rtsp.c 26 KB

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  1. /***************************************************************************
  2. * _ _ ____ _
  3. * Project ___| | | | _ \| |
  4. * / __| | | | |_) | |
  5. * | (__| |_| | _ <| |___
  6. * \___|\___/|_| \_\_____|
  7. *
  8. * Copyright (C) 1998 - 2018, Daniel Stenberg, <daniel@haxx.se>, et al.
  9. *
  10. * This software is licensed as described in the file COPYING, which
  11. * you should have received as part of this distribution. The terms
  12. * are also available at https://curl.haxx.se/docs/copyright.html.
  13. *
  14. * You may opt to use, copy, modify, merge, publish, distribute and/or sell
  15. * copies of the Software, and permit persons to whom the Software is
  16. * furnished to do so, under the terms of the COPYING file.
  17. *
  18. * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
  19. * KIND, either express or implied.
  20. *
  21. ***************************************************************************/
  22. #include "curl_setup.h"
  23. #ifndef CURL_DISABLE_RTSP
  24. #include "urldata.h"
  25. #include <curl/curl.h>
  26. #include "transfer.h"
  27. #include "sendf.h"
  28. #include "multiif.h"
  29. #include "http.h"
  30. #include "url.h"
  31. #include "progress.h"
  32. #include "rtsp.h"
  33. #include "strcase.h"
  34. #include "select.h"
  35. #include "connect.h"
  36. #include "strdup.h"
  37. /* The last 3 #include files should be in this order */
  38. #include "curl_printf.h"
  39. #include "curl_memory.h"
  40. #include "memdebug.h"
  41. /*
  42. * TODO (general)
  43. * -incoming server requests
  44. * -server CSeq counter
  45. * -digest authentication
  46. * -connect through proxy
  47. * -pipelining?
  48. */
  49. #define RTP_PKT_CHANNEL(p) ((int)((unsigned char)((p)[1])))
  50. #define RTP_PKT_LENGTH(p) ((((int)((unsigned char)((p)[2]))) << 8) | \
  51. ((int)((unsigned char)((p)[3]))))
  52. /* protocol-specific functions set up to be called by the main engine */
  53. static CURLcode rtsp_do(struct connectdata *conn, bool *done);
  54. static CURLcode rtsp_done(struct connectdata *conn, CURLcode, bool premature);
  55. static CURLcode rtsp_connect(struct connectdata *conn, bool *done);
  56. static CURLcode rtsp_disconnect(struct connectdata *conn, bool dead);
  57. static int rtsp_getsock_do(struct connectdata *conn,
  58. curl_socket_t *socks,
  59. int numsocks);
  60. /*
  61. * Parse and write out any available RTP data.
  62. *
  63. * nread: amount of data left after k->str. will be modified if RTP
  64. * data is parsed and k->str is moved up
  65. * readmore: whether or not the RTP parser needs more data right away
  66. */
  67. static CURLcode rtsp_rtp_readwrite(struct Curl_easy *data,
  68. struct connectdata *conn,
  69. ssize_t *nread,
  70. bool *readmore);
  71. static CURLcode rtsp_setup_connection(struct connectdata *conn);
  72. bool rtsp_connisdead(struct connectdata *check);
  73. static unsigned int rtsp_conncheck(struct connectdata *check,
  74. unsigned int checks_to_perform);
  75. /* this returns the socket to wait for in the DO and DOING state for the multi
  76. interface and then we're always _sending_ a request and thus we wait for
  77. the single socket to become writable only */
  78. static int rtsp_getsock_do(struct connectdata *conn,
  79. curl_socket_t *socks,
  80. int numsocks)
  81. {
  82. /* write mode */
  83. (void)numsocks; /* unused, we trust it to be at least 1 */
  84. socks[0] = conn->sock[FIRSTSOCKET];
  85. return GETSOCK_WRITESOCK(0);
  86. }
  87. static
  88. CURLcode rtp_client_write(struct connectdata *conn, char *ptr, size_t len);
  89. /*
  90. * RTSP handler interface.
