slimproto.c 26 KB

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  1. /*
  2. * Squeezelite - lightweight headless squeezebox emulator
  3. *
  4. * (c) Adrian Smith 2012-2015, triode1@btinternet.com
  5. * Ralph Irving 2015-2017, ralph_irving@hotmail.com
  6. *
  7. * This program is free software: you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License as published by
  9. * the Free Software Foundation, either version 3 of the License, or
  10. * (at your option) any later version.
  11. *
  12. * This program is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. * GNU General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  19. *
  20. * Additions (c) Paul Hermann, 2015-2017 under the same license terms
  21. * -Control of Raspberry pi GPIO for amplifier power
  22. * -Launch script on power status change from LMS
  23. */
  24. #include "squeezelite.h"
  25. #include "slimproto.h"
  26. static log_level loglevel;
  27. #define SQUEEZENETWORK "mysqueezebox.com:3483"
  28. #define PORT 3483
  29. #define MAXBUF 4096
  30. #if SL_LITTLE_ENDIAN
  31. #define LOCAL_PLAYER_IP 0x0100007f // 127.0.0.1
  32. #define LOCAL_PLAYER_PORT 0x9b0d // 3483
  33. #else
  34. #define LOCAL_PLAYER_IP 0x7f000001 // 127.0.0.1
  35. #define LOCAL_PLAYER_PORT 0x0d9b // 3483
  36. #endif
  37. static sockfd sock = -1;
  38. static in_addr_t slimproto_ip = 0;
  39. extern struct buffer *streambuf;
  40. extern struct buffer *outputbuf;
  41. extern struct streamstate stream;
  42. extern struct outputstate output;
  43. extern struct decodestate decode;
  44. extern struct codec *codecs[];
  45. #if IR
  46. extern struct irstate ir;
  47. #endif
  48. event_event wake_e;
  49. #define LOCK_S mutex_lock(streambuf->mutex)
  50. #define UNLOCK_S mutex_unlock(streambuf->mutex)
  51. #define LOCK_O mutex_lock(outputbuf->mutex)
  52. #define UNLOCK_O mutex_unlock(outputbuf->mutex)
  53. #define LOCK_D mutex_lock(decode.mutex)
  54. #define UNLOCK_D mutex_unlock(decode.mutex)
  55. #if IR
  56. #define LOCK_I mutex_lock(ir.mutex)
  57. #define UNLOCK_I mutex_unlock(ir.mutex)
  58. #endif
  59. static struct {
  60. u32_t updated;
  61. u32_t stream_start;
  62. u32_t stream_full;
  63. u32_t stream_size;
  64. u64_t stream_bytes;
  65. u32_t output_full;
  66. u32_t output_size;
  67. u32_t frames_played;
  68. u32_t device_frames;
  69. u32_t current_sample_rate;
  70. u32_t last;
  71. stream_state stream_state;
  72. } status;
  73. int autostart;
  74. bool sentSTMu, sentSTMo, sentSTMl;
  75. u32_t new_server;
  76. char *new_server_cap;
  77. #define PLAYER_NAME_LEN 64
  78. char player_name[PLAYER_NAME_LEN + 1] = "";
  79. const char *name_file = NULL;
  80. void send_packet(u8_t *packet, size_t len) {
  81. u8_t *ptr = packet;
  82. unsigned try = 0;
  83. ssize_t n;
  84. while (len) {
  85. n = send(sock, ptr, len, MSG_NOSIGNAL);
  86. if (n <= 0) {
  87. if (n < 0 && last_error() == ERROR_WOULDBLOCK && try < 10) {
  88. LOG_DEBUG("retrying (%d) writing to socket", ++try);
  89. usleep(1000);
  90. continue;
  91. }
  92. LOG_INFO("failed writing to socket: %s", strerror(last_error()));
  93. return;
  94. }
  95. ptr += n;
  96. len -= n;
  97. }
  98. }
  99. static void sendHELO(bool reconnect, const char *fixed_cap, const char *var_cap, u8_t mac[6]) {
  100. #ifndef BASE_CAP
  101. #define BASE_CAP "Model=squeezelite,AccuratePlayPoints=1,HasDigitalOut=1,HasPolarityInversion=1,Firmware=" VERSION
  102. #endif
  103. #define SSL_CAP "CanHTTPS=1"
  104. const char *base_cap;
  105. struct HELO_packet pkt;
  106. #if USE_SSL
  107. #if !LINKALL
  108. if (ssl_loaded) base_cap = SSL_CAP "," BASE_CAP;
  109. else base_cap = BASE_CAP;
  110. #endif
  111. base_cap = SSL_CAP "," BASE_CAP;
  112. #else
  113. base_cap = BASE_CAP;
