mxfdec.c 39 KB

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  1. /*
  2. * MXF demuxer.
  3. * Copyright (c) 2006 SmartJog S.A., Baptiste Coudurier <baptiste dot coudurier at smartjog dot com>
  4. *
  5. * This file is part of FFmpeg.
  6. *
  7. * FFmpeg 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. * FFmpeg 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 FFmpeg; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. /*
  22. * References
  23. * SMPTE 336M KLV Data Encoding Protocol Using Key-Length-Value
  24. * SMPTE 377M MXF File Format Specifications
  25. * SMPTE 378M Operational Pattern 1a
  26. * SMPTE 379M MXF Generic Container
  27. * SMPTE 381M Mapping MPEG Streams into the MXF Generic Container
  28. * SMPTE 382M Mapping AES3 and Broadcast Wave Audio into the MXF Generic Container
  29. * SMPTE 383M Mapping DV-DIF Data to the MXF Generic Container
  30. *
  31. * Principle
  32. * Search for Track numbers which will identify essence element KLV packets.
  33. * Search for SourcePackage which define tracks which contains Track numbers.
  34. * Material Package contains tracks with reference to SourcePackage tracks.
  35. * Search for Descriptors (Picture, Sound) which contains codec info and parameters.
  36. * Assign Descriptors to correct Tracks.
  37. *
  38. * Metadata reading functions read Local Tags, get InstanceUID(0x3C0A) then add MetaDataSet to MXFContext.
  39. * Metadata parsing resolves Strong References to objects.
  40. *
  41. * Simple demuxer, only OP1A supported and some files might not work at all.
  42. * Only tracks with associated descriptors will be decoded. "Highly Desirable" SMPTE 377M D.1
  43. */
  44. //#define DEBUG
  45. #include "libavutil/aes.h"
  46. #include "libavutil/mathematics.h"
  47. #include "libavcodec/bytestream.h"
  48. #include "avformat.h"
  49. #include "mxf.h"
  50. typedef struct {
  51. UID uid;
  52. enum MXFMetadataSetType type;
  53. UID source_container_ul;
  54. } MXFCryptoContext;
  55. typedef struct {
  56. UID uid;
  57. enum MXFMetadataSetType type;
  58. UID source_package_uid;
  59. UID data_definition_ul;
  60. int64_t duration;
  61. int64_t start_position;
  62. int source_track_id;
  63. } MXFStructuralComponent;
  64. typedef struct {
  65. UID uid;
  66. enum MXFMetadataSetType type;
  67. UID data_definition_ul;
  68. UID *structural_components_refs;
  69. int structural_components_count;
  70. int64_t duration;
  71. } MXFSequence;
  72. typedef struct {
  73. UID uid;
  74. enum MXFMetadataSetType type;
  75. MXFSequence *sequence; /* mandatory, and only one */
  76. UID sequence_ref;
  77. int track_id;
  78. uint8_t track_number[4];
  79. AVRational edit_rate;
  80. } MXFTrack;
  81. typedef struct {
  82. UID uid;
  83. enum MXFMetadataSetType type;
  84. UID essence_container_ul;
  85. UID essence_codec_ul;
  86. AVRational sample_rate;
  87. AVRational aspect_ratio;
  88. int width;
  89. int height;
  90. int channels;
  91. int bits_per_sample;
  92. UID *sub_descriptors_refs;
  93. int sub_descriptors_count;
  94. int linked_track_id;
  95. uint8_t *extradata;
  96. int extradata_size;
  97. enum PixelFormat pix_fmt;
  98. } MXFDescriptor;
  99. typedef struct {
  100. UID uid;
  101. enum MXFMetadataSetType type;
  102. } MXFIndexTableSegment;
  103. typedef struct {
  104. UID uid;
  105. enum MXFMetadataSetType type;
  106. UID package_uid;
  107. UID *tracks_refs;
  108. int tracks_count;
  109. MXFDescriptor *descriptor; /* only one */
  110. UID descriptor_ref;
  111. } MXFPackage;
  112. typedef struct {
  113. UID uid;
  114. enum MXFMetadataSetType type;
  115. } MXFMetadataSet;
  116. typedef struct {
  117. UID *packages_refs;
  118. int packages_count;
  119. MXFMetadataSet **metadata_sets;
  120. int metadata_sets_count;
  121. AVFormatContext *fc;
  122. struct AVAES *aesc;
  123. uint8_t *local_tags;
  124. int local_tags_count;
  125. } MXFContext;
  126. enum MXFWrappingScheme {
  127. Frame,
  128. Clip,
  129. };
  130. typedef int MXFMetadataReadFunc(void *arg, AVIOContext *pb, int tag, int size, UID uid);
