raop.c 23 KB

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  1. /*
  2. *
  3. * (c) Philippe 2019, philippe_44@outlook.com
  4. *
  5. * This program is free software: you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published by
  7. * the Free Software Foundation, either version 3 of the License, or
  8. * (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  17. *
  18. */
  19. #include <stdio.h>
  20. #include "platform.h"
  21. #ifdef WIN32
  22. #include <openssl/err.h>
  23. #include <openssl/rand.h>
  24. #include <openssl/rsa.h>
  25. #include <openssl/pem.h>
  26. #include <openssl/engine.h>
  27. #include "mdns.h"
  28. #include "mdnsd.h"
  29. #include "mdnssd-itf.h"
  30. #else
  31. #include "esp_pthread.h"
  32. #include "mdns.h"
  33. #include "mbedtls/version.h"
  34. #include <mbedtls/x509.h>
  35. #endif
  36. #include "util.h"
  37. #include "raop.h"
  38. #include "rtp.h"
  39. #include "dmap_parser.h"
  40. #include "log_util.h"
  41. typedef struct raop_ctx_s {
  42. #ifdef WIN32
  43. struct mdns_service *svc;
  44. struct mdnsd *svr;
  45. #endif
  46. struct in_addr host; // IP of bridge
  47. short unsigned port; // RTSP port for AirPlay
  48. int sock; // socket of the above
  49. struct in_addr peer; // IP of the iDevice (airplay sender)
  50. bool running;
  51. #ifdef WIN32
  52. pthread_t thread, search_thread;
  53. #else
  54. TaskHandle_t thread, search_thread, joiner;
  55. #endif
  56. unsigned char mac[6];
  57. int latency;
  58. struct {
  59. char *aesiv, *aeskey;
  60. char *fmtp;
  61. } rtsp;
  62. struct rtp_s *rtp;
  63. raop_cmd_cb_t cmd_cb;
  64. raop_data_cb_t data_cb;
  65. /*
  66. struct {
  67. char DACPid[32], id[32];
  68. struct in_addr host;
  69. u16_t port;
  70. struct mDNShandle_s *handle;
  71. } active_remote;
  72. */
  73. void *owner;
  74. } raop_ctx_t;
  75. extern struct mdnsd* glmDNSServer;
  76. extern log_level raop_loglevel;
  77. static log_level *loglevel = &raop_loglevel;
  78. static void* rtsp_thread(void *arg);
  79. static bool handle_rtsp(raop_ctx_t *ctx, int sock);
  80. static char* rsa_apply(unsigned char *input, int inlen, int *outlen, int mode);
  81. static int base64_pad(char *src, char **padded);
  82. static int base64_encode(const void *data, int size, char **str);
  83. static int base64_decode(const char *str, void *data);
  84. static void* search_remote(void *args);
  85. extern char private_key[];
  86. enum { RSA_MODE_KEY, RSA_MODE_AUTH };
  87. static void on_dmap_string(void *ctx, const char *code, const char *name, const char *buf, size_t len);
  88. /*----------------------------------------------------------------------------*/
  89. struct raop_ctx_s *raop_create(struct in_addr host, char *name,
  90. unsigned char mac[6], int latency,
  91. raop_cmd_cb_t cmd_cb, raop_data_cb_t data_cb) {
  92. struct raop_ctx_s *ctx = malloc(sizeof(struct raop_ctx_s));
  93. struct sockaddr_in addr;
  94. char id[64];
  95. #ifdef WIN32
  96. socklen_t nlen = sizeof(struct sockaddr);
  97. char *txt[] = { "am=esp32", "tp=UDP", "sm=false", "sv=false", "ek=1",