  114. #endif
  115. memset(&pkt, 0, sizeof(pkt));
  116. memcpy(&pkt.opcode, "HELO", 4);
  117. pkt.length = htonl(sizeof(struct HELO_packet) - 8 + strlen(base_cap) + strlen(fixed_cap) + strlen(var_cap));
  118. pkt.deviceid = 12; // squeezeplay
  119. pkt.revision = 0;
  120. packn(&pkt.wlan_channellist, reconnect ? 0x4000 : 0x0000);
  121. packN(&pkt.bytes_received_H, (u64_t)status.stream_bytes >> 32);
  122. packN(&pkt.bytes_received_L, (u64_t)status.stream_bytes & 0xffffffff);
  123. memcpy(pkt.mac, mac, 6);
  124. LOG_INFO("mac: %02x:%02x:%02x:%02x:%02x:%02x", pkt.mac[0], pkt.mac[1], pkt.mac[2], pkt.mac[3], pkt.mac[4], pkt.mac[5]);
  125. LOG_INFO("cap: %s%s%s", base_cap, fixed_cap, var_cap);
  126. send_packet((u8_t *)&pkt, sizeof(pkt));
  127. send_packet((u8_t *)base_cap, strlen(base_cap));
  128. send_packet((u8_t *)fixed_cap, strlen(fixed_cap));
  129. send_packet((u8_t *)var_cap, strlen(var_cap));
  130. }
  131. static void sendSTAT(const char *event, u32_t server_timestamp) {
  132. struct STAT_packet pkt;
  133. u32_t now = gettime_ms();
  134. u32_t ms_played;
  135. if (status.current_sample_rate && status.frames_played && status.frames_played > status.device_frames) {
  136. ms_played = (u32_t)(((u64_t)(status.frames_played - status.device_frames) * (u64_t)1000) / (u64_t)status.current_sample_rate);
  137. if (now > status.updated) ms_played += (now - status.updated);
  138. LOG_SDEBUG("ms_played: %u (frames_played: %u device_frames: %u)", ms_played, status.frames_played, status.device_frames);
  139. } else if (status.frames_played && now > status.stream_start) {
  140. ms_played = now - status.stream_start;
  141. LOG_SDEBUG("ms_played: %u using elapsed time (frames_played: %u device_frames: %u)", ms_played, status.frames_played, status.device_frames);
  142. } else {
  143. LOG_SDEBUG("ms_played: 0");
  144. ms_played = 0;
  145. }
  146. memset(&pkt, 0, sizeof(struct STAT_packet));
  147. memcpy(&pkt.opcode, "STAT", 4);
  148. pkt.length = htonl(sizeof(struct STAT_packet) - 8);
  149. memcpy(&pkt.event, event, 4);
  150. // num_crlf
  151. // mas_initialized; mas_mode;
  152. packN(&pkt.stream_buffer_fullness, status.stream_full);
  153. packN(&pkt.stream_buffer_size, status.stream_size);
  154. packN(&pkt.bytes_received_H, (u64_t)status.stream_bytes >> 32);
  155. packN(&pkt.bytes_received_L, (u64_t)status.stream_bytes & 0xffffffff);
  156. pkt.signal_strength = 0xffff;
  157. packN(&pkt.jiffies, now);
  158. packN(&pkt.output_buffer_size, status.output_size);
  159. packN(&pkt.output_buffer_fullness, status.output_full);
  160. packN(&pkt.elapsed_seconds, ms_played / 1000);
  161. // voltage;
  162. packN(&pkt.elapsed_milliseconds, ms_played);
  163. pkt.server_timestamp = server_timestamp; // keep this is server format - don't unpack/pack
  164. // error_code;
  165. LOG_DEBUG("STAT: %s", event);
  166. if (loglevel == lSDEBUG) {
  167. LOG_SDEBUG("received bytesL: %u streambuf: %u outputbuf: %u calc elapsed: %u real elapsed: %u (diff: %d) device: %u delay: %d",
  168. (u32_t)status.stream_bytes, status.stream_full, status.output_full, ms_played, now - status.stream_start,
  169. ms_played - now + status.stream_start, status.device_frames * 1000 / status.current_sample_rate, now - status.updated);
  170. }
  171. send_packet((u8_t *)&pkt, sizeof(pkt));
  172. }
  173. static void sendDSCO(disconnect_code disconnect) {
  174. struct DSCO_packet pkt;
  175. memset(&pkt, 0, sizeof(pkt));
  176. memcpy(&pkt.opcode, "DSCO", 4);
  177. pkt.length = htonl(sizeof(pkt) - 8);
  178. pkt.reason = disconnect & 0xFF;
  179. LOG_DEBUG("DSCO: %d", disconnect);
  180. send_packet((u8_t *)&pkt, sizeof(pkt));
  181. }
  182. static void sendRESP(const char *header, size_t len) {
  183. struct RESP_header pkt_header;
