da7218.c 107.9 KB
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/*
 * da7218.c - DA7218 ALSA SoC Codec Driver
 *
 * Copyright (c) 2015 Dialog Semiconductor
 *
 * Author: Adam Thomson <Adam.Thomson.Opensource@diasemi.com>
 *
 * This program is free software; you can redistribute  it and/or modify it
 * under  the terms of  the GNU General  Public License as published by the
 * Free Software Foundation;  either version 2 of the  License, or (at your
 * option) any later version.
 */

#include <linux/clk.h>
#include <linux/i2c.h>
#include <linux/of_device.h>
#include <linux/regmap.h>
#include <linux/slab.h>
#include <linux/pm.h>
#include <linux/module.h>
#include <linux/delay.h>
#include <linux/regulator/consumer.h>
#include <sound/pcm.h>
#include <sound/pcm_params.h>
#include <sound/soc.h>
#include <sound/soc-dapm.h>
#include <sound/jack.h>
#include <sound/initval.h>
#include <sound/tlv.h>
#include <asm/div64.h>

#include <sound/da7218.h>
#include "da7218.h"


/*
 * TLVs and Enums
 */

/* Input TLVs */
static const DECLARE_TLV_DB_SCALE(da7218_mic_gain_tlv, -600, 600, 0);
static const DECLARE_TLV_DB_SCALE(da7218_mixin_gain_tlv, -450, 150, 0);
static const DECLARE_TLV_DB_SCALE(da7218_in_dig_gain_tlv, -8325, 75, 0);
static const DECLARE_TLV_DB_SCALE(da7218_ags_trigger_tlv, -9000, 600, 0);
static const DECLARE_TLV_DB_SCALE(da7218_ags_att_max_tlv, 0, 600, 0);
static const DECLARE_TLV_DB_SCALE(da7218_alc_threshold_tlv, -9450, 150, 0);
static const DECLARE_TLV_DB_SCALE(da7218_alc_gain_tlv, 0, 600, 0);
static const DECLARE_TLV_DB_SCALE(da7218_alc_ana_gain_tlv, 0, 600, 0);

/* Input/Output TLVs */
static const DECLARE_TLV_DB_SCALE(da7218_dmix_gain_tlv, -4200, 150, 0);

/* Output TLVs */
static const DECLARE_TLV_DB_SCALE(da7218_dgs_trigger_tlv, -9450, 150, 0);
static const DECLARE_TLV_DB_SCALE(da7218_dgs_anticlip_tlv, -4200, 600, 0);
static const DECLARE_TLV_DB_SCALE(da7218_dgs_signal_tlv, -9000, 600, 0);
static const DECLARE_TLV_DB_SCALE(da7218_out_eq_band_tlv, -1050, 150, 0);
static const DECLARE_TLV_DB_SCALE(da7218_out_dig_gain_tlv, -8325, 75, 0);
static const DECLARE_TLV_DB_SCALE(da7218_dac_ng_threshold_tlv, -10200, 600, 0);
static const DECLARE_TLV_DB_SCALE(da7218_mixout_gain_tlv, -100, 50, 0);
static const DECLARE_TLV_DB_SCALE(da7218_hp_gain_tlv, -5700, 150, 0);

/* Input Enums */
static const char * const da7218_alc_attack_rate_txt[] = {
	"7.33/fs", "14.66/fs", "29.32/fs", "58.64/fs", "117.3/fs", "234.6/fs",
	"469.1/fs", "938.2/fs", "1876/fs", "3753/fs", "7506/fs", "15012/fs",
	"30024/fs",
};

static const struct soc_enum da7218_alc_attack_rate =
	SOC_ENUM_SINGLE(DA7218_ALC_CTRL2, DA7218_ALC_ATTACK_SHIFT,
			DA7218_ALC_ATTACK_MAX, da7218_alc_attack_rate_txt);

static const char * const da7218_alc_release_rate_txt[] = {
	"28.66/fs", "57.33/fs", "114.6/fs", "229.3/fs", "458.6/fs", "917.1/fs",
	"1834/fs", "3668/fs", "7337/fs", "14674/fs", "29348/fs",
};

static const struct soc_enum da7218_alc_release_rate =
	SOC_ENUM_SINGLE(DA7218_ALC_CTRL2, DA7218_ALC_RELEASE_SHIFT,
			DA7218_ALC_RELEASE_MAX, da7218_alc_release_rate_txt);

static const char * const da7218_alc_hold_time_txt[] = {
	"62/fs", "124/fs", "248/fs", "496/fs", "992/fs", "1984/fs", "3968/fs",
	"7936/fs", "15872/fs", "31744/fs", "63488/fs", "126976/fs",
	"253952/fs", "507904/fs", "1015808/fs", "2031616/fs"
};

static const struct soc_enum da7218_alc_hold_time =
	SOC_ENUM_SINGLE(DA7218_ALC_CTRL3, DA7218_ALC_HOLD_SHIFT,
			DA7218_ALC_HOLD_MAX, da7218_alc_hold_time_txt);

static const char * const da7218_alc_anticlip_step_txt[] = {
	"0.034dB/fs", "0.068dB/fs", "0.136dB/fs", "0.272dB/fs",
};

static const struct soc_enum da7218_alc_anticlip_step =
	SOC_ENUM_SINGLE(DA7218_ALC_ANTICLIP_CTRL,
			DA7218_ALC_ANTICLIP_STEP_SHIFT,
			DA7218_ALC_ANTICLIP_STEP_MAX,
			da7218_alc_anticlip_step_txt);

static const char * const da7218_integ_rate_txt[] = {
	"1/4", "1/16", "1/256", "1/65536"
};

static const struct soc_enum da7218_integ_attack_rate =
	SOC_ENUM_SINGLE(DA7218_ENV_TRACK_CTRL, DA7218_INTEG_ATTACK_SHIFT,
			DA7218_INTEG_MAX, da7218_integ_rate_txt);

static const struct soc_enum da7218_integ_release_rate =
	SOC_ENUM_SINGLE(DA7218_ENV_TRACK_CTRL, DA7218_INTEG_RELEASE_SHIFT,
			DA7218_INTEG_MAX, da7218_integ_rate_txt);

/* Input/Output Enums */
static const char * const da7218_gain_ramp_rate_txt[] = {
	"Nominal Rate * 8", "Nominal Rate", "Nominal Rate / 8",
	"Nominal Rate / 16",
};

static const struct soc_enum da7218_gain_ramp_rate =
	SOC_ENUM_SINGLE(DA7218_GAIN_RAMP_CTRL, DA7218_GAIN_RAMP_RATE_SHIFT,
			DA7218_GAIN_RAMP_RATE_MAX, da7218_gain_ramp_rate_txt);

static const char * const da7218_hpf_mode_txt[] = {
	"Disabled", "Audio", "Voice",
};

static const unsigned int da7218_hpf_mode_val[] = {
	DA7218_HPF_DISABLED, DA7218_HPF_AUDIO_EN, DA7218_HPF_VOICE_EN,
};

static const struct soc_enum da7218_in1_hpf_mode =
	SOC_VALUE_ENUM_SINGLE(DA7218_IN_1_HPF_FILTER_CTRL,
			      DA7218_HPF_MODE_SHIFT, DA7218_HPF_MODE_MASK,
			      DA7218_HPF_MODE_MAX, da7218_hpf_mode_txt,
			      da7218_hpf_mode_val);

static const struct soc_enum da7218_in2_hpf_mode =
	SOC_VALUE_ENUM_SINGLE(DA7218_IN_2_HPF_FILTER_CTRL,
			      DA7218_HPF_MODE_SHIFT, DA7218_HPF_MODE_MASK,
			      DA7218_HPF_MODE_MAX, da7218_hpf_mode_txt,
			      da7218_hpf_mode_val);

static const struct soc_enum da7218_out1_hpf_mode =
	SOC_VALUE_ENUM_SINGLE(DA7218_OUT_1_HPF_FILTER_CTRL,
			      DA7218_HPF_MODE_SHIFT, DA7218_HPF_MODE_MASK,
			      DA7218_HPF_MODE_MAX, da7218_hpf_mode_txt,
			      da7218_hpf_mode_val);

static const char * const da7218_audio_hpf_corner_txt[] = {
	"2Hz", "4Hz", "8Hz", "16Hz",
};

static const struct soc_enum da7218_in1_audio_hpf_corner =
	SOC_ENUM_SINGLE(DA7218_IN_1_HPF_FILTER_CTRL,
			DA7218_IN_1_AUDIO_HPF_CORNER_SHIFT,
			DA7218_AUDIO_HPF_CORNER_MAX,
			da7218_audio_hpf_corner_txt);

static const struct soc_enum da7218_in2_audio_hpf_corner =
	SOC_ENUM_SINGLE(DA7218_IN_2_HPF_FILTER_CTRL,
			DA7218_IN_2_AUDIO_HPF_CORNER_SHIFT,
			DA7218_AUDIO_HPF_CORNER_MAX,
			da7218_audio_hpf_corner_txt);

static const struct soc_enum da7218_out1_audio_hpf_corner =
	SOC_ENUM_SINGLE(DA7218_OUT_1_HPF_FILTER_CTRL,
			DA7218_OUT_1_AUDIO_HPF_CORNER_SHIFT,
			DA7218_AUDIO_HPF_CORNER_MAX,
			da7218_audio_hpf_corner_txt);

static const char * const da7218_voice_hpf_corner_txt[] = {
	"2.5Hz", "25Hz", "50Hz", "100Hz", "150Hz", "200Hz", "300Hz", "400Hz",
};

static const struct soc_enum da7218_in1_voice_hpf_corner =
	SOC_ENUM_SINGLE(DA7218_IN_1_HPF_FILTER_CTRL,
			DA7218_IN_1_VOICE_HPF_CORNER_SHIFT,
			DA7218_VOICE_HPF_CORNER_MAX,
			da7218_voice_hpf_corner_txt);

static const struct soc_enum da7218_in2_voice_hpf_corner =
	SOC_ENUM_SINGLE(DA7218_IN_2_HPF_FILTER_CTRL,
			DA7218_IN_2_VOICE_HPF_CORNER_SHIFT,
			DA7218_VOICE_HPF_CORNER_MAX,
			da7218_voice_hpf_corner_txt);

static const struct soc_enum da7218_out1_voice_hpf_corner =
	SOC_ENUM_SINGLE(DA7218_OUT_1_HPF_FILTER_CTRL,
			DA7218_OUT_1_VOICE_HPF_CORNER_SHIFT,
			DA7218_VOICE_HPF_CORNER_MAX,
			da7218_voice_hpf_corner_txt);

static const char * const da7218_tonegen_dtmf_key_txt[] = {
	"0", "1", "2", "3", "4", "5", "6", "7", "8", "9", "A", "B", "C", "D",
	"*", "#"
};

static const struct soc_enum da7218_tonegen_dtmf_key =
	SOC_ENUM_SINGLE(DA7218_TONE_GEN_CFG1, DA7218_DTMF_REG_SHIFT,
			DA7218_DTMF_REG_MAX, da7218_tonegen_dtmf_key_txt);

static const char * const da7218_tonegen_swg_sel_txt[] = {
	"Sum", "SWG1", "SWG2", "SWG1_1-Cos"
};

static const struct soc_enum da7218_tonegen_swg_sel =
	SOC_ENUM_SINGLE(DA7218_TONE_GEN_CFG2, DA7218_SWG_SEL_SHIFT,
			DA7218_SWG_SEL_MAX, da7218_tonegen_swg_sel_txt);

/* Output Enums */
static const char * const da7218_dgs_rise_coeff_txt[] = {
	"1/1", "1/16", "1/64", "1/256", "1/1024", "1/4096", "1/16384",
};

static const struct soc_enum da7218_dgs_rise_coeff =
	SOC_ENUM_SINGLE(DA7218_DGS_RISE_FALL, DA7218_DGS_RISE_COEFF_SHIFT,
			DA7218_DGS_RISE_COEFF_MAX, da7218_dgs_rise_coeff_txt);

static const char * const da7218_dgs_fall_coeff_txt[] = {
	"1/4", "1/16", "1/64", "1/256", "1/1024", "1/4096", "1/16384", "1/65536",
};

static const struct soc_enum da7218_dgs_fall_coeff =
	SOC_ENUM_SINGLE(DA7218_DGS_RISE_FALL, DA7218_DGS_FALL_COEFF_SHIFT,
			DA7218_DGS_FALL_COEFF_MAX, da7218_dgs_fall_coeff_txt);

static const char * const da7218_dac_ng_setup_time_txt[] = {
	"256 Samples", "512 Samples", "1024 Samples", "2048 Samples"
};

static const struct soc_enum da7218_dac_ng_setup_time =
	SOC_ENUM_SINGLE(DA7218_DAC_NG_SETUP_TIME,
			DA7218_DAC_NG_SETUP_TIME_SHIFT,
			DA7218_DAC_NG_SETUP_TIME_MAX,
			da7218_dac_ng_setup_time_txt);

static const char * const da7218_dac_ng_rampup_txt[] = {
	"0.22ms/dB", "0.0138ms/dB"
};

static const struct soc_enum da7218_dac_ng_rampup_rate =
	SOC_ENUM_SINGLE(DA7218_DAC_NG_SETUP_TIME,
			DA7218_DAC_NG_RAMPUP_RATE_SHIFT,
			DA7218_DAC_NG_RAMPUP_RATE_MAX,
			da7218_dac_ng_rampup_txt);

static const char * const da7218_dac_ng_rampdown_txt[] = {
	"0.88ms/dB", "14.08ms/dB"
};

static const struct soc_enum da7218_dac_ng_rampdown_rate =
	SOC_ENUM_SINGLE(DA7218_DAC_NG_SETUP_TIME,
			DA7218_DAC_NG_RAMPDN_RATE_SHIFT,
			DA7218_DAC_NG_RAMPDN_RATE_MAX,
			da7218_dac_ng_rampdown_txt);

static const char * const da7218_cp_mchange_txt[] = {
	"Largest Volume", "DAC Volume", "Signal Magnitude"
};

static const unsigned int da7218_cp_mchange_val[] = {
	DA7218_CP_MCHANGE_LARGEST_VOL, DA7218_CP_MCHANGE_DAC_VOL,
	DA7218_CP_MCHANGE_SIG_MAG
};

static const struct soc_enum da7218_cp_mchange =
	SOC_VALUE_ENUM_SINGLE(DA7218_CP_CTRL, DA7218_CP_MCHANGE_SHIFT,
			      DA7218_CP_MCHANGE_REL_MASK, DA7218_CP_MCHANGE_MAX,
			      da7218_cp_mchange_txt, da7218_cp_mchange_val);

static const char * const da7218_cp_fcontrol_txt[] = {
	"1MHz", "500KHz", "250KHz", "125KHz", "63KHz", "0KHz"
};

static const struct soc_enum da7218_cp_fcontrol =
	SOC_ENUM_SINGLE(DA7218_CP_DELAY, DA7218_CP_FCONTROL_SHIFT,
			DA7218_CP_FCONTROL_MAX, da7218_cp_fcontrol_txt);

static const char * const da7218_cp_tau_delay_txt[] = {
	"0ms", "2ms", "4ms", "16ms", "64ms", "128ms", "256ms", "512ms"
};

static const struct soc_enum da7218_cp_tau_delay =
	SOC_ENUM_SINGLE(DA7218_CP_DELAY, DA7218_CP_TAU_DELAY_SHIFT,
			DA7218_CP_TAU_DELAY_MAX, da7218_cp_tau_delay_txt);

/*
 * Control Functions
 */

/* ALC */
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static void da7218_alc_calib(struct snd_soc_component *component)
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{
	u8 mic_1_ctrl, mic_2_ctrl;
	u8 mixin_1_ctrl, mixin_2_ctrl;
	u8 in_1l_filt_ctrl, in_1r_filt_ctrl, in_2l_filt_ctrl, in_2r_filt_ctrl;
	u8 in_1_hpf_ctrl, in_2_hpf_ctrl;
	u8 calib_ctrl;
	int i = 0;
	bool calibrated = false;

	/* Save current state of MIC control registers */
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	mic_1_ctrl = snd_soc_component_read32(component, DA7218_MIC_1_CTRL);
	mic_2_ctrl = snd_soc_component_read32(component, DA7218_MIC_2_CTRL);
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	/* Save current state of input mixer control registers */
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	mixin_1_ctrl = snd_soc_component_read32(component, DA7218_MIXIN_1_CTRL);
	mixin_2_ctrl = snd_soc_component_read32(component, DA7218_MIXIN_2_CTRL);
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	/* Save current state of input filter control registers */
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	in_1l_filt_ctrl = snd_soc_component_read32(component, DA7218_IN_1L_FILTER_CTRL);
	in_1r_filt_ctrl = snd_soc_component_read32(component, DA7218_IN_1R_FILTER_CTRL);
	in_2l_filt_ctrl = snd_soc_component_read32(component, DA7218_IN_2L_FILTER_CTRL);
	in_2r_filt_ctrl = snd_soc_component_read32(component, DA7218_IN_2R_FILTER_CTRL);
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	/* Save current state of input HPF control registers */
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	in_1_hpf_ctrl = snd_soc_component_read32(component, DA7218_IN_1_HPF_FILTER_CTRL);
	in_2_hpf_ctrl = snd_soc_component_read32(component, DA7218_IN_2_HPF_FILTER_CTRL);
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	/* Enable then Mute MIC PGAs */
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	snd_soc_component_update_bits(component, DA7218_MIC_1_CTRL, DA7218_MIC_1_AMP_EN_MASK,
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			    DA7218_MIC_1_AMP_EN_MASK);
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	snd_soc_component_update_bits(component, DA7218_MIC_2_CTRL, DA7218_MIC_2_AMP_EN_MASK,
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			    DA7218_MIC_2_AMP_EN_MASK);
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	snd_soc_component_update_bits(component, DA7218_MIC_1_CTRL,
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			    DA7218_MIC_1_AMP_MUTE_EN_MASK,
			    DA7218_MIC_1_AMP_MUTE_EN_MASK);
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	snd_soc_component_update_bits(component, DA7218_MIC_2_CTRL,
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			    DA7218_MIC_2_AMP_MUTE_EN_MASK,
			    DA7218_MIC_2_AMP_MUTE_EN_MASK);

	/* Enable input mixers unmuted */
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	snd_soc_component_update_bits(component, DA7218_MIXIN_1_CTRL,
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			    DA7218_MIXIN_1_AMP_EN_MASK |
			    DA7218_MIXIN_1_AMP_MUTE_EN_MASK,
			    DA7218_MIXIN_1_AMP_EN_MASK);
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	snd_soc_component_update_bits(component, DA7218_MIXIN_2_CTRL,
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			    DA7218_MIXIN_2_AMP_EN_MASK |
			    DA7218_MIXIN_2_AMP_MUTE_EN_MASK,
			    DA7218_MIXIN_2_AMP_EN_MASK);

	/* Enable input filters unmuted */
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	snd_soc_component_update_bits(component, DA7218_IN_1L_FILTER_CTRL,
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			    DA7218_IN_1L_FILTER_EN_MASK |
			    DA7218_IN_1L_MUTE_EN_MASK,
			    DA7218_IN_1L_FILTER_EN_MASK);
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	snd_soc_component_update_bits(component, DA7218_IN_1R_FILTER_CTRL,
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			    DA7218_IN_1R_FILTER_EN_MASK |
			    DA7218_IN_1R_MUTE_EN_MASK,
			    DA7218_IN_1R_FILTER_EN_MASK);
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	snd_soc_component_update_bits(component, DA7218_IN_2L_FILTER_CTRL,
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			    DA7218_IN_2L_FILTER_EN_MASK |
			    DA7218_IN_2L_MUTE_EN_MASK,
			    DA7218_IN_2L_FILTER_EN_MASK);
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	snd_soc_component_update_bits(component, DA7218_IN_2R_FILTER_CTRL,
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			    DA7218_IN_2R_FILTER_EN_MASK |
			    DA7218_IN_2R_MUTE_EN_MASK,
			    DA7218_IN_2R_FILTER_EN_MASK);

	/*
	 * Make sure input HPFs voice mode is disabled, otherwise for sampling
	 * rates above 32KHz the ADC signals will be stopped and will cause
	 * calibration to lock up.
	 */
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	snd_soc_component_update_bits(component, DA7218_IN_1_HPF_FILTER_CTRL,
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			    DA7218_IN_1_VOICE_EN_MASK, 0);
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	snd_soc_component_update_bits(component, DA7218_IN_2_HPF_FILTER_CTRL,
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			    DA7218_IN_2_VOICE_EN_MASK, 0);

