ssm2602.c 21 KB

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  1. /*
  2. * File: sound/soc/codecs/ssm2602.c
  3. * Author: Cliff Cai <Cliff.Cai@analog.com>
  4. *
  5. * Created: Tue June 06 2008
  6. * Description: Driver for ssm2602 sound chip
  7. *
  8. * Modified:
  9. * Copyright 2008 Analog Devices Inc.
  10. *
  11. * Bugs: Enter bugs at http://blackfin.uclinux.org/
  12. *
  13. * This program is free software; you can redistribute it and/or modify
  14. * it under the terms of the GNU General Public License as published by
  15. * the Free Software Foundation; either version 2 of the License, or
  16. * (at your option) any later version.
  17. *
  18. * This program is distributed in the hope that it will be useful,
  19. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  20. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  21. * GNU General Public License for more details.
  22. *
  23. * You should have received a copy of the GNU General Public License
  24. * along with this program; if not, see the file COPYING, or write
  25. * to the Free Software Foundation, Inc.,
  26. * 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  27. */
  28. #include <linux/module.h>
  29. #include <linux/moduleparam.h>
  30. #include <linux/init.h>
  31. #include <linux/delay.h>
  32. #include <linux/pm.h>
  33. #include <linux/i2c.h>
  34. #include <linux/platform_device.h>
  35. #include <sound/core.h>
  36. #include <sound/pcm.h>
  37. #include <sound/pcm_params.h>
  38. #include <sound/soc.h>
  39. #include <sound/soc-dapm.h>
  40. #include <sound/initval.h>
  41. #include "ssm2602.h"
  42. #define SSM2602_VERSION "0.1"
  43. struct snd_soc_codec_device soc_codec_dev_ssm2602;
  44. /* codec private data */
  45. struct ssm2602_priv {
  46. unsigned int sysclk;
  47. struct snd_pcm_substream *master_substream;
  48. struct snd_pcm_substream *slave_substream;
  49. };
  50. /*
  51. * ssm2602 register cache
  52. * We can't read the ssm2602 register space when we are
  53. * using 2 wire for device control, so we cache them instead.
  54. * There is no point in caching the reset register
  55. */
  56. static const u16 ssm2602_reg[SSM2602_CACHEREGNUM] = {
  57. 0x0017, 0x0017, 0x0079, 0x0079,
  58. 0x0000, 0x0000, 0x0000, 0x000a,
  59. 0x0000, 0x0000
  60. };
  61. /*
  62. * read ssm2602 register cache
  63. */
  64. static inline unsigned int ssm2602_read_reg_cache(struct snd_soc_codec *codec,
  65. unsigned int reg)
  66. {
  67. u16 *cache = codec->reg_cache;
  68. if (reg == SSM2602_RESET)
  69. return 0;
  70. if (reg >= SSM2602_CACHEREGNUM)
  71. return -1;
  72. return cache[reg];
  73. }
  74. /*
  75. * write ssm2602 register cache
  76. */
  77. static inline void ssm2602_write_reg_cache(struct snd_soc_codec *codec,
  78. u16 reg, unsigned int value)
  79. {
  80. u16 *cache = codec->reg_cache;
  81. if (reg >= SSM2602_CACHEREGNUM)
  82. return;
  83. cache[reg] = value;
  84. }
  85. /*
  86. * write to the ssm2602 register space
  87. */
  88. static int ssm2602_write(struct snd_soc_codec *codec, unsigned int reg,
  89. unsigned int value)
  90. {
  91. u8 data[2];
  92. /* data is
