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00022 #include "libavcodec/get_bits.h"
00023 #include "avformat.h"
00024 #include "mpegts.h"
00025 #include "url.h"
00026
00027 #include <unistd.h>
00028 #include <strings.h>
00029 #include "network.h"
00030
00031 #include "rtpdec.h"
00032 #include "rtpdec_formats.h"
00033
00034
00035
00036
00037
00038
00039
00040
00041
00042
00043
00044
00045 static RTPDynamicProtocolHandler ff_realmedia_mp3_dynamic_handler = {
00046 .enc_name = "X-MP3-draft-00",
00047 .codec_type = AVMEDIA_TYPE_AUDIO,
00048 .codec_id = CODEC_ID_MP3ADU,
00049 };
00050
00051
00052 static RTPDynamicProtocolHandler *RTPFirstDynamicPayloadHandler= NULL;
00053
00054 void ff_register_dynamic_payload_handler(RTPDynamicProtocolHandler *handler)
00055 {
00056 handler->next= RTPFirstDynamicPayloadHandler;
00057 RTPFirstDynamicPayloadHandler= handler;
00058 }
00059
00060 void av_register_rtp_dynamic_payload_handlers(void)
00061 {
00062 ff_register_dynamic_payload_handler(&ff_mp4v_es_dynamic_handler);
00063 ff_register_dynamic_payload_handler(&ff_mpeg4_generic_dynamic_handler);
00064 ff_register_dynamic_payload_handler(&ff_amr_nb_dynamic_handler);
00065 ff_register_dynamic_payload_handler(&ff_amr_wb_dynamic_handler);
00066 ff_register_dynamic_payload_handler(&ff_h263_1998_dynamic_handler);
00067 ff_register_dynamic_payload_handler(&ff_h263_2000_dynamic_handler);
00068 ff_register_dynamic_payload_handler(&ff_h264_dynamic_handler);
00069 ff_register_dynamic_payload_handler(&ff_vorbis_dynamic_handler);
00070 ff_register_dynamic_payload_handler(&ff_theora_dynamic_handler);
00071 ff_register_dynamic_payload_handler(&ff_qdm2_dynamic_handler);
00072 ff_register_dynamic_payload_handler(&ff_svq3_dynamic_handler);
00073 ff_register_dynamic_payload_handler(&ff_mp4a_latm_dynamic_handler);
00074 ff_register_dynamic_payload_handler(&ff_vp8_dynamic_handler);
00075 ff_register_dynamic_payload_handler(&ff_qcelp_dynamic_handler);
00076 ff_register_dynamic_payload_handler(&ff_realmedia_mp3_dynamic_handler);
00077
00078 ff_register_dynamic_payload_handler(&ff_ms_rtp_asf_pfv_handler);
00079 ff_register_dynamic_payload_handler(&ff_ms_rtp_asf_pfa_handler);
00080
00081 ff_register_dynamic_payload_handler(&ff_qt_rtp_aud_handler);
00082 ff_register_dynamic_payload_handler(&ff_qt_rtp_vid_handler);
00083 ff_register_dynamic_payload_handler(&ff_quicktime_rtp_aud_handler);
00084 ff_register_dynamic_payload_handler(&ff_quicktime_rtp_vid_handler);
00085
00086 ff_register_dynamic_payload_handler(&ff_g726_16_dynamic_handler);
00087 ff_register_dynamic_payload_handler(&ff_g726_24_dynamic_handler);
00088 ff_register_dynamic_payload_handler(&ff_g726_32_dynamic_handler);
00089 ff_register_dynamic_payload_handler(&ff_g726_40_dynamic_handler);
00090 }
00091
00092 RTPDynamicProtocolHandler *ff_rtp_handler_find_by_name(const char *name,
00093 enum AVMediaType codec_type)
