Shim.cpp 16 KB

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  1. /*
  2. * This software is released under the MIT License.
  3. * https://opensource.org/licenses/MIT
  4. *
  5. */
  6. #include <string>
  7. #include <streambuf>
  8. #include <Session.h>
  9. #include <PlainConnection.h>
  10. #include <memory>
  11. #include <vector>
  12. #include <iostream>
  13. #include <inttypes.h>
  14. #include <fstream>
  15. #include <stdarg.h>
  16. #include <ApResolve.h>
  17. #include "MDNSService.h"
  18. #include "SpircHandler.h"
  19. #include "LoginBlob.h"
  20. #include "CentralAudioBuffer.h"
  21. #include "Logger.h"
  22. #include "Utils.h"
  23. #include "esp_http_server.h"
  24. #include "cspot_private.h"
  25. #include "cspot_sink.h"
  26. #include "platform_config.h"
  27. #include "tools.h"
  28. static class cspotPlayer *player;
  29. /****************************************************************************************
  30. * Chunk manager class (task)
  31. */
  32. class chunkManager : public bell::Task {
  33. public:
  34. std::atomic<bool> isRunning = true;
  35. std::atomic<bool> isPaused = true;
  36. chunkManager(std::function<void()> trackHandler, std::function<void(const uint8_t*, size_t)> dataHandler);
  37. size_t writePCM(uint8_t* data, size_t bytes, std::string_view trackId, size_t sequence);
  38. void flush();
  39. void teardown();
  40. private:
  41. std::unique_ptr<bell::CentralAudioBuffer> centralAudioBuffer;
  42. std::function<void()> trackHandler;
  43. std::function<void(const uint8_t*, size_t)> dataHandler;
  44. std::mutex runningMutex;
  45. void runTask() override;
  46. };
  47. chunkManager::chunkManager(std::function<void()> trackHandler, std::function<void(const uint8_t*, size_t)> dataHandler)
  48. : bell::Task("chunker", 4 * 1024, 0, 0) {
  49. this->centralAudioBuffer = std::make_unique<bell::CentralAudioBuffer>(32);
  50. this->trackHandler = trackHandler;
  51. this->dataHandler = dataHandler;
  52. startTask();
  53. }
  54. size_t chunkManager::writePCM(uint8_t* data, size_t bytes, std::string_view trackId, size_t sequence) {
  55. return centralAudioBuffer->writePCM(data, bytes, sequence);
  56. }
  57. void chunkManager::teardown() {
  58. isRunning = false;
  59. std::scoped_lock lock(runningMutex);
  60. }
  61. void chunkManager::flush() {
  62. centralAudioBuffer->clearBuffer();
  63. }
  64. void chunkManager::runTask() {
  65. std::scoped_lock lock(runningMutex);
  66. size_t lastHash = 0;
  67. while (isRunning) {
  68. if (isPaused) {
  69. BELL_SLEEP_MS(100);
  70. continue;
  71. }
  72. auto chunk = centralAudioBuffer->readChunk();
  73. if (!chunk || chunk->pcmSize == 0) {
  74. BELL_SLEEP_MS(50);
  75. continue;
  76. }
  77. // receiving first chunk of new track from Spotify server
  78. if (lastHash != chunk->trackHash) {
  79. CSPOT_LOG(info, "hash update %x => %x", lastHash, chunk->trackHash);
  80. lastHash = chunk->trackHash;
  81. trackHandler();
  82. }
  83. dataHandler(chunk->pcmData, chunk->pcmSize);
  84. }
  85. }
  86. /****************************************************************************************
  87. * Player's main class & task
  88. */
  89. class cspotPlayer : public bell::Task {
  90. private:
  91. std::string name;
  92. bell::WrappedSemaphore clientConnected;
  93. int startOffset, volume = 0, bitrate = 160;
  94. httpd_handle_t serverHandle;
  95. int serverPort;
  96. cspot_cmd_cb_t cmdHandler;
  97. cspot_data_cb_t dataHandler;
  98. std::shared_ptr<cspot::LoginBlob> blob;
  99. std::unique_ptr<cspot::SpircHandler> spirc;
  100. std::unique_ptr<chunkManager> chunker;
  101. void eventHandler(std::unique_ptr<cspot::SpircHandler::Event> event);
  102. void trackHandler(void);
  103. void runTask();
  104. public:
  105. typedef enum {TRACK_INIT, TRACK_NOTIFY, TRACK_STREAM, TRACK_END} TrackStatus;
  106. std::atomic<TrackStatus> trackStatus = TRACK_INIT;
  107. cspotPlayer(const char*, httpd_handle_t, int, cspot_cmd_cb_t, cspot_data_cb_t);
  108. esp_err_t handleGET(httpd_req_t *request);
  109. esp_err_t handlePOST(httpd_req_t *request);
  110. void command(cspot_event_t event);