  184. memset(&pkt_header, 0, sizeof(pkt_header));
  185. memcpy(&pkt_header.opcode, "RESP", 4);
  186. pkt_header.length = htonl(sizeof(pkt_header) + len - 8);
  187. LOG_DEBUG("RESP");
  188. send_packet((u8_t *)&pkt_header, sizeof(pkt_header));
  189. send_packet((u8_t *)header, len);
  190. }
  191. static void sendMETA(const char *meta, size_t len) {
  192. struct META_header pkt_header;
  193. memset(&pkt_header, 0, sizeof(pkt_header));
  194. memcpy(&pkt_header.opcode, "META", 4);
  195. pkt_header.length = htonl(sizeof(pkt_header) + len - 8);
  196. LOG_DEBUG("META");
  197. send_packet((u8_t *)&pkt_header, sizeof(pkt_header));
  198. send_packet((u8_t *)meta, len);
  199. }
  200. static void sendSETDName(const char *name) {
  201. struct SETD_header pkt_header;
  202. memset(&pkt_header, 0, sizeof(pkt_header));
  203. memcpy(&pkt_header.opcode, "SETD", 4);
  204. pkt_header.id = 0; // id 0 is playername S:P:Squeezebox2
  205. pkt_header.length = htonl(sizeof(pkt_header) + strlen(name) + 1 - 8);
  206. LOG_DEBUG("set playername: %s", name);
  207. send_packet((u8_t *)&pkt_header, sizeof(pkt_header));
  208. send_packet((u8_t *)name, strlen(name) + 1);
  209. }
  210. #if IR
  211. void sendIR(u32_t code, u32_t ts) {
  212. struct IR_packet pkt;
  213. memset(&pkt, 0, sizeof(pkt));
  214. memcpy(&pkt.opcode, "IR ", 4);
  215. pkt.length = htonl(sizeof(pkt) - 8);
  216. packN(&pkt.jiffies, ts);
  217. pkt.ir_code = htonl(code);
  218. LOG_DEBUG("IR: ir code: 0x%x ts: %u", code, ts);
  219. send_packet((u8_t *)&pkt, sizeof(pkt));
  220. }
  221. #endif
  222. static void process_strm(u8_t *pkt, int len) {
  223. struct strm_packet *strm = (struct strm_packet *)pkt;
  224. LOG_DEBUG("strm command %c", strm->command);
  225. switch(strm->command) {
  226. case 't':
  227. sendSTAT("STMt", strm->replay_gain); // STMt replay_gain is no longer used to track latency, but support it
  228. break;
  229. case 'q':
  230. decode_flush();
  231. output_flush();
  232. status.frames_played = 0;
  233. stream_disconnect();
  234. sendSTAT("STMf", 0);
  235. buf_flush(streambuf);
  236. break;
  237. case 'f':
  238. decode_flush();
  239. output_flush();
  240. status.frames_played = 0;
  241. if (stream_disconnect()) {
  242. sendSTAT("STMf", 0);
  243. }
  244. buf_flush(streambuf);
  245. break;
  246. case 'p':
  247. {
  248. unsigned interval = unpackN(&strm->replay_gain);
  249. LOCK_O;
  250. output.pause_frames = interval * status.current_sample_rate / 1000;
  251. if (interval) {
  252. output.state = OUTPUT_PAUSE_FRAMES;
  253. } else {
  254. output.state = OUTPUT_STOPPED;
  255. output.stop_time = gettime_ms();
  256. }
  257. UNLOCK_O;
  258. if (!interval) sendSTAT("STMp", 0);
  259. LOG_DEBUG("pause interval: %u", interval);
  260. }
  261. break;
  262. case 'a':
  263. {
  264. unsigned interval = unpackN(&strm->replay_gain);
  265. LOCK_O;
  266. output.skip_frames = interval * status.current_sample_rate / 1000;
  267. output.state = OUTPUT_SKIP_FRAMES;
  268. UNLOCK_O;
  269. LOG_DEBUG("skip ahead interval: %u", interval);
  270. }
  271. break;
  272. case 'u':
  273. {
  274. unsigned jiffies = unpackN(&strm->replay_gain);
  275. LOCK_O;
  276. output.state = jiffies ? OUTPUT_START_AT : OUTPUT_RUNNING;
  277. output.start_at = jiffies;
  278. UNLOCK_O;
  279. LOG_DEBUG("unpause at: %u now: %u", jiffies, gettime_ms());
  280. sendSTAT("STMr", 0);
  281. }
  282. break;
  283. case 's':
  284. {
  285. unsigned header_len = len - sizeof(struct strm_packet);
  286. char *header = (char *)(pkt + sizeof(struct strm_packet));
  287. in_addr_t ip = (in_addr_t)strm->server_ip; // keep in network byte order
  288. u16_t port = strm->server_port; // keep in network byte order
  289. if (ip == 0) ip = slimproto_ip;
