wm8960.c 29 KB

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  1. /*
  2. * wm8960.c -- WM8960 ALSA SoC Audio driver
  3. *
  4. * Copyright 2007-11 Wolfson Microelectronics, plc
  5. *
  6. * Author: Liam Girdwood
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License version 2 as
  10. * published by the Free Software Foundation.
  11. */
  12. #include <linux/module.h>
  13. #include <linux/moduleparam.h>
  14. #include <linux/init.h>
  15. #include <linux/delay.h>
  16. #include <linux/pm.h>
  17. #include <linux/i2c.h>
  18. #include <linux/slab.h>
  19. #include <sound/core.h>
  20. #include <sound/pcm.h>
  21. #include <sound/pcm_params.h>
  22. #include <sound/soc.h>
  23. #include <sound/initval.h>
  24. #include <sound/tlv.h>
  25. #include <sound/wm8960.h>
  26. #include "wm8960.h"
  27. /* R25 - Power 1 */
  28. #define WM8960_VMID_MASK 0x180
  29. #define WM8960_VREF 0x40
  30. /* R26 - Power 2 */
  31. #define WM8960_PWR2_LOUT1 0x40
  32. #define WM8960_PWR2_ROUT1 0x20
  33. #define WM8960_PWR2_OUT3 0x02
  34. /* R28 - Anti-pop 1 */
  35. #define WM8960_POBCTRL 0x80
  36. #define WM8960_BUFDCOPEN 0x10
  37. #define WM8960_BUFIOEN 0x08
  38. #define WM8960_SOFT_ST 0x04
  39. #define WM8960_HPSTBY 0x01
  40. /* R29 - Anti-pop 2 */
  41. #define WM8960_DISOP 0x40
  42. #define WM8960_DRES_MASK 0x30
  43. /*
  44. * wm8960 register cache
  45. * We can't read the WM8960 register space when we are
  46. * using 2 wire for device control, so we cache them instead.
  47. */
  48. static const struct reg_default wm8960_reg_defaults[] = {
  49. { 0x0, 0x00a7 },
  50. { 0x1, 0x00a7 },
  51. { 0x2, 0x0000 },
  52. { 0x3, 0x0000 },
  53. { 0x4, 0x0000 },
  54. { 0x5, 0x0008 },
  55. { 0x6, 0x0000 },
  56. { 0x7, 0x000a },
  57. { 0x8, 0x01c0 },
  58. { 0x9, 0x0000 },
  59. { 0xa, 0x00ff },
  60. { 0xb, 0x00ff },
  61. { 0x10, 0x0000 },
  62. { 0x11, 0x007b },
  63. { 0x12, 0x0100 },
  64. { 0x13, 0x0032 },
  65. { 0x14, 0x0000 },
  66. { 0x15, 0x00c3 },
  67. { 0x16, 0x00c3 },
  68. { 0x17, 0x01c0 },
  69. { 0x18, 0x0000 },
  70. { 0x19, 0x0000 },
  71. { 0x1a, 0x0000 },
  72. { 0x1b, 0x0000 },
  73. { 0x1c, 0x0000 },
  74. { 0x1d, 0x0000 },
  75. { 0x20, 0x0100 },
  76. { 0x21, 0x0100 },
  77. { 0x22, 0x0050 },
  78. { 0x25, 0x0050 },
  79. { 0x26, 0x0000 },
  80. { 0x27, 0x0000 },
  81. { 0x28, 0x0000 },
  82. { 0x29, 0x0000 },
  83. { 0x2a, 0x0040 },
  84. { 0x2b, 0x0000 },
  85. { 0x2c, 0x0000 },
  86. { 0x2d, 0x0050 },
  87. { 0x2e, 0x0050 },
  88. { 0x2f, 0x0000 },
  89. { 0x30, 0x0002 },
  90. { 0x31, 0x0037 },
  91. { 0x33, 0x0080 },
  92. { 0x34, 0x0008 },
  93. { 0x35, 0x0031 },
  94. { 0x36, 0x0026 },
  95. { 0x37, 0x00e9 },
  96. };
  97. static bool wm8960_volatile(struct device *dev, unsigned int reg)
  98. {
  99. switch (reg) {
  100. case WM8960_RESET:
  101. return true;
  102. default:
  103. return false;
  104. }
  105. }
  106. struct wm8960_priv {
  107. struct regmap *regmap;
  108. int (*set_bias_level)(struct snd_soc_codec *,
  109. enum snd_soc_bias_level level);
  110. struct snd_soc_dapm_widget *lout1;
  111. struct snd_soc_dapm_widget *rout1;
  112. struct snd_soc_dapm_widget *out3;
  113. bool deemph;
  114. int playback_fs;
  115. };
  116. #define wm8960_reset(c) snd_soc_write(c, WM8960_RESET, 0)
  117. /* enumerated controls */
  118. static const char *wm8960_polarity[] = {"No Inversion", "Left Inverted",
  119. "Right Inverted", "Stereo Inversion"};
  120. static const char *wm8960_3d_upper_cutoff[] = {"High", "Low"};
  121. static const char *wm8960_3d_lower_cutoff[] = {"Low", "High"};
  122. static const char *wm8960_alcfunc[] = {"Off", "Right", "Left", "Stereo"};
  123. static const char *wm8960_alcmode[] = {"ALC", "Limiter"};
  124. static const struct soc_enum wm8960_enum[] = {
  125. SOC_ENUM_SINGLE(WM8960_DACCTL1, 5, 4, wm8960_polarity),
  126. SOC_ENUM_SINGLE(WM8960_DACCTL2, 5, 4, wm8960_polarity),
  127. SOC_ENUM_SINGLE(WM8960_3D, 6, 2, wm8960_3d_upper_cutoff),
  128. SOC_ENUM_SINGLE(WM8960_3D, 5, 2, wm8960_3d_lower_cutoff),
  129. SOC_ENUM_SINGLE(WM8960_ALC1, 7, 4, wm8960_alcfunc),
  130. SOC_ENUM_SINGLE(WM8960_ALC3, 8, 2, wm8960_alcmode),
  131. };
  132. static const int deemph_settings[] = { 0, 32000, 44100, 48000 };
  133. static int wm8960_set_deemph(struct snd_soc_codec *codec)
  134. {
  135. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  136. int val, i, best;
  137. /* If we're using deemphasis select the nearest available sample
  138. * rate.
