decode_external.c 10 KB

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  1. /*
  2. * Squeezelite for esp32
  3. *
  4. * (c) Sebastien 2019
  5. * Philippe G. 2019, philippe_44@outlook.com
  6. *
  7. * This software is released under the MIT License.
  8. * https://opensource.org/licenses/MIT
  9. *
  10. */
  11. #include "platform_config.h"
  12. #include "squeezelite.h"
  13. #include <math.h>
  14. #if CONFIG_BT_SINK
  15. #include "bt_app_sink.h"
  16. static bool enable_bt_sink;
  17. #endif
  18. #if CONFIG_AIRPLAY_SINK
  19. #include "raop_sink.h"
  20. static bool enable_airplay;
  21. #define RAOP_OUTPUT_SIZE (((RAOP_SAMPLE_RATE * BYTES_PER_FRAME * 2 * 120) / 100) & ~BYTES_PER_FRAME)
  22. #define SYNC_WIN_SLOW 32
  23. #define SYNC_WIN_CHECK 8
  24. #define SYNC_WIN_FAST 2
  25. static raop_event_t raop_state;
  26. static EXT_RAM_ATTR struct {
  27. bool enabled;
  28. int sum, count, win, errors[SYNC_WIN_SLOW];
  29. s32_t len;
  30. u32_t start_time, playtime;
  31. } raop_sync;
  32. #endif
  33. static bool abort_sink ;
  34. #define LOCK_O mutex_lock(outputbuf->mutex)
  35. #define UNLOCK_O mutex_unlock(outputbuf->mutex)
  36. #define LOCK_D mutex_lock(decode.mutex);
  37. #define UNLOCK_D mutex_unlock(decode.mutex);
  38. enum { DECODE_BT = 1, DECODE_RAOP};
  39. extern struct outputstate output;
  40. extern struct decodestate decode;
  41. extern struct buffer *outputbuf;
  42. // this is the only system-wide loglevel variable
  43. extern log_level loglevel;
  44. /****************************************************************************************
  45. * Common sink data handler
  46. */
  47. static void sink_data_handler(const uint8_t *data, uint32_t len)
  48. {
  49. size_t bytes, space;
  50. int wait = 5;
  51. // would be better to lock output, but really, it does not matter
  52. if (!output.external) {
  53. LOG_SDEBUG("Cannot use external sink while LMS is controlling player");
  54. return;
  55. }
  56. LOCK_O;
  57. abort_sink = false;
  58. // there will always be room at some point
  59. while (len && wait && !abort_sink) {
  60. bytes = min(_buf_space(outputbuf), _buf_cont_write(outputbuf)) / (BYTES_PER_FRAME / 4);
  61. bytes = min(len, bytes);
  62. #if BYTES_PER_FRAME == 4
  63. memcpy(outputbuf->writep, data, bytes);
  64. #else
  65. {
  66. s16_t *iptr = (s16_t*) data;
  67. ISAMPLE_T *optr = (ISAMPLE_T *) outputbuf->writep;
  68. size_t n = bytes / 2;
  69. while (n--) *optr++ = *iptr++ << 16;
  70. }
  71. #endif
  72. _buf_inc_writep(outputbuf, bytes * BYTES_PER_FRAME / 4);
  73. space = _buf_space(outputbuf);
  74. len -= bytes;
  75. data += bytes;
  76. // allow i2s to empty the buffer if needed
  77. if (len && !space) {
  78. wait--;
  79. UNLOCK_O; usleep(50000); LOCK_O;
  80. }
  81. }
  82. UNLOCK_O;
  83. if (!wait) {
  84. LOG_WARN("Waited too long, dropping frames");
  85. }
  86. }
  87. /****************************************************************************************
  88. * BT sink command handler
  89. */
  90. #if CONFIG_BT_SINK
  91. static bool bt_sink_cmd_handler(bt_sink_cmd_t cmd, va_list args)
  92. {
  93. // don't LOCK_O as there is always a chance that LMS takes control later anyway
  94. if (output.external != DECODE_BT && output.state > OUTPUT_STOPPED) {
  95. LOG_WARN("Cannot use BT sink while LMS/AirPlay are controlling player");
  96. return false;
  97. }
  98. LOCK_D;
  99. if (cmd != BT_SINK_VOLUME) LOCK_O;
  100. switch(cmd) {
  101. case BT_SINK_AUDIO_STARTED:
  102. _buf_flush(outputbuf);
  103. output.next_sample_rate = output.current_sample_rate = va_arg(args, u32_t);
  104. output.external = DECODE_BT;
  105. output.state = OUTPUT_STOPPED;
  106. output.frames_played = 0;
  107. if (decode.state != DECODE_STOPPED) decode.state = DECODE_ERROR;
  108. LOG_INFO("BT sink started");
  109. break;
  110. case BT_SINK_AUDIO_STOPPED:
  111. if (output.external == DECODE_BT) {
  112. if (output.state > OUTPUT_STOPPED) output.state = OUTPUT_STOPPED;
  113. output.stop_time = gettime_ms();
