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Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001/*
2 * sgtl5000.c -- SGTL5000 ALSA SoC Audio driver
3 *
4 * Copyright 2010-2011 Freescale Semiconductor, Inc. All Rights Reserved.
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
9 */
10
11#include <linux/module.h>
12#include <linux/moduleparam.h>
13#include <linux/init.h>
14#include <linux/delay.h>
15#include <linux/slab.h>
16#include <linux/pm.h>
17#include <linux/i2c.h>
18#include <linux/clk.h>
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +020019#include <linux/log2.h>
Fabio Estevame5d80e82013-05-04 15:39:34 -030020#include <linux/regmap.h>
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +080021#include <linux/regulator/driver.h>
22#include <linux/regulator/machine.h>
23#include <linux/regulator/consumer.h>
Shawn Guo58e49422011-07-22 00:28:51 +080024#include <linux/of_device.h>
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +080025#include <sound/core.h>
26#include <sound/tlv.h>
27#include <sound/pcm.h>
28#include <sound/pcm_params.h>
29#include <sound/soc.h>
30#include <sound/soc-dapm.h>
31#include <sound/initval.h>
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +080032
33#include "sgtl5000.h"
34
35#define SGTL5000_DAP_REG_OFFSET 0x0100
36#define SGTL5000_MAX_REG_OFFSET 0x013A
37
Wolfram Sang151798f2011-08-02 19:42:19 +020038/* default value of sgtl5000 registers */
Fabio Estevame5d80e82013-05-04 15:39:34 -030039static const struct reg_default sgtl5000_reg_defaults[] = {
Fabio Estevam29aa37c2014-05-26 10:34:20 -030040 { SGTL5000_CHIP_DIG_POWER, 0x0000 },
Fabio Estevame5d80e82013-05-04 15:39:34 -030041 { SGTL5000_CHIP_I2S_CTRL, 0x0010 },
Fabio Estevam016fcab2013-07-04 20:01:02 -030042 { SGTL5000_CHIP_SSS_CTRL, 0x0010 },
Fabio Estevam29aa37c2014-05-26 10:34:20 -030043 { SGTL5000_CHIP_ADCDAC_CTRL, 0x020c },
Fabio Estevame5d80e82013-05-04 15:39:34 -030044 { SGTL5000_CHIP_DAC_VOL, 0x3c3c },
45 { SGTL5000_CHIP_PAD_STRENGTH, 0x015f },
Fabio Estevam29aa37c2014-05-26 10:34:20 -030046 { SGTL5000_CHIP_ANA_ADC_CTRL, 0x0000 },
Fabio Estevame5d80e82013-05-04 15:39:34 -030047 { SGTL5000_CHIP_ANA_HP_CTRL, 0x1818 },
48 { SGTL5000_CHIP_ANA_CTRL, 0x0111 },
Fabio Estevam29aa37c2014-05-26 10:34:20 -030049 { SGTL5000_CHIP_REF_CTRL, 0x0000 },
50 { SGTL5000_CHIP_MIC_CTRL, 0x0000 },
51 { SGTL5000_CHIP_LINE_OUT_CTRL, 0x0000 },
Fabio Estevame5d80e82013-05-04 15:39:34 -030052 { SGTL5000_CHIP_LINE_OUT_VOL, 0x0404 },
Fabio Estevame5d80e82013-05-04 15:39:34 -030053 { SGTL5000_CHIP_PLL_CTRL, 0x5000 },
Fabio Estevam29aa37c2014-05-26 10:34:20 -030054 { SGTL5000_CHIP_CLK_TOP_CTRL, 0x0000 },
55 { SGTL5000_CHIP_ANA_STATUS, 0x0000 },
56 { SGTL5000_CHIP_SHORT_CTRL, 0x0000 },
57 { SGTL5000_CHIP_ANA_TEST2, 0x0000 },
58 { SGTL5000_DAP_CTRL, 0x0000 },
59 { SGTL5000_DAP_PEQ, 0x0000 },
Fabio Estevame5d80e82013-05-04 15:39:34 -030060 { SGTL5000_DAP_BASS_ENHANCE, 0x0040 },
61 { SGTL5000_DAP_BASS_ENHANCE_CTRL, 0x051f },
Fabio Estevam29aa37c2014-05-26 10:34:20 -030062 { SGTL5000_DAP_AUDIO_EQ, 0x0000 },
Fabio Estevame5d80e82013-05-04 15:39:34 -030063 { SGTL5000_DAP_SURROUND, 0x0040 },
64 { SGTL5000_DAP_EQ_BASS_BAND0, 0x002f },
65 { SGTL5000_DAP_EQ_BASS_BAND1, 0x002f },
66 { SGTL5000_DAP_EQ_BASS_BAND2, 0x002f },
67 { SGTL5000_DAP_EQ_BASS_BAND3, 0x002f },
68 { SGTL5000_DAP_EQ_BASS_BAND4, 0x002f },
69 { SGTL5000_DAP_MAIN_CHAN, 0x8000 },
Fabio Estevam29aa37c2014-05-26 10:34:20 -030070 { SGTL5000_DAP_MIX_CHAN, 0x0000 },
Fabio Estevame5d80e82013-05-04 15:39:34 -030071 { SGTL5000_DAP_AVC_CTRL, 0x0510 },
72 { SGTL5000_DAP_AVC_THRESHOLD, 0x1473 },
73 { SGTL5000_DAP_AVC_ATTACK, 0x0028 },
74 { SGTL5000_DAP_AVC_DECAY, 0x0050 },
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +080075};
76
77/* regulator supplies for sgtl5000, VDDD is an optional external supply */
78enum sgtl5000_regulator_supplies {
79 VDDA,
80 VDDIO,
81 VDDD,
82 SGTL5000_SUPPLY_NUM
83};
84
85/* vddd is optional supply */
86static const char *supply_names[SGTL5000_SUPPLY_NUM] = {
87 "VDDA",
88 "VDDIO",
89 "VDDD"
90};
91
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +080092#define LDO_VOLTAGE 1200000
Eric Nelson3d632cc2016-06-07 01:14:50 +020093#define LINREG_VDDD ((1600 - LDO_VOLTAGE / 1000) / 50)
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +080094
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +020095enum sgtl5000_micbias_resistor {
96 SGTL5000_MICBIAS_OFF = 0,
97 SGTL5000_MICBIAS_2K = 2,
98 SGTL5000_MICBIAS_4K = 4,
99 SGTL5000_MICBIAS_8K = 8,
100};
101
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800102/* sgtl5000 private structure in codec */
103struct sgtl5000_priv {
104 int sysclk; /* sysclk rate */
105 int master; /* i2s master or not */
106 int fmt; /* i2s data format */
107 struct regulator_bulk_data supplies[SGTL5000_SUPPLY_NUM];
Eric Nelson940adb22016-06-07 01:14:48 +0200108 int num_supplies;
Fabio Estevame5d80e82013-05-04 15:39:34 -0300109 struct regmap *regmap;
Fabio Estevam9e13f342013-06-09 22:07:46 -0300110 struct clk *mclk;
Shawn Guo252e91f2013-12-13 14:43:02 +0800111 int revision;
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +0200112 u8 micbias_resistor;
Jean-Michel Hautbois87357792014-10-14 08:43:12 +0200113 u8 micbias_voltage;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800114};
115
116/*
117 * mic_bias power on/off share the same register bits with
118 * output impedance of mic bias, when power on mic bias, we
119 * need reclaim it to impedance value.
120 * 0x0 = Powered off
121 * 0x1 = 2Kohm
122 * 0x2 = 4Kohm
123 * 0x3 = 8Kohm
124 */
125static int mic_bias_event(struct snd_soc_dapm_widget *w,
126 struct snd_kcontrol *kcontrol, int event)
127{
Lars-Peter Clausen73bffd12015-01-10 15:44:07 +0100128 struct snd_soc_codec *codec = snd_soc_dapm_to_codec(w->dapm);
129 struct sgtl5000_priv *sgtl5000 = snd_soc_codec_get_drvdata(codec);
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +0200130
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800131 switch (event) {
132 case SND_SOC_DAPM_POST_PMU:
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +0200133 /* change mic bias resistor */
Lars-Peter Clausen73bffd12015-01-10 15:44:07 +0100134 snd_soc_update_bits(codec, SGTL5000_CHIP_MIC_CTRL,
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +0200135 SGTL5000_BIAS_R_MASK,
136 sgtl5000->micbias_resistor << SGTL5000_BIAS_R_SHIFT);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800137 break;
138
139 case SND_SOC_DAPM_PRE_PMD:
Lars-Peter Clausen73bffd12015-01-10 15:44:07 +0100140 snd_soc_update_bits(codec, SGTL5000_CHIP_MIC_CTRL,
Axel Lindc56c5a2011-10-19 11:00:42 +0800141 SGTL5000_BIAS_R_MASK, 0);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800142 break;
143 }
144 return 0;
145}
146
147/*
Zeng Zhaomingf0cdcf32012-03-30 00:13:02 +0800148 * As manual described, ADC/DAC only works when VAG powerup,
149 * So enabled VAG before ADC/DAC up.
150 * In power down case, we need wait 400ms when vag fully ramped down.