  98. "et=0,1", "md=0,1,2", "cn=0,1", "ch=2",
  99. "ss=16", "sr=44100", "vn=3", "txtvers=1",
  100. NULL };
  101. #else
  102. mdns_txt_item_t txt[] = {
  103. {"am", "esp32"},
  104. {"tp", "UDP"},
  105. {"sm","false"},
  106. {"sv","false"},
  107. {"ek","1"},
  108. {"et","0,1"},
  109. {"md","0,1,2"},
  110. {"cn","0,1"},
  111. {"ch","2"},
  112. {"ss","16"},
  113. {"sr","44100"},
  114. {"vn","3"},
  115. {"txtvers","1"},
  116. };
  117. #endif
  118. if (!ctx) return NULL;
  119. // make sure we have a clean context
  120. memset(ctx, 0, sizeof(raop_ctx_t));
  121. #ifdef WIN32
  122. ctx->svr = glmDNSServer;
  123. #endif
  124. ctx->host = host;
  125. ctx->sock = socket(AF_INET, SOCK_STREAM, 0);
  126. ctx->cmd_cb = cmd_cb;
  127. ctx->data_cb = data_cb;
  128. ctx->latency = min(latency, 88200);
  129. if (ctx->sock == -1) {
  130. LOG_ERROR("Cannot create listening socket", NULL);
  131. free(ctx);
  132. return NULL;
  133. }
  134. memset(&addr, 0, sizeof(addr));
  135. addr.sin_addr.s_addr = host.s_addr;
  136. addr.sin_family = AF_INET;
  137. #ifdef WIN32
  138. addr.sin_port = 0;
  139. #else
  140. ctx->port = 5000;
  141. addr.sin_port = htons(ctx->port);
  142. #endif
  143. if (bind(ctx->sock, (struct sockaddr *) &addr, sizeof(addr)) < 0 || listen(ctx->sock, 1)) {
  144. LOG_ERROR("Cannot bind or listen RTSP listener: %s", strerror(errno));
  145. free(ctx);
  146. closesocket(ctx->sock);
  147. return NULL;
  148. }
  149. #ifdef WIN32
  150. getsockname(ctx->sock, (struct sockaddr *) &addr, &nlen);
  151. ctx->port = ntohs(addr.sin_port);
  152. #endif
  153. ctx->running = true;
  154. memcpy(ctx->mac, mac, 6);
  155. snprintf(id, 64, "%02X%02X%02X%02X%02X%02X@%s", mac[0], mac[1], mac[2], mac[3], mac[4], mac[5], name);
  156. #ifdef WIN32
  157. // seems that Windows snprintf does not add NULL char if actual size > max
  158. id[63] = '\0';
  159. ctx->svc = mdnsd_register_svc(ctx->svr, id, "_raop._tcp.local", ctx->port, NULL, (const char**) txt);
  160. pthread_create(&ctx->thread, NULL, &rtsp_thread, ctx);
  161. #else
  162. LOG_INFO("starting mDNS with %s", id);
  163. ESP_ERROR_CHECK( mdns_service_add(id, "_raop", "_tcp", ctx->port, txt, sizeof(txt) / sizeof(mdns_txt_item_t)) );
  164. xTaskCreate((TaskFunction_t) rtsp_thread, "RTSP_thread", 8*1024, ctx, ESP_TASK_PRIO_MIN + 1, &ctx->thread);
  165. #endif
  166. return ctx;
  167. }
  168. /*----------------------------------------------------------------------------*/
  169. void raop_delete(struct raop_ctx_s *ctx) {
  170. int sock;
  171. struct sockaddr addr;
  172. socklen_t nlen = sizeof(struct sockaddr);
  173. if (!ctx) return;
  174. ctx->running = false;
  175. // wake-up thread by connecting socket, needed for freeBSD
  176. sock = socket(AF_INET, SOCK_STREAM, 0);
  177. getsockname(ctx->sock, (struct sockaddr *) &addr, &nlen);
  178. connect(sock, (struct sockaddr*) &addr, sizeof(addr));
  179. closesocket(sock);
  180. #ifdef WIN32
  181. pthread_join(ctx->thread, NULL);
  182. #else
