max98926.c 16 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * max98926.c -- ALSA SoC MAX98926 driver
  4. * Copyright 2013-15 Maxim Integrated Products
  5. */
  6. #include <linux/delay.h>
  7. #include <linux/i2c.h>
  8. #include <linux/module.h>
  9. #include <linux/regmap.h>
  10. #include <linux/slab.h>
  11. #include <linux/cdev.h>
  12. #include <sound/pcm.h>
  13. #include <sound/pcm_params.h>
  14. #include <sound/soc.h>
  15. #include <sound/tlv.h>
  16. #include "max98926.h"
  17. static const char * const max98926_boost_voltage_txt[] = {
  18. "8.5V", "8.25V", "8.0V", "7.75V", "7.5V", "7.25V", "7.0V", "6.75V",
  19. "6.5V", "6.5V", "6.5V", "6.5V", "6.5V", "6.5V", "6.5V", "6.5V"
  20. };
  21. static const char *const max98926_pdm_ch_text[] = {
  22. "Current", "Voltage",
  23. };
  24. static const char *const max98926_hpf_cutoff_txt[] = {
  25. "Disable", "DC Block", "100Hz",
  26. "200Hz", "400Hz", "800Hz",
  27. };
  28. static const struct reg_default max98926_reg[] = {
  29. { 0x0B, 0x00 }, /* IRQ Enable0 */
  30. { 0x0C, 0x00 }, /* IRQ Enable1 */
  31. { 0x0D, 0x00 }, /* IRQ Enable2 */
  32. { 0x0E, 0x00 }, /* IRQ Clear0 */
  33. { 0x0F, 0x00 }, /* IRQ Clear1 */
  34. { 0x10, 0x00 }, /* IRQ Clear2 */
  35. { 0x11, 0xC0 }, /* Map0 */
  36. { 0x12, 0x00 }, /* Map1 */
  37. { 0x13, 0x00 }, /* Map2 */
  38. { 0x14, 0xF0 }, /* Map3 */
  39. { 0x15, 0x00 }, /* Map4 */
  40. { 0x16, 0xAB }, /* Map5 */
  41. { 0x17, 0x89 }, /* Map6 */
  42. { 0x18, 0x00 }, /* Map7 */
  43. { 0x19, 0x00 }, /* Map8 */
  44. { 0x1A, 0x04 }, /* DAI Clock Mode 1 */
  45. { 0x1B, 0x00 }, /* DAI Clock Mode 2 */
  46. { 0x1C, 0x00 }, /* DAI Clock Divider Denominator MSBs */
  47. { 0x1D, 0x00 }, /* DAI Clock Divider Denominator LSBs */
  48. { 0x1E, 0xF0 }, /* DAI Clock Divider Numerator MSBs */
  49. { 0x1F, 0x00 }, /* DAI Clock Divider Numerator LSBs */
  50. { 0x20, 0x50 }, /* Format */
  51. { 0x21, 0x00 }, /* TDM Slot Select */
  52. { 0x22, 0x00 }, /* DOUT Configuration VMON */
  53. { 0x23, 0x00 }, /* DOUT Configuration IMON */
  54. { 0x24, 0x00 }, /* DOUT Configuration VBAT */
  55. { 0x25, 0x00 }, /* DOUT Configuration VBST */
  56. { 0x26, 0x00 }, /* DOUT Configuration FLAG */
  57. { 0x27, 0xFF }, /* DOUT HiZ Configuration 1 */
  58. { 0x28, 0xFF }, /* DOUT HiZ Configuration 2 */
  59. { 0x29, 0xFF }, /* DOUT HiZ Configuration 3 */
  60. { 0x2A, 0xFF }, /* DOUT HiZ Configuration 4 */
  61. { 0x2B, 0x02 }, /* DOUT Drive Strength */
  62. { 0x2C, 0x90 }, /* Filters */
  63. { 0x2D, 0x00 }, /* Gain */
  64. { 0x2E, 0x02 }, /* Gain Ramping */
  65. { 0x2F, 0x00 }, /* Speaker Amplifier */
  66. { 0x30, 0x0A }, /* Threshold */
  67. { 0x31, 0x00 }, /* ALC Attack */
  68. { 0x32, 0x80 }, /* ALC Atten and Release */
