output_bt.c 22 KB

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  1. #include "squeezelite.h"
  2. #include <signal.h>
  3. #include <stdio.h>
  4. #include <stdlib.h>
  5. #include <unistd.h>
  6. #include <string.h>
  7. #include "freertos/FreeRTOS.h"
  8. #include "freertos/task.h"
  9. #include "freertos/timers.h"
  10. #include "nvs.h"
  11. #include "nvs_flash.h"
  12. #include "esp_system.h"
  13. #include "esp_log.h"
  14. #include "esp_bt.h"
  15. #include "bt_app_core.h"
  16. #include "esp_bt_main.h"
  17. #include "esp_bt_device.h"
  18. #include "esp_gap_bt_api.h"
  19. #include "esp_a2dp_api.h"
  20. #include "esp_avrc_api.h"
  21. #define BT_AV_TAG "BT_AV"
  22. static log_level loglevel;
  23. static bool running = true;
  24. extern struct outputstate output;
  25. extern struct buffer *outputbuf;
  26. #define LOCK mutex_lock(outputbuf->mutex)
  27. #define UNLOCK mutex_unlock(outputbuf->mutex)
  28. #define FRAME_BLOCK MAX_SILENCE_FRAMES
  29. extern u8_t *silencebuf;
  30. // buffer to hold output data so we can block on writing outside of output lock, allocated on init
  31. static u8_t *buf;
  32. static unsigned buffill;
  33. static int bytes_per_frame;
  34. static int _bt_write_frames(frames_t out_frames, bool silence, s32_t gainL, s32_t gainR,
  35. s32_t cross_gain_in, s32_t cross_gain_out, s32_t **cross_ptr);
  36. void set_volume(unsigned left, unsigned right) {}
  37. /* event for handler "bt_av_hdl_stack_up */
  38. enum {
  39. BT_APP_EVT_STACK_UP = 0,
  40. };
  41. /* A2DP global state */
  42. enum {
  43. APP_AV_STATE_IDLE,
  44. APP_AV_STATE_DISCOVERING,
  45. APP_AV_STATE_DISCOVERED,
  46. APP_AV_STATE_UNCONNECTED,
  47. APP_AV_STATE_CONNECTING,
  48. APP_AV_STATE_CONNECTED,
  49. APP_AV_STATE_DISCONNECTING,
  50. };
  51. /* sub states of APP_AV_STATE_CONNECTED */
  52. enum {
  53. APP_AV_MEDIA_STATE_IDLE,
  54. APP_AV_MEDIA_STATE_STARTING,
  55. APP_AV_MEDIA_STATE_STARTED,
  56. APP_AV_MEDIA_STATE_STOPPING,
  57. };
  58. #define BT_APP_HEART_BEAT_EVT (0xff00)
  59. /// handler for bluetooth stack enabled events
  60. static void bt_av_hdl_stack_evt(uint16_t event, void *p_param);
  61. /// callback function for A2DP source
  62. static void bt_app_a2d_cb(esp_a2d_cb_event_t event, esp_a2d_cb_param_t *param);
  63. /// callback function for A2DP source audio data stream
  64. static int32_t bt_app_a2d_data_cb(uint8_t *data, int32_t len);
  65. static void a2d_app_heart_beat(void *arg);
  66. /// A2DP application state machine
  67. static void bt_app_av_sm_hdlr(uint16_t event, void *param);
  68. /* A2DP application state machine handler for each state */
  69. static void bt_app_av_state_unconnected(uint16_t event, void *param);
  70. static void bt_app_av_state_connecting(uint16_t event, void *param);
  71. static void bt_app_av_state_connected(uint16_t event, void *param);