  91. */
  92. const struct Curl_handler Curl_handler_rtsp = {
  93. "RTSP", /* scheme */
  94. rtsp_setup_connection, /* setup_connection */
  95. rtsp_do, /* do_it */
  96. rtsp_done, /* done */
  97. ZERO_NULL, /* do_more */
  98. rtsp_connect, /* connect_it */
  99. ZERO_NULL, /* connecting */
  100. ZERO_NULL, /* doing */
  101. ZERO_NULL, /* proto_getsock */
  102. rtsp_getsock_do, /* doing_getsock */
  103. ZERO_NULL, /* domore_getsock */
  104. ZERO_NULL, /* perform_getsock */
  105. rtsp_disconnect, /* disconnect */
  106. rtsp_rtp_readwrite, /* readwrite */
  107. rtsp_conncheck, /* connection_check */
  108. PORT_RTSP, /* defport */
  109. CURLPROTO_RTSP, /* protocol */
  110. PROTOPT_NONE /* flags */
  111. };
  112. static CURLcode rtsp_setup_connection(struct connectdata *conn)
  113. {
  114. struct RTSP *rtsp;
  115. conn->data->req.protop = rtsp = calloc(1, sizeof(struct RTSP));
  116. if(!rtsp)
  117. return CURLE_OUT_OF_MEMORY;
  118. return CURLE_OK;
  119. }
  120. /*
  121. * The server may send us RTP data at any point, and RTSPREQ_RECEIVE does not
  122. * want to block the application forever while receiving a stream. Therefore,
  123. * we cannot assume that an RTSP socket is dead just because it is readable.
  124. *
  125. * Instead, if it is readable, run Curl_connalive() to peek at the socket
  126. * and distinguish between closed and data.
  127. */
  128. bool rtsp_connisdead(struct connectdata *check)
  129. {
  130. int sval;
  131. bool ret_val = TRUE;
  132. sval = SOCKET_READABLE(check->sock[FIRSTSOCKET], 0);
  133. if(sval == 0) {
  134. /* timeout */
  135. ret_val = FALSE;
  136. }
  137. else if(sval & CURL_CSELECT_ERR) {
  138. /* socket is in an error state */
  139. ret_val = TRUE;
  140. }
  141. else if(sval & CURL_CSELECT_IN) {
  142. /* readable with no error. could still be closed */
  143. ret_val = !Curl_connalive(check);
  144. }
  145. return ret_val;
  146. }
  147. /*
  148. * Function to check on various aspects of a connection.
  149. */
  150. static unsigned int rtsp_conncheck(struct connectdata *check,
  151. unsigned int checks_to_perform)
  152. {
  153. unsigned int ret_val = CONNRESULT_NONE;
  154. if(checks_to_perform & CONNCHECK_ISDEAD) {
  155. if(rtsp_connisdead(check))
  156. ret_val |= CONNRESULT_DEAD;
  157. }
  158. return ret_val;
  159. }
  160. static CURLcode rtsp_connect(struct connectdata *conn, bool *done)
  161. {
  162. CURLcode httpStatus;
  163. struct Curl_easy *data = conn->data;
  164. httpStatus = Curl_http_connect(conn, done);
  165. /* Initialize the CSeq if not already done */
  166. if(data->state.rtsp_next_client_CSeq == 0)
  167. data->state.rtsp_next_client_CSeq = 1;
  168. if(data->state.rtsp_next_server_CSeq == 0)
  169. data->state.rtsp_next_server_CSeq = 1;
  170. conn->proto.rtspc.rtp_channel = -1;
  171. return httpStatus;
  172. }
  173. static CURLcode rtsp_disconnect(struct connectdata *conn, bool dead)
  174. {
  175. (void) dead;
  176. Curl_safefree(conn->proto.rtspc.rtp_buf);
  177. return CURLE_OK;
  178. }
  179. static CURLcode rtsp_done(struct connectdata *conn,
  180. CURLcode status, bool premature)
  181. {
  182. struct Curl_easy *data = conn->data;
  183. struct RTSP *rtsp = data->req.protop;
  184. CURLcode httpStatus;
  185. /* Bypass HTTP empty-reply checks on receive */
