btfm_codec_interface.c 26 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Copyright (c) 2023 Qualcomm Innovation Center, Inc. All rights reserved.
  4. */
  5. #include <linux/kernel.h>
  6. #include <linux/remoteproc.h>
  7. #include <linux/remoteproc/qcom_rproc.h>
  8. #include "btfm_codec.h"
  9. #include "btfm_codec_interface.h"
  10. #include "btfm_codec_pkt.h"
  11. #include "btfm_codec_btadv_interface.h"
  12. static struct snd_soc_dai_driver *btfmcodec_dai_info;
  13. uint32_t bits_per_second;
  14. uint8_t num_channels;
  15. static int btfm_codec_get_mixer_control(struct snd_kcontrol *kcontrol,
  16. struct snd_ctl_elem_value *ucontrol)
  17. {
  18. struct snd_soc_component *codec = kcontrol->private_data;
  19. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(codec);
  20. struct hwep_data *hwepinfo = btfmcodec->hwep_info;
  21. struct snd_kcontrol_new *mixer_ctrl = hwepinfo->mixer_ctrl;
  22. struct snd_ctl_elem_id id = kcontrol->id;
  23. int num_mixer_ctrl = hwepinfo->num_mixer_ctrl;
  24. int i = 0;
  25. BTFMCODEC_DBG("");
  26. for (; i < num_mixer_ctrl ; i++) {
  27. BTFMCODEC_DBG("checking mixer_ctrl:%s and current mixer:%s",
  28. id.name, mixer_ctrl[i].name);
  29. if (!strncmp(id.name, mixer_ctrl[i].name, 64)) {
  30. BTFMCODEC_DBG("Matched");
  31. mixer_ctrl[i].get(kcontrol, ucontrol);
  32. break;
  33. }
  34. }
  35. if (num_mixer_ctrl == i)
  36. return 0;
  37. return 1;
  38. }
  39. static int btfmcodec_put_mixer_control(struct snd_kcontrol *kcontrol,
  40. struct snd_ctl_elem_value *ucontrol)
  41. {
  42. struct snd_soc_component *codec = kcontrol->private_data;
  43. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(codec);
  44. struct hwep_data *hwepinfo = btfmcodec->hwep_info;
  45. struct snd_kcontrol_new *mixer_ctrl = hwepinfo->mixer_ctrl;
  46. struct snd_ctl_elem_id id = kcontrol->id;
  47. int num_mixer_ctrl = hwepinfo->num_mixer_ctrl;
  48. int i = 0;
  49. BTFMCODEC_DBG("");
  50. for (; i < num_mixer_ctrl ; i++) {
  51. BTFMCODEC_DBG("checking mixer_ctrl:%s and current mixer:%s",
  52. id.name, mixer_ctrl[i].name);
  53. if (!strncmp(id.name, mixer_ctrl[i].name, 64)) {
  54. BTFMCODEC_DBG("Matched");
  55. mixer_ctrl[i].put(kcontrol, ucontrol);
  56. break;
  57. }
  58. }
  59. if (num_mixer_ctrl == i)
  60. return 0;
  61. return 1;
  62. }
  63. static int btfmcodec_codec_probe(struct snd_soc_component *codec)
  64. {
  65. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(codec);
  66. struct btfmcodec_state_machine *state = &btfmcodec->states;
  67. struct hwep_data *hwep_info = btfmcodec->hwep_info;
  68. int num_mixer_ctrl = hwep_info->num_mixer_ctrl;
  69. BTFMCODEC_DBG("");
  70. // ToDo: check Whether probe has to allowed when state if different
  71. if (btfmcodec_get_current_transport(state)!= IDLE) {
  72. BTFMCODEC_WARN("Received probe when state is :%s",
  73. coverttostring(btfmcodec_get_current_transport(state)));
  74. } else if (hwep_info->drv && hwep_info->drv->hwep_probe) {
  75. hwep_info->drv->hwep_probe(codec);
  76. /* Register mixer control */
  77. if (hwep_info->mixer_ctrl && num_mixer_ctrl >= 1) {
  78. struct snd_kcontrol_new *mixer_ctrl;
  79. int i = 0;
  80. mixer_ctrl = (struct snd_kcontrol_new *)
  81. kzalloc(num_mixer_ctrl *
  82. sizeof(struct snd_kcontrol_new), GFP_KERNEL);
  83. if (!mixer_ctrl) {
  84. BTFMCODEC_ERR("failed to register mixer controls");
  85. goto end;
  86. }
  87. BTFMCODEC_INFO("Registering %d mixer controls", num_mixer_ctrl);
  88. memcpy(mixer_ctrl, hwep_info->mixer_ctrl, num_mixer_ctrl * sizeof(struct snd_kcontrol_new));
  89. for (; i< num_mixer_ctrl; i++) {
  90. BTFMCODEC_INFO("name of control:%s", mixer_ctrl[i].name);
  91. mixer_ctrl[i].get = btfm_codec_get_mixer_control;
  92. mixer_ctrl[i].put = btfmcodec_put_mixer_control;
  93. }
  94. snd_soc_add_component_controls(codec, mixer_ctrl, num_mixer_ctrl);
  95. BTFMCODEC_INFO("CODEC address while registering mixer ctrl:%p", codec);
  96. }
  97. }
  98. end:
  99. // ToDo to add mixer control.
