You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

1215 lines
41KB

  1. /*
  2. * Matroska muxer
  3. * Copyright (c) 2007 David Conrad
  4. *
  5. * This file is part of Libav.
  6. *
  7. * Libav is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU Lesser General Public
  9. * License as published by the Free Software Foundation; either
  10. * version 2.1 of the License, or (at your option) any later version.
  11. *
  12. * Libav is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * Lesser General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU Lesser General Public
  18. * License along with Libav; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. #include "avformat.h"
  22. #include "riff.h"
  23. #include "isom.h"
  24. #include "matroska.h"
  25. #include "avc.h"
  26. #include "flacenc.h"
  27. #include "avlanguage.h"
  28. #include "libavutil/samplefmt.h"
  29. #include "libavutil/intreadwrite.h"
  30. #include "libavutil/random_seed.h"
  31. #include "libavutil/lfg.h"
  32. #include "libavcodec/xiph.h"
  33. #include "libavcodec/mpeg4audio.h"
  34. #include <strings.h>
  35. typedef struct ebml_master {
  36. int64_t pos; ///< absolute offset in the file where the master's elements start
  37. int sizebytes; ///< how many bytes were reserved for the size
  38. } ebml_master;
  39. typedef struct mkv_seekhead_entry {
  40. unsigned int elementid;
  41. uint64_t segmentpos;
  42. } mkv_seekhead_entry;
  43. typedef struct mkv_seekhead {
  44. int64_t filepos;
  45. int64_t segment_offset; ///< the file offset to the beginning of the segment
  46. int reserved_size; ///< -1 if appending to file
  47. int max_entries;
  48. mkv_seekhead_entry *entries;
  49. int num_entries;
  50. } mkv_seekhead;
  51. typedef struct {
  52. uint64_t pts;
  53. int tracknum;
  54. int64_t cluster_pos; ///< file offset of the cluster containing the block
  55. } mkv_cuepoint;
  56. typedef struct {
  57. int64_t segment_offset;
  58. mkv_cuepoint *entries;
  59. int num_entries;
  60. } mkv_cues;
  61. typedef struct {
  62. int write_dts;
  63. } mkv_track;
  64. #define MODE_MATROSKAv2 0x01
  65. #define MODE_WEBM 0x02
  66. typedef struct MatroskaMuxContext {
  67. int mode;
  68. AVIOContext *dyn_bc;
  69. ebml_master segment;
  70. int64_t segment_offset;
  71. ebml_master cluster;
  72. int64_t cluster_pos; ///< file offset of the current cluster
  73. int64_t cluster_pts;
  74. int64_t duration_offset;
  75. int64_t duration;
  76. mkv_seekhead *main_seekhead;
  77. mkv_cues *cues;
  78. mkv_track *tracks;
  79. unsigned int audio_buffer_size;
  80. AVPacket cur_audio_pkt;
  81. } MatroskaMuxContext;
  82. /** 2 bytes * 3 for EBML IDs, 3 1-byte EBML lengths, 8 bytes for 64 bit
  83. * offset, 4 bytes for target EBML ID */
  84. #define MAX_SEEKENTRY_SIZE 21
  85. /** per-cuepoint-track - 3 1-byte EBML IDs, 3 1-byte EBML sizes, 2
  86. * 8-byte uint max */
  87. #define MAX_CUETRACKPOS_SIZE 22
  88. /** per-cuepoint - 2 1-byte EBML IDs, 2 1-byte EBML sizes, 8-byte uint max */
  89. #define MAX_CUEPOINT_SIZE(num_tracks) 12 + MAX_CUETRACKPOS_SIZE*num_tracks
  90. static int ebml_id_size(unsigned int id)
  91. {
  92. return (av_log2(id+1)-1)/7+1;
  93. }
  94. static void put_ebml_id(AVIOContext *pb, unsigned int id)
  95. {
  96. int i = ebml_id_size(id);
  97. while (i--)
  98. avio_w8(pb, id >> (i*8));
  99. }
  100. /**
  101. * Write an EBML size meaning "unknown size".
  102. *
  103. * @param bytes The number of bytes the size should occupy (maximum: 8).
  104. */
  105. static void put_ebml_size_unknown(AVIOContext *pb, int bytes)
  106. {
  107. assert(bytes <= 8);
  108. avio_w8(pb, 0x1ff >> bytes);
  109. while (--bytes)
  110. avio_w8(pb, 0xff);
  111. }
  112. /**
  113. * Calculate how many bytes are needed to represent a given number in EBML.
  114. */
  115. static int ebml_num_size(uint64_t num)
  116. {
  117. int bytes = 1;
  118. while ((num+1) >> bytes*7) bytes++;
  119. return bytes;
  120. }
  121. /**
  122. * Write a number in EBML variable length format.
  123. *
  124. * @param bytes The number of bytes that need to be used to write the number.
  125. * If zero, any number of bytes can be used.
  126. */
  127. static void put_ebml_num(AVIOContext *pb, uint64_t num, int bytes)
  128. {
  129. int i, needed_bytes = ebml_num_size(num);
  130. // sizes larger than this are currently undefined in EBML
  131. assert(num < (1ULL<<56)-1);
  132. if (bytes == 0)
  133. // don't care how many bytes are used, so use the min
  134. bytes = needed_bytes;
  135. // the bytes needed to write the given size would exceed the bytes
  136. // that we need to use, so write unknown size. This shouldn't happen.
  137. assert(bytes >= needed_bytes);
  138. num |= 1ULL << bytes*7;
  139. for (i = bytes - 1; i >= 0; i--)
  140. avio_w8(pb, num >> i*8);
  141. }
  142. static void put_ebml_uint(AVIOContext *pb, unsigned int elementid, uint64_t val)
  143. {
  144. int i, bytes = 1;
  145. uint64_t tmp = val;
  146. while (tmp>>=8) bytes++;
  147. put_ebml_id(pb, elementid);
  148. put_ebml_num(pb, bytes, 0);
  149. for (i = bytes - 1; i >= 0; i--)
  150. avio_w8(pb, val >> i*8);
  151. }
  152. static void put_ebml_float(AVIOContext *pb, unsigned int elementid, double val)
  153. {
  154. put_ebml_id(pb, elementid);
  155. put_ebml_num(pb, 8, 0);
  156. avio_wb64(pb, av_dbl2int(val));
  157. }
  158. static void put_ebml_binary(AVIOContext *pb, unsigned int elementid,
  159. const void *buf, int size)
  160. {
  161. put_ebml_id(pb, elementid);
  162. put_ebml_num(pb, size, 0);
  163. avio_write(pb, buf, size);
  164. }
  165. static void put_ebml_string(AVIOContext *pb, unsigned int elementid, const char *str)
  166. {
  167. put_ebml_binary(pb, elementid, str, strlen(str));
  168. }
  169. /**
  170. * Write a void element of a given size. Useful for reserving space in
  171. * the file to be written to later.