  186. if(data->set.rtspreq == RTSPREQ_RECEIVE)
  187. premature = TRUE;
  188. httpStatus = Curl_http_done(conn, status, premature);
  189. if(rtsp) {
  190. /* Check the sequence numbers */
  191. long CSeq_sent = rtsp->CSeq_sent;
  192. long CSeq_recv = rtsp->CSeq_recv;
  193. if((data->set.rtspreq != RTSPREQ_RECEIVE) && (CSeq_sent != CSeq_recv)) {
  194. failf(data,
  195. "The CSeq of this request %ld did not match the response %ld",
  196. CSeq_sent, CSeq_recv);
  197. return CURLE_RTSP_CSEQ_ERROR;
  198. }
  199. if(data->set.rtspreq == RTSPREQ_RECEIVE &&
  200. (conn->proto.rtspc.rtp_channel == -1)) {
  201. infof(data, "Got an RTP Receive with a CSeq of %ld\n", CSeq_recv);
  202. /* TODO CPC: Server -> Client logic here */
  203. }
  204. }
  205. return httpStatus;
  206. }
  207. static CURLcode rtsp_do(struct connectdata *conn, bool *done)
  208. {
  209. struct Curl_easy *data = conn->data;
  210. CURLcode result = CURLE_OK;
  211. Curl_RtspReq rtspreq = data->set.rtspreq;
  212. struct RTSP *rtsp = data->req.protop;
  213. struct HTTP *http;
  214. Curl_send_buffer *req_buffer;
  215. curl_off_t postsize = 0; /* for ANNOUNCE and SET_PARAMETER */
  216. curl_off_t putsize = 0; /* for ANNOUNCE and SET_PARAMETER */
  217. const char *p_request = NULL;
  218. const char *p_session_id = NULL;
  219. const char *p_accept = NULL;
  220. const char *p_accept_encoding = NULL;
  221. const char *p_range = NULL;
  222. const char *p_referrer = NULL;
  223. const char *p_stream_uri = NULL;
  224. const char *p_transport = NULL;
  225. const char *p_uagent = NULL;
  226. const char *p_proxyuserpwd = NULL;
  227. const char *p_userpwd = NULL;
  228. *done = TRUE;
  229. http = &(rtsp->http_wrapper);
  230. /* Assert that no one has changed the RTSP struct in an evil way */
  231. DEBUGASSERT((void *)http == (void *)rtsp);
  232. rtsp->CSeq_sent = data->state.rtsp_next_client_CSeq;
  233. rtsp->CSeq_recv = 0;
  234. /* Setup the 'p_request' pointer to the proper p_request string
  235. * Since all RTSP requests are included here, there is no need to
  236. * support custom requests like HTTP.
  237. **/
  238. data->set.opt_no_body = TRUE; /* most requests don't contain a body */
  239. switch(rtspreq) {
  240. default:
  241. failf(data, "Got invalid RTSP request");
  242. return CURLE_BAD_FUNCTION_ARGUMENT;
  243. case RTSPREQ_OPTIONS:
  244. p_request = "OPTIONS";
  245. break;
  246. case RTSPREQ_DESCRIBE:
  247. p_request = "DESCRIBE";
  248. data->set.opt_no_body = FALSE;
  249. break;
  250. case RTSPREQ_ANNOUNCE:
  251. p_request = "ANNOUNCE";
  252. break;
  253. case RTSPREQ_SETUP:
  254. p_request = "SETUP";
  255. break;
  256. case RTSPREQ_PLAY:
  257. p_request = "PLAY";
  258. break;
  259. case RTSPREQ_PAUSE:
  260. p_request = "PAUSE";
  261. break;
  262. case RTSPREQ_TEARDOWN:
  263. p_request = "TEARDOWN";
  264. break;
  265. case RTSPREQ_GET_PARAMETER:
  266. /* GET_PARAMETER's no_body status is determined later */
  267. p_request = "GET_PARAMETER";
  268. data->set.opt_no_body = FALSE;
  269. break;
  270. case RTSPREQ_SET_PARAMETER:
  271. p_request = "SET_PARAMETER";
  272. break;
  273. case RTSPREQ_RECORD:
  274. p_request = "RECORD";
  275. break;
  276. case RTSPREQ_RECEIVE:
  277. p_request = "";
  278. /* Treat interleaved RTP as body*/
