bt_app_av.c 22 KB

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  1. /*
  2. * SPDX-FileCopyrightText: 2021-2022 Espressif Systems (Shanghai) CO LTD
  3. *
  4. * SPDX-License-Identifier: Unlicense OR CC0-1.0
  5. */
  6. #include <stdint.h>
  7. #include <stdbool.h>
  8. #include <stdlib.h>
  9. #include <string.h>
  10. #include <inttypes.h>
  11. #include "esp_log.h"
  12. #include "bt_app_core.h"
  13. #include "bt_app_av.h"
  14. #include "esp_bt_main.h"
  15. #include "esp_bt_device.h"
  16. #include "esp_gap_bt_api.h"
  17. #include "esp_a2dp_api.h"
  18. #include "esp_avrc_api.h"
  19. #include "freertos/FreeRTOS.h"
  20. #include "freertos/task.h"
  21. #ifdef CONFIG_EXAMPLE_A2DP_SINK_OUTPUT_INTERNAL_DAC
  22. #include "driver/dac_continuous.h"
  23. #else
  24. #include "driver/i2s_std.h"
  25. #endif
  26. #include "sys/lock.h"
  27. #include "audio.h"
  28. /* AVRCP used transaction labels */
  29. #define APP_RC_CT_TL_GET_CAPS (0)
  30. #define APP_RC_CT_TL_GET_META_DATA (1)
  31. #define APP_RC_CT_TL_RN_TRACK_CHANGE (2)
  32. #define APP_RC_CT_TL_RN_PLAYBACK_CHANGE (3)
  33. #define APP_RC_CT_TL_RN_PLAY_POS_CHANGE (4)
  34. /* Application layer causes delay value */
  35. #define APP_DELAY_VALUE 50 // 5ms
  36. /*******************************
  37. * STATIC FUNCTION DECLARATIONS
  38. ******************************/
  39. /* allocate new meta buffer */
  40. static void bt_app_alloc_meta_buffer(esp_avrc_ct_cb_param_t *param);
  41. /* handler for new track is loaded */
  42. static void bt_av_new_track(void);
  43. /* handler for track status change */
  44. static void bt_av_playback_changed(void);
  45. /* handler for track playing position change */
  46. static void bt_av_play_pos_changed(void);
  47. /* notification event handler */
  48. static void bt_av_notify_evt_handler(uint8_t event_id, esp_avrc_rn_param_t *event_parameter);
  49. /* installation for i2s */
  50. static void bt_i2s_driver_install(void);
  51. /* uninstallation for i2s */
  52. static void bt_i2s_driver_uninstall(void);
  53. /* set volume by remote controller */
  54. static void volume_set_by_controller(uint8_t volume);
  55. /* set volume by local host */
  56. static void volume_set_by_local_host(uint8_t volume);
  57. /* simulation volume change */
  58. static void volume_change_simulation(void *arg);
  59. /* a2dp event handler */
  60. static void bt_av_hdl_a2d_evt(uint16_t event, void *p_param);
  61. /* avrc controller event handler */
  62. static void bt_av_hdl_avrc_ct_evt(uint16_t event, void *p_param);
  63. /* avrc target event handler */
  64. static void bt_av_hdl_avrc_tg_evt(uint16_t event, void *p_param);
  65. /*******************************
  66. * STATIC VARIABLE DEFINITIONS
  67. ******************************/
  68. static uint32_t s_pkt_cnt = 0; /* count for audio packet */
  69. static esp_a2d_audio_state_t s_audio_state = ESP_A2D_AUDIO_STATE_STOPPED;