  111. };
  112. cspotPlayer::cspotPlayer(const char* name, httpd_handle_t server, int port, cspot_cmd_cb_t cmdHandler, cspot_data_cb_t dataHandler) :
  113. bell::Task("playerInstance", 32 * 1024, 0, 0),
  114. serverHandle(server), serverPort(port),
  115. cmdHandler(cmdHandler), dataHandler(dataHandler) {
  116. cJSON *item, *config = config_alloc_get_cjson("cspot_config");
  117. if ((item = cJSON_GetObjectItem(config, "volume")) != NULL) volume = item->valueint;
  118. if ((item = cJSON_GetObjectItem(config, "bitrate")) != NULL) bitrate = item->valueint;
  119. if ((item = cJSON_GetObjectItem(config, "deviceName") ) != NULL) this->name = item->valuestring;
  120. else this->name = name;
  121. cJSON_Delete(config);
  122. if (bitrate != 96 && bitrate != 160 && bitrate != 320) bitrate = 160;
  123. }
  124. extern "C" {
  125. static esp_err_t handleGET(httpd_req_t *request) {
  126. return player->handleGET(request);
  127. }
  128. static esp_err_t handlePOST(httpd_req_t *request) {
  129. return player->handlePOST(request);
  130. }
  131. }
  132. esp_err_t cspotPlayer::handleGET(httpd_req_t *request) {
  133. std::string body = this->blob->buildZeroconfInfo();
  134. if (body.size() == 0) {
  135. CSPOT_LOG(info, "cspot empty blob's body on GET");
  136. return ESP_ERR_HTTPD_INVALID_REQ;
  137. }
  138. httpd_resp_set_hdr(request, "Content-type", "application/json");
  139. httpd_resp_send(request, body.c_str(), body.size());
  140. return ESP_OK;
  141. }
  142. esp_err_t cspotPlayer::handlePOST(httpd_req_t *request) {
  143. cJSON* response= cJSON_CreateObject();
  144. //see https://developer.spotify.com/documentation/commercial-hardware/implementation/guides/zeroconf
  145. if (cmdHandler(CSPOT_BUSY)) {
  146. cJSON_AddNumberToObject(response, "status", 101);
  147. cJSON_AddStringToObject(response, "statusString", "OK");
  148. cJSON_AddNumberToObject(response, "spotifyError", 0);
  149. // get body if any (add '\0' at the end if used as string)
  150. if (request->content_len) {
  151. char* body = (char*) calloc(1, request->content_len + 1);
  152. int size = httpd_req_recv(request, body, request->content_len);
  153. // I know this is very crude and unsafe...
  154. url_decode(body);
  155. char *key = strtok(body, "&");
  156. std::map<std::string, std::string> queryMap;
  157. while (key) {
  158. char *value = strchr(key, '=');
  159. *value++ = '\0';
  160. queryMap[key] = value;
  161. key = strtok(NULL, "&");
  162. };
  163. free(body);
  164. // Pass user's credentials to the blob and give the token
  165. blob->loadZeroconfQuery(queryMap);
  166. clientConnected.give();
  167. }
  168. } else {
  169. cJSON_AddNumberToObject(response, "status", 202);
  170. cJSON_AddStringToObject(response, "statusString", "ERROR-LOGIN-FAILED");
  171. cJSON_AddNumberToObject(response, "spotifyError", 0);
  172. CSPOT_LOG(info, "sink is busy, can't accept request");
  173. }
  174. char *responseStr = cJSON_PrintUnformatted(response);
  175. cJSON_Delete(response);
  176. httpd_resp_set_hdr(request, "Content-type", "application/json");
  177. esp_err_t rc = httpd_resp_send(request, responseStr, strlen(responseStr));
  178. free(responseStr);
  179. return rc;
  180. }
  181. void cspotPlayer::eventHandler(std::unique_ptr<cspot::SpircHandler::Event> event) {
  182. switch (event->eventType) {
  183. case cspot::SpircHandler::EventType::PLAYBACK_START: {
  184. chunker->flush();
  185. // we are not playing anymore
  186. trackStatus = TRACK_INIT;
  187. // memorize position for when track's beginning will be detected
  188. startOffset = std::get<int>(event->data);
  189. // Spotify servers do not send volume at connection
  190. spirc->setRemoteVolume(volume);
  191. cmdHandler(CSPOT_START, 44100);
  192. CSPOT_LOG(info, "(re)start playing");
  193. break;
  194. }
  195. case cspot::SpircHandler::EventType::PLAY_PAUSE: {
  196. bool pause = std::get<bool>(event->data);
  197. cmdHandler(pause ? CSPOT_PAUSE : CSPOT_PLAY);
  198. chunker->isPaused = pause;
  199. break;
  200. }
  201. case cspot::SpircHandler::EventType::TRACK_INFO: {