  279. data->set.opt_no_body = FALSE;
  280. break;
  281. case RTSPREQ_LAST:
  282. failf(data, "Got invalid RTSP request: RTSPREQ_LAST");
  283. return CURLE_BAD_FUNCTION_ARGUMENT;
  284. }
  285. if(rtspreq == RTSPREQ_RECEIVE) {
  286. Curl_setup_transfer(conn, FIRSTSOCKET, -1, TRUE,
  287. &http->readbytecount, -1, NULL);
  288. return result;
  289. }
  290. p_session_id = data->set.str[STRING_RTSP_SESSION_ID];
  291. if(!p_session_id &&
  292. (rtspreq & ~(RTSPREQ_OPTIONS | RTSPREQ_DESCRIBE | RTSPREQ_SETUP))) {
  293. failf(data, "Refusing to issue an RTSP request [%s] without a session ID.",
  294. p_request);
  295. return CURLE_BAD_FUNCTION_ARGUMENT;
  296. }
  297. /* TODO: proxy? */
  298. /* Stream URI. Default to server '*' if not specified */
  299. if(data->set.str[STRING_RTSP_STREAM_URI]) {
  300. p_stream_uri = data->set.str[STRING_RTSP_STREAM_URI];
  301. }
  302. else {
  303. p_stream_uri = "*";
  304. }
  305. /* Transport Header for SETUP requests */
  306. p_transport = Curl_checkheaders(conn, "Transport");
  307. if(rtspreq == RTSPREQ_SETUP && !p_transport) {
  308. /* New Transport: setting? */
  309. if(data->set.str[STRING_RTSP_TRANSPORT]) {
  310. Curl_safefree(conn->allocptr.rtsp_transport);
  311. conn->allocptr.rtsp_transport =
  312. aprintf("Transport: %s\r\n",
  313. data->set.str[STRING_RTSP_TRANSPORT]);
  314. if(!conn->allocptr.rtsp_transport)
  315. return CURLE_OUT_OF_MEMORY;
  316. }
  317. else {
  318. failf(data,
  319. "Refusing to issue an RTSP SETUP without a Transport: header.");
  320. return CURLE_BAD_FUNCTION_ARGUMENT;
  321. }
  322. p_transport = conn->allocptr.rtsp_transport;
  323. }
  324. /* Accept Headers for DESCRIBE requests */
  325. if(rtspreq == RTSPREQ_DESCRIBE) {
  326. /* Accept Header */
  327. p_accept = Curl_checkheaders(conn, "Accept")?
  328. NULL:"Accept: application/sdp\r\n";
  329. /* Accept-Encoding header */
  330. if(!Curl_checkheaders(conn, "Accept-Encoding") &&
  331. data->set.str[STRING_ENCODING]) {
  332. Curl_safefree(conn->allocptr.accept_encoding);
  333. conn->allocptr.accept_encoding =
  334. aprintf("Accept-Encoding: %s\r\n", data->set.str[STRING_ENCODING]);
  335. if(!conn->allocptr.accept_encoding)
  336. return CURLE_OUT_OF_MEMORY;
  337. p_accept_encoding = conn->allocptr.accept_encoding;
  338. }
  339. }
  340. /* The User-Agent string might have been allocated in url.c already, because
  341. it might have been used in the proxy connect, but if we have got a header
  342. with the user-agent string specified, we erase the previously made string
  343. here. */
  344. if(Curl_checkheaders(conn, "User-Agent") && conn->allocptr.uagent) {
  345. Curl_safefree(conn->allocptr.uagent);
  346. conn->allocptr.uagent = NULL;
  347. }
  348. else if(!Curl_checkheaders(conn, "User-Agent") &&
  349. data->set.str[STRING_USERAGENT]) {
  350. p_uagent = conn->allocptr.uagent;
  351. }
  352. /* setup the authentication headers */
  353. result = Curl_http_output_auth(conn, p_request, p_stream_uri, FALSE);
  354. if(result)
  355. return result;
  356. p_proxyuserpwd = conn->allocptr.proxyuserpwd;
  357. p_userpwd = conn->allocptr.userpwd;
  358. /* Referrer */
  359. Curl_safefree(conn->allocptr.ref);
  360. if(data->change.referer && !Curl_checkheaders(conn, "Referer"))
