wm_hubs.c 40 KB

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  1. /*
  2. * wm_hubs.c -- WM8993/4 common code
  3. *
  4. * Copyright 2009 Wolfson Microelectronics plc
  5. *
  6. * Author: Mark Brown <broonie@opensource.wolfsonmicro.com>
  7. *
  8. *
  9. * This program is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License version 2 as
  11. * published by the Free Software Foundation.
  12. */
  13. #include <linux/module.h>
  14. #include <linux/moduleparam.h>
  15. #include <linux/init.h>
  16. #include <linux/delay.h>
  17. #include <linux/pm.h>
  18. #include <linux/i2c.h>
  19. #include <linux/mfd/wm8994/registers.h>
  20. #include <sound/core.h>
  21. #include <sound/pcm.h>
  22. #include <sound/pcm_params.h>
  23. #include <sound/soc.h>
  24. #include <sound/initval.h>
  25. #include <sound/tlv.h>
  26. #include "wm8993.h"
  27. #include "wm_hubs.h"
  28. const DECLARE_TLV_DB_SCALE(wm_hubs_spkmix_tlv, -300, 300, 0);
  29. EXPORT_SYMBOL_GPL(wm_hubs_spkmix_tlv);
  30. static const DECLARE_TLV_DB_SCALE(inpga_tlv, -1650, 150, 0);
  31. static const DECLARE_TLV_DB_SCALE(inmix_sw_tlv, 0, 3000, 0);
  32. static const DECLARE_TLV_DB_SCALE(inmix_tlv, -1500, 300, 1);
  33. static const DECLARE_TLV_DB_SCALE(earpiece_tlv, -600, 600, 0);
  34. static const DECLARE_TLV_DB_SCALE(outmix_tlv, -2100, 300, 0);
  35. static const DECLARE_TLV_DB_SCALE(spkmixout_tlv, -1800, 600, 1);
  36. static const DECLARE_TLV_DB_SCALE(outpga_tlv, -5700, 100, 0);
  37. static const unsigned int spkboost_tlv[] = {
  38. TLV_DB_RANGE_HEAD(2),
  39. 0, 6, TLV_DB_SCALE_ITEM(0, 150, 0),
  40. 7, 7, TLV_DB_SCALE_ITEM(1200, 0, 0),
  41. };
  42. static const DECLARE_TLV_DB_SCALE(line_tlv, -600, 600, 0);
  43. static const char *speaker_ref_text[] = {
  44. "SPKVDD/2",
  45. "VMID",
  46. };
  47. static const struct soc_enum speaker_ref =
  48. SOC_ENUM_SINGLE(WM8993_SPEAKER_MIXER, 8, 2, speaker_ref_text);
  49. static const char *speaker_mode_text[] = {
  50. "Class D",
  51. "Class AB",
  52. };
  53. static const struct soc_enum speaker_mode =
  54. SOC_ENUM_SINGLE(WM8993_SPKMIXR_ATTENUATION, 8, 2, speaker_mode_text);
  55. static void wait_for_dc_servo(struct snd_soc_codec *codec, unsigned int op)
  56. {
  57. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  58. unsigned int reg;
  59. int count = 0;
  60. int timeout;
  61. unsigned int val;
  62. val = op | WM8993_DCS_ENA_CHAN_0 | WM8993_DCS_ENA_CHAN_1;
  63. /* Trigger the command */
  64. snd_soc_write(codec, WM8993_DC_SERVO_0, val);
  65. dev_dbg(codec->dev, "Waiting for DC servo...\n");
  66. if (hubs->dcs_done_irq)
  67. timeout = 4;
  68. else
  69. timeout = 400;
  70. do {
  71. count++;
  72. if (hubs->dcs_done_irq)
  73. wait_for_completion_timeout(&hubs->dcs_done,
  74. msecs_to_jiffies(250));
  75. else
  76. msleep(1);
  77. reg = snd_soc_read(codec, WM8993_DC_SERVO_0);
  78. dev_dbg(codec->dev, "DC servo: %x\n", reg);
  79. } while (reg & op && count < timeout);
  80. if (reg & op)
  81. dev_err(codec->dev, "Timed out waiting for DC Servo %x\n",
  82. op);
  83. }
  84. irqreturn_t wm_hubs_dcs_done(int irq, void *data)
  85. {
  86. struct wm_hubs_data *hubs = data;
  87. complete(&hubs->dcs_done);
  88. return IRQ_HANDLED;
  89. }
  90. EXPORT_SYMBOL_GPL(wm_hubs_dcs_done);
  91. static bool wm_hubs_dac_hp_direct(struct snd_soc_codec *codec)
  92. {
  93. int reg;
  94. /* If we're going via the mixer we'll need to do additional checks */
  95. reg = snd_soc_read(codec, WM8993_OUTPUT_MIXER1);
  96. if (!(reg & WM8993_DACL_TO_HPOUT1L)) {
  97. if (reg & ~WM8993_DACL_TO_MIXOUTL) {
  98. dev_vdbg(codec->dev, "Analogue paths connected: %x\n",
  99. reg & ~WM8993_DACL_TO_HPOUT1L);
  100. return false;
  101. } else {
  102. dev_vdbg(codec->dev, "HPL connected to mixer\n");
  103. }
  104. } else {
  105. dev_vdbg(codec->dev, "HPL connected to DAC\n");
  106. }
  107. reg = snd_soc_read(codec, WM8993_OUTPUT_MIXER2);
  108. if (!(reg & WM8993_DACR_TO_HPOUT1R)) {
  109. if (reg & ~WM8993_DACR_TO_MIXOUTR) {
  110. dev_vdbg(codec->dev, "Analogue paths connected: %x\n",
  111. reg & ~WM8993_DACR_TO_HPOUT1R);
  112. return false;
  113. } else {
  114. dev_vdbg(codec->dev, "HPR connected to mixer\n");
  115. }
  116. } else {
  117. dev_vdbg(codec->dev, "HPR connected to DAC\n");
  118. }
  119. return true;
  120. }
  121. struct wm_hubs_dcs_cache {
  122. struct list_head list;
  123. unsigned int left;
  124. unsigned int right;
  125. u16 dcs_cfg;
  126. };
  127. static bool wm_hubs_dcs_cache_get(struct snd_soc_codec *codec,
  128. struct wm_hubs_dcs_cache **entry)
  129. {
  130. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  131. struct wm_hubs_dcs_cache *cache;
  132. unsigned int left, right;
  133. left = snd_soc_read(codec, WM8993_LEFT_OUTPUT_VOLUME);
  134. left &= WM8993_HPOUT1L_VOL_MASK;
  135. right = snd_soc_read(codec, WM8993_RIGHT_OUTPUT_VOLUME);
  136. right &= WM8993_HPOUT1R_VOL_MASK;
  137. list_for_each_entry(cache, &hubs->dcs_cache, list) {
  138. if (cache->left != left || cache->right != right)
  139. continue;
  140. *entry = cache;
  141. return true;
  142. }
  143. return false;
  144. }
  145. static void wm_hubs_dcs_cache_set(struct snd_soc_codec *codec, u16 dcs_cfg)
  146. {
  147. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  148. struct wm_hubs_dcs_cache *cache;
  149. if (hubs->no_cache_dac_hp_direct)
  150. return;
  151. cache = devm_kzalloc(codec->dev, sizeof(*cache), GFP_KERNEL);
  152. if (!cache) {
  153. dev_err(codec->dev, "Failed to allocate DCS cache entry\n");
  154. return;
  155. }
  156. cache->left = snd_soc_read(codec, WM8993_LEFT_OUTPUT_VOLUME);
  157. cache->left &= WM8993_HPOUT1L_VOL_MASK;
  158. cache->right = snd_soc_read(codec, WM8993_RIGHT_OUTPUT_VOLUME);
  159. cache->right &= WM8993_HPOUT1R_VOL_MASK;
  160. cache->dcs_cfg = dcs_cfg;
  161. list_add_tail(&cache->list, &hubs->dcs_cache);
  162. }
  163. /*
  164. * Startup calibration of the DC servo
  165. */
  166. static void calibrate_dc_servo(struct snd_soc_codec *codec)
  167. {
  168. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  169. struct wm_hubs_dcs_cache *cache;
  170. s8 offset;
  171. u16 reg, reg_l, reg_r, dcs_cfg, dcs_reg;
  172. switch (hubs->dcs_readback_mode) {
  173. case 2:
  174. dcs_reg = WM8994_DC_SERVO_4E;
  175. break;
  176. default:
  177. dcs_reg = WM8993_DC_SERVO_3;
  178. break;
  179. }
  180. /* If we're using a digital only path and have a previously
  181. * callibrated DC servo offset stored then use that. */
  182. if (wm_hubs_dac_hp_direct(codec) &&
  183. wm_hubs_dcs_cache_get(codec, &cache)) {
  184. dev_dbg(codec->dev, "Using cached DCS offset %x for %d,%d\n",
  185. cache->dcs_cfg, cache->left, cache->right);
  186. snd_soc_write(codec, dcs_reg, cache->dcs_cfg);
  187. wait_for_dc_servo(codec,
  188. WM8993_DCS_TRIG_DAC_WR_0 |
  189. WM8993_DCS_TRIG_DAC_WR_1);
  190. return;
  191. }
  192. if (hubs->series_startup) {
  193. /* Set for 32 series updates */
  194. snd_soc_update_bits(codec, WM8993_DC_SERVO_1,
  195. WM8993_DCS_SERIES_NO_01_MASK,
  196. 32 << WM8993_DCS_SERIES_NO_01_SHIFT);
  197. wait_for_dc_servo(codec,
  198. WM8993_DCS_TRIG_SERIES_0 |
  199. WM8993_DCS_TRIG_SERIES_1);
  200. } else {
  201. wait_for_dc_servo(codec,
  202. WM8993_DCS_TRIG_STARTUP_0 |
  203. WM8993_DCS_TRIG_STARTUP_1);
  204. }
  205. /* Different chips in the family support different readback
  206. * methods.