  183. ctx->joiner = xTaskGetCurrentTaskHandle();
  184. xTaskNotifyWait(0, 0, NULL, portMAX_DELAY);
  185. #endif
  186. rtp_end(ctx->rtp);
  187. #ifdef WIN32
  188. shutdown(ctx->sock, SD_BOTH);
  189. #else
  190. shutdown(ctx->sock, SHUT_RDWR);
  191. #endif
  192. closesocket(ctx->sock);
  193. /*
  194. // terminate search, but do not reclaim memory of pthread if never launched
  195. if (ctx->active_remote.handle) {
  196. close_mDNS(ctx->active_remote.handle);
  197. pthread_join(ctx->search_thread, NULL);
  198. }
  199. */
  200. NFREE(ctx->rtsp.aeskey);
  201. NFREE(ctx->rtsp.aesiv);
  202. NFREE(ctx->rtsp.fmtp);
  203. // stop broadcasting devices
  204. #ifdef WIN32
  205. mdns_service_remove(ctx->svr, ctx->svc);
  206. mdnsd_stop(ctx->svr);
  207. #endif
  208. free(ctx);
  209. }
  210. /*----------------------------------------------------------------------------*/
  211. void raop_cmd(struct raop_ctx_s *ctx, raop_event_t event, void *param) {
  212. /*
  213. struct sockaddr_in addr;
  214. int sock;
  215. char *command = NULL;
  216. // first notify the remote controller (if any)
  217. switch(event) {
  218. case RAOP_PAUSE:
  219. command = strdup("pause");
  220. break;
  221. case RAOP_PLAY:
  222. command = strdup("play");
  223. break;
  224. case RAOP_STOP:
  225. command = strdup("stop");
  226. break;
  227. case RAOP_VOLUME: {
  228. float Volume = *((float*) param);
  229. Volume = Volume ? (Volume - 1) * 30 : -144;
  230. asprintf(&command,"setproperty?dmcp.device-volume=%0.4lf", Volume);
  231. break;
  232. }
  233. default:
  234. break;
  235. }
  236. // no command to send to remote or no remote found yet
  237. if (!command || !ctx->active_remote.port) {
  238. NFREE(command);
  239. return;
  240. }
  241. sock = socket(AF_INET, SOCK_STREAM, 0);
  242. memset(&addr, 0, sizeof(addr));
  243. addr.sin_family = AF_INET;
  244. addr.sin_addr.s_addr = S_ADDR(ctx->active_remote.host);
  245. addr.sin_port = htons(ctx->active_remote.port);
  246. if (!connect(sock, (struct sockaddr*) &addr, sizeof(addr))) {
  247. char *method, *buf, resp[512] = "";
  248. int len;
  249. key_data_t headers[4] = { {NULL, NULL} };
  250. asprintf(&method, "GET /ctrl-int/1/%s HTTP/1.0", command);
  251. kd_add(headers, "Active-Remote", ctx->active_remote.id);
  252. kd_add(headers, "Connection", "close");
  253. buf = http_send(sock, method, headers);
  254. len = recv(sock, resp, 512, 0);
  255. if (len > 0) resp[len-1] = '\0';
  256. LOG_INFO("[%p]: sending airplay remote\n%s<== received ==>\n%s", ctx, buf, resp);
  257. NFREE(method);
  258. NFREE(buf);
  259. kd_free(headers);
  260. }
  261. free(command);
  262. closesocket(sock);
  263. */
  264. // then notify local system
  265. ctx->cmd_cb(event, param);
  266. }
  267. /*----------------------------------------------------------------------------*/
  268. static void *rtsp_thread(void *arg) {
  269. raop_ctx_t *ctx = (raop_ctx_t*) arg;
  270. int sock = -1;
  271. while (ctx->running) {
  272. fd_set rfds;
  273. struct timeval timeout = {0, 100*1000};
  274. int n;
  275. bool res = false;