  290. LOG_DEBUG("strm s autostart: %c transition period: %u transition type: %u codec: %c",
  291. strm->autostart, strm->transition_period, strm->transition_type - '0', strm->format);
  292. autostart = strm->autostart - '0';
  293. sendSTAT("STMf", 0);
  294. if (header_len > MAX_HEADER -1) {
  295. LOG_WARN("header too long: %u", header_len);
  296. break;
  297. }
  298. if (strm->format != '?') {
  299. codec_open(strm->format, strm->pcm_sample_size, strm->pcm_sample_rate, strm->pcm_channels, strm->pcm_endianness);
  300. } else if (autostart >= 2) {
  301. // extension to slimproto to allow server to detect codec from response header and send back in codc message
  302. LOG_DEBUG("streaming unknown codec");
  303. } else {
  304. LOG_WARN("unknown codec requires autostart >= 2");
  305. break;
  306. }
  307. if (ip == LOCAL_PLAYER_IP && port == LOCAL_PLAYER_PORT) {
  308. // extension to slimproto for LocalPlayer - header is filename not http header, don't expect cont
  309. stream_file(header, header_len, strm->threshold * 1024);
  310. autostart -= 2;
  311. } else {
  312. stream_sock(ip, port, header, header_len, strm->threshold * 1024, autostart >= 2);
  313. }
  314. sendSTAT("STMc", 0);
  315. sentSTMu = sentSTMo = sentSTMl = false;
  316. LOCK_O;
  317. output.threshold = strm->output_threshold;
  318. output.next_replay_gain = unpackN(&strm->replay_gain);
  319. output.fade_mode = strm->transition_type - '0';
  320. output.fade_secs = strm->transition_period;
  321. output.invert = (strm->flags & 0x03) == 0x03;
  322. LOG_DEBUG("set fade mode: %u", output.fade_mode);
  323. UNLOCK_O;
  324. }
  325. break;
  326. default:
  327. LOG_WARN("unhandled strm %c", strm->command);
  328. break;
  329. }
  330. }
  331. static void process_cont(u8_t *pkt, int len) {
  332. struct cont_packet *cont = (struct cont_packet *)pkt;
  333. cont->metaint = unpackN(&cont->metaint);
  334. LOG_DEBUG("cont metaint: %u loop: %u", cont->metaint, cont->loop);
  335. if (autostart > 1) {
  336. autostart -= 2;
  337. LOCK_S;
  338. if (stream.state == STREAMING_WAIT) {
  339. stream.state = STREAMING_BUFFERING;
  340. stream.meta_interval = stream.meta_next = cont->metaint;
  341. }
  342. UNLOCK_S;
  343. wake_controller();
  344. }
  345. }
  346. static void process_codc(u8_t *pkt, int len) {
  347. struct codc_packet *codc = (struct codc_packet *)pkt;
  348. LOG_DEBUG("codc: %c", codc->format);
  349. codec_open(codc->format, codc->pcm_sample_size, codc->pcm_sample_rate, codc->pcm_channels, codc->pcm_endianness);
  350. }
  351. static void process_aude(u8_t *pkt, int len) {
  352. struct aude_packet *aude = (struct aude_packet *)pkt;
  353. LOG_DEBUG("enable spdif: %d dac: %d", aude->enable_spdif, aude->enable_dac);
  354. LOCK_O;
  355. if (!aude->enable_spdif && output.state != OUTPUT_OFF) {
  356. output.state = OUTPUT_OFF;
  357. }
  358. if (aude->enable_spdif && output.state == OUTPUT_OFF && !output.idle_to) {
  359. output.state = OUTPUT_STOPPED;
  360. output.stop_time = gettime_ms();
  361. }
  362. UNLOCK_O;
  363. }
  364. static void process_audg(u8_t *pkt, int len) {
  365. struct audg_packet *audg = (struct audg_packet *)pkt;
  366. audg->gainL = unpackN(&audg->gainL);
  367. audg->gainR = unpackN(&audg->gainR);
  368. LOG_DEBUG("audg gainL: %u gainR: %u adjust: %u", audg->gainL, audg->gainR, audg->adjust);
  369. set_volume(audg->adjust ? audg->gainL : FIXED_ONE, audg->adjust ? audg->gainR : FIXED_ONE);
  370. }
  371. static void process_setd(u8_t *pkt, int len) {
  372. struct setd_packet *setd = (struct setd_packet *)pkt;
  373. // handle player name query and change
  374. if (setd->id == 0) {
  375. if (len == 5) {
  376. if (strlen(player_name)) {
  377. sendSETDName(player_name);
  378. }
  379. } else if (len > 5) {