00094 {
00095 RTPDynamicProtocolHandler *handler;
00096 for (handler = RTPFirstDynamicPayloadHandler;
00097 handler; handler = handler->next)
00098 if (!strcasecmp(name, handler->enc_name) &&
00099 codec_type == handler->codec_type)
00100 return handler;
00101 return NULL;
00102 }
00103
00104 RTPDynamicProtocolHandler *ff_rtp_handler_find_by_id(int id,
00105 enum AVMediaType codec_type)
00106 {
00107 RTPDynamicProtocolHandler *handler;
00108 for (handler = RTPFirstDynamicPayloadHandler;
00109 handler; handler = handler->next)
00110 if (handler->static_payload_id && handler->static_payload_id == id &&
00111 codec_type == handler->codec_type)
00112 return handler;
00113 return NULL;
00114 }
00115
00116 static int rtcp_parse_packet(RTPDemuxContext *s, const unsigned char *buf, int len)
00117 {
00118 int payload_len;
00119 while (len >= 4) {
00120 payload_len = FFMIN(len, (AV_RB16(buf + 2) + 1) * 4);
00121
00122 switch (buf[1]) {
00123 case RTCP_SR:
00124 if (payload_len < 20) {
00125 av_log(NULL, AV_LOG_ERROR, "Invalid length for RTCP SR packet\n");
00126 return AVERROR_INVALIDDATA;
00127 }
00128
00129 s->last_rtcp_ntp_time = AV_RB64(buf + 8);
00130 s->last_rtcp_timestamp = AV_RB32(buf + 16);
00131 if (s->first_rtcp_ntp_time == AV_NOPTS_VALUE) {
00132 s->first_rtcp_ntp_time = s->last_rtcp_ntp_time;
00133 if (!s->base_timestamp)
00134 s->base_timestamp = s->last_rtcp_timestamp;
00135 s->rtcp_ts_offset = s->last_rtcp_timestamp - s->base_timestamp;
00136 }
00137
00138 break;
00139 case RTCP_BYE:
00140 return -RTCP_BYE;
00141 }
00142
00143 buf += payload_len;
00144 len -= payload_len;
00145 }
00146 return -1;
00147 }
00148
00149 #define RTP_SEQ_MOD (1<<16)
00150
00154 static void rtp_init_statistics(RTPStatistics *s, uint16_t base_sequence)
00155 {
00156 memset(s, 0, sizeof(RTPStatistics));
00157 s->max_seq= base_sequence;
00158 s->probation= 1;
00159 }
00160
00164 static void rtp_init_sequence(RTPStatistics *s, uint16_t seq)
00165 {
00166 s->max_seq= seq;
00167 s->cycles= 0;
00168 s->base_seq= seq -1;
00169 s->bad_seq= RTP_SEQ_MOD + 1;
00170 s->received= 0;
00171 s->expected_prior= 0;
00172 s->received_prior= 0;
00173 s->jitter= 0;
00174 s->transit= 0;
00175 }
00176
00180 static int rtp_valid_packet_in_sequence(RTPStatistics *s, uint16_t seq)
00181 {
00182 uint16_t udelta= seq - s->max_seq;
00183 const int MAX_DROPOUT= 3000;
00184 const int MAX_MISORDER = 100;
00185 const int MIN_SEQUENTIAL = 2;
00186
00187
00188 if(s->probation)
00189 {
00190 if(seq==s->max_seq + 1) {
00191 s->probation--;
00192 s->max_seq= seq;
00193 if(s->probation==0) {
00194 rtp_init_sequence(s, seq);
00195 s->received++;
00196 return 1;
00197 }
00198 } else {
00199 s->probation= MIN_SEQUENTIAL - 1;
00200 s->max_seq = seq;
00201 }
00202 } else if (udelta < MAX_DROPOUT) {
00203
00204 if(seq < s->max_seq) {
00205
00206 s->cycles += RTP_SEQ_MOD;
00207 }
00208 s->max_seq= seq;