  139. */
  140. if (wm8960->deemph) {
  141. best = 1;
  142. for (i = 2; i < ARRAY_SIZE(deemph_settings); i++) {
  143. if (abs(deemph_settings[i] - wm8960->playback_fs) <
  144. abs(deemph_settings[best] - wm8960->playback_fs))
  145. best = i;
  146. }
  147. val = best << 1;
  148. } else {
  149. val = 0;
  150. }
  151. dev_dbg(codec->dev, "Set deemphasis %d\n", val);
  152. return snd_soc_update_bits(codec, WM8960_DACCTL1,
  153. 0x6, val);
  154. }
  155. static int wm8960_get_deemph(struct snd_kcontrol *kcontrol,
  156. struct snd_ctl_elem_value *ucontrol)
  157. {
  158. struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol);
  159. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  160. ucontrol->value.enumerated.item[0] = wm8960->deemph;
  161. return 0;
  162. }
  163. static int wm8960_put_deemph(struct snd_kcontrol *kcontrol,
  164. struct snd_ctl_elem_value *ucontrol)
  165. {
  166. struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol);
  167. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  168. int deemph = ucontrol->value.enumerated.item[0];
  169. if (deemph > 1)
  170. return -EINVAL;
  171. wm8960->deemph = deemph;
  172. return wm8960_set_deemph(codec);
  173. }
  174. static const DECLARE_TLV_DB_SCALE(adc_tlv, -9700, 50, 0);
  175. static const DECLARE_TLV_DB_SCALE(dac_tlv, -12700, 50, 1);
  176. static const DECLARE_TLV_DB_SCALE(bypass_tlv, -2100, 300, 0);
  177. static const DECLARE_TLV_DB_SCALE(out_tlv, -12100, 100, 1);
  178. static const DECLARE_TLV_DB_SCALE(boost_tlv, -1200, 300, 1);
  179. static const struct snd_kcontrol_new wm8960_snd_controls[] = {
  180. SOC_DOUBLE_R_TLV("Capture Volume", WM8960_LINVOL, WM8960_RINVOL,
  181. 0, 63, 0, adc_tlv),
  182. SOC_DOUBLE_R("Capture Volume ZC Switch", WM8960_LINVOL, WM8960_RINVOL,
  183. 6, 1, 0),
  184. SOC_DOUBLE_R("Capture Switch", WM8960_LINVOL, WM8960_RINVOL,
  185. 7, 1, 0),
  186. SOC_SINGLE_TLV("Right Input Boost Mixer RINPUT3 Volume",
  187. WM8960_INBMIX1, 4, 7, 0, boost_tlv),
  188. SOC_SINGLE_TLV("Right Input Boost Mixer RINPUT2 Volume",
  189. WM8960_INBMIX1, 1, 7, 0, boost_tlv),
  190. SOC_SINGLE_TLV("Left Input Boost Mixer LINPUT3 Volume",
  191. WM8960_INBMIX2, 4, 7, 0, boost_tlv),
  192. SOC_SINGLE_TLV("Left Input Boost Mixer LINPUT2 Volume",
  193. WM8960_INBMIX2, 1, 7, 0, boost_tlv),
  194. SOC_DOUBLE_R_TLV("Playback Volume", WM8960_LDAC, WM8960_RDAC,
  195. 0, 255, 0, dac_tlv),
  196. SOC_DOUBLE_R_TLV("Headphone Playback Volume", WM8960_LOUT1, WM8960_ROUT1,
  197. 0, 127, 0, out_tlv),
  198. SOC_DOUBLE_R("Headphone Playback ZC Switch", WM8960_LOUT1, WM8960_ROUT1,
  199. 7, 1, 0),
  200. SOC_DOUBLE_R_TLV("Speaker Playback Volume", WM8960_LOUT2, WM8960_ROUT2,
  201. 0, 127, 0, out_tlv),
  202. SOC_DOUBLE_R("Speaker Playback ZC Switch", WM8960_LOUT2, WM8960_ROUT2,
  203. 7, 1, 0),
  204. SOC_SINGLE("Speaker DC Volume", WM8960_CLASSD3, 3, 5, 0),
  205. SOC_SINGLE("Speaker AC Volume", WM8960_CLASSD3, 0, 5, 0),
  206. SOC_SINGLE("PCM Playback -6dB Switch", WM8960_DACCTL1, 7, 1, 0),
  207. SOC_ENUM("ADC Polarity", wm8960_enum[0]),
  208. SOC_SINGLE("ADC High Pass Filter Switch", WM8960_DACCTL1, 0, 1, 0),
  209. SOC_ENUM("DAC Polarity", wm8960_enum[2]),
  210. SOC_SINGLE_BOOL_EXT("DAC Deemphasis Switch", 0,
  211. wm8960_get_deemph, wm8960_put_deemph),
  212. SOC_ENUM("3D Filter Upper Cut-Off", wm8960_enum[2]),
  213. SOC_ENUM("3D Filter Lower Cut-Off", wm8960_enum[3]),
  214. SOC_SINGLE("3D Volume", WM8960_3D, 1, 15, 0),
  215. SOC_SINGLE("3D Switch", WM8960_3D, 0, 1, 0),
  216. SOC_ENUM("ALC Function", wm8960_enum[4]),
  217. SOC_SINGLE("ALC Max Gain", WM8960_ALC1, 4, 7, 0),
  218. SOC_SINGLE("ALC Target", WM8960_ALC1, 0, 15, 1),
  219. SOC_SINGLE("ALC Min Gain", WM8960_ALC2, 4, 7, 0),
  220. SOC_SINGLE("ALC Hold Time", WM8960_ALC2, 0, 15, 0),
  221. SOC_ENUM("ALC Mode", wm8960_enum[5]),
  222. SOC_SINGLE("ALC Decay", WM8960_ALC3, 4, 15, 0),
  223. SOC_SINGLE("ALC Attack", WM8960_ALC3, 0, 15, 0),