  380. strncpy(player_name, setd->data, PLAYER_NAME_LEN);
  381. player_name[PLAYER_NAME_LEN] = '\0';
  382. LOG_INFO("set name: %s", setd->data);
  383. // confirm change to server
  384. sendSETDName(setd->data);
  385. // write name to name_file if -N option set
  386. if (name_file) {
  387. FILE *fp = fopen(name_file, "w");
  388. if (fp) {
  389. LOG_INFO("storing name in %s", name_file);
  390. fputs(player_name, fp);
  391. fclose(fp);
  392. } else {
  393. LOG_WARN("unable to store new name in %s", name_file);
  394. }
  395. }
  396. }
  397. }
  398. }
  399. #define SYNC_CAP ",SyncgroupID="
  400. #define SYNC_CAP_LEN 13
  401. static void process_serv(u8_t *pkt, int len) {
  402. struct serv_packet *serv = (struct serv_packet *)pkt;
  403. unsigned slimproto_port = 0;
  404. char squeezeserver[] = SQUEEZENETWORK;
  405. if(pkt[4] == 0 && pkt[5] == 0 && pkt[6] == 0 && pkt[7] == 1) {
  406. server_addr(squeezeserver, &new_server, &slimproto_port);
  407. } else {
  408. new_server = serv->server_ip;
  409. }
  410. LOG_INFO("switch server");
  411. if (len - sizeof(struct serv_packet) == 10) {
  412. if (!new_server_cap) {
  413. new_server_cap = malloc(SYNC_CAP_LEN + 10 + 1);
  414. }
  415. new_server_cap[0] = '\0';
  416. strcat(new_server_cap, SYNC_CAP);
  417. strncat(new_server_cap, (const char *)(pkt + sizeof(struct serv_packet)), 10);
  418. } else {
  419. if (new_server_cap) {
  420. free(new_server_cap);
  421. new_server_cap = NULL;
  422. }
  423. }
  424. }
  425. struct handler {
  426. char opcode[5];
  427. void (*handler)(u8_t *, int);
  428. };
  429. static struct handler handlers[] = {
  430. { "strm", process_strm },
  431. { "cont", process_cont },
  432. { "codc", process_codc },
  433. { "aude", process_aude },
  434. { "audg", process_audg },
  435. { "setd", process_setd },
  436. { "serv", process_serv },
  437. { "", NULL },
  438. };
  439. static void process(u8_t *pack, int len) {
  440. struct handler *h = handlers;
  441. while (h->handler && strncmp((char *)pack, h->opcode, 4)) { h++; }
  442. if (h->handler) {
  443. LOG_DEBUG("%s", h->opcode);
  444. h->handler(pack, len);
  445. } else {
  446. pack[4] = '\0';
  447. LOG_WARN("unhandled %s", (char *)pack);
  448. }
  449. }
  450. static bool running;
  451. static void slimproto_run() {
  452. static u8_t buffer[MAXBUF];
  453. int expect = 0;
  454. int got = 0;
  455. u32_t now;
  456. static u32_t last = 0;
  457. event_handle ehandles[2];
  458. int timeouts = 0;
  459. set_readwake_handles(ehandles, sock, wake_e);
  460. while (running && !new_server) {
  461. bool wake = false;
  462. event_type ev;
  463. if ((ev = wait_readwake(ehandles, 1000)) != EVENT_TIMEOUT) {
  464. if (ev == EVENT_READ) {
  465. if (expect > 0) {
  466. int n = recv(sock, buffer + got, expect, 0);
  467. if (n <= 0) {
  468. if (n < 0 && last_error() == ERROR_WOULDBLOCK) {
  469. continue;
  470. }
  471. LOG_INFO("error reading from socket: %s", n ? strerror(last_error()) : "closed");
  472. return;
  473. }
  474. expect -= n;
  475. got += n;
  476. if (expect == 0) {
  477. process(buffer, got);
  478. got = 0;
  479. }
  480. } else if (expect == 0) {
  481. int n = recv(sock, buffer + got, 2 - got, 0);
  482. if (n <= 0) {
  483. if (n < 0 && last_error() == ERROR_WOULDBLOCK) {
  484. continue;
  485. }
  486. LOG_INFO("error reading from socket: %s", n ? strerror(last_error()) : "closed");
  487. return;
  488. }
  489. got += n;
  490. if (got == 2) {
  491. expect = buffer[0] << 8 | buffer[1]; // length pack 'n'
  492. got = 0;
  493. if (expect > MAXBUF) {
  494. LOG_ERROR("FATAL: slimproto packet too big: %d > %d", expect, MAXBUF);
  495. return;
  496. }
  497. }
  498. } else {
  499. LOG_ERROR("FATAL: negative expect");
  500. return;
