT_WIDTH;
+	stream->dcrop.height = RKISP1_DEFAULT_HEIGHT;
+}
+
+static const struct v4l2_file_operations rkisp1_fops = {
+	.open = v4l2_fh_open,
+	.release = vb2_fop_release,
+	.unlocked_ioctl = video_ioctl2,
+	.poll = vb2_fop_poll,
+	.mmap = vb2_fop_mmap,
+};
+
+/*
+ * mp and sp v4l2_ioctl_ops
+ */
+
+/* keep for compatibility */
+static int rkisp1_enum_input(struct file *file, void *priv,
+			     struct v4l2_input *input)
+{
+	if (input->index > 0)
+		return -EINVAL;
+
+	return 0;
+}
+
+static int rkisp1_try_fmt_vid_cap_mplane(struct file *file, void *fh,
+					 struct v4l2_format *f)
+{
+	struct rkisp1_stream *stream = video_drvdata(file);
+
+	rkisp1_set_fmt(stream, &f->fmt.pix_mp, true);
+
+	return 0;
+}
+
+static int rkisp1_enum_fmt_vid_cap_mplane(struct file *file, void *priv,
+					  struct v4l2_fmtdesc *f)
+{
+	struct rkisp1_stream *stream = video_drvdata(file);
+	const struct capture_fmt *fmt = NULL;
+
+	if (f->index >= stream->config->fmt_size)
+		return -EINVAL;
+
+	fmt = &stream->config->fmts[f->index];
+	f->pixelformat = fmt->fourcc;
+
+	return 0;
+}
+
+static int rkisp1_s_fmt_vid_cap_mplane(struct file *file,
+				       void *priv, struct v4l2_format *f)
+{
+	struct rkisp1_stream *stream = video_drvdata(file);
+	struct video_device *vdev = &stream->vnode.vdev;
+	struct rkisp1_vdev_node *node = vdev_to_node(vdev);
+	struct rkisp1_device *dev = stream->ispdev;
+
+	if (vb2_is_busy(&node->buf_queue)) {
+		v4l2_err(&dev->v4l2_dev, "%s queue busy\n", __func__);
+		return -EBUSY;
+	}
+
+	rkisp1_set_fmt(stream, &f->fmt.pix_mp, false);
+
+	return 0;
+}
+
+static int rkisp1_g_fmt_vid_cap_mplane(struct file *file, void *fh,
+				       struct v4l2_format *f)
+{
+	struct rkisp1_stream *stream = video_drvdata(file);
+
+	f->fmt.pix_mp = stream->out_fmt;
+
+	return 0;
+}
+
+static int rkisp1_g_selection(struct file *file, void *prv,
+			      struct v4l2_selection *sel)
+{
+	struct rkisp1_stream *stream = video_drvdata(file);
+	struct rkisp1_device *dev = stream->ispdev;
+	struct v4l2_rect *dcrop = &stream->dcrop;
+	struct v4l2_rect *input_win;
+
+	input_win = rkisp1_get_isp_sd_win(dev);
+
+	switch (sel->target) {
+	case V4L2_SEL_TGT_CROP_BOUNDS:
+		sel->r.width = input_win->width;
+		sel->r.height = input_win->height;
+		sel->r.left = 0;
+		sel->r.top = 0;
+		break;
+	case V4L2_SEL_TGT_CROP:
+		sel->r = *dcrop;
+		break;
+	case V4L2_SEL_TGT_COMPOSE_BOUNDS:
+		sel->r.width = stream->out_fmt.width;
+		sel->r.height = stream->out_fmt.height;
+		sel->r.left = 0;
+		sel->r.top = 0;
+		break;
+	case V4L2_SEL_TGT_COMPOSE:
+		/* The composing rectangles always have the same size */
+		sel->r.width = stream->out_fmt.width;
+		sel->r.height = stream->out_fmt.height;
+		sel->r.left = 0;
+		sel->r.top = 0;
+		break;
+	default:
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int rkisp1_s_selection(struct file *file, void *prv,
+			      struct v4l2_selection *sel)
+{
+	struct rkisp1_stream *stream = video_drvdata(file);
+	struct rkisp1_device *dev = stream->ispdev;
+	struct v4l2_rect *dcrop = &stream->dcrop;
+	struct v4l2_rect *input_win;
+
+	input_win = rkisp1_get_isp_sd_win(dev);
+
+	if (sel->target != V4L2_SEL_TGT_CROP  &&
+	    sel->target != V4L2_SEL_TGT_COMPOSE)
+		return -EINVAL;
+
+	if (sel->flags != 0)
+		return -EINVAL;
+
+	if (sel->target == V4L2_SEL_TGT_CROP) {
+		sel->r.left = ALIGN(sel->r.left, 2);
+		sel->r.width = ALIGN(sel->r.width, 2);
+
+		sel->r.left =
+		    clamp_t(u32, sel->r.left, 0,
+			    input_win->width - STREAM_MIN_MP_SP_INPUT_WIDTH);
+		sel->r.top =
+		    clamp_t(u32, sel->r.top, 0,
+			    input_win->height - STREAM_MIN_MP_SP_INPUT_HEIGHT);
+		sel->r.width =
+		    clamp_t(u32, sel->r.width,
+			    STREAM_MIN_MP_SP_INPUT_WIDTH,
+			    input_win->width - sel->r.left);
+		sel->r.height =
+		    clamp_t(u32, sel->r.height,
+			    STREAM_MIN_MP_SP_INPUT_HEIGHT,
+			    input_win->height - sel->r.top);
+
+		/* check whether input fmt is raw */
+		if (stream->id == RKISP1_STREAM_MP &&
+		    stream->out_isp_fmt.fmt_type == FMT_BAYER) {
+			sel->r.left = 0;
+			sel->r.top = 0;
+			sel->r.width = input_win->width;
+			sel->r.height = input_win->height;
+		}
+
+		*dcrop = sel->r;
+	} else if (sel->target == V4L2_SEL_TGT_COMPOSE) {
+		/* CamHal compatibility */
+		sel->r.left = 0;
+		sel->r.top = 0;
+		sel->r.width = stream->out_fmt.width;
+		sel->r.height = stream->out_fmt.height;
+	}
+
+	return 0;
+}
+
+static int rkisp1_querycap(struct file *file, void *priv,
+			   struct v4l2_capability *cap)
+{
+	struct rkisp1_stream *stream = video_drvdata(file);
+	struct device *dev = stream->ispdev->dev;
+
+	strlcpy(cap->driver, dev->driver->name, sizeof(cap->driver));
+	strlcpy(cap->card, dev->driver->name, sizeof(cap->card));
+	snprintf(cap->bus_info, sizeof(cap->bus_info),
+		 "platform:%s", dev_name(dev));
+
+	return 0;
+}
+
+static const struct v4l2_ioctl_ops rkisp1_v4l2_ioctl_ops = {
+	.vidioc_reqbufs = vb2_ioctl_reqbufs,
+	.vidioc_querybuf = vb2_ioctl_querybuf,
+	.vidioc_create_bufs = vb2_ioctl_create_bufs,
+	.vidioc_qbuf = vb2_ioctl_qbuf,
+	.vidioc_expbuf = vb2_ioctl_expbuf,
+	.vidioc_dqbuf = vb2_ioctl_dqbuf,
+	.vidioc_streamon = vb2_ioctl_streamon,
+	.vidioc_streamoff = vb2_ioctl_streamoff,
+	.vidioc_enum_input = rkisp1_enum_input,
+	.vidioc_try_fmt_vid_cap_mplane = rkisp1_try_fmt_vid_cap_mplane,
+	.vidioc_enum_fmt_vid_cap_mplane = rkisp1_enum_fmt_vid_cap_mplane,
+	.vidioc_s_fmt_vid_cap_mplane = rkisp1_s_fmt_vid_cap_mplane,
+	.vidioc_g_fmt_vid_cap_mplane = rkisp1_g_fmt_vid_cap_mplane,
+	.vidioc_s_selection = rkisp1_s_selection,
+	.vidioc_g_selection = rkisp1_g_selection,
+	.vidioc_querycap = rkisp1_querycap,
+};
+
+static void rkisp1_unregister_stream_vdev(struct rkisp1_stream *stream)
+{
+	media_entity_cleanup(&stream->vnode.vdev.entity);
+	video_unregister_device(&stream->vnode.vdev);
+}
+
+void rkisp1_unregister_stream_vdevs(struct rkisp1_device *dev)
+{
+	struct rkisp1_stream *mp_stream = &dev->stream[RKISP1_STREAM_MP];
+	struct rkisp1_stream *sp_stream = &dev->stream[RKISP1_STREAM_SP];
+
+	rkisp1_unregister_stream_vdev(mp_stream);
+	rkisp1_unregister_stream_vdev(sp_stream);
+}
+
+static int rkisp1_register_stream_vdev(struct rkisp1_stream *stream)
+{
+	struct rkisp1_device *dev = stream->ispdev;
+	struct v4l2_device *v4l2_dev = &dev->v4l2_dev;
+	struct video_device *vdev = &stream->vnode.vdev;
+	struct rkisp1_vdev_node *node;
+	int ret;
+
+	strlcpy(vdev->name,
+		stream->id == RKISP1_STREAM_SP ? SP_VDEV_NAME : MP_VDEV_NAME,
+		sizeof(vdev->name));
+	node = vdev_to_node(vdev);
+	mutex_init(&node->vlock);
+
+	vdev->ioctl_ops = &rkisp1_v4l2_ioctl_ops;
+	vdev->release = video_device_release_empty;
+	vdev->fops = &rkisp1_fops;
+	vdev->minor = -1;
+	vdev->v4l2_dev = v4l2_dev;
+	vdev->lock = &node->vlock;
+	vdev->device_caps = V4L2_CAP_VIDEO_CAPTURE_MPLANE |
+				V4L2_CAP_STREAMING;
+	video_set_drvdata(vdev, stream);
+	vdev->vfl_dir = VFL_DIR_RX;
+	node->pad.flags = MEDIA_PAD_FL_SINK;
+
+	rkisp_init_vb2_queue(&node->buf_queue, stream,
+			     V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE);
+	vdev->queue = &node->buf_queue;
+
+	ret = video_register_device(vdev, VFL_TYPE_GRABBER, -1);
+	if (ret < 0) {
+		v4l2_err(v4l2_dev,
+			 "video_register_device failed with error %d\n", ret);
+		return ret;
+	}
+
+	vdev->entity.function = MEDIA_ENT_F_IO_V4L;
+	ret = media_entity_pads_init(&vdev->entity, 1, &node->pad);
+	if (ret < 0)
+		goto unreg;
+
+	return 0;
+unreg:
+	video_unregister_device(vdev);
+	return ret;
+}
+
+int rkisp1_register_stream_vdevs(struct rkisp1_device *dev)
+{
+	struct rkisp1_stream *stream;
+	int i, j, ret;
+
+	for (i = 0; i < RKISP1_MAX_STREAM; i++) {
+		stream = &dev->stream[i];
+		stream->ispdev = dev;
+		ret = rkisp1_register_stream_vdev(stream);
+		if (ret < 0)
+			goto err;
+	}
+
+	return 0;
+err:
+	for (j = 0; j < i; j++) {
+		stream = &dev->stream[j];
+		rkisp1_unregister_stream_vdev(stream);
+	}
+
+	return ret;
+}
+
+void rkisp1_mi_isr(struct rkisp1_stream *stream)
+{
+	struct rkisp1_device *dev = stream->ispdev;
+	void __iomem *base = stream->ispdev->base_addr;
+	u32 val;
+
+	stream->ops->clr_frame_end_int(base);
+	val = stream->ops->is_frame_end_int_masked(base);
+	if (val) {
+		val = mi_get_masked_int_status(base);
+		v4l2_err(&dev->v4l2_dev, "icr err: 0x%x\n", val);
+	}
+
+	mi_frame_end(stream);
+
+	if (stream->stop) {
+		stream->ops->stop_mi(stream);
+		stream->stop = false;
+		stream->state = RKISP1_STATE_READY;
+		v4l2_dbg(1, rkisp1_debug, &dev->v4l2_dev,
+			 "stream %d stopped\n", stream->id);
+		wake_up(&stream->done);
+	}
+}
diff --git a/drivers/media/platform/rockchip/isp1/capture.h b/drivers/media/platform/rockchip/isp1/capture.h
new file mode 100644
index 000000000000..e30d49deb214
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/capture.h
@@ -0,0 +1,46 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#ifndef _RKISP1_PATH_VIDEO_H
+#define _RKISP1_PATH_VIDEO_H
+
+struct rkisp1_device;
+struct rkisp1_stream;
+
+void rkisp1_unregister_stream_vdevs(struct rkisp1_device *dev);
+int rkisp1_register_stream_vdevs(struct rkisp1_device *dev);
+void rkisp1_mi_isr(struct rkisp1_stream *stream);
+void rkisp1_stream_init(struct rkisp1_device *dev, u32 id);
+
+#endif /* _RKISP1_PATH_VIDEO_H */
diff --git a/drivers/media/platform/rockchip/isp1/common.h b/drivers/media/platform/rockchip/isp1/common.h
new file mode 100644
index 000000000000..5c5b8c3814ea
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/common.h
@@ -0,0 +1,330 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#ifndef _RKISP1_COMMON_H
+#define _RKISP1_COMMON_H
+
+#include <media/media-device.h>
+#include <media/media-entity.h>
+#include <media/v4l2-ctrls.h>
+#include <media/v4l2-device.h>
+#include <media/videobuf2-v4l2.h>
+
+#define DRIVER_NAME "rkisp1"
+#define ISP_VDEV_NAME DRIVER_NAME  "_ispdev"
+#define SP_VDEV_NAME DRIVER_NAME   "_selfpath"
+#define MP_VDEV_NAME DRIVER_NAME   "_mainpath"
+#define DMA_VDEV_NAME DRIVER_NAME  "_dmapath"
+
+#define GRP_ID_SENSOR			BIT(0)
+#define GRP_ID_MIPIPHY			BIT(1)
+#define GRP_ID_ISP			BIT(2)
+#define GRP_ID_ISP_MP			BIT(3)
+#define GRP_ID_ISP_SP			BIT(4)
+
+#define RKISP1_DEFAULT_WIDTH		800
+#define RKISP1_DEFAULT_HEIGHT		600
+
+#define RKISP1_MAX_STREAM		2
+#define RKISP1_STREAM_SP		0
+#define RKISP1_STREAM_MP		1
+
+#define RKISP1_PLANE_Y			0
+#define RKISP1_PLANE_CB			1
+#define RKISP1_PLANE_CR			2
+
+#define RKISP1_PIPELINE_MAX		4
+
+enum rkisp1_sd_type {
+	RKISP1_SD_SENSOR,
+	RKISP1_SD_PHY_CSI,
+	RKISP1_SD_VCM,
+	RKISP1_SD_FLASH,
+	RKISP1_SD_MAX,
+};
+
+struct rkisp1_pipeline;
+
+/*
+ * struct rkisp1_pipeline - An ISP hardware pipeline
+ * @entities: Bitmask of entities in the pipeline (indexed by entity ID)
+ */
+struct rkisp1_pipeline {
+	struct media_pipeline pipe;
+	int num_subdevs;
+	struct v4l2_subdev *subdevs[RKISP1_PIPELINE_MAX];
+	int (*open)(struct rkisp1_pipeline *p,
+		    struct media_entity *me, bool prepare);
+	int (*close)(struct rkisp1_pipeline *p);
+	int (*set_stream)(struct rkisp1_pipeline *p, bool on);
+};
+
+/* One structure per video node */
+struct rkisp1_vdev_node {
+	struct vb2_queue buf_queue;
+	/* vfd lock */
+	struct mutex vlock;
+	struct video_device vdev;
+	struct media_pad pad;
+};
+
+enum rkisp1_fmt_pix_type {
+	FMT_YUV,
+	FMT_RGB,
+	FMT_BAYER,
+	FMT_JPEG,
+	FMT_MAX
+};
+
+enum rkisp1_fmt_raw_pat_type {
+	RAW_RGGB = 0,
+	RAW_GRBG,
+	RAW_GBRG,
+	RAW_BGGR,
+};
+
+struct ispsd_in_fmt {
+	u32 mbus_code;
+	u8 fmt_type;
+	u32 mipi_dt;
+	u32 yuv_seq;
+	enum rkisp1_fmt_raw_pat_type bayer_pat;
+	u8 bus_width;
+};
+
+struct ispsd_out_fmt {
+	u32 mbus_code;
+	u8 fmt_type;
+};
+
+/*
+ * @fourcc: pixel format
+ * @mbus_code: pixel format over bus
+ * @fmt_type: helper filed for pixel format
+ * @bpp: bits per pixel
+ * @bayer_pat: bayer patten type
+ * @cplanes: number of colour planes
+ * @mplanes: number of stored memory planes
+ * @uv_swap: if cb cr swaped, for yuv
+ * @write_format: defines how YCbCr self picture data is written to memory
+ * @input_format: defines sp input format
+ * @output_format: defines sp output format
+ */
+struct capture_fmt {
+	u32 fourcc;
+	u32 mbus_code;
+	u8 fmt_type;
+	u8 cplanes;
+	u8 mplanes;
+	u8 uv_swap;
+	u32 write_format;
+	u32 output_format;
+	u8 bpp[VIDEO_MAX_PLANES];
+};
+
+enum rkisp1_state {
+	/* path not yet opened: */
+	RKISP1_STATE_DISABLED,
+	/* path opened and configured, ready for streaming: */
+	RKISP1_STATE_READY,
+	/* path is streaming: */
+	RKISP1_STATE_STREAMING
+};
+
+struct rkisp1_buffer {
+	struct vb2_v4l2_buffer vb;
+	struct list_head queue;
+	union {
+		u32 buff_addr[VIDEO_MAX_PLANES];
+		void *vaddr[VIDEO_MAX_PLANES];
+	};
+};
+
+struct rkisp1_dummy_buffer {
+	void *vaddr;
+	dma_addr_t dma_addr;
+	u32 size;
+};
+
+enum rkisp1_sp_inp {
+	RKISP1_SP_INP_ISP,
+	RKISP1_SP_INP_DMA_SP,
+	RKISP1_SP_INP_MAX
+};
+
+struct rkisp1_device;
+struct rkisp1_stream;
+
+struct rkisp1_stream_sp {
+	int y_stride;
+	enum rkisp1_sp_inp input_sel;
+};
+
+struct rkisp1_stream_mp {
+	bool raw_enable;
+};
+
+struct stream_config {
+	const struct capture_fmt *fmts;
+	int fmt_size;
+	/* constrains */
+	const int max_rsz_width;
+	const int max_rsz_height;
+	const int min_rsz_width;
+	const int min_rsz_height;
+	/* registers */
+	struct {
+		u32 ctrl;
+		u32 ctrl_shd;
+		u32 scale_hy;
+		u32 scale_hcr;
+		u32 scale_hcb;
+		u32 scale_vy;
+		u32 scale_vc;
+		u32 scale_lut;
+		u32 scale_lut_addr;
+		u32 scale_hy_shd;
+		u32 scale_hcr_shd;
+		u32 scale_hcb_shd;
+		u32 scale_vy_shd;
+		u32 scale_vc_shd;
+		u32 phase_hy;
+		u32 phase_hc;
+		u32 phase_vy;
+		u32 phase_vc;
+		u32 phase_hy_shd;
+		u32 phase_hc_shd;
+		u32 phase_vy_shd;
+		u32 phase_vc_shd;
+	} rsz;
+	struct {
+		u32 ctrl;
+		u32 yuvmode_mask;
+		u32 rawmode_mask;
+		u32 h_offset;
+		u32 v_offset;
+		u32 h_size;
+		u32 v_size;
+	} dual_crop;
+	struct {
+		u32 y_size_init;
+		u32 cb_size_init;
+		u32 cr_size_init;
+		u32 y_base_ad_init;
+		u32 cb_base_ad_init;
+		u32 cr_base_ad_init;
+		u32 y_offs_cnt_init;
+		u32 cb_offs_cnt_init;
+		u32 cr_offs_cnt_init;
+	} mi;
+};
+
+struct streams_ops {
+	int (*check_against)(struct rkisp1_stream *stream);
+	int (*config_mi)(struct rkisp1_stream *stream);
+	void (*stop_mi)(struct rkisp1_stream *stream);
+	void (*enable_mi)(struct rkisp1_stream *stream);
+	void (*disable_mi)(struct rkisp1_stream *stream);
+	void (*set_data_path)(void __iomem *base);
+	void (*clr_frame_end_int)(void __iomem *base);
+	u32 (*is_frame_end_int_masked)(void __iomem *base);
+};
+
+struct rkisp1_stream {
+	u32 id;
+	struct rkisp1_device *ispdev;
+	struct rkisp1_vdev_node vnode;
+	enum rkisp1_state state;
+	enum rkisp1_state saved_state;
+	struct capture_fmt out_isp_fmt;
+	struct v4l2_pix_format_mplane out_fmt;
+	struct v4l2_rect dcrop;
+	struct streams_ops *ops;
+	struct stream_config *config;
+	/* spinlock for videobuf queues */
+	spinlock_t vbq_lock;
+	/* mi config */
+	struct list_head buf_queue;
+	struct rkisp1_dummy_buffer dummy_buf;
+	struct rkisp1_buffer *curr_buf;
+	struct rkisp1_buffer *next_buf;
+	bool stop;
+	wait_queue_head_t done;
+	union {
+		struct rkisp1_stream_sp sp;
+		struct rkisp1_stream_mp mp;
+	} u;
+};
+
+extern int rkisp1_debug;
+
+static inline u32 rkisp1_get_colorspace(u32 fmt_type)
+{
+	switch (fmt_type) {
+	case FMT_BAYER:
+		return V4L2_COLORSPACE_SRGB;
+	case FMT_YUV:
+	case FMT_JPEG:
+		return V4L2_COLORSPACE_JPEG;
+	case FMT_RGB:
+		return V4L2_COLORSPACE_RAW;
+	default:
+		return V4L2_COLORSPACE_DEFAULT;
+	}
+}
+
+static inline
+struct rkisp1_vdev_node *vdev_to_node(struct video_device *vdev)
+{
+	return container_of(vdev, struct rkisp1_vdev_node, vdev);
+}
+
+static inline struct rkisp1_vdev_node *queue_to_node(struct vb2_queue *q)
+{
+	return container_of(q, struct rkisp1_vdev_node, buf_queue);
+}
+
+static inline struct rkisp1_buffer *to_rkisp1_buffer(struct vb2_v4l2_buffer *vb)
+{
+	return container_of(vb, struct rkisp1_buffer, vb);
+}
+
+static inline struct vb2_queue *to_vb2_queue(struct file *file)
+{
+	struct rkisp1_vdev_node *vnode = video_drvdata(file);
+
+	return &vnode->buf_queue;
+}
+
+#endif /* _RKISP1_COMMON_H */
diff --git a/drivers/media/platform/rockchip/isp1/dev.c b/drivers/media/platform/rockchip/isp1/dev.c
new file mode 100644
index 000000000000..3d6537077209
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/dev.c
@@ -0,0 +1,632 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#include <linux/clk.h>
+#include <linux/interrupt.h>
+#include <linux/module.h>
+#include <linux/of.h>
+#include <linux/of_graph.h>
+#include <linux/of_platform.h>
+#include <linux/pm_runtime.h>
+#include "regs.h"
+#include "rkisp1.h"
+
+struct isp_match_data {
+	const char * const *clks;
+	int size;
+};
+
+int rkisp1_debug;
+module_param_named(debug, rkisp1_debug, int, 0644);
+MODULE_PARM_DESC(debug, "Debug level (0-1)");
+
+static int __isp_pipeline_prepare(struct rkisp1_pipeline *p,
+				  struct media_entity *me)
+{
+	struct rkisp1_device *dev = container_of(p, struct rkisp1_device, pipe);
+	struct v4l2_subdev *sd;
+	int i;
+
+	p->num_subdevs = 0;
+	memset(p->subdevs, 0, sizeof(p->subdevs));
+
+	while (1) {
+		struct media_pad *pad = NULL;
+
+		/* Find remote source pad */
+		for (i = 0; i < me->num_pads; i++) {
+			struct media_pad *spad = &me->pads[i];
+
+			if (!(spad->flags & MEDIA_PAD_FL_SINK))
+				continue;
+			pad = media_entity_remote_pad(spad);
+			if (pad)
+				break;
+		}
+
+		if (!pad)
+			break;
+
+		sd = media_entity_to_v4l2_subdev(pad->entity);
+		if (sd != &dev->isp_sdev.sd)
+			p->subdevs[p->num_subdevs++] = sd;
+
+		me = &sd->entity;
+		if (me->num_pads == 1)
+			break;
+	}
+	return 0;
+}
+
+static int __subdev_set_power(struct v4l2_subdev *sd, int on)
+{
+	int *use_count;
+	int ret;
+
+	v4l2_info(sd, "%d: name %s,on %d\n", __LINE__, sd->name, on);
+
+	if (!sd)
+		return -ENXIO;
+
+	use_count = &sd->entity.use_count;
+	if (on && (*use_count)++ > 0)
+		return 0;
+	else if (!on && (*use_count == 0 || --(*use_count) > 0))
+		return 0;
+	ret = v4l2_subdev_call(sd, core, s_power, on);
+
+	return ret != -ENOIOCTLCMD ? ret : 0;
+}
+
+static int __isp_pipeline_s_power(struct rkisp1_pipeline *p, bool on)
+{
+	struct rkisp1_device *dev = container_of(p, struct rkisp1_device, pipe);
+	int i, ret;
+
+	if (on) {
+		__subdev_set_power(&dev->isp_sdev.sd, true);
+
+		for (i = p->num_subdevs - 1; i >= 0; --i) {
+			ret = __subdev_set_power(p->subdevs[i], true);
+			if (ret < 0 && ret != -ENXIO)
+				goto err_power_off;
+		}
+	} else {
+		for (i = 0; i < p->num_subdevs; ++i)
+			__subdev_set_power(p->subdevs[i], false);
+
+		__subdev_set_power(&dev->isp_sdev.sd, false);
+	}
+
+	return 0;
+
+err_power_off:
+	for (++i; i < p->num_subdevs; ++i)
+		__subdev_set_power(p->subdevs[i], false);
+	__subdev_set_power(&dev->isp_sdev.sd, true);
+	return ret;
+}
+
+static int rkisp1_pipeline_open(struct rkisp1_pipeline *p,
+				struct media_entity *me,
+				bool prepare)
+{
+	int ret;
+
+	if (WARN_ON(!p || !me))
+		return -EINVAL;
+
+	if (prepare)
+		__isp_pipeline_prepare(p, me);
+
+	if (!p->num_subdevs)
+		return -EINVAL;
+
+	ret = __isp_pipeline_s_power(p, 1);
+	if (ret < 0)
+		return ret;
+
+	return 0;
+}
+
+static int rkisp1_pipeline_close(struct rkisp1_pipeline *p)
+{
+	int ret;
+
+	ret = __isp_pipeline_s_power(p, 0);
+
+	return ret == -ENXIO ? 0 : ret;
+}
+
+static int rkisp1_pipeline_set_stream(struct rkisp1_pipeline *p, bool on)
+{
+	struct rkisp1_device *dev = container_of(p, struct rkisp1_device, pipe);
+	int i, ret;
+
+	if (on)
+		v4l2_subdev_call(&dev->isp_sdev.sd, video, s_stream, true);
+
+	for (i = 0; i < p->num_subdevs; ++i) {
+		ret = v4l2_subdev_call(p->subdevs[i], video, s_stream, on);
+		if (on && ret < 0 && ret != -ENOIOCTLCMD && ret != -ENODEV)
+			goto err_stream_off;
+	}
+
+	if (!on)
+		v4l2_subdev_call(&dev->isp_sdev.sd, video, s_stream, false);
+
+	return 0;
+
+err_stream_off:
+	for (--i; i >= 0; --i)
+		v4l2_subdev_call(p->subdevs[i], video, s_stream, false);
+	v4l2_subdev_call(&dev->isp_sdev.sd, video, s_stream, false);
+	return ret;
+}
+
+static int rkisp1_create_links(struct rkisp1_device *dev)
+{
+	struct media_entity *source, *sink;
+	unsigned int flags, s, pad;
+	int ret;
+
+	/* sensor links(or mipi-phy) */
+	for (s = 0; s < dev->num_sensors; ++s) {
+		struct rkisp1_sensor_info *sensor = &dev->sensors[s];
+
+		for (pad = 0; pad < sensor->sd->entity.num_pads; pad++)
+			if (sensor->sd->entity.pads[pad].flags & MEDIA_PAD_FL_SOURCE)
+				break;
+
+		if (pad == sensor->sd->entity.num_pads) {
+			dev_err(dev->dev,
+				"failed to find src pad for %s\n",
+				sensor->sd->name);
+
+			return -ENXIO;
+		}
+
+		ret = media_create_pad_link(&sensor->sd->entity, pad,
+				&dev->isp_sdev.sd.entity,
+				RKISP1_ISP_PAD_SINK + s,
+				s ? 0 : MEDIA_LNK_FL_ENABLED);
+		if (ret) {
+			dev_err(dev->dev,
+				"failed to create link for %s\n",
+				sensor->sd->name);
+			return ret;
+		}
+	}
+
+	/* params links */
+	source = &dev->params_vdev.vnode.vdev.entity;
+	sink = &dev->isp_sdev.sd.entity;
+	flags = MEDIA_LNK_FL_ENABLED;
+	ret = media_create_pad_link(source, 0, sink,
+				    RKISP1_ISP_PAD_SINK_PARAMS, flags);
+	if (ret < 0)
+		return ret;
+
+	/* create isp internal links */
+	/* SP links */
+	source = &dev->isp_sdev.sd.entity;
+	sink = &dev->stream[RKISP1_STREAM_SP].vnode.vdev.entity;
+	ret = media_create_pad_link(source, RKISP1_ISP_PAD_SOURCE_PATH,
+				       sink, 0, flags);
+	if (ret < 0)
+		return ret;
+
+	/* MP links */
+	source = &dev->isp_sdev.sd.entity;
+	sink = &dev->stream[RKISP1_STREAM_MP].vnode.vdev.entity;
+	ret = media_create_pad_link(source, RKISP1_ISP_PAD_SOURCE_PATH,
+				       sink, 0, flags);
+	if (ret < 0)
+		return ret;
+
+	/* 3A stats links */
+	source = &dev->isp_sdev.sd.entity;
+	sink = &dev->stats_vdev.vnode.vdev.entity;
+	return media_create_pad_link(source, RKISP1_ISP_PAD_SOURCE_STATS,
+					sink, 0, flags);
+}
+
+static int subdev_notifier_complete(struct v4l2_async_notifier *notifier)
+{
+	struct rkisp1_device *dev;
+	int ret;
+
+	dev = container_of(notifier, struct rkisp1_device, notifier);
+
+	mutex_lock(&dev->media_dev.graph_mutex);
+	ret = rkisp1_create_links(dev);
+	if (ret < 0)
+		goto unlock;
+	ret = v4l2_device_register_subdev_nodes(&dev->v4l2_dev);
+	if (ret < 0)
+		goto unlock;
+
+	v4l2_info(&dev->v4l2_dev, "Async subdev notifier completed\n");
+
+unlock:
+	mutex_unlock(&dev->media_dev.graph_mutex);
+	return ret;
+}
+
+struct rkisp1_async_subdev {
+	struct v4l2_async_subdev asd;
+	struct v4l2_mbus_config mbus;
+};
+
+static int subdev_notifier_bound(struct v4l2_async_notifier *notifier,
+				 struct v4l2_subdev *subdev,
+				 struct v4l2_async_subdev *asd)
+{
+	struct rkisp1_device *isp_dev = container_of(notifier,
+					struct rkisp1_device, notifier);
+	struct rkisp1_async_subdev *s_asd = container_of(asd,
+					struct rkisp1_async_subdev, asd);
+
+	if (isp_dev->num_sensors == ARRAY_SIZE(isp_dev->sensors))
+		return -EBUSY;
+
+	isp_dev->sensors[isp_dev->num_sensors].mbus = s_asd->mbus;
+	isp_dev->sensors[isp_dev->num_sensors].sd = subdev;
+	++isp_dev->num_sensors;
+
+	v4l2_dbg(1, rkisp1_debug, subdev, "Async registered subdev\n");
+
+	return 0;
+}
+
+static int rkisp1_fwnode_parse(struct device *dev,
+			       struct v4l2_fwnode_endpoint *vep,
+			       struct v4l2_async_subdev *asd)
+{
+	struct rkisp1_async_subdev *rk_asd =
+			container_of(asd, struct rkisp1_async_subdev, asd);
+	struct v4l2_fwnode_bus_parallel *bus = &vep->bus.parallel;
+
+	if (vep->bus_type != V4L2_MBUS_BT656 &&
+	    vep->bus_type != V4L2_MBUS_PARALLEL)
+		return 0;
+
+	rk_asd->mbus.flags = bus->flags;
+	rk_asd->mbus.type = vep->bus_type;
+
+	return 0;
+}
+
+static const struct v4l2_async_notifier_operations subdev_notifier_ops = {
+	.bound = subdev_notifier_bound,
+	.complete = subdev_notifier_complete,
+};
+
+static int isp_subdev_notifier(struct rkisp1_device *isp_dev)
+{
+	struct v4l2_async_notifier *ntf = &isp_dev->notifier;
+	struct device *dev = isp_dev->dev;
+	int ret;
+
+	ret = v4l2_async_notifier_parse_fwnode_endpoints(dev, ntf,
+		sizeof(struct rkisp1_async_subdev), rkisp1_fwnode_parse);
+	if (ret < 0)
+		return ret;
+
+	if (!ntf->num_subdevs)
+		return -ENODEV;	/* no endpoint */
+
+	ntf->ops = &subdev_notifier_ops;
+
+	return v4l2_async_notifier_register(&isp_dev->v4l2_dev, ntf);
+}
+
+static int rkisp1_register_platform_subdevs(struct rkisp1_device *dev)
+{
+	int ret;
+
+	ret = rkisp1_register_isp_subdev(dev, &dev->v4l2_dev);
+	if (ret < 0)
+		return ret;
+
+	ret = rkisp1_register_stream_vdevs(dev);
+	if (ret < 0)
+		goto err_unreg_isp_subdev;
+
+	ret = rkisp1_register_stats_vdev(&dev->stats_vdev, &dev->v4l2_dev, dev);
+	if (ret < 0)
+		goto err_unreg_stream_vdev;
+
+	ret = rkisp1_register_params_vdev(&dev->params_vdev, &dev->v4l2_dev,
+					  dev);
+	if (ret < 0)
+		goto err_unreg_stats_vdev;
+
+	ret = isp_subdev_notifier(dev);
+	if (ret < 0) {
+		v4l2_err(&dev->v4l2_dev,
+			 "Failed to register subdev notifier(%d)\n", ret);
+		goto err_unreg_params_vdev;
+	}
+
+	return 0;
+err_unreg_params_vdev:
+	rkisp1_unregister_params_vdev(&dev->params_vdev);
+err_unreg_stats_vdev:
+	rkisp1_unregister_stats_vdev(&dev->stats_vdev);
+err_unreg_stream_vdev:
+	rkisp1_unregister_stream_vdevs(dev);
+err_unreg_isp_subdev:
+	rkisp1_unregister_isp_subdev(dev);
+	return ret;
+}
+
+static const char * const rk3399_isp_clks[] = {
+	"clk_isp",
+	"aclk_isp",
+	"hclk_isp",
+	"aclk_isp_wrap",
+	"hclk_isp_wrap",
+};
+
+static const char * const rk3288_isp_clks[] = {
+	"clk_isp",
+	"aclk_isp",
+	"hclk_isp",
+	"pclk_isp_in",
+	"sclk_isp_jpe",
+};
+
+static const struct isp_match_data rk3288_isp_clk_data = {
+	.clks = rk3288_isp_clks,
+	.size = ARRAY_SIZE(rk3288_isp_clks),
+};
+
+static const struct isp_match_data rk3399_isp_clk_data = {
+	.clks = rk3399_isp_clks,
+	.size = ARRAY_SIZE(rk3399_isp_clks),
+};
+
+static const struct of_device_id rkisp1_plat_of_match[] = {
+	{
+		.compatible = "rockchip,rk3288-cif-isp",
+		.data = &rk3288_isp_clk_data,
+	}, {
+		.compatible = "rockchip,rk3399-cif-isp",
+		.data = &rk3399_isp_clk_data,
+	},
+	{},
+};
+
+static irqreturn_t rkisp1_irq_handler(int irq, void *cntxt)
+{
+	struct device *dev = cntxt;
+	struct rkisp1_device *rkisp1_dev = dev_get_drvdata(dev);
+	void __iomem *base = rkisp1_dev->base_addr;
+	unsigned int mis_val, i;
+
+	mis_val = readl(rkisp1_dev->base_addr + CIF_ISP_MIS);
+	if (mis_val)
+		rkisp1_isp_isr(mis_val, rkisp1_dev);
+
+	mis_val = readl(rkisp1_dev->base_addr + CIF_MIPI_MIS);
+	if (mis_val)
+		rkisp1_mipi_isr(mis_val, rkisp1_dev);
+
+	for (i = 0; i < RKISP1_MAX_STREAM; ++i) {
+		struct rkisp1_stream *stream = &rkisp1_dev->stream[i];
+
+		mis_val = stream->ops->is_frame_end_int_masked(base);
+		if (mis_val)
+			rkisp1_mi_isr(stream);
+	}
+
+	clr_all_int(base);
+
+	return IRQ_HANDLED;
+}
+
+static void rkisp1_disable_sys_clk(struct rkisp1_device *rkisp1_dev)
+{
+	int i;
+
+	for (i = rkisp1_dev->clk_size - 1; i >= 0; i--)
+		clk_disable_unprepare(rkisp1_dev->clks[i]);
+}
+
+static int rkisp1_enable_sys_clk(struct rkisp1_device *rkisp1_dev)
+{
+	int i, ret = -EINVAL;
+
+	for (i = 0; i < rkisp1_dev->clk_size; i++) {
+		ret = clk_prepare_enable(rkisp1_dev->clks[i]);
+		if (ret < 0)
+			goto err;
+	}
+	return 0;
+err:
+	for (--i; i >= 0; --i)
+		clk_disable_unprepare(rkisp1_dev->clks[i]);
+	return ret;
+}
+
+static int rkisp1_plat_probe(struct platform_device *pdev)
+{
+	const struct of_device_id *match;
+	struct device_node *node = pdev->dev.of_node;
+	struct device *dev = &pdev->dev;
+	struct v4l2_device *v4l2_dev;
+	struct rkisp1_device *isp_dev;
+	const struct isp_match_data *clk_data;
+
+	struct resource *res;
+	int i, ret, irq;
+
+	match = of_match_node(rkisp1_plat_of_match, node);
+	isp_dev = devm_kzalloc(dev, sizeof(*isp_dev), GFP_KERNEL);
+	if (!isp_dev)
+		return -ENOMEM;
+
+	dev_set_drvdata(dev, isp_dev);
+	atomic_set(&isp_dev->poweron_cnt, 0);
+	isp_dev->dev = dev;
+
+	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
+	isp_dev->base_addr = devm_ioremap_resource(dev, res);
+	if (IS_ERR(isp_dev->base_addr))
+		return PTR_ERR(isp_dev->base_addr);
+
+	irq = platform_get_irq(pdev, 0);
+	if (irq < 0)
+		return irq;
+
+	ret = devm_request_irq(dev, irq, rkisp1_irq_handler, IRQF_SHARED,
+			       dev_driver_string(dev), dev);
+	if (ret < 0) {
+		dev_err(dev, "request irq failed: %d\n", ret);
+		return ret;
+	}
+
+	isp_dev->irq = irq;
+	clk_data = match->data;
+	for (i = 0; i < clk_data->size; i++) {
+		struct clk *clk = devm_clk_get(dev, clk_data->clks[i]);
+
+		if (IS_ERR(clk)) {
+			dev_err(dev, "failed to get %s\n", clk_data->clks[i]);
+			return PTR_ERR(clk);
+		}
+		isp_dev->clks[i] = clk;
+	}
+	isp_dev->clk_size = clk_data->size;
+
+	isp_dev->pipe.open = rkisp1_pipeline_open;
+	isp_dev->pipe.close = rkisp1_pipeline_close;
+	isp_dev->pipe.set_stream = rkisp1_pipeline_set_stream;
+
+	rkisp1_stream_init(isp_dev, RKISP1_STREAM_SP);
+	rkisp1_stream_init(isp_dev, RKISP1_STREAM_MP);
+
+	strlcpy(isp_dev->media_dev.model, "rkisp1",
+		sizeof(isp_dev->media_dev.model));
+	isp_dev->media_dev.dev = &pdev->dev;
+	media_device_init(&isp_dev->media_dev);
+
+	v4l2_dev = &isp_dev->v4l2_dev;
+	v4l2_dev->mdev = &isp_dev->media_dev;
+	strlcpy(v4l2_dev->name, "rkisp1", sizeof(v4l2_dev->name));
+
+	ret = v4l2_device_register(isp_dev->dev, &isp_dev->v4l2_dev);
+	if (ret < 0)
+		return ret;
+
+	ret = media_device_register(&isp_dev->media_dev);
+	if (ret < 0) {
+		v4l2_err(v4l2_dev, "Failed to register media device: %d\n",
+			 ret);
+		goto err_unreg_v4l2_dev;
+	}
+
+	/* create & register platefom subdev (from of_node) */
+	ret = rkisp1_register_platform_subdevs(isp_dev);
+	if (ret < 0)
+		goto err_unreg_media_dev;
+
+	pm_runtime_enable(&pdev->dev);
+
+	return 0;
+
+err_unreg_media_dev:
+	media_device_unregister(&isp_dev->media_dev);
+err_unreg_v4l2_dev:
+	v4l2_device_unregister(&isp_dev->v4l2_dev);
+	return ret;
+}
+
+static int rkisp1_plat_remove(struct platform_device *pdev)
+{
+	struct rkisp1_device *isp_dev = platform_get_drvdata(pdev);
+
+	pm_runtime_disable(&pdev->dev);
+	media_device_unregister(&isp_dev->media_dev);
+	v4l2_device_unregister(&isp_dev->v4l2_dev);
+	rkisp1_unregister_params_vdev(&isp_dev->params_vdev);
+	rkisp1_unregister_stats_vdev(&isp_dev->stats_vdev);
+	rkisp1_unregister_stream_vdevs(isp_dev);
+	rkisp1_unregister_isp_subdev(isp_dev);
+
+	return 0;
+}
+
+static int __maybe_unused rkisp1_runtime_suspend(struct device *dev)
+{
+	struct rkisp1_device *isp_dev = dev_get_drvdata(dev);
+
+	rkisp1_disable_sys_clk(isp_dev);
+	return pinctrl_pm_select_sleep_state(dev);
+}
+
+static int __maybe_unused rkisp1_runtime_resume(struct device *dev)
+{
+	struct rkisp1_device *isp_dev = dev_get_drvdata(dev);
+	int ret;
+
+	ret = pinctrl_pm_select_default_state(dev);
+	if (ret < 0)
+		return ret;
+	rkisp1_enable_sys_clk(isp_dev);
+
+	return 0;
+}
+
+static const struct dev_pm_ops rkisp1_plat_pm_ops = {
+	SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
+				pm_runtime_force_resume)
+	SET_RUNTIME_PM_OPS(rkisp1_runtime_suspend, rkisp1_runtime_resume, NULL)
+};
+
+static struct platform_driver rkisp1_plat_drv = {
+	.driver = {
+		   .name = DRIVER_NAME,
+		   .of_match_table = of_match_ptr(rkisp1_plat_of_match),
+		   .pm = &rkisp1_plat_pm_ops,
+	},
+	.probe = rkisp1_plat_probe,
+	.remove = rkisp1_plat_remove,
+};
+
+module_platform_driver(rkisp1_plat_drv);
+MODULE_AUTHOR("Rockchip Camera/ISP team");
+MODULE_DESCRIPTION("Rockchip ISP1 platform driver");
+MODULE_LICENSE("Dual BSD/GPL");
diff --git a/drivers/media/platform/rockchip/isp1/isp_params.c b/drivers/media/platform/rockchip/isp1/isp_params.c
new file mode 100644
index 000000000000..76c9755bde2a
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/isp_params.c
@@ -0,0 +1,1556 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#include <media/v4l2-common.h>
+#include <media/v4l2-ioctl.h>
+#include <media/videobuf2-core.h>
+#include <media/videobuf2-vmalloc.h>	/* for ISP params */
+#include "regs.h"
+#include "rkisp1.h"
+#include "isp_params.h"
+
+#define RKISP1_ISP_PARAMS_REQ_BUFS_MIN	2
+#define RKISP1_ISP_PARAMS_REQ_BUFS_MAX	8
+
+#define BLS_START_H_MAX_IS_VALID(val)	((val) < CIFISP_BLS_START_H_MAX)
+#define BLS_STOP_H_MAX_IS_VALID(val)	((val) < CIFISP_BLS_STOP_H_MAX)
+
+#define BLS_START_V_MAX_IS_VALID(val)	((val) < CIFISP_BLS_START_V_MAX)
+#define BLS_STOP_V_MAX_IS_VALID(val)	((val) < CIFISP_BLS_STOP_V_MAX)
+
+#define BLS_SAMPLE_MAX_IS_VALID(val)	((val) < CIFISP_BLS_SAMPLES_MAX)
+
+#define BLS_FIX_SUB_IS_VALID(val)	\
+	((val) > (s16)CIFISP_BLS_FIX_SUB_MIN && (val) < CIFISP_BLS_FIX_SUB_MAX)
+
+static inline void rkisp1_iowrite32(struct rkisp1_isp_params_vdev *params_vdev,
+				    u32 value, u32 addr)
+{
+	iowrite32(value, params_vdev->dev->base_addr + addr);
+}
+
+static inline u32 rkisp1_ioread32(struct rkisp1_isp_params_vdev *params_vdev,
+				  u32 addr)
+{
+	return ioread32(params_vdev->dev->base_addr + addr);
+}
+
+static inline void isp_param_set_bits(struct rkisp1_isp_params_vdev
+					     *params_vdev,
+				      u32 reg, u32 bit_mask)
+{
+	u32 val;
+
+	val = rkisp1_ioread32(params_vdev, reg);
+	rkisp1_iowrite32(params_vdev, val | bit_mask, reg);
+}
+
+static inline void isp_param_clear_bits(struct rkisp1_isp_params_vdev
+					       *params_vdev,
+					u32 reg, u32 bit_mask)
+{
+	u32 val;
+
+	val = rkisp1_ioread32(params_vdev, reg);
+	rkisp1_iowrite32(params_vdev, val & ~bit_mask, reg);
+}
+
+/* ISP BP interface function */
+static void dpcc_config(struct rkisp1_isp_params_vdev *params_vdev,
+			const struct cifisp_dpcc_config *arg)
+{
+	unsigned int i;
+
+	rkisp1_iowrite32(params_vdev, arg->mode, CIF_ISP_DPCC_MODE);
+	rkisp1_iowrite32(params_vdev, arg->output_mode,
+			 CIF_ISP_DPCC_OUTPUT_MODE);
+	rkisp1_iowrite32(params_vdev, arg->set_use, CIF_ISP_DPCC_SET_USE);
+
+	rkisp1_iowrite32(params_vdev, arg->methods[0].method,
+			 CIF_ISP_DPCC_METHODS_SET_1);
+	rkisp1_iowrite32(params_vdev, arg->methods[1].method,
+			 CIF_ISP_DPCC_METHODS_SET_2);
+	rkisp1_iowrite32(params_vdev, arg->methods[2].method,
+			 CIF_ISP_DPCC_METHODS_SET_3);
+	for (i = 0; i < CIFISP_DPCC_METHODS_MAX; i++) {
+		rkisp1_iowrite32(params_vdev, arg->methods[i].line_thresh,
+				 CIF_ISP_DPCC_LINE_THRESH_1 + 0x14 * i);
+		rkisp1_iowrite32(params_vdev, arg->methods[i].line_mad_fac,
+				 CIF_ISP_DPCC_LINE_MAD_FAC_1 + 0x14 * i);
+		rkisp1_iowrite32(params_vdev, arg->methods[i].pg_fac,
+				 CIF_ISP_DPCC_PG_FAC_1 + 0x14 * i);
+		rkisp1_iowrite32(params_vdev, arg->methods[i].rnd_thresh,
+				 CIF_ISP_DPCC_RND_THRESH_1 + 0x14 * i);
+		rkisp1_iowrite32(params_vdev, arg->methods[i].rg_fac,
+				 CIF_ISP_DPCC_RG_FAC_1 + 0x14 * i);
+	}
+
+	rkisp1_iowrite32(params_vdev, arg->rnd_offs, CIF_ISP_DPCC_RND_OFFS);
+	rkisp1_iowrite32(params_vdev, arg->ro_limits, CIF_ISP_DPCC_RO_LIMITS);
+}
+
+/* ISP black level subtraction interface function */
+static void bls_config(struct rkisp1_isp_params_vdev *params_vdev,
+		       const struct cifisp_bls_config *arg)
+{
+	u32 new_control = 0;
+
+	/* fixed subtraction values */
+	if (!arg->enable_auto) {
+		const struct cifisp_bls_fixed_val *pval = &arg->fixed_val;
+
+		switch (params_vdev->raw_type) {
+		case RAW_BGGR:
+			rkisp1_iowrite32(params_vdev,
+					 pval->r, CIF_ISP_BLS_D_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->gr, CIF_ISP_BLS_C_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->gb, CIF_ISP_BLS_B_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->b, CIF_ISP_BLS_A_FIXED);
+			break;
+		case RAW_GBRG:
+			rkisp1_iowrite32(params_vdev,
+					 pval->r, CIF_ISP_BLS_C_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->gr, CIF_ISP_BLS_D_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->gb, CIF_ISP_BLS_A_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->b, CIF_ISP_BLS_B_FIXED);
+			break;
+		case RAW_GRBG:
+			rkisp1_iowrite32(params_vdev,
+					 pval->r, CIF_ISP_BLS_B_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->gr, CIF_ISP_BLS_A_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->gb, CIF_ISP_BLS_D_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->b, CIF_ISP_BLS_C_FIXED);
+			break;
+		case RAW_RGGB:
+			rkisp1_iowrite32(params_vdev,