  72. static void bt_app_av_state_disconnecting(uint16_t event, void *param);
  73. static esp_bd_addr_t s_peer_bda = {0};
  74. static uint8_t s_peer_bdname[ESP_BT_GAP_MAX_BDNAME_LEN + 1];
  75. static int s_a2d_state = APP_AV_STATE_IDLE;
  76. static int s_media_state = APP_AV_MEDIA_STATE_IDLE;
  77. static int s_intv_cnt = 0;
  78. static int s_connecting_intv = 0;
  79. static uint32_t s_pkt_cnt = 0;
  80. static TimerHandle_t s_tmr;
  81. static char *bda2str(esp_bd_addr_t bda, char *str, size_t size)
  82. {
  83. if (bda == NULL || str == NULL || size < 18) {
  84. return NULL;
  85. }
  86. uint8_t *p = bda;
  87. sprintf(str, "%02x:%02x:%02x:%02x:%02x:%02x",
  88. p[0], p[1], p[2], p[3], p[4], p[5]);
  89. return str;
  90. }
  91. void output_init_dac(log_level level, unsigned output_buf_size, char *params, unsigned rates[], unsigned rate_delay, unsigned idle) {
  92. loglevel = level;
  93. LOG_INFO("init output BT");
  94. buf = malloc(FRAME_BLOCK * BYTES_PER_FRAME);
  95. if (!buf) {
  96. LOG_ERROR("unable to malloc buf");
  97. return;
  98. }
  99. buffill = 0;
  100. memset(&output, 0, sizeof(output));
  101. output.format = S32_LE;
  102. output.start_frames = FRAME_BLOCK * 2;
  103. output.write_cb = &_bt_write_frames;
  104. output.rate_delay = rate_delay;
  105. if (params) {
  106. if (!strcmp(params, "32")) output.format = S32_LE;
  107. if (!strcmp(params, "24")) output.format = S24_3LE;
  108. if (!strcmp(params, "16")) output.format = S16_LE;
  109. }
  110. // ensure output rate is specified to avoid test open
  111. if (!rates[0]) {
  112. rates[0] = 44100;
  113. }
  114. /*
  115. * Bluetooth audio source init Start
  116. */
  117. bt_set_log_level(level);
  118. ESP_ERROR_CHECK(esp_bt_controller_mem_release(ESP_BT_MODE_BLE));
  119. esp_bt_controller_config_t bt_cfg = BT_CONTROLLER_INIT_CONFIG_DEFAULT();
  120. if (esp_bt_controller_init(&bt_cfg) != ESP_OK) {
  121. LOG_ERROR("%s initialize controller failed\n", __func__);
  122. return;
  123. }
  124. if (esp_bt_controller_enable(ESP_BT_MODE_CLASSIC_BT) != ESP_OK) {
  125. LOG_ERROR("%s enable controller failed\n", __func__);
  126. return;
  127. }
  128. if (esp_bluedroid_init() != ESP_OK) {
  129. LOG_ERROR("%s initialize bluedroid failed\n", __func__);
  130. return;
  131. }
  132. if (esp_bluedroid_enable() != ESP_OK) {
  133. LOG_ERROR("%s enable bluedroid failed\n", __func__);
  134. return;
  135. }
  136. /* create application task */
  137. bt_app_task_start_up();
  138. /* Bluetooth device name, connection mode and profile set up */
  139. bt_app_work_dispatch(bt_av_hdl_stack_evt, BT_APP_EVT_STACK_UP, NULL, 0, NULL);
  140. #if (CONFIG_BT_SSP_ENABLED == true)
  141. /* Set default parameters for Secure Simple Pairing */
  142. esp_bt_sp_param_t param_type = ESP_BT_SP_IOCAP_MODE;
  143. esp_bt_io_cap_t iocap = ESP_BT_IO_CAP_IO;
  144. esp_bt_gap_set_security_param(param_type, &iocap, sizeof(uint8_t));