	/* Perform auto calibration */
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	snd_soc_component_update_bits(component, DA7218_CALIB_CTRL, DA7218_CALIB_AUTO_EN_MASK,
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			    DA7218_CALIB_AUTO_EN_MASK);
	do {
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		calib_ctrl = snd_soc_component_read32(component, DA7218_CALIB_CTRL);
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		if (calib_ctrl & DA7218_CALIB_AUTO_EN_MASK) {
			++i;
			usleep_range(DA7218_ALC_CALIB_DELAY_MIN,
				     DA7218_ALC_CALIB_DELAY_MAX);
		} else {
			calibrated = true;
		}

	} while ((i < DA7218_ALC_CALIB_MAX_TRIES) && (!calibrated));

	/* If auto calibration fails, disable DC offset, hybrid ALC */
	if ((!calibrated) || (calib_ctrl & DA7218_CALIB_OVERFLOW_MASK)) {
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		dev_warn(component->dev,
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			 "ALC auto calibration failed - %s\n",
			 (calibrated) ? "overflow" : "timeout");
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		snd_soc_component_update_bits(component, DA7218_CALIB_CTRL,
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				    DA7218_CALIB_OFFSET_EN_MASK, 0);
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		snd_soc_component_update_bits(component, DA7218_ALC_CTRL1,
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				    DA7218_ALC_SYNC_MODE_MASK, 0);

	} else {
		/* Enable DC offset cancellation */
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		snd_soc_component_update_bits(component, DA7218_CALIB_CTRL,
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				    DA7218_CALIB_OFFSET_EN_MASK,
				    DA7218_CALIB_OFFSET_EN_MASK);

		/* Enable ALC hybrid mode */
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		snd_soc_component_update_bits(component, DA7218_ALC_CTRL1,
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				    DA7218_ALC_SYNC_MODE_MASK,
				    DA7218_ALC_SYNC_MODE_CH1 |
				    DA7218_ALC_SYNC_MODE_CH2);
	}

	/* Restore input HPF control registers to original states */
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	snd_soc_component_write(component, DA7218_IN_1_HPF_FILTER_CTRL, in_1_hpf_ctrl);
	snd_soc_component_write(component, DA7218_IN_2_HPF_FILTER_CTRL, in_2_hpf_ctrl);
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	/* Restore input filter control registers to original states */
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	snd_soc_component_write(component, DA7218_IN_1L_FILTER_CTRL, in_1l_filt_ctrl);
	snd_soc_component_write(component, DA7218_IN_1R_FILTER_CTRL, in_1r_filt_ctrl);
	snd_soc_component_write(component, DA7218_IN_2L_FILTER_CTRL, in_2l_filt_ctrl);
	snd_soc_component_write(component, DA7218_IN_2R_FILTER_CTRL, in_2r_filt_ctrl);
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	/* Restore input mixer control registers to original state */
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	snd_soc_component_write(component, DA7218_MIXIN_1_CTRL, mixin_1_ctrl);
	snd_soc_component_write(component, DA7218_MIXIN_2_CTRL, mixin_2_ctrl);
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	/* Restore MIC control registers to original states */
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	snd_soc_component_write(component, DA7218_MIC_1_CTRL, mic_1_ctrl);
	snd_soc_component_write(component, DA7218_MIC_2_CTRL, mic_2_ctrl);
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}

static int da7218_mixin_gain_put(struct snd_kcontrol *kcontrol,
				 struct snd_ctl_elem_value *ucontrol)
{
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	struct snd_soc_component *component = snd_soc_kcontrol_component(kcontrol);
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
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	int ret;

	ret = snd_soc_put_volsw(kcontrol, ucontrol);

	/*
	 * If ALC in operation and value of control has been updated,
	 * make sure calibrated offsets are updated.
	 */
	if ((ret == 1) && (da7218->alc_en))
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		da7218_alc_calib(component);
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	return ret;
}

static int da7218_alc_sw_put(struct snd_kcontrol *kcontrol,
			     struct snd_ctl_elem_value *ucontrol)
{
	struct soc_mixer_control *mc =
		(struct soc_mixer_control *) kcontrol->private_value;
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	struct snd_soc_component *component = snd_soc_kcontrol_component(kcontrol);
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
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	unsigned int lvalue = ucontrol->value.integer.value[0];
	unsigned int rvalue = ucontrol->value.integer.value[1];
	unsigned int lshift = mc->shift;
	unsigned int rshift = mc->rshift;
	unsigned int mask = (mc->max << lshift) | (mc->max << rshift);

	/* Force ALC offset calibration if enabling ALC */
	if ((lvalue || rvalue) && (!da7218->alc_en))
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		da7218_alc_calib(component);
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	/* Update bits to detail which channels are enabled/disabled */
	da7218->alc_en &= ~mask;
	da7218->alc_en |= (lvalue << lshift) | (rvalue << rshift);

	return snd_soc_put_volsw(kcontrol, ucontrol);
}

/* ToneGen */
static int da7218_tonegen_freq_get(struct snd_kcontrol *kcontrol,
				   struct snd_ctl_elem_value *ucontrol)
{
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	struct snd_soc_component *component = snd_soc_kcontrol_component(kcontrol);
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
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	struct soc_mixer_control *mixer_ctrl =
		(struct soc_mixer_control *) kcontrol->private_value;
	unsigned int reg = mixer_ctrl->reg;
	u16 val;
	int ret;

	/*
	 * Frequency value spans two 8-bit registers, lower then upper byte.
	 * Therefore we need to convert to host endianness here.
	 */
	ret = regmap_raw_read(da7218->regmap, reg, &val, 2);
	if (ret)
		return ret;

	ucontrol->value.integer.value[0] = le16_to_cpu(val);

	return 0;
}

static int da7218_tonegen_freq_put(struct snd_kcontrol *kcontrol,
				   struct snd_ctl_elem_value *ucontrol)
{
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	struct snd_soc_component *component = snd_soc_kcontrol_component(kcontrol);
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
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	struct soc_mixer_control *mixer_ctrl =
		(struct soc_mixer_control *) kcontrol->private_value;
	unsigned int reg = mixer_ctrl->reg;
	u16 val;

	/*
	 * Frequency value spans two 8-bit registers, lower then upper byte.
	 * Therefore we need to convert to little endian here to align with
	 * HW registers.
	 */
	val = cpu_to_le16(ucontrol->value.integer.value[0]);

	return regmap_raw_write(da7218->regmap, reg, &val, 2);
}

static int da7218_mic_lvl_det_sw_put(struct snd_kcontrol *kcontrol,
				     struct snd_ctl_elem_value *ucontrol)
{
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	struct snd_soc_component *component = snd_soc_kcontrol_component(kcontrol);
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
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	struct soc_mixer_control *mixer_ctrl =
		(struct soc_mixer_control *) kcontrol->private_value;
	unsigned int lvalue = ucontrol->value.integer.value[0];
	unsigned int rvalue = ucontrol->value.integer.value[1];
	unsigned int lshift = mixer_ctrl->shift;
	unsigned int rshift = mixer_ctrl->rshift;
	unsigned int mask = (mixer_ctrl->max << lshift) |
			    (mixer_ctrl->max << rshift);
	da7218->mic_lvl_det_en &= ~mask;
	da7218->mic_lvl_det_en |= (lvalue << lshift) | (rvalue << rshift);

	/*
	 * Here we only enable the feature on paths which are already
	 * powered. If a channel is enabled here for level detect, but that path
	 * isn't powered, then the channel will actually be enabled when we do
	 * power the path (IN_FILTER widget events). This handling avoids
	 * unwanted level detect events.
	 */
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	return snd_soc_component_write(component, mixer_ctrl->reg,
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			     (da7218->in_filt_en & da7218->mic_lvl_det_en));
}

static int da7218_mic_lvl_det_sw_get(struct snd_kcontrol *kcontrol,
				     struct snd_ctl_elem_value *ucontrol)
{
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	struct snd_soc_component *component = snd_soc_kcontrol_component(kcontrol);
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
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	struct soc_mixer_control *mixer_ctrl =
		(struct soc_mixer_control *) kcontrol->private_value;
	unsigned int lshift = mixer_ctrl->shift;
	unsigned int rshift = mixer_ctrl->rshift;
	unsigned int lmask = (mixer_ctrl->max << lshift);
	unsigned int rmask = (mixer_ctrl->max << rshift);

	ucontrol->value.integer.value[0] =
		(da7218->mic_lvl_det_en & lmask) >> lshift;
	ucontrol->value.integer.value[1] =
		(da7218->mic_lvl_det_en & rmask) >> rshift;

	return 0;
}

static int da7218_biquad_coeff_get(struct snd_kcontrol *kcontrol,
				   struct snd_ctl_elem_value *ucontrol)
{
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	struct snd_soc_component *component = snd_soc_kcontrol_component(kcontrol);
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
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	struct soc_bytes_ext *bytes_ext =
		(struct soc_bytes_ext *) kcontrol->private_value;

	/* Determine which BiQuads we're setting based on size of config data */
	switch (bytes_ext->max) {
	case DA7218_OUT_1_BIQ_5STAGE_CFG_SIZE:
		memcpy(ucontrol->value.bytes.data, da7218->biq_5stage_coeff,
		       bytes_ext->max);
		break;
	case DA7218_SIDETONE_BIQ_3STAGE_CFG_SIZE:
		memcpy(ucontrol->value.bytes.data, da7218->stbiq_3stage_coeff,
		       bytes_ext->max);
		break;
	default:
		return -EINVAL;
	}

	return 0;
}

static int da7218_biquad_coeff_put(struct snd_kcontrol *kcontrol,
				   struct snd_ctl_elem_value *ucontrol)
{
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	struct snd_soc_component *component = snd_soc_kcontrol_component(kcontrol);
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
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	struct soc_bytes_ext *bytes_ext =
		(struct soc_bytes_ext *) kcontrol->private_value;
	u8 reg, out_filt1l;
	u8 cfg[DA7218_BIQ_CFG_SIZE];
	int i;

	/*
	 * Determine which BiQuads we're setting based on size of config data,
	 * and stored the data for use by get function.
	 */
	switch (bytes_ext->max) {
	case DA7218_OUT_1_BIQ_5STAGE_CFG_SIZE:
		reg = DA7218_OUT_1_BIQ_5STAGE_DATA;
		memcpy(da7218->biq_5stage_coeff, ucontrol->value.bytes.data,
		       bytes_ext->max);
		break;
	case DA7218_SIDETONE_BIQ_3STAGE_CFG_SIZE:
		reg = DA7218_SIDETONE_BIQ_3STAGE_DATA;
		memcpy(da7218->stbiq_3stage_coeff, ucontrol->value.bytes.data,
		       bytes_ext->max);
		break;
	default:
		return -EINVAL;
	}

	/* Make sure at least out filter1 enabled to allow programming */
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	out_filt1l = snd_soc_component_read32(component, DA7218_OUT_1L_FILTER_CTRL);
	snd_soc_component_write(component, DA7218_OUT_1L_FILTER_CTRL,
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		      out_filt1l | DA7218_OUT_1L_FILTER_EN_MASK);

	for (i = 0; i < bytes_ext->max; ++i) {
		cfg[DA7218_BIQ_CFG_DATA] = ucontrol->value.bytes.data[i];
		cfg[DA7218_BIQ_CFG_ADDR] = i;
		regmap_raw_write(da7218->regmap, reg, cfg, DA7218_BIQ_CFG_SIZE);
	}

	/* Restore filter to previous setting */
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	snd_soc_component_write(component, DA7218_OUT_1L_FILTER_CTRL, out_filt1l);
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	return 0;
}


/*
 * KControls
 */

static const struct snd_kcontrol_new da7218_snd_controls[] = {
	/* Mics */
	SOC_SINGLE_TLV("Mic1 Volume", DA7218_MIC_1_GAIN,
		       DA7218_MIC_1_AMP_GAIN_SHIFT, DA7218_MIC_AMP_GAIN_MAX,
		       DA7218_NO_INVERT, da7218_mic_gain_tlv),
	SOC_SINGLE("Mic1 Switch", DA7218_MIC_1_CTRL,
		   DA7218_MIC_1_AMP_MUTE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_INVERT),
	SOC_SINGLE_TLV("Mic2 Volume", DA7218_MIC_2_GAIN,
		       DA7218_MIC_2_AMP_GAIN_SHIFT, DA7218_MIC_AMP_GAIN_MAX,
		       DA7218_NO_INVERT, da7218_mic_gain_tlv),
	SOC_SINGLE("Mic2 Switch", DA7218_MIC_2_CTRL,
		   DA7218_MIC_2_AMP_MUTE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_INVERT),

	/* Mixer Input */
	SOC_SINGLE_EXT_TLV("Mixin1 Volume", DA7218_MIXIN_1_GAIN,
			   DA7218_MIXIN_1_AMP_GAIN_SHIFT,
			   DA7218_MIXIN_AMP_GAIN_MAX, DA7218_NO_INVERT,
			   snd_soc_get_volsw, da7218_mixin_gain_put,
			   da7218_mixin_gain_tlv),
	SOC_SINGLE("Mixin1 Switch", DA7218_MIXIN_1_CTRL,
		   DA7218_MIXIN_1_AMP_MUTE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_INVERT),
	SOC_SINGLE("Mixin1 Gain Ramp Switch", DA7218_MIXIN_1_CTRL,
		   DA7218_MIXIN_1_AMP_RAMP_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE("Mixin1 ZC Gain Switch", DA7218_MIXIN_1_CTRL,
		   DA7218_MIXIN_1_AMP_ZC_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE_EXT_TLV("Mixin2 Volume", DA7218_MIXIN_2_GAIN,
			   DA7218_MIXIN_2_AMP_GAIN_SHIFT,
			   DA7218_MIXIN_AMP_GAIN_MAX, DA7218_NO_INVERT,
			   snd_soc_get_volsw, da7218_mixin_gain_put,
			   da7218_mixin_gain_tlv),
	SOC_SINGLE("Mixin2 Switch", DA7218_MIXIN_2_CTRL,
		   DA7218_MIXIN_2_AMP_MUTE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_INVERT),
	SOC_SINGLE("Mixin2 Gain Ramp Switch", DA7218_MIXIN_2_CTRL,
		   DA7218_MIXIN_2_AMP_RAMP_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE("Mixin2 ZC Gain Switch", DA7218_MIXIN_2_CTRL,
		   DA7218_MIXIN_2_AMP_ZC_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),

	/* ADCs */
	SOC_SINGLE("ADC1 AAF Switch", DA7218_ADC_1_CTRL,
		   DA7218_ADC_1_AAF_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE("ADC2 AAF Switch", DA7218_ADC_2_CTRL,
		   DA7218_ADC_2_AAF_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE("ADC LP Mode Switch", DA7218_ADC_MODE,
		   DA7218_ADC_LP_MODE_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),

	/* Input Filters */
	SOC_SINGLE_TLV("In Filter1L Volume", DA7218_IN_1L_GAIN,
		       DA7218_IN_1L_DIGITAL_GAIN_SHIFT,
		       DA7218_IN_DIGITAL_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_in_dig_gain_tlv),
	SOC_SINGLE("In Filter1L Switch", DA7218_IN_1L_FILTER_CTRL,
		   DA7218_IN_1L_MUTE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_INVERT),
	SOC_SINGLE("In Filter1L Gain Ramp Switch", DA7218_IN_1L_FILTER_CTRL,
		   DA7218_IN_1L_RAMP_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE_TLV("In Filter1R Volume", DA7218_IN_1R_GAIN,
		       DA7218_IN_1R_DIGITAL_GAIN_SHIFT,
		       DA7218_IN_DIGITAL_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_in_dig_gain_tlv),
	SOC_SINGLE("In Filter1R Switch", DA7218_IN_1R_FILTER_CTRL,
		   DA7218_IN_1R_MUTE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_INVERT),
	SOC_SINGLE("In Filter1R Gain Ramp Switch",
		   DA7218_IN_1R_FILTER_CTRL, DA7218_IN_1R_RAMP_EN_SHIFT,
		   DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),
	SOC_SINGLE_TLV("In Filter2L Volume", DA7218_IN_2L_GAIN,
		       DA7218_IN_2L_DIGITAL_GAIN_SHIFT,
		       DA7218_IN_DIGITAL_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_in_dig_gain_tlv),
	SOC_SINGLE("In Filter2L Switch", DA7218_IN_2L_FILTER_CTRL,
		   DA7218_IN_2L_MUTE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_INVERT),
	SOC_SINGLE("In Filter2L Gain Ramp Switch", DA7218_IN_2L_FILTER_CTRL,
		   DA7218_IN_2L_RAMP_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE_TLV("In Filter2R Volume", DA7218_IN_2R_GAIN,
		       DA7218_IN_2R_DIGITAL_GAIN_SHIFT,
		       DA7218_IN_DIGITAL_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_in_dig_gain_tlv),
	SOC_SINGLE("In Filter2R Switch", DA7218_IN_2R_FILTER_CTRL,
		   DA7218_IN_2R_MUTE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_INVERT),
	SOC_SINGLE("In Filter2R Gain Ramp Switch",
		   DA7218_IN_2R_FILTER_CTRL, DA7218_IN_2R_RAMP_EN_SHIFT,
		   DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),

	/* AGS */
	SOC_SINGLE_TLV("AGS Trigger", DA7218_AGS_TRIGGER,
		       DA7218_AGS_TRIGGER_SHIFT, DA7218_AGS_TRIGGER_MAX,
		       DA7218_INVERT, da7218_ags_trigger_tlv),
	SOC_SINGLE_TLV("AGS Max Attenuation", DA7218_AGS_ATT_MAX,
		       DA7218_AGS_ATT_MAX_SHIFT, DA7218_AGS_ATT_MAX_MAX,
		       DA7218_NO_INVERT, da7218_ags_att_max_tlv),
	SOC_SINGLE("AGS Anticlip Switch", DA7218_AGS_ANTICLIP_CTRL,
		   DA7218_AGS_ANTICLIP_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE("AGS Channel1 Switch", DA7218_AGS_ENABLE,
		   DA7218_AGS_ENABLE_CHAN1_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE("AGS Channel2 Switch", DA7218_AGS_ENABLE,
		   DA7218_AGS_ENABLE_CHAN2_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),

	/* ALC */
	SOC_ENUM("ALC Attack Rate", da7218_alc_attack_rate),
	SOC_ENUM("ALC Release Rate", da7218_alc_release_rate),
	SOC_ENUM("ALC Hold Time", da7218_alc_hold_time),
	SOC_SINGLE_TLV("ALC Noise Threshold", DA7218_ALC_NOISE,
		       DA7218_ALC_NOISE_SHIFT, DA7218_ALC_THRESHOLD_MAX,
		       DA7218_INVERT, da7218_alc_threshold_tlv),
	SOC_SINGLE_TLV("ALC Min Threshold", DA7218_ALC_TARGET_MIN,
		       DA7218_ALC_THRESHOLD_MIN_SHIFT, DA7218_ALC_THRESHOLD_MAX,
		       DA7218_INVERT, da7218_alc_threshold_tlv),
	SOC_SINGLE_TLV("ALC Max Threshold", DA7218_ALC_TARGET_MAX,
		       DA7218_ALC_THRESHOLD_MAX_SHIFT, DA7218_ALC_THRESHOLD_MAX,
		       DA7218_INVERT, da7218_alc_threshold_tlv),
	SOC_SINGLE_TLV("ALC Max Attenuation", DA7218_ALC_GAIN_LIMITS,
		       DA7218_ALC_ATTEN_MAX_SHIFT, DA7218_ALC_ATTEN_GAIN_MAX,
		       DA7218_NO_INVERT, da7218_alc_gain_tlv),
	SOC_SINGLE_TLV("ALC Max Gain", DA7218_ALC_GAIN_LIMITS,
		       DA7218_ALC_GAIN_MAX_SHIFT, DA7218_ALC_ATTEN_GAIN_MAX,
		       DA7218_NO_INVERT, da7218_alc_gain_tlv),
	SOC_SINGLE_RANGE_TLV("ALC Min Analog Gain", DA7218_ALC_ANA_GAIN_LIMITS,
			     DA7218_ALC_ANA_GAIN_MIN_SHIFT,
			     DA7218_ALC_ANA_GAIN_MIN, DA7218_ALC_ANA_GAIN_MAX,
			     DA7218_NO_INVERT, da7218_alc_ana_gain_tlv),
	SOC_SINGLE_RANGE_TLV("ALC Max Analog Gain", DA7218_ALC_ANA_GAIN_LIMITS,
			     DA7218_ALC_ANA_GAIN_MAX_SHIFT,
			     DA7218_ALC_ANA_GAIN_MIN, DA7218_ALC_ANA_GAIN_MAX,
			     DA7218_NO_INVERT, da7218_alc_ana_gain_tlv),
	SOC_ENUM("ALC Anticlip Step", da7218_alc_anticlip_step),
	SOC_SINGLE("ALC Anticlip Switch", DA7218_ALC_ANTICLIP_CTRL,
		   DA7218_ALC_ANTICLIP_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_DOUBLE_EXT("ALC Channel1 Switch", DA7218_ALC_CTRL1,
		       DA7218_ALC_CHAN1_L_EN_SHIFT, DA7218_ALC_CHAN1_R_EN_SHIFT,
		       DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT,
		       snd_soc_get_volsw, da7218_alc_sw_put),
	SOC_DOUBLE_EXT("ALC Channel2 Switch", DA7218_ALC_CTRL1,
		       DA7218_ALC_CHAN2_L_EN_SHIFT, DA7218_ALC_CHAN2_R_EN_SHIFT,
		       DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT,
		       snd_soc_get_volsw, da7218_alc_sw_put),