  93. * D15..D9 ssm2602 register offset
  94. * D8...D0 register data
  95. */
  96. data[0] = (reg << 1) | ((value >> 8) & 0x0001);
  97. data[1] = value & 0x00ff;
  98. ssm2602_write_reg_cache(codec, reg, value);
  99. if (codec->hw_write(codec->control_data, data, 2) == 2)
  100. return 0;
  101. else
  102. return -EIO;
  103. }
  104. #define ssm2602_reset(c) ssm2602_write(c, SSM2602_RESET, 0)
  105. /*Appending several "None"s just for OSS mixer use*/
  106. static const char *ssm2602_input_select[] = {
  107. "Line", "Mic", "None", "None", "None",
  108. "None", "None", "None",
  109. };
  110. static const char *ssm2602_deemph[] = {"None", "32Khz", "44.1Khz", "48Khz"};
  111. static const struct soc_enum ssm2602_enum[] = {
  112. SOC_ENUM_SINGLE(SSM2602_APANA, 2, 2, ssm2602_input_select),
  113. SOC_ENUM_SINGLE(SSM2602_APDIGI, 1, 4, ssm2602_deemph),
  114. };
  115. static const struct snd_kcontrol_new ssm2602_snd_controls[] = {
  116. SOC_DOUBLE_R("Master Playback Volume", SSM2602_LOUT1V, SSM2602_ROUT1V,
  117. 0, 127, 0),
  118. SOC_DOUBLE_R("Master Playback ZC Switch", SSM2602_LOUT1V, SSM2602_ROUT1V,
  119. 7, 1, 0),
  120. SOC_DOUBLE_R("Capture Volume", SSM2602_LINVOL, SSM2602_RINVOL, 0, 31, 0),
  121. SOC_DOUBLE_R("Capture Switch", SSM2602_LINVOL, SSM2602_RINVOL, 7, 1, 1),
  122. SOC_SINGLE("Mic Boost (+20dB)", SSM2602_APANA, 0, 1, 0),
  123. SOC_SINGLE("Mic Switch", SSM2602_APANA, 1, 1, 1),
  124. SOC_SINGLE("Sidetone Playback Volume", SSM2602_APANA, 6, 3, 1),
  125. SOC_SINGLE("ADC High Pass Filter Switch", SSM2602_APDIGI, 0, 1, 1),
  126. SOC_SINGLE("Store DC Offset Switch", SSM2602_APDIGI, 4, 1, 0),
  127. SOC_ENUM("Capture Source", ssm2602_enum[0]),
  128. SOC_ENUM("Playback De-emphasis", ssm2602_enum[1]),
  129. };
  130. /* Output Mixer */
  131. static const struct snd_kcontrol_new ssm2602_output_mixer_controls[] = {
  132. SOC_DAPM_SINGLE("Line Bypass Switch", SSM2602_APANA, 3, 1, 0),
  133. SOC_DAPM_SINGLE("Mic Sidetone Switch", SSM2602_APANA, 5, 1, 0),
  134. SOC_DAPM_SINGLE("HiFi Playback Switch", SSM2602_APANA, 4, 1, 0),
  135. };
  136. /* Input mux */
  137. static const struct snd_kcontrol_new ssm2602_input_mux_controls =
  138. SOC_DAPM_ENUM("Input Select", ssm2602_enum[0]);
  139. static const struct snd_soc_dapm_widget ssm2602_dapm_widgets[] = {
  140. SND_SOC_DAPM_MIXER("Output Mixer", SSM2602_PWR, 4, 1,
  141. &ssm2602_output_mixer_controls[0],
  142. ARRAY_SIZE(ssm2602_output_mixer_controls)),
  143. SND_SOC_DAPM_DAC("DAC", "HiFi Playback", SSM2602_PWR, 3, 1),
  144. SND_SOC_DAPM_OUTPUT("LOUT"),
  145. SND_SOC_DAPM_OUTPUT("LHPOUT"),
  146. SND_SOC_DAPM_OUTPUT("ROUT"),
  147. SND_SOC_DAPM_OUTPUT("RHPOUT"),
  148. SND_SOC_DAPM_ADC("ADC", "HiFi Capture", SSM2602_PWR, 2, 1),
  149. SND_SOC_DAPM_MUX("Input Mux", SND_SOC_NOPM, 0, 0, &ssm2602_input_mux_controls),
  150. SND_SOC_DAPM_PGA("Line Input", SSM2602_PWR, 0, 1, NULL, 0),
  151. SND_SOC_DAPM_MICBIAS("Mic Bias", SSM2602_PWR, 1, 1),
  152. SND_SOC_DAPM_INPUT("MICIN"),
  153. SND_SOC_DAPM_INPUT("RLINEIN"),
  154. SND_SOC_DAPM_INPUT("LLINEIN"),
  155. };
  156. static const struct snd_soc_dapm_route audio_conn[] = {
  157. /* output mixer */