  145. #endif
  146. /*
  147. * Set default parameters for Legacy Pairing
  148. * Use variable pin, input pin code when pairing
  149. */
  150. esp_bt_pin_type_t pin_type = ESP_BT_PIN_TYPE_VARIABLE;
  151. esp_bt_pin_code_t pin_code;
  152. esp_bt_gap_set_pin(pin_type, 0, pin_code);
  153. /*
  154. * Bluetooth audio source init Start
  155. */
  156. output_init_common(level, "-", output_buf_size, rates, idle);
  157. //#if LINUX || OSX || FREEBSD || POSIX
  158. // pthread_attr_t attr;
  159. // pthread_attr_init(&attr);
  160. //#ifdef PTHREAD_STACK_MIN
  161. // pthread_attr_setstacksize(&attr, PTHREAD_STACK_MIN + OUTPUT_THREAD_STACK_SIZE);
  162. //#endif
  163. // pthread_create(&thread, &attr, output_thread, NULL);
  164. // pthread_attr_destroy(&attr);
  165. //#endif
  166. //#if WIN
  167. // thread = CreateThread(NULL, OUTPUT_THREAD_STACK_SIZE, (LPTHREAD_START_ROUTINE)&output_thread, NULL, 0, NULL);
  168. //#endif
  169. }
  170. void output_close_dac(void) {
  171. LOG_INFO("close output");
  172. LOCK;
  173. running = false;
  174. UNLOCK;
  175. free(buf);
  176. output_close_common();
  177. }
  178. static u8_t *optr;
  179. static int _bt_write_frames(frames_t out_frames, bool silence, s32_t gainL, s32_t gainR,
  180. s32_t cross_gain_in, s32_t cross_gain_out, s32_t **cross_ptr) {
  181. u8_t *obuf;
  182. if (!silence) {
  183. if (output.fade == FADE_ACTIVE && output.fade_dir == FADE_CROSS && *cross_ptr) {
  184. _apply_cross(outputbuf, out_frames, cross_gain_in, cross_gain_out, cross_ptr);
  185. }
  186. obuf = outputbuf->readp;
  187. } else {
  188. obuf = silencebuf;
  189. }
  190. _scale_and_pack_frames(buf + buffill * bytes_per_frame, (s32_t *)(void *)obuf, out_frames, gainL, gainR, output.format);
  191. buffill += out_frames;
  192. return (int)out_frames;
  193. }
  194. //static void *output_thread() {
  195. //
  196. //
  197. // while (running) {
  198. //
  199. // //nothing to do here, for now. Feeding the buffer is
  200. // usleep(500000);
  201. // continue;
  202. // }
  203. //
  204. // output.device_frames = 0;
  205. // output.updated = gettime_ms();
  206. // output.frames_played_dmp = output.frames_played;
  207. //
  208. // _output_frames(FRAME_BLOCK);
  209. //
  210. // UNLOCK;
  211. //
  212. // if (buffill) {
  213. //// Do Stuff here
  214. // usleep((buffill * 1000 * 1000) / output.current_sample_rate);
  215. // buffill = 0;
  216. // } else {
  217. // usleep((FRAME_BLOCK * 1000 * 1000) / output.current_sample_rate);
  218. // }
  219. //
  220. // }
  221. //
  222. // return 0;
  223. //}
  224. static bool get_name_from_eir(uint8_t *eir, uint8_t *bdname, uint8_t *bdname_len)
  225. {
  226. uint8_t *rmt_bdname = NULL;
  227. uint8_t rmt_bdname_len = 0;
  228. if (!eir) {
  229. return false;
  230. }
  231. rmt_bdname = esp_bt_gap_resolve_eir_data(eir, ESP_BT_EIR_TYPE_CMPL_LOCAL_NAME, &rmt_bdname_len);