	/* Envelope Tracking */
	SOC_ENUM("Envelope Tracking Attack Rate", da7218_integ_attack_rate),
	SOC_ENUM("Envelope Tracking Release Rate", da7218_integ_release_rate),

	/* Input High-Pass Filters */
	SOC_ENUM("In Filter1 HPF Mode", da7218_in1_hpf_mode),
	SOC_ENUM("In Filter1 HPF Corner Audio", da7218_in1_audio_hpf_corner),
	SOC_ENUM("In Filter1 HPF Corner Voice", da7218_in1_voice_hpf_corner),
	SOC_ENUM("In Filter2 HPF Mode", da7218_in2_hpf_mode),
	SOC_ENUM("In Filter2 HPF Corner Audio", da7218_in2_audio_hpf_corner),
	SOC_ENUM("In Filter2 HPF Corner Voice", da7218_in2_voice_hpf_corner),

	/* Mic Level Detect */
	SOC_DOUBLE_EXT("Mic Level Detect Channel1 Switch", DA7218_LVL_DET_CTRL,
		       DA7218_LVL_DET_EN_CHAN1L_SHIFT,
		       DA7218_LVL_DET_EN_CHAN1R_SHIFT, DA7218_SWITCH_EN_MAX,
		       DA7218_NO_INVERT, da7218_mic_lvl_det_sw_get,
		       da7218_mic_lvl_det_sw_put),
	SOC_DOUBLE_EXT("Mic Level Detect Channel2 Switch", DA7218_LVL_DET_CTRL,
		       DA7218_LVL_DET_EN_CHAN2L_SHIFT,
		       DA7218_LVL_DET_EN_CHAN2R_SHIFT, DA7218_SWITCH_EN_MAX,
		       DA7218_NO_INVERT, da7218_mic_lvl_det_sw_get,
		       da7218_mic_lvl_det_sw_put),
	SOC_SINGLE("Mic Level Detect Level", DA7218_LVL_DET_LEVEL,
		   DA7218_LVL_DET_LEVEL_SHIFT, DA7218_LVL_DET_LEVEL_MAX,
		   DA7218_NO_INVERT),

	/* Digital Mixer (Input) */
	SOC_SINGLE_TLV("DMix In Filter1L Out1 DAIL Volume",
		       DA7218_DMIX_OUTDAI_1L_INFILT_1L_GAIN,
		       DA7218_OUTDAI_1L_INFILT_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter1L Out1 DAIR Volume",
		       DA7218_DMIX_OUTDAI_1R_INFILT_1L_GAIN,
		       DA7218_OUTDAI_1R_INFILT_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter1L Out2 DAIL Volume",
		       DA7218_DMIX_OUTDAI_2L_INFILT_1L_GAIN,
		       DA7218_OUTDAI_2L_INFILT_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter1L Out2 DAIR Volume",
		       DA7218_DMIX_OUTDAI_2R_INFILT_1L_GAIN,
		       DA7218_OUTDAI_2R_INFILT_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix In Filter1R Out1 DAIL Volume",
		       DA7218_DMIX_OUTDAI_1L_INFILT_1R_GAIN,
		       DA7218_OUTDAI_1L_INFILT_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter1R Out1 DAIR Volume",
		       DA7218_DMIX_OUTDAI_1R_INFILT_1R_GAIN,
		       DA7218_OUTDAI_1R_INFILT_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter1R Out2 DAIL Volume",
		       DA7218_DMIX_OUTDAI_2L_INFILT_1R_GAIN,
		       DA7218_OUTDAI_2L_INFILT_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter1R Out2 DAIR Volume",
		       DA7218_DMIX_OUTDAI_2R_INFILT_1R_GAIN,
		       DA7218_OUTDAI_2R_INFILT_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix In Filter2L Out1 DAIL Volume",
		       DA7218_DMIX_OUTDAI_1L_INFILT_2L_GAIN,
		       DA7218_OUTDAI_1L_INFILT_2L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter2L Out1 DAIR Volume",
		       DA7218_DMIX_OUTDAI_1R_INFILT_2L_GAIN,
		       DA7218_OUTDAI_1R_INFILT_2L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter2L Out2 DAIL Volume",
		       DA7218_DMIX_OUTDAI_2L_INFILT_2L_GAIN,
		       DA7218_OUTDAI_2L_INFILT_2L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter2L Out2 DAIR Volume",
		       DA7218_DMIX_OUTDAI_2R_INFILT_2L_GAIN,
		       DA7218_OUTDAI_2R_INFILT_2L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix In Filter2R Out1 DAIL Volume",
		       DA7218_DMIX_OUTDAI_1L_INFILT_2R_GAIN,
		       DA7218_OUTDAI_1L_INFILT_2R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter2R Out1 DAIR Volume",
		       DA7218_DMIX_OUTDAI_1R_INFILT_2R_GAIN,
		       DA7218_OUTDAI_1R_INFILT_2R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter2R Out2 DAIL Volume",
		       DA7218_DMIX_OUTDAI_2L_INFILT_2R_GAIN,
		       DA7218_OUTDAI_2L_INFILT_2R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter2R Out2 DAIR Volume",
		       DA7218_DMIX_OUTDAI_2R_INFILT_2R_GAIN,
		       DA7218_OUTDAI_2R_INFILT_2R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix ToneGen Out1 DAIL Volume",
		       DA7218_DMIX_OUTDAI_1L_TONEGEN_GAIN,
		       DA7218_OUTDAI_1L_TONEGEN_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix ToneGen Out1 DAIR Volume",
		       DA7218_DMIX_OUTDAI_1R_TONEGEN_GAIN,
		       DA7218_OUTDAI_1R_TONEGEN_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix ToneGen Out2 DAIL Volume",
		       DA7218_DMIX_OUTDAI_2L_TONEGEN_GAIN,
		       DA7218_OUTDAI_2L_TONEGEN_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix ToneGen Out2 DAIR Volume",
		       DA7218_DMIX_OUTDAI_2R_TONEGEN_GAIN,
		       DA7218_OUTDAI_2R_TONEGEN_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix In DAIL Out1 DAIL Volume",
		       DA7218_DMIX_OUTDAI_1L_INDAI_1L_GAIN,
		       DA7218_OUTDAI_1L_INDAI_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In DAIL Out1 DAIR Volume",
		       DA7218_DMIX_OUTDAI_1R_INDAI_1L_GAIN,
		       DA7218_OUTDAI_1R_INDAI_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In DAIL Out2 DAIL Volume",
		       DA7218_DMIX_OUTDAI_2L_INDAI_1L_GAIN,
		       DA7218_OUTDAI_2L_INDAI_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In DAIL Out2 DAIR Volume",
		       DA7218_DMIX_OUTDAI_2R_INDAI_1L_GAIN,
		       DA7218_OUTDAI_2R_INDAI_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix In DAIR Out1 DAIL Volume",
		       DA7218_DMIX_OUTDAI_1L_INDAI_1R_GAIN,
		       DA7218_OUTDAI_1L_INDAI_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In DAIR Out1 DAIR Volume",
		       DA7218_DMIX_OUTDAI_1R_INDAI_1R_GAIN,
		       DA7218_OUTDAI_1R_INDAI_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In DAIR Out2 DAIL Volume",
		       DA7218_DMIX_OUTDAI_2L_INDAI_1R_GAIN,
		       DA7218_OUTDAI_2L_INDAI_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In DAIR Out2 DAIR Volume",
		       DA7218_DMIX_OUTDAI_2R_INDAI_1R_GAIN,
		       DA7218_OUTDAI_2R_INDAI_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	/* Digital Mixer (Output) */
	SOC_SINGLE_TLV("DMix In Filter1L Out FilterL Volume",
		       DA7218_DMIX_OUTFILT_1L_INFILT_1L_GAIN,
		       DA7218_OUTFILT_1L_INFILT_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter1L Out FilterR Volume",
		       DA7218_DMIX_OUTFILT_1R_INFILT_1L_GAIN,
		       DA7218_OUTFILT_1R_INFILT_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix In Filter1R Out FilterL Volume",
		       DA7218_DMIX_OUTFILT_1L_INFILT_1R_GAIN,
		       DA7218_OUTFILT_1L_INFILT_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter1R Out FilterR Volume",
		       DA7218_DMIX_OUTFILT_1R_INFILT_1R_GAIN,
		       DA7218_OUTFILT_1R_INFILT_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix In Filter2L Out FilterL Volume",
		       DA7218_DMIX_OUTFILT_1L_INFILT_2L_GAIN,
		       DA7218_OUTFILT_1L_INFILT_2L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter2L Out FilterR Volume",
		       DA7218_DMIX_OUTFILT_1R_INFILT_2L_GAIN,
		       DA7218_OUTFILT_1R_INFILT_2L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix In Filter2R Out FilterL Volume",
		       DA7218_DMIX_OUTFILT_1L_INFILT_2R_GAIN,
		       DA7218_OUTFILT_1L_INFILT_2R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In Filter2R Out FilterR Volume",
		       DA7218_DMIX_OUTFILT_1R_INFILT_2R_GAIN,
		       DA7218_OUTFILT_1R_INFILT_2R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix ToneGen Out FilterL Volume",
		       DA7218_DMIX_OUTFILT_1L_TONEGEN_GAIN,
		       DA7218_OUTFILT_1L_TONEGEN_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix ToneGen Out FilterR Volume",
		       DA7218_DMIX_OUTFILT_1R_TONEGEN_GAIN,
		       DA7218_OUTFILT_1R_TONEGEN_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix In DAIL Out FilterL Volume",
		       DA7218_DMIX_OUTFILT_1L_INDAI_1L_GAIN,
		       DA7218_OUTFILT_1L_INDAI_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In DAIL Out FilterR Volume",
		       DA7218_DMIX_OUTFILT_1R_INDAI_1L_GAIN,
		       DA7218_OUTFILT_1R_INDAI_1L_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	SOC_SINGLE_TLV("DMix In DAIR Out FilterL Volume",
		       DA7218_DMIX_OUTFILT_1L_INDAI_1R_GAIN,
		       DA7218_OUTFILT_1L_INDAI_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),
	SOC_SINGLE_TLV("DMix In DAIR Out FilterR Volume",
		       DA7218_DMIX_OUTFILT_1R_INDAI_1R_GAIN,
		       DA7218_OUTFILT_1R_INDAI_1R_GAIN_SHIFT,
		       DA7218_DMIX_GAIN_MAX, DA7218_NO_INVERT,
		       da7218_dmix_gain_tlv),

	/* Sidetone Filter */
	SND_SOC_BYTES_EXT("Sidetone BiQuad Coefficients",
			  DA7218_SIDETONE_BIQ_3STAGE_CFG_SIZE,
			  da7218_biquad_coeff_get, da7218_biquad_coeff_put),
	SOC_SINGLE_TLV("Sidetone Volume", DA7218_SIDETONE_GAIN,
		       DA7218_SIDETONE_GAIN_SHIFT, DA7218_DMIX_GAIN_MAX,
		       DA7218_NO_INVERT, da7218_dmix_gain_tlv),
	SOC_SINGLE("Sidetone Switch", DA7218_SIDETONE_CTRL,
		   DA7218_SIDETONE_MUTE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_INVERT),

	/* Tone Generator */
	SOC_ENUM("ToneGen DTMF Key", da7218_tonegen_dtmf_key),
	SOC_SINGLE("ToneGen DTMF Switch", DA7218_TONE_GEN_CFG1,
		   DA7218_DTMF_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_ENUM("ToneGen Sinewave Gen Type", da7218_tonegen_swg_sel),
	SOC_SINGLE_EXT("ToneGen Sinewave1 Freq", DA7218_TONE_GEN_FREQ1_L,
		       DA7218_FREQ1_L_SHIFT, DA7218_FREQ_MAX, DA7218_NO_INVERT,
		       da7218_tonegen_freq_get, da7218_tonegen_freq_put),
	SOC_SINGLE_EXT("ToneGen Sinewave2 Freq", DA7218_TONE_GEN_FREQ2_L,
		       DA7218_FREQ2_L_SHIFT, DA7218_FREQ_MAX, DA7218_NO_INVERT,
		       da7218_tonegen_freq_get, da7218_tonegen_freq_put),
	SOC_SINGLE("ToneGen On Time", DA7218_TONE_GEN_ON_PER,
		   DA7218_BEEP_ON_PER_SHIFT, DA7218_BEEP_ON_OFF_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE("ToneGen Off Time", DA7218_TONE_GEN_OFF_PER,
		   DA7218_BEEP_OFF_PER_SHIFT, DA7218_BEEP_ON_OFF_MAX,
		   DA7218_NO_INVERT),

	/* Gain ramping */
	SOC_ENUM("Gain Ramp Rate", da7218_gain_ramp_rate),

	/* DGS */
	SOC_SINGLE_TLV("DGS Trigger", DA7218_DGS_TRIGGER,
		       DA7218_DGS_TRIGGER_LVL_SHIFT, DA7218_DGS_TRIGGER_MAX,
		       DA7218_INVERT, da7218_dgs_trigger_tlv),
	SOC_ENUM("DGS Rise Coefficient", da7218_dgs_rise_coeff),
	SOC_ENUM("DGS Fall Coefficient", da7218_dgs_fall_coeff),
	SOC_SINGLE("DGS Sync Delay", DA7218_DGS_SYNC_DELAY,
		   DA7218_DGS_SYNC_DELAY_SHIFT, DA7218_DGS_SYNC_DELAY_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE("DGS Fast SR Sync Delay", DA7218_DGS_SYNC_DELAY2,
		   DA7218_DGS_SYNC_DELAY2_SHIFT, DA7218_DGS_SYNC_DELAY_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE("DGS Voice Filter Sync Delay", DA7218_DGS_SYNC_DELAY3,
		   DA7218_DGS_SYNC_DELAY3_SHIFT, DA7218_DGS_SYNC_DELAY3_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE_TLV("DGS Anticlip Level", DA7218_DGS_LEVELS,
		       DA7218_DGS_ANTICLIP_LVL_SHIFT,
		       DA7218_DGS_ANTICLIP_LVL_MAX, DA7218_INVERT,
		       da7218_dgs_anticlip_tlv),
	SOC_SINGLE_TLV("DGS Signal Level", DA7218_DGS_LEVELS,
		       DA7218_DGS_SIGNAL_LVL_SHIFT, DA7218_DGS_SIGNAL_LVL_MAX,
		       DA7218_INVERT, da7218_dgs_signal_tlv),
	SOC_SINGLE("DGS Gain Subrange Switch", DA7218_DGS_GAIN_CTRL,
		   DA7218_DGS_SUBR_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE("DGS Gain Ramp Switch", DA7218_DGS_GAIN_CTRL,
		   DA7218_DGS_RAMP_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),
	SOC_SINGLE("DGS Gain Steps", DA7218_DGS_GAIN_CTRL,
		   DA7218_DGS_STEPS_SHIFT, DA7218_DGS_STEPS_MAX,
		   DA7218_NO_INVERT),
	SOC_DOUBLE("DGS Switch", DA7218_DGS_ENABLE, DA7218_DGS_ENABLE_L_SHIFT,
		   DA7218_DGS_ENABLE_R_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),

	/* Output High-Pass Filter */
	SOC_ENUM("Out Filter HPF Mode", da7218_out1_hpf_mode),
	SOC_ENUM("Out Filter HPF Corner Audio", da7218_out1_audio_hpf_corner),
	SOC_ENUM("Out Filter HPF Corner Voice", da7218_out1_voice_hpf_corner),

	/* 5-Band Equaliser */
	SOC_SINGLE_TLV("Out EQ Band1 Volume", DA7218_OUT_1_EQ_12_FILTER_CTRL,
		       DA7218_OUT_1_EQ_BAND1_SHIFT, DA7218_OUT_EQ_BAND_MAX,
		       DA7218_NO_INVERT, da7218_out_eq_band_tlv),
	SOC_SINGLE_TLV("Out EQ Band2 Volume", DA7218_OUT_1_EQ_12_FILTER_CTRL,
		       DA7218_OUT_1_EQ_BAND2_SHIFT, DA7218_OUT_EQ_BAND_MAX,
		       DA7218_NO_INVERT, da7218_out_eq_band_tlv),
	SOC_SINGLE_TLV("Out EQ Band3 Volume", DA7218_OUT_1_EQ_34_FILTER_CTRL,
		       DA7218_OUT_1_EQ_BAND3_SHIFT, DA7218_OUT_EQ_BAND_MAX,
		       DA7218_NO_INVERT, da7218_out_eq_band_tlv),
	SOC_SINGLE_TLV("Out EQ Band4 Volume", DA7218_OUT_1_EQ_34_FILTER_CTRL,
		       DA7218_OUT_1_EQ_BAND4_SHIFT, DA7218_OUT_EQ_BAND_MAX,
		       DA7218_NO_INVERT, da7218_out_eq_band_tlv),
	SOC_SINGLE_TLV("Out EQ Band5 Volume", DA7218_OUT_1_EQ_5_FILTER_CTRL,
		       DA7218_OUT_1_EQ_BAND5_SHIFT, DA7218_OUT_EQ_BAND_MAX,
		       DA7218_NO_INVERT, da7218_out_eq_band_tlv),
	SOC_SINGLE("Out EQ Switch", DA7218_OUT_1_EQ_5_FILTER_CTRL,
		   DA7218_OUT_1_EQ_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_NO_INVERT),

	/* BiQuad Filters */
	SND_SOC_BYTES_EXT("BiQuad Coefficients",
			  DA7218_OUT_1_BIQ_5STAGE_CFG_SIZE,
			  da7218_biquad_coeff_get, da7218_biquad_coeff_put),
	SOC_SINGLE("BiQuad Filter Switch", DA7218_OUT_1_BIQ_5STAGE_CTRL,
		   DA7218_OUT_1_BIQ_5STAGE_MUTE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		   DA7218_INVERT),

	/* Output Filters */
	SOC_DOUBLE_R_RANGE_TLV("Out Filter Volume", DA7218_OUT_1L_GAIN,
			       DA7218_OUT_1R_GAIN,
			       DA7218_OUT_1L_DIGITAL_GAIN_SHIFT,
			       DA7218_OUT_DIGITAL_GAIN_MIN,
			       DA7218_OUT_DIGITAL_GAIN_MAX, DA7218_NO_INVERT,
			       da7218_out_dig_gain_tlv),
	SOC_DOUBLE_R("Out Filter Switch", DA7218_OUT_1L_FILTER_CTRL,
		     DA7218_OUT_1R_FILTER_CTRL, DA7218_OUT_1L_MUTE_EN_SHIFT,
		     DA7218_SWITCH_EN_MAX, DA7218_INVERT),
	SOC_DOUBLE_R("Out Filter Gain Subrange Switch",
		     DA7218_OUT_1L_FILTER_CTRL, DA7218_OUT_1R_FILTER_CTRL,
		     DA7218_OUT_1L_SUBRANGE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		     DA7218_NO_INVERT),
	SOC_DOUBLE_R("Out Filter Gain Ramp Switch", DA7218_OUT_1L_FILTER_CTRL,
		     DA7218_OUT_1R_FILTER_CTRL, DA7218_OUT_1L_RAMP_EN_SHIFT,
		     DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),