  158. {"Output Mixer", "Line Bypass Switch", "Line Input"},
  159. {"Output Mixer", "HiFi Playback Switch", "DAC"},
  160. {"Output Mixer", "Mic Sidetone Switch", "Mic Bias"},
  161. /* outputs */
  162. {"RHPOUT", NULL, "Output Mixer"},
  163. {"ROUT", NULL, "Output Mixer"},
  164. {"LHPOUT", NULL, "Output Mixer"},
  165. {"LOUT", NULL, "Output Mixer"},
  166. /* input mux */
  167. {"Input Mux", "Line", "Line Input"},
  168. {"Input Mux", "Mic", "Mic Bias"},
  169. {"ADC", NULL, "Input Mux"},
  170. /* inputs */
  171. {"Line Input", NULL, "LLINEIN"},
  172. {"Line Input", NULL, "RLINEIN"},
  173. {"Mic Bias", NULL, "MICIN"},
  174. };
  175. static int ssm2602_add_widgets(struct snd_soc_codec *codec)
  176. {
  177. snd_soc_dapm_new_controls(codec, ssm2602_dapm_widgets,
  178. ARRAY_SIZE(ssm2602_dapm_widgets));
  179. snd_soc_dapm_add_routes(codec, audio_conn, ARRAY_SIZE(audio_conn));
  180. snd_soc_dapm_new_widgets(codec);
  181. return 0;
  182. }
  183. struct _coeff_div {
  184. u32 mclk;
  185. u32 rate;
  186. u16 fs;
  187. u8 sr:4;
  188. u8 bosr:1;
  189. u8 usb:1;
  190. };
  191. /* codec mclk clock divider coefficients */
  192. static const struct _coeff_div coeff_div[] = {
  193. /* 48k */
  194. {12288000, 48000, 256, 0x0, 0x0, 0x0},
  195. {18432000, 48000, 384, 0x0, 0x1, 0x0},
  196. {12000000, 48000, 250, 0x0, 0x0, 0x1},
  197. /* 32k */
  198. {12288000, 32000, 384, 0x6, 0x0, 0x0},
  199. {18432000, 32000, 576, 0x6, 0x1, 0x0},
  200. {12000000, 32000, 375, 0x6, 0x0, 0x1},
  201. /* 8k */
  202. {12288000, 8000, 1536, 0x3, 0x0, 0x0},
  203. {18432000, 8000, 2304, 0x3, 0x1, 0x0},
  204. {11289600, 8000, 1408, 0xb, 0x0, 0x0},
  205. {16934400, 8000, 2112, 0xb, 0x1, 0x0},
  206. {12000000, 8000, 1500, 0x3, 0x0, 0x1},
  207. /* 96k */
  208. {12288000, 96000, 128, 0x7, 0x0, 0x0},
  209. {18432000, 96000, 192, 0x7, 0x1, 0x0},
  210. {12000000, 96000, 125, 0x7, 0x0, 0x1},
  211. /* 44.1k */
  212. {11289600, 44100, 256, 0x8, 0x0, 0x0},
  213. {16934400, 44100, 384, 0x8, 0x1, 0x0},
  214. {12000000, 44100, 272, 0x8, 0x1, 0x1},
  215. /* 88.2k */
  216. {11289600, 88200, 128, 0xf, 0x0, 0x0},
  217. {16934400, 88200, 192, 0xf, 0x1, 0x0},
  218. {12000000, 88200, 136, 0xf, 0x1, 0x1},
  219. };
  220. static inline int get_coeff(int mclk, int rate)
  221. {
  222. int i;
  223. for (i = 0; i < ARRAY_SIZE(coeff_div); i++) {
  224. if (coeff_div[i].rate == rate && coeff_div[i].mclk == mclk)
  225. return i;
  226. }
  227. return i;
  228. }
  229. static int ssm2602_hw_params(struct snd_pcm_substream *substream,
  230. struct snd_pcm_hw_params *params,
  231. struct snd_soc_dai *dai)
  232. {
  233. u16 srate;
  234. struct snd_soc_pcm_runtime *rtd = substream->private_data;
  235. struct snd_soc_device *socdev = rtd->socdev;
  236. struct snd_soc_codec *codec = socdev->card->codec;
  237. struct ssm2602_priv *ssm2602 = codec->private_data;
  238. struct i2c_client *i2c = codec->control_data;
  239. u16 iface = ssm2602_read_reg_cache(codec, SSM2602_IFACE) & 0xfff3;
  240. int i = get_coeff(ssm2602->sysclk, params_rate(params));
  241. if (substream == ssm2602->slave_substream) {