  70. /* audio stream datapath state */
  71. static const char *s_a2d_conn_state_str[] = {"Disconnected", "Connecting", "Connected", "Disconnecting"};
  72. /* connection state in string */
  73. static const char *s_a2d_audio_state_str[] = {"Suspended", "Started"};
  74. /* audio stream datapath state in string */
  75. static esp_avrc_rn_evt_cap_mask_t s_avrc_peer_rn_cap;
  76. /* AVRC target notification capability bit mask */
  77. static _lock_t s_volume_lock;
  78. // static TaskHandle_t s_vcs_task_hdl = NULL; /* handle for volume change simulation task */
  79. // 定义音量增益(全局变量需在外部声明)
  80. /* local volume value */
  81. static bool s_volume_notify; /* notify volume change or not */
  82. #ifndef CONFIG_EXAMPLE_A2DP_SINK_OUTPUT_INTERNAL_DAC
  83. i2s_chan_handle_t tx_chan = NULL;
  84. #else
  85. dac_continuous_handle_t tx_chan;
  86. #endif
  87. /********************************
  88. * STATIC FUNCTION DEFINITIONS
  89. *******************************/
  90. static void bt_app_alloc_meta_buffer(esp_avrc_ct_cb_param_t *param)
  91. {
  92. esp_avrc_ct_cb_param_t *rc = (esp_avrc_ct_cb_param_t *)(param);
  93. uint8_t *attr_text = (uint8_t *) malloc (rc->meta_rsp.attr_length + 1);
  94. memcpy(attr_text, rc->meta_rsp.attr_text, rc->meta_rsp.attr_length);
  95. attr_text[rc->meta_rsp.attr_length] = 0;
  96. rc->meta_rsp.attr_text = attr_text;
  97. }
  98. static void bt_av_new_track(void)
  99. {
  100. /* request metadata */
  101. uint8_t attr_mask = ESP_AVRC_MD_ATTR_TITLE |
  102. ESP_AVRC_MD_ATTR_ARTIST |
  103. ESP_AVRC_MD_ATTR_ALBUM |
  104. ESP_AVRC_MD_ATTR_GENRE;
  105. esp_avrc_ct_send_metadata_cmd(APP_RC_CT_TL_GET_META_DATA, attr_mask);
  106. /* register notification if peer support the event_id */
  107. if (esp_avrc_rn_evt_bit_mask_operation(ESP_AVRC_BIT_MASK_OP_TEST, &s_avrc_peer_rn_cap,
  108. ESP_AVRC_RN_TRACK_CHANGE)) {
  109. esp_avrc_ct_send_register_notification_cmd(APP_RC_CT_TL_RN_TRACK_CHANGE,
  110. ESP_AVRC_RN_TRACK_CHANGE, 0);
  111. }
  112. }
  113. static void bt_av_playback_changed(void)
  114. {
  115. /* register notification if peer support the event_id */
  116. if (esp_avrc_rn_evt_bit_mask_operation(ESP_AVRC_BIT_MASK_OP_TEST, &s_avrc_peer_rn_cap,
  117. ESP_AVRC_RN_PLAY_STATUS_CHANGE)) {
  118. esp_avrc_ct_send_register_notification_cmd(APP_RC_CT_TL_RN_PLAYBACK_CHANGE,
  119. ESP_AVRC_RN_PLAY_STATUS_CHANGE, 0);
  120. }
  121. }
  122. static void bt_av_play_pos_changed(void)
  123. {
  124. /* register notification if peer support the event_id */
  125. if (esp_avrc_rn_evt_bit_mask_operation(ESP_AVRC_BIT_MASK_OP_TEST, &s_avrc_peer_rn_cap,
  126. ESP_AVRC_RN_PLAY_POS_CHANGED)) {
  127. esp_avrc_ct_send_register_notification_cmd(APP_RC_CT_TL_RN_PLAY_POS_CHANGE,
  128. ESP_AVRC_RN_PLAY_POS_CHANGED, 10);
  129. }
  130. }