  69. { 0x33, 0x00 }, /* ALC Infinite Hold Release */
  70. { 0x34, 0x92 }, /* ALC Configuration */
  71. { 0x35, 0x01 }, /* Boost Converter */
  72. { 0x36, 0x00 }, /* Block Enable */
  73. { 0x37, 0x00 }, /* Configuration */
  74. { 0x38, 0x00 }, /* Global Enable */
  75. { 0x3A, 0x00 }, /* Boost Limiter */
  76. };
  77. static const struct soc_enum max98926_voltage_enum[] = {
  78. SOC_ENUM_SINGLE(MAX98926_DAI_CLK_DIV_N_LSBS, 0,
  79. ARRAY_SIZE(max98926_pdm_ch_text),
  80. max98926_pdm_ch_text),
  81. };
  82. static const struct snd_kcontrol_new max98926_voltage_control =
  83. SOC_DAPM_ENUM("Route", max98926_voltage_enum);
  84. static const struct soc_enum max98926_current_enum[] = {
  85. SOC_ENUM_SINGLE(MAX98926_DAI_CLK_DIV_N_LSBS,
  86. MAX98926_PDM_SOURCE_1_SHIFT,
  87. ARRAY_SIZE(max98926_pdm_ch_text),
  88. max98926_pdm_ch_text),
  89. };
  90. static const struct snd_kcontrol_new max98926_current_control =
  91. SOC_DAPM_ENUM("Route", max98926_current_enum);
  92. static const struct snd_kcontrol_new max98926_mixer_controls[] = {
  93. SOC_DAPM_SINGLE("PCM Single Switch", MAX98926_SPK_AMP,
  94. MAX98926_INSELECT_MODE_SHIFT, 0, 0),
  95. SOC_DAPM_SINGLE("PDM Single Switch", MAX98926_SPK_AMP,
  96. MAX98926_INSELECT_MODE_SHIFT, 1, 0),
  97. };
  98. static const struct snd_kcontrol_new max98926_dai_controls[] = {
  99. SOC_DAPM_SINGLE("Left", MAX98926_GAIN,
  100. MAX98926_DAC_IN_SEL_SHIFT, 0, 0),
  101. SOC_DAPM_SINGLE("Right", MAX98926_GAIN,
  102. MAX98926_DAC_IN_SEL_SHIFT, 1, 0),
  103. SOC_DAPM_SINGLE("LeftRight", MAX98926_GAIN,
  104. MAX98926_DAC_IN_SEL_SHIFT, 2, 0),
  105. SOC_DAPM_SINGLE("(Left+Right)/2 Switch", MAX98926_GAIN,
  106. MAX98926_DAC_IN_SEL_SHIFT, 3, 0),
  107. };
  108. static const struct snd_soc_dapm_widget max98926_dapm_widgets[] = {
  109. SND_SOC_DAPM_AIF_IN("DAI_OUT", "HiFi Playback", 0,
  110. SND_SOC_NOPM, 0, 0),
  111. SND_SOC_DAPM_DAC("Amp Enable", NULL, MAX98926_BLOCK_ENABLE,
  112. MAX98926_SPK_EN_SHIFT, 0),
  113. SND_SOC_DAPM_SUPPLY("Global Enable", MAX98926_GLOBAL_ENABLE,
  114. MAX98926_EN_SHIFT, 0, NULL, 0),
  115. SND_SOC_DAPM_SUPPLY("VI Enable", MAX98926_BLOCK_ENABLE,
  116. MAX98926_ADC_IMON_EN_WIDTH |
  117. MAX98926_ADC_VMON_EN_SHIFT,
  118. 0, NULL, 0),
  119. SND_SOC_DAPM_PGA("BST Enable", MAX98926_BLOCK_ENABLE,
  120. MAX98926_BST_EN_SHIFT, 0, NULL, 0),
  121. SND_SOC_DAPM_OUTPUT("BE_OUT"),
  122. SND_SOC_DAPM_MIXER("PCM Sel", MAX98926_SPK_AMP,
  123. MAX98926_INSELECT_MODE_SHIFT, 0,
  124. &max98926_mixer_controls[0],
  125. ARRAY_SIZE(max98926_mixer_controls)),
  126. SND_SOC_DAPM_MIXER("DAI Sel",
  127. MAX98926_GAIN, MAX98926_DAC_IN_SEL_SHIFT, 0,
  128. &max98926_dai_controls[0],
  129. ARRAY_SIZE(max98926_dai_controls)),