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800151 */
Zeng Zhaomingf0cdcf32012-03-30 00:13:02 +0800152static int power_vag_event(struct snd_soc_dapm_widget *w,
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800153 struct snd_kcontrol *kcontrol, int event)
154{
Lars-Peter Clausen73bffd12015-01-10 15:44:07 +0100155 struct snd_soc_codec *codec = snd_soc_dapm_to_codec(w->dapm);
Lothar Waßmannf091f3f2013-07-31 16:44:29 +0200156 const u32 mask = SGTL5000_DAC_POWERUP | SGTL5000_ADC_POWERUP;
157
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800158 switch (event) {
Marek Vasutdd4d2d62013-05-28 20:55:56 +0200159 case SND_SOC_DAPM_POST_PMU:
Lars-Peter Clausen73bffd12015-01-10 15:44:07 +0100160 snd_soc_update_bits(codec, SGTL5000_CHIP_ANA_POWER,
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800161 SGTL5000_VAG_POWERUP, SGTL5000_VAG_POWERUP);
Jean-Michel Hautboisc803cc22015-12-17 11:07:23 +0100162 msleep(400);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800163 break;
164
Marek Vasutdd4d2d62013-05-28 20:55:56 +0200165 case SND_SOC_DAPM_PRE_PMD:
Lothar Waßmannf091f3f2013-07-31 16:44:29 +0200166 /*
167 * Don't clear VAG_POWERUP, when both DAC and ADC are
168 * operational to prevent inadvertently starving the
169 * other one of them.
170 */
Lars-Peter Clausen73bffd12015-01-10 15:44:07 +0100171 if ((snd_soc_read(codec, SGTL5000_CHIP_ANA_POWER) &
Lothar Waßmannf091f3f2013-07-31 16:44:29 +0200172 mask) != mask) {
Lars-Peter Clausen73bffd12015-01-10 15:44:07 +0100173 snd_soc_update_bits(codec, SGTL5000_CHIP_ANA_POWER,
Lothar Waßmannf091f3f2013-07-31 16:44:29 +0200174 SGTL5000_VAG_POWERUP, 0);
175 msleep(400);
176 }
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800177 break;
178 default:
179 break;
180 }
181
182 return 0;
183}
184
185/* input sources for ADC */
186static const char *adc_mux_text[] = {
187 "MIC_IN", "LINE_IN"
188};
189
Takashi Iwaic8ed6502014-02-18 10:16:31 +0100190static SOC_ENUM_SINGLE_DECL(adc_enum,
191 SGTL5000_CHIP_ANA_CTRL, 2,
192 adc_mux_text);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800193
194static const struct snd_kcontrol_new adc_mux =
195SOC_DAPM_ENUM("Capture Mux", adc_enum);
196
197/* input sources for DAC */
198static const char *dac_mux_text[] = {
199 "DAC", "LINE_IN"
200};
201
Takashi Iwaic8ed6502014-02-18 10:16:31 +0100202static SOC_ENUM_SINGLE_DECL(dac_enum,
203 SGTL5000_CHIP_ANA_CTRL, 6,
204 dac_mux_text);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800205
206static const struct snd_kcontrol_new dac_mux =
207SOC_DAPM_ENUM("Headphone Mux", dac_enum);
208
209static const struct snd_soc_dapm_widget sgtl5000_dapm_widgets[] = {
210 SND_SOC_DAPM_INPUT("LINE_IN"),
211 SND_SOC_DAPM_INPUT("MIC_IN"),
212
213 SND_SOC_DAPM_OUTPUT("HP_OUT"),
214 SND_SOC_DAPM_OUTPUT("LINE_OUT"),
215
Mark Brown8fc8ec92012-03-28 20:51:43 +0100216 SND_SOC_DAPM_SUPPLY("Mic Bias", SGTL5000_CHIP_MIC_CTRL, 8, 0,
217 mic_bias_event,
218 SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800219
Zeng Zhaomingf0cdcf32012-03-30 00:13:02 +0800220 SND_SOC_DAPM_PGA("HP", SGTL5000_CHIP_ANA_POWER, 4, 0, NULL, 0),
221 SND_SOC_DAPM_PGA("LO", SGTL5000_CHIP_ANA_POWER, 0, 0, NULL, 0),
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800222
223 SND_SOC_DAPM_MUX("Capture Mux", SND_SOC_NOPM, 0, 0, &adc_mux),
224 SND_SOC_DAPM_MUX("Headphone Mux", SND_SOC_NOPM, 0, 0, &dac_mux),
225
226 /* aif for i2s input */
227 SND_SOC_DAPM_AIF_IN("AIFIN", "Playback",
228 0, SGTL5000_CHIP_DIG_POWER,
229 0, 0),
230
231 /* aif for i2s output */
232 SND_SOC_DAPM_AIF_OUT("AIFOUT", "Capture",
233 0, SGTL5000_CHIP_DIG_POWER,
234 1, 0),
235
Zeng Zhaomingf0cdcf32012-03-30 00:13:02 +0800236 SND_SOC_DAPM_ADC("ADC", "Capture", SGTL5000_CHIP_ANA_POWER, 1, 0),
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800237 SND_SOC_DAPM_DAC("DAC", "Playback", SGTL5000_CHIP_ANA_POWER, 3, 0),
Marek Vasutdd4d2d62013-05-28 20:55:56 +0200238
239 SND_SOC_DAPM_PRE("VAG_POWER_PRE", power_vag_event),
240 SND_SOC_DAPM_POST("VAG_POWER_POST", power_vag_event),
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800241};
242
243/* routes for sgtl5000 */
Fabio Estevam89989632012-01-22 14:49:42 -0200244static const struct snd_soc_dapm_route sgtl5000_dapm_routes[] = {
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800245 {"Capture Mux", "LINE_IN", "LINE_IN"}, /* line_in --> adc_mux */
246 {"Capture Mux", "MIC_IN", "MIC_IN"}, /* mic_in --> adc_mux */
247
248 {"ADC", NULL, "Capture Mux"}, /* adc_mux --> adc */
249 {"AIFOUT", NULL, "ADC"}, /* adc --> i2s_out */
250
251 {"DAC", NULL, "AIFIN"}, /* i2s-->dac,skip audio mux */
252 {"Headphone Mux", "DAC", "DAC"}, /* dac --> hp_mux */
253 {"LO", NULL, "DAC"}, /* dac --> line_out */
254
255 {"Headphone Mux", "LINE_IN", "LINE_IN"},/* line_in --> hp_mux */
256 {"HP", NULL, "Headphone Mux"}, /* hp_mux --> hp */
257
258 {"LINE_OUT", NULL, "LO"},
259 {"HP_OUT", NULL, "HP"},
260};
261
262/* custom function to fetch info of PCM playback volume */
263static int dac_info_volsw(struct snd_kcontrol *kcontrol,
264 struct snd_ctl_elem_info *uinfo)
265{
266 uinfo->type = SNDRV_CTL_ELEM_TYPE_INTEGER;
267 uinfo->count = 2;
268 uinfo->value.integer.min = 0;
269 uinfo->value.integer.max = 0xfc - 0x3c;
270 return 0;
271}
272
273/*
274 * custom function to get of PCM playback volume
275 *
276 * dac volume register
277 * 15-------------8-7--------------0
278 * | R channel vol | L channel vol |
279 * -------------------------------
280 *
281 * PCM volume with 0.5017 dB steps from 0 to -90 dB
282 *
283 * register values map to dB
284 * 0x3B and less = Reserved
285 * 0x3C = 0 dB
286 * 0x3D = -0.5 dB
287 * 0xF0 = -90 dB
288 * 0xFC and greater = Muted
289 *
290 * register value map to userspace value
291 *
292 * register value 0x3c(0dB) 0xf0(-90dB)0xfc
293 * ------------------------------
294 * userspace value 0xc0 0
295 */
296static int dac_get_volsw(struct snd_kcontrol *kcontrol,
297 struct snd_ctl_elem_value *ucontrol)
298{
Lars-Peter Clausenea53bf72014-03-18 09:02:04 +0100299 struct snd_soc_codec *codec = snd_soc_kcontrol_codec(kcontrol);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800300 int reg;
301 int l;
302 int r;
303
304 reg = snd_soc_read(codec, SGTL5000_CHIP_DAC_VOL);
305
306 /* get left channel volume */
307 l = (reg & SGTL5000_DAC_VOL_LEFT_MASK) >> SGTL5000_DAC_VOL_LEFT_SHIFT;
308
309 /* get right channel volume */
310 r = (reg & SGTL5000_DAC_VOL_RIGHT_MASK) >> SGTL5000_DAC_VOL_RIGHT_SHIFT;
311
312 /* make sure value fall in (0x3c,0xfc) */
313 l = clamp(l, 0x3c, 0xfc);
314 r = clamp(r, 0x3c, 0xfc);
315
316 /* invert it and map to userspace value */
317 l = 0xfc - l;
318 r = 0xfc - r;
319
320 ucontrol->value.integer.value[0] = l;
321 ucontrol->value.integer.value[1] = r;
322
323 return 0;
324}
325
326/*
327 * custom function to put of PCM playback volume
328 *
329 * dac volume register
330 * 15-------------8-7--------------0
331 * | R channel vol | L channel vol |
332 * -------------------------------
333 *
334 * PCM volume with 0.5017 dB steps from 0 to -90 dB
335 *
336 * register values map to dB
337 * 0x3B and less = Reserved
338 * 0x3C = 0 dB
339 * 0x3D = -0.5 dB