  131. static void bt_av_notify_evt_handler(uint8_t event_id, esp_avrc_rn_param_t *event_parameter)
  132. {
  133. switch (event_id) {
  134. /* when new track is loaded, this event comes */
  135. case ESP_AVRC_RN_TRACK_CHANGE:
  136. bt_av_new_track();
  137. break;
  138. /* when track status changed, this event comes */
  139. case ESP_AVRC_RN_PLAY_STATUS_CHANGE:
  140. ESP_LOGI(BT_AV_TAG, "Playback status changed: 0x%x", event_parameter->playback);
  141. bt_av_playback_changed();
  142. break;
  143. /* when track playing position changed, this event comes */
  144. case ESP_AVRC_RN_PLAY_POS_CHANGED:
  145. ESP_LOGI(BT_AV_TAG, "Play position changed: %"PRIu32"-ms", event_parameter->play_pos);
  146. bt_av_play_pos_changed();
  147. break;
  148. /* others */
  149. default:
  150. ESP_LOGI(BT_AV_TAG, "unhandled event: %d", event_id);
  151. break;
  152. }
  153. }
  154. void bt_i2s_driver_install(void)
  155. {
  156. #ifdef CONFIG_EXAMPLE_A2DP_SINK_OUTPUT_INTERNAL_DAC
  157. dac_continuous_config_t cont_cfg = {
  158. .chan_mask = DAC_CHANNEL_MASK_ALL,
  159. .desc_num = 8,
  160. .buf_size = 2048,
  161. .freq_hz = 44100,
  162. .offset = 127,
  163. .clk_src = DAC_DIGI_CLK_SRC_DEFAULT, // Using APLL as clock source to get a wider frequency range
  164. .chan_mode = DAC_CHANNEL_MODE_ALTER,
  165. };
  166. /* Allocate continuous channels */
  167. ESP_ERROR_CHECK(dac_continuous_new_channels(&cont_cfg, &tx_chan));
  168. /* Enable the continuous channels */
  169. ESP_ERROR_CHECK(dac_continuous_enable(tx_chan));
  170. #else
  171. i2s_chan_config_t chan_cfg = I2S_CHANNEL_DEFAULT_CONFIG(I2S_NUM_0, I2S_ROLE_MASTER);
  172. chan_cfg.auto_clear = true;
  173. i2s_std_config_t std_cfg = {
  174. .clk_cfg = I2S_STD_CLK_DEFAULT_CONFIG(44100),
  175. .slot_cfg = I2S_STD_MSB_SLOT_DEFAULT_CONFIG(I2S_DATA_BIT_WIDTH_16BIT, I2S_SLOT_MODE_STEREO),
  176. .gpio_cfg = {
  177. .mclk = I2S_MCK_IO,//3
  178. .bclk = I2S_BCK_IO,//26
  179. .ws = I2S_WS_IO,//25
  180. .dout = I2S_DO_IO,//27
  181. .din = I2S_GPIO_UNUSED,
  182. .invert_flags = {
  183. .mclk_inv = false,
  184. .bclk_inv = false,
  185. .ws_inv = false,
  186. },
  187. },
  188. };
  189. /* enable I2S */
  190. ESP_ERROR_CHECK(i2s_new_channel(&chan_cfg, &tx_chan, NULL));
  191. ESP_ERROR_CHECK(i2s_channel_init_std_mode(tx_chan, &std_cfg));
  192. ESP_ERROR_CHECK(i2s_channel_enable(tx_chan));
  193. #endif
  194. }
  195. void bt_i2s_driver_uninstall(void)
  196. {
  197. #ifdef CONFIG_EXAMPLE_A2DP_SINK_OUTPUT_INTERNAL_DAC
  198. ESP_ERROR_CHECK(dac_continuous_disable(tx_chan));
  199. ESP_ERROR_CHECK(dac_continuous_del_channels(tx_chan));
  200. #else
  201. ESP_ERROR_CHECK(i2s_channel_disable(tx_chan));
  202. ESP_ERROR_CHECK(i2s_del_channel(tx_chan));
  203. #endif
  204. }
  205. static void volume_set_by_controller(uint8_t volume)
  206. {
  207. ESP_LOGI(BT_RC_TG_TAG, "Volume is set by remote controller to: %"PRIu32"%%", (uint32_t)volume * 100 / 0x7f);