  232. if (!rmt_bdname) {
  233. rmt_bdname = esp_bt_gap_resolve_eir_data(eir, ESP_BT_EIR_TYPE_SHORT_LOCAL_NAME, &rmt_bdname_len);
  234. }
  235. if (rmt_bdname) {
  236. if (rmt_bdname_len > ESP_BT_GAP_MAX_BDNAME_LEN) {
  237. rmt_bdname_len = ESP_BT_GAP_MAX_BDNAME_LEN;
  238. }
  239. if (bdname) {
  240. memcpy(bdname, rmt_bdname, rmt_bdname_len);
  241. bdname[rmt_bdname_len] = '\0';
  242. }
  243. if (bdname_len) {
  244. *bdname_len = rmt_bdname_len;
  245. }
  246. return true;
  247. }
  248. return false;
  249. }
  250. static void filter_inquiry_scan_result(esp_bt_gap_cb_param_t *param)
  251. {
  252. char bda_str[18];
  253. uint32_t cod = 0;
  254. int32_t rssi = -129; /* invalid value */
  255. uint8_t *eir = NULL;
  256. esp_bt_gap_dev_prop_t *p;
  257. LOG_INFO("Scanned device: %s", bda2str(param->disc_res.bda, bda_str, 18));
  258. for (int i = 0; i < param->disc_res.num_prop; i++) {
  259. p = param->disc_res.prop + i;
  260. switch (p->type) {
  261. case ESP_BT_GAP_DEV_PROP_COD:
  262. cod = *(uint32_t *)(p->val);
  263. LOG_INFO("--Class of Device: 0x%x", cod);
  264. break;
  265. case ESP_BT_GAP_DEV_PROP_RSSI:
  266. rssi = *(int8_t *)(p->val);
  267. LOG_INFO("--RSSI: %d", rssi);
  268. break;
  269. case ESP_BT_GAP_DEV_PROP_EIR:
  270. eir = (uint8_t *)(p->val);
  271. break;
  272. case ESP_BT_GAP_DEV_PROP_BDNAME:
  273. default:
  274. break;
  275. }
  276. }
  277. /* search for device with MAJOR service class as "rendering" in COD */
  278. if (!esp_bt_gap_is_valid_cod(cod) ||
  279. !(esp_bt_gap_get_cod_srvc(cod) & ESP_BT_COD_SRVC_RENDERING)) {
  280. return;
  281. }
  282. /* search for device named "ESP_SPEAKER" in its extended inqury response */
  283. if (eir) {
  284. get_name_from_eir(eir, s_peer_bdname, NULL);
  285. if (strcmp((char *)s_peer_bdname, CONFIG_A2DP_SINK_NAME) != 0) {
  286. return;
  287. }
  288. LOG_INFO("Found a target device, address %s, name %s", bda_str, s_peer_bdname);
  289. s_a2d_state = APP_AV_STATE_DISCOVERED;
  290. memcpy(s_peer_bda, param->disc_res.bda, ESP_BD_ADDR_LEN);
  291. LOG_INFO("Cancel device discovery ...");
  292. esp_bt_gap_cancel_discovery();
  293. }
  294. }
  295. void bt_app_gap_cb(esp_bt_gap_cb_event_t event, esp_bt_gap_cb_param_t *param)
  296. {
  297. switch (event) {
  298. case ESP_BT_GAP_DISC_RES_EVT: {
  299. filter_inquiry_scan_result(param);
  300. break;
  301. }
  302. case ESP_BT_GAP_DISC_STATE_CHANGED_EVT: {
  303. if (param->disc_st_chg.state == ESP_BT_GAP_DISCOVERY_STOPPED) {
  304. if (s_a2d_state == APP_AV_STATE_DISCOVERED) {
  305. s_a2d_state = APP_AV_STATE_CONNECTING;
  306. LOG_INFO("Device discovery stopped.");
  307. LOG_INFO("a2dp connecting to peer: %s", s_peer_bdname);
  308. esp_a2d_source_connect(s_peer_bda);
  309. } else {
  310. // not discovered, continue to discover
  311. LOG_INFO("Device discovery failed, continue to discover...");