  172. *
  173. * @param size The number of bytes to reserve, which must be at least 2.
  174. */
  175. static void put_ebml_void(AVIOContext *pb, uint64_t size)
  176. {
  177. int64_t currentpos = avio_tell(pb);
  178. assert(size >= 2);
  179. put_ebml_id(pb, EBML_ID_VOID);
  180. // we need to subtract the length needed to store the size from the
  181. // size we need to reserve so 2 cases, we use 8 bytes to store the
  182. // size if possible, 1 byte otherwise
  183. if (size < 10)
  184. put_ebml_num(pb, size-1, 0);
  185. else
  186. put_ebml_num(pb, size-9, 8);
  187. while(avio_tell(pb) < currentpos + size)
  188. avio_w8(pb, 0);
  189. }
  190. static ebml_master start_ebml_master(AVIOContext *pb, unsigned int elementid, uint64_t expectedsize)
  191. {
  192. int bytes = expectedsize ? ebml_num_size(expectedsize) : 8;
  193. put_ebml_id(pb, elementid);
  194. put_ebml_size_unknown(pb, bytes);
  195. return (ebml_master){ avio_tell(pb), bytes };
  196. }
  197. static void end_ebml_master(AVIOContext *pb, ebml_master master)
  198. {
  199. int64_t pos = avio_tell(pb);
  200. if (avio_seek(pb, master.pos - master.sizebytes, SEEK_SET) < 0)
  201. return;
  202. put_ebml_num(pb, pos - master.pos, master.sizebytes);
  203. avio_seek(pb, pos, SEEK_SET);
  204. }
  205. static void put_xiph_size(AVIOContext *pb, int size)
  206. {
  207. int i;
  208. for (i = 0; i < size / 255; i++)
  209. avio_w8(pb, 255);
  210. avio_w8(pb, size % 255);
  211. }
  212. /**
  213. * Initialize a mkv_seekhead element to be ready to index level 1 Matroska
  214. * elements. If a maximum number of elements is specified, enough space
  215. * will be reserved at the current file location to write a seek head of
  216. * that size.
  217. *
  218. * @param segment_offset The absolute offset to the position in the file
  219. * where the segment begins.
  220. * @param numelements The maximum number of elements that will be indexed
  221. * by this seek head, 0 if unlimited.
  222. */
  223. static mkv_seekhead * mkv_start_seekhead(AVIOContext *pb, int64_t segment_offset, int numelements)
  224. {
  225. mkv_seekhead *new_seekhead = av_mallocz(sizeof(mkv_seekhead));
  226. if (new_seekhead == NULL)
  227. return NULL;
  228. new_seekhead->segment_offset = segment_offset;
  229. if (numelements > 0) {
  230. new_seekhead->filepos = avio_tell(pb);
  231. // 21 bytes max for a seek entry, 10 bytes max for the SeekHead ID
  232. // and size, and 3 bytes to guarantee that an EBML void element
  233. // will fit afterwards
  234. new_seekhead->reserved_size = numelements * MAX_SEEKENTRY_SIZE + 13;
  235. new_seekhead->max_entries = numelements;
  236. put_ebml_void(pb, new_seekhead->reserved_size);
  237. }
  238. return new_seekhead;
  239. }
  240. static int mkv_add_seekhead_entry(mkv_seekhead *seekhead, unsigned int elementid, uint64_t filepos)
  241. {
  242. mkv_seekhead_entry *entries = seekhead->entries;
  243. // don't store more elements than we reserved space for
  244. if (seekhead->max_entries > 0 && seekhead->max_entries <= seekhead->num_entries)
  245. return -1;
  246. entries = av_realloc(entries, (seekhead->num_entries + 1) * sizeof(mkv_seekhead_entry));
  247. if (entries == NULL)
  248. return AVERROR(ENOMEM);
  249. entries[seekhead->num_entries ].elementid = elementid;
  250. entries[seekhead->num_entries++].segmentpos = filepos - seekhead->segment_offset;
  251. seekhead->entries = entries;
  252. return 0;
  253. }
  254. /**
  255. * Write the seek head to the file and free it. If a maximum number of
  256. * elements was specified to mkv_start_seekhead(), the seek head will
  257. * be written at the location reserved for it. Otherwise, it is written
  258. * at the current location in the file.
  259. *
  260. * @return The file offset where the seekhead was written,
  261. * -1 if an error occurred.
  262. */
  263. static int64_t mkv_write_seekhead(AVIOContext *pb, mkv_seekhead *seekhead)
  264. {
  265. ebml_master metaseek, seekentry;
  266. int64_t currentpos;
  267. int i;
  268. currentpos = avio_tell(pb);
  269. if (seekhead->reserved_size > 0)
  270. if (avio_seek(pb, seekhead->filepos, SEEK_SET) < 0)
  271. return -1;
  272. metaseek = start_ebml_master(pb, MATROSKA_ID_SEEKHEAD, seekhead->reserved_size);
  273. for (i = 0; i < seekhead->num_entries; i++) {
  274. mkv_seekhead_entry *entry = &seekhead->entries[i];
  275. seekentry = start_ebml_master(pb, MATROSKA_ID_SEEKENTRY, MAX_SEEKENTRY_SIZE);
  276. put_ebml_id(pb, MATROSKA_ID_SEEKID);
  277. put_ebml_num(pb, ebml_id_size(entry->elementid), 0);
  278. put_ebml_id(pb, entry->elementid);
  279. put_ebml_uint(pb, MATROSKA_ID_SEEKPOSITION, entry->segmentpos);
  280. end_ebml_master(pb, seekentry);
  281. }
  282. end_ebml_master(pb, metaseek);
  283. if (seekhead->reserved_size > 0) {
  284. uint64_t remaining = seekhead->filepos + seekhead->reserved_size - avio_tell(pb);
  285. put_ebml_void(pb, remaining);
  286. avio_seek(pb, currentpos, SEEK_SET);
  287. currentpos = seekhead->filepos;
  288. }
  289. av_free(seekhead->entries);
  290. av_free(seekhead);