+					 pval->r, CIF_ISP_BLS_A_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->gr, CIF_ISP_BLS_B_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->gb, CIF_ISP_BLS_C_FIXED);
+			rkisp1_iowrite32(params_vdev,
+					 pval->b, CIF_ISP_BLS_D_FIXED);
+			break;
+		default:
+			break;
+		}
+
+		new_control = CIF_ISP_BLS_MODE_FIXED;
+		rkisp1_iowrite32(params_vdev, new_control, CIF_ISP_BLS_CTRL);
+	} else {
+		if (arg->en_windows & 2) {
+			rkisp1_iowrite32(params_vdev, arg->bls_window2.h_offs,
+					 CIF_ISP_BLS_H2_START);
+			rkisp1_iowrite32(params_vdev, arg->bls_window2.h_size,
+					 CIF_ISP_BLS_H2_STOP);
+			rkisp1_iowrite32(params_vdev, arg->bls_window2.v_offs,
+					 CIF_ISP_BLS_V2_START);
+			rkisp1_iowrite32(params_vdev, arg->bls_window2.v_size,
+					 CIF_ISP_BLS_V2_STOP);
+			new_control |= CIF_ISP_BLS_WINDOW_2;
+		}
+
+		if (arg->en_windows & 1) {
+			rkisp1_iowrite32(params_vdev, arg->bls_window1.h_offs,
+					 CIF_ISP_BLS_H1_START);
+			rkisp1_iowrite32(params_vdev, arg->bls_window1.h_size,
+					 CIF_ISP_BLS_H1_STOP);
+			rkisp1_iowrite32(params_vdev, arg->bls_window1.v_offs,
+					 CIF_ISP_BLS_V1_START);
+			rkisp1_iowrite32(params_vdev, arg->bls_window1.v_size,
+					 CIF_ISP_BLS_V1_STOP);
+			new_control |= CIF_ISP_BLS_WINDOW_1;
+		}
+
+		rkisp1_iowrite32(params_vdev, arg->bls_samples,
+				 CIF_ISP_BLS_SAMPLES);
+
+		new_control |= CIF_ISP_BLS_MODE_MEASURED;
+
+		rkisp1_iowrite32(params_vdev, new_control, CIF_ISP_BLS_CTRL);
+	}
+}
+
+/* ISP LS correction interface function */
+static void
+__lsc_correct_matrix_config(struct rkisp1_isp_params_vdev *params_vdev,
+			    const struct cifisp_lsc_config *pconfig)
+{
+	int i, j;
+	unsigned int isp_lsc_status, sram_addr, isp_lsc_table_sel;
+	unsigned int data;
+
+	isp_lsc_status = rkisp1_ioread32(params_vdev, CIF_ISP_LSC_STATUS);
+
+	/* CIF_ISP_LSC_TABLE_ADDRESS_153 = ( 17 * 18 ) >> 1 */
+	sram_addr = (isp_lsc_status & CIF_ISP_LSC_ACTIVE_TABLE) ?
+		     CIF_ISP_LSC_TABLE_ADDRESS_0 :
+		     CIF_ISP_LSC_TABLE_ADDRESS_153;
+	rkisp1_iowrite32(params_vdev, sram_addr, CIF_ISP_LSC_R_TABLE_ADDR);
+	rkisp1_iowrite32(params_vdev, sram_addr, CIF_ISP_LSC_GR_TABLE_ADDR);
+	rkisp1_iowrite32(params_vdev, sram_addr, CIF_ISP_LSC_GB_TABLE_ADDR);
+	rkisp1_iowrite32(params_vdev, sram_addr, CIF_ISP_LSC_B_TABLE_ADDR);
+
+	/* program data tables (table size is 9 * 17 = 153) */
+	for (i = 0; i < ((CIF_ISP_LSC_SECTORS_MAX + 1) *
+	     (CIF_ISP_LSC_SECTORS_MAX + 1));
+	     i += CIF_ISP_LSC_SECTORS_MAX + 1) {
+		/*
+		 * 17 sectors with 2 values in one DWORD = 9
+		 * DWORDs (2nd value of last DWORD unused)
+		 */
+		for (j = 0; j < (CIF_ISP_LSC_SECTORS_MAX + 1); j += 2) {
+			data = CIF_ISP_LSC_TABLE_DATA(
+					pconfig->r_data_tbl[i + j],
+					pconfig->r_data_tbl[i + j + 1]);
+			rkisp1_iowrite32(params_vdev, data,
+					 CIF_ISP_LSC_R_TABLE_DATA);
+
+			data = CIF_ISP_LSC_TABLE_DATA(
+					pconfig->gr_data_tbl[i + j],
+					pconfig->gr_data_tbl[i + j + 1]);
+			rkisp1_iowrite32(params_vdev, data,
+					 CIF_ISP_LSC_GR_TABLE_DATA);
+
+			data = CIF_ISP_LSC_TABLE_DATA(
+					pconfig->gb_data_tbl[i + j],
+					pconfig->gb_data_tbl[i + j + 1]);
+			rkisp1_iowrite32(params_vdev, data,
+					 CIF_ISP_LSC_GB_TABLE_DATA);
+
+			data = CIF_ISP_LSC_TABLE_DATA(
+					pconfig->b_data_tbl[i + j],
+					pconfig->b_data_tbl[i + j + 1]);
+			rkisp1_iowrite32(params_vdev, data,
+					 CIF_ISP_LSC_B_TABLE_DATA);
+		}
+	}
+
+	isp_lsc_table_sel = (isp_lsc_status & CIF_ISP_LSC_ACTIVE_TABLE) ?
+				CIF_ISP_LSC_TABLE_0 : CIF_ISP_LSC_TABLE_1;
+	rkisp1_iowrite32(params_vdev, isp_lsc_table_sel, CIF_ISP_LSC_TABLE_SEL);
+}
+
+static void lsc_config(struct rkisp1_isp_params_vdev *params_vdev,
+		       const struct cifisp_lsc_config *arg)
+{
+	int i;
+	unsigned int data;
+	u32 lsc_ctrl;
+
+	/* To config must be off , store the current status firstly */
+	lsc_ctrl = rkisp1_ioread32(params_vdev, CIF_ISP_LSC_CTRL);
+	isp_param_clear_bits(params_vdev, CIF_ISP_LSC_CTRL,
+			     CIF_ISP_LSC_CTRL_ENA);
+	__lsc_correct_matrix_config(params_vdev, arg);
+
+	if (params_vdev->active_lsc_width !=
+	    arg->config_width ||
+	    params_vdev->active_lsc_height != arg->config_height) {
+		for (i = 0; i < 4; i++) {
+			/* program x size tables */
+			data = CIF_ISP_LSC_SECT_SIZE(arg->x_size_tbl[i * 2],
+						arg->x_size_tbl[i * 2 + 1]);
+			rkisp1_iowrite32(params_vdev, data,
+					 CIF_ISP_LSC_XSIZE_01 + i * 4);
+
+			/* program x grad tables */
+			data = CIF_ISP_LSC_SECT_SIZE(arg->x_grad_tbl[i * 2],
+						arg->x_grad_tbl[i * 2 + 1]);
+			rkisp1_iowrite32(params_vdev, data,
+					 CIF_ISP_LSC_XGRAD_01 + i * 4);
+
+			/* program y size tables */
+			data = CIF_ISP_LSC_SECT_SIZE(arg->y_size_tbl[i * 2],
+						arg->y_size_tbl[i * 2 + 1]);
+			rkisp1_iowrite32(params_vdev, data,
+					 CIF_ISP_LSC_YSIZE_01 + i * 4);
+
+			/* program y grad tables */
+			data = CIF_ISP_LSC_SECT_SIZE(arg->y_grad_tbl[i * 2],
+						arg->y_grad_tbl[i * 2 + 1]);
+			rkisp1_iowrite32(params_vdev, data,
+					 CIF_ISP_LSC_YGRAD_01 + i * 4);
+		}
+
+		params_vdev->active_lsc_width = arg->config_width;
+		params_vdev->active_lsc_height = arg->config_height;
+	}
+
+	/* restore the bls ctrl status */
+	if (lsc_ctrl & CIF_ISP_LSC_CTRL_ENA) {
+		isp_param_set_bits(params_vdev,
+				   CIF_ISP_LSC_CTRL,
+				   CIF_ISP_LSC_CTRL_ENA);
+	} else {
+		isp_param_clear_bits(params_vdev,
+				     CIF_ISP_LSC_CTRL,
+				     CIF_ISP_LSC_CTRL_ENA);
+	}
+}
+
+/* ISP Filtering function */
+static void flt_config(struct rkisp1_isp_params_vdev *params_vdev,
+		       const struct cifisp_flt_config *arg)
+{
+	rkisp1_iowrite32(params_vdev, arg->thresh_bl0, CIF_ISP_FILT_THRESH_BL0);
+	rkisp1_iowrite32(params_vdev, arg->thresh_bl1, CIF_ISP_FILT_THRESH_BL1);
+	rkisp1_iowrite32(params_vdev, arg->thresh_sh0, CIF_ISP_FILT_THRESH_SH0);
+	rkisp1_iowrite32(params_vdev, arg->thresh_sh1, CIF_ISP_FILT_THRESH_SH1);
+	rkisp1_iowrite32(params_vdev, arg->fac_bl0, CIF_ISP_FILT_FAC_BL0);
+	rkisp1_iowrite32(params_vdev, arg->fac_bl1, CIF_ISP_FILT_FAC_BL1);
+	rkisp1_iowrite32(params_vdev, arg->fac_mid, CIF_ISP_FILT_FAC_MID);
+	rkisp1_iowrite32(params_vdev, arg->fac_sh0, CIF_ISP_FILT_FAC_SH0);
+	rkisp1_iowrite32(params_vdev, arg->fac_sh1, CIF_ISP_FILT_FAC_SH1);
+	rkisp1_iowrite32(params_vdev, arg->lum_weight, CIF_ISP_FILT_LUM_WEIGHT);
+
+	rkisp1_iowrite32(params_vdev, (arg->mode ? CIF_ISP_FLT_MODE_DNR : 0) |
+			 CIF_ISP_FLT_CHROMA_V_MODE(arg->chr_v_mode) |
+			 CIF_ISP_FLT_CHROMA_H_MODE(arg->chr_h_mode) |
+			 CIF_ISP_FLT_GREEN_STAGE1(arg->grn_stage1),
+			 CIF_ISP_FILT_MODE);
+}
+
+/* ISP demosaic interface function */
+static int bdm_config(struct rkisp1_isp_params_vdev *params_vdev,
+		      const struct cifisp_bdm_config *arg)
+{
+	/*set demosaic threshold */
+	rkisp1_iowrite32(params_vdev, arg->demosaic_th, CIF_ISP_DEMOSAIC);
+	return 0;
+}
+
+/* ISP GAMMA correction interface function */
+static void sdg_config(struct rkisp1_isp_params_vdev *params_vdev,
+		       const struct cifisp_sdg_config *arg)
+{
+	int i;
+
+	rkisp1_iowrite32(params_vdev,
+			 arg->xa_pnts.gamma_dx0, CIF_ISP_GAMMA_DX_LO);
+	rkisp1_iowrite32(params_vdev,
+			 arg->xa_pnts.gamma_dx1, CIF_ISP_GAMMA_DX_HI);
+
+	for (i = 0; i < CIFISP_DEGAMMA_CURVE_SIZE; i++) {
+		rkisp1_iowrite32(params_vdev, arg->curve_r.gamma_y[i],
+				 CIF_ISP_GAMMA_R_Y0 + i * 4);
+		rkisp1_iowrite32(params_vdev, arg->curve_g.gamma_y[i],
+				 CIF_ISP_GAMMA_G_Y0 + i * 4);
+		rkisp1_iowrite32(params_vdev, arg->curve_b.gamma_y[i],
+				 CIF_ISP_GAMMA_B_Y0 + i * 4);
+	}
+}
+
+/* ISP GAMMA correction interface function */
+static void goc_config(struct rkisp1_isp_params_vdev *params_vdev,
+		       const struct cifisp_goc_config *arg)
+{
+	int i;
+
+	isp_param_clear_bits(params_vdev, CIF_ISP_CTRL,
+			     CIF_ISP_CTRL_ISP_GAMMA_OUT_ENA);
+	rkisp1_iowrite32(params_vdev, arg->mode, CIF_ISP_GAMMA_OUT_MODE);
+
+	for (i = 0; i < CIFISP_GAMMA_OUT_MAX_SAMPLES; i++)
+		rkisp1_iowrite32(params_vdev, arg->gamma_y[i],
+				 CIF_ISP_GAMMA_OUT_Y_0 + i * 4);
+}
+
+/* ISP Cross Talk */
+static void ctk_config(struct rkisp1_isp_params_vdev *params_vdev,
+		       const struct cifisp_ctk_config *arg)
+{
+	rkisp1_iowrite32(params_vdev, arg->coeff0, CIF_ISP_CT_COEFF_0);
+	rkisp1_iowrite32(params_vdev, arg->coeff1, CIF_ISP_CT_COEFF_1);
+	rkisp1_iowrite32(params_vdev, arg->coeff2, CIF_ISP_CT_COEFF_2);
+	rkisp1_iowrite32(params_vdev, arg->coeff3, CIF_ISP_CT_COEFF_3);
+	rkisp1_iowrite32(params_vdev, arg->coeff4, CIF_ISP_CT_COEFF_4);
+	rkisp1_iowrite32(params_vdev, arg->coeff5, CIF_ISP_CT_COEFF_5);
+	rkisp1_iowrite32(params_vdev, arg->coeff6, CIF_ISP_CT_COEFF_6);
+	rkisp1_iowrite32(params_vdev, arg->coeff7, CIF_ISP_CT_COEFF_7);
+	rkisp1_iowrite32(params_vdev, arg->coeff8, CIF_ISP_CT_COEFF_8);
+	rkisp1_iowrite32(params_vdev, arg->ct_offset_r, CIF_ISP_CT_OFFSET_R);
+	rkisp1_iowrite32(params_vdev, arg->ct_offset_g, CIF_ISP_CT_OFFSET_G);
+	rkisp1_iowrite32(params_vdev, arg->ct_offset_b, CIF_ISP_CT_OFFSET_B);
+}
+
+static void ctk_enable(struct rkisp1_isp_params_vdev *params_vdev, bool en)
+{
+	if (en)
+		return;
+
+	/* Write back the default values. */
+	rkisp1_iowrite32(params_vdev, 0x80, CIF_ISP_CT_COEFF_0);
+	rkisp1_iowrite32(params_vdev, 0, CIF_ISP_CT_COEFF_1);
+	rkisp1_iowrite32(params_vdev, 0, CIF_ISP_CT_COEFF_2);
+	rkisp1_iowrite32(params_vdev, 0, CIF_ISP_CT_COEFF_3);
+	rkisp1_iowrite32(params_vdev, 0x80, CIF_ISP_CT_COEFF_4);
+	rkisp1_iowrite32(params_vdev, 0, CIF_ISP_CT_COEFF_5);
+	rkisp1_iowrite32(params_vdev, 0, CIF_ISP_CT_COEFF_6);
+	rkisp1_iowrite32(params_vdev, 0, CIF_ISP_CT_COEFF_7);
+	rkisp1_iowrite32(params_vdev, 0x80, CIF_ISP_CT_COEFF_8);
+
+	rkisp1_iowrite32(params_vdev, 0, CIF_ISP_CT_OFFSET_R);
+	rkisp1_iowrite32(params_vdev, 0, CIF_ISP_CT_OFFSET_G);
+	rkisp1_iowrite32(params_vdev, 0, CIF_ISP_CT_OFFSET_B);
+}
+
+/* ISP White Balance Mode */
+static void awb_meas_config(struct rkisp1_isp_params_vdev *params_vdev,
+			    const struct cifisp_awb_meas_config *arg)
+{
+	/* based on the mode,configure the awb module */
+	if (arg->awb_mode == CIFISP_AWB_MODE_YCBCR) {
+		/* Reference Cb and Cr */
+		rkisp1_iowrite32(params_vdev,
+				 CIF_ISP_AWB_REF_CR_SET(arg->awb_ref_cr) |
+				 arg->awb_ref_cb, CIF_ISP_AWB_REF);
+		/* Yc Threshold */
+		rkisp1_iowrite32(params_vdev,
+				 CIF_ISP_AWB_MAX_Y_SET(arg->max_y) |
+				 CIF_ISP_AWB_MIN_Y_SET(arg->min_y) |
+				 CIF_ISP_AWB_MAX_CS_SET(arg->max_csum) |
+				 arg->min_c, CIF_ISP_AWB_THRESH);
+	}
+
+	/* window offset */
+	rkisp1_iowrite32(params_vdev,
+			 arg->awb_wnd.v_offs, CIF_ISP_AWB_WND_V_OFFS);
+	rkisp1_iowrite32(params_vdev,
+			 arg->awb_wnd.h_offs, CIF_ISP_AWB_WND_H_OFFS);
+	/* AWB window size */
+	rkisp1_iowrite32(params_vdev,
+			 arg->awb_wnd.v_size, CIF_ISP_AWB_WND_V_SIZE);
+	rkisp1_iowrite32(params_vdev,
+			 arg->awb_wnd.h_size, CIF_ISP_AWB_WND_H_SIZE);
+	/* Number of frames */
+	rkisp1_iowrite32(params_vdev,
+			 arg->frames, CIF_ISP_AWB_FRAMES);
+}
+
+static void awb_meas_enable(struct rkisp1_isp_params_vdev *params_vdev,
+			    const struct cifisp_awb_meas_config *arg, bool en)
+{
+	u32 reg_val = rkisp1_ioread32(params_vdev, CIF_ISP_AWB_PROP);
+
+	/* switch off */
+	reg_val &= CIF_ISP_AWB_MODE_MASK_NONE;
+
+	if (en) {
+		if (arg->awb_mode == CIFISP_AWB_MODE_RGB)
+			reg_val |= CIF_ISP_AWB_MODE_RGB_EN;
+		else
+			reg_val |= CIF_ISP_AWB_MODE_YCBCR_EN;
+
+		rkisp1_iowrite32(params_vdev, reg_val, CIF_ISP_AWB_PROP);
+
+		/* Measurements require AWB block be active. */
+		/* TODO: need to enable here ? awb_gain_enable has done this */
+		isp_param_set_bits(params_vdev, CIF_ISP_CTRL,
+				   CIF_ISP_CTRL_ISP_AWB_ENA);
+	} else {
+		rkisp1_iowrite32(params_vdev,
+				 reg_val, CIF_ISP_AWB_PROP);
+		isp_param_clear_bits(params_vdev, CIF_ISP_CTRL,
+				     CIF_ISP_CTRL_ISP_AWB_ENA);
+	}
+}
+
+static void awb_gain_config(struct rkisp1_isp_params_vdev *params_vdev,
+			    const struct cifisp_awb_gain_config *arg)
+{
+	rkisp1_iowrite32(params_vdev,
+			 CIF_ISP_AWB_GAIN_R_SET(arg->gain_green_r) |
+			 arg->gain_green_b, CIF_ISP_AWB_GAIN_G);
+
+	rkisp1_iowrite32(params_vdev, CIF_ISP_AWB_GAIN_R_SET(arg->gain_red) |
+			 arg->gain_blue, CIF_ISP_AWB_GAIN_RB);
+}
+
+static void aec_config(struct rkisp1_isp_params_vdev *params_vdev,
+		       const struct cifisp_aec_config *arg)
+{
+	unsigned int block_hsize, block_vsize;
+
+	rkisp1_iowrite32(params_vdev,
+			 ((arg->autostop) ? CIF_ISP_EXP_CTRL_AUTOSTOP : 0) |
+			 ((arg->mode == CIFISP_EXP_MEASURING_MODE_1) ?
+			 CIF_ISP_EXP_CTRL_MEASMODE_1 : 0), CIF_ISP_EXP_CTRL);
+
+	rkisp1_iowrite32(params_vdev,
+			 arg->meas_window.h_offs, CIF_ISP_EXP_H_OFFSET);
+	rkisp1_iowrite32(params_vdev,
+			 arg->meas_window.v_offs, CIF_ISP_EXP_V_OFFSET);
+
+	block_hsize = arg->meas_window.h_size / CIF_ISP_EXP_COLUMN_NUM - 1;
+	block_vsize = arg->meas_window.v_size / CIF_ISP_EXP_ROW_NUM - 1;
+
+	rkisp1_iowrite32(params_vdev, CIF_ISP_EXP_H_SIZE_SET(block_hsize),
+			 CIF_ISP_EXP_H_SIZE);
+	rkisp1_iowrite32(params_vdev, CIF_ISP_EXP_V_SIZE_SET(block_vsize),
+			 CIF_ISP_EXP_V_SIZE);
+}
+
+static void cproc_config(struct rkisp1_isp_params_vdev *params_vdev,
+			 const struct cifisp_cproc_config *arg)
+{
+	/* TODO: get quantization, ie effect*/
+	u32 quantization = V4L2_QUANTIZATION_FULL_RANGE;
+	u32 effect = V4L2_COLORFX_NONE;
+
+	rkisp1_iowrite32(params_vdev, arg->contrast, CIF_C_PROC_CONTRAST);
+	rkisp1_iowrite32(params_vdev, arg->hue, CIF_C_PROC_HUE);
+	rkisp1_iowrite32(params_vdev, arg->sat, CIF_C_PROC_SATURATION);
+	rkisp1_iowrite32(params_vdev, arg->brightness, CIF_C_PROC_BRIGHTNESS);
+
+	if (quantization != V4L2_QUANTIZATION_FULL_RANGE ||
+	    effect != V4L2_COLORFX_NONE) {
+		isp_param_clear_bits(params_vdev, CIF_C_PROC_CTRL,
+				     CIF_C_PROC_YOUT_FULL |
+				     CIF_C_PROC_YIN_FULL |
+				     CIF_C_PROC_COUT_FULL);
+	} else {
+		isp_param_set_bits(params_vdev, CIF_C_PROC_CTRL,
+				   CIF_C_PROC_YOUT_FULL |
+				   CIF_C_PROC_YIN_FULL |
+				   CIF_C_PROC_COUT_FULL);
+	}
+}
+
+static void hst_config(struct rkisp1_isp_params_vdev *params_vdev,
+		       const struct cifisp_hst_config *arg)
+{
+	unsigned int block_hsize, block_vsize;
+	static const u32 hist_weight_regs[] = {
+		CIF_ISP_HIST_WEIGHT_00TO30, CIF_ISP_HIST_WEIGHT_40TO21,
+		CIF_ISP_HIST_WEIGHT_31TO12, CIF_ISP_HIST_WEIGHT_22TO03,
+		CIF_ISP_HIST_WEIGHT_13TO43, CIF_ISP_HIST_WEIGHT_04TO34,
+		CIF_ISP_HIST_WEIGHT_44,
+	};
+	const u8 *weight;
+	int i;
+
+	rkisp1_iowrite32(params_vdev,
+			 CIF_ISP_HIST_PREDIV_SET(arg->histogram_predivider),
+			 CIF_ISP_HIST_PROP);
+	rkisp1_iowrite32(params_vdev,
+			 arg->meas_window.h_offs,
+			 CIF_ISP_HIST_H_OFFS);
+	rkisp1_iowrite32(params_vdev,
+			 arg->meas_window.v_offs,
+			 CIF_ISP_HIST_V_OFFS);
+
+	block_hsize = arg->meas_window.h_size / CIF_ISP_HIST_COLUMN_NUM - 1;
+	block_vsize = arg->meas_window.v_size / CIF_ISP_HIST_ROW_NUM - 1;
+
+	rkisp1_iowrite32(params_vdev, block_hsize, CIF_ISP_HIST_H_SIZE);
+	rkisp1_iowrite32(params_vdev, block_vsize, CIF_ISP_HIST_V_SIZE);
+
+	weight = arg->hist_weight;
+	for (i = 0; i < ARRAY_SIZE(hist_weight_regs); ++i, weight += 4)
+		rkisp1_iowrite32(params_vdev, CIF_ISP_HIST_WEIGHT_SET(
+				 weight[0], weight[1], weight[2], weight[3]),
+				 hist_weight_regs[i]);
+}
+
+static void hst_enable(struct rkisp1_isp_params_vdev *params_vdev,
+		       const struct cifisp_hst_config *arg, bool en)
+{
+	if (en)	{
+		u32 hist_prop = rkisp1_ioread32(params_vdev, CIF_ISP_HIST_PROP);
+
+		hist_prop &= ~CIF_ISP_HIST_PROP_MODE_MASK | arg->mode;
+		isp_param_set_bits(params_vdev, CIF_ISP_HIST_PROP, hist_prop);
+	} else {
+		isp_param_clear_bits(params_vdev, CIF_ISP_HIST_PROP,
+				     CIF_ISP_HIST_PROP_MODE_MASK);
+	}
+}
+
+static inline unsigned int afm_calc_luminanceshift(const unsigned int
+							maxpixelcnt)
+{
+	unsigned int lgrad = maxpixelcnt;
+	unsigned int lshift = 0U;
+
+	while (lgrad > 65793) {
+		++lshift;
+		lgrad >>= 1;
+	}
+
+	return lshift;
+}
+
+static inline unsigned int afm_calc_tennenggradshift(const unsigned int
+							maxpixelcnt)
+{
+	unsigned int tgrad = maxpixelcnt;
+	unsigned int tshift = 0U;
+
+	while (tgrad > (128 * 128)) {
+		++tshift;
+		tgrad >>= 1;
+	}
+
+	return tshift;
+}
+
+static void afm_config(struct rkisp1_isp_params_vdev *params_vdev,
+		       const struct cifisp_afc_config *arg)
+{
+	size_t num_of_win = min_t(size_t, ARRAY_SIZE(arg->afm_win), arg->num_afm_win);
+	int i;
+
+	/* Switch off to configure. Enabled during normal flow in frame isr. */
+	isp_param_clear_bits(params_vdev, CIF_ISP_AFM_CTRL, CIF_ISP_AFM_ENA);
+
+	for (i = 0; i < num_of_win; i++) {
+		rkisp1_iowrite32(params_vdev,
+				 CIF_ISP_AFM_WINDOW_X(arg->afm_win[i].h_offs) |
+				 CIF_ISP_AFM_WINDOW_Y(arg->afm_win[i].v_offs),
+				 CIF_ISP_AFM_LT_A + i * 8);
+		rkisp1_iowrite32(params_vdev,
+				 CIF_ISP_AFM_WINDOW_X(arg->afm_win[i].h_size +
+						      arg->afm_win[i].h_offs) |
+				 CIF_ISP_AFM_WINDOW_Y(arg->afm_win[i].v_size +
+						      arg->afm_win[i].v_offs),
+				 CIF_ISP_AFM_RB_A + i * 8);
+	}
+	rkisp1_iowrite32(params_vdev, arg->thres, CIF_ISP_AFM_THRES);
+	rkisp1_iowrite32(params_vdev, arg->var_shift, CIF_ISP_AFM_VAR_SHIFT);
+}
+
+static void ie_config(struct rkisp1_isp_params_vdev *params_vdev,
+		      const struct cifisp_ie_config *arg)
+{
+	u32 eff_ctrl;
+
+	eff_ctrl = rkisp1_ioread32(params_vdev, CIF_IMG_EFF_CTRL);
+	eff_ctrl &= ~CIF_IMG_EFF_CTRL_MODE_MASK;
+
+	switch (arg->effect) {
+	case V4L2_COLORFX_SEPIA:
+		eff_ctrl |= CIF_IMG_EFF_CTRL_MODE_SEPIA;
+		break;
+	case V4L2_COLORFX_SET_CBCR:
+		rkisp1_iowrite32(params_vdev, arg->eff_tint, CIF_IMG_EFF_TINT);
+		eff_ctrl |= CIF_IMG_EFF_CTRL_MODE_SEPIA;
+		break;
+		/*
+		 * Color selection is similar to water color(AQUA):
+		 * grayscale + selected color w threshold
+		 */
+	case V4L2_COLORFX_AQUA:
+		eff_ctrl |= CIF_IMG_EFF_CTRL_MODE_COLOR_SEL;
+		rkisp1_iowrite32(params_vdev, arg->color_sel,
+				 CIF_IMG_EFF_COLOR_SEL);
+		break;
+	case V4L2_COLORFX_EMBOSS:
+		eff_ctrl |= CIF_IMG_EFF_CTRL_MODE_EMBOSS;
+		rkisp1_iowrite32(params_vdev, arg->eff_mat_1,
+				 CIF_IMG_EFF_MAT_1);
+		rkisp1_iowrite32(params_vdev, arg->eff_mat_2,
+				 CIF_IMG_EFF_MAT_2);
+		rkisp1_iowrite32(params_vdev, arg->eff_mat_3,
+				 CIF_IMG_EFF_MAT_3);
+		break;
+	case V4L2_COLORFX_SKETCH:
+		eff_ctrl |= CIF_IMG_EFF_CTRL_MODE_SKETCH;
+		rkisp1_iowrite32(params_vdev, arg->eff_mat_3,
+				 CIF_IMG_EFF_MAT_3);
+		rkisp1_iowrite32(params_vdev, arg->eff_mat_4,
+				 CIF_IMG_EFF_MAT_4);
+		rkisp1_iowrite32(params_vdev, arg->eff_mat_5,
+				 CIF_IMG_EFF_MAT_5);
+		break;
+	case V4L2_COLORFX_BW:
+		eff_ctrl |= CIF_IMG_EFF_CTRL_MODE_BLACKWHITE;
+		break;
+	case V4L2_COLORFX_NEGATIVE:
+		eff_ctrl |= CIF_IMG_EFF_CTRL_MODE_NEGATIVE;
+		break;
+	default:
+		break;
+	}
+
+	rkisp1_iowrite32(params_vdev, eff_ctrl, CIF_IMG_EFF_CTRL);
+}
+
+static void ie_enable(struct rkisp1_isp_params_vdev *params_vdev, bool en)
+{
+	if (en) {
+		isp_param_set_bits(params_vdev, CIF_ICCL, CIF_ICCL_IE_CLK);
+		rkisp1_iowrite32(params_vdev, CIF_IMG_EFF_CTRL_ENABLE,
+				 CIF_IMG_EFF_CTRL);
+		isp_param_set_bits(params_vdev, CIF_IMG_EFF_CTRL,
+				   CIF_IMG_EFF_CTRL_CFG_UPD);
+	} else {
+		/* Disable measurement */
+		isp_param_clear_bits(params_vdev, CIF_IMG_EFF_CTRL,
+				     CIF_IMG_EFF_CTRL_ENABLE);
+		isp_param_clear_bits(params_vdev, CIF_ICCL, CIF_ICCL_IE_CLK);
+	}
+}
+
+static void csm_config(struct rkisp1_isp_params_vdev *params_vdev,
+		       bool full_range)
+{
+	static const u16 full_range_coeff[] = {
+		0x0026, 0x004b, 0x000f,
+		0x01ea, 0x01d6, 0x0040,
+		0x0040, 0x01ca, 0x01f6
+	};
+	static const u16 limited_range_coeff[] = {
+		0x0021, 0x0040, 0x000d,
+		0x01ed, 0x01db, 0x0038,
+		0x0038, 0x01d1, 0x01f7,
+	};
+	int i;
+
+	if (full_range) {
+		for (i = 0; i < ARRAY_SIZE(full_range_coeff); i++)
+			rkisp1_iowrite32(params_vdev, full_range_coeff[i],
+					 CIF_ISP_CC_COEFF_0 + i * 4);
+
+		isp_param_set_bits(params_vdev, CIF_ISP_CTRL,
+				   CIF_ISP_CTRL_ISP_CSM_Y_FULL_ENA |
+				   CIF_ISP_CTRL_ISP_CSM_C_FULL_ENA);
+	} else {
+		for (i = 0; i < ARRAY_SIZE(limited_range_coeff); i++)
+			rkisp1_iowrite32(params_vdev, limited_range_coeff[i],
+					 CIF_ISP_CC_COEFF_0 + i * 4);
+
+		isp_param_clear_bits(params_vdev, CIF_ISP_CTRL,
+				     CIF_ISP_CTRL_ISP_CSM_Y_FULL_ENA |
+				     CIF_ISP_CTRL_ISP_CSM_C_FULL_ENA);
+	}
+}
+
+/* ISP De-noise Pre-Filter(DPF) function */
+static void dpf_config(struct rkisp1_isp_params_vdev *params_vdev,
+		       const struct cifisp_dpf_config *arg)
+{
+	unsigned int isp_dpf_mode;
+	unsigned int spatial_coeff;
+	unsigned int i;
+
+	switch (arg->gain.mode) {
+	case CIFISP_DPF_GAIN_USAGE_NF_GAINS:
+		isp_dpf_mode = CIF_ISP_DPF_MODE_USE_NF_GAIN |
+				CIF_ISP_DPF_MODE_AWB_GAIN_COMP;
+		break;
+	case CIFISP_DPF_GAIN_USAGE_LSC_GAINS:
+		isp_dpf_mode = CIF_ISP_DPF_MODE_LSC_GAIN_COMP;
+		break;
+	case CIFISP_DPF_GAIN_USAGE_NF_LSC_GAINS:
+		isp_dpf_mode = CIF_ISP_DPF_MODE_USE_NF_GAIN |
+				CIF_ISP_DPF_MODE_AWB_GAIN_COMP |
+				CIF_ISP_DPF_MODE_LSC_GAIN_COMP;
+		break;
+	case CIFISP_DPF_GAIN_USAGE_AWB_GAINS:
+		isp_dpf_mode = CIF_ISP_DPF_MODE_AWB_GAIN_COMP;
+		break;
+	case CIFISP_DPF_GAIN_USAGE_AWB_LSC_GAINS:
+		isp_dpf_mode = CIF_ISP_DPF_MODE_LSC_GAIN_COMP |
+				CIF_ISP_DPF_MODE_AWB_GAIN_COMP;
+		break;
+	case CIFISP_DPF_GAIN_USAGE_DISABLED:
+	default:
+		isp_dpf_mode = 0;
+		break;
+	}
+
+	if (arg->nll.scale_mode == CIFISP_NLL_SCALE_LOGARITHMIC)
+		isp_dpf_mode |= CIF_ISP_DPF_MODE_NLL_SEGMENTATION;
+	if (arg->rb_flt.fltsize == CIFISP_DPF_RB_FILTERSIZE_9x9)
+		isp_dpf_mode |= CIF_ISP_DPF_MODE_RB_FLTSIZE_9x9;
+	if (!arg->rb_flt.r_enable)
+		isp_dpf_mode |= CIF_ISP_DPF_MODE_R_FLT_DIS;
+	if (!arg->rb_flt.b_enable)
+		isp_dpf_mode |= CIF_ISP_DPF_MODE_B_FLT_DIS;
+	if (!arg->g_flt.gb_enable)
+		isp_dpf_mode |= CIF_ISP_DPF_MODE_GB_FLT_DIS;
+	if (!arg->g_flt.gr_enable)
+		isp_dpf_mode |= CIF_ISP_DPF_MODE_GR_FLT_DIS;
+
+	isp_param_set_bits(params_vdev, CIF_ISP_DPF_MODE, isp_dpf_mode);
+	rkisp1_iowrite32(params_vdev, arg->gain.nf_b_gain,
+			 CIF_ISP_DPF_NF_GAIN_B);
+	rkisp1_iowrite32(params_vdev, arg->gain.nf_r_gain,
+			 CIF_ISP_DPF_NF_GAIN_R);
+	rkisp1_iowrite32(params_vdev, arg->gain.nf_gb_gain,
+			 CIF_ISP_DPF_NF_GAIN_GB);
+	rkisp1_iowrite32(params_vdev, arg->gain.nf_gr_gain,
+			 CIF_ISP_DPF_NF_GAIN_GR);
+
+	for (i = 0; i < CIFISP_DPF_MAX_NLF_COEFFS; i++) {
+		rkisp1_iowrite32(params_vdev, arg->nll.coeff[i],
+				 CIF_ISP_DPF_NULL_COEFF_0 + i * 4);
+	}
+
+	spatial_coeff = arg->g_flt.spatial_coeff[0] |
+			(arg->g_flt.spatial_coeff[1] << 8) |
+			(arg->g_flt.spatial_coeff[2] << 16) |
+			(arg->g_flt.spatial_coeff[3] << 24);
+	rkisp1_iowrite32(params_vdev, spatial_coeff,
+			 CIF_ISP_DPF_S_WEIGHT_G_1_4);
+
+	spatial_coeff = arg->g_flt.spatial_coeff[4] |
+			(arg->g_flt.spatial_coeff[5] << 8);
+	rkisp1_iowrite32(params_vdev, spatial_coeff,
+			 CIF_ISP_DPF_S_WEIGHT_G_5_6);
+
+	spatial_coeff = arg->rb_flt.spatial_coeff[0] |
+			(arg->rb_flt.spatial_coeff[1] << 8) |
+			(arg->rb_flt.spatial_coeff[2] << 16) |
+			(arg->rb_flt.spatial_coeff[3] << 24);
+	rkisp1_iowrite32(params_vdev, spatial_coeff,
+			 CIF_ISP_DPF_S_WEIGHT_RB_1_4);
+
+	spatial_coeff = arg->rb_flt.spatial_coeff[4] |
+			(arg->rb_flt.spatial_coeff[5] << 8);
+	rkisp1_iowrite32(params_vdev, spatial_coeff,
+			CIF_ISP_DPF_S_WEIGHT_RB_5_6);
+}
+
+static void dpf_strength_config(struct rkisp1_isp_params_vdev *params_vdev,
+				const struct cifisp_dpf_strength_config *arg)
+{
+	rkisp1_iowrite32(params_vdev, arg->b, CIF_ISP_DPF_STRENGTH_B);
+	rkisp1_iowrite32(params_vdev, arg->g, CIF_ISP_DPF_STRENGTH_G);
+	rkisp1_iowrite32(params_vdev, arg->r, CIF_ISP_DPF_STRENGTH_R);
+}
+
+static __maybe_unused
+void __isp_isr_other_config(struct rkisp1_isp_params_vdev *params_vdev,
+			    const struct rkisp1_isp_params_cfg *new_params)
+{
+	unsigned int module_en_update, module_cfg_update, module_ens;
+
+	module_en_update = new_params->module_en_update;
+	module_cfg_update = new_params->module_cfg_update;
+	module_ens = new_params->module_ens;
+
+	if ((module_en_update & CIFISP_MODULE_DPCC) ||
+	    (module_cfg_update & CIFISP_MODULE_DPCC)) {
+		/*update dpc config */
+		if ((module_cfg_update & CIFISP_MODULE_DPCC))
+			dpcc_config(params_vdev,
+				    &new_params->others.dpcc_config);
+
+		if (module_en_update & CIFISP_MODULE_DPCC) {
+			if (!!(module_ens & CIFISP_MODULE_DPCC))
+				isp_param_set_bits(params_vdev,
+						   CIF_ISP_DPCC_MODE,
+						   CIF_ISP_DPCC_ENA);
+			else
+				isp_param_clear_bits(params_vdev,
+						     CIF_ISP_DPCC_MODE,
+						     CIF_ISP_DPCC_ENA);
+		}
+	}
+
+	if ((module_en_update & CIFISP_MODULE_BLS) ||
+	    (module_cfg_update & CIFISP_MODULE_BLS)) {
+		/* update bls config */
+		if ((module_cfg_update & CIFISP_MODULE_BLS))
+			bls_config(params_vdev, &new_params->others.bls_config);
+
+		if (module_en_update & CIFISP_MODULE_BLS) {
+			if (!!(module_ens & CIFISP_MODULE_BLS))
+				isp_param_set_bits(params_vdev,
+						   CIF_ISP_BLS_CTRL,
+						   CIF_ISP_BLS_ENA);
+			else
+				isp_param_clear_bits(params_vdev,
+						     CIF_ISP_BLS_CTRL,
+						     CIF_ISP_BLS_ENA);
+		}
+	}
+
+	if ((module_en_update & CIFISP_MODULE_SDG) ||
+	    (module_cfg_update & CIFISP_MODULE_SDG)) {
+		/* update sdg config */
+		if ((module_cfg_update & CIFISP_MODULE_SDG))
+			sdg_config(params_vdev, &new_params->others.sdg_config);
+
+		if (module_en_update & CIFISP_MODULE_SDG) {
+			if (!!(module_ens & CIFISP_MODULE_SDG))
+				isp_param_set_bits(params_vdev,
+						CIF_ISP_CTRL,
+						CIF_ISP_CTRL_ISP_GAMMA_IN_ENA);
+			else
+				isp_param_clear_bits(params_vdev,
+						CIF_ISP_CTRL,
+						CIF_ISP_CTRL_ISP_GAMMA_IN_ENA);
+		}
+	}
+
+	if ((module_en_update & CIFISP_MODULE_LSC) ||
+	    (module_cfg_update & CIFISP_MODULE_LSC)) {
+		/* update lsc config */
+		if ((module_cfg_update & CIFISP_MODULE_LSC))
+			lsc_config(params_vdev, &new_params->others.lsc_config);
+
+		if (module_en_update & CIFISP_MODULE_LSC) {
+			if (!!(module_ens & CIFISP_MODULE_LSC))
+				isp_param_set_bits(params_vdev,
+						   CIF_ISP_LSC_CTRL,
+						   CIF_ISP_LSC_CTRL_ENA);
+			else
+				isp_param_clear_bits(params_vdev,
+						     CIF_ISP_LSC_CTRL,
+						     CIF_ISP_LSC_CTRL_ENA);
+		}
+	}
+
+	if ((module_en_update & CIFISP_MODULE_AWB_GAIN) ||
+	    (module_cfg_update & CIFISP_MODULE_AWB_GAIN)) {
+		/* update awb gains */
+		if ((module_cfg_update & CIFISP_MODULE_AWB_GAIN))
+			awb_gain_config(params_vdev,
+					&new_params->others.awb_gain_config);
+
+		if (module_en_update & CIFISP_MODULE_AWB_GAIN) {
+			if (!!(module_ens & CIFISP_MODULE_AWB_GAIN))
+				isp_param_set_bits(params_vdev,
+						   CIF_ISP_CTRL,
+						   CIF_ISP_CTRL_ISP_AWB_ENA);
+			else
+				isp_param_clear_bits(params_vdev,
+						     CIF_ISP_CTRL,
+						     CIF_ISP_CTRL_ISP_AWB_ENA);
+		}
+	}
+
+	if ((module_en_update & CIFISP_MODULE_BDM) ||
+	    (module_cfg_update & CIFISP_MODULE_BDM)) {
+		/* update bdm config */
+		if ((module_cfg_update & CIFISP_MODULE_BDM))
+			bdm_config(params_vdev, &new_params->others.bdm_config);
+
+		if (module_en_update & CIFISP_MODULE_BDM) {
+			if (!!(module_ens & CIFISP_MODULE_BDM))
+				isp_param_set_bits(params_vdev,
+						   CIF_ISP_DEMOSAIC,
+						   CIF_ISP_DEMOSAIC_BYPASS);
+			else
+				isp_param_clear_bits(params_vdev,
+						     CIF_ISP_DEMOSAIC,
+						     CIF_ISP_DEMOSAIC_BYPASS);
+		}
+	}
+
+	if ((module_en_update & CIFISP_MODULE_FLT) ||
+	    (module_cfg_update & CIFISP_MODULE_FLT)) {
+		/* update filter config */
+		if ((module_cfg_update & CIFISP_MODULE_FLT))
+			flt_config(params_vdev, &new_params->others.flt_config);
+
+		if (module_en_update & CIFISP_MODULE_FLT) {
+			if (!!(module_ens & CIFISP_MODULE_FLT))
+				isp_param_set_bits(params_vdev,
+						   CIF_ISP_FILT_MODE,
+						   CIF_ISP_FLT_ENA);
+			else
+				isp_param_clear_bits(params_vdev,
+						     CIF_ISP_FILT_MODE,
+						     CIF_ISP_FLT_ENA);
+		}
+	}
+
+	if ((module_en_update & CIFISP_MODULE_CTK) ||
+	    (module_cfg_update & CIFISP_MODULE_CTK)) {
+		/* update ctk config */
+		if ((module_cfg_update & CIFISP_MODULE_CTK))
+			ctk_config(params_vdev, &new_params->others.ctk_config);
+
+		if (module_en_update & CIFISP_MODULE_CTK)
+			ctk_enable(params_vdev,
+				   !!(module_ens & CIFISP_MODULE_CTK));
+	}
+
+	if ((module_en_update & CIFISP_MODULE_GOC) ||
+	    (module_cfg_update & CIFISP_MODULE_GOC)) {
+		/* update goc config */
+		if ((module_cfg_update & CIFISP_MODULE_CTK))
+			goc_config(params_vdev, &new_params->others.goc_config);
+
+		if (module_en_update & CIFISP_MODULE_GOC) {
+			if (!!(module_ens & CIFISP_MODULE_GOC))
+				isp_param_set_bits(params_vdev,
+						CIF_ISP_CTRL,
+						CIF_ISP_CTRL_ISP_GAMMA_OUT_ENA);
+			else
+				isp_param_clear_bits(params_vdev,
+						CIF_ISP_CTRL,
+						CIF_ISP_CTRL_ISP_GAMMA_OUT_ENA);
+		}
+	}
+
+	if ((module_en_update & CIFISP_MODULE_CPROC) ||
+	    (module_cfg_update & CIFISP_MODULE_CPROC)) {
+		/* update cprc config */
+		if ((module_cfg_update & CIFISP_MODULE_CPROC)) {
+			cproc_config(params_vdev,
+				     &new_params->others.cproc_config);
+			/* TODO: get range */
+			csm_config(params_vdev, true);
+		}
+
+		if (module_en_update & CIFISP_MODULE_CPROC) {
+			if (!!(module_ens & CIFISP_MODULE_CPROC))
+				isp_param_set_bits(params_vdev,
+						   CIF_C_PROC_CTRL,
+						   CIF_C_PROC_CTR_ENABLE);
+			else
+				isp_param_clear_bits(params_vdev,
+						   CIF_C_PROC_CTRL,
+						   CIF_C_PROC_CTR_ENABLE);
+		}
+	}
+
+	if ((module_en_update & CIFISP_MODULE_IE) ||
+	    (module_cfg_update & CIFISP_MODULE_IE)) {
+		/* update ie config */
+		if ((module_cfg_update & CIFISP_MODULE_IE))
+			ie_config(params_vdev, &new_params->others.ie_config);
+
+		if (module_en_update & CIFISP_MODULE_IE)
+			ie_enable(params_vdev,
+				   !!(module_ens & CIFISP_MODULE_IE));
+	}
+
+	if ((module_en_update & CIFISP_MODULE_DPF) ||
+	    (module_cfg_update & CIFISP_MODULE_DPF)) {
+		/* update dpf  config */
+		if ((module_cfg_update & CIFISP_MODULE_DPF))
+			dpf_config(params_vdev, &new_params->others.dpf_config);
+
+		if (module_en_update & CIFISP_MODULE_DPF) {
+			if (!!(module_ens & CIFISP_MODULE_DPF))
+				isp_param_set_bits(params_vdev,
+						   CIF_ISP_DPF_MODE,
+						   CIF_ISP_DPF_MODE_EN);
+			else
+				isp_param_clear_bits(params_vdev,
+						     CIF_ISP_DPF_MODE,
+						     CIF_ISP_DPF_MODE_EN);
+		}
+	}
+
+	if ((module_en_update & CIFISP_MODULE_DPF_STRENGTH) ||
+	    (module_cfg_update & CIFISP_MODULE_DPF_STRENGTH)) {
+		/* update dpf strength config */
+		dpf_strength_config(params_vdev,
+				    &new_params->others.dpf_strength_config);
+	}
+}
+
+static __maybe_unused
+void __isp_isr_meas_config(struct rkisp1_isp_params_vdev *params_vdev,
+			   struct  rkisp1_isp_params_cfg *new_params)
+{
+	unsigned int module_en_update, module_cfg_update, module_ens;
+
+	module_en_update = new_params->module_en_update;
+	module_cfg_update = new_params->module_cfg_update;
+	module_ens = new_params->module_ens;
+
+	if ((module_en_update & CIFISP_MODULE_AWB) ||
+	    (module_cfg_update & CIFISP_MODULE_AWB)) {
+		/* update awb config */
+		if ((module_cfg_update & CIFISP_MODULE_AWB))
+			awb_meas_config(params_vdev,
+					&new_params->meas.awb_meas_config);
+
+		if (module_en_update & CIFISP_MODULE_AWB)
+			awb_meas_enable(params_vdev,
+					&new_params->meas.awb_meas_config,
+					!!(module_ens & CIFISP_MODULE_AWB));
+	}
+
+	if ((module_en_update & CIFISP_MODULE_AFC) ||
+	    (module_cfg_update & CIFISP_MODULE_AFC)) {
+		/* update afc config */
+		if ((module_cfg_update & CIFISP_MODULE_AFC))
+			afm_config(params_vdev, &new_params->meas.afc_config);
+
+		if (module_en_update & CIFISP_MODULE_AFC) {
+			if (!!(module_ens & CIFISP_MODULE_AFC))
+				isp_param_set_bits(params_vdev,
+						   CIF_ISP_AFM_CTRL,
+						   CIF_ISP_AFM_ENA);
+			else
+				isp_param_clear_bits(params_vdev,
+						     CIF_ISP_AFM_CTRL,
+						     CIF_ISP_AFM_ENA);
+		}
+	}
+
+	if ((module_en_update & CIFISP_MODULE_HST) ||
+	    (module_cfg_update & CIFISP_MODULE_HST)) {
+		/* update hst config */
+		if ((module_cfg_update & CIFISP_MODULE_HST))
+			hst_config(params_vdev, &new_params->meas.hst_config);
+
+		if (module_en_update & CIFISP_MODULE_HST)
+			hst_enable(params_vdev,
+				   &new_params->meas.hst_config,
+				   !!(module_ens & CIFISP_MODULE_HST));
+	}
+
+	if ((module_en_update & CIFISP_MODULE_AEC) ||
+	    (module_cfg_update & CIFISP_MODULE_AEC)) {
+		/* update aec config */
+		if ((module_cfg_update & CIFISP_MODULE_AEC))
+			aec_config(params_vdev, &new_params->meas.aec_config);
+
+		if (module_en_update & CIFISP_MODULE_AEC) {
+			if (!!(module_ens & CIFISP_MODULE_AEC))
+				isp_param_set_bits(params_vdev,
+						   CIF_ISP_EXP_CTRL,
+						   CIF_ISP_EXP_ENA);
+			else
+				isp_param_clear_bits(params_vdev,
+						     CIF_ISP_EXP_CTRL,
+						     CIF_ISP_EXP_ENA);
+		}
+	}
+}
+
+void rkisp1_params_isr(struct rkisp1_isp_params_vdev *params_vdev, u32 isp_mis)
+{
+	struct rkisp1_isp_params_cfg *new_params;
+	struct rkisp1_buffer *cur_buf = NULL;
+
+	spin_lock(&params_vdev->config_lock);
+	if (!params_vdev->streamon) {
+		spin_unlock(&params_vdev->config_lock);
+		return;
+	}
+
+	/* get one empty buffer */
+	if (!list_empty(&params_vdev->params))
+		cur_buf = list_first_entry(&params_vdev->params,
+					   struct rkisp1_buffer, queue);
+	spin_unlock(&params_vdev->config_lock);
+
+	if (!cur_buf)
+		return;
+
+	new_params = (struct rkisp1_isp_params_cfg *)(cur_buf->vaddr[0]);
+
+	if (isp_mis & CIF_ISP_FRAME) {
+		/* __isp_isr_other_config(params_vdev, new_params); */
+		/* __isp_isr_meas_config(params_vdev, new_params); */
+		spin_lock(&params_vdev->config_lock);
+		list_del(&cur_buf->queue);
+		spin_unlock(&params_vdev->config_lock);
+		vb2_buffer_done(&cur_buf->vb.vb2_buf, VB2_BUF_STATE_DONE);
+	}
+}
+
+static const struct cifisp_awb_meas_config awb_params_default_config = {
+	{
+		0, 0, RKISP1_DEFAULT_WIDTH, RKISP1_DEFAULT_HEIGHT
+	},
+	CIFISP_AWB_MODE_YCBCR, 200, 30, 20, 20, 0, 128, 128
+};
+
+static const struct cifisp_aec_config aec_params_default_config = {
+	CIFISP_EXP_MEASURING_MODE_0,
+	CIFISP_EXP_CTRL_AUTOSTOP_0,
+	{
+		RKISP1_DEFAULT_WIDTH >> 2, RKISP1_DEFAULT_HEIGHT >> 2,
+		RKISP1_DEFAULT_WIDTH >> 1, RKISP1_DEFAULT_HEIGHT >> 1
+	}
+};
+
+static const struct cifisp_hst_config hst_params_default_config = {
+	CIFISP_HISTOGRAM_MODE_RGB_COMBINED,
+	3,
+	{
+		RKISP1_DEFAULT_WIDTH >> 2, RKISP1_DEFAULT_HEIGHT >> 2,
+		RKISP1_DEFAULT_WIDTH >> 1, RKISP1_DEFAULT_HEIGHT >> 1
+	},
+	{
+		0, /* To be filled in with 0x01 at runtime. */
+	}
+};
+
+static const struct cifisp_afc_config afc_params_default_config = {
+	1,
+	{
+		{
+			300, 225, 200, 150
+		}
+	},
+	4,
+	14
+};
+
+static
+void rkisp1_params_config_parameter(struct rkisp1_isp_params_vdev *params_vdev)
+{
+	struct cifisp_hst_config hst = hst_params_default_config;
+
+	spin_lock(&params_vdev->config_lock);
+
+	awb_meas_config(params_vdev, &awb_params_default_config);
+	awb_meas_enable(params_vdev, &awb_params_default_config, true);
+
+	aec_config(params_vdev, &aec_params_default_config);
+	isp_param_set_bits(params_vdev, CIF_ISP_EXP_CTRL, CIF_ISP_EXP_ENA);
+
+	afm_config(params_vdev, &afc_params_default_config);
+	isp_param_set_bits(params_vdev, CIF_ISP_AFM_CTRL, CIF_ISP_AFM_ENA);
+
+	memset(hst.hist_weight, 0x01, sizeof(hst.hist_weight));
+	hst_config(params_vdev, &hst);
+	isp_param_set_bits(params_vdev, CIF_ISP_HIST_PROP,
+			   ~CIF_ISP_HIST_PROP_MODE_MASK |
+			   hst_params_default_config.mode);
+
+	spin_unlock(&params_vdev->config_lock);
+}
+
+/* Not called when the camera active, thus not isr protection. */
+void rkisp1_configure_isp(struct rkisp1_isp_params_vdev *params_vdev,
+			  struct ispsd_in_fmt *in_fmt,
+			  enum v4l2_quantization quantization)
+{
+	/*TODO: default config ?  */
+	rkisp1_params_config_parameter(params_vdev);
+}
+
+/* Not called when the camera active, thus not isr protection. */
+void rkisp1_disable_isp(struct rkisp1_isp_params_vdev *params_vdev)
+{
+	isp_param_clear_bits(params_vdev, CIF_ISP_DPCC_MODE, CIF_ISP_DPCC_ENA);
+	isp_param_clear_bits(params_vdev, CIF_ISP_LSC_CTRL,
+			     CIF_ISP_LSC_CTRL_ENA);
+	isp_param_clear_bits(params_vdev, CIF_ISP_BLS_CTRL, CIF_ISP_BLS_ENA);
+	isp_param_clear_bits(params_vdev, CIF_ISP_CTRL,
+			     CIF_ISP_CTRL_ISP_GAMMA_IN_ENA);
+	isp_param_clear_bits(params_vdev, CIF_ISP_CTRL,
+			     CIF_ISP_CTRL_ISP_GAMMA_OUT_ENA);