	/* Mixer Output */
	SOC_DOUBLE_R_RANGE_TLV("Mixout Volume", DA7218_MIXOUT_L_GAIN,
			       DA7218_MIXOUT_R_GAIN,
			       DA7218_MIXOUT_L_AMP_GAIN_SHIFT,
			       DA7218_MIXOUT_AMP_GAIN_MIN,
			       DA7218_MIXOUT_AMP_GAIN_MAX, DA7218_NO_INVERT,
			       da7218_mixout_gain_tlv),

	/* DAC Noise Gate */
	SOC_ENUM("DAC NG Setup Time", da7218_dac_ng_setup_time),
	SOC_ENUM("DAC NG Rampup Rate", da7218_dac_ng_rampup_rate),
	SOC_ENUM("DAC NG Rampdown Rate", da7218_dac_ng_rampdown_rate),
	SOC_SINGLE_TLV("DAC NG Off Threshold", DA7218_DAC_NG_OFF_THRESH,
		       DA7218_DAC_NG_OFF_THRESHOLD_SHIFT,
		       DA7218_DAC_NG_THRESHOLD_MAX, DA7218_NO_INVERT,
		       da7218_dac_ng_threshold_tlv),
	SOC_SINGLE_TLV("DAC NG On Threshold", DA7218_DAC_NG_ON_THRESH,
		       DA7218_DAC_NG_ON_THRESHOLD_SHIFT,
		       DA7218_DAC_NG_THRESHOLD_MAX, DA7218_NO_INVERT,
		       da7218_dac_ng_threshold_tlv),
	SOC_SINGLE("DAC NG Switch", DA7218_DAC_NG_CTRL, DA7218_DAC_NG_EN_SHIFT,
		   DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),

	/* CP */
	SOC_ENUM("Charge Pump Track Mode", da7218_cp_mchange),
	SOC_ENUM("Charge Pump Frequency", da7218_cp_fcontrol),
	SOC_ENUM("Charge Pump Decay Rate", da7218_cp_tau_delay),
	SOC_SINGLE("Charge Pump Threshold", DA7218_CP_VOL_THRESHOLD1,
		   DA7218_CP_THRESH_VDD2_SHIFT, DA7218_CP_THRESH_VDD2_MAX,
		   DA7218_NO_INVERT),

	/* Headphones */
	SOC_DOUBLE_R_RANGE_TLV("Headphone Volume", DA7218_HP_L_GAIN,
			       DA7218_HP_R_GAIN, DA7218_HP_L_AMP_GAIN_SHIFT,
			       DA7218_HP_AMP_GAIN_MIN, DA7218_HP_AMP_GAIN_MAX,
			       DA7218_NO_INVERT, da7218_hp_gain_tlv),
	SOC_DOUBLE_R("Headphone Switch", DA7218_HP_L_CTRL, DA7218_HP_R_CTRL,
		     DA7218_HP_L_AMP_MUTE_EN_SHIFT, DA7218_SWITCH_EN_MAX,
		     DA7218_INVERT),
	SOC_DOUBLE_R("Headphone Gain Ramp Switch", DA7218_HP_L_CTRL,
		     DA7218_HP_R_CTRL, DA7218_HP_L_AMP_RAMP_EN_SHIFT,
		     DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),
	SOC_DOUBLE_R("Headphone ZC Gain Switch", DA7218_HP_L_CTRL,
		     DA7218_HP_R_CTRL, DA7218_HP_L_AMP_ZC_EN_SHIFT,
		     DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),
};


/*
 * DAPM Mux Controls
 */

static const char * const da7218_mic_sel_text[] = { "Analog", "Digital" };

static const struct soc_enum da7218_mic1_sel =
	SOC_ENUM_SINGLE_EXT(ARRAY_SIZE(da7218_mic_sel_text),
			    da7218_mic_sel_text);

static const struct snd_kcontrol_new da7218_mic1_sel_mux =
	SOC_DAPM_ENUM("Mic1 Mux", da7218_mic1_sel);

static const struct soc_enum da7218_mic2_sel =
	SOC_ENUM_SINGLE_EXT(ARRAY_SIZE(da7218_mic_sel_text),
			    da7218_mic_sel_text);

static const struct snd_kcontrol_new da7218_mic2_sel_mux =
	SOC_DAPM_ENUM("Mic2 Mux", da7218_mic2_sel);

static const char * const da7218_sidetone_in_sel_txt[] = {
	"In Filter1L", "In Filter1R", "In Filter2L", "In Filter2R"
};

static const struct soc_enum da7218_sidetone_in_sel =
	SOC_ENUM_SINGLE(DA7218_SIDETONE_IN_SELECT,
			DA7218_SIDETONE_IN_SELECT_SHIFT,
			DA7218_SIDETONE_IN_SELECT_MAX,
			da7218_sidetone_in_sel_txt);

static const struct snd_kcontrol_new da7218_sidetone_in_sel_mux =
	SOC_DAPM_ENUM("Sidetone Mux", da7218_sidetone_in_sel);

static const char * const da7218_out_filt_biq_sel_txt[] = {
	"Bypass", "Enabled"
};

static const struct soc_enum da7218_out_filtl_biq_sel =
	SOC_ENUM_SINGLE(DA7218_OUT_1L_FILTER_CTRL,
			DA7218_OUT_1L_BIQ_5STAGE_SEL_SHIFT,
			DA7218_OUT_BIQ_5STAGE_SEL_MAX,
			da7218_out_filt_biq_sel_txt);

static const struct snd_kcontrol_new da7218_out_filtl_biq_sel_mux =
	SOC_DAPM_ENUM("Out FilterL BiQuad Mux", da7218_out_filtl_biq_sel);

static const struct soc_enum da7218_out_filtr_biq_sel =
	SOC_ENUM_SINGLE(DA7218_OUT_1R_FILTER_CTRL,
			DA7218_OUT_1R_BIQ_5STAGE_SEL_SHIFT,
			DA7218_OUT_BIQ_5STAGE_SEL_MAX,
			da7218_out_filt_biq_sel_txt);

static const struct snd_kcontrol_new da7218_out_filtr_biq_sel_mux =
	SOC_DAPM_ENUM("Out FilterR BiQuad Mux", da7218_out_filtr_biq_sel);


/*
 * DAPM Mixer Controls
 */

#define DA7218_DMIX_CTRLS(reg)						\
	SOC_DAPM_SINGLE("In Filter1L Switch", reg,			\
			DA7218_DMIX_SRC_INFILT1L,			\
			DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),	\
	SOC_DAPM_SINGLE("In Filter1R Switch", reg,			\
			DA7218_DMIX_SRC_INFILT1R,			\
			DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),	\
	SOC_DAPM_SINGLE("In Filter2L Switch", reg,			\
			DA7218_DMIX_SRC_INFILT2L,			\
			DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),	\
	SOC_DAPM_SINGLE("In Filter2R Switch", reg,			\
			DA7218_DMIX_SRC_INFILT2R,			\
			DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),	\
	SOC_DAPM_SINGLE("ToneGen Switch", reg,				\
			DA7218_DMIX_SRC_TONEGEN,			\
			DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),	\
	SOC_DAPM_SINGLE("DAIL Switch", reg, DA7218_DMIX_SRC_DAIL,	\
			DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),	\
	SOC_DAPM_SINGLE("DAIR Switch", reg, DA7218_DMIX_SRC_DAIR,	\
			DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT)

static const struct snd_kcontrol_new da7218_out_dai1l_mix_controls[] = {
	DA7218_DMIX_CTRLS(DA7218_DROUTING_OUTDAI_1L),
};

static const struct snd_kcontrol_new da7218_out_dai1r_mix_controls[] = {
	DA7218_DMIX_CTRLS(DA7218_DROUTING_OUTDAI_1R),
};

static const struct snd_kcontrol_new da7218_out_dai2l_mix_controls[] = {
	DA7218_DMIX_CTRLS(DA7218_DROUTING_OUTDAI_2L),
};

static const struct snd_kcontrol_new da7218_out_dai2r_mix_controls[] = {
	DA7218_DMIX_CTRLS(DA7218_DROUTING_OUTDAI_2R),
};

static const struct snd_kcontrol_new da7218_out_filtl_mix_controls[] = {
	DA7218_DMIX_CTRLS(DA7218_DROUTING_OUTFILT_1L),
};

static const struct snd_kcontrol_new da7218_out_filtr_mix_controls[] = {
	DA7218_DMIX_CTRLS(DA7218_DROUTING_OUTFILT_1R),
};

#define DA7218_DMIX_ST_CTRLS(reg)					\
	SOC_DAPM_SINGLE("Out FilterL Switch", reg,			\
			DA7218_DMIX_ST_SRC_OUTFILT1L,			\
			DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),	\
	SOC_DAPM_SINGLE("Out FilterR Switch", reg,			\
			DA7218_DMIX_ST_SRC_OUTFILT1R,			\
			DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT),	\
	SOC_DAPM_SINGLE("Sidetone Switch", reg,				\
			DA7218_DMIX_ST_SRC_SIDETONE,			\
			DA7218_SWITCH_EN_MAX, DA7218_NO_INVERT)		\

static const struct snd_kcontrol_new da7218_st_out_filtl_mix_controls[] = {
	DA7218_DMIX_ST_CTRLS(DA7218_DROUTING_ST_OUTFILT_1L),
};

static const struct snd_kcontrol_new da7218_st_out_filtr_mix_controls[] = {
	DA7218_DMIX_ST_CTRLS(DA7218_DROUTING_ST_OUTFILT_1R),
};


/*
 * DAPM Events
 */

/*
 * We keep track of which input filters are enabled. This is used in the logic
 * for controlling the mic level detect feature.
 */
static int da7218_in_filter_event(struct snd_soc_dapm_widget *w,
				  struct snd_kcontrol *kcontrol, int event)
{
1352 1353
	struct snd_soc_component *component = snd_soc_dapm_to_component(w->dapm);
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391
	u8 mask;

	switch (w->reg) {
	case DA7218_IN_1L_FILTER_CTRL:
		mask = (1 << DA7218_LVL_DET_EN_CHAN1L_SHIFT);
		break;
	case DA7218_IN_1R_FILTER_CTRL:
		mask = (1 << DA7218_LVL_DET_EN_CHAN1R_SHIFT);
		break;
	case DA7218_IN_2L_FILTER_CTRL:
		mask = (1 << DA7218_LVL_DET_EN_CHAN2L_SHIFT);
		break;
	case DA7218_IN_2R_FILTER_CTRL:
		mask = (1 << DA7218_LVL_DET_EN_CHAN2R_SHIFT);
		break;
	default:
		return -EINVAL;
	}

	switch (event) {
	case SND_SOC_DAPM_POST_PMU:
		da7218->in_filt_en |= mask;
		/*
		 * If we're enabling path for mic level detect, wait for path
		 * to settle before enabling feature to avoid incorrect and
		 * unwanted detect events.
		 */
		if (mask & da7218->mic_lvl_det_en)
			msleep(DA7218_MIC_LVL_DET_DELAY);
		break;
	case SND_SOC_DAPM_PRE_PMD:
		da7218->in_filt_en &= ~mask;
		break;
	default:
		return -EINVAL;
	}

	/* Enable configured level detection paths */
1392
	snd_soc_component_write(component, DA7218_LVL_DET_CTRL,
1393 1394 1395 1396 1397 1398 1399 1400
		      (da7218->in_filt_en & da7218->mic_lvl_det_en));

	return 0;
}

static int da7218_dai_event(struct snd_soc_dapm_widget *w,
			    struct snd_kcontrol *kcontrol, int event)
{
1401 1402
	struct snd_soc_component *component = snd_soc_dapm_to_component(w->dapm);
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
1403 1404 1405 1406 1407 1408 1409 1410
	u8 pll_ctrl, pll_status, refosc_cal;
	int i;
	bool success;

	switch (event) {
	case SND_SOC_DAPM_POST_PMU:
		if (da7218->master)
			/* Enable DAI clks for master mode */
1411
			snd_soc_component_update_bits(component, DA7218_DAI_CLK_MODE,
1412 1413 1414 1415
					    DA7218_DAI_CLK_EN_MASK,
					    DA7218_DAI_CLK_EN_MASK);

		/* Tune reference oscillator */
1416
		snd_soc_component_write(component, DA7218_PLL_REFOSC_CAL,
1417
			      DA7218_PLL_REFOSC_CAL_START_MASK);
1418
		snd_soc_component_write(component, DA7218_PLL_REFOSC_CAL,
1419 1420 1421 1422 1423 1424 1425
			      DA7218_PLL_REFOSC_CAL_START_MASK |
			      DA7218_PLL_REFOSC_CAL_EN_MASK);

		/* Check tuning complete */
		i = 0;
		success = false;
		do {
1426
			refosc_cal = snd_soc_component_read32(component, DA7218_PLL_REFOSC_CAL);
1427 1428 1429 1430 1431 1432 1433 1434 1435 1436
			if (!(refosc_cal & DA7218_PLL_REFOSC_CAL_START_MASK)) {
				success = true;
			} else {
				++i;
				usleep_range(DA7218_REF_OSC_CHECK_DELAY_MIN,
					     DA7218_REF_OSC_CHECK_DELAY_MAX);
			}
		} while ((i < DA7218_REF_OSC_CHECK_TRIES) && (!success));

		if (!success)
1437
			dev_warn(component->dev,
1438 1439 1440
				 "Reference oscillator failed calibration\n");

		/* PC synchronised to DAI */
1441
		snd_soc_component_write(component, DA7218_PC_COUNT,
1442 1443 1444
			      DA7218_PC_RESYNC_AUTO_MASK);

		/* If SRM not enabled, we don't need to check status */
1445
		pll_ctrl = snd_soc_component_read32(component, DA7218_PLL_CTRL);
1446 1447 1448 1449 1450 1451 1452
		if ((pll_ctrl & DA7218_PLL_MODE_MASK) != DA7218_PLL_MODE_SRM)
			return 0;

		/* Check SRM has locked */
		i = 0;
		success = false;
		do {
1453
			pll_status = snd_soc_component_read32(component, DA7218_PLL_STATUS);
1454 1455 1456 1457 1458 1459
			if (pll_status & DA7218_PLL_SRM_STATUS_SRM_LOCK) {
				success = true;
			} else {
				++i;
				msleep(DA7218_SRM_CHECK_DELAY);
			}
1460
		} while ((i < DA7218_SRM_CHECK_TRIES) && (!success));
1461 1462

		if (!success)
1463
			dev_warn(component->dev, "SRM failed to lock\n");
1464 1465 1466 1467

		return 0;
	case SND_SOC_DAPM_POST_PMD:
		/* PC free-running */
1468
		snd_soc_component_write(component, DA7218_PC_COUNT, DA7218_PC_FREERUN_MASK);
1469 1470 1471

		if (da7218->master)
			/* Disable DAI clks for master mode */
1472
			snd_soc_component_update_bits(component, DA7218_DAI_CLK_MODE,
1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483
					    DA7218_DAI_CLK_EN_MASK, 0);

		return 0;
	default:
		return -EINVAL;
	}
}

static int da7218_cp_event(struct snd_soc_dapm_widget *w,
			   struct snd_kcontrol *kcontrol, int event)
{
1484 1485
	struct snd_soc_component *component = snd_soc_dapm_to_component(w->dapm);
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
1486 1487 1488 1489 1490 1491 1492 1493 1494 1495

	/*
	 * If this is DA7217 and we're using single supply for differential
	 * output, we really don't want to touch the charge pump.
	 */
	if (da7218->hp_single_supply)
		return 0;

	switch (event) {
	case SND_SOC_DAPM_PRE_PMU:
1496
		snd_soc_component_update_bits(component, DA7218_CP_CTRL, DA7218_CP_EN_MASK,
1497 1498 1499
				    DA7218_CP_EN_MASK);
		return 0;
	case SND_SOC_DAPM_PRE_PMD:
1500
		snd_soc_component_update_bits(component, DA7218_CP_CTRL, DA7218_CP_EN_MASK,
1501 1502 1503 1504 1505 1506 1507 1508 1509 1510
				    0);
		return 0;
	default:
		return -EINVAL;
	}
}

static int da7218_hp_pga_event(struct snd_soc_dapm_widget *w,
			       struct snd_kcontrol *kcontrol, int event)
{
1511
	struct snd_soc_component *component = snd_soc_dapm_to_component(w->dapm);
1512 1513 1514 1515

	switch (event) {
	case SND_SOC_DAPM_POST_PMU:
		/* Enable headphone output */
1516
		snd_soc_component_update_bits(component, w->reg, DA7218_HP_AMP_OE_MASK,
1517 1518 1519 1520
				    DA7218_HP_AMP_OE_MASK);
		return 0;
	case SND_SOC_DAPM_PRE_PMD:
		/* Headphone output high impedance */
1521
		snd_soc_component_update_bits(component, w->reg, DA7218_HP_AMP_OE_MASK, 0);
1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636
		return 0;
	default:
		return -EINVAL;
	}
}


/*
 * DAPM Widgets
 */

static const struct snd_soc_dapm_widget da7218_dapm_widgets[] = {
	/* Input Supplies */
	SND_SOC_DAPM_SUPPLY("Mic Bias1", DA7218_MICBIAS_EN,
			    DA7218_MICBIAS_1_EN_SHIFT, DA7218_NO_INVERT,
			    NULL, 0),
	SND_SOC_DAPM_SUPPLY("Mic Bias2", DA7218_MICBIAS_EN,
			    DA7218_MICBIAS_2_EN_SHIFT, DA7218_NO_INVERT,
			    NULL, 0),
	SND_SOC_DAPM_SUPPLY("DMic1 Left", DA7218_DMIC_1_CTRL,
			    DA7218_DMIC_1L_EN_SHIFT, DA7218_NO_INVERT,
			    NULL, 0),
	SND_SOC_DAPM_SUPPLY("DMic1 Right", DA7218_DMIC_1_CTRL,
			    DA7218_DMIC_1R_EN_SHIFT, DA7218_NO_INVERT,
			    NULL, 0),
	SND_SOC_DAPM_SUPPLY("DMic2 Left", DA7218_DMIC_2_CTRL,
			    DA7218_DMIC_2L_EN_SHIFT, DA7218_NO_INVERT,
			    NULL, 0),
	SND_SOC_DAPM_SUPPLY("DMic2 Right", DA7218_DMIC_2_CTRL,
			    DA7218_DMIC_2R_EN_SHIFT, DA7218_NO_INVERT,
			    NULL, 0),

	/* Inputs */
	SND_SOC_DAPM_INPUT("MIC1"),
	SND_SOC_DAPM_INPUT("MIC2"),
	SND_SOC_DAPM_INPUT("DMIC1L"),
	SND_SOC_DAPM_INPUT("DMIC1R"),
	SND_SOC_DAPM_INPUT("DMIC2L"),
	SND_SOC_DAPM_INPUT("DMIC2R"),

	/* Input Mixer Supplies */
	SND_SOC_DAPM_SUPPLY("Mixin1 Supply", DA7218_MIXIN_1_CTRL,
			    DA7218_MIXIN_1_MIX_SEL_SHIFT, DA7218_NO_INVERT,
			    NULL, 0),
	SND_SOC_DAPM_SUPPLY("Mixin2 Supply", DA7218_MIXIN_2_CTRL,
			    DA7218_MIXIN_2_MIX_SEL_SHIFT, DA7218_NO_INVERT,
			    NULL, 0),

	/* Input PGAs */
	SND_SOC_DAPM_PGA("Mic1 PGA", DA7218_MIC_1_CTRL,
			 DA7218_MIC_1_AMP_EN_SHIFT, DA7218_NO_INVERT,
			 NULL, 0),
	SND_SOC_DAPM_PGA("Mic2 PGA", DA7218_MIC_2_CTRL,
			 DA7218_MIC_2_AMP_EN_SHIFT, DA7218_NO_INVERT,
			 NULL, 0),
	SND_SOC_DAPM_PGA("Mixin1 PGA", DA7218_MIXIN_1_CTRL,
			 DA7218_MIXIN_1_AMP_EN_SHIFT, DA7218_NO_INVERT,
			 NULL, 0),
	SND_SOC_DAPM_PGA("Mixin2 PGA", DA7218_MIXIN_2_CTRL,
			 DA7218_MIXIN_2_AMP_EN_SHIFT, DA7218_NO_INVERT,
			 NULL, 0),