  291. return currentpos;
  292. }
  293. static mkv_cues * mkv_start_cues(int64_t segment_offset)
  294. {
  295. mkv_cues *cues = av_mallocz(sizeof(mkv_cues));
  296. if (cues == NULL)
  297. return NULL;
  298. cues->segment_offset = segment_offset;
  299. return cues;
  300. }
  301. static int mkv_add_cuepoint(mkv_cues *cues, int stream, int64_t ts, int64_t cluster_pos)
  302. {
  303. mkv_cuepoint *entries = cues->entries;
  304. entries = av_realloc(entries, (cues->num_entries + 1) * sizeof(mkv_cuepoint));
  305. if (entries == NULL)
  306. return AVERROR(ENOMEM);
  307. if (ts < 0)
  308. return 0;
  309. entries[cues->num_entries ].pts = ts;
  310. entries[cues->num_entries ].tracknum = stream + 1;
  311. entries[cues->num_entries++].cluster_pos = cluster_pos - cues->segment_offset;
  312. cues->entries = entries;
  313. return 0;
  314. }
  315. static int64_t mkv_write_cues(AVIOContext *pb, mkv_cues *cues, int num_tracks)
  316. {
  317. ebml_master cues_element;
  318. int64_t currentpos;
  319. int i, j;
  320. currentpos = avio_tell(pb);
  321. cues_element = start_ebml_master(pb, MATROSKA_ID_CUES, 0);
  322. for (i = 0; i < cues->num_entries; i++) {
  323. ebml_master cuepoint, track_positions;
  324. mkv_cuepoint *entry = &cues->entries[i];
  325. uint64_t pts = entry->pts;
  326. cuepoint = start_ebml_master(pb, MATROSKA_ID_POINTENTRY, MAX_CUEPOINT_SIZE(num_tracks));
  327. put_ebml_uint(pb, MATROSKA_ID_CUETIME, pts);
  328. // put all the entries from different tracks that have the exact same
  329. // timestamp into the same CuePoint
  330. for (j = 0; j < cues->num_entries - i && entry[j].pts == pts; j++) {
  331. track_positions = start_ebml_master(pb, MATROSKA_ID_CUETRACKPOSITION, MAX_CUETRACKPOS_SIZE);
  332. put_ebml_uint(pb, MATROSKA_ID_CUETRACK , entry[j].tracknum );
  333. put_ebml_uint(pb, MATROSKA_ID_CUECLUSTERPOSITION, entry[j].cluster_pos);
  334. end_ebml_master(pb, track_positions);
  335. }
  336. i += j - 1;
  337. end_ebml_master(pb, cuepoint);
  338. }
  339. end_ebml_master(pb, cues_element);
  340. av_free(cues->entries);
  341. av_free(cues);
  342. return currentpos;
  343. }
  344. static int put_xiph_codecpriv(AVFormatContext *s, AVIOContext *pb, AVCodecContext *codec)
  345. {
  346. uint8_t *header_start[3];
  347. int header_len[3];
  348. int first_header_size;
  349. int j;
  350. if (codec->codec_id == CODEC_ID_VORBIS)
  351. first_header_size = 30;
  352. else
  353. first_header_size = 42;
  354. if (ff_split_xiph_headers(codec->extradata, codec->extradata_size,
  355. first_header_size, header_start, header_len) < 0) {
  356. av_log(s, AV_LOG_ERROR, "Extradata corrupt.\n");
  357. return -1;
  358. }
  359. avio_w8(pb, 2); // number packets - 1
  360. for (j = 0; j < 2; j++) {
  361. put_xiph_size(pb, header_len[j]);
  362. }
  363. for (j = 0; j < 3; j++)
  364. avio_write(pb, header_start[j], header_len[j]);
  365. return 0;
  366. }
  367. static void get_aac_sample_rates(AVFormatContext *s, AVCodecContext *codec, int *sample_rate, int *output_sample_rate)
  368. {
  369. MPEG4AudioConfig mp4ac;
  370. if (ff_mpeg4audio_get_config(&mp4ac, codec->extradata, codec->extradata_size) < 0) {
  371. av_log(s, AV_LOG_WARNING, "Error parsing AAC extradata, unable to determine samplerate.\n");
  372. return;
  373. }
  374. *sample_rate = mp4ac.sample_rate;
  375. *output_sample_rate = mp4ac.ext_sample_rate;
  376. }
  377. static int mkv_write_codecprivate(AVFormatContext *s, AVIOContext *pb, AVCodecContext *codec, int native_id, int qt_id)
  378. {
  379. AVIOContext *dyn_cp;
  380. uint8_t *codecpriv;
  381. int ret, codecpriv_size;
  382. ret = url_open_dyn_buf(&dyn_cp);
  383. if(ret < 0)
  384. return ret;
  385. if (native_id) {
  386. if (codec->codec_id == CODEC_ID_VORBIS || codec->codec_id == CODEC_ID_THEORA)
  387. ret = put_xiph_codecpriv(s, dyn_cp, codec);
  388. else if (codec->codec_id == CODEC_ID_FLAC)
  389. ret = ff_flac_write_header(dyn_cp, codec, 1);
  390. else if (codec->codec_id == CODEC_ID_H264)
  391. ret = ff_isom_write_avcc(dyn_cp, codec->extradata, codec->extradata_size);
  392. else if (codec->extradata_size)
  393. avio_write(dyn_cp, codec->extradata, codec->extradata_size);
  394. } else if (codec->codec_type == AVMEDIA_TYPE_VIDEO) {
  395. if (qt_id) {
  396. if (!codec->codec_tag)
  397. codec->codec_tag = ff_codec_get_tag(codec_movvideo_tags, codec->codec_id);
  398. if (codec->extradata_size)
  399. avio_write(dyn_cp, codec->extradata, codec->extradata_size);
  400. } else {
  401. if (!codec->codec_tag)
  402. codec->codec_tag = ff_codec_get_tag(ff_codec_bmp_tags, codec->codec_id);
  403. if (!codec->codec_tag) {
  404. av_log(s, AV_LOG_ERROR, "No bmp codec ID found.\n");
  405. ret = -1;
  406. }
  407. ff_put_bmp_header(dyn_cp, codec, ff_codec_bmp_tags, 0);
  408. }
  409. } else if (codec->codec_type == AVMEDIA_TYPE_AUDIO) {
  410. unsigned int tag;
  411. tag = ff_codec_get_tag(ff_codec_wav_tags, codec->codec_id);
  412. if (!tag) {
  413. av_log(s, AV_LOG_ERROR, "No wav codec ID found.\n");
  414. ret = -1;
  415. }
  416. if (!codec->codec_tag)