  208. /* set the volume in protection of lock */
  209. _lock_acquire(&s_volume_lock);
  210. s_volume = volume;
  211. _lock_release(&s_volume_lock);
  212. }
  213. static void volume_set_by_local_host(uint8_t volume)
  214. {
  215. ESP_LOGI(BT_RC_TG_TAG, "Volume is set locally to: %"PRIu32"%%", (uint32_t)volume * 100 / 0x7f);
  216. /* set the volume in protection of lock */
  217. _lock_acquire(&s_volume_lock);
  218. s_volume = volume;
  219. _lock_release(&s_volume_lock);
  220. /* send notification response to remote AVRCP controller */
  221. if (s_volume_notify) {
  222. esp_avrc_rn_param_t rn_param;
  223. rn_param.volume = s_volume;
  224. esp_avrc_tg_send_rn_rsp(ESP_AVRC_RN_VOLUME_CHANGE, ESP_AVRC_RN_RSP_CHANGED, &rn_param);
  225. s_volume_notify = false;
  226. }
  227. }
  228. static void volume_change_simulation(void *arg)
  229. {
  230. ESP_LOGI(BT_RC_TG_TAG, "start volume change simulation");
  231. for (;;) {
  232. /* volume up locally every 10 seconds */
  233. vTaskDelay(10000 / portTICK_PERIOD_MS);
  234. uint8_t volume = (s_volume + 5) & 0x7f;
  235. volume_set_by_local_host(volume);
  236. }
  237. }
  238. static void bt_av_hdl_a2d_evt(uint16_t event, void *p_param)
  239. {
  240. ESP_LOGD(BT_AV_TAG, "%s event: %d", __func__, event);
  241. esp_a2d_cb_param_t *a2d = NULL;
  242. switch (event) {
  243. /* when connection state changed, this event comes */
  244. case ESP_A2D_CONNECTION_STATE_EVT: {
  245. a2d = (esp_a2d_cb_param_t *)(p_param);
  246. uint8_t *bda = a2d->conn_stat.remote_bda;
  247. ESP_LOGI(BT_AV_TAG, "A2DP connection state: %s, [%02x:%02x:%02x:%02x:%02x:%02x]",
  248. s_a2d_conn_state_str[a2d->conn_stat.state], bda[0], bda[1], bda[2], bda[3], bda[4], bda[5]);
  249. if (a2d->conn_stat.state == ESP_A2D_CONNECTION_STATE_DISCONNECTED) {
  250. esp_bt_gap_set_scan_mode(ESP_BT_CONNECTABLE, ESP_BT_GENERAL_DISCOVERABLE);
  251. bt_i2s_driver_uninstall();
  252. bt_i2s_task_shut_down();
  253. } else if (a2d->conn_stat.state == ESP_A2D_CONNECTION_STATE_CONNECTED){
  254. esp_bt_gap_set_scan_mode(ESP_BT_NON_CONNECTABLE, ESP_BT_NON_DISCOVERABLE);
  255. bt_i2s_task_start_up();
  256. } else if (a2d->conn_stat.state == ESP_A2D_CONNECTION_STATE_CONNECTING) {
  257. bt_i2s_driver_install();
  258. }
  259. break;
  260. }
  261. /* when audio stream transmission state changed, this event comes */
  262. case ESP_A2D_AUDIO_STATE_EVT: {
  263. a2d = (esp_a2d_cb_param_t *)(p_param);
  264. ESP_LOGI(BT_AV_TAG, "A2DP audio state: %s", s_a2d_audio_state_str[a2d->audio_stat.state]);
  265. s_audio_state = a2d->audio_stat.state;
  266. if (ESP_A2D_AUDIO_STATE_STARTED == a2d->audio_stat.state) {
  267. s_pkt_cnt = 0;
  268. }
  269. break;
  270. }
  271. /* when audio codec is configured, this event comes */
  272. case ESP_A2D_AUDIO_CFG_EVT: {
  273. a2d = (esp_a2d_cb_param_t *)(p_param);