  100. return 0;
  101. }
  102. static void btfmcodec_codec_remove(struct snd_soc_component *codec)
  103. {
  104. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(codec);
  105. struct btfmcodec_state_machine *state = &btfmcodec->states;
  106. struct hwep_data *hwep_info = btfmcodec->hwep_info;
  107. BTFMCODEC_DBG("");
  108. // ToDo: check whether remove has to allowed when state if different
  109. if (btfmcodec_get_current_transport(state)!= IDLE) {
  110. BTFMCODEC_WARN("Received probe when state is :%s",
  111. coverttostring(btfmcodec_get_current_transport(state)));
  112. } else if (hwep_info->drv && hwep_info->drv->hwep_remove) {
  113. hwep_info->drv->hwep_remove(codec);
  114. }
  115. }
  116. static int btfmcodec_codec_write(struct snd_soc_component *codec,
  117. unsigned int reg, unsigned int value)
  118. {
  119. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(codec);
  120. struct btfmcodec_state_machine *state = &btfmcodec->states;
  121. struct hwep_data *hwep_info = btfmcodec->hwep_info;
  122. BTFMCODEC_DBG("");
  123. // ToDo: check whether write has to allowed when state if different
  124. if (btfmcodec_get_current_transport(state)!= IDLE) {
  125. BTFMCODEC_WARN("Received probe when state is :%s",
  126. coverttostring(btfmcodec_get_current_transport(state)));
  127. } else if (hwep_info->drv && hwep_info->drv->hwep_remove) {
  128. return hwep_info->drv->hwep_write(codec, reg, value);
  129. }
  130. return 0;
  131. }
  132. static unsigned int btfmcodec_codec_read(struct snd_soc_component *codec,
  133. unsigned int reg)
  134. {
  135. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(codec);
  136. struct btfmcodec_state_machine *state = &btfmcodec->states;
  137. struct hwep_data *hwep_info = btfmcodec->hwep_info;
  138. BTFMCODEC_DBG("");
  139. // ToDo: check whether read has to allowed when state if different
  140. if (btfmcodec_get_current_transport(state)!= IDLE) {
  141. BTFMCODEC_WARN("Received probe when state is :%s",
  142. coverttostring(btfmcodec_get_current_transport(state)));
  143. } else if (hwep_info->drv && hwep_info->drv->hwep_read) {
  144. return hwep_info->drv->hwep_read(codec, reg);
  145. }
  146. return 0;
  147. }
  148. static const struct snd_soc_component_driver btfmcodec_codec_component = {
  149. .probe = btfmcodec_codec_probe,
  150. .remove = btfmcodec_codec_remove,
  151. .read = btfmcodec_codec_read,
  152. .write = btfmcodec_codec_write,
  153. };
  154. static inline void * btfmcodec_get_dai_drvdata(struct hwep_data *hwep_info)
  155. {
  156. if (!hwep_info || !hwep_info->dai_drv) return NULL;
  157. return hwep_info->dai_drv;
  158. }
  159. int btfmcodec_hwep_startup(struct btfmcodec_data *btfmcodec)
  160. {
  161. struct hwep_data *hwep_info = btfmcodec->hwep_info;
  162. struct hwep_dai_driver *dai_drv = (struct hwep_dai_driver *)
  163. btfmcodec_get_dai_drvdata(hwep_info);
  164. if (dai_drv && dai_drv->dai_ops && dai_drv->dai_ops->hwep_startup) {
  165. return dai_drv->dai_ops->hwep_startup((void *)btfmcodec->hwep_info);
  166. } else {
  167. return -1;
  168. }
  169. }
  170. static int btfmcodec_dai_startup(struct snd_pcm_substream *substream,
  171. struct snd_soc_dai *dai)
  172. {
  173. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(dai->component);