  417. codec->codec_tag = tag;
  418. ff_put_wav_header(dyn_cp, codec);
  419. }
  420. codecpriv_size = url_close_dyn_buf(dyn_cp, &codecpriv);
  421. if (codecpriv_size)
  422. put_ebml_binary(pb, MATROSKA_ID_CODECPRIVATE, codecpriv, codecpriv_size);
  423. av_free(codecpriv);
  424. return ret;
  425. }
  426. static int mkv_write_tracks(AVFormatContext *s)
  427. {
  428. MatroskaMuxContext *mkv = s->priv_data;
  429. AVIOContext *pb = s->pb;
  430. ebml_master tracks;
  431. int i, j, ret;
  432. ret = mkv_add_seekhead_entry(mkv->main_seekhead, MATROSKA_ID_TRACKS, avio_tell(pb));
  433. if (ret < 0) return ret;
  434. tracks = start_ebml_master(pb, MATROSKA_ID_TRACKS, 0);
  435. for (i = 0; i < s->nb_streams; i++) {
  436. AVStream *st = s->streams[i];
  437. AVCodecContext *codec = st->codec;
  438. ebml_master subinfo, track;
  439. int native_id = 0;
  440. int qt_id = 0;
  441. int bit_depth = av_get_bits_per_sample(codec->codec_id);
  442. int sample_rate = codec->sample_rate;
  443. int output_sample_rate = 0;
  444. AVMetadataTag *tag;
  445. if (!bit_depth)
  446. bit_depth = av_get_bits_per_sample_fmt(codec->sample_fmt);
  447. if (codec->codec_id == CODEC_ID_AAC)
  448. get_aac_sample_rates(s, codec, &sample_rate, &output_sample_rate);
  449. track = start_ebml_master(pb, MATROSKA_ID_TRACKENTRY, 0);
  450. put_ebml_uint (pb, MATROSKA_ID_TRACKNUMBER , i + 1);
  451. put_ebml_uint (pb, MATROSKA_ID_TRACKUID , i + 1);
  452. put_ebml_uint (pb, MATROSKA_ID_TRACKFLAGLACING , 0); // no lacing (yet)
  453. if ((tag = av_metadata_get(st->metadata, "title", NULL, 0)))
  454. put_ebml_string(pb, MATROSKA_ID_TRACKNAME, tag->value);
  455. tag = av_metadata_get(st->metadata, "language", NULL, 0);
  456. put_ebml_string(pb, MATROSKA_ID_TRACKLANGUAGE, tag ? tag->value:"und");
  457. if (st->disposition)
  458. put_ebml_uint(pb, MATROSKA_ID_TRACKFLAGDEFAULT, !!(st->disposition & AV_DISPOSITION_DEFAULT));
  459. // look for a codec ID string specific to mkv to use,
  460. // if none are found, use AVI codes
  461. for (j = 0; ff_mkv_codec_tags[j].id != CODEC_ID_NONE; j++) {
  462. if (ff_mkv_codec_tags[j].id == codec->codec_id) {
  463. put_ebml_string(pb, MATROSKA_ID_CODECID, ff_mkv_codec_tags[j].str);
  464. native_id = 1;
  465. break;
  466. }
  467. }
  468. if (mkv->mode == MODE_WEBM && !(codec->codec_id == CODEC_ID_VP8 ||
  469. codec->codec_id == CODEC_ID_VORBIS)) {
  470. av_log(s, AV_LOG_ERROR,
  471. "Only VP8 video and Vorbis audio are supported for WebM.\n");
  472. return AVERROR(EINVAL);
  473. }
  474. switch (codec->codec_type) {
  475. case AVMEDIA_TYPE_VIDEO:
  476. put_ebml_uint(pb, MATROSKA_ID_TRACKTYPE, MATROSKA_TRACK_TYPE_VIDEO);
  477. put_ebml_uint(pb, MATROSKA_ID_TRACKDEFAULTDURATION, av_q2d(codec->time_base)*1E9);
  478. if (!native_id &&
  479. ff_codec_get_tag(codec_movvideo_tags, codec->codec_id) &&
  480. (!ff_codec_get_tag(ff_codec_bmp_tags, codec->codec_id)
  481. || codec->codec_id == CODEC_ID_SVQ1
  482. || codec->codec_id == CODEC_ID_SVQ3
  483. || codec->codec_id == CODEC_ID_CINEPAK))
  484. qt_id = 1;
  485. if (qt_id)
  486. put_ebml_string(pb, MATROSKA_ID_CODECID, "V_QUICKTIME");
  487. else if (!native_id) {
  488. // if there is no mkv-specific codec ID, use VFW mode
  489. put_ebml_string(pb, MATROSKA_ID_CODECID, "V_MS/VFW/FOURCC");
  490. mkv->tracks[i].write_dts = 1;
  491. }
  492. subinfo = start_ebml_master(pb, MATROSKA_ID_TRACKVIDEO, 0);
  493. // XXX: interlace flag?
  494. put_ebml_uint (pb, MATROSKA_ID_VIDEOPIXELWIDTH , codec->width);
  495. put_ebml_uint (pb, MATROSKA_ID_VIDEOPIXELHEIGHT, codec->height);
  496. if (st->sample_aspect_ratio.num) {
  497. int d_width = codec->width*av_q2d(st->sample_aspect_ratio);
  498. put_ebml_uint(pb, MATROSKA_ID_VIDEODISPLAYWIDTH , d_width);
  499. put_ebml_uint(pb, MATROSKA_ID_VIDEODISPLAYHEIGHT, codec->height);
  500. put_ebml_uint(pb, MATROSKA_ID_VIDEODISPLAYUNIT, 3);
  501. }
  502. end_ebml_master(pb, subinfo);
  503. break;
  504. case AVMEDIA_TYPE_AUDIO:
  505. put_ebml_uint(pb, MATROSKA_ID_TRACKTYPE, MATROSKA_TRACK_TYPE_AUDIO);
  506. if (!native_id)
  507. // no mkv-specific ID, use ACM mode
  508. put_ebml_string(pb, MATROSKA_ID_CODECID, "A_MS/ACM");
  509. subinfo = start_ebml_master(pb, MATROSKA_ID_TRACKAUDIO, 0);
  510. put_ebml_uint (pb, MATROSKA_ID_AUDIOCHANNELS , codec->channels);
  511. put_ebml_float (pb, MATROSKA_ID_AUDIOSAMPLINGFREQ, sample_rate);
  512. if (output_sample_rate)
  513. put_ebml_float(pb, MATROSKA_ID_AUDIOOUTSAMPLINGFREQ, output_sample_rate);
  514. if (bit_depth)
  515. put_ebml_uint(pb, MATROSKA_ID_AUDIOBITDEPTH, bit_depth);
  516. end_ebml_master(pb, subinfo);
  517. break;
  518. case AVMEDIA_TYPE_SUBTITLE:
  519. put_ebml_uint(pb, MATROSKA_ID_TRACKTYPE, MATROSKA_TRACK_TYPE_SUBTITLE);
  520. break;
  521. default:
  522. av_log(s, AV_LOG_ERROR, "Only audio, video, and subtitles are supported for Matroska.");
  523. break;
  524. }
  525. ret = mkv_write_codecprivate(s, pb, codec, native_id, qt_id);
  526. if (ret < 0) return ret;
  527. end_ebml_master(pb, track);