  224. SOC_SINGLE("Noise Gate Threshold", WM8960_NOISEG, 3, 31, 0),
  225. SOC_SINGLE("Noise Gate Switch", WM8960_NOISEG, 0, 1, 0),
  226. SOC_DOUBLE_R_TLV("ADC PCM Capture Volume", WM8960_LADC, WM8960_RADC,
  227. 0, 255, 0, adc_tlv),
  228. SOC_SINGLE_TLV("Left Output Mixer Boost Bypass Volume",
  229. WM8960_BYPASS1, 4, 7, 1, bypass_tlv),
  230. SOC_SINGLE_TLV("Left Output Mixer LINPUT3 Volume",
  231. WM8960_LOUTMIX, 4, 7, 1, bypass_tlv),
  232. SOC_SINGLE_TLV("Right Output Mixer Boost Bypass Volume",
  233. WM8960_BYPASS2, 4, 7, 1, bypass_tlv),
  234. SOC_SINGLE_TLV("Right Output Mixer RINPUT3 Volume",
  235. WM8960_ROUTMIX, 4, 7, 1, bypass_tlv),
  236. };
  237. static const struct snd_kcontrol_new wm8960_lin_boost[] = {
  238. SOC_DAPM_SINGLE("LINPUT2 Switch", WM8960_LINPATH, 6, 1, 0),
  239. SOC_DAPM_SINGLE("LINPUT3 Switch", WM8960_LINPATH, 7, 1, 0),
  240. SOC_DAPM_SINGLE("LINPUT1 Switch", WM8960_LINPATH, 8, 1, 0),
  241. };
  242. static const struct snd_kcontrol_new wm8960_lin[] = {
  243. SOC_DAPM_SINGLE("Boost Switch", WM8960_LINPATH, 3, 1, 0),
  244. };
  245. static const struct snd_kcontrol_new wm8960_rin_boost[] = {
  246. SOC_DAPM_SINGLE("RINPUT2 Switch", WM8960_RINPATH, 6, 1, 0),
  247. SOC_DAPM_SINGLE("RINPUT3 Switch", WM8960_RINPATH, 7, 1, 0),
  248. SOC_DAPM_SINGLE("RINPUT1 Switch", WM8960_RINPATH, 8, 1, 0),
  249. };
  250. static const struct snd_kcontrol_new wm8960_rin[] = {
  251. SOC_DAPM_SINGLE("Boost Switch", WM8960_RINPATH, 3, 1, 0),
  252. };
  253. static const struct snd_kcontrol_new wm8960_loutput_mixer[] = {
  254. SOC_DAPM_SINGLE("PCM Playback Switch", WM8960_LOUTMIX, 8, 1, 0),
  255. SOC_DAPM_SINGLE("LINPUT3 Switch", WM8960_LOUTMIX, 7, 1, 0),
  256. SOC_DAPM_SINGLE("Boost Bypass Switch", WM8960_BYPASS1, 7, 1, 0),
  257. };
  258. static const struct snd_kcontrol_new wm8960_routput_mixer[] = {
  259. SOC_DAPM_SINGLE("PCM Playback Switch", WM8960_ROUTMIX, 8, 1, 0),
  260. SOC_DAPM_SINGLE("RINPUT3 Switch", WM8960_ROUTMIX, 7, 1, 0),
  261. SOC_DAPM_SINGLE("Boost Bypass Switch", WM8960_BYPASS2, 7, 1, 0),
  262. };
  263. static const struct snd_kcontrol_new wm8960_mono_out[] = {
  264. SOC_DAPM_SINGLE("Left Switch", WM8960_MONOMIX1, 7, 1, 0),
  265. SOC_DAPM_SINGLE("Right Switch", WM8960_MONOMIX2, 7, 1, 0),
  266. };
  267. static const struct snd_soc_dapm_widget wm8960_dapm_widgets[] = {
  268. SND_SOC_DAPM_INPUT("LINPUT1"),
  269. SND_SOC_DAPM_INPUT("RINPUT1"),
  270. SND_SOC_DAPM_INPUT("LINPUT2"),
  271. SND_SOC_DAPM_INPUT("RINPUT2"),
  272. SND_SOC_DAPM_INPUT("LINPUT3"),
  273. SND_SOC_DAPM_INPUT("RINPUT3"),
  274. SND_SOC_DAPM_SUPPLY("MICB", WM8960_POWER1, 1, 0, NULL, 0),
  275. SND_SOC_DAPM_MIXER("Left Boost Mixer", WM8960_POWER1, 5, 0,
  276. wm8960_lin_boost, ARRAY_SIZE(wm8960_lin_boost)),
  277. SND_SOC_DAPM_MIXER("Right Boost Mixer", WM8960_POWER1, 4, 0,
  278. wm8960_rin_boost, ARRAY_SIZE(wm8960_rin_boost)),
  279. SND_SOC_DAPM_MIXER("Left Input Mixer", WM8960_POWER3, 5, 0,
  280. wm8960_lin, ARRAY_SIZE(wm8960_lin)),
  281. SND_SOC_DAPM_MIXER("Right Input Mixer", WM8960_POWER3, 4, 0,
  282. wm8960_rin, ARRAY_SIZE(wm8960_rin)),
  283. SND_SOC_DAPM_ADC("Left ADC", "Capture", WM8960_POWER1, 3, 0),
  284. SND_SOC_DAPM_ADC("Right ADC", "Capture", WM8960_POWER1, 2, 0),
  285. SND_SOC_DAPM_DAC("Left DAC", "Playback", WM8960_POWER2, 8, 0),
  286. SND_SOC_DAPM_DAC("Right DAC", "Playback", WM8960_POWER2, 7, 0),
  287. SND_SOC_DAPM_MIXER("Left Output Mixer", WM8960_POWER3, 3, 0,
  288. &wm8960_loutput_mixer[0],
  289. ARRAY_SIZE(wm8960_loutput_mixer)),
  290. SND_SOC_DAPM_MIXER("Right Output Mixer", WM8960_POWER3, 2, 0,
  291. &wm8960_routput_mixer[0],
  292. ARRAY_SIZE(wm8960_routput_mixer)),
  293. SND_SOC_DAPM_PGA("LOUT1 PGA", WM8960_POWER2, 6, 0, NULL, 0),
  294. SND_SOC_DAPM_PGA("ROUT1 PGA", WM8960_POWER2, 5, 0, NULL, 0),
  295. SND_SOC_DAPM_PGA("Left Speaker PGA", WM8960_POWER2, 4, 0, NULL, 0),
  296. SND_SOC_DAPM_PGA("Right Speaker PGA", WM8960_POWER2, 3, 0, NULL, 0),
  297. SND_SOC_DAPM_PGA("Right Speaker Output", WM8960_CLASSD1, 7, 0, NULL, 0),