	/* Mic/DMic Muxes */
	SND_SOC_DAPM_MUX("Mic1 Mux", SND_SOC_NOPM, 0, 0, &da7218_mic1_sel_mux),
	SND_SOC_DAPM_MUX("Mic2 Mux", SND_SOC_NOPM, 0, 0, &da7218_mic2_sel_mux),

	/* Input Filters */
	SND_SOC_DAPM_ADC_E("In Filter1L", NULL, DA7218_IN_1L_FILTER_CTRL,
			   DA7218_IN_1L_FILTER_EN_SHIFT, DA7218_NO_INVERT,
			   da7218_in_filter_event,
			   SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
	SND_SOC_DAPM_ADC_E("In Filter1R", NULL, DA7218_IN_1R_FILTER_CTRL,
			   DA7218_IN_1R_FILTER_EN_SHIFT, DA7218_NO_INVERT,
			   da7218_in_filter_event,
			   SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
	SND_SOC_DAPM_ADC_E("In Filter2L", NULL, DA7218_IN_2L_FILTER_CTRL,
			   DA7218_IN_2L_FILTER_EN_SHIFT, DA7218_NO_INVERT,
			   da7218_in_filter_event,
			   SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
	SND_SOC_DAPM_ADC_E("In Filter2R", NULL, DA7218_IN_2R_FILTER_CTRL,
			   DA7218_IN_2R_FILTER_EN_SHIFT, DA7218_NO_INVERT,
			   da7218_in_filter_event,
			   SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),

	/* Tone Generator */
	SND_SOC_DAPM_SIGGEN("TONE"),
	SND_SOC_DAPM_PGA("Tone Generator", DA7218_TONE_GEN_CFG1,
			 DA7218_START_STOPN_SHIFT, DA7218_NO_INVERT, NULL, 0),

	/* Sidetone Input */
	SND_SOC_DAPM_MUX("Sidetone Mux", SND_SOC_NOPM, 0, 0,
			 &da7218_sidetone_in_sel_mux),
	SND_SOC_DAPM_ADC("Sidetone Filter", NULL, DA7218_SIDETONE_CTRL,
			 DA7218_SIDETONE_FILTER_EN_SHIFT, DA7218_NO_INVERT),

	/* Input Mixers */
	SND_SOC_DAPM_MIXER("Mixer DAI1L", SND_SOC_NOPM, 0, 0,
			   da7218_out_dai1l_mix_controls,
			   ARRAY_SIZE(da7218_out_dai1l_mix_controls)),
	SND_SOC_DAPM_MIXER("Mixer DAI1R", SND_SOC_NOPM, 0, 0,
			   da7218_out_dai1r_mix_controls,
			   ARRAY_SIZE(da7218_out_dai1r_mix_controls)),
	SND_SOC_DAPM_MIXER("Mixer DAI2L", SND_SOC_NOPM, 0, 0,
			   da7218_out_dai2l_mix_controls,
			   ARRAY_SIZE(da7218_out_dai2l_mix_controls)),
	SND_SOC_DAPM_MIXER("Mixer DAI2R", SND_SOC_NOPM, 0, 0,
			   da7218_out_dai2r_mix_controls,
			   ARRAY_SIZE(da7218_out_dai2r_mix_controls)),

	/* DAI Supply */
	SND_SOC_DAPM_SUPPLY("DAI", DA7218_DAI_CTRL, DA7218_DAI_EN_SHIFT,
			    DA7218_NO_INVERT, da7218_dai_event,
			    SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_POST_PMD),

	/* DAI */
1637 1638
	SND_SOC_DAPM_AIF_OUT("DAIOUT", "Capture", 0, DA7218_DAI_TDM_CTRL,
			     DA7218_DAI_OE_SHIFT, DA7218_NO_INVERT),
1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815
	SND_SOC_DAPM_AIF_IN("DAIIN", "Playback", 0, SND_SOC_NOPM, 0, 0),

	/* Output Mixers */
	SND_SOC_DAPM_MIXER("Mixer Out FilterL", SND_SOC_NOPM, 0, 0,
			   da7218_out_filtl_mix_controls,
			   ARRAY_SIZE(da7218_out_filtl_mix_controls)),
	SND_SOC_DAPM_MIXER("Mixer Out FilterR", SND_SOC_NOPM, 0, 0,
			   da7218_out_filtr_mix_controls,
			   ARRAY_SIZE(da7218_out_filtr_mix_controls)),

	/* BiQuad Filters */
	SND_SOC_DAPM_MUX("Out FilterL BiQuad Mux", SND_SOC_NOPM, 0, 0,
			 &da7218_out_filtl_biq_sel_mux),
	SND_SOC_DAPM_MUX("Out FilterR BiQuad Mux", SND_SOC_NOPM, 0, 0,
			 &da7218_out_filtr_biq_sel_mux),
	SND_SOC_DAPM_DAC("BiQuad Filter", NULL, DA7218_OUT_1_BIQ_5STAGE_CTRL,
			 DA7218_OUT_1_BIQ_5STAGE_FILTER_EN_SHIFT,
			 DA7218_NO_INVERT),

	/* Sidetone Mixers */
	SND_SOC_DAPM_MIXER("ST Mixer Out FilterL", SND_SOC_NOPM, 0, 0,
			   da7218_st_out_filtl_mix_controls,
			   ARRAY_SIZE(da7218_st_out_filtl_mix_controls)),
	SND_SOC_DAPM_MIXER("ST Mixer Out FilterR", SND_SOC_NOPM, 0, 0,
			   da7218_st_out_filtr_mix_controls,
			   ARRAY_SIZE(da7218_st_out_filtr_mix_controls)),

	/* Output Filters */
	SND_SOC_DAPM_DAC("Out FilterL", NULL, DA7218_OUT_1L_FILTER_CTRL,
			 DA7218_OUT_1L_FILTER_EN_SHIFT, DA7218_NO_INVERT),
	SND_SOC_DAPM_DAC("Out FilterR", NULL, DA7218_OUT_1R_FILTER_CTRL,
			 DA7218_IN_1R_FILTER_EN_SHIFT, DA7218_NO_INVERT),

	/* Output PGAs */
	SND_SOC_DAPM_PGA("Mixout Left PGA", DA7218_MIXOUT_L_CTRL,
			 DA7218_MIXOUT_L_AMP_EN_SHIFT, DA7218_NO_INVERT,
			 NULL, 0),
	SND_SOC_DAPM_PGA("Mixout Right PGA", DA7218_MIXOUT_R_CTRL,
			 DA7218_MIXOUT_R_AMP_EN_SHIFT, DA7218_NO_INVERT,
			 NULL, 0),
	SND_SOC_DAPM_PGA_E("Headphone Left PGA", DA7218_HP_L_CTRL,
			   DA7218_HP_L_AMP_EN_SHIFT, DA7218_NO_INVERT, NULL, 0,
			   da7218_hp_pga_event,
			   SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
	SND_SOC_DAPM_PGA_E("Headphone Right PGA", DA7218_HP_R_CTRL,
			   DA7218_HP_R_AMP_EN_SHIFT, DA7218_NO_INVERT, NULL, 0,
			   da7218_hp_pga_event,
			   SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),

	/* Output Supplies */
	SND_SOC_DAPM_SUPPLY("Charge Pump", SND_SOC_NOPM, 0, 0, da7218_cp_event,
			    SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_PRE_PMD),

	/* Outputs */
	SND_SOC_DAPM_OUTPUT("HPL"),
	SND_SOC_DAPM_OUTPUT("HPR"),
};


/*
 * DAPM Mixer Routes
 */

#define DA7218_DMIX_ROUTES(name)				\
	{name, "In Filter1L Switch", "In Filter1L"},		\
	{name, "In Filter1R Switch", "In Filter1R"},		\
	{name, "In Filter2L Switch", "In Filter2L"},		\
	{name, "In Filter2R Switch", "In Filter2R"},		\
	{name, "ToneGen Switch", "Tone Generator"},		\
	{name, "DAIL Switch", "DAIIN"},				\
	{name, "DAIR Switch", "DAIIN"}

#define DA7218_DMIX_ST_ROUTES(name)				\
	{name, "Out FilterL Switch", "Out FilterL BiQuad Mux"},	\
	{name, "Out FilterR Switch", "Out FilterR BiQuad Mux"},	\
	{name, "Sidetone Switch", "Sidetone Filter"}


/*
 * DAPM audio route definition
 */

static const struct snd_soc_dapm_route da7218_audio_map[] = {
	/* Input paths */
	{"MIC1", NULL, "Mic Bias1"},
	{"MIC2", NULL, "Mic Bias2"},
	{"DMIC1L", NULL, "Mic Bias1"},
	{"DMIC1L", NULL, "DMic1 Left"},
	{"DMIC1R", NULL, "Mic Bias1"},
	{"DMIC1R", NULL, "DMic1 Right"},
	{"DMIC2L", NULL, "Mic Bias2"},
	{"DMIC2L", NULL, "DMic2 Left"},
	{"DMIC2R", NULL, "Mic Bias2"},
	{"DMIC2R", NULL, "DMic2 Right"},

	{"Mic1 PGA", NULL, "MIC1"},
	{"Mic2 PGA", NULL, "MIC2"},

	{"Mixin1 PGA", NULL, "Mixin1 Supply"},
	{"Mixin2 PGA", NULL, "Mixin2 Supply"},

	{"Mixin1 PGA", NULL, "Mic1 PGA"},
	{"Mixin2 PGA", NULL, "Mic2 PGA"},

	{"Mic1 Mux", "Analog", "Mixin1 PGA"},
	{"Mic1 Mux", "Digital", "DMIC1L"},
	{"Mic1 Mux", "Digital", "DMIC1R"},
	{"Mic2 Mux", "Analog", "Mixin2 PGA"},
	{"Mic2 Mux", "Digital", "DMIC2L"},
	{"Mic2 Mux", "Digital", "DMIC2R"},

	{"In Filter1L", NULL, "Mic1 Mux"},
	{"In Filter1R", NULL, "Mic1 Mux"},
	{"In Filter2L", NULL, "Mic2 Mux"},
	{"In Filter2R", NULL, "Mic2 Mux"},

	{"Tone Generator", NULL, "TONE"},

	{"Sidetone Mux", "In Filter1L", "In Filter1L"},
	{"Sidetone Mux", "In Filter1R", "In Filter1R"},
	{"Sidetone Mux", "In Filter2L", "In Filter2L"},
	{"Sidetone Mux", "In Filter2R", "In Filter2R"},
	{"Sidetone Filter", NULL, "Sidetone Mux"},

	DA7218_DMIX_ROUTES("Mixer DAI1L"),
	DA7218_DMIX_ROUTES("Mixer DAI1R"),
	DA7218_DMIX_ROUTES("Mixer DAI2L"),
	DA7218_DMIX_ROUTES("Mixer DAI2R"),

	{"DAIOUT", NULL, "Mixer DAI1L"},
	{"DAIOUT", NULL, "Mixer DAI1R"},
	{"DAIOUT", NULL, "Mixer DAI2L"},
	{"DAIOUT", NULL, "Mixer DAI2R"},

	{"DAIOUT", NULL, "DAI"},

	/* Output paths */
	{"DAIIN", NULL, "DAI"},

	DA7218_DMIX_ROUTES("Mixer Out FilterL"),
	DA7218_DMIX_ROUTES("Mixer Out FilterR"),

	{"BiQuad Filter", NULL, "Mixer Out FilterL"},
	{"BiQuad Filter", NULL, "Mixer Out FilterR"},

	{"Out FilterL BiQuad Mux", "Bypass", "Mixer Out FilterL"},
	{"Out FilterL BiQuad Mux", "Enabled", "BiQuad Filter"},
	{"Out FilterR BiQuad Mux", "Bypass", "Mixer Out FilterR"},
	{"Out FilterR BiQuad Mux", "Enabled", "BiQuad Filter"},

	DA7218_DMIX_ST_ROUTES("ST Mixer Out FilterL"),
	DA7218_DMIX_ST_ROUTES("ST Mixer Out FilterR"),

	{"Out FilterL", NULL, "ST Mixer Out FilterL"},
	{"Out FilterR", NULL, "ST Mixer Out FilterR"},

	{"Mixout Left PGA", NULL, "Out FilterL"},
	{"Mixout Right PGA", NULL, "Out FilterR"},

	{"Headphone Left PGA", NULL, "Mixout Left PGA"},
	{"Headphone Right PGA", NULL, "Mixout Right PGA"},

	{"HPL", NULL, "Headphone Left PGA"},
	{"HPR", NULL, "Headphone Right PGA"},

	{"HPL", NULL, "Charge Pump"},
	{"HPR", NULL, "Charge Pump"},
};


/*
 * DAI operations
 */

static int da7218_set_dai_sysclk(struct snd_soc_dai *codec_dai,
				 int clk_id, unsigned int freq, int dir)
{
1816 1817
	struct snd_soc_component *component = codec_dai->component;
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
1818 1819 1820 1821 1822
	int ret;

	if (da7218->mclk_rate == freq)
		return 0;

1823
	if ((freq < 2000000) || (freq > 54000000)) {
1824 1825 1826 1827 1828 1829 1830
		dev_err(codec_dai->dev, "Unsupported MCLK value %d\n",
			freq);
		return -EINVAL;
	}

	switch (clk_id) {
	case DA7218_CLKSRC_MCLK_SQR:
1831
		snd_soc_component_update_bits(component, DA7218_PLL_CTRL,
1832 1833 1834 1835
				    DA7218_PLL_MCLK_SQR_EN_MASK,
				    DA7218_PLL_MCLK_SQR_EN_MASK);
		break;
	case DA7218_CLKSRC_MCLK:
1836
		snd_soc_component_update_bits(component, DA7218_PLL_CTRL,
1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861
				    DA7218_PLL_MCLK_SQR_EN_MASK, 0);
		break;
	default:
		dev_err(codec_dai->dev, "Unknown clock source %d\n", clk_id);
		return -EINVAL;
	}

	if (da7218->mclk) {
		freq = clk_round_rate(da7218->mclk, freq);
		ret = clk_set_rate(da7218->mclk, freq);
		if (ret) {
			dev_err(codec_dai->dev, "Failed to set clock rate %d\n",
				freq);
			return ret;
		}
	}

	da7218->mclk_rate = freq;

	return 0;
}

static int da7218_set_dai_pll(struct snd_soc_dai *codec_dai, int pll_id,
			      int source, unsigned int fref, unsigned int fout)
{
1862 1863
	struct snd_soc_component *component = codec_dai->component;
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
1864 1865 1866 1867 1868 1869

	u8 pll_ctrl, indiv_bits, indiv;
	u8 pll_frac_top, pll_frac_bot, pll_integer;
	u32 freq_ref;
	u64 frac_div;

1870 1871
	/* Verify 2MHz - 54MHz MCLK provided, and set input divider */
	if (da7218->mclk_rate < 2000000) {
1872
		dev_err(component->dev, "PLL input clock %d below valid range\n",
1873 1874
			da7218->mclk_rate);
		return -EINVAL;
1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886
	} else if (da7218->mclk_rate <= 4500000) {
		indiv_bits = DA7218_PLL_INDIV_2_TO_4_5_MHZ;
		indiv = DA7218_PLL_INDIV_2_TO_4_5_MHZ_VAL;
	} else if (da7218->mclk_rate <= 9000000) {
		indiv_bits = DA7218_PLL_INDIV_4_5_TO_9_MHZ;
		indiv = DA7218_PLL_INDIV_4_5_TO_9_MHZ_VAL;
	} else if (da7218->mclk_rate <= 18000000) {
		indiv_bits = DA7218_PLL_INDIV_9_TO_18_MHZ;
		indiv = DA7218_PLL_INDIV_9_TO_18_MHZ_VAL;
	} else if (da7218->mclk_rate <= 36000000) {
		indiv_bits = DA7218_PLL_INDIV_18_TO_36_MHZ;
		indiv = DA7218_PLL_INDIV_18_TO_36_MHZ_VAL;
1887
	} else if (da7218->mclk_rate <= 54000000) {
1888 1889
		indiv_bits = DA7218_PLL_INDIV_36_TO_54_MHZ;
		indiv = DA7218_PLL_INDIV_36_TO_54_MHZ_VAL;
1890
	} else {
1891
		dev_err(component->dev, "PLL input clock %d above valid range\n",
1892 1893 1894 1895 1896 1897 1898 1899 1900 1901
			da7218->mclk_rate);
		return -EINVAL;
	}
	freq_ref = (da7218->mclk_rate / indiv);
	pll_ctrl = indiv_bits;

	/* Configure PLL */
	switch (source) {
	case DA7218_SYSCLK_MCLK:
		pll_ctrl |= DA7218_PLL_MODE_BYPASS;
1902
		snd_soc_component_update_bits(component, DA7218_PLL_CTRL,
1903 1904 1905 1906 1907 1908 1909 1910 1911 1912
				    DA7218_PLL_INDIV_MASK |
				    DA7218_PLL_MODE_MASK, pll_ctrl);
		return 0;
	case DA7218_SYSCLK_PLL:
		pll_ctrl |= DA7218_PLL_MODE_NORMAL;
		break;
	case DA7218_SYSCLK_PLL_SRM:
		pll_ctrl |= DA7218_PLL_MODE_SRM;
		break;
	default:
1913
		dev_err(component->dev, "Invalid PLL config\n");
1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924
		return -EINVAL;
	}

	/* Calculate dividers for PLL */
	pll_integer = fout / freq_ref;
	frac_div = (u64)(fout % freq_ref) * 8192ULL;
	do_div(frac_div, freq_ref);
	pll_frac_top = (frac_div >> DA7218_BYTE_SHIFT) & DA7218_BYTE_MASK;
	pll_frac_bot = (frac_div) & DA7218_BYTE_MASK;

	/* Write PLL config & dividers */
1925 1926 1927 1928
	snd_soc_component_write(component, DA7218_PLL_FRAC_TOP, pll_frac_top);
	snd_soc_component_write(component, DA7218_PLL_FRAC_BOT, pll_frac_bot);
	snd_soc_component_write(component, DA7218_PLL_INTEGER, pll_integer);
	snd_soc_component_update_bits(component, DA7218_PLL_CTRL,
1929 1930 1931 1932 1933 1934 1935 1936
			    DA7218_PLL_MODE_MASK | DA7218_PLL_INDIV_MASK,
			    pll_ctrl);

	return 0;
}

static int da7218_set_dai_fmt(struct snd_soc_dai *codec_dai, unsigned int fmt)
{
1937 1938
	struct snd_soc_component *component = codec_dai->component;
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951
	u8 dai_clk_mode = 0, dai_ctrl = 0;

	switch (fmt & SND_SOC_DAIFMT_MASTER_MASK) {
	case SND_SOC_DAIFMT_CBM_CFM:
		da7218->master = true;
		break;
	case SND_SOC_DAIFMT_CBS_CFS:
		da7218->master = false;
		break;
	default:
		return -EINVAL;
	}

1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970 1971
	switch (fmt & SND_SOC_DAIFMT_FORMAT_MASK) {
	case SND_SOC_DAIFMT_I2S:
	case SND_SOC_DAIFMT_LEFT_J:
	case SND_SOC_DAIFMT_RIGHT_J:
		switch (fmt & SND_SOC_DAIFMT_INV_MASK) {
		case SND_SOC_DAIFMT_NB_NF:
			break;
		case SND_SOC_DAIFMT_NB_IF:
			dai_clk_mode |= DA7218_DAI_WCLK_POL_INV;
			break;
		case SND_SOC_DAIFMT_IB_NF:
			dai_clk_mode |= DA7218_DAI_CLK_POL_INV;
			break;
		case SND_SOC_DAIFMT_IB_IF:
			dai_clk_mode |= DA7218_DAI_WCLK_POL_INV |
					DA7218_DAI_CLK_POL_INV;
			break;
		default:
			return -EINVAL;
		}
1972
		break;
1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989
	case SND_SOC_DAIFMT_DSP_B:
		switch (fmt & SND_SOC_DAIFMT_INV_MASK) {
		case SND_SOC_DAIFMT_NB_NF:
			dai_clk_mode |= DA7218_DAI_CLK_POL_INV;
			break;
		case SND_SOC_DAIFMT_NB_IF:
			dai_clk_mode |= DA7218_DAI_WCLK_POL_INV |
					DA7218_DAI_CLK_POL_INV;
			break;
		case SND_SOC_DAIFMT_IB_NF:
			break;
		case SND_SOC_DAIFMT_IB_IF:
			dai_clk_mode |= DA7218_DAI_WCLK_POL_INV;
			break;
		default:
			return -EINVAL;
		}
1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014
		break;
	default:
		return -EINVAL;
	}

	switch (fmt & SND_SOC_DAIFMT_FORMAT_MASK) {
	case SND_SOC_DAIFMT_I2S:
		dai_ctrl |= DA7218_DAI_FORMAT_I2S;
		break;
	case SND_SOC_DAIFMT_LEFT_J:
		dai_ctrl |= DA7218_DAI_FORMAT_LEFT_J;
		break;
	case SND_SOC_DAIFMT_RIGHT_J:
		dai_ctrl |= DA7218_DAI_FORMAT_RIGHT_J;
		break;
	case SND_SOC_DAIFMT_DSP_B:
		dai_ctrl |= DA7218_DAI_FORMAT_DSP;
		break;
	default:
		return -EINVAL;
	}