  242. dev_dbg(&i2c->dev, "Ignoring hw_params for slave substream\n");
  243. return 0;
  244. }
  245. /*no match is found*/
  246. if (i == ARRAY_SIZE(coeff_div))
  247. return -EINVAL;
  248. srate = (coeff_div[i].sr << 2) |
  249. (coeff_div[i].bosr << 1) | coeff_div[i].usb;
  250. ssm2602_write(codec, SSM2602_ACTIVE, 0);
  251. ssm2602_write(codec, SSM2602_SRATE, srate);
  252. /* bit size */
  253. switch (params_format(params)) {
  254. case SNDRV_PCM_FORMAT_S16_LE:
  255. break;
  256. case SNDRV_PCM_FORMAT_S20_3LE:
  257. iface |= 0x0004;
  258. break;
  259. case SNDRV_PCM_FORMAT_S24_LE:
  260. iface |= 0x0008;
  261. break;
  262. case SNDRV_PCM_FORMAT_S32_LE:
  263. iface |= 0x000c;
  264. break;
  265. }
  266. ssm2602_write(codec, SSM2602_IFACE, iface);
  267. ssm2602_write(codec, SSM2602_ACTIVE, ACTIVE_ACTIVATE_CODEC);
  268. return 0;
  269. }
  270. static int ssm2602_startup(struct snd_pcm_substream *substream,
  271. struct snd_soc_dai *dai)
  272. {
  273. struct snd_soc_pcm_runtime *rtd = substream->private_data;
  274. struct snd_soc_device *socdev = rtd->socdev;
  275. struct snd_soc_codec *codec = socdev->card->codec;
  276. struct ssm2602_priv *ssm2602 = codec->private_data;
  277. struct i2c_client *i2c = codec->control_data;
  278. struct snd_pcm_runtime *master_runtime;
  279. /* The DAI has shared clocks so if we already have a playback or
  280. * capture going then constrain this substream to match it.
  281. * TODO: the ssm2602 allows pairs of non-matching PB/REC rates
  282. */
  283. if (ssm2602->master_substream) {
  284. master_runtime = ssm2602->master_substream->runtime;
  285. dev_dbg(&i2c->dev, "Constraining to %d bits at %dHz\n",
  286. master_runtime->sample_bits,
  287. master_runtime->rate);
  288. if (master_runtime->rate != 0)
  289. snd_pcm_hw_constraint_minmax(substream->runtime,
  290. SNDRV_PCM_HW_PARAM_RATE,
  291. master_runtime->rate,
  292. master_runtime->rate);
  293. if (master_runtime->sample_bits != 0)
  294. snd_pcm_hw_constraint_minmax(substream->runtime,
  295. SNDRV_PCM_HW_PARAM_SAMPLE_BITS,
  296. master_runtime->sample_bits,
  297. master_runtime->sample_bits);
  298. ssm2602->slave_substream = substream;
  299. } else
  300. ssm2602->master_substream = substream;
  301. return 0;
  302. }
  303. static int ssm2602_pcm_prepare(struct snd_pcm_substream *substream,
  304. struct snd_soc_dai *dai)
  305. {
  306. struct snd_soc_pcm_runtime *rtd = substream->private_data;
  307. struct snd_soc_device *socdev = rtd->socdev;
  308. struct snd_soc_codec *codec = socdev->card->codec;
  309. /* set active */
  310. ssm2602_write(codec, SSM2602_ACTIVE, ACTIVE_ACTIVATE_CODEC);
  311. return 0;
  312. }
  313. static void ssm2602_shutdown(struct snd_pcm_substream *substream,
  314. struct snd_soc_dai *dai)
  315. {
  316. struct snd_soc_pcm_runtime *rtd = substream->private_data;
  317. struct snd_soc_device *socdev = rtd->socdev;
  318. struct snd_soc_codec *codec = socdev->card->codec;
  319. struct ssm2602_priv *ssm2602 = codec->private_data;
  320. if (ssm2602->master_substream == substream)
  321. ssm2602->master_substream = ssm2602->slave_substream;
  322. ssm2602->slave_substream = NULL;