+	isp_param_clear_bits(params_vdev, CIF_ISP_DEMOSAIC,
+			     CIF_ISP_DEMOSAIC_BYPASS);
+	isp_param_clear_bits(params_vdev, CIF_ISP_FILT_MODE, CIF_ISP_FLT_ENA);
+	awb_meas_enable(params_vdev, NULL, false);
+	isp_param_clear_bits(params_vdev, CIF_ISP_CTRL,
+			     CIF_ISP_CTRL_ISP_AWB_ENA);
+	isp_param_clear_bits(params_vdev, CIF_ISP_EXP_CTRL, CIF_ISP_EXP_ENA);
+	ctk_enable(params_vdev, false);
+	isp_param_clear_bits(params_vdev, CIF_C_PROC_CTRL,
+			     CIF_C_PROC_CTR_ENABLE);
+	hst_enable(params_vdev, NULL, false);
+	isp_param_clear_bits(params_vdev, CIF_ISP_AFM_CTRL, CIF_ISP_AFM_ENA);
+	ie_enable(params_vdev, false);
+	isp_param_clear_bits(params_vdev, CIF_ISP_DPF_MODE,
+			     CIF_ISP_DPF_MODE_EN);
+}
+
+/* TODO: should add RKISP1_PARAMS_FMT pixel format  to V4L2 framework ? */
+static int rkisp1_params_enum_fmt_meta_out(struct file *file, void *priv,
+					   struct v4l2_fmtdesc *f)
+{
+	struct video_device *video = video_devdata(file);
+	struct rkisp1_isp_params_vdev *params_vdev = video_get_drvdata(video);
+
+	if (f->index > 0 || f->type != video->queue->type)
+		return -EINVAL;
+
+	f->pixelformat = params_vdev->vdev_fmt.fmt.meta.dataformat;
+
+	return 0;
+}
+
+static int rkisp1_params_g_fmt_meta_out(struct file *file, void *fh,
+					struct v4l2_format *f)
+{
+	struct video_device *video = video_devdata(file);
+	struct rkisp1_isp_params_vdev *params_vdev = video_get_drvdata(video);
+	struct v4l2_meta_format *meta = &f->fmt.meta;
+
+	if (f->type != video->queue->type)
+		return -EINVAL;
+
+	memset(meta, 0, sizeof(*meta));
+	meta->dataformat = params_vdev->vdev_fmt.fmt.meta.dataformat;
+	meta->buffersize = params_vdev->vdev_fmt.fmt.meta.buffersize;
+
+	return 0;
+}
+
+static int rkisp1_params_querycap(struct file *file,
+				  void *priv, struct v4l2_capability *cap)
+{
+	struct video_device *vdev = video_devdata(file);
+
+	strcpy(cap->driver, DRIVER_NAME);
+	strlcpy(cap->card, vdev->name, sizeof(cap->card));
+	strlcpy(cap->bus_info, "platform: " DRIVER_NAME, sizeof(cap->bus_info));
+
+	return 0;
+}
+
+/* ISP params video device IOCTLs */
+static const struct v4l2_ioctl_ops rkisp1_params_ioctl = {
+	.vidioc_reqbufs = vb2_ioctl_reqbufs,
+	.vidioc_querybuf = vb2_ioctl_querybuf,
+	.vidioc_create_bufs = vb2_ioctl_create_bufs,
+	.vidioc_qbuf = vb2_ioctl_qbuf,
+	.vidioc_dqbuf = vb2_ioctl_dqbuf,
+	.vidioc_prepare_buf = vb2_ioctl_prepare_buf,
+	.vidioc_expbuf = vb2_ioctl_expbuf,
+	.vidioc_streamon = vb2_ioctl_streamon,
+	.vidioc_streamoff = vb2_ioctl_streamoff,
+	.vidioc_enum_fmt_meta_out = rkisp1_params_enum_fmt_meta_out,
+	.vidioc_g_fmt_meta_out = rkisp1_params_g_fmt_meta_out,
+	.vidioc_s_fmt_meta_out = rkisp1_params_g_fmt_meta_out,
+	.vidioc_try_fmt_meta_out = rkisp1_params_g_fmt_meta_out,
+	.vidioc_querycap = rkisp1_params_querycap
+};
+
+static int rkisp1_params_vb2_queue_setup(struct vb2_queue *vq,
+					 unsigned int *num_buffers,
+					 unsigned int *num_planes,
+					 unsigned int sizes[],
+					 struct device *alloc_devs[])
+{
+	struct rkisp1_isp_params_vdev *params_vdev = vq->drv_priv;
+
+	*num_buffers = clamp_t(u32, *num_buffers,
+			       RKISP1_ISP_PARAMS_REQ_BUFS_MIN,
+			       RKISP1_ISP_PARAMS_REQ_BUFS_MAX);
+
+	*num_planes = 1;
+
+	sizes[0] = sizeof(struct rkisp1_isp_params_cfg);
+
+	INIT_LIST_HEAD(&params_vdev->params);
+	params_vdev->first_params = true;
+
+	return 0;
+}
+
+static void rkisp1_params_vb2_buf_queue(struct vb2_buffer *vb)
+{
+	struct vb2_v4l2_buffer *vbuf = to_vb2_v4l2_buffer(vb);
+	struct rkisp1_buffer *params_buf = to_rkisp1_buffer(vbuf);
+	struct vb2_queue *vq = vb->vb2_queue;
+	struct rkisp1_isp_params_vdev *params_vdev = vq->drv_priv;
+	struct rkisp1_isp_params_cfg *new_params;
+	unsigned long flags;
+
+	if (params_vdev->first_params) {
+		new_params = (struct rkisp1_isp_params_cfg *)
+			(vb2_plane_vaddr(vb, 0));
+		spin_lock_irqsave(&params_vdev->config_lock, flags);
+		/* __isp_isr_other_config(params_vdev, new_params); */
+		/* __isp_isr_meas_config(params_vdev, new_params); */
+		spin_unlock_irqrestore(&params_vdev->config_lock, flags);
+		vb2_buffer_done(&params_buf->vb.vb2_buf, VB2_BUF_STATE_DONE);
+		params_vdev->first_params = false;
+		params_vdev->cur_params = *new_params;
+		return;
+	}
+
+	params_buf->vaddr[0] = vb2_plane_vaddr(vb, 0);
+	spin_lock_irqsave(&params_vdev->config_lock, flags);
+	list_add_tail(&params_buf->queue, &params_vdev->params);
+	spin_unlock_irqrestore(&params_vdev->config_lock, flags);
+}
+
+static void rkisp1_params_vb2_stop_streaming(struct vb2_queue *vq)
+{
+	struct rkisp1_isp_params_vdev *params_vdev = vq->drv_priv;
+	struct rkisp1_buffer *buf;
+	unsigned long flags;
+	int i;
+
+	/* stop params input firstly */
+	spin_lock_irqsave(&params_vdev->config_lock, flags);
+	params_vdev->streamon = false;
+	spin_unlock_irqrestore(&params_vdev->config_lock, flags);
+
+	for (i = 0; i < RKISP1_ISP_PARAMS_REQ_BUFS_MAX; i++) {
+		spin_lock_irqsave(&params_vdev->config_lock, flags);
+		if (!list_empty(&params_vdev->params)) {
+			buf = list_first_entry(&params_vdev->params,
+					       struct rkisp1_buffer, queue);
+			list_del(&buf->queue);
+			spin_unlock_irqrestore(&params_vdev->config_lock,
+					       flags);
+		} else {
+			spin_unlock_irqrestore(&params_vdev->config_lock,
+					       flags);
+			break;
+		}
+
+		if (buf)
+			vb2_buffer_done(&buf->vb.vb2_buf, VB2_BUF_STATE_ERROR);
+		buf = NULL;
+	}
+}
+
+static int
+rkisp1_params_vb2_start_streaming(struct vb2_queue *queue, unsigned int count)
+{
+	struct rkisp1_isp_params_vdev *params_vdev = queue->drv_priv;
+	unsigned long flags;
+
+	spin_lock_irqsave(&params_vdev->config_lock, flags);
+	params_vdev->streamon = true;
+	spin_unlock_irqrestore(&params_vdev->config_lock, flags);
+
+	return 0;
+}
+
+static struct vb2_ops rkisp1_params_vb2_ops = {
+	.queue_setup = rkisp1_params_vb2_queue_setup,
+	.wait_prepare = vb2_ops_wait_prepare,
+	.wait_finish = vb2_ops_wait_finish,
+	.buf_queue = rkisp1_params_vb2_buf_queue,
+	.start_streaming = rkisp1_params_vb2_start_streaming,
+	.stop_streaming = rkisp1_params_vb2_stop_streaming,
+
+};
+
+struct v4l2_file_operations rkisp1_params_fops = {
+	.mmap = vb2_fop_mmap,
+	.unlocked_ioctl = video_ioctl2,
+	.poll = vb2_fop_poll,
+	.open = v4l2_fh_open,
+	.release = vb2_fop_release
+};
+
+static int
+rkisp1_params_init_vb2_queue(struct vb2_queue *q,
+			     struct rkisp1_isp_params_vdev *params_vdev)
+{
+	struct rkisp1_vdev_node *node;
+
+	node = queue_to_node(q);
+
+	q->type = V4L2_BUF_TYPE_META_OUTPUT;
+	q->io_modes = VB2_MMAP | VB2_USERPTR;
+	q->drv_priv = params_vdev;
+	q->ops = &rkisp1_params_vb2_ops;
+	q->mem_ops = &vb2_vmalloc_memops;
+	q->buf_struct_size = sizeof(struct rkisp1_buffer);
+	q->timestamp_flags = V4L2_BUF_FLAG_TIMESTAMP_MONOTONIC;
+	q->lock = &node->vlock;
+
+	return vb2_queue_init(q);
+}
+
+static void rkisp1_init_params_vdev(struct rkisp1_isp_params_vdev *params_vdev)
+{
+	params_vdev->vdev_fmt.fmt.meta.dataformat =
+		V4L2_META_FMT_RK_ISP1_PARAMS;
+	params_vdev->vdev_fmt.fmt.meta.buffersize =
+		sizeof(struct rkisp1_isp_params_cfg);
+}
+
+int rkisp1_register_params_vdev(struct rkisp1_isp_params_vdev *params_vdev,
+				struct v4l2_device *v4l2_dev,
+				struct rkisp1_device *dev)
+{
+	int ret;
+	struct rkisp1_vdev_node *node = &params_vdev->vnode;
+	struct video_device *vdev = &node->vdev;
+
+	params_vdev->dev = dev;
+	mutex_init(&node->vlock);
+	spin_lock_init(&params_vdev->config_lock);
+
+	strlcpy(vdev->name, "rkisp1-input-params", sizeof(vdev->name));
+
+	video_set_drvdata(vdev, params_vdev);
+	vdev->ioctl_ops = &rkisp1_params_ioctl;
+	vdev->fops = &rkisp1_params_fops;
+	vdev->release = video_device_release_empty;
+	/*
+	 * Provide a mutex to v4l2 core. It will be used
+	 * to protect all fops and v4l2 ioctls.
+	 */
+	vdev->lock = &node->vlock;
+	vdev->v4l2_dev = v4l2_dev;
+	vdev->queue = &node->buf_queue;
+	vdev->device_caps = V4L2_CAP_STREAMING | V4L2_CAP_META_OUTPUT;
+	vdev->vfl_dir = VFL_DIR_TX;
+	rkisp1_params_init_vb2_queue(vdev->queue, params_vdev);
+	rkisp1_init_params_vdev(params_vdev);
+	video_set_drvdata(vdev, params_vdev);
+
+	node->pad.flags = MEDIA_PAD_FL_SOURCE;
+	vdev->entity.function = MEDIA_ENT_F_IO_V4L;
+	ret = media_entity_pads_init(&vdev->entity, 1, &node->pad);
+	if (ret < 0)
+		goto err_release_queue;
+	ret = video_register_device(vdev, VFL_TYPE_GRABBER, -1);
+	if (ret < 0) {
+		dev_err(&vdev->dev,
+			"could not register Video for Linux device\n");
+		goto err_cleanup_media_entity;
+	}
+	return 0;
+err_cleanup_media_entity:
+	media_entity_cleanup(&vdev->entity);
+err_release_queue:
+	vb2_queue_release(vdev->queue);
+	return ret;
+}
+
+void rkisp1_unregister_params_vdev(struct rkisp1_isp_params_vdev *params_vdev)
+{
+	struct rkisp1_vdev_node *node = &params_vdev->vnode;
+	struct video_device *vdev = &node->vdev;
+
+	video_unregister_device(vdev);
+	media_entity_cleanup(&vdev->entity);
+	vb2_queue_release(vdev->queue);
+}
diff --git a/drivers/media/platform/rockchip/isp1/isp_params.h b/drivers/media/platform/rockchip/isp1/isp_params.h
new file mode 100644
index 000000000000..87604dc370bd
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/isp_params.h
@@ -0,0 +1,81 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#ifndef _RKISP1_ISP_H
+#define _RKISP1_ISP_H
+
+#include <linux/rkisp1-config.h>
+#include "common.h"
+
+struct rkisp1_device;
+
+struct rkisp1_isp_params_vdev {
+	struct rkisp1_vdev_node vnode;
+	struct rkisp1_device *dev;
+
+	/* Current ISP parameters */
+	spinlock_t config_lock;
+	struct list_head params;
+	struct rkisp1_isp_params_cfg cur_params;
+	struct v4l2_format vdev_fmt;
+	bool streamon;
+	bool first_params;
+
+	bool rkisp1_ism_cropping;
+	enum v4l2_quantization quantization;
+	enum rkisp1_fmt_raw_pat_type raw_type;
+
+	/* input resolution needed for LSC param check */
+	unsigned int isp_acq_width;
+	unsigned int isp_acq_height;
+	unsigned int active_lsc_width;
+	unsigned int active_lsc_height;
+
+};
+
+/* config params before ISP streaming */
+void rkisp1_configure_isp(struct rkisp1_isp_params_vdev *params_vdev,
+			  struct ispsd_in_fmt *in_fmt,
+			  enum v4l2_quantization quantization);
+void rkisp1_disable_isp(struct rkisp1_isp_params_vdev *params_vdev);
+
+int rkisp1_register_params_vdev(struct rkisp1_isp_params_vdev *params_vdev,
+				struct v4l2_device *v4l2_dev,
+				struct rkisp1_device *dev);
+
+void rkisp1_unregister_params_vdev(struct rkisp1_isp_params_vdev *params_vdev);
+
+void rkisp1_params_isr(struct rkisp1_isp_params_vdev *params_vdev, u32 isp_mis);
+
+#endif /* _RKISP1_ISP_H */
diff --git a/drivers/media/platform/rockchip/isp1/isp_stats.c b/drivers/media/platform/rockchip/isp1/isp_stats.c
new file mode 100644
index 000000000000..afa2579a1241
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/isp_stats.c
@@ -0,0 +1,537 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#include <media/v4l2-common.h>
+#include <media/v4l2-ioctl.h>
+#include <media/videobuf2-core.h>
+#include <media/videobuf2-vmalloc.h>	/* for ISP statistics */
+#include "regs.h"
+#include "isp_stats.h"
+#include "isp_params.h"
+#include "rkisp1.h"
+
+#define RKISP1_ISP_STATS_REQ_BUFS_MIN 2
+#define RKISP1_ISP_STATS_REQ_BUFS_MAX 8
+
+static int rkisp1_stats_enum_fmt_meta_cap(struct file *file, void *priv,
+					  struct v4l2_fmtdesc *f)
+{
+	struct video_device *video = video_devdata(file);
+	struct rkisp1_isp_stats_vdev *stats_vdev = video_get_drvdata(video);
+
+	if (f->index > 0 || f->type != video->queue->type)
+		return -EINVAL;
+
+	f->pixelformat = stats_vdev->vdev_fmt.fmt.meta.dataformat;
+	return 0;
+}
+
+static int rkisp1_stats_g_fmt_meta_cap(struct file *file, void *priv,
+				       struct v4l2_format *f)
+{
+	struct video_device *video = video_devdata(file);
+	struct rkisp1_isp_stats_vdev *stats_vdev = video_get_drvdata(video);
+	struct v4l2_meta_format *meta = &f->fmt.meta;
+
+	if (f->type != video->queue->type)
+		return -EINVAL;
+
+	memset(meta, 0, sizeof(*meta));
+	meta->dataformat = stats_vdev->vdev_fmt.fmt.meta.dataformat;
+	meta->buffersize = stats_vdev->vdev_fmt.fmt.meta.buffersize;
+
+	return 0;
+}
+
+static int rkisp1_stats_querycap(struct file *file,
+				 void *priv, struct v4l2_capability *cap)
+{
+	struct video_device *vdev = video_devdata(file);
+
+	strcpy(cap->driver, DRIVER_NAME);
+	strlcpy(cap->card, vdev->name, sizeof(cap->card));
+	strlcpy(cap->bus_info, "platform: " DRIVER_NAME, sizeof(cap->bus_info));
+
+	return 0;
+}
+
+/* ISP video device IOCTLs */
+static const struct v4l2_ioctl_ops rkisp1_stats_ioctl = {
+	.vidioc_reqbufs = vb2_ioctl_reqbufs,
+	.vidioc_querybuf = vb2_ioctl_querybuf,
+	.vidioc_create_bufs = vb2_ioctl_create_bufs,
+	.vidioc_qbuf = vb2_ioctl_qbuf,
+	.vidioc_dqbuf = vb2_ioctl_dqbuf,
+	.vidioc_prepare_buf = vb2_ioctl_prepare_buf,
+	.vidioc_expbuf = vb2_ioctl_expbuf,
+	.vidioc_streamon = vb2_ioctl_streamon,
+	.vidioc_streamoff = vb2_ioctl_streamoff,
+	.vidioc_enum_fmt_meta_cap = rkisp1_stats_enum_fmt_meta_cap,
+	.vidioc_g_fmt_meta_cap = rkisp1_stats_g_fmt_meta_cap,
+	.vidioc_s_fmt_meta_cap = rkisp1_stats_g_fmt_meta_cap,
+	.vidioc_try_fmt_meta_cap = rkisp1_stats_g_fmt_meta_cap,
+	.vidioc_querycap = rkisp1_stats_querycap
+};
+
+struct v4l2_file_operations rkisp1_stats_fops = {
+	.mmap = vb2_fop_mmap,
+	.unlocked_ioctl = video_ioctl2,
+	.poll = vb2_fop_poll,
+	.open = v4l2_fh_open,
+	.release = vb2_fop_release
+};
+
+static int rkisp1_stats_vb2_queue_setup(struct vb2_queue *vq,
+					unsigned int *num_buffers,
+					unsigned int *num_planes,
+					unsigned int sizes[],
+					struct device *alloc_devs[])
+{
+	struct rkisp1_isp_stats_vdev *stats_vdev = vq->drv_priv;
+
+	*num_planes = 1;
+
+	*num_buffers = clamp_t(u32, *num_buffers, RKISP1_ISP_STATS_REQ_BUFS_MIN,
+			       RKISP1_ISP_STATS_REQ_BUFS_MAX);
+
+	sizes[0] = sizeof(struct rkisp1_stat_buffer);
+
+	INIT_LIST_HEAD(&stats_vdev->stat);
+
+	return 0;
+}
+
+static void rkisp1_stats_vb2_buf_queue(struct vb2_buffer *vb)
+{
+	struct vb2_v4l2_buffer *vbuf = to_vb2_v4l2_buffer(vb);
+	struct rkisp1_buffer *stats_buf = to_rkisp1_buffer(vbuf);
+	struct vb2_queue *vq = vb->vb2_queue;
+	struct rkisp1_isp_stats_vdev *stats_dev = vq->drv_priv;
+	unsigned long flags;
+
+	stats_buf->vaddr[0] = vb2_plane_vaddr(vb, 0);
+	spin_lock_irqsave(&stats_dev->irq_lock, flags);
+	list_add_tail(&stats_buf->queue, &stats_dev->stat);
+	spin_unlock_irqrestore(&stats_dev->irq_lock, flags);
+}
+
+static void rkisp1_stats_vb2_stop_streaming(struct vb2_queue *vq)
+{
+	struct rkisp1_isp_stats_vdev *stats_vdev = vq->drv_priv;
+	struct rkisp1_buffer *buf;
+	unsigned long flags;
+	int i;
+
+	/* stop stats received firstly */
+	spin_lock_irqsave(&stats_vdev->irq_lock, flags);
+	stats_vdev->streamon = false;
+	spin_unlock_irqrestore(&stats_vdev->irq_lock, flags);
+
+	drain_workqueue(stats_vdev->readout_wq);
+
+	for (i = 0; i < RKISP1_ISP_STATS_REQ_BUFS_MAX; i++) {
+		spin_lock_irqsave(&stats_vdev->irq_lock, flags);
+		if (!list_empty(&stats_vdev->stat)) {
+			buf = list_first_entry(&stats_vdev->stat,
+					       struct rkisp1_buffer, queue);
+			list_del(&buf->queue);
+			spin_unlock_irqrestore(&stats_vdev->irq_lock, flags);
+		} else {
+			spin_unlock_irqrestore(&stats_vdev->irq_lock, flags);
+			break;
+		}
+
+		if (buf)
+			vb2_buffer_done(&buf->vb.vb2_buf, VB2_BUF_STATE_ERROR);
+		buf = NULL;
+	}
+}
+
+static int
+rkisp1_stats_vb2_start_streaming(struct vb2_queue *queue,
+				 unsigned int count)
+{
+	struct rkisp1_isp_stats_vdev *stats_vdev = queue->drv_priv;
+	unsigned long flags;
+
+	spin_lock_irqsave(&stats_vdev->irq_lock, flags);
+	stats_vdev->streamon = true;
+	spin_unlock_irqrestore(&stats_vdev->irq_lock, flags);
+
+	return 0;
+}
+
+static struct vb2_ops rkisp1_stats_vb2_ops = {
+	.queue_setup = rkisp1_stats_vb2_queue_setup,
+	.buf_queue = rkisp1_stats_vb2_buf_queue,
+	.wait_prepare = vb2_ops_wait_prepare,
+	.wait_finish = vb2_ops_wait_finish,
+	.stop_streaming = rkisp1_stats_vb2_stop_streaming,
+	.start_streaming = rkisp1_stats_vb2_start_streaming,
+};
+
+static int rkisp1_stats_init_vb2_queue(struct vb2_queue *q,
+				       struct rkisp1_isp_stats_vdev *stats_vdev)
+{
+	struct rkisp1_vdev_node *node;
+
+	node = queue_to_node(q);
+
+	q->type = V4L2_BUF_TYPE_META_CAPTURE;
+	q->io_modes = VB2_MMAP | VB2_USERPTR;
+	q->drv_priv = stats_vdev;
+	q->ops = &rkisp1_stats_vb2_ops;
+	q->mem_ops = &vb2_vmalloc_memops;
+	q->buf_struct_size = sizeof(struct rkisp1_buffer);
+	q->timestamp_flags = V4L2_BUF_FLAG_TIMESTAMP_MONOTONIC;
+	q->lock = &node->vlock;
+
+	return vb2_queue_init(q);
+}
+
+static void rkisp1_stats_get_awb_meas(struct rkisp1_isp_stats_vdev *stats_vdev,
+				      struct rkisp1_stat_buffer *pbuf)
+{
+	/* Protect against concurrent access from ISR? */
+	u32 reg_val;
+
+	pbuf->meas_type |= CIFISP_STAT_AWB;
+	reg_val = readl(stats_vdev->dev->base_addr + CIF_ISP_AWB_WHITE_CNT);
+	pbuf->params.awb.awb_mean[0].cnt = CIF_ISP_AWB_GET_PIXEL_CNT(reg_val);
+	reg_val = readl(stats_vdev->dev->base_addr + CIF_ISP_AWB_MEAN);
+
+	pbuf->params.awb.awb_mean[0].mean_cr_or_r =
+		CIF_ISP_AWB_GET_MEAN_CR_R(reg_val);
+	pbuf->params.awb.awb_mean[0].mean_cb_or_b =
+		CIF_ISP_AWB_GET_MEAN_CB_B(reg_val);
+	pbuf->params.awb.awb_mean[0].mean_y_or_g =
+		CIF_ISP_AWB_GET_MEAN_Y_G(reg_val);
+}
+
+static void rkisp1_stats_get_aec_meas(struct rkisp1_isp_stats_vdev *stats_vdev,
+				      struct rkisp1_stat_buffer *pbuf)
+{
+	unsigned int i;
+	void __iomem *addr = stats_vdev->dev->base_addr + CIF_ISP_EXP_MEAN_00;
+
+	pbuf->meas_type |= CIFISP_STAT_AUTOEXP;
+	for (i = 0; i < CIFISP_AE_MEAN_MAX; i++)
+		pbuf->params.ae.exp_mean[i] = (u8)readl(addr + i * 4);
+}
+
+static void rkisp1_stats_get_afc_meas(struct rkisp1_isp_stats_vdev *stats_vdev,
+				      struct rkisp1_stat_buffer *pbuf)
+{
+	pbuf->meas_type = CIFISP_STAT_AFM_FIN;
+
+	pbuf->params.af.window[0].sum =
+		readl(stats_vdev->dev->base_addr + CIF_ISP_AFM_SUM_A);
+	pbuf->params.af.window[0].lum =
+		readl(stats_vdev->dev->base_addr + CIF_ISP_AFM_LUM_A);
+	pbuf->params.af.window[1].sum =
+		readl(stats_vdev->dev->base_addr + CIF_ISP_AFM_SUM_B);
+	pbuf->params.af.window[1].lum =
+		readl(stats_vdev->dev->base_addr + CIF_ISP_AFM_LUM_B);
+	pbuf->params.af.window[2].sum =
+		readl(stats_vdev->dev->base_addr + CIF_ISP_AFM_SUM_C);
+	pbuf->params.af.window[2].lum =
+		readl(stats_vdev->dev->base_addr + CIF_ISP_AFM_LUM_C);
+}
+
+static void rkisp1_stats_get_hst_meas(struct rkisp1_isp_stats_vdev *stats_vdev,
+				      struct rkisp1_stat_buffer *pbuf)
+{
+	int i;
+	void __iomem *addr = stats_vdev->dev->base_addr + CIF_ISP_HIST_BIN_0;
+
+	pbuf->meas_type |= CIFISP_STAT_HIST;
+	for (i = 0; i < CIFISP_HIST_BIN_N_MAX; i++)
+		pbuf->params.hist.hist_bins[i] = readl(addr + (i * 4));
+}
+
+static void rkisp1_stats_get_bls_meas(struct rkisp1_isp_stats_vdev *stats_vdev,
+				      struct rkisp1_stat_buffer *pbuf)
+{
+	struct rkisp1_device *dev = stats_vdev->dev;
+	struct rkisp1_isp_subdev *sd = &dev->isp_sdev;
+	const struct ispsd_in_fmt *in_fmt = &sd->in_fmt;
+	void __iomem *base = stats_vdev->dev->base_addr;
+
+	/* TODO: get in_fmt */
+	if (in_fmt->bayer_pat == RAW_BGGR) {
+		pbuf->params.ae.bls_val.meas_b =
+			readl(base + CIF_ISP_BLS_A_MEASURED);
+		pbuf->params.ae.bls_val.meas_gb =
+			readl(base + CIF_ISP_BLS_B_MEASURED);
+		pbuf->params.ae.bls_val.meas_gr =
+			readl(base + CIF_ISP_BLS_C_MEASURED);
+		pbuf->params.ae.bls_val.meas_r =
+			readl(base + CIF_ISP_BLS_D_MEASURED);
+	} else if (in_fmt->bayer_pat == RAW_GBRG) {
+		pbuf->params.ae.bls_val.meas_gb =
+			readl(base + CIF_ISP_BLS_A_MEASURED);
+		pbuf->params.ae.bls_val.meas_b =
+			readl(base + CIF_ISP_BLS_B_MEASURED);
+		pbuf->params.ae.bls_val.meas_r =
+			readl(base + CIF_ISP_BLS_C_MEASURED);
+		pbuf->params.ae.bls_val.meas_gr =
+			readl(base + CIF_ISP_BLS_D_MEASURED);
+	} else if (in_fmt->bayer_pat == RAW_GRBG) {
+		pbuf->params.ae.bls_val.meas_gr =
+			readl(base + CIF_ISP_BLS_A_MEASURED);
+		pbuf->params.ae.bls_val.meas_r =
+			readl(base + CIF_ISP_BLS_B_MEASURED);
+		pbuf->params.ae.bls_val.meas_b =
+			readl(base + CIF_ISP_BLS_C_MEASURED);
+		pbuf->params.ae.bls_val.meas_gb =
+			readl(base + CIF_ISP_BLS_D_MEASURED);
+	} else if (in_fmt->bayer_pat == RAW_RGGB) {
+		pbuf->params.ae.bls_val.meas_r =
+			readl(base + CIF_ISP_BLS_A_MEASURED);
+		pbuf->params.ae.bls_val.meas_gr =
+			readl(base + CIF_ISP_BLS_B_MEASURED);
+		pbuf->params.ae.bls_val.meas_gb =
+			readl(base + CIF_ISP_BLS_C_MEASURED);
+		pbuf->params.ae.bls_val.meas_b =
+			readl(base + CIF_ISP_BLS_D_MEASURED);
+	}
+}
+
+static void
+rkisp1_stats_send_measurement(struct rkisp1_isp_stats_vdev *stats_vdev,
+			      struct rkisp1_isp_readout_work *meas_work)
+{
+	unsigned long lock_flags = 0;
+	unsigned int cur_frame_id = -1;
+	struct rkisp1_stat_buffer *cur_stat_buf;
+	struct rkisp1_buffer *cur_buf = NULL;
+
+	spin_lock_irqsave(&stats_vdev->irq_lock, lock_flags);
+	cur_frame_id = atomic_read(&stats_vdev->dev->isp_sdev.frm_sync_seq) - 1;
+	if (cur_frame_id != meas_work->frame_id) {
+		v4l2_warn(stats_vdev->vnode.vdev.v4l2_dev,
+			  "Measurement late(%d, %d)\n",
+			  cur_frame_id, meas_work->frame_id);
+	}
+	/* get one empty buffer */
+	if (!list_empty(&stats_vdev->stat)) {
+		cur_buf = list_first_entry(&stats_vdev->stat,
+					   struct rkisp1_buffer, queue);
+		list_del(&cur_buf->queue);
+	}
+	spin_unlock_irqrestore(&stats_vdev->irq_lock, lock_flags);
+
+	if (!cur_buf)
+		return;
+
+	cur_stat_buf =
+		(struct rkisp1_stat_buffer *)(cur_buf->vaddr[0]);
+
+	if (meas_work->isp_ris & CIF_ISP_AWB_DONE) {
+		rkisp1_stats_get_awb_meas(stats_vdev, cur_stat_buf);
+		cur_stat_buf->meas_type |= CIFISP_STAT_AWB;
+	}
+
+	if (meas_work->isp_ris & CIF_ISP_AFM_FIN) {
+		rkisp1_stats_get_afc_meas(stats_vdev, cur_stat_buf);
+		cur_stat_buf->meas_type |= CIFISP_STAT_AFM_FIN;
+	}
+
+	if (meas_work->isp_ris & CIF_ISP_EXP_END) {
+		rkisp1_stats_get_aec_meas(stats_vdev, cur_stat_buf);
+		rkisp1_stats_get_bls_meas(stats_vdev, cur_stat_buf);
+		cur_stat_buf->meas_type |= CIFISP_STAT_AUTOEXP;
+	}
+
+	if (meas_work->isp_ris & CIF_ISP_HIST_MEASURE_RDY) {
+		rkisp1_stats_get_hst_meas(stats_vdev, cur_stat_buf);
+		cur_stat_buf->meas_type |= CIFISP_STAT_HIST;
+	}
+
+	vb2_set_plane_payload(&cur_buf->vb.vb2_buf, 0,
+			      sizeof(struct rkisp1_stat_buffer));
+	vb2_buffer_done(&cur_buf->vb.vb2_buf, VB2_BUF_STATE_DONE);
+}
+
+static void rkisp1_stats_readout_work(struct work_struct *work)
+{
+	struct rkisp1_isp_readout_work *readout_work = container_of(work,
+						struct rkisp1_isp_readout_work,
+						work);
+	struct rkisp1_isp_stats_vdev *stats_vdev = readout_work->stats_vdev;
+
+	if (readout_work->readout == RKISP1_ISP_READOUT_MEAS)
+		rkisp1_stats_send_measurement(stats_vdev, readout_work);
+
+	kfree(readout_work);
+}
+
+int rkisp1_stats_isr(struct rkisp1_isp_stats_vdev *stats_vdev, u32 isp_ris)
+{
+	unsigned int isp_mis_tmp = 0;
+	struct rkisp1_isp_readout_work *work;
+	unsigned int cur_frame_id =
+		atomic_read(&stats_vdev->dev->isp_sdev.frm_sync_seq) - 1;
+#ifdef LOG_ISR_EXE_TIME
+	ktime_t in_t = ktime_get();
+#endif
+
+	writel((CIF_ISP_AWB_DONE | CIF_ISP_AFM_FIN | CIF_ISP_EXP_END |
+		CIF_ISP_HIST_MEASURE_RDY),
+		stats_vdev->dev->base_addr + CIF_ISP_ICR);
+
+	isp_mis_tmp = readl(stats_vdev->dev->base_addr + CIF_ISP_MIS);
+	if (isp_mis_tmp &
+		(CIF_ISP_AWB_DONE | CIF_ISP_AFM_FIN |
+		 CIF_ISP_EXP_END | CIF_ISP_HIST_MEASURE_RDY))
+		v4l2_err(stats_vdev->vnode.vdev.v4l2_dev,
+			 "isp icr 3A info err: 0x%x\n",
+			 isp_mis_tmp);
+
+	if (isp_ris & (CIF_ISP_AWB_DONE | CIF_ISP_AFM_FIN | CIF_ISP_EXP_END |
+		CIF_ISP_HIST_MEASURE_RDY)) {
+		work = (struct rkisp1_isp_readout_work *)
+			kzalloc(sizeof(struct rkisp1_isp_readout_work),
+				GFP_ATOMIC);
+		if (work) {
+			INIT_WORK(&work->work,
+				  rkisp1_stats_readout_work);
+			work->readout = RKISP1_ISP_READOUT_MEAS;
+			work->stats_vdev = stats_vdev;
+			work->frame_id = cur_frame_id;
+			work->isp_ris = isp_ris;
+			if (!queue_work(stats_vdev->readout_wq,
+					&work->work))
+				kfree(work);
+		} else {
+			v4l2_err(stats_vdev->vnode.vdev.v4l2_dev,
+				 "Could not allocate work\n");
+		}
+	}
+
+#ifdef LOG_ISR_EXE_TIME
+	if (isp_ris & (CIF_ISP_EXP_END | CIF_ISP_AWB_DONE |
+		       CIF_ISP_FRAME | CIF_ISP_HIST_MEASURE_RDY)) {
+		unsigned int diff_us =
+		    ktime_to_us(ktime_sub(ktime_get(), in_t));
+
+		if (diff_us > g_longest_isr_time)
+			g_longest_isr_time = diff_us;
+
+		v4l2_info(stats_vdev->vnode.vdev.v4l2_dev,
+			  "isp_isr time %d %d\n", diff_us, g_longest_isr_time);
+	}
+#endif
+
+	return 0;
+}
+
+static void rkisp1_init_stats_vdev(struct rkisp1_isp_stats_vdev *stats_vdev)
+{
+	stats_vdev->vdev_fmt.fmt.meta.dataformat =
+		V4L2_META_FMT_RK_ISP1_STAT_3A;
+	stats_vdev->vdev_fmt.fmt.meta.buffersize =
+		sizeof(struct rkisp1_stat_buffer);
+}
+
+int rkisp1_register_stats_vdev(struct rkisp1_isp_stats_vdev *stats_vdev,
+			       struct v4l2_device *v4l2_dev,
+			       struct rkisp1_device *dev)
+{
+	int ret;
+	struct rkisp1_vdev_node *node = &stats_vdev->vnode;
+	struct video_device *vdev = &node->vdev;
+
+	stats_vdev->dev = dev;
+	mutex_init(&node->vlock);
+	INIT_LIST_HEAD(&stats_vdev->stat);
+	spin_lock_init(&stats_vdev->irq_lock);
+
+	strlcpy(vdev->name, "rkisp1-statistics", sizeof(vdev->name));
+
+	video_set_drvdata(vdev, stats_vdev);
+	vdev->ioctl_ops = &rkisp1_stats_ioctl;
+	vdev->fops = &rkisp1_stats_fops;
+	vdev->release = video_device_release_empty;
+	vdev->lock = &node->vlock;
+	vdev->v4l2_dev = v4l2_dev;
+	vdev->queue = &node->buf_queue;
+	vdev->device_caps = V4L2_CAP_META_CAPTURE | V4L2_CAP_STREAMING;
+	vdev->vfl_dir =  VFL_DIR_RX;
+	rkisp1_stats_init_vb2_queue(vdev->queue, stats_vdev);
+	rkisp1_init_stats_vdev(stats_vdev);
+	video_set_drvdata(vdev, stats_vdev);
+
+	node->pad.flags = MEDIA_PAD_FL_SINK;
+	vdev->entity.function = MEDIA_ENT_F_IO_V4L;
+	ret = media_entity_pads_init(&vdev->entity, 1, &node->pad);
+	if (ret < 0)
+		goto err_release_queue;
+
+	ret = video_register_device(vdev, VFL_TYPE_GRABBER, -1);
+	if (ret < 0) {
+		dev_err(&vdev->dev,
+			"could not register Video for Linux device\n");
+		goto err_cleanup_media_entity;
+	}
+
+	stats_vdev->readout_wq =
+	    alloc_workqueue("measurement_queue",
+			    WQ_UNBOUND | WQ_MEM_RECLAIM, 1);
+
+	if (!stats_vdev->readout_wq) {
+		ret = -ENOMEM;
+			goto err_unreg_vdev;
+	}
+
+	return 0;
+err_unreg_vdev:
+	video_unregister_device(vdev);
+err_cleanup_media_entity:
+	media_entity_cleanup(&vdev->entity);
+err_release_queue:
+	vb2_queue_release(vdev->queue);
+	return ret;
+}
+
+void rkisp1_unregister_stats_vdev(struct rkisp1_isp_stats_vdev *stats_vdev)
+{
+	struct rkisp1_vdev_node *node = &stats_vdev->vnode;
+	struct video_device *vdev = &node->vdev;
+
+	destroy_workqueue(stats_vdev->readout_wq);
+	video_unregister_device(vdev);
+	media_entity_cleanup(&vdev->entity);
+	vb2_queue_release(vdev->queue);
+}
diff --git a/drivers/media/platform/rockchip/isp1/isp_stats.h b/drivers/media/platform/rockchip/isp1/isp_stats.h
new file mode 100644
index 000000000000..d42cd9e75efd
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/isp_stats.h
@@ -0,0 +1,81 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#ifndef _RKISP1_ISP_STATS_H
+#define _RKISP1_ISP_STATS_H
+
+#include <linux/rkisp1-config.h>
+#include "common.h"
+
+struct rkisp1_isp_stats_vdev;
+struct rkisp1_device;
+
+enum rkisp1_isp_readout_cmd {
+	RKISP1_ISP_READOUT_MEAS,
+	/* TODO: metadata */
+	RKISP1_ISP_READOUT_META,
+};
+
+struct rkisp1_isp_readout_work {
+	struct work_struct work;
+	struct rkisp1_isp_stats_vdev *stats_vdev;
+
+	unsigned int frame_id;
+	unsigned int isp_ris;
+	enum rkisp1_isp_readout_cmd readout;
+	struct vb2_buffer *vb;
+};
+
+struct rkisp1_isp_stats_vdev {
+	struct rkisp1_vdev_node vnode;
+	struct rkisp1_device *dev;
+
+	/* ISP statistics related */
+	spinlock_t irq_lock;
+	struct list_head stat;		/* stats buffer list */
+	struct v4l2_format vdev_fmt;
+	bool streamon;
+
+	struct workqueue_struct *readout_wq;
+};
+
+int rkisp1_stats_isr(struct rkisp1_isp_stats_vdev *stats_vdev, u32 isp_ris);
+
+int rkisp1_register_stats_vdev(struct rkisp1_isp_stats_vdev *stats_vdev,
+			       struct v4l2_device *v4l2_dev,
+			       struct rkisp1_device *dev);
+
+void rkisp1_unregister_stats_vdev(struct rkisp1_isp_stats_vdev *stats_vdev);
+
+#endif /* _RKISP1_ISP_STATS_H */
diff --git a/drivers/media/platform/rockchip/isp1/regs.c b/drivers/media/platform/rockchip/isp1/regs.c
new file mode 100644
index 000000000000..496fdcef466f
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/regs.c
@@ -0,0 +1,251 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#include <media/v4l2-common.h>
+#include "regs.h"
+
+void disable_dcrop(struct rkisp1_stream *stream, bool async)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+	void __iomem *dc_ctrl_addr = base + stream->config->dual_crop.ctrl;
+	u32 dc_ctrl = readl(dc_ctrl_addr);
+	u32 mask = ~(stream->config->dual_crop.yuvmode_mask |
+			stream->config->dual_crop.rawmode_mask);
+	u32 val = dc_ctrl & mask;
+
+	if (async)
+		val |= CIF_DUAL_CROP_GEN_CFG_UPD;
+	else
+		val |= CIF_DUAL_CROP_CFG_UPD;
+	writel(val, dc_ctrl_addr);
+}
+
+void config_dcrop(struct rkisp1_stream *stream, struct v4l2_rect *rect, bool async)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+	void __iomem *dc_ctrl_addr = base + stream->config->dual_crop.ctrl;
+	u32 dc_ctrl = readl(dc_ctrl_addr);
+
+	writel(rect->left, base + stream->config->dual_crop.h_offset);
+	writel(rect->top, base + stream->config->dual_crop.v_offset);
+	writel(rect->width, base + stream->config->dual_crop.h_size);
+	writel(rect->height, base + stream->config->dual_crop.v_size);
+	dc_ctrl |= stream->config->dual_crop.yuvmode_mask;
+	if (async)
+		dc_ctrl |= CIF_DUAL_CROP_GEN_CFG_UPD;
+	else
+		dc_ctrl |= CIF_DUAL_CROP_CFG_UPD;
+	writel(dc_ctrl, dc_ctrl_addr);
+}
+
+void dump_rsz_regs(struct rkisp1_stream *stream)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	pr_info("RSZ_CTRL 0x%08x/0x%08x\n"
+			"RSZ_SCALE_HY %d/%d\n"
+			"RSZ_SCALE_HCB %d/%d\n"
+			"RSZ_SCALE_HCR %d/%d\n"
+			"RSZ_SCALE_VY %d/%d\n"
+			"RSZ_SCALE_VC %d/%d\n"
+			"RSZ_PHASE_HY %d/%d\n"
+			"RSZ_PHASE_HC %d/%d\n"
+			"RSZ_PHASE_VY %d/%d\n"
+			"RSZ_PHASE_VC %d/%d\n",
+			readl(base + stream->config->rsz.ctrl),
+			readl(base + stream->config->rsz.ctrl_shd),
+			readl(base + stream->config->rsz.scale_hy),
+			readl(base + stream->config->rsz.scale_hy_shd),
+			readl(base + stream->config->rsz.scale_hcb),
+			readl(base + stream->config->rsz.scale_hcb_shd),
+			readl(base + stream->config->rsz.scale_hcr),
+			readl(base + stream->config->rsz.scale_hcr_shd),
+			readl(base + stream->config->rsz.scale_vy),
+			readl(base + stream->config->rsz.scale_vy_shd),
+			readl(base + stream->config->rsz.scale_vc),
+			readl(base + stream->config->rsz.scale_vc_shd),
+			readl(base + stream->config->rsz.phase_hy),
+			readl(base + stream->config->rsz.phase_hy_shd),
+			readl(base + stream->config->rsz.phase_hc),
+			readl(base + stream->config->rsz.phase_hc_shd),
+			readl(base + stream->config->rsz.phase_vy),
+			readl(base + stream->config->rsz.phase_vy_shd),
+			readl(base + stream->config->rsz.phase_vc),
+			readl(base + stream->config->rsz.phase_vc_shd));
+}
+
+static void update_rsz_shadow(struct rkisp1_stream *stream)
+{
+	void *addr = stream->ispdev->base_addr + stream->config->rsz.ctrl;
+	u32 ctrl_cfg = readl(addr);
+
+	writel(CIF_RSZ_CTRL_CFG_UPD | ctrl_cfg, addr);
+}
+
+static void set_scale(struct rkisp1_stream *stream, struct v4l2_rect *in_y,
+		struct v4l2_rect *in_c, struct v4l2_rect *out_y,
+		struct v4l2_rect *out_c)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+	void __iomem *scale_hy_addr = base + stream->config->rsz.scale_hy;
+	void __iomem *scale_hcr_addr = base + stream->config->rsz.scale_hcr;
+	void __iomem *scale_hcb_addr = base + stream->config->rsz.scale_hcb;
+	void __iomem *scale_vy_addr = base + stream->config->rsz.scale_vy;
+	void __iomem *scale_vc_addr = base + stream->config->rsz.scale_vc;
+	void __iomem *rsz_ctrl_addr = base + stream->config->rsz.ctrl;
+	u32 scale_hy, scale_hc, scale_vy, scale_vc, rsz_ctrl = 0;
+
+	if (in_y->width < out_y->width) {
+		rsz_ctrl |= CIF_RSZ_CTRL_SCALE_HY_ENABLE |
+				CIF_RSZ_CTRL_SCALE_HY_UP;
+		scale_hy = ((in_y->width - 1) * CIF_RSZ_SCALER_FACTOR) /
+				(out_y->width - 1);
+		writel(scale_hy, scale_hy_addr);
+	} else if (in_y->width > out_y->width) {
+		rsz_ctrl |= CIF_RSZ_CTRL_SCALE_HY_ENABLE;
+		scale_hy = ((out_y->width - 1) * CIF_RSZ_SCALER_FACTOR) /
+				(in_y->width - 1) + 1;
+		writel(scale_hy, scale_hy_addr);
+	}
+	if (in_c->width < out_c->width) {
+		rsz_ctrl |= CIF_RSZ_CTRL_SCALE_HC_ENABLE |
+				CIF_RSZ_CTRL_SCALE_HC_UP;
+		scale_hc = ((in_c->width - 1) * CIF_RSZ_SCALER_FACTOR) /
+				(out_c->width - 1);
+		writel(scale_hc, scale_hcb_addr);
+		writel(scale_hc, scale_hcr_addr);
+	} else if (in_c->width > out_c->width) {
+		rsz_ctrl |= CIF_RSZ_CTRL_SCALE_HC_ENABLE;
+		scale_hc = ((out_c->width - 1) * CIF_RSZ_SCALER_FACTOR) /
+				(in_c->width - 1) + 1;
+		writel(scale_hc, scale_hcb_addr);
+		writel(scale_hc, scale_hcr_addr);
+	}
+
+	if (in_y->height < out_y->height) {
+		rsz_ctrl |= CIF_RSZ_CTRL_SCALE_VY_ENABLE |
+				CIF_RSZ_CTRL_SCALE_VY_UP;
+		scale_vy = ((in_y->height - 1) * CIF_RSZ_SCALER_FACTOR) /
+				(out_y->height - 1);
+		writel(scale_vy, scale_vy_addr);
+	} else if (in_y->height > out_y->height) {
+		rsz_ctrl |= CIF_RSZ_CTRL_SCALE_VY_ENABLE;
+		scale_vy = ((out_y->height - 1) * CIF_RSZ_SCALER_FACTOR) /
+				(in_y->height - 1) + 1;
+		writel(scale_vy, scale_vy_addr);
+	}
+
+	if (in_c->height < out_c->height) {
+		rsz_ctrl |= CIF_RSZ_CTRL_SCALE_VC_ENABLE |
+				CIF_RSZ_CTRL_SCALE_VC_UP;
+		scale_vc = ((in_c->height - 1) * CIF_RSZ_SCALER_FACTOR) /
+				(out_c->height - 1);
+		writel(scale_vc, scale_vc_addr);
+	} else if (in_c->height > out_c->height) {
+		rsz_ctrl |= CIF_RSZ_CTRL_SCALE_VC_ENABLE;
+		scale_vc = ((out_c->height - 1) * CIF_RSZ_SCALER_FACTOR) /
+				(in_c->height - 1) + 1;
+		writel(scale_vc, scale_vc_addr);
+	}
+
+	writel(rsz_ctrl, rsz_ctrl_addr);
+}
+
+void config_rsz(struct rkisp1_stream *stream, struct v4l2_rect *in_y,
+	struct v4l2_rect *in_c, struct v4l2_rect *out_y,
+	struct v4l2_rect *out_c, bool async)
+{
+	int i = 0;
+
+	/* No phase offset */
+	writel(0, stream->ispdev->base_addr + stream->config->rsz.phase_hy);
+	writel(0, stream->ispdev->base_addr + stream->config->rsz.phase_hc);
+	writel(0, stream->ispdev->base_addr + stream->config->rsz.phase_vy);
+	writel(0, stream->ispdev->base_addr + stream->config->rsz.phase_vc);
+
+	/* Linear interpolation */
+	for (i = 0; i < 64; i++) {
+		writel(i, stream->ispdev->base_addr + stream->config->rsz.scale_lut_addr);
+		writel(i, stream->ispdev->base_addr + stream->config->rsz.scale_lut);
+	}
+
+	set_scale(stream, in_y, in_c, out_y, out_c);
+
+	if (!async)
+		update_rsz_shadow(stream);
+}
+
+void disable_rsz(struct rkisp1_stream *stream, bool async)
+{
+	writel(0, stream->ispdev->base_addr + stream->config->rsz.ctrl);
+
+	if (!async)
+		update_rsz_shadow(stream);
+}
+
+void config_mi_ctrl(struct rkisp1_stream *stream)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+	void __iomem *addr = base + CIF_MI_CTRL;
+	u32 reg;
+
+	reg = readl(addr) & ~GENMASK(17, 16);
+	writel(reg | CIF_MI_CTRL_BURST_LEN_LUM_64, addr);
+	reg = readl(addr) & ~GENMASK(19, 18);
+	writel(reg | CIF_MI_CTRL_BURST_LEN_CHROM_64, addr);
+	reg = readl(addr);
+	writel(reg | CIF_MI_CTRL_INIT_BASE_EN, addr);
+	reg = readl(addr);
+	writel(reg | CIF_MI_CTRL_INIT_OFFSET_EN, addr);
+}
+
+void mp_clr_frame_end_int(void __iomem *base)
+{
+	writel(CIF_MI_MP_FRAME, base + CIF_MI_ICR);
+}
+
+void sp_clr_frame_end_int(void __iomem *base)
+{
+	writel(CIF_MI_SP_FRAME, base + CIF_MI_ICR);
+}
+
+u32 mp_is_frame_end_int_masked(void __iomem *base)
+{
+	return (mi_get_masked_int_status(base) & CIF_MI_MP_FRAME);
+}
+
+u32 sp_is_frame_end_int_masked(void __iomem *base)
+{
+	return (mi_get_masked_int_status(base) & CIF_MI_SP_FRAME);
+}
diff --git a/drivers/media/platform/rockchip/isp1/regs.h b/drivers/media/platform/rockchip/isp1/regs.h
new file mode 100644
index 000000000000..70c554459b7d
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/regs.h
@@ -0,0 +1,1578 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#ifndef _RKISP1_REGS_H