  276. if (sock == -1) {
  277. struct sockaddr_in peer;
  278. socklen_t addrlen = sizeof(struct sockaddr_in);
  279. sock = accept(ctx->sock, (struct sockaddr*) &peer, &addrlen);
  280. ctx->peer.s_addr = peer.sin_addr.s_addr;
  281. if (sock != -1 && ctx->running) {
  282. LOG_INFO("got RTSP connection %u", sock);
  283. } else continue;
  284. }
  285. FD_ZERO(&rfds);
  286. FD_SET(sock, &rfds);
  287. n = select(sock + 1, &rfds, NULL, NULL, &timeout);
  288. if (!n) continue;
  289. if (n > 0) res = handle_rtsp(ctx, sock);
  290. if (n < 0 || !res) {
  291. closesocket(sock);
  292. LOG_INFO("RTSP close %u", sock);
  293. sock = -1;
  294. }
  295. }
  296. if (sock != -1) closesocket(sock);
  297. #ifndef WIN32
  298. xTaskNotify(ctx->joiner, 0, eNoAction);
  299. vTaskDelete(NULL);
  300. #endif
  301. return NULL;
  302. }
  303. /*----------------------------------------------------------------------------*/
  304. static bool handle_rtsp(raop_ctx_t *ctx, int sock)
  305. {
  306. char *buf = NULL, *body = NULL, method[16] = "";
  307. key_data_t headers[16], resp[8] = { {NULL, NULL} };
  308. int len;
  309. bool success = true;
  310. if (!http_parse(sock, method, headers, &body, &len)) {
  311. NFREE(body);
  312. kd_free(headers);
  313. return false;
  314. }
  315. if (strcmp(method, "OPTIONS")) {
  316. LOG_INFO("[%p]: received %s", ctx, method);
  317. }
  318. if ((buf = kd_lookup(headers, "Apple-Challenge")) != NULL) {
  319. int n;
  320. char *buf_pad, *p, *data_b64 = NULL, data[32];
  321. LOG_INFO("[%p]: challenge %s", ctx, buf);
  322. // need to pad the base64 string as apple device don't
  323. base64_pad(buf, &buf_pad);
  324. p = data + min(base64_decode(buf_pad, data), 32-10);
  325. p = (char*) memcpy(p, &S_ADDR(ctx->host), 4) + 4;
  326. p = (char*) memcpy(p, ctx->mac, 6) + 6;
  327. memset(p, 0, 32 - (p - data));
  328. p = rsa_apply((unsigned char*) data, 32, &n, RSA_MODE_AUTH);
  329. n = base64_encode(p, n, &data_b64);
  330. // remove padding as well (seems to be optional now)
  331. for (n = strlen(data_b64) - 1; n > 0 && data_b64[n] == '='; data_b64[n--] = '\0');
  332. kd_add(resp, "Apple-Response", data_b64);
  333. NFREE(p);
  334. NFREE(buf_pad);
  335. NFREE(data_b64);
  336. }
  337. if (!strcmp(method, "OPTIONS")) {
  338. kd_add(resp, "Public", "ANNOUNCE, SETUP, RECORD, PAUSE, FLUSH, TEARDOWN, OPTIONS, GET_PARAMETER, SET_PARAMETER");
  339. } else if (!strcmp(method, "ANNOUNCE")) {
  340. char *padded, *p;
  341. NFREE(ctx->rtsp.aeskey);
  342. NFREE(ctx->rtsp.aesiv);
  343. NFREE(ctx->rtsp.fmtp);
  344. if ((p = strcasestr(body, "rsaaeskey")) != NULL) {
  345. unsigned char *aeskey;
  346. int len, outlen;
  347. p = strextract(p, ":", "\r\n");
  348. base64_pad(p, &padded);
  349. aeskey = malloc(strlen(padded));
  350. len = base64_decode(padded, aeskey);
  351. ctx->rtsp.aeskey = rsa_apply(aeskey, len, &outlen, RSA_MODE_KEY);
  352. NFREE(p);
  353. NFREE(aeskey);
  354. NFREE(padded);
  355. }
  356. if ((p = strcasestr(body, "aesiv")) != NULL) {
  357. p = strextract(p, ":", "\r\n");