  323. /* deactivate */
  324. if (!codec->active)
  325. ssm2602_write(codec, SSM2602_ACTIVE, 0);
  326. if (ssm2602->master_substream == substream)
  327. ssm2602->master_substream = ssm2602->slave_substream;
  328. ssm2602->slave_substream = NULL;
  329. }
  330. static int ssm2602_mute(struct snd_soc_dai *dai, int mute)
  331. {
  332. struct snd_soc_codec *codec = dai->codec;
  333. u16 mute_reg = ssm2602_read_reg_cache(codec, SSM2602_APDIGI) & ~APDIGI_ENABLE_DAC_MUTE;
  334. if (mute)
  335. ssm2602_write(codec, SSM2602_APDIGI,
  336. mute_reg | APDIGI_ENABLE_DAC_MUTE);
  337. else
  338. ssm2602_write(codec, SSM2602_APDIGI, mute_reg);
  339. return 0;
  340. }
  341. static int ssm2602_set_dai_sysclk(struct snd_soc_dai *codec_dai,
  342. int clk_id, unsigned int freq, int dir)
  343. {
  344. struct snd_soc_codec *codec = codec_dai->codec;
  345. struct ssm2602_priv *ssm2602 = codec->private_data;
  346. switch (freq) {
  347. case 11289600:
  348. case 12000000:
  349. case 12288000:
  350. case 16934400:
  351. case 18432000:
  352. ssm2602->sysclk = freq;
  353. return 0;
  354. }
  355. return -EINVAL;
  356. }
  357. static int ssm2602_set_dai_fmt(struct snd_soc_dai *codec_dai,
  358. unsigned int fmt)
  359. {
  360. struct snd_soc_codec *codec = codec_dai->codec;
  361. u16 iface = 0;
  362. /* set master/slave audio interface */
  363. switch (fmt & SND_SOC_DAIFMT_MASTER_MASK) {
  364. case SND_SOC_DAIFMT_CBM_CFM:
  365. iface |= 0x0040;
  366. break;
  367. case SND_SOC_DAIFMT_CBS_CFS:
  368. break;
  369. default:
  370. return -EINVAL;
  371. }
  372. /* interface format */
  373. switch (fmt & SND_SOC_DAIFMT_FORMAT_MASK) {
  374. case SND_SOC_DAIFMT_I2S:
  375. iface |= 0x0002;
  376. break;
  377. case SND_SOC_DAIFMT_RIGHT_J:
  378. break;
  379. case SND_SOC_DAIFMT_LEFT_J:
  380. iface |= 0x0001;
  381. break;
  382. case SND_SOC_DAIFMT_DSP_A:
  383. iface |= 0x0013;
  384. break;
  385. case SND_SOC_DAIFMT_DSP_B:
  386. iface |= 0x0003;
  387. break;
  388. default:
  389. return -EINVAL;
  390. }
  391. /* clock inversion */
  392. switch (fmt & SND_SOC_DAIFMT_INV_MASK) {
  393. case SND_SOC_DAIFMT_NB_NF:
  394. break;
  395. case SND_SOC_DAIFMT_IB_IF:
  396. iface |= 0x0090;
  397. break;
  398. case SND_SOC_DAIFMT_IB_NF:
  399. iface |= 0x0080;
  400. break;
  401. case SND_SOC_DAIFMT_NB_IF:
  402. iface |= 0x0010;
  403. break;
  404. default:
  405. return -EINVAL;
  406. }
  407. /* set iface */
  408. ssm2602_write(codec, SSM2602_IFACE, iface);
  409. return 0;
  410. }
  411. static int ssm2602_set_bias_level(struct snd_soc_codec *codec,
  412. enum snd_soc_bias_level level)
  413. {
  414. u16 reg = ssm2602_read_reg_cache(codec, SSM2602_PWR) & 0xff7f;
  415. switch (level) {
  416. case SND_SOC_BIAS_ON:
  417. /* vref/mid, osc on, dac unmute */
  418. ssm2602_write(codec, SSM2602_PWR, reg);
  419. break;
  420. case SND_SOC_BIAS_PREPARE:
  421. break;
  422. case SND_SOC_BIAS_STANDBY:
  423. /* everything off except vref/vmid, */
  424. ssm2602_write(codec, SSM2602_PWR, reg | PWR_CLK_OUT_PDN);
  425. break;
  426. case SND_SOC_BIAS_OFF:
  427. /* everything off, dac mute, inactive */