  312. esp_bt_gap_start_discovery(ESP_BT_INQ_MODE_GENERAL_INQUIRY, 10, 0);
  313. }
  314. } else if (param->disc_st_chg.state == ESP_BT_GAP_DISCOVERY_STARTED) {
  315. LOG_INFO("Discovery started.");
  316. }
  317. break;
  318. }
  319. case ESP_BT_GAP_RMT_SRVCS_EVT:
  320. case ESP_BT_GAP_RMT_SRVC_REC_EVT:
  321. break;
  322. case ESP_BT_GAP_AUTH_CMPL_EVT: {
  323. if (param->auth_cmpl.stat == ESP_BT_STATUS_SUCCESS) {
  324. LOG_INFO("authentication success: %s", param->auth_cmpl.device_name);
  325. //esp_log_buffer_hex(param->auth_cmpl.bda, ESP_BD_ADDR_LEN);
  326. } else {
  327. LOG_ERROR("authentication failed, status:%d", param->auth_cmpl.stat);
  328. }
  329. break;
  330. }
  331. case ESP_BT_GAP_PIN_REQ_EVT: {
  332. LOG_INFO("ESP_BT_GAP_PIN_REQ_EVT min_16_digit:%d", param->pin_req.min_16_digit);
  333. if (param->pin_req.min_16_digit) {
  334. LOG_INFO("Input pin code: 0000 0000 0000 0000");
  335. esp_bt_pin_code_t pin_code = {0};
  336. esp_bt_gap_pin_reply(param->pin_req.bda, true, 16, pin_code);
  337. } else {
  338. LOG_INFO("Input pin code: 1234");
  339. esp_bt_pin_code_t pin_code;
  340. pin_code[0] = '1';
  341. pin_code[1] = '2';
  342. pin_code[2] = '3';
  343. pin_code[3] = '4';
  344. esp_bt_gap_pin_reply(param->pin_req.bda, true, 4, pin_code);
  345. }
  346. break;
  347. }
  348. #if (CONFIG_BT_SSP_ENABLED == true)
  349. case ESP_BT_GAP_CFM_REQ_EVT:
  350. LOG_INFO("ESP_BT_GAP_CFM_REQ_EVT Please compare the numeric value: %d", param->cfm_req.num_val);
  351. esp_bt_gap_ssp_confirm_reply(param->cfm_req.bda, true);
  352. break;
  353. case ESP_BT_GAP_KEY_NOTIF_EVT:
  354. LOG_INFO("ESP_BT_GAP_KEY_NOTIF_EVT passkey:%d", param->key_notif.passkey);
  355. break;
  356. case ESP_BT_GAP_KEY_REQ_EVT:
  357. LOG_INFO("ESP_BT_GAP_KEY_REQ_EVT Please enter passkey!");
  358. break;
  359. #endif
  360. default: {
  361. LOG_INFO("event: %d", event);
  362. break;
  363. }
  364. }
  365. return;
  366. }
  367. static void bt_av_hdl_stack_evt(uint16_t event, void *p_param)
  368. {
  369. LOG_DEBUG("%s evt %d", __func__, event);
  370. switch (event) {
  371. case BT_APP_EVT_STACK_UP: {
  372. /* set up device name */
  373. char *dev_name = CONFIG_A2DP_DEV_NAME;
  374. esp_bt_dev_set_device_name(dev_name);
  375. /* register GAP callback function */
  376. esp_bt_gap_register_callback(bt_app_gap_cb);
  377. /* initialize A2DP source */
  378. esp_a2d_register_callback(&bt_app_a2d_cb);
  379. esp_a2d_source_register_data_callback(bt_app_a2d_data_cb);
  380. esp_a2d_source_init();
  381. /* set discoverable and connectable mode */
  382. esp_bt_gap_set_scan_mode(ESP_BT_CONNECTABLE, ESP_BT_GENERAL_DISCOVERABLE);
  383. /* start device discovery */
  384. LOG_INFO("Starting device discovery...");
  385. s_a2d_state = APP_AV_STATE_DISCOVERING;
  386. esp_bt_gap_start_discovery(ESP_BT_INQ_MODE_GENERAL_INQUIRY, 10, 0);
