wcd934x-mbhc.c 35 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Copyright (c) 2015-2021, The Linux Foundation. All rights reserved.
  4. */
  5. #include <linux/module.h>
  6. #include <linux/init.h>
  7. #include <linux/platform_device.h>
  8. #include <linux/device.h>
  9. #include <linux/printk.h>
  10. #include <linux/ratelimit.h>
  11. #include <linux/kernel.h>
  12. #include <linux/gpio.h>
  13. #include <linux/delay.h>
  14. #include <linux/regmap.h>
  15. #include <sound/pcm.h>
  16. #include <sound/pcm_params.h>
  17. #include <sound/soc.h>
  18. #include <sound/soc-dapm.h>
  19. #include "wcd934x.h"
  20. #include "wcd934x-mbhc.h"
  21. #include <asoc/wcd934x_registers.h>
  22. #include "wcd934x_irq.h"
  23. #include <asoc/core.h>
  24. #include <asoc/pdata.h>
  25. #include <asoc/wcd9xxx-irq.h>
  26. #include <asoc/wcdcal-hwdep.h>
  27. #include <asoc/wcd-mbhc-v2-api.h>
  28. #include <asoc/wcd9xxx_registers.h>
  29. #define TAVIL_ZDET_SUPPORTED true
  30. /* Z value defined in milliohm */
  31. #define TAVIL_ZDET_VAL_32 32000
  32. #define TAVIL_ZDET_VAL_400 400000
  33. #define TAVIL_ZDET_VAL_1200 1200000
  34. #define TAVIL_ZDET_VAL_100K 100000000
  35. /* Z floating defined in ohms */
  36. #define TAVIL_ZDET_FLOATING_IMPEDANCE 0x0FFFFFFE
  37. #define TAVIL_ZDET_NUM_MEASUREMENTS 900
  38. #define TAVIL_MBHC_GET_C1(c) ((c & 0xC000) >> 14)
  39. #define TAVIL_MBHC_GET_X1(x) (x & 0x3FFF)
  40. /* Z value compared in milliOhm */
  41. #define TAVIL_MBHC_IS_SECOND_RAMP_REQUIRED(z) ((z > 400000) || (z < 32000))
  42. #define TAVIL_MBHC_ZDET_CONST (86 * 16384)
  43. #define TAVIL_MBHC_MOISTURE_RREF R_24_KOHM
  44. static struct wcd_mbhc_register
  45. wcd_mbhc_registers[WCD_MBHC_REG_FUNC_MAX] = {
  46. WCD_MBHC_REGISTER("WCD_MBHC_L_DET_EN",
  47. WCD934X_ANA_MBHC_MECH, 0x80, 7, 0),
  48. WCD_MBHC_REGISTER("WCD_MBHC_GND_DET_EN",
  49. WCD934X_ANA_MBHC_MECH, 0x40, 6, 0),
  50. WCD_MBHC_REGISTER("WCD_MBHC_MECH_DETECTION_TYPE",
  51. WCD934X_ANA_MBHC_MECH, 0x20, 5, 0),
  52. WCD_MBHC_REGISTER("WCD_MBHC_MIC_CLAMP_CTL",
  53. WCD934X_MBHC_NEW_PLUG_DETECT_CTL, 0x30, 4, 0),
  54. WCD_MBHC_REGISTER("WCD_MBHC_ELECT_DETECTION_TYPE",
  55. WCD934X_ANA_MBHC_ELECT, 0x08, 3, 0),
  56. WCD_MBHC_REGISTER("WCD_MBHC_HS_L_DET_PULL_UP_CTRL",
  57. WCD934X_MBHC_NEW_PLUG_DETECT_CTL, 0xC0, 6, 0),
  58. WCD_MBHC_REGISTER("WCD_MBHC_HS_L_DET_PULL_UP_COMP_CTRL",
  59. WCD934X_ANA_MBHC_MECH, 0x04, 2, 0),
  60. WCD_MBHC_REGISTER("WCD_MBHC_HPHL_PLUG_TYPE",
  61. WCD934X_ANA_MBHC_MECH, 0x10, 4, 0),
  62. WCD_MBHC_REGISTER("WCD_MBHC_GND_PLUG_TYPE",
  63. WCD934X_ANA_MBHC_MECH, 0x08, 3, 0),
  64. WCD_MBHC_REGISTER("WCD_MBHC_SW_HPH_LP_100K_TO_GND",
  65. WCD934X_ANA_MBHC_MECH, 0x01, 0, 0),
  66. WCD_MBHC_REGISTER("WCD_MBHC_ELECT_SCHMT_ISRC",
  67. WCD934X_ANA_MBHC_ELECT, 0x06, 1, 0),
  68. WCD_MBHC_REGISTER("WCD_MBHC_FSM_EN",
  69. WCD934X_ANA_MBHC_ELECT, 0x80, 7, 0),
  70. WCD_MBHC_REGISTER("WCD_MBHC_INSREM_DBNC",
  71. WCD934X_MBHC_NEW_PLUG_DETECT_CTL, 0x0F, 0, 0),
  72. WCD_MBHC_REGISTER("WCD_MBHC_BTN_DBNC",
  73. WCD934X_MBHC_NEW_CTL_1, 0x03, 0, 0),
  74. WCD_MBHC_REGISTER("WCD_MBHC_HS_VREF",
  75. WCD934X_MBHC_NEW_CTL_2, 0x03, 0, 0),
  76. WCD_MBHC_REGISTER("WCD_MBHC_HS_COMP_RESULT",
  77. WCD934X_ANA_MBHC_RESULT_3, 0x08, 3, 0),
  78. WCD_MBHC_REGISTER("WCD_MBHC_IN2P_CLAMP_STATE",
  79. WCD934X_ANA_MBHC_RESULT_3, 0x10, 4, 0),
  80. WCD_MBHC_REGISTER("WCD_MBHC_MIC_SCHMT_RESULT",
  81. WCD934X_ANA_MBHC_RESULT_3, 0x20, 5, 0),
  82. WCD_MBHC_REGISTER("WCD_MBHC_HPHL_SCHMT_RESULT",
  83. WCD934X_ANA_MBHC_RESULT_3, 0x80, 7, 0),
  84. WCD_MBHC_REGISTER("WCD_MBHC_HPHR_SCHMT_RESULT",
  85. WCD934X_ANA_MBHC_RESULT_3, 0x40, 6, 0),
  86. WCD_MBHC_REGISTER("WCD_MBHC_OCP_FSM_EN",
  87. WCD934X_HPH_OCP_CTL, 0x10, 4, 0),
  88. WCD_MBHC_REGISTER("WCD_MBHC_BTN_RESULT",
  89. WCD934X_ANA_MBHC_RESULT_3, 0x07, 0, 0),
  90. WCD_MBHC_REGISTER("WCD_MBHC_BTN_ISRC_CTL",
  91. WCD934X_ANA_MBHC_ELECT, 0x70, 4, 0),
  92. WCD_MBHC_REGISTER("WCD_MBHC_ELECT_RESULT",
  93. WCD934X_ANA_MBHC_RESULT_3, 0xFF, 0, 0),
  94. WCD_MBHC_REGISTER("WCD_MBHC_MICB_CTRL",
  95. WCD934X_ANA_MICB2, 0xC0, 6, 0),
  96. WCD_MBHC_REGISTER("WCD_MBHC_HPH_CNP_WG_TIME",
  97. WCD934X_HPH_CNP_WG_TIME, 0xFF, 0, 0),
  98. WCD_MBHC_REGISTER("WCD_MBHC_HPHR_PA_EN",
  99. WCD934X_ANA_HPH, 0x40, 6, 0),
  100. WCD_MBHC_REGISTER("WCD_MBHC_HPHL_PA_EN",
  101. WCD934X_ANA_HPH, 0x80, 7, 0),
  102. WCD_MBHC_REGISTER("WCD_MBHC_HPH_PA_EN",
  103. WCD934X_ANA_HPH, 0xC0, 6, 0),
  104. WCD_MBHC_REGISTER("WCD_MBHC_SWCH_LEVEL_REMOVE",
  105. WCD934X_ANA_MBHC_RESULT_3, 0x10, 4, 0),
  106. WCD_MBHC_REGISTER("WCD_MBHC_PULLDOWN_CTRL",
  107. 0, 0, 0, 0),
  108. WCD_MBHC_REGISTER("WCD_MBHC_ANC_DET_EN",
  109. WCD934X_MBHC_CTL_BCS, 0x02, 1, 0),
  110. WCD_MBHC_REGISTER("WCD_MBHC_FSM_STATUS",
  111. WCD934X_MBHC_STATUS_SPARE_1, 0x01, 0, 0),
  112. WCD_MBHC_REGISTER("WCD_MBHC_MUX_CTL",
  113. WCD934X_MBHC_NEW_CTL_2, 0x70, 4, 0),
  114. WCD_MBHC_REGISTER("WCD_MBHC_MOISTURE_STATUS",
  115. WCD934X_MBHC_NEW_FSM_STATUS, 0x20, 5, 0),
  116. WCD_MBHC_REGISTER("WCD_MBHC_HPHR_GND",
  117. WCD934X_HPH_PA_CTL2, 0x40, 6, 0),
  118. WCD_MBHC_REGISTER("WCD_MBHC_HPHL_GND",
  119. WCD934X_HPH_PA_CTL2, 0x10, 4, 0),
  120. WCD_MBHC_REGISTER("WCD_MBHC_HPHL_OCP_DET_EN",
  121. WCD934X_HPH_L_TEST, 0x01, 0, 0),
