1 /*
2 * Copyright (c) 2015 Martin Storsjo
3 *
4 * This file is part of FFmpeg.
5 *
6 * FFmpeg is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
10 *
11 * FFmpeg is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
15 *
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with FFmpeg; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
19 */
20
21 #include "config.h"
22
23 #include "libavutil/intreadwrite.h"
24 #include "libavutil/mathematics.h"
25 #include "libavutil/md5.h"
26
27 #include "libavformat/avformat.h"
28
29 #if HAVE_UNISTD_H
30 #include <unistd.h>
31 #endif
32
33 #if !HAVE_GETOPT
34 #include "compat/getopt.c"
35 #endif
36
37 #define HASH_SIZE 16
38
39 static const uint8_t h264_extradata[] = {
40 0x01, 0x4d, 0x40, 0x1e, 0xff, 0xe1, 0x00, 0x02, 0x67, 0x4d, 0x01, 0x00, 0x02, 0x68, 0xef
41 };
42 static const uint8_t aac_extradata[] = {
43 0x12, 0x10
44 };
45
46
47 static const char *format = "mp4";
48 AVFormatContext *ctx;
49 uint8_t iobuf[32768];
50 AVDictionary *opts;
51
52 int write_file;
53 const char *cur_name;
54 FILE* out;
55 int out_size;
56 struct AVMD5* md5;
57 uint8_t hash[HASH_SIZE];
58
59 AVPacket *pkt;
60 AVStream *video_st, *audio_st;
61 int64_t audio_dts, video_dts;
62
63 int bframes;
64 int64_t duration;
65 int64_t audio_duration;
66 int frames;
67 int gop_size;
68 int64_t next_p_pts;
69 enum AVPictureType last_picture;
70 int skip_write;
71 int skip_write_audio;
72 int clear_duration;
73 int force_iobuf_size;
74 int do_interleave;
75 int fake_pkt_duration;
76
77 int num_warnings;
78
79 int check_faults;
80
81
count_warnings(void * avcl,int level,const char * fmt,va_list vl)82 static void count_warnings(void *avcl, int level, const char *fmt, va_list vl)
83 {
84 if (level == AV_LOG_WARNING)
85 num_warnings++;
86 }
87
init_count_warnings(void)88 static void init_count_warnings(void)
89 {
90 av_log_set_callback(count_warnings);
91 num_warnings = 0;
92 }
93
reset_count_warnings(void)94 static void reset_count_warnings(void)
95 {
96 av_log_set_callback(av_log_default_callback);
97 }
98
io_write(void * opaque,uint8_t * buf,int size)99 static int io_write(void *opaque, uint8_t *buf, int size)
100 {
101 out_size += size;
102 av_md5_update(md5, buf, size);
103 if (out)
104 fwrite(buf, 1, size, out);
105 return size;
106 }
107
io_write_data_type(void * opaque,uint8_t * buf,int size,enum AVIODataMarkerType type,int64_t time)108 static int io_write_data_type(void *opaque, uint8_t *buf, int size,
109 enum AVIODataMarkerType type, int64_t time)
110 {
111 char timebuf[30], content[5] = { 0 };
112 const char *str;
113 switch (type) {
114 case AVIO_DATA_MARKER_HEADER: str = "header"; break;
115 case AVIO_DATA_MARKER_SYNC_POINT: str = "sync"; break;
116 case AVIO_DATA_MARKER_BOUNDARY_POINT: str = "boundary"; break;
117 case AVIO_DATA_MARKER_UNKNOWN: str = "unknown"; break;
118 case AVIO_DATA_MARKER_TRAILER: str = "trailer"; break;
119 default: str = "unknown"; break;
120 }
121 if (time == AV_NOPTS_VALUE)
122 snprintf(timebuf, sizeof(timebuf), "nopts");
123 else
124 snprintf(timebuf, sizeof(timebuf), "%"PRId64, time);
125 // There can be multiple header/trailer callbacks, only log the box type
126 // for header at out_size == 0
127 if (type != AVIO_DATA_MARKER_UNKNOWN &&
128 type != AVIO_DATA_MARKER_TRAILER &&
129 (type != AVIO_DATA_MARKER_HEADER || out_size == 0) &&
130 size >= 8)
131 memcpy(content, &buf[4], 4);
132 else
133 snprintf(content, sizeof(content), "-");
134 printf("write_data len %d, time %s, type %s atom %s\n", size, timebuf, str, content);
135 return io_write(opaque, buf, size);
136 }
137
init_out(const char * name)138 static void init_out(const char *name)
139 {
140 char buf[100];
141 cur_name = name;
142 snprintf(buf, sizeof(buf), "%s.%s", cur_name, format);
143
144 av_md5_init(md5);
145 if (write_file) {
146 out = fopen(buf, "wb");
147 if (!out)
148 perror(buf);
149 }
150 out_size = 0;
151 }
152
close_out(void)153 static void close_out(void)
154 {
155 int i;
156 av_md5_final(md5, hash);
157 for (i = 0; i < HASH_SIZE; i++)
158 printf("%02x", hash[i]);
159 printf(" %d %s\n", out_size, cur_name);
160 if (out)
161 fclose(out);
162 out = NULL;
163 }
164
check_func(int value,int line,const char * msg,...)165 static void check_func(int value, int line, const char *msg, ...)