  428. ssm2602_write(codec, SSM2602_ACTIVE, 0);
  429. ssm2602_write(codec, SSM2602_PWR, 0xffff);
  430. break;
  431. }
  432. codec->bias_level = level;
  433. return 0;
  434. }
  435. #define SSM2602_RATES (SNDRV_PCM_RATE_8000 | SNDRV_PCM_RATE_32000 |\
  436. SNDRV_PCM_RATE_44100 | SNDRV_PCM_RATE_48000 |\
  437. SNDRV_PCM_RATE_88200 | SNDRV_PCM_RATE_96000)
  438. #define SSM2602_FORMATS (SNDRV_PCM_FMTBIT_S16_LE | SNDRV_PCM_FMTBIT_S20_3LE |\
  439. SNDRV_PCM_FMTBIT_S24_LE | SNDRV_PCM_FMTBIT_S32_LE)
  440. static struct snd_soc_dai_ops ssm2602_dai_ops = {
  441. .startup = ssm2602_startup,
  442. .prepare = ssm2602_pcm_prepare,
  443. .hw_params = ssm2602_hw_params,
  444. .shutdown = ssm2602_shutdown,
  445. .digital_mute = ssm2602_mute,
  446. .set_sysclk = ssm2602_set_dai_sysclk,
  447. .set_fmt = ssm2602_set_dai_fmt,
  448. };
  449. struct snd_soc_dai ssm2602_dai = {
  450. .name = "SSM2602",
  451. .playback = {
  452. .stream_name = "Playback",
  453. .channels_min = 2,
  454. .channels_max = 2,
  455. .rates = SSM2602_RATES,
  456. .formats = SSM2602_FORMATS,},
  457. .capture = {
  458. .stream_name = "Capture",
  459. .channels_min = 2,
  460. .channels_max = 2,
  461. .rates = SSM2602_RATES,
  462. .formats = SSM2602_FORMATS,},
  463. .ops = &ssm2602_dai_ops,
  464. };
  465. EXPORT_SYMBOL_GPL(ssm2602_dai);
  466. static int ssm2602_suspend(struct platform_device *pdev, pm_message_t state)
  467. {
  468. struct snd_soc_device *socdev = platform_get_drvdata(pdev);
  469. struct snd_soc_codec *codec = socdev->card->codec;
  470. ssm2602_set_bias_level(codec, SND_SOC_BIAS_OFF);
  471. return 0;
  472. }
  473. static int ssm2602_resume(struct platform_device *pdev)
  474. {
  475. struct snd_soc_device *socdev = platform_get_drvdata(pdev);
  476. struct snd_soc_codec *codec = socdev->card->codec;
  477. int i;
  478. u8 data[2];
  479. u16 *cache = codec->reg_cache;
  480. /* Sync reg_cache with the hardware */
  481. for (i = 0; i < ARRAY_SIZE(ssm2602_reg); i++) {
  482. data[0] = (i << 1) | ((cache[i] >> 8) & 0x0001);
  483. data[1] = cache[i] & 0x00ff;
  484. codec->hw_write(codec->control_data, data, 2);
  485. }
  486. ssm2602_set_bias_level(codec, SND_SOC_BIAS_STANDBY);
  487. ssm2602_set_bias_level(codec, codec->suspend_bias_level);
  488. return 0;
  489. }
  490. /*
  491. * initialise the ssm2602 driver
  492. * register the mixer and dsp interfaces with the kernel
  493. */
  494. static int ssm2602_init(struct snd_soc_device *socdev)
  495. {
  496. struct snd_soc_codec *codec = socdev->card->codec;
  497. int reg, ret = 0;
  498. codec->name = "SSM2602";
  499. codec->owner = THIS_MODULE;
  500. codec->read = ssm2602_read_reg_cache;
  501. codec->write = ssm2602_write;
  502. codec->set_bias_level = ssm2602_set_bias_level;
  503. codec->dai = &ssm2602_dai;
  504. codec->num_dai = 1;
  505. codec->reg_cache_size = sizeof(ssm2602_reg);
  506. codec->reg_cache = kmemdup(ssm2602_reg, sizeof(ssm2602_reg),
  507. GFP_KERNEL);
  508. if (codec->reg_cache == NULL)
  509. return -ENOMEM;
  510. ssm2602_reset(codec);
  511. /* register pcms */
  512. ret = snd_soc_new_pcms(socdev, SNDRV_DEFAULT_IDX1, SNDRV_DEFAULT_STR1);