  114. LOG_INFO("BT sink stopped");
  115. }
  116. break;
  117. case BT_SINK_PLAY:
  118. output.state = OUTPUT_RUNNING;
  119. LOG_INFO("BT play");
  120. break;
  121. case BT_SINK_STOP:
  122. _buf_flush(outputbuf);
  123. output.state = OUTPUT_STOPPED;
  124. output.stop_time = gettime_ms();
  125. abort_sink = true;
  126. LOG_INFO("BT stop");
  127. break;
  128. case BT_SINK_PAUSE:
  129. output.stop_time = gettime_ms();
  130. LOG_INFO("BT pause, just silence");
  131. break;
  132. case BT_SINK_RATE:
  133. output.next_sample_rate = output.current_sample_rate = va_arg(args, u32_t);
  134. LOG_INFO("Setting BT sample rate %u", output.next_sample_rate);
  135. break;
  136. case BT_SINK_VOLUME: {
  137. u32_t volume = va_arg(args, u32_t);
  138. volume = 65536 * powf(volume / 128.0f, 3);
  139. set_volume(volume, volume);
  140. break;
  141. default:
  142. break;
  143. }
  144. }
  145. if (cmd != BT_SINK_VOLUME) UNLOCK_O;
  146. UNLOCK_D;
  147. return true;
  148. }
  149. #endif
  150. /****************************************************************************************
  151. * raop sink data handler
  152. */
  153. #if CONFIG_AIRPLAY_SINK
  154. static void raop_sink_data_handler(const uint8_t *data, uint32_t len, u32_t playtime) {
  155. raop_sync.playtime = playtime;
  156. raop_sync.len = len;
  157. sink_data_handler(data, len);
  158. }
  159. /****************************************************************************************
  160. * AirPlay sink command handler
  161. */
  162. static bool raop_sink_cmd_handler(raop_event_t event, va_list args)
  163. {
  164. // don't LOCK_O as there is always a chance that LMS takes control later anyway
  165. if (output.external != DECODE_RAOP && output.state > OUTPUT_STOPPED) {
  166. LOG_WARN("Cannot use Airplay sink while LMS/BT are controlling player");
  167. return false;
  168. }
  169. LOCK_D;
  170. if (event != RAOP_VOLUME) LOCK_O;
  171. // this is async, so player might have been deleted
  172. switch (event) {
  173. case RAOP_TIMING: {
  174. if (!raop_sync.enabled || output.state != OUTPUT_RUNNING || output.frames_played_dmp < output.device_frames) break;
  175. u32_t ms, now = gettime_ms();
  176. u32_t level = _buf_used(outputbuf);
  177. int error;
  178. // in how many ms will the most recent block play
  179. ms = (((s32_t)(level - raop_sync.len) / BYTES_PER_FRAME + output.device_frames + output.frames_in_process) * 10) / (RAOP_SAMPLE_RATE / 100) - (s32_t) (now - output.updated);
  180. // when outputbuf is empty, it means we have a network black-out or something
  181. error = level ? (raop_sync.playtime - now) - ms : 0;
  182. if (loglevel == lDEBUG || !level) {
  183. LOG_INFO("head local:%d, remote:%d (delta:%d)", ms, raop_sync.playtime - now, error);
  184. LOG_INFO("obuf:%u, sync_len:%u, devframes:%u, inproc:%u", _buf_used(outputbuf), raop_sync.len, output.device_frames, output.frames_in_process);
  185. }
  186. // calculate sum, error and update sliding window
  187. raop_sync.errors[raop_sync.count++ % raop_sync.win] = error;
  188. raop_sync.sum += error;
  189. error = raop_sync.sum / min(raop_sync.count, raop_sync.win);
  190. // wait till we have enough data or there is a strong deviation
  191. if ((raop_sync.count >= raop_sync.win && abs(error) > 10) || (raop_sync.count >= SYNC_WIN_CHECK && abs(error) > 100)) {
  192. if (error < 0) {
  193. output.skip_frames = -(error * RAOP_SAMPLE_RATE) / 1000;
  194. output.state = OUTPUT_SKIP_FRAMES;
  195. LOG_INFO("skipping %u frames (count:%d)", output.skip_frames, raop_sync.count);
  196. } else {
  197. output.pause_frames = (error * RAOP_SAMPLE_RATE) / 1000;
  198. output.state = OUTPUT_PAUSE_FRAMES;
  199. LOG_INFO("pausing for %u frames (count: %d)", output.pause_frames, raop_sync.count);
  200. }
  201. raop_sync.sum = raop_sync.count = 0;
  202. memset(raop_sync.errors, 0, sizeof(raop_sync.errors));
  203. }
  204. // move to normal mode if possible
  205. if (raop_sync.win == 1) {
  206. raop_sync.win = SYNC_WIN_FAST;