  122. WCD_MBHC_REGISTER("WCD_MBHC_HPHR_OCP_DET_EN",
  123. WCD934X_HPH_R_TEST, 0x01, 0, 0),
  124. WCD_MBHC_REGISTER("WCD_MBHC_HPHL_OCP_STATUS",
  125. WCD934X_INTR_PIN1_STATUS0, 0x04, 2, 0),
  126. WCD_MBHC_REGISTER("WCD_MBHC_HPHR_OCP_STATUS",
  127. WCD934X_INTR_PIN1_STATUS0, 0x08, 3, 0),
  128. WCD_MBHC_REGISTER("WCD_MBHC_ADC_EN",
  129. WCD934X_MBHC_NEW_CTL_1, 0x08, 3, 0),
  130. WCD_MBHC_REGISTER("WCD_MBHC_ADC_COMPLETE", WCD934X_MBHC_NEW_FSM_STATUS,
  131. 0x40, 6, 0),
  132. WCD_MBHC_REGISTER("WCD_MBHC_ADC_TIMEOUT", WCD934X_MBHC_NEW_FSM_STATUS,
  133. 0x80, 7, 0),
  134. WCD_MBHC_REGISTER("WCD_MBHC_ADC_RESULT", WCD934X_MBHC_NEW_ADC_RESULT,
  135. 0xFF, 0, 0),
  136. WCD_MBHC_REGISTER("WCD_MBHC_MICB2_VOUT", WCD934X_ANA_MICB2, 0x3F, 0, 0),
  137. WCD_MBHC_REGISTER("WCD_MBHC_ADC_MODE",
  138. WCD934X_MBHC_NEW_CTL_1, 0x10, 4, 0),
  139. WCD_MBHC_REGISTER("WCD_MBHC_DETECTION_DONE",
  140. WCD934X_MBHC_NEW_CTL_1, 0x04, 2, 0),
  141. WCD_MBHC_REGISTER("WCD_MBHC_ELECT_ISRC_EN",
  142. WCD934X_ANA_MBHC_ZDET, 0x02, 1, 0),
  143. };
  144. static const struct wcd_mbhc_intr intr_ids = {
  145. .mbhc_sw_intr = WCD934X_IRQ_MBHC_SW_DET,
  146. .mbhc_btn_press_intr = WCD934X_IRQ_MBHC_BUTTON_PRESS_DET,
  147. .mbhc_btn_release_intr = WCD934X_IRQ_MBHC_BUTTON_RELEASE_DET,
  148. .mbhc_hs_ins_intr = WCD934X_IRQ_MBHC_ELECT_INS_REM_LEG_DET,
  149. .mbhc_hs_rem_intr = WCD934X_IRQ_MBHC_ELECT_INS_REM_DET,
  150. .hph_left_ocp = WCD934X_IRQ_HPH_PA_OCPL_FAULT,
  151. .hph_right_ocp = WCD934X_IRQ_HPH_PA_OCPR_FAULT,
  152. };
  153. static char on_demand_supply_name[][MAX_ON_DEMAND_SUPPLY_NAME_LENGTH] = {
  154. "cdc-vdd-mic-bias",
  155. };
  156. struct tavil_mbhc_zdet_param {
  157. u16 ldo_ctl;
  158. u16 noff;
  159. u16 nshift;
  160. u16 btn5;
  161. u16 btn6;
  162. u16 btn7;
  163. };
  164. static int tavil_mbhc_request_irq(struct snd_soc_component *component,
  165. int irq, irq_handler_t handler,
  166. const char *name, void *data)
  167. {
  168. struct wcd9xxx *wcd9xxx = dev_get_drvdata(component->dev->parent);
  169. struct wcd9xxx_core_resource *core_res =
  170. &wcd9xxx->core_res;
  171. return wcd9xxx_request_irq(core_res, irq, handler, name, data);
  172. }
  173. static void tavil_mbhc_irq_control(struct snd_soc_component *component,
  174. int irq, bool enable)
  175. {
  176. struct wcd9xxx *wcd9xxx = dev_get_drvdata(component->dev->parent);
  177. struct wcd9xxx_core_resource *core_res =
  178. &wcd9xxx->core_res;
  179. if (enable)
  180. wcd9xxx_enable_irq(core_res, irq);
  181. else
  182. wcd9xxx_disable_irq(core_res, irq);
  183. }
  184. static int tavil_mbhc_free_irq(struct snd_soc_component *component,
  185. int irq, void *data)
  186. {
  187. struct wcd9xxx *wcd9xxx = dev_get_drvdata(component->dev->parent);
  188. struct wcd9xxx_core_resource *core_res =
  189. &wcd9xxx->core_res;
  190. wcd9xxx_free_irq(core_res, irq, data);
  191. return 0;
  192. }
  193. static void tavil_mbhc_clk_setup(struct snd_soc_component *component,
  194. bool enable)
  195. {
  196. if (enable)
  197. snd_soc_component_update_bits(component, WCD934X_MBHC_NEW_CTL_1,
  198. 0x80, 0x80);
  199. else
  200. snd_soc_component_update_bits(component, WCD934X_MBHC_NEW_CTL_1,
  201. 0x80, 0x00);
  202. }
  203. static int tavil_mbhc_btn_to_num(struct snd_soc_component *component)
  204. {
  205. return snd_soc_component_read32(component, WCD934X_ANA_MBHC_RESULT_3) &
  206. 0x7;
  207. }
  208. static int tavil_enable_ext_mb_source(struct wcd_mbhc *mbhc,
  209. bool turn_on)
  210. {
  211. struct wcd934x_mbhc *wcd934x_mbhc;
  212. struct snd_soc_component *component = mbhc->component;
  213. struct wcd934x_on_demand_supply *supply;
  214. int ret = 0;
  215. wcd934x_mbhc = container_of(mbhc, struct wcd934x_mbhc, wcd_mbhc);
  216. supply = &wcd934x_mbhc->on_demand_list[WCD934X_ON_DEMAND_MICBIAS];
  217. if (!supply->supply) {
  218. dev_dbg(component->dev, "%s: warning supply not present ond for %s\n",
  219. __func__, "onDemand Micbias");
  220. return ret;
  221. }
  222. dev_dbg(component->dev, "%s turn_on: %d count: %d\n", __func__, turn_on,
  223. supply->ondemand_supply_count);
  224. if (turn_on) {
  225. if (!(supply->ondemand_supply_count)) {
  226. ret = snd_soc_dapm_force_enable_pin(
  227. snd_soc_component_get_dapm(component),
  228. "MICBIAS_REGULATOR");
  229. snd_soc_dapm_sync(
  230. snd_soc_component_get_dapm(component));
  231. }
  232. supply->ondemand_supply_count++;
  233. } else {
  234. if (supply->ondemand_supply_count > 0)
  235. supply->ondemand_supply_count--;
  236. if (!(supply->ondemand_supply_count)) {
  237. ret = snd_soc_dapm_disable_pin(
  238. snd_soc_component_get_dapm(component),
  239. "MICBIAS_REGULATOR");
  240. snd_soc_dapm_sync(snd_soc_component_get_dapm(component));
  241. }
  242. }
  243. if (ret)
  244. dev_err(component->dev, "%s: Failed to %s external micbias source\n",
  245. __func__, turn_on ? "enable" : "disabled");
  246. else
  247. dev_dbg(component->dev, "%s: %s external micbias source\n",
  248. __func__, turn_on ? "Enabled" : "Disabled");
  249. return ret;
  250. }
  251. static void tavil_mbhc_mbhc_bias_control(struct snd_soc_component *component,
  252. bool enable)
  253. {
  254. if (enable)
  255. snd_soc_component_update_bits(component, WCD934X_ANA_MBHC_ELECT,
  256. 0x01, 0x01);