  513. if (ret < 0) {
  514. pr_err("ssm2602: failed to create pcms\n");
  515. goto pcm_err;
  516. }
  517. /*power on device*/
  518. ssm2602_write(codec, SSM2602_ACTIVE, 0);
  519. /* set the update bits */
  520. reg = ssm2602_read_reg_cache(codec, SSM2602_LINVOL);
  521. ssm2602_write(codec, SSM2602_LINVOL, reg | LINVOL_LRIN_BOTH);
  522. reg = ssm2602_read_reg_cache(codec, SSM2602_RINVOL);
  523. ssm2602_write(codec, SSM2602_RINVOL, reg | RINVOL_RLIN_BOTH);
  524. reg = ssm2602_read_reg_cache(codec, SSM2602_LOUT1V);
  525. ssm2602_write(codec, SSM2602_LOUT1V, reg | LOUT1V_LRHP_BOTH);
  526. reg = ssm2602_read_reg_cache(codec, SSM2602_ROUT1V);
  527. ssm2602_write(codec, SSM2602_ROUT1V, reg | ROUT1V_RLHP_BOTH);
  528. /*select Line in as default input*/
  529. ssm2602_write(codec, SSM2602_APANA,
  530. APANA_ENABLE_MIC_BOOST2 | APANA_SELECT_DAC |
  531. APANA_ENABLE_MIC_BOOST);
  532. ssm2602_write(codec, SSM2602_PWR, 0);
  533. snd_soc_add_controls(codec, ssm2602_snd_controls,
  534. ARRAY_SIZE(ssm2602_snd_controls));
  535. ssm2602_add_widgets(codec);
  536. ret = snd_soc_init_card(socdev);
  537. if (ret < 0) {
  538. pr_err("ssm2602: failed to register card\n");
  539. goto card_err;
  540. }
  541. return ret;
  542. card_err:
  543. snd_soc_free_pcms(socdev);
  544. snd_soc_dapm_free(socdev);
  545. pcm_err:
  546. kfree(codec->reg_cache);
  547. return ret;
  548. }
  549. static struct snd_soc_device *ssm2602_socdev;
  550. #if defined(CONFIG_I2C) || defined(CONFIG_I2C_MODULE)
  551. /*
  552. * ssm2602 2 wire address is determined by GPIO5
  553. * state during powerup.
  554. * low = 0x1a
  555. * high = 0x1b
  556. */
  557. static int ssm2602_i2c_probe(struct i2c_client *i2c,
  558. const struct i2c_device_id *id)
  559. {
  560. struct snd_soc_device *socdev = ssm2602_socdev;
  561. struct snd_soc_codec *codec = socdev->card->codec;
  562. int ret;
  563. i2c_set_clientdata(i2c, codec);
  564. codec->control_data = i2c;
  565. ret = ssm2602_init(socdev);
  566. if (ret < 0)
  567. pr_err("failed to initialise SSM2602\n");
  568. return ret;
  569. }
  570. static int ssm2602_i2c_remove(struct i2c_client *client)
  571. {
  572. struct snd_soc_codec *codec = i2c_get_clientdata(client);
  573. kfree(codec->reg_cache);
  574. return 0;
  575. }
  576. static const struct i2c_device_id ssm2602_i2c_id[] = {
  577. { "ssm2602", 0 },
  578. { }
  579. };
  580. MODULE_DEVICE_TABLE(i2c, ssm2602_i2c_id);
  581. /* corgi i2c codec control layer */
  582. static struct i2c_driver ssm2602_i2c_driver = {
  583. .driver = {
  584. .name = "SSM2602 I2C Codec",
  585. .owner = THIS_MODULE,
  586. },
  587. .probe = ssm2602_i2c_probe,
  588. .remove = ssm2602_i2c_remove,
  589. .id_table = ssm2602_i2c_id,
  590. };
  591. static int ssm2602_add_i2c_device(struct platform_device *pdev,
  592. const struct ssm2602_setup_data *setup)
  593. {
  594. struct i2c_board_info info;
  595. struct i2c_adapter *adapter;
  596. struct i2c_client *client;
  597. int ret;
  598. ret = i2c_add_driver(&ssm2602_i2c_driver);
  599. if (ret != 0) {
  600. dev_err(&pdev->dev, "can't add i2c driver\n");