+#define _RKISP1_REGS_H
+#include "common.h"
+#include "rkisp1.h"
+
+/* ISP_CTRL */
+#define CIF_ISP_CTRL_ISP_ENABLE			BIT(0)
+#define CIF_ISP_CTRL_ISP_MODE_RAW_PICT		(0 << 1)
+#define CIF_ISP_CTRL_ISP_MODE_ITU656		(1 << 1)
+#define CIF_ISP_CTRL_ISP_MODE_ITU601		(2 << 1)
+#define CIF_ISP_CTRL_ISP_MODE_BAYER_ITU601	(3 << 1)
+#define CIF_ISP_CTRL_ISP_MODE_DATA_MODE		(4 << 1)
+#define CIF_ISP_CTRL_ISP_MODE_BAYER_ITU656	(5 << 1)
+#define CIF_ISP_CTRL_ISP_MODE_RAW_PICT_ITU656	(6 << 1)
+#define CIF_ISP_CTRL_ISP_INFORM_ENABLE		BIT(4)
+#define CIF_ISP_CTRL_ISP_GAMMA_IN_ENA		BIT(6)
+#define CIF_ISP_CTRL_ISP_AWB_ENA		BIT(7)
+#define CIF_ISP_CTRL_ISP_CFG_UPD_PERMANENT	BIT(8)
+#define CIF_ISP_CTRL_ISP_CFG_UPD		BIT(9)
+#define CIF_ISP_CTRL_ISP_GEN_CFG_UPD		BIT(10)
+#define CIF_ISP_CTRL_ISP_GAMMA_OUT_ENA		BIT(11)
+#define CIF_ISP_CTRL_ISP_FLASH_MODE_ENA		BIT(12)
+#define CIF_ISP_CTRL_ISP_CSM_Y_FULL_ENA		BIT(13)
+#define CIF_ISP_CTRL_ISP_CSM_C_FULL_ENA		BIT(14)
+
+/* ISP_ACQ_PROP */
+#define CIF_ISP_ACQ_PROP_POS_EDGE		BIT(0)
+#define CIF_ISP_ACQ_PROP_HSYNC_LOW		BIT(1)
+#define CIF_ISP_ACQ_PROP_VSYNC_LOW		BIT(2)
+#define CIF_ISP_ACQ_PROP_BAYER_PAT_RGGB		(0 << 3)
+#define CIF_ISP_ACQ_PROP_BAYER_PAT_GRBG		(1 << 3)
+#define CIF_ISP_ACQ_PROP_BAYER_PAT_GBRG		(2 << 3)
+#define CIF_ISP_ACQ_PROP_BAYER_PAT_BGGR		(3 << 3)
+#define CIF_ISP_ACQ_PROP_BAYER_PAT(pat)		((pat) << 3)
+#define CIF_ISP_ACQ_PROP_YCBYCR			(0 << 7)
+#define CIF_ISP_ACQ_PROP_YCRYCB			(1 << 7)
+#define CIF_ISP_ACQ_PROP_CBYCRY			(2 << 7)
+#define CIF_ISP_ACQ_PROP_CRYCBY			(3 << 7)
+#define CIF_ISP_ACQ_PROP_FIELD_SEL_ALL		(0 << 9)
+#define CIF_ISP_ACQ_PROP_FIELD_SEL_EVEN		(1 << 9)
+#define CIF_ISP_ACQ_PROP_FIELD_SEL_ODD		(2 << 9)
+#define CIF_ISP_ACQ_PROP_IN_SEL_12B		(0 << 12)
+#define CIF_ISP_ACQ_PROP_IN_SEL_10B_ZERO	(1 << 12)
+#define CIF_ISP_ACQ_PROP_IN_SEL_10B_MSB		(2 << 12)
+#define CIF_ISP_ACQ_PROP_IN_SEL_8B_ZERO		(3 << 12)
+#define CIF_ISP_ACQ_PROP_IN_SEL_8B_MSB		(4 << 12)
+
+/* VI_DPCL */
+#define CIF_VI_DPCL_DMA_JPEG			(0 << 0)
+#define CIF_VI_DPCL_MP_MUX_MRSZ_MI		(1 << 0)
+#define CIF_VI_DPCL_MP_MUX_MRSZ_JPEG		(2 << 0)
+#define CIF_VI_DPCL_CHAN_MODE_MP		(1 << 2)
+#define CIF_VI_DPCL_CHAN_MODE_SP		(2 << 2)
+#define CIF_VI_DPCL_CHAN_MODE_MPSP		(3 << 2)
+#define CIF_VI_DPCL_DMA_SW_SPMUX		(0 << 4)
+#define CIF_VI_DPCL_DMA_SW_SI			(1 << 4)
+#define CIF_VI_DPCL_DMA_SW_IE			(2 << 4)
+#define CIF_VI_DPCL_DMA_SW_JPEG			(3 << 4)
+#define CIF_VI_DPCL_DMA_SW_ISP			(4 << 4)
+#define CIF_VI_DPCL_IF_SEL_PARALLEL		(0 << 8)
+#define CIF_VI_DPCL_IF_SEL_SMIA			(1 << 8)
+#define CIF_VI_DPCL_IF_SEL_MIPI			(2 << 8)
+#define CIF_VI_DPCL_DMA_IE_MUX_DMA		BIT(10)
+#define CIF_VI_DPCL_DMA_SP_MUX_DMA		BIT(11)
+
+/* ISP_IMSC - ISP_MIS - ISP_RIS - ISP_ICR - ISP_ISR */
+#define CIF_ISP_OFF				BIT(0)
+#define CIF_ISP_FRAME				BIT(1)
+#define CIF_ISP_DATA_LOSS			BIT(2)
+#define CIF_ISP_PIC_SIZE_ERROR			BIT(3)
+#define CIF_ISP_AWB_DONE			BIT(4)
+#define CIF_ISP_FRAME_IN			BIT(5)
+#define CIF_ISP_V_START				BIT(6)
+#define CIF_ISP_H_START				BIT(7)
+#define CIF_ISP_FLASH_ON			BIT(8)
+#define CIF_ISP_FLASH_OFF			BIT(9)
+#define CIF_ISP_SHUTTER_ON			BIT(10)
+#define CIF_ISP_SHUTTER_OFF			BIT(11)
+#define CIF_ISP_AFM_SUM_OF			BIT(12)
+#define CIF_ISP_AFM_LUM_OF			BIT(13)
+#define CIF_ISP_AFM_FIN				BIT(14)
+#define CIF_ISP_HIST_MEASURE_RDY		BIT(15)
+#define CIF_ISP_FLASH_CAP			BIT(17)
+#define CIF_ISP_EXP_END				BIT(18)
+#define CIF_ISP_VSM_END				BIT(19)
+
+/* ISP_ERR */
+#define CIF_ISP_ERR_INFORM_SIZE			BIT(0)
+#define CIF_ISP_ERR_IS_SIZE			BIT(1)
+#define CIF_ISP_ERR_OUTFORM_SIZE		BIT(2)
+
+/* MI_CTRL */
+#define CIF_MI_CTRL_MP_ENABLE			(1 << 0)
+#define CIF_MI_CTRL_SP_ENABLE			(2 << 0)
+#define CIF_MI_CTRL_JPEG_ENABLE			(4 << 0)
+#define CIF_MI_CTRL_RAW_ENABLE			(8 << 0)
+#define CIF_MI_CTRL_HFLIP			BIT(4)
+#define CIF_MI_CTRL_VFLIP			BIT(5)
+#define CIF_MI_CTRL_ROT				BIT(6)
+#define CIF_MI_BYTE_SWAP			BIT(7)
+#define CIF_MI_SP_Y_FULL_YUV2RGB		BIT(8)
+#define CIF_MI_SP_CBCR_FULL_YUV2RGB		BIT(9)
+#define CIF_MI_SP_422NONCOSITEED		BIT(10)
+#define CIF_MI_MP_PINGPONG_ENABEL		BIT(11)
+#define CIF_MI_SP_PINGPONG_ENABEL		BIT(12)
+#define CIF_MI_MP_AUTOUPDATE_ENABLE		BIT(13)
+#define CIF_MI_SP_AUTOUPDATE_ENABLE		BIT(14)
+#define CIF_MI_LAST_PIXEL_SIG_ENABLE		BIT(15)
+#define CIF_MI_CTRL_BURST_LEN_LUM_16		(0 << 16)
+#define CIF_MI_CTRL_BURST_LEN_LUM_32		(1 << 16)
+#define CIF_MI_CTRL_BURST_LEN_LUM_64		(2 << 16)
+#define CIF_MI_CTRL_BURST_LEN_CHROM_16		(0 << 18)
+#define CIF_MI_CTRL_BURST_LEN_CHROM_32		(1 << 18)
+#define CIF_MI_CTRL_BURST_LEN_CHROM_64		(2 << 18)
+#define CIF_MI_CTRL_INIT_BASE_EN		BIT(20)
+#define CIF_MI_CTRL_INIT_OFFSET_EN		BIT(21)
+#define MI_CTRL_MP_WRITE_YUV_PLA_OR_RAW8	(0 << 22)
+#define MI_CTRL_MP_WRITE_YUV_SPLA		(1 << 22)
+#define MI_CTRL_MP_WRITE_YUVINT			(2 << 22)
+#define MI_CTRL_MP_WRITE_RAW12			(2 << 22)
+#define MI_CTRL_SP_WRITE_PLA			(0 << 24)
+#define MI_CTRL_SP_WRITE_SPLA			(1 << 24)
+#define MI_CTRL_SP_WRITE_INT			(2 << 24)
+#define MI_CTRL_SP_INPUT_YUV400			(0 << 26)
+#define MI_CTRL_SP_INPUT_YUV420			(1 << 26)
+#define MI_CTRL_SP_INPUT_YUV422			(2 << 26)
+#define MI_CTRL_SP_INPUT_YUV444			(3 << 26)
+#define MI_CTRL_SP_OUTPUT_YUV400		(0 << 28)
+#define MI_CTRL_SP_OUTPUT_YUV420		(1 << 28)
+#define MI_CTRL_SP_OUTPUT_YUV422		(2 << 28)
+#define MI_CTRL_SP_OUTPUT_YUV444		(3 << 28)
+#define MI_CTRL_SP_OUTPUT_RGB565		(4 << 28)
+#define MI_CTRL_SP_OUTPUT_RGB666		(5 << 28)
+#define MI_CTRL_SP_OUTPUT_RGB888		(6 << 28)
+
+#define MI_CTRL_MP_FMT_MASK			GENMASK(23, 22)
+#define MI_CTRL_SP_FMT_MASK			GENMASK(30, 24)
+
+/* MI_INIT */
+#define CIF_MI_INIT_SKIP			BIT(2)
+#define CIF_MI_INIT_SOFT_UPD			BIT(4)
+
+/* RSZ_CTRL */
+#define CIF_RSZ_CTRL_SCALE_HY_ENABLE		BIT(0)
+#define CIF_RSZ_CTRL_SCALE_HC_ENABLE		BIT(1)
+#define CIF_RSZ_CTRL_SCALE_VY_ENABLE		BIT(2)
+#define CIF_RSZ_CTRL_SCALE_VC_ENABLE		BIT(3)
+#define CIF_RSZ_CTRL_SCALE_HY_UP		BIT(4)
+#define CIF_RSZ_CTRL_SCALE_HC_UP		BIT(5)
+#define CIF_RSZ_CTRL_SCALE_VY_UP		BIT(6)
+#define CIF_RSZ_CTRL_SCALE_VC_UP		BIT(7)
+#define CIF_RSZ_CTRL_CFG_UPD			BIT(8)
+#define CIF_RSZ_CTRL_CFG_UPD_AUTO		BIT(9)
+#define CIF_RSZ_SCALER_FACTOR			BIT(16)
+
+/* MI_IMSC - MI_MIS - MI_RIS - MI_ICR - MI_ISR */
+#define CIF_MI_MP_FRAME				BIT(0)
+#define CIF_MI_SP_FRAME				BIT(1)
+#define CIF_MI_MBLK_LINE			BIT(2)
+#define CIF_MI_FILL_MP_Y			BIT(3)
+#define CIF_MI_WRAP_MP_Y			BIT(4)
+#define CIF_MI_WRAP_MP_CB			BIT(5)
+#define CIF_MI_WRAP_MP_CR			BIT(6)
+#define CIF_MI_WRAP_SP_Y			BIT(7)
+#define CIF_MI_WRAP_SP_CB			BIT(8)
+#define CIF_MI_WRAP_SP_CR			BIT(9)
+#define CIF_MI_DMA_READY			BIT(11)
+
+/* MI_STATUS */
+#define CIF_MI_STATUS_MP_Y_FIFO_FULL		BIT(0)
+#define CIF_MI_STATUS_SP_Y_FIFO_FULL		BIT(4)
+
+/* MI_DMA_CTRL */
+#define CIF_MI_DMA_CTRL_BURST_LEN_LUM_16	(0 << 0)
+#define CIF_MI_DMA_CTRL_BURST_LEN_LUM_32	(1 << 0)
+#define CIF_MI_DMA_CTRL_BURST_LEN_LUM_64	(2 << 0)
+#define CIF_MI_DMA_CTRL_BURST_LEN_CHROM_16	(0 << 2)
+#define CIF_MI_DMA_CTRL_BURST_LEN_CHROM_32	(1 << 2)
+#define CIF_MI_DMA_CTRL_BURST_LEN_CHROM_64	(2 << 2)
+#define CIF_MI_DMA_CTRL_READ_FMT_PLANAR		(0 << 4)
+#define CIF_MI_DMA_CTRL_READ_FMT_SPLANAR	(1 << 4)
+#define CIF_MI_DMA_CTRL_FMT_YUV400		(0 << 6)
+#define CIF_MI_DMA_CTRL_FMT_YUV420		(1 << 6)
+#define CIF_MI_DMA_CTRL_READ_FMT_PACKED		(2 << 4)
+#define CIF_MI_DMA_CTRL_FMT_YUV422		(2 << 6)
+#define CIF_MI_DMA_CTRL_FMT_YUV444		(3 << 6)
+#define CIF_MI_DMA_CTRL_BYTE_SWAP		BIT(8)
+#define CIF_MI_DMA_CTRL_CONTINUOUS_ENA		BIT(9)
+#define CIF_MI_DMA_CTRL_RGB_BAYER_NO		(0 << 12)
+#define CIF_MI_DMA_CTRL_RGB_BAYER_8BIT		(1 << 12)
+#define CIF_MI_DMA_CTRL_RGB_BAYER_16BIT		(2 << 12)
+/* MI_DMA_START */
+#define CIF_MI_DMA_START_ENABLE			BIT(0)
+/* MI_XTD_FORMAT_CTRL  */
+#define CIF_MI_XTD_FMT_CTRL_MP_CB_CR_SWAP	BIT(0)
+#define CIF_MI_XTD_FMT_CTRL_SP_CB_CR_SWAP	BIT(1)
+#define CIF_MI_XTD_FMT_CTRL_DMA_CB_CR_SWAP	BIT(2)
+
+/* CCL */
+#define CIF_CCL_CIF_CLK_DIS			BIT(2)
+/* ICCL */
+#define CIF_ICCL_ISP_CLK			BIT(0)
+#define CIF_ICCL_CP_CLK				BIT(1)
+#define CIF_ICCL_RES_2				BIT(2)
+#define CIF_ICCL_MRSZ_CLK			BIT(3)
+#define CIF_ICCL_SRSZ_CLK			BIT(4)
+#define CIF_ICCL_JPEG_CLK			BIT(5)
+#define CIF_ICCL_MI_CLK				BIT(6)
+#define CIF_ICCL_RES_7				BIT(7)
+#define CIF_ICCL_IE_CLK				BIT(8)
+#define CIF_ICCL_SIMP_CLK			BIT(9)
+#define CIF_ICCL_SMIA_CLK			BIT(10)
+#define CIF_ICCL_MIPI_CLK			BIT(11)
+#define CIF_ICCL_DCROP_CLK			BIT(12)
+/* IRCL */
+#define CIF_IRCL_ISP_SW_RST			BIT(0)
+#define CIF_IRCL_CP_SW_RST			BIT(1)
+#define CIF_IRCL_YCS_SW_RST			BIT(2)
+#define CIF_IRCL_MRSZ_SW_RST			BIT(3)
+#define CIF_IRCL_SRSZ_SW_RST			BIT(4)
+#define CIF_IRCL_JPEG_SW_RST			BIT(5)
+#define CIF_IRCL_MI_SW_RST			BIT(6)
+#define CIF_IRCL_CIF_SW_RST			BIT(7)
+#define CIF_IRCL_IE_SW_RST			BIT(8)
+#define CIF_IRCL_SI_SW_RST			BIT(9)
+#define CIF_IRCL_MIPI_SW_RST			BIT(11)
+
+/* C_PROC_CTR */
+#define CIF_C_PROC_CTR_ENABLE			BIT(0)
+#define CIF_C_PROC_YOUT_FULL			BIT(1)
+#define CIF_C_PROC_YIN_FULL			BIT(2)
+#define CIF_C_PROC_COUT_FULL			BIT(3)
+#define CIF_C_PROC_CTRL_RESERVED		0xFFFFFFFE
+#define CIF_C_PROC_CONTRAST_RESERVED		0xFFFFFF00
+#define CIF_C_PROC_BRIGHTNESS_RESERVED		0xFFFFFF00
+#define CIF_C_PROC_HUE_RESERVED			0xFFFFFF00
+#define CIF_C_PROC_SATURATION_RESERVED		0xFFFFFF00
+#define CIF_C_PROC_MACC_RESERVED		0xE000E000
+#define CIF_C_PROC_TONE_RESERVED		0xF000
+/* DUAL_CROP_CTRL */
+#define CIF_DUAL_CROP_MP_MODE_BYPASS		(0 << 0)
+#define CIF_DUAL_CROP_MP_MODE_YUV		(1 << 0)
+#define CIF_DUAL_CROP_MP_MODE_RAW		(2 << 0)
+#define CIF_DUAL_CROP_SP_MODE_BYPASS		(0 << 2)
+#define CIF_DUAL_CROP_SP_MODE_YUV		(1 << 2)
+#define CIF_DUAL_CROP_SP_MODE_RAW		(2 << 2)
+#define CIF_DUAL_CROP_CFG_UPD_PERMANENT		BIT(4)
+#define CIF_DUAL_CROP_CFG_UPD			BIT(5)
+#define CIF_DUAL_CROP_GEN_CFG_UPD		BIT(6)
+
+/* IMG_EFF_CTRL */
+#define CIF_IMG_EFF_CTRL_ENABLE			BIT(0)
+#define CIF_IMG_EFF_CTRL_MODE_BLACKWHITE	(0 << 1)
+#define CIF_IMG_EFF_CTRL_MODE_NEGATIVE		(1 << 1)
+#define CIF_IMG_EFF_CTRL_MODE_SEPIA		(2 << 1)
+#define CIF_IMG_EFF_CTRL_MODE_COLOR_SEL		(3 << 1)
+#define CIF_IMG_EFF_CTRL_MODE_EMBOSS		(4 << 1)
+#define CIF_IMG_EFF_CTRL_MODE_SKETCH		(5 << 1)
+#define CIF_IMG_EFF_CTRL_MODE_SHARPEN		(6 << 1)
+#define CIF_IMG_EFF_CTRL_CFG_UPD		BIT(4)
+#define CIF_IMG_EFF_CTRL_YCBCR_FULL		BIT(5)
+
+#define CIF_IMG_EFF_CTRL_MODE_BLACKWHITE_SHIFT	0
+#define CIF_IMG_EFF_CTRL_MODE_NEGATIVE_SHIFT	1
+#define CIF_IMG_EFF_CTRL_MODE_SEPIA_SHIFT	2
+#define CIF_IMG_EFF_CTRL_MODE_COLOR_SEL_SHIFT	3
+#define CIF_IMG_EFF_CTRL_MODE_EMBOSS_SHIFT	4
+#define CIF_IMG_EFF_CTRL_MODE_SKETCH_SHIFT	5
+#define CIF_IMG_EFF_CTRL_MODE_SHARPEN_SHIFT	6
+#define CIF_IMG_EFF_CTRL_MODE_MASK		0xE
+
+/* IMG_EFF_COLOR_SEL */
+#define CIF_IMG_EFF_COLOR_RGB			0
+#define CIF_IMG_EFF_COLOR_B			(1 << 0)
+#define CIF_IMG_EFF_COLOR_G			(2 << 0)
+#define CIF_IMG_EFF_COLOR_GB			(3 << 0)
+#define CIF_IMG_EFF_COLOR_R			(4 << 0)
+#define CIF_IMG_EFF_COLOR_RB			(5 << 0)
+#define CIF_IMG_EFF_COLOR_RG			(6 << 0)
+#define CIF_IMG_EFF_COLOR_RGB2			(7 << 0)
+
+/* MIPI_CTRL */
+#define CIF_MIPI_CTRL_OUTPUT_ENA		BIT(0)
+#define CIF_MIPI_CTRL_SHUTDOWNLANES(a)		(((a) & 0xF) << 8)
+#define CIF_MIPI_CTRL_NUM_LANES(a)		(((a) & 0x3) << 12)
+#define CIF_MIPI_CTRL_ERR_SOT_HS_SKIP		BIT(16)
+#define CIF_MIPI_CTRL_ERR_SOT_SYNC_HS_SKIP	BIT(17)
+#define CIF_MIPI_CTRL_CLOCKLANE_ENA		BIT(18)
+
+/* MIPI_DATA_SEL */
+#define CIF_MIPI_DATA_SEL_VC(a)			(((a) & 0x3) << 6)
+#define CIF_MIPI_DATA_SEL_DT(a)			(((a) & 0x3F) << 0)
+/* MIPI DATA_TYPE */
+#define CIF_CSI2_DT_YUV420_8b			0x18
+#define CIF_CSI2_DT_YUV420_10b			0x19
+#define CIF_CSI2_DT_YUV422_8b			0x1E
+#define CIF_CSI2_DT_YUV422_10b			0x1F
+#define CIF_CSI2_DT_RGB565			0x22
+#define CIF_CSI2_DT_RGB666			0x23
+#define CIF_CSI2_DT_RGB888			0x24
+#define CIF_CSI2_DT_RAW8			0x2A
+#define CIF_CSI2_DT_RAW10			0x2B
+#define CIF_CSI2_DT_RAW12			0x2C
+
+/* MIPI_IMSC, MIPI_RIS, MIPI_MIS, MIPI_ICR, MIPI_ISR */
+#define CIF_MIPI_SYNC_FIFO_OVFLW(a)		(((a) & 0xF) << 0)
+#define CIF_MIPI_ERR_SOT(a)			(((a) & 0xF) << 4)
+#define CIF_MIPI_ERR_SOT_SYNC(a)		(((a) & 0xF) << 8)
+#define CIF_MIPI_ERR_EOT_SYNC(a)		(((a) & 0xF) << 12)
+#define CIF_MIPI_ERR_CTRL(a)			(((a) & 0xF) << 16)
+#define CIF_MIPI_ERR_PROTOCOL			BIT(20)
+#define CIF_MIPI_ERR_ECC1			BIT(21)
+#define CIF_MIPI_ERR_ECC2			BIT(22)
+#define CIF_MIPI_ERR_CS				BIT(23)
+#define CIF_MIPI_FRAME_END			BIT(24)
+#define CIF_MIPI_ADD_DATA_OVFLW			BIT(25)
+#define CIF_MIPI_ADD_DATA_WATER_MARK		BIT(26)
+
+#define CIF_MIPI_ERR_CSI  (CIF_MIPI_ERR_PROTOCOL | \
+	CIF_MIPI_ERR_ECC1 | \
+	CIF_MIPI_ERR_ECC2 | \
+	CIF_MIPI_ERR_CS)
+
+#define CIF_MIPI_ERR_DPHY  (CIF_MIPI_ERR_SOT(3) | \
+	CIF_MIPI_ERR_SOT_SYNC(3) | \
+	CIF_MIPI_ERR_EOT_SYNC(3) | \
+	CIF_MIPI_ERR_CTRL(3))
+
+/* SUPER_IMPOSE */
+#define CIF_SUPER_IMP_CTRL_NORMAL_MODE		BIT(0)
+#define CIF_SUPER_IMP_CTRL_REF_IMG_MEM		BIT(1)
+#define CIF_SUPER_IMP_CTRL_TRANSP_DIS		BIT(2)
+
+/* ISP HISTOGRAM CALCULATION : ISP_HIST_PROP */
+#define CIF_ISP_HIST_PROP_MODE_DIS		(0 << 0)
+#define CIF_ISP_HIST_PROP_MODE_RGB		(1 << 0)
+#define CIF_ISP_HIST_PROP_MODE_RED		(2 << 0)
+#define CIF_ISP_HIST_PROP_MODE_GREEN		(3 << 0)
+#define CIF_ISP_HIST_PROP_MODE_BLUE		(4 << 0)
+#define CIF_ISP_HIST_PROP_MODE_LUM		(5 << 0)
+#define CIF_ISP_HIST_PROP_MODE_MASK		0x7
+#define CIF_ISP_HIST_PREDIV_SET(x)		(((x) & 0x7F) << 3)
+#define CIF_ISP_HIST_WEIGHT_SET(v0, v1, v2, v3)	\
+				     (((v0) & 0x1F) | (((v1) & 0x1F) << 8)  |\
+				     (((v2) & 0x1F) << 16) | \
+				     (((v3) & 0x1F) << 24))
+
+#define CIF_ISP_HIST_WINDOW_OFFSET_RESERVED	0xFFFFF000
+#define CIF_ISP_HIST_WINDOW_SIZE_RESERVED	0xFFFFF800
+#define CIF_ISP_HIST_WEIGHT_RESERVED		0xE0E0E0E0
+#define CIF_ISP_MAX_HIST_PREDIVIDER		0x0000007F
+#define CIF_ISP_HIST_ROW_NUM			5
+#define CIF_ISP_HIST_COLUMN_NUM			5
+
+/* AUTO FOCUS MEASUREMENT:  ISP_AFM_CTRL */
+#define ISP_AFM_CTRL_ENABLE			BIT(0)
+
+/* SHUTTER CONTROL */
+#define CIF_ISP_SH_CTRL_SH_ENA			BIT(0)
+#define CIF_ISP_SH_CTRL_REP_EN			BIT(1)
+#define CIF_ISP_SH_CTRL_SRC_SH_TRIG		BIT(2)
+#define CIF_ISP_SH_CTRL_EDGE_POS		BIT(3)
+#define CIF_ISP_SH_CTRL_POL_LOW			BIT(4)
+
+/* FLASH MODULE */
+/* ISP_FLASH_CMD */
+#define CIF_FLASH_CMD_PRELIGHT_ON		BIT(0)
+#define CIF_FLASH_CMD_FLASH_ON			BIT(1)
+#define CIF_FLASH_CMD_PRE_FLASH_ON		BIT(2)
+/* ISP_FLASH_CONFIG */
+#define CIF_FLASH_CONFIG_PRELIGHT_END		BIT(0)
+#define CIF_FLASH_CONFIG_VSYNC_POS		BIT(1)
+#define CIF_FLASH_CONFIG_PRELIGHT_LOW		BIT(2)
+#define CIF_FLASH_CONFIG_SRC_FL_TRIG		BIT(3)
+#define CIF_FLASH_CONFIG_DELAY(a)		(((a) & 0xF) << 4)
+
+/* Demosaic:  ISP_DEMOSAIC */
+#define CIF_ISP_DEMOSAIC_BYPASS			BIT(10)
+#define CIF_ISP_DEMOSAIC_TH(x)			((x) & 0xFF)
+
+/* AWB */
+/* ISP_AWB_PROP */
+#define CIF_ISP_AWB_YMAX_CMP_EN			BIT(2)
+#define CIFISP_AWB_YMAX_READ(x)			(((x) >> 2) & 1)
+#define CIF_ISP_AWB_MODE_RGB_EN			((1 << 31) | (0x2 << 0))
+#define CIF_ISP_AWB_MODE_YCBCR_EN		((0 << 31) | (0x2 << 0))
+#define CIF_ISP_AWB_MODE_YCBCR_EN		((0 << 31) | (0x2 << 0))
+#define CIF_ISP_AWB_MODE_MASK_NONE		0xFFFFFFFC
+#define CIF_ISP_AWB_MODE_READ(x)		((x) & 3)
+/* ISP_AWB_GAIN_RB, ISP_AWB_GAIN_G  */
+#define CIF_ISP_AWB_GAIN_R_SET(x)		(((x) & 0x3FF) << 16)
+#define CIF_ISP_AWB_GAIN_R_READ(x)		(((x) >> 16) & 0x3FF)
+#define CIF_ISP_AWB_GAIN_B_SET(x)		((x) & 0x3FFF)
+#define CIF_ISP_AWB_GAIN_B_READ(x)		((x) & 0x3FFF)
+/* ISP_AWB_REF */
+#define CIF_ISP_AWB_REF_CR_SET(x)		(((x) & 0xFF) << 8)
+#define CIF_ISP_AWB_REF_CR_READ(x)		(((x) >> 8) & 0xFF)
+#define CIF_ISP_AWB_REF_CB_READ(x)		((x) & 0xFF)
+/* ISP_AWB_THRESH */
+#define CIF_ISP_AWB_MAX_CS_SET(x)		(((x) & 0xFF) << 8)
+#define CIF_ISP_AWB_MAX_CS_READ(x)		(((x) >> 8) & 0xFF)
+#define CIF_ISP_AWB_MIN_C_READ(x)		((x) & 0xFF)
+#define CIF_ISP_AWB_MIN_Y_SET(x)		(((x) & 0xFF) << 16)
+#define CIF_ISP_AWB_MIN_Y_READ(x)		(((x) >> 16) & 0xFF)
+#define CIF_ISP_AWB_MAX_Y_SET(x)		(((x) & 0xFF) << 24)
+#define CIF_ISP_AWB_MAX_Y_READ(x)		(((x) >> 24) & 0xFF)
+/* ISP_AWB_MEAN */
+#define CIF_ISP_AWB_GET_MEAN_CR_R(x)		((x) & 0xFF)
+#define CIF_ISP_AWB_GET_MEAN_CB_B(x)		(((x) >> 8) & 0xFF)
+#define CIF_ISP_AWB_GET_MEAN_Y_G(x)		(((x) >> 16) & 0xFF)
+/* ISP_AWB_WHITE_CNT */
+#define CIF_ISP_AWB_GET_PIXEL_CNT(x)		((x) & 0x3FFFFFF)
+
+#define CIF_ISP_AWB_GAINS_MAX_VAL		0x000003FF
+#define CIF_ISP_AWB_WINDOW_OFFSET_MAX		0x00000FFF
+#define CIF_ISP_AWB_WINDOW_MAX_SIZE		0x00001FFF
+#define CIF_ISP_AWB_CBCR_MAX_REF		0x000000FF
+#define CIF_ISP_AWB_THRES_MAX_YC		0x000000FF
+
+/* AE */
+/* ISP_EXP_CTRL */
+#define CIF_ISP_EXP_ENA				BIT(0)
+#define CIF_ISP_EXP_CTRL_AUTOSTOP		BIT(1)
+/*
+ *'1' luminance calculation according to  Y=(R+G+B) x 0.332 (85/256)
+ *'0' luminance calculation according to Y=16+0.25R+0.5G+0.1094B
+ */
+#define CIF_ISP_EXP_CTRL_MEASMODE_1		BIT(31)
+
+/* ISP_EXP_H_SIZE */
+#define CIF_ISP_EXP_H_SIZE_SET(x)		((x) & 0x7FF)
+#define CIF_ISP_EXP_HEIGHT_MASK			0x000007FF
+/* ISP_EXP_V_SIZE : vertical size must be a multiple of 2). */
+#define CIF_ISP_EXP_V_SIZE_SET(x)		((x) & 0x7FE)
+
+/* ISP_EXP_H_OFFSET */
+#define CIF_ISP_EXP_H_OFFSET_SET(x)		((x) & 0x1FFF)
+#define CIF_ISP_EXP_MAX_HOFFS			2424
+/* ISP_EXP_V_OFFSET */
+#define CIF_ISP_EXP_V_OFFSET_SET(x)		((x) & 0x1FFF)
+#define CIF_ISP_EXP_MAX_VOFFS			1806
+
+#define CIF_ISP_EXP_ROW_NUM			5
+#define CIF_ISP_EXP_COLUMN_NUM			5
+#define CIF_ISP_EXP_NUM_LUMA_REGS \
+	(CIF_ISP_EXP_ROW_NUM * CIF_ISP_EXP_COLUMN_NUM)
+#define CIF_ISP_EXP_BLOCK_MAX_HSIZE		516
+#define CIF_ISP_EXP_BLOCK_MIN_HSIZE		35
+#define CIF_ISP_EXP_BLOCK_MAX_VSIZE		390
+#define CIF_ISP_EXP_BLOCK_MIN_VSIZE		28
+#define CIF_ISP_EXP_MAX_HSIZE	\
+	(CIF_ISP_EXP_BLOCK_MAX_HSIZE * CIF_ISP_EXP_COLUMN_NUM + 1)
+#define CIF_ISP_EXP_MIN_HSIZE	\
+	(CIF_ISP_EXP_BLOCK_MIN_HSIZE * CIF_ISP_EXP_COLUMN_NUM + 1)
+#define CIF_ISP_EXP_MAX_VSIZE	\
+	(CIF_ISP_EXP_BLOCK_MAX_VSIZE * CIF_ISP_EXP_ROW_NUM + 1)
+#define CIF_ISP_EXP_MIN_VSIZE	\
+	(CIF_ISP_EXP_BLOCK_MIN_VSIZE * CIF_ISP_EXP_ROW_NUM + 1)
+
+/* LSC: ISP_LSC_CTRL */
+#define CIF_ISP_LSC_CTRL_ENA			BIT(0)
+#define CIF_ISP_LSC_SECT_SIZE_RESERVED		0xFC00FC00
+#define CIF_ISP_LSC_GRAD_RESERVED		0xF000F000
+#define CIF_ISP_LSC_SAMPLE_RESERVED		0xF000F000
+#define CIF_ISP_LSC_SECTORS_MAX			16
+#define CIF_ISP_LSC_TABLE_DATA(v0, v1)     \
+	(((v0) & 0xFFF) | (((v1) & 0xFFF) << 12))
+#define CIF_ISP_LSC_SECT_SIZE(v0, v1)      \
+	(((v0) & 0xFFF) | (((v1) & 0xFFF) << 16))
+#define CIF_ISP_LSC_GRAD_SIZE(v0, v1)      \
+	(((v0) & 0xFFF) | (((v1) & 0xFFF) << 16))
+
+/* LSC: ISP_LSC_TABLE_SEL */
+#define CIF_ISP_LSC_TABLE_0			0
+#define CIF_ISP_LSC_TABLE_1			1
+
+/* LSC: ISP_LSC_STATUS */
+#define CIF_ISP_LSC_ACTIVE_TABLE		BIT(1)
+#define CIF_ISP_LSC_TABLE_ADDRESS_0		0
+#define CIF_ISP_LSC_TABLE_ADDRESS_153		153
+
+/* FLT */
+/* ISP_FILT_MODE */
+#define CIF_ISP_FLT_ENA				BIT(0)
+
+/*
+ * 0: green filter static mode (active filter factor = FILT_FAC_MID)
+ * 1: dynamic noise reduction/sharpen Default
+ */
+#define CIF_ISP_FLT_MODE_DNR			BIT(1)
+#define CIF_ISP_FLT_MODE_MAX			1
+#define CIF_ISP_FLT_CHROMA_V_MODE(x)		(((x) & 0x3) << 4)
+#define CIF_ISP_FLT_CHROMA_H_MODE(x)		(((x) & 0x3) << 6)
+#define CIF_ISP_FLT_CHROMA_MODE_MAX		3
+#define CIF_ISP_FLT_GREEN_STAGE1(x)		(((x) & 0xF) << 8)
+#define CIF_ISP_FLT_GREEN_STAGE1_MAX		8
+#define CIF_ISP_FLT_THREAD_RESERVED		0xFFFFFC00
+#define CIF_ISP_FLT_FAC_RESERVED		0xFFFFFFC0
+#define CIF_ISP_FLT_LUM_WEIGHT_RESERVED		0xFFF80000
+
+#define CIF_ISP_CTK_COEFF_RESERVED		0xFFFFF800
+#define CIF_ISP_XTALK_OFFSET_RESERVED		0xFFFFF000
+
+/* GOC */
+#define CIF_ISP_GAMMA_OUT_MODE_EQU		BIT(0)
+#define CIF_ISP_GOC_MODE_MAX			1
+#define CIF_ISP_GOC_RESERVED			0xFFFFF800
+/* ISP_CTRL BIT 11*/
+#define CIF_ISP_CTRL_ISP_GAMMA_OUT_ENA_READ(x)	(((x) >> 11) & 1)
+
+/* DPCC */
+/* ISP_DPCC_MODE */
+#define CIF_ISP_DPCC_ENA			BIT(0)
+#define CIF_ISP_DPCC_MODE_MAX			0x07
+#define CIF_ISP_DPCC_OUTPUTMODE_MAX		0x0F
+#define CIF_ISP_DPCC_SETUSE_MAX			0x0F
+#define CIF_ISP_DPCC_METHODS_SET_RESERVED	0xFFFFE000
+#define CIF_ISP_DPCC_LINE_THRESH_RESERVED	0xFFFF0000
+#define CIF_ISP_DPCC_LINE_MAD_FAC_RESERVED	0xFFFFC0C0
+#define CIF_ISP_DPCC_PG_FAC_RESERVED		0xFFFFC0C0
+#define CIF_ISP_DPCC_RND_THRESH_RESERVED	0xFFFF0000
+#define CIF_ISP_DPCC_RG_FAC_RESERVED		0xFFFFC0C0
+#define CIF_ISP_DPCC_RO_LIMIT_RESERVED		0xFFFFF000
+#define CIF_ISP_DPCC_RND_OFFS_RESERVED		0xFFFFF000
+
+/* BLS */
+/* ISP_BLS_CTRL */
+#define CIF_ISP_BLS_ENA				BIT(0)
+#define CIF_ISP_BLS_MODE_MEASURED		BIT(1)
+#define CIF_ISP_BLS_MODE_FIXED			0
+#define CIF_ISP_BLS_WINDOW_1			(1 << 2)
+#define CIF_ISP_BLS_WINDOW_2			(2 << 2)
+
+/* GAMMA-IN */
+#define CIFISP_DEGAMMA_X_RESERVED	\
+	((1 << 31) | (1 << 27) | (1 << 23) | (1 << 19) |\
+	(1 << 15) | (1 << 11) | (1 << 7) | (1 << 3))
+#define CIFISP_DEGAMMA_Y_RESERVED               0xFFFFF000
+
+/* AFM */
+#define CIF_ISP_AFM_ENA				BIT(0)
+#define CIF_ISP_AFM_THRES_RESERVED		0xFFFF0000
+#define CIF_ISP_AFM_VAR_SHIFT_RESERVED		0xFFF8FFF8
+#define CIF_ISP_AFM_WINDOW_X_RESERVED		0xE000
+#define CIF_ISP_AFM_WINDOW_Y_RESERVED		0xF000
+#define CIF_ISP_AFM_WINDOW_X_MIN		0x5
+#define CIF_ISP_AFM_WINDOW_Y_MIN		0x2
+#define CIF_ISP_AFM_WINDOW_X(x)			(((x) & 0x1FFF) << 16)
+#define CIF_ISP_AFM_WINDOW_Y(x)			((x) & 0x1FFF)
+
+/* DPF */
+#define CIF_ISP_DPF_MODE_EN			BIT(0)
+#define CIF_ISP_DPF_MODE_B_FLT_DIS		BIT(1)
+#define CIF_ISP_DPF_MODE_GB_FLT_DIS		BIT(2)
+#define CIF_ISP_DPF_MODE_GR_FLT_DIS		BIT(3)
+#define CIF_ISP_DPF_MODE_R_FLT_DIS		BIT(4)
+#define CIF_ISP_DPF_MODE_RB_FLTSIZE_9x9		BIT(5)
+#define CIF_ISP_DPF_MODE_NLL_SEGMENTATION	BIT(6)
+#define CIF_ISP_DPF_MODE_AWB_GAIN_COMP		BIT(7)
+#define CIF_ISP_DPF_MODE_LSC_GAIN_COMP		BIT(8)
+#define CIF_ISP_DPF_MODE_USE_NF_GAIN		BIT(9)
+#define CIF_ISP_DPF_NF_GAIN_RESERVED		0xFFFFF000
+#define CIF_ISP_DPF_SPATIAL_COEFF_MAX		0x1F
+#define CIF_ISP_DPF_NLL_COEFF_N_MAX		0x3FF
+
+/* =================================================================== */
+/*                            CIF Registers                            */
+/* =================================================================== */
+#define CIF_CTRL_BASE			0x00000000
+#define CIF_CCL				(CIF_CTRL_BASE + 0x00000000)
+#define CIF_VI_ID			(CIF_CTRL_BASE + 0x00000008)
+#define CIF_ICCL			(CIF_CTRL_BASE + 0x00000010)
+#define CIF_IRCL			(CIF_CTRL_BASE + 0x00000014)
+#define CIF_VI_DPCL			(CIF_CTRL_BASE + 0x00000018)
+
+#define CIF_IMG_EFF_BASE		0x00000200
+#define CIF_IMG_EFF_CTRL		(CIF_IMG_EFF_BASE + 0x00000000)
+#define CIF_IMG_EFF_COLOR_SEL		(CIF_IMG_EFF_BASE + 0x00000004)
+#define CIF_IMG_EFF_MAT_1		(CIF_IMG_EFF_BASE + 0x00000008)
+#define CIF_IMG_EFF_MAT_2		(CIF_IMG_EFF_BASE + 0x0000000C)
+#define CIF_IMG_EFF_MAT_3		(CIF_IMG_EFF_BASE + 0x00000010)
+#define CIF_IMG_EFF_MAT_4		(CIF_IMG_EFF_BASE + 0x00000014)
+#define CIF_IMG_EFF_MAT_5		(CIF_IMG_EFF_BASE + 0x00000018)
+#define CIF_IMG_EFF_TINT		(CIF_IMG_EFF_BASE + 0x0000001C)
+#define CIF_IMG_EFF_CTRL_SHD		(CIF_IMG_EFF_BASE + 0x00000020)
+#define CIF_IMG_EFF_SHARPEN		(CIF_IMG_EFF_BASE + 0x00000024)
+
+#define CIF_SUPER_IMP_BASE		0x00000300
+#define CIF_SUPER_IMP_CTRL		(CIF_SUPER_IMP_BASE + 0x00000000)
+#define CIF_SUPER_IMP_OFFSET_X		(CIF_SUPER_IMP_BASE + 0x00000004)
+#define CIF_SUPER_IMP_OFFSET_Y		(CIF_SUPER_IMP_BASE + 0x00000008)
+#define CIF_SUPER_IMP_COLOR_Y		(CIF_SUPER_IMP_BASE + 0x0000000C)
+#define CIF_SUPER_IMP_COLOR_CB		(CIF_SUPER_IMP_BASE + 0x00000010)
+#define CIF_SUPER_IMP_COLOR_CR		(CIF_SUPER_IMP_BASE + 0x00000014)
+
+#define CIF_ISP_BASE			0x00000400
+#define CIF_ISP_CTRL			(CIF_ISP_BASE + 0x00000000)
+#define CIF_ISP_ACQ_PROP		(CIF_ISP_BASE + 0x00000004)
+#define CIF_ISP_ACQ_H_OFFS		(CIF_ISP_BASE + 0x00000008)
+#define CIF_ISP_ACQ_V_OFFS		(CIF_ISP_BASE + 0x0000000C)
+#define CIF_ISP_ACQ_H_SIZE		(CIF_ISP_BASE + 0x00000010)
+#define CIF_ISP_ACQ_V_SIZE		(CIF_ISP_BASE + 0x00000014)
+#define CIF_ISP_ACQ_NR_FRAMES		(CIF_ISP_BASE + 0x00000018)
+#define CIF_ISP_GAMMA_DX_LO		(CIF_ISP_BASE + 0x0000001C)
+#define CIF_ISP_GAMMA_DX_HI		(CIF_ISP_BASE + 0x00000020)
+#define CIF_ISP_GAMMA_R_Y0		(CIF_ISP_BASE + 0x00000024)
+#define CIF_ISP_GAMMA_R_Y1		(CIF_ISP_BASE + 0x00000028)
+#define CIF_ISP_GAMMA_R_Y2		(CIF_ISP_BASE + 0x0000002C)
+#define CIF_ISP_GAMMA_R_Y3		(CIF_ISP_BASE + 0x00000030)
+#define CIF_ISP_GAMMA_R_Y4		(CIF_ISP_BASE + 0x00000034)
+#define CIF_ISP_GAMMA_R_Y5		(CIF_ISP_BASE + 0x00000038)
+#define CIF_ISP_GAMMA_R_Y6		(CIF_ISP_BASE + 0x0000003C)
+#define CIF_ISP_GAMMA_R_Y7		(CIF_ISP_BASE + 0x00000040)
+#define CIF_ISP_GAMMA_R_Y8		(CIF_ISP_BASE + 0x00000044)
+#define CIF_ISP_GAMMA_R_Y9		(CIF_ISP_BASE + 0x00000048)
+#define CIF_ISP_GAMMA_R_Y10		(CIF_ISP_BASE + 0x0000004C)
+#define CIF_ISP_GAMMA_R_Y11		(CIF_ISP_BASE + 0x00000050)
+#define CIF_ISP_GAMMA_R_Y12		(CIF_ISP_BASE + 0x00000054)
+#define CIF_ISP_GAMMA_R_Y13		(CIF_ISP_BASE + 0x00000058)
+#define CIF_ISP_GAMMA_R_Y14		(CIF_ISP_BASE + 0x0000005C)
+#define CIF_ISP_GAMMA_R_Y15		(CIF_ISP_BASE + 0x00000060)
+#define CIF_ISP_GAMMA_R_Y16		(CIF_ISP_BASE + 0x00000064)
+#define CIF_ISP_GAMMA_G_Y0		(CIF_ISP_BASE + 0x00000068)
+#define CIF_ISP_GAMMA_G_Y1		(CIF_ISP_BASE + 0x0000006C)
+#define CIF_ISP_GAMMA_G_Y2		(CIF_ISP_BASE + 0x00000070)
+#define CIF_ISP_GAMMA_G_Y3		(CIF_ISP_BASE + 0x00000074)
+#define CIF_ISP_GAMMA_G_Y4		(CIF_ISP_BASE + 0x00000078)
+#define CIF_ISP_GAMMA_G_Y5		(CIF_ISP_BASE + 0x0000007C)
+#define CIF_ISP_GAMMA_G_Y6		(CIF_ISP_BASE + 0x00000080)
+#define CIF_ISP_GAMMA_G_Y7		(CIF_ISP_BASE + 0x00000084)
+#define CIF_ISP_GAMMA_G_Y8		(CIF_ISP_BASE + 0x00000088)
+#define CIF_ISP_GAMMA_G_Y9		(CIF_ISP_BASE + 0x0000008C)
+#define CIF_ISP_GAMMA_G_Y10		(CIF_ISP_BASE + 0x00000090)
+#define CIF_ISP_GAMMA_G_Y11		(CIF_ISP_BASE + 0x00000094)
+#define CIF_ISP_GAMMA_G_Y12		(CIF_ISP_BASE + 0x00000098)
+#define CIF_ISP_GAMMA_G_Y13		(CIF_ISP_BASE + 0x0000009C)
+#define CIF_ISP_GAMMA_G_Y14		(CIF_ISP_BASE + 0x000000A0)
+#define CIF_ISP_GAMMA_G_Y15		(CIF_ISP_BASE + 0x000000A4)
+#define CIF_ISP_GAMMA_G_Y16		(CIF_ISP_BASE + 0x000000A8)
+#define CIF_ISP_GAMMA_B_Y0		(CIF_ISP_BASE + 0x000000AC)
+#define CIF_ISP_GAMMA_B_Y1		(CIF_ISP_BASE + 0x000000B0)
+#define CIF_ISP_GAMMA_B_Y2		(CIF_ISP_BASE + 0x000000B4)
+#define CIF_ISP_GAMMA_B_Y3		(CIF_ISP_BASE + 0x000000B8)
+#define CIF_ISP_GAMMA_B_Y4		(CIF_ISP_BASE + 0x000000BC)
+#define CIF_ISP_GAMMA_B_Y5		(CIF_ISP_BASE + 0x000000C0)
+#define CIF_ISP_GAMMA_B_Y6		(CIF_ISP_BASE + 0x000000C4)
+#define CIF_ISP_GAMMA_B_Y7		(CIF_ISP_BASE + 0x000000C8)
+#define CIF_ISP_GAMMA_B_Y8		(CIF_ISP_BASE + 0x000000CC)
+#define CIF_ISP_GAMMA_B_Y9		(CIF_ISP_BASE + 0x000000D0)
+#define CIF_ISP_GAMMA_B_Y10		(CIF_ISP_BASE + 0x000000D4)
+#define CIF_ISP_GAMMA_B_Y11		(CIF_ISP_BASE + 0x000000D8)
+#define CIF_ISP_GAMMA_B_Y12		(CIF_ISP_BASE + 0x000000DC)
+#define CIF_ISP_GAMMA_B_Y13		(CIF_ISP_BASE + 0x000000E0)
+#define CIF_ISP_GAMMA_B_Y14		(CIF_ISP_BASE + 0x000000E4)
+#define CIF_ISP_GAMMA_B_Y15		(CIF_ISP_BASE + 0x000000E8)
+#define CIF_ISP_GAMMA_B_Y16		(CIF_ISP_BASE + 0x000000EC)
+#define CIF_ISP_AWB_PROP		(CIF_ISP_BASE + 0x00000110)
+#define CIF_ISP_AWB_WND_H_OFFS		(CIF_ISP_BASE + 0x00000114)
+#define CIF_ISP_AWB_WND_V_OFFS		(CIF_ISP_BASE + 0x00000118)
+#define CIF_ISP_AWB_WND_H_SIZE		(CIF_ISP_BASE + 0x0000011C)
+#define CIF_ISP_AWB_WND_V_SIZE		(CIF_ISP_BASE + 0x00000120)
+#define CIF_ISP_AWB_FRAMES		(CIF_ISP_BASE + 0x00000124)
+#define CIF_ISP_AWB_REF			(CIF_ISP_BASE + 0x00000128)
+#define CIF_ISP_AWB_THRESH		(CIF_ISP_BASE + 0x0000012C)
+#define CIF_ISP_AWB_GAIN_G		(CIF_ISP_BASE + 0x00000138)
+#define CIF_ISP_AWB_GAIN_RB		(CIF_ISP_BASE + 0x0000013C)
+#define CIF_ISP_AWB_WHITE_CNT		(CIF_ISP_BASE + 0x00000140)
+#define CIF_ISP_AWB_MEAN		(CIF_ISP_BASE + 0x00000144)
+#define CIF_ISP_CC_COEFF_0		(CIF_ISP_BASE + 0x00000170)
+#define CIF_ISP_CC_COEFF_1		(CIF_ISP_BASE + 0x00000174)
+#define CIF_ISP_CC_COEFF_2		(CIF_ISP_BASE + 0x00000178)
+#define CIF_ISP_CC_COEFF_3		(CIF_ISP_BASE + 0x0000017C)
+#define CIF_ISP_CC_COEFF_4		(CIF_ISP_BASE + 0x00000180)
+#define CIF_ISP_CC_COEFF_5		(CIF_ISP_BASE + 0x00000184)
+#define CIF_ISP_CC_COEFF_6		(CIF_ISP_BASE + 0x00000188)
+#define CIF_ISP_CC_COEFF_7		(CIF_ISP_BASE + 0x0000018C)
+#define CIF_ISP_CC_COEFF_8		(CIF_ISP_BASE + 0x00000190)
+#define CIF_ISP_OUT_H_OFFS		(CIF_ISP_BASE + 0x00000194)
+#define CIF_ISP_OUT_V_OFFS		(CIF_ISP_BASE + 0x00000198)
+#define CIF_ISP_OUT_H_SIZE		(CIF_ISP_BASE + 0x0000019C)
+#define CIF_ISP_OUT_V_SIZE		(CIF_ISP_BASE + 0x000001A0)
+#define CIF_ISP_DEMOSAIC		(CIF_ISP_BASE + 0x000001A4)
+#define CIF_ISP_FLAGS_SHD		(CIF_ISP_BASE + 0x000001A8)
+#define CIF_ISP_OUT_H_OFFS_SHD		(CIF_ISP_BASE + 0x000001AC)
+#define CIF_ISP_OUT_V_OFFS_SHD		(CIF_ISP_BASE + 0x000001B0)
+#define CIF_ISP_OUT_H_SIZE_SHD		(CIF_ISP_BASE + 0x000001B4)
+#define CIF_ISP_OUT_V_SIZE_SHD		(CIF_ISP_BASE + 0x000001B8)
+#define CIF_ISP_IMSC			(CIF_ISP_BASE + 0x000001BC)
+#define CIF_ISP_RIS			(CIF_ISP_BASE + 0x000001C0)
+#define CIF_ISP_MIS			(CIF_ISP_BASE + 0x000001C4)
+#define CIF_ISP_ICR			(CIF_ISP_BASE + 0x000001C8)
+#define CIF_ISP_ISR			(CIF_ISP_BASE + 0x000001CC)
+#define CIF_ISP_CT_COEFF_0		(CIF_ISP_BASE + 0x000001D0)
+#define CIF_ISP_CT_COEFF_1		(CIF_ISP_BASE + 0x000001D4)
+#define CIF_ISP_CT_COEFF_2		(CIF_ISP_BASE + 0x000001D8)
+#define CIF_ISP_CT_COEFF_3		(CIF_ISP_BASE + 0x000001DC)
+#define CIF_ISP_CT_COEFF_4		(CIF_ISP_BASE + 0x000001E0)
+#define CIF_ISP_CT_COEFF_5		(CIF_ISP_BASE + 0x000001E4)
+#define CIF_ISP_CT_COEFF_6		(CIF_ISP_BASE + 0x000001E8)
+#define CIF_ISP_CT_COEFF_7		(CIF_ISP_BASE + 0x000001EC)
+#define CIF_ISP_CT_COEFF_8		(CIF_ISP_BASE + 0x000001F0)
+#define CIF_ISP_GAMMA_OUT_MODE		(CIF_ISP_BASE + 0x000001F4)
+#define CIF_ISP_GAMMA_OUT_Y_0		(CIF_ISP_BASE + 0x000001F8)
+#define CIF_ISP_GAMMA_OUT_Y_1		(CIF_ISP_BASE + 0x000001FC)
+#define CIF_ISP_GAMMA_OUT_Y_2		(CIF_ISP_BASE + 0x00000200)
+#define CIF_ISP_GAMMA_OUT_Y_3		(CIF_ISP_BASE + 0x00000204)
+#define CIF_ISP_GAMMA_OUT_Y_4		(CIF_ISP_BASE + 0x00000208)
+#define CIF_ISP_GAMMA_OUT_Y_5		(CIF_ISP_BASE + 0x0000020C)
+#define CIF_ISP_GAMMA_OUT_Y_6		(CIF_ISP_BASE + 0x00000210)
+#define CIF_ISP_GAMMA_OUT_Y_7		(CIF_ISP_BASE + 0x00000214)
+#define CIF_ISP_GAMMA_OUT_Y_8		(CIF_ISP_BASE + 0x00000218)
+#define CIF_ISP_GAMMA_OUT_Y_9		(CIF_ISP_BASE + 0x0000021C)
+#define CIF_ISP_GAMMA_OUT_Y_10		(CIF_ISP_BASE + 0x00000220)
+#define CIF_ISP_GAMMA_OUT_Y_11		(CIF_ISP_BASE + 0x00000224)
+#define CIF_ISP_GAMMA_OUT_Y_12		(CIF_ISP_BASE + 0x00000228)
+#define CIF_ISP_GAMMA_OUT_Y_13		(CIF_ISP_BASE + 0x0000022C)
+#define CIF_ISP_GAMMA_OUT_Y_14		(CIF_ISP_BASE + 0x00000230)
+#define CIF_ISP_GAMMA_OUT_Y_15		(CIF_ISP_BASE + 0x00000234)
+#define CIF_ISP_GAMMA_OUT_Y_16		(CIF_ISP_BASE + 0x00000238)
+#define CIF_ISP_ERR			(CIF_ISP_BASE + 0x0000023C)
+#define CIF_ISP_ERR_CLR			(CIF_ISP_BASE + 0x00000240)
+#define CIF_ISP_FRAME_COUNT		(CIF_ISP_BASE + 0x00000244)
+#define CIF_ISP_CT_OFFSET_R		(CIF_ISP_BASE + 0x00000248)
+#define CIF_ISP_CT_OFFSET_G		(CIF_ISP_BASE + 0x0000024C)
+#define CIF_ISP_CT_OFFSET_B		(CIF_ISP_BASE + 0x00000250)
+
+#define CIF_ISP_FLASH_BASE		0x00000660
+#define CIF_ISP_FLASH_CMD		(CIF_ISP_FLASH_BASE + 0x00000000)
+#define CIF_ISP_FLASH_CONFIG		(CIF_ISP_FLASH_BASE + 0x00000004)
+#define CIF_ISP_FLASH_PREDIV		(CIF_ISP_FLASH_BASE + 0x00000008)
+#define CIF_ISP_FLASH_DELAY		(CIF_ISP_FLASH_BASE + 0x0000000C)
+#define CIF_ISP_FLASH_TIME		(CIF_ISP_FLASH_BASE + 0x00000010)
+#define CIF_ISP_FLASH_MAXP		(CIF_ISP_FLASH_BASE + 0x00000014)
+
+#define CIF_ISP_SH_BASE			0x00000680
+#define CIF_ISP_SH_CTRL			(CIF_ISP_SH_BASE + 0x00000000)
+#define CIF_ISP_SH_PREDIV		(CIF_ISP_SH_BASE + 0x00000004)
+#define CIF_ISP_SH_DELAY		(CIF_ISP_SH_BASE + 0x00000008)
+#define CIF_ISP_SH_TIME			(CIF_ISP_SH_BASE + 0x0000000C)
+
+#define CIF_C_PROC_BASE			0x00000800
+#define CIF_C_PROC_CTRL			(CIF_C_PROC_BASE + 0x00000000)
+#define CIF_C_PROC_CONTRAST		(CIF_C_PROC_BASE + 0x00000004)
+#define CIF_C_PROC_BRIGHTNESS		(CIF_C_PROC_BASE + 0x00000008)
+#define CIF_C_PROC_SATURATION		(CIF_C_PROC_BASE + 0x0000000C)
+#define CIF_C_PROC_HUE			(CIF_C_PROC_BASE + 0x00000010)
+
+#define CIF_DUAL_CROP_BASE		0x00000880
+#define CIF_DUAL_CROP_CTRL		(CIF_DUAL_CROP_BASE + 0x00000000)
+#define CIF_DUAL_CROP_M_H_OFFS		(CIF_DUAL_CROP_BASE + 0x00000004)
+#define CIF_DUAL_CROP_M_V_OFFS		(CIF_DUAL_CROP_BASE + 0x00000008)
+#define CIF_DUAL_CROP_M_H_SIZE		(CIF_DUAL_CROP_BASE + 0x0000000C)
+#define CIF_DUAL_CROP_M_V_SIZE		(CIF_DUAL_CROP_BASE + 0x00000010)
+#define CIF_DUAL_CROP_S_H_OFFS		(CIF_DUAL_CROP_BASE + 0x00000014)
+#define CIF_DUAL_CROP_S_V_OFFS		(CIF_DUAL_CROP_BASE + 0x00000018)
+#define CIF_DUAL_CROP_S_H_SIZE		(CIF_DUAL_CROP_BASE + 0x0000001C)
+#define CIF_DUAL_CROP_S_V_SIZE		(CIF_DUAL_CROP_BASE + 0x00000020)
+#define CIF_DUAL_CROP_M_H_OFFS_SHD	(CIF_DUAL_CROP_BASE + 0x00000024)
+#define CIF_DUAL_CROP_M_V_OFFS_SHD	(CIF_DUAL_CROP_BASE + 0x00000028)
+#define CIF_DUAL_CROP_M_H_SIZE_SHD	(CIF_DUAL_CROP_BASE + 0x0000002C)
+#define CIF_DUAL_CROP_M_V_SIZE_SHD	(CIF_DUAL_CROP_BASE + 0x00000030)
+#define CIF_DUAL_CROP_S_H_OFFS_SHD	(CIF_DUAL_CROP_BASE + 0x00000034)
+#define CIF_DUAL_CROP_S_V_OFFS_SHD	(CIF_DUAL_CROP_BASE + 0x00000038)
+#define CIF_DUAL_CROP_S_H_SIZE_SHD	(CIF_DUAL_CROP_BASE + 0x0000003C)
+#define CIF_DUAL_CROP_S_V_SIZE_SHD	(CIF_DUAL_CROP_BASE + 0x00000040)
+
+#define CIF_MRSZ_BASE			0x00000C00
+#define CIF_MRSZ_CTRL			(CIF_MRSZ_BASE + 0x00000000)
+#define CIF_MRSZ_SCALE_HY		(CIF_MRSZ_BASE + 0x00000004)
+#define CIF_MRSZ_SCALE_HCB		(CIF_MRSZ_BASE + 0x00000008)
+#define CIF_MRSZ_SCALE_HCR		(CIF_MRSZ_BASE + 0x0000000C)
+#define CIF_MRSZ_SCALE_VY		(CIF_MRSZ_BASE + 0x00000010)
+#define CIF_MRSZ_SCALE_VC		(CIF_MRSZ_BASE + 0x00000014)
+#define CIF_MRSZ_PHASE_HY		(CIF_MRSZ_BASE + 0x00000018)
+#define CIF_MRSZ_PHASE_HC		(CIF_MRSZ_BASE + 0x0000001C)
+#define CIF_MRSZ_PHASE_VY		(CIF_MRSZ_BASE + 0x00000020)
+#define CIF_MRSZ_PHASE_VC		(CIF_MRSZ_BASE + 0x00000024)
+#define CIF_MRSZ_SCALE_LUT_ADDR		(CIF_MRSZ_BASE + 0x00000028)
+#define CIF_MRSZ_SCALE_LUT		(CIF_MRSZ_BASE + 0x0000002C)
+#define CIF_MRSZ_CTRL_SHD		(CIF_MRSZ_BASE + 0x00000030)
+#define CIF_MRSZ_SCALE_HY_SHD		(CIF_MRSZ_BASE + 0x00000034)
+#define CIF_MRSZ_SCALE_HCB_SHD		(CIF_MRSZ_BASE + 0x00000038)
+#define CIF_MRSZ_SCALE_HCR_SHD		(CIF_MRSZ_BASE + 0x0000003C)
+#define CIF_MRSZ_SCALE_VY_SHD		(CIF_MRSZ_BASE + 0x00000040)
+#define CIF_MRSZ_SCALE_VC_SHD		(CIF_MRSZ_BASE + 0x00000044)
+#define CIF_MRSZ_PHASE_HY_SHD		(CIF_MRSZ_BASE + 0x00000048)
+#define CIF_MRSZ_PHASE_HC_SHD		(CIF_MRSZ_BASE + 0x0000004C)
+#define CIF_MRSZ_PHASE_VY_SHD		(CIF_MRSZ_BASE + 0x00000050)
+#define CIF_MRSZ_PHASE_VC_SHD		(CIF_MRSZ_BASE + 0x00000054)
+
+#define CIF_SRSZ_BASE			0x00001000
+#define CIF_SRSZ_CTRL			(CIF_SRSZ_BASE + 0x00000000)
+#define CIF_SRSZ_SCALE_HY		(CIF_SRSZ_BASE + 0x00000004)
+#define CIF_SRSZ_SCALE_HCB		(CIF_SRSZ_BASE + 0x00000008)
+#define CIF_SRSZ_SCALE_HCR		(CIF_SRSZ_BASE + 0x0000000C)
+#define CIF_SRSZ_SCALE_VY		(CIF_SRSZ_BASE + 0x00000010)
+#define CIF_SRSZ_SCALE_VC		(CIF_SRSZ_BASE + 0x00000014)
+#define CIF_SRSZ_PHASE_HY		(CIF_SRSZ_BASE + 0x00000018)
+#define CIF_SRSZ_PHASE_HC		(CIF_SRSZ_BASE + 0x0000001C)
+#define CIF_SRSZ_PHASE_VY		(CIF_SRSZ_BASE + 0x00000020)
+#define CIF_SRSZ_PHASE_VC		(CIF_SRSZ_BASE + 0x00000024)
+#define CIF_SRSZ_SCALE_LUT_ADDR		(CIF_SRSZ_BASE + 0x00000028)
+#define CIF_SRSZ_SCALE_LUT		(CIF_SRSZ_BASE + 0x0000002C)
+#define CIF_SRSZ_CTRL_SHD		(CIF_SRSZ_BASE + 0x00000030)
+#define CIF_SRSZ_SCALE_HY_SHD		(CIF_SRSZ_BASE + 0x00000034)
+#define CIF_SRSZ_SCALE_HCB_SHD		(CIF_SRSZ_BASE + 0x00000038)
+#define CIF_SRSZ_SCALE_HCR_SHD		(CIF_SRSZ_BASE + 0x0000003C)
+#define CIF_SRSZ_SCALE_VY_SHD		(CIF_SRSZ_BASE + 0x00000040)
+#define CIF_SRSZ_SCALE_VC_SHD		(CIF_SRSZ_BASE + 0x00000044)
+#define CIF_SRSZ_PHASE_HY_SHD		(CIF_SRSZ_BASE + 0x00000048)
+#define CIF_SRSZ_PHASE_HC_SHD		(CIF_SRSZ_BASE + 0x0000004C)
+#define CIF_SRSZ_PHASE_VY_SHD		(CIF_SRSZ_BASE + 0x00000050)
+#define CIF_SRSZ_PHASE_VC_SHD		(CIF_SRSZ_BASE + 0x00000054)
+
+#define CIF_MI_BASE			0x00001400
+#define CIF_MI_CTRL			(CIF_MI_BASE + 0x00000000)
+#define CIF_MI_INIT			(CIF_MI_BASE + 0x00000004)
+#define CIF_MI_MP_Y_BASE_AD_INIT	(CIF_MI_BASE + 0x00000008)
+#define CIF_MI_MP_Y_SIZE_INIT		(CIF_MI_BASE + 0x0000000C)
+#define CIF_MI_MP_Y_OFFS_CNT_INIT	(CIF_MI_BASE + 0x00000010)
+#define CIF_MI_MP_Y_OFFS_CNT_START	(CIF_MI_BASE + 0x00000014)
+#define CIF_MI_MP_Y_IRQ_OFFS_INIT	(CIF_MI_BASE + 0x00000018)
+#define CIF_MI_MP_CB_BASE_AD_INIT	(CIF_MI_BASE + 0x0000001C)