  358. base64_pad(p, &padded);
  359. ctx->rtsp.aesiv = malloc(strlen(padded));
  360. base64_decode(padded, ctx->rtsp.aesiv);
  361. NFREE(p);
  362. NFREE(padded);
  363. }
  364. if ((p = strcasestr(body, "fmtp")) != NULL) {
  365. p = strextract(p, ":", "\r\n");
  366. ctx->rtsp.fmtp = strdup(p);
  367. NFREE(p);
  368. }
  369. // on announce, search remote
  370. /*
  371. if ((buf = kd_lookup(headers, "DACP-ID")) != NULL) strcpy(ctx->active_remote.DACPid, buf);
  372. if ((buf = kd_lookup(headers, "Active-Remote")) != NULL) strcpy(ctx->active_remote.id, buf);
  373. ctx->active_remote.handle = init_mDNS(false, ctx->host);
  374. pthread_create(&ctx->search_thread, NULL, &search_remote, ctx);
  375. */
  376. } else if (!strcmp(method, "SETUP") && ((buf = kd_lookup(headers, "Transport")) != NULL)) {
  377. char *p;
  378. rtp_resp_t rtp = { 0 };
  379. short unsigned tport = 0, cport = 0;
  380. if ((p = strcasestr(buf, "timing_port")) != NULL) sscanf(p, "%*[^=]=%hu", &tport);
  381. if ((p = strcasestr(buf, "control_port")) != NULL) sscanf(p, "%*[^=]=%hu", &cport);
  382. rtp = rtp_init(ctx->peer, ctx->latency, ctx->rtsp.aeskey, ctx->rtsp.aesiv,
  383. ctx->rtsp.fmtp, cport, tport, ctx->cmd_cb, ctx->data_cb);
  384. ctx->rtp = rtp.ctx;
  385. if (cport * tport * rtp.cport * rtp.tport * rtp.aport && rtp.ctx) {
  386. char *transport;
  387. asprintf(&transport, "RTP/AVP/UDP;unicast;mode=record;control_port=%u;timing_port=%u;server_port=%u", rtp.cport, rtp.tport, rtp.aport);
  388. LOG_DEBUG("[%p]: audio=(%hu:%hu), timing=(%hu:%hu), control=(%hu:%hu)", ctx, 0, rtp.aport, tport, rtp.tport, cport, rtp.cport);
  389. kd_add(resp, "Transport", transport);
  390. kd_add(resp, "Session", "DEADBEEF");
  391. free(transport);
  392. } else {
  393. success = false;
  394. LOG_INFO("[%p]: cannot start session, missing ports", ctx);
  395. }
  396. } else if (!strcmp(method, "RECORD")) {
  397. unsigned short seqno = 0;
  398. unsigned rtptime = 0;
  399. char *p;
  400. if (ctx->latency) {
  401. char latency[6];
  402. snprintf(latency, 6, "%u", ctx->latency);
  403. kd_add(resp, "Audio-Latency", latency);
  404. }
  405. buf = kd_lookup(headers, "RTP-Info");
  406. if (buf && (p = strcasestr(buf, "seq")) != NULL) sscanf(p, "%*[^=]=%hu", &seqno);
  407. if (buf && (p = strcasestr(buf, "rtptime")) != NULL) sscanf(p, "%*[^=]=%u", &rtptime);
  408. if (ctx->rtp) rtp_record(ctx->rtp, seqno, rtptime);
  409. ctx->cmd_cb(RAOP_STREAM, NULL);
  410. } else if (!strcmp(method, "FLUSH")) {
  411. unsigned short seqno = 0;
  412. unsigned rtptime = 0;
  413. char *p;
  414. buf = kd_lookup(headers, "RTP-Info");
  415. if ((p = strcasestr(buf, "seq")) != NULL) sscanf(p, "%*[^=]=%hu", &seqno);
  416. if ((p = strcasestr(buf, "rtptime")) != NULL) sscanf(p, "%*[^=]=%u", &rtptime);
  417. // only send FLUSH if useful (discards frames above buffer head and top)
  418. if (ctx->rtp && rtp_flush(ctx->rtp, seqno, rtptime))
  419. ctx->cmd_cb(RAOP_FLUSH, NULL);
  420. } else if (!strcmp(method, "TEARDOWN")) {
  421. rtp_end(ctx->rtp);
  422. ctx->rtp = NULL;