  387. /* create and start heart beat timer */
  388. do {
  389. int tmr_id = 0;
  390. s_tmr = xTimerCreate("connTmr", (10000 / portTICK_RATE_MS),
  391. pdTRUE, (void *)tmr_id, a2d_app_heart_beat);
  392. xTimerStart(s_tmr, portMAX_DELAY);
  393. } while (0);
  394. break;
  395. }
  396. default:
  397. LOG_ERROR("%s unhandled evt %d", __func__, event);
  398. break;
  399. }
  400. }
  401. static void bt_app_a2d_cb(esp_a2d_cb_event_t event, esp_a2d_cb_param_t *param)
  402. {
  403. bt_app_work_dispatch(bt_app_av_sm_hdlr, event, param, sizeof(esp_a2d_cb_param_t), NULL);
  404. }
  405. static int32_t bt_app_a2d_data_cb(uint8_t *data, int32_t len)
  406. {
  407. int32_t ret = 0;
  408. frames_t frames=0;
  409. frames_t frames_wanted = 0;
  410. if (len < 0 || data == NULL) {
  411. return 0;
  412. }
  413. optr = (u8_t *)data;
  414. LOCK;
  415. switch (output.format) {
  416. case S32_LE:
  417. bytes_per_frame = 4 * 2; break;
  418. case S24_3LE:
  419. bytes_per_frame = 3 * 2; break;
  420. case S16_LE:
  421. bytes_per_frame = 2 * 2; break;
  422. default:
  423. bytes_per_frame = 4 * 2; break;
  424. break;
  425. }
  426. UNLOCK;
  427. frames_wanted = len / bytes_per_frame;
  428. ret = len;
  429. LOCK;
  430. output.device_frames = 0;
  431. output.updated = gettime_ms();
  432. output.frames_played_dmp = output.frames_played;
  433. do {
  434. frames = _output_frames(frames_wanted);
  435. frames_wanted -= frames;
  436. } while (frames_wanted > 0 && frames != 0);
  437. if (frames_wanted > 0) {
  438. LOG_DEBUG("pad with silence");
  439. memset(optr, 0, frames_wanted * bytes_per_frame);
  440. }
  441. if (output.state == OUTPUT_OFF) {
  442. LOG_INFO("output off");
  443. ret = 0;
  444. }
  445. UNLOCK;
  446. return ret;
  447. }
  448. static void a2d_app_heart_beat(void *arg)
  449. {
  450. bt_app_work_dispatch(bt_app_av_sm_hdlr, BT_APP_HEART_BEAT_EVT, NULL, 0, NULL);
  451. }
  452. static void bt_app_av_sm_hdlr(uint16_t event, void *param)
  453. {
  454. LOG_INFO("%s state %d, evt 0x%x", __func__, s_a2d_state, event);
  455. switch (s_a2d_state) {
  456. case APP_AV_STATE_DISCOVERING:
  457. case APP_AV_STATE_DISCOVERED:
  458. break;
  459. case APP_AV_STATE_UNCONNECTED:
  460. bt_app_av_state_unconnected(event, param);
  461. break;
  462. case APP_AV_STATE_CONNECTING:
  463. bt_app_av_state_connecting(event, param);
  464. break;
  465. case APP_AV_STATE_CONNECTED:
  466. bt_app_av_state_connected(event, param);
  467. break;
  468. case APP_AV_STATE_DISCONNECTING:
  469. bt_app_av_state_disconnecting(event, param);
  470. break;
  471. default:
  472. LOG_ERROR("%s invalid state %d", __func__, s_a2d_state);
  473. break;
  474. }
  475. }
  476. static void bt_app_av_state_unconnected(uint16_t event, void *param)
  477. {
  478. switch (event) {
  479. case ESP_A2D_CONNECTION_STATE_EVT:
  480. case ESP_A2D_AUDIO_STATE_EVT:
  481. case ESP_A2D_AUDIO_CFG_EVT:
  482. case ESP_A2D_MEDIA_CTRL_ACK_EVT:
  483. break;
  484. case BT_APP_HEART_BEAT_EVT: {
  485. uint8_t *p = s_peer_bda;
  486. LOG_INFO("a2dp connecting to peer: %02x:%02x:%02x:%02x:%02x:%02x",
  487. p[0], p[1], p[2], p[3], p[4], p[5]);
  488. esp_a2d_source_connect(s_peer_bda);
  489. s_a2d_state = APP_AV_STATE_CONNECTING;
  490. s_connecting_intv = 0;
  491. break;
  492. }
  493. default:
  494. LOG_ERROR("%s unhandled evt %d", __func__, event);
  495. break;
  496. }
  497. }
  498. static void bt_app_av_state_connecting(uint16_t event, void *param)
  499. {
  500. esp_a2d_cb_param_t *a2d = NULL;
  501. switch (event) {
  502. case ESP_A2D_CONNECTION_STATE_EVT: {
  503. a2d = (esp_a2d_cb_param_t *)(param);
  504. if (a2d->conn_stat.state == ESP_A2D_CONNECTION_STATE_CONNECTED) {
  505. LOG_INFO("a2dp connected");
  506. s_a2d_state = APP_AV_STATE_CONNECTED;
  507. s_media_state = APP_AV_MEDIA_STATE_IDLE;
  508. esp_bt_gap_set_scan_mode(ESP_BT_NON_CONNECTABLE, ESP_BT_NON_DISCOVERABLE);
  509. } else if (a2d->conn_stat.state == ESP_A2D_CONNECTION_STATE_DISCONNECTED) {
  510. s_a2d_state = APP_AV_STATE_UNCONNECTED;
  511. }
  512. break;
  513. }
  514. case ESP_A2D_AUDIO_STATE_EVT:
  515. case ESP_A2D_AUDIO_CFG_EVT:
  516. case ESP_A2D_MEDIA_CTRL_ACK_EVT:
  517. break;
  518. case BT_APP_HEART_BEAT_EVT:
  519. if (++s_connecting_intv >= 2) {
  520. s_a2d_state = APP_AV_STATE_UNCONNECTED;
  521. s_connecting_intv = 0;
  522. }
  523. break;
  524. default:
  525. LOG_ERROR("%s unhandled evt %d", __func__, event);
  526. break;
  527. }
  528. }
  529. static void bt_app_av_media_proc(uint16_t event, void *param)
  530. {
  531. esp_a2d_cb_param_t *a2d = NULL;
  532. switch (s_media_state) {
  533. case APP_AV_MEDIA_STATE_IDLE: {
  534. if (event == BT_APP_HEART_BEAT_EVT) {
  535. LOG_INFO("a2dp media ready checking ...");
  536. esp_a2d_media_ctrl(ESP_A2D_MEDIA_CTRL_CHECK_SRC_RDY);
  537. } else if (event == ESP_A2D_MEDIA_CTRL_ACK_EVT) {
  538. a2d = (esp_a2d_cb_param_t *)(param);
  539. if (a2d->media_ctrl_stat.cmd == ESP_A2D_MEDIA_CTRL_CHECK_SRC_RDY &&
  540. a2d->media_ctrl_stat.status == ESP_A2D_MEDIA_CTRL_ACK_SUCCESS) {
  541. LOG_INFO("a2dp media ready, starting ...");
  542. esp_a2d_media_ctrl(ESP_A2D_MEDIA_CTRL_START);
  543. s_media_state = APP_AV_MEDIA_STATE_STARTING;
  544. }
  545. }
  546. break;
  547. }
  548. case APP_AV_MEDIA_STATE_STARTING: {
  549. if (event == ESP_A2D_MEDIA_CTRL_ACK_EVT) {
  550. a2d = (esp_a2d_cb_param_t *)(param);
  551. if (a2d->media_ctrl_stat.cmd == ESP_A2D_MEDIA_CTRL_START &&
  552. a2d->media_ctrl_stat.status == ESP_A2D_MEDIA_CTRL_ACK_SUCCESS) {
  553. LOG_INFO("a2dp media start successfully.");
  554. s_intv_cnt = 0;
  555. s_media_state = APP_AV_MEDIA_STATE_STARTED;
  556. } else {
  557. // not started succesfully, transfer to idle state
  558. LOG_INFO("a2dp media start failed.");