  501. }
  502. }
  503. if (ev == EVENT_WAKE) {
  504. wake = true;
  505. }
  506. timeouts = 0;
  507. } else if (++timeouts > 35) {
  508. // expect message from server every 5 seconds, but 30 seconds on mysb.com so timeout after 35 seconds
  509. LOG_INFO("No messages from server - connection dead");
  510. return;
  511. }
  512. // update playback state when woken or every 100ms
  513. now = gettime_ms();
  514. if (wake || now - last > 100 || last > now) {
  515. bool _sendSTMs = false;
  516. bool _sendDSCO = false;
  517. bool _sendRESP = false;
  518. bool _sendMETA = false;
  519. bool _sendSTMd = false;
  520. bool _sendSTMt = false;
  521. bool _sendSTMl = false;
  522. bool _sendSTMu = false;
  523. bool _sendSTMo = false;
  524. bool _sendSTMn = false;
  525. bool _stream_disconnect = false;
  526. bool _start_output = false;
  527. decode_state _decode_state;
  528. disconnect_code disconnect_code;
  529. static char header[MAX_HEADER];
  530. size_t header_len = 0;
  531. #if IR
  532. bool _sendIR = false;
  533. u32_t ir_code, ir_ts;
  534. #endif
  535. last = now;
  536. LOCK_S;
  537. status.stream_full = _buf_used(streambuf);
  538. status.stream_size = streambuf->size;
  539. status.stream_bytes = stream.bytes;
  540. status.stream_state = stream.state;
  541. if (stream.state == DISCONNECT) {
  542. disconnect_code = stream.disconnect;
  543. stream.state = STOPPED;
  544. _sendDSCO = true;
  545. }
  546. if (!stream.sent_headers &&
  547. (stream.state == STREAMING_HTTP || stream.state == STREAMING_WAIT || stream.state == STREAMING_BUFFERING)) {
  548. header_len = stream.header_len;
  549. memcpy(header, stream.header, header_len);
  550. _sendRESP = true;
  551. stream.sent_headers = true;
  552. }
  553. if (stream.meta_send) {
  554. header_len = stream.header_len;
  555. memcpy(header, stream.header, header_len);
  556. _sendMETA = true;
  557. stream.meta_send = false;
  558. }
  559. UNLOCK_S;
  560. LOCK_D;
  561. if ((status.stream_state == STREAMING_HTTP || status.stream_state == STREAMING_FILE ||
  562. (status.stream_state == DISCONNECT && stream.disconnect == DISCONNECT_OK)) &&
  563. !sentSTMl && decode.state == DECODE_READY) {
  564. if (autostart == 0) {
  565. decode.state = DECODE_RUNNING;
  566. _sendSTMl = true;
  567. sentSTMl = true;
  568. } else if (autostart == 1) {
  569. decode.state = DECODE_RUNNING;
  570. _start_output = true;
  571. }
  572. // autostart 2 and 3 require cont to be received first
  573. }
  574. if (decode.state == DECODE_COMPLETE || decode.state == DECODE_ERROR) {
  575. if (decode.state == DECODE_COMPLETE) _sendSTMd = true;
  576. if (decode.state == DECODE_ERROR) _sendSTMn = true;
  577. decode.state = DECODE_STOPPED;
  578. if (status.stream_state == STREAMING_HTTP || status.stream_state == STREAMING_FILE) {
  579. _stream_disconnect = true;
  580. }
  581. }
  582. _decode_state = decode.state;
  583. UNLOCK_D;
  584. LOCK_O;
  585. status.output_full = _buf_used(outputbuf);
  586. status.output_size = outputbuf->size;
  587. status.frames_played = output.frames_played_dmp;
  588. status.current_sample_rate = output.current_sample_rate;
  589. status.updated = output.updated;
  590. status.device_frames = output.device_frames;
  591. if (output.track_started) {
  592. _sendSTMs = true;
  593. output.track_started = false;
  594. status.stream_start = output.track_start_time;
  595. }
  596. #if PORTAUDIO
  597. if (output.pa_reopen) {
  598. _pa_open();
  599. output.pa_reopen = false;
  600. }
  601. #endif
  602. if (_start_output && (output.state == OUTPUT_STOPPED || output.state == OUTPUT_OFF)) {
  603. output.state = OUTPUT_BUFFER;
  604. }
  605. if (output.state == OUTPUT_RUNNING && !sentSTMu && status.output_full == 0 && status.stream_state <= DISCONNECT &&