  130. SND_SOC_DAPM_MUX("PDM CH1 Source",
  131. MAX98926_DAI_CLK_DIV_N_LSBS,
  132. MAX98926_PDM_CURRENT_SHIFT,
  133. 0, &max98926_current_control),
  134. SND_SOC_DAPM_MUX("PDM CH0 Source",
  135. MAX98926_DAI_CLK_DIV_N_LSBS,
  136. MAX98926_PDM_VOLTAGE_SHIFT,
  137. 0, &max98926_voltage_control),
  138. };
  139. static const struct snd_soc_dapm_route max98926_audio_map[] = {
  140. {"VI Enable", NULL, "DAI_OUT"},
  141. {"DAI Sel", "Left", "VI Enable"},
  142. {"DAI Sel", "Right", "VI Enable"},
  143. {"DAI Sel", "LeftRight", "VI Enable"},
  144. {"DAI Sel", "LeftRightDiv2", "VI Enable"},
  145. {"PCM Sel", "PCM", "DAI Sel"},
  146. {"PDM CH1 Source", "Current", "DAI_OUT"},
  147. {"PDM CH1 Source", "Voltage", "DAI_OUT"},
  148. {"PDM CH0 Source", "Current", "DAI_OUT"},
  149. {"PDM CH0 Source", "Voltage", "DAI_OUT"},
  150. {"PCM Sel", "Analog", "PDM CH1 Source"},
  151. {"PCM Sel", "Analog", "PDM CH0 Source"},
  152. {"Amp Enable", NULL, "PCM Sel"},
  153. {"BST Enable", NULL, "Amp Enable"},
  154. {"BE_OUT", NULL, "BST Enable"},
  155. };
  156. static bool max98926_volatile_register(struct device *dev, unsigned int reg)
  157. {
  158. switch (reg) {
  159. case MAX98926_VBAT_DATA:
  160. case MAX98926_VBST_DATA:
  161. case MAX98926_LIVE_STATUS0:
  162. case MAX98926_LIVE_STATUS1:
  163. case MAX98926_LIVE_STATUS2:
  164. case MAX98926_STATE0:
  165. case MAX98926_STATE1:
  166. case MAX98926_STATE2:
  167. case MAX98926_FLAG0:
  168. case MAX98926_FLAG1:
  169. case MAX98926_FLAG2:
  170. case MAX98926_VERSION:
  171. return true;
  172. default:
  173. return false;
  174. }
  175. }
  176. static bool max98926_readable_register(struct device *dev, unsigned int reg)
  177. {
  178. switch (reg) {
  179. case MAX98926_IRQ_CLEAR0:
  180. case MAX98926_IRQ_CLEAR1:
  181. case MAX98926_IRQ_CLEAR2:
  182. case MAX98926_ALC_HOLD_RLS:
  183. return false;
  184. default:
  185. return true;
  186. }
  187. };
  188. static DECLARE_TLV_DB_SCALE(max98926_spk_tlv, -600, 100, 0);
  189. static DECLARE_TLV_DB_RANGE(max98926_current_tlv,
  190. 0, 11, TLV_DB_SCALE_ITEM(20, 20, 0),
  191. 12, 15, TLV_DB_SCALE_ITEM(320, 40, 0),
  192. );
  193. static SOC_ENUM_SINGLE_DECL(max98926_dac_hpf_cutoff,
  194. MAX98926_FILTERS, MAX98926_DAC_HPF_SHIFT,
  195. max98926_hpf_cutoff_txt);
  196. static SOC_ENUM_SINGLE_DECL(max98926_boost_voltage,
  197. MAX98926_CONFIGURATION, MAX98926_BST_VOUT_SHIFT,
  198. max98926_boost_voltage_txt);
  199. static const struct snd_kcontrol_new max98926_snd_controls[] = {
  200. SOC_SINGLE_TLV("Speaker Volume", MAX98926_GAIN,
  201. MAX98926_SPK_GAIN_SHIFT,
  202. (1<<MAX98926_SPK_GAIN_WIDTH)-1, 0,
  203. max98926_spk_tlv),
  204. SOC_SINGLE("Ramp Switch", MAX98926_GAIN_RAMPING,