  528. // ms precision is the de-facto standard timescale for mkv files
  529. av_set_pts_info(st, 64, 1, 1000);
  530. }
  531. end_ebml_master(pb, tracks);
  532. return 0;
  533. }
  534. static int mkv_write_chapters(AVFormatContext *s)
  535. {
  536. MatroskaMuxContext *mkv = s->priv_data;
  537. AVIOContext *pb = s->pb;
  538. ebml_master chapters, editionentry;
  539. AVRational scale = {1, 1E9};
  540. int i, ret;
  541. if (!s->nb_chapters)
  542. return 0;
  543. ret = mkv_add_seekhead_entry(mkv->main_seekhead, MATROSKA_ID_CHAPTERS, avio_tell(pb));
  544. if (ret < 0) return ret;
  545. chapters = start_ebml_master(pb, MATROSKA_ID_CHAPTERS , 0);
  546. editionentry = start_ebml_master(pb, MATROSKA_ID_EDITIONENTRY, 0);
  547. put_ebml_uint(pb, MATROSKA_ID_EDITIONFLAGDEFAULT, 1);
  548. put_ebml_uint(pb, MATROSKA_ID_EDITIONFLAGHIDDEN , 0);
  549. for (i = 0; i < s->nb_chapters; i++) {
  550. ebml_master chapteratom, chapterdisplay;
  551. AVChapter *c = s->chapters[i];
  552. AVMetadataTag *t = NULL;
  553. chapteratom = start_ebml_master(pb, MATROSKA_ID_CHAPTERATOM, 0);
  554. put_ebml_uint(pb, MATROSKA_ID_CHAPTERUID, c->id);
  555. put_ebml_uint(pb, MATROSKA_ID_CHAPTERTIMESTART,
  556. av_rescale_q(c->start, c->time_base, scale));
  557. put_ebml_uint(pb, MATROSKA_ID_CHAPTERTIMEEND,
  558. av_rescale_q(c->end, c->time_base, scale));
  559. put_ebml_uint(pb, MATROSKA_ID_CHAPTERFLAGHIDDEN , 0);
  560. put_ebml_uint(pb, MATROSKA_ID_CHAPTERFLAGENABLED, 1);
  561. if ((t = av_metadata_get(c->metadata, "title", NULL, 0))) {
  562. chapterdisplay = start_ebml_master(pb, MATROSKA_ID_CHAPTERDISPLAY, 0);
  563. put_ebml_string(pb, MATROSKA_ID_CHAPSTRING, t->value);
  564. put_ebml_string(pb, MATROSKA_ID_CHAPLANG , "und");
  565. end_ebml_master(pb, chapterdisplay);
  566. }
  567. end_ebml_master(pb, chapteratom);
  568. }
  569. end_ebml_master(pb, editionentry);
  570. end_ebml_master(pb, chapters);
  571. return 0;
  572. }
  573. static void mkv_write_simpletag(AVIOContext *pb, AVMetadataTag *t)
  574. {
  575. uint8_t *key = av_strdup(t->key);
  576. uint8_t *p = key;
  577. const uint8_t *lang = NULL;
  578. ebml_master tag;
  579. if ((p = strrchr(p, '-')) &&
  580. (lang = av_convert_lang_to(p + 1, AV_LANG_ISO639_2_BIBL)))
  581. *p = 0;
  582. p = key;
  583. while (*p) {
  584. if (*p == ' ')
  585. *p = '_';
  586. else if (*p >= 'a' && *p <= 'z')
  587. *p -= 'a' - 'A';
  588. p++;
  589. }
  590. tag = start_ebml_master(pb, MATROSKA_ID_SIMPLETAG, 0);
  591. put_ebml_string(pb, MATROSKA_ID_TAGNAME, key);
  592. if (lang)
  593. put_ebml_string(pb, MATROSKA_ID_TAGLANG, lang);
  594. put_ebml_string(pb, MATROSKA_ID_TAGSTRING, t->value);
  595. end_ebml_master(pb, tag);
  596. av_freep(&key);
  597. }
  598. static int mkv_write_tag(AVFormatContext *s, AVMetadata *m, unsigned int elementid,
  599. unsigned int uid, ebml_master *tags)
  600. {
  601. MatroskaMuxContext *mkv = s->priv_data;
  602. ebml_master tag, targets;
  603. AVMetadataTag *t = NULL;
  604. int ret;
  605. if (!tags->pos) {
  606. ret = mkv_add_seekhead_entry(mkv->main_seekhead, MATROSKA_ID_TAGS, avio_tell(s->pb));
  607. if (ret < 0) return ret;
  608. *tags = start_ebml_master(s->pb, MATROSKA_ID_TAGS, 0);
  609. }
  610. tag = start_ebml_master(s->pb, MATROSKA_ID_TAG, 0);
  611. targets = start_ebml_master(s->pb, MATROSKA_ID_TAGTARGETS, 0);
  612. if (elementid)
  613. put_ebml_uint(s->pb, elementid, uid);
  614. end_ebml_master(s->pb, targets);
  615. while ((t = av_metadata_get(m, "", t, AV_METADATA_IGNORE_SUFFIX)))
  616. if (strcasecmp(t->key, "title"))
  617. mkv_write_simpletag(s->pb, t);
  618. end_ebml_master(s->pb, tag);
  619. return 0;
  620. }
  621. static int mkv_write_tags(AVFormatContext *s)
  622. {
  623. ebml_master tags = {0};
  624. int i, ret;
  625. ff_metadata_conv_ctx(s, ff_mkv_metadata_conv, NULL);
  626. if (av_metadata_get(s->metadata, "", NULL, AV_METADATA_IGNORE_SUFFIX)) {
  627. ret = mkv_write_tag(s, s->metadata, 0, 0, &tags);
  628. if (ret < 0) return ret;
  629. }
  630. for (i = 0; i < s->nb_streams; i++) {
  631. AVStream *st = s->streams[i];
  632. if (!av_metadata_get(st->metadata, "", 0, AV_METADATA_IGNORE_SUFFIX))
  633. continue;
  634. ret = mkv_write_tag(s, st->metadata, MATROSKA_ID_TAGTARGETS_TRACKUID, i + 1, &tags);
  635. if (ret < 0) return ret;
  636. }
  637. for (i = 0; i < s->nb_chapters; i++) {
  638. AVChapter *ch = s->chapters[i];
  639. if (!av_metadata_get(ch->metadata, "", NULL, AV_METADATA_IGNORE_SUFFIX))
  640. continue;
  641. ret = mkv_write_tag(s, ch->metadata, MATROSKA_ID_TAGTARGETS_CHAPTERUID, ch->id, &tags);
  642. if (ret < 0) return ret;
  643. }
  644. if (tags.pos)
  645. end_ebml_master(s->pb, tags);
  646. return 0;
  647. }
  648. static int mkv_write_header(AVFormatContext *s)
  649. {
  650. MatroskaMuxContext *mkv = s->priv_data;
  651. AVIOContext *pb = s->pb;
  652. ebml_master ebml_header, segment_info;
  653. AVMetadataTag *tag;
  654. int ret, i;
  655. if (!strcmp(s->oformat->name, "webm")) mkv->mode = MODE_WEBM;
  656. else mkv->mode = MODE_MATROSKAv2;