00209 } else if (udelta <= RTP_SEQ_MOD - MAX_MISORDER) {
00210
00211 if(seq==s->bad_seq) {
00212
00213 rtp_init_sequence(s, seq);
00214 } else {
00215 s->bad_seq= (seq + 1) & (RTP_SEQ_MOD-1);
00216 return 0;
00217 }
00218 } else {
00219
00220 }
00221 s->received++;
00222 return 1;
00223 }
00224
00225 #if 0
00226
00231 static void rtcp_update_jitter(RTPStatistics *s, uint32_t sent_timestamp, uint32_t arrival_timestamp)
00232 {
00233 uint32_t transit= arrival_timestamp - sent_timestamp;
00234 int d;
00235 s->transit= transit;
00236 d= FFABS(transit - s->transit);
00237 s->jitter += d - ((s->jitter + 8)>>4);
00238 }
00239 #endif
00240
00241 int rtp_check_and_send_back_rr(RTPDemuxContext *s, int count)
00242 {
00243 AVIOContext *pb;
00244 uint8_t *buf;
00245 int len;
00246 int rtcp_bytes;
00247 RTPStatistics *stats= &s->statistics;
00248 uint32_t lost;
00249 uint32_t extended_max;
00250 uint32_t expected_interval;
00251 uint32_t received_interval;
00252 uint32_t lost_interval;
00253 uint32_t expected;
00254 uint32_t fraction;
00255 uint64_t ntp_time= s->last_rtcp_ntp_time;
00256
00257 if (!s->rtp_ctx || (count < 1))
00258 return -1;
00259
00260
00261
00262 s->octet_count += count;
00263 rtcp_bytes = ((s->octet_count - s->last_octet_count) * RTCP_TX_RATIO_NUM) /
00264 RTCP_TX_RATIO_DEN;
00265 rtcp_bytes /= 50;
00266 if (rtcp_bytes < 28)
00267 return -1;
00268 s->last_octet_count = s->octet_count;
00269
00270 if (avio_open_dyn_buf(&pb) < 0)
00271 return -1;
00272
00273
00274 avio_w8(pb, (RTP_VERSION << 6) + 1);
00275 avio_w8(pb, RTCP_RR);
00276 avio_wb16(pb, 7);
00277
00278 avio_wb32(pb, s->ssrc + 1);
00279 avio_wb32(pb, s->ssrc);
00280
00281
00282 extended_max= stats->cycles + stats->max_seq;
00283 expected= extended_max - stats->base_seq + 1;
00284 lost= expected - stats->received;
00285 lost= FFMIN(lost, 0xffffff);
00286 expected_interval= expected - stats->expected_prior;
00287 stats->expected_prior= expected;
00288 received_interval= stats->received - stats->received_prior;
00289 stats->received_prior= stats->received;
00290 lost_interval= expected_interval - received_interval;
00291 if (expected_interval==0 || lost_interval<=0) fraction= 0;
00292 else fraction = (lost_interval<<8)/expected_interval;
00293
00294 fraction= (fraction<<24) | lost;
00295
00296 avio_wb32(pb, fraction);
00297 avio_wb32(pb, extended_max);
00298 avio_wb32(pb, stats->jitter>>4);
00299
00300 if(s->last_rtcp_ntp_time==AV_NOPTS_VALUE)
00301 {
00302 avio_wb32(pb, 0);
00303 avio_wb32(pb, 0);
00304 } else {
00305 uint32_t middle_32_bits= s->last_rtcp_ntp_time>>16;
00306 uint32_t delay_since_last= ntp_time - s->last_rtcp_ntp_time;
00307
00308 avio_wb32(pb, middle_32_bits);
00309 avio_wb32(pb, delay_since_last);
00310 }
00311
00312
00313 avio_w8(pb, (RTP_VERSION << 6) + 1);
00314 avio_w8(pb, RTCP_SDES);
00315 len = strlen(s->hostname);
00316 avio_wb16(pb, (6 + len + 3) / 4);