  298. SND_SOC_DAPM_PGA("Left Speaker Output", WM8960_CLASSD1, 6, 0, NULL, 0),
  299. SND_SOC_DAPM_OUTPUT("SPK_LP"),
  300. SND_SOC_DAPM_OUTPUT("SPK_LN"),
  301. SND_SOC_DAPM_OUTPUT("HP_L"),
  302. SND_SOC_DAPM_OUTPUT("HP_R"),
  303. SND_SOC_DAPM_OUTPUT("SPK_RP"),
  304. SND_SOC_DAPM_OUTPUT("SPK_RN"),
  305. SND_SOC_DAPM_OUTPUT("OUT3"),
  306. };
  307. static const struct snd_soc_dapm_widget wm8960_dapm_widgets_out3[] = {
  308. SND_SOC_DAPM_MIXER("Mono Output Mixer", WM8960_POWER2, 1, 0,
  309. &wm8960_mono_out[0],
  310. ARRAY_SIZE(wm8960_mono_out)),
  311. };
  312. /* Represent OUT3 as a PGA so that it gets turned on with LOUT1/ROUT1 */
  313. static const struct snd_soc_dapm_widget wm8960_dapm_widgets_capless[] = {
  314. SND_SOC_DAPM_PGA("OUT3 VMID", WM8960_POWER2, 1, 0, NULL, 0),
  315. };
  316. static const struct snd_soc_dapm_route audio_paths[] = {
  317. { "Left Boost Mixer", "LINPUT1 Switch", "LINPUT1" },
  318. { "Left Boost Mixer", "LINPUT2 Switch", "LINPUT2" },
  319. { "Left Boost Mixer", "LINPUT3 Switch", "LINPUT3" },
  320. { "Left Input Mixer", "Boost Switch", "Left Boost Mixer", },
  321. { "Left Input Mixer", NULL, "LINPUT1", }, /* Really Boost Switch */
  322. { "Left Input Mixer", NULL, "LINPUT2" },
  323. { "Left Input Mixer", NULL, "LINPUT3" },
  324. { "Right Boost Mixer", "RINPUT1 Switch", "RINPUT1" },
  325. { "Right Boost Mixer", "RINPUT2 Switch", "RINPUT2" },
  326. { "Right Boost Mixer", "RINPUT3 Switch", "RINPUT3" },
  327. { "Right Input Mixer", "Boost Switch", "Right Boost Mixer", },
  328. { "Right Input Mixer", NULL, "RINPUT1", }, /* Really Boost Switch */
  329. { "Right Input Mixer", NULL, "RINPUT2" },
  330. { "Right Input Mixer", NULL, "LINPUT3" },
  331. { "Left ADC", NULL, "Left Input Mixer" },
  332. { "Right ADC", NULL, "Right Input Mixer" },
  333. { "Left Output Mixer", "LINPUT3 Switch", "LINPUT3" },
  334. { "Left Output Mixer", "Boost Bypass Switch", "Left Boost Mixer"} ,
  335. { "Left Output Mixer", "PCM Playback Switch", "Left DAC" },
  336. { "Right Output Mixer", "RINPUT3 Switch", "RINPUT3" },
  337. { "Right Output Mixer", "Boost Bypass Switch", "Right Boost Mixer" } ,
  338. { "Right Output Mixer", "PCM Playback Switch", "Right DAC" },
  339. { "LOUT1 PGA", NULL, "Left Output Mixer" },
  340. { "ROUT1 PGA", NULL, "Right Output Mixer" },
  341. { "HP_L", NULL, "LOUT1 PGA" },
  342. { "HP_R", NULL, "ROUT1 PGA" },
  343. { "Left Speaker PGA", NULL, "Left Output Mixer" },
  344. { "Right Speaker PGA", NULL, "Right Output Mixer" },
  345. { "Left Speaker Output", NULL, "Left Speaker PGA" },
  346. { "Right Speaker Output", NULL, "Right Speaker PGA" },
  347. { "SPK_LN", NULL, "Left Speaker Output" },
  348. { "SPK_LP", NULL, "Left Speaker Output" },
  349. { "SPK_RN", NULL, "Right Speaker Output" },
  350. { "SPK_RP", NULL, "Right Speaker Output" },
  351. };
  352. static const struct snd_soc_dapm_route audio_paths_out3[] = {
  353. { "Mono Output Mixer", "Left Switch", "Left Output Mixer" },
  354. { "Mono Output Mixer", "Right Switch", "Right Output Mixer" },
  355. { "OUT3", NULL, "Mono Output Mixer", }
  356. };
  357. static const struct snd_soc_dapm_route audio_paths_capless[] = {
  358. { "HP_L", NULL, "OUT3 VMID" },
  359. { "HP_R", NULL, "OUT3 VMID" },
  360. { "OUT3 VMID", NULL, "Left Output Mixer" },
  361. { "OUT3 VMID", NULL, "Right Output Mixer" },
  362. };
  363. static int wm8960_add_widgets(struct snd_soc_codec *codec)
  364. {
  365. struct wm8960_data *pdata = codec->dev->platform_data;
  366. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  367. struct snd_soc_dapm_context *dapm = &codec->dapm;
  368. struct snd_soc_dapm_widget *w;
  369. snd_soc_dapm_new_controls(dapm, wm8960_dapm_widgets,
  370. ARRAY_SIZE(wm8960_dapm_widgets));
  371. snd_soc_dapm_add_routes(dapm, audio_paths, ARRAY_SIZE(audio_paths));
  372. /* In capless mode OUT3 is used to provide VMID for the
  373. * headphone outputs, otherwise it is used as a mono mixer.