  202. auto trackInfo = std::get<cspot::CDNTrackStream::TrackInfo>(event->data);
  203. cmdHandler(CSPOT_TRACK_INFO, trackInfo.duration, startOffset, trackInfo.artist.c_str(),
  204. trackInfo.album.c_str(), trackInfo.name.c_str(), trackInfo.imageUrl.c_str());
  205. spirc->updatePositionMs(startOffset);
  206. startOffset = 0;
  207. break;
  208. }
  209. case cspot::SpircHandler::EventType::NEXT:
  210. case cspot::SpircHandler::EventType::PREV:
  211. case cspot::SpircHandler::EventType::FLUSH: {
  212. // FLUSH is sent when there is no next, just clean everything
  213. chunker->flush();
  214. cmdHandler(CSPOT_FLUSH);
  215. break;
  216. }
  217. case cspot::SpircHandler::EventType::DISC:
  218. chunker->flush();
  219. cmdHandler(CSPOT_DISC);
  220. chunker->teardown();
  221. break;
  222. case cspot::SpircHandler::EventType::SEEK: {
  223. chunker->flush();
  224. cmdHandler(CSPOT_SEEK, std::get<int>(event->data));
  225. break;
  226. }
  227. case cspot::SpircHandler::EventType::DEPLETED:
  228. trackStatus = TRACK_END;
  229. CSPOT_LOG(info, "playlist ended, no track left to play");
  230. break;
  231. case cspot::SpircHandler::EventType::VOLUME:
  232. volume = std::get<int>(event->data);
  233. cmdHandler(CSPOT_VOLUME, volume);
  234. break;
  235. default:
  236. break;
  237. }
  238. }
  239. void cspotPlayer::trackHandler(void) {
  240. // this is just informative
  241. auto trackInfo = spirc->getTrackPlayer()->getCurrentTrackInfo();
  242. uint32_t remains;
  243. cmdHandler(CSPOT_QUERY_REMAINING, &remains);
  244. CSPOT_LOG(info, "next track <%s> will play in %d ms", trackInfo.name.c_str(), remains);
  245. // inform sink of track beginning
  246. trackStatus = TRACK_NOTIFY;
  247. cmdHandler(CSPOT_TRACK_MARK);
  248. }
  249. void cspotPlayer::command(cspot_event_t event) {
  250. if (!spirc) return;
  251. // switch...case consume a ton of extra .rodata
  252. switch (event) {
  253. // nextSong/previousSong come back through cspot::event as a FLUSH
  254. case CSPOT_PREV:
  255. spirc->previousSong();
  256. break;
  257. case CSPOT_NEXT:
  258. spirc->nextSong();
  259. break;
  260. // setPause comes back through cspot::event with PLAY/PAUSE
  261. case CSPOT_TOGGLE:
  262. spirc->setPause(!chunker->isPaused);
  263. break;
  264. case CSPOT_STOP:
  265. case CSPOT_PAUSE:
  266. spirc->setPause(true);
  267. break;
  268. case CSPOT_PLAY:
  269. spirc->setPause(false);
  270. break;
  271. // calling spirc->disconnect() might have been logical but it does not
  272. // generate any cspot::event, so we need to manually force exiting player
  273. // loop through chunker which will eventually do the disconnect
  274. case CSPOT_DISC:
  275. cmdHandler(CSPOT_DISC);
  276. chunker->teardown();
  277. break;
  278. // spirc->setRemoteVolume does not generate a cspot::event so call cmdHandler
  279. case CSPOT_VOLUME_UP:
  280. volume += (UINT16_MAX / 50);
  281. volume = std::min(volume, UINT16_MAX);
  282. cmdHandler(CSPOT_VOLUME, volume);
  283. spirc->setRemoteVolume(volume);
  284. break;
  285. case CSPOT_VOLUME_DOWN:
  286. volume -= (UINT16_MAX / 50);
  287. volume = std::max(volume, 0);
  288. cmdHandler(CSPOT_VOLUME, volume);
  289. spirc->setRemoteVolume(volume);
  290. break;
  291. default:
  292. break;
  293. }
  294. }
  295. void cspotPlayer::runTask() {
  296. httpd_uri_t request = {
  297. .uri = "/spotify_info",
  298. .method = HTTP_GET,
  299. .handler = ::handleGET,
  300. .user_ctx = NULL,
  301. };
  302. // register GET and POST handler for built-in server
  303. httpd_register_uri_handler(serverHandle, &request);
  304. request.method = HTTP_POST;
  305. request.handler = ::handlePOST;
  306. httpd_register_uri_handler(serverHandle, &request);
  307. // construct blob for that player
  308. blob = std::make_unique<cspot::LoginBlob>(name);
  309. // Register mdns service, for spotify to find us
  310. bell::MDNSService::registerService( blob->getDeviceName(), "_spotify-connect", "_tcp", "", serverPort,
  311. { {"VERSION", "1.0"}, {"CPath", "/spotify_info"}, {"Stack", "SP"} });
  312. static int count = 0;
  313. // gone with the wind...