166 {
167 if (!value) {
168 va_list ap;
169 va_start(ap, msg);
170 printf("%d: ", line);
171 vprintf(msg, ap);
172 printf("\n");
173 check_faults++;
174 va_end(ap);
175 }
176 }
177 #define check(value, ...) check_func(value, __LINE__, __VA_ARGS__)
178
init_fps(int bf,int audio_preroll,int fps)179 static void init_fps(int bf, int audio_preroll, int fps)
180 {
181 AVStream *st;
182 int iobuf_size = force_iobuf_size ? force_iobuf_size : sizeof(iobuf);
183 ctx = avformat_alloc_context();
184 if (!ctx)
185 exit(1);
186 ctx->oformat = av_guess_format(format, NULL, NULL);
187 if (!ctx->oformat)
188 exit(1);
189 ctx->pb = avio_alloc_context(iobuf, iobuf_size, AVIO_FLAG_WRITE, NULL, NULL, io_write, NULL);
190 if (!ctx->pb)
191 exit(1);
192 ctx->pb->write_data_type = io_write_data_type;
193 ctx->flags |= AVFMT_FLAG_BITEXACT;
194
195 st = avformat_new_stream(ctx, NULL);
196 if (!st)
197 exit(1);
198 st->codecpar->codec_type = AVMEDIA_TYPE_VIDEO;
199 st->codecpar->codec_id = AV_CODEC_ID_H264;
200 st->codecpar->width = 640;
201 st->codecpar->height = 480;
202 st->time_base.num = 1;
203 st->time_base.den = 30;
204 st->codecpar->extradata_size = sizeof(h264_extradata);
205 st->codecpar->extradata = av_mallocz(st->codecpar->extradata_size + AV_INPUT_BUFFER_PADDING_SIZE);
206 if (!st->codecpar->extradata)
207 exit(1);
208 memcpy(st->codecpar->extradata, h264_extradata, sizeof(h264_extradata));
209 video_st = st;
210
211 st = avformat_new_stream(ctx, NULL);
212 if (!st)
213 exit(1);
214 st->codecpar->codec_type = AVMEDIA_TYPE_AUDIO;
215 st->codecpar->codec_id = AV_CODEC_ID_AAC;
216 st->codecpar->sample_rate = 44100;
217 st->codecpar->channels = 2;
218 st->time_base.num = 1;
219 st->time_base.den = 44100;
220 st->codecpar->extradata_size = sizeof(aac_extradata);
221 st->codecpar->extradata = av_mallocz(st->codecpar->extradata_size + AV_INPUT_BUFFER_PADDING_SIZE);
222 if (!st->codecpar->extradata)
223 exit(1);
224 memcpy(st->codecpar->extradata, aac_extradata, sizeof(aac_extradata));
225 audio_st = st;
226
227 if (avformat_write_header(ctx, &opts) < 0)
228 exit(1);
229 av_dict_free(&opts);
230
231 frames = 0;
232 gop_size = 30;
233 duration = video_st->time_base.den / fps;
234 audio_duration = 1024LL * audio_st->time_base.den / audio_st->codecpar->sample_rate;
235 if (audio_preroll)
236 audio_preroll = 2048LL * audio_st->time_base.den / audio_st->codecpar->sample_rate;
237
238 bframes = bf;
239 video_dts = bframes ? -duration : 0;
240 audio_dts = -audio_preroll;
241 }
242
init(int bf,int audio_preroll)243 static void init(int bf, int audio_preroll)
244 {
245 init_fps(bf, audio_preroll, 30);
246 }
247
mux_frames(int n,int c)248 static void mux_frames(int n, int c)
249 {
250 int end_frames = frames + n;
251 while (1) {
252 uint8_t pktdata[8] = { 0 };
253 av_packet_unref(pkt);
254
255 if (av_compare_ts(audio_dts, audio_st->time_base, video_dts, video_st->time_base) < 0) {
256 pkt->dts = pkt->pts = audio_dts;