  374. */
  375. if (pdata && pdata->capless) {
  376. snd_soc_dapm_new_controls(dapm, wm8960_dapm_widgets_capless,
  377. ARRAY_SIZE(wm8960_dapm_widgets_capless));
  378. snd_soc_dapm_add_routes(dapm, audio_paths_capless,
  379. ARRAY_SIZE(audio_paths_capless));
  380. } else {
  381. snd_soc_dapm_new_controls(dapm, wm8960_dapm_widgets_out3,
  382. ARRAY_SIZE(wm8960_dapm_widgets_out3));
  383. snd_soc_dapm_add_routes(dapm, audio_paths_out3,
  384. ARRAY_SIZE(audio_paths_out3));
  385. }
  386. /* We need to power up the headphone output stage out of
  387. * sequence for capless mode. To save scanning the widget
  388. * list each time to find the desired power state do so now
  389. * and save the result.
  390. */
  391. list_for_each_entry(w, &codec->card->widgets, list) {
  392. if (w->dapm != &codec->dapm)
  393. continue;
  394. if (strcmp(w->name, "LOUT1 PGA") == 0)
  395. wm8960->lout1 = w;
  396. if (strcmp(w->name, "ROUT1 PGA") == 0)
  397. wm8960->rout1 = w;
  398. if (strcmp(w->name, "OUT3 VMID") == 0)
  399. wm8960->out3 = w;
  400. }
  401. return 0;
  402. }
  403. static int wm8960_set_dai_fmt(struct snd_soc_dai *codec_dai,
  404. unsigned int fmt)
  405. {
  406. struct snd_soc_codec *codec = codec_dai->codec;
  407. u16 iface = 0;
  408. /* set master/slave audio interface */
  409. switch (fmt & SND_SOC_DAIFMT_MASTER_MASK) {
  410. case SND_SOC_DAIFMT_CBM_CFM:
  411. iface |= 0x0040;
  412. break;
  413. case SND_SOC_DAIFMT_CBS_CFS:
  414. break;
  415. default:
  416. return -EINVAL;
  417. }
  418. /* interface format */
  419. switch (fmt & SND_SOC_DAIFMT_FORMAT_MASK) {
  420. case SND_SOC_DAIFMT_I2S:
  421. iface |= 0x0002;
  422. break;
  423. case SND_SOC_DAIFMT_RIGHT_J:
  424. break;
  425. case SND_SOC_DAIFMT_LEFT_J:
  426. iface |= 0x0001;
  427. break;
  428. case SND_SOC_DAIFMT_DSP_A:
  429. iface |= 0x0003;
  430. break;
  431. case SND_SOC_DAIFMT_DSP_B:
  432. iface |= 0x0013;
  433. break;
  434. default:
  435. return -EINVAL;
  436. }
  437. /* clock inversion */
  438. switch (fmt & SND_SOC_DAIFMT_INV_MASK) {
  439. case SND_SOC_DAIFMT_NB_NF:
  440. break;
  441. case SND_SOC_DAIFMT_IB_IF:
  442. iface |= 0x0090;
  443. break;
  444. case SND_SOC_DAIFMT_IB_NF:
  445. iface |= 0x0080;
  446. break;
  447. case SND_SOC_DAIFMT_NB_IF:
  448. iface |= 0x0010;
  449. break;
  450. default:
  451. return -EINVAL;
  452. }
  453. /* set iface */
  454. snd_soc_write(codec, WM8960_IFACE1, iface);
  455. return 0;
  456. }
  457. static struct {
  458. int rate;
  459. unsigned int val;
  460. } alc_rates[] = {
  461. { 48000, 0 },
  462. { 44100, 0 },
  463. { 32000, 1 },
  464. { 22050, 2 },
  465. { 24000, 2 },
  466. { 16000, 3 },
  467. { 11250, 4 },
  468. { 12000, 4 },
  469. { 8000, 5 },
  470. };
  471. static int wm8960_hw_params(struct snd_pcm_substream *substream,
  472. struct snd_pcm_hw_params *params,
  473. struct snd_soc_dai *dai)
  474. {
  475. struct snd_soc_codec *codec = dai->codec;
  476. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  477. u16 iface = snd_soc_read(codec, WM8960_IFACE1) & 0xfff3;
  478. snd_pcm_format_t format = params_format(params);
  479. int i;
  480. /* bit size */
  481. switch (format) {
  482. case SNDRV_PCM_FORMAT_S16_LE:
  483. case SNDRV_PCM_FORMAT_S16_BE:
  484. break;
  485. case SNDRV_PCM_FORMAT_S20_3LE:
  486. case SNDRV_PCM_FORMAT_S20_3BE:
  487. iface |= 0x0004;
  488. break;
  489. case SNDRV_PCM_FORMAT_S24_LE:
  490. case SNDRV_PCM_FORMAT_S24_BE:
  491. iface |= 0x0008;
  492. break;
  493. default:
  494. dev_err(codec->dev, "unsupported format %i\n", format);
  495. return -EINVAL;
  496. }
  497. /* Update filters for the new rate */
  498. if (substream->stream == SNDRV_PCM_STREAM_PLAYBACK) {
  499. wm8960->playback_fs = params_rate(params);
  500. wm8960_set_deemph(codec);
  501. } else {
  502. for (i = 0; i < ARRAY_SIZE(alc_rates); i++)
  503. if (alc_rates[i].rate == params_rate(params))
  504. snd_soc_update_bits(codec,
  505. WM8960_ADDCTL3, 0x7,
  506. alc_rates[i].val);
  507. }
  508. /* set iface */
  509. snd_soc_write(codec, WM8960_IFACE1, iface);
  510. return 0;
  511. }
  512. static int wm8960_mute(struct snd_soc_dai *dai, int mute)
  513. {
  514. struct snd_soc_codec *codec = dai->codec;
  515. if (mute)
  516. snd_soc_update_bits(codec, WM8960_DACCTL1, 0x8, 0x8);
  517. else
  518. snd_soc_update_bits(codec, WM8960_DACCTL1, 0x8, 0);
  519. return 0;
  520. }
  521. static int wm8960_set_bias_level_out3(struct snd_soc_codec *codec,