340 * 0xF0 = -90 dB
341 * 0xFC and greater = Muted
342 *
343 * userspace value map to register value
344 *
345 * userspace value 0xc0 0
346 * ------------------------------
347 * register value 0x3c(0dB) 0xf0(-90dB)0xfc
348 */
349static int dac_put_volsw(struct snd_kcontrol *kcontrol,
350 struct snd_ctl_elem_value *ucontrol)
351{
Lars-Peter Clausenea53bf72014-03-18 09:02:04 +0100352 struct snd_soc_codec *codec = snd_soc_kcontrol_codec(kcontrol);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800353 int reg;
354 int l;
355 int r;
356
357 l = ucontrol->value.integer.value[0];
358 r = ucontrol->value.integer.value[1];
359
360 /* make sure userspace volume fall in (0, 0xfc-0x3c) */
361 l = clamp(l, 0, 0xfc - 0x3c);
362 r = clamp(r, 0, 0xfc - 0x3c);
363
364 /* invert it, get the value can be set to register */
365 l = 0xfc - l;
366 r = 0xfc - r;
367
368 /* shift to get the register value */
369 reg = l << SGTL5000_DAC_VOL_LEFT_SHIFT |
370 r << SGTL5000_DAC_VOL_RIGHT_SHIFT;
371
372 snd_soc_write(codec, SGTL5000_CHIP_DAC_VOL, reg);
373
374 return 0;
375}
376
377static const DECLARE_TLV_DB_SCALE(capture_6db_attenuate, -600, 600, 0);
378
379/* tlv for mic gain, 0db 20db 30db 40db */
Lars-Peter Clausen53eb1ca2015-08-02 17:19:53 +0200380static const DECLARE_TLV_DB_RANGE(mic_gain_tlv,
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800381 0, 0, TLV_DB_SCALE_ITEM(0, 0, 0),
Lars-Peter Clausen53eb1ca2015-08-02 17:19:53 +0200382 1, 3, TLV_DB_SCALE_ITEM(2000, 1000, 0)
383);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800384
385/* tlv for hp volume, -51.5db to 12.0db, step .5db */
386static const DECLARE_TLV_DB_SCALE(headphone_volume, -5150, 50, 0);
387
Kalle Kankare0593d462016-07-12 10:41:18 +0200388/* tlv for lineout volume, 31 steps of .5db each */
389static const DECLARE_TLV_DB_SCALE(lineout_volume, -1550, 50, 0);
390
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800391static const struct snd_kcontrol_new sgtl5000_snd_controls[] = {
392 /* SOC_DOUBLE_S8_TLV with invert */
393 {
394 .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
395 .name = "PCM Playback Volume",
396 .access = SNDRV_CTL_ELEM_ACCESS_TLV_READ |
397 SNDRV_CTL_ELEM_ACCESS_READWRITE,
398 .info = dac_info_volsw,
399 .get = dac_get_volsw,
400 .put = dac_put_volsw,
401 },
402
403 SOC_DOUBLE("Capture Volume", SGTL5000_CHIP_ANA_ADC_CTRL, 0, 4, 0xf, 0),
404 SOC_SINGLE_TLV("Capture Attenuate Switch (-6dB)",
405 SGTL5000_CHIP_ANA_ADC_CTRL,
Lothar Waßmann65f2b222013-07-31 16:44:30 +0200406 8, 1, 0, capture_6db_attenuate),
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800407 SOC_SINGLE("Capture ZC Switch", SGTL5000_CHIP_ANA_CTRL, 1, 1, 0),
408
409 SOC_DOUBLE_TLV("Headphone Playback Volume",
410 SGTL5000_CHIP_ANA_HP_CTRL,
411 0, 8,
412 0x7f, 1,
413 headphone_volume),
Richard Leitner904a9872016-08-31 09:26:31 +0200414 SOC_SINGLE("Headphone Playback Switch", SGTL5000_CHIP_ANA_CTRL,
415 4, 1, 1),
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800416 SOC_SINGLE("Headphone Playback ZC Switch", SGTL5000_CHIP_ANA_CTRL,
417 5, 1, 0),
418
419 SOC_SINGLE_TLV("Mic Volume", SGTL5000_CHIP_MIC_CTRL,
Fabio Estevamb50684d2012-12-23 15:45:31 -0200420 0, 3, 0, mic_gain_tlv),
Kalle Kankare0593d462016-07-12 10:41:18 +0200421
422 SOC_DOUBLE_TLV("Lineout Playback Volume",
423 SGTL5000_CHIP_LINE_OUT_VOL,
424 SGTL5000_LINE_OUT_VOL_LEFT_SHIFT,
425 SGTL5000_LINE_OUT_VOL_RIGHT_SHIFT,
426 0x1f, 1,
427 lineout_volume),
Richard Leitner904a9872016-08-31 09:26:31 +0200428 SOC_SINGLE("Lineout Playback Switch", SGTL5000_CHIP_ANA_CTRL, 8, 1, 1),
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800429};
430
431/* mute the codec used by alsa core */
432static int sgtl5000_digital_mute(struct snd_soc_dai *codec_dai, int mute)
433{
434 struct snd_soc_codec *codec = codec_dai->codec;
435 u16 adcdac_ctrl = SGTL5000_DAC_MUTE_LEFT | SGTL5000_DAC_MUTE_RIGHT;
436
437 snd_soc_update_bits(codec, SGTL5000_CHIP_ADCDAC_CTRL,
438 adcdac_ctrl, mute ? adcdac_ctrl : 0);
439
440 return 0;
441}
442
443/* set codec format */
444static int sgtl5000_set_dai_fmt(struct snd_soc_dai *codec_dai, unsigned int fmt)
445{
446 struct snd_soc_codec *codec = codec_dai->codec;
447 struct sgtl5000_priv *sgtl5000 = snd_soc_codec_get_drvdata(codec);
448 u16 i2sctl = 0;
449
450 sgtl5000->master = 0;
451 /*
452 * i2s clock and frame master setting.
453 * ONLY support:
454 * - clock and frame slave,
455 * - clock and frame master
456 */
457 switch (fmt & SND_SOC_DAIFMT_MASTER_MASK) {
458 case SND_SOC_DAIFMT_CBS_CFS:
459 break;
460 case SND_SOC_DAIFMT_CBM_CFM:
461 i2sctl |= SGTL5000_I2S_MASTER;
462 sgtl5000->master = 1;
463 break;
464 default:
465 return -EINVAL;
466 }
467
468 /* setting i2s data format */
469 switch (fmt & SND_SOC_DAIFMT_FORMAT_MASK) {
470 case SND_SOC_DAIFMT_DSP_A:
Filip Brozovic9ee802e2015-01-30 12:58:24 +0100471 i2sctl |= SGTL5000_I2S_MODE_PCM << SGTL5000_I2S_MODE_SHIFT;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800472 break;
473 case SND_SOC_DAIFMT_DSP_B:
Filip Brozovic9ee802e2015-01-30 12:58:24 +0100474 i2sctl |= SGTL5000_I2S_MODE_PCM << SGTL5000_I2S_MODE_SHIFT;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800475 i2sctl |= SGTL5000_I2S_LRALIGN;
476 break;
477 case SND_SOC_DAIFMT_I2S:
Filip Brozovic9ee802e2015-01-30 12:58:24 +0100478 i2sctl |= SGTL5000_I2S_MODE_I2S_LJ << SGTL5000_I2S_MODE_SHIFT;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800479 break;
480 case SND_SOC_DAIFMT_RIGHT_J:
Filip Brozovic9ee802e2015-01-30 12:58:24 +0100481 i2sctl |= SGTL5000_I2S_MODE_RJ << SGTL5000_I2S_MODE_SHIFT;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800482 i2sctl |= SGTL5000_I2S_LRPOL;
483 break;
484 case SND_SOC_DAIFMT_LEFT_J:
Filip Brozovic9ee802e2015-01-30 12:58:24 +0100485 i2sctl |= SGTL5000_I2S_MODE_I2S_LJ << SGTL5000_I2S_MODE_SHIFT;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800486 i2sctl |= SGTL5000_I2S_LRALIGN;
487 break;
488 default:
489 return -EINVAL;
490 }
491
492 sgtl5000->fmt = fmt & SND_SOC_DAIFMT_FORMAT_MASK;
493
494 /* Clock inversion */
495 switch (fmt & SND_SOC_DAIFMT_INV_MASK) {
496 case SND_SOC_DAIFMT_NB_NF:
497 break;
498 case SND_SOC_DAIFMT_IB_NF:
499 i2sctl |= SGTL5000_I2S_SCLK_INV;
500 break;
501 default:
502 return -EINVAL;
503 }
504
505 snd_soc_write(codec, SGTL5000_CHIP_I2S_CTRL, i2sctl);
506
507 return 0;
508}
509
510/* set codec sysclk */
511static int sgtl5000_set_dai_sysclk(struct snd_soc_dai *codec_dai,
512 int clk_id, unsigned int freq, int dir)
513{
514 struct snd_soc_codec *codec = codec_dai->codec;
515 struct sgtl5000_priv *sgtl5000 = snd_soc_codec_get_drvdata(codec);
516
517 switch (clk_id) {
518 case SGTL5000_SYSCLK:
519 sgtl5000->sysclk = freq;
520 break;
521 default:
522 return -EINVAL;
523 }
524
525 return 0;
526}
527
528/*
529 * set clock according to i2s frame clock,
Fabio Estevam7f6d75d2014-10-07 10:50:56 -0300530 * sgtl5000 provides 2 clock sources:
531 * 1. sys_mclk: sample freq can only be configured to
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800532 * 1/256, 1/384, 1/512 of sys_mclk.
Fabio Estevam7f6d75d2014-10-07 10:50:56 -0300533 * 2. pll: can derive any audio clocks.