  207. */
  208. switch (hubs->dcs_readback_mode) {
  209. case 0:
  210. reg_l = snd_soc_read(codec, WM8993_DC_SERVO_READBACK_1)
  211. & WM8993_DCS_INTEG_CHAN_0_MASK;
  212. reg_r = snd_soc_read(codec, WM8993_DC_SERVO_READBACK_2)
  213. & WM8993_DCS_INTEG_CHAN_1_MASK;
  214. break;
  215. case 2:
  216. case 1:
  217. reg = snd_soc_read(codec, dcs_reg);
  218. reg_r = (reg & WM8993_DCS_DAC_WR_VAL_1_MASK)
  219. >> WM8993_DCS_DAC_WR_VAL_1_SHIFT;
  220. reg_l = reg & WM8993_DCS_DAC_WR_VAL_0_MASK;
  221. break;
  222. default:
  223. WARN(1, "Unknown DCS readback method\n");
  224. return;
  225. }
  226. dev_dbg(codec->dev, "DCS input: %x %x\n", reg_l, reg_r);
  227. /* Apply correction to DC servo result */
  228. if (hubs->dcs_codes_l || hubs->dcs_codes_r) {
  229. dev_dbg(codec->dev,
  230. "Applying %d/%d code DC servo correction\n",
  231. hubs->dcs_codes_l, hubs->dcs_codes_r);
  232. /* HPOUT1R */
  233. offset = reg_r;
  234. offset += hubs->dcs_codes_r;
  235. dcs_cfg = (u8)offset << WM8993_DCS_DAC_WR_VAL_1_SHIFT;
  236. /* HPOUT1L */
  237. offset = reg_l;
  238. offset += hubs->dcs_codes_l;
  239. dcs_cfg |= (u8)offset;
  240. dev_dbg(codec->dev, "DCS result: %x\n", dcs_cfg);
  241. /* Do it */
  242. snd_soc_write(codec, dcs_reg, dcs_cfg);
  243. wait_for_dc_servo(codec,
  244. WM8993_DCS_TRIG_DAC_WR_0 |
  245. WM8993_DCS_TRIG_DAC_WR_1);
  246. } else {
  247. dcs_cfg = reg_r << WM8993_DCS_DAC_WR_VAL_1_SHIFT;
  248. dcs_cfg |= reg_l;
  249. }
  250. /* Save the callibrated offset if we're in class W mode and
  251. * therefore don't have any analogue signal mixed in. */
  252. if (wm_hubs_dac_hp_direct(codec))
  253. wm_hubs_dcs_cache_set(codec, dcs_cfg);
  254. }
  255. /*
  256. * Update the DC servo calibration on gain changes
  257. */
  258. static int wm8993_put_dc_servo(struct snd_kcontrol *kcontrol,
  259. struct snd_ctl_elem_value *ucontrol)
  260. {
  261. struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol);
  262. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  263. int ret;
  264. ret = snd_soc_put_volsw(kcontrol, ucontrol);
  265. /* If we're applying an offset correction then updating the
  266. * callibration would be likely to introduce further offsets. */
  267. if (hubs->dcs_codes_l || hubs->dcs_codes_r || hubs->no_series_update)
  268. return ret;
  269. /* Only need to do this if the outputs are active */
  270. if (snd_soc_read(codec, WM8993_POWER_MANAGEMENT_1)
  271. & (WM8993_HPOUT1L_ENA | WM8993_HPOUT1R_ENA))
  272. snd_soc_update_bits(codec,
  273. WM8993_DC_SERVO_0,
  274. WM8993_DCS_TRIG_SINGLE_0 |
  275. WM8993_DCS_TRIG_SINGLE_1,
  276. WM8993_DCS_TRIG_SINGLE_0 |
  277. WM8993_DCS_TRIG_SINGLE_1);
  278. return ret;
  279. }
  280. static const struct snd_kcontrol_new analogue_snd_controls[] = {
  281. SOC_SINGLE_TLV("IN1L Volume", WM8993_LEFT_LINE_INPUT_1_2_VOLUME, 0, 31, 0,
  282. inpga_tlv),
  283. SOC_SINGLE("IN1L Switch", WM8993_LEFT_LINE_INPUT_1_2_VOLUME, 7, 1, 1),
  284. SOC_SINGLE("IN1L ZC Switch", WM8993_LEFT_LINE_INPUT_1_2_VOLUME, 6, 1, 0),
  285. SOC_SINGLE_TLV("IN1R Volume", WM8993_RIGHT_LINE_INPUT_1_2_VOLUME, 0, 31, 0,
  286. inpga_tlv),
  287. SOC_SINGLE("IN1R Switch", WM8993_RIGHT_LINE_INPUT_1_2_VOLUME, 7, 1, 1),
  288. SOC_SINGLE("IN1R ZC Switch", WM8993_RIGHT_LINE_INPUT_1_2_VOLUME, 6, 1, 0),
  289. SOC_SINGLE_TLV("IN2L Volume", WM8993_LEFT_LINE_INPUT_3_4_VOLUME, 0, 31, 0,
  290. inpga_tlv),
  291. SOC_SINGLE("IN2L Switch", WM8993_LEFT_LINE_INPUT_3_4_VOLUME, 7, 1, 1),
  292. SOC_SINGLE("IN2L ZC Switch", WM8993_LEFT_LINE_INPUT_3_4_VOLUME, 6, 1, 0),
  293. SOC_SINGLE_TLV("IN2R Volume", WM8993_RIGHT_LINE_INPUT_3_4_VOLUME, 0, 31, 0,
  294. inpga_tlv),
  295. SOC_SINGLE("IN2R Switch", WM8993_RIGHT_LINE_INPUT_3_4_VOLUME, 7, 1, 1),
  296. SOC_SINGLE("IN2R ZC Switch", WM8993_RIGHT_LINE_INPUT_3_4_VOLUME, 6, 1, 0),
  297. SOC_SINGLE_TLV("MIXINL IN2L Volume", WM8993_INPUT_MIXER3, 7, 1, 0,
  298. inmix_sw_tlv),
  299. SOC_SINGLE_TLV("MIXINL IN1L Volume", WM8993_INPUT_MIXER3, 4, 1, 0,
  300. inmix_sw_tlv),
  301. SOC_SINGLE_TLV("MIXINL Output Record Volume", WM8993_INPUT_MIXER3, 0, 7, 0,
  302. inmix_tlv),
  303. SOC_SINGLE_TLV("MIXINL IN1LP Volume", WM8993_INPUT_MIXER5, 6, 7, 0, inmix_tlv),
  304. SOC_SINGLE_TLV("MIXINL Direct Voice Volume", WM8993_INPUT_MIXER5, 0, 6, 0,
  305. inmix_tlv),
  306. SOC_SINGLE_TLV("MIXINR IN2R Volume", WM8993_INPUT_MIXER4, 7, 1, 0,
  307. inmix_sw_tlv),
  308. SOC_SINGLE_TLV("MIXINR IN1R Volume", WM8993_INPUT_MIXER4, 4, 1, 0,
  309. inmix_sw_tlv),
  310. SOC_SINGLE_TLV("MIXINR Output Record Volume", WM8993_INPUT_MIXER4, 0, 7, 0,
  311. inmix_tlv),
  312. SOC_SINGLE_TLV("MIXINR IN1RP Volume", WM8993_INPUT_MIXER6, 6, 7, 0, inmix_tlv),
  313. SOC_SINGLE_TLV("MIXINR Direct Voice Volume", WM8993_INPUT_MIXER6, 0, 6, 0,
  314. inmix_tlv),
  315. SOC_SINGLE_TLV("Left Output Mixer IN2RN Volume", WM8993_OUTPUT_MIXER5, 6, 7, 1,
  316. outmix_tlv),
  317. SOC_SINGLE_TLV("Left Output Mixer IN2LN Volume", WM8993_OUTPUT_MIXER3, 6, 7, 1,
  318. outmix_tlv),
  319. SOC_SINGLE_TLV("Left Output Mixer IN2LP Volume", WM8993_OUTPUT_MIXER3, 9, 7, 1,
  320. outmix_tlv),
  321. SOC_SINGLE_TLV("Left Output Mixer IN1L Volume", WM8993_OUTPUT_MIXER3, 0, 7, 1,
  322. outmix_tlv),
  323. SOC_SINGLE_TLV("Left Output Mixer IN1R Volume", WM8993_OUTPUT_MIXER3, 3, 7, 1,
  324. outmix_tlv),
  325. SOC_SINGLE_TLV("Left Output Mixer Right Input Volume",
  326. WM8993_OUTPUT_MIXER5, 3, 7, 1, outmix_tlv),