  522. enum snd_soc_bias_level level)
  523. {
  524. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  525. switch (level) {
  526. case SND_SOC_BIAS_ON:
  527. break;
  528. case SND_SOC_BIAS_PREPARE:
  529. /* Set VMID to 2x50k */
  530. snd_soc_update_bits(codec, WM8960_POWER1, 0x180, 0x80);
  531. break;
  532. case SND_SOC_BIAS_STANDBY:
  533. if (codec->dapm.bias_level == SND_SOC_BIAS_OFF) {
  534. regcache_sync(wm8960->regmap);
  535. /* Enable anti-pop features */
  536. snd_soc_write(codec, WM8960_APOP1,
  537. WM8960_POBCTRL | WM8960_SOFT_ST |
  538. WM8960_BUFDCOPEN | WM8960_BUFIOEN);
  539. /* Enable & ramp VMID at 2x50k */
  540. snd_soc_update_bits(codec, WM8960_POWER1, 0x80, 0x80);
  541. msleep(100);
  542. /* Enable VREF */
  543. snd_soc_update_bits(codec, WM8960_POWER1, WM8960_VREF,
  544. WM8960_VREF);
  545. /* Disable anti-pop features */
  546. snd_soc_write(codec, WM8960_APOP1, WM8960_BUFIOEN);
  547. }
  548. /* Set VMID to 2x250k */
  549. snd_soc_update_bits(codec, WM8960_POWER1, 0x180, 0x100);
  550. break;
  551. case SND_SOC_BIAS_OFF:
  552. /* Enable anti-pop features */
  553. snd_soc_write(codec, WM8960_APOP1,
  554. WM8960_POBCTRL | WM8960_SOFT_ST |
  555. WM8960_BUFDCOPEN | WM8960_BUFIOEN);
  556. /* Disable VMID and VREF, let them discharge */
  557. snd_soc_write(codec, WM8960_POWER1, 0);
  558. msleep(600);
  559. break;
  560. }
  561. codec->dapm.bias_level = level;
  562. return 0;
  563. }
  564. static int wm8960_set_bias_level_capless(struct snd_soc_codec *codec,
  565. enum snd_soc_bias_level level)
  566. {
  567. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  568. int reg;
  569. switch (level) {
  570. case SND_SOC_BIAS_ON:
  571. break;
  572. case SND_SOC_BIAS_PREPARE:
  573. switch (codec->dapm.bias_level) {
  574. case SND_SOC_BIAS_STANDBY:
  575. /* Enable anti pop mode */
  576. snd_soc_update_bits(codec, WM8960_APOP1,
  577. WM8960_POBCTRL | WM8960_SOFT_ST |
  578. WM8960_BUFDCOPEN,
  579. WM8960_POBCTRL | WM8960_SOFT_ST |
  580. WM8960_BUFDCOPEN);
  581. /* Enable LOUT1, ROUT1 and OUT3 if they're enabled */
  582. reg = 0;
  583. if (wm8960->lout1 && wm8960->lout1->power)
  584. reg |= WM8960_PWR2_LOUT1;
  585. if (wm8960->rout1 && wm8960->rout1->power)
  586. reg |= WM8960_PWR2_ROUT1;
  587. if (wm8960->out3 && wm8960->out3->power)
  588. reg |= WM8960_PWR2_OUT3;
  589. snd_soc_update_bits(codec, WM8960_POWER2,
  590. WM8960_PWR2_LOUT1 |
  591. WM8960_PWR2_ROUT1 |
  592. WM8960_PWR2_OUT3, reg);
  593. /* Enable VMID at 2*50k */
  594. snd_soc_update_bits(codec, WM8960_POWER1,
  595. WM8960_VMID_MASK, 0x80);
  596. /* Ramp */
  597. msleep(100);
  598. /* Enable VREF */
  599. snd_soc_update_bits(codec, WM8960_POWER1,
  600. WM8960_VREF, WM8960_VREF);
  601. msleep(100);
  602. break;
  603. case SND_SOC_BIAS_ON:
  604. /* Enable anti-pop mode */
  605. snd_soc_update_bits(codec, WM8960_APOP1,
  606. WM8960_POBCTRL | WM8960_SOFT_ST |
  607. WM8960_BUFDCOPEN,
  608. WM8960_POBCTRL | WM8960_SOFT_ST |
  609. WM8960_BUFDCOPEN);
  610. /* Disable VMID and VREF */
  611. snd_soc_update_bits(codec, WM8960_POWER1,
  612. WM8960_VREF | WM8960_VMID_MASK, 0);
  613. break;
  614. case SND_SOC_BIAS_OFF:
  615. regcache_sync(wm8960->regmap);
  616. break;
  617. default:
  618. break;
  619. }
  620. break;
  621. case SND_SOC_BIAS_STANDBY:
  622. switch (codec->dapm.bias_level) {
  623. case SND_SOC_BIAS_PREPARE:
  624. /* Disable HP discharge */
  625. snd_soc_update_bits(codec, WM8960_APOP2,
  626. WM8960_DISOP | WM8960_DRES_MASK,
  627. 0);
  628. /* Disable anti-pop features */
  629. snd_soc_update_bits(codec, WM8960_APOP1,
  630. WM8960_POBCTRL | WM8960_SOFT_ST |
  631. WM8960_BUFDCOPEN,
  632. WM8960_POBCTRL | WM8960_SOFT_ST |
  633. WM8960_BUFDCOPEN);
  634. break;
  635. default:
  636. break;
  637. }
  638. break;
  639. case SND_SOC_BIAS_OFF:
  640. break;
  641. }
  642. codec->dapm.bias_level = level;
  643. return 0;
  644. }
  645. /* PLL divisors */
  646. struct _pll_div {
  647. u32 pre_div:1;
  648. u32 n:4;
  649. u32 k:24;
  650. };
  651. /* The size in bits of the pll divide multiplied by 10
  652. * to allow rounding later */
  653. #define FIXED_PLL_SIZE ((1 << 24) * 10)
  654. static int pll_factors(unsigned int source, unsigned int target,
  655. struct _pll_div *pll_div)
  656. {
  657. unsigned long long Kpart;
  658. unsigned int K, Ndiv, Nmod;
  659. pr_debug("WM8960 PLL: setting %dHz->%dHz\n", source, target);