257 pkt->stream_index = 1;
258 pkt->duration = audio_duration;
259 audio_dts += audio_duration;
260 } else {
261 if (frames == end_frames)
262 break;
263 pkt->dts = video_dts;
264 pkt->stream_index = 0;
265 pkt->duration = duration;
266 if ((frames % gop_size) == 0) {
267 pkt->flags |= AV_PKT_FLAG_KEY;
268 last_picture = AV_PICTURE_TYPE_I;
269 pkt->pts = pkt->dts + duration;
270 video_dts = pkt->pts;
271 } else {
272 if (last_picture == AV_PICTURE_TYPE_P) {
273 last_picture = AV_PICTURE_TYPE_B;
274 pkt->pts = pkt->dts;
275 video_dts = next_p_pts;
276 } else {
277 last_picture = AV_PICTURE_TYPE_P;
278 if (((frames + 1) % gop_size) == 0) {
279 pkt->pts = pkt->dts + duration;
280 video_dts = pkt->pts;
281 } else {
282 next_p_pts = pkt->pts = pkt->dts + 2 * duration;
283 video_dts += duration;
284 }
285 }
286 }
287 if (!bframes)
288 pkt->pts = pkt->dts;
289 if (fake_pkt_duration)
290 pkt->duration = fake_pkt_duration;
291 frames++;
292 }
293
294 if (clear_duration)
295 pkt->duration = 0;
296 AV_WB32(pktdata + 4, pkt->pts);
297 pkt->data = pktdata;
298 pkt->size = 8;
299 if (skip_write)
300 continue;
301 if (skip_write_audio && pkt->stream_index == 1)
302 continue;
303
304 if (c) {
305 pkt->pts += (1LL<<32);
306 pkt->dts += (1LL<<32);
307 }
308
309 if (do_interleave)
310 av_interleaved_write_frame(ctx, pkt);
311 else
312 av_write_frame(ctx, pkt);
313 }
314 }
315
mux_gops(int n)316 static void mux_gops(int n)
317 {
318 mux_frames(gop_size * n, 0);
319 }
320
skip_gops(int n)321 static void skip_gops(int n)
322 {
323 skip_write = 1;
324 mux_gops(n);
325 skip_write = 0;
326 }
327
signal_init_ts(void)328 static void signal_init_ts(void)
329 {
330 av_packet_unref(pkt);
331
332 pkt->stream_index = 0;
333 pkt->dts = video_dts;
334 pkt->pts = 0;
335 av_write_frame(ctx, pkt);
336
337 pkt->stream_index = 1;
338 pkt->dts = pkt->pts = audio_dts;
339 av_write_frame(ctx, pkt);
340 }
341
finish(void)342 static void finish(void)
343 {
344 av_write_trailer(ctx);
345 avio_context_free(&ctx->pb);
346 avformat_free_context(ctx);
347 ctx = NULL;
348 }
349
help(void)350 static void help(void)
351 {
352 printf("movenc-test [-w]\n"
353 "-w write output into files\n");
354 }
355
main(int argc,char ** argv)356 int main(int argc, char **argv)
357 {
358 int c;
359 uint8_t header[HASH_SIZE];
360 uint8_t content[HASH_SIZE];
361 int empty_moov_pos;
362 int prev_pos;
363
364 for (;;) {
365 c = getopt(argc, argv, "wh");
366 if (c == -1)
367 break;
368 switch (c) {
369 case 'w':
370 write_file = 1;
371 break;
372 default:
373 case 'h':
374 help();
375 return 0;
376 }
377 }
378
379 md5 = av_md5_alloc();
380 if (!md5)
381 return 1;
382 pkt = av_packet_alloc();
383 if (!pkt) {
384 av_free(md5);
385 return 1;
386 }
387
388 // Write a fragmented file with an initial moov that actually contains some
389 // samples. One moov+mdat with 1 second of data and one moof+mdat with 1
390 // second of data.