  205. MAX98926_SPK_RMP_EN_SHIFT, 1, 0),
  206. SOC_SINGLE("ZCD Switch", MAX98926_GAIN_RAMPING,
  207. MAX98926_SPK_ZCD_EN_SHIFT, 1, 0),
  208. SOC_SINGLE("ALC Switch", MAX98926_THRESHOLD,
  209. MAX98926_ALC_EN_SHIFT, 1, 0),
  210. SOC_SINGLE("ALC Threshold", MAX98926_THRESHOLD,
  211. MAX98926_ALC_TH_SHIFT,
  212. (1<<MAX98926_ALC_TH_WIDTH)-1, 0),
  213. SOC_ENUM("Boost Output Voltage", max98926_boost_voltage),
  214. SOC_SINGLE_TLV("Boost Current Limit", MAX98926_BOOST_LIMITER,
  215. MAX98926_BST_ILIM_SHIFT,
  216. (1<<MAX98926_BST_ILIM_SHIFT)-1, 0,
  217. max98926_current_tlv),
  218. SOC_ENUM("DAC HPF Cutoff", max98926_dac_hpf_cutoff),
  219. SOC_DOUBLE("PDM Channel One", MAX98926_DAI_CLK_DIV_N_LSBS,
  220. MAX98926_PDM_CHANNEL_1_SHIFT,
  221. MAX98926_PDM_CHANNEL_1_HIZ, 1, 0),
  222. SOC_DOUBLE("PDM Channel Zero", MAX98926_DAI_CLK_DIV_N_LSBS,
  223. MAX98926_PDM_CHANNEL_0_SHIFT,
  224. MAX98926_PDM_CHANNEL_0_HIZ, 1, 0),
  225. };
  226. static const struct {
  227. int rate;
  228. int sr;
  229. } rate_table[] = {
  230. {
  231. .rate = 8000,
  232. .sr = 0,
  233. },
  234. {
  235. .rate = 11025,
  236. .sr = 1,
  237. },
  238. {
  239. .rate = 12000,
  240. .sr = 2,
  241. },
  242. {
  243. .rate = 16000,
  244. .sr = 3,
  245. },
  246. {
  247. .rate = 22050,
  248. .sr = 4,
  249. },
  250. {
  251. .rate = 24000,
  252. .sr = 5,
  253. },
  254. {
  255. .rate = 32000,
  256. .sr = 6,
  257. },
  258. {
  259. .rate = 44100,
  260. .sr = 7,
  261. },
  262. {
  263. .rate = 48000,
  264. .sr = 8,
  265. },
  266. };
  267. static void max98926_set_sense_data(struct max98926_priv *max98926)
  268. {
  269. regmap_update_bits(max98926->regmap,
  270. MAX98926_DOUT_CFG_VMON,
  271. MAX98926_DAI_VMON_EN_MASK,
  272. MAX98926_DAI_VMON_EN_MASK);
  273. regmap_update_bits(max98926->regmap,
  274. MAX98926_DOUT_CFG_IMON,
  275. MAX98926_DAI_IMON_EN_MASK,
  276. MAX98926_DAI_IMON_EN_MASK);
  277. if (!max98926->interleave_mode) {
  278. /* set VMON slots */
  279. regmap_update_bits(max98926->regmap,
  280. MAX98926_DOUT_CFG_VMON,
  281. MAX98926_DAI_VMON_SLOT_MASK,
  282. max98926->v_slot);
  283. /* set IMON slots */
  284. regmap_update_bits(max98926->regmap,
  285. MAX98926_DOUT_CFG_IMON,
  286. MAX98926_DAI_IMON_SLOT_MASK,
  287. max98926->i_slot);
  288. } else {
  289. /* enable interleave mode */
  290. regmap_update_bits(max98926->regmap,
  291. MAX98926_FORMAT,
  292. MAX98926_DAI_INTERLEAVE_MASK,
  293. MAX98926_DAI_INTERLEAVE_MASK);
  294. /* set interleave slots */
  295. regmap_update_bits(max98926->regmap,
  296. MAX98926_DOUT_CFG_VBAT,
  297. MAX98926_DAI_INTERLEAVE_SLOT_MASK,
  298. max98926->v_slot);
  299. }
  300. }
  301. static int max98926_dai_set_fmt(struct snd_soc_dai *codec_dai,