  257. else
  258. snd_soc_component_update_bits(component, WCD934X_ANA_MBHC_ELECT,
  259. 0x01, 0x00);
  260. }
  261. static void tavil_mbhc_program_btn_thr(struct snd_soc_component *component,
  262. s16 *btn_low, s16 *btn_high,
  263. int num_btn, bool is_micbias)
  264. {
  265. int i;
  266. int vth;
  267. if (num_btn > WCD_MBHC_DEF_BUTTONS) {
  268. dev_err(component->dev, "%s: invalid number of buttons: %d\n",
  269. __func__, num_btn);
  270. return;
  271. }
  272. /*
  273. * Tavil just needs one set of thresholds for button detection
  274. * due to micbias voltage ramp to pullup upon button press. So
  275. * btn_low and is_micbias are ignored and always program button
  276. * thresholds using btn_high.
  277. */
  278. for (i = 0; i < num_btn; i++) {
  279. vth = ((btn_high[i] * 2) / 25) & 0x3F;
  280. snd_soc_component_update_bits(component,
  281. WCD934X_ANA_MBHC_BTN0 + i,
  282. 0xFC, vth << 2);
  283. dev_dbg(component->dev, "%s: btn_high[%d]: %d, vth: %d\n",
  284. __func__, i, btn_high[i], vth);
  285. }
  286. }
  287. static bool tavil_mbhc_lock_sleep(struct wcd_mbhc *mbhc, bool lock)
  288. {
  289. struct snd_soc_component *component = mbhc->component;
  290. struct wcd9xxx *wcd9xxx = dev_get_drvdata(component->dev->parent);
  291. struct wcd9xxx_core_resource *core_res =
  292. &wcd9xxx->core_res;
  293. bool ret = 0;
  294. if (lock)
  295. ret = wcd9xxx_lock_sleep(core_res);
  296. else
  297. wcd9xxx_unlock_sleep(core_res);
  298. return ret;
  299. }
  300. static int tavil_mbhc_register_notifier(struct wcd_mbhc *mbhc,
  301. struct notifier_block *nblock,
  302. bool enable)
  303. {
  304. struct wcd934x_mbhc *wcd934x_mbhc;
  305. wcd934x_mbhc = container_of(mbhc, struct wcd934x_mbhc, wcd_mbhc);
  306. if (enable)
  307. return blocking_notifier_chain_register(&wcd934x_mbhc->notifier,
  308. nblock);
  309. else
  310. return blocking_notifier_chain_unregister(
  311. &wcd934x_mbhc->notifier, nblock);
  312. }
  313. static bool tavil_mbhc_micb_en_status(struct wcd_mbhc *mbhc, int micb_num)
  314. {
  315. u8 val;
  316. if (micb_num == MIC_BIAS_2) {
  317. val = (snd_soc_component_read32(
  318. mbhc->component, WCD934X_ANA_MICB2) >> 6);
  319. if (val == 0x01)
  320. return true;
  321. }
  322. return false;
  323. }
  324. static bool tavil_mbhc_hph_pa_on_status(struct snd_soc_component *component)
  325. {
  326. return (snd_soc_component_read32(component, WCD934X_ANA_HPH) & 0xC0) ?
  327. true : false;
  328. }
  329. static void tavil_mbhc_hph_l_pull_up_control(
  330. struct snd_soc_component *component,
  331. enum mbhc_hs_pullup_iref pull_up_cur)
  332. {
  333. /* Default pull up current to 2uA */
  334. if (pull_up_cur < I_OFF || pull_up_cur > I_3P0_UA ||
  335. pull_up_cur == I_DEFAULT)
  336. pull_up_cur = I_2P0_UA;
  337. dev_dbg(component->dev, "%s: HS pull up current:%d\n",
  338. __func__, pull_up_cur);
  339. snd_soc_component_update_bits(component,
  340. WCD934X_MBHC_NEW_PLUG_DETECT_CTL,
  341. 0xC0, pull_up_cur << 6);
  342. }
  343. static int tavil_mbhc_request_micbias(struct snd_soc_component *component,
  344. int micb_num, int req)
  345. {
  346. int ret;
  347. /*
  348. * If micbias is requested, make sure that there
  349. * is vote to enable mclk
  350. */
  351. if (req == MICB_ENABLE)
  352. tavil_cdc_mclk_enable(component, true);
  353. ret = tavil_micbias_control(component, micb_num, req, false);
  354. /*
  355. * Release vote for mclk while requesting for
  356. * micbias disable
  357. */
  358. if (req == MICB_DISABLE)
  359. tavil_cdc_mclk_enable(component, false);
  360. return ret;
  361. }
  362. static void tavil_mbhc_micb_ramp_control(struct snd_soc_component *component,
  363. bool enable)
  364. {
  365. if (enable) {
  366. snd_soc_component_update_bits(component, WCD934X_ANA_MICB2_RAMP,
  367. 0x1C, 0x0C);
  368. snd_soc_component_update_bits(component, WCD934X_ANA_MICB2_RAMP,
  369. 0x80, 0x80);
  370. } else {
  371. snd_soc_component_update_bits(component, WCD934X_ANA_MICB2_RAMP,
  372. 0x80, 0x00);
  373. snd_soc_component_update_bits(component, WCD934X_ANA_MICB2_RAMP,
  374. 0x1C, 0x00);
  375. }
  376. }
  377. static struct firmware_cal *tavil_get_hwdep_fw_cal(struct wcd_mbhc *mbhc,
  378. enum wcd_cal_type type)
  379. {
  380. struct wcd934x_mbhc *wcd934x_mbhc;
  381. struct firmware_cal *hwdep_cal;
  382. struct snd_soc_component *component = mbhc->component;
  383. wcd934x_mbhc = container_of(mbhc, struct wcd934x_mbhc, wcd_mbhc);
  384. if (!component) {
  385. pr_err("%s: NULL component pointer\n", __func__);
  386. return NULL;
  387. }
  388. hwdep_cal = wcdcal_get_fw_cal(wcd934x_mbhc->fw_data, type);
  389. if (!hwdep_cal)
  390. dev_err(component->dev, "%s: cal not sent by %d\n",
  391. __func__, type);
  392. return hwdep_cal;
  393. }
  394. static int tavil_mbhc_micb_ctrl_threshold_mic(
  395. struct snd_soc_component *component,
  396. int micb_num, bool req_en)
  397. {
  398. struct wcd9xxx_pdata *pdata = dev_get_platdata(component->dev->parent);
  399. int rc, micb_mv;
  400. if (micb_num != MIC_BIAS_2)
  401. return -EINVAL;
  402. /*
  403. * If device tree micbias level is already above the minimum
  404. * voltage needed to detect threshold microphone, then do
  405. * not change the micbias, just return.