391 init_out("non-empty-moov");
392 av_dict_set(&opts, "movflags", "frag_keyframe", 0);
393 init(0, 0);
394 mux_gops(2);
395 finish();
396 close_out();
397
398 // Write a similar file, but with B-frames and audio preroll, handled
399 // via an edit list.
400 init_out("non-empty-moov-elst");
401 av_dict_set(&opts, "movflags", "frag_keyframe", 0);
402 av_dict_set(&opts, "use_editlist", "1", 0);
403 init(1, 1);
404 mux_gops(2);
405 finish();
406 close_out();
407
408 // Use B-frames but no audio-preroll, but without an edit list.
409 // Due to avoid_negative_ts == AVFMT_AVOID_NEG_TS_MAKE_ZERO, the dts
410 // of the first audio packet is > 0, but it is set to zero since edit
411 // lists aren't used, increasing the duration of the first packet instead.
412 init_out("non-empty-moov-no-elst");
413 av_dict_set(&opts, "movflags", "frag_keyframe", 0);
414 av_dict_set(&opts, "use_editlist", "0", 0);
415 init(1, 0);
416 mux_gops(2);
417 finish();
418 close_out();
419
420 format = "ismv";
421 // Write an ISMV, with B-frames and audio preroll.
422 init_out("ismv");
423 av_dict_set(&opts, "movflags", "frag_keyframe", 0);
424 init(1, 1);
425 mux_gops(2);
426 finish();
427 close_out();
428 format = "mp4";
429
430 // An initial moov that doesn't contain any samples, followed by two
431 // moof+mdat pairs.
432 init_out("empty-moov");
433 av_dict_set(&opts, "movflags", "frag_keyframe+empty_moov", 0);
434 av_dict_set(&opts, "use_editlist", "0", 0);
435 init(0, 0);
436 mux_gops(2);
437 finish();
438 close_out();
439 memcpy(content, hash, HASH_SIZE);
440
441 // Similar to the previous one, but with input that doesn't start at
442 // pts/dts 0. avoid_negative_ts behaves in the same way as
443 // in non-empty-moov-no-elst above.
444 init_out("empty-moov-no-elst");
445 av_dict_set(&opts, "movflags", "frag_keyframe+empty_moov", 0);
446 init(1, 0);
447 mux_gops(2);
448 finish();
449 close_out();
450
451 // Same as the previous one, but disable avoid_negative_ts (which
452 // would require using an edit list, but with empty_moov, one can't
453 // write a sensible edit list, when the start timestamps aren't known).
454 // This should trigger a warning - we check that the warning is produced.
455 init_count_warnings();
456 init_out("empty-moov-no-elst-no-adjust");
457 av_dict_set(&opts, "movflags", "frag_keyframe+empty_moov", 0);
458 av_dict_set(&opts, "avoid_negative_ts", "0", 0);
459 init(1, 0);
460 mux_gops(2);
461 finish();
462 close_out();
463
464 reset_count_warnings();
465 check(num_warnings > 0, "No warnings printed for unhandled start offset");
466
467 // Verify that delay_moov produces the same as empty_moov for
468 // simple input
469 init_out("delay-moov");
470 av_dict_set(&opts, "movflags", "frag_keyframe+delay_moov", 0);
471 av_dict_set(&opts, "use_editlist", "0", 0);
472 init(0, 0);
473 mux_gops(2);
474 finish();
475 close_out();
476 check(!memcmp(hash, content, HASH_SIZE), "delay_moov differs from empty_moov");
477
478 // Test writing content that requires an edit list using delay_moov
479 init_out("delay-moov-elst");
480 av_dict_set(&opts, "movflags", "frag_keyframe+delay_moov", 0);
481 init(1, 1);
482 mux_gops(2);
483 finish();
484 close_out();
485
486 // Test writing a file with one track lacking packets, with delay_moov.
487 skip_write_audio = 1;
488 init_out("delay-moov-empty-track");
489 av_dict_set(&opts, "movflags", "frag_keyframe+delay_moov", 0);
490 init(0, 0);
491 mux_gops(2);
492 // The automatic flushing shouldn't output anything, since we're still
493 // waiting for data for some tracks
494 check(out_size == 0, "delay_moov flushed prematurely");
495 // When closed (or manually flushed), all the written data should still
496 // be output.