  274. ESP_LOGI(BT_AV_TAG, "A2DP audio stream configuration, codec type: %d", a2d->audio_cfg.mcc.type);
  275. /* for now only SBC stream is supported */
  276. if (a2d->audio_cfg.mcc.type == ESP_A2D_MCT_SBC) {
  277. int sample_rate = 16000;
  278. int ch_count = 2;
  279. char oct0 = a2d->audio_cfg.mcc.cie.sbc[0];
  280. if (oct0 & (0x01 << 6)) {
  281. sample_rate = 32000;
  282. } else if (oct0 & (0x01 << 5)) {
  283. sample_rate = 44100;
  284. } else if (oct0 & (0x01 << 4)) {
  285. sample_rate = 48000;
  286. }
  287. if (oct0 & (0x01 << 3)) {
  288. ch_count = 1;
  289. }
  290. #ifdef CONFIG_EXAMPLE_A2DP_SINK_OUTPUT_INTERNAL_DAC
  291. dac_continuous_disable(tx_chan);
  292. dac_continuous_del_channels(tx_chan);
  293. dac_continuous_config_t cont_cfg = {
  294. .chan_mask = DAC_CHANNEL_MASK_ALL,
  295. .desc_num = 8,
  296. .buf_size = 2048,
  297. .freq_hz = sample_rate,
  298. .offset = 127,
  299. .clk_src = DAC_DIGI_CLK_SRC_DEFAULT, // Using APLL as clock source to get a wider frequency range
  300. .chan_mode = (ch_count == 1) ? DAC_CHANNEL_MODE_SIMUL : DAC_CHANNEL_MODE_ALTER,
  301. };
  302. /* Allocate continuous channels */
  303. dac_continuous_new_channels(&cont_cfg, &tx_chan);
  304. /* Enable the continuous channels */
  305. dac_continuous_enable(tx_chan);
  306. #else
  307. i2s_channel_disable(tx_chan);
  308. i2s_std_clk_config_t clk_cfg = I2S_STD_CLK_DEFAULT_CONFIG(sample_rate);
  309. i2s_std_slot_config_t slot_cfg = I2S_STD_MSB_SLOT_DEFAULT_CONFIG(I2S_DATA_BIT_WIDTH_16BIT, ch_count);
  310. i2s_channel_reconfig_std_clock(tx_chan, &clk_cfg);
  311. i2s_channel_reconfig_std_slot(tx_chan, &slot_cfg);
  312. i2s_channel_enable(tx_chan);
  313. #endif
  314. ESP_LOGI(BT_AV_TAG, "Configure audio player: %x-%x-%x-%x",
  315. a2d->audio_cfg.mcc.cie.sbc[0],
  316. a2d->audio_cfg.mcc.cie.sbc[1],
  317. a2d->audio_cfg.mcc.cie.sbc[2],
  318. a2d->audio_cfg.mcc.cie.sbc[3]);
  319. ESP_LOGI(BT_AV_TAG, "Audio player configured, sample rate: %d", sample_rate);
  320. }
  321. break;
  322. }
  323. /* when a2dp init or deinit completed, this event comes */
  324. case ESP_A2D_PROF_STATE_EVT: {
  325. a2d = (esp_a2d_cb_param_t *)(p_param);
  326. if (ESP_A2D_INIT_SUCCESS == a2d->a2d_prof_stat.init_state) {
  327. ESP_LOGI(BT_AV_TAG, "A2DP PROF STATE: Init Complete");
  328. } else {
  329. ESP_LOGI(BT_AV_TAG, "A2DP PROF STATE: Deinit Complete");
  330. }
  331. break;
  332. }
  333. /* When protocol service capabilities configured, this event comes */
  334. case ESP_A2D_SNK_PSC_CFG_EVT: {
  335. a2d = (esp_a2d_cb_param_t *)(p_param);
  336. ESP_LOGI(BT_AV_TAG, "protocol service capabilities configured: 0x%x ", a2d->a2d_psc_cfg_stat.psc_mask);
  337. if (a2d->a2d_psc_cfg_stat.psc_mask & ESP_A2D_PSC_DELAY_RPT) {
  338. ESP_LOGI(BT_AV_TAG, "Peer device support delay reporting");
  339. } else {