  207. LOG_INFO("backend played %u, desired %u, (delta:%d)", ms, raop_sync.playtime - now, error);
  208. } else if (raop_sync.win == SYNC_WIN_FAST && raop_sync.count >= SYNC_WIN_FAST && abs(error) < 10) {
  209. raop_sync.win = SYNC_WIN_SLOW;
  210. LOG_INFO("switching to slow sync mode %u", raop_sync.win);
  211. }
  212. break;
  213. }
  214. case RAOP_SETUP:
  215. // we need a fair bit of space for RTP process
  216. _buf_resize(outputbuf, RAOP_OUTPUT_SIZE);
  217. output.frames_played = 0;
  218. output.external = DECODE_RAOP;
  219. output.state = OUTPUT_STOPPED;
  220. if (decode.state != DECODE_STOPPED) decode.state = DECODE_ERROR;
  221. LOG_INFO("resizing buffer %u", outputbuf->size);
  222. break;
  223. case RAOP_STREAM:
  224. LOG_INFO("Stream", NULL);
  225. raop_state = event;
  226. raop_sync.win = 1;
  227. raop_sync.sum = raop_sync.count = 0;
  228. memset(raop_sync.errors, 0, sizeof(raop_sync.errors));
  229. raop_sync.enabled = !strcasestr(output.device, "BT");
  230. output.next_sample_rate = output.current_sample_rate = RAOP_SAMPLE_RATE;
  231. break;
  232. case RAOP_STOP:
  233. case RAOP_FLUSH:
  234. if (event == RAOP_FLUSH) { LOG_INFO("Flush", NULL); }
  235. else { LOG_INFO("Stop", NULL); }
  236. raop_state = event;
  237. _buf_flush(outputbuf);
  238. if (output.state > OUTPUT_STOPPED) output.state = OUTPUT_STOPPED;
  239. abort_sink = true;
  240. output.frames_played = 0;
  241. output.stop_time = gettime_ms();
  242. break;
  243. case RAOP_PLAY: {
  244. LOG_INFO("Play", NULL);
  245. if (raop_state != RAOP_PLAY) {
  246. output.state = OUTPUT_START_AT;
  247. output.start_at = va_arg(args, u32_t);
  248. raop_sync.start_time = output.start_at;
  249. LOG_INFO("Starting at %u (in %d ms)", output.start_at, output.start_at - gettime_ms());
  250. }
  251. raop_state = event;
  252. break;
  253. }
  254. case RAOP_VOLUME: {
  255. float volume = va_arg(args, double);
  256. LOG_INFO("Volume[0..1] %0.4f", volume);
  257. volume = 65536 * powf(volume, 3);
  258. set_volume(volume, volume);
  259. break;
  260. }
  261. default:
  262. break;
  263. }
  264. if (event != RAOP_VOLUME) UNLOCK_O;
  265. UNLOCK_D;
  266. return true;
  267. }
  268. #endif
  269. /****************************************************************************************
  270. * We provide the generic codec register option
  271. */
  272. void register_external(void) {
  273. char *p;
  274. #if CONFIG_BT_SINK
  275. if ((p = config_alloc_get(NVS_TYPE_STR, "enable_bt_sink")) != NULL) {
  276. enable_bt_sink = strcmp(p,"1") == 0 || strcasecmp(p,"y") == 0;
  277. free(p);
  278. }
  279. #endif
  280. #if CONFIG_AIRPLAY_SINK
  281. if ((p = config_alloc_get(NVS_TYPE_STR, "enable_airplay")) != NULL) {
  282. enable_airplay = strcmp(p,"1") == 0 || strcasecmp(p,"y") == 0;
  283. free(p);
  284. }
  285. #endif
  286. #if CONFIG_BT_SINK
  287. if (!strcasestr(output.device, "BT ") ) {
  288. if(enable_bt_sink){
  289. bt_sink_init(bt_sink_cmd_handler, sink_data_handler);
  290. LOG_INFO("Initializing BT sink");
  291. }
  292. } else {
  293. LOG_WARN("Cannot be a BT sink and source");
  294. }
  295. #endif
  296. #if CONFIG_AIRPLAY_SINK
  297. if (enable_airplay){
  298. raop_sink_init(raop_sink_cmd_handler, raop_sink_data_handler);
  299. LOG_INFO("Initializing AirPlay sink");
  300. }
  301. #endif
  302. }
  303. void deregister_external(void) {
  304. #if CONFIG_BT_SINK
  305. if (!strcasestr(output.device, "BT ") && enable_bt_sink) {
  306. LOG_INFO("Stopping BT sink");
  307. bt_sink_deinit();
  308. }
  309. #endif
  310. #if CONFIG_AIRPLAY_SINK
  311. if (enable_airplay){
  312. LOG_INFO("Stopping AirPlay sink");
  313. raop_sink_deinit();
  314. }
  315. #endif
  316. }
  317. void decode_restore(int external) {
  318. switch (external) {
  319. #if CONFIG_BT_SINK
  320. case DECODE_BT:
  321. bt_disconnect();
  322. break;
  323. #endif
  324. #if CONFIG_AIRPLAY_SINK
  325. case DECODE_RAOP:
  326. raop_disconnect();
  327. raop_state = RAOP_STOP;
  328. break;
  329. #endif
  330. }
  331. }