  406. */
  407. if (pdata->micbias.micb2_mv >= WCD_MBHC_THR_HS_MICB_MV)
  408. return 0;
  409. micb_mv = req_en ? WCD_MBHC_THR_HS_MICB_MV : pdata->micbias.micb2_mv;
  410. rc = tavil_mbhc_micb_adjust_voltage(component, micb_mv, MIC_BIAS_2);
  411. return rc;
  412. }
  413. static inline void tavil_mbhc_get_result_params(struct wcd9xxx *wcd9xxx,
  414. s16 *d1_a, u16 noff,
  415. int32_t *zdet)
  416. {
  417. int i;
  418. int val, val1;
  419. s16 c1;
  420. s32 x1, d1;
  421. int32_t denom;
  422. int minCode_param[] = {
  423. 3277, 1639, 820, 410, 205, 103, 52, 26
  424. };
  425. regmap_update_bits(wcd9xxx->regmap, WCD934X_ANA_MBHC_ZDET, 0x20, 0x20);
  426. for (i = 0; i < TAVIL_ZDET_NUM_MEASUREMENTS; i++) {
  427. regmap_read(wcd9xxx->regmap, WCD934X_ANA_MBHC_RESULT_2, &val);
  428. if (val & 0x80)
  429. break;
  430. }
  431. val = val << 0x8;
  432. regmap_read(wcd9xxx->regmap, WCD934X_ANA_MBHC_RESULT_1, &val1);
  433. val |= val1;
  434. regmap_update_bits(wcd9xxx->regmap, WCD934X_ANA_MBHC_ZDET, 0x20, 0x00);
  435. x1 = TAVIL_MBHC_GET_X1(val);
  436. c1 = TAVIL_MBHC_GET_C1(val);
  437. /* If ramp is not complete, give additional 5ms */
  438. if ((c1 < 2) && x1)
  439. usleep_range(5000, 5050);
  440. if (!c1 || !x1) {
  441. dev_dbg(wcd9xxx->dev,
  442. "%s: Impedance detect ramp error, c1=%d, x1=0x%x\n",
  443. __func__, c1, x1);
  444. goto ramp_down;
  445. }
  446. d1 = d1_a[c1];
  447. denom = (x1 * d1) - (1 << (14 - noff));
  448. if (denom > 0)
  449. *zdet = (TAVIL_MBHC_ZDET_CONST * 1000) / denom;
  450. else if (x1 < minCode_param[noff])
  451. *zdet = TAVIL_ZDET_FLOATING_IMPEDANCE;
  452. dev_dbg(wcd9xxx->dev, "%s: d1=%d, c1=%d, x1=0x%x, z_val=%d(milliOhm)\n",
  453. __func__, d1, c1, x1, *zdet);
  454. ramp_down:
  455. i = 0;
  456. while (x1) {
  457. regmap_bulk_read(wcd9xxx->regmap,
  458. WCD934X_ANA_MBHC_RESULT_1, (u8 *)&val, 2);
  459. x1 = TAVIL_MBHC_GET_X1(val);
  460. i++;
  461. if (i == TAVIL_ZDET_NUM_MEASUREMENTS)
  462. break;
  463. }
  464. }
  465. static void tavil_mbhc_zdet_ramp(struct snd_soc_component *component,
  466. struct tavil_mbhc_zdet_param *zdet_param,
  467. int32_t *zl, int32_t *zr, s16 *d1_a)
  468. {
  469. struct wcd9xxx *wcd9xxx = dev_get_drvdata(component->dev->parent);
  470. int32_t zdet = 0;
  471. snd_soc_component_update_bits(component, WCD934X_MBHC_NEW_ZDET_ANA_CTL,
  472. 0x70, zdet_param->ldo_ctl << 4);
  473. snd_soc_component_update_bits(component, WCD934X_ANA_MBHC_BTN5, 0xFC,
  474. zdet_param->btn5);
  475. snd_soc_component_update_bits(component, WCD934X_ANA_MBHC_BTN6, 0xFC,
  476. zdet_param->btn6);
  477. snd_soc_component_update_bits(component, WCD934X_ANA_MBHC_BTN7, 0xFC,
  478. zdet_param->btn7);
  479. snd_soc_component_update_bits(component, WCD934X_MBHC_NEW_ZDET_ANA_CTL,
  480. 0x0F, zdet_param->noff);
  481. snd_soc_component_update_bits(component, WCD934X_MBHC_NEW_ZDET_RAMP_CTL,
  482. 0x0F, zdet_param->nshift);
  483. if (!zl)
  484. goto z_right;
  485. /* Start impedance measurement for HPH_L */
  486. regmap_update_bits(wcd9xxx->regmap,
  487. WCD934X_ANA_MBHC_ZDET, 0x80, 0x80);
  488. dev_dbg(wcd9xxx->dev, "%s: ramp for HPH_L, noff = %d\n",
  489. __func__, zdet_param->noff);
  490. tavil_mbhc_get_result_params(wcd9xxx, d1_a, zdet_param->noff, &zdet);
  491. regmap_update_bits(wcd9xxx->regmap,
  492. WCD934X_ANA_MBHC_ZDET, 0x80, 0x00);
  493. *zl = zdet;
  494. z_right:
  495. if (!zr)
  496. return;
  497. /* Start impedance measurement for HPH_R */
  498. regmap_update_bits(wcd9xxx->regmap,
  499. WCD934X_ANA_MBHC_ZDET, 0x40, 0x40);
  500. dev_dbg(wcd9xxx->dev, "%s: ramp for HPH_R, noff = %d\n",
  501. __func__, zdet_param->noff);
  502. tavil_mbhc_get_result_params(wcd9xxx, d1_a, zdet_param->noff, &zdet);
  503. regmap_update_bits(wcd9xxx->regmap,
  504. WCD934X_ANA_MBHC_ZDET, 0x40, 0x00);
  505. *zr = zdet;
  506. }
  507. static inline void tavil_wcd_mbhc_qfuse_cal(struct snd_soc_component *component,
  508. int32_t *z_val, int flag_l_r)
  509. {
  510. s16 q1;
  511. int q1_cal;
  512. if (*z_val < (TAVIL_ZDET_VAL_400/1000))
  513. q1 = snd_soc_component_read32(component,
  514. WCD934X_CHIP_TIER_CTRL_EFUSE_VAL_OUT1 + (2 * flag_l_r));
  515. else
  516. q1 = snd_soc_component_read32(component,
  517. WCD934X_CHIP_TIER_CTRL_EFUSE_VAL_OUT2 + (2 * flag_l_r));
  518. if (q1 & 0x80)
  519. q1_cal = (10000 - ((q1 & 0x7F) * 25));
  520. else
  521. q1_cal = (10000 + (q1 * 25));
  522. if (q1_cal > 0)
  523. *z_val = ((*z_val) * 10000) / q1_cal;
  524. }
  525. static void tavil_wcd_mbhc_calc_impedance(struct wcd_mbhc *mbhc, uint32_t *zl,
  526. uint32_t *zr)
  527. {
  528. struct snd_soc_component *component = mbhc->component;
  529. struct wcd9xxx *wcd9xxx = dev_get_drvdata(component->dev->parent);
  530. s16 reg0, reg1, reg2, reg3, reg4;
  531. int32_t z1L, z1R, z1Ls;
  532. int zMono, z_diff1, z_diff2;
  533. bool is_fsm_disable = false;
  534. struct tavil_mbhc_zdet_param zdet_param[] = {
  535. {4, 0, 4, 0x08, 0x14, 0x18}, /* < 32ohm */
  536. {2, 0, 3, 0x18, 0x7C, 0x90}, /* 32ohm < Z < 400ohm */