+#define CIF_MI_MP_CB_SIZE_INIT		(CIF_MI_BASE + 0x00000020)
+#define CIF_MI_MP_CB_OFFS_CNT_INIT	(CIF_MI_BASE + 0x00000024)
+#define CIF_MI_MP_CB_OFFS_CNT_START	(CIF_MI_BASE + 0x00000028)
+#define CIF_MI_MP_CR_BASE_AD_INIT	(CIF_MI_BASE + 0x0000002C)
+#define CIF_MI_MP_CR_SIZE_INIT		(CIF_MI_BASE + 0x00000030)
+#define CIF_MI_MP_CR_OFFS_CNT_INIT	(CIF_MI_BASE + 0x00000034)
+#define CIF_MI_MP_CR_OFFS_CNT_START	(CIF_MI_BASE + 0x00000038)
+#define CIF_MI_SP_Y_BASE_AD_INIT	(CIF_MI_BASE + 0x0000003C)
+#define CIF_MI_SP_Y_SIZE_INIT		(CIF_MI_BASE + 0x00000040)
+#define CIF_MI_SP_Y_OFFS_CNT_INIT	(CIF_MI_BASE + 0x00000044)
+#define CIF_MI_SP_Y_OFFS_CNT_START	(CIF_MI_BASE + 0x00000048)
+#define CIF_MI_SP_Y_LLENGTH		(CIF_MI_BASE + 0x0000004C)
+#define CIF_MI_SP_CB_BASE_AD_INIT	(CIF_MI_BASE + 0x00000050)
+#define CIF_MI_SP_CB_SIZE_INIT		(CIF_MI_BASE + 0x00000054)
+#define CIF_MI_SP_CB_OFFS_CNT_INIT	(CIF_MI_BASE + 0x00000058)
+#define CIF_MI_SP_CB_OFFS_CNT_START	(CIF_MI_BASE + 0x0000005C)
+#define CIF_MI_SP_CR_BASE_AD_INIT	(CIF_MI_BASE + 0x00000060)
+#define CIF_MI_SP_CR_SIZE_INIT		(CIF_MI_BASE + 0x00000064)
+#define CIF_MI_SP_CR_OFFS_CNT_INIT	(CIF_MI_BASE + 0x00000068)
+#define CIF_MI_SP_CR_OFFS_CNT_START	(CIF_MI_BASE + 0x0000006C)
+#define CIF_MI_BYTE_CNT			(CIF_MI_BASE + 0x00000070)
+#define CIF_MI_CTRL_SHD			(CIF_MI_BASE + 0x00000074)
+#define CIF_MI_MP_Y_BASE_AD_SHD		(CIF_MI_BASE + 0x00000078)
+#define CIF_MI_MP_Y_SIZE_SHD		(CIF_MI_BASE + 0x0000007C)
+#define CIF_MI_MP_Y_OFFS_CNT_SHD	(CIF_MI_BASE + 0x00000080)
+#define CIF_MI_MP_Y_IRQ_OFFS_SHD	(CIF_MI_BASE + 0x00000084)
+#define CIF_MI_MP_CB_BASE_AD_SHD	(CIF_MI_BASE + 0x00000088)
+#define CIF_MI_MP_CB_SIZE_SHD		(CIF_MI_BASE + 0x0000008C)
+#define CIF_MI_MP_CB_OFFS_CNT_SHD	(CIF_MI_BASE + 0x00000090)
+#define CIF_MI_MP_CR_BASE_AD_SHD	(CIF_MI_BASE + 0x00000094)
+#define CIF_MI_MP_CR_SIZE_SHD		(CIF_MI_BASE + 0x00000098)
+#define CIF_MI_MP_CR_OFFS_CNT_SHD	(CIF_MI_BASE + 0x0000009C)
+#define CIF_MI_SP_Y_BASE_AD_SHD		(CIF_MI_BASE + 0x000000A0)
+#define CIF_MI_SP_Y_SIZE_SHD		(CIF_MI_BASE + 0x000000A4)
+#define CIF_MI_SP_Y_OFFS_CNT_SHD	(CIF_MI_BASE + 0x000000A8)
+#define CIF_MI_SP_CB_BASE_AD_SHD	(CIF_MI_BASE + 0x000000B0)
+#define CIF_MI_SP_CB_SIZE_SHD		(CIF_MI_BASE + 0x000000B4)
+#define CIF_MI_SP_CB_OFFS_CNT_SHD	(CIF_MI_BASE + 0x000000B8)
+#define CIF_MI_SP_CR_BASE_AD_SHD	(CIF_MI_BASE + 0x000000BC)
+#define CIF_MI_SP_CR_SIZE_SHD		(CIF_MI_BASE + 0x000000C0)
+#define CIF_MI_SP_CR_OFFS_CNT_SHD	(CIF_MI_BASE + 0x000000C4)
+#define CIF_MI_DMA_Y_PIC_START_AD	(CIF_MI_BASE + 0x000000C8)
+#define CIF_MI_DMA_Y_PIC_WIDTH		(CIF_MI_BASE + 0x000000CC)
+#define CIF_MI_DMA_Y_LLENGTH		(CIF_MI_BASE + 0x000000D0)
+#define CIF_MI_DMA_Y_PIC_SIZE		(CIF_MI_BASE + 0x000000D4)
+#define CIF_MI_DMA_CB_PIC_START_AD	(CIF_MI_BASE + 0x000000D8)
+#define CIF_MI_DMA_CR_PIC_START_AD	(CIF_MI_BASE + 0x000000E8)
+#define CIF_MI_IMSC			(CIF_MI_BASE + 0x000000F8)
+#define CIF_MI_RIS			(CIF_MI_BASE + 0x000000FC)
+#define CIF_MI_MIS			(CIF_MI_BASE + 0x00000100)
+#define CIF_MI_ICR			(CIF_MI_BASE + 0x00000104)
+#define CIF_MI_ISR			(CIF_MI_BASE + 0x00000108)
+#define CIF_MI_STATUS			(CIF_MI_BASE + 0x0000010C)
+#define CIF_MI_STATUS_CLR		(CIF_MI_BASE + 0x00000110)
+#define CIF_MI_SP_Y_PIC_WIDTH		(CIF_MI_BASE + 0x00000114)
+#define CIF_MI_SP_Y_PIC_HEIGHT		(CIF_MI_BASE + 0x00000118)
+#define CIF_MI_SP_Y_PIC_SIZE		(CIF_MI_BASE + 0x0000011C)
+#define CIF_MI_DMA_CTRL			(CIF_MI_BASE + 0x00000120)
+#define CIF_MI_DMA_START		(CIF_MI_BASE + 0x00000124)
+#define CIF_MI_DMA_STATUS		(CIF_MI_BASE + 0x00000128)
+#define CIF_MI_PIXEL_COUNT		(CIF_MI_BASE + 0x0000012C)
+#define CIF_MI_MP_Y_BASE_AD_INIT2	(CIF_MI_BASE + 0x00000130)
+#define CIF_MI_MP_CB_BASE_AD_INIT2	(CIF_MI_BASE + 0x00000134)
+#define CIF_MI_MP_CR_BASE_AD_INIT2	(CIF_MI_BASE + 0x00000138)
+#define CIF_MI_SP_Y_BASE_AD_INIT2	(CIF_MI_BASE + 0x0000013C)
+#define CIF_MI_SP_CB_BASE_AD_INIT2	(CIF_MI_BASE + 0x00000140)
+#define CIF_MI_SP_CR_BASE_AD_INIT2	(CIF_MI_BASE + 0x00000144)
+#define CIF_MI_XTD_FORMAT_CTRL		(CIF_MI_BASE + 0x00000148)
+
+#define CIF_SMIA_BASE			0x00001A00
+#define CIF_SMIA_CTRL			(CIF_SMIA_BASE + 0x00000000)
+#define CIF_SMIA_STATUS			(CIF_SMIA_BASE + 0x00000004)
+#define CIF_SMIA_IMSC			(CIF_SMIA_BASE + 0x00000008)
+#define CIF_SMIA_RIS			(CIF_SMIA_BASE + 0x0000000C)
+#define CIF_SMIA_MIS			(CIF_SMIA_BASE + 0x00000010)
+#define CIF_SMIA_ICR			(CIF_SMIA_BASE + 0x00000014)
+#define CIF_SMIA_ISR			(CIF_SMIA_BASE + 0x00000018)
+#define CIF_SMIA_DATA_FORMAT_SEL	(CIF_SMIA_BASE + 0x0000001C)
+#define CIF_SMIA_SOF_EMB_DATA_LINES	(CIF_SMIA_BASE + 0x00000020)
+#define CIF_SMIA_EMB_HSTART		(CIF_SMIA_BASE + 0x00000024)
+#define CIF_SMIA_EMB_HSIZE		(CIF_SMIA_BASE + 0x00000028)
+#define CIF_SMIA_EMB_VSTART		(CIF_SMIA_BASE + 0x0000002c)
+#define CIF_SMIA_NUM_LINES		(CIF_SMIA_BASE + 0x00000030)
+#define CIF_SMIA_EMB_DATA_FIFO		(CIF_SMIA_BASE + 0x00000034)
+#define CIF_SMIA_EMB_DATA_WATERMARK	(CIF_SMIA_BASE + 0x00000038)
+
+#define CIF_MIPI_BASE			0x00001C00
+#define CIF_MIPI_CTRL			(CIF_MIPI_BASE + 0x00000000)
+#define CIF_MIPI_STATUS			(CIF_MIPI_BASE + 0x00000004)
+#define CIF_MIPI_IMSC			(CIF_MIPI_BASE + 0x00000008)
+#define CIF_MIPI_RIS			(CIF_MIPI_BASE + 0x0000000C)
+#define CIF_MIPI_MIS			(CIF_MIPI_BASE + 0x00000010)
+#define CIF_MIPI_ICR			(CIF_MIPI_BASE + 0x00000014)
+#define CIF_MIPI_ISR			(CIF_MIPI_BASE + 0x00000018)
+#define CIF_MIPI_CUR_DATA_ID		(CIF_MIPI_BASE + 0x0000001C)
+#define CIF_MIPI_IMG_DATA_SEL		(CIF_MIPI_BASE + 0x00000020)
+#define CIF_MIPI_ADD_DATA_SEL_1		(CIF_MIPI_BASE + 0x00000024)
+#define CIF_MIPI_ADD_DATA_SEL_2		(CIF_MIPI_BASE + 0x00000028)
+#define CIF_MIPI_ADD_DATA_SEL_3		(CIF_MIPI_BASE + 0x0000002C)
+#define CIF_MIPI_ADD_DATA_SEL_4		(CIF_MIPI_BASE + 0x00000030)
+#define CIF_MIPI_ADD_DATA_FIFO		(CIF_MIPI_BASE + 0x00000034)
+#define CIF_MIPI_FIFO_FILL_LEVEL	(CIF_MIPI_BASE + 0x00000038)
+#define CIF_MIPI_COMPRESSED_MODE	(CIF_MIPI_BASE + 0x0000003C)
+#define CIF_MIPI_FRAME			(CIF_MIPI_BASE + 0x00000040)
+#define CIF_MIPI_GEN_SHORT_DT		(CIF_MIPI_BASE + 0x00000044)
+#define CIF_MIPI_GEN_SHORT_8_9		(CIF_MIPI_BASE + 0x00000048)
+#define CIF_MIPI_GEN_SHORT_A_B		(CIF_MIPI_BASE + 0x0000004C)
+#define CIF_MIPI_GEN_SHORT_C_D		(CIF_MIPI_BASE + 0x00000050)
+#define CIF_MIPI_GEN_SHORT_E_F		(CIF_MIPI_BASE + 0x00000054)
+
+#define CIF_ISP_AFM_BASE		0x00002000
+#define CIF_ISP_AFM_CTRL		(CIF_ISP_AFM_BASE + 0x00000000)
+#define CIF_ISP_AFM_LT_A		(CIF_ISP_AFM_BASE + 0x00000004)
+#define CIF_ISP_AFM_RB_A		(CIF_ISP_AFM_BASE + 0x00000008)
+#define CIF_ISP_AFM_LT_B		(CIF_ISP_AFM_BASE + 0x0000000C)
+#define CIF_ISP_AFM_RB_B		(CIF_ISP_AFM_BASE + 0x00000010)
+#define CIF_ISP_AFM_LT_C		(CIF_ISP_AFM_BASE + 0x00000014)
+#define CIF_ISP_AFM_RB_C		(CIF_ISP_AFM_BASE + 0x00000018)
+#define CIF_ISP_AFM_THRES		(CIF_ISP_AFM_BASE + 0x0000001C)
+#define CIF_ISP_AFM_VAR_SHIFT		(CIF_ISP_AFM_BASE + 0x00000020)
+#define CIF_ISP_AFM_SUM_A		(CIF_ISP_AFM_BASE + 0x00000024)
+#define CIF_ISP_AFM_SUM_B		(CIF_ISP_AFM_BASE + 0x00000028)
+#define CIF_ISP_AFM_SUM_C		(CIF_ISP_AFM_BASE + 0x0000002C)
+#define CIF_ISP_AFM_LUM_A		(CIF_ISP_AFM_BASE + 0x00000030)
+#define CIF_ISP_AFM_LUM_B		(CIF_ISP_AFM_BASE + 0x00000034)
+#define CIF_ISP_AFM_LUM_C		(CIF_ISP_AFM_BASE + 0x00000038)
+
+#define CIF_ISP_LSC_BASE		0x00002200
+#define CIF_ISP_LSC_CTRL		(CIF_ISP_LSC_BASE + 0x00000000)
+#define CIF_ISP_LSC_R_TABLE_ADDR	(CIF_ISP_LSC_BASE + 0x00000004)
+#define CIF_ISP_LSC_GR_TABLE_ADDR	(CIF_ISP_LSC_BASE + 0x00000008)
+#define CIF_ISP_LSC_B_TABLE_ADDR	(CIF_ISP_LSC_BASE + 0x0000000C)
+#define CIF_ISP_LSC_GB_TABLE_ADDR	(CIF_ISP_LSC_BASE + 0x00000010)
+#define CIF_ISP_LSC_R_TABLE_DATA	(CIF_ISP_LSC_BASE + 0x00000014)
+#define CIF_ISP_LSC_GR_TABLE_DATA	(CIF_ISP_LSC_BASE + 0x00000018)
+#define CIF_ISP_LSC_B_TABLE_DATA	(CIF_ISP_LSC_BASE + 0x0000001C)
+#define CIF_ISP_LSC_GB_TABLE_DATA	(CIF_ISP_LSC_BASE + 0x00000020)
+#define CIF_ISP_LSC_XGRAD_01		(CIF_ISP_LSC_BASE + 0x00000024)
+#define CIF_ISP_LSC_XGRAD_23		(CIF_ISP_LSC_BASE + 0x00000028)
+#define CIF_ISP_LSC_XGRAD_45		(CIF_ISP_LSC_BASE + 0x0000002C)
+#define CIF_ISP_LSC_XGRAD_67		(CIF_ISP_LSC_BASE + 0x00000030)
+#define CIF_ISP_LSC_YGRAD_01		(CIF_ISP_LSC_BASE + 0x00000034)
+#define CIF_ISP_LSC_YGRAD_23		(CIF_ISP_LSC_BASE + 0x00000038)
+#define CIF_ISP_LSC_YGRAD_45		(CIF_ISP_LSC_BASE + 0x0000003C)
+#define CIF_ISP_LSC_YGRAD_67		(CIF_ISP_LSC_BASE + 0x00000040)
+#define CIF_ISP_LSC_XSIZE_01		(CIF_ISP_LSC_BASE + 0x00000044)
+#define CIF_ISP_LSC_XSIZE_23		(CIF_ISP_LSC_BASE + 0x00000048)
+#define CIF_ISP_LSC_XSIZE_45		(CIF_ISP_LSC_BASE + 0x0000004C)
+#define CIF_ISP_LSC_XSIZE_67		(CIF_ISP_LSC_BASE + 0x00000050)
+#define CIF_ISP_LSC_YSIZE_01		(CIF_ISP_LSC_BASE + 0x00000054)
+#define CIF_ISP_LSC_YSIZE_23		(CIF_ISP_LSC_BASE + 0x00000058)
+#define CIF_ISP_LSC_YSIZE_45		(CIF_ISP_LSC_BASE + 0x0000005C)
+#define CIF_ISP_LSC_YSIZE_67		(CIF_ISP_LSC_BASE + 0x00000060)
+#define CIF_ISP_LSC_TABLE_SEL		(CIF_ISP_LSC_BASE + 0x00000064)
+#define CIF_ISP_LSC_STATUS		(CIF_ISP_LSC_BASE + 0x00000068)
+
+#define CIF_ISP_IS_BASE			0x00002300
+#define CIF_ISP_IS_CTRL			(CIF_ISP_IS_BASE + 0x00000000)
+#define CIF_ISP_IS_RECENTER		(CIF_ISP_IS_BASE + 0x00000004)
+#define CIF_ISP_IS_H_OFFS		(CIF_ISP_IS_BASE + 0x00000008)
+#define CIF_ISP_IS_V_OFFS		(CIF_ISP_IS_BASE + 0x0000000C)
+#define CIF_ISP_IS_H_SIZE		(CIF_ISP_IS_BASE + 0x00000010)
+#define CIF_ISP_IS_V_SIZE		(CIF_ISP_IS_BASE + 0x00000014)
+#define CIF_ISP_IS_MAX_DX		(CIF_ISP_IS_BASE + 0x00000018)
+#define CIF_ISP_IS_MAX_DY		(CIF_ISP_IS_BASE + 0x0000001C)
+#define CIF_ISP_IS_DISPLACE		(CIF_ISP_IS_BASE + 0x00000020)
+#define CIF_ISP_IS_H_OFFS_SHD		(CIF_ISP_IS_BASE + 0x00000024)
+#define CIF_ISP_IS_V_OFFS_SHD		(CIF_ISP_IS_BASE + 0x00000028)
+#define CIF_ISP_IS_H_SIZE_SHD		(CIF_ISP_IS_BASE + 0x0000002C)
+#define CIF_ISP_IS_V_SIZE_SHD		(CIF_ISP_IS_BASE + 0x00000030)
+
+#define CIF_ISP_HIST_BASE		0x00002400
+
+#define CIF_ISP_HIST_PROP		(CIF_ISP_HIST_BASE + 0x00000000)
+#define CIF_ISP_HIST_H_OFFS		(CIF_ISP_HIST_BASE + 0x00000004)
+#define CIF_ISP_HIST_V_OFFS		(CIF_ISP_HIST_BASE + 0x00000008)
+#define CIF_ISP_HIST_H_SIZE		(CIF_ISP_HIST_BASE + 0x0000000C)
+#define CIF_ISP_HIST_V_SIZE		(CIF_ISP_HIST_BASE + 0x00000010)
+#define CIF_ISP_HIST_BIN_0		(CIF_ISP_HIST_BASE + 0x00000014)
+#define CIF_ISP_HIST_BIN_1		(CIF_ISP_HIST_BASE + 0x00000018)
+#define CIF_ISP_HIST_BIN_2		(CIF_ISP_HIST_BASE + 0x0000001C)
+#define CIF_ISP_HIST_BIN_3		(CIF_ISP_HIST_BASE + 0x00000020)
+#define CIF_ISP_HIST_BIN_4		(CIF_ISP_HIST_BASE + 0x00000024)
+#define CIF_ISP_HIST_BIN_5		(CIF_ISP_HIST_BASE + 0x00000028)
+#define CIF_ISP_HIST_BIN_6		(CIF_ISP_HIST_BASE + 0x0000002C)
+#define CIF_ISP_HIST_BIN_7		(CIF_ISP_HIST_BASE + 0x00000030)
+#define CIF_ISP_HIST_BIN_8		(CIF_ISP_HIST_BASE + 0x00000034)
+#define CIF_ISP_HIST_BIN_9		(CIF_ISP_HIST_BASE + 0x00000038)
+#define CIF_ISP_HIST_BIN_10		(CIF_ISP_HIST_BASE + 0x0000003C)
+#define CIF_ISP_HIST_BIN_11		(CIF_ISP_HIST_BASE + 0x00000040)
+#define CIF_ISP_HIST_BIN_12		(CIF_ISP_HIST_BASE + 0x00000044)
+#define CIF_ISP_HIST_BIN_13		(CIF_ISP_HIST_BASE + 0x00000048)
+#define CIF_ISP_HIST_BIN_14		(CIF_ISP_HIST_BASE + 0x0000004C)
+#define CIF_ISP_HIST_BIN_15		(CIF_ISP_HIST_BASE + 0x00000050)
+#define CIF_ISP_HIST_WEIGHT_00TO30	(CIF_ISP_HIST_BASE + 0x00000054)
+#define CIF_ISP_HIST_WEIGHT_40TO21	(CIF_ISP_HIST_BASE + 0x00000058)
+#define CIF_ISP_HIST_WEIGHT_31TO12	(CIF_ISP_HIST_BASE + 0x0000005C)
+#define CIF_ISP_HIST_WEIGHT_22TO03	(CIF_ISP_HIST_BASE + 0x00000060)
+#define CIF_ISP_HIST_WEIGHT_13TO43	(CIF_ISP_HIST_BASE + 0x00000064)
+#define CIF_ISP_HIST_WEIGHT_04TO34	(CIF_ISP_HIST_BASE + 0x00000068)
+#define CIF_ISP_HIST_WEIGHT_44		(CIF_ISP_HIST_BASE + 0x0000006C)
+
+#define CIF_ISP_FILT_BASE		0x00002500
+#define CIF_ISP_FILT_MODE		(CIF_ISP_FILT_BASE + 0x00000000)
+#define CIF_ISP_FILT_THRESH_BL0		(CIF_ISP_FILT_BASE + 0x00000028)
+#define CIF_ISP_FILT_THRESH_BL1		(CIF_ISP_FILT_BASE + 0x0000002c)
+#define CIF_ISP_FILT_THRESH_SH0		(CIF_ISP_FILT_BASE + 0x00000030)
+#define CIF_ISP_FILT_THRESH_SH1		(CIF_ISP_FILT_BASE + 0x00000034)
+#define CIF_ISP_FILT_LUM_WEIGHT		(CIF_ISP_FILT_BASE + 0x00000038)
+#define CIF_ISP_FILT_FAC_SH1		(CIF_ISP_FILT_BASE + 0x0000003c)
+#define CIF_ISP_FILT_FAC_SH0		(CIF_ISP_FILT_BASE + 0x00000040)
+#define CIF_ISP_FILT_FAC_MID		(CIF_ISP_FILT_BASE + 0x00000044)
+#define CIF_ISP_FILT_FAC_BL0		(CIF_ISP_FILT_BASE + 0x00000048)
+#define CIF_ISP_FILT_FAC_BL1		(CIF_ISP_FILT_BASE + 0x0000004C)
+
+#define CIF_ISP_CAC_BASE		0x00002580
+#define CIF_ISP_CAC_CTRL		(CIF_ISP_CAC_BASE + 0x00000000)
+#define CIF_ISP_CAC_COUNT_START		(CIF_ISP_CAC_BASE + 0x00000004)
+#define CIF_ISP_CAC_A			(CIF_ISP_CAC_BASE + 0x00000008)
+#define CIF_ISP_CAC_B			(CIF_ISP_CAC_BASE + 0x0000000C)
+#define CIF_ISP_CAC_C			(CIF_ISP_CAC_BASE + 0x00000010)
+#define CIF_ISP_X_NORM			(CIF_ISP_CAC_BASE + 0x00000014)
+#define CIF_ISP_Y_NORM			(CIF_ISP_CAC_BASE + 0x00000018)
+
+#define CIF_ISP_EXP_BASE		0x00002600
+#define CIF_ISP_EXP_CTRL		(CIF_ISP_EXP_BASE + 0x00000000)
+#define CIF_ISP_EXP_H_OFFSET		(CIF_ISP_EXP_BASE + 0x00000004)
+#define CIF_ISP_EXP_V_OFFSET		(CIF_ISP_EXP_BASE + 0x00000008)
+#define CIF_ISP_EXP_H_SIZE		(CIF_ISP_EXP_BASE + 0x0000000C)
+#define CIF_ISP_EXP_V_SIZE		(CIF_ISP_EXP_BASE + 0x00000010)
+#define CIF_ISP_EXP_MEAN_00		(CIF_ISP_EXP_BASE + 0x00000014)
+#define CIF_ISP_EXP_MEAN_10		(CIF_ISP_EXP_BASE + 0x00000018)
+#define CIF_ISP_EXP_MEAN_20		(CIF_ISP_EXP_BASE + 0x0000001c)
+#define CIF_ISP_EXP_MEAN_30		(CIF_ISP_EXP_BASE + 0x00000020)
+#define CIF_ISP_EXP_MEAN_40		(CIF_ISP_EXP_BASE + 0x00000024)
+#define CIF_ISP_EXP_MEAN_01		(CIF_ISP_EXP_BASE + 0x00000028)
+#define CIF_ISP_EXP_MEAN_11		(CIF_ISP_EXP_BASE + 0x0000002c)
+#define CIF_ISP_EXP_MEAN_21		(CIF_ISP_EXP_BASE + 0x00000030)
+#define CIF_ISP_EXP_MEAN_31		(CIF_ISP_EXP_BASE + 0x00000034)
+#define CIF_ISP_EXP_MEAN_41		(CIF_ISP_EXP_BASE + 0x00000038)
+#define CIF_ISP_EXP_MEAN_02		(CIF_ISP_EXP_BASE + 0x0000003c)
+#define CIF_ISP_EXP_MEAN_12		(CIF_ISP_EXP_BASE + 0x00000040)
+#define CIF_ISP_EXP_MEAN_22		(CIF_ISP_EXP_BASE + 0x00000044)
+#define CIF_ISP_EXP_MEAN_32		(CIF_ISP_EXP_BASE + 0x00000048)
+#define CIF_ISP_EXP_MEAN_42		(CIF_ISP_EXP_BASE + 0x0000004c)
+#define CIF_ISP_EXP_MEAN_03		(CIF_ISP_EXP_BASE + 0x00000050)
+#define CIF_ISP_EXP_MEAN_13		(CIF_ISP_EXP_BASE + 0x00000054)
+#define CIF_ISP_EXP_MEAN_23		(CIF_ISP_EXP_BASE + 0x00000058)
+#define CIF_ISP_EXP_MEAN_33		(CIF_ISP_EXP_BASE + 0x0000005c)
+#define CIF_ISP_EXP_MEAN_43		(CIF_ISP_EXP_BASE + 0x00000060)
+#define CIF_ISP_EXP_MEAN_04		(CIF_ISP_EXP_BASE + 0x00000064)
+#define CIF_ISP_EXP_MEAN_14		(CIF_ISP_EXP_BASE + 0x00000068)
+#define CIF_ISP_EXP_MEAN_24		(CIF_ISP_EXP_BASE + 0x0000006c)
+#define CIF_ISP_EXP_MEAN_34		(CIF_ISP_EXP_BASE + 0x00000070)
+#define CIF_ISP_EXP_MEAN_44		(CIF_ISP_EXP_BASE + 0x00000074)
+
+#define CIF_ISP_BLS_BASE		0x00002700
+#define CIF_ISP_BLS_CTRL		(CIF_ISP_BLS_BASE + 0x00000000)
+#define CIF_ISP_BLS_SAMPLES		(CIF_ISP_BLS_BASE + 0x00000004)
+#define CIF_ISP_BLS_H1_START		(CIF_ISP_BLS_BASE + 0x00000008)
+#define CIF_ISP_BLS_H1_STOP		(CIF_ISP_BLS_BASE + 0x0000000c)
+#define CIF_ISP_BLS_V1_START		(CIF_ISP_BLS_BASE + 0x00000010)
+#define CIF_ISP_BLS_V1_STOP		(CIF_ISP_BLS_BASE + 0x00000014)
+#define CIF_ISP_BLS_H2_START		(CIF_ISP_BLS_BASE + 0x00000018)
+#define CIF_ISP_BLS_H2_STOP		(CIF_ISP_BLS_BASE + 0x0000001c)
+#define CIF_ISP_BLS_V2_START		(CIF_ISP_BLS_BASE + 0x00000020)
+#define CIF_ISP_BLS_V2_STOP		(CIF_ISP_BLS_BASE + 0x00000024)
+#define CIF_ISP_BLS_A_FIXED		(CIF_ISP_BLS_BASE + 0x00000028)
+#define CIF_ISP_BLS_B_FIXED		(CIF_ISP_BLS_BASE + 0x0000002c)
+#define CIF_ISP_BLS_C_FIXED		(CIF_ISP_BLS_BASE + 0x00000030)
+#define CIF_ISP_BLS_D_FIXED		(CIF_ISP_BLS_BASE + 0x00000034)
+#define CIF_ISP_BLS_A_MEASURED		(CIF_ISP_BLS_BASE + 0x00000038)
+#define CIF_ISP_BLS_B_MEASURED		(CIF_ISP_BLS_BASE + 0x0000003c)
+#define CIF_ISP_BLS_C_MEASURED		(CIF_ISP_BLS_BASE + 0x00000040)
+#define CIF_ISP_BLS_D_MEASURED		(CIF_ISP_BLS_BASE + 0x00000044)
+
+#define CIF_ISP_DPF_BASE		0x00002800
+#define CIF_ISP_DPF_MODE		(CIF_ISP_DPF_BASE + 0x00000000)
+#define CIF_ISP_DPF_STRENGTH_R		(CIF_ISP_DPF_BASE + 0x00000004)
+#define CIF_ISP_DPF_STRENGTH_G		(CIF_ISP_DPF_BASE + 0x00000008)
+#define CIF_ISP_DPF_STRENGTH_B		(CIF_ISP_DPF_BASE + 0x0000000C)
+#define CIF_ISP_DPF_S_WEIGHT_G_1_4	(CIF_ISP_DPF_BASE + 0x00000010)
+#define CIF_ISP_DPF_S_WEIGHT_G_5_6	(CIF_ISP_DPF_BASE + 0x00000014)
+#define CIF_ISP_DPF_S_WEIGHT_RB_1_4	(CIF_ISP_DPF_BASE + 0x00000018)
+#define CIF_ISP_DPF_S_WEIGHT_RB_5_6	(CIF_ISP_DPF_BASE + 0x0000001C)
+#define CIF_ISP_DPF_NULL_COEFF_0	(CIF_ISP_DPF_BASE + 0x00000020)
+#define CIF_ISP_DPF_NULL_COEFF_1	(CIF_ISP_DPF_BASE + 0x00000024)
+#define CIF_ISP_DPF_NULL_COEFF_2	(CIF_ISP_DPF_BASE + 0x00000028)
+#define CIF_ISP_DPF_NULL_COEFF_3	(CIF_ISP_DPF_BASE + 0x0000002C)
+#define CIF_ISP_DPF_NULL_COEFF_4	(CIF_ISP_DPF_BASE + 0x00000030)
+#define CIF_ISP_DPF_NULL_COEFF_5	(CIF_ISP_DPF_BASE + 0x00000034)
+#define CIF_ISP_DPF_NULL_COEFF_6	(CIF_ISP_DPF_BASE + 0x00000038)
+#define CIF_ISP_DPF_NULL_COEFF_7	(CIF_ISP_DPF_BASE + 0x0000003C)
+#define CIF_ISP_DPF_NULL_COEFF_8	(CIF_ISP_DPF_BASE + 0x00000040)
+#define CIF_ISP_DPF_NULL_COEFF_9	(CIF_ISP_DPF_BASE + 0x00000044)
+#define CIF_ISP_DPF_NULL_COEFF_10	(CIF_ISP_DPF_BASE + 0x00000048)
+#define CIF_ISP_DPF_NULL_COEFF_11	(CIF_ISP_DPF_BASE + 0x0000004C)
+#define CIF_ISP_DPF_NULL_COEFF_12	(CIF_ISP_DPF_BASE + 0x00000050)
+#define CIF_ISP_DPF_NULL_COEFF_13	(CIF_ISP_DPF_BASE + 0x00000054)
+#define CIF_ISP_DPF_NULL_COEFF_14	(CIF_ISP_DPF_BASE + 0x00000058)
+#define CIF_ISP_DPF_NULL_COEFF_15	(CIF_ISP_DPF_BASE + 0x0000005C)
+#define CIF_ISP_DPF_NULL_COEFF_16	(CIF_ISP_DPF_BASE + 0x00000060)
+#define CIF_ISP_DPF_NF_GAIN_R		(CIF_ISP_DPF_BASE + 0x00000064)
+#define CIF_ISP_DPF_NF_GAIN_GR		(CIF_ISP_DPF_BASE + 0x00000068)
+#define CIF_ISP_DPF_NF_GAIN_GB		(CIF_ISP_DPF_BASE + 0x0000006C)
+#define CIF_ISP_DPF_NF_GAIN_B		(CIF_ISP_DPF_BASE + 0x00000070)
+
+#define CIF_ISP_DPCC_BASE		0x00002900
+#define CIF_ISP_DPCC_MODE		(CIF_ISP_DPCC_BASE + 0x00000000)
+#define CIF_ISP_DPCC_OUTPUT_MODE	(CIF_ISP_DPCC_BASE + 0x00000004)
+#define CIF_ISP_DPCC_SET_USE		(CIF_ISP_DPCC_BASE + 0x00000008)
+#define CIF_ISP_DPCC_METHODS_SET_1	(CIF_ISP_DPCC_BASE + 0x0000000C)
+#define CIF_ISP_DPCC_METHODS_SET_2	(CIF_ISP_DPCC_BASE + 0x00000010)
+#define CIF_ISP_DPCC_METHODS_SET_3	(CIF_ISP_DPCC_BASE + 0x00000014)
+#define CIF_ISP_DPCC_LINE_THRESH_1	(CIF_ISP_DPCC_BASE + 0x00000018)
+#define CIF_ISP_DPCC_LINE_MAD_FAC_1	(CIF_ISP_DPCC_BASE + 0x0000001C)
+#define CIF_ISP_DPCC_PG_FAC_1		(CIF_ISP_DPCC_BASE + 0x00000020)
+#define CIF_ISP_DPCC_RND_THRESH_1	(CIF_ISP_DPCC_BASE + 0x00000024)
+#define CIF_ISP_DPCC_RG_FAC_1		(CIF_ISP_DPCC_BASE + 0x00000028)
+#define CIF_ISP_DPCC_LINE_THRESH_2	(CIF_ISP_DPCC_BASE + 0x0000002C)
+#define CIF_ISP_DPCC_LINE_MAD_FAC_2	(CIF_ISP_DPCC_BASE + 0x00000030)
+#define CIF_ISP_DPCC_PG_FAC_2		(CIF_ISP_DPCC_BASE + 0x00000034)
+#define CIF_ISP_DPCC_RND_THRESH_2	(CIF_ISP_DPCC_BASE + 0x00000038)
+#define CIF_ISP_DPCC_RG_FAC_2		(CIF_ISP_DPCC_BASE + 0x0000003C)
+#define CIF_ISP_DPCC_LINE_THRESH_3	(CIF_ISP_DPCC_BASE + 0x00000040)
+#define CIF_ISP_DPCC_LINE_MAD_FAC_3	(CIF_ISP_DPCC_BASE + 0x00000044)
+#define CIF_ISP_DPCC_PG_FAC_3		(CIF_ISP_DPCC_BASE + 0x00000048)
+#define CIF_ISP_DPCC_RND_THRESH_3	(CIF_ISP_DPCC_BASE + 0x0000004C)
+#define CIF_ISP_DPCC_RG_FAC_3		(CIF_ISP_DPCC_BASE + 0x00000050)
+#define CIF_ISP_DPCC_RO_LIMITS		(CIF_ISP_DPCC_BASE + 0x00000054)
+#define CIF_ISP_DPCC_RND_OFFS		(CIF_ISP_DPCC_BASE + 0x00000058)
+#define CIF_ISP_DPCC_BPT_CTRL		(CIF_ISP_DPCC_BASE + 0x0000005C)
+#define CIF_ISP_DPCC_BPT_NUMBER		(CIF_ISP_DPCC_BASE + 0x00000060)
+#define CIF_ISP_DPCC_BPT_ADDR		(CIF_ISP_DPCC_BASE + 0x00000064)
+#define CIF_ISP_DPCC_BPT_DATA		(CIF_ISP_DPCC_BASE + 0x00000068)
+
+#define CIF_ISP_WDR_BASE		0x00002A00
+#define CIF_ISP_WDR_CTRL		(CIF_ISP_WDR_BASE + 0x00000000)
+#define CIF_ISP_WDR_TONECURVE_1		(CIF_ISP_WDR_BASE + 0x00000004)
+#define CIF_ISP_WDR_TONECURVE_2		(CIF_ISP_WDR_BASE + 0x00000008)
+#define CIF_ISP_WDR_TONECURVE_3		(CIF_ISP_WDR_BASE + 0x0000000C)
+#define CIF_ISP_WDR_TONECURVE_4		(CIF_ISP_WDR_BASE + 0x00000010)
+#define CIF_ISP_WDR_TONECURVE_YM_0	(CIF_ISP_WDR_BASE + 0x00000014)
+#define CIF_ISP_WDR_TONECURVE_YM_1	(CIF_ISP_WDR_BASE + 0x00000018)
+#define CIF_ISP_WDR_TONECURVE_YM_2	(CIF_ISP_WDR_BASE + 0x0000001C)
+#define CIF_ISP_WDR_TONECURVE_YM_3	(CIF_ISP_WDR_BASE + 0x00000020)
+#define CIF_ISP_WDR_TONECURVE_YM_4	(CIF_ISP_WDR_BASE + 0x00000024)
+#define CIF_ISP_WDR_TONECURVE_YM_5	(CIF_ISP_WDR_BASE + 0x00000028)
+#define CIF_ISP_WDR_TONECURVE_YM_6	(CIF_ISP_WDR_BASE + 0x0000002C)
+#define CIF_ISP_WDR_TONECURVE_YM_7	(CIF_ISP_WDR_BASE + 0x00000030)
+#define CIF_ISP_WDR_TONECURVE_YM_8	(CIF_ISP_WDR_BASE + 0x00000034)
+#define CIF_ISP_WDR_TONECURVE_YM_9	(CIF_ISP_WDR_BASE + 0x00000038)
+#define CIF_ISP_WDR_TONECURVE_YM_10	(CIF_ISP_WDR_BASE + 0x0000003C)
+#define CIF_ISP_WDR_TONECURVE_YM_11	(CIF_ISP_WDR_BASE + 0x00000040)
+#define CIF_ISP_WDR_TONECURVE_YM_12	(CIF_ISP_WDR_BASE + 0x00000044)
+#define CIF_ISP_WDR_TONECURVE_YM_13	(CIF_ISP_WDR_BASE + 0x00000048)
+#define CIF_ISP_WDR_TONECURVE_YM_14	(CIF_ISP_WDR_BASE + 0x0000004C)
+#define CIF_ISP_WDR_TONECURVE_YM_15	(CIF_ISP_WDR_BASE + 0x00000050)
+#define CIF_ISP_WDR_TONECURVE_YM_16	(CIF_ISP_WDR_BASE + 0x00000054)
+#define CIF_ISP_WDR_TONECURVE_YM_17	(CIF_ISP_WDR_BASE + 0x00000058)
+#define CIF_ISP_WDR_TONECURVE_YM_18	(CIF_ISP_WDR_BASE + 0x0000005C)
+#define CIF_ISP_WDR_TONECURVE_YM_19	(CIF_ISP_WDR_BASE + 0x00000060)
+#define CIF_ISP_WDR_TONECURVE_YM_20	(CIF_ISP_WDR_BASE + 0x00000064)
+#define CIF_ISP_WDR_TONECURVE_YM_21	(CIF_ISP_WDR_BASE + 0x00000068)
+#define CIF_ISP_WDR_TONECURVE_YM_22	(CIF_ISP_WDR_BASE + 0x0000006C)
+#define CIF_ISP_WDR_TONECURVE_YM_23	(CIF_ISP_WDR_BASE + 0x00000070)
+#define CIF_ISP_WDR_TONECURVE_YM_24	(CIF_ISP_WDR_BASE + 0x00000074)
+#define CIF_ISP_WDR_TONECURVE_YM_25	(CIF_ISP_WDR_BASE + 0x00000078)
+#define CIF_ISP_WDR_TONECURVE_YM_26	(CIF_ISP_WDR_BASE + 0x0000007C)
+#define CIF_ISP_WDR_TONECURVE_YM_27	(CIF_ISP_WDR_BASE + 0x00000080)
+#define CIF_ISP_WDR_TONECURVE_YM_28	(CIF_ISP_WDR_BASE + 0x00000084)
+#define CIF_ISP_WDR_TONECURVE_YM_29	(CIF_ISP_WDR_BASE + 0x00000088)
+#define CIF_ISP_WDR_TONECURVE_YM_30	(CIF_ISP_WDR_BASE + 0x0000008C)
+#define CIF_ISP_WDR_TONECURVE_YM_31	(CIF_ISP_WDR_BASE + 0x00000090)
+#define CIF_ISP_WDR_TONECURVE_YM_32	(CIF_ISP_WDR_BASE + 0x00000094)
+#define CIF_ISP_WDR_OFFSET		(CIF_ISP_WDR_BASE + 0x00000098)
+#define CIF_ISP_WDR_DELTAMIN		(CIF_ISP_WDR_BASE + 0x0000009C)
+#define CIF_ISP_WDR_TONECURVE_1_SHD	(CIF_ISP_WDR_BASE + 0x000000A0)
+#define CIF_ISP_WDR_TONECURVE_2_SHD	(CIF_ISP_WDR_BASE + 0x000000A4)
+#define CIF_ISP_WDR_TONECURVE_3_SHD	(CIF_ISP_WDR_BASE + 0x000000A8)
+#define CIF_ISP_WDR_TONECURVE_4_SHD	(CIF_ISP_WDR_BASE + 0x000000AC)
+#define CIF_ISP_WDR_TONECURVE_YM_0_SHD	(CIF_ISP_WDR_BASE + 0x000000B0)
+#define CIF_ISP_WDR_TONECURVE_YM_1_SHD	(CIF_ISP_WDR_BASE + 0x000000B4)
+#define CIF_ISP_WDR_TONECURVE_YM_2_SHD	(CIF_ISP_WDR_BASE + 0x000000B8)
+#define CIF_ISP_WDR_TONECURVE_YM_3_SHD	(CIF_ISP_WDR_BASE + 0x000000BC)
+#define CIF_ISP_WDR_TONECURVE_YM_4_SHD	(CIF_ISP_WDR_BASE + 0x000000C0)
+#define CIF_ISP_WDR_TONECURVE_YM_5_SHD	(CIF_ISP_WDR_BASE + 0x000000C4)
+#define CIF_ISP_WDR_TONECURVE_YM_6_SHD	(CIF_ISP_WDR_BASE + 0x000000C8)
+#define CIF_ISP_WDR_TONECURVE_YM_7_SHD	(CIF_ISP_WDR_BASE + 0x000000CC)
+#define CIF_ISP_WDR_TONECURVE_YM_8_SHD	(CIF_ISP_WDR_BASE + 0x000000D0)
+#define CIF_ISP_WDR_TONECURVE_YM_9_SHD	(CIF_ISP_WDR_BASE + 0x000000D4)
+#define CIF_ISP_WDR_TONECURVE_YM_10_SHD	(CIF_ISP_WDR_BASE + 0x000000D8)
+#define CIF_ISP_WDR_TONECURVE_YM_11_SHD	(CIF_ISP_WDR_BASE + 0x000000DC)
+#define CIF_ISP_WDR_TONECURVE_YM_12_SHD	(CIF_ISP_WDR_BASE + 0x000000E0)
+#define CIF_ISP_WDR_TONECURVE_YM_13_SHD	(CIF_ISP_WDR_BASE + 0x000000E4)
+#define CIF_ISP_WDR_TONECURVE_YM_14_SHD	(CIF_ISP_WDR_BASE + 0x000000E8)
+#define CIF_ISP_WDR_TONECURVE_YM_15_SHD	(CIF_ISP_WDR_BASE + 0x000000EC)
+#define CIF_ISP_WDR_TONECURVE_YM_16_SHD	(CIF_ISP_WDR_BASE + 0x000000F0)
+#define CIF_ISP_WDR_TONECURVE_YM_17_SHD	(CIF_ISP_WDR_BASE + 0x000000F4)
+#define CIF_ISP_WDR_TONECURVE_YM_18_SHD	(CIF_ISP_WDR_BASE + 0x000000F8)
+#define CIF_ISP_WDR_TONECURVE_YM_19_SHD	(CIF_ISP_WDR_BASE + 0x000000FC)
+#define CIF_ISP_WDR_TONECURVE_YM_20_SHD	(CIF_ISP_WDR_BASE + 0x00000100)
+#define CIF_ISP_WDR_TONECURVE_YM_21_SHD	(CIF_ISP_WDR_BASE + 0x00000104)
+#define CIF_ISP_WDR_TONECURVE_YM_22_SHD	(CIF_ISP_WDR_BASE + 0x00000108)
+#define CIF_ISP_WDR_TONECURVE_YM_23_SHD	(CIF_ISP_WDR_BASE + 0x0000010C)
+#define CIF_ISP_WDR_TONECURVE_YM_24_SHD	(CIF_ISP_WDR_BASE + 0x00000110)
+#define CIF_ISP_WDR_TONECURVE_YM_25_SHD	(CIF_ISP_WDR_BASE + 0x00000114)
+#define CIF_ISP_WDR_TONECURVE_YM_26_SHD	(CIF_ISP_WDR_BASE + 0x00000118)
+#define CIF_ISP_WDR_TONECURVE_YM_27_SHD	(CIF_ISP_WDR_BASE + 0x0000011C)
+#define CIF_ISP_WDR_TONECURVE_YM_28_SHD	(CIF_ISP_WDR_BASE + 0x00000120)
+#define CIF_ISP_WDR_TONECURVE_YM_29_SHD	(CIF_ISP_WDR_BASE + 0x00000124)
+#define CIF_ISP_WDR_TONECURVE_YM_30_SHD	(CIF_ISP_WDR_BASE + 0x00000128)
+#define CIF_ISP_WDR_TONECURVE_YM_31_SHD	(CIF_ISP_WDR_BASE + 0x0000012C)
+#define CIF_ISP_WDR_TONECURVE_YM_32_SHD	(CIF_ISP_WDR_BASE + 0x00000130)
+
+#define CIF_ISP_VSM_BASE		0x00002F00
+#define CIF_ISP_VSM_MODE		(CIF_ISP_VSM_BASE + 0x00000000)
+#define CIF_ISP_VSM_H_OFFS		(CIF_ISP_VSM_BASE + 0x00000004)
+#define CIF_ISP_VSM_V_OFFS		(CIF_ISP_VSM_BASE + 0x00000008)
+#define CIF_ISP_VSM_H_SIZE		(CIF_ISP_VSM_BASE + 0x0000000C)
+#define CIF_ISP_VSM_V_SIZE		(CIF_ISP_VSM_BASE + 0x00000010)
+#define CIF_ISP_VSM_H_SEGMENTS		(CIF_ISP_VSM_BASE + 0x00000014)
+#define CIF_ISP_VSM_V_SEGMENTS		(CIF_ISP_VSM_BASE + 0x00000018)
+#define CIF_ISP_VSM_DELTA_H		(CIF_ISP_VSM_BASE + 0x0000001C)
+#define CIF_ISP_VSM_DELTA_V		(CIF_ISP_VSM_BASE + 0x00000020)
+
+void disable_dcrop(struct rkisp1_stream *stream, bool async);
+void config_dcrop(struct rkisp1_stream *stream, struct v4l2_rect *rect,
+		  bool async);
+
+void dump_rsz_regs(struct rkisp1_stream *stream);
+void disable_rsz(struct rkisp1_stream *stream, bool async);
+void config_rsz(struct rkisp1_stream *stream, struct v4l2_rect *in_y,
+		struct v4l2_rect *in_c, struct v4l2_rect *out_y,
+		struct v4l2_rect *out_c, bool async);
+
+void config_mi_ctrl(struct rkisp1_stream *stream);
+
+void mp_clr_frame_end_int(void __iomem * base);
+void sp_clr_frame_end_int(void __iomem * base);
+
+u32 mp_is_frame_end_int_masked(void __iomem * base);
+u32 sp_is_frame_end_int_masked(void __iomem * base);
+
+static inline void mi_set_y_size(struct rkisp1_stream *stream, int val)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	writel(val, base + stream->config->mi.y_size_init);
+}
+
+static inline void mi_set_cb_size(struct rkisp1_stream *stream, int val)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	writel(val, base + stream->config->mi.cb_size_init);
+}
+
+static inline void mi_set_cr_size(struct rkisp1_stream *stream, int val)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	writel(val, base + stream->config->mi.cr_size_init);
+}
+
+static inline void mi_set_y_addr(struct rkisp1_stream *stream, int val)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	writel(val, base + stream->config->mi.y_base_ad_init);
+}
+
+static inline void mi_set_cb_addr(struct rkisp1_stream *stream, int val)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	writel(val, base + stream->config->mi.cb_base_ad_init);
+}
+
+static inline void mi_set_cr_addr(struct rkisp1_stream *stream, int val)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	writel(val, base + stream->config->mi.cr_base_ad_init);
+}
+
+static inline void mi_set_y_offset(struct rkisp1_stream *stream, int val)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	writel(val, base + stream->config->mi.y_offs_cnt_init);
+}
+
+static inline void mi_set_cb_offset(struct rkisp1_stream *stream, int val)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	writel(val, base + stream->config->mi.cb_offs_cnt_init);
+}
+
+static inline void mi_set_cr_offset(struct rkisp1_stream *stream, int val)
+{
+	void __iomem *base = stream->ispdev->base_addr;
+
+	writel(val, base + stream->config->mi.cr_offs_cnt_init);
+}
+
+static inline void mp_set_chain_mode(void __iomem *base)
+{
+	u32 dpcl = readl(base + CIF_VI_DPCL);
+
+	dpcl |= CIF_VI_DPCL_CHAN_MODE_MP;
+	writel(dpcl, base + CIF_VI_DPCL);
+}
+
+static inline void sp_set_chain_mode(void __iomem *base)
+{
+	u32 dpcl = readl(base + CIF_VI_DPCL);
+
+	dpcl |= CIF_VI_DPCL_CHAN_MODE_SP;
+	writel(dpcl, base + CIF_VI_DPCL);
+}
+
+static inline void mp_set_data_path(void __iomem *base)
+{
+	u32 dpcl = readl(base + CIF_VI_DPCL);
+
+	dpcl = dpcl | CIF_VI_DPCL_CHAN_MODE_MP | CIF_VI_DPCL_MP_MUX_MRSZ_MI;
+	writel(dpcl, base + CIF_VI_DPCL);
+}
+
+static inline void sp_set_data_path(void __iomem *base)
+{
+	u32 dpcl = readl(base + CIF_VI_DPCL);
+
+	dpcl |= CIF_VI_DPCL_CHAN_MODE_SP;
+	writel(dpcl, base + CIF_VI_DPCL);
+}
+
+static inline void mp_frame_end_int_enable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_IMSC;
+
+	writel(CIF_MI_MP_FRAME | readl(addr), addr);
+}
+
+static inline void sp_frame_end_int_enable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_IMSC;
+
+	writel(CIF_MI_SP_FRAME | readl(addr), addr);
+}
+
+static inline void mp_frame_end_int_disable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_IMSC;
+
+	writel(~CIF_MI_MP_FRAME & readl(addr), addr);
+}
+
+static inline void sp_frame_end_int_disable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_IMSC;
+
+	writel(~CIF_MI_SP_FRAME & readl(addr), addr);
+}
+
+static inline void frame_end_int_disable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_IMSC;
+
+	writel(~(CIF_MI_SP_FRAME | CIF_MI_MP_FRAME) & readl(addr), addr);
+}
+
+static inline void clr_mpsp_frame_end_int(void __iomem *base)
+{
+	writel(CIF_MI_SP_FRAME | CIF_MI_MP_FRAME, base + CIF_MI_ICR);
+}
+
+static inline void clr_mp_crop_rsz_int(void __iomem *base)
+{
+	writel(~CIF_MI_MP_FRAME, base + CIF_MI_ICR);
+}
+
+static inline void clr_sp_crop_rsz_int(void __iomem *base)
+{
+	writel(~CIF_MI_SP_FRAME, base + CIF_MI_ICR);
+}
+
+static inline void clr_all_int(void __iomem *base)
+{
+	writel(~0, base + CIF_MI_ICR);
+}
+
+static inline void mp_set_uv_swap(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_XTD_FORMAT_CTRL;
+	u32 reg = readl(addr) & ~GENMASK(2, 0);
+
+	writel(reg | CIF_MI_XTD_FMT_CTRL_MP_CB_CR_SWAP, addr);
+}
+
+static inline void sp_set_uv_swap(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_XTD_FORMAT_CTRL;
+	u32 reg = readl(addr) & ~GENMASK(2, 0);
+
+	writel(reg | CIF_MI_XTD_FMT_CTRL_SP_CB_CR_SWAP, addr);
+}
+
+static inline void sp_set_y_width(void __iomem *base, u32 val)
+{
+	writel(val, base + CIF_MI_SP_Y_PIC_WIDTH);
+}
+
+static inline void sp_set_y_height(void __iomem *base, u32 val)
+{
+	writel(val, base + CIF_MI_SP_Y_PIC_HEIGHT);
+}
+
+static inline void sp_set_y_line_length(void __iomem *base, u32 val)
+{
+	writel(val, base + CIF_MI_SP_Y_LLENGTH);
+}
+
+static inline void mp_mi_ctrl_set_format(void __iomem *base, u32 val)
+{
+	void __iomem *addr = base + CIF_MI_CTRL;
+	u32 reg = readl(addr) & ~MI_CTRL_MP_FMT_MASK;
+
+	writel(reg | val, addr);
+}
+
+static inline void sp_mi_ctrl_set_format(void __iomem *base, u32 val)
+{
+	void __iomem *addr = base + CIF_MI_CTRL;
+	u32 reg = readl(addr) & ~MI_CTRL_SP_FMT_MASK;
+
+	writel(reg | val, addr);
+}
+
+static inline void mi_ctrl_mpyuv_enable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_CTRL;
+
+	writel(CIF_MI_CTRL_MP_ENABLE | readl(addr), addr);
+}
+
+static inline void mi_ctrl_mpyuv_disable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_CTRL;
+
+	writel(~CIF_MI_CTRL_MP_ENABLE & readl(addr), addr);
+}
+
+static inline void mi_ctrl_mp_disable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_CTRL;
+
+	writel(~(CIF_MI_CTRL_MP_ENABLE | CIF_MI_CTRL_RAW_ENABLE) & readl(addr),
+	       addr);
+}
+
+static inline void mi_ctrl_spyuv_enable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_CTRL;
+
+	writel(CIF_MI_CTRL_SP_ENABLE | readl(addr), addr);
+}
+
+static inline void mi_ctrl_spyuv_disable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_CTRL;
+
+	writel(~CIF_MI_CTRL_SP_ENABLE & readl(addr), addr);
+}
+
+static inline void mi_ctrl_sp_disable(void __iomem *base)
+{
+	mi_ctrl_spyuv_disable(base);
+}
+
+static inline void mi_ctrl_mpraw_enable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_CTRL;
+
+	writel(CIF_MI_CTRL_RAW_ENABLE | readl(addr), addr);
+}
+
+static inline void mi_ctrl_mpraw_disable(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_CTRL;
+
+	writel(~CIF_MI_CTRL_RAW_ENABLE & readl(addr), addr);
+}
+
+static inline void mp_mi_ctrl_autoupdate_en(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_CTRL;
+
+	writel(readl(addr) | CIF_MI_MP_AUTOUPDATE_ENABLE, addr);
+}
+
+static inline void sp_mi_ctrl_autoupdate_en(void __iomem *base)
+{
+	void __iomem *addr = base + CIF_MI_CTRL;
+
+	writel(readl(addr) | CIF_MI_SP_AUTOUPDATE_ENABLE, addr);
+}
+
+static inline void force_cfg_update(void __iomem * base)
+{
+	writel(CIF_MI_INIT_SOFT_UPD, base + CIF_MI_INIT);
+}
+
+static inline u32 mi_get_masked_int_status(void __iomem *base)
+{
+	return readl(base + CIF_MI_MIS);
+}
+
+#endif /* _RKISP1_REGS_H */
diff --git a/drivers/media/platform/rockchip/isp1/rkisp1.c b/drivers/media/platform/rockchip/isp1/rkisp1.c
new file mode 100644
index 000000000000..98be90f4d24a
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/rkisp1.c
@@ -0,0 +1,1230 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#include <linux/iopoll.h>
+#include <linux/pm_runtime.h>
+#include <linux/videodev2.h>
+#include <linux/vmalloc.h>
+#include <media/v4l2-event.h>
+#include "capture.h"
+#include "regs.h"
+#include "rkisp1.h"
+
+/* TODO: define the isp frame size constrains */
+#define CIF_ISP_INPUT_W_MAX		4032
+#define CIF_ISP_INPUT_H_MAX		3024
+#define CIF_ISP_INPUT_W_MIN		32
+#define CIF_ISP_INPUT_H_MIN		32
+#define CIF_ISP_OUTPUT_W_MAX		CIF_ISP_INPUT_W_MAX
+#define CIF_ISP_OUTPUT_H_MAX		CIF_ISP_INPUT_H_MAX
+#define CIF_ISP_OUTPUT_W_MIN		CIF_ISP_INPUT_W_MIN
+#define CIF_ISP_OUTPUT_H_MIN		CIF_ISP_INPUT_H_MIN
+
+/*
+ * Cropping regions of ISP
+ *
+ * +---------------------------------------------------------+
+ * | Sensor image                                            |
+ * | +---------------------------------------------------+   |
+ * | | ISP_ACQ (for black level)                         |   |
+ * | | in_frm               			         |   |
+ * | | +--------------------------------------------+    |   |
+ * | | |    ISP_OUT                                 |    |   |
+ * | | |    in_crop                                 |    |   |
+ * | | |    +---------------------------------+     |    |   |
+ * | | |    |   ISP_IS                        |     |    |   |
+ * | | |    |   rkisp1_isp_subdev: out_crop   |     |    |   |
+ * | | |    +---------------------------------+     |    |   |
+ * | | +--------------------------------------------+    |   |
+ * | +---------------------------------------------------+   |
+ * +---------------------------------------------------------+
+ */
+
+static struct v4l2_subdev *get_remote_sensor(struct v4l2_subdev *sd)
+{
+	struct media_pad *local, *remote;
+	struct media_entity *sensor_me;
+
+	local = &sd->entity.pads[RKISP1_ISP_PAD_SINK];
+	remote = media_entity_remote_pad(local);
+	if (!remote) {
+		v4l2_warn(sd, "No link between dphy and sensor\n");
+		return NULL;
+	}
+
+	sensor_me = media_entity_remote_pad(local)->entity;
+	return media_entity_to_v4l2_subdev(sensor_me);
+}
+
+static struct rkisp1_sensor_info *sd_to_sensor(struct rkisp1_device *dev,
+					       struct v4l2_subdev *sd)
+{
+	int i;
+
+	for (i = 0; i < dev->num_sensors; ++i)
+		if (dev->sensors[i].sd == sd)
+			return &dev->sensors[i];
+
+	return NULL;
+}
+
+/*
+ * This should only be called when configuring CIF
+ * or at the frame end interrupt
+ */
+static void rkisp1_config_ism(struct rkisp1_device *dev)
+{
+	void __iomem *base = dev->base_addr;
+	struct v4l2_rect *out_crop = &dev->isp_sdev.out_crop;
+	u32 val;
+
+	writel(0, base + CIF_ISP_IS_RECENTER);
+	writel(0, base + CIF_ISP_IS_MAX_DX);