497 finish();
498 close_out();
499 check(out_size > 0, "delay_moov didn't output anything");
500
501 // Check that manually flushing still outputs things as expected. This
502 // produces two fragments, while the one above produces only one.
503 init_out("delay-moov-empty-track-flush");
504 av_dict_set(&opts, "movflags", "frag_custom+delay_moov", 0);
505 init(0, 0);
506 mux_gops(1);
507 av_write_frame(ctx, NULL); // Force writing the moov
508 check(out_size > 0, "No moov written");
509 av_write_frame(ctx, NULL);
510 mux_gops(1);
511 av_write_frame(ctx, NULL);
512 finish();
513 close_out();
514
515 skip_write_audio = 0;
516
517
518
519 // Verify that the header written by delay_moov when manually flushed
520 // is identical to the one by empty_moov.
521 init_out("empty-moov-header");
522 av_dict_set(&opts, "movflags", "frag_keyframe+empty_moov", 0);
523 av_dict_set(&opts, "use_editlist", "0", 0);
524 init(0, 0);
525 close_out();
526 memcpy(header, hash, HASH_SIZE);
527 init_out("empty-moov-content");
528 mux_gops(2);
529 // Written 2 seconds of content, with an automatic flush after 1 second.
530 check(out_size > 0, "No automatic flush?");
531 empty_moov_pos = prev_pos = out_size;
532 // Manually flush the second fragment
533 av_write_frame(ctx, NULL);
534 check(out_size > prev_pos, "No second fragment flushed?");
535 prev_pos = out_size;
536 // Check that an extra flush doesn't output any more data
537 av_write_frame(ctx, NULL);
538 check(out_size == prev_pos, "More data written?");
539 close_out();
540 memcpy(content, hash, HASH_SIZE);
541 // Ignore the trailer written here
542 finish();
543
544 init_out("delay-moov-header");
545 av_dict_set(&opts, "movflags", "frag_custom+delay_moov", 0);
546 av_dict_set(&opts, "use_editlist", "0", 0);
547 init(0, 0);
548 check(out_size == 0, "Output written during init with delay_moov");
549 mux_gops(1); // Write 1 second of content
550 av_write_frame(ctx, NULL); // Force writing the moov
551 close_out();
552 check(!memcmp(hash, header, HASH_SIZE), "delay_moov header differs from empty_moov");
553 init_out("delay-moov-content");
554 av_write_frame(ctx, NULL); // Flush the first fragment
555 check(out_size == empty_moov_pos, "Manually flushed content differs from automatically flushed, %d vs %d", out_size, empty_moov_pos);
556 mux_gops(1); // Write the rest of the content
557 av_write_frame(ctx, NULL); // Flush the second fragment
558 close_out();
559 check(!memcmp(hash, content, HASH_SIZE), "delay_moov content differs from empty_moov");
560 finish();
561
562
563 // Verify that we can produce an identical second fragment without
564 // writing the first one. First write the reference fragments that
565 // we want to reproduce.
566 av_dict_set(&opts, "movflags", "frag_custom+empty_moov+dash", 0);
567 init(0, 0);
568 mux_gops(1);
569 av_write_frame(ctx, NULL); // Output the first fragment
570 init_out("empty-moov-second-frag");
571 mux_gops(1);
572 av_write_frame(ctx, NULL); // Output the second fragment
573 close_out();
574 memcpy(content, hash, HASH_SIZE);
575 finish();
576
577 // Produce the same second fragment without actually writing the first
578 // one before.
579 av_dict_set(&opts, "movflags", "frag_custom+empty_moov+dash+frag_discont", 0);
580 av_dict_set(&opts, "fragment_index", "2", 0);
581 av_dict_set(&opts, "avoid_negative_ts", "0", 0);
582 av_dict_set(&opts, "use_editlist", "0", 0);
583 init(0, 0);
584 skip_gops(1);
585 init_out("empty-moov-second-frag-discont");
586 mux_gops(1);
587 av_write_frame(ctx, NULL); // Output the second fragment
588 close_out();
589 check(!memcmp(hash, content, HASH_SIZE), "discontinuously written fragment differs");
590 finish();
591
592 // Produce the same thing by using delay_moov, which requires a slightly
593 // different call sequence.