  327. SOC_SINGLE_TLV("Left Output Mixer Left Input Volume",
  328. WM8993_OUTPUT_MIXER5, 0, 7, 1, outmix_tlv),
  329. SOC_SINGLE_TLV("Left Output Mixer DAC Volume", WM8993_OUTPUT_MIXER5, 9, 7, 1,
  330. outmix_tlv),
  331. SOC_SINGLE_TLV("Right Output Mixer IN2LN Volume",
  332. WM8993_OUTPUT_MIXER6, 6, 7, 1, outmix_tlv),
  333. SOC_SINGLE_TLV("Right Output Mixer IN2RN Volume",
  334. WM8993_OUTPUT_MIXER4, 6, 7, 1, outmix_tlv),
  335. SOC_SINGLE_TLV("Right Output Mixer IN1L Volume",
  336. WM8993_OUTPUT_MIXER4, 3, 7, 1, outmix_tlv),
  337. SOC_SINGLE_TLV("Right Output Mixer IN1R Volume",
  338. WM8993_OUTPUT_MIXER4, 0, 7, 1, outmix_tlv),
  339. SOC_SINGLE_TLV("Right Output Mixer IN2RP Volume",
  340. WM8993_OUTPUT_MIXER4, 9, 7, 1, outmix_tlv),
  341. SOC_SINGLE_TLV("Right Output Mixer Left Input Volume",
  342. WM8993_OUTPUT_MIXER6, 3, 7, 1, outmix_tlv),
  343. SOC_SINGLE_TLV("Right Output Mixer Right Input Volume",
  344. WM8993_OUTPUT_MIXER6, 6, 7, 1, outmix_tlv),
  345. SOC_SINGLE_TLV("Right Output Mixer DAC Volume",
  346. WM8993_OUTPUT_MIXER6, 9, 7, 1, outmix_tlv),
  347. SOC_DOUBLE_R_TLV("Output Volume", WM8993_LEFT_OPGA_VOLUME,
  348. WM8993_RIGHT_OPGA_VOLUME, 0, 63, 0, outpga_tlv),
  349. SOC_DOUBLE_R("Output Switch", WM8993_LEFT_OPGA_VOLUME,
  350. WM8993_RIGHT_OPGA_VOLUME, 6, 1, 0),
  351. SOC_DOUBLE_R("Output ZC Switch", WM8993_LEFT_OPGA_VOLUME,
  352. WM8993_RIGHT_OPGA_VOLUME, 7, 1, 0),
  353. SOC_SINGLE("Earpiece Switch", WM8993_HPOUT2_VOLUME, 5, 1, 1),
  354. SOC_SINGLE_TLV("Earpiece Volume", WM8993_HPOUT2_VOLUME, 4, 1, 1, earpiece_tlv),
  355. SOC_SINGLE_TLV("SPKL Input Volume", WM8993_SPKMIXL_ATTENUATION,
  356. 5, 1, 1, wm_hubs_spkmix_tlv),
  357. SOC_SINGLE_TLV("SPKL IN1LP Volume", WM8993_SPKMIXL_ATTENUATION,
  358. 4, 1, 1, wm_hubs_spkmix_tlv),
  359. SOC_SINGLE_TLV("SPKL Output Volume", WM8993_SPKMIXL_ATTENUATION,
  360. 3, 1, 1, wm_hubs_spkmix_tlv),
  361. SOC_SINGLE_TLV("SPKR Input Volume", WM8993_SPKMIXR_ATTENUATION,
  362. 5, 1, 1, wm_hubs_spkmix_tlv),
  363. SOC_SINGLE_TLV("SPKR IN1RP Volume", WM8993_SPKMIXR_ATTENUATION,
  364. 4, 1, 1, wm_hubs_spkmix_tlv),
  365. SOC_SINGLE_TLV("SPKR Output Volume", WM8993_SPKMIXR_ATTENUATION,
  366. 3, 1, 1, wm_hubs_spkmix_tlv),
  367. SOC_DOUBLE_R_TLV("Speaker Mixer Volume",
  368. WM8993_SPKMIXL_ATTENUATION, WM8993_SPKMIXR_ATTENUATION,
  369. 0, 3, 1, spkmixout_tlv),
  370. SOC_DOUBLE_R_TLV("Speaker Volume",
  371. WM8993_SPEAKER_VOLUME_LEFT, WM8993_SPEAKER_VOLUME_RIGHT,
  372. 0, 63, 0, outpga_tlv),
  373. SOC_DOUBLE_R("Speaker Switch",
  374. WM8993_SPEAKER_VOLUME_LEFT, WM8993_SPEAKER_VOLUME_RIGHT,
  375. 6, 1, 0),
  376. SOC_DOUBLE_R("Speaker ZC Switch",
  377. WM8993_SPEAKER_VOLUME_LEFT, WM8993_SPEAKER_VOLUME_RIGHT,
  378. 7, 1, 0),
  379. SOC_DOUBLE_TLV("Speaker Boost Volume", WM8993_SPKOUT_BOOST, 3, 0, 7, 0,
  380. spkboost_tlv),
  381. SOC_ENUM("Speaker Reference", speaker_ref),
  382. SOC_ENUM("Speaker Mode", speaker_mode),
  383. SOC_DOUBLE_R_EXT_TLV("Headphone Volume",
  384. WM8993_LEFT_OUTPUT_VOLUME, WM8993_RIGHT_OUTPUT_VOLUME,
  385. 0, 63, 0, snd_soc_get_volsw, wm8993_put_dc_servo,
  386. outpga_tlv),
  387. SOC_DOUBLE_R("Headphone Switch", WM8993_LEFT_OUTPUT_VOLUME,
  388. WM8993_RIGHT_OUTPUT_VOLUME, 6, 1, 0),
  389. SOC_DOUBLE_R("Headphone ZC Switch", WM8993_LEFT_OUTPUT_VOLUME,
  390. WM8993_RIGHT_OUTPUT_VOLUME, 7, 1, 0),
  391. SOC_SINGLE("LINEOUT1N Switch", WM8993_LINE_OUTPUTS_VOLUME, 6, 1, 1),
  392. SOC_SINGLE("LINEOUT1P Switch", WM8993_LINE_OUTPUTS_VOLUME, 5, 1, 1),
  393. SOC_SINGLE_TLV("LINEOUT1 Volume", WM8993_LINE_OUTPUTS_VOLUME, 4, 1, 1,
  394. line_tlv),
  395. SOC_SINGLE("LINEOUT2N Switch", WM8993_LINE_OUTPUTS_VOLUME, 2, 1, 1),
  396. SOC_SINGLE("LINEOUT2P Switch", WM8993_LINE_OUTPUTS_VOLUME, 1, 1, 1),
  397. SOC_SINGLE_TLV("LINEOUT2 Volume", WM8993_LINE_OUTPUTS_VOLUME, 0, 1, 1,
  398. line_tlv),
  399. };
  400. static int hp_supply_event(struct snd_soc_dapm_widget *w,
  401. struct snd_kcontrol *kcontrol, int event)
  402. {
  403. struct snd_soc_codec *codec = w->codec;
  404. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  405. switch (event) {
  406. case SND_SOC_DAPM_PRE_PMU:
  407. switch (hubs->hp_startup_mode) {
  408. case 0:
  409. break;
  410. case 1:
  411. /* Enable the headphone amp */
  412. snd_soc_update_bits(codec, WM8993_POWER_MANAGEMENT_1,
  413. WM8993_HPOUT1L_ENA |
  414. WM8993_HPOUT1R_ENA,
  415. WM8993_HPOUT1L_ENA |
  416. WM8993_HPOUT1R_ENA);
  417. /* Enable the second stage */
  418. snd_soc_update_bits(codec, WM8993_ANALOGUE_HP_0,
  419. WM8993_HPOUT1L_DLY |
  420. WM8993_HPOUT1R_DLY,
  421. WM8993_HPOUT1L_DLY |
  422. WM8993_HPOUT1R_DLY);
  423. break;
  424. default:
  425. dev_err(codec->dev, "Unknown HP startup mode %d\n",
  426. hubs->hp_startup_mode);
  427. break;
  428. }
  429. case SND_SOC_DAPM_PRE_PMD:
  430. snd_soc_update_bits(codec, WM8993_CHARGE_PUMP_1,
  431. WM8993_CP_ENA, 0);
  432. break;
  433. }
  434. return 0;
  435. }
  436. static int hp_event(struct snd_soc_dapm_widget *w,
  437. struct snd_kcontrol *kcontrol, int event)
  438. {
  439. struct snd_soc_codec *codec = w->codec;
  440. unsigned int reg = snd_soc_read(codec, WM8993_ANALOGUE_HP_0);
  441. switch (event) {
  442. case SND_SOC_DAPM_POST_PMU:
  443. snd_soc_update_bits(codec, WM8993_CHARGE_PUMP_1,
  444. WM8993_CP_ENA, WM8993_CP_ENA);
  445. msleep(5);
  446. snd_soc_update_bits(codec, WM8993_POWER_MANAGEMENT_1,
  447. WM8993_HPOUT1L_ENA | WM8993_HPOUT1R_ENA,