+	writel(0, base + CIF_ISP_IS_MAX_DY);
+	writel(0, base + CIF_ISP_IS_DISPLACE);
+	writel(out_crop->left, base + CIF_ISP_IS_H_OFFS);
+	writel(out_crop->top, base + CIF_ISP_IS_V_OFFS);
+	writel(out_crop->width, base + CIF_ISP_IS_H_SIZE);
+	writel(out_crop->height, base + CIF_ISP_IS_V_SIZE);
+
+	/* IS(Image Stabilization) is always on, working as output crop */
+	writel(1, base + CIF_ISP_IS_CTRL);
+	val = readl(base + CIF_ISP_CTRL);
+	val |= CIF_ISP_CTRL_ISP_CFG_UPD;
+	writel(val, base + CIF_ISP_CTRL);
+}
+
+static int rkisp1_config_isp(struct rkisp1_device *dev)
+{
+	struct ispsd_in_fmt *in_fmt;
+	struct ispsd_out_fmt *out_fmt;
+	struct v4l2_mbus_framefmt *in_frm;
+	struct v4l2_rect *out_crop, *in_crop;
+	struct rkisp1_sensor_info *sensor;
+	void __iomem *base = dev->base_addr;
+	u32 isp_ctrl;
+	u32 irq_mask = 0;
+	u32 signal = 0;
+	u32 acq_mult;
+	u32 val;
+
+	sensor = dev->active_sensor;
+	in_frm = &dev->isp_sdev.in_frm;
+	in_fmt = &dev->isp_sdev.in_fmt;
+	out_fmt = &dev->isp_sdev.out_fmt;
+	out_crop = &dev->isp_sdev.out_crop;
+	in_crop = &dev->isp_sdev.in_crop;
+	val = readl(base + CIF_ICCL);
+	writel(val | CIF_ICCL_ISP_CLK, base + CIF_ICCL);
+
+	if (in_fmt->fmt_type == FMT_BAYER) {
+		acq_mult = 1;
+		if (out_fmt->fmt_type == FMT_BAYER) {
+			if (sensor->mbus.type == V4L2_MBUS_BT656)
+				isp_ctrl =
+					CIF_ISP_CTRL_ISP_MODE_RAW_PICT_ITU656;
+			else
+				isp_ctrl =
+					CIF_ISP_CTRL_ISP_MODE_RAW_PICT;
+		} else {
+			writel(CIF_ISP_DEMOSAIC_TH(0xc),
+			       base + CIF_ISP_DEMOSAIC);
+
+			if (sensor->mbus.type == V4L2_MBUS_BT656)
+				isp_ctrl = CIF_ISP_CTRL_ISP_MODE_BAYER_ITU656;
+			else
+				isp_ctrl = CIF_ISP_CTRL_ISP_MODE_BAYER_ITU601;
+		}
+	} else if (in_fmt->fmt_type == FMT_YUV) {
+		acq_mult = 2;
+		if (sensor->mbus.type == V4L2_MBUS_CSI2) {
+			isp_ctrl = CIF_ISP_CTRL_ISP_MODE_ITU601;
+		} else {
+			if (sensor->mbus.type == V4L2_MBUS_BT656)
+				isp_ctrl = CIF_ISP_CTRL_ISP_MODE_ITU656;
+			else
+				isp_ctrl = CIF_ISP_CTRL_ISP_MODE_ITU601;
+
+		}
+
+		irq_mask |= CIF_ISP_DATA_LOSS;
+	}
+
+	/* Set up input acquisition properties */
+	if (sensor->mbus.type == V4L2_MBUS_BT656 ||
+	    sensor->mbus.type == V4L2_MBUS_PARALLEL) {
+		if (sensor->mbus.flags &
+			V4L2_MBUS_PCLK_SAMPLE_RISING)
+			signal = CIF_ISP_ACQ_PROP_POS_EDGE;
+	}
+
+	if (sensor->mbus.type == V4L2_MBUS_PARALLEL) {
+		if (sensor->mbus.flags & V4L2_MBUS_VSYNC_ACTIVE_LOW)
+			signal |= CIF_ISP_ACQ_PROP_VSYNC_LOW;
+
+		if (sensor->mbus.flags & V4L2_MBUS_HSYNC_ACTIVE_LOW)
+			signal |= CIF_ISP_ACQ_PROP_HSYNC_LOW;
+	}
+
+	writel(isp_ctrl, base + CIF_ISP_CTRL);
+	writel(signal | in_fmt->yuv_seq |
+	       CIF_ISP_ACQ_PROP_BAYER_PAT(in_fmt->bayer_pat) |
+	       CIF_ISP_ACQ_PROP_FIELD_SEL_ALL, base + CIF_ISP_ACQ_PROP);
+	writel(0, base + CIF_ISP_ACQ_NR_FRAMES);
+
+	/* Acquisition Size */
+	writel(0, base + CIF_ISP_ACQ_H_OFFS);
+	writel(0, base + CIF_ISP_ACQ_V_OFFS);
+	writel(acq_mult * in_frm->width, base + CIF_ISP_ACQ_H_SIZE);
+	writel(in_frm->height, base + CIF_ISP_ACQ_V_SIZE);
+
+	/* ISP Out Area */
+	writel(in_crop->left, base + CIF_ISP_OUT_H_OFFS);
+	writel(in_crop->top, base + CIF_ISP_OUT_V_OFFS);
+	writel(in_crop->width, base + CIF_ISP_OUT_H_SIZE);
+	writel(in_crop->height, base + CIF_ISP_OUT_V_SIZE);
+
+	/* interrupt mask */
+	irq_mask |= CIF_ISP_FRAME | CIF_ISP_V_START | CIF_ISP_PIC_SIZE_ERROR |
+		    CIF_ISP_FRAME_IN;
+	writel(irq_mask, base + CIF_ISP_IMSC);
+
+	if (out_fmt->fmt_type == FMT_BAYER)
+		rkisp1_disable_isp(&dev->params_vdev);
+	else
+		rkisp1_configure_isp(&dev->params_vdev, in_fmt,
+				     V4L2_QUANTIZATION_FULL_RANGE);
+
+	return 0;
+}
+
+static int rkisp1_config_dvp(struct rkisp1_device *dev)
+{
+	struct ispsd_in_fmt *in_fmt = &dev->isp_sdev.in_fmt;
+	void __iomem *base = dev->base_addr;
+	u32 val, input_sel;
+
+	switch (in_fmt->bus_width) {
+	case 8:
+		input_sel = CIF_ISP_ACQ_PROP_IN_SEL_8B_ZERO;
+		break;
+	case 10:
+		input_sel = CIF_ISP_ACQ_PROP_IN_SEL_10B_ZERO;
+		break;
+	case 12:
+		input_sel = CIF_ISP_ACQ_PROP_IN_SEL_12B;
+		break;
+	default:
+		v4l2_err(&dev->v4l2_dev, "Invalid bus width\n");
+		return -EINVAL;
+	}
+
+	val = readl(base + CIF_ISP_ACQ_PROP);
+	writel(val | input_sel, base + CIF_ISP_ACQ_PROP);
+
+	return 0;
+}
+
+static int rkisp1_config_mipi(struct rkisp1_device *dev)
+{
+	u32 mipi_ctrl, val;
+	void __iomem *base = dev->base_addr;
+	struct ispsd_in_fmt *in_fmt = &dev->isp_sdev.in_fmt;
+	struct rkisp1_sensor_info *sensor = dev->active_sensor;
+	int lanes;
+
+	switch (sensor->mbus.flags & V4L2_MBUS_CSI2_LANES) {
+	case V4L2_MBUS_CSI2_4_LANE:
+		lanes = 4;
+		break;
+	case V4L2_MBUS_CSI2_3_LANE:
+		lanes = 3;
+		break;
+	case V4L2_MBUS_CSI2_2_LANE:
+		lanes = 2;
+		break;
+	case V4L2_MBUS_CSI2_1_LANE:
+		lanes = 1;
+		break;
+	default:
+		return -EINVAL;
+	}
+
+	val = readl(base + CIF_ICCL);
+	writel(val | CIF_ICCL_MIPI_CLK, base + CIF_ICCL);
+
+	mipi_ctrl = CIF_MIPI_CTRL_NUM_LANES(lanes - 1) |
+		    CIF_MIPI_CTRL_SHUTDOWNLANES(0xf) |
+		    CIF_MIPI_CTRL_ERR_SOT_SYNC_HS_SKIP |
+		    CIF_MIPI_CTRL_CLOCKLANE_ENA;
+
+	writel(mipi_ctrl, base + CIF_MIPI_CTRL);
+
+	/* Configure Data Type and Virtual Channel */
+	writel(CIF_MIPI_DATA_SEL_DT(in_fmt->mipi_dt) | CIF_MIPI_DATA_SEL_VC(0),
+	       base + CIF_MIPI_IMG_DATA_SEL);
+
+	/* Clear MIPI interrupts */
+	writel(~0, base + CIF_MIPI_ICR);
+	/*
+	 * Disable CIF_MIPI_ERR_DPHY interrupt here temporary for
+	 * isp bus may be dead when switch isp.
+	 */
+	writel(CIF_MIPI_FRAME_END | CIF_MIPI_ERR_CSI | CIF_MIPI_ERR_DPHY |
+	       CIF_MIPI_SYNC_FIFO_OVFLW(0x03) | CIF_MIPI_ADD_DATA_OVFLW,
+	       base + CIF_MIPI_IMSC);
+
+	v4l2_dbg(1, rkisp1_debug, &dev->v4l2_dev, "\n  MIPI_CTRL 0x%08x\n"
+		 "  MIPI_IMG_DATA_SEL 0x%08x\n"
+		 "  MIPI_STATUS 0x%08x\n"
+		 "  MIPI_IMSC 0x%08x\n",
+		 readl(base + CIF_MIPI_CTRL),
+		 readl(base + CIF_MIPI_IMG_DATA_SEL),
+		 readl(base + CIF_MIPI_STATUS),
+		 readl(base + CIF_MIPI_IMSC));
+
+	return 0;
+}
+
+static int rkisp1_config_path(struct rkisp1_device *dev)
+{
+	int ret = 0;
+	struct rkisp1_sensor_info *sensor = dev->active_sensor;
+	u32 dpcl = readl(dev->base_addr + CIF_VI_DPCL);
+
+	if (sensor->mbus.type == V4L2_MBUS_BT656 ||
+	    sensor->mbus.type == V4L2_MBUS_PARALLEL) {
+		ret = rkisp1_config_dvp(dev);
+		dpcl |= CIF_VI_DPCL_IF_SEL_PARALLEL;
+	} else if (sensor->mbus.type == V4L2_MBUS_CSI2) {
+		ret = rkisp1_config_mipi(dev);
+		dpcl |= CIF_VI_DPCL_IF_SEL_MIPI;
+	}
+
+	writel(dpcl, dev->base_addr + CIF_VI_DPCL);
+
+	return ret;
+}
+
+static int rkisp1_config_cif(struct rkisp1_device *dev)
+{
+	int ret = 0;
+	u32 cif_id;
+
+	v4l2_dbg(1, rkisp1_debug, &dev->v4l2_dev,
+		 "SP state = %d, MP state = %d\n",
+		 dev->stream[RKISP1_STREAM_SP].state,
+		 dev->stream[RKISP1_STREAM_MP].state);
+
+	cif_id = readl(dev->base_addr + CIF_VI_ID);
+	v4l2_dbg(1, rkisp1_debug, &dev->v4l2_dev, "CIF_ID 0x%08x\n", cif_id);
+
+	ret = rkisp1_config_isp(dev);
+	if (ret < 0)
+		return ret;
+	ret = rkisp1_config_path(dev);
+	if (ret < 0)
+		return ret;
+	rkisp1_config_ism(dev);
+
+	return 0;
+}
+
+static int rkisp1_isp_stop(struct rkisp1_device *dev)
+{
+	void __iomem *base = dev->base_addr;
+	u32 val;
+
+	v4l2_dbg(1, rkisp1_debug, &dev->v4l2_dev,
+		 "SP state = %d, MP state = %d\n",
+		 dev->stream[RKISP1_STREAM_SP].state,
+		 dev->stream[RKISP1_STREAM_MP].state);
+
+	/*
+	 * ISP(mi) stop in mi frame end -> Stop ISP(mipi) ->
+	 * Stop ISP(isp) ->wait for ISP isp off
+	 */
+	/* stop and clear MI, MIPI, and ISP interrupts */
+	writel(0, base + CIF_MIPI_IMSC);
+	writel(~0, base + CIF_MIPI_ICR);
+
+	writel(0, base + CIF_ISP_IMSC);
+	writel(~0, base + CIF_ISP_ICR);
+
+	writel(0, base + CIF_MI_IMSC);
+	writel(~0, base + CIF_MI_ICR);
+	val = readl(base + CIF_MIPI_CTRL);
+	writel(val & (~CIF_MIPI_CTRL_OUTPUT_ENA), base + CIF_MIPI_CTRL);
+	/* stop ISP */
+	val = readl(base + CIF_ISP_CTRL);
+	val &= ~(CIF_ISP_CTRL_ISP_INFORM_ENABLE | CIF_ISP_CTRL_ISP_ENABLE);
+	writel(val, base + CIF_ISP_CTRL);
+
+	val = readl(base + CIF_ISP_CTRL);
+	writel(val | CIF_ISP_CTRL_ISP_CFG_UPD, base + CIF_ISP_CTRL);
+
+	readx_poll_timeout(readl, base + CIF_ISP_RIS,
+			   val, val & CIF_ISP_OFF, 20, 100);
+	v4l2_dbg(1, rkisp1_debug, &dev->v4l2_dev,
+		"state(MP:%d, SP:%d), MI_CTRL:%x, ISP_CTRL:%x, MIPI_CTRL:%x\n",
+		 dev->stream[RKISP1_STREAM_SP].state,
+		 dev->stream[RKISP1_STREAM_MP].state,
+		 readl(base + CIF_MI_CTRL),
+		 readl(base + CIF_ISP_CTRL),
+		 readl(base + CIF_MIPI_CTRL));
+
+	writel(CIF_IRCL_MIPI_SW_RST | CIF_IRCL_ISP_SW_RST, base + CIF_IRCL);
+	writel(0x0, base + CIF_IRCL);
+
+	return 0;
+}
+
+static int rkisp1_isp_start(struct rkisp1_device *dev)
+{
+	struct rkisp1_sensor_info *sensor = dev->active_sensor;
+	void __iomem *base = dev->base_addr;
+	u32 val;
+
+	v4l2_dbg(1, rkisp1_debug, &dev->v4l2_dev,
+		 "SP state = %d, MP state = %d\n",
+		 dev->stream[RKISP1_STREAM_SP].state,
+		 dev->stream[RKISP1_STREAM_MP].state);
+
+	/* Activate MIPI */
+	if (sensor->mbus.type == V4L2_MBUS_CSI2) {
+		val = readl(base + CIF_MIPI_CTRL);
+		writel(val | CIF_MIPI_CTRL_OUTPUT_ENA, base + CIF_MIPI_CTRL);
+	}
+	/* Activate ISP */
+	val = readl(base + CIF_ISP_CTRL);
+	val |= CIF_ISP_CTRL_ISP_CFG_UPD | CIF_ISP_CTRL_ISP_ENABLE |
+	       CIF_ISP_CTRL_ISP_INFORM_ENABLE;
+	writel(val, base + CIF_ISP_CTRL);
+
+	/* TODO: Is the 1000us too long?
+	 * CIF spec says to wait for sufficient time after enabling
+	 * the MIPI interface and before starting the sensor output.
+	 */
+	usleep_range(1000, 1200);
+
+	v4l2_dbg(1, rkisp1_debug, &dev->v4l2_dev,
+		 "SP state = %d, MP state = %d MI_CTRL 0x%08x\n"
+		 "  ISP_CTRL 0x%08x MIPI_CTRL 0x%08x\n",
+		 dev->stream[RKISP1_STREAM_SP].state,
+		 dev->stream[RKISP1_STREAM_MP].state,
+		 readl(base + CIF_MI_CTRL),
+		 readl(base + CIF_ISP_CTRL),
+		 readl(base + CIF_MIPI_CTRL));
+
+	return 0;
+}
+
+static const struct ispsd_in_fmt rkisp1_isp_input_formats[] = {
+	{
+		.mbus_code	= MEDIA_BUS_FMT_SBGGR10_1X10,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW10,
+		.bayer_pat	= RAW_BGGR,
+		.bus_width	= 10,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SRGGB10_1X10,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW10,
+		.bayer_pat	= RAW_RGGB,
+		.bus_width	= 10,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGBRG10_1X10,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW10,
+		.bayer_pat	= RAW_GBRG,
+		.bus_width	= 10,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGRBG10_1X10,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW10,
+		.bayer_pat	= RAW_GRBG,
+		.bus_width	= 10,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SRGGB12_1X12,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW12,
+		.bayer_pat	= RAW_RGGB,
+		.bus_width	= 12,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SBGGR12_1X12,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW12,
+		.bayer_pat	= RAW_BGGR,
+		.bus_width	= 12,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGBRG12_1X12,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW12,
+		.bayer_pat	= RAW_GBRG,
+		.bus_width	= 12,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGRBG12_1X12,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW12,
+		.bayer_pat	= RAW_GRBG,
+		.bus_width	= 12,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SRGGB8_1X8,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW8,
+		.bayer_pat	= RAW_RGGB,
+		.bus_width	= 8,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SBGGR8_1X8,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW8,
+		.bayer_pat	= RAW_BGGR,
+		.bus_width	= 8,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGBRG8_1X8,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW8,
+		.bayer_pat	= RAW_GBRG,
+		.bus_width	= 8,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGRBG8_1X8,
+		.fmt_type	= FMT_BAYER,
+		.mipi_dt	= CIF_CSI2_DT_RAW8,
+		.bayer_pat	= RAW_GRBG,
+		.bus_width	= 8,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_YUYV8_1X16,
+		.fmt_type	= FMT_YUV,
+		.mipi_dt	= CIF_CSI2_DT_YUV422_8b,
+		.yuv_seq	= CIF_ISP_ACQ_PROP_YCBYCR,
+		.bus_width	= 16,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_YVYU8_1X16,
+		.fmt_type	= FMT_YUV,
+		.mipi_dt	= CIF_CSI2_DT_YUV422_8b,
+		.yuv_seq	= CIF_ISP_ACQ_PROP_YCRYCB,
+		.bus_width	= 16,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_UYVY8_1X16,
+		.fmt_type	= FMT_YUV,
+		.mipi_dt	= CIF_CSI2_DT_YUV422_8b,
+		.yuv_seq	= CIF_ISP_ACQ_PROP_CBYCRY,
+		.bus_width	= 16,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_VYUY8_1X16,
+		.fmt_type	= FMT_YUV,
+		.mipi_dt	= CIF_CSI2_DT_YUV422_8b,
+		.yuv_seq	= CIF_ISP_ACQ_PROP_CRYCBY,
+		.bus_width	= 16,
+	},
+};
+
+static const struct ispsd_out_fmt rkisp1_isp_output_formats[] = {
+	{
+		.mbus_code	= MEDIA_BUS_FMT_YUYV8_2X8,
+		.fmt_type	= FMT_YUV,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SRGGB12_1X12,
+		.fmt_type	= FMT_BAYER,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SBGGR12_1X12,
+		.fmt_type	= FMT_BAYER,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGBRG12_1X12,
+		.fmt_type	= FMT_BAYER,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGRBG12_1X12,
+		.fmt_type	= FMT_BAYER,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SRGGB10_1X10,
+		.fmt_type	= FMT_BAYER,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SBGGR10_1X10,
+		.fmt_type	= FMT_BAYER,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGBRG10_1X10,
+		.fmt_type	= FMT_BAYER,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGRBG10_1X10,
+		.fmt_type	= FMT_BAYER,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SRGGB8_1X8,
+		.fmt_type	= FMT_BAYER,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SBGGR8_1X8,
+		.fmt_type	= FMT_BAYER,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGBRG8_1X8,
+		.fmt_type	= FMT_BAYER,
+	}, {
+		.mbus_code	= MEDIA_BUS_FMT_SGRBG8_1X8,
+		.fmt_type	= FMT_BAYER,
+	},
+};
+
+static const struct ispsd_in_fmt *find_in_fmt(u32 mbus_code)
+{
+	const struct ispsd_in_fmt *fmt;
+	int i, array_size = ARRAY_SIZE(rkisp1_isp_input_formats);
+
+	for (i = 0; i < array_size; i++) {
+		fmt = &rkisp1_isp_input_formats[i];
+		if (fmt->mbus_code == mbus_code)
+			return fmt;
+	}
+
+	return NULL;
+}
+
+static const struct ispsd_out_fmt *find_out_fmt(u32 mbus_code)
+{
+	const struct ispsd_out_fmt *fmt;
+	int i, array_size = ARRAY_SIZE(rkisp1_isp_output_formats);
+
+	for (i = 0; i < array_size; i++) {
+		fmt = &rkisp1_isp_output_formats[i];
+		if (fmt->mbus_code == mbus_code)
+			return fmt;
+	}
+
+	return NULL;
+}
+
+static int rkisp1_isp_sd_enum_mbus_code(struct v4l2_subdev *sd,
+					struct v4l2_subdev_pad_config *cfg,
+					struct v4l2_subdev_mbus_code_enum *code)
+{
+	int i = code->index;
+
+	if (code->pad == RKISP1_ISP_PAD_SINK) {
+		if (i >= ARRAY_SIZE(rkisp1_isp_input_formats))
+			return -EINVAL;
+		code->code = rkisp1_isp_input_formats[i].mbus_code;
+	} else {
+		if (i >= ARRAY_SIZE(rkisp1_isp_output_formats))
+			return -EINVAL;
+		code->code = rkisp1_isp_output_formats[i].mbus_code;
+	}
+
+	return 0;
+}
+
+#define sd_to_isp_sd(_sd) container_of(_sd, struct rkisp1_isp_subdev, sd)
+static int rkisp1_isp_sd_get_fmt(struct v4l2_subdev *sd,
+				 struct v4l2_subdev_pad_config *cfg,
+				 struct v4l2_subdev_format *fmt)
+{
+	struct v4l2_mbus_framefmt *mf = &fmt->format;
+	struct rkisp1_isp_subdev *isp_sd = sd_to_isp_sd(sd);
+
+	if ((fmt->pad != RKISP1_ISP_PAD_SINK) &&
+	    (fmt->pad != RKISP1_ISP_PAD_SOURCE_PATH))
+		return -EINVAL;
+
+	if (fmt->which == V4L2_SUBDEV_FORMAT_TRY) {
+		mf = v4l2_subdev_get_try_format(sd, cfg, fmt->pad);
+		fmt->format = *mf;
+		return 0;
+	}
+
+	if (fmt->pad == RKISP1_ISP_PAD_SINK) {
+		*mf = isp_sd->in_frm;
+	} else if (fmt->pad == RKISP1_ISP_PAD_SOURCE_PATH) {
+		*mf = isp_sd->in_frm;
+		mf->width = isp_sd->out_crop.width;
+		mf->height = isp_sd->out_crop.height;
+	}
+	mf->field = V4L2_FIELD_NONE;
+
+	return 0;
+}
+
+static void rkisp1_isp_sd_try_fmt(struct v4l2_subdev *sd,
+				  unsigned int pad,
+				  struct v4l2_mbus_framefmt *fmt)
+{
+	struct rkisp1_device *isp_dev = sd_to_isp_dev(sd);
+	struct rkisp1_isp_subdev *isp_sd = &isp_dev->isp_sdev;
+	const struct ispsd_in_fmt *in_fmt;
+	const struct ispsd_out_fmt *out_fmt;
+
+	switch (pad) {
+	case RKISP1_ISP_PAD_SINK:
+		in_fmt = find_in_fmt(fmt->code);
+		if (in_fmt) {
+			fmt->code = in_fmt->mbus_code;
+			fmt->colorspace = rkisp1_get_colorspace(in_fmt->fmt_type);
+		} else {
+			fmt->code = MEDIA_BUS_FMT_SRGGB10_1X10;
+			fmt->colorspace = V4L2_COLORSPACE_SRGB;
+		}
+		fmt->width  = clamp_t(u32, fmt->width, CIF_ISP_INPUT_W_MIN,
+				      CIF_ISP_INPUT_W_MAX);
+		fmt->height = clamp_t(u32, fmt->height, CIF_ISP_INPUT_H_MIN,
+				      CIF_ISP_INPUT_H_MAX);
+		break;
+	case RKISP1_ISP_PAD_SOURCE_PATH:
+		out_fmt = find_out_fmt(fmt->code);
+		if (out_fmt) {
+			fmt->code = out_fmt->mbus_code;
+			fmt->colorspace = rkisp1_get_colorspace(out_fmt->fmt_type);
+		} else {
+			fmt->code = MEDIA_BUS_FMT_YUYV8_2X8;
+			fmt->colorspace = V4L2_COLORSPACE_JPEG;
+		}
+		/* Size is set in s_selection */
+		fmt->width  = isp_sd->out_crop.width;
+		fmt->height = isp_sd->out_crop.height;
+		break;
+	}
+
+	fmt->field = V4L2_FIELD_NONE;
+}
+
+static int rkisp1_isp_sd_set_fmt(struct v4l2_subdev *sd,
+				 struct v4l2_subdev_pad_config *cfg,
+				 struct v4l2_subdev_format *fmt)
+{
+	struct rkisp1_device *isp_dev = sd_to_isp_dev(sd);
+	struct rkisp1_isp_subdev *isp_sd = &isp_dev->isp_sdev;
+	struct v4l2_mbus_framefmt *mf = &fmt->format;
+
+	if ((fmt->pad != RKISP1_ISP_PAD_SINK) &&
+	    (fmt->pad != RKISP1_ISP_PAD_SOURCE_PATH))
+		return -EINVAL;
+
+	rkisp1_isp_sd_try_fmt(sd, fmt->pad, mf);
+
+	if (fmt->which == V4L2_SUBDEV_FORMAT_TRY) {
+		struct v4l2_mbus_framefmt *try_mf;
+
+		mf = v4l2_subdev_get_try_format(sd, cfg, fmt->pad);
+		*try_mf = *mf;
+		return 0;
+	}
+
+	if (fmt->pad == RKISP1_ISP_PAD_SINK) {
+		const struct ispsd_in_fmt *in_fmt;
+
+		in_fmt = find_in_fmt(mf->code);
+		isp_sd->in_fmt = *in_fmt;
+		isp_sd->in_frm = *mf;
+	} else if (fmt->pad == RKISP1_ISP_PAD_SOURCE_PATH) {
+		const struct ispsd_out_fmt *out_fmt;
+
+		/* Ignore width/height */
+		out_fmt = find_out_fmt(mf->code);
+		isp_sd->out_fmt = *out_fmt;
+	}
+
+	return 0;
+}
+
+static void rkisp1_isp_sd_try_crop(struct v4l2_subdev *sd,
+				  struct v4l2_subdev_pad_config *cfg,
+				  struct v4l2_subdev_selection *sel)
+{
+	struct rkisp1_isp_subdev *isp_sd = sd_to_isp_sd(sd);
+	struct v4l2_mbus_framefmt in_frm = isp_sd->in_frm;
+	struct v4l2_rect in_crop = isp_sd->in_crop;
+	struct v4l2_rect *input = &sel->r;
+
+	if (sel->which == V4L2_SUBDEV_FORMAT_TRY) {
+		in_frm = *v4l2_subdev_get_try_format(sd, cfg, RKISP1_ISP_PAD_SINK);
+		in_crop = *v4l2_subdev_get_try_crop(sd, cfg, RKISP1_ISP_PAD_SINK);
+	}
+
+	input->left = ALIGN(input->left, 2);
+	input->width = ALIGN(input->width, 2);
+
+	if (sel->pad == RKISP1_ISP_PAD_SINK) {
+		input->left = clamp_t(u32, input->left, 0, in_frm.width);
+		input->top = clamp_t(u32, input->top, 0, in_frm.height);
+		input->width = clamp_t(u32, input->width, CIF_ISP_INPUT_W_MIN,
+				in_frm.width - input->left);
+		input->height = clamp_t(u32, input->height,
+				CIF_ISP_INPUT_H_MIN,
+				in_frm.height - input->top);
+	} else if (sel->pad == RKISP1_ISP_PAD_SOURCE_PATH) {
+		input->left = clamp_t(u32, input->left, 0, in_crop.width);
+		input->top = clamp_t(u32, input->top, 0, in_crop.height);
+		input->width = clamp_t(u32, input->width, CIF_ISP_OUTPUT_W_MIN,
+				in_crop.width - input->left);
+		input->height = clamp_t(u32, input->height, CIF_ISP_OUTPUT_H_MIN,
+				in_crop.height - input->top);
+	}
+}
+
+static int rkisp1_isp_sd_get_selection(struct v4l2_subdev *sd,
+				       struct v4l2_subdev_pad_config *cfg,
+				       struct v4l2_subdev_selection *sel)
+{
+	struct rkisp1_isp_subdev *isp_sd = sd_to_isp_sd(sd);
+
+	if (sel->pad != RKISP1_ISP_PAD_SOURCE_PATH &&
+	    sel->pad != RKISP1_ISP_PAD_SINK)
+		return -EINVAL;
+
+	if (sel->which == V4L2_SUBDEV_FORMAT_TRY) {
+		struct v4l2_rect *try_sel;
+
+		try_sel = v4l2_subdev_get_try_crop(sd, cfg, sel->pad);
+		sel->r = *try_sel;
+		return 0;
+	}
+
+	switch (sel->target) {
+	case V4L2_SEL_TGT_CROP_BOUNDS:
+		if (sel->pad == RKISP1_ISP_PAD_SINK) {
+			sel->r.height = isp_sd->in_frm.height;
+			sel->r.width = isp_sd->in_frm.width;
+			sel->r.left = 0;
+			sel->r.top = 0;
+		} else {
+			sel->r = isp_sd->in_crop;
+		}
+		break;
+	case V4L2_SEL_TGT_CROP:
+		if (sel->pad == RKISP1_ISP_PAD_SINK)
+			sel->r = isp_sd->in_crop;
+		else
+			sel->r = isp_sd->out_crop;
+		break;
+	default:
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int rkisp1_isp_sd_set_selection(struct v4l2_subdev *sd,
+				       struct v4l2_subdev_pad_config *cfg,
+				       struct v4l2_subdev_selection *sel)
+{
+	struct rkisp1_isp_subdev *isp_sd = sd_to_isp_sd(sd);
+
+	if (sel->pad != RKISP1_ISP_PAD_SOURCE_PATH &&
+	    sel->pad != RKISP1_ISP_PAD_SINK)
+		return -EINVAL;
+	if (sel->target != V4L2_SEL_TGT_CROP)
+		return -EINVAL;
+
+	rkisp1_isp_sd_try_crop(sd, cfg, sel);
+
+	if (sel->which == V4L2_SUBDEV_FORMAT_TRY) {
+		struct v4l2_rect *try_sel;
+
+		try_sel = v4l2_subdev_get_try_crop(sd, cfg, sel->pad);
+		*try_sel = sel->r;
+		return 0;
+	}
+
+	if (sel->pad == RKISP1_ISP_PAD_SINK)
+		isp_sd->in_crop = sel->r;
+	else
+		isp_sd->out_crop = sel->r;
+
+	return 0;
+}
+
+static int rkisp1_isp_sd_s_stream(struct v4l2_subdev *sd, int on)
+{
+	struct rkisp1_device *isp_dev = sd_to_isp_dev(sd);
+	struct rkisp1_sensor_info *sensor;
+	struct v4l2_subdev *sensor_sd;
+	int ret = 0;
+
+	if (!on)
+		return rkisp1_isp_stop(isp_dev);
+
+	sensor_sd = get_remote_sensor(sd);
+	if (!sensor_sd)
+		return -ENODEV;
+
+	sensor = sd_to_sensor(isp_dev, sensor_sd);
+	/*
+	 * Update sensor bus configuration. This is only effective
+	 * for sensors chained off an external CSI2 PHY.
+	 */
+	ret = v4l2_subdev_call(sensor->sd, video, g_mbus_config,
+			       &sensor->mbus);
+	if (ret && ret != -ENOIOCTLCMD)
+		return ret;
+	isp_dev->active_sensor = sensor;
+
+	atomic_set(&isp_dev->isp_sdev.frm_sync_seq, 0);
+	ret = rkisp1_config_cif(isp_dev);
+	if (ret < 0)
+		return ret;
+
+	return rkisp1_isp_start(isp_dev);
+}
+
+static void rkisp1_config_clk(struct rkisp1_device *dev)
+{
+	u32 val = CIF_ICCL_ISP_CLK | CIF_ICCL_CP_CLK | CIF_ICCL_MRSZ_CLK |
+		CIF_ICCL_SRSZ_CLK | CIF_ICCL_JPEG_CLK | CIF_ICCL_MI_CLK |
+		CIF_ICCL_MIPI_CLK | CIF_ICCL_DCROP_CLK;
+
+	writel(val, dev->base_addr + CIF_ICCL);
+}
+
+static int rkisp1_isp_sd_s_power(struct v4l2_subdev *sd, int on)
+{
+	struct rkisp1_device *dev = sd_to_isp_dev(sd);
+	int ret;
+
+	v4l2_dbg(1, rkisp1_debug, &dev->v4l2_dev,
+		 "streaming count %d, s_power: %d\n",
+		 atomic_read(&dev->poweron_cnt), on);
+
+	if (on) {
+		ret = pm_runtime_get_sync(dev->dev);
+		if (ret < 0)
+			return ret;
+
+		/* TODO: Reset the isp would clear iommu too */
+		/* writel(CIF_IRCL_CIF_SW_RST, dev->base_addr + CIF_IRCL); */
+		/* udelay(1); wait at least 10 module clock cycles */
+
+		rkisp1_config_clk(dev);
+	} else {
+		ret = pm_runtime_put(dev->dev);
+		if (ret < 0)
+			return ret;
+	}
+
+	return 0;
+}
+
+static int rkisp1_subdev_link_validate(struct media_link *link)
+{
+	if (link->source->index == RKISP1_ISP_PAD_SINK_PARAMS)
+		return 0;
+
+	return v4l2_subdev_link_validate(link);
+}
+
+static int rkisp1_subdev_fmt_link_validate(struct v4l2_subdev *sd,
+			     struct media_link *link,
+			     struct v4l2_subdev_format *source_fmt,
+			     struct v4l2_subdev_format *sink_fmt)
+{
+	if (source_fmt->format.code != sink_fmt->format.code)
+		return -EINVAL;
+
+	/* Crop is available */
+	if (source_fmt->format.width < sink_fmt->format.width ||
+		source_fmt->format.height < sink_fmt->format.height)
+		return -EINVAL;
+
+	return 0;
+}
+
+static void
+riksp1_isp_queue_event_sof(struct rkisp1_isp_subdev *isp)
+{
+	struct v4l2_event event = {
+		.type = V4L2_EVENT_FRAME_SYNC,
+		.u.frame_sync.frame_sequence =
+			atomic_inc_return(&isp->frm_sync_seq) - 1,
+	};
+	v4l2_event_queue(isp->sd.devnode, &event);
+}
+
+static int rkisp1_isp_sd_subs_evt(struct v4l2_subdev *sd, struct v4l2_fh *fh,
+				  struct v4l2_event_subscription *sub)
+{
+	if (sub->type != V4L2_EVENT_FRAME_SYNC)
+		return -EINVAL;
+
+	/* Line number. For now only zero accepted. */
+	if (sub->id != 0)
+		return -EINVAL;
+
+	return v4l2_event_subscribe(fh, sub, 0, NULL);
+}
+
+static const struct v4l2_subdev_pad_ops rkisp1_isp_sd_pad_ops = {
+	.enum_mbus_code = rkisp1_isp_sd_enum_mbus_code,
+	.get_selection = rkisp1_isp_sd_get_selection,
+	.set_selection = rkisp1_isp_sd_set_selection,
+	.get_fmt = rkisp1_isp_sd_get_fmt,
+	.set_fmt = rkisp1_isp_sd_set_fmt,
+	.link_validate = rkisp1_subdev_fmt_link_validate,
+};
+
+static const struct media_entity_operations rkisp1_isp_sd_media_ops = {
+	.link_validate = rkisp1_subdev_link_validate,
+};
+
+static const struct v4l2_subdev_video_ops rkisp1_isp_sd_video_ops = {
+	.s_stream = rkisp1_isp_sd_s_stream,
+};
+
+static const struct v4l2_subdev_core_ops rkisp1_isp_core_ops = {
+	.subscribe_event = rkisp1_isp_sd_subs_evt,
+	.unsubscribe_event = v4l2_event_subdev_unsubscribe,
+	.s_power = rkisp1_isp_sd_s_power,
+};
+
+static struct v4l2_subdev_ops rkisp1_isp_sd_ops = {
+	.core = &rkisp1_isp_core_ops,
+	.video = &rkisp1_isp_sd_video_ops,
+	.pad = &rkisp1_isp_sd_pad_ops,
+};
+
+static void rkisp1_isp_sd_init_default_fmt(struct rkisp1_isp_subdev *isp_sd)
+{
+	struct v4l2_mbus_framefmt *in_frm = &isp_sd->in_frm;
+	struct v4l2_rect *in_crop = &isp_sd->in_crop;
+	struct v4l2_rect *out_crop = &isp_sd->out_crop;
+	struct ispsd_in_fmt *in_fmt = &isp_sd->in_fmt;
+	struct ispsd_out_fmt *out_fmt = &isp_sd->out_fmt;
+
+	*in_fmt = rkisp1_isp_input_formats[0];
+	in_frm->width = RKISP1_DEFAULT_WIDTH;
+	in_frm->height = RKISP1_DEFAULT_HEIGHT;
+	in_frm->colorspace = rkisp1_get_colorspace(in_fmt->fmt_type);
+	in_frm->code = in_fmt->mbus_code;
+
+	in_crop->width = in_frm->width;
+	in_crop->height = in_frm->height;
+	in_crop->left = 0;
+	in_crop->top = 0;
+
+	/* propagate to source */
+	*out_crop = *in_crop;
+	*out_fmt = rkisp1_isp_output_formats[0];
+}
+
+int rkisp1_register_isp_subdev(struct rkisp1_device *isp_dev,
+			       struct v4l2_device *v4l2_dev)
+{
+	struct rkisp1_isp_subdev *isp_sdev = &isp_dev->isp_sdev;
+	struct v4l2_subdev *sd = &isp_sdev->sd;
+	int ret;
+
+	v4l2_subdev_init(sd, &rkisp1_isp_sd_ops);
+	sd->flags |= V4L2_SUBDEV_FL_HAS_DEVNODE | V4L2_SUBDEV_FL_HAS_EVENTS;
+	sd->entity.ops = &rkisp1_isp_sd_media_ops;
+	snprintf(sd->name, sizeof(sd->name), "rkisp1-isp-subdev");
+
+	isp_sdev->pads[RKISP1_ISP_PAD_SINK].flags =
+		MEDIA_PAD_FL_SINK | MEDIA_PAD_FL_MUST_CONNECT;
+	isp_sdev->pads[RKISP1_ISP_PAD_SINK_PARAMS].flags = MEDIA_PAD_FL_SINK;
+	isp_sdev->pads[RKISP1_ISP_PAD_SOURCE_PATH].flags = MEDIA_PAD_FL_SOURCE;
+	isp_sdev->pads[RKISP1_ISP_PAD_SOURCE_STATS].flags = MEDIA_PAD_FL_SOURCE;
+	sd->entity.function = MEDIA_ENT_F_V4L2_SUBDEV_UNKNOWN;
+	ret = media_entity_pads_init(&sd->entity, RKISP1_ISP_PAD_MAX,
+				     isp_sdev->pads);
+	if (ret < 0)
+		return ret;
+
+	sd->owner = THIS_MODULE;
+	v4l2_set_subdevdata(sd, isp_dev);
+
+	sd->grp_id = GRP_ID_ISP;
+	ret = v4l2_device_register_subdev(v4l2_dev, sd);
+	if (ret < 0) {
+		v4l2_err(sd, "Failed to register isp subdev\n");
+		goto err_cleanup_media_entity;
+	}
+
+	rkisp1_isp_sd_init_default_fmt(isp_sdev);
+
+	return 0;
+err_cleanup_media_entity:
+	media_entity_cleanup(&sd->entity);
+	return ret;
+}
+
+void rkisp1_unregister_isp_subdev(struct rkisp1_device *isp_dev)
+{
+	struct v4l2_subdev *sd = &isp_dev->isp_sdev.sd;
+
+	v4l2_device_unregister_subdev(sd);
+	media_entity_cleanup(&sd->entity);
+}
+
+static void rkisp1_hw_restart(struct rkisp1_device *dev)
+{
+	void __iomem *base = dev->base_addr;
+	u32 val;
+
+	writel(CIF_IRCL_MIPI_SW_RST | CIF_IRCL_ISP_SW_RST | CIF_IRCL_MI_SW_RST,
+	       base + CIF_IRCL);
+	writel(0x0, base + CIF_IRCL);
+
+	/* enable mipi interrupts */
+	writel(CIF_MIPI_FRAME_END | CIF_MIPI_ERR_CSI |
+	       CIF_MIPI_ERR_DPHY | CIF_MIPI_SYNC_FIFO_OVFLW(0x03) |
+	       CIF_MIPI_ADD_DATA_OVFLW, base + CIF_MIPI_IMSC);
+
+	writel(0x0, base + CIF_MI_MP_Y_OFFS_CNT_INIT);
+	writel(0x0, base + CIF_MI_MP_CR_OFFS_CNT_INIT);
+	writel(0x0, base + CIF_MI_MP_CB_OFFS_CNT_INIT);
+	writel(0x0, base + CIF_MI_SP_Y_OFFS_CNT_INIT);
+	writel(0x0, base + CIF_MI_SP_CR_OFFS_CNT_INIT);
+	writel(0x0, base + CIF_MI_SP_CB_OFFS_CNT_INIT);
+	val = readl(base + CIF_MI_CTRL);
+	writel(CIF_MI_CTRL_INIT_OFFSET_EN | val, base + CIF_MI_CTRL);
+
+	/* Enable ISP */
+	val = readl(base + CIF_ISP_CTRL);
+	val |= CIF_ISP_CTRL_ISP_CFG_UPD | CIF_ISP_CTRL_ISP_ENABLE |
+	       CIF_ISP_CTRL_ISP_INFORM_ENABLE;
+	writel(val, base + CIF_ISP_CTRL);
+	/* enable MIPI */
+	val = readl(base + CIF_MIPI_CTRL);
+	writel(val | CIF_MIPI_CTRL_OUTPUT_ENA, base + CIF_MIPI_CTRL);
+}
+
+void rkisp1_mipi_isr(unsigned int mis, struct rkisp1_device *dev)
+{
+	struct v4l2_device *v4l2_dev = &dev->v4l2_dev;
+	void __iomem *base = dev->base_addr;
+	u32 val;
+
+	writel(~0, base + CIF_MIPI_ICR);
+
+	/*
+	 * Disable DPHY errctrl interrupt, because this dphy
+	 * erctrl signal is asserted until the next changes
+	 * of line state. This time is may be too long and cpu
+	 * is hold in this interrupt.
+	 */
+	if (mis & CIF_MIPI_ERR_CTRL(3)) {
+		val = readl(base + CIF_MIPI_IMSC);
+		/*TODO: 0xf - one bit per lane?*/
+		writel(val | ~CIF_MIPI_ERR_CTRL(0x03), base + CIF_MIPI_IMSC);
+		dev->isp_sdev.dphy_errctrl_disabled = true;
+	}
+
+	/*
+	 * Enable DPHY errctrl interrupt again, if mipi have receive
+	 * the whole frame without any error.
+	 */
+	if (mis == CIF_MIPI_FRAME_END) {
+		/*
+		 * Enable DPHY errctrl interrupt again, if mipi have receive
+		 * the whole frame without any error.
+		 */
+		if (dev->isp_sdev.dphy_errctrl_disabled) {
+			val = readl(base + CIF_MIPI_IMSC);
+			val |= CIF_MIPI_ERR_CTRL(0x03);
+			writel(val, base + CIF_MIPI_IMSC);
+			dev->isp_sdev.dphy_errctrl_disabled = false;
+		}
+	} else {
+		v4l2_warn(v4l2_dev, "MIPI mis error: 0x%08x\n", mis);
+	}
+}
+
+void rkisp1_isp_isr(unsigned int isp_mis, struct rkisp1_device *dev)
+{
+	void __iomem *base = dev->base_addr;
+	unsigned int isp_mis_tmp = 0;
+	unsigned int isp_err = 0;
+	u32 val;
+
+	if (isp_mis & CIF_ISP_V_START) {
+		riksp1_isp_queue_event_sof(&dev->isp_sdev);
+
+		writel(CIF_ISP_V_START, base + CIF_ISP_ICR);
+		isp_mis_tmp = readl(base + CIF_ISP_MIS);
+		if (isp_mis_tmp & CIF_ISP_V_START)
+			v4l2_err(&dev->v4l2_dev, "isp icr v_statr err: 0x%x\n",
+				 isp_mis_tmp);
+	}
+
+	if (isp_mis & (CIF_ISP_DATA_LOSS | CIF_ISP_PIC_SIZE_ERROR)) {
+		if ((isp_mis & CIF_ISP_PIC_SIZE_ERROR)) {
+			/* Clear pic_size_error */
+			writel(CIF_ISP_PIC_SIZE_ERROR, base + CIF_ISP_ICR);
+			isp_err = readl(base + CIF_ISP_ERR);
+			v4l2_err(&dev->v4l2_dev,
+				 "CIF_ISP_PIC_SIZE_ERROR (0x%08x)", isp_err);
+			writel(isp_err, base + CIF_ISP_ERR_CLR);
+		} else if ((isp_mis & CIF_ISP_DATA_LOSS)) {
+			/* Clear data_loss */
+			writel(CIF_ISP_DATA_LOSS, base + CIF_ISP_ICR);
+			v4l2_err(&dev->v4l2_dev, "CIF_ISP_DATA_LOSS\n");
+			writel(CIF_ISP_DATA_LOSS, base + CIF_ISP_ICR);
+		}
+
+		/* TODO: Restart ISP safely */
+		if (0) {
+			val = readl(base + CIF_ISP_CTRL);
+			val &= ~(CIF_ISP_CTRL_ISP_INFORM_ENABLE &
+				CIF_ISP_CTRL_ISP_ENABLE);
+			writel(val, base + CIF_ISP_CTRL);
+			/* isp_update */
+			val = readl(base + CIF_ISP_CTRL);
+			writel(val | CIF_ISP_CTRL_ISP_CFG_UPD, base + CIF_ISP_CTRL);
+			/*TODO: restart hw here is not safe, may cause machine hanging*/
+			rkisp1_hw_restart(dev);
+		}
+	}
+
+	if (isp_mis & CIF_ISP_FRAME_IN) {
+		writel(CIF_ISP_FRAME_IN, base + CIF_ISP_ICR);
+		isp_mis_tmp = readl(base + CIF_ISP_MIS);
+		if (isp_mis_tmp & CIF_ISP_FRAME_IN)
+			v4l2_err(&dev->v4l2_dev, "isp icr frame_in err: 0x%x\n",
+				 isp_mis_tmp);
+	}
+
+	if (isp_mis & CIF_ISP_FRAME) {
+		u32 isp_ris = 0;
+		/* Clear Frame In (ISP) */
+		writel(CIF_ISP_FRAME, base + CIF_ISP_ICR);
+		isp_mis_tmp = readl(base + CIF_ISP_MIS);
+		if (isp_mis_tmp & CIF_ISP_FRAME)
+			v4l2_err(&dev->v4l2_dev,
+				 "isp icr frame end err: 0x%x\n", isp_mis_tmp);
+
+		isp_ris = readl(base + CIF_ISP_RIS);
+		if (isp_ris & (CIF_ISP_AWB_DONE | CIF_ISP_AFM_FIN |
+				CIF_ISP_EXP_END | CIF_ISP_HIST_MEASURE_RDY))
+			rkisp1_stats_isr(&dev->stats_vdev, isp_ris);
+	}
+
+	/*
+	 * Then update changed configs. Some of them involve
+	 * lot of register writes. Do those only one per frame.
+	 * Do the updates in the order of the processing flow.
+	 */
+	rkisp1_params_isr(&dev->params_vdev, isp_mis);
+}
diff --git a/drivers/media/platform/rockchip/isp1/rkisp1.h b/drivers/media/platform/rockchip/isp1/rkisp1.h
new file mode 100644
index 000000000000..506b1efd4de8
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/rkisp1.h
@@ -0,0 +1,130 @@
+/*
+ * Rockchip isp1 driver
+ *
+ * Copyright (C) 2017 Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#ifndef _RKISP1_H
+#define _RKISP1_H
+
+#include <linux/platform_device.h>
+#include <media/v4l2-fwnode.h>
+#include "common.h"
+#include "isp_stats.h"
+#include "isp_params.h"
+#include "capture.h"
+
+#define RKISP1_MAX_BUS_CLK	8
+#define RKISP1_MAX_SENSOR	2
+
+struct rkisp1_ie_config {
+	/* TODO: bit field ? */
+	unsigned int effect;
+};
+
+enum rkisp1_isp_pad {
+	RKISP1_ISP_PAD_SINK,
+	RKISP1_ISP_PAD_SINK_PARAMS,
+	RKISP1_ISP_PAD_SOURCE_PATH,
+	RKISP1_ISP_PAD_SOURCE_STATS,
+	/* TODO: meta data pad ? */
+	RKISP1_ISP_PAD_MAX
+};
+
+struct rkisp1_isp_subdev {
+	struct v4l2_subdev sd;
+	struct media_pad pads[RKISP1_ISP_PAD_MAX];
+	struct v4l2_ctrl_handler ctrl_handler;
+	struct v4l2_mbus_framefmt in_frm;
+	struct ispsd_in_fmt in_fmt;
+	struct v4l2_rect in_crop;
+	struct ispsd_out_fmt out_fmt;
+	struct v4l2_rect out_crop;
+	bool dphy_errctrl_disabled;
+	atomic_t frm_sync_seq;
+};
+
+struct rkisp1_sensor_info {
+	struct v4l2_subdev *sd;
+	struct v4l2_mbus_config mbus;
+};
+
+struct rkisp1_device {
+	void __iomem *base_addr;
+	int irq;
+	struct device *dev;
+	struct clk *clks[RKISP1_MAX_BUS_CLK];
+	int clk_size;
+	struct v4l2_device v4l2_dev;
+	struct media_device media_dev;
+	struct v4l2_async_notifier notifier;
+	struct v4l2_subdev *subdevs[RKISP1_SD_MAX];
+	struct rkisp1_sensor_info *active_sensor;
+	struct rkisp1_sensor_info sensors[RKISP1_MAX_SENSOR];
+	int num_sensors;
+	spinlock_t writel_verify_lock;
+	struct rkisp1_isp_subdev isp_sdev;
+	struct rkisp1_stream stream[RKISP1_MAX_STREAM];
+	struct rkisp1_isp_stats_vdev stats_vdev;
+	struct rkisp1_isp_params_vdev params_vdev;
+	struct rkisp1_pipeline pipe;
+	atomic_t poweron_cnt;
+};
+
+/* Clean code starts from here */
+
+int rkisp1_register_isp_subdev(struct rkisp1_device *isp_dev,
+			       struct v4l2_device *v4l2_dev);
+
+void rkisp1_unregister_isp_subdev(struct rkisp1_device *isp_dev);
+
+void rkisp1_mipi_isr(unsigned int mipi_mis, struct rkisp1_device *dev);
+
+void rkisp1_isp_isr(unsigned int isp_mis, struct rkisp1_device *dev);
+
+static inline struct rkisp1_device *sd_to_isp_dev(struct v4l2_subdev *sd)
+{
+	return container_of(sd->v4l2_dev, struct rkisp1_device, v4l2_dev);
+}
+
+static inline
+struct ispsd_out_fmt *rkisp1_get_ispsd_out_fmt(struct rkisp1_device *isp_dev)
+{
+	return &isp_dev->isp_sdev.out_fmt;
+}
+
+static inline
+struct v4l2_rect *rkisp1_get_isp_sd_win(struct rkisp1_device *isp_dev)
+{
+	return &isp_dev->isp_sdev.out_crop;
+}
+
+#endif /* _RKISP1_H */
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 04/11] media: rkisp1: add Rockchip MIPI Synopsys DPHY driver
From: Jacob Chen @ 2017-11-24  2:36 UTC (permalink / raw)
  To: linux-rockchip-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r
  Cc: devicetree-u79uwXL29TY76Z2rM5mHXA,
	eddie.cai.linux-Re5JQEeQqe8AvxtiuMwx3w,
	heiko-4mtYJXux2i+zQB+pC5nmwQ, Jacob Chen,
	jeffy.chen-TNX95d0MmH7DzftRWevZcw, zyc-TNX95d0MmH7DzftRWevZcw,
	linux-kernel-u79uwXL29TY76Z2rM5mHXA, tfiga-F7+t8E8rja9g9hUCZPvPmw,
	robh+dt-DgEjT+Ai2ygdnm+yROfE0A,
	hans.verkuil-FYB4Gu1CFyUAvxtiuMwx3w,
	laurent.pinchart-ryLnwIuWjnjg/C1BVhZhaw,
	sakari.ailus-VuQAYsv1563Yd54FQh9/CA,
	allon.huang-TNX95d0MmH7DzftRWevZcw,
	mchehab-DgEjT+Ai2ygdnm+yROfE0A, zhengsq-TNX95d0MmH7DzftRWevZcw,
	linux-arm-kernel-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r,
	linux-media-u79uwXL29TY76Z2rM5mHXA
In-Reply-To: <20171124023706.5702-1-jacob-chen-fyOeoxGR3m/QT0dZR+AlfA@public.gmane.org>