  174. struct btfmcodec_state_machine *state = &btfmcodec->states;
  175. BTFMCODEC_DBG("substream = %s stream = %d dai->name = %s",
  176. substream->name, substream->stream, dai->name);
  177. if (btfmcodec_get_current_transport(state) != IDLE &&
  178. btfmcodec_get_current_transport(state) != BT_Connected) {
  179. BTFMCODEC_DBG("Not allowing as state is:%s",
  180. coverttostring(btfmcodec_get_current_transport(state)));
  181. } else {
  182. return btfmcodec_hwep_startup(btfmcodec);
  183. }
  184. return 0;
  185. }
  186. int btfmcodec_hwep_shutdown(struct btfmcodec_data *btfmcodec, int id,
  187. bool disable_master)
  188. {
  189. struct hwep_data *hwep_info = btfmcodec->hwep_info;
  190. struct btfmcodec_char_device *btfmcodec_dev = btfmcodec->btfmcodec_dev;
  191. struct hwep_dai_driver *dai_drv = (struct hwep_dai_driver *)
  192. btfmcodec_get_dai_drvdata(hwep_info);
  193. struct btfmcodec_state_machine *state = &btfmcodec->states;
  194. struct btm_master_shutdown_req shutdown_req;
  195. wait_queue_head_t *rsp_wait_q =
  196. &btfmcodec_dev->rsp_wait_q[BTM_PKT_TYPE_MASTER_SHUTDOWN_RSP];
  197. uint8_t *status = &btfmcodec_dev->status[BTM_PKT_TYPE_MASTER_SHUTDOWN_RSP];
  198. int ret = 0;
  199. /* for master configurations failure cases, we don't need to send
  200. * shutdown request
  201. */
  202. if (btfmcodec_get_current_transport(state) == BT_Connected && disable_master) {
  203. BTFMCODEC_DBG("sending master shutdown request..");
  204. shutdown_req.opcode = BTM_BTFMCODEC_MASTER_SHUTDOWN_REQ;
  205. shutdown_req.len = BTM_MASTER_SHUTDOWN_REQ_LEN;
  206. shutdown_req.stream_id = id;
  207. /* See if we need to protect below with lock */
  208. *status = BTM_WAITING_RSP;
  209. btfmcodec_dev_enqueue_pkt(btfmcodec_dev, &shutdown_req, (shutdown_req.len +
  210. BTM_HEADER_LEN));
  211. ret = wait_event_interruptible_timeout(*rsp_wait_q,
  212. (*status) != BTM_WAITING_RSP,
  213. msecs_to_jiffies(BTM_MASTER_CONFIG_RSP_TIMEOUT));
  214. if (ret == 0) {
  215. BTFMCODEC_ERR("failed to recevie response from BTADV audio Manager");
  216. } else {
  217. if (*status == BTM_RSP_RECV)
  218. ret = 0;
  219. else if (*status == BTM_FAIL_RESP_RECV ||
  220. *status == BTM_RSP_NOT_RECV_CLIENT_KILLED)
  221. ret = -1;
  222. }
  223. } else {
  224. if (!disable_master)
  225. BTFMCODEC_WARN("Not sending master shutdown request as graph might have closed");
  226. else
  227. BTFMCODEC_WARN("Not sending master shutdown request as state is:%s",
  228. coverttostring(btfmcodec_get_current_transport(state)));
  229. }
  230. if (dai_drv && dai_drv->dai_ops && dai_drv->dai_ops->hwep_shutdown) {
  231. dai_drv->dai_ops->hwep_shutdown((void *)btfmcodec->hwep_info, id);
  232. }
  233. return ret;
  234. }
  235. void btfmcodec_wq_hwep_shutdown(struct work_struct *work)
  236. {
  237. struct btfmcodec_char_device *btfmcodec_dev = container_of(work,
  238. struct btfmcodec_char_device,
  239. wq_hwep_shutdown);
  240. struct btfmcodec_data *btfmcodec = (struct btfmcodec_data *)btfmcodec_dev->btfmcodec;
  241. struct list_head *head = &btfmcodec->config_head;
  242. struct hwep_configurations *hwep_configs = NULL;
  243. int ret = -1;
  244. int idx = BTM_PKT_TYPE_HWEP_SHUTDOWN;
  245. BTFMCODEC_INFO(" starting shutdown");
  246. /* Just check if first Rx has to be closed first or
  247. * any order should be ok.