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800534 *
535 * clock setting rules:
Fabio Estevam7f6d75d2014-10-07 10:50:56 -0300536 * 1. in slave mode, only sys_mclk can be used
537 * 2. as constraint by sys_mclk, sample freq should be set to 32 kHz, 44.1 kHz
538 * and above.
539 * 3. usage of sys_mclk is preferred over pll to save power.
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800540 */
541static int sgtl5000_set_clock(struct snd_soc_codec *codec, int frame_rate)
542{
543 struct sgtl5000_priv *sgtl5000 = snd_soc_codec_get_drvdata(codec);
544 int clk_ctl = 0;
545 int sys_fs; /* sample freq */
546
547 /*
548 * sample freq should be divided by frame clock,
Fabio Estevam7f6d75d2014-10-07 10:50:56 -0300549 * if frame clock is lower than 44.1 kHz, sample freq should be set to
550 * 32 kHz or 44.1 kHz.
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800551 */
552 switch (frame_rate) {
553 case 8000:
554 case 16000:
555 sys_fs = 32000;
556 break;
557 case 11025:
558 case 22050:
559 sys_fs = 44100;
560 break;
561 default:
562 sys_fs = frame_rate;
563 break;
564 }
565
566 /* set divided factor of frame clock */
567 switch (sys_fs / frame_rate) {
568 case 4:
569 clk_ctl |= SGTL5000_RATE_MODE_DIV_4 << SGTL5000_RATE_MODE_SHIFT;
570 break;
571 case 2:
572 clk_ctl |= SGTL5000_RATE_MODE_DIV_2 << SGTL5000_RATE_MODE_SHIFT;
573 break;
574 case 1:
575 clk_ctl |= SGTL5000_RATE_MODE_DIV_1 << SGTL5000_RATE_MODE_SHIFT;
576 break;
577 default:
578 return -EINVAL;
579 }
580
581 /* set the sys_fs according to frame rate */
582 switch (sys_fs) {
583 case 32000:
584 clk_ctl |= SGTL5000_SYS_FS_32k << SGTL5000_SYS_FS_SHIFT;
585 break;
586 case 44100:
587 clk_ctl |= SGTL5000_SYS_FS_44_1k << SGTL5000_SYS_FS_SHIFT;
588 break;
589 case 48000:
590 clk_ctl |= SGTL5000_SYS_FS_48k << SGTL5000_SYS_FS_SHIFT;
591 break;
592 case 96000:
593 clk_ctl |= SGTL5000_SYS_FS_96k << SGTL5000_SYS_FS_SHIFT;
594 break;
595 default:
596 dev_err(codec->dev, "frame rate %d not supported\n",
597 frame_rate);
598 return -EINVAL;
599 }
600
601 /*
602 * calculate the divider of mclk/sample_freq,
Fabio Estevam7f6d75d2014-10-07 10:50:56 -0300603 * factor of freq = 96 kHz can only be 256, since mclk is in the range
604 * of 8 MHz - 27 MHz
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800605 */
Fabio Estevam2a4cfd12014-11-27 13:02:01 -0200606 switch (sgtl5000->sysclk / frame_rate) {
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800607 case 256:
608 clk_ctl |= SGTL5000_MCLK_FREQ_256FS <<
609 SGTL5000_MCLK_FREQ_SHIFT;
610 break;
611 case 384:
612 clk_ctl |= SGTL5000_MCLK_FREQ_384FS <<
613 SGTL5000_MCLK_FREQ_SHIFT;
614 break;
615 case 512:
616 clk_ctl |= SGTL5000_MCLK_FREQ_512FS <<
617 SGTL5000_MCLK_FREQ_SHIFT;
618 break;
619 default:
Fabio Estevam7f6d75d2014-10-07 10:50:56 -0300620 /* if mclk does not satisfy the divider, use pll */
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800621 if (sgtl5000->master) {
622 clk_ctl |= SGTL5000_MCLK_FREQ_PLL <<
623 SGTL5000_MCLK_FREQ_SHIFT;
624 } else {
625 dev_err(codec->dev,
626 "PLL not supported in slave mode\n");
Fabio Estevamfa558d02014-10-02 16:16:50 -0300627 dev_err(codec->dev, "%d ratio is not supported. "
628 "SYS_MCLK needs to be 256, 384 or 512 * fs\n",
Fabio Estevam2a4cfd12014-11-27 13:02:01 -0200629 sgtl5000->sysclk / frame_rate);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800630 return -EINVAL;
631 }
632 }
633
634 /* if using pll, please check manual 6.4.2 for detail */
635 if ((clk_ctl & SGTL5000_MCLK_FREQ_MASK) == SGTL5000_MCLK_FREQ_PLL) {
636 u64 out, t;
637 int div2;
638 int pll_ctl;
639 unsigned int in, int_div, frac_div;
640
641 if (sgtl5000->sysclk > 17000000) {
642 div2 = 1;
643 in = sgtl5000->sysclk / 2;
644 } else {
645 div2 = 0;
646 in = sgtl5000->sysclk;
647 }
648 if (sys_fs == 44100)
649 out = 180633600;
650 else
651 out = 196608000;
652 t = do_div(out, in);
653 int_div = out;
654 t *= 2048;
655 do_div(t, in);
656 frac_div = t;
657 pll_ctl = int_div << SGTL5000_PLL_INT_DIV_SHIFT |
658 frac_div << SGTL5000_PLL_FRAC_DIV_SHIFT;
659
660 snd_soc_write(codec, SGTL5000_CHIP_PLL_CTRL, pll_ctl);
661 if (div2)
662 snd_soc_update_bits(codec,
663 SGTL5000_CHIP_CLK_TOP_CTRL,
664 SGTL5000_INPUT_FREQ_DIV2,
665 SGTL5000_INPUT_FREQ_DIV2);
666 else
667 snd_soc_update_bits(codec,
668 SGTL5000_CHIP_CLK_TOP_CTRL,
669 SGTL5000_INPUT_FREQ_DIV2,
670 0);
671
672 /* power up pll */
673 snd_soc_update_bits(codec, SGTL5000_CHIP_ANA_POWER,
674 SGTL5000_PLL_POWERUP | SGTL5000_VCOAMP_POWERUP,
675 SGTL5000_PLL_POWERUP | SGTL5000_VCOAMP_POWERUP);
Oskar Schirmere06e4c22013-08-05 07:36:02 +0000676
677 /* if using pll, clk_ctrl must be set after pll power up */
678 snd_soc_write(codec, SGTL5000_CHIP_CLK_CTRL, clk_ctl);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800679 } else {
Oskar Schirmere06e4c22013-08-05 07:36:02 +0000680 /* otherwise, clk_ctrl must be set before pll power down */
681 snd_soc_write(codec, SGTL5000_CHIP_CLK_CTRL, clk_ctl);
682
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800683 /* power down pll */
684 snd_soc_update_bits(codec, SGTL5000_CHIP_ANA_POWER,
685 SGTL5000_PLL_POWERUP | SGTL5000_VCOAMP_POWERUP,
686 0);
687 }
688
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800689 return 0;
690}
691
692/*
693 * Set PCM DAI bit size and sample rate.