  302. unsigned int fmt)
  303. {
  304. struct snd_soc_component *component = codec_dai->component;
  305. struct max98926_priv *max98926 = snd_soc_component_get_drvdata(component);
  306. unsigned int invert = 0;
  307. dev_dbg(component->dev, "%s: fmt 0x%08X\n", __func__, fmt);
  308. switch (fmt & SND_SOC_DAIFMT_CLOCK_PROVIDER_MASK) {
  309. case SND_SOC_DAIFMT_CBC_CFC:
  310. max98926_set_sense_data(max98926);
  311. break;
  312. default:
  313. dev_err(component->dev, "DAI clock mode unsupported\n");
  314. return -EINVAL;
  315. }
  316. switch (fmt & SND_SOC_DAIFMT_INV_MASK) {
  317. case SND_SOC_DAIFMT_NB_NF:
  318. break;
  319. case SND_SOC_DAIFMT_NB_IF:
  320. invert = MAX98926_DAI_WCI_MASK;
  321. break;
  322. case SND_SOC_DAIFMT_IB_NF:
  323. invert = MAX98926_DAI_BCI_MASK;
  324. break;
  325. case SND_SOC_DAIFMT_IB_IF:
  326. invert = MAX98926_DAI_BCI_MASK | MAX98926_DAI_WCI_MASK;
  327. break;
  328. default:
  329. dev_err(component->dev, "DAI invert mode unsupported\n");
  330. return -EINVAL;
  331. }
  332. regmap_write(max98926->regmap,
  333. MAX98926_FORMAT, MAX98926_DAI_DLY_MASK);
  334. regmap_update_bits(max98926->regmap, MAX98926_FORMAT,
  335. MAX98926_DAI_BCI_MASK, invert);
  336. return 0;
  337. }
  338. static int max98926_dai_hw_params(struct snd_pcm_substream *substream,
  339. struct snd_pcm_hw_params *params,
  340. struct snd_soc_dai *dai)
  341. {
  342. int dai_sr = -EINVAL;
  343. int rate = params_rate(params), i;
  344. struct snd_soc_component *component = dai->component;
  345. struct max98926_priv *max98926 = snd_soc_component_get_drvdata(component);
  346. int blr_clk_ratio;
  347. switch (params_format(params)) {
  348. case SNDRV_PCM_FORMAT_S16_LE:
  349. regmap_update_bits(max98926->regmap,
  350. MAX98926_FORMAT,
  351. MAX98926_DAI_CHANSZ_MASK,
  352. MAX98926_DAI_CHANSZ_16);
  353. max98926->ch_size = 16;
  354. break;
  355. case SNDRV_PCM_FORMAT_S24_LE:
  356. regmap_update_bits(max98926->regmap,
  357. MAX98926_FORMAT,
  358. MAX98926_DAI_CHANSZ_MASK,
  359. MAX98926_DAI_CHANSZ_24);
  360. max98926->ch_size = 24;
  361. break;
  362. case SNDRV_PCM_FORMAT_S32_LE:
  363. regmap_update_bits(max98926->regmap,
  364. MAX98926_FORMAT,
  365. MAX98926_DAI_CHANSZ_MASK,
  366. MAX98926_DAI_CHANSZ_32);
  367. max98926->ch_size = 32;
  368. break;
  369. default:
  370. dev_dbg(component->dev, "format unsupported %d\n",
  371. params_format(params));
  372. return -EINVAL;
  373. }
  374. /* BCLK/LRCLK ratio calculation */
  375. blr_clk_ratio = params_channels(params) * max98926->ch_size;
  376. switch (blr_clk_ratio) {
  377. case 32:
  378. regmap_update_bits(max98926->regmap,
  379. MAX98926_DAI_CLK_MODE2,
  380. MAX98926_DAI_BSEL_MASK,