  248. */
  249. list_for_each_entry(hwep_configs, head, dai_list) {
  250. BTFMCODEC_INFO("shuting down dai id:%d", hwep_configs->stream_id);
  251. ret = btfmcodec_hwep_shutdown(btfmcodec, hwep_configs->stream_id, true);
  252. if (ret < 0) {
  253. BTFMCODEC_ERR("failed to shutdown master with id %d", hwep_configs->stream_id);
  254. break;
  255. }
  256. }
  257. if (ret < 0)
  258. btfmcodec_dev->status[idx] = BTM_FAIL_RESP_RECV;
  259. else
  260. btfmcodec_dev->status[idx] = BTM_RSP_RECV;
  261. wake_up_interruptible(&btfmcodec_dev->rsp_wait_q[idx]);
  262. }
  263. static int btfmcodec_delete_configs(struct btfmcodec_data *btfmcodec, uint8_t id)
  264. {
  265. struct list_head *head = &btfmcodec->config_head;
  266. struct hwep_configurations *hwep_configs;
  267. int ret = -1;
  268. list_for_each_entry(hwep_configs, head, dai_list) {
  269. if (hwep_configs->stream_id == id) {
  270. BTFMCODEC_INFO("deleting configs with id %d", id);
  271. list_del(&hwep_configs->dai_list);
  272. ret = 1;
  273. break;
  274. }
  275. }
  276. return ret;
  277. }
  278. static void btfmcodec_dai_shutdown(struct snd_pcm_substream *substream,
  279. struct snd_soc_dai *dai)
  280. {
  281. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(dai->component);
  282. struct btfmcodec_state_machine *state = &btfmcodec->states;
  283. BTFMCODEC_DBG("dai->name: %s, dai->id: %d, dai->rate: %d", dai->name,
  284. dai->id, dai->rate);
  285. if (btfmcodec_get_current_transport(state) != IDLE &&
  286. btfmcodec_get_current_transport(state) != BT_Connected) {
  287. BTFMCODEC_WARN("not allowing shutdown as state is:%s",
  288. coverttostring(btfmcodec_get_current_transport(state)));
  289. /* Delete stored configs */
  290. btfmcodec_delete_configs(btfmcodec, dai->id);
  291. } else {
  292. /* first master shutdown has to done */
  293. btfmcodec_hwep_shutdown(btfmcodec, dai->id, false);
  294. btfmcodec_delete_configs(btfmcodec, dai->id);
  295. if (!btfmcodec_is_valid_cache_avb(btfmcodec))
  296. btfmcodec_set_current_state(state, IDLE);
  297. else {
  298. BTFMCODEC_WARN("valid stream id is available not updating state\n");
  299. btfmcodec_set_current_state(state, BT_Connected);
  300. }
  301. }
  302. }
  303. int btfmcodec_hwep_hw_params (struct btfmcodec_data *btfmcodec, uint32_t bps,
  304. uint32_t direction, uint8_t num_channels)
  305. {
  306. struct hwep_data *hwep_info = btfmcodec->hwep_info;
  307. struct hwep_dai_driver *dai_drv = (struct hwep_dai_driver *)
  308. btfmcodec_get_dai_drvdata(hwep_info);
  309. if (dai_drv && dai_drv->dai_ops && dai_drv->dai_ops->hwep_hw_params) {
  310. return dai_drv->dai_ops->hwep_hw_params((void *)btfmcodec->hwep_info,
  311. bps, direction,
  312. num_channels);
  313. } else {
  314. return -1;
  315. }
  316. }
  317. static int btfmcodec_dai_hw_params(struct snd_pcm_substream *substream,
  318. struct snd_pcm_hw_params *params,
  319. struct snd_soc_dai *dai)
  320. {
  321. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(dai->component);
  322. struct btfmcodec_state_machine *state = &btfmcodec->states;
  323. uint32_t direction = substream->stream;
  324. BTFMCODEC_DBG("dai->name = %s DAI-ID %x rate %d bps %d num_ch %d",
  325. dai->name, dai->id, params_rate(params), params_width(params),
  326. params_channels(params));
  327. bits_per_second = params_width(params);
  328. num_channels = params_channels(params);
  329. if (btfmcodec_get_current_transport(state) != IDLE &&
  330. btfmcodec_get_current_transport(state) != BT_Connected) {
  331. BTFMCODEC_WARN("caching bps and num_channels as state is :%s",
  332. coverttostring(btfmcodec_get_current_transport(state)));
  333. } else {
  334. return btfmcodec_hwep_hw_params(btfmcodec, bits_per_second,
  335. direction, num_channels);
  336. }
  337. return 0;
  338. }
  339. bool btfmcodec_is_valid_cache_avb(struct btfmcodec_data *btfmcodec)