594 av_dict_set(&opts, "movflags", "frag_custom+delay_moov+dash+frag_discont", 0);
595 av_dict_set(&opts, "fragment_index", "2", 0);
596 init(0, 0);
597 skip_gops(1);
598 mux_gops(1);
599 av_write_frame(ctx, NULL); // Output the moov
600 init_out("delay-moov-second-frag-discont");
601 av_write_frame(ctx, NULL); // Output the second fragment
602 close_out();
603 check(!memcmp(hash, content, HASH_SIZE), "discontinuously written fragment differs");
604 finish();
605
606
607 // Test discontinuously written fragments with B-frames (where the
608 // assumption of starting at pts=0 works) but not with audio preroll
609 // (which can't be guessed).
610 av_dict_set(&opts, "movflags", "frag_custom+delay_moov+dash", 0);
611 init(1, 0);
612 mux_gops(1);
613 init_out("delay-moov-elst-init");
614 av_write_frame(ctx, NULL); // Output the moov
615 close_out();
616 memcpy(header, hash, HASH_SIZE);
617 av_write_frame(ctx, NULL); // Output the first fragment
618 init_out("delay-moov-elst-second-frag");
619 mux_gops(1);
620 av_write_frame(ctx, NULL); // Output the second fragment
621 close_out();
622 memcpy(content, hash, HASH_SIZE);
623 finish();
624
625 av_dict_set(&opts, "movflags", "frag_custom+delay_moov+dash+frag_discont", 0);
626 av_dict_set(&opts, "fragment_index", "2", 0);
627 init(1, 0);
628 skip_gops(1);
629 mux_gops(1); // Write the second fragment
630 init_out("delay-moov-elst-init-discont");
631 av_write_frame(ctx, NULL); // Output the moov
632 close_out();
633 check(!memcmp(hash, header, HASH_SIZE), "discontinuously written header differs");
634 init_out("delay-moov-elst-second-frag-discont");
635 av_write_frame(ctx, NULL); // Output the second fragment
636 close_out();
637 check(!memcmp(hash, content, HASH_SIZE), "discontinuously written fragment differs");
638 finish();
639
640
641 // Test discontinuously written fragments with B-frames and audio preroll,
642 // properly signaled.
643 av_dict_set(&opts, "movflags", "frag_custom+delay_moov+dash", 0);
644 init(1, 1);
645 mux_gops(1);
646 init_out("delay-moov-elst-signal-init");
647 av_write_frame(ctx, NULL); // Output the moov
648 close_out();
649 memcpy(header, hash, HASH_SIZE);
650 av_write_frame(ctx, NULL); // Output the first fragment
651 init_out("delay-moov-elst-signal-second-frag");
652 mux_gops(1);
653 av_write_frame(ctx, NULL); // Output the second fragment
654 close_out();
655 memcpy(content, hash, HASH_SIZE);
656 finish();
657
658 av_dict_set(&opts, "movflags", "frag_custom+delay_moov+dash+frag_discont", 0);
659 av_dict_set(&opts, "fragment_index", "2", 0);
660 init(1, 1);
661 signal_init_ts();
662 skip_gops(1);
663 mux_gops(1); // Write the second fragment
664 init_out("delay-moov-elst-signal-init-discont");
665 av_write_frame(ctx, NULL); // Output the moov
666 close_out();
667 check(!memcmp(hash, header, HASH_SIZE), "discontinuously written header differs");
668 init_out("delay-moov-elst-signal-second-frag-discont");
669 av_write_frame(ctx, NULL); // Output the second fragment
670 close_out();
671 check(!memcmp(hash, content, HASH_SIZE), "discontinuously written fragment differs");
672 finish();
673
674
675 // Test muxing discontinuous fragments with very large (> (1<<31)) timestamps.
676 av_dict_set(&opts, "movflags", "frag_custom+delay_moov+dash+frag_discont", 0);
677 av_dict_set(&opts, "fragment_index", "2", 0);
678 init(1, 1);
679 signal_init_ts();
680 skip_gops(1);
681 mux_frames(gop_size, 1); // Write the second fragment
682 init_out("delay-moov-elst-signal-init-discont-largets");
683 av_write_frame(ctx, NULL); // Output the moov
684 close_out();
685 init_out("delay-moov-elst-signal-second-frag-discont-largets");
686 av_write_frame(ctx, NULL); // Output the second fragment
687 close_out();
688 finish();
689
690 // Test VFR content, with sidx atoms (which declare the pts duration
691 // of a fragment, forcing overriding the start pts of the next one).