  559. s_media_state = APP_AV_MEDIA_STATE_IDLE;
  560. }
  561. }
  562. break;
  563. }
  564. case APP_AV_MEDIA_STATE_STARTED: {
  565. if (event == BT_APP_HEART_BEAT_EVT) {
  566. if (++s_intv_cnt >= 10) {
  567. LOG_INFO("a2dp media stopping...");
  568. esp_a2d_media_ctrl(ESP_A2D_MEDIA_CTRL_STOP);
  569. s_media_state = APP_AV_MEDIA_STATE_STOPPING;
  570. s_intv_cnt = 0;
  571. }
  572. }
  573. break;
  574. }
  575. case APP_AV_MEDIA_STATE_STOPPING: {
  576. if (event == ESP_A2D_MEDIA_CTRL_ACK_EVT) {
  577. a2d = (esp_a2d_cb_param_t *)(param);
  578. if (a2d->media_ctrl_stat.cmd == ESP_A2D_MEDIA_CTRL_STOP &&
  579. a2d->media_ctrl_stat.status == ESP_A2D_MEDIA_CTRL_ACK_SUCCESS) {
  580. LOG_INFO("a2dp media stopped successfully, disconnecting...");
  581. s_media_state = APP_AV_MEDIA_STATE_IDLE;
  582. esp_a2d_source_disconnect(s_peer_bda);
  583. s_a2d_state = APP_AV_STATE_DISCONNECTING;
  584. } else {
  585. LOG_INFO("a2dp media stopping...");
  586. esp_a2d_media_ctrl(ESP_A2D_MEDIA_CTRL_STOP);
  587. }
  588. }
  589. break;
  590. }
  591. }
  592. }
  593. static void bt_app_av_state_connected(uint16_t event, void *param)
  594. {
  595. esp_a2d_cb_param_t *a2d = NULL;
  596. switch (event) {
  597. case ESP_A2D_CONNECTION_STATE_EVT: {
  598. a2d = (esp_a2d_cb_param_t *)(param);
  599. if (a2d->conn_stat.state == ESP_A2D_CONNECTION_STATE_DISCONNECTED) {
  600. LOG_INFO("a2dp disconnected");
  601. s_a2d_state = APP_AV_STATE_UNCONNECTED;
  602. esp_bt_gap_set_scan_mode(ESP_BT_CONNECTABLE, ESP_BT_GENERAL_DISCOVERABLE);
  603. }
  604. break;
  605. }
  606. case ESP_A2D_AUDIO_STATE_EVT: {
  607. a2d = (esp_a2d_cb_param_t *)(param);
  608. if (ESP_A2D_AUDIO_STATE_STARTED == a2d->audio_stat.state) {
  609. s_pkt_cnt = 0;
  610. }
  611. break;
  612. }
  613. case ESP_A2D_AUDIO_CFG_EVT:
  614. // not suppposed to occur for A2DP source
  615. break;
  616. case ESP_A2D_MEDIA_CTRL_ACK_EVT:
  617. case BT_APP_HEART_BEAT_EVT: {
  618. bt_app_av_media_proc(event, param);
  619. break;
  620. }
  621. default:
  622. LOG_ERROR("%s unhandled evt %d", __func__, event);
  623. break;
  624. }
  625. }
  626. static void bt_app_av_state_disconnecting(uint16_t event, void *param)
  627. {
  628. esp_a2d_cb_param_t *a2d = NULL;
  629. switch (event) {
  630. case ESP_A2D_CONNECTION_STATE_EVT: {
  631. a2d = (esp_a2d_cb_param_t *)(param);
  632. if (a2d->conn_stat.state == ESP_A2D_CONNECTION_STATE_DISCONNECTED) {
  633. LOG_INFO("a2dp disconnected");
  634. s_a2d_state = APP_AV_STATE_UNCONNECTED;
  635. esp_bt_gap_set_scan_mode(ESP_BT_CONNECTABLE, ESP_BT_GENERAL_DISCOVERABLE);
  636. }
  637. break;
  638. }
  639. case ESP_A2D_AUDIO_STATE_EVT:
  640. case ESP_A2D_AUDIO_CFG_EVT:
  641. case ESP_A2D_MEDIA_CTRL_ACK_EVT:
  642. case BT_APP_HEART_BEAT_EVT:
  643. break;
  644. default:
  645. LOG_ERROR("%s unhandled evt %d", __func__, event);
  646. break;
  647. }
  648. }