  340. {
  341. struct list_head *head = &btfmcodec->config_head;
  342. struct hwep_configurations *hwep_configs;
  343. bool cache_avb = false;
  344. list_for_each_entry(hwep_configs, head, dai_list) {
  345. cache_avb = true;
  346. break;
  347. }
  348. return cache_avb;
  349. }
  350. static int btfmcodec_check_and_cache_configs(struct btfmcodec_data *btfmcodec,
  351. uint32_t sampling_rate, uint32_t direction,
  352. int id, uint8_t codectype)
  353. {
  354. struct list_head *head = &btfmcodec->config_head;
  355. struct hwep_configurations *hwep_configs;
  356. list_for_each_entry(hwep_configs, head, dai_list) {
  357. if (hwep_configs->stream_id == id) {
  358. BTFMCODEC_WARN("previous entry for %d is already available",
  359. id);
  360. list_del(&hwep_configs->dai_list);
  361. }
  362. }
  363. hwep_configs = kzalloc(sizeof(struct hwep_configurations),
  364. GFP_KERNEL);
  365. if (!hwep_configs) {
  366. BTFMCODEC_ERR("failed to allocate memory");
  367. return -ENOMEM;
  368. }
  369. hwep_configs->stream_id = id; /* Stream identifier */
  370. hwep_configs->sample_rate = sampling_rate;
  371. hwep_configs->bit_width = bits_per_second;
  372. hwep_configs->codectype = codectype;
  373. hwep_configs->direction = direction;
  374. hwep_configs->num_channels = num_channels;
  375. list_add(&hwep_configs->dai_list, head);
  376. BTFMCODEC_INFO("added dai id:%d to list with sampling_rate :%u, direction:%u", id, sampling_rate, direction);
  377. return 1;
  378. }
  379. static int btfmcodec_configure_master(struct btfmcodec_data *btfmcodec, uint8_t id)
  380. {
  381. struct btfmcodec_char_device *btfmcodec_dev = btfmcodec->btfmcodec_dev;
  382. struct hwep_data *hwep_info = btfmcodec->hwep_info;
  383. struct master_hwep_configurations hwep_configs;
  384. struct btm_master_config_req config_reg;
  385. struct hwep_dai_driver *dai_drv = (struct hwep_dai_driver *)
  386. btfmcodec_get_dai_drvdata(hwep_info);
  387. wait_queue_head_t *rsp_wait_q =
  388. &btfmcodec_dev->rsp_wait_q[BTM_PKT_TYPE_MASTER_CONFIG_RSP];
  389. uint8_t *status = &btfmcodec_dev->status[BTM_PKT_TYPE_MASTER_CONFIG_RSP];
  390. int ret = 0;
  391. if (dai_drv && dai_drv->dai_ops && dai_drv->dai_ops->hwep_get_configs) {
  392. dai_drv->dai_ops->hwep_get_configs((void *)btfmcodec->hwep_info,
  393. &hwep_configs, id);
  394. } else {
  395. BTFMCODEC_ERR("No hwep_get_configs is set by hw ep driver");
  396. return -1;
  397. }
  398. BTFMCODEC_INFO("framing packet for %d", id);
  399. config_reg.opcode = BTM_BTFMCODEC_MASTER_CONFIG_REQ;
  400. config_reg.len = BTM_MASTER_CONFIG_REQ_LEN;
  401. config_reg.stream_id = hwep_configs.stream_id;
  402. config_reg.device_id = hwep_configs.device_id;
  403. config_reg.sample_rate = hwep_configs.sample_rate;
  404. config_reg.bit_width = hwep_configs.bit_width;
  405. config_reg.num_channels = hwep_configs.num_channels;
  406. config_reg.channel_num = hwep_configs.chan_num;
  407. config_reg.codec_id = hwep_configs.codectype;
  408. BTFMCODEC_DBG("================================================\n");
  409. BTFMCODEC_DBG("config_reg.len :%d", config_reg.len);
  410. BTFMCODEC_DBG("config_reg.stream_id :%d", config_reg.stream_id);
  411. BTFMCODEC_DBG("config_reg.device_id :%d", config_reg.device_id);
  412. BTFMCODEC_DBG("config_reg.sample_rate :%d", config_reg.sample_rate);
  413. BTFMCODEC_DBG("config_reg.bit_width :%d", config_reg.bit_width);
  414. BTFMCODEC_DBG("config_reg.num_channels :%d", config_reg.num_channels);
  415. BTFMCODEC_DBG("config_reg.channel_num :%d", config_reg.channel_num);
  416. BTFMCODEC_DBG("config_reg.codec_id :%d", config_reg.codec_id);
  417. BTFMCODEC_DBG("================================================\n");
  418. /* See if we need to protect below with lock */
  419. *status = BTM_WAITING_RSP;
  420. btfmcodec_dev_enqueue_pkt(btfmcodec_dev, &config_reg, (config_reg.len +