  423. /*
  424. // need to make sure no search is on-going and reclaim pthread memory
  425. if (ctx->active_remote.handle) close_mDNS(ctx->active_remote.handle);
  426. pthread_join(ctx->search_thread, NULL);
  427. memset(&ctx->active_remote, 0, sizeof(ctx->active_remote));
  428. */
  429. NFREE(ctx->rtsp.aeskey);
  430. NFREE(ctx->rtsp.aesiv);
  431. NFREE(ctx->rtsp.fmtp);
  432. ctx->cmd_cb(RAOP_STOP, NULL);
  433. } if (!strcmp(method, "SET_PARAMETER")) {
  434. char *p;
  435. if (body && (p = strcasestr(body, "volume")) != NULL) {
  436. float volume;
  437. sscanf(p, "%*[^:]:%f", &volume);
  438. LOG_INFO("[%p]: SET PARAMETER volume %f", ctx, volume);
  439. volume = (volume == -144.0) ? 0 : (1 + volume / 30);
  440. ctx->cmd_cb(RAOP_VOLUME, &volume);
  441. }
  442. /*
  443. if (body && ((p = kd_lookup(headers, "Content-Type")) != NULL) && !strcasecmp(p, "application/x-dmap-tagged")) {
  444. struct metadata_s metadata;
  445. dmap_settings settings = {
  446. NULL, NULL, NULL, NULL, NULL, NULL, NULL, on_dmap_string, NULL,
  447. NULL
  448. };
  449. settings.ctx = &metadata;
  450. memset(&metadata, 0, sizeof(struct metadata_s));
  451. if (!dmap_parse(&settings, body, len)) {
  452. LOG_INFO("[%p]: received metadata\n\tartist: %s\n\talbum: %s\n\ttitle: %s",
  453. ctx, metadata.artist, metadata.album, metadata.title);
  454. free_metadata(&metadata);
  455. }
  456. }
  457. */
  458. }
  459. // don't need to free "buf" because kd_lookup return a pointer, not a strdup
  460. kd_add(resp, "Audio-Jack-Status", "connected; type=analog");
  461. kd_add(resp, "CSeq", kd_lookup(headers, "CSeq"));
  462. if (success) buf = http_send(sock, "RTSP/1.0 200 OK", resp);
  463. else buf = http_send(sock, "RTSP/1.0 500 ERROR", NULL);
  464. if (strcmp(method, "OPTIONS")) {
  465. LOG_INFO("[%p]: responding:\n%s", ctx, buf ? buf : "<void>");
  466. }
  467. NFREE(body);
  468. NFREE(buf);
  469. kd_free(resp);
  470. kd_free(headers);
  471. return true;
  472. }
  473. /*----------------------------------------------------------------------------*/
  474. /*
  475. bool search_remote_cb(mDNSservice_t *slist, void *cookie, bool *stop) {
  476. mDNSservice_t *s;
  477. raop_ctx_t *ctx = (raop_ctx_t*) cookie;
  478. // see if we have found an active remote for our ID
  479. for (s = slist; s; s = s->next) {
  480. if (strcasestr(s->name, ctx->active_remote.DACPid)) {
  481. ctx->active_remote.host = s->addr;
  482. ctx->active_remote.port = s->port;
  483. LOG_INFO("[%p]: found ActiveRemote for %s at %s:%u", ctx, ctx->active_remote.DACPid,
  484. inet_ntoa(ctx->active_remote.host), ctx->active_remote.port);
  485. *stop = true;
  486. break;
  487. }
  488. }
  489. // let caller clear list
  490. return false;
  491. }
  492. */
  493. /*----------------------------------------------------------------------------*/
  494. /*
  495. static void* search_remote(void *args) {
  496. raop_ctx_t *ctx = (raop_ctx_t*) args;
  497. query_mDNS(ctx->active_remote.handle, "_dacp._tcp.local", 0, 0, &search_remote_cb, (void*) ctx);