  448. WM8993_HPOUT1L_ENA | WM8993_HPOUT1R_ENA);
  449. reg |= WM8993_HPOUT1L_DLY | WM8993_HPOUT1R_DLY;
  450. snd_soc_write(codec, WM8993_ANALOGUE_HP_0, reg);
  451. snd_soc_update_bits(codec, WM8993_DC_SERVO_1,
  452. WM8993_DCS_TIMER_PERIOD_01_MASK, 0);
  453. calibrate_dc_servo(codec);
  454. reg |= WM8993_HPOUT1R_OUTP | WM8993_HPOUT1R_RMV_SHORT |
  455. WM8993_HPOUT1L_OUTP | WM8993_HPOUT1L_RMV_SHORT;
  456. snd_soc_write(codec, WM8993_ANALOGUE_HP_0, reg);
  457. break;
  458. case SND_SOC_DAPM_PRE_PMD:
  459. snd_soc_update_bits(codec, WM8993_ANALOGUE_HP_0,
  460. WM8993_HPOUT1L_OUTP |
  461. WM8993_HPOUT1R_OUTP |
  462. WM8993_HPOUT1L_RMV_SHORT |
  463. WM8993_HPOUT1R_RMV_SHORT, 0);
  464. snd_soc_update_bits(codec, WM8993_ANALOGUE_HP_0,
  465. WM8993_HPOUT1L_DLY |
  466. WM8993_HPOUT1R_DLY, 0);
  467. snd_soc_write(codec, WM8993_DC_SERVO_0, 0);
  468. snd_soc_update_bits(codec, WM8993_POWER_MANAGEMENT_1,
  469. WM8993_HPOUT1L_ENA | WM8993_HPOUT1R_ENA,
  470. 0);
  471. break;
  472. }
  473. return 0;
  474. }
  475. static int earpiece_event(struct snd_soc_dapm_widget *w,
  476. struct snd_kcontrol *control, int event)
  477. {
  478. struct snd_soc_codec *codec = w->codec;
  479. u16 reg = snd_soc_read(codec, WM8993_ANTIPOP1) & ~WM8993_HPOUT2_IN_ENA;
  480. switch (event) {
  481. case SND_SOC_DAPM_PRE_PMU:
  482. reg |= WM8993_HPOUT2_IN_ENA;
  483. snd_soc_write(codec, WM8993_ANTIPOP1, reg);
  484. udelay(50);
  485. break;
  486. case SND_SOC_DAPM_POST_PMD:
  487. snd_soc_write(codec, WM8993_ANTIPOP1, reg);
  488. break;
  489. default:
  490. BUG();
  491. break;
  492. }
  493. return 0;
  494. }
  495. static int lineout_event(struct snd_soc_dapm_widget *w,
  496. struct snd_kcontrol *control, int event)
  497. {
  498. struct snd_soc_codec *codec = w->codec;
  499. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  500. bool *flag;
  501. switch (w->shift) {
  502. case WM8993_LINEOUT1N_ENA_SHIFT:
  503. flag = &hubs->lineout1n_ena;
  504. break;
  505. case WM8993_LINEOUT1P_ENA_SHIFT:
  506. flag = &hubs->lineout1p_ena;
  507. break;
  508. case WM8993_LINEOUT2N_ENA_SHIFT:
  509. flag = &hubs->lineout2n_ena;
  510. break;
  511. case WM8993_LINEOUT2P_ENA_SHIFT:
  512. flag = &hubs->lineout2p_ena;
  513. break;
  514. default:
  515. WARN(1, "Unknown line output");
  516. return -EINVAL;
  517. }
  518. *flag = SND_SOC_DAPM_EVENT_ON(event);
  519. return 0;
  520. }
  521. void wm_hubs_update_class_w(struct snd_soc_codec *codec)
  522. {
  523. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  524. int enable = WM8993_CP_DYN_V | WM8993_CP_DYN_FREQ;
  525. if (!wm_hubs_dac_hp_direct(codec))
  526. enable = false;
  527. if (hubs->check_class_w_digital && !hubs->check_class_w_digital(codec))
  528. enable = false;
  529. dev_vdbg(codec->dev, "Class W %s\n", enable ? "enabled" : "disabled");
  530. snd_soc_update_bits(codec, WM8993_CLASS_W_0,
  531. WM8993_CP_DYN_V | WM8993_CP_DYN_FREQ, enable);
  532. }
  533. EXPORT_SYMBOL_GPL(wm_hubs_update_class_w);
  534. #define WM_HUBS_SINGLE_W(xname, reg, shift, max, invert) \
  535. { .iface = SNDRV_CTL_ELEM_IFACE_MIXER, .name = xname, \
  536. .info = snd_soc_info_volsw, \
  537. .get = snd_soc_dapm_get_volsw, .put = class_w_put_volsw, \
  538. .private_value = SOC_SINGLE_VALUE(reg, shift, max, invert) }
  539. static int class_w_put_volsw(struct snd_kcontrol *kcontrol,
  540. struct snd_ctl_elem_value *ucontrol)
  541. {
  542. struct snd_soc_dapm_widget_list *wlist = snd_kcontrol_chip(kcontrol);
  543. struct snd_soc_dapm_widget *widget = wlist->widgets[0];
  544. struct snd_soc_codec *codec = widget->codec;
  545. int ret;
  546. ret = snd_soc_dapm_put_volsw(kcontrol, ucontrol);
  547. wm_hubs_update_class_w(codec);
  548. return ret;
  549. }
  550. #define WM_HUBS_ENUM_W(xname, xenum) \
  551. { .iface = SNDRV_CTL_ELEM_IFACE_MIXER, .name = xname, \
  552. .info = snd_soc_info_enum_double, \
  553. .get = snd_soc_dapm_get_enum_double, \
  554. .put = class_w_put_double, \
  555. .private_value = (unsigned long)&xenum }
  556. static int class_w_put_double(struct snd_kcontrol *kcontrol,
  557. struct snd_ctl_elem_value *ucontrol)
  558. {
  559. struct snd_soc_dapm_widget_list *wlist = snd_kcontrol_chip(kcontrol);
  560. struct snd_soc_dapm_widget *widget = wlist->widgets[0];
  561. struct snd_soc_codec *codec = widget->codec;
  562. int ret;
  563. ret = snd_soc_dapm_put_enum_double(kcontrol, ucontrol);
  564. wm_hubs_update_class_w(codec);
  565. return ret;
  566. }
  567. static const char *hp_mux_text[] = {
  568. "Mixer",
  569. "DAC",
  570. };
  571. static const struct soc_enum hpl_enum =
  572. SOC_ENUM_SINGLE(WM8993_OUTPUT_MIXER1, 8, 2, hp_mux_text);
  573. const struct snd_kcontrol_new wm_hubs_hpl_mux =
  574. WM_HUBS_ENUM_W("Left Headphone Mux", hpl_enum);
  575. EXPORT_SYMBOL_GPL(wm_hubs_hpl_mux);
  576. static const struct soc_enum hpr_enum =
  577. SOC_ENUM_SINGLE(WM8993_OUTPUT_MIXER2, 8, 2, hp_mux_text);
  578. const struct snd_kcontrol_new wm_hubs_hpr_mux =
  579. WM_HUBS_ENUM_W("Right Headphone Mux", hpr_enum);
  580. EXPORT_SYMBOL_GPL(wm_hubs_hpr_mux);
  581. static const struct snd_kcontrol_new in1l_pga[] = {
  582. SOC_DAPM_SINGLE("IN1LP Switch", WM8993_INPUT_MIXER2, 5, 1, 0),
  583. SOC_DAPM_SINGLE("IN1LN Switch", WM8993_INPUT_MIXER2, 4, 1, 0),
  584. };
  585. static const struct snd_kcontrol_new in1r_pga[] = {
  586. SOC_DAPM_SINGLE("IN1RP Switch", WM8993_INPUT_MIXER2, 1, 1, 0),