  361. conn->allocptr.ref = aprintf("Referer: %s\r\n", data->change.referer);
  362. else
  363. conn->allocptr.ref = NULL;
  364. p_referrer = conn->allocptr.ref;
  365. /*
  366. * Range Header
  367. * Only applies to PLAY, PAUSE, RECORD
  368. *
  369. * Go ahead and use the Range stuff supplied for HTTP
  370. */
  371. if(data->state.use_range &&
  372. (rtspreq & (RTSPREQ_PLAY | RTSPREQ_PAUSE | RTSPREQ_RECORD))) {
  373. /* Check to see if there is a range set in the custom headers */
  374. if(!Curl_checkheaders(conn, "Range") && data->state.range) {
  375. Curl_safefree(conn->allocptr.rangeline);
  376. conn->allocptr.rangeline = aprintf("Range: %s\r\n", data->state.range);
  377. p_range = conn->allocptr.rangeline;
  378. }
  379. }
  380. /*
  381. * Sanity check the custom headers
  382. */
  383. if(Curl_checkheaders(conn, "CSeq")) {
  384. failf(data, "CSeq cannot be set as a custom header.");
  385. return CURLE_RTSP_CSEQ_ERROR;
  386. }
  387. if(Curl_checkheaders(conn, "Session")) {
  388. failf(data, "Session ID cannot be set as a custom header.");
  389. return CURLE_BAD_FUNCTION_ARGUMENT;
  390. }
  391. /* Initialize a dynamic send buffer */
  392. req_buffer = Curl_add_buffer_init();
  393. if(!req_buffer)
  394. return CURLE_OUT_OF_MEMORY;
  395. result =
  396. Curl_add_bufferf(req_buffer,
  397. "%s %s RTSP/1.0\r\n" /* Request Stream-URI RTSP/1.0 */
  398. "CSeq: %ld\r\n", /* CSeq */
  399. p_request, p_stream_uri, rtsp->CSeq_sent);
  400. if(result)
  401. return result;
  402. /*
  403. * Rather than do a normal alloc line, keep the session_id unformatted
  404. * to make comparison easier
  405. */
  406. if(p_session_id) {
  407. result = Curl_add_bufferf(req_buffer, "Session: %s\r\n", p_session_id);
  408. if(result)
  409. return result;
  410. }
  411. /*
  412. * Shared HTTP-like options
  413. */
  414. result = Curl_add_bufferf(req_buffer,
  415. "%s" /* transport */
  416. "%s" /* accept */
  417. "%s" /* accept-encoding */
  418. "%s" /* range */
  419. "%s" /* referrer */
  420. "%s" /* user-agent */
  421. "%s" /* proxyuserpwd */
  422. "%s" /* userpwd */
  423. ,
  424. p_transport ? p_transport : "",
  425. p_accept ? p_accept : "",
  426. p_accept_encoding ? p_accept_encoding : "",
  427. p_range ? p_range : "",
  428. p_referrer ? p_referrer : "",
  429. p_uagent ? p_uagent : "",
  430. p_proxyuserpwd ? p_proxyuserpwd : "",
  431. p_userpwd ? p_userpwd : "");
  432. /*
  433. * Free userpwd now --- cannot reuse this for Negotiate and possibly NTLM
  434. * with basic and digest, it will be freed anyway by the next request
  435. */
  436. Curl_safefree(conn->allocptr.userpwd);
  437. conn->allocptr.userpwd = NULL;
  438. if(result)
  439. return result;
  440. if((rtspreq == RTSPREQ_SETUP) || (rtspreq == RTSPREQ_DESCRIBE)) {
  441. result = Curl_add_timecondition(data, req_buffer);
  442. if(result)
  443. return result;
  444. }
  445. result = Curl_add_custom_headers(conn, FALSE, req_buffer);
  446. if(result)
  447. return result;
  448. if(rtspreq == RTSPREQ_ANNOUNCE ||
  449. rtspreq == RTSPREQ_SET_PARAMETER ||
  450. rtspreq == RTSPREQ_GET_PARAMETER) {
  451. if(data->set.upload) {
  452. putsize = data->state.infilesize;
  453. data->set.httpreq = HTTPREQ_PUT;
  454. }
  455. else {
  456. postsize = (data->state.infilesize != -1)?