694 * input: params_rate, params_fmt
695 */
696static int sgtl5000_pcm_hw_params(struct snd_pcm_substream *substream,
697 struct snd_pcm_hw_params *params,
698 struct snd_soc_dai *dai)
699{
Mark Browne6968a12012-04-04 15:58:16 +0100700 struct snd_soc_codec *codec = dai->codec;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800701 struct sgtl5000_priv *sgtl5000 = snd_soc_codec_get_drvdata(codec);
702 int channels = params_channels(params);
703 int i2s_ctl = 0;
704 int stereo;
705 int ret;
706
707 /* sysclk should already set */
708 if (!sgtl5000->sysclk) {
709 dev_err(codec->dev, "%s: set sysclk first!\n", __func__);
710 return -EFAULT;
711 }
712
713 if (substream->stream == SNDRV_PCM_STREAM_PLAYBACK)
714 stereo = SGTL5000_DAC_STEREO;
715 else
716 stereo = SGTL5000_ADC_STEREO;
717
718 /* set mono to save power */
719 snd_soc_update_bits(codec, SGTL5000_CHIP_ANA_POWER, stereo,
720 channels == 1 ? 0 : stereo);
721
722 /* set codec clock base on lrclk */
723 ret = sgtl5000_set_clock(codec, params_rate(params));
724 if (ret)
725 return ret;
726
727 /* set i2s data format */
Mark Browndacc2ae2014-07-31 12:46:05 +0100728 switch (params_width(params)) {
729 case 16:
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800730 if (sgtl5000->fmt == SND_SOC_DAIFMT_RIGHT_J)
731 return -EINVAL;
732 i2s_ctl |= SGTL5000_I2S_DLEN_16 << SGTL5000_I2S_DLEN_SHIFT;
733 i2s_ctl |= SGTL5000_I2S_SCLKFREQ_32FS <<
734 SGTL5000_I2S_SCLKFREQ_SHIFT;
735 break;
Mark Browndacc2ae2014-07-31 12:46:05 +0100736 case 20:
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800737 i2s_ctl |= SGTL5000_I2S_DLEN_20 << SGTL5000_I2S_DLEN_SHIFT;
738 i2s_ctl |= SGTL5000_I2S_SCLKFREQ_64FS <<
739 SGTL5000_I2S_SCLKFREQ_SHIFT;
740 break;
Mark Browndacc2ae2014-07-31 12:46:05 +0100741 case 24:
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800742 i2s_ctl |= SGTL5000_I2S_DLEN_24 << SGTL5000_I2S_DLEN_SHIFT;
743 i2s_ctl |= SGTL5000_I2S_SCLKFREQ_64FS <<
744 SGTL5000_I2S_SCLKFREQ_SHIFT;
745 break;
Mark Browndacc2ae2014-07-31 12:46:05 +0100746 case 32:
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800747 if (sgtl5000->fmt == SND_SOC_DAIFMT_RIGHT_J)
748 return -EINVAL;
749 i2s_ctl |= SGTL5000_I2S_DLEN_32 << SGTL5000_I2S_DLEN_SHIFT;
750 i2s_ctl |= SGTL5000_I2S_SCLKFREQ_64FS <<
751 SGTL5000_I2S_SCLKFREQ_SHIFT;
752 break;
753 default:
754 return -EINVAL;
755 }
756
Axel Lin33cb92c2011-10-21 09:54:43 +0800757 snd_soc_update_bits(codec, SGTL5000_CHIP_I2S_CTRL,
758 SGTL5000_I2S_DLEN_MASK | SGTL5000_I2S_SCLKFREQ_MASK,
759 i2s_ctl);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800760
761 return 0;
762}
763
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800764/*
765 * set dac bias
766 * common state changes:
767 * startup:
768 * off --> standby --> prepare --> on
769 * standby --> prepare --> on
770 *
771 * stop:
772 * on --> prepare --> standby
773 */
774static int sgtl5000_set_bias_level(struct snd_soc_codec *codec,
775 enum snd_soc_bias_level level)
776{
Fabio Estevamd1564612018-02-16 11:58:54 -0200777 struct sgtl5000_priv *sgtl = snd_soc_codec_get_drvdata(codec);
778 int ret;
779
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800780 switch (level) {
781 case SND_SOC_BIAS_ON:
782 case SND_SOC_BIAS_PREPARE:
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800783 case SND_SOC_BIAS_STANDBY:
Fabio Estevamd1564612018-02-16 11:58:54 -0200784 regcache_cache_only(sgtl->regmap, false);
785 ret = regcache_sync(sgtl->regmap);
786 if (ret) {
787 regcache_cache_only(sgtl->regmap, true);
788 return ret;
789 }
790
Eric Nelson8419caa2016-06-07 01:14:52 +0200791 snd_soc_update_bits(codec, SGTL5000_CHIP_ANA_POWER,
792 SGTL5000_REFTOP_POWERUP,
793 SGTL5000_REFTOP_POWERUP);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800794 break;
795 case SND_SOC_BIAS_OFF:
Fabio Estevamd1564612018-02-16 11:58:54 -0200796 regcache_cache_only(sgtl->regmap, true);
Eric Nelson8419caa2016-06-07 01:14:52 +0200797 snd_soc_update_bits(codec, SGTL5000_CHIP_ANA_POWER,
798 SGTL5000_REFTOP_POWERUP, 0);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800799 break;
800 }
801
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800802 return 0;
803}
804
805#define SGTL5000_FORMATS (SNDRV_PCM_FMTBIT_S16_LE |\
806 SNDRV_PCM_FMTBIT_S20_3LE |\
807 SNDRV_PCM_FMTBIT_S24_LE |\
808 SNDRV_PCM_FMTBIT_S32_LE)
809
Lars-Peter Clausen85e76522011-11-23 11:40:40 +0100810static const struct snd_soc_dai_ops sgtl5000_ops = {
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800811 .hw_params = sgtl5000_pcm_hw_params,
812 .digital_mute = sgtl5000_digital_mute,
813 .set_fmt = sgtl5000_set_dai_fmt,
814 .set_sysclk = sgtl5000_set_dai_sysclk,
815};
816
817static struct snd_soc_dai_driver sgtl5000_dai = {
818 .name = "sgtl5000",
819 .playback = {
820 .stream_name = "Playback",
821 .channels_min = 1,
822 .channels_max = 2,
823 /*
824 * only support 8~48K + 96K,
825 * TODO modify hw_param to support more
826 */
827 .rates = SNDRV_PCM_RATE_8000_48000 | SNDRV_PCM_RATE_96000,
828 .formats = SGTL5000_FORMATS,
829 },
830 .capture = {
831 .stream_name = "Capture",
832 .channels_min = 1,
833 .channels_max = 2,
834 .rates = SNDRV_PCM_RATE_8000_48000 | SNDRV_PCM_RATE_96000,
835 .formats = SGTL5000_FORMATS,
836 },
837 .ops = &sgtl5000_ops,
838 .symmetric_rates = 1,
839};
840
Fabio Estevame5d80e82013-05-04 15:39:34 -0300841static bool sgtl5000_volatile(struct device *dev, unsigned int reg)
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800842{
843 switch (reg) {
844 case SGTL5000_CHIP_ID:
845 case SGTL5000_CHIP_ADCDAC_CTRL:
846 case SGTL5000_CHIP_ANA_STATUS:
Fabio Estevame5d80e82013-05-04 15:39:34 -0300847 return true;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800848 }
849
Fabio Estevame5d80e82013-05-04 15:39:34 -0300850 return false;
851}
852
853static bool sgtl5000_readable(struct device *dev, unsigned int reg)
854{
855 switch (reg) {
856 case SGTL5000_CHIP_ID:
857 case SGTL5000_CHIP_DIG_POWER:
858 case SGTL5000_CHIP_CLK_CTRL:
859 case SGTL5000_CHIP_I2S_CTRL:
860 case SGTL5000_CHIP_SSS_CTRL:
861 case SGTL5000_CHIP_ADCDAC_CTRL:
862 case SGTL5000_CHIP_DAC_VOL:
863 case SGTL5000_CHIP_PAD_STRENGTH:
864 case SGTL5000_CHIP_ANA_ADC_CTRL:
865 case SGTL5000_CHIP_ANA_HP_CTRL:
866 case SGTL5000_CHIP_ANA_CTRL:
867 case SGTL5000_CHIP_LINREG_CTRL:
868 case SGTL5000_CHIP_REF_CTRL:
869 case SGTL5000_CHIP_MIC_CTRL:
870 case SGTL5000_CHIP_LINE_OUT_CTRL:
871 case SGTL5000_CHIP_LINE_OUT_VOL:
872 case SGTL5000_CHIP_ANA_POWER:
873 case SGTL5000_CHIP_PLL_CTRL:
874 case SGTL5000_CHIP_CLK_TOP_CTRL:
875 case SGTL5000_CHIP_ANA_STATUS:
876 case SGTL5000_CHIP_SHORT_CTRL:
877 case SGTL5000_CHIP_ANA_TEST2:
878 case SGTL5000_DAP_CTRL:
879 case SGTL5000_DAP_PEQ:
880 case SGTL5000_DAP_BASS_ENHANCE:
881 case SGTL5000_DAP_BASS_ENHANCE_CTRL:
882 case SGTL5000_DAP_AUDIO_EQ:
883 case SGTL5000_DAP_SURROUND:
884 case SGTL5000_DAP_FLT_COEF_ACCESS:
885 case SGTL5000_DAP_COEF_WR_B0_MSB:
886 case SGTL5000_DAP_COEF_WR_B0_LSB:
887 case SGTL5000_DAP_EQ_BASS_BAND0:
888 case SGTL5000_DAP_EQ_BASS_BAND1:
889 case SGTL5000_DAP_EQ_BASS_BAND2:
890 case SGTL5000_DAP_EQ_BASS_BAND3:
891 case SGTL5000_DAP_EQ_BASS_BAND4:
892 case SGTL5000_DAP_MAIN_CHAN:
893 case SGTL5000_DAP_MIX_CHAN:
894 case SGTL5000_DAP_AVC_CTRL:
895 case SGTL5000_DAP_AVC_THRESHOLD:
896 case SGTL5000_DAP_AVC_ATTACK:
897 case SGTL5000_DAP_AVC_DECAY:
898 case SGTL5000_DAP_COEF_WR_B1_MSB:
899 case SGTL5000_DAP_COEF_WR_B1_LSB:
900 case SGTL5000_DAP_COEF_WR_B2_MSB:
901 case SGTL5000_DAP_COEF_WR_B2_LSB:
902 case SGTL5000_DAP_COEF_WR_A1_MSB:
903 case SGTL5000_DAP_COEF_WR_A1_LSB:
904 case SGTL5000_DAP_COEF_WR_A2_MSB:
905 case SGTL5000_DAP_COEF_WR_A2_LSB:
906 return true;
907
908 default:
909 return false;
910 }
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800911}
912
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800913/*
Alexander Stein1f39d932015-04-16 14:51:57 +0200914 * This precalculated table contains all (vag_val * 100 / lo_calcntrl) results
915 * to select an appropriate lo_vol_* in SGTL5000_CHIP_LINE_OUT_VOL
916 * The calculatation was done for all possible register values which
917 * is the array index and the following formula: 10^((idx−15)/40) * 100
918 */
919static const u8 vol_quot_table[] = {
920 42, 45, 47, 50, 53, 56, 60, 63,
921 67, 71, 75, 79, 84, 89, 94, 100,
922 106, 112, 119, 126, 133, 141, 150, 158,
923 168, 178, 188, 200, 211, 224, 237, 251