  498. return NULL;
  499. }
  500. */
  501. /*----------------------------------------------------------------------------*/
  502. static char *rsa_apply(unsigned char *input, int inlen, int *outlen, int mode)
  503. {
  504. static char super_secret_key[] =
  505. "-----BEGIN RSA PRIVATE KEY-----\n"
  506. "MIIEpQIBAAKCAQEA59dE8qLieItsH1WgjrcFRKj6eUWqi+bGLOX1HL3U3GhC/j0Qg90u3sG/1CUt\n"
  507. "wC5vOYvfDmFI6oSFXi5ELabWJmT2dKHzBJKa3k9ok+8t9ucRqMd6DZHJ2YCCLlDRKSKv6kDqnw4U\n"
  508. "wPdpOMXziC/AMj3Z/lUVX1G7WSHCAWKf1zNS1eLvqr+boEjXuBOitnZ/bDzPHrTOZz0Dew0uowxf\n"
  509. "/+sG+NCK3eQJVxqcaJ/vEHKIVd2M+5qL71yJQ+87X6oV3eaYvt3zWZYD6z5vYTcrtij2VZ9Zmni/\n"
  510. "UAaHqn9JdsBWLUEpVviYnhimNVvYFZeCXg/IdTQ+x4IRdiXNv5hEewIDAQABAoIBAQDl8Axy9XfW\n"
  511. "BLmkzkEiqoSwF0PsmVrPzH9KsnwLGH+QZlvjWd8SWYGN7u1507HvhF5N3drJoVU3O14nDY4TFQAa\n"
  512. "LlJ9VM35AApXaLyY1ERrN7u9ALKd2LUwYhM7Km539O4yUFYikE2nIPscEsA5ltpxOgUGCY7b7ez5\n"
  513. "NtD6nL1ZKauw7aNXmVAvmJTcuPxWmoktF3gDJKK2wxZuNGcJE0uFQEG4Z3BrWP7yoNuSK3dii2jm\n"
  514. "lpPHr0O/KnPQtzI3eguhe0TwUem/eYSdyzMyVx/YpwkzwtYL3sR5k0o9rKQLtvLzfAqdBxBurciz\n"
  515. "aaA/L0HIgAmOit1GJA2saMxTVPNhAoGBAPfgv1oeZxgxmotiCcMXFEQEWflzhWYTsXrhUIuz5jFu\n"
  516. "a39GLS99ZEErhLdrwj8rDDViRVJ5skOp9zFvlYAHs0xh92ji1E7V/ysnKBfsMrPkk5KSKPrnjndM\n"
  517. "oPdevWnVkgJ5jxFuNgxkOLMuG9i53B4yMvDTCRiIPMQ++N2iLDaRAoGBAO9v//mU8eVkQaoANf0Z\n"
  518. "oMjW8CN4xwWA2cSEIHkd9AfFkftuv8oyLDCG3ZAf0vrhrrtkrfa7ef+AUb69DNggq4mHQAYBp7L+\n"
  519. "k5DKzJrKuO0r+R0YbY9pZD1+/g9dVt91d6LQNepUE/yY2PP5CNoFmjedpLHMOPFdVgqDzDFxU8hL\n"
  520. "AoGBANDrr7xAJbqBjHVwIzQ4To9pb4BNeqDndk5Qe7fT3+/H1njGaC0/rXE0Qb7q5ySgnsCb3DvA\n"
  521. "cJyRM9SJ7OKlGt0FMSdJD5KG0XPIpAVNwgpXXH5MDJg09KHeh0kXo+QA6viFBi21y340NonnEfdf\n"
  522. "54PX4ZGS/Xac1UK+pLkBB+zRAoGAf0AY3H3qKS2lMEI4bzEFoHeK3G895pDaK3TFBVmD7fV0Zhov\n"
  523. "17fegFPMwOII8MisYm9ZfT2Z0s5Ro3s5rkt+nvLAdfC/PYPKzTLalpGSwomSNYJcB9HNMlmhkGzc\n"
  524. "1JnLYT4iyUyx6pcZBmCd8bD0iwY/FzcgNDaUmbX9+XDvRA0CgYEAkE7pIPlE71qvfJQgoA9em0gI\n"
  525. "LAuE4Pu13aKiJnfft7hIjbK+5kyb3TysZvoyDnb3HOKvInK7vXbKuU4ISgxB2bB3HcYzQMGsz1qJ\n"
  526. "2gG0N5hvJpzwwhbhXqFKA4zaaSrw622wDniAK5MlIE0tIAKKP4yxNGjoD2QYjhBGuhvkWKY=\n"
  527. "-----END RSA PRIVATE KEY-----";
  528. #ifdef WIN32
  529. unsigned char *out;
  530. RSA *rsa;
  531. BIO *bmem = BIO_new_mem_buf(super_secret_key, -1);
  532. rsa = PEM_read_bio_RSAPrivateKey(bmem, NULL, NULL, NULL);
  533. BIO_free(bmem);
  534. out = malloc(RSA_size(rsa));
  535. switch (mode) {
  536. case RSA_MODE_AUTH:
  537. *outlen = RSA_private_encrypt(inlen, input, out, rsa,
  538. RSA_PKCS1_PADDING);
  539. break;
  540. case RSA_MODE_KEY:
  541. *outlen = RSA_private_decrypt(inlen, input, out, rsa,
  542. RSA_PKCS1_OAEP_PADDING);
  543. break;
  544. }
  545. RSA_free(rsa);
  546. return (char*) out;
  547. #else
  548. mbedtls_pk_context pkctx;
  549. mbedtls_rsa_context *trsa;
  550. size_t olen;
  551. /*
  552. we should do entropy initialization & pass a rng function but this
  553. consumes a ton of stack and there is no security concern here. Anyway,
  554. mbedtls takes a lot of stack, unfortunately ...