  587. SOC_DAPM_SINGLE("IN1RN Switch", WM8993_INPUT_MIXER2, 0, 1, 0),
  588. };
  589. static const struct snd_kcontrol_new in2l_pga[] = {
  590. SOC_DAPM_SINGLE("IN2LP Switch", WM8993_INPUT_MIXER2, 7, 1, 0),
  591. SOC_DAPM_SINGLE("IN2LN Switch", WM8993_INPUT_MIXER2, 6, 1, 0),
  592. };
  593. static const struct snd_kcontrol_new in2r_pga[] = {
  594. SOC_DAPM_SINGLE("IN2RP Switch", WM8993_INPUT_MIXER2, 3, 1, 0),
  595. SOC_DAPM_SINGLE("IN2RN Switch", WM8993_INPUT_MIXER2, 2, 1, 0),
  596. };
  597. static const struct snd_kcontrol_new mixinl[] = {
  598. SOC_DAPM_SINGLE("IN2L Switch", WM8993_INPUT_MIXER3, 8, 1, 0),
  599. SOC_DAPM_SINGLE("IN1L Switch", WM8993_INPUT_MIXER3, 5, 1, 0),
  600. };
  601. static const struct snd_kcontrol_new mixinr[] = {
  602. SOC_DAPM_SINGLE("IN2R Switch", WM8993_INPUT_MIXER4, 8, 1, 0),
  603. SOC_DAPM_SINGLE("IN1R Switch", WM8993_INPUT_MIXER4, 5, 1, 0),
  604. };
  605. static const struct snd_kcontrol_new left_output_mixer[] = {
  606. WM_HUBS_SINGLE_W("Right Input Switch", WM8993_OUTPUT_MIXER1, 7, 1, 0),
  607. WM_HUBS_SINGLE_W("Left Input Switch", WM8993_OUTPUT_MIXER1, 6, 1, 0),
  608. WM_HUBS_SINGLE_W("IN2RN Switch", WM8993_OUTPUT_MIXER1, 5, 1, 0),
  609. WM_HUBS_SINGLE_W("IN2LN Switch", WM8993_OUTPUT_MIXER1, 4, 1, 0),
  610. WM_HUBS_SINGLE_W("IN2LP Switch", WM8993_OUTPUT_MIXER1, 1, 1, 0),
  611. WM_HUBS_SINGLE_W("IN1R Switch", WM8993_OUTPUT_MIXER1, 3, 1, 0),
  612. WM_HUBS_SINGLE_W("IN1L Switch", WM8993_OUTPUT_MIXER1, 2, 1, 0),
  613. WM_HUBS_SINGLE_W("DAC Switch", WM8993_OUTPUT_MIXER1, 0, 1, 0),
  614. };
  615. static const struct snd_kcontrol_new right_output_mixer[] = {
  616. WM_HUBS_SINGLE_W("Left Input Switch", WM8993_OUTPUT_MIXER2, 7, 1, 0),
  617. WM_HUBS_SINGLE_W("Right Input Switch", WM8993_OUTPUT_MIXER2, 6, 1, 0),
  618. WM_HUBS_SINGLE_W("IN2LN Switch", WM8993_OUTPUT_MIXER2, 5, 1, 0),
  619. WM_HUBS_SINGLE_W("IN2RN Switch", WM8993_OUTPUT_MIXER2, 4, 1, 0),
  620. WM_HUBS_SINGLE_W("IN1L Switch", WM8993_OUTPUT_MIXER2, 3, 1, 0),
  621. WM_HUBS_SINGLE_W("IN1R Switch", WM8993_OUTPUT_MIXER2, 2, 1, 0),
  622. WM_HUBS_SINGLE_W("IN2RP Switch", WM8993_OUTPUT_MIXER2, 1, 1, 0),
  623. WM_HUBS_SINGLE_W("DAC Switch", WM8993_OUTPUT_MIXER2, 0, 1, 0),
  624. };
  625. static const struct snd_kcontrol_new earpiece_mixer[] = {
  626. SOC_DAPM_SINGLE("Direct Voice Switch", WM8993_HPOUT2_MIXER, 5, 1, 0),
  627. SOC_DAPM_SINGLE("Left Output Switch", WM8993_HPOUT2_MIXER, 4, 1, 0),
  628. SOC_DAPM_SINGLE("Right Output Switch", WM8993_HPOUT2_MIXER, 3, 1, 0),
  629. };
  630. static const struct snd_kcontrol_new left_speaker_boost[] = {
  631. SOC_DAPM_SINGLE("Direct Voice Switch", WM8993_SPKOUT_MIXERS, 5, 1, 0),
  632. SOC_DAPM_SINGLE("SPKL Switch", WM8993_SPKOUT_MIXERS, 4, 1, 0),
  633. SOC_DAPM_SINGLE("SPKR Switch", WM8993_SPKOUT_MIXERS, 3, 1, 0),
  634. };
  635. static const struct snd_kcontrol_new right_speaker_boost[] = {
  636. SOC_DAPM_SINGLE("Direct Voice Switch", WM8993_SPKOUT_MIXERS, 2, 1, 0),
  637. SOC_DAPM_SINGLE("SPKL Switch", WM8993_SPKOUT_MIXERS, 1, 1, 0),
  638. SOC_DAPM_SINGLE("SPKR Switch", WM8993_SPKOUT_MIXERS, 0, 1, 0),
  639. };
  640. static const struct snd_kcontrol_new line1_mix[] = {
  641. SOC_DAPM_SINGLE("IN1R Switch", WM8993_LINE_MIXER1, 2, 1, 0),
  642. SOC_DAPM_SINGLE("IN1L Switch", WM8993_LINE_MIXER1, 1, 1, 0),
  643. SOC_DAPM_SINGLE("Output Switch", WM8993_LINE_MIXER1, 0, 1, 0),
  644. };
  645. static const struct snd_kcontrol_new line1n_mix[] = {
  646. SOC_DAPM_SINGLE("Left Output Switch", WM8993_LINE_MIXER1, 6, 1, 0),
  647. SOC_DAPM_SINGLE("Right Output Switch", WM8993_LINE_MIXER1, 5, 1, 0),
  648. };
  649. static const struct snd_kcontrol_new line1p_mix[] = {
  650. SOC_DAPM_SINGLE("Left Output Switch", WM8993_LINE_MIXER1, 0, 1, 0),
  651. };
  652. static const struct snd_kcontrol_new line2_mix[] = {
  653. SOC_DAPM_SINGLE("IN1L Switch", WM8993_LINE_MIXER2, 2, 1, 0),
  654. SOC_DAPM_SINGLE("IN1R Switch", WM8993_LINE_MIXER2, 1, 1, 0),
  655. SOC_DAPM_SINGLE("Output Switch", WM8993_LINE_MIXER2, 0, 1, 0),
  656. };
  657. static const struct snd_kcontrol_new line2n_mix[] = {
  658. SOC_DAPM_SINGLE("Left Output Switch", WM8993_LINE_MIXER2, 5, 1, 0),
  659. SOC_DAPM_SINGLE("Right Output Switch", WM8993_LINE_MIXER2, 6, 1, 0),
  660. };
  661. static const struct snd_kcontrol_new line2p_mix[] = {
  662. SOC_DAPM_SINGLE("Right Output Switch", WM8993_LINE_MIXER2, 0, 1, 0),
  663. };
  664. static const struct snd_soc_dapm_widget analogue_dapm_widgets[] = {
  665. SND_SOC_DAPM_INPUT("IN1LN"),
  666. SND_SOC_DAPM_INPUT("IN1LP"),
  667. SND_SOC_DAPM_INPUT("IN2LN"),
  668. SND_SOC_DAPM_INPUT("IN2LP:VXRN"),
  669. SND_SOC_DAPM_INPUT("IN1RN"),
  670. SND_SOC_DAPM_INPUT("IN1RP"),
  671. SND_SOC_DAPM_INPUT("IN2RN"),
  672. SND_SOC_DAPM_INPUT("IN2RP:VXRP"),
  673. SND_SOC_DAPM_SUPPLY("MICBIAS2", WM8993_POWER_MANAGEMENT_1, 5, 0, NULL, 0),
  674. SND_SOC_DAPM_SUPPLY("MICBIAS1", WM8993_POWER_MANAGEMENT_1, 4, 0, NULL, 0),
  675. SND_SOC_DAPM_MIXER("IN1L PGA", WM8993_POWER_MANAGEMENT_2, 6, 0,
  676. in1l_pga, ARRAY_SIZE(in1l_pga)),
  677. SND_SOC_DAPM_MIXER("IN1R PGA", WM8993_POWER_MANAGEMENT_2, 4, 0,
  678. in1r_pga, ARRAY_SIZE(in1r_pga)),
  679. SND_SOC_DAPM_MIXER("IN2L PGA", WM8993_POWER_MANAGEMENT_2, 7, 0,
  680. in2l_pga, ARRAY_SIZE(in2l_pga)),
  681. SND_SOC_DAPM_MIXER("IN2R PGA", WM8993_POWER_MANAGEMENT_2, 5, 0,
  682. in2r_pga, ARRAY_SIZE(in2r_pga)),