  340. ESP_LOGI(BT_AV_TAG, "Peer device unsupport delay reporting");
  341. }
  342. break;
  343. }
  344. /* when set delay value completed, this event comes */
  345. case ESP_A2D_SNK_SET_DELAY_VALUE_EVT: {
  346. a2d = (esp_a2d_cb_param_t *)(p_param);
  347. if (ESP_A2D_SET_INVALID_PARAMS == a2d->a2d_set_delay_value_stat.set_state) {
  348. ESP_LOGI(BT_AV_TAG, "Set delay report value: fail");
  349. } else {
  350. ESP_LOGI(BT_AV_TAG, "Set delay report value: success, delay_value: %u * 1/10 ms", a2d->a2d_set_delay_value_stat.delay_value);
  351. }
  352. break;
  353. }
  354. /* when get delay value completed, this event comes */
  355. case ESP_A2D_SNK_GET_DELAY_VALUE_EVT: {
  356. a2d = (esp_a2d_cb_param_t *)(p_param);
  357. ESP_LOGI(BT_AV_TAG, "Get delay report value: delay_value: %u * 1/10 ms", a2d->a2d_get_delay_value_stat.delay_value);
  358. /* Default delay value plus delay caused by application layer */
  359. esp_a2d_sink_set_delay_value(a2d->a2d_get_delay_value_stat.delay_value + APP_DELAY_VALUE);
  360. break;
  361. }
  362. /* others */
  363. default:
  364. ESP_LOGE(BT_AV_TAG, "%s unhandled event: %d", __func__, event);
  365. break;
  366. }
  367. }
  368. static void bt_av_hdl_avrc_ct_evt(uint16_t event, void *p_param)
  369. {
  370. ESP_LOGD(BT_RC_CT_TAG, "%s event: %d", __func__, event);
  371. esp_avrc_ct_cb_param_t *rc = (esp_avrc_ct_cb_param_t *)(p_param);
  372. switch (event) {
  373. /* when connection state changed, this event comes */
  374. case ESP_AVRC_CT_CONNECTION_STATE_EVT: {
  375. uint8_t *bda = rc->conn_stat.remote_bda;
  376. ESP_LOGI(BT_RC_CT_TAG, "AVRC conn_state event: state %d, [%02x:%02x:%02x:%02x:%02x:%02x]",
  377. rc->conn_stat.connected, bda[0], bda[1], bda[2], bda[3], bda[4], bda[5]);
  378. if (rc->conn_stat.connected) {
  379. /* get remote supported event_ids of peer AVRCP Target */
  380. esp_avrc_ct_send_get_rn_capabilities_cmd(APP_RC_CT_TL_GET_CAPS);
  381. } else {
  382. /* clear peer notification capability record */
  383. s_avrc_peer_rn_cap.bits = 0;
  384. }
  385. break;
  386. }
  387. /* when passthrough responsed, this event comes */
  388. case ESP_AVRC_CT_PASSTHROUGH_RSP_EVT: {
  389. ESP_LOGI(BT_RC_CT_TAG, "AVRC passthrough rsp: key_code 0x%x, key_state %d, rsp_code %d", rc->psth_rsp.key_code,
  390. rc->psth_rsp.key_state, rc->psth_rsp.rsp_code);
  391. break;
  392. }
  393. /* when metadata responsed, this event comes */
  394. case ESP_AVRC_CT_METADATA_RSP_EVT: {
  395. ESP_LOGI(BT_RC_CT_TAG, "AVRC metadata rsp: attribute id 0x%x, %s", rc->meta_rsp.attr_id, rc->meta_rsp.attr_text);
  396. free(rc->meta_rsp.attr_text);
  397. break;
  398. }
  399. /* when notified, this event comes */
  400. case ESP_AVRC_CT_CHANGE_NOTIFY_EVT: {
  401. ESP_LOGI(BT_RC_CT_TAG, "AVRC event notification: %d", rc->change_ntf.event_id);
  402. bt_av_notify_evt_handler(rc->change_ntf.event_id, &rc->change_ntf.event_parameter);