  457. data->state.infilesize:
  458. (data->set.postfields? (curl_off_t)strlen(data->set.postfields):0);
  459. data->set.httpreq = HTTPREQ_POST;
  460. }
  461. if(putsize > 0 || postsize > 0) {
  462. /* As stated in the http comments, it is probably not wise to
  463. * actually set a custom Content-Length in the headers */
  464. if(!Curl_checkheaders(conn, "Content-Length")) {
  465. result = Curl_add_bufferf(req_buffer,
  466. "Content-Length: %" CURL_FORMAT_CURL_OFF_T"\r\n",
  467. (data->set.upload ? putsize : postsize));
  468. if(result)
  469. return result;
  470. }
  471. if(rtspreq == RTSPREQ_SET_PARAMETER ||
  472. rtspreq == RTSPREQ_GET_PARAMETER) {
  473. if(!Curl_checkheaders(conn, "Content-Type")) {
  474. result = Curl_add_bufferf(req_buffer,
  475. "Content-Type: text/parameters\r\n");
  476. if(result)
  477. return result;
  478. }
  479. }
  480. if(rtspreq == RTSPREQ_ANNOUNCE) {
  481. if(!Curl_checkheaders(conn, "Content-Type")) {
  482. result = Curl_add_bufferf(req_buffer,
  483. "Content-Type: application/sdp\r\n");
  484. if(result)
  485. return result;
  486. }
  487. }
  488. data->state.expect100header = FALSE; /* RTSP posts are simple/small */
  489. }
  490. else if(rtspreq == RTSPREQ_GET_PARAMETER) {
  491. /* Check for an empty GET_PARAMETER (heartbeat) request */
  492. data->set.httpreq = HTTPREQ_HEAD;
  493. data->set.opt_no_body = TRUE;
  494. }
  495. }
  496. /* RTSP never allows chunked transfer */
  497. data->req.forbidchunk = TRUE;
  498. /* Finish the request buffer */
  499. result = Curl_add_buffer(req_buffer, "\r\n", 2);
  500. if(result)
  501. return result;
  502. if(postsize > 0) {
  503. result = Curl_add_buffer(req_buffer, data->set.postfields,
  504. (size_t)postsize);
  505. if(result)
  506. return result;
  507. }
  508. /* issue the request */
  509. result = Curl_add_buffer_send(req_buffer, conn,
  510. &data->info.request_size, 0, FIRSTSOCKET);
  511. if(result) {
  512. failf(data, "Failed sending RTSP request");
  513. return result;
  514. }
  515. Curl_setup_transfer(conn, FIRSTSOCKET, -1, TRUE, &http->readbytecount,
  516. putsize?FIRSTSOCKET:-1,
  517. putsize?&http->writebytecount:NULL);
  518. /* Increment the CSeq on success */
  519. data->state.rtsp_next_client_CSeq++;
  520. if(http->writebytecount) {
  521. /* if a request-body has been sent off, we make sure this progress is
  522. noted properly */
  523. Curl_pgrsSetUploadCounter(data, http->writebytecount);
  524. if(Curl_pgrsUpdate(conn))
  525. result = CURLE_ABORTED_BY_CALLBACK;
  526. }
  527. return result;
  528. }
  529. static CURLcode rtsp_rtp_readwrite(struct Curl_easy *data,
  530. struct connectdata *conn,
  531. ssize_t *nread,
  532. bool *readmore) {
  533. struct SingleRequest *k = &data->req;
  534. struct rtsp_conn *rtspc = &(conn->proto.rtspc);
  535. char *rtp; /* moving pointer to rtp data */
  536. ssize_t rtp_dataleft; /* how much data left to parse in this round */