924};
925
926/*
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800927 * sgtl5000 has 3 internal power supplies:
928 * 1. VAG, normally set to vdda/2
Fabio Estevam7f6d75d2014-10-07 10:50:56 -0300929 * 2. charge pump, set to different value
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800930 * according to voltage of vdda and vddio
931 * 3. line out VAG, normally set to vddio/2
932 *
933 * and should be set according to:
934 * 1. vddd provided by external or not
935 * 2. vdda and vddio voltage value. > 3.1v or not
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800936 */
937static int sgtl5000_set_power_regs(struct snd_soc_codec *codec)
938{
939 int vddd;
940 int vdda;
941 int vddio;
942 u16 ana_pwr;
943 u16 lreg_ctrl;
944 int vag;
Alexander Steind2b7c2a2015-04-16 14:51:56 +0200945 int lo_vag;
Alexander Stein1f39d932015-04-16 14:51:57 +0200946 int vol_quot;
947 int lo_vol;
948 size_t i;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800949 struct sgtl5000_priv *sgtl5000 = snd_soc_codec_get_drvdata(codec);
950
951 vdda = regulator_get_voltage(sgtl5000->supplies[VDDA].consumer);
952 vddio = regulator_get_voltage(sgtl5000->supplies[VDDIO].consumer);
Eric Nelson940adb22016-06-07 01:14:48 +0200953 vddd = (sgtl5000->num_supplies > VDDD)
954 ? regulator_get_voltage(sgtl5000->supplies[VDDD].consumer)
955 : LDO_VOLTAGE;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800956
957 vdda = vdda / 1000;
958 vddio = vddio / 1000;
959 vddd = vddd / 1000;
960
961 if (vdda <= 0 || vddio <= 0 || vddd < 0) {
962 dev_err(codec->dev, "regulator voltage not set correctly\n");
963
964 return -EINVAL;
965 }
966
967 /* according to datasheet, maximum voltage of supplies */
968 if (vdda > 3600 || vddio > 3600 || vddd > 1980) {
969 dev_err(codec->dev,
Fabio Estevamcf1ee982011-12-28 09:55:15 -0200970 "exceed max voltage vdda %dmV vddio %dmV vddd %dmV\n",
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800971 vdda, vddio, vddd);
972
973 return -EINVAL;
974 }
975
976 /* reset value */
977 ana_pwr = snd_soc_read(codec, SGTL5000_CHIP_ANA_POWER);
978 ana_pwr |= SGTL5000_DAC_STEREO |
979 SGTL5000_ADC_STEREO |
980 SGTL5000_REFTOP_POWERUP;
981 lreg_ctrl = snd_soc_read(codec, SGTL5000_CHIP_LINREG_CTRL);
982
983 if (vddio < 3100 && vdda < 3100) {
984 /* enable internal oscillator used for charge pump */
985 snd_soc_update_bits(codec, SGTL5000_CHIP_CLK_TOP_CTRL,
986 SGTL5000_INT_OSC_EN,
987 SGTL5000_INT_OSC_EN);
988 /* Enable VDDC charge pump */
989 ana_pwr |= SGTL5000_VDDC_CHRGPMP_POWERUP;
990 } else if (vddio >= 3100 && vdda >= 3100) {
Eric Nelsonc7d910b2015-02-27 08:06:45 -0700991 ana_pwr &= ~SGTL5000_VDDC_CHRGPMP_POWERUP;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +0800992 /* VDDC use VDDIO rail */
993 lreg_ctrl |= SGTL5000_VDDC_ASSN_OVRD;
994 lreg_ctrl |= SGTL5000_VDDC_MAN_ASSN_VDDIO <<
995 SGTL5000_VDDC_MAN_ASSN_SHIFT;
996 }
997
998 snd_soc_write(codec, SGTL5000_CHIP_LINREG_CTRL, lreg_ctrl);
999
1000 snd_soc_write(codec, SGTL5000_CHIP_ANA_POWER, ana_pwr);
1001
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001002 /*
1003 * set ADC/DAC VAG to vdda / 2,
1004 * should stay in range (0.8v, 1.575v)
1005 */
1006 vag = vdda / 2;
1007 if (vag <= SGTL5000_ANA_GND_BASE)
1008 vag = 0;
1009 else if (vag >= SGTL5000_ANA_GND_BASE + SGTL5000_ANA_GND_STP *
1010 (SGTL5000_ANA_GND_MASK >> SGTL5000_ANA_GND_SHIFT))
1011 vag = SGTL5000_ANA_GND_MASK >> SGTL5000_ANA_GND_SHIFT;
1012 else
1013 vag = (vag - SGTL5000_ANA_GND_BASE) / SGTL5000_ANA_GND_STP;
1014
1015 snd_soc_update_bits(codec, SGTL5000_CHIP_REF_CTRL,
Axel Lin33cb92c2011-10-21 09:54:43 +08001016 SGTL5000_ANA_GND_MASK, vag << SGTL5000_ANA_GND_SHIFT);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001017
1018 /* set line out VAG to vddio / 2, in range (0.8v, 1.675v) */
Alexander Steind2b7c2a2015-04-16 14:51:56 +02001019 lo_vag = vddio / 2;
1020 if (lo_vag <= SGTL5000_LINE_OUT_GND_BASE)
1021 lo_vag = 0;
1022 else if (lo_vag >= SGTL5000_LINE_OUT_GND_BASE +
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001023 SGTL5000_LINE_OUT_GND_STP * SGTL5000_LINE_OUT_GND_MAX)
Alexander Steind2b7c2a2015-04-16 14:51:56 +02001024 lo_vag = SGTL5000_LINE_OUT_GND_MAX;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001025 else
Alexander Steind2b7c2a2015-04-16 14:51:56 +02001026 lo_vag = (lo_vag - SGTL5000_LINE_OUT_GND_BASE) /
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001027 SGTL5000_LINE_OUT_GND_STP;
1028
1029 snd_soc_update_bits(codec, SGTL5000_CHIP_LINE_OUT_CTRL,
Axel Lin33cb92c2011-10-21 09:54:43 +08001030 SGTL5000_LINE_OUT_CURRENT_MASK |
1031 SGTL5000_LINE_OUT_GND_MASK,
Alexander Steind2b7c2a2015-04-16 14:51:56 +02001032 lo_vag << SGTL5000_LINE_OUT_GND_SHIFT |
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001033 SGTL5000_LINE_OUT_CURRENT_360u <<
1034 SGTL5000_LINE_OUT_CURRENT_SHIFT);
1035
Alexander Stein1f39d932015-04-16 14:51:57 +02001036 /*
1037 * Set lineout output level in range (0..31)
1038 * the same value is used for right and left channel
1039 *
1040 * Searching for a suitable index solving this formula:
1041 * idx = 40 * log10(vag_val / lo_cagcntrl) + 15
1042 */
1043 vol_quot = (vag * 100) / lo_vag;
1044 lo_vol = 0;
1045 for (i = 0; i < ARRAY_SIZE(vol_quot_table); i++) {
1046 if (vol_quot >= vol_quot_table[i])
1047 lo_vol = i;
1048 else
1049 break;
1050 }
1051
1052 snd_soc_update_bits(codec, SGTL5000_CHIP_LINE_OUT_VOL,
1053 SGTL5000_LINE_OUT_VOL_RIGHT_MASK |
1054 SGTL5000_LINE_OUT_VOL_LEFT_MASK,
1055 lo_vol << SGTL5000_LINE_OUT_VOL_RIGHT_SHIFT |
1056 lo_vol << SGTL5000_LINE_OUT_VOL_LEFT_SHIFT);
1057
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001058 return 0;
1059}
1060
Eric Nelson940adb22016-06-07 01:14:48 +02001061static int sgtl5000_enable_regulators(struct i2c_client *client)
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001062{
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001063 int ret;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001064 int i;
1065 int external_vddd = 0;
Shawn Guo11db0da2013-12-13 14:43:03 +08001066 struct regulator *vddd;
Eric Nelson940adb22016-06-07 01:14:48 +02001067 struct sgtl5000_priv *sgtl5000 = i2c_get_clientdata(client);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001068
1069 for (i = 0; i < ARRAY_SIZE(sgtl5000->supplies); i++)
1070 sgtl5000->supplies[i].supply = supply_names[i];
1071
Eric Nelson940adb22016-06-07 01:14:48 +02001072 vddd = regulator_get_optional(&client->dev, "VDDD");
1073 if (IS_ERR(vddd)) {
1074 /* See if it's just not registered yet */
1075 if (PTR_ERR(vddd) == -EPROBE_DEFER)
1076 return -EPROBE_DEFER;
1077 } else {
1078 external_vddd = 1;
1079 regulator_put(vddd);
Shawn Guo11db0da2013-12-13 14:43:03 +08001080 }
1081
Eric Nelson940adb22016-06-07 01:14:48 +02001082 sgtl5000->num_supplies = ARRAY_SIZE(sgtl5000->supplies)
1083 - 1 + external_vddd;
1084 ret = regulator_bulk_get(&client->dev, sgtl5000->num_supplies,
Shawn Guo11db0da2013-12-13 14:43:03 +08001085 sgtl5000->supplies);
1086 if (ret)
Eric Nelson940adb22016-06-07 01:14:48 +02001087 return ret;
Shawn Guo11db0da2013-12-13 14:43:03 +08001088
Eric Nelson940adb22016-06-07 01:14:48 +02001089 ret = regulator_bulk_enable(sgtl5000->num_supplies,
1090 sgtl5000->supplies);
1091 if (!ret)
1092 usleep_range(10, 20);
1093 else
1094 regulator_bulk_free(sgtl5000->num_supplies,
1095 sgtl5000->supplies);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001096
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001097 return ret;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001098}
1099
1100static int sgtl5000_probe(struct snd_soc_codec *codec)
1101{
1102 int ret;
1103 struct sgtl5000_priv *sgtl5000 = snd_soc_codec_get_drvdata(codec);
1104
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001105 /* power up sgtl5000 */
1106 ret = sgtl5000_set_power_regs(codec);
1107 if (ret)
1108 goto err;
1109
1110 /* enable small pop, introduce 400ms delay in turning off */
1111 snd_soc_update_bits(codec, SGTL5000_CHIP_REF_CTRL,
Fabio Estevamc251ea72014-11-14 02:14:47 -02001112 SGTL5000_SMALL_POP, 1);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001113
1114 /* disable short cut detector */
1115 snd_soc_write(codec, SGTL5000_CHIP_SHORT_CTRL, 0);
1116
1117 /*
1118 * set i2s as default input of sound switch
1119 * TODO: add sound switch to control and dapm widge.