  421. BTM_HEADER_LEN));
  422. ret = wait_event_interruptible_timeout(*rsp_wait_q,
  423. (*status) != BTM_WAITING_RSP,
  424. msecs_to_jiffies(BTM_MASTER_CONFIG_RSP_TIMEOUT));
  425. if (ret == 0) {
  426. BTFMCODEC_ERR("failed to recevie response from BTADV audio Manager");
  427. ret = -ETIMEDOUT;
  428. } else {
  429. if (*status == BTM_RSP_RECV)
  430. return 0;
  431. else if (*status == BTM_FAIL_RESP_RECV ||
  432. *status == BTM_RSP_NOT_RECV_CLIENT_KILLED)
  433. return -1;
  434. }
  435. return ret;
  436. }
  437. int btfmcodec_hwep_prepare(struct btfmcodec_data *btfmcodec, uint32_t sampling_rate,
  438. uint32_t direction, int id)
  439. {
  440. struct hwep_data *hwep_info = btfmcodec->hwep_info;
  441. struct hwep_dai_driver *dai_drv = (struct hwep_dai_driver *)
  442. btfmcodec_get_dai_drvdata(hwep_info);
  443. struct btfmcodec_state_machine *state = &btfmcodec->states;
  444. int ret;
  445. if (dai_drv && dai_drv->dai_ops && dai_drv->dai_ops->hwep_prepare) {
  446. ret = dai_drv->dai_ops->hwep_prepare((void *)hwep_info, sampling_rate,
  447. direction, id);
  448. if (ret == 0 && test_bit(BTADV_AUDIO_MASTER_CONFIG, &hwep_info->flags)) {
  449. ret = btfmcodec_configure_master(btfmcodec, (uint8_t)id);
  450. if (ret < 0) {
  451. BTFMCODEC_ERR("failed to configure master error %d", ret);
  452. /* close slave port and reset the state*/
  453. btfmcodec_set_current_state(state, IDLE);
  454. /* we don't need to do shutdown, ASOC is doing it */
  455. // btfmcodec_hwep_shutdown(btfmcodec, id);
  456. } else {
  457. btfmcodec_set_current_state(state, BT_Connected);
  458. }
  459. }
  460. } else {
  461. return -1;
  462. }
  463. return ret;
  464. }
  465. static int btfmcodec_dai_prepare(struct snd_pcm_substream *substream,
  466. struct snd_soc_dai *dai)
  467. {
  468. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(dai->component);
  469. struct btfmcodec_state_machine *state = &btfmcodec->states;
  470. struct hwep_data *hwep_info = btfmcodec->hwep_info;
  471. struct hwep_dai_driver *dai_drv = (struct hwep_dai_driver *)
  472. btfmcodec_get_dai_drvdata(hwep_info);
  473. uint8_t *codectype = dai_drv->dai_ops->hwep_codectype;
  474. uint32_t sampling_rate = dai->rate;
  475. uint32_t direction = substream->stream;
  476. int id = dai->id;
  477. int ret ;
  478. BTFMCODEC_INFO("dai->name: %s, dai->id: %d, dai->rate: %d direction: %d",
  479. dai->name, id, sampling_rate, direction);
  480. ret = btfmcodec_check_and_cache_configs(btfmcodec, sampling_rate,
  481. direction, id, *codectype);
  482. if (btfmcodec_get_current_transport(state) != IDLE &&
  483. btfmcodec_get_current_transport(state) != BT_Connected) {
  484. BTFMCODEC_WARN("cached required info as state is:%s",
  485. coverttostring(btfmcodec_get_current_transport(state)));
  486. } else {
  487. ret = btfmcodec_hwep_prepare(btfmcodec, sampling_rate, direction, id);
  488. /* if (ret >= 0) {
  489. btfmcodec_check_and_cache_configs(btfmcodec, sampling_rate, direction,
  490. id, *codectype);
  491. }
  492. */ }
  493. return ret;
  494. }
  495. int btfmcodec_hwep_set_channel_map(void *hwep_info, unsigned int tx_num,
  496. unsigned int *tx_slot, unsigned int rx_num,
  497. unsigned int *rx_slot)
  498. {
  499. struct hwep_dai_driver *dai_drv = (struct hwep_dai_driver *)
  500. btfmcodec_get_dai_drvdata(hwep_info);
  501. if (dai_drv && dai_drv->dai_ops && dai_drv->dai_ops->hwep_set_channel_map) {
  502. return dai_drv->dai_ops->hwep_set_channel_map(hwep_info, tx_num,
  503. tx_slot, rx_num,
  504. rx_slot);
  505. } else {
  506. return -1;
  507. }
  508. }
  509. static int btfmcodec_dai_set_channel_map(struct snd_soc_dai *dai,
  510. unsigned int tx_num, unsigned int *tx_slot,
  511. unsigned int rx_num, unsigned int *rx_slot)
  512. {
  513. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(dai->component);