  606. _decode_state == DECODE_STOPPED) {
  607. _sendSTMu = true;
  608. sentSTMu = true;
  609. LOG_DEBUG("output underrun");
  610. output.state = OUTPUT_STOPPED;
  611. output.stop_time = now;
  612. }
  613. if (output.state == OUTPUT_RUNNING && !sentSTMo && status.output_full == 0 && status.stream_state == STREAMING_HTTP) {
  614. _sendSTMo = true;
  615. sentSTMo = true;
  616. }
  617. if (output.state == OUTPUT_STOPPED && output.idle_to && (now - output.stop_time > output.idle_to)) {
  618. output.state = OUTPUT_OFF;
  619. LOG_DEBUG("output timeout");
  620. }
  621. if (output.state == OUTPUT_RUNNING && now - status.last > 1000) {
  622. _sendSTMt = true;
  623. status.last = now;
  624. }
  625. UNLOCK_O;
  626. #if IR
  627. LOCK_I;
  628. if (ir.code) {
  629. _sendIR = true;
  630. ir_code = ir.code;
  631. ir_ts = ir.ts;
  632. ir.code = 0;
  633. }
  634. UNLOCK_I;
  635. #endif
  636. if (_stream_disconnect) stream_disconnect();
  637. // send packets once locks released as packet sending can block
  638. if (_sendDSCO) sendDSCO(disconnect_code);
  639. if (_sendSTMs) sendSTAT("STMs", 0);
  640. if (_sendSTMd) sendSTAT("STMd", 0);
  641. if (_sendSTMt) sendSTAT("STMt", 0);
  642. if (_sendSTMl) sendSTAT("STMl", 0);
  643. if (_sendSTMu) sendSTAT("STMu", 0);
  644. if (_sendSTMo) sendSTAT("STMo", 0);
  645. if (_sendSTMn) sendSTAT("STMn", 0);
  646. if (_sendRESP) sendRESP(header, header_len);
  647. if (_sendMETA) sendMETA(header, header_len);
  648. #if IR
  649. if (_sendIR) sendIR(ir_code, ir_ts);
  650. #endif
  651. }
  652. }
  653. }
  654. // called from other threads to wake state machine above
  655. void wake_controller(void) {
  656. wake_signal(wake_e);
  657. }
  658. in_addr_t discover_server(char *default_server) {
  659. struct sockaddr_in d;
  660. struct sockaddr_in s;
  661. char *buf;
  662. struct pollfd pollinfo;
  663. unsigned port;
  664. int attempts = 0;
  665. #if EMBEDDED
  666. attempts = 5;
  667. #endif
  668. int disc_sock = socket(AF_INET, SOCK_DGRAM, 0);
  669. socklen_t enable = 1;
  670. setsockopt(disc_sock, SOL_SOCKET, SO_BROADCAST, (const void *)&enable, sizeof(enable));
  671. buf = "e";
  672. memset(&d, 0, sizeof(d));
  673. d.sin_family = AF_INET;
  674. d.sin_port = htons(PORT);
  675. d.sin_addr.s_addr = htonl(INADDR_BROADCAST);
  676. pollinfo.fd = disc_sock;
  677. pollinfo.events = POLLIN;
  678. do {
  679. LOG_INFO("sending discovery");
  680. memset(&s, 0, sizeof(s));
  681. if (sendto(disc_sock, buf, 1, 0, (struct sockaddr *)&d, sizeof(d)) < 0) {
  682. LOG_INFO("error sending disovery");
  683. }
  684. if (poll(&pollinfo, 1, 5000) == 1) {
  685. char readbuf[10];
  686. socklen_t slen = sizeof(s);
  687. recvfrom(disc_sock, readbuf, 10, 0, (struct sockaddr *)&s, &slen);
  688. LOG_INFO("got response from: %s:%d", inet_ntoa(s.sin_addr), ntohs(s.sin_port));
  689. }
  690. if (default_server) {
  691. server_addr(default_server, &s.sin_addr.s_addr, &port);
  692. }
  693. } while (s.sin_addr.s_addr == 0 && running && (!attempts || --attempts));
  694. closesocket(disc_sock);
  695. return s.sin_addr.s_addr;
  696. }
  697. #define FIXED_CAP_LEN 256
  698. #define VAR_CAP_LEN 128
  699. void slimproto(log_level level, char *server, u8_t mac[6], const char *name, const char *namefile, const char *modelname, int maxSampleRate) {
  700. struct sockaddr_in serv_addr;
  701. static char fixed_cap[FIXED_CAP_LEN], var_cap[VAR_CAP_LEN] = "";
  702. bool reconnect = false;
  703. unsigned failed_connect = 0;
  704. unsigned slimproto_port = 0;
  705. in_addr_t previous_server = 0;
  706. int i;
  707. memset(&status, 0, sizeof(status));
  708. wake_create(wake_e);
  709. loglevel = level;
  710. running = true;
  711. if (server) {