1120 */
1121 snd_soc_write(codec, SGTL5000_CHIP_SSS_CTRL,
1122 SGTL5000_DAC_SEL_I2S_IN << SGTL5000_DAC_SEL_SHIFT);
1123 snd_soc_write(codec, SGTL5000_CHIP_DIG_POWER,
1124 SGTL5000_ADC_EN | SGTL5000_DAC_EN);
1125
1126 /* enable dac volume ramp by default */
1127 snd_soc_write(codec, SGTL5000_CHIP_ADCDAC_CTRL,
1128 SGTL5000_DAC_VOL_RAMP_EN |
1129 SGTL5000_DAC_MUTE_RIGHT |
1130 SGTL5000_DAC_MUTE_LEFT);
1131
1132 snd_soc_write(codec, SGTL5000_CHIP_PAD_STRENGTH, 0x015f);
1133
1134 snd_soc_write(codec, SGTL5000_CHIP_ANA_CTRL,
1135 SGTL5000_HP_ZCD_EN |
1136 SGTL5000_ADC_ZCD_EN);
1137
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +02001138 snd_soc_update_bits(codec, SGTL5000_CHIP_MIC_CTRL,
1139 SGTL5000_BIAS_R_MASK,
1140 sgtl5000->micbias_resistor << SGTL5000_BIAS_R_SHIFT);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001141
Jean-Michel Hautbois87357792014-10-14 08:43:12 +02001142 snd_soc_update_bits(codec, SGTL5000_CHIP_MIC_CTRL,
Gianluca Renzie256da82015-09-25 21:33:41 +02001143 SGTL5000_BIAS_VOLT_MASK,
1144 sgtl5000->micbias_voltage << SGTL5000_BIAS_VOLT_SHIFT);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001145 /*
1146 * disable DAP
1147 * TODO:
1148 * Enable DAP in kcontrol and dapm.
1149 */
1150 snd_soc_write(codec, SGTL5000_DAP_CTRL, 0);
1151
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001152 return 0;
1153
1154err:
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001155 return ret;
1156}
1157
1158static int sgtl5000_remove(struct snd_soc_codec *codec)
1159{
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001160 return 0;
1161}
1162
Mark Brown61a142b2011-02-28 14:33:01 +00001163static struct snd_soc_codec_driver sgtl5000_driver = {
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001164 .probe = sgtl5000_probe,
1165 .remove = sgtl5000_remove,
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001166 .set_bias_level = sgtl5000_set_bias_level,
Lars-Peter Clausene6490572014-09-06 14:29:35 +02001167 .suspend_bias_off = true,
Kuninori Morimotoa324dbe2016-08-08 08:58:28 +00001168 .component_driver = {
1169 .controls = sgtl5000_snd_controls,
1170 .num_controls = ARRAY_SIZE(sgtl5000_snd_controls),
1171 .dapm_widgets = sgtl5000_dapm_widgets,
1172 .num_dapm_widgets = ARRAY_SIZE(sgtl5000_dapm_widgets),
1173 .dapm_routes = sgtl5000_dapm_routes,
1174 .num_dapm_routes = ARRAY_SIZE(sgtl5000_dapm_routes),
1175 },
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001176};
1177
Fabio Estevame5d80e82013-05-04 15:39:34 -03001178static const struct regmap_config sgtl5000_regmap = {
1179 .reg_bits = 16,
1180 .val_bits = 16,
Fabio Estevamcb23e852013-07-04 20:01:01 -03001181 .reg_stride = 2,
Fabio Estevame5d80e82013-05-04 15:39:34 -03001182
1183 .max_register = SGTL5000_MAX_REG_OFFSET,
1184 .volatile_reg = sgtl5000_volatile,
1185 .readable_reg = sgtl5000_readable,
1186
1187 .cache_type = REGCACHE_RBTREE,
1188 .reg_defaults = sgtl5000_reg_defaults,
1189 .num_reg_defaults = ARRAY_SIZE(sgtl5000_reg_defaults),
1190};
1191
Fabio Estevamaf8ee112013-05-09 21:15:47 -03001192/*
1193 * Write all the default values from sgtl5000_reg_defaults[] array into the
1194 * sgtl5000 registers, to make sure we always start with the sane registers
1195 * values as stated in the datasheet.
1196 *
1197 * Since sgtl5000 does not have a reset line, nor a reset command in software,
1198 * we follow this approach to guarantee we always start from the default values
1199 * and avoid problems like, not being able to probe after an audio playback
1200 * followed by a system reset or a 'reboot' command in Linux
1201 */
Eric Nelsonf219b162016-06-07 01:14:49 +02001202static void sgtl5000_fill_defaults(struct i2c_client *client)
Fabio Estevamaf8ee112013-05-09 21:15:47 -03001203{
Eric Nelsonf219b162016-06-07 01:14:49 +02001204 struct sgtl5000_priv *sgtl5000 = i2c_get_clientdata(client);
Fabio Estevamaf8ee112013-05-09 21:15:47 -03001205 int i, ret, val, index;
1206
1207 for (i = 0; i < ARRAY_SIZE(sgtl5000_reg_defaults); i++) {
1208 val = sgtl5000_reg_defaults[i].def;
1209 index = sgtl5000_reg_defaults[i].reg;
1210 ret = regmap_write(sgtl5000->regmap, index, val);
1211 if (ret)
Eric Nelsonf219b162016-06-07 01:14:49 +02001212 dev_err(&client->dev,
1213 "%s: error %d setting reg 0x%02x to 0x%04x\n",
1214 __func__, ret, index, val);
Fabio Estevamaf8ee112013-05-09 21:15:47 -03001215 }
Fabio Estevamaf8ee112013-05-09 21:15:47 -03001216}
1217
Bill Pemberton7a79e942012-12-07 09:26:37 -05001218static int sgtl5000_i2c_probe(struct i2c_client *client,
1219 const struct i2c_device_id *id)
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001220{
1221 struct sgtl5000_priv *sgtl5000;
Fabio Estevamb871f1a2013-05-09 21:15:46 -03001222 int ret, reg, rev;
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +02001223 struct device_node *np = client->dev.of_node;
1224 u32 value;
Eric Nelson3d632cc2016-06-07 01:14:50 +02001225 u16 ana_pwr;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001226
Fabio Estevam3f7256f2014-10-24 13:01:25 -02001227 sgtl5000 = devm_kzalloc(&client->dev, sizeof(*sgtl5000), GFP_KERNEL);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001228 if (!sgtl5000)
1229 return -ENOMEM;
1230
Eric Nelson940adb22016-06-07 01:14:48 +02001231 i2c_set_clientdata(client, sgtl5000);
1232
1233 ret = sgtl5000_enable_regulators(client);
1234 if (ret)
1235 return ret;
1236
Fabio Estevame5d80e82013-05-04 15:39:34 -03001237 sgtl5000->regmap = devm_regmap_init_i2c(client, &sgtl5000_regmap);
1238 if (IS_ERR(sgtl5000->regmap)) {
1239 ret = PTR_ERR(sgtl5000->regmap);
1240 dev_err(&client->dev, "Failed to allocate regmap: %d\n", ret);
Eric Nelson940adb22016-06-07 01:14:48 +02001241 goto disable_regs;
Fabio Estevame5d80e82013-05-04 15:39:34 -03001242 }
1243
Fabio Estevam9e13f342013-06-09 22:07:46 -03001244 sgtl5000->mclk = devm_clk_get(&client->dev, NULL);
1245 if (IS_ERR(sgtl5000->mclk)) {
1246 ret = PTR_ERR(sgtl5000->mclk);
1247 dev_err(&client->dev, "Failed to get mclock: %d\n", ret);
Shawn Guo46a59052013-07-16 09:17:27 +08001248 /* Defer the probe to see if the clk will be provided later */
1249 if (ret == -ENOENT)
Eric Nelson940adb22016-06-07 01:14:48 +02001250 ret = -EPROBE_DEFER;
1251 goto disable_regs;
Fabio Estevam9e13f342013-06-09 22:07:46 -03001252 }
1253
1254 ret = clk_prepare_enable(sgtl5000->mclk);
Eric Nelson940adb22016-06-07 01:14:48 +02001255 if (ret) {
1256 dev_err(&client->dev, "Error enabling clock %d\n", ret);
1257 goto disable_regs;
1258 }
Fabio Estevam9e13f342013-06-09 22:07:46 -03001259
Eric Nelson58cc9c92015-01-30 14:07:55 -07001260 /* Need 8 clocks before I2C accesses */
1261 udelay(1);
1262
Fabio Estevamb871f1a2013-05-09 21:15:46 -03001263 /* read chip information */
1264 ret = regmap_read(sgtl5000->regmap, SGTL5000_CHIP_ID, &reg);
Eric Nelson940adb22016-06-07 01:14:48 +02001265 if (ret) {
1266 dev_err(&client->dev, "Error reading chip id %d\n", ret);