  601. return ret;
  602. }
  603. memset(&info, 0, sizeof(struct i2c_board_info));
  604. info.addr = setup->i2c_address;
  605. strlcpy(info.type, "ssm2602", I2C_NAME_SIZE);
  606. adapter = i2c_get_adapter(setup->i2c_bus);
  607. if (!adapter) {
  608. dev_err(&pdev->dev, "can't get i2c adapter %d\n",
  609. setup->i2c_bus);
  610. goto err_driver;
  611. }
  612. client = i2c_new_device(adapter, &info);
  613. i2c_put_adapter(adapter);
  614. if (!client) {
  615. dev_err(&pdev->dev, "can't add i2c device at 0x%x\n",
  616. (unsigned int)info.addr);
  617. goto err_driver;
  618. }
  619. return 0;
  620. err_driver:
  621. i2c_del_driver(&ssm2602_i2c_driver);
  622. return -ENODEV;
  623. }
  624. #endif
  625. static int ssm2602_probe(struct platform_device *pdev)
  626. {
  627. struct snd_soc_device *socdev = platform_get_drvdata(pdev);
  628. struct ssm2602_setup_data *setup;
  629. struct snd_soc_codec *codec;
  630. struct ssm2602_priv *ssm2602;
  631. int ret = 0;
  632. pr_info("ssm2602 Audio Codec %s", SSM2602_VERSION);
  633. setup = socdev->codec_data;
  634. codec = kzalloc(sizeof(struct snd_soc_codec), GFP_KERNEL);
  635. if (codec == NULL)
  636. return -ENOMEM;
  637. ssm2602 = kzalloc(sizeof(struct ssm2602_priv), GFP_KERNEL);
  638. if (ssm2602 == NULL) {
  639. kfree(codec);
  640. return -ENOMEM;
  641. }
  642. codec->private_data = ssm2602;
  643. socdev->card->codec = codec;
  644. mutex_init(&codec->mutex);
  645. INIT_LIST_HEAD(&codec->dapm_widgets);
  646. INIT_LIST_HEAD(&codec->dapm_paths);
  647. ssm2602_socdev = socdev;
  648. #if defined(CONFIG_I2C) || defined(CONFIG_I2C_MODULE)
  649. if (setup->i2c_address) {
  650. codec->hw_write = (hw_write_t)i2c_master_send;
  651. ret = ssm2602_add_i2c_device(pdev, setup);
  652. }
  653. #else
  654. /* other interfaces */
  655. #endif
  656. return ret;
  657. }
  658. /* remove everything here */
  659. static int ssm2602_remove(struct platform_device *pdev)
  660. {
  661. struct snd_soc_device *socdev = platform_get_drvdata(pdev);
  662. struct snd_soc_codec *codec = socdev->card->codec;
  663. if (codec->control_data)
  664. ssm2602_set_bias_level(codec, SND_SOC_BIAS_OFF);
  665. snd_soc_free_pcms(socdev);
  666. snd_soc_dapm_free(socdev);
  667. #if defined(CONFIG_I2C) || defined(CONFIG_I2C_MODULE)
  668. i2c_unregister_device(codec->control_data);
  669. i2c_del_driver(&ssm2602_i2c_driver);
  670. #endif
  671. kfree(codec->private_data);
  672. kfree(codec);
  673. return 0;
  674. }
  675. struct snd_soc_codec_device soc_codec_dev_ssm2602 = {
  676. .probe = ssm2602_probe,
  677. .remove = ssm2602_remove,
  678. .suspend = ssm2602_suspend,
  679. .resume = ssm2602_resume,
  680. };
  681. EXPORT_SYMBOL_GPL(soc_codec_dev_ssm2602);
  682. static int __init ssm2602_modinit(void)
  683. {
  684. return snd_soc_register_dai(&ssm2602_dai);
  685. }
  686. module_init(ssm2602_modinit);
  687. static void __exit ssm2602_exit(void)
  688. {
  689. snd_soc_unregister_dai(&ssm2602_dai);
  690. }
  691. module_exit(ssm2602_exit);
  692. MODULE_DESCRIPTION("ASoC ssm2602 driver");
  693. MODULE_AUTHOR("Cliff Cai");
  694. MODULE_LICENSE("GPL");