  514. struct btfmcodec_state_machine states = btfmcodec->states;
  515. BTFMCODEC_DBG("");
  516. // ToDo: check whether hw_params has to allowed when state if different
  517. if (states.current_state != IDLE) {
  518. BTFMCODEC_WARN("Received probe when state is :%s", coverttostring(states.current_state));
  519. } else {
  520. return btfmcodec_hwep_set_channel_map((void *)btfmcodec->hwep_info, tx_num,
  521. tx_slot, rx_num, rx_slot);
  522. }
  523. return 0;
  524. }
  525. int btfmcodec_hwep_get_channel_map(void *hwep_info, unsigned int *tx_num,
  526. unsigned int *tx_slot, unsigned int *rx_num,
  527. unsigned int *rx_slot, int id)
  528. {
  529. struct hwep_dai_driver *dai_drv = (struct hwep_dai_driver *)
  530. btfmcodec_get_dai_drvdata(hwep_info);
  531. if (dai_drv && dai_drv->dai_ops && dai_drv->dai_ops->hwep_get_channel_map) {
  532. return dai_drv->dai_ops->hwep_get_channel_map(hwep_info, tx_num,
  533. tx_slot, rx_num,
  534. rx_slot, id);
  535. } else {
  536. return -1;
  537. }
  538. }
  539. static int btfmcodec_dai_get_channel_map(struct snd_soc_dai *dai,
  540. unsigned int *tx_num, unsigned int *tx_slot,
  541. unsigned int *rx_num, unsigned int *rx_slot)
  542. {
  543. struct btfmcodec_data *btfmcodec = snd_soc_component_get_drvdata(dai->component);
  544. // struct btfmcodec_state_machine states = btfmcodec->states;
  545. BTFMCODEC_DBG("");
  546. // ToDo: get_channel_map is not needed for new driver
  547. /* if (states.current_state != IDLE) {
  548. BTFMCODEC_WARN("Received probe when state is :%s", coverttostring(states.current_state));
  549. } else {
  550. */ return btfmcodec_hwep_get_channel_map((void *)btfmcodec->hwep_info,
  551. tx_num, tx_slot, rx_num,
  552. rx_slot, dai->id);
  553. // }
  554. return 0;
  555. }
  556. void btfmcodec_wq_hwep_configure(struct work_struct *work)
  557. {
  558. struct btfmcodec_char_device *btfmcodec_dev = container_of(work,
  559. struct btfmcodec_char_device,
  560. wq_hwep_configure);
  561. struct btfmcodec_data *btfmcodec = (struct btfmcodec_data *)btfmcodec_dev->btfmcodec;
  562. struct list_head *head = &btfmcodec->config_head;
  563. struct hwep_configurations *hwep_configs = NULL;
  564. int ret;
  565. int idx = BTM_PKT_TYPE_HWEP_CONFIG;
  566. uint32_t sample_rate, direction;
  567. uint8_t id, bit_width, codectype, num_channels;
  568. list_for_each_entry(hwep_configs, head, dai_list) {
  569. id = hwep_configs->stream_id;
  570. sample_rate = hwep_configs->sample_rate;
  571. bit_width = hwep_configs->bit_width;
  572. codectype = hwep_configs->codectype;
  573. direction = hwep_configs->direction;
  574. num_channels = hwep_configs->num_channels;
  575. BTFMCODEC_INFO("configuring dai id:%d with sampling rate:%d bit_width:%d", id, sample_rate, bit_width);
  576. ret = btfmcodec_hwep_startup(btfmcodec);
  577. if (ret >= 0)
  578. ret = btfmcodec_hwep_hw_params(btfmcodec, bit_width, direction, num_channels);
  579. if (ret >= 0)
  580. ret = btfmcodec_hwep_prepare(btfmcodec, sample_rate, direction, id);
  581. if (ret < 0) {
  582. BTFMCODEC_ERR("failed to configure hwep %d", hwep_configs->stream_id);
  583. break;
  584. }
  585. }
  586. if (ret < 0)
  587. btfmcodec_dev->status[idx] = BTM_FAIL_RESP_RECV;
  588. else
  589. btfmcodec_dev->status[idx] = BTM_RSP_RECV;
  590. wake_up_interruptible(&btfmcodec_dev->rsp_wait_q[idx]);
  591. }
  592. static struct snd_soc_dai_ops btfmcodec_dai_ops = {
  593. .startup = btfmcodec_dai_startup,
  594. .shutdown = btfmcodec_dai_shutdown,
  595. .hw_params = btfmcodec_dai_hw_params,
  596. .prepare = btfmcodec_dai_prepare,
  597. .set_channel_map = btfmcodec_dai_set_channel_map,
  598. .get_channel_map = btfmcodec_dai_get_channel_map,
  599. };
  600. static int btfmcodec_adsp_ssr_notify(struct notifier_block *nb,
  601. unsigned long action, void *data)
  602. {