  381. MAX98926_DAI_BSEL_32);
  382. break;
  383. case 48:
  384. regmap_update_bits(max98926->regmap,
  385. MAX98926_DAI_CLK_MODE2,
  386. MAX98926_DAI_BSEL_MASK,
  387. MAX98926_DAI_BSEL_48);
  388. break;
  389. case 64:
  390. regmap_update_bits(max98926->regmap,
  391. MAX98926_DAI_CLK_MODE2,
  392. MAX98926_DAI_BSEL_MASK,
  393. MAX98926_DAI_BSEL_64);
  394. break;
  395. default:
  396. return -EINVAL;
  397. }
  398. /* find the closest rate */
  399. for (i = 0; i < ARRAY_SIZE(rate_table); i++) {
  400. if (rate_table[i].rate >= rate) {
  401. dai_sr = rate_table[i].sr;
  402. break;
  403. }
  404. }
  405. if (dai_sr < 0)
  406. return -EINVAL;
  407. /* set DAI_SR to correct LRCLK frequency */
  408. regmap_update_bits(max98926->regmap,
  409. MAX98926_DAI_CLK_MODE2,
  410. MAX98926_DAI_SR_MASK, dai_sr << MAX98926_DAI_SR_SHIFT);
  411. return 0;
  412. }
  413. #define MAX98926_FORMATS (SNDRV_PCM_FMTBIT_S16_LE | \
  414. SNDRV_PCM_FMTBIT_S24_LE | SNDRV_PCM_FMTBIT_S32_LE)
  415. static const struct snd_soc_dai_ops max98926_dai_ops = {
  416. .set_fmt = max98926_dai_set_fmt,
  417. .hw_params = max98926_dai_hw_params,
  418. };
  419. static struct snd_soc_dai_driver max98926_dai[] = {
  420. {
  421. .name = "max98926-aif1",
  422. .playback = {
  423. .stream_name = "HiFi Playback",
  424. .channels_min = 1,
  425. .channels_max = 2,
  426. .rates = SNDRV_PCM_RATE_8000_48000,
  427. .formats = MAX98926_FORMATS,
  428. },
  429. .capture = {
  430. .stream_name = "HiFi Capture",
  431. .channels_min = 1,
  432. .channels_max = 2,
  433. .rates = SNDRV_PCM_RATE_8000_48000,
  434. .formats = MAX98926_FORMATS,
  435. },
  436. .ops = &max98926_dai_ops,
  437. }
  438. };
  439. static int max98926_probe(struct snd_soc_component *component)
  440. {
  441. struct max98926_priv *max98926 = snd_soc_component_get_drvdata(component);
  442. max98926->component = component;
  443. /* Hi-Z all the slots */
  444. regmap_write(max98926->regmap, MAX98926_DOUT_HIZ_CFG4, 0xF0);
  445. return 0;
  446. }
  447. static const struct snd_soc_component_driver soc_component_dev_max98926 = {
  448. .probe = max98926_probe,
  449. .controls = max98926_snd_controls,
  450. .num_controls = ARRAY_SIZE(max98926_snd_controls),
  451. .dapm_routes = max98926_audio_map,
  452. .num_dapm_routes = ARRAY_SIZE(max98926_audio_map),
  453. .dapm_widgets = max98926_dapm_widgets,
  454. .num_dapm_widgets = ARRAY_SIZE(max98926_dapm_widgets),
  455. .idle_bias_on = 1,
  456. .use_pmdown_time = 1,
  457. .endianness = 1,
  458. };
  459. static const struct regmap_config max98926_regmap = {
  460. .reg_bits = 8,
  461. .val_bits = 8,
  462. .max_register = MAX98926_VERSION,
  463. .reg_defaults = max98926_reg,