	/* By default 64 BCLKs per WCLK is supported */
	dai_clk_mode |= DA7218_DAI_BCLKS_PER_WCLK_64;

2015 2016
	snd_soc_component_write(component, DA7218_DAI_CLK_MODE, dai_clk_mode);
	snd_soc_component_update_bits(component, DA7218_DAI_CTRL, DA7218_DAI_FORMAT_MASK,
2017 2018 2019 2020 2021 2022 2023 2024 2025
			    dai_ctrl);

	return 0;
}

static int da7218_set_dai_tdm_slot(struct snd_soc_dai *dai,
				   unsigned int tx_mask, unsigned int rx_mask,
				   int slots, int slot_width)
{
2026
	struct snd_soc_component *component = dai->component;
2027 2028 2029 2030 2031
	u8 dai_bclks_per_wclk;
	u32 frame_size;

	/* No channels enabled so disable TDM, revert to 64-bit frames */
	if (!tx_mask) {
2032
		snd_soc_component_update_bits(component, DA7218_DAI_TDM_CTRL,
2033 2034
				    DA7218_DAI_TDM_CH_EN_MASK |
				    DA7218_DAI_TDM_MODE_EN_MASK, 0);
2035
		snd_soc_component_update_bits(component, DA7218_DAI_CLK_MODE,
2036 2037 2038 2039 2040 2041 2042
				    DA7218_DAI_BCLKS_PER_WCLK_MASK,
				    DA7218_DAI_BCLKS_PER_WCLK_64);
		return 0;
	}

	/* Check we have valid slots */
	if (fls(tx_mask) > DA7218_DAI_TDM_MAX_SLOTS) {
2043
		dev_err(component->dev, "Invalid number of slots, max = %d\n",
2044 2045 2046 2047 2048 2049
			DA7218_DAI_TDM_MAX_SLOTS);
		return -EINVAL;
	}

	/* Check we have a valid offset given (first 2 bytes of rx_mask) */
	if (rx_mask >> DA7218_2BYTE_SHIFT) {
2050
		dev_err(component->dev, "Invalid slot offset, max = %d\n",
2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070
			DA7218_2BYTE_MASK);
		return -EINVAL;
	}

	/* Calculate & validate frame size based on slot info provided. */
	frame_size = slots * slot_width;
	switch (frame_size) {
	case 32:
		dai_bclks_per_wclk = DA7218_DAI_BCLKS_PER_WCLK_32;
		break;
	case 64:
		dai_bclks_per_wclk = DA7218_DAI_BCLKS_PER_WCLK_64;
		break;
	case 128:
		dai_bclks_per_wclk = DA7218_DAI_BCLKS_PER_WCLK_128;
		break;
	case 256:
		dai_bclks_per_wclk = DA7218_DAI_BCLKS_PER_WCLK_256;
		break;
	default:
2071
		dev_err(component->dev, "Invalid frame size\n");
2072 2073 2074
		return -EINVAL;
	}

2075
	snd_soc_component_update_bits(component, DA7218_DAI_CLK_MODE,
2076 2077
			    DA7218_DAI_BCLKS_PER_WCLK_MASK,
			    dai_bclks_per_wclk);
2078
	snd_soc_component_write(component, DA7218_DAI_OFFSET_LOWER,
2079
		      (rx_mask & DA7218_BYTE_MASK));
2080
	snd_soc_component_write(component, DA7218_DAI_OFFSET_UPPER,
2081
		      ((rx_mask >> DA7218_BYTE_SHIFT) & DA7218_BYTE_MASK));
2082
	snd_soc_component_update_bits(component, DA7218_DAI_TDM_CTRL,
2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094
			    DA7218_DAI_TDM_CH_EN_MASK |
			    DA7218_DAI_TDM_MODE_EN_MASK,
			    (tx_mask << DA7218_DAI_TDM_CH_EN_SHIFT) |
			    DA7218_DAI_TDM_MODE_EN_MASK);

	return 0;
}

static int da7218_hw_params(struct snd_pcm_substream *substream,
			    struct snd_pcm_hw_params *params,
			    struct snd_soc_dai *dai)
{
2095
	struct snd_soc_component *component = dai->component;
2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117
	u8 dai_ctrl = 0, fs;
	unsigned int channels;

	switch (params_width(params)) {
	case 16:
		dai_ctrl |= DA7218_DAI_WORD_LENGTH_S16_LE;
		break;
	case 20:
		dai_ctrl |= DA7218_DAI_WORD_LENGTH_S20_LE;
		break;
	case 24:
		dai_ctrl |= DA7218_DAI_WORD_LENGTH_S24_LE;
		break;
	case 32:
		dai_ctrl |= DA7218_DAI_WORD_LENGTH_S32_LE;
		break;
	default:
		return -EINVAL;
	}

	channels = params_channels(params);
	if ((channels < 1) || (channels > DA7218_DAI_CH_NUM_MAX)) {
2118
		dev_err(component->dev,
2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162
			"Invalid number of channels, only 1 to %d supported\n",
			DA7218_DAI_CH_NUM_MAX);
		return -EINVAL;
	}
	dai_ctrl |= channels << DA7218_DAI_CH_NUM_SHIFT;

	switch (params_rate(params)) {
	case 8000:
		fs = DA7218_SR_8000;
		break;
	case 11025:
		fs = DA7218_SR_11025;
		break;
	case 12000:
		fs = DA7218_SR_12000;
		break;
	case 16000:
		fs = DA7218_SR_16000;
		break;
	case 22050:
		fs = DA7218_SR_22050;
		break;
	case 24000:
		fs = DA7218_SR_24000;
		break;
	case 32000:
		fs = DA7218_SR_32000;
		break;
	case 44100:
		fs = DA7218_SR_44100;
		break;
	case 48000:
		fs = DA7218_SR_48000;
		break;
	case 88200:
		fs = DA7218_SR_88200;
		break;
	case 96000:
		fs = DA7218_SR_96000;
		break;
	default:
		return -EINVAL;
	}

2163
	snd_soc_component_update_bits(component, DA7218_DAI_CTRL,
2164 2165 2166
			    DA7218_DAI_WORD_LENGTH_MASK | DA7218_DAI_CH_NUM_MASK,
			    dai_ctrl);
	/* SRs tied for ADCs and DACs. */
2167
	snd_soc_component_write(component, DA7218_SR,
2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210
		      (fs << DA7218_SR_DAC_SHIFT) | (fs << DA7218_SR_ADC_SHIFT));

	return 0;
}

static const struct snd_soc_dai_ops da7218_dai_ops = {
	.hw_params	= da7218_hw_params,
	.set_sysclk	= da7218_set_dai_sysclk,
	.set_pll	= da7218_set_dai_pll,
	.set_fmt	= da7218_set_dai_fmt,
	.set_tdm_slot	= da7218_set_dai_tdm_slot,
};

#define DA7218_FORMATS (SNDRV_PCM_FMTBIT_S16_LE | SNDRV_PCM_FMTBIT_S20_3LE |\
			SNDRV_PCM_FMTBIT_S24_LE | SNDRV_PCM_FMTBIT_S32_LE)

static struct snd_soc_dai_driver da7218_dai = {
	.name = "da7218-hifi",
	.playback = {
		.stream_name = "Playback",
		.channels_min = 1,
		.channels_max = 4,	/* Only 2 channels of data */
		.rates = SNDRV_PCM_RATE_8000_96000,
		.formats = DA7218_FORMATS,
	},
	.capture = {
		.stream_name = "Capture",
		.channels_min = 1,
		.channels_max = 4,
		.rates = SNDRV_PCM_RATE_8000_96000,
		.formats = DA7218_FORMATS,
	},
	.ops = &da7218_dai_ops,
	.symmetric_rates = 1,
	.symmetric_channels = 1,
	.symmetric_samplebits = 1,
};


/*
 * HP Detect
 */

2211
int da7218_hpldet(struct snd_soc_component *component, struct snd_soc_jack *jack)
2212
{
2213
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
2214 2215 2216 2217 2218

	if (da7218->dev_id == DA7217_DEV_ID)
		return -EINVAL;

	da7218->jack = jack;
2219
	snd_soc_component_update_bits(component, DA7218_HPLDET_JACK,
2220 2221 2222 2223 2224 2225 2226
			    DA7218_HPLDET_JACK_EN_MASK,
			    jack ? DA7218_HPLDET_JACK_EN_MASK : 0);

	return 0;
}
EXPORT_SYMBOL_GPL(da7218_hpldet);

2227
static void da7218_micldet_irq(struct snd_soc_component *component)
2228 2229 2230 2231 2232 2233
{
	char *envp[] = {
		"EVENT=MIC_LEVEL_DETECT",
		NULL,
	};

2234
	kobject_uevent_env(&component->dev->kobj, KOBJ_CHANGE, envp);
2235 2236
}

2237
static void da7218_hpldet_irq(struct snd_soc_component *component)
2238
{
2239
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
2240 2241 2242
	u8 jack_status;
	int report;

2243
	jack_status = snd_soc_component_read32(component, DA7218_EVENT_STATUS);
2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258

	if (jack_status & DA7218_HPLDET_JACK_STS_MASK)
		report = SND_JACK_HEADPHONE;
	else
		report = 0;

	snd_soc_jack_report(da7218->jack, report, SND_JACK_HEADPHONE);
}

/*
 * IRQ
 */

static irqreturn_t da7218_irq_thread(int irq, void *data)
{
2259
	struct snd_soc_component *component = data;
2260 2261 2262
	u8 status;

	/* Read IRQ status reg */
2263
	status = snd_soc_component_read32(component, DA7218_EVENT);
2264 2265 2266
	if (!status)
		return IRQ_NONE;

2267 2268
	/* Mic level detect */
	if (status & DA7218_LVL_DET_EVENT_MASK)
2269
		da7218_micldet_irq(component);
2270

2271 2272
	/* HP detect */
	if (status & DA7218_HPLDET_JACK_EVENT_MASK)
2273
		da7218_hpldet_irq(component);
2274 2275

	/* Clear interrupts */
2276
	snd_soc_component_write(component, DA7218_EVENT, status);
2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296

	return IRQ_HANDLED;
}

/*
 * DT
 */

static const struct of_device_id da7218_of_match[] = {
	{ .compatible = "dlg,da7217", .data = (void *) DA7217_DEV_ID },
	{ .compatible = "dlg,da7218", .data = (void *) DA7218_DEV_ID },
	{ }
};
MODULE_DEVICE_TABLE(of, da7218_of_match);

static inline int da7218_of_get_id(struct device *dev)
{
	const struct of_device_id *id = of_match_device(da7218_of_match, dev);

	if (id)
2297
		return (uintptr_t)id->data;
2298 2299 2300 2301 2302
	else
		return -EINVAL;
}

static enum da7218_micbias_voltage
2303
	da7218_of_micbias_lvl(struct snd_soc_component *component, u32 val)
2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324
{
	switch (val) {
	case 1200:
		return DA7218_MICBIAS_1_2V;
	case 1600:
		return DA7218_MICBIAS_1_6V;
	case 1800:
		return DA7218_MICBIAS_1_8V;
	case 2000:
		return DA7218_MICBIAS_2_0V;
	case 2200:
		return DA7218_MICBIAS_2_2V;
	case 2400:
		return DA7218_MICBIAS_2_4V;
	case 2600:
		return DA7218_MICBIAS_2_6V;
	case 2800:
		return DA7218_MICBIAS_2_8V;
	case 3000:
		return DA7218_MICBIAS_3_0V;
	default:
2325
		dev_warn(component->dev, "Invalid micbias level");
2326 2327 2328 2329 2330
		return DA7218_MICBIAS_1_6V;
	}
}

static enum da7218_mic_amp_in_sel
2331
	da7218_of_mic_amp_in_sel(struct snd_soc_component *component, const char *str)
2332 2333 2334 2335 2336 2337 2338 2339
{
	if (!strcmp(str, "diff")) {
		return DA7218_MIC_AMP_IN_SEL_DIFF;
	} else if (!strcmp(str, "se_p")) {
		return DA7218_MIC_AMP_IN_SEL_SE_P;
	} else if (!strcmp(str, "se_n")) {
		return DA7218_MIC_AMP_IN_SEL_SE_N;
	} else {
2340
		dev_warn(component->dev, "Invalid mic input type selection");
2341 2342 2343 2344 2345
		return DA7218_MIC_AMP_IN_SEL_DIFF;
	}
}

static enum da7218_dmic_data_sel
2346
	da7218_of_dmic_data_sel(struct snd_soc_component *component, const char *str)
2347 2348 2349 2350 2351 2352
{
	if (!strcmp(str, "lrise_rfall")) {
		return DA7218_DMIC_DATA_LRISE_RFALL;
	} else if (!strcmp(str, "lfall_rrise")) {
		return DA7218_DMIC_DATA_LFALL_RRISE;
	} else {
2353
		dev_warn(component->dev, "Invalid DMIC data type selection");
2354 2355 2356 2357 2358
		return DA7218_DMIC_DATA_LRISE_RFALL;
	}
}

static enum da7218_dmic_samplephase
2359
	da7218_of_dmic_samplephase(struct snd_soc_component *component, const char *str)
2360 2361 2362 2363 2364 2365
{
	if (!strcmp(str, "on_clkedge")) {
		return DA7218_DMIC_SAMPLE_ON_CLKEDGE;
	} else if (!strcmp(str, "between_clkedge")) {
		return DA7218_DMIC_SAMPLE_BETWEEN_CLKEDGE;
	} else {
2366
		dev_warn(component->dev, "Invalid DMIC sample phase");
2367 2368 2369 2370 2371
		return DA7218_DMIC_SAMPLE_ON_CLKEDGE;
	}
}

static enum da7218_dmic_clk_rate
2372
	da7218_of_dmic_clkrate(struct snd_soc_component *component, u32 val)
2373 2374 2375 2376 2377 2378 2379
{
	switch (val) {
	case 1500000:
		return DA7218_DMIC_CLK_1_5MHZ;
	case 3000000:
		return DA7218_DMIC_CLK_3_0MHZ;
	default:
2380
		dev_warn(component->dev, "Invalid DMIC clock rate");
2381 2382 2383 2384 2385
		return DA7218_DMIC_CLK_3_0MHZ;
	}
}

static enum da7218_hpldet_jack_rate
2386
	da7218_of_jack_rate(struct snd_soc_component *component, u32 val)
2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402 2403 2404 2405
{
	switch (val) {
	case 5:
		return DA7218_HPLDET_JACK_RATE_5US;
	case 10:
		return DA7218_HPLDET_JACK_RATE_10US;
	case 20:
		return DA7218_HPLDET_JACK_RATE_20US;
	case 40:
		return DA7218_HPLDET_JACK_RATE_40US;
	case 80:
		return DA7218_HPLDET_JACK_RATE_80US;
	case 160:
		return DA7218_HPLDET_JACK_RATE_160US;
	case 320:
		return DA7218_HPLDET_JACK_RATE_320US;
	case 640:
		return DA7218_HPLDET_JACK_RATE_640US;
	default:
2406
		dev_warn(component->dev, "Invalid jack detect rate");
2407 2408 2409 2410 2411
		return DA7218_HPLDET_JACK_RATE_40US;
	}
}

static enum da7218_hpldet_jack_debounce
2412
	da7218_of_jack_debounce(struct snd_soc_component *component, u32 val)
2413 2414 2415 2416 2417 2418 2419 2420 2421 2422 2423
{
	switch (val) {
	case 0:
		return DA7218_HPLDET_JACK_DEBOUNCE_OFF;
	case 2:
		return DA7218_HPLDET_JACK_DEBOUNCE_2;
	case 3:
		return DA7218_HPLDET_JACK_DEBOUNCE_3;
	case 4:
		return DA7218_HPLDET_JACK_DEBOUNCE_4;
	default:
2424
		dev_warn(component->dev, "Invalid jack debounce");
2425 2426 2427 2428 2429
		return DA7218_HPLDET_JACK_DEBOUNCE_2;
	}
}

static enum da7218_hpldet_jack_thr
2430
	da7218_of_jack_thr(struct snd_soc_component *component, u32 val)
2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441
{
	switch (val) {
	case 84:
		return DA7218_HPLDET_JACK_THR_84PCT;
	case 88:
		return DA7218_HPLDET_JACK_THR_88PCT;
	case 92:
		return DA7218_HPLDET_JACK_THR_92PCT;
	case 96:
		return DA7218_HPLDET_JACK_THR_96PCT;
	default:
2442
		dev_warn(component->dev, "Invalid jack threshold level");
2443 2444 2445 2446
		return DA7218_HPLDET_JACK_THR_84PCT;
	}
}

2447
static struct da7218_pdata *da7218_of_to_pdata(struct snd_soc_component *component)
2448
{
2449 2450
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
	struct device_node *np = component->dev->of_node;
2451 2452 2453 2454 2455 2456
	struct device_node *hpldet_np;
	struct da7218_pdata *pdata;
	struct da7218_hpldet_pdata *hpldet_pdata;
	const char *of_str;
	u32 of_val32;

2457
	pdata = devm_kzalloc(component->dev, sizeof(*pdata), GFP_KERNEL);
2458
	if (!pdata)
2459 2460 2461
		return NULL;

	if (of_property_read_u32(np, "dlg,micbias1-lvl-millivolt", &of_val32) >= 0)
2462
		pdata->micbias1_lvl = da7218_of_micbias_lvl(component, of_val32);
2463 2464 2465 2466
	else
		pdata->micbias1_lvl = DA7218_MICBIAS_1_6V;

	if (of_property_read_u32(np, "dlg,micbias2-lvl-millivolt", &of_val32) >= 0)
2467
		pdata->micbias2_lvl = da7218_of_micbias_lvl(component, of_val32);
2468 2469 2470 2471 2472
	else
		pdata->micbias2_lvl = DA7218_MICBIAS_1_6V;

	if (!of_property_read_string(np, "dlg,mic1-amp-in-sel", &of_str))
		pdata->mic1_amp_in_sel =
2473
			da7218_of_mic_amp_in_sel(component, of_str);
2474 2475 2476 2477 2478
	else
		pdata->mic1_amp_in_sel = DA7218_MIC_AMP_IN_SEL_DIFF;

	if (!of_property_read_string(np, "dlg,mic2-amp-in-sel", &of_str))
		pdata->mic2_amp_in_sel =
2479
			da7218_of_mic_amp_in_sel(component, of_str);
2480 2481 2482 2483
	else
		pdata->mic2_amp_in_sel = DA7218_MIC_AMP_IN_SEL_DIFF;

	if (!of_property_read_string(np, "dlg,dmic1-data-sel", &of_str))
2484
		pdata->dmic1_data_sel =	da7218_of_dmic_data_sel(component, of_str);
2485 2486 2487 2488 2489
	else
		pdata->dmic1_data_sel =	DA7218_DMIC_DATA_LRISE_RFALL;

	if (!of_property_read_string(np, "dlg,dmic1-samplephase", &of_str))
		pdata->dmic1_samplephase =
2490
			da7218_of_dmic_samplephase(component, of_str);
2491 2492 2493 2494
	else
		pdata->dmic1_samplephase = DA7218_DMIC_SAMPLE_ON_CLKEDGE;

	if (of_property_read_u32(np, "dlg,dmic1-clkrate-hz", &of_val32) >= 0)
2495
		pdata->dmic1_clk_rate = da7218_of_dmic_clkrate(component, of_val32);
2496 2497 2498 2499
	else
		pdata->dmic1_clk_rate = DA7218_DMIC_CLK_3_0MHZ;

	if (!of_property_read_string(np, "dlg,dmic2-data-sel", &of_str))
2500
		pdata->dmic2_data_sel = da7218_of_dmic_data_sel(component, of_str);
2501 2502 2503 2504 2505
	else
		pdata->dmic2_data_sel =	DA7218_DMIC_DATA_LRISE_RFALL;

	if (!of_property_read_string(np, "dlg,dmic2-samplephase", &of_str))
		pdata->dmic2_samplephase =
2506
			da7218_of_dmic_samplephase(component, of_str);
2507 2508 2509 2510
	else
		pdata->dmic2_samplephase = DA7218_DMIC_SAMPLE_ON_CLKEDGE;

	if (of_property_read_u32(np, "dlg,dmic2-clkrate-hz", &of_val32) >= 0)
2511
		pdata->dmic2_clk_rate = da7218_of_dmic_clkrate(component, of_val32);
2512 2513 2514 2515 2516 2517 2518 2519 2520
	else
		pdata->dmic2_clk_rate = DA7218_DMIC_CLK_3_0MHZ;

	if (da7218->dev_id == DA7217_DEV_ID) {
		if (of_property_read_bool(np, "dlg,hp-diff-single-supply"))
			pdata->hp_diff_single_supply = true;
	}

	if (da7218->dev_id == DA7218_DEV_ID) {
2521
		hpldet_np = of_get_child_by_name(np, "da7218_hpldet");
2522 2523 2524
		if (!hpldet_np)
			return pdata;