  657. mkv->tracks = av_mallocz(s->nb_streams * sizeof(*mkv->tracks));
  658. if (!mkv->tracks)
  659. return AVERROR(ENOMEM);
  660. ebml_header = start_ebml_master(pb, EBML_ID_HEADER, 0);
  661. put_ebml_uint (pb, EBML_ID_EBMLVERSION , 1);
  662. put_ebml_uint (pb, EBML_ID_EBMLREADVERSION , 1);
  663. put_ebml_uint (pb, EBML_ID_EBMLMAXIDLENGTH , 4);
  664. put_ebml_uint (pb, EBML_ID_EBMLMAXSIZELENGTH , 8);
  665. put_ebml_string (pb, EBML_ID_DOCTYPE , s->oformat->name);
  666. put_ebml_uint (pb, EBML_ID_DOCTYPEVERSION , 2);
  667. put_ebml_uint (pb, EBML_ID_DOCTYPEREADVERSION , 2);
  668. end_ebml_master(pb, ebml_header);
  669. mkv->segment = start_ebml_master(pb, MATROSKA_ID_SEGMENT, 0);
  670. mkv->segment_offset = avio_tell(pb);
  671. // we write 2 seek heads - one at the end of the file to point to each
  672. // cluster, and one at the beginning to point to all other level one
  673. // elements (including the seek head at the end of the file), which
  674. // isn't more than 10 elements if we only write one of each other
  675. // currently defined level 1 element
  676. mkv->main_seekhead = mkv_start_seekhead(pb, mkv->segment_offset, 10);
  677. if (!mkv->main_seekhead)
  678. return AVERROR(ENOMEM);
  679. ret = mkv_add_seekhead_entry(mkv->main_seekhead, MATROSKA_ID_INFO, avio_tell(pb));
  680. if (ret < 0) return ret;
  681. segment_info = start_ebml_master(pb, MATROSKA_ID_INFO, 0);
  682. put_ebml_uint(pb, MATROSKA_ID_TIMECODESCALE, 1000000);
  683. if ((tag = av_metadata_get(s->metadata, "title", NULL, 0)))
  684. put_ebml_string(pb, MATROSKA_ID_TITLE, tag->value);
  685. if (!(s->streams[0]->codec->flags & CODEC_FLAG_BITEXACT)) {
  686. uint32_t segment_uid[4];
  687. AVLFG lfg;
  688. av_lfg_init(&lfg, av_get_random_seed());
  689. for (i = 0; i < 4; i++)
  690. segment_uid[i] = av_lfg_get(&lfg);
  691. put_ebml_string(pb, MATROSKA_ID_MUXINGAPP , LIBAVFORMAT_IDENT);
  692. put_ebml_string(pb, MATROSKA_ID_WRITINGAPP, LIBAVFORMAT_IDENT);
  693. put_ebml_binary(pb, MATROSKA_ID_SEGMENTUID, segment_uid, 16);
  694. }
  695. // reserve space for the duration
  696. mkv->duration = 0;
  697. mkv->duration_offset = avio_tell(pb);
  698. put_ebml_void(pb, 11); // assumes double-precision float to be written
  699. end_ebml_master(pb, segment_info);
  700. ret = mkv_write_tracks(s);
  701. if (ret < 0) return ret;
  702. if (mkv->mode != MODE_WEBM) {
  703. ret = mkv_write_chapters(s);
  704. if (ret < 0) return ret;
  705. ret = mkv_write_tags(s);
  706. if (ret < 0) return ret;
  707. }
  708. if (url_is_streamed(s->pb))
  709. mkv_write_seekhead(pb, mkv->main_seekhead);
  710. mkv->cues = mkv_start_cues(mkv->segment_offset);
  711. if (mkv->cues == NULL)
  712. return AVERROR(ENOMEM);
  713. av_init_packet(&mkv->cur_audio_pkt);
  714. mkv->cur_audio_pkt.size = 0;
  715. mkv->audio_buffer_size = 0;
  716. avio_flush(pb);
  717. return 0;
  718. }
  719. static int mkv_blockgroup_size(int pkt_size)
  720. {
  721. int size = pkt_size + 4;
  722. size += ebml_num_size(size);
  723. size += 2; // EBML ID for block and block duration
  724. size += 8; // max size of block duration
  725. size += ebml_num_size(size);
  726. size += 1; // blockgroup EBML ID
  727. return size;
  728. }
  729. static int ass_get_duration(const uint8_t *p)
  730. {
  731. int sh, sm, ss, sc, eh, em, es, ec;
  732. uint64_t start, end;
  733. if (sscanf(p, "%*[^,],%d:%d:%d%*c%d,%d:%d:%d%*c%d",
  734. &sh, &sm, &ss, &sc, &eh, &em, &es, &ec) != 8)
  735. return 0;
  736. start = 3600000*sh + 60000*sm + 1000*ss + 10*sc;
  737. end = 3600000*eh + 60000*em + 1000*es + 10*ec;
  738. return end - start;
  739. }
  740. static int mkv_write_ass_blocks(AVFormatContext *s, AVIOContext *pb, AVPacket *pkt)
  741. {
  742. MatroskaMuxContext *mkv = s->priv_data;
  743. int i, layer = 0, max_duration = 0, size, line_size, data_size = pkt->size;
  744. uint8_t *start, *end, *data = pkt->data;
  745. ebml_master blockgroup;
  746. char buffer[2048];
  747. while (data_size) {
  748. int duration = ass_get_duration(data);
  749. max_duration = FFMAX(duration, max_duration);
  750. end = memchr(data, '\n', data_size);
  751. size = line_size = end ? end-data+1 : data_size;
  752. size -= end ? (end[-1]=='\r')+1 : 0;
  753. start = data;
  754. for (i=0; i<3; i++, start++)
  755. if (!(start = memchr(start, ',', size-(start-data))))
  756. return max_duration;
  757. size -= start - data;
  758. sscanf(data, "Dialogue: %d,", &layer);
  759. i = snprintf(buffer, sizeof(buffer), "%"PRId64",%d,",
  760. s->streams[pkt->stream_index]->nb_frames++, layer);
  761. size = FFMIN(i+size, sizeof(buffer));
  762. memcpy(buffer+i, start, size-i);
  763. av_log(s, AV_LOG_DEBUG, "Writing block at offset %" PRIu64 ", size %d, "
  764. "pts %" PRId64 ", duration %d\n",
  765. avio_tell(pb), size, pkt->pts, duration);
  766. blockgroup = start_ebml_master(pb, MATROSKA_ID_BLOCKGROUP, mkv_blockgroup_size(size));
  767. put_ebml_id(pb, MATROSKA_ID_BLOCK);
  768. put_ebml_num(pb, size+4, 0);
  769. avio_w8(pb, 0x80 | (pkt->stream_index + 1)); // this assumes stream_index is less than 126