00317 avio_wb32(pb, s->ssrc);
00318 avio_w8(pb, 0x01);
00319 avio_w8(pb, len);
00320 avio_write(pb, s->hostname, len);
00321
00322 for (len = (6 + len) % 4; len % 4; len++) {
00323 avio_w8(pb, 0);
00324 }
00325
00326 avio_flush(pb);
00327 len = avio_close_dyn_buf(pb, &buf);
00328 if ((len > 0) && buf) {
00329 int av_unused result;
00330 av_dlog(s->ic, "sending %d bytes of RR\n", len);
00331 result= ffurl_write(s->rtp_ctx, buf, len);
00332 av_dlog(s->ic, "result from ffurl_write: %d\n", result);
00333 av_free(buf);
00334 }
00335 return 0;
00336 }
00337
00338 void rtp_send_punch_packets(URLContext* rtp_handle)
00339 {
00340 AVIOContext *pb;
00341 uint8_t *buf;
00342 int len;
00343
00344
00345 if (avio_open_dyn_buf(&pb) < 0)
00346 return;
00347
00348 avio_w8(pb, (RTP_VERSION << 6));
00349 avio_w8(pb, 0);
00350 avio_wb16(pb, 0);
00351 avio_wb32(pb, 0);
00352 avio_wb32(pb, 0);
00353
00354 avio_flush(pb);
00355 len = avio_close_dyn_buf(pb, &buf);
00356 if ((len > 0) && buf)
00357 ffurl_write(rtp_handle, buf, len);
00358 av_free(buf);
00359
00360
00361 if (avio_open_dyn_buf(&pb) < 0)
00362 return;
00363
00364 avio_w8(pb, (RTP_VERSION << 6));
00365 avio_w8(pb, RTCP_RR);
00366 avio_wb16(pb, 1);
00367 avio_wb32(pb, 0);
00368
00369 avio_flush(pb);
00370 len = avio_close_dyn_buf(pb, &buf);
00371 if ((len > 0) && buf)
00372 ffurl_write(rtp_handle, buf, len);
00373 av_free(buf);
00374 }
00375
00376
00382 RTPDemuxContext *rtp_parse_open(AVFormatContext *s1, AVStream *st, URLContext *rtpc, int payload_type, int queue_size)
00383 {
00384 RTPDemuxContext *s;
00385
00386 s = av_mallocz(sizeof(RTPDemuxContext));
00387 if (!s)
00388 return NULL;
00389 s->payload_type = payload_type;
00390 s->last_rtcp_ntp_time = AV_NOPTS_VALUE;
00391 s->first_rtcp_ntp_time = AV_NOPTS_VALUE;
00392 s->ic = s1;
00393 s->st = st;
00394 s->queue_size = queue_size;
00395 rtp_init_statistics(&s->statistics, 0);
00396 if (!strcmp(ff_rtp_enc_name(payload_type), "MP2T")) {
00397 s->ts = ff_mpegts_parse_open(s->ic);
00398 if (s->ts == NULL) {
00399 av_free(s);
00400 return NULL;
00401 }
00402 } else {
00403 switch(st->codec->codec_id) {
00404 case CODEC_ID_MPEG1VIDEO:
00405 case CODEC_ID_MPEG2VIDEO:
00406 case CODEC_ID_MP2:
00407 case CODEC_ID_MP3:
00408 case CODEC_ID_MPEG4:
00409 case CODEC_ID_H263:
00410 case CODEC_ID_H264:
00411 st->need_parsing = AVSTREAM_PARSE_FULL;
00412 break;
00413 case CODEC_ID_ADPCM_G722:
00414
00415
00416 if (st->codec->sample_rate == 8000)
00417 st->codec->sample_rate = 16000;
00418 break;
00419 default:
00420 break;
00421 }
00422 }
00423
00424 s->rtp_ctx = rtpc;
00425 gethostname(s->hostname, sizeof(s->hostname));
00426 return s;
00427 }
00428
00429 void
00430 rtp_parse_set_dynamic_protocol(RTPDemuxContext *s, PayloadContext *ctx,
00431 RTPDynamicProtocolHandler *handler)
00432 {
00433 s->dynamic_protocol_context = ctx;
00434 s->parse_packet = handler->parse_packet;