Fabio Estevam9e13f342013-06-09 22:07:46 -03001267 goto disable_clk;
Eric Nelson940adb22016-06-07 01:14:48 +02001268 }
Fabio Estevamb871f1a2013-05-09 21:15:46 -03001269
1270 if (((reg & SGTL5000_PARTID_MASK) >> SGTL5000_PARTID_SHIFT) !=
1271 SGTL5000_PARTID_PART_ID) {
1272 dev_err(&client->dev,
1273 "Device with ID register %x is not a sgtl5000\n", reg);
Fabio Estevam9e13f342013-06-09 22:07:46 -03001274 ret = -ENODEV;
1275 goto disable_clk;
Fabio Estevamb871f1a2013-05-09 21:15:46 -03001276 }
1277
1278 rev = (reg & SGTL5000_REVID_MASK) >> SGTL5000_REVID_SHIFT;
1279 dev_info(&client->dev, "sgtl5000 revision 0x%x\n", rev);
Shawn Guo252e91f2013-12-13 14:43:02 +08001280 sgtl5000->revision = rev;
Fabio Estevamb871f1a2013-05-09 21:15:46 -03001281
Eric Nelson08dea162016-06-07 01:14:51 +02001282 /* reconfigure the clocks in case we're using the PLL */
1283 ret = regmap_write(sgtl5000->regmap,
1284 SGTL5000_CHIP_CLK_CTRL,
1285 SGTL5000_CHIP_CLK_CTRL_DEFAULT);
1286 if (ret)
1287 dev_err(&client->dev,
1288 "Error %d initializing CHIP_CLK_CTRL\n", ret);
1289
Eric Nelson940adb22016-06-07 01:14:48 +02001290 /* Follow section 2.2.1.1 of AN3663 */
Eric Nelson3d632cc2016-06-07 01:14:50 +02001291 ana_pwr = SGTL5000_ANA_POWER_DEFAULT;
Eric Nelson940adb22016-06-07 01:14:48 +02001292 if (sgtl5000->num_supplies <= VDDD) {
1293 /* internal VDDD at 1.2V */
Eric Nelson3d632cc2016-06-07 01:14:50 +02001294 ret = regmap_update_bits(sgtl5000->regmap,
1295 SGTL5000_CHIP_LINREG_CTRL,
1296 SGTL5000_LINREG_VDDD_MASK,
1297 LINREG_VDDD);
1298 if (ret)
1299 dev_err(&client->dev,
1300 "Error %d setting LINREG_VDDD\n", ret);
1301
1302 ana_pwr |= SGTL5000_LINEREG_D_POWERUP;
1303 dev_info(&client->dev,
1304 "Using internal LDO instead of VDDD: check ER1\n");
Eric Nelson940adb22016-06-07 01:14:48 +02001305 } else {
1306 /* using external LDO for VDDD
1307 * Clear startup powerup and simple powerup
1308 * bits to save power
1309 */
Eric Nelson3d632cc2016-06-07 01:14:50 +02001310 ana_pwr &= ~(SGTL5000_STARTUP_POWERUP
1311 | SGTL5000_LINREG_SIMPLE_POWERUP);
Eric Nelson940adb22016-06-07 01:14:48 +02001312 dev_dbg(&client->dev, "Using external VDDD\n");
1313 }
Eric Nelson3d632cc2016-06-07 01:14:50 +02001314 ret = regmap_write(sgtl5000->regmap, SGTL5000_CHIP_ANA_POWER, ana_pwr);
1315 if (ret)
1316 dev_err(&client->dev,
1317 "Error %d setting CHIP_ANA_POWER to %04x\n",
1318 ret, ana_pwr);
Eric Nelson940adb22016-06-07 01:14:48 +02001319
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +02001320 if (np) {
1321 if (!of_property_read_u32(np,
1322 "micbias-resistor-k-ohms", &value)) {
1323 switch (value) {
1324 case SGTL5000_MICBIAS_OFF:
1325 sgtl5000->micbias_resistor = 0;
1326 break;
1327 case SGTL5000_MICBIAS_2K:
1328 sgtl5000->micbias_resistor = 1;
1329 break;
1330 case SGTL5000_MICBIAS_4K:
1331 sgtl5000->micbias_resistor = 2;
1332 break;
1333 case SGTL5000_MICBIAS_8K:
1334 sgtl5000->micbias_resistor = 3;
1335 break;
1336 default:
1337 sgtl5000->micbias_resistor = 2;
1338 dev_err(&client->dev,
1339 "Unsuitable MicBias resistor\n");
1340 }
1341 } else {
1342 /* default is 4Kohms */
1343 sgtl5000->micbias_resistor = 2;
1344 }
Jean-Michel Hautbois87357792014-10-14 08:43:12 +02001345 if (!of_property_read_u32(np,
1346 "micbias-voltage-m-volts", &value)) {
1347 /* 1250mV => 0 */
1348 /* steps of 250mV */
1349 if ((value >= 1250) && (value <= 3000))
1350 sgtl5000->micbias_voltage = (value / 250) - 5;
1351 else {
1352 sgtl5000->micbias_voltage = 0;
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +02001353 dev_err(&client->dev,
Gianluca Renzifb97d752015-09-25 21:33:42 +02001354 "Unsuitable MicBias voltage\n");
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +02001355 }
1356 } else {
Jean-Michel Hautbois87357792014-10-14 08:43:12 +02001357 sgtl5000->micbias_voltage = 0;
Jean-Michel Hautboisbd0593f2014-10-14 08:43:11 +02001358 }
1359 }
1360
Fabio Estevamaf8ee112013-05-09 21:15:47 -03001361 /* Ensure sgtl5000 will start with sane register values */
Eric Nelsonf219b162016-06-07 01:14:49 +02001362 sgtl5000_fill_defaults(client);
Fabio Estevamaf8ee112013-05-09 21:15:47 -03001363
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001364 ret = snd_soc_register_codec(&client->dev,
1365 &sgtl5000_driver, &sgtl5000_dai, 1);
Fabio Estevam9e13f342013-06-09 22:07:46 -03001366 if (ret)
1367 goto disable_clk;
1368
1369 return 0;
1370
1371disable_clk:
1372 clk_disable_unprepare(sgtl5000->mclk);
Eric Nelson940adb22016-06-07 01:14:48 +02001373
1374disable_regs:
1375 regulator_bulk_disable(sgtl5000->num_supplies, sgtl5000->supplies);
1376 regulator_bulk_free(sgtl5000->num_supplies, sgtl5000->supplies);
1377
Fabio Estevam512fa7c2011-12-28 11:30:11 -02001378 return ret;
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001379}
1380
Bill Pemberton7a79e942012-12-07 09:26:37 -05001381static int sgtl5000_i2c_remove(struct i2c_client *client)
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001382{
Fabio Estevam7c647af2013-06-10 10:24:41 -03001383 struct sgtl5000_priv *sgtl5000 = i2c_get_clientdata(client);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001384
Fabio Estevam9e13f342013-06-09 22:07:46 -03001385 snd_soc_unregister_codec(&client->dev);
1386 clk_disable_unprepare(sgtl5000->mclk);
Eric Nelson940adb22016-06-07 01:14:48 +02001387 regulator_bulk_disable(sgtl5000->num_supplies, sgtl5000->supplies);
1388 regulator_bulk_free(sgtl5000->num_supplies, sgtl5000->supplies);
1389
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001390 return 0;
1391}
1392
1393static const struct i2c_device_id sgtl5000_id[] = {
1394 {"sgtl5000", 0},
1395 {},
1396};
1397
1398MODULE_DEVICE_TABLE(i2c, sgtl5000_id);
1399
Shawn Guo58e49422011-07-22 00:28:51 +08001400static const struct of_device_id sgtl5000_dt_ids[] = {
1401 { .compatible = "fsl,sgtl5000", },
1402 { /* sentinel */ }
1403};
Axel Lin4c54c6d2011-08-11 22:19:16 +08001404MODULE_DEVICE_TABLE(of, sgtl5000_dt_ids);
Shawn Guo58e49422011-07-22 00:28:51 +08001405
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001406static struct i2c_driver sgtl5000_i2c_driver = {
1407 .driver = {
1408 .name = "sgtl5000",
Shawn Guo58e49422011-07-22 00:28:51 +08001409 .of_match_table = sgtl5000_dt_ids,
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001410 },
1411 .probe = sgtl5000_i2c_probe,
Bill Pemberton7a79e942012-12-07 09:26:37 -05001412 .remove = sgtl5000_i2c_remove,
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001413 .id_table = sgtl5000_id,
1414};
1415
Mark Brown67d45092012-04-03 22:35:18 +01001416module_i2c_driver(sgtl5000_i2c_driver);
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001417
1418MODULE_DESCRIPTION("Freescale SGTL5000 ALSA SoC Codec Driver");
Zeng Zhaomingf7cb8a42012-01-16 15:18:11 +08001419MODULE_AUTHOR("Zeng Zhaoming <zengzm.kernel@gmail.com>");
Zeng Zhaoming9b34e6c2011-02-24 02:08:21 +08001420MODULE_LICENSE("GPL");