  770. avio_wb16(pb, pkt->pts - mkv->cluster_pts);
  771. avio_w8(pb, 0);
  772. avio_write(pb, buffer, size);
  773. put_ebml_uint(pb, MATROSKA_ID_BLOCKDURATION, duration);
  774. end_ebml_master(pb, blockgroup);
  775. data += line_size;
  776. data_size -= line_size;
  777. }
  778. return max_duration;
  779. }
  780. static void mkv_write_block(AVFormatContext *s, AVIOContext *pb,
  781. unsigned int blockid, AVPacket *pkt, int flags)
  782. {
  783. MatroskaMuxContext *mkv = s->priv_data;
  784. AVCodecContext *codec = s->streams[pkt->stream_index]->codec;
  785. uint8_t *data = NULL;
  786. int size = pkt->size;
  787. int64_t ts = mkv->tracks[pkt->stream_index].write_dts ? pkt->dts : pkt->pts;
  788. av_log(s, AV_LOG_DEBUG, "Writing block at offset %" PRIu64 ", size %d, "
  789. "pts %" PRId64 ", dts %" PRId64 ", duration %d, flags %d\n",
  790. avio_tell(pb), pkt->size, pkt->pts, pkt->dts, pkt->duration, flags);
  791. if (codec->codec_id == CODEC_ID_H264 && codec->extradata_size > 0 &&
  792. (AV_RB24(codec->extradata) == 1 || AV_RB32(codec->extradata) == 1))
  793. ff_avc_parse_nal_units_buf(pkt->data, &data, &size);
  794. else
  795. data = pkt->data;
  796. put_ebml_id(pb, blockid);
  797. put_ebml_num(pb, size+4, 0);
  798. avio_w8(pb, 0x80 | (pkt->stream_index + 1)); // this assumes stream_index is less than 126
  799. avio_wb16(pb, ts - mkv->cluster_pts);
  800. avio_w8(pb, flags);
  801. avio_write(pb, data, size);
  802. if (data != pkt->data)
  803. av_free(data);
  804. }
  805. static int srt_get_duration(uint8_t **buf)
  806. {
  807. int i, duration = 0;
  808. for (i=0; i<2 && !duration; i++) {
  809. int s_hour, s_min, s_sec, s_hsec, e_hour, e_min, e_sec, e_hsec;
  810. if (sscanf(*buf, "%d:%2d:%2d%*1[,.]%3d --> %d:%2d:%2d%*1[,.]%3d",
  811. &s_hour, &s_min, &s_sec, &s_hsec,
  812. &e_hour, &e_min, &e_sec, &e_hsec) == 8) {
  813. s_min += 60*s_hour; e_min += 60*e_hour;
  814. s_sec += 60*s_min; e_sec += 60*e_min;
  815. s_hsec += 1000*s_sec; e_hsec += 1000*e_sec;
  816. duration = e_hsec - s_hsec;
  817. }
  818. *buf += strcspn(*buf, "\n") + 1;
  819. }
  820. return duration;
  821. }
  822. static int mkv_write_srt_blocks(AVFormatContext *s, AVIOContext *pb, AVPacket *pkt)
  823. {
  824. ebml_master blockgroup;
  825. AVPacket pkt2 = *pkt;
  826. int64_t duration = srt_get_duration(&pkt2.data);
  827. pkt2.size -= pkt2.data - pkt->data;
  828. blockgroup = start_ebml_master(pb, MATROSKA_ID_BLOCKGROUP,
  829. mkv_blockgroup_size(pkt2.size));
  830. mkv_write_block(s, pb, MATROSKA_ID_BLOCK, &pkt2, 0);
  831. put_ebml_uint(pb, MATROSKA_ID_BLOCKDURATION, duration);
  832. end_ebml_master(pb, blockgroup);
  833. return duration;
  834. }
  835. static void mkv_flush_dynbuf(AVFormatContext *s)
  836. {
  837. MatroskaMuxContext *mkv = s->priv_data;
  838. int bufsize;
  839. uint8_t *dyn_buf;
  840. if (!mkv->dyn_bc)
  841. return;
  842. bufsize = url_close_dyn_buf(mkv->dyn_bc, &dyn_buf);
  843. avio_write(s->pb, dyn_buf, bufsize);
  844. av_free(dyn_buf);
  845. mkv->dyn_bc = NULL;
  846. }
  847. static int mkv_write_packet_internal(AVFormatContext *s, AVPacket *pkt)
  848. {
  849. MatroskaMuxContext *mkv = s->priv_data;
  850. AVIOContext *pb = s->pb;
  851. AVCodecContext *codec = s->streams[pkt->stream_index]->codec;
  852. int keyframe = !!(pkt->flags & AV_PKT_FLAG_KEY);
  853. int duration = pkt->duration;
  854. int ret;
  855. int64_t ts = mkv->tracks[pkt->stream_index].write_dts ? pkt->dts : pkt->pts;
  856. if (ts == AV_NOPTS_VALUE) {
  857. av_log(s, AV_LOG_ERROR, "Can't write packet with unknown timestamp\n");
  858. return AVERROR(EINVAL);
  859. }
  860. if (url_is_streamed(s->pb)) {
  861. if (!mkv->dyn_bc)
  862. url_open_dyn_buf(&mkv->dyn_bc);
  863. pb = mkv->dyn_bc;
  864. }
  865. if (!mkv->cluster_pos) {
  866. mkv->cluster_pos = avio_tell(s->pb);
  867. mkv->cluster = start_ebml_master(pb, MATROSKA_ID_CLUSTER, 0);
  868. put_ebml_uint(pb, MATROSKA_ID_CLUSTERTIMECODE, FFMAX(0, ts));
  869. mkv->cluster_pts = FFMAX(0, ts);
  870. }
  871. if (codec->codec_type != AVMEDIA_TYPE_SUBTITLE) {
  872. mkv_write_block(s, pb, MATROSKA_ID_SIMPLEBLOCK, pkt, keyframe << 7);
  873. } else if (codec->codec_id == CODEC_ID_SSA) {
  874. duration = mkv_write_ass_blocks(s, pb, pkt);
  875. } else if (codec->codec_id == CODEC_ID_SRT) {
  876. duration = mkv_write_srt_blocks(s, pb, pkt);
  877. } else {
  878. ebml_master blockgroup = start_ebml_master(pb, MATROSKA_ID_BLOCKGROUP, mkv_blockgroup_size(pkt->size));
  879. duration = pkt->convergence_duration;
  880. mkv_write_block(s, pb, MATROSKA_ID_BLOCK, pkt, 0);
  881. put_ebml_uint(pb, MATROSKA_ID_BLOCKDURATION, duration);
  882. end_ebml_master(pb, blockgroup);
  883. }
  884. if (codec->codec_type == AVMEDIA_TYPE_VIDEO && keyframe) {
  885. ret = mkv_add_cuepoint(mkv->cues, pkt->stream_index, ts, mkv->cluster_pos);
  886. if (ret < 0) return ret;
  887. }
  888. mkv->duration = FFMAX(mkv->duration, ts + duration);
  889. return 0;
  890. }
  891. static int mkv_copy_packet(MatroskaMuxContext *mkv, const AVPacket *pkt)
  892. {
  893. uint8_t *data = mkv->cur_audio_pkt.data;