  683. SND_SOC_DAPM_MIXER("MIXINL", WM8993_POWER_MANAGEMENT_2, 9, 0,
  684. mixinl, ARRAY_SIZE(mixinl)),
  685. SND_SOC_DAPM_MIXER("MIXINR", WM8993_POWER_MANAGEMENT_2, 8, 0,
  686. mixinr, ARRAY_SIZE(mixinr)),
  687. SND_SOC_DAPM_MIXER("Left Output Mixer", WM8993_POWER_MANAGEMENT_3, 5, 0,
  688. left_output_mixer, ARRAY_SIZE(left_output_mixer)),
  689. SND_SOC_DAPM_MIXER("Right Output Mixer", WM8993_POWER_MANAGEMENT_3, 4, 0,
  690. right_output_mixer, ARRAY_SIZE(right_output_mixer)),
  691. SND_SOC_DAPM_PGA("Left Output PGA", WM8993_POWER_MANAGEMENT_3, 7, 0, NULL, 0),
  692. SND_SOC_DAPM_PGA("Right Output PGA", WM8993_POWER_MANAGEMENT_3, 6, 0, NULL, 0),
  693. SND_SOC_DAPM_SUPPLY("Headphone Supply", SND_SOC_NOPM, 0, 0, hp_supply_event,
  694. SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_PRE_PMD),
  695. SND_SOC_DAPM_OUT_DRV_E("Headphone PGA", SND_SOC_NOPM, 0, 0, NULL, 0,
  696. hp_event, SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
  697. SND_SOC_DAPM_MIXER("Earpiece Mixer", SND_SOC_NOPM, 0, 0,
  698. earpiece_mixer, ARRAY_SIZE(earpiece_mixer)),
  699. SND_SOC_DAPM_PGA_E("Earpiece Driver", WM8993_POWER_MANAGEMENT_1, 11, 0,
  700. NULL, 0, earpiece_event,
  701. SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD),
  702. SND_SOC_DAPM_MIXER("SPKL Boost", SND_SOC_NOPM, 0, 0,
  703. left_speaker_boost, ARRAY_SIZE(left_speaker_boost)),
  704. SND_SOC_DAPM_MIXER("SPKR Boost", SND_SOC_NOPM, 0, 0,
  705. right_speaker_boost, ARRAY_SIZE(right_speaker_boost)),
  706. SND_SOC_DAPM_SUPPLY("TSHUT", WM8993_POWER_MANAGEMENT_2, 14, 0, NULL, 0),
  707. SND_SOC_DAPM_OUT_DRV("SPKL Driver", WM8993_POWER_MANAGEMENT_1, 12, 0,
  708. NULL, 0),
  709. SND_SOC_DAPM_OUT_DRV("SPKR Driver", WM8993_POWER_MANAGEMENT_1, 13, 0,
  710. NULL, 0),
  711. SND_SOC_DAPM_MIXER("LINEOUT1 Mixer", SND_SOC_NOPM, 0, 0,
  712. line1_mix, ARRAY_SIZE(line1_mix)),
  713. SND_SOC_DAPM_MIXER("LINEOUT2 Mixer", SND_SOC_NOPM, 0, 0,
  714. line2_mix, ARRAY_SIZE(line2_mix)),
  715. SND_SOC_DAPM_MIXER("LINEOUT1N Mixer", SND_SOC_NOPM, 0, 0,
  716. line1n_mix, ARRAY_SIZE(line1n_mix)),
  717. SND_SOC_DAPM_MIXER("LINEOUT1P Mixer", SND_SOC_NOPM, 0, 0,
  718. line1p_mix, ARRAY_SIZE(line1p_mix)),
  719. SND_SOC_DAPM_MIXER("LINEOUT2N Mixer", SND_SOC_NOPM, 0, 0,
  720. line2n_mix, ARRAY_SIZE(line2n_mix)),
  721. SND_SOC_DAPM_MIXER("LINEOUT2P Mixer", SND_SOC_NOPM, 0, 0,
  722. line2p_mix, ARRAY_SIZE(line2p_mix)),
  723. SND_SOC_DAPM_OUT_DRV_E("LINEOUT1N Driver", WM8993_POWER_MANAGEMENT_3, 13, 0,
  724. NULL, 0, lineout_event,
  725. SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
  726. SND_SOC_DAPM_OUT_DRV_E("LINEOUT1P Driver", WM8993_POWER_MANAGEMENT_3, 12, 0,
  727. NULL, 0, lineout_event,
  728. SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
  729. SND_SOC_DAPM_OUT_DRV_E("LINEOUT2N Driver", WM8993_POWER_MANAGEMENT_3, 11, 0,
  730. NULL, 0, lineout_event,
  731. SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
  732. SND_SOC_DAPM_OUT_DRV_E("LINEOUT2P Driver", WM8993_POWER_MANAGEMENT_3, 10, 0,
  733. NULL, 0, lineout_event,
  734. SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_PRE_PMD),
  735. SND_SOC_DAPM_OUTPUT("SPKOUTLP"),
  736. SND_SOC_DAPM_OUTPUT("SPKOUTLN"),
  737. SND_SOC_DAPM_OUTPUT("SPKOUTRP"),
  738. SND_SOC_DAPM_OUTPUT("SPKOUTRN"),
  739. SND_SOC_DAPM_OUTPUT("HPOUT1L"),
  740. SND_SOC_DAPM_OUTPUT("HPOUT1R"),
  741. SND_SOC_DAPM_OUTPUT("HPOUT2P"),
  742. SND_SOC_DAPM_OUTPUT("HPOUT2N"),
  743. SND_SOC_DAPM_OUTPUT("LINEOUT1P"),
  744. SND_SOC_DAPM_OUTPUT("LINEOUT1N"),
  745. SND_SOC_DAPM_OUTPUT("LINEOUT2P"),
  746. SND_SOC_DAPM_OUTPUT("LINEOUT2N"),
  747. };
  748. static const struct snd_soc_dapm_route analogue_routes[] = {
  749. { "MICBIAS1", NULL, "CLK_SYS" },
  750. { "MICBIAS2", NULL, "CLK_SYS" },
  751. { "IN1L PGA", "IN1LP Switch", "IN1LP" },
  752. { "IN1L PGA", "IN1LN Switch", "IN1LN" },
  753. { "IN1L PGA", NULL, "VMID" },
  754. { "IN1R PGA", NULL, "VMID" },
  755. { "IN2L PGA", NULL, "VMID" },
  756. { "IN2R PGA", NULL, "VMID" },
  757. { "IN1R PGA", "IN1RP Switch", "IN1RP" },
  758. { "IN1R PGA", "IN1RN Switch", "IN1RN" },
  759. { "IN2L PGA", "IN2LP Switch", "IN2LP:VXRN" },
  760. { "IN2L PGA", "IN2LN Switch", "IN2LN" },
  761. { "IN2R PGA", "IN2RP Switch", "IN2RP:VXRP" },
  762. { "IN2R PGA", "IN2RN Switch", "IN2RN" },
  763. { "Direct Voice", NULL, "IN2LP:VXRN" },
  764. { "Direct Voice", NULL, "IN2RP:VXRP" },
  765. { "MIXINL", "IN1L Switch", "IN1L PGA" },
  766. { "MIXINL", "IN2L Switch", "IN2L PGA" },
  767. { "MIXINL", NULL, "Direct Voice" },
  768. { "MIXINL", NULL, "IN1LP" },
  769. { "MIXINL", NULL, "Left Output Mixer" },
  770. { "MIXINL", NULL, "VMID" },
  771. { "MIXINR", "IN1R Switch", "IN1R PGA" },
  772. { "MIXINR", "IN2R Switch", "IN2R PGA" },
  773. { "MIXINR", NULL, "Direct Voice" },
  774. { "MIXINR", NULL, "IN1RP" },
  775. { "MIXINR", NULL, "Right Output Mixer" },
  776. { "MIXINR", NULL, "VMID" },
  777. { "ADCL", NULL, "MIXINL" },
  778. { "ADCR", NULL, "MIXINR" },
  779. { "Left Output Mixer", "Left Input Switch", "MIXINL" },
  780. { "Left Output Mixer", "Right Input Switch", "MIXINR" },
  781. { "Left Output Mixer", "IN2RN Switch", "IN2RN" },
  782. { "Left Output Mixer", "IN2LN Switch", "IN2LN" },
  783. { "Left Output Mixer", "IN2LP Switch", "IN2LP:VXRN" },
  784. { "Left Output Mixer", "IN1L Switch", "IN1L PGA" },
  785. { "Left Output Mixer", "IN1R Switch", "IN1R PGA" },
  786. { "Right Output Mixer", "Left Input Switch", "MIXINL" },