From: Jacob Chen <jacob2.chen-TNX95d0MmH7DzftRWevZcw@public.gmane.org>

This commit adds a subdev driver for Rockchip MIPI Synopsys DPHY driver.

The phy driver is kind of independent compare to the other parts, but i'd like
to keep it in rkisp1 driver, unless people want to generalize it

Signed-off-by: Jacob Chen <jacob2.chen-TNX95d0MmH7DzftRWevZcw@public.gmane.org>
Signed-off-by: Shunqian Zheng <zhengsq-TNX95d0MmH7DzftRWevZcw@public.gmane.org>
Signed-off-by: Tomasz Figa <tfiga-F7+t8E8rja9g9hUCZPvPmw@public.gmane.org>
---
 drivers/media/platform/rockchip/isp1/Makefile      |   1 +
 .../media/platform/rockchip/isp1/mipi_dphy_sy.c    | 805 +++++++++++++++++++++
 2 files changed, 806 insertions(+)
 create mode 100644 drivers/media/platform/rockchip/isp1/mipi_dphy_sy.c

diff --git a/drivers/media/platform/rockchip/isp1/Makefile b/drivers/media/platform/rockchip/isp1/Makefile
index 8f52f959398e..18af64853734 100644
--- a/drivers/media/platform/rockchip/isp1/Makefile
+++ b/drivers/media/platform/rockchip/isp1/Makefile
@@ -4,4 +4,5 @@ video_rkisp1-objs 	   += 	rkisp1.o \
 				regs.o \
 				isp_stats.o \
 				isp_params.o \
+				mipi_dphy_sy.o \
 				capture.o
diff --git a/drivers/media/platform/rockchip/isp1/mipi_dphy_sy.c b/drivers/media/platform/rockchip/isp1/mipi_dphy_sy.c
new file mode 100644
index 000000000000..56deff2be6fd
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/mipi_dphy_sy.c
@@ -0,0 +1,805 @@
+/*
+ * Rockchip MIPI Synopsys DPHY driver
+ *
+ * Copyright (C) 2017 Fuzhou Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#include <linux/clk.h>
+#include <linux/delay.h>
+#include <linux/module.h>
+#include <linux/of.h>
+#include <linux/of_platform.h>
+#include <linux/platform_device.h>
+#include <linux/pm_runtime.h>
+#include <linux/regmap.h>
+#include <linux/mfd/syscon.h>
+#include <media/media-entity.h>
+#include <media/v4l2-ctrls.h>
+#include <media/v4l2-fwnode.h>
+#include <media/v4l2-subdev.h>
+
+#define RK3288_GRF_SOC_CON6	0x025c
+#define RK3288_GRF_SOC_CON8	0x0264
+#define RK3288_GRF_SOC_CON9	0x0268
+#define RK3288_GRF_SOC_CON10	0x026c
+#define RK3288_GRF_SOC_CON14	0x027c
+#define RK3288_GRF_SOC_STATUS21	0x02d4
+#define RK3288_GRF_IO_VSEL	0x0380
+#define RK3288_GRF_SOC_CON15	0x03a4
+
+#define RK3399_GRF_SOC_CON9	0x6224
+#define RK3399_GRF_SOC_CON21	0x6254
+#define RK3399_GRF_SOC_CON22	0x6258
+#define RK3399_GRF_SOC_CON23	0x625c
+#define RK3399_GRF_SOC_CON24	0x6260
+#define RK3399_GRF_SOC_CON25	0x6264
+#define RK3399_GRF_SOC_STATUS1	0xe2a4
+
+#define CLOCK_LANE_HS_RX_CONTROL		0x34
+#define LANE0_HS_RX_CONTROL			0x44
+#define LANE1_HS_RX_CONTROL			0x54
+#define LANE2_HS_RX_CONTROL			0x84
+#define LANE3_HS_RX_CONTROL			0x94
+#define HS_RX_DATA_LANES_THS_SETTLE__CONTROL	0x75
+
+#define HIWORD_UPDATE(val, mask, shift) \
+	((val) << (shift) | (mask) << ((shift) + 16))
+
+enum mipi_dphy_sy_pads {
+	MIPI_DPHY_SY_PAD_SINK = 0,
+	MIPI_DPHY_SY_PAD_SOURCE,
+	MIPI_DPHY_SY_PADS_NUM,
+};
+
+enum dphy_reg_id {
+	GRF_DPHY_RX0_TURNDISABLE = 0,
+	GRF_DPHY_RX0_FORCERXMODE,
+	GRF_DPHY_RX0_FORCETXSTOPMODE,
+	GRF_DPHY_RX0_ENABLE,
+	GRF_DPHY_RX0_TESTCLR,
+	GRF_DPHY_RX0_TESTCLK,
+	GRF_DPHY_RX0_TESTEN,
+	GRF_DPHY_RX0_TESTDIN,
+	GRF_DPHY_RX0_TURNREQUEST,
+	GRF_DPHY_RX0_TESTDOUT,
+	GRF_DPHY_TX0_TURNDISABLE,
+	GRF_DPHY_TX0_FORCERXMODE,
+	GRF_DPHY_TX0_FORCETXSTOPMODE,
+	GRF_DPHY_TX0_TURNREQUEST,
+	GRF_DPHY_TX1RX1_TURNDISABLE,
+	GRF_DPHY_TX1RX1_FORCERXMODE,
+	GRF_DPHY_TX1RX1_FORCETXSTOPMODE,
+	GRF_DPHY_TX1RX1_ENABLE,
+	GRF_DPHY_TX1RX1_MASTERSLAVEZ,
+	GRF_DPHY_TX1RX1_BASEDIR,
+	GRF_DPHY_TX1RX1_ENABLECLK,
+	GRF_DPHY_TX1RX1_TURNREQUEST,
+	GRF_DPHY_RX1_SRC_SEL,
+	/* rk3288 only */
+	GRF_CON_DISABLE_ISP,
+	GRF_CON_ISP_DPHY_SEL,
+	GRF_DSI_CSI_TESTBUS_SEL,
+	GRF_DVP_V18SEL,
+	/* below is for rk3399 only */
+	GRF_DPHY_RX0_CLK_INV_SEL,
+	GRF_DPHY_RX1_CLK_INV_SEL,
+};
+
+struct dphy_reg {
+	u32 offset;
+	u32 mask;
+	u32 shift;
+};
+
+#define PHY_REG(_offset, _width, _shift) \
+	{ .offset = _offset, .mask = BIT(_width) - 1, .shift = _shift, }
+
+static const struct dphy_reg rk3399_grf_dphy_regs[] = {
+	[GRF_DPHY_RX0_TURNREQUEST] = PHY_REG(RK3399_GRF_SOC_CON9, 4, 0),
+	[GRF_DPHY_RX0_CLK_INV_SEL] = PHY_REG(RK3399_GRF_SOC_CON9, 1, 10),
+	[GRF_DPHY_RX1_CLK_INV_SEL] = PHY_REG(RK3399_GRF_SOC_CON9, 1, 11),
+	[GRF_DPHY_RX0_ENABLE] = PHY_REG(RK3399_GRF_SOC_CON21, 4, 0),
+	[GRF_DPHY_RX0_FORCERXMODE] = PHY_REG(RK3399_GRF_SOC_CON21, 4, 4),
+	[GRF_DPHY_RX0_FORCETXSTOPMODE] = PHY_REG(RK3399_GRF_SOC_CON21, 4, 8),
+	[GRF_DPHY_RX0_TURNDISABLE] = PHY_REG(RK3399_GRF_SOC_CON21, 4, 12),
+	[GRF_DPHY_TX0_FORCERXMODE] = PHY_REG(RK3399_GRF_SOC_CON22, 4, 0),
+	[GRF_DPHY_TX0_FORCETXSTOPMODE] = PHY_REG(RK3399_GRF_SOC_CON22, 4, 4),
+	[GRF_DPHY_TX0_TURNDISABLE] = PHY_REG(RK3399_GRF_SOC_CON22, 4, 8),
+	[GRF_DPHY_TX0_TURNREQUEST] = PHY_REG(RK3399_GRF_SOC_CON22, 4, 12),
+	[GRF_DPHY_TX1RX1_ENABLE] = PHY_REG(RK3399_GRF_SOC_CON23, 4, 0),
+	[GRF_DPHY_TX1RX1_FORCERXMODE] = PHY_REG(RK3399_GRF_SOC_CON23, 4, 4),
+	[GRF_DPHY_TX1RX1_FORCETXSTOPMODE] = PHY_REG(RK3399_GRF_SOC_CON23, 4, 8),
+	[GRF_DPHY_TX1RX1_TURNDISABLE] = PHY_REG(RK3399_GRF_SOC_CON23, 4, 12),
+	[GRF_DPHY_TX1RX1_TURNREQUEST] = PHY_REG(RK3399_GRF_SOC_CON24, 4, 0),
+	[GRF_DPHY_RX1_SRC_SEL] = PHY_REG(RK3399_GRF_SOC_CON24, 1, 4),
+	[GRF_DPHY_TX1RX1_BASEDIR] = PHY_REG(RK3399_GRF_SOC_CON24, 1, 5),
+	[GRF_DPHY_TX1RX1_ENABLECLK] = PHY_REG(RK3399_GRF_SOC_CON24, 1, 6),
+	[GRF_DPHY_TX1RX1_MASTERSLAVEZ] = PHY_REG(RK3399_GRF_SOC_CON24, 1, 7),
+	[GRF_DPHY_RX0_TESTDIN] = PHY_REG(RK3399_GRF_SOC_CON25, 8, 0),
+	[GRF_DPHY_RX0_TESTEN] = PHY_REG(RK3399_GRF_SOC_CON25, 1, 8),
+	[GRF_DPHY_RX0_TESTCLK] = PHY_REG(RK3399_GRF_SOC_CON25, 1, 9),
+	[GRF_DPHY_RX0_TESTCLR] = PHY_REG(RK3399_GRF_SOC_CON25, 1, 10),
+	[GRF_DPHY_RX0_TESTDOUT] = PHY_REG(RK3399_GRF_SOC_STATUS1, 8, 0),
+};
+
+static const struct dphy_reg rk3288_grf_dphy_regs[] = {
+	[GRF_CON_DISABLE_ISP] = PHY_REG(RK3288_GRF_SOC_CON6, 1, 0),
+	[GRF_CON_ISP_DPHY_SEL] = PHY_REG(RK3288_GRF_SOC_CON6, 1, 1),
+	[GRF_DSI_CSI_TESTBUS_SEL] = PHY_REG(RK3288_GRF_SOC_CON6, 1, 14),
+	[GRF_DPHY_TX0_TURNDISABLE] = PHY_REG(RK3288_GRF_SOC_CON8, 4, 0),
+	[GRF_DPHY_TX0_FORCERXMODE] = PHY_REG(RK3288_GRF_SOC_CON8, 4, 4),
+	[GRF_DPHY_TX0_FORCETXSTOPMODE] = PHY_REG(RK3288_GRF_SOC_CON8, 4, 8),
+	[GRF_DPHY_TX1RX1_TURNDISABLE] = PHY_REG(RK3288_GRF_SOC_CON9, 4, 0),
+	[GRF_DPHY_TX1RX1_FORCERXMODE] = PHY_REG(RK3288_GRF_SOC_CON9, 4, 4),
+	[GRF_DPHY_TX1RX1_FORCETXSTOPMODE] = PHY_REG(RK3288_GRF_SOC_CON9, 4, 8),
+	[GRF_DPHY_TX1RX1_ENABLE] = PHY_REG(RK3288_GRF_SOC_CON9, 4, 12),
+	[GRF_DPHY_RX0_TURNDISABLE] = PHY_REG(RK3288_GRF_SOC_CON10, 4, 0),
+	[GRF_DPHY_RX0_FORCERXMODE] = PHY_REG(RK3288_GRF_SOC_CON10, 4, 4),
+	[GRF_DPHY_RX0_FORCETXSTOPMODE] = PHY_REG(RK3288_GRF_SOC_CON10, 4, 8),
+	[GRF_DPHY_RX0_ENABLE] = PHY_REG(RK3288_GRF_SOC_CON10, 4, 12),
+	[GRF_DPHY_RX0_TESTCLR] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 0),
+	[GRF_DPHY_RX0_TESTCLK] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 1),
+	[GRF_DPHY_RX0_TESTEN] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 2),
+	[GRF_DPHY_RX0_TESTDIN] = PHY_REG(RK3288_GRF_SOC_CON14, 8, 3),
+	[GRF_DPHY_TX1RX1_ENABLECLK] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 12),
+	[GRF_DPHY_RX1_SRC_SEL] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 13),
+	[GRF_DPHY_TX1RX1_MASTERSLAVEZ] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 14),
+	[GRF_DPHY_TX1RX1_BASEDIR] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 15),
+	[GRF_DPHY_RX0_TURNREQUEST] = PHY_REG(RK3288_GRF_SOC_CON15, 4, 0),
+	[GRF_DPHY_TX1RX1_TURNREQUEST] = PHY_REG(RK3288_GRF_SOC_CON15, 4, 4),
+	[GRF_DPHY_TX0_TURNREQUEST] = PHY_REG(RK3288_GRF_SOC_CON15, 3, 8),
+	[GRF_DVP_V18SEL] = PHY_REG(RK3288_GRF_IO_VSEL, 1, 1),
+	[GRF_DPHY_RX0_TESTDOUT] = PHY_REG(RK3288_GRF_SOC_STATUS21, 8, 0),
+};
+
+struct hsfreq_range {
+	u32 range_h;
+	u8 cfg_bit;
+};
+
+struct dphy_drv_data {
+	const char * const *clks;
+	int num_clks;
+	const struct hsfreq_range *hsfreq_ranges;
+	int num_hsfreq_ranges;
+	const struct dphy_reg *regs;
+};
+
+struct sensor_async_subdev {
+	struct v4l2_async_subdev asd;
+	struct v4l2_mbus_config mbus;
+	int lanes;
+};
+
+#define MAX_DPHY_CLK		8
+#define MAX_DPHY_SENSORS	2
+
+struct mipidphy_sensor {
+	struct v4l2_subdev *sd;
+	struct v4l2_mbus_config mbus;
+	int lanes;
+};
+
+struct mipidphy_priv {
+	struct device *dev;
+	struct regmap *regmap_grf;
+	const struct dphy_reg *grf_regs;
+	struct clk *clks[MAX_DPHY_CLK];
+	const struct dphy_drv_data *drv_data;
+	u64 data_rate_mbps;
+	struct v4l2_async_notifier notifier;
+	struct v4l2_subdev sd;
+	struct media_pad pads[MIPI_DPHY_SY_PADS_NUM];
+	struct mipidphy_sensor sensors[MAX_DPHY_SENSORS];
+	int num_sensors;
+	bool is_streaming;
+};
+
+static inline struct mipidphy_priv *to_dphy_priv(struct v4l2_subdev *subdev)
+{
+	return container_of(subdev, struct mipidphy_priv, sd);
+}
+
+static inline void write_reg(struct mipidphy_priv *priv, int index, u8 value)
+{
+	const struct dphy_reg *reg = &priv->grf_regs[index];
+	unsigned int val = HIWORD_UPDATE(value, reg->mask, reg->shift);
+
+	WARN_ON(!reg->offset);
+	regmap_write(priv->regmap_grf, reg->offset, val);
+}
+
+static void mipidphy_wr_reg(struct mipidphy_priv *priv,
+			    u8 test_code, u8 test_data)
+{
+	/*
+	 * With the falling edge on TESTCLK, the TESTDIN[7:0] signal content
+	 * is latched internally as the current test code. Test data is
+	 * programmed internally by rising edge on TESTCLK.
+	 */
+	write_reg(priv, GRF_DPHY_RX0_TESTCLK, 1);
+	write_reg(priv, GRF_DPHY_RX0_TESTDIN, test_code);
+	write_reg(priv, GRF_DPHY_RX0_TESTEN, 1);
+	write_reg(priv, GRF_DPHY_RX0_TESTCLK, 0);
+	write_reg(priv, GRF_DPHY_RX0_TESTEN, 0);
+	write_reg(priv, GRF_DPHY_RX0_TESTDIN, test_data);
+	write_reg(priv, GRF_DPHY_RX0_TESTCLK, 1);
+}
+
+static struct v4l2_subdev *get_remote_sensor(struct v4l2_subdev *sd)
+{
+	struct media_pad *local, *remote;
+	struct media_entity *sensor_me;
+
+	local = &sd->entity.pads[MIPI_DPHY_SY_PAD_SINK];
+	remote = media_entity_remote_pad(local);
+	if (!remote) {
+		v4l2_warn(sd, "No link between dphy and sensor\n");
+		return NULL;
+	}
+
+	sensor_me = media_entity_remote_pad(local)->entity;
+	return media_entity_to_v4l2_subdev(sensor_me);
+}
+
+static struct mipidphy_sensor *sd_to_sensor(struct mipidphy_priv *priv,
+					    struct v4l2_subdev *sd)
+{
+	int i;
+
+	for (i = 0; i < priv->num_sensors; ++i)
+		if (priv->sensors[i].sd == sd)
+			return &priv->sensors[i];
+
+	return NULL;
+}
+
+static int mipidphy_get_sensor_data_rate(struct v4l2_subdev *sd)
+{
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+	struct v4l2_subdev *sensor_sd = get_remote_sensor(sd);
+	struct v4l2_ctrl *link_freq;
+	struct v4l2_querymenu qm = { .id = V4L2_CID_LINK_FREQ, };
+	int ret;
+
+	link_freq = v4l2_ctrl_find(sensor_sd->ctrl_handler, V4L2_CID_LINK_FREQ);
+	if (!link_freq) {
+		v4l2_warn(sd, "No pixel rate control in subdev\n");
+		return -EPIPE;
+	}
+
+	qm.index = v4l2_ctrl_g_ctrl(link_freq);
+	ret = v4l2_querymenu(sensor_sd->ctrl_handler, &qm);
+	if (ret < 0) {
+		v4l2_err(sd, "Failed to get menu item\n");
+		return ret;
+	}
+
+	if (!qm.value) {
+		v4l2_err(sd, "Invalid link_freq\n");
+		return -EINVAL;
+	}
+	priv->data_rate_mbps = qm.value * 2;
+	do_div(priv->data_rate_mbps, 1000 * 1000);
+
+	return 0;
+}
+
+static int mipidphy_s_stream_start(struct v4l2_subdev *sd)
+{
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+	const struct dphy_drv_data *drv_data = priv->drv_data;
+	const struct hsfreq_range *hsfreq_ranges = drv_data->hsfreq_ranges;
+	int num_hsfreq_ranges = drv_data->num_hsfreq_ranges;
+	struct v4l2_subdev *sensor_sd = get_remote_sensor(sd);
+	struct mipidphy_sensor *sensor = sd_to_sensor(priv, sensor_sd);
+	int i, ret, hsfreq = 0;
+
+	if (priv->is_streaming)
+		return 0;
+
+	ret = mipidphy_get_sensor_data_rate(sd);
+	if (ret < 0)
+		return ret;
+
+	for (i = 0; i < num_hsfreq_ranges; i++) {
+		if (hsfreq_ranges[i].range_h >= priv->data_rate_mbps) {
+			hsfreq = hsfreq_ranges[i].cfg_bit;
+			break;
+		}
+	}
+
+	write_reg(priv, GRF_DPHY_RX0_FORCERXMODE, 0);
+	write_reg(priv, GRF_DPHY_RX0_FORCETXSTOPMODE, 0);
+	/* Disable lan turn around, which is ignored in receive mode */
+	write_reg(priv, GRF_DPHY_RX0_TURNREQUEST, 0);
+	write_reg(priv, GRF_DPHY_RX0_TURNDISABLE, 0xf);
+
+	write_reg(priv, GRF_DPHY_RX0_ENABLE, GENMASK(sensor->lanes - 1, 0));
+
+	/* dphy start */
+	write_reg(priv, GRF_DPHY_RX0_TESTCLK, 1);
+	write_reg(priv, GRF_DPHY_RX0_TESTCLR, 1);
+	usleep_range(100, 150);
+	write_reg(priv, GRF_DPHY_RX0_TESTCLR, 0);
+	usleep_range(100, 150);
+
+	/* set clock lane */
+	/* HS hsfreq_range & lane 0  settle bypass */
+	mipidphy_wr_reg(priv, CLOCK_LANE_HS_RX_CONTROL, 0);
+	/* HS RX Control of lane0 */
+	mipidphy_wr_reg(priv, LANE0_HS_RX_CONTROL, hsfreq << 1);
+	/* HS RX Control of lane1 */
+	mipidphy_wr_reg(priv, LANE1_HS_RX_CONTROL, 0);
+	/* HS RX Control of lane2 */
+	mipidphy_wr_reg(priv, LANE2_HS_RX_CONTROL, 0);
+	/* HS RX Control of lane3 */
+	mipidphy_wr_reg(priv, LANE3_HS_RX_CONTROL, 0);
+	/* HS RX Data Lanes Settle State Time Control */
+	mipidphy_wr_reg(priv, HS_RX_DATA_LANES_THS_SETTLE__CONTROL, 0x04);
+
+	/* Normal operation */
+	mipidphy_wr_reg(priv, 0x0, 0);
+
+	priv->is_streaming = true;
+
+	return 0;
+}
+
+static int mipidphy_s_stream_stop(struct v4l2_subdev *sd)
+{
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+
+	if (!priv->is_streaming)
+		return 0;
+
+	priv->is_streaming = false;
+
+	return 0;
+}
+
+static int mipidphy_s_stream(struct v4l2_subdev *sd, int on)
+{
+	if (on)
+		return mipidphy_s_stream_start(sd);
+	else
+		return mipidphy_s_stream_stop(sd);
+}
+
+static int mipidphy_g_mbus_config(struct v4l2_subdev *sd,
+				  struct v4l2_mbus_config *config)
+{
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+	struct v4l2_subdev *sensor_sd = get_remote_sensor(sd);
+	struct mipidphy_sensor *sensor = sd_to_sensor(priv, sensor_sd);
+
+	*config = sensor->mbus;
+
+	return 0;
+}
+
+static int mipidphy_s_power(struct v4l2_subdev *sd, int on)
+{
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+
+	if (on)
+		return pm_runtime_get_sync(priv->dev);
+	else
+		return pm_runtime_put(priv->dev);
+}
+
+static int mipidphy_runtime_suspend(struct device *dev)
+{
+	struct media_entity *me = dev_get_drvdata(dev);
+	struct v4l2_subdev *sd = media_entity_to_v4l2_subdev(me);
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+	int i, num_clks;
+
+	num_clks = priv->drv_data->num_clks;
+	for (i = num_clks - 1; i >= 0; i--)
+		clk_disable_unprepare(priv->clks[i]);
+
+	return 0;
+}
+
+static int mipidphy_runtime_resume(struct device *dev)
+{
+	struct media_entity *me = dev_get_drvdata(dev);
+	struct v4l2_subdev *sd = media_entity_to_v4l2_subdev(me);
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+	int i, num_clks, ret;
+
+	num_clks = priv->drv_data->num_clks;
+	for (i = 0; i < num_clks; i++) {
+		ret = clk_prepare_enable(priv->clks[i]);
+		if (ret < 0)
+			goto err;
+	}
+
+	return 0;
+err:
+	while (--i >= 0)
+		clk_disable_unprepare(priv->clks[i]);
+	return ret;
+}
+
+/* dphy accepts all fmt/size from sensor */
+static int mipidphy_get_set_fmt(struct v4l2_subdev *sd,
+				struct v4l2_subdev_pad_config *cfg,
+				struct v4l2_subdev_format *fmt)
+{
+	struct v4l2_subdev *sensor = get_remote_sensor(sd);
+
+	/*
+	 * Do not allow format changes and just relay whatever
+	 * set currently in the sensor.
+	 */
+	return v4l2_subdev_call(sensor, pad, get_fmt, NULL, fmt);
+}
+
+static const struct v4l2_subdev_pad_ops mipidphy_subdev_pad_ops = {
+	.set_fmt = mipidphy_get_set_fmt,
+	.get_fmt = mipidphy_get_set_fmt,
+};
+
+static const struct v4l2_subdev_core_ops mipidphy_core_ops = {
+	.s_power = mipidphy_s_power,
+};
+
+static const struct v4l2_subdev_video_ops mipidphy_video_ops = {
+	.g_mbus_config = mipidphy_g_mbus_config,
+	.s_stream = mipidphy_s_stream,
+};
+
+static const struct v4l2_subdev_ops mipidphy_subdev_ops = {
+	.core = &mipidphy_core_ops,
+	.video = &mipidphy_video_ops,
+	.pad = &mipidphy_subdev_pad_ops,
+};
+
+/* These tables must be sorted by .range_h ascending. */
+static const struct hsfreq_range rk3288_mipidphy_hsfreq_ranges[] = {
+	{  89, 0x00}, {  99, 0x10}, { 109, 0x20}, { 129, 0x01},
+	{ 139, 0x11}, { 149, 0x21}, { 169, 0x02}, { 179, 0x12},
+	{ 199, 0x22}, { 219, 0x03}, { 239, 0x13}, { 249, 0x23},
+	{ 269, 0x04}, { 299, 0x14}, { 329, 0x05}, { 359, 0x15},
+	{ 399, 0x25}, { 449, 0x06}, { 499, 0x16}, { 549, 0x07},
+	{ 599, 0x17}, { 649, 0x08}, { 699, 0x18}, { 749, 0x09},
+	{ 799, 0x19}, { 849, 0x29}, { 899, 0x39}, { 949, 0x0a},
+	{ 999, 0x1a}
+};
+
+static const struct hsfreq_range rk3399_mipidphy_hsfreq_ranges[] = {
+	{  89, 0x00}, {  99, 0x10}, { 109, 0x20}, { 129, 0x01},
+	{ 139, 0x11}, { 149, 0x21}, { 169, 0x02}, { 179, 0x12},
+	{ 199, 0x22}, { 219, 0x03}, { 239, 0x13}, { 249, 0x23},
+	{ 269, 0x04}, { 299, 0x14}, { 329, 0x05}, { 359, 0x15},
+	{ 399, 0x25}, { 449, 0x06}, { 499, 0x16}, { 549, 0x07},
+	{ 599, 0x17}, { 649, 0x08}, { 699, 0x18}, { 749, 0x09},
+	{ 799, 0x19}, { 849, 0x29}, { 899, 0x39}, { 949, 0x0a},
+	{ 999, 0x1a}, {1049, 0x2a}, {1099, 0x3a}, {1149, 0x0b},
+	{1199, 0x1b}, {1249, 0x2b}, {1299, 0x3b}, {1349, 0x0c},
+	{1399, 0x1c}, {1449, 0x2c}, {1500, 0x3c}
+};
+
+static const char * const rk3399_mipidphy_clks[] = {
+	"dphy-ref",
+	"dphy-cfg",
+	"grf",
+};
+
+static const char * const rk3288_mipidphy_clks[] = {
+	"dphy-ref",
+	"pclk",
+};
+
+static const struct dphy_drv_data rk3288_mipidphy_drv_data = {
+	.clks = rk3288_mipidphy_clks,
+	.num_clks = ARRAY_SIZE(rk3288_mipidphy_clks),
+	.hsfreq_ranges = rk3288_mipidphy_hsfreq_ranges,
+	.num_hsfreq_ranges = ARRAY_SIZE(rk3288_mipidphy_hsfreq_ranges),
+	.regs = rk3288_grf_dphy_regs,
+};
+
+static const struct dphy_drv_data rk3399_mipidphy_drv_data = {
+	.clks = rk3399_mipidphy_clks,
+	.num_clks = ARRAY_SIZE(rk3399_mipidphy_clks),
+	.hsfreq_ranges = rk3399_mipidphy_hsfreq_ranges,
+	.num_hsfreq_ranges = ARRAY_SIZE(rk3399_mipidphy_hsfreq_ranges),
+	.regs = rk3399_grf_dphy_regs,
+};
+
+static const struct of_device_id rockchip_mipidphy_match_id[] = {
+	{
+		.compatible = "rockchip,rk3399-mipi-dphy",
+		.data = &rk3399_mipidphy_drv_data,
+	},
+	{
+		.compatible = "rockchip,rk3288-mipi-dphy",
+		.data = &rk3288_mipidphy_drv_data,
+	},
+	{}
+};
+MODULE_DEVICE_TABLE(of, rockchip_mipidphy_match_id);
+
+/* The .bound() notifier callback when a match is found */
+static int
+rockchip_mipidphy_notifier_bound(struct v4l2_async_notifier *notifier,
+				 struct v4l2_subdev *sd,
+				 struct v4l2_async_subdev *asd)
+{
+	struct mipidphy_priv *priv = container_of(notifier,
+						  struct mipidphy_priv,
+						  notifier);
+	struct sensor_async_subdev *s_asd = container_of(asd,
+					struct sensor_async_subdev, asd);
+	struct mipidphy_sensor *sensor;
+
+	if (priv->num_sensors == ARRAY_SIZE(priv->sensors))
+		return -EBUSY;
+
+	sensor = &priv->sensors[priv->num_sensors++];
+	sensor->lanes = s_asd->lanes;
+	sensor->mbus = s_asd->mbus;
+	sensor->sd = sd;
+
+	return 0;
+}
+
+/* The .unbind callback */
+static void
+rockchip_mipidphy_notifier_unbind(struct v4l2_async_notifier *notifier,
+				  struct v4l2_subdev *sd,
+				  struct v4l2_async_subdev *asd)
+{
+	struct mipidphy_priv *priv = container_of(notifier,
+						  struct mipidphy_priv,
+						  notifier);
+	struct mipidphy_sensor *sensor = sd_to_sensor(priv, sd);
+
+	sensor->sd = NULL;
+}
+
+/* .complete() is called after all subdevices have been located */
+static int
+rockchip_mipidphy_notifier_complete(struct v4l2_async_notifier *notifier)
+{
+	struct mipidphy_priv *priv = container_of(notifier,
+						  struct mipidphy_priv,
+						  notifier);
+	unsigned int pad;
+	int ret;
+	int i;
+
+	for (i = 0; i < priv->num_sensors; ++i) {
+		struct mipidphy_sensor *sensor = &priv->sensors[i];
+
+		for (pad = 0; pad < sensor->sd->entity.num_pads; pad++)
+			if (sensor->sd->entity.pads[pad].flags
+						& MEDIA_PAD_FL_SOURCE)
+				break;
+
+		if (pad == sensor->sd->entity.num_pads) {
+			dev_err(priv->dev,
+				"failed to find src pad for %s\n",
+				sensor->sd->name);
+
+			return -ENXIO;
+		}
+
+		ret = media_create_pad_link(
+				&sensor->sd->entity, pad,
+				&priv->sd.entity, MIPI_DPHY_SY_PAD_SINK,
+				i ? 0 : MEDIA_LNK_FL_ENABLED);
+		if (ret) {
+			dev_err(priv->dev,
+				"failed to create link for %s\n",
+				sensor->sd->name);
+			return ret;
+		}
+	}
+
+	return 0;
+}
+
+static const
+struct v4l2_async_notifier_operationsrockchip_mipidphy_async_ops = {
+	.bound = rockchip_mipidphy_notifier_bound,
+	.unbind = rockchip_mipidphy_notifier_unbind,
+	.complete = rockchip_mipidphy_notifier_complete,
+};
+
+static int rockchip_mipidphy_fwnode_parse(struct device *dev,
+			     struct v4l2_fwnode_endpoint *vep,
+			     struct v4l2_async_subdev *asd)
+{
+	struct sensor_async_subdev *s_asd =
+			container_of(asd, struct sensor_async_subdev, asd);
+	struct v4l2_mbus_config *config = &s_asd->mbus;
+
+	if (vep->bus_type != V4L2_MBUS_CSI2) {
+		dev_err(dev, "Only CSI2 bus type is currently supported\n");
+		return -EINVAL;
+	}
+
+	if (vep->base.port != 0) {
+		dev_err(dev, "The PHY has only port 0\n");
+		return -EINVAL;
+	}
+
+	config->type = V4L2_MBUS_CSI2;
+	config->flags = vep->bus.mipi_csi2.flags;
+	s_asd->lanes = vep->bus.mipi_csi2.num_data_lanes;
+
+	switch (vep->bus.mipi_csi2.num_data_lanes) {
+	case 1:
+		config->flags |= V4L2_MBUS_CSI2_1_LANE;
+		break;
+	case 2:
+		config->flags |= V4L2_MBUS_CSI2_2_LANE;
+		break;
+	case 3:
+		config->flags |= V4L2_MBUS_CSI2_3_LANE;
+		break;
+	case 4:
+		config->flags |= V4L2_MBUS_CSI2_4_LANE;
+		break;
+	default:
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int rockchip_mipidphy_media_init(struct mipidphy_priv *priv)
+{
+	int ret;
+
+	priv->pads[MIPI_DPHY_SY_PAD_SOURCE].flags =
+		MEDIA_PAD_FL_SOURCE | MEDIA_PAD_FL_MUST_CONNECT;
+	priv->pads[MIPI_DPHY_SY_PAD_SINK].flags =
+		MEDIA_PAD_FL_SINK | MEDIA_PAD_FL_MUST_CONNECT;
+
+	ret = media_entity_pads_init(&priv->sd.entity,
+				 MIPI_DPHY_SY_PADS_NUM, priv->pads);
+	if (ret < 0)
+		return ret;
+
+	ret = v4l2_async_notifier_parse_fwnode_endpoints_by_port(
+		priv->dev, &priv->notifier,
+		sizeof(struct sensor_async_subdev), 0,
+		rockchip_mipidphy_fwnode_parse);
+	if (ret < 0)
+		return ret;
+
+	if (!priv->notifier.num_subdevs)
+		return -ENODEV;	/* no endpoint */
+
+	priv->sd.subdev_notifier = &priv->notifier;
+	priv->notifier.ops = &rockchip_mipidphy_async_ops;
+	ret = v4l2_async_subdev_notifier_register(&priv->sd, &priv->notifier);
+	if (ret) {
+		dev_err(priv->dev,
+			"failed to register async notifier : %d\n", ret);
+		v4l2_async_notifier_cleanup(&priv->notifier);
+		return ret;
+	}
+
+	return v4l2_async_register_subdev(&priv->sd);
+}
+
+static int rockchip_mipidphy_probe(struct platform_device *pdev)
+{
+	struct device *dev = &pdev->dev;
+	struct v4l2_subdev *sd;
+	struct mipidphy_priv *priv;
+	struct regmap *grf;
+	const struct of_device_id *of_id;
+	const struct dphy_drv_data *drv_data;
+	int i, ret;
+
+	priv = devm_kzalloc(dev, sizeof(*priv), GFP_KERNEL);
+	if (!priv)
+		return -ENOMEM;
+	priv->dev = dev;
+
+	of_id = of_match_device(rockchip_mipidphy_match_id, dev);
+	if (!of_id)
+		return -EINVAL;
+
+	grf = syscon_node_to_regmap(dev->parent->of_node);
+	if (IS_ERR(grf)) {
+		dev_err(dev, "Can't find GRF syscon\n");
+		return -ENODEV;
+	}
+	priv->regmap_grf = grf;
+
+	drv_data = of_id->data;
+	for (i = 0; i < drv_data->num_clks; i++) {
+		priv->clks[i] = devm_clk_get(dev, drv_data->clks[i]);
+
+		if (IS_ERR(priv->clks[i])) {
+			dev_err(dev, "Failed to get %s\n", drv_data->clks[i]);
+			return PTR_ERR(priv->clks[i]);
+		}
+	}
+
+	priv->grf_regs = drv_data->regs;
+	priv->drv_data = drv_data;
+
+	sd = &priv->sd;
+	v4l2_subdev_init(sd, &mipidphy_subdev_ops);
+	sd->flags |= V4L2_SUBDEV_FL_HAS_DEVNODE;
+	snprintf(sd->name, sizeof(sd->name), "rockchip-sy-mipi-dphy");
+	sd->dev = dev;
+
+	platform_set_drvdata(pdev, &sd->entity);
+
+	ret = rockchip_mipidphy_media_init(priv);
+	if (ret < 0)
+		return ret;
+
+	pm_runtime_enable(&pdev->dev);
+
+	return 0;
+}
+
+static int rockchip_mipidphy_remove(struct platform_device *pdev)
+{
+	struct media_entity *me = platform_get_drvdata(pdev);
+	struct v4l2_subdev *sd = media_entity_to_v4l2_subdev(me);
+
+	media_entity_cleanup(&sd->entity);
+
+	pm_runtime_disable(&pdev->dev);
+
+	return 0;
+}
+
+static const struct dev_pm_ops rockchip_mipidphy_pm_ops = {
+	SET_RUNTIME_PM_OPS(mipidphy_runtime_suspend,
+			   mipidphy_runtime_resume, NULL)
+};
+
+static struct platform_driver rockchip_isp_mipidphy_driver = {
+	.probe = rockchip_mipidphy_probe,
+	.remove = rockchip_mipidphy_remove,
+	.driver = {
+			.name = "rockchip-sy-mipi-dphy",
+			.pm = &rockchip_mipidphy_pm_ops,
+			.of_match_table = rockchip_mipidphy_match_id,
+	},
+};
+
+module_platform_driver(rockchip_isp_mipidphy_driver);
+MODULE_AUTHOR("Rockchip Camera/ISP team");
+MODULE_DESCRIPTION("Rockchip MIPI DPHY driver");
+MODULE_LICENSE("Dual BSD/GPL");
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 05/11] dt-bindings: Document the Rockchip ISP1 bindings
From: Jacob Chen @ 2017-11-24  2:37 UTC (permalink / raw)
  To: linux-rockchip
  Cc: linux-kernel, linux-arm-kernel, mchehab, linux-media,
	sakari.ailus, hans.verkuil, tfiga, zhengsq, laurent.pinchart, zyc,
	eddie.cai.linux, jeffy.chen, allon.huang, devicetree, heiko,
	robh+dt, Jacob Chen
In-Reply-To: <20171124023706.5702-1-jacob-chen@iotwrt.com>

From: Jacob Chen <jacob2.chen@rock-chips.com>

Add DT bindings documentation for Rockchip ISP1

Signed-off-by: Jacob Chen <jacob2.chen@rock-chips.com>
---
 .../devicetree/bindings/media/rockchip-isp1.txt    | 61 ++++++++++++++++++++++
 1 file changed, 61 insertions(+)
 create mode 100644 Documentation/devicetree/bindings/media/rockchip-isp1.txt

diff --git a/Documentation/devicetree/bindings/media/rockchip-isp1.txt b/Documentation/devicetree/bindings/media/rockchip-isp1.txt
new file mode 100644
index 000000000000..5e5b72edcf81
--- /dev/null
+++ b/Documentation/devicetree/bindings/media/rockchip-isp1.txt
@@ -0,0 +1,61 @@
+Rockchip SoC Image Signal Processing unit v1
+----------------------------------------------
+
+Rockchip ISP1 is the Camera interface for the Rockchip series of SoCs
+which contains image processing, scaling, and compression funcitons.
+
+Currently device tree nodes for the Rockchip ISP1 driver includes:
+MIPI D-PHY, ISP.
+
+Required properties:
+  - compatible: value should be one of the following
+      "rockchip,rk3288-cif-isp";
+      "rockchip,rk3399-cif-isp";
+  - reg : offset and length of the register set for the device.
+  - interrupts: should contain ISP interrupt.
+  - clocks: phandle to the required clocks.
+  - clock-names: required clock name.
+  - iommus: required a iommu node.
+
+The device node should contain one 'port' child node with child 'endpoint'
+nodes, according to the bindings defined in Documentation/devicetree/bindings/
+media/video-interfaces.txt.
+
+Example:
+SoC-specific DT entry:
+	isp0: isp0@ff910000 {
+		compatible = "rockchip,rk3399-cif-isp";
+		reg = <0x0 0xff910000 0x0 0x4000>;
+		interrupts = <GIC_SPI 43 IRQ_TYPE_LEVEL_HIGH 0>;
+		clocks = <&cru SCLK_ISP0>,
+			 <&cru ACLK_ISP0>, <&cru ACLK_ISP0_WRAPPER>,
+			 <&cru HCLK_ISP0>, <&cru HCLK_ISP0_WRAPPER>;
+		clock-names = "clk_isp",
+			      "aclk_isp", "aclk_isp_wrap",
+			      "hclk_isp", "hclk_isp_wrap";
+		power-domains = <&power RK3399_PD_ISP0>;
+		iommus = <&isp0_mmu>;
+		status = "disabled";
+	};
+
+Board-specific:
+	isp0: isp0@ff910000 {
+		port {
+			#address-cells = <1>;
+			#size-cells = <0>;
+
+			/* mipi */
+			isp0_mipi_in: endpoint@0 {
+				reg = <0>;
+				remote-endpoint = <&dphy_rx0_out>;
+			};
+
+			/* parallel */
+			isp0_parallel_in: endpoint@1 {
+				reg = <1>;
+				remote-endpoint = <&ov5640_out>;
+			};
+		};
+	};
+
+The MIPI-DPHY device binding is defined in rockchip-mipi-dphy.txt.
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 06/11] dt-bindings: Document the Rockchip MIPI RX D-PHY bindings
From: Jacob Chen @ 2017-11-24  2:37 UTC (permalink / raw)
  To: linux-rockchip
  Cc: linux-kernel, linux-arm-kernel, mchehab, linux-media,
	sakari.ailus, hans.verkuil, tfiga, zhengsq, laurent.pinchart, zyc,
	eddie.cai.linux, jeffy.chen, allon.huang, devicetree, heiko,
	robh+dt, Jacob Chen, Jacob Chen
In-Reply-To: <20171124023706.5702-1-jacob-chen@iotwrt.com>

Add DT bindings documentation for Rockchip MIPI D-PHY RX

Signed-off-by: Jacob Chen <jacob2.chen@rock-chips.com>
---
 .../bindings/media/rockchip-mipi-dphy.txt          | 77 ++++++++++++++++++++++
 1 file changed, 77 insertions(+)
 create mode 100644 Documentation/devicetree/bindings/media/rockchip-mipi-dphy.txt

diff --git a/Documentation/devicetree/bindings/media/rockchip-mipi-dphy.txt b/Documentation/devicetree/bindings/media/rockchip-mipi-dphy.txt
new file mode 100644
index 000000000000..b5773b67c250
--- /dev/null
+++ b/Documentation/devicetree/bindings/media/rockchip-mipi-dphy.txt
@@ -0,0 +1,77 @@
+Rockchip SoC MIPI RX D-PHY
+-------------------------------------------------------------
+
+Required properties:
+
+- compatible: value should be one of the following
+    "rockchip,rk3288-mipi-dphy";
+    "rockchip,rk3399-mipi-dphy";
+- rockchip,grf: GRF regs.
+- bus-width	  : maximum number of data lanes supported (SoC specific);
+- clocks	  : list of clock specifiers, corresponding to entries in
+		    clock-names property;
+- clock-names: required clock name.
+
+The device node should contain two 'port' child node, according to the bindings
+defined in Documentation/devicetree/bindings/media/video-interfaces.txt.
+The first port should be connected to sensor nodes, and the second port should be
+connected to isp node. The following are properties specific to those nodes.
+
+endpoint node
+-------------
+
+- data-lanes	  : (required) an array specifying active physical MIPI-CSI2
+		    data input lanes and their mapping to logical lanes; the
+		    array's content is unused, only its length is meaningful;
+
+
+Example:
+
+/* SoC properties */
+
+    mipi_dphy_rx0: mipi-dphy-rx0 {
+        compatible = "rockchip,rk3399-mipi-dphy";
+        clocks = <&cru SCLK_MIPIDPHY_REF>,
+            <&cru SCLK_DPHY_RX0_CFG>,
+            <&cru PCLK_VIO_GRF>;
+        clock-names = "dphy-ref", "dphy-cfg", "grf";
+        power-domains = <&power RK3399_PD_VIO>;
+        bus-width = <4>;
+    };
+
+/* Board properties */
+
+    &mipi_phy_rx0 {
+        ports {
+            #address-cells = <1>;
+            #size-cells = <0>;
+
+            port@0 {
+                reg = <0>;
+                #address-cells = <1>;
+                #size-cells = <0>;
+
+                mipi_in_wcam: endpoint@0 {
+                    reg = <0>;
+                    remote-endpoint = <&wcam_out>;
+                    data-lanes = <1 2>;
+                };
+                mipi_in_ucam: endpoint@1 {
+                    reg = <1>;
+                    remote-endpoint = <&ucam_out>;
+                    data-lanes = <1>;
+                };
+            };
+
+            port@1 {
+                reg = <1>;
+                #address-cells = <1>;
+                #size-cells = <0>;
+
+                dphy_rx0_out: endpoint@0 {
+                    reg = <0>;
+                    remote-endpoint = <&isp0_mipi_in>;
+                };
+            };
+        };
+    };
\ No newline at end of file
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 07/11] ARM: dts: rockchip: add isp node for rk3288
From: Jacob Chen @ 2017-11-24  2:37 UTC (permalink / raw)
  To: linux-rockchip
  Cc: linux-kernel, linux-arm-kernel, mchehab, linux-media,
	sakari.ailus, hans.verkuil, tfiga, zhengsq, laurent.pinchart, zyc,
	eddie.cai.linux, jeffy.chen, allon.huang, devicetree, heiko,
	robh+dt, Jacob Chen
In-Reply-To: <20171124023706.5702-1-jacob-chen@iotwrt.com>

From: Jacob Chen <jacob2.chen@rock-chips.com>

rk3288 have a Embedded 13M ISP

Signed-off-by: Jacob Chen <jacob2.chen@rock-chips.com>
---
 arch/arm/boot/dts/rk3288.dtsi | 17 +++++++++++++++++
 1 file changed, 17 insertions(+)

diff --git a/arch/arm/boot/dts/rk3288.dtsi b/arch/arm/boot/dts/rk3288.dtsi
index f3e7f98c2724..30677a0167fe 100644
--- a/arch/arm/boot/dts/rk3288.dtsi
+++ b/arch/arm/boot/dts/rk3288.dtsi
@@ -962,6 +962,23 @@
 		status = "disabled";
 	};
 
+	isp: isp@ff910000 {
+		compatible = "rockchip,rk3288-cif-isp";
+		reg = <0x0 0xff910000 0x0 0x4000>;
+		interrupts = <GIC_SPI 14 IRQ_TYPE_LEVEL_HIGH>;
+		clocks = <&cru SCLK_ISP>, <&cru ACLK_ISP>,
+			 <&cru HCLK_ISP>, <&cru PCLK_ISP_IN>,
+			 <&cru SCLK_ISP_JPE>;
+		clock-names = "clk_isp", "aclk_isp",
+			      "hclk_isp", "pclk_isp_in",
+			      "sclk_isp_jpe";
+		assigned-clocks = <&cru SCLK_ISP>;
+		assigned-clock-rates = <400000000>;
+		power-domains = <&power RK3288_PD_VIO>;
+		iommus = <&isp_mmu>;
+		status = "disabled";
+	};
+
 	isp_mmu: iommu@ff914000 {
 		compatible = "rockchip,iommu";
 		reg = <0x0 0xff914000 0x0 0x100>, <0x0 0xff915000 0x0 0x100>;
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 08/11] ARM: dts: rockchip: add rx0 mipi-phy for rk3288
From: Jacob Chen @ 2017-11-24  2:37 UTC (permalink / raw)
  To: linux-rockchip
  Cc: linux-kernel, linux-arm-kernel, mchehab, linux-media,
	sakari.ailus, hans.verkuil, tfiga, zhengsq, laurent.pinchart, zyc,
	eddie.cai.linux, jeffy.chen, allon.huang, devicetree, heiko,
	robh+dt, Jacob Chen
In-Reply-To: <20171124023706.5702-1-jacob-chen@iotwrt.com>

It's a Designware MIPI D-PHY, used by ISP in rk3288.