  660. /* Scale up target to PLL operating frequency */
  661. target *= 4;
  662. Ndiv = target / source;
  663. if (Ndiv < 6) {
  664. source >>= 1;
  665. pll_div->pre_div = 1;
  666. Ndiv = target / source;
  667. } else
  668. pll_div->pre_div = 0;
  669. if ((Ndiv < 6) || (Ndiv > 12)) {
  670. pr_err("WM8960 PLL: Unsupported N=%d\n", Ndiv);
  671. return -EINVAL;
  672. }
  673. pll_div->n = Ndiv;
  674. Nmod = target % source;
  675. Kpart = FIXED_PLL_SIZE * (long long)Nmod;
  676. do_div(Kpart, source);
  677. K = Kpart & 0xFFFFFFFF;
  678. /* Check if we need to round */
  679. if ((K % 10) >= 5)
  680. K += 5;
  681. /* Move down to proper range now rounding is done */
  682. K /= 10;
  683. pll_div->k = K;
  684. pr_debug("WM8960 PLL: N=%x K=%x pre_div=%d\n",
  685. pll_div->n, pll_div->k, pll_div->pre_div);
  686. return 0;
  687. }
  688. static int wm8960_set_dai_pll(struct snd_soc_dai *codec_dai, int pll_id,
  689. int source, unsigned int freq_in, unsigned int freq_out)
  690. {
  691. struct snd_soc_codec *codec = codec_dai->codec;
  692. u16 reg;
  693. static struct _pll_div pll_div;
  694. int ret;
  695. if (freq_in && freq_out) {
  696. ret = pll_factors(freq_in, freq_out, &pll_div);
  697. if (ret != 0)
  698. return ret;
  699. }
  700. /* Disable the PLL: even if we are changing the frequency the
  701. * PLL needs to be disabled while we do so. */
  702. snd_soc_update_bits(codec, WM8960_CLOCK1, 0x1, 0);
  703. snd_soc_update_bits(codec, WM8960_POWER2, 0x1, 0);
  704. if (!freq_in || !freq_out)
  705. return 0;
  706. reg = snd_soc_read(codec, WM8960_PLL1) & ~0x3f;
  707. reg |= pll_div.pre_div << 4;
  708. reg |= pll_div.n;
  709. if (pll_div.k) {
  710. reg |= 0x20;
  711. snd_soc_write(codec, WM8960_PLL2, (pll_div.k >> 16) & 0xff);
  712. snd_soc_write(codec, WM8960_PLL3, (pll_div.k >> 8) & 0xff);
  713. snd_soc_write(codec, WM8960_PLL4, pll_div.k & 0xff);
  714. }
  715. snd_soc_write(codec, WM8960_PLL1, reg);
  716. /* Turn it on */
  717. snd_soc_update_bits(codec, WM8960_POWER2, 0x1, 0x1);
  718. msleep(250);
  719. snd_soc_update_bits(codec, WM8960_CLOCK1, 0x1, 0x1);
  720. return 0;
  721. }
  722. static int wm8960_set_dai_clkdiv(struct snd_soc_dai *codec_dai,
  723. int div_id, int div)
  724. {
  725. struct snd_soc_codec *codec = codec_dai->codec;
  726. u16 reg;
  727. switch (div_id) {
  728. case WM8960_SYSCLKDIV:
  729. reg = snd_soc_read(codec, WM8960_CLOCK1) & 0x1f9;
  730. snd_soc_write(codec, WM8960_CLOCK1, reg | div);
  731. break;
  732. case WM8960_DACDIV:
  733. reg = snd_soc_read(codec, WM8960_CLOCK1) & 0x1c7;
  734. snd_soc_write(codec, WM8960_CLOCK1, reg | div);
  735. break;
  736. case WM8960_OPCLKDIV:
  737. reg = snd_soc_read(codec, WM8960_PLL1) & 0x03f;
  738. snd_soc_write(codec, WM8960_PLL1, reg | div);
  739. break;
  740. case WM8960_DCLKDIV:
  741. reg = snd_soc_read(codec, WM8960_CLOCK2) & 0x03f;
  742. snd_soc_write(codec, WM8960_CLOCK2, reg | div);
  743. break;
  744. case WM8960_TOCLKSEL:
  745. reg = snd_soc_read(codec, WM8960_ADDCTL1) & 0x1fd;
  746. snd_soc_write(codec, WM8960_ADDCTL1, reg | div);
  747. break;
  748. default:
  749. return -EINVAL;
  750. }
  751. return 0;
  752. }
  753. static int wm8960_set_bias_level(struct snd_soc_codec *codec,
  754. enum snd_soc_bias_level level)
  755. {
  756. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  757. return wm8960->set_bias_level(codec, level);
  758. }
  759. #define WM8960_RATES SNDRV_PCM_RATE_8000_48000
  760. #define WM8960_FORMATS \
  761. (SNDRV_PCM_FMTBIT_S16_LE | SNDRV_PCM_FMTBIT_S20_3LE | \
  762. SNDRV_PCM_FMTBIT_S24_LE)
  763. static const struct snd_soc_dai_ops wm8960_dai_ops = {
  764. .hw_params = wm8960_hw_params,
  765. .digital_mute = wm8960_mute,
  766. .set_fmt = wm8960_set_dai_fmt,
  767. .set_clkdiv = wm8960_set_dai_clkdiv,
  768. .set_pll = wm8960_set_dai_pll,
  769. };
  770. static struct snd_soc_dai_driver wm8960_dai = {
  771. .name = "wm8960-hifi",
  772. .playback = {
  773. .stream_name = "Playback",
  774. .channels_min = 1,
  775. .channels_max = 2,
  776. .rates = WM8960_RATES,
  777. .formats = WM8960_FORMATS,},
  778. .capture = {
  779. .stream_name = "Capture",
  780. .channels_min = 1,
  781. .channels_max = 2,
  782. .rates = WM8960_RATES,
  783. .formats = WM8960_FORMATS,},
  784. .ops = &wm8960_dai_ops,
  785. .symmetric_rates = 1,
  786. };
  787. static int wm8960_suspend(struct snd_soc_codec *codec)
  788. {