  712. server_addr(server, &slimproto_ip, &slimproto_port);
  713. }
  714. if (!slimproto_ip) {
  715. slimproto_ip = discover_server(server);
  716. }
  717. if (!slimproto_port) {
  718. slimproto_port = PORT;
  719. }
  720. if (name) {
  721. strncpy(player_name, name, PLAYER_NAME_LEN);
  722. player_name[PLAYER_NAME_LEN] = '\0';
  723. }
  724. if (namefile) {
  725. FILE *fp;
  726. name_file = namefile;
  727. fp = fopen(namefile, "r");
  728. if (fp) {
  729. if (!fgets(player_name, PLAYER_NAME_LEN, fp)) {
  730. player_name[PLAYER_NAME_LEN] = '\0';
  731. } else {
  732. // strip any \n from fgets response
  733. int len = strlen(player_name);
  734. if (len > 0 && player_name[len - 1] == '\n') {
  735. player_name[len - 1] = '\0';
  736. }
  737. LOG_INFO("retrieved name %s from %s", player_name, name_file);
  738. }
  739. fclose(fp);
  740. }
  741. }
  742. if (!running) return;
  743. LOCK_O;
  744. snprintf(fixed_cap, FIXED_CAP_LEN, ",ModelName=%s,MaxSampleRate=%u", modelname ? modelname : MODEL_NAME_STRING,
  745. ((maxSampleRate > 0) ? maxSampleRate : output.supported_rates[0]));
  746. for (i = 0; i < MAX_CODECS; i++) {
  747. if (codecs[i] && codecs[i]->id && strlen(fixed_cap) < FIXED_CAP_LEN - 10) {
  748. strcat(fixed_cap, ",");
  749. strcat(fixed_cap, codecs[i]->types);
  750. }
  751. }
  752. UNLOCK_O;
  753. memset(&serv_addr, 0, sizeof(serv_addr));
  754. serv_addr.sin_family = AF_INET;
  755. serv_addr.sin_addr.s_addr = slimproto_ip;
  756. serv_addr.sin_port = htons(slimproto_port);
  757. LOG_INFO("connecting to %s:%d", inet_ntoa(serv_addr.sin_addr), ntohs(serv_addr.sin_port));
  758. new_server = 0;
  759. while (running && slimproto_ip) {
  760. if (new_server) {
  761. previous_server = slimproto_ip;
  762. slimproto_ip = serv_addr.sin_addr.s_addr = new_server;
  763. LOG_INFO("switching server to %s:%d", inet_ntoa(serv_addr.sin_addr), ntohs(serv_addr.sin_port));
  764. new_server = 0;
  765. reconnect = false;
  766. }
  767. sock = socket(AF_INET, SOCK_STREAM, 0);
  768. set_nonblock(sock);
  769. set_nosigpipe(sock);
  770. if (connect_timeout(sock, (struct sockaddr *) &serv_addr, sizeof(serv_addr), 5) != 0) {
  771. if (previous_server) {
  772. slimproto_ip = serv_addr.sin_addr.s_addr = previous_server;
  773. LOG_INFO("new server not reachable, reverting to previous server %s:%d", inet_ntoa(serv_addr.sin_addr), ntohs(serv_addr.sin_port));
  774. } else {
  775. LOG_INFO("unable to connect to server %u", failed_connect);
  776. sleep(5);
  777. }
  778. // rediscover server if it was not set at startup
  779. if (!server && ++failed_connect > 5) {
  780. slimproto_ip = serv_addr.sin_addr.s_addr = discover_server(NULL);
  781. }
  782. } else {
  783. struct sockaddr_in our_addr;
  784. socklen_t len;
  785. LOG_INFO("connected");
  786. var_cap[0] = '\0';
  787. failed_connect = 0;
  788. // check if this is a local player now we are connected & signal to server via 'loc' format
  789. // this requires LocalPlayer server plugin to enable direct file access
  790. len = sizeof(our_addr);
  791. getsockname(sock, (struct sockaddr *) &our_addr, &len);
  792. if (our_addr.sin_addr.s_addr == serv_addr.sin_addr.s_addr) {
  793. LOG_INFO("local player");
  794. strcat(var_cap, ",loc");
  795. }
  796. // add on any capablity to be sent to the new server
  797. if (new_server_cap) {
  798. strcat(var_cap, new_server_cap);
  799. free(new_server_cap);
  800. new_server_cap = NULL;
  801. }
  802. sendHELO(reconnect, fixed_cap, var_cap, mac);
  803. slimproto_run();
  804. if (!reconnect) {
  805. reconnect = true;
  806. }
  807. usleep(100000);
  808. }
  809. previous_server = 0;
  810. closesocket(sock);
  811. }
  812. }
  813. void slimproto_stop(void) {
  814. LOG_INFO("slimproto stop");
  815. running = false;
  816. }