  537. {1, 4, 5, 0x18, 0x7C, 0x90}, /* 400ohm < Z < 1200ohm */
  538. {1, 6, 7, 0x18, 0x7C, 0x90}, /* >1200ohm */
  539. };
  540. struct tavil_mbhc_zdet_param *zdet_param_ptr = NULL;
  541. s16 d1_a[][4] = {
  542. {0, 30, 90, 30},
  543. {0, 30, 30, 5},
  544. {0, 30, 30, 5},
  545. {0, 30, 30, 5},
  546. };
  547. s16 *d1 = NULL;
  548. WCD_MBHC_RSC_ASSERT_LOCKED(mbhc);
  549. reg0 = snd_soc_component_read32(component, WCD934X_ANA_MBHC_BTN5);
  550. reg1 = snd_soc_component_read32(component, WCD934X_ANA_MBHC_BTN6);
  551. reg2 = snd_soc_component_read32(component, WCD934X_ANA_MBHC_BTN7);
  552. reg3 = snd_soc_component_read32(component, WCD934X_MBHC_CTL_CLK);
  553. reg4 = snd_soc_component_read32(component,
  554. WCD934X_MBHC_NEW_ZDET_ANA_CTL);
  555. if (snd_soc_component_read32(component, WCD934X_ANA_MBHC_ELECT) &
  556. 0x80) {
  557. is_fsm_disable = true;
  558. regmap_update_bits(wcd9xxx->regmap,
  559. WCD934X_ANA_MBHC_ELECT, 0x80, 0x00);
  560. }
  561. /* For NO-jack, disable L_DET_EN before Z-det measurements */
  562. if (mbhc->hphl_swh)
  563. regmap_update_bits(wcd9xxx->regmap,
  564. WCD934X_ANA_MBHC_MECH, 0x80, 0x00);
  565. /* Turn off 100k pull down on HPHL */
  566. regmap_update_bits(wcd9xxx->regmap,
  567. WCD934X_ANA_MBHC_MECH, 0x01, 0x00);
  568. /* First get impedance on Left */
  569. d1 = d1_a[1];
  570. zdet_param_ptr = &zdet_param[1];
  571. tavil_mbhc_zdet_ramp(component, zdet_param_ptr, &z1L, NULL, d1);
  572. if (!TAVIL_MBHC_IS_SECOND_RAMP_REQUIRED(z1L))
  573. goto left_ch_impedance;
  574. /* Second ramp for left ch */
  575. if (z1L < TAVIL_ZDET_VAL_32) {
  576. zdet_param_ptr = &zdet_param[0];
  577. d1 = d1_a[0];
  578. } else if ((z1L > TAVIL_ZDET_VAL_400) && (z1L <= TAVIL_ZDET_VAL_1200)) {
  579. zdet_param_ptr = &zdet_param[2];
  580. d1 = d1_a[2];
  581. } else if (z1L > TAVIL_ZDET_VAL_1200) {
  582. zdet_param_ptr = &zdet_param[3];
  583. d1 = d1_a[3];
  584. }
  585. tavil_mbhc_zdet_ramp(component, zdet_param_ptr, &z1L, NULL, d1);
  586. left_ch_impedance:
  587. if ((z1L == TAVIL_ZDET_FLOATING_IMPEDANCE) ||
  588. (z1L > TAVIL_ZDET_VAL_100K)) {
  589. *zl = TAVIL_ZDET_FLOATING_IMPEDANCE;
  590. zdet_param_ptr = &zdet_param[1];
  591. d1 = d1_a[1];
  592. } else {
  593. *zl = z1L/1000;
  594. tavil_wcd_mbhc_qfuse_cal(component, zl, 0);
  595. }
  596. dev_dbg(component->dev, "%s: impedance on HPH_L = %d(ohms)\n",
  597. __func__, *zl);
  598. /* Start of right impedance ramp and calculation */
  599. tavil_mbhc_zdet_ramp(component, zdet_param_ptr, NULL, &z1R, d1);
  600. if (TAVIL_MBHC_IS_SECOND_RAMP_REQUIRED(z1R)) {
  601. if (((z1R > TAVIL_ZDET_VAL_1200) &&
  602. (zdet_param_ptr->noff == 0x6)) ||
  603. ((*zl) != TAVIL_ZDET_FLOATING_IMPEDANCE))
  604. goto right_ch_impedance;
  605. /* Second ramp for right ch */
  606. if (z1R < TAVIL_ZDET_VAL_32) {
  607. zdet_param_ptr = &zdet_param[0];
  608. d1 = d1_a[0];
  609. } else if ((z1R > TAVIL_ZDET_VAL_400) &&
  610. (z1R <= TAVIL_ZDET_VAL_1200)) {
  611. zdet_param_ptr = &zdet_param[2];
  612. d1 = d1_a[2];
  613. } else if (z1R > TAVIL_ZDET_VAL_1200) {
  614. zdet_param_ptr = &zdet_param[3];
  615. d1 = d1_a[3];
  616. }
  617. tavil_mbhc_zdet_ramp(component, zdet_param_ptr, NULL, &z1R, d1);
  618. }
  619. right_ch_impedance:
  620. if ((z1R == TAVIL_ZDET_FLOATING_IMPEDANCE) ||
  621. (z1R > TAVIL_ZDET_VAL_100K)) {
  622. *zr = TAVIL_ZDET_FLOATING_IMPEDANCE;
  623. } else {
  624. *zr = z1R/1000;
  625. tavil_wcd_mbhc_qfuse_cal(component, zr, 1);
  626. }
  627. dev_dbg(component->dev, "%s: impedance on HPH_R = %d(ohms)\n",
  628. __func__, *zr);
  629. /* Mono/stereo detection */
  630. if ((*zl == TAVIL_ZDET_FLOATING_IMPEDANCE) &&
  631. (*zr == TAVIL_ZDET_FLOATING_IMPEDANCE)) {
  632. dev_dbg(component->dev,
  633. "%s: plug type is invalid or extension cable\n",
  634. __func__);
  635. goto zdet_complete;
  636. }
  637. if ((*zl == TAVIL_ZDET_FLOATING_IMPEDANCE) ||
  638. (*zr == TAVIL_ZDET_FLOATING_IMPEDANCE) ||
  639. ((*zl < WCD_MONO_HS_MIN_THR) && (*zr > WCD_MONO_HS_MIN_THR)) ||
  640. ((*zl > WCD_MONO_HS_MIN_THR) && (*zr < WCD_MONO_HS_MIN_THR))) {
  641. dev_dbg(component->dev,
  642. "%s: Mono plug type with one ch floating or shorted to GND\n",
  643. __func__);
  644. mbhc->hph_type = WCD_MBHC_HPH_MONO;
  645. goto zdet_complete;
  646. }
  647. snd_soc_component_update_bits(component, WCD934X_HPH_R_ATEST,
  648. 0x02, 0x02);
  649. snd_soc_component_update_bits(component, WCD934X_HPH_PA_CTL2,
  650. 0x40, 0x01);
  651. if (*zl < (TAVIL_ZDET_VAL_32/1000))
  652. tavil_mbhc_zdet_ramp(component, &zdet_param[0],
  653. &z1Ls, NULL, d1);
  654. else
  655. tavil_mbhc_zdet_ramp(component, &zdet_param[1],
  656. &z1Ls, NULL, d1);
  657. snd_soc_component_update_bits(component, WCD934X_HPH_PA_CTL2,
  658. 0x40, 0x00);
  659. snd_soc_component_update_bits(component, WCD934X_HPH_R_ATEST,
  660. 0x02, 0x00);
  661. z1Ls /= 1000;
  662. tavil_wcd_mbhc_qfuse_cal(component, &z1Ls, 0);
  663. /* Parallel of left Z and 9 ohm pull down resistor */
  664. zMono = ((*zl) * 9) / ((*zl) + 9);