2525
		hpldet_pdata = devm_kzalloc(component->dev, sizeof(*hpldet_pdata),
2526 2527 2528 2529 2530 2531 2532 2533 2534 2535
					    GFP_KERNEL);
		if (!hpldet_pdata) {
			of_node_put(hpldet_np);
			return pdata;
		}
		pdata->hpldet_pdata = hpldet_pdata;

		if (of_property_read_u32(hpldet_np, "dlg,jack-rate-us",
					 &of_val32) >= 0)
			hpldet_pdata->jack_rate =
2536
				da7218_of_jack_rate(component, of_val32);
2537 2538 2539 2540 2541 2542
		else
			hpldet_pdata->jack_rate = DA7218_HPLDET_JACK_RATE_40US;

		if (of_property_read_u32(hpldet_np, "dlg,jack-debounce",
					 &of_val32) >= 0)
			hpldet_pdata->jack_debounce =
2543
				da7218_of_jack_debounce(component, of_val32);
2544 2545 2546 2547 2548 2549 2550
		else
			hpldet_pdata->jack_debounce =
				DA7218_HPLDET_JACK_DEBOUNCE_2;

		if (of_property_read_u32(hpldet_np, "dlg,jack-threshold-pct",
					 &of_val32) >= 0)
			hpldet_pdata->jack_thr =
2551
				da7218_of_jack_thr(component, of_val32);
2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574
		else
			hpldet_pdata->jack_thr = DA7218_HPLDET_JACK_THR_84PCT;

		if (of_property_read_bool(hpldet_np, "dlg,comp-inv"))
			hpldet_pdata->comp_inv = true;

		if (of_property_read_bool(hpldet_np, "dlg,hyst"))
			hpldet_pdata->hyst = true;

		if (of_property_read_bool(hpldet_np, "dlg,discharge"))
			hpldet_pdata->discharge = true;

		of_node_put(hpldet_np);
	}

	return pdata;
}


/*
 * Codec driver functions
 */

2575
static int da7218_set_bias_level(struct snd_soc_component *component,
2576 2577
				 enum snd_soc_bias_level level)
{
2578
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
2579 2580 2581 2582 2583
	int ret;

	switch (level) {
	case SND_SOC_BIAS_ON:
		break;
2584 2585
	case SND_SOC_BIAS_PREPARE:
		/* Enable MCLK for transition to ON state */
2586
		if (snd_soc_component_get_bias_level(component) == SND_SOC_BIAS_STANDBY) {
2587 2588 2589
			if (da7218->mclk) {
				ret = clk_prepare_enable(da7218->mclk);
				if (ret) {
2590
					dev_err(component->dev, "Failed to enable mclk\n");
2591 2592 2593
					return ret;
				}
			}
2594
		}
2595

2596 2597
		break;
	case SND_SOC_BIAS_STANDBY:
2598
		if (snd_soc_component_get_bias_level(component) == SND_SOC_BIAS_OFF) {
2599
			/* Master bias */
2600
			snd_soc_component_update_bits(component, DA7218_REFERENCES,
2601 2602 2603 2604
					    DA7218_BIAS_EN_MASK,
					    DA7218_BIAS_EN_MASK);

			/* Internal LDO */
2605
			snd_soc_component_update_bits(component, DA7218_LDO_CTRL,
2606 2607
					    DA7218_LDO_EN_MASK,
					    DA7218_LDO_EN_MASK);
2608 2609 2610 2611
		} else {
			/* Remove MCLK */
			if (da7218->mclk)
				clk_disable_unprepare(da7218->mclk);
2612 2613 2614 2615 2616 2617
		}
		break;
	case SND_SOC_BIAS_OFF:
		/* Only disable if jack detection disabled */
		if (!da7218->jack) {
			/* Internal LDO */
2618
			snd_soc_component_update_bits(component, DA7218_LDO_CTRL,
2619 2620 2621
					    DA7218_LDO_EN_MASK, 0);

			/* Master bias */
2622
			snd_soc_component_update_bits(component, DA7218_REFERENCES,
2623 2624 2625 2626 2627 2628 2629 2630 2631 2632 2633 2634 2635 2636
					    DA7218_BIAS_EN_MASK, 0);
		}
		break;
	}

	return 0;
}

static const char *da7218_supply_names[DA7218_NUM_SUPPLIES] = {
	[DA7218_SUPPLY_VDD] = "VDD",
	[DA7218_SUPPLY_VDDMIC] = "VDDMIC",
	[DA7218_SUPPLY_VDDIO] = "VDDIO",
};

2637
static int da7218_handle_supplies(struct snd_soc_component *component)
2638
{
2639
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
2640 2641 2642 2643 2644 2645 2646 2647
	struct regulator *vddio;
	u8 io_voltage_lvl = DA7218_IO_VOLTAGE_LEVEL_2_5V_3_6V;
	int i, ret;

	/* Get required supplies */
	for (i = 0; i < DA7218_NUM_SUPPLIES; ++i)
		da7218->supplies[i].supply = da7218_supply_names[i];

2648
	ret = devm_regulator_bulk_get(component->dev, DA7218_NUM_SUPPLIES,
2649 2650
				      da7218->supplies);
	if (ret) {
2651
		dev_err(component->dev, "Failed to get supplies\n");
2652 2653 2654 2655 2656 2657 2658
		return ret;
	}

	/* Determine VDDIO voltage provided */
	vddio = da7218->supplies[DA7218_SUPPLY_VDDIO].consumer;
	ret = regulator_get_voltage(vddio);
	if (ret < 1500000)
2659
		dev_warn(component->dev, "Invalid VDDIO voltage\n");
2660 2661 2662 2663 2664 2665
	else if (ret < 2500000)
		io_voltage_lvl = DA7218_IO_VOLTAGE_LEVEL_1_5V_2_5V;

	/* Enable main supplies */
	ret = regulator_bulk_enable(DA7218_NUM_SUPPLIES, da7218->supplies);
	if (ret) {
2666
		dev_err(component->dev, "Failed to enable supplies\n");
2667 2668 2669 2670
		return ret;
	}

	/* Ensure device in active mode */
2671
	snd_soc_component_write(component, DA7218_SYSTEM_ACTIVE, DA7218_SYSTEM_ACTIVE_MASK);
2672 2673

	/* Update IO voltage level range */
2674
	snd_soc_component_write(component, DA7218_IO_CTRL, io_voltage_lvl);
2675 2676 2677 2678

	return 0;
}

2679
static void da7218_handle_pdata(struct snd_soc_component *component)
2680
{
2681
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705 2706 2707 2708 2709 2710 2711 2712 2713 2714 2715 2716 2717 2718 2719 2720 2721
	struct da7218_pdata *pdata = da7218->pdata;

	if (pdata) {
		u8 micbias_lvl = 0, dmic_cfg = 0;

		/* Mic Bias voltages */
		switch (pdata->micbias1_lvl) {
		case DA7218_MICBIAS_1_2V:
			micbias_lvl |= DA7218_MICBIAS_1_LP_MODE_MASK;
			break;
		case DA7218_MICBIAS_1_6V:
		case DA7218_MICBIAS_1_8V:
		case DA7218_MICBIAS_2_0V:
		case DA7218_MICBIAS_2_2V:
		case DA7218_MICBIAS_2_4V:
		case DA7218_MICBIAS_2_6V:
		case DA7218_MICBIAS_2_8V:
		case DA7218_MICBIAS_3_0V:
			micbias_lvl |= (pdata->micbias1_lvl <<
					DA7218_MICBIAS_1_LEVEL_SHIFT);
			break;
		}

		switch (pdata->micbias2_lvl) {
		case DA7218_MICBIAS_1_2V:
			micbias_lvl |= DA7218_MICBIAS_2_LP_MODE_MASK;
			break;
		case DA7218_MICBIAS_1_6V:
		case DA7218_MICBIAS_1_8V:
		case DA7218_MICBIAS_2_0V:
		case DA7218_MICBIAS_2_2V:
		case DA7218_MICBIAS_2_4V:
		case DA7218_MICBIAS_2_6V:
		case DA7218_MICBIAS_2_8V:
		case DA7218_MICBIAS_3_0V:
			micbias_lvl |= (pdata->micbias2_lvl <<
					 DA7218_MICBIAS_2_LEVEL_SHIFT);
			break;
		}

2722
		snd_soc_component_write(component, DA7218_MICBIAS_CTRL, micbias_lvl);
2723 2724 2725 2726 2727 2728

		/* Mic */
		switch (pdata->mic1_amp_in_sel) {
		case DA7218_MIC_AMP_IN_SEL_DIFF:
		case DA7218_MIC_AMP_IN_SEL_SE_P:
		case DA7218_MIC_AMP_IN_SEL_SE_N:
2729
			snd_soc_component_write(component, DA7218_MIC_1_SELECT,
2730 2731 2732 2733 2734 2735 2736 2737
				      pdata->mic1_amp_in_sel);
			break;
		}

		switch (pdata->mic2_amp_in_sel) {
		case DA7218_MIC_AMP_IN_SEL_DIFF:
		case DA7218_MIC_AMP_IN_SEL_SE_P:
		case DA7218_MIC_AMP_IN_SEL_SE_N:
2738
			snd_soc_component_write(component, DA7218_MIC_2_SELECT,
2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749 2750 2751 2752 2753 2754 2755 2756 2757 2758 2759 2760 2761 2762 2763 2764 2765 2766 2767
				      pdata->mic2_amp_in_sel);
			break;
		}

		/* DMic */
		switch (pdata->dmic1_data_sel) {
		case DA7218_DMIC_DATA_LFALL_RRISE:
		case DA7218_DMIC_DATA_LRISE_RFALL:
			dmic_cfg |= (pdata->dmic1_data_sel <<
				     DA7218_DMIC_1_DATA_SEL_SHIFT);
			break;
		}

		switch (pdata->dmic1_samplephase) {
		case DA7218_DMIC_SAMPLE_ON_CLKEDGE:
		case DA7218_DMIC_SAMPLE_BETWEEN_CLKEDGE:
			dmic_cfg |= (pdata->dmic1_samplephase <<
				     DA7218_DMIC_1_SAMPLEPHASE_SHIFT);
			break;
		}

		switch (pdata->dmic1_clk_rate) {
		case DA7218_DMIC_CLK_3_0MHZ:
		case DA7218_DMIC_CLK_1_5MHZ:
			dmic_cfg |= (pdata->dmic1_clk_rate <<
				     DA7218_DMIC_1_CLK_RATE_SHIFT);
			break;
		}

2768
		snd_soc_component_update_bits(component, DA7218_DMIC_1_CTRL,
2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790 2791 2792 2793 2794 2795 2796 2797
				    DA7218_DMIC_1_DATA_SEL_MASK |
				    DA7218_DMIC_1_SAMPLEPHASE_MASK |
				    DA7218_DMIC_1_CLK_RATE_MASK, dmic_cfg);

		dmic_cfg = 0;
		switch (pdata->dmic2_data_sel) {
		case DA7218_DMIC_DATA_LFALL_RRISE:
		case DA7218_DMIC_DATA_LRISE_RFALL:
			dmic_cfg |= (pdata->dmic2_data_sel <<
				     DA7218_DMIC_2_DATA_SEL_SHIFT);
			break;
		}

		switch (pdata->dmic2_samplephase) {
		case DA7218_DMIC_SAMPLE_ON_CLKEDGE:
		case DA7218_DMIC_SAMPLE_BETWEEN_CLKEDGE:
			dmic_cfg |= (pdata->dmic2_samplephase <<
				     DA7218_DMIC_2_SAMPLEPHASE_SHIFT);
			break;
		}

		switch (pdata->dmic2_clk_rate) {
		case DA7218_DMIC_CLK_3_0MHZ:
		case DA7218_DMIC_CLK_1_5MHZ:
			dmic_cfg |= (pdata->dmic2_clk_rate <<
				     DA7218_DMIC_2_CLK_RATE_SHIFT);
			break;
		}

2798
		snd_soc_component_update_bits(component, DA7218_DMIC_2_CTRL,
2799 2800 2801 2802 2803 2804 2805 2806 2807 2808
				    DA7218_DMIC_2_DATA_SEL_MASK |
				    DA7218_DMIC_2_SAMPLEPHASE_MASK |
				    DA7218_DMIC_2_CLK_RATE_MASK, dmic_cfg);

		/* DA7217 Specific */
		if (da7218->dev_id == DA7217_DEV_ID) {
			da7218->hp_single_supply =
				pdata->hp_diff_single_supply;

			if (da7218->hp_single_supply) {
2809
				snd_soc_component_write(component, DA7218_HP_DIFF_UNLOCK,
2810
					      DA7218_HP_DIFF_UNLOCK_VAL);
2811
				snd_soc_component_update_bits(component, DA7218_HP_DIFF_CTRL,
2812 2813 2814 2815 2816 2817 2818 2819 2820 2821 2822 2823 2824 2825 2826 2827 2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858 2859
						    DA7218_HP_AMP_SINGLE_SUPPLY_EN_MASK,
						    DA7218_HP_AMP_SINGLE_SUPPLY_EN_MASK);
			}
		}

		/* DA7218 Specific */
		if ((da7218->dev_id == DA7218_DEV_ID) &&
		    (pdata->hpldet_pdata)) {
			struct da7218_hpldet_pdata *hpldet_pdata =
				pdata->hpldet_pdata;
			u8 hpldet_cfg = 0;

			switch (hpldet_pdata->jack_rate) {
			case DA7218_HPLDET_JACK_RATE_5US:
			case DA7218_HPLDET_JACK_RATE_10US:
			case DA7218_HPLDET_JACK_RATE_20US:
			case DA7218_HPLDET_JACK_RATE_40US:
			case DA7218_HPLDET_JACK_RATE_80US:
			case DA7218_HPLDET_JACK_RATE_160US:
			case DA7218_HPLDET_JACK_RATE_320US:
			case DA7218_HPLDET_JACK_RATE_640US:
				hpldet_cfg |=
					(hpldet_pdata->jack_rate <<
					 DA7218_HPLDET_JACK_RATE_SHIFT);
				break;
			}

			switch (hpldet_pdata->jack_debounce) {
			case DA7218_HPLDET_JACK_DEBOUNCE_OFF:
			case DA7218_HPLDET_JACK_DEBOUNCE_2:
			case DA7218_HPLDET_JACK_DEBOUNCE_3:
			case DA7218_HPLDET_JACK_DEBOUNCE_4:
				hpldet_cfg |=
					(hpldet_pdata->jack_debounce <<
					 DA7218_HPLDET_JACK_DEBOUNCE_SHIFT);
				break;
			}

			switch (hpldet_pdata->jack_thr) {
			case DA7218_HPLDET_JACK_THR_84PCT:
			case DA7218_HPLDET_JACK_THR_88PCT:
			case DA7218_HPLDET_JACK_THR_92PCT:
			case DA7218_HPLDET_JACK_THR_96PCT:
				hpldet_cfg |=
					(hpldet_pdata->jack_thr <<
					 DA7218_HPLDET_JACK_THR_SHIFT);
				break;
			}
2860
			snd_soc_component_update_bits(component, DA7218_HPLDET_JACK,
2861 2862 2863 2864 2865 2866 2867 2868 2869 2870 2871 2872 2873 2874 2875
					    DA7218_HPLDET_JACK_RATE_MASK |
					    DA7218_HPLDET_JACK_DEBOUNCE_MASK |
					    DA7218_HPLDET_JACK_THR_MASK,
					    hpldet_cfg);

			hpldet_cfg = 0;
			if (hpldet_pdata->comp_inv)
				hpldet_cfg |= DA7218_HPLDET_COMP_INV_MASK;

			if (hpldet_pdata->hyst)
				hpldet_cfg |= DA7218_HPLDET_HYST_EN_MASK;

			if (hpldet_pdata->discharge)
				hpldet_cfg |= DA7218_HPLDET_DISCHARGE_EN_MASK;

2876
			snd_soc_component_write(component, DA7218_HPLDET_CTRL, hpldet_cfg);
2877 2878 2879 2880
		}
	}
}

2881
static int da7218_probe(struct snd_soc_component *component)
2882
{
2883
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
2884 2885 2886
	int ret;

	/* Regulator configuration */
2887
	ret = da7218_handle_supplies(component);
2888 2889 2890 2891
	if (ret)
		return ret;

	/* Handle DT/Platform data */
2892 2893
	if (component->dev->of_node)
		da7218->pdata = da7218_of_to_pdata(component);
2894
	else
2895
		da7218->pdata = dev_get_platdata(component->dev);
2896

2897
	da7218_handle_pdata(component);
2898 2899

	/* Check if MCLK provided, if not the clock is NULL */
2900
	da7218->mclk = devm_clk_get(component->dev, "mclk");
2901 2902 2903 2904 2905 2906 2907 2908 2909 2910
	if (IS_ERR(da7218->mclk)) {
		if (PTR_ERR(da7218->mclk) != -ENOENT) {
			ret = PTR_ERR(da7218->mclk);
			goto err_disable_reg;
		} else {
			da7218->mclk = NULL;
		}
	}

	/* Default PC to free-running */
2911
	snd_soc_component_write(component, DA7218_PC_COUNT, DA7218_PC_FREERUN_MASK);
2912 2913 2914 2915 2916

	/*
	 * Default Output Filter mixers to off otherwise DAPM will power
	 * Mic to HP passthrough paths by default at startup.
	 */
2917 2918
	snd_soc_component_write(component, DA7218_DROUTING_OUTFILT_1L, 0);
	snd_soc_component_write(component, DA7218_DROUTING_OUTFILT_1R, 0);
2919 2920

	/* Default CP to normal load, power mode */
2921
	snd_soc_component_update_bits(component, DA7218_CP_CTRL,
2922 2923 2924
			    DA7218_CP_SMALL_SWITCH_FREQ_EN_MASK, 0);