Signed-off-by: Jacob Chen <jacob-chen@iotwrt.com>
---
 arch/arm/boot/dts/rk3288.dtsi | 7 +++++++
 1 file changed, 7 insertions(+)

diff --git a/arch/arm/boot/dts/rk3288.dtsi b/arch/arm/boot/dts/rk3288.dtsi
index 30677a0167fe..8b7d5a9b521f 100644
--- a/arch/arm/boot/dts/rk3288.dtsi
+++ b/arch/arm/boot/dts/rk3288.dtsi
@@ -864,6 +864,13 @@
 			status = "disabled";
 		};
 
+		mipi_phy_rx0: mipi-phy-rx0 {
+			compatible = "rockchip,rk3288-mipi-dphy";
+			clocks = <&cru SCLK_MIPIDSI_24M>, <&cru PCLK_MIPI_CSI>;
+			clock-names = "dphy-ref", "pclk";
+			status = "disabled";
+		};
+
 		io_domains: io-domains {
 			compatible = "rockchip,rk3288-io-voltage-domain";
 			status = "disabled";
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 09/11] arm64: dts: rockchip: add isp0 node for rk3399
From: Jacob Chen @ 2017-11-24  2:37 UTC (permalink / raw)
  To: linux-rockchip
  Cc: linux-kernel, linux-arm-kernel, mchehab, linux-media,
	sakari.ailus, hans.verkuil, tfiga, zhengsq, laurent.pinchart, zyc,
	eddie.cai.linux, jeffy.chen, allon.huang, devicetree, heiko,
	robh+dt, Jacob Chen
In-Reply-To: <20171124023706.5702-1-jacob-chen@iotwrt.com>

From: Shunqian Zheng <zhengsq@rock-chips.com>

rk3399 have two ISP, but we havn't test isp1, so just add isp0 at present.

Signed-off-by: Shunqian Zheng <zhengsq@rock-chips.com>
Signed-off-by: Jacob Chen <jacob2.chen@rock-chips.com>
---
 arch/arm64/boot/dts/rockchip/rk3399.dtsi | 15 +++++++++++++++
 1 file changed, 15 insertions(+)

diff --git a/arch/arm64/boot/dts/rockchip/rk3399.dtsi b/arch/arm64/boot/dts/rockchip/rk3399.dtsi
index d340b58ab184..66a912fab5dd 100644
--- a/arch/arm64/boot/dts/rockchip/rk3399.dtsi
+++ b/arch/arm64/boot/dts/rockchip/rk3399.dtsi
@@ -1588,6 +1588,21 @@
 		status = "disabled";
 	};
 
+	isp0: isp0@ff910000 {
+		compatible = "rockchip,rk3399-cif-isp";
+		reg = <0x0 0xff910000 0x0 0x4000>;
+		interrupts = <GIC_SPI 43 IRQ_TYPE_LEVEL_HIGH 0>;
+		clocks = <&cru SCLK_ISP0>,
+			 <&cru ACLK_ISP0>, <&cru ACLK_ISP0_WRAPPER>,
+			 <&cru HCLK_ISP0>, <&cru HCLK_ISP0_WRAPPER>;
+		clock-names = "clk_isp",
+			      "aclk_isp", "aclk_isp_wrap",
+			      "hclk_isp", "hclk_isp_wrap";
+		power-domains = <&power RK3399_PD_ISP0>;
+		iommus = <&isp0_mmu>;
+		status = "disabled";
+	};
+
 	isp0_mmu: iommu@ff914000 {
 		compatible = "rockchip,iommu";
 		reg = <0x0 0xff914000 0x0 0x100>, <0x0 0xff915000 0x0 0x100>;
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 10/11] arm64: dts: rockchip: add rx0 mipi-phy for rk3399
From: Jacob Chen @ 2017-11-24  2:37 UTC (permalink / raw)
  To: linux-rockchip
  Cc: linux-kernel, linux-arm-kernel, mchehab, linux-media,
	sakari.ailus, hans.verkuil, tfiga, zhengsq, laurent.pinchart, zyc,
	eddie.cai.linux, jeffy.chen, allon.huang, devicetree, heiko,
	robh+dt, Jacob Chen
In-Reply-To: <20171124023706.5702-1-jacob-chen@iotwrt.com>

From: Shunqian Zheng <zhengsq@rock-chips.com>

It's a Designware MIPI D-PHY, used for ISP0 in rk3399.

Signed-off-by: Shunqian Zheng <zhengsq@rock-chips.com>
Signed-off-by: Jacob Chen <jacob2.chen@rock-chips.com>
---
 arch/arm64/boot/dts/rockchip/rk3399.dtsi | 11 +++++++++++
 1 file changed, 11 insertions(+)

diff --git a/arch/arm64/boot/dts/rockchip/rk3399.dtsi b/arch/arm64/boot/dts/rockchip/rk3399.dtsi
index 66a912fab5dd..a65b110afaf3 100644
--- a/arch/arm64/boot/dts/rockchip/rk3399.dtsi
+++ b/arch/arm64/boot/dts/rockchip/rk3399.dtsi
@@ -1292,6 +1292,17 @@
 			status = "disabled";
 		};
 
+		mipi_dphy_rx0: mipi-dphy-rx0 {
+			compatible = "rockchip,rk3399-mipi-dphy";
+			clocks = <&cru SCLK_MIPIDPHY_REF>,
+				<&cru SCLK_DPHY_RX0_CFG>,
+				<&cru PCLK_VIO_GRF>;
+			clock-names = "dphy-ref", "dphy-cfg", "grf";
+			power-domains = <&power RK3399_PD_VIO>;
+			bus-width = <4>;
+			status = "disabled";
+		};
+
 		u2phy0: usb2-phy@e450 {
 			compatible = "rockchip,rk3399-usb2phy";
 			reg = <0xe450 0x10>;
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 11/11] MAINTAINERS: add entry for Rockchip ISP1 driver
From: Jacob Chen @ 2017-11-24  2:37 UTC (permalink / raw)
  To: linux-rockchip
  Cc: linux-kernel, linux-arm-kernel, mchehab, linux-media,
	sakari.ailus, hans.verkuil, tfiga, zhengsq, laurent.pinchart, zyc,
	eddie.cai.linux, jeffy.chen, allon.huang, devicetree, heiko,
	robh+dt, Jacob Chen
In-Reply-To: <20171124023706.5702-1-jacob-chen@iotwrt.com>

From: Jacob Chen <jacob2.chen@rock-chips.com>

Add MAINTAINERS entry for the rockchip isp1 driver.
This driver is maintained by rockchip officially and it
will be used for rockchip SoC on all linux-kernel based OS.

Signed-off-by: Jacob Chen <jacob2.chen@rock-chips.com>
---
 MAINTAINERS | 10 ++++++++++
 1 file changed, 10 insertions(+)

diff --git a/MAINTAINERS b/MAINTAINERS
index b05bc2c5e85c..614196ed7265 100644
--- a/MAINTAINERS
+++ b/MAINTAINERS
@@ -11665,6 +11665,16 @@ F:	drivers/hid/hid-roccat*
 F:	include/linux/hid-roccat*
 F:	Documentation/ABI/*/sysfs-driver-hid-roccat*
 
+ROCKCHIP ISP V1 DRIVER
+M:	Jacob chen <jacob2.chen@rock-chips.com>
+M:	Shunqian Zheng <zhengsq@rock-chips.com>
+M:	Yichong Zhong <zyc@rock-chips.com>
+L:	linux-media@vger.kernel.org
+S:	Maintained
+F:	drivers/media/platform/rockchip/isp1/
+F:	Documentation/devicetree/bindings/media/rockchip-isp1.txt
+F:	Documentation/devicetree/bindings/media/rockchip-mipi-dphy.txt
+
 ROCKCHIP RASTER 2D GRAPHIC ACCELERATION UNIT DRIVER
 M:	Jacob chen <jacob2.chen@rock-chips.com>
 L:	linux-media@vger.kernel.org
-- 
2.15.0

^ permalink raw reply related

* [PATCH v2 04/11] media: rkisp1: add Rockchip MIPI Synopsys DPHY driver
From: Jacob Chen @ 2017-11-24  2:49 UTC (permalink / raw)
  To: linux-rockchip
  Cc: linux-kernel, linux-arm-kernel, mchehab, linux-media,
	sakari.ailus, hans.verkuil, tfiga, zhengsq, laurent.pinchart, zyc,
	eddie.cai.linux, jeffy.chen, allon.huang, devicetree, heiko,
	robh+dt, Jacob Chen

From: Jacob Chen <jacob2.chen@rock-chips.com>

This commit adds a subdev driver for Rockchip MIPI Synopsys DPHY driver.

The phy driver is kind of independent compare to the other parts, but i'd like
to keep it in rkisp1 driver, unless people want to generalize it

Signed-off-by: Jacob Chen <jacob2.chen@rock-chips.com>
Signed-off-by: Shunqian Zheng <zhengsq@rock-chips.com>
Signed-off-by: Tomasz Figa <tfiga@chromium.org>
---
 drivers/media/platform/rockchip/isp1/Makefile      |   1 +
 .../media/platform/rockchip/isp1/mipi_dphy_sy.c    | 806 +++++++++++++++++++++
 2 files changed, 807 insertions(+)
 create mode 100644 drivers/media/platform/rockchip/isp1/mipi_dphy_sy.c

diff --git a/drivers/media/platform/rockchip/isp1/Makefile b/drivers/media/platform/rockchip/isp1/Makefile
index 8f52f959398e..18af64853734 100644
--- a/drivers/media/platform/rockchip/isp1/Makefile
+++ b/drivers/media/platform/rockchip/isp1/Makefile
@@ -4,4 +4,5 @@ video_rkisp1-objs 	   += 	rkisp1.o \
 				regs.o \
 				isp_stats.o \
 				isp_params.o \
+				mipi_dphy_sy.o \
 				capture.o
diff --git a/drivers/media/platform/rockchip/isp1/mipi_dphy_sy.c b/drivers/media/platform/rockchip/isp1/mipi_dphy_sy.c
new file mode 100644
index 000000000000..a2df34b931e7
--- /dev/null
+++ b/drivers/media/platform/rockchip/isp1/mipi_dphy_sy.c
@@ -0,0 +1,806 @@
+/*
+ * Rockchip MIPI Synopsys DPHY driver
+ *
+ * Copyright (C) 2017 Fuzhou Rockchip Electronics Co., Ltd.
+ *
+ * This software is available to you under a choice of one of two
+ * licenses.  You may choose to be licensed under the terms of the GNU
+ * General Public License (GPL) Version 2, available from the file
+ * COPYING in the main directory of this source tree, or the
+ * OpenIB.org BSD license below:
+ *
+ *     Redistribution and use in source and binary forms, with or
+ *     without modification, are permitted provided that the following
+ *     conditions are met:
+ *
+ *      - Redistributions of source code must retain the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer.
+ *
+ *      - Redistributions in binary form must reproduce the above
+ *        copyright notice, this list of conditions and the following
+ *        disclaimer in the documentation and/or other materials
+ *        provided with the distribution.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
+ * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ */
+
+#include <linux/clk.h>
+#include <linux/delay.h>
+#include <linux/module.h>
+#include <linux/of.h>
+#include <linux/of_platform.h>
+#include <linux/platform_device.h>
+#include <linux/pm_runtime.h>
+#include <linux/regmap.h>
+#include <linux/mfd/syscon.h>
+#include <media/media-entity.h>
+#include <media/v4l2-ctrls.h>
+#include <media/v4l2-fwnode.h>
+#include <media/v4l2-subdev.h>
+
+#define RK3288_GRF_SOC_CON6	0x025c
+#define RK3288_GRF_SOC_CON8	0x0264
+#define RK3288_GRF_SOC_CON9	0x0268
+#define RK3288_GRF_SOC_CON10	0x026c
+#define RK3288_GRF_SOC_CON14	0x027c
+#define RK3288_GRF_SOC_STATUS21	0x02d4
+#define RK3288_GRF_IO_VSEL	0x0380
+#define RK3288_GRF_SOC_CON15	0x03a4
+
+#define RK3399_GRF_SOC_CON9	0x6224
+#define RK3399_GRF_SOC_CON21	0x6254
+#define RK3399_GRF_SOC_CON22	0x6258
+#define RK3399_GRF_SOC_CON23	0x625c
+#define RK3399_GRF_SOC_CON24	0x6260
+#define RK3399_GRF_SOC_CON25	0x6264
+#define RK3399_GRF_SOC_STATUS1	0xe2a4
+
+#define CLOCK_LANE_HS_RX_CONTROL		0x34
+#define LANE0_HS_RX_CONTROL			0x44
+#define LANE1_HS_RX_CONTROL			0x54
+#define LANE2_HS_RX_CONTROL			0x84
+#define LANE3_HS_RX_CONTROL			0x94
+#define HS_RX_DATA_LANES_THS_SETTLE__CONTROL	0x75
+
+#define HIWORD_UPDATE(val, mask, shift) \
+	((val) << (shift) | (mask) << ((shift) + 16))
+
+enum mipi_dphy_sy_pads {
+	MIPI_DPHY_SY_PAD_SINK = 0,
+	MIPI_DPHY_SY_PAD_SOURCE,
+	MIPI_DPHY_SY_PADS_NUM,
+};
+
+enum dphy_reg_id {
+	GRF_DPHY_RX0_TURNDISABLE = 0,
+	GRF_DPHY_RX0_FORCERXMODE,
+	GRF_DPHY_RX0_FORCETXSTOPMODE,
+	GRF_DPHY_RX0_ENABLE,
+	GRF_DPHY_RX0_TESTCLR,
+	GRF_DPHY_RX0_TESTCLK,
+	GRF_DPHY_RX0_TESTEN,
+	GRF_DPHY_RX0_TESTDIN,
+	GRF_DPHY_RX0_TURNREQUEST,
+	GRF_DPHY_RX0_TESTDOUT,
+	GRF_DPHY_TX0_TURNDISABLE,
+	GRF_DPHY_TX0_FORCERXMODE,
+	GRF_DPHY_TX0_FORCETXSTOPMODE,
+	GRF_DPHY_TX0_TURNREQUEST,
+	GRF_DPHY_TX1RX1_TURNDISABLE,
+	GRF_DPHY_TX1RX1_FORCERXMODE,
+	GRF_DPHY_TX1RX1_FORCETXSTOPMODE,
+	GRF_DPHY_TX1RX1_ENABLE,
+	GRF_DPHY_TX1RX1_MASTERSLAVEZ,
+	GRF_DPHY_TX1RX1_BASEDIR,
+	GRF_DPHY_TX1RX1_ENABLECLK,
+	GRF_DPHY_TX1RX1_TURNREQUEST,
+	GRF_DPHY_RX1_SRC_SEL,
+	/* rk3288 only */
+	GRF_CON_DISABLE_ISP,
+	GRF_CON_ISP_DPHY_SEL,
+	GRF_DSI_CSI_TESTBUS_SEL,
+	GRF_DVP_V18SEL,
+	/* below is for rk3399 only */
+	GRF_DPHY_RX0_CLK_INV_SEL,
+	GRF_DPHY_RX1_CLK_INV_SEL,
+};
+
+struct dphy_reg {
+	u32 offset;
+	u32 mask;
+	u32 shift;
+};
+
+#define PHY_REG(_offset, _width, _shift) \
+	{ .offset = _offset, .mask = BIT(_width) - 1, .shift = _shift, }
+
+static const struct dphy_reg rk3399_grf_dphy_regs[] = {
+	[GRF_DPHY_RX0_TURNREQUEST] = PHY_REG(RK3399_GRF_SOC_CON9, 4, 0),
+	[GRF_DPHY_RX0_CLK_INV_SEL] = PHY_REG(RK3399_GRF_SOC_CON9, 1, 10),
+	[GRF_DPHY_RX1_CLK_INV_SEL] = PHY_REG(RK3399_GRF_SOC_CON9, 1, 11),
+	[GRF_DPHY_RX0_ENABLE] = PHY_REG(RK3399_GRF_SOC_CON21, 4, 0),
+	[GRF_DPHY_RX0_FORCERXMODE] = PHY_REG(RK3399_GRF_SOC_CON21, 4, 4),
+	[GRF_DPHY_RX0_FORCETXSTOPMODE] = PHY_REG(RK3399_GRF_SOC_CON21, 4, 8),
+	[GRF_DPHY_RX0_TURNDISABLE] = PHY_REG(RK3399_GRF_SOC_CON21, 4, 12),
+	[GRF_DPHY_TX0_FORCERXMODE] = PHY_REG(RK3399_GRF_SOC_CON22, 4, 0),
+	[GRF_DPHY_TX0_FORCETXSTOPMODE] = PHY_REG(RK3399_GRF_SOC_CON22, 4, 4),
+	[GRF_DPHY_TX0_TURNDISABLE] = PHY_REG(RK3399_GRF_SOC_CON22, 4, 8),
+	[GRF_DPHY_TX0_TURNREQUEST] = PHY_REG(RK3399_GRF_SOC_CON22, 4, 12),
+	[GRF_DPHY_TX1RX1_ENABLE] = PHY_REG(RK3399_GRF_SOC_CON23, 4, 0),
+	[GRF_DPHY_TX1RX1_FORCERXMODE] = PHY_REG(RK3399_GRF_SOC_CON23, 4, 4),
+	[GRF_DPHY_TX1RX1_FORCETXSTOPMODE] = PHY_REG(RK3399_GRF_SOC_CON23, 4, 8),
+	[GRF_DPHY_TX1RX1_TURNDISABLE] = PHY_REG(RK3399_GRF_SOC_CON23, 4, 12),
+	[GRF_DPHY_TX1RX1_TURNREQUEST] = PHY_REG(RK3399_GRF_SOC_CON24, 4, 0),
+	[GRF_DPHY_RX1_SRC_SEL] = PHY_REG(RK3399_GRF_SOC_CON24, 1, 4),
+	[GRF_DPHY_TX1RX1_BASEDIR] = PHY_REG(RK3399_GRF_SOC_CON24, 1, 5),
+	[GRF_DPHY_TX1RX1_ENABLECLK] = PHY_REG(RK3399_GRF_SOC_CON24, 1, 6),
+	[GRF_DPHY_TX1RX1_MASTERSLAVEZ] = PHY_REG(RK3399_GRF_SOC_CON24, 1, 7),
+	[GRF_DPHY_RX0_TESTDIN] = PHY_REG(RK3399_GRF_SOC_CON25, 8, 0),
+	[GRF_DPHY_RX0_TESTEN] = PHY_REG(RK3399_GRF_SOC_CON25, 1, 8),
+	[GRF_DPHY_RX0_TESTCLK] = PHY_REG(RK3399_GRF_SOC_CON25, 1, 9),
+	[GRF_DPHY_RX0_TESTCLR] = PHY_REG(RK3399_GRF_SOC_CON25, 1, 10),
+	[GRF_DPHY_RX0_TESTDOUT] = PHY_REG(RK3399_GRF_SOC_STATUS1, 8, 0),
+};
+
+static const struct dphy_reg rk3288_grf_dphy_regs[] = {
+	[GRF_CON_DISABLE_ISP] = PHY_REG(RK3288_GRF_SOC_CON6, 1, 0),
+	[GRF_CON_ISP_DPHY_SEL] = PHY_REG(RK3288_GRF_SOC_CON6, 1, 1),
+	[GRF_DSI_CSI_TESTBUS_SEL] = PHY_REG(RK3288_GRF_SOC_CON6, 1, 14),
+	[GRF_DPHY_TX0_TURNDISABLE] = PHY_REG(RK3288_GRF_SOC_CON8, 4, 0),
+	[GRF_DPHY_TX0_FORCERXMODE] = PHY_REG(RK3288_GRF_SOC_CON8, 4, 4),
+	[GRF_DPHY_TX0_FORCETXSTOPMODE] = PHY_REG(RK3288_GRF_SOC_CON8, 4, 8),
+	[GRF_DPHY_TX1RX1_TURNDISABLE] = PHY_REG(RK3288_GRF_SOC_CON9, 4, 0),
+	[GRF_DPHY_TX1RX1_FORCERXMODE] = PHY_REG(RK3288_GRF_SOC_CON9, 4, 4),
+	[GRF_DPHY_TX1RX1_FORCETXSTOPMODE] = PHY_REG(RK3288_GRF_SOC_CON9, 4, 8),
+	[GRF_DPHY_TX1RX1_ENABLE] = PHY_REG(RK3288_GRF_SOC_CON9, 4, 12),
+	[GRF_DPHY_RX0_TURNDISABLE] = PHY_REG(RK3288_GRF_SOC_CON10, 4, 0),
+	[GRF_DPHY_RX0_FORCERXMODE] = PHY_REG(RK3288_GRF_SOC_CON10, 4, 4),
+	[GRF_DPHY_RX0_FORCETXSTOPMODE] = PHY_REG(RK3288_GRF_SOC_CON10, 4, 8),
+	[GRF_DPHY_RX0_ENABLE] = PHY_REG(RK3288_GRF_SOC_CON10, 4, 12),
+	[GRF_DPHY_RX0_TESTCLR] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 0),
+	[GRF_DPHY_RX0_TESTCLK] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 1),
+	[GRF_DPHY_RX0_TESTEN] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 2),
+	[GRF_DPHY_RX0_TESTDIN] = PHY_REG(RK3288_GRF_SOC_CON14, 8, 3),
+	[GRF_DPHY_TX1RX1_ENABLECLK] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 12),
+	[GRF_DPHY_RX1_SRC_SEL] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 13),
+	[GRF_DPHY_TX1RX1_MASTERSLAVEZ] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 14),
+	[GRF_DPHY_TX1RX1_BASEDIR] = PHY_REG(RK3288_GRF_SOC_CON14, 1, 15),
+	[GRF_DPHY_RX0_TURNREQUEST] = PHY_REG(RK3288_GRF_SOC_CON15, 4, 0),
+	[GRF_DPHY_TX1RX1_TURNREQUEST] = PHY_REG(RK3288_GRF_SOC_CON15, 4, 4),
+	[GRF_DPHY_TX0_TURNREQUEST] = PHY_REG(RK3288_GRF_SOC_CON15, 3, 8),
+	[GRF_DVP_V18SEL] = PHY_REG(RK3288_GRF_IO_VSEL, 1, 1),
+	[GRF_DPHY_RX0_TESTDOUT] = PHY_REG(RK3288_GRF_SOC_STATUS21, 8, 0),
+};
+
+struct hsfreq_range {
+	u32 range_h;
+	u8 cfg_bit;
+};
+
+struct dphy_drv_data {
+	const char * const *clks;
+	int num_clks;
+	const struct hsfreq_range *hsfreq_ranges;
+	int num_hsfreq_ranges;
+	const struct dphy_reg *regs;
+};
+
+struct sensor_async_subdev {
+	struct v4l2_async_subdev asd;
+	struct v4l2_mbus_config mbus;
+	int lanes;
+};
+
+#define MAX_DPHY_CLK		8
+#define MAX_DPHY_SENSORS	2
+
+struct mipidphy_sensor {
+	struct v4l2_subdev *sd;
+	struct v4l2_mbus_config mbus;
+	int lanes;
+};
+
+struct mipidphy_priv {
+	struct device *dev;
+	struct regmap *regmap_grf;
+	const struct dphy_reg *grf_regs;
+	struct clk *clks[MAX_DPHY_CLK];
+	const struct dphy_drv_data *drv_data;
+	u64 data_rate_mbps;
+	struct v4l2_async_notifier notifier;
+	struct v4l2_subdev sd;
+	struct media_pad pads[MIPI_DPHY_SY_PADS_NUM];
+	struct mipidphy_sensor sensors[MAX_DPHY_SENSORS];
+	int num_sensors;
+	bool is_streaming;
+};
+
+static inline struct mipidphy_priv *to_dphy_priv(struct v4l2_subdev *subdev)
+{
+	return container_of(subdev, struct mipidphy_priv, sd);
+}
+
+static inline void write_reg(struct mipidphy_priv *priv, int index, u8 value)
+{
+	const struct dphy_reg *reg = &priv->grf_regs[index];
+	unsigned int val = HIWORD_UPDATE(value, reg->mask, reg->shift);
+
+	WARN_ON(!reg->offset);
+	regmap_write(priv->regmap_grf, reg->offset, val);
+}
+
+static void mipidphy_wr_reg(struct mipidphy_priv *priv,
+			    u8 test_code, u8 test_data)
+{
+	/*
+	 * With the falling edge on TESTCLK, the TESTDIN[7:0] signal content
+	 * is latched internally as the current test code. Test data is
+	 * programmed internally by rising edge on TESTCLK.
+	 */
+	write_reg(priv, GRF_DPHY_RX0_TESTCLK, 1);
+	write_reg(priv, GRF_DPHY_RX0_TESTDIN, test_code);
+	write_reg(priv, GRF_DPHY_RX0_TESTEN, 1);
+	write_reg(priv, GRF_DPHY_RX0_TESTCLK, 0);
+	write_reg(priv, GRF_DPHY_RX0_TESTEN, 0);
+	write_reg(priv, GRF_DPHY_RX0_TESTDIN, test_data);
+	write_reg(priv, GRF_DPHY_RX0_TESTCLK, 1);
+}
+
+static struct v4l2_subdev *get_remote_sensor(struct v4l2_subdev *sd)
+{
+	struct media_pad *local, *remote;
+	struct media_entity *sensor_me;
+
+	local = &sd->entity.pads[MIPI_DPHY_SY_PAD_SINK];
+	remote = media_entity_remote_pad(local);
+	if (!remote) {
+		v4l2_warn(sd, "No link between dphy and sensor\n");
+		return NULL;
+	}
+
+	sensor_me = media_entity_remote_pad(local)->entity;
+	return media_entity_to_v4l2_subdev(sensor_me);
+}
+
+static struct mipidphy_sensor *sd_to_sensor(struct mipidphy_priv *priv,
+					    struct v4l2_subdev *sd)
+{
+	int i;
+
+	for (i = 0; i < priv->num_sensors; ++i)
+		if (priv->sensors[i].sd == sd)
+			return &priv->sensors[i];
+
+	return NULL;
+}
+
+static int mipidphy_get_sensor_data_rate(struct v4l2_subdev *sd)
+{
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+	struct v4l2_subdev *sensor_sd = get_remote_sensor(sd);
+	struct v4l2_ctrl *link_freq;
+	struct v4l2_querymenu qm = { .id = V4L2_CID_LINK_FREQ, };
+	int ret;
+
+	link_freq = v4l2_ctrl_find(sensor_sd->ctrl_handler, V4L2_CID_LINK_FREQ);
+	if (!link_freq) {
+		v4l2_warn(sd, "No pixel rate control in subdev\n");
+		return -EPIPE;
+	}
+
+	qm.index = v4l2_ctrl_g_ctrl(link_freq);
+	ret = v4l2_querymenu(sensor_sd->ctrl_handler, &qm);
+	if (ret < 0) {
+		v4l2_err(sd, "Failed to get menu item\n");
+		return ret;
+	}
+
+	if (!qm.value) {
+		v4l2_err(sd, "Invalid link_freq\n");
+		return -EINVAL;
+	}
+	priv->data_rate_mbps = qm.value * 2;
+	do_div(priv->data_rate_mbps, 1000 * 1000);
+
+	return 0;
+}
+
+static int mipidphy_s_stream_start(struct v4l2_subdev *sd)
+{
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+	const struct dphy_drv_data *drv_data = priv->drv_data;
+	const struct hsfreq_range *hsfreq_ranges = drv_data->hsfreq_ranges;
+	int num_hsfreq_ranges = drv_data->num_hsfreq_ranges;
+	struct v4l2_subdev *sensor_sd = get_remote_sensor(sd);
+	struct mipidphy_sensor *sensor = sd_to_sensor(priv, sensor_sd);
+	int i, ret, hsfreq = 0;
+
+	if (priv->is_streaming)
+		return 0;
+
+	ret = mipidphy_get_sensor_data_rate(sd);
+	if (ret < 0)
+		return ret;
+
+	for (i = 0; i < num_hsfreq_ranges; i++) {
+		if (hsfreq_ranges[i].range_h >= priv->data_rate_mbps) {
+			hsfreq = hsfreq_ranges[i].cfg_bit;
+			break;
+		}
+	}
+
+	write_reg(priv, GRF_DPHY_RX0_FORCERXMODE, 0);
+	write_reg(priv, GRF_DPHY_RX0_FORCETXSTOPMODE, 0);
+	/* Disable lan turn around, which is ignored in receive mode */
+	write_reg(priv, GRF_DPHY_RX0_TURNREQUEST, 0);
+	write_reg(priv, GRF_DPHY_RX0_TURNDISABLE, 0xf);
+
+	write_reg(priv, GRF_DPHY_RX0_ENABLE, GENMASK(sensor->lanes - 1, 0));
+
+	/* dphy start */
+	write_reg(priv, GRF_DPHY_RX0_TESTCLK, 1);
+	write_reg(priv, GRF_DPHY_RX0_TESTCLR, 1);
+	usleep_range(100, 150);
+	write_reg(priv, GRF_DPHY_RX0_TESTCLR, 0);
+	usleep_range(100, 150);
+
+	/* set clock lane */
+	/* HS hsfreq_range & lane 0  settle bypass */
+	mipidphy_wr_reg(priv, CLOCK_LANE_HS_RX_CONTROL, 0);
+	/* HS RX Control of lane0 */
+	mipidphy_wr_reg(priv, LANE0_HS_RX_CONTROL, hsfreq << 1);
+	/* HS RX Control of lane1 */
+	mipidphy_wr_reg(priv, LANE1_HS_RX_CONTROL, 0);
+	/* HS RX Control of lane2 */
+	mipidphy_wr_reg(priv, LANE2_HS_RX_CONTROL, 0);
+	/* HS RX Control of lane3 */
+	mipidphy_wr_reg(priv, LANE3_HS_RX_CONTROL, 0);
+	/* HS RX Data Lanes Settle State Time Control */
+	mipidphy_wr_reg(priv, HS_RX_DATA_LANES_THS_SETTLE__CONTROL, 0x04);
+
+	/* Normal operation */
+	mipidphy_wr_reg(priv, 0x0, 0);
+
+	priv->is_streaming = true;
+
+	return 0;
+}
+
+static int mipidphy_s_stream_stop(struct v4l2_subdev *sd)
+{
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+
+	if (!priv->is_streaming)
+		return 0;
+
+	priv->is_streaming = false;
+
+	return 0;
+}
+
+static int mipidphy_s_stream(struct v4l2_subdev *sd, int on)
+{
+	if (on)
+		return mipidphy_s_stream_start(sd);
+	else
+		return mipidphy_s_stream_stop(sd);
+}
+
+static int mipidphy_g_mbus_config(struct v4l2_subdev *sd,
+				  struct v4l2_mbus_config *config)
+{
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+	struct v4l2_subdev *sensor_sd = get_remote_sensor(sd);
+	struct mipidphy_sensor *sensor = sd_to_sensor(priv, sensor_sd);
+
+	*config = sensor->mbus;
+
+	return 0;
+}
+
+static int mipidphy_s_power(struct v4l2_subdev *sd, int on)
+{
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+
+	if (on)
+		return pm_runtime_get_sync(priv->dev);
+	else
+		return pm_runtime_put(priv->dev);
+}
+
+static int mipidphy_runtime_suspend(struct device *dev)
+{
+	struct media_entity *me = dev_get_drvdata(dev);
+	struct v4l2_subdev *sd = media_entity_to_v4l2_subdev(me);
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+	int i, num_clks;
+
+	num_clks = priv->drv_data->num_clks;
+	for (i = num_clks - 1; i >= 0; i--)
+		clk_disable_unprepare(priv->clks[i]);
+
+	return 0;
+}
+
+static int mipidphy_runtime_resume(struct device *dev)
+{
+	struct media_entity *me = dev_get_drvdata(dev);
+	struct v4l2_subdev *sd = media_entity_to_v4l2_subdev(me);
+	struct mipidphy_priv *priv = to_dphy_priv(sd);
+	int i, num_clks, ret;
+
+	num_clks = priv->drv_data->num_clks;
+	for (i = 0; i < num_clks; i++) {
+		ret = clk_prepare_enable(priv->clks[i]);
+		if (ret < 0)
+			goto err;
+	}
+
+	return 0;
+err:
+	while (--i >= 0)
+		clk_disable_unprepare(priv->clks[i]);
+	return ret;
+}
+
+/* dphy accepts all fmt/size from sensor */
+static int mipidphy_get_set_fmt(struct v4l2_subdev *sd,
+				struct v4l2_subdev_pad_config *cfg,
+				struct v4l2_subdev_format *fmt)
+{
+	struct v4l2_subdev *sensor = get_remote_sensor(sd);
+
+	/*
+	 * Do not allow format changes and just relay whatever
+	 * set currently in the sensor.
+	 */
+	return v4l2_subdev_call(sensor, pad, get_fmt, NULL, fmt);
+}
+
+static const struct v4l2_subdev_pad_ops mipidphy_subdev_pad_ops = {
+	.set_fmt = mipidphy_get_set_fmt,
+	.get_fmt = mipidphy_get_set_fmt,
+};
+
+static const struct v4l2_subdev_core_ops mipidphy_core_ops = {
+	.s_power = mipidphy_s_power,
+};
+
+static const struct v4l2_subdev_video_ops mipidphy_video_ops = {
+	.g_mbus_config = mipidphy_g_mbus_config,
+	.s_stream = mipidphy_s_stream,
+};
+
+static const struct v4l2_subdev_ops mipidphy_subdev_ops = {
+	.core = &mipidphy_core_ops,
+	.video = &mipidphy_video_ops,
+	.pad = &mipidphy_subdev_pad_ops,
+};
+
+/* These tables must be sorted by .range_h ascending. */
+static const struct hsfreq_range rk3288_mipidphy_hsfreq_ranges[] = {
+	{  89, 0x00}, {  99, 0x10}, { 109, 0x20}, { 129, 0x01},
+	{ 139, 0x11}, { 149, 0x21}, { 169, 0x02}, { 179, 0x12},
+	{ 199, 0x22}, { 219, 0x03}, { 239, 0x13}, { 249, 0x23},
+	{ 269, 0x04}, { 299, 0x14}, { 329, 0x05}, { 359, 0x15},
+	{ 399, 0x25}, { 449, 0x06}, { 499, 0x16}, { 549, 0x07},
+	{ 599, 0x17}, { 649, 0x08}, { 699, 0x18}, { 749, 0x09},
+	{ 799, 0x19}, { 849, 0x29}, { 899, 0x39}, { 949, 0x0a},
+	{ 999, 0x1a}
+};
+
+static const struct hsfreq_range rk3399_mipidphy_hsfreq_ranges[] = {
+	{  89, 0x00}, {  99, 0x10}, { 109, 0x20}, { 129, 0x01},
+	{ 139, 0x11}, { 149, 0x21}, { 169, 0x02}, { 179, 0x12},
+	{ 199, 0x22}, { 219, 0x03}, { 239, 0x13}, { 249, 0x23},
+	{ 269, 0x04}, { 299, 0x14}, { 329, 0x05}, { 359, 0x15},
+	{ 399, 0x25}, { 449, 0x06}, { 499, 0x16}, { 549, 0x07},
+	{ 599, 0x17}, { 649, 0x08}, { 699, 0x18}, { 749, 0x09},
+	{ 799, 0x19}, { 849, 0x29}, { 899, 0x39}, { 949, 0x0a},
+	{ 999, 0x1a}, {1049, 0x2a}, {1099, 0x3a}, {1149, 0x0b},
+	{1199, 0x1b}, {1249, 0x2b}, {1299, 0x3b}, {1349, 0x0c},
+	{1399, 0x1c}, {1449, 0x2c}, {1500, 0x3c}
+};
+
+static const char * const rk3399_mipidphy_clks[] = {
+	"dphy-ref",
+	"dphy-cfg",
+	"grf",
+};
+
+static const char * const rk3288_mipidphy_clks[] = {
+	"dphy-ref",
+	"pclk",
+};
+
+static const struct dphy_drv_data rk3288_mipidphy_drv_data = {
+	.clks = rk3288_mipidphy_clks,
+	.num_clks = ARRAY_SIZE(rk3288_mipidphy_clks),
+	.hsfreq_ranges = rk3288_mipidphy_hsfreq_ranges,
+	.num_hsfreq_ranges = ARRAY_SIZE(rk3288_mipidphy_hsfreq_ranges),
+	.regs = rk3288_grf_dphy_regs,
+};
+
+static const struct dphy_drv_data rk3399_mipidphy_drv_data = {
+	.clks = rk3399_mipidphy_clks,
+	.num_clks = ARRAY_SIZE(rk3399_mipidphy_clks),
+	.hsfreq_ranges = rk3399_mipidphy_hsfreq_ranges,
+	.num_hsfreq_ranges = ARRAY_SIZE(rk3399_mipidphy_hsfreq_ranges),
+	.regs = rk3399_grf_dphy_regs,
+};
+
+static const struct of_device_id rockchip_mipidphy_match_id[] = {
+	{
+		.compatible = "rockchip,rk3399-mipi-dphy",
+		.data = &rk3399_mipidphy_drv_data,
+	},
+	{
+		.compatible = "rockchip,rk3288-mipi-dphy",
+		.data = &rk3288_mipidphy_drv_data,
+	},
+	{}
+};
+MODULE_DEVICE_TABLE(of, rockchip_mipidphy_match_id);
+
+/* The .bound() notifier callback when a match is found */
+static int
+rockchip_mipidphy_notifier_bound(struct v4l2_async_notifier *notifier,
+				 struct v4l2_subdev *sd,
+				 struct v4l2_async_subdev *asd)
+{
+	struct mipidphy_priv *priv = container_of(notifier,
+						  struct mipidphy_priv,
+						  notifier);
+	struct sensor_async_subdev *s_asd = container_of(asd,
+					struct sensor_async_subdev, asd);
+	struct mipidphy_sensor *sensor;
+
+	if (priv->num_sensors == ARRAY_SIZE(priv->sensors))
+		return -EBUSY;
+
+	sensor = &priv->sensors[priv->num_sensors++];
+	sensor->lanes = s_asd->lanes;
+	sensor->mbus = s_asd->mbus;
+	sensor->sd = sd;
+
+	return 0;
+}
+
+/* The .unbind callback */
+static void
+rockchip_mipidphy_notifier_unbind(struct v4l2_async_notifier *notifier,
+				  struct v4l2_subdev *sd,
+				  struct v4l2_async_subdev *asd)
+{
+	struct mipidphy_priv *priv = container_of(notifier,
+						  struct mipidphy_priv,
+						  notifier);
+	struct mipidphy_sensor *sensor = sd_to_sensor(priv, sd);
+
+	sensor->sd = NULL;
+}
+
+/* .complete() is called after all subdevices have been located */
+static int
+rockchip_mipidphy_notifier_complete(struct v4l2_async_notifier *notifier)
+{
+	struct mipidphy_priv *priv = container_of(notifier,
+						  struct mipidphy_priv,
+						  notifier);
+	unsigned int pad;
+	int ret;
+	int i;
+
+	for (i = 0; i < priv->num_sensors; ++i) {
+		struct mipidphy_sensor *sensor = &priv->sensors[i];
+
+		for (pad = 0; pad < sensor->sd->entity.num_pads; pad++)
+			if (sensor->sd->entity.pads[pad].flags
+						& MEDIA_PAD_FL_SOURCE)
+				break;
+
+		if (pad == sensor->sd->entity.num_pads) {
+			dev_err(priv->dev,
+				"failed to find src pad for %s\n",
+				sensor->sd->name);
+
+			return -ENXIO;
+		}
+
+		ret = media_create_pad_link(
+				&sensor->sd->entity, pad,
+				&priv->sd.entity, MIPI_DPHY_SY_PAD_SINK,
+				i ? 0 : MEDIA_LNK_FL_ENABLED);
+		if (ret) {
+			dev_err(priv->dev,
+				"failed to create link for %s\n",
+				sensor->sd->name);
+			return ret;
+		}
+	}
+
+	return 0;
+}
+
+static const struct
+v4l2_async_notifier_operations rockchip_mipidphy_async_ops = {
+	.bound = rockchip_mipidphy_notifier_bound,
+	.unbind = rockchip_mipidphy_notifier_unbind,
+	.complete = rockchip_mipidphy_notifier_complete,
+};
+
+
+static int rockchip_mipidphy_fwnode_parse(struct device *dev,
+			     struct v4l2_fwnode_endpoint *vep,
+			     struct v4l2_async_subdev *asd)
+{
+	struct sensor_async_subdev *s_asd =
+			container_of(asd, struct sensor_async_subdev, asd);
+	struct v4l2_mbus_config *config = &s_asd->mbus;
+
+	if (vep->bus_type != V4L2_MBUS_CSI2) {
+		dev_err(dev, "Only CSI2 bus type is currently supported\n");
+		return -EINVAL;
+	}
+
+	if (vep->base.port != 0) {
+		dev_err(dev, "The PHY has only port 0\n");
+		return -EINVAL;
+	}
+
+	config->type = V4L2_MBUS_CSI2;
+	config->flags = vep->bus.mipi_csi2.flags;
+	s_asd->lanes = vep->bus.mipi_csi2.num_data_lanes;
+
+	switch (vep->bus.mipi_csi2.num_data_lanes) {
+	case 1:
+		config->flags |= V4L2_MBUS_CSI2_1_LANE;
+		break;
+	case 2:
+		config->flags |= V4L2_MBUS_CSI2_2_LANE;
+		break;
+	case 3:
+		config->flags |= V4L2_MBUS_CSI2_3_LANE;
+		break;
+	case 4:
+		config->flags |= V4L2_MBUS_CSI2_4_LANE;
+		break;
+	default:
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int rockchip_mipidphy_media_init(struct mipidphy_priv *priv)
+{
+	int ret;
+
+	priv->pads[MIPI_DPHY_SY_PAD_SOURCE].flags =
+		MEDIA_PAD_FL_SOURCE | MEDIA_PAD_FL_MUST_CONNECT;
+	priv->pads[MIPI_DPHY_SY_PAD_SINK].flags =
+		MEDIA_PAD_FL_SINK | MEDIA_PAD_FL_MUST_CONNECT;
+
+	ret = media_entity_pads_init(&priv->sd.entity,
+				 MIPI_DPHY_SY_PADS_NUM, priv->pads);
+	if (ret < 0)
+		return ret;
+
+	ret = v4l2_async_notifier_parse_fwnode_endpoints_by_port(
+		priv->dev, &priv->notifier,
+		sizeof(struct sensor_async_subdev), 0,
+		rockchip_mipidphy_fwnode_parse);
+	if (ret < 0)
+		return ret;
+
+	if (!priv->notifier.num_subdevs)
+		return -ENODEV;	/* no endpoint */
+
+	priv->sd.subdev_notifier = &priv->notifier;
+	priv->notifier.ops = &rockchip_mipidphy_async_ops;
+	ret = v4l2_async_subdev_notifier_register(&priv->sd, &priv->notifier);
+	if (ret) {
+		dev_err(priv->dev,
+			"failed to register async notifier : %d\n", ret);
+		v4l2_async_notifier_cleanup(&priv->notifier);
+		return ret;
+	}
+
+	return v4l2_async_register_subdev(&priv->sd);
+}
+
+static int rockchip_mipidphy_probe(struct platform_device *pdev)
+{
+	struct device *dev = &pdev->dev;
+	struct v4l2_subdev *sd;
+	struct mipidphy_priv *priv;
+	struct regmap *grf;
+	const struct of_device_id *of_id;
+	const struct dphy_drv_data *drv_data;
+	int i, ret;
+
+	priv = devm_kzalloc(dev, sizeof(*priv), GFP_KERNEL);
+	if (!priv)
+		return -ENOMEM;
+	priv->dev = dev;
+
+	of_id = of_match_device(rockchip_mipidphy_match_id, dev);
+	if (!of_id)
+		return -EINVAL;
+
+	grf = syscon_node_to_regmap(dev->parent->of_node);
+	if (IS_ERR(grf)) {
+		dev_err(dev, "Can't find GRF syscon\n");
+		return -ENODEV;
+	}
+	priv->regmap_grf = grf;
+
+	drv_data = of_id->data;
+	for (i = 0; i < drv_data->num_clks; i++) {
+		priv->clks[i] = devm_clk_get(dev, drv_data->clks[i]);
+
+		if (IS_ERR(priv->clks[i])) {
+			dev_err(dev, "Failed to get %s\n", drv_data->clks[i]);
+			return PTR_ERR(priv->clks[i]);
+		}
+	}
+
+	priv->grf_regs = drv_data->regs;
+	priv->drv_data = drv_data;
+
+	sd = &priv->sd;
+	v4l2_subdev_init(sd, &mipidphy_subdev_ops);
+	sd->flags |= V4L2_SUBDEV_FL_HAS_DEVNODE;
+	snprintf(sd->name, sizeof(sd->name), "rockchip-sy-mipi-dphy");
+	sd->dev = dev;
+
+	platform_set_drvdata(pdev, &sd->entity);
+
+	ret = rockchip_mipidphy_media_init(priv);
+	if (ret < 0)
+		return ret;
+
+	pm_runtime_enable(&pdev->dev);
+
+	return 0;
+}
+
+static int rockchip_mipidphy_remove(struct platform_device *pdev)
+{
+	struct media_entity *me = platform_get_drvdata(pdev);
+	struct v4l2_subdev *sd = media_entity_to_v4l2_subdev(me);
+
+	media_entity_cleanup(&sd->entity);
+
+	pm_runtime_disable(&pdev->dev);
+
+	return 0;
+}
+
+static const struct dev_pm_ops rockchip_mipidphy_pm_ops = {
+	SET_RUNTIME_PM_OPS(mipidphy_runtime_suspend,
+			   mipidphy_runtime_resume, NULL)
+};
+
+static struct platform_driver rockchip_isp_mipidphy_driver = {
+	.probe = rockchip_mipidphy_probe,
+	.remove = rockchip_mipidphy_remove,
+	.driver = {
+			.name = "rockchip-sy-mipi-dphy",
+			.pm = &rockchip_mipidphy_pm_ops,
+			.of_match_table = rockchip_mipidphy_match_id,
+	},
+};
+
+module_platform_driver(rockchip_isp_mipidphy_driver);
+MODULE_AUTHOR("Rockchip Camera/ISP team");
+MODULE_DESCRIPTION("Rockchip MIPI DPHY driver");
+MODULE_LICENSE("Dual BSD/GPL");
-- 
2.15.0

^ permalink raw reply related

* RE: [PATCH 2/3] dt-bindings: arm: actions: Add Sparky
From: sudeep kumar @ 2017-11-24  4:00 UTC (permalink / raw)
  To: 'Andreas Färber',
	linux-arm-kernel-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r
  Cc: 'Thomas Liau', 'Jeff Chen',
	'张东风', '刘炜',
	'张天益', '梅利',
	'Ioan B', linux-kernel-u79uwXL29TY76Z2rM5mHXA,
	'Rob Herring', 'Mark Rutland',
	devicetree-u79uwXL29TY76Z2rM5mHXA
In-Reply-To: <20171114180114.26408-3-afaerber-l3A5Bk7waGM@public.gmane.org>

Acked-by : sudeep <sudeepkumar-/0wLYENt7sWikuSvNLsyVV6hYfS7NtTn@public.gmane.org>

-----Original Message-----
From: Andreas Färber [mailto:afaerber-l3A5Bk7waGM@public.gmane.org] 
Sent: Tuesday, November 14, 2017 11:31 PM
To: linux-arm-kernel-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r@public.gmane.org
Cc: Thomas Liau <thomas.liau-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; Jeff Chen <jeff.chen-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; 张东风 <zhangdf-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; 刘炜 <liuwei-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; 张天益 <tyzhang-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; 梅利 <harrymei-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; Ioan B <ioan-HmMszb9TTf4@public.gmane.org>; Sudeep Kumar <sudeepkumar-/0wLYENt7sWikuSvNLsyVV6hYfS7NtTn@public.gmane.org>; linux-kernel-u79uwXL29TY76Z2rM5mHXA@public.gmane.org; Andreas Färber <afaerber-l3A5Bk7waGM@public.gmane.org>; Rob Herring <robh+dt-DgEjT+Ai2ygdnm+yROfE0A@public.gmane.org>; Mark Rutland <mark.rutland-5wv7dgnIgG8@public.gmane.org>; devicetree-u79uwXL29TY76Z2rM5mHXA@public.gmane.org
Subject: [PATCH 2/3] dt-bindings: arm: actions: Add Sparky

Define a binding for Allo.com Sparky SBC.

Cc: Ioan B. <ioan-HmMszb9TTf4@public.gmane.org>
Signed-off-by: Andreas Färber <afaerber-l3A5Bk7waGM@public.gmane.org>
---
 Documentation/devicetree/bindings/arm/actions.txt | 1 +
 1 file changed, 1 insertion(+)

diff --git a/Documentation/devicetree/bindings/arm/actions.txt b/Documentation/devicetree/bindings/arm/actions.txt
index 544a8855fad5..d54f33c4e0da 100644
--- a/Documentation/devicetree/bindings/arm/actions.txt
+++ b/Documentation/devicetree/bindings/arm/actions.txt
@@ -21,6 +21,7 @@ Boards:
 
 Root node property compatible must contain, depending on board:
 
+ - Allo.com Sparky: "allo,sparky"
  - Cubietech CubieBoard6: "cubietech,cubieboard6"
  - LeMaker Guitar Base Board rev. B: "lemaker,guitar-bb-rev-b", "lemaker,guitar"
 
-- 
2.13.6


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* RE: [PATCH 1/3] dt-bindings: Add vendor prefix for Allo.com
From: sudeep kumar @ 2017-11-24  4:01 UTC (permalink / raw)
  To: 'Andreas Färber',
	linux-arm-kernel-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r
  Cc: 'Thomas Liau', 'Jeff Chen',
	'张东风', '刘炜',
	'张天益', '梅利',
	'Ioan B', linux-kernel-u79uwXL29TY76Z2rM5mHXA,
	'Rob Herring', 'Mark Rutland',
	devicetree-u79uwXL29TY76Z2rM5mHXA
In-Reply-To: <20171114180114.26408-2-afaerber-l3A5Bk7waGM@public.gmane.org>

Acked-by : sudeep <sudeepkumar-/0wLYENt7sWikuSvNLsyVV6hYfS7NtTn@public.gmane.org>

-----Original Message-----
From: Andreas Färber [mailto:afaerber-l3A5Bk7waGM@public.gmane.org] 
Sent: Tuesday, November 14, 2017 11:31 PM
To: linux-arm-kernel-IAPFreCvJWM7uuMidbF8XUB+6BGkLq7r@public.gmane.org
Cc: Thomas Liau <thomas.liau-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; Jeff Chen <jeff.chen-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; 张东风 <zhangdf-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; 刘炜 <liuwei-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; 张天益 <tyzhang-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; 梅利 <harrymei-/sSyCTpAT0ql5r2w9Jh5Rg@public.gmane.org>; Ioan B <ioan-HmMszb9TTf4@public.gmane.org>; Sudeep Kumar <sudeepkumar-/0wLYENt7sWikuSvNLsyVV6hYfS7NtTn@public.gmane.org>; linux-kernel-u79uwXL29TY76Z2rM5mHXA@public.gmane.org; Andreas Färber <afaerber-l3A5Bk7waGM@public.gmane.org>; Rob Herring <robh+dt-DgEjT+Ai2ygdnm+yROfE0A@public.gmane.org>; Mark Rutland <mark.rutland-5wv7dgnIgG8@public.gmane.org>; devicetree-u79uwXL29TY76Z2rM5mHXA@public.gmane.org
Subject: [PATCH 1/3] dt-bindings: Add vendor prefix for Allo.com

ALLO is a Canadian-Indian manufacturer of telecommunications hardware.

Cc: Ioan B. <ioan-HmMszb9TTf4@public.gmane.org>
Signed-off-by: Andreas Färber <afaerber-l3A5Bk7waGM@public.gmane.org>
---
 Documentation/devicetree/bindings/vendor-prefixes.txt | 1 +
 1 file changed, 1 insertion(+)

diff --git a/Documentation/devicetree/bindings/vendor-prefixes.txt b/Documentation/devicetree/bindings/vendor-prefixes.txt
index 0994bdd82cd3..9bce76f3118d 100644
--- a/Documentation/devicetree/bindings/vendor-prefixes.txt
+++ b/Documentation/devicetree/bindings/vendor-prefixes.txt
@@ -15,6 +15,7 @@ adi	Analog Devices, Inc.
 advantech	Advantech Corporation
 aeroflexgaisler	Aeroflex Gaisler AB
 al	Annapurna Labs
+allo	Allo.com
 allwinner	Allwinner Technology Co., Ltd.
 alphascale	AlphaScale Integrated Circuits Systems, Inc.
 altr	Altera Corp.
-- 
2.13.6


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* [PATCH 1/2] dt-bindings: clocksource: Add Spreadtrum SC9860 timer
From: Baolin Wang @ 2017-11-24  5:37 UTC (permalink / raw)
  To: daniel.lezcano-QSEj5FYQhm4dnm+yROfE0A,
	tglx-hfZtesqFncYOwBW4kG4KsQ, robh+dt-DgEjT+Ai2ygdnm+yROfE0A,
	mark.rutland-5wv7dgnIgG8
  Cc: devicetree-u79uwXL29TY76Z2rM5mHXA,
	linux-kernel-u79uwXL29TY76Z2rM5mHXA,
	broonie-DgEjT+Ai2ygdnm+yROfE0A,
	baolin.wang-QSEj5FYQhm4dnm+yROfE0A,
	baolin.wang-lxIno14LUO0EEoCn2XhGlw

This patch adds documentation of device tree bindings for the timers
found on Spreadtrum SC9860 platform.

Signed-off-by: Baolin Wang <baolin.wang-lxIno14LUO0EEoCn2XhGlw@public.gmane.org>
---
 .../bindings/timer/spreadtrum,sprd-timer.txt       |   20 ++++++++++++++++++++
 1 file changed, 20 insertions(+)
 create mode 100644 Documentation/devicetree/bindings/timer/spreadtrum,sprd-timer.txt

diff --git a/Documentation/devicetree/bindings/timer/spreadtrum,sprd-timer.txt b/Documentation/devicetree/bindings/timer/spreadtrum,sprd-timer.txt
new file mode 100644
index 0000000..f9d5eb9
--- /dev/null
+++ b/Documentation/devicetree/bindings/timer/spreadtrum,sprd-timer.txt
@@ -0,0 +1,20 @@
+Spreadtrum timers
+
+The Spreadtrum SC9860 platform provides 3 general-purpose timers.
+These timers can support 32bit or 64bit counter, as well as supporting
+period mode or one-shot mode, and they are can be wakeup source
+during deep sleep.
+
+Required properties:
+- compatible: should be "sprd,sc9860-timer" for SC9860 platform.
+- reg: The register address of the timer device.
+- interrupts: Should contain the interrupt for the timer device.
+- clock-frequency: The frequency of the clock that drives the counter, in Hz.
+
+Example:
+	timer@40050000 {
+		compatible = "sprd,sc9860-timer";
+		reg = <0 0x40050000 0 0x20>;
+		interrupts = <GIC_SPI 26 IRQ_TYPE_LEVEL_HIGH>;
+		clock-frequency = <32768>;
+	};
-- 
1.7.9.5

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