  537. char *scratch;
  538. CURLcode result;
  539. if(rtspc->rtp_buf) {
  540. /* There was some leftover data the last time. Merge buffers */
  541. char *newptr = Curl_saferealloc(rtspc->rtp_buf,
  542. rtspc->rtp_bufsize + *nread);
  543. if(!newptr) {
  544. rtspc->rtp_buf = NULL;
  545. rtspc->rtp_bufsize = 0;
  546. return CURLE_OUT_OF_MEMORY;
  547. }
  548. rtspc->rtp_buf = newptr;
  549. memcpy(rtspc->rtp_buf + rtspc->rtp_bufsize, k->str, *nread);
  550. rtspc->rtp_bufsize += *nread;
  551. rtp = rtspc->rtp_buf;
  552. rtp_dataleft = rtspc->rtp_bufsize;
  553. }
  554. else {
  555. /* Just parse the request buffer directly */
  556. rtp = k->str;
  557. rtp_dataleft = *nread;
  558. }
  559. while((rtp_dataleft > 0) &&
  560. (rtp[0] == '$')) {
  561. if(rtp_dataleft > 4) {
  562. int rtp_length;
  563. /* Parse the header */
  564. /* The channel identifier immediately follows and is 1 byte */
  565. rtspc->rtp_channel = RTP_PKT_CHANNEL(rtp);
  566. /* The length is two bytes */
  567. rtp_length = RTP_PKT_LENGTH(rtp);
  568. if(rtp_dataleft < rtp_length + 4) {
  569. /* Need more - incomplete payload*/
  570. *readmore = TRUE;
  571. break;
  572. }
  573. /* We have the full RTP interleaved packet
  574. * Write out the header including the leading '$' */
  575. DEBUGF(infof(data, "RTP write channel %d rtp_length %d\n",
  576. rtspc->rtp_channel, rtp_length));
  577. result = rtp_client_write(conn, &rtp[0], rtp_length + 4);
  578. if(result) {
  579. failf(data, "Got an error writing an RTP packet");
  580. *readmore = FALSE;
  581. Curl_safefree(rtspc->rtp_buf);
  582. rtspc->rtp_buf = NULL;
  583. rtspc->rtp_bufsize = 0;
  584. return result;
  585. }
  586. /* Move forward in the buffer */
  587. rtp_dataleft -= rtp_length + 4;
  588. rtp += rtp_length + 4;
  589. if(data->set.rtspreq == RTSPREQ_RECEIVE) {
  590. /* If we are in a passive receive, give control back
  591. * to the app as often as we can.
  592. */
  593. k->keepon &= ~KEEP_RECV;
  594. }
  595. }
  596. else {
  597. /* Need more - incomplete header */
  598. *readmore = TRUE;
  599. break;
  600. }
  601. }
  602. if(rtp_dataleft != 0 && rtp[0] == '$') {
  603. DEBUGF(infof(data, "RTP Rewinding %zd %s\n", rtp_dataleft,
  604. *readmore ? "(READMORE)" : ""));
  605. /* Store the incomplete RTP packet for a "rewind" */
  606. scratch = malloc(rtp_dataleft);
  607. if(!scratch) {
  608. Curl_safefree(rtspc->rtp_buf);
  609. rtspc->rtp_buf = NULL;
  610. rtspc->rtp_bufsize = 0;
  611. return CURLE_OUT_OF_MEMORY;
  612. }
  613. memcpy(scratch, rtp, rtp_dataleft);
  614. Curl_safefree(rtspc->rtp_buf);
  615. rtspc->rtp_buf = scratch;
  616. rtspc->rtp_bufsize = rtp_dataleft;
  617. /* As far as the transfer is concerned, this data is consumed */
  618. *nread = 0;
  619. return CURLE_OK;
  620. }
  621. /* Fix up k->str to point just after the last RTP packet */
  622. k->str += *nread - rtp_dataleft;
  623. /* either all of the data has been read or...