  464. .num_reg_defaults = ARRAY_SIZE(max98926_reg),
  465. .volatile_reg = max98926_volatile_register,
  466. .readable_reg = max98926_readable_register,
  467. .cache_type = REGCACHE_RBTREE,
  468. };
  469. static int max98926_i2c_probe(struct i2c_client *i2c)
  470. {
  471. int ret, reg;
  472. u32 value;
  473. struct max98926_priv *max98926;
  474. max98926 = devm_kzalloc(&i2c->dev,
  475. sizeof(*max98926), GFP_KERNEL);
  476. if (!max98926)
  477. return -ENOMEM;
  478. i2c_set_clientdata(i2c, max98926);
  479. max98926->regmap = devm_regmap_init_i2c(i2c, &max98926_regmap);
  480. if (IS_ERR(max98926->regmap)) {
  481. ret = PTR_ERR(max98926->regmap);
  482. dev_err(&i2c->dev,
  483. "Failed to allocate regmap: %d\n", ret);
  484. goto err_out;
  485. }
  486. if (of_property_read_bool(i2c->dev.of_node, "interleave-mode"))
  487. max98926->interleave_mode = true;
  488. if (!of_property_read_u32(i2c->dev.of_node, "vmon-slot-no", &value)) {
  489. if (value > MAX98926_DAI_VMON_SLOT_1E_1F) {
  490. dev_err(&i2c->dev, "vmon slot number is wrong:\n");
  491. return -EINVAL;
  492. }
  493. max98926->v_slot = value;
  494. }
  495. if (!of_property_read_u32(i2c->dev.of_node, "imon-slot-no", &value)) {
  496. if (value > MAX98926_DAI_IMON_SLOT_1E_1F) {
  497. dev_err(&i2c->dev, "imon slot number is wrong:\n");
  498. return -EINVAL;
  499. }
  500. max98926->i_slot = value;
  501. }
  502. ret = regmap_read(max98926->regmap,
  503. MAX98926_VERSION, &reg);
  504. if (ret < 0) {
  505. dev_err(&i2c->dev, "Failed to read: %x\n", reg);
  506. return ret;
  507. }
  508. ret = devm_snd_soc_register_component(&i2c->dev,
  509. &soc_component_dev_max98926,
  510. max98926_dai, ARRAY_SIZE(max98926_dai));
  511. if (ret < 0)
  512. dev_err(&i2c->dev,
  513. "Failed to register component: %d\n", ret);
  514. dev_info(&i2c->dev, "device version: %x\n", reg);
  515. err_out:
  516. return ret;
  517. }
  518. static const struct i2c_device_id max98926_i2c_id[] = {
  519. { "max98926", 0 },
  520. { }
  521. };
  522. MODULE_DEVICE_TABLE(i2c, max98926_i2c_id);
  523. #ifdef CONFIG_OF
  524. static const struct of_device_id max98926_of_match[] = {
  525. { .compatible = "maxim,max98926", },
  526. { }
  527. };
  528. MODULE_DEVICE_TABLE(of, max98926_of_match);
  529. #endif
  530. static struct i2c_driver max98926_i2c_driver = {
  531. .driver = {
  532. .name = "max98926",
  533. .of_match_table = of_match_ptr(max98926_of_match),
  534. },
  535. .probe_new = max98926_i2c_probe,
  536. .id_table = max98926_i2c_id,
  537. };
  538. module_i2c_driver(max98926_i2c_driver)
  539. MODULE_DESCRIPTION("ALSA SoC MAX98926 driver");
  540. MODULE_AUTHOR("Anish kumar <[email protected]>");
  541. MODULE_LICENSE("GPL");