00435 }
00436
00440 static void finalize_packet(RTPDemuxContext *s, AVPacket *pkt, uint32_t timestamp)
00441 {
00442 if (pkt->pts != AV_NOPTS_VALUE || pkt->dts != AV_NOPTS_VALUE)
00443 return;
00444 if (s->last_rtcp_ntp_time != AV_NOPTS_VALUE && timestamp != RTP_NOTS_VALUE) {
00445 int64_t addend;
00446 int delta_timestamp;
00447
00448
00449 delta_timestamp = timestamp - s->last_rtcp_timestamp;
00450
00451 addend = av_rescale(s->last_rtcp_ntp_time - s->first_rtcp_ntp_time, s->st->time_base.den, (uint64_t)s->st->time_base.num << 32);
00452 pkt->pts = s->range_start_offset + s->rtcp_ts_offset + addend +
00453 delta_timestamp;
00454 return;
00455 }
00456 if (timestamp == RTP_NOTS_VALUE)
00457 return;
00458 if (!s->base_timestamp)
00459 s->base_timestamp = timestamp;
00460 pkt->pts = s->range_start_offset + timestamp - s->base_timestamp;
00461 }
00462
00463 static int rtp_parse_packet_internal(RTPDemuxContext *s, AVPacket *pkt,
00464 const uint8_t *buf, int len)
00465 {
00466 unsigned int ssrc, h;
00467 int payload_type, seq, ret, flags = 0;
00468 int ext;
00469 AVStream *st;
00470 uint32_t timestamp;
00471 int rv= 0;
00472
00473 ext = buf[0] & 0x10;
00474 payload_type = buf[1] & 0x7f;
00475 if (buf[1] & 0x80)
00476 flags |= RTP_FLAG_MARKER;
00477 seq = AV_RB16(buf + 2);
00478 timestamp = AV_RB32(buf + 4);
00479 ssrc = AV_RB32(buf + 8);
00480
00481 s->ssrc = ssrc;
00482
00483
00484 if (s->payload_type != payload_type)
00485 return -1;
00486
00487 st = s->st;
00488
00489 if(!rtp_valid_packet_in_sequence(&s->statistics, seq))
00490 {
00491 av_log(st?st->codec:NULL, AV_LOG_ERROR, "RTP: PT=%02x: bad cseq %04x expected=%04x\n",
00492 payload_type, seq, ((s->seq + 1) & 0xffff));
00493 return -1;
00494 }
00495
00496 if (buf[0] & 0x20) {
00497 int padding = buf[len - 1];
00498 if (len >= 12 + padding)
00499 len -= padding;
00500 }
00501
00502 s->seq = seq;
00503 len -= 12;
00504 buf += 12;
00505
00506
00507 if (ext) {
00508 if (len < 4)
00509 return -1;
00510
00511
00512 ext = (AV_RB16(buf + 2) + 1) << 2;
00513
00514 if (len < ext)
00515 return -1;
00516
00517 len -= ext;
00518 buf += ext;
00519 }
00520
00521 if (!st) {
00522
00523 ret = ff_mpegts_parse_packet(s->ts, pkt, buf, len);
00524
00525
00526
00527 if (ret < 0)
00528 return AVERROR(EAGAIN);
00529 if (ret < len) {
00530 s->read_buf_size = len - ret;
00531 memcpy(s->buf, buf + ret, s->read_buf_size);
00532 s->read_buf_index = 0;
00533 return 1;
00534 }
00535 return 0;
00536 } else if (s->parse_packet) {
00537 rv = s->parse_packet(s->ic, s->dynamic_protocol_context,
00538 s->st, pkt, ×tamp, buf, len, flags);
00539 } else {
00540
00541 switch(st->codec->codec_id) {
00542 case CODEC_ID_MP2:
00543 case CODEC_ID_MP3:
00544
00545 if (len <= 4)
00546 return -1;
00547 h = AV_RB32(buf);
00548 len -= 4;
00549 buf += 4;
00550 av_new_packet(pkt, len);
00551 memcpy(pkt->data, buf, len);
00552 break;