  624. * rtp now points at the next byte to parse
  625. */
  626. if(rtp_dataleft > 0)
  627. DEBUGASSERT(k->str[0] == rtp[0]);
  628. DEBUGASSERT(rtp_dataleft <= *nread); /* sanity check */
  629. *nread = rtp_dataleft;
  630. /* If we get here, we have finished with the leftover/merge buffer */
  631. Curl_safefree(rtspc->rtp_buf);
  632. rtspc->rtp_buf = NULL;
  633. rtspc->rtp_bufsize = 0;
  634. return CURLE_OK;
  635. }
  636. static
  637. CURLcode rtp_client_write(struct connectdata *conn, char *ptr, size_t len)
  638. {
  639. struct Curl_easy *data = conn->data;
  640. size_t wrote;
  641. curl_write_callback writeit;
  642. void *user_ptr;
  643. if(len == 0) {
  644. failf(data, "Cannot write a 0 size RTP packet.");
  645. return CURLE_WRITE_ERROR;
  646. }
  647. /* If the user has configured CURLOPT_INTERLEAVEFUNCTION then use that
  648. function and any configured CURLOPT_INTERLEAVEDATA to write out the RTP
  649. data. Otherwise, use the CURLOPT_WRITEFUNCTION with the CURLOPT_WRITEDATA
  650. pointer to write out the RTP data. */
  651. if(data->set.fwrite_rtp) {
  652. writeit = data->set.fwrite_rtp;
  653. user_ptr = data->set.rtp_out;
  654. }
  655. else {
  656. writeit = data->set.fwrite_func;
  657. user_ptr = data->set.out;
  658. }
  659. Curl_set_in_callback(data, true);
  660. wrote = writeit(ptr, 1, len, user_ptr);
  661. Curl_set_in_callback(data, false);
  662. if(CURL_WRITEFUNC_PAUSE == wrote) {
  663. failf(data, "Cannot pause RTP");
  664. return CURLE_WRITE_ERROR;
  665. }
  666. if(wrote != len) {
  667. failf(data, "Failed writing RTP data");
  668. return CURLE_WRITE_ERROR;
  669. }
  670. return CURLE_OK;
  671. }
  672. CURLcode Curl_rtsp_parseheader(struct connectdata *conn,
  673. char *header)
  674. {
  675. struct Curl_easy *data = conn->data;
  676. long CSeq = 0;
  677. if(checkprefix("CSeq:", header)) {
  678. /* Store the received CSeq. Match is verified in rtsp_done */
  679. int nc = sscanf(&header[4], ": %ld", &CSeq);
  680. if(nc == 1) {
  681. struct RTSP *rtsp = data->req.protop;
  682. rtsp->CSeq_recv = CSeq; /* mark the request */
  683. data->state.rtsp_CSeq_recv = CSeq; /* update the handle */
  684. }
  685. else {
  686. failf(data, "Unable to read the CSeq header: [%s]", header);
  687. return CURLE_RTSP_CSEQ_ERROR;
  688. }
  689. }
  690. else if(checkprefix("Session:", header)) {
  691. char *start;
  692. /* Find the first non-space letter */
  693. start = header + 8;
  694. while(*start && ISSPACE(*start))
  695. start++;
  696. if(!*start) {
  697. failf(data, "Got a blank Session ID");
  698. }
  699. else if(data->set.str[STRING_RTSP_SESSION_ID]) {
  700. /* If the Session ID is set, then compare */
  701. if(strncmp(start, data->set.str[STRING_RTSP_SESSION_ID],
  702. strlen(data->set.str[STRING_RTSP_SESSION_ID])) != 0) {
  703. failf(data, "Got RTSP Session ID Line [%s], but wanted ID [%s]",
  704. start, data->set.str[STRING_RTSP_SESSION_ID]);
  705. return CURLE_RTSP_SESSION_ERROR;
  706. }
  707. }
  708. else {
  709. /* If the Session ID is not set, and we find it in a response, then set
  710. * it.
  711. *
  712. * Allow any non whitespace content, up to the field separator or end of
  713. * line. RFC 2326 isn't 100% clear on the session ID and for example
  714. * gstreamer does url-encoded session ID's not covered by the standard.
  715. */
  716. char *end = start;
  717. while(*end && *end != ';' && !ISSPACE(*end))
  718. end++;
  719. /* Copy the id substring into a new buffer */
  720. data->set.str[STRING_RTSP_SESSION_ID] = malloc(end - start + 1);
  721. if(data->set.str[STRING_RTSP_SESSION_ID] == NULL)
  722. return CURLE_OUT_OF_MEMORY;
  723. memcpy(data->set.str[STRING_RTSP_SESSION_ID], start, end - start);
  724. (data->set.str[STRING_RTSP_SESSION_ID])[end - start] = '\0';
  725. }
  726. }
  727. return CURLE_OK;
  728. }
  729. #endif /* CURL_DISABLE_RTSP */