  603. struct btfmcodec_data *btfmcodec = container_of(nb,
  604. struct btfmcodec_data, notifier.nb);
  605. struct btfmcodec_char_device *btfmcodec_dev = btfmcodec->btfmcodec_dev;
  606. struct btm_adsp_state_ind state_ind;
  607. switch (action) {
  608. case QCOM_SSR_BEFORE_SHUTDOWN: {
  609. BTFMCODEC_WARN("LPASS SSR triggered");
  610. break;
  611. } case QCOM_SSR_AFTER_SHUTDOWN: {
  612. BTFMCODEC_WARN("LPASS SSR Completed");
  613. break;
  614. } case QCOM_SSR_BEFORE_POWERUP: {
  615. BTFMCODEC_WARN("LPASS booted up after SSR");
  616. break;
  617. } case QCOM_SSR_AFTER_POWERUP: {
  618. BTFMCODEC_WARN("LPASS booted up completely");
  619. state_ind.opcode = BTM_BTFMCODEC_ADSP_STATE_IND;
  620. state_ind.len = BTM_ADSP_STATE_IND_LEN;
  621. state_ind.action = (uint32_t)action;
  622. btfmcodec_dev_enqueue_pkt(btfmcodec_dev, &state_ind,
  623. (state_ind.len +
  624. BTM_HEADER_LEN));
  625. break;
  626. } default:
  627. BTFMCODEC_WARN("unhandled action id %lu", action);
  628. break;
  629. }
  630. return 0;
  631. }
  632. int btfm_register_codec(struct hwep_data *hwep_info)
  633. {
  634. struct btfmcodec_data *btfmcodec;
  635. struct btfmcodec_char_device *btfmcodec_dev;
  636. struct device *dev;
  637. struct hwep_dai_driver *dai_drv;
  638. int i, ret;
  639. btfmcodec = btfm_get_btfmcodec();
  640. btfmcodec_dev = btfmcodec->btfmcodec_dev;
  641. dev = &btfmcodec->dev;
  642. btfmcodec->notifier.nb.notifier_call = btfmcodec_adsp_ssr_notify;
  643. btfmcodec->notifier.notifier = qcom_register_ssr_notifier("lpass",
  644. &btfmcodec->notifier.nb);
  645. if (IS_ERR(btfmcodec->notifier.notifier)) {
  646. ret = PTR_ERR(btfmcodec->notifier.notifier);
  647. BTFMCODEC_ERR("Failed to register SSR notification: %d\n", ret);
  648. return ret;
  649. }
  650. btfmcodec_dai_info = kzalloc((sizeof(struct snd_soc_dai_driver) * hwep_info->num_dai), GFP_KERNEL);
  651. if (!btfmcodec_dai_info) {
  652. BTFMCODEC_ERR("failed to allocate memory");
  653. return -ENOMEM;
  654. }
  655. for (i = 0; i < hwep_info->num_dai; i++) {
  656. dai_drv = &hwep_info->dai_drv[i];
  657. btfmcodec_dai_info[i].name = dai_drv->dai_name;
  658. btfmcodec_dai_info[i].id = dai_drv->id;
  659. btfmcodec_dai_info[i].capture = dai_drv->capture;
  660. btfmcodec_dai_info[i].playback = dai_drv->playback;
  661. btfmcodec_dai_info[i].ops = &btfmcodec_dai_ops;
  662. }
  663. BTFMCODEC_INFO("Adding %d dai support to codec", hwep_info->num_dai);
  664. BTFMCODEC_INFO("slim bus driver name:%s", dev->driver->name);
  665. ret = snd_soc_register_component(dev, &btfmcodec_codec_component,
  666. btfmcodec_dai_info, hwep_info->num_dai);
  667. BTFMCODEC_INFO("Dev node address: %p", dev);
  668. BTFMCODEC_INFO("btfmcodec address :%p", btfmcodec);
  669. BTFMCODEC_INFO("HWEPINFO address:%p", hwep_info);
  670. BTFMCODEC_INFO("btfmcodec_dev INFO address:%p", btfmcodec->btfmcodec_dev);
  671. BTFMCODEC_INFO("before wq_hwep_shutdown:%p", btfmcodec_dev->wq_hwep_shutdown);
  672. BTFMCODEC_INFO("before wq_prepare_bearer:%p", btfmcodec_dev->wq_prepare_bearer);
  673. INIT_WORK(&btfmcodec_dev->wq_hwep_shutdown, btfmcodec_wq_hwep_shutdown);
  674. INIT_WORK(&btfmcodec_dev->wq_prepare_bearer, btfmcodec_wq_prepare_bearer);
  675. INIT_WORK(&btfmcodec_dev->wq_hwep_configure, btfmcodec_wq_hwep_configure);
  676. BTFMCODEC_INFO("after wq_hwep_shutdown:%p", btfmcodec_dev->wq_hwep_shutdown);
  677. BTFMCODEC_INFO("after wq_prepare_bearer:%p", btfmcodec_dev->wq_prepare_bearer);
  678. BTFMCODEC_INFO("btfmcodec_wq_prepare_bearer:%p", btfmcodec_wq_prepare_bearer);
  679. BTFMCODEC_INFO("btfmcodec_wq_hwep_shutdown:%p", btfmcodec_wq_hwep_shutdown);
  680. return ret;
  681. }
  682. void btfm_unregister_codec(void)
  683. {
  684. struct btfmcodec_data *btfmcodec;
  685. btfmcodec = btfm_get_btfmcodec();
  686. snd_soc_unregister_component(&btfmcodec->dev);
  687. }