00553 case CODEC_ID_MPEG1VIDEO:
00554 case CODEC_ID_MPEG2VIDEO:
00555
00556 if (len <= 4)
00557 return -1;
00558 h = AV_RB32(buf);
00559 buf += 4;
00560 len -= 4;
00561 if (h & (1 << 26)) {
00562
00563 if (len <= 4)
00564 return -1;
00565 buf += 4;
00566 len -= 4;
00567 }
00568 av_new_packet(pkt, len);
00569 memcpy(pkt->data, buf, len);
00570 break;
00571 default:
00572 av_new_packet(pkt, len);
00573 memcpy(pkt->data, buf, len);
00574 break;
00575 }
00576
00577 pkt->stream_index = st->index;
00578 }
00579
00580
00581 finalize_packet(s, pkt, timestamp);
00582
00583 return rv;
00584 }
00585
00586 void ff_rtp_reset_packet_queue(RTPDemuxContext *s)
00587 {
00588 while (s->queue) {
00589 RTPPacket *next = s->queue->next;
00590 av_free(s->queue->buf);
00591 av_free(s->queue);
00592 s->queue = next;
00593 }
00594 s->seq = 0;
00595 s->queue_len = 0;
00596 s->prev_ret = 0;
00597 }
00598
00599 static void enqueue_packet(RTPDemuxContext *s, uint8_t *buf, int len)
00600 {
00601 uint16_t seq = AV_RB16(buf + 2);
00602 RTPPacket *cur = s->queue, *prev = NULL, *packet;
00603
00604
00605 while (cur) {
00606 int16_t diff = seq - cur->seq;
00607 if (diff < 0)
00608 break;
00609 prev = cur;
00610 cur = cur->next;
00611 }
00612
00613 packet = av_mallocz(sizeof(*packet));
00614 if (!packet)
00615 return;
00616 packet->recvtime = av_gettime();
00617 packet->seq = seq;
00618 packet->len = len;
00619 packet->buf = buf;
00620 packet->next = cur;
00621 if (prev)
00622 prev->next = packet;
00623 else
00624 s->queue = packet;
00625 s->queue_len++;
00626 }
00627
00628 static int has_next_packet(RTPDemuxContext *s)
00629 {
00630 return s->queue && s->queue->seq == (uint16_t) (s->seq + 1);
00631 }
00632
00633 int64_t ff_rtp_queued_packet_time(RTPDemuxContext *s)
00634 {
00635 return s->queue ? s->queue->recvtime : 0;
00636 }
00637
00638 static int rtp_parse_queued_packet(RTPDemuxContext *s, AVPacket *pkt)
00639 {
00640 int rv;
00641 RTPPacket *next;
00642
00643 if (s->queue_len <= 0)
00644 return -1;
00645
00646 if (!has_next_packet(s))
00647 av_log(s->st ? s->st->codec : NULL, AV_LOG_WARNING,
00648 "RTP: missed %d packets\n", s->queue->seq - s->seq - 1);
00649
00650
00651 rv = rtp_parse_packet_internal(s, pkt, s->queue->buf, s->queue->len);
00652 next = s->queue->next;
00653 av_free(s->queue->buf);
00654 av_free(s->queue);
00655 s->queue = next;
00656 s->queue_len--;
00657 return rv;
00658 }
00659
00660 static int rtp_parse_one_packet(RTPDemuxContext *s, AVPacket *pkt,
00661 uint8_t **bufptr, int len)
00662 {
00663 uint8_t* buf = bufptr ? *bufptr : NULL;
00664 int ret, flags = 0;
00665 uint32_t timestamp;
00666 int rv= 0;
00667
00668 if (!buf) {
00669
00670
00671
00672 if (s->prev_ret <= 0)
00673 return rtp_parse_queued_packet(s, pkt);
00674
00675 if(s->st && s->parse_packet) {
00676
00677
00678 timestamp = RTP_NOTS_VALUE;
00679 rv= s->parse_packet(s->ic, s->dynamic_protocol_context,