  403. break;
  404. }
  405. /* when feature of remote device indicated, this event comes */
  406. case ESP_AVRC_CT_REMOTE_FEATURES_EVT: {
  407. ESP_LOGI(BT_RC_CT_TAG, "AVRC remote features %"PRIx32", TG features %x", rc->rmt_feats.feat_mask, rc->rmt_feats.tg_feat_flag);
  408. break;
  409. }
  410. /* when notification capability of peer device got, this event comes */
  411. case ESP_AVRC_CT_GET_RN_CAPABILITIES_RSP_EVT: {
  412. ESP_LOGI(BT_RC_CT_TAG, "remote rn_cap: count %d, bitmask 0x%x", rc->get_rn_caps_rsp.cap_count,
  413. rc->get_rn_caps_rsp.evt_set.bits);
  414. s_avrc_peer_rn_cap.bits = rc->get_rn_caps_rsp.evt_set.bits;
  415. bt_av_new_track();
  416. bt_av_playback_changed();
  417. bt_av_play_pos_changed();
  418. break;
  419. }
  420. /* others */
  421. default:
  422. ESP_LOGE(BT_RC_CT_TAG, "%s unhandled event: %d", __func__, event);
  423. break;
  424. }
  425. }
  426. static void bt_av_hdl_avrc_tg_evt(uint16_t event, void *p_param)
  427. {
  428. ESP_LOGD(BT_RC_TG_TAG, "%s event: %d", __func__, event);
  429. esp_avrc_tg_cb_param_t *rc = (esp_avrc_tg_cb_param_t *)(p_param);
  430. switch (event) {
  431. /* when connection state changed, this event comes */
  432. case ESP_AVRC_TG_CONNECTION_STATE_EVT: {
  433. uint8_t *bda = rc->conn_stat.remote_bda;
  434. ESP_LOGI(BT_RC_TG_TAG, "AVRC conn_state evt: state %d, [%02x:%02x:%02x:%02x:%02x:%02x]",
  435. rc->conn_stat.connected, bda[0], bda[1], bda[2], bda[3], bda[4], bda[5]);
  436. if (rc->conn_stat.connected) {
  437. /* create task to simulate volume change */
  438. // xTaskCreate(volume_change_simulation, "vcsTask", 2048, NULL, 5, &s_vcs_task_hdl);
  439. } else {
  440. // vTaskDelete(s_vcs_task_hdl);
  441. ESP_LOGI(BT_RC_TG_TAG, "Stop volume change simulation");
  442. }
  443. break;
  444. }
  445. /* when passthrough commanded, this event comes */
  446. case ESP_AVRC_TG_PASSTHROUGH_CMD_EVT: {
  447. ESP_LOGI(BT_RC_TG_TAG, "AVRC passthrough cmd: key_code 0x%x, key_state %d", rc->psth_cmd.key_code, rc->psth_cmd.key_state);
  448. break;
  449. }
  450. /* when absolute volume command from remote device set, this event comes */
  451. case ESP_AVRC_TG_SET_ABSOLUTE_VOLUME_CMD_EVT: {
  452. ESP_LOGI(BT_RC_TG_TAG, "AVRC set absolute volume: %d%%", (int)rc->set_abs_vol.volume * 100 / 0x7f);
  453. volume_set_by_controller(rc->set_abs_vol.volume);
  454. volume_set_by_local_host(rc->set_abs_vol.volume);
  455. break;
  456. }
  457. /* when notification registered, this event comes */
  458. case ESP_AVRC_TG_REGISTER_NOTIFICATION_EVT: {
  459. ESP_LOGI(BT_RC_TG_TAG, "AVRC register event notification: %d, param: 0x%"PRIx32, rc->reg_ntf.event_id, rc->reg_ntf.event_parameter);
  460. if (rc->reg_ntf.event_id == ESP_AVRC_RN_VOLUME_CHANGE) {
  461. s_volume_notify = true;
  462. esp_avrc_rn_param_t rn_param;
  463. rn_param.volume = s_volume;