	/* Default gain ramping */
2925
	snd_soc_component_update_bits(component, DA7218_MIXIN_1_CTRL,
2926 2927
			    DA7218_MIXIN_1_AMP_RAMP_EN_MASK,
			    DA7218_MIXIN_1_AMP_RAMP_EN_MASK);
2928
	snd_soc_component_update_bits(component, DA7218_MIXIN_2_CTRL,
2929 2930
			    DA7218_MIXIN_2_AMP_RAMP_EN_MASK,
			    DA7218_MIXIN_2_AMP_RAMP_EN_MASK);
2931
	snd_soc_component_update_bits(component, DA7218_IN_1L_FILTER_CTRL,
2932 2933
			    DA7218_IN_1L_RAMP_EN_MASK,
			    DA7218_IN_1L_RAMP_EN_MASK);
2934
	snd_soc_component_update_bits(component, DA7218_IN_1R_FILTER_CTRL,
2935 2936
			    DA7218_IN_1R_RAMP_EN_MASK,
			    DA7218_IN_1R_RAMP_EN_MASK);
2937
	snd_soc_component_update_bits(component, DA7218_IN_2L_FILTER_CTRL,
2938 2939
			    DA7218_IN_2L_RAMP_EN_MASK,
			    DA7218_IN_2L_RAMP_EN_MASK);
2940
	snd_soc_component_update_bits(component, DA7218_IN_2R_FILTER_CTRL,
2941 2942
			    DA7218_IN_2R_RAMP_EN_MASK,
			    DA7218_IN_2R_RAMP_EN_MASK);
2943
	snd_soc_component_update_bits(component, DA7218_DGS_GAIN_CTRL,
2944
			    DA7218_DGS_RAMP_EN_MASK, DA7218_DGS_RAMP_EN_MASK);
2945
	snd_soc_component_update_bits(component, DA7218_OUT_1L_FILTER_CTRL,
2946 2947
			    DA7218_OUT_1L_RAMP_EN_MASK,
			    DA7218_OUT_1L_RAMP_EN_MASK);
2948
	snd_soc_component_update_bits(component, DA7218_OUT_1R_FILTER_CTRL,
2949 2950
			    DA7218_OUT_1R_RAMP_EN_MASK,
			    DA7218_OUT_1R_RAMP_EN_MASK);
2951
	snd_soc_component_update_bits(component, DA7218_HP_L_CTRL,
2952 2953
			    DA7218_HP_L_AMP_RAMP_EN_MASK,
			    DA7218_HP_L_AMP_RAMP_EN_MASK);
2954
	snd_soc_component_update_bits(component, DA7218_HP_R_CTRL,
2955 2956 2957 2958
			    DA7218_HP_R_AMP_RAMP_EN_MASK,
			    DA7218_HP_R_AMP_RAMP_EN_MASK);

	/* Default infinite tone gen, start/stop by Kcontrol */
2959
	snd_soc_component_write(component, DA7218_TONE_GEN_CYCLES, DA7218_BEEP_CYCLES_MASK);
2960 2961 2962

	/* DA7217 specific config */
	if (da7218->dev_id == DA7217_DEV_ID) {
2963
		snd_soc_component_update_bits(component, DA7218_HP_DIFF_CTRL,
2964 2965 2966 2967
				    DA7218_HP_AMP_DIFF_MODE_EN_MASK,
				    DA7218_HP_AMP_DIFF_MODE_EN_MASK);

		/* Only DA7218 supports HP detect, mask off for DA7217 */
2968
		snd_soc_component_write(component, DA7218_EVENT_MASK,
2969 2970 2971 2972
			      DA7218_HPLDET_JACK_EVENT_IRQ_MSK_MASK);
	}

	if (da7218->irq) {
2973
		ret = devm_request_threaded_irq(component->dev, da7218->irq, NULL,
2974 2975
						da7218_irq_thread,
						IRQF_TRIGGER_LOW | IRQF_ONESHOT,
2976
						"da7218", component);
2977
		if (ret != 0) {
2978
			dev_err(component->dev, "Failed to request IRQ %d: %d\n",
2979 2980 2981 2982 2983 2984 2985 2986 2987 2988 2989 2990 2991 2992
				da7218->irq, ret);
			goto err_disable_reg;
		}

	}

	return 0;

err_disable_reg:
	regulator_bulk_disable(DA7218_NUM_SUPPLIES, da7218->supplies);

	return ret;
}

2993
static void da7218_remove(struct snd_soc_component *component)
2994
{
2995
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
2996 2997 2998 2999 3000

	regulator_bulk_disable(DA7218_NUM_SUPPLIES, da7218->supplies);
}

#ifdef CONFIG_PM
3001
static int da7218_suspend(struct snd_soc_component *component)
3002
{
3003
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
3004

3005
	da7218_set_bias_level(component, SND_SOC_BIAS_OFF);
3006 3007 3008

	/* Put device into standby mode if jack detection disabled */
	if (!da7218->jack)
3009
		snd_soc_component_write(component, DA7218_SYSTEM_ACTIVE, 0);
3010 3011 3012 3013

	return 0;
}

3014
static int da7218_resume(struct snd_soc_component *component)
3015
{
3016
	struct da7218_priv *da7218 = snd_soc_component_get_drvdata(component);
3017 3018 3019

	/* Put device into active mode if previously moved to standby */
	if (!da7218->jack)
3020
		snd_soc_component_write(component, DA7218_SYSTEM_ACTIVE,
3021 3022
			      DA7218_SYSTEM_ACTIVE_MASK);

3023
	da7218_set_bias_level(component, SND_SOC_BIAS_STANDBY);
3024 3025 3026 3027 3028 3029 3030 3031

	return 0;
}
#else
#define da7218_suspend NULL
#define da7218_resume NULL
#endif

3032
static const struct snd_soc_component_driver soc_component_dev_da7218 = {
3033 3034 3035 3036 3037
	.probe			= da7218_probe,
	.remove			= da7218_remove,
	.suspend		= da7218_suspend,
	.resume			= da7218_resume,
	.set_bias_level		= da7218_set_bias_level,
3038 3039 3040 3041 3042 3043 3044 3045 3046 3047
	.controls		= da7218_snd_controls,
	.num_controls		= ARRAY_SIZE(da7218_snd_controls),
	.dapm_widgets		= da7218_dapm_widgets,
	.num_dapm_widgets	= ARRAY_SIZE(da7218_dapm_widgets),
	.dapm_routes		= da7218_audio_map,
	.num_dapm_routes	= ARRAY_SIZE(da7218_audio_map),
	.idle_bias_on		= 1,
	.use_pmdown_time	= 1,
	.endianness		= 1,
	.non_legacy_dai_naming	= 1,
3048 3049 3050 3051 3052 3053 3054 3055 3056 3057 3058 3059 3060 3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076 3077 3078 3079 3080 3081 3082 3083 3084 3085 3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113 3114 3115 3116 3117 3118 3119 3120 3121 3122 3123 3124 3125 3126 3127 3128 3129 3130 3131 3132 3133 3134 3135 3136 3137 3138 3139 3140 3141 3142 3143 3144 3145 3146 3147 3148 3149 3150 3151 3152 3153 3154 3155 3156 3157 3158 3159 3160 3161 3162 3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173 3174 3175 3176 3177 3178 3179 3180 3181 3182 3183 3184 3185 3186 3187 3188 3189 3190 3191 3192 3193 3194 3195 3196 3197 3198 3199 3200 3201 3202 3203 3204 3205 3206 3207 3208 3209 3210 3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221 3222 3223 3224 3225 3226 3227 3228 3229 3230 3231 3232 3233 3234 3235 3236 3237 3238 3239 3240 3241 3242
};


/*
 * Regmap configs
 */

static struct reg_default da7218_reg_defaults[] = {
	{ DA7218_SYSTEM_ACTIVE, 0x00 },
	{ DA7218_CIF_CTRL, 0x00 },
	{ DA7218_SPARE1, 0x00 },
	{ DA7218_SR, 0xAA },
	{ DA7218_PC_COUNT, 0x02 },
	{ DA7218_GAIN_RAMP_CTRL, 0x00 },
	{ DA7218_CIF_TIMEOUT_CTRL, 0x01 },
	{ DA7218_SYSTEM_MODES_INPUT, 0x00 },
	{ DA7218_SYSTEM_MODES_OUTPUT, 0x00 },
	{ DA7218_IN_1L_FILTER_CTRL, 0x00 },
	{ DA7218_IN_1R_FILTER_CTRL, 0x00 },
	{ DA7218_IN_2L_FILTER_CTRL, 0x00 },
	{ DA7218_IN_2R_FILTER_CTRL, 0x00 },
	{ DA7218_OUT_1L_FILTER_CTRL, 0x40 },
	{ DA7218_OUT_1R_FILTER_CTRL, 0x40 },
	{ DA7218_OUT_1_HPF_FILTER_CTRL, 0x80 },
	{ DA7218_OUT_1_EQ_12_FILTER_CTRL, 0x77 },
	{ DA7218_OUT_1_EQ_34_FILTER_CTRL, 0x77 },
	{ DA7218_OUT_1_EQ_5_FILTER_CTRL, 0x07 },
	{ DA7218_OUT_1_BIQ_5STAGE_CTRL, 0x40 },
	{ DA7218_OUT_1_BIQ_5STAGE_DATA, 0x00 },
	{ DA7218_OUT_1_BIQ_5STAGE_ADDR, 0x00 },
	{ DA7218_MIXIN_1_CTRL, 0x48 },
	{ DA7218_MIXIN_1_GAIN, 0x03 },
	{ DA7218_MIXIN_2_CTRL, 0x48 },
	{ DA7218_MIXIN_2_GAIN, 0x03 },
	{ DA7218_ALC_CTRL1, 0x00 },
	{ DA7218_ALC_CTRL2, 0x00 },
	{ DA7218_ALC_CTRL3, 0x00 },
	{ DA7218_ALC_NOISE, 0x3F },
	{ DA7218_ALC_TARGET_MIN, 0x3F },
	{ DA7218_ALC_TARGET_MAX, 0x00 },
	{ DA7218_ALC_GAIN_LIMITS, 0xFF },
	{ DA7218_ALC_ANA_GAIN_LIMITS, 0x71 },
	{ DA7218_ALC_ANTICLIP_CTRL, 0x00 },
	{ DA7218_AGS_ENABLE, 0x00 },
	{ DA7218_AGS_TRIGGER, 0x09 },
	{ DA7218_AGS_ATT_MAX, 0x00 },
	{ DA7218_AGS_TIMEOUT, 0x00 },
	{ DA7218_AGS_ANTICLIP_CTRL, 0x00 },
	{ DA7218_ENV_TRACK_CTRL, 0x00 },
	{ DA7218_LVL_DET_CTRL, 0x00 },
	{ DA7218_LVL_DET_LEVEL, 0x7F },
	{ DA7218_DGS_TRIGGER, 0x24 },
	{ DA7218_DGS_ENABLE, 0x00 },
	{ DA7218_DGS_RISE_FALL, 0x50 },
	{ DA7218_DGS_SYNC_DELAY, 0xA3 },
	{ DA7218_DGS_SYNC_DELAY2, 0x31 },
	{ DA7218_DGS_SYNC_DELAY3, 0x11 },
	{ DA7218_DGS_LEVELS, 0x01 },
	{ DA7218_DGS_GAIN_CTRL, 0x74 },
	{ DA7218_DROUTING_OUTDAI_1L, 0x01 },
	{ DA7218_DMIX_OUTDAI_1L_INFILT_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1L_INFILT_1R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1L_INFILT_2L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1L_INFILT_2R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1L_TONEGEN_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1L_INDAI_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1L_INDAI_1R_GAIN, 0x1C },
	{ DA7218_DROUTING_OUTDAI_1R, 0x04 },
	{ DA7218_DMIX_OUTDAI_1R_INFILT_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1R_INFILT_1R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1R_INFILT_2L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1R_INFILT_2R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1R_TONEGEN_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1R_INDAI_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_1R_INDAI_1R_GAIN, 0x1C },
	{ DA7218_DROUTING_OUTFILT_1L, 0x01 },
	{ DA7218_DMIX_OUTFILT_1L_INFILT_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1L_INFILT_1R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1L_INFILT_2L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1L_INFILT_2R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1L_TONEGEN_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1L_INDAI_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1L_INDAI_1R_GAIN, 0x1C },
	{ DA7218_DROUTING_OUTFILT_1R, 0x04 },
	{ DA7218_DMIX_OUTFILT_1R_INFILT_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1R_INFILT_1R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1R_INFILT_2L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1R_INFILT_2R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1R_TONEGEN_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1R_INDAI_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTFILT_1R_INDAI_1R_GAIN, 0x1C },
	{ DA7218_DROUTING_OUTDAI_2L, 0x04 },
	{ DA7218_DMIX_OUTDAI_2L_INFILT_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2L_INFILT_1R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2L_INFILT_2L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2L_INFILT_2R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2L_TONEGEN_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2L_INDAI_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2L_INDAI_1R_GAIN, 0x1C },
	{ DA7218_DROUTING_OUTDAI_2R, 0x08 },
	{ DA7218_DMIX_OUTDAI_2R_INFILT_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2R_INFILT_1R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2R_INFILT_2L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2R_INFILT_2R_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2R_TONEGEN_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2R_INDAI_1L_GAIN, 0x1C },
	{ DA7218_DMIX_OUTDAI_2R_INDAI_1R_GAIN, 0x1C },
	{ DA7218_DAI_CTRL, 0x28 },
	{ DA7218_DAI_TDM_CTRL, 0x40 },
	{ DA7218_DAI_OFFSET_LOWER, 0x00 },
	{ DA7218_DAI_OFFSET_UPPER, 0x00 },
	{ DA7218_DAI_CLK_MODE, 0x01 },
	{ DA7218_PLL_CTRL, 0x04 },
	{ DA7218_PLL_FRAC_TOP, 0x00 },
	{ DA7218_PLL_FRAC_BOT, 0x00 },
	{ DA7218_PLL_INTEGER, 0x20 },
	{ DA7218_DAC_NG_CTRL, 0x00 },
	{ DA7218_DAC_NG_SETUP_TIME, 0x00 },
	{ DA7218_DAC_NG_OFF_THRESH, 0x00 },
	{ DA7218_DAC_NG_ON_THRESH, 0x00 },
	{ DA7218_TONE_GEN_CFG2, 0x00 },
	{ DA7218_TONE_GEN_FREQ1_L, 0x55 },
	{ DA7218_TONE_GEN_FREQ1_U, 0x15 },
	{ DA7218_TONE_GEN_FREQ2_L, 0x00 },
	{ DA7218_TONE_GEN_FREQ2_U, 0x40 },
	{ DA7218_TONE_GEN_CYCLES, 0x00 },
	{ DA7218_TONE_GEN_ON_PER, 0x02 },
	{ DA7218_TONE_GEN_OFF_PER, 0x01 },
	{ DA7218_CP_CTRL, 0x60 },
	{ DA7218_CP_DELAY, 0x11 },
	{ DA7218_CP_VOL_THRESHOLD1, 0x0E },
	{ DA7218_MIC_1_CTRL, 0x40 },
	{ DA7218_MIC_1_GAIN, 0x01 },
	{ DA7218_MIC_1_SELECT, 0x00 },
	{ DA7218_MIC_2_CTRL, 0x40 },
	{ DA7218_MIC_2_GAIN, 0x01 },
	{ DA7218_MIC_2_SELECT, 0x00 },
	{ DA7218_IN_1_HPF_FILTER_CTRL, 0x80 },
	{ DA7218_IN_2_HPF_FILTER_CTRL, 0x80 },
	{ DA7218_ADC_1_CTRL, 0x07 },
	{ DA7218_ADC_2_CTRL, 0x07 },
	{ DA7218_MIXOUT_L_CTRL, 0x00 },
	{ DA7218_MIXOUT_L_GAIN, 0x03 },
	{ DA7218_MIXOUT_R_CTRL, 0x00 },
	{ DA7218_MIXOUT_R_GAIN, 0x03 },
	{ DA7218_HP_L_CTRL, 0x40 },
	{ DA7218_HP_L_GAIN, 0x3B },
	{ DA7218_HP_R_CTRL, 0x40 },
	{ DA7218_HP_R_GAIN, 0x3B },
	{ DA7218_HP_DIFF_CTRL, 0x00 },
	{ DA7218_HP_DIFF_UNLOCK, 0xC3 },
	{ DA7218_HPLDET_JACK, 0x0B },
	{ DA7218_HPLDET_CTRL, 0x00 },
	{ DA7218_REFERENCES, 0x08 },
	{ DA7218_IO_CTRL, 0x00 },
	{ DA7218_LDO_CTRL, 0x00 },
	{ DA7218_SIDETONE_CTRL, 0x40 },
	{ DA7218_SIDETONE_IN_SELECT, 0x00 },
	{ DA7218_SIDETONE_GAIN, 0x1C },
	{ DA7218_DROUTING_ST_OUTFILT_1L, 0x01 },
	{ DA7218_DROUTING_ST_OUTFILT_1R, 0x02 },
	{ DA7218_SIDETONE_BIQ_3STAGE_DATA, 0x00 },
	{ DA7218_SIDETONE_BIQ_3STAGE_ADDR, 0x00 },
	{ DA7218_EVENT_MASK, 0x00 },
	{ DA7218_DMIC_1_CTRL, 0x00 },
	{ DA7218_DMIC_2_CTRL, 0x00 },
	{ DA7218_IN_1L_GAIN, 0x6F },
	{ DA7218_IN_1R_GAIN, 0x6F },
	{ DA7218_IN_2L_GAIN, 0x6F },
	{ DA7218_IN_2R_GAIN, 0x6F },
	{ DA7218_OUT_1L_GAIN, 0x6F },
	{ DA7218_OUT_1R_GAIN, 0x6F },
	{ DA7218_MICBIAS_CTRL, 0x00 },
	{ DA7218_MICBIAS_EN, 0x00 },
};

static bool da7218_volatile_register(struct device *dev, unsigned int reg)
{
	switch (reg) {
	case DA7218_STATUS1:
	case DA7218_SOFT_RESET:
	case DA7218_SYSTEM_STATUS:
	case DA7218_CALIB_CTRL:
	case DA7218_CALIB_OFFSET_AUTO_M_1:
	case DA7218_CALIB_OFFSET_AUTO_U_1:
	case DA7218_CALIB_OFFSET_AUTO_M_2:
	case DA7218_CALIB_OFFSET_AUTO_U_2:
	case DA7218_PLL_STATUS:
	case DA7218_PLL_REFOSC_CAL:
	case DA7218_TONE_GEN_CFG1:
	case DA7218_ADC_MODE:
	case DA7218_HP_SNGL_CTRL:
	case DA7218_HPLDET_TEST:
	case DA7218_EVENT_STATUS:
	case DA7218_EVENT:
3243
		return true;
3244
	default:
3245
		return false;
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	}
}

static const struct regmap_config da7218_regmap_config = {
	.reg_bits = 8,
	.val_bits = 8,

	.max_register = DA7218_MICBIAS_EN,
	.reg_defaults = da7218_reg_defaults,
	.num_reg_defaults = ARRAY_SIZE(da7218_reg_defaults),
	.volatile_reg = da7218_volatile_register,
	.cache_type = REGCACHE_RBTREE,
};


/*
 * I2C layer
 */

static int da7218_i2c_probe(struct i2c_client *i2c,
			    const struct i2c_device_id *id)
{
	struct da7218_priv *da7218;
	int ret;

3271
	da7218 = devm_kzalloc(&i2c->dev, sizeof(*da7218), GFP_KERNEL);
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	if (!da7218)
		return -ENOMEM;

	i2c_set_clientdata(i2c, da7218);

	if (i2c->dev.of_node)
		da7218->dev_id = da7218_of_get_id(&i2c->dev);
	else
		da7218->dev_id = id->driver_data;

	if ((da7218->dev_id != DA7217_DEV_ID) &&
	    (da7218->dev_id != DA7218_DEV_ID)) {
		dev_err(&i2c->dev, "Invalid device Id\n");
		return -EINVAL;
	}

	da7218->irq = i2c->irq;

	da7218->regmap = devm_regmap_init_i2c(i2c, &da7218_regmap_config);
	if (IS_ERR(da7218->regmap)) {
		ret = PTR_ERR(da7218->regmap);
		dev_err(&i2c->dev, "regmap_init() failed: %d\n", ret);
		return ret;
	}

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	ret = devm_snd_soc_register_component(&i2c->dev,
			&soc_component_dev_da7218, &da7218_dai, 1);
3299
	if (ret < 0) {
3300
		dev_err(&i2c->dev, "Failed to register da7218 component: %d\n",
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			ret);
	}
	return ret;
}

static const struct i2c_device_id da7218_i2c_id[] = {
	{ "da7217", DA7217_DEV_ID },
	{ "da7218", DA7218_DEV_ID },
	{ }
};
MODULE_DEVICE_TABLE(i2c, da7218_i2c_id);

static struct i2c_driver da7218_i2c_driver = {
	.driver = {
		.name = "da7218",
		.of_match_table = of_match_ptr(da7218_of_match),
	},
	.probe		= da7218_i2c_probe,
	.id_table	= da7218_i2c_id,
};

module_i2c_driver(da7218_i2c_driver);

MODULE_DESCRIPTION("ASoC DA7218 Codec driver");
MODULE_AUTHOR("Adam Thomson <Adam.Thomson.Opensource@diasemi.com>");
MODULE_LICENSE("GPL");