  789. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  790. wm8960->set_bias_level(codec, SND_SOC_BIAS_OFF);
  791. return 0;
  792. }
  793. static int wm8960_resume(struct snd_soc_codec *codec)
  794. {
  795. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  796. wm8960->set_bias_level(codec, SND_SOC_BIAS_STANDBY);
  797. return 0;
  798. }
  799. static int wm8960_probe(struct snd_soc_codec *codec)
  800. {
  801. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  802. struct wm8960_data *pdata = dev_get_platdata(codec->dev);
  803. int ret;
  804. wm8960->set_bias_level = wm8960_set_bias_level_out3;
  805. if (!pdata) {
  806. dev_warn(codec->dev, "No platform data supplied\n");
  807. } else {
  808. if (pdata->capless)
  809. wm8960->set_bias_level = wm8960_set_bias_level_capless;
  810. }
  811. ret = snd_soc_codec_set_cache_io(codec, 7, 9, SND_SOC_REGMAP);
  812. if (ret < 0) {
  813. dev_err(codec->dev, "Failed to set cache I/O: %d\n", ret);
  814. return ret;
  815. }
  816. ret = wm8960_reset(codec);
  817. if (ret < 0) {
  818. dev_err(codec->dev, "Failed to issue reset\n");
  819. return ret;
  820. }
  821. wm8960->set_bias_level(codec, SND_SOC_BIAS_STANDBY);
  822. /* Latch the update bits */
  823. snd_soc_update_bits(codec, WM8960_LINVOL, 0x100, 0x100);
  824. snd_soc_update_bits(codec, WM8960_RINVOL, 0x100, 0x100);
  825. snd_soc_update_bits(codec, WM8960_LADC, 0x100, 0x100);
  826. snd_soc_update_bits(codec, WM8960_RADC, 0x100, 0x100);
  827. snd_soc_update_bits(codec, WM8960_LDAC, 0x100, 0x100);
  828. snd_soc_update_bits(codec, WM8960_RDAC, 0x100, 0x100);
  829. snd_soc_update_bits(codec, WM8960_LOUT1, 0x100, 0x100);
  830. snd_soc_update_bits(codec, WM8960_ROUT1, 0x100, 0x100);
  831. snd_soc_update_bits(codec, WM8960_LOUT2, 0x100, 0x100);
  832. snd_soc_update_bits(codec, WM8960_ROUT2, 0x100, 0x100);
  833. snd_soc_add_codec_controls(codec, wm8960_snd_controls,
  834. ARRAY_SIZE(wm8960_snd_controls));
  835. wm8960_add_widgets(codec);
  836. return 0;
  837. }
  838. /* power down chip */
  839. static int wm8960_remove(struct snd_soc_codec *codec)
  840. {
  841. struct wm8960_priv *wm8960 = snd_soc_codec_get_drvdata(codec);
  842. wm8960->set_bias_level(codec, SND_SOC_BIAS_OFF);
  843. return 0;
  844. }
  845. static struct snd_soc_codec_driver soc_codec_dev_wm8960 = {
  846. .probe = wm8960_probe,
  847. .remove = wm8960_remove,
  848. .suspend = wm8960_suspend,
  849. .resume = wm8960_resume,
  850. .set_bias_level = wm8960_set_bias_level,
  851. };
  852. static const struct regmap_config wm8960_regmap = {
  853. .reg_bits = 7,
  854. .val_bits = 9,
  855. .max_register = WM8960_PLL4,
  856. .reg_defaults = wm8960_reg_defaults,
  857. .num_reg_defaults = ARRAY_SIZE(wm8960_reg_defaults),
  858. .cache_type = REGCACHE_RBTREE,
  859. .volatile_reg = wm8960_volatile,
  860. };
  861. static int wm8960_i2c_probe(struct i2c_client *i2c,
  862. const struct i2c_device_id *id)
  863. {
  864. struct wm8960_data *pdata = dev_get_platdata(&i2c->dev);
  865. struct wm8960_priv *wm8960;
  866. int ret;
  867. wm8960 = devm_kzalloc(&i2c->dev, sizeof(struct wm8960_priv),
  868. GFP_KERNEL);
  869. if (wm8960 == NULL)
  870. return -ENOMEM;
  871. wm8960->regmap = devm_regmap_init_i2c(i2c, &wm8960_regmap);
  872. if (IS_ERR(wm8960->regmap))
  873. return PTR_ERR(wm8960->regmap);
  874. if (pdata && pdata->shared_lrclk) {
  875. ret = regmap_update_bits(wm8960->regmap, WM8960_ADDCTL2,
  876. 0x4, 0x4);
  877. if (ret != 0) {
  878. dev_err(&i2c->dev, "Failed to enable LRCM: %d\n",
  879. ret);
  880. return ret;
  881. }
  882. }
  883. i2c_set_clientdata(i2c, wm8960);
  884. ret = snd_soc_register_codec(&i2c->dev,
  885. &soc_codec_dev_wm8960, &wm8960_dai, 1);
  886. return ret;
  887. }
  888. static int wm8960_i2c_remove(struct i2c_client *client)
  889. {
  890. snd_soc_unregister_codec(&client->dev);
  891. return 0;
  892. }
  893. static const struct i2c_device_id wm8960_i2c_id[] = {
  894. { "wm8960", 0 },
  895. { }
  896. };
  897. MODULE_DEVICE_TABLE(i2c, wm8960_i2c_id);
  898. static struct i2c_driver wm8960_i2c_driver = {
  899. .driver = {
  900. .name = "wm8960",
  901. .owner = THIS_MODULE,
  902. },
  903. .probe = wm8960_i2c_probe,
  904. .remove = wm8960_i2c_remove,
  905. .id_table = wm8960_i2c_id,
  906. };
  907. module_i2c_driver(wm8960_i2c_driver);
  908. MODULE_DESCRIPTION("ASoC WM8960 driver");
  909. MODULE_AUTHOR("Liam Girdwood");
  910. MODULE_LICENSE("GPL");