  464. esp_avrc_tg_send_rn_rsp(ESP_AVRC_RN_VOLUME_CHANGE, ESP_AVRC_RN_RSP_INTERIM, &rn_param);
  465. }
  466. break;
  467. }
  468. /* when feature of remote device indicated, this event comes */
  469. case ESP_AVRC_TG_REMOTE_FEATURES_EVT: {
  470. ESP_LOGI(BT_RC_TG_TAG, "AVRC remote features: %"PRIx32", CT features: %x", rc->rmt_feats.feat_mask, rc->rmt_feats.ct_feat_flag);
  471. break;
  472. }
  473. /* others */
  474. default:
  475. ESP_LOGE(BT_RC_TG_TAG, "%s unhandled event: %d", __func__, event);
  476. break;
  477. }
  478. }
  479. /********************************
  480. * EXTERNAL FUNCTION DEFINITIONS
  481. *******************************/
  482. void bt_app_a2d_cb(esp_a2d_cb_event_t event, esp_a2d_cb_param_t *param)
  483. {
  484. switch (event) {
  485. case ESP_A2D_CONNECTION_STATE_EVT:
  486. case ESP_A2D_AUDIO_STATE_EVT:
  487. case ESP_A2D_AUDIO_CFG_EVT:
  488. case ESP_A2D_PROF_STATE_EVT:
  489. case ESP_A2D_SNK_PSC_CFG_EVT:
  490. case ESP_A2D_SNK_SET_DELAY_VALUE_EVT:
  491. case ESP_A2D_SNK_GET_DELAY_VALUE_EVT: {
  492. bt_app_work_dispatch(bt_av_hdl_a2d_evt, event, param, sizeof(esp_a2d_cb_param_t), NULL);
  493. break;
  494. }
  495. default:
  496. ESP_LOGE(BT_AV_TAG, "Invalid A2DP event: %d", event);
  497. break;
  498. }
  499. }
  500. void bt_app_a2d_data_cb(const uint8_t *data, uint32_t len)
  501. {
  502. write_ringbuf(data, len);
  503. /* log the number every 100 packets */
  504. if (++s_pkt_cnt % 100 == 0) {
  505. ESP_LOGI(BT_AV_TAG, "Audio packet count: %"PRIu32, s_pkt_cnt);
  506. }
  507. }
  508. void bt_app_rc_ct_cb(esp_avrc_ct_cb_event_t event, esp_avrc_ct_cb_param_t *param)
  509. {
  510. switch (event) {
  511. case ESP_AVRC_CT_METADATA_RSP_EVT:
  512. bt_app_alloc_meta_buffer(param);
  513. /* fall through */
  514. case ESP_AVRC_CT_CONNECTION_STATE_EVT:
  515. case ESP_AVRC_CT_PASSTHROUGH_RSP_EVT:
  516. case ESP_AVRC_CT_CHANGE_NOTIFY_EVT:
  517. case ESP_AVRC_CT_REMOTE_FEATURES_EVT:
  518. case ESP_AVRC_CT_GET_RN_CAPABILITIES_RSP_EVT: {
  519. bt_app_work_dispatch(bt_av_hdl_avrc_ct_evt, event, param, sizeof(esp_avrc_ct_cb_param_t), NULL);
  520. break;
  521. }
  522. default:
  523. ESP_LOGE(BT_RC_CT_TAG, "Invalid AVRC event: %d", event);
  524. break;
  525. }
  526. }
  527. void bt_app_rc_tg_cb(esp_avrc_tg_cb_event_t event, esp_avrc_tg_cb_param_t *param)
  528. {
  529. switch (event) {
  530. case ESP_AVRC_TG_CONNECTION_STATE_EVT:
  531. case ESP_AVRC_TG_REMOTE_FEATURES_EVT:
  532. case ESP_AVRC_TG_PASSTHROUGH_CMD_EVT:
  533. case ESP_AVRC_TG_SET_ABSOLUTE_VOLUME_CMD_EVT:
  534. case ESP_AVRC_TG_REGISTER_NOTIFICATION_EVT:
  535. case ESP_AVRC_TG_SET_PLAYER_APP_VALUE_EVT:
  536. bt_app_work_dispatch(bt_av_hdl_avrc_tg_evt, event, param, sizeof(esp_avrc_tg_cb_param_t), NULL);
  537. break;
  538. default:
  539. ESP_LOGE(BT_RC_TG_TAG, "Invalid AVRC event: %d", event);
  540. break;
  541. }
  542. }