  665. z_diff1 = (z1Ls > zMono) ? (z1Ls - zMono) : (zMono - z1Ls);
  666. z_diff2 = ((*zl) > z1Ls) ? ((*zl) - z1Ls) : (z1Ls - (*zl));
  667. if ((z_diff1 * (*zl + z1Ls)) > (z_diff2 * (z1Ls + zMono))) {
  668. dev_dbg(component->dev, "%s: stereo plug type detected\n",
  669. __func__);
  670. mbhc->hph_type = WCD_MBHC_HPH_STEREO;
  671. } else {
  672. dev_dbg(component->dev, "%s: MONO plug type detected\n",
  673. __func__);
  674. mbhc->hph_type = WCD_MBHC_HPH_MONO;
  675. }
  676. zdet_complete:
  677. snd_soc_component_write(component, WCD934X_ANA_MBHC_BTN5, reg0);
  678. snd_soc_component_write(component, WCD934X_ANA_MBHC_BTN6, reg1);
  679. snd_soc_component_write(component, WCD934X_ANA_MBHC_BTN7, reg2);
  680. /* Turn on 100k pull down on HPHL */
  681. regmap_update_bits(wcd9xxx->regmap,
  682. WCD934X_ANA_MBHC_MECH, 0x01, 0x01);
  683. /* For NO-jack, re-enable L_DET_EN after Z-det measurements */
  684. if (mbhc->hphl_swh)
  685. regmap_update_bits(wcd9xxx->regmap,
  686. WCD934X_ANA_MBHC_MECH, 0x80, 0x80);
  687. snd_soc_component_write(component, WCD934X_MBHC_NEW_ZDET_ANA_CTL, reg4);
  688. snd_soc_component_write(component, WCD934X_MBHC_CTL_CLK, reg3);
  689. if (is_fsm_disable)
  690. regmap_update_bits(wcd9xxx->regmap,
  691. WCD934X_ANA_MBHC_ELECT, 0x80, 0x80);
  692. }
  693. static void tavil_mbhc_gnd_det_ctrl(struct snd_soc_component *component,
  694. bool enable)
  695. {
  696. if (enable) {
  697. snd_soc_component_update_bits(component, WCD934X_ANA_MBHC_MECH,
  698. 0x02, 0x02);
  699. snd_soc_component_update_bits(component, WCD934X_ANA_MBHC_MECH,
  700. 0x40, 0x40);
  701. } else {
  702. snd_soc_component_update_bits(component, WCD934X_ANA_MBHC_MECH,
  703. 0x40, 0x00);
  704. snd_soc_component_update_bits(component, WCD934X_ANA_MBHC_MECH,
  705. 0x02, 0x00);
  706. }
  707. }
  708. static void tavil_mbhc_hph_pull_down_ctrl(struct snd_soc_component *component,
  709. bool enable)
  710. {
  711. if (enable) {
  712. snd_soc_component_update_bits(component, WCD934X_HPH_PA_CTL2,
  713. 0x40, 0x40);
  714. snd_soc_component_update_bits(component, WCD934X_HPH_PA_CTL2,
  715. 0x10, 0x10);
  716. } else {
  717. snd_soc_component_update_bits(component, WCD934X_HPH_PA_CTL2,
  718. 0x40, 0x00);
  719. snd_soc_component_update_bits(component, WCD934X_HPH_PA_CTL2,
  720. 0x10, 0x00);
  721. }
  722. }
  723. static void tavil_mbhc_moisture_config(struct wcd_mbhc *mbhc)
  724. {
  725. struct snd_soc_component *component = mbhc->component;
  726. if ((mbhc->moist_rref == R_OFF) ||
  727. (mbhc->mbhc_cfg->enable_usbc_analog)) {
  728. snd_soc_component_update_bits(component, WCD934X_MBHC_NEW_CTL_2,
  729. 0x0C, R_OFF << 2);
  730. return;
  731. }
  732. /* Donot enable moisture detection if jack type is NC */
  733. if (!mbhc->hphl_swh) {
  734. dev_dbg(component->dev, "%s: disable moisture detection for NC\n",
  735. __func__);
  736. snd_soc_component_update_bits(component, WCD934X_MBHC_NEW_CTL_2,
  737. 0x0C, R_OFF << 2);
  738. return;
  739. }
  740. snd_soc_component_update_bits(component, WCD934X_MBHC_NEW_CTL_2,
  741. 0x0C, mbhc->moist_rref << 2);
  742. }
  743. static bool tavil_hph_register_recovery(struct wcd_mbhc *mbhc)
  744. {
  745. struct snd_soc_component *component = mbhc->component;
  746. struct wcd934x_mbhc *wcd934x_mbhc = tavil_soc_get_mbhc(component);
  747. if (!wcd934x_mbhc)
  748. return false;
  749. wcd934x_mbhc->is_hph_recover = false;
  750. snd_soc_dapm_force_enable_pin(snd_soc_component_get_dapm(component),
  751. "RESET_HPH_REGISTERS");
  752. snd_soc_dapm_sync(snd_soc_component_get_dapm(component));
  753. snd_soc_dapm_disable_pin(snd_soc_component_get_dapm(component),
  754. "RESET_HPH_REGISTERS");
  755. snd_soc_dapm_sync(snd_soc_component_get_dapm(component));
  756. return wcd934x_mbhc->is_hph_recover;
  757. }
  758. static void tavil_update_anc_state(struct snd_soc_component *component,
  759. bool enable, int anc_num)
  760. {
  761. if (enable)
  762. snd_soc_component_update_bits(component,
  763. WCD934X_CDC_RX1_RX_PATH_CFG0 + (20 * anc_num),
  764. 0x10, 0x10);
  765. else
  766. snd_soc_component_update_bits(component,
  767. WCD934X_CDC_RX1_RX_PATH_CFG0 + (20 * anc_num),
  768. 0x10, 0x00);
  769. }
  770. static bool tavil_is_anc_on(struct wcd_mbhc *mbhc)
  771. {
  772. bool anc_on = false;
  773. u16 ancl, ancr;
  774. ancl =
  775. (snd_soc_component_read32(
  776. mbhc->component, WCD934X_CDC_RX1_RX_PATH_CFG0)) & 0x10;
  777. ancr =
  778. (snd_soc_component_read32(
  779. mbhc->component, WCD934X_CDC_RX2_RX_PATH_CFG0)) & 0x10;
  780. anc_on = !!(ancl | ancr);
  781. return anc_on;
  782. }
  783. static const struct wcd_mbhc_cb mbhc_cb = {
  784. .request_irq = tavil_mbhc_request_irq,
  785. .irq_control = tavil_mbhc_irq_control,
  786. .free_irq = tavil_mbhc_free_irq,
  787. .clk_setup = tavil_mbhc_clk_setup,
  788. .map_btn_code_to_num = tavil_mbhc_btn_to_num,
  789. .enable_mb_source = tavil_enable_ext_mb_source,
  790. .mbhc_bias = tavil_mbhc_mbhc_bias_control,
  791. .set_btn_thr = tavil_mbhc_program_btn_thr,
  792. .lock_sleep = tavil_mbhc_lock_sleep,