00680 s->st, pkt, ×tamp, NULL, 0, flags);
00681 finalize_packet(s, pkt, timestamp);
00682 return rv;
00683 } else {
00684
00685 if (s->read_buf_index >= s->read_buf_size)
00686 return AVERROR(EAGAIN);
00687 ret = ff_mpegts_parse_packet(s->ts, pkt, s->buf + s->read_buf_index,
00688 s->read_buf_size - s->read_buf_index);
00689 if (ret < 0)
00690 return AVERROR(EAGAIN);
00691 s->read_buf_index += ret;
00692 if (s->read_buf_index < s->read_buf_size)
00693 return 1;
00694 else
00695 return 0;
00696 }
00697 }
00698
00699 if (len < 12)
00700 return -1;
00701
00702 if ((buf[0] & 0xc0) != (RTP_VERSION << 6))
00703 return -1;
00704 if (buf[1] >= RTCP_SR && buf[1] <= RTCP_APP) {
00705 return rtcp_parse_packet(s, buf, len);
00706 }
00707
00708 if ((s->seq == 0 && !s->queue) || s->queue_size <= 1) {
00709
00710 return rtp_parse_packet_internal(s, pkt, buf, len);
00711 } else {
00712 uint16_t seq = AV_RB16(buf + 2);
00713 int16_t diff = seq - s->seq;
00714 if (diff < 0) {
00715
00716 av_log(s->st ? s->st->codec : NULL, AV_LOG_WARNING,
00717 "RTP: dropping old packet received too late\n");
00718 return -1;
00719 } else if (diff <= 1) {
00720
00721 rv = rtp_parse_packet_internal(s, pkt, buf, len);
00722 return rv;
00723 } else {
00724
00725 enqueue_packet(s, buf, len);
00726 *bufptr = NULL;
00727
00728
00729 if (s->queue_len >= s->queue_size)
00730 return rtp_parse_queued_packet(s, pkt);
00731 return -1;
00732 }
00733 }
00734 }
00735
00745 int rtp_parse_packet(RTPDemuxContext *s, AVPacket *pkt,
00746 uint8_t **bufptr, int len)
00747 {
00748 int rv = rtp_parse_one_packet(s, pkt, bufptr, len);
00749 s->prev_ret = rv;
00750 while (rv == AVERROR(EAGAIN) && has_next_packet(s))
00751 rv = rtp_parse_queued_packet(s, pkt);
00752 return rv ? rv : has_next_packet(s);
00753 }
00754
00755 void rtp_parse_close(RTPDemuxContext *s)
00756 {
00757 ff_rtp_reset_packet_queue(s);
00758 if (!strcmp(ff_rtp_enc_name(s->payload_type), "MP2T")) {
00759 ff_mpegts_parse_close(s->ts);
00760 }
00761 av_free(s);
00762 }
00763
00764 int ff_parse_fmtp(AVStream *stream, PayloadContext *data, const char *p,
00765 int (*parse_fmtp)(AVStream *stream,
00766 PayloadContext *data,
00767 char *attr, char *value))
00768 {
00769 char attr[256];
00770 char *value;
00771 int res;
00772 int value_size = strlen(p) + 1;
00773
00774 if (!(value = av_malloc(value_size))) {
00775 av_log(stream, AV_LOG_ERROR, "Failed to allocate data for FMTP.");
00776 return AVERROR(ENOMEM);
00777 }
00778
00779
00780 while (*p && *p == ' ') p++;
00781 while (*p && *p != ' ') p++;
00782 while (*p && *p == ' ') p++;
00783
00784 while (ff_rtsp_next_attr_and_value(&p,
00785 attr, sizeof(attr),
00786 value, value_size)) {
00787
00788 res = parse_fmtp(stream, data, attr, value);
00789 if (res < 0 && res != AVERROR_PATCHWELCOME) {
00790 av_free(value);
00791 return res;
00792 }
00793 }
00794 av_free(value);
00795 return 0;
00796 }