  787. { "Right Output Mixer", "Right Input Switch", "MIXINR" },
  788. { "Right Output Mixer", "IN2LN Switch", "IN2LN" },
  789. { "Right Output Mixer", "IN2RN Switch", "IN2RN" },
  790. { "Right Output Mixer", "IN2RP Switch", "IN2RP:VXRP" },
  791. { "Right Output Mixer", "IN1L Switch", "IN1L PGA" },
  792. { "Right Output Mixer", "IN1R Switch", "IN1R PGA" },
  793. { "Left Output PGA", NULL, "Left Output Mixer" },
  794. { "Left Output PGA", NULL, "TOCLK" },
  795. { "Right Output PGA", NULL, "Right Output Mixer" },
  796. { "Right Output PGA", NULL, "TOCLK" },
  797. { "Earpiece Mixer", "Direct Voice Switch", "Direct Voice" },
  798. { "Earpiece Mixer", "Left Output Switch", "Left Output PGA" },
  799. { "Earpiece Mixer", "Right Output Switch", "Right Output PGA" },
  800. { "Earpiece Driver", NULL, "VMID" },
  801. { "Earpiece Driver", NULL, "Earpiece Mixer" },
  802. { "HPOUT2N", NULL, "Earpiece Driver" },
  803. { "HPOUT2P", NULL, "Earpiece Driver" },
  804. { "SPKL", "Input Switch", "MIXINL" },
  805. { "SPKL", "IN1LP Switch", "IN1LP" },
  806. { "SPKL", "Output Switch", "Left Output PGA" },
  807. { "SPKL", NULL, "TOCLK" },
  808. { "SPKR", "Input Switch", "MIXINR" },
  809. { "SPKR", "IN1RP Switch", "IN1RP" },
  810. { "SPKR", "Output Switch", "Right Output PGA" },
  811. { "SPKR", NULL, "TOCLK" },
  812. { "SPKL Boost", "Direct Voice Switch", "Direct Voice" },
  813. { "SPKL Boost", "SPKL Switch", "SPKL" },
  814. { "SPKL Boost", "SPKR Switch", "SPKR" },
  815. { "SPKR Boost", "Direct Voice Switch", "Direct Voice" },
  816. { "SPKR Boost", "SPKR Switch", "SPKR" },
  817. { "SPKR Boost", "SPKL Switch", "SPKL" },
  818. { "SPKL Driver", NULL, "VMID" },
  819. { "SPKL Driver", NULL, "SPKL Boost" },
  820. { "SPKL Driver", NULL, "CLK_SYS" },
  821. { "SPKL Driver", NULL, "TSHUT" },
  822. { "SPKR Driver", NULL, "VMID" },
  823. { "SPKR Driver", NULL, "SPKR Boost" },
  824. { "SPKR Driver", NULL, "CLK_SYS" },
  825. { "SPKR Driver", NULL, "TSHUT" },
  826. { "SPKOUTLP", NULL, "SPKL Driver" },
  827. { "SPKOUTLN", NULL, "SPKL Driver" },
  828. { "SPKOUTRP", NULL, "SPKR Driver" },
  829. { "SPKOUTRN", NULL, "SPKR Driver" },
  830. { "Left Headphone Mux", "Mixer", "Left Output PGA" },
  831. { "Right Headphone Mux", "Mixer", "Right Output PGA" },
  832. { "Headphone PGA", NULL, "Left Headphone Mux" },
  833. { "Headphone PGA", NULL, "Right Headphone Mux" },
  834. { "Headphone PGA", NULL, "VMID" },
  835. { "Headphone PGA", NULL, "CLK_SYS" },
  836. { "Headphone PGA", NULL, "Headphone Supply" },
  837. { "HPOUT1L", NULL, "Headphone PGA" },
  838. { "HPOUT1R", NULL, "Headphone PGA" },
  839. { "LINEOUT1N Driver", NULL, "VMID" },
  840. { "LINEOUT1P Driver", NULL, "VMID" },
  841. { "LINEOUT2N Driver", NULL, "VMID" },
  842. { "LINEOUT2P Driver", NULL, "VMID" },
  843. { "LINEOUT1N", NULL, "LINEOUT1N Driver" },
  844. { "LINEOUT1P", NULL, "LINEOUT1P Driver" },
  845. { "LINEOUT2N", NULL, "LINEOUT2N Driver" },
  846. { "LINEOUT2P", NULL, "LINEOUT2P Driver" },
  847. };
  848. static const struct snd_soc_dapm_route lineout1_diff_routes[] = {
  849. { "LINEOUT1 Mixer", "IN1L Switch", "IN1L PGA" },
  850. { "LINEOUT1 Mixer", "IN1R Switch", "IN1R PGA" },
  851. { "LINEOUT1 Mixer", "Output Switch", "Left Output PGA" },
  852. { "LINEOUT1N Driver", NULL, "LINEOUT1 Mixer" },
  853. { "LINEOUT1P Driver", NULL, "LINEOUT1 Mixer" },
  854. };
  855. static const struct snd_soc_dapm_route lineout1_se_routes[] = {
  856. { "LINEOUT1N Mixer", "Left Output Switch", "Left Output PGA" },
  857. { "LINEOUT1N Mixer", "Right Output Switch", "Right Output PGA" },
  858. { "LINEOUT1P Mixer", "Left Output Switch", "Left Output PGA" },
  859. { "LINEOUT1N Driver", NULL, "LINEOUT1N Mixer" },
  860. { "LINEOUT1P Driver", NULL, "LINEOUT1P Mixer" },
  861. };
  862. static const struct snd_soc_dapm_route lineout2_diff_routes[] = {
  863. { "LINEOUT2 Mixer", "IN1L Switch", "IN1L PGA" },
  864. { "LINEOUT2 Mixer", "IN1R Switch", "IN1R PGA" },
  865. { "LINEOUT2 Mixer", "Output Switch", "Right Output PGA" },
  866. { "LINEOUT2N Driver", NULL, "LINEOUT2 Mixer" },
  867. { "LINEOUT2P Driver", NULL, "LINEOUT2 Mixer" },
  868. };
  869. static const struct snd_soc_dapm_route lineout2_se_routes[] = {
  870. { "LINEOUT2N Mixer", "Left Output Switch", "Left Output PGA" },
  871. { "LINEOUT2N Mixer", "Right Output Switch", "Right Output PGA" },
  872. { "LINEOUT2P Mixer", "Right Output Switch", "Right Output PGA" },
  873. { "LINEOUT2N Driver", NULL, "LINEOUT2N Mixer" },
  874. { "LINEOUT2P Driver", NULL, "LINEOUT2P Mixer" },
  875. };
  876. int wm_hubs_add_analogue_controls(struct snd_soc_codec *codec)
  877. {
  878. struct snd_soc_dapm_context *dapm = &codec->dapm;
  879. /* Latch volume update bits & default ZC on */
  880. snd_soc_update_bits(codec, WM8993_LEFT_LINE_INPUT_1_2_VOLUME,
  881. WM8993_IN1_VU, WM8993_IN1_VU);
  882. snd_soc_update_bits(codec, WM8993_RIGHT_LINE_INPUT_1_2_VOLUME,
  883. WM8993_IN1_VU, WM8993_IN1_VU);
  884. snd_soc_update_bits(codec, WM8993_LEFT_LINE_INPUT_3_4_VOLUME,
  885. WM8993_IN2_VU, WM8993_IN2_VU);
  886. snd_soc_update_bits(codec, WM8993_RIGHT_LINE_INPUT_3_4_VOLUME,
  887. WM8993_IN2_VU, WM8993_IN2_VU);
  888. snd_soc_update_bits(codec, WM8993_SPEAKER_VOLUME_LEFT,
  889. WM8993_SPKOUT_VU, WM8993_SPKOUT_VU);
  890. snd_soc_update_bits(codec, WM8993_SPEAKER_VOLUME_RIGHT,
  891. WM8993_SPKOUT_VU, WM8993_SPKOUT_VU);
  892. snd_soc_update_bits(codec, WM8993_LEFT_OUTPUT_VOLUME,