  314. while (1) {
  315. clientConnected.wait();
  316. CSPOT_LOG(info, "Spotify client connected for %s", name.c_str());
  317. auto ctx = cspot::Context::createFromBlob(blob);
  318. if (bitrate == 320) ctx->config.audioFormat = AudioFormat_OGG_VORBIS_320;
  319. else if (bitrate == 96) ctx->config.audioFormat = AudioFormat_OGG_VORBIS_96;
  320. else ctx->config.audioFormat = AudioFormat_OGG_VORBIS_160;
  321. ctx->session->connectWithRandomAp();
  322. auto token = ctx->session->authenticate(blob);
  323. // Auth successful
  324. if (token.size() > 0) {
  325. spirc = std::make_unique<cspot::SpircHandler>(ctx);
  326. // Create a player, pass the track handler
  327. chunker = std::make_unique<chunkManager>(
  328. [this](void) {
  329. return trackHandler();
  330. },
  331. [this](const uint8_t* data, size_t bytes) {
  332. return dataHandler(data, bytes);
  333. });
  334. // set call back to calculate a hash on trackId
  335. spirc->getTrackPlayer()->setDataCallback(
  336. [this](uint8_t* data, size_t bytes, std::string_view trackId, size_t sequence) {
  337. return chunker->writePCM(data, bytes, trackId, sequence);
  338. });
  339. // set event (PLAY, VOLUME...) handler
  340. spirc->setEventHandler(
  341. [this](std::unique_ptr<cspot::SpircHandler::Event> event) {
  342. eventHandler(std::move(event));
  343. });
  344. // Start handling mercury messages
  345. ctx->session->startTask();
  346. // set volume at connection
  347. cmdHandler(CSPOT_VOLUME, volume);
  348. // exit when player has stopped (received a DISC)
  349. while (chunker->isRunning) {
  350. ctx->session->handlePacket();
  351. // low-accuracy polling events
  352. if (trackStatus == TRACK_NOTIFY) {
  353. // inform Spotify that next track has started (don't need to be super accurate)
  354. uint32_t started;
  355. cmdHandler(CSPOT_QUERY_STARTED, &started);
  356. if (started) {
  357. CSPOT_LOG(info, "next track's audio has reached DAC");
  358. spirc->notifyAudioReachedPlayback();
  359. trackStatus = TRACK_STREAM;
  360. }
  361. } else if (trackStatus == TRACK_END) {
  362. // wait for end of last track
  363. uint32_t remains;
  364. cmdHandler(CSPOT_QUERY_REMAINING, &remains);
  365. if (!remains) {
  366. CSPOT_LOG(info, "last track finished");
  367. trackStatus = TRACK_INIT;
  368. cmdHandler(CSPOT_STOP);
  369. spirc->setPause(true);
  370. }
  371. }
  372. }
  373. spirc->disconnect();
  374. spirc.reset();
  375. CSPOT_LOG(info, "disconnecting player %s", name.c_str());
  376. }
  377. // we want to release memory ASAP and for sure
  378. ctx.reset();
  379. token.clear();
  380. // update volume when we disconnect
  381. cJSON *config = config_alloc_get_cjson("cspot_config");
  382. cJSON_DeleteItemFromObject(config, "volume");
  383. cJSON_AddNumberToObject(config, "volume", volume);
  384. config_set_cjson_str_and_free("cspot_config", config);
  385. }
  386. }
  387. /****************************************************************************************
  388. * API to create and start a cspot instance
  389. */
  390. struct cspot_s* cspot_create(const char *name, httpd_handle_t server, int port, cspot_cmd_cb_t cmd_cb, cspot_data_cb_t data_cb) {
  391. bell::setDefaultLogger();
  392. player = new cspotPlayer(name, server, port, cmd_cb, data_cb);
  393. player->startTask();
  394. return (cspot_s*) player;
  395. }
  396. /****************************************************************************************
  397. * Commands sent by local buttons/actions
  398. */
  399. bool cspot_cmd(struct cspot_s* ctx, cspot_event_t event, void *param) {
  400. player->command(event);
  401. return true;
  402. }