  555. */
  556. mbedtls_pk_init(&pkctx);
  557. mbedtls_pk_parse_key(&pkctx, (unsigned char *)super_secret_key,
  558. sizeof(super_secret_key), NULL, 0);
  559. uint8_t *outbuf = NULL;
  560. trsa = mbedtls_pk_rsa(pkctx);
  561. switch (mode) {
  562. case RSA_MODE_AUTH:
  563. mbedtls_rsa_set_padding(trsa, MBEDTLS_RSA_PKCS_V15, MBEDTLS_MD_NONE);
  564. outbuf = malloc(trsa->len);
  565. mbedtls_rsa_pkcs1_encrypt(trsa, NULL, NULL, MBEDTLS_RSA_PRIVATE, inlen, input, outbuf);
  566. *outlen = trsa->len;
  567. break;
  568. case RSA_MODE_KEY:
  569. mbedtls_rsa_set_padding(trsa, MBEDTLS_RSA_PKCS_V21, MBEDTLS_MD_SHA1);
  570. outbuf = malloc(trsa->len);
  571. mbedtls_rsa_pkcs1_decrypt(trsa, NULL, NULL, MBEDTLS_RSA_PRIVATE, &olen, input, outbuf, trsa->len);
  572. *outlen = olen;
  573. break;
  574. }
  575. mbedtls_pk_free(&pkctx);
  576. return (char*) outbuf;
  577. #endif
  578. }
  579. #define DECODE_ERROR 0xffffffff
  580. static char base64_chars[] =
  581. "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
  582. /*----------------------------------------------------------------------------*/
  583. static int base64_pad(char *src, char **padded)
  584. {
  585. int n;
  586. n = strlen(src) + strlen(src) % 4;
  587. *padded = malloc(n + 1);
  588. memset(*padded, '=', n);
  589. memcpy(*padded, src, strlen(src));
  590. (*padded)[n] = '\0';
  591. return strlen(*padded);
  592. }
  593. /*----------------------------------------------------------------------------*/
  594. static int pos(char c)
  595. {
  596. char *p;
  597. for (p = base64_chars; *p; p++)
  598. if (*p == c)
  599. return p - base64_chars;
  600. return -1;
  601. }
  602. /*----------------------------------------------------------------------------*/
  603. static int base64_encode(const void *data, int size, char **str)
  604. {
  605. char *s, *p;
  606. int i;
  607. int c;
  608. const unsigned char *q;
  609. p = s = (char *) malloc(size * 4 / 3 + 4);
  610. if (p == NULL) return -1;
  611. q = (const unsigned char *) data;
  612. i = 0;
  613. for (i = 0; i < size;) {
  614. c = q[i++];
  615. c *= 256;
  616. if (i < size) c += q[i];
  617. i++;
  618. c *= 256;
  619. if (i < size) c += q[i];
  620. i++;
  621. p[0] = base64_chars[(c & 0x00fc0000) >> 18];
  622. p[1] = base64_chars[(c & 0x0003f000) >> 12];
  623. p[2] = base64_chars[(c & 0x00000fc0) >> 6];
  624. p[3] = base64_chars[(c & 0x0000003f) >> 0];
  625. if (i > size) p[3] = '=';
  626. if (i > size + 1) p[2] = '=';
  627. p += 4;
  628. }
  629. *p = 0;
  630. *str = s;
  631. return strlen(s);
  632. }
  633. /*----------------------------------------------------------------------------*/
  634. static unsigned int token_decode(const char *token)
  635. {
  636. int i;
  637. unsigned int val = 0;
  638. int marker = 0;
  639. if (strlen(token) < 4)
  640. return DECODE_ERROR;
  641. for (i = 0; i < 4; i++) {
  642. val *= 64;
  643. if (token[i] == '=')
  644. marker++;
  645. else if (marker > 0)
  646. return DECODE_ERROR;
  647. else
  648. val += pos(token[i]);
  649. }
  650. if (marker > 2)
  651. return DECODE_ERROR;
  652. return (marker << 24) | val;
  653. }
  654. /*----------------------------------------------------------------------------*/
  655. static int base64_decode(const char *str, void *data)
  656. {
  657. const char *p;
  658. unsigned char *q;
  659. q = data;
  660. for (p = str; *p && (*p == '=' || strchr(base64_chars, *p)); p += 4) {
  661. unsigned int val = token_decode(p);
  662. unsigned int marker = (val >> 24) & 0xff;
  663. if (val == DECODE_ERROR)
  664. return -1;
  665. *q++ = (val >> 16) & 0xff;
  666. if (marker < 2)
  667. *q++ = (val >> 8) & 0xff;
  668. if (marker < 1)
  669. *q++ = val & 0xff;
  670. }
  671. return q - (unsigned char *) data;
  672. }
  673. /*----------------------------------------------------------------------------*/
  674. static void on_dmap_string(void *ctx, const char *code, const char *name, const char *buf, size_t len) {
  675. struct metadata_s *metadata = (struct metadata_s *) ctx;
  676. if (!strcasecmp(code, "asar")) metadata->artist = strndup(buf, len);
  677. else if (!strcasecmp(code, "asal")) metadata->album = strndup(buf, len);
  678. else if (!strcasecmp(code, "minm")) metadata->title = strndup(buf, len);
  679. }