  893. WM8993_HPOUT1_VU | WM8993_HPOUT1L_ZC,
  894. WM8993_HPOUT1_VU | WM8993_HPOUT1L_ZC);
  895. snd_soc_update_bits(codec, WM8993_RIGHT_OUTPUT_VOLUME,
  896. WM8993_HPOUT1_VU | WM8993_HPOUT1R_ZC,
  897. WM8993_HPOUT1_VU | WM8993_HPOUT1R_ZC);
  898. snd_soc_update_bits(codec, WM8993_LEFT_OPGA_VOLUME,
  899. WM8993_MIXOUTL_ZC | WM8993_MIXOUT_VU,
  900. WM8993_MIXOUTL_ZC | WM8993_MIXOUT_VU);
  901. snd_soc_update_bits(codec, WM8993_RIGHT_OPGA_VOLUME,
  902. WM8993_MIXOUTR_ZC | WM8993_MIXOUT_VU,
  903. WM8993_MIXOUTR_ZC | WM8993_MIXOUT_VU);
  904. snd_soc_add_codec_controls(codec, analogue_snd_controls,
  905. ARRAY_SIZE(analogue_snd_controls));
  906. snd_soc_dapm_new_controls(dapm, analogue_dapm_widgets,
  907. ARRAY_SIZE(analogue_dapm_widgets));
  908. return 0;
  909. }
  910. EXPORT_SYMBOL_GPL(wm_hubs_add_analogue_controls);
  911. int wm_hubs_add_analogue_routes(struct snd_soc_codec *codec,
  912. int lineout1_diff, int lineout2_diff)
  913. {
  914. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  915. struct snd_soc_dapm_context *dapm = &codec->dapm;
  916. INIT_LIST_HEAD(&hubs->dcs_cache);
  917. init_completion(&hubs->dcs_done);
  918. snd_soc_dapm_add_routes(dapm, analogue_routes,
  919. ARRAY_SIZE(analogue_routes));
  920. if (lineout1_diff)
  921. snd_soc_dapm_add_routes(dapm,
  922. lineout1_diff_routes,
  923. ARRAY_SIZE(lineout1_diff_routes));
  924. else
  925. snd_soc_dapm_add_routes(dapm,
  926. lineout1_se_routes,
  927. ARRAY_SIZE(lineout1_se_routes));
  928. if (lineout2_diff)
  929. snd_soc_dapm_add_routes(dapm,
  930. lineout2_diff_routes,
  931. ARRAY_SIZE(lineout2_diff_routes));
  932. else
  933. snd_soc_dapm_add_routes(dapm,
  934. lineout2_se_routes,
  935. ARRAY_SIZE(lineout2_se_routes));
  936. return 0;
  937. }
  938. EXPORT_SYMBOL_GPL(wm_hubs_add_analogue_routes);
  939. int wm_hubs_handle_analogue_pdata(struct snd_soc_codec *codec,
  940. int lineout1_diff, int lineout2_diff,
  941. int lineout1fb, int lineout2fb,
  942. int jd_scthr, int jd_thr, int micbias1_lvl,
  943. int micbias2_lvl)
  944. {
  945. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  946. hubs->lineout1_se = !lineout1_diff;
  947. hubs->lineout2_se = !lineout2_diff;
  948. if (!lineout1_diff)
  949. snd_soc_update_bits(codec, WM8993_LINE_MIXER1,
  950. WM8993_LINEOUT1_MODE,
  951. WM8993_LINEOUT1_MODE);
  952. if (!lineout2_diff)
  953. snd_soc_update_bits(codec, WM8993_LINE_MIXER2,
  954. WM8993_LINEOUT2_MODE,
  955. WM8993_LINEOUT2_MODE);
  956. if (!lineout1_diff && !lineout2_diff)
  957. snd_soc_update_bits(codec, WM8993_ANTIPOP1,
  958. WM8993_LINEOUT_VMID_BUF_ENA,
  959. WM8993_LINEOUT_VMID_BUF_ENA);
  960. if (lineout1fb)
  961. snd_soc_update_bits(codec, WM8993_ADDITIONAL_CONTROL,
  962. WM8993_LINEOUT1_FB, WM8993_LINEOUT1_FB);
  963. if (lineout2fb)
  964. snd_soc_update_bits(codec, WM8993_ADDITIONAL_CONTROL,
  965. WM8993_LINEOUT2_FB, WM8993_LINEOUT2_FB);
  966. snd_soc_update_bits(codec, WM8993_MICBIAS,
  967. WM8993_JD_SCTHR_MASK | WM8993_JD_THR_MASK |
  968. WM8993_MICB1_LVL | WM8993_MICB2_LVL,
  969. jd_scthr << WM8993_JD_SCTHR_SHIFT |
  970. jd_thr << WM8993_JD_THR_SHIFT |
  971. micbias1_lvl |
  972. micbias2_lvl << WM8993_MICB2_LVL_SHIFT);
  973. return 0;
  974. }
  975. EXPORT_SYMBOL_GPL(wm_hubs_handle_analogue_pdata);
  976. void wm_hubs_vmid_ena(struct snd_soc_codec *codec)
  977. {
  978. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  979. int val = 0;
  980. if (hubs->lineout1_se)
  981. val |= WM8993_LINEOUT1N_ENA | WM8993_LINEOUT1P_ENA;
  982. if (hubs->lineout2_se)
  983. val |= WM8993_LINEOUT2N_ENA | WM8993_LINEOUT2P_ENA;
  984. /* Enable the line outputs while we power up */
  985. snd_soc_update_bits(codec, WM8993_POWER_MANAGEMENT_3, val, val);
  986. }
  987. EXPORT_SYMBOL_GPL(wm_hubs_vmid_ena);
  988. void wm_hubs_set_bias_level(struct snd_soc_codec *codec,
  989. enum snd_soc_bias_level level)
  990. {
  991. struct wm_hubs_data *hubs = snd_soc_codec_get_drvdata(codec);
  992. int mask, val;
  993. switch (level) {
  994. case SND_SOC_BIAS_STANDBY:
  995. /* Clamp the inputs to VMID while we ramp to charge caps */
  996. snd_soc_update_bits(codec, WM8993_INPUTS_CLAMP_REG,
  997. WM8993_INPUTS_CLAMP, WM8993_INPUTS_CLAMP);
  998. break;
  999. case SND_SOC_BIAS_ON:
  1000. /* Turn off any unneded single ended outputs */
  1001. val = 0;
  1002. mask = 0;
  1003. if (hubs->lineout1_se)
  1004. mask |= WM8993_LINEOUT1N_ENA | WM8993_LINEOUT1P_ENA;
  1005. if (hubs->lineout2_se)
  1006. mask |= WM8993_LINEOUT2N_ENA | WM8993_LINEOUT2P_ENA;
  1007. if (hubs->lineout1_se && hubs->lineout1n_ena)
  1008. val |= WM8993_LINEOUT1N_ENA;
  1009. if (hubs->lineout1_se && hubs->lineout1p_ena)
  1010. val |= WM8993_LINEOUT1P_ENA;
  1011. if (hubs->lineout2_se && hubs->lineout2n_ena)
  1012. val |= WM8993_LINEOUT2N_ENA;
  1013. if (hubs->lineout2_se && hubs->lineout2p_ena)
  1014. val |= WM8993_LINEOUT2P_ENA;
  1015. snd_soc_update_bits(codec, WM8993_POWER_MANAGEMENT_3,
  1016. mask, val);
  1017. /* Remove the input clamps */
  1018. snd_soc_update_bits(codec, WM8993_INPUTS_CLAMP_REG,
  1019. WM8993_INPUTS_CLAMP, 0);
  1020. break;
  1021. default:
  1022. break;
  1023. }
  1024. }
  1025. EXPORT_SYMBOL_GPL(wm_hubs_set_bias_level);
  1026. MODULE_DESCRIPTION("Shared support for Wolfson hubs products");
  1027. MODULE_AUTHOR("Mark Brown <broonie@opensource.wolfsonmicro.com>");
  1028. MODULE_LICENSE("GPL");