  894. mkv->cur_audio_pkt = *pkt;
  895. mkv->cur_audio_pkt.data = av_fast_realloc(data, &mkv->audio_buffer_size, pkt->size);
  896. if (!mkv->cur_audio_pkt.data)
  897. return AVERROR(ENOMEM);
  898. memcpy(mkv->cur_audio_pkt.data, pkt->data, pkt->size);
  899. mkv->cur_audio_pkt.size = pkt->size;
  900. return 0;
  901. }
  902. static int mkv_write_packet(AVFormatContext *s, AVPacket *pkt)
  903. {
  904. MatroskaMuxContext *mkv = s->priv_data;
  905. AVIOContext *pb = url_is_streamed(s->pb) ? mkv->dyn_bc : s->pb;
  906. AVCodecContext *codec = s->streams[pkt->stream_index]->codec;
  907. int ret, keyframe = !!(pkt->flags & AV_PKT_FLAG_KEY);
  908. int64_t ts = mkv->tracks[pkt->stream_index].write_dts ? pkt->dts : pkt->pts;
  909. int cluster_size = avio_tell(pb) - (url_is_streamed(s->pb) ? 0 : mkv->cluster_pos);
  910. // start a new cluster every 5 MB or 5 sec, or 32k / 1 sec for streaming or
  911. // after 4k and on a keyframe
  912. if (mkv->cluster_pos &&
  913. ((url_is_streamed(s->pb) && (cluster_size > 32*1024 || ts > mkv->cluster_pts + 1000))
  914. || cluster_size > 5*1024*1024 || ts > mkv->cluster_pts + 5000
  915. || (codec->codec_type == AVMEDIA_TYPE_VIDEO && keyframe && cluster_size > 4*1024))) {
  916. av_log(s, AV_LOG_DEBUG, "Starting new cluster at offset %" PRIu64
  917. " bytes, pts %" PRIu64 "\n", avio_tell(pb), ts);
  918. end_ebml_master(pb, mkv->cluster);
  919. mkv->cluster_pos = 0;
  920. if (mkv->dyn_bc)
  921. mkv_flush_dynbuf(s);
  922. }
  923. // check if we have an audio packet cached
  924. if (mkv->cur_audio_pkt.size > 0) {
  925. ret = mkv_write_packet_internal(s, &mkv->cur_audio_pkt);
  926. mkv->cur_audio_pkt.size = 0;
  927. if (ret < 0) {
  928. av_log(s, AV_LOG_ERROR, "Could not write cached audio packet ret:%d\n", ret);
  929. return ret;
  930. }
  931. }
  932. // buffer an audio packet to ensure the packet containing the video
  933. // keyframe's timecode is contained in the same cluster for WebM
  934. if (codec->codec_type == AVMEDIA_TYPE_AUDIO)
  935. ret = mkv_copy_packet(mkv, pkt);
  936. else
  937. ret = mkv_write_packet_internal(s, pkt);
  938. return ret;
  939. }
  940. static int mkv_write_trailer(AVFormatContext *s)
  941. {
  942. MatroskaMuxContext *mkv = s->priv_data;
  943. AVIOContext *pb = s->pb;
  944. int64_t currentpos, cuespos;
  945. int ret;
  946. // check if we have an audio packet cached
  947. if (mkv->cur_audio_pkt.size > 0) {
  948. ret = mkv_write_packet_internal(s, &mkv->cur_audio_pkt);
  949. mkv->cur_audio_pkt.size = 0;
  950. if (ret < 0) {
  951. av_log(s, AV_LOG_ERROR, "Could not write cached audio packet ret:%d\n", ret);
  952. return ret;
  953. }
  954. }
  955. if (mkv->dyn_bc) {
  956. end_ebml_master(mkv->dyn_bc, mkv->cluster);
  957. mkv_flush_dynbuf(s);
  958. } else if (mkv->cluster_pos) {
  959. end_ebml_master(pb, mkv->cluster);
  960. }
  961. if (!url_is_streamed(pb)) {
  962. cuespos = mkv_write_cues(pb, mkv->cues, s->nb_streams);
  963. ret = mkv_add_seekhead_entry(mkv->main_seekhead, MATROSKA_ID_CUES , cuespos);
  964. if (ret < 0) return ret;
  965. mkv_write_seekhead(pb, mkv->main_seekhead);
  966. // update the duration
  967. av_log(s, AV_LOG_DEBUG, "end duration = %" PRIu64 "\n", mkv->duration);
  968. currentpos = avio_tell(pb);
  969. avio_seek(pb, mkv->duration_offset, SEEK_SET);
  970. put_ebml_float(pb, MATROSKA_ID_DURATION, mkv->duration);
  971. avio_seek(pb, currentpos, SEEK_SET);
  972. }
  973. end_ebml_master(pb, mkv->segment);
  974. av_free(mkv->tracks);
  975. av_destruct_packet(&mkv->cur_audio_pkt);
  976. avio_flush(pb);
  977. return 0;
  978. }
  979. #if CONFIG_MATROSKA_MUXER
  980. AVOutputFormat ff_matroska_muxer = {
  981. "matroska",
  982. NULL_IF_CONFIG_SMALL("Matroska file format"),
  983. "video/x-matroska",
  984. "mkv",
  985. sizeof(MatroskaMuxContext),
  986. CODEC_ID_MP2,
  987. CODEC_ID_MPEG4,
  988. mkv_write_header,
  989. mkv_write_packet,
  990. mkv_write_trailer,
  991. .flags = AVFMT_GLOBALHEADER | AVFMT_VARIABLE_FPS,
  992. .codec_tag = (const AVCodecTag* const []){ff_codec_bmp_tags, ff_codec_wav_tags, 0},
  993. .subtitle_codec = CODEC_ID_TEXT,
  994. };
  995. #endif
  996. #if CONFIG_WEBM_MUXER
  997. AVOutputFormat ff_webm_muxer = {
  998. "webm",
  999. NULL_IF_CONFIG_SMALL("WebM file format"),
  1000. "video/webm",
  1001. "webm",
  1002. sizeof(MatroskaMuxContext),
  1003. CODEC_ID_VORBIS,
  1004. CODEC_ID_VP8,
  1005. mkv_write_header,
  1006. mkv_write_packet,
  1007. mkv_write_trailer,
  1008. .flags = AVFMT_GLOBALHEADER | AVFMT_VARIABLE_FPS,
  1009. };
  1010. #endif
  1011. #if CONFIG_MATROSKA_AUDIO_MUXER
  1012. AVOutputFormat ff_matroska_audio_muxer = {
  1013. "matroska",
  1014. NULL_IF_CONFIG_SMALL("Matroska file format"),
  1015. "audio/x-matroska",
  1016. "mka",
  1017. sizeof(MatroskaMuxContext),
  1018. CODEC_ID_MP2,
  1019. CODEC_ID_NONE,
  1020. mkv_write_header,
  1021. mkv_write_packet,
  1022. mkv_write_trailer,
  1023. .flags = AVFMT_GLOBALHEADER,
  1024. .codec_tag = (const AVCodecTag* const []){ff_codec_wav_tags, 0},
  1025. };
  1026. #endif