  793. .register_notifier = tavil_mbhc_register_notifier,
  794. .micbias_enable_status = tavil_mbhc_micb_en_status,
  795. .hph_pa_on_status = tavil_mbhc_hph_pa_on_status,
  796. .hph_pull_up_control = tavil_mbhc_hph_l_pull_up_control,
  797. .mbhc_micbias_control = tavil_mbhc_request_micbias,
  798. .mbhc_micb_ramp_control = tavil_mbhc_micb_ramp_control,
  799. .get_hwdep_fw_cal = tavil_get_hwdep_fw_cal,
  800. .mbhc_micb_ctrl_thr_mic = tavil_mbhc_micb_ctrl_threshold_mic,
  801. .compute_impedance = tavil_wcd_mbhc_calc_impedance,
  802. .mbhc_gnd_det_ctrl = tavil_mbhc_gnd_det_ctrl,
  803. .hph_pull_down_ctrl = tavil_mbhc_hph_pull_down_ctrl,
  804. .mbhc_moisture_config = tavil_mbhc_moisture_config,
  805. .hph_register_recovery = tavil_hph_register_recovery,
  806. .update_anc_state = tavil_update_anc_state,
  807. .is_anc_on = tavil_is_anc_on,
  808. };
  809. static struct regulator *tavil_codec_find_ondemand_regulator(
  810. struct snd_soc_component *component, const char *name)
  811. {
  812. int i;
  813. struct wcd9xxx *wcd9xxx = dev_get_drvdata(component->dev->parent);
  814. struct wcd9xxx_pdata *pdata = dev_get_platdata(component->dev->parent);
  815. for (i = 0; i < wcd9xxx->num_of_supplies; ++i) {
  816. if (pdata->regulator[i].ondemand &&
  817. wcd9xxx->supplies[i].supply &&
  818. !strcmp(wcd9xxx->supplies[i].supply, name))
  819. return wcd9xxx->supplies[i].consumer;
  820. }
  821. dev_dbg(component->dev, "Warning: regulator not found:%s\n",
  822. name);
  823. return NULL;
  824. }
  825. static int tavil_get_hph_type(struct snd_kcontrol *kcontrol,
  826. struct snd_ctl_elem_value *ucontrol)
  827. {
  828. struct snd_soc_component *component =
  829. snd_soc_kcontrol_component(kcontrol);
  830. struct wcd934x_mbhc *wcd934x_mbhc = tavil_soc_get_mbhc(component);
  831. struct wcd_mbhc *mbhc;
  832. if (!wcd934x_mbhc) {
  833. dev_err(component->dev, "%s: mbhc not initialized!\n",
  834. __func__);
  835. return -EINVAL;
  836. }
  837. mbhc = &wcd934x_mbhc->wcd_mbhc;
  838. ucontrol->value.integer.value[0] = (u32) mbhc->hph_type;
  839. dev_dbg(component->dev, "%s: hph_type = %u\n", __func__,
  840. mbhc->hph_type);
  841. return 0;
  842. }
  843. static int tavil_hph_impedance_get(struct snd_kcontrol *kcontrol,
  844. struct snd_ctl_elem_value *ucontrol)
  845. {
  846. uint32_t zl, zr;
  847. bool hphr;
  848. struct soc_multi_mixer_control *mc;
  849. struct snd_soc_component *component =
  850. snd_soc_kcontrol_component(kcontrol);
  851. struct wcd934x_mbhc *wcd934x_mbhc = tavil_soc_get_mbhc(component);
  852. if (!wcd934x_mbhc) {
  853. dev_err(component->dev, "%s: mbhc not initialized!\n",
  854. __func__);
  855. return -EINVAL;
  856. }
  857. mc = (struct soc_multi_mixer_control *)(kcontrol->private_value);
  858. hphr = mc->shift;
  859. wcd_mbhc_get_impedance(&wcd934x_mbhc->wcd_mbhc, &zl, &zr);
  860. dev_dbg(component->dev, "%s: zl=%u(ohms), zr=%u(ohms)\n", __func__,
  861. zl, zr);
  862. ucontrol->value.integer.value[0] = hphr ? zr : zl;
  863. return 0;
  864. }
  865. static const struct snd_kcontrol_new hph_type_detect_controls[] = {
  866. SOC_SINGLE_EXT("HPH Type", 0, 0, UINT_MAX, 0,
  867. tavil_get_hph_type, NULL),
  868. };
  869. static const struct snd_kcontrol_new impedance_detect_controls[] = {
  870. SOC_SINGLE_EXT("HPHL Impedance", 0, 0, UINT_MAX, 0,
  871. tavil_hph_impedance_get, NULL),
  872. SOC_SINGLE_EXT("HPHR Impedance", 0, 1, UINT_MAX, 0,
  873. tavil_hph_impedance_get, NULL),
  874. };
  875. /*
  876. * tavil_mbhc_get_impedance: get impedance of headphone left and right channels
  877. * @wcd934x_mbhc: handle to struct wcd934x_mbhc *
  878. * @zl: handle to left-ch impedance
  879. * @zr: handle to right-ch impedance
  880. * return 0 for success or error code in case of failure
  881. */
  882. int tavil_mbhc_get_impedance(struct wcd934x_mbhc *wcd934x_mbhc,
  883. uint32_t *zl, uint32_t *zr)
  884. {
  885. if (!wcd934x_mbhc) {
  886. pr_err("%s: mbhc not initialized!\n", __func__);
  887. return -EINVAL;
  888. }
  889. if (!zl || !zr) {
  890. pr_err("%s: zl or zr null!\n", __func__);
  891. return -EINVAL;
  892. }
  893. return wcd_mbhc_get_impedance(&wcd934x_mbhc->wcd_mbhc, zl, zr);
  894. }
  895. EXPORT_SYMBOL(tavil_mbhc_get_impedance);
  896. /*
  897. * tavil_mbhc_hs_detect: starts mbhc insertion/removal functionality
  898. * @component: handle to snd_soc_component *
  899. * @mbhc_cfg: handle to mbhc configuration structure
  900. * return 0 if mbhc_start is success or error code in case of failure
  901. */
  902. int tavil_mbhc_hs_detect(struct snd_soc_component *component,
  903. struct wcd_mbhc_config *mbhc_cfg)
  904. {
  905. struct wcd934x_mbhc *wcd934x_mbhc = tavil_soc_get_mbhc(component);
  906. if (!wcd934x_mbhc) {
  907. dev_err(component->dev, "%s: mbhc not initialized!\n",
  908. __func__);
  909. return -EINVAL;
  910. }
  911. return wcd_mbhc_start(&wcd934x_mbhc->wcd_mbhc, mbhc_cfg);
  912. }
  913. EXPORT_SYMBOL(tavil_mbhc_hs_detect);
  914. /*
  915. * tavil_mbhc_hs_detect_exit: stop mbhc insertion/removal functionality