692 // Here, the fragment duration in pts is significantly different from
693 // the duration in dts. The video stream starts at dts=-10,pts=0, and
694 // the second fragment starts at dts=155,pts=156. The trun duration sum
695 // of the first fragment is 165, which also is written as
696 // baseMediaDecodeTime in the tfdt in the second fragment. The sidx for
697 // the first fragment says earliest_presentation_time = 0 and
698 // subsegment_duration = 156, which also matches the sidx in the second
699 // fragment. For the audio stream, the pts and dts durations also don't
700 // match - the input stream starts at pts=-2048, but that part is excluded
701 // by the edit list.
702 init_out("vfr");
703 av_dict_set(&opts, "movflags", "frag_keyframe+delay_moov+dash", 0);
704 init_fps(1, 1, 3);
705 mux_frames(gop_size/2, 0);
706 duration /= 10;
707 mux_frames(gop_size/2, 0);
708 mux_gops(1);
709 finish();
710 close_out();
711
712 // Test VFR content, with cleared duration fields. In these cases,
713 // the muxer must guess the duration of the last packet of each
714 // fragment. As long as the framerate doesn't vary (too much) at the
715 // fragment edge, it works just fine. Additionally, when automatically
716 // cutting fragments, the muxer already know the timestamps of the next
717 // packet for one stream (in most cases the video stream), avoiding
718 // having to use guesses for that one.
719 init_count_warnings();
720 clear_duration = 1;
721 init_out("vfr-noduration");
722 av_dict_set(&opts, "movflags", "frag_keyframe+delay_moov+dash", 0);
723 init_fps(1, 1, 3);
724 mux_frames(gop_size/2, 0);
725 duration /= 10;
726 mux_frames(gop_size/2, 0);
727 mux_gops(1);
728 finish();
729 close_out();
730 clear_duration = 0;
731 reset_count_warnings();
732 check(num_warnings > 0, "No warnings printed for filled in durations");
733
734 // Test with an IO buffer size that is too small to hold a full fragment;
735 // this will cause write_data_type to be called with the type unknown.
736 force_iobuf_size = 1500;
737 init_out("large_frag");
738 av_dict_set(&opts, "movflags", "frag_keyframe+delay_moov", 0);
739 init_fps(1, 1, 3);
740 mux_gops(2);
741 finish();
742 close_out();
743 force_iobuf_size = 0;
744
745 // Test VFR content with bframes with interleaving.
746 // Here, using av_interleaved_write_frame allows the muxer to get the
747 // fragment end durations right. We always set the packet duration to
748 // the expected, but we simulate dropped frames at one point.
749 do_interleave = 1;
750 init_out("vfr-noduration-interleave");
751 av_dict_set(&opts, "movflags", "frag_keyframe+delay_moov", 0);
752 av_dict_set(&opts, "frag_duration", "650000", 0);
753 init_fps(1, 1, 30);
754 mux_frames(gop_size/2, 0);
755 // Pretend that the packet duration is the normal, even if
756 // we actually skip a bunch of frames. (I.e., simulate that
757 // we don't know of the framedrop in advance.)
758 fake_pkt_duration = duration;
759 duration *= 10;
760 mux_frames(1, 0);
761 fake_pkt_duration = 0;
762 duration /= 10;
763 mux_frames(gop_size/2 - 1, 0);
764 mux_gops(1);
765 finish();
766 close_out();
767 clear_duration = 0;
768 do_interleave = 0;
769
770 // Write a fragmented file with b-frames and audio preroll,
771 // with negative cts values, removing the edit list for the
772 // video track.
773 init_out("delay-moov-elst-neg-cts");
774 av_dict_set(&opts, "movflags", "frag_keyframe+delay_moov+negative_cts_offsets", 0);
775 init(1, 1);
776 mux_gops(2);
777 finish();
778 close_out();
779
780 // Write a fragmented file with b-frames without audio preroll,
781 // with negative cts values, avoiding any edit lists, allowing
782 // to use empty_moov instead of delay_moov.
783 init_out("empty-moov-neg-cts");
784 av_dict_set(&opts, "movflags", "frag_keyframe+empty_moov+negative_cts_offsets", 0);
785 init(1, 0);
786 mux_gops(2);
787 finish();
788 close_out();
789
790 av_free(md5);
791 av_packet_free(&pkt);
792
793 return check_faults > 0 ? 1 : 0;
794 }
795