  916. * @component: handle to snd_soc_component *
  917. */
  918. void tavil_mbhc_hs_detect_exit(struct snd_soc_component *component)
  919. {
  920. struct wcd934x_mbhc *wcd934x_mbhc = tavil_soc_get_mbhc(component);
  921. if (!wcd934x_mbhc) {
  922. dev_err(component->dev, "%s: mbhc not initialized!\n",
  923. __func__);
  924. return;
  925. }
  926. wcd_mbhc_stop(&wcd934x_mbhc->wcd_mbhc);
  927. }
  928. EXPORT_SYMBOL(tavil_mbhc_hs_detect_exit);
  929. /*
  930. * tavil_mbhc_post_ssr_init: initialize mbhc for tavil post subsystem restart
  931. * @mbhc: poniter to wcd934x_mbhc structure
  932. * @component: handle to snd_soc_component *
  933. *
  934. * return 0 if mbhc_init is success or error code in case of failure
  935. */
  936. int tavil_mbhc_post_ssr_init(struct wcd934x_mbhc *mbhc,
  937. struct snd_soc_component *component)
  938. {
  939. int ret;
  940. struct wcd_mbhc *wcd_mbhc;
  941. if (!mbhc || !component)
  942. return -EINVAL;
  943. wcd_mbhc = &mbhc->wcd_mbhc;
  944. if (wcd_mbhc == NULL) {
  945. pr_err("%s: wcd_mbhc is NULL\n", __func__);
  946. return -EINVAL;
  947. }
  948. tavil_mbhc_hs_detect_exit(component);
  949. wcd_mbhc_deinit(wcd_mbhc);
  950. ret = wcd_mbhc_init(wcd_mbhc, component, &mbhc_cb, &intr_ids,
  951. wcd_mbhc_registers, TAVIL_ZDET_SUPPORTED);
  952. if (ret) {
  953. dev_err(component->dev, "%s: mbhc initialization failed\n",
  954. __func__);
  955. goto done;
  956. }
  957. if (wcd_mbhc->mbhc_detection_logic == WCD_DETECTION_LEGACY) {
  958. snd_soc_component_update_bits(component, WCD934X_MBHC_NEW_CTL_1,
  959. 0x04, 0x04);
  960. snd_soc_component_update_bits(component, WCD934X_MBHC_CTL_BCS,
  961. 0x01, 0x01);
  962. }
  963. done:
  964. return ret;
  965. }
  966. EXPORT_SYMBOL(tavil_mbhc_post_ssr_init);
  967. /*
  968. * tavil_mbhc_init: initialize mbhc for tavil
  969. * @mbhc: poniter to wcd934x_mbhc struct pointer to store the configs
  970. * @component: handle to snd_soc_component *
  971. * @fw_data: handle to firmware data
  972. *
  973. * return 0 if mbhc_init is success or error code in case of failure
  974. */
  975. int tavil_mbhc_init(struct wcd934x_mbhc **mbhc,
  976. struct snd_soc_component *component,
  977. struct fw_info *fw_data)
  978. {
  979. struct regulator *supply;
  980. struct wcd934x_mbhc *wcd934x_mbhc;
  981. struct wcd_mbhc *wcd_mbhc;
  982. int ret;
  983. struct wcd9xxx_pdata *pdata;
  984. wcd934x_mbhc = devm_kzalloc(component->dev, sizeof(struct wcd934x_mbhc),
  985. GFP_KERNEL);
  986. if (!wcd934x_mbhc)
  987. return -ENOMEM;
  988. wcd934x_mbhc->wcd9xxx = dev_get_drvdata(component->dev->parent);
  989. wcd934x_mbhc->fw_data = fw_data;
  990. BLOCKING_INIT_NOTIFIER_HEAD(&wcd934x_mbhc->notifier);
  991. wcd_mbhc = &wcd934x_mbhc->wcd_mbhc;
  992. if (wcd_mbhc == NULL) {
  993. pr_err("%s: wcd_mbhc is NULL\n", __func__);
  994. ret = -EINVAL;
  995. goto err;
  996. }
  997. /* Setting default mbhc detection logic to ADC for Tavil */
  998. wcd_mbhc->mbhc_detection_logic = WCD_DETECTION_ADC;
  999. pdata = dev_get_platdata(component->dev->parent);
  1000. if (!pdata) {
  1001. dev_err(component->dev, "%s: pdata pointer is NULL\n", __func__);
  1002. ret = -EINVAL;
  1003. goto err;
  1004. }
  1005. wcd_mbhc->micb_mv = pdata->micbias.micb2_mv;
  1006. ret = wcd_mbhc_init(wcd_mbhc, component, &mbhc_cb,
  1007. &intr_ids, wcd_mbhc_registers,
  1008. TAVIL_ZDET_SUPPORTED);
  1009. if (ret) {
  1010. dev_err(component->dev, "%s: mbhc initialization failed\n",
  1011. __func__);
  1012. goto err;
  1013. }
  1014. supply = tavil_codec_find_ondemand_regulator(component,
  1015. on_demand_supply_name[WCD934X_ON_DEMAND_MICBIAS]);
  1016. if (supply) {
  1017. wcd934x_mbhc->on_demand_list[
  1018. WCD934X_ON_DEMAND_MICBIAS].supply =
  1019. supply;
  1020. wcd934x_mbhc->on_demand_list[
  1021. WCD934X_ON_DEMAND_MICBIAS].ondemand_supply_count =
  1022. 0;
  1023. }
  1024. (*mbhc) = wcd934x_mbhc;
  1025. snd_soc_add_component_controls(component, impedance_detect_controls,
  1026. ARRAY_SIZE(impedance_detect_controls));
  1027. snd_soc_add_component_controls(component, hph_type_detect_controls,
  1028. ARRAY_SIZE(hph_type_detect_controls));
  1029. if (wcd_mbhc->mbhc_detection_logic == WCD_DETECTION_LEGACY) {
  1030. snd_soc_component_update_bits(component, WCD934X_MBHC_NEW_CTL_1,
  1031. 0x04, 0x04);
  1032. snd_soc_component_update_bits(component, WCD934X_MBHC_CTL_BCS,
  1033. 0x01, 0x01);
  1034. }
  1035. return 0;
  1036. err:
  1037. devm_kfree(component->dev, wcd934x_mbhc);
  1038. return ret;
  1039. }
  1040. EXPORT_SYMBOL(tavil_mbhc_init);
  1041. /*
  1042. * tavil_mbhc_deinit: deinitialize mbhc for tavil
  1043. * @component: handle to snd_soc_component *
  1044. */
  1045. void tavil_mbhc_deinit(struct snd_soc_component *component)
  1046. {
  1047. struct wcd934x_mbhc *wcd934x_mbhc = tavil_soc_get_mbhc(component);
  1048. if (wcd934x_mbhc) {
  1049. wcd_mbhc_deinit(&wcd934x_mbhc->wcd_mbhc);
  1050. devm_kfree(component->dev, wcd934x_mbhc);
  1051. }
  1052. }
  1053. EXPORT_SYMBOL(tavil_mbhc_deinit);