  131. typedef struct {
  132. const UID key;
  133. MXFMetadataReadFunc *read;
  134. int ctx_size;
  135. enum MXFMetadataSetType type;
  136. } MXFMetadataReadTableEntry;
  137. /* partial keys to match */
  138. static const uint8_t mxf_header_partition_pack_key[] = { 0x06,0x0e,0x2b,0x34,0x02,0x05,0x01,0x01,0x0d,0x01,0x02,0x01,0x01,0x02 };
  139. static const uint8_t mxf_essence_element_key[] = { 0x06,0x0e,0x2b,0x34,0x01,0x02,0x01,0x01,0x0d,0x01,0x03,0x01 };
  140. static const uint8_t mxf_klv_key[] = { 0x06,0x0e,0x2b,0x34 };
  141. /* complete keys to match */
  142. static const uint8_t mxf_crypto_source_container_ul[] = { 0x06,0x0e,0x2b,0x34,0x01,0x01,0x01,0x09,0x06,0x01,0x01,0x02,0x02,0x00,0x00,0x00 };
  143. static const uint8_t mxf_encrypted_triplet_key[] = { 0x06,0x0e,0x2b,0x34,0x02,0x04,0x01,0x07,0x0d,0x01,0x03,0x01,0x02,0x7e,0x01,0x00 };
  144. static const uint8_t mxf_encrypted_essence_container[] = { 0x06,0x0e,0x2b,0x34,0x04,0x01,0x01,0x07,0x0d,0x01,0x03,0x01,0x02,0x0b,0x01,0x00 };
  145. static const uint8_t mxf_sony_mpeg4_extradata[] = { 0x06,0x0e,0x2b,0x34,0x04,0x01,0x01,0x01,0x0e,0x06,0x06,0x02,0x02,0x01,0x00,0x00 };
  146. #define IS_KLV_KEY(x, y) (!memcmp(x, y, sizeof(y)))
  147. static int64_t klv_decode_ber_length(AVIOContext *pb)
  148. {
  149. uint64_t size = avio_r8(pb);
  150. if (size & 0x80) { /* long form */
  151. int bytes_num = size & 0x7f;
  152. /* SMPTE 379M 5.3.4 guarantee that bytes_num must not exceed 8 bytes */
  153. if (bytes_num > 8)
  154. return -1;
  155. size = 0;
  156. while (bytes_num--)
  157. size = size << 8 | avio_r8(pb);
  158. }
  159. return size;
  160. }
  161. static int mxf_read_sync(AVIOContext *pb, const uint8_t *key, unsigned size)
  162. {
  163. int i, b;
  164. for (i = 0; i < size && !url_feof(pb); i++) {
  165. b = avio_r8(pb);
  166. if (b == key[0])
  167. i = 0;
  168. else if (b != key[i])
  169. i = -1;
  170. }
  171. return i == size;
  172. }
  173. static int klv_read_packet(KLVPacket *klv, AVIOContext *pb)
  174. {
  175. if (!mxf_read_sync(pb, mxf_klv_key, 4))
  176. return -1;
  177. klv->offset = avio_tell(pb) - 4;
  178. memcpy(klv->key, mxf_klv_key, 4);
  179. avio_read(pb, klv->key + 4, 12);
  180. klv->length = klv_decode_ber_length(pb);
  181. return klv->length == -1 ? -1 : 0;
  182. }
  183. static int mxf_get_stream_index(AVFormatContext *s, KLVPacket *klv)
  184. {
  185. int i;
  186. for (i = 0; i < s->nb_streams; i++) {
  187. MXFTrack *track = s->streams[i]->priv_data;
  188. /* SMPTE 379M 7.3 */
  189. if (!memcmp(klv->key + sizeof(mxf_essence_element_key), track->track_number, sizeof(track->track_number)))
  190. return i;
  191. }
  192. /* return 0 if only one stream, for OP Atom files with 0 as track number */
  193. return s->nb_streams == 1 ? 0 : -1;
  194. }
  195. /* XXX: use AVBitStreamFilter */
  196. static int mxf_get_d10_aes3_packet(AVIOContext *pb, AVStream *st, AVPacket *pkt, int64_t length)
  197. {
  198. const uint8_t *buf_ptr, *end_ptr;
  199. uint8_t *data_ptr;
  200. int i;
  201. if (length > 61444) /* worst case PAL 1920 samples 8 channels */
  202. return -1;
  203. length = av_get_packet(pb, pkt, length);
  204. if (length < 0)
  205. return length;
  206. data_ptr = pkt->data;
  207. end_ptr = pkt->data + length;
  208. buf_ptr = pkt->data + 4; /* skip SMPTE 331M header */
  209. for (; buf_ptr + st->codec->channels*4 < end_ptr; ) {
  210. for (i = 0; i < st->codec->channels; i++) {
  211. uint32_t sample = bytestream_get_le32(&buf_ptr);
  212. if (st->codec->bits_per_coded_sample == 24)
  213. bytestream_put_le24(&data_ptr, (sample >> 4) & 0xffffff);
  214. else
  215. bytestream_put_le16(&data_ptr, (sample >> 12) & 0xffff);
  216. }
  217. buf_ptr += 32 - st->codec->channels*4; // always 8 channels stored SMPTE 331M
  218. }
  219. av_shrink_packet(pkt, data_ptr - pkt->data);
  220. return 0;
  221. }
  222. static int mxf_decrypt_triplet(AVFormatContext *s, AVPacket *pkt, KLVPacket *klv)
  223. {
  224. static const uint8_t checkv[16] = {0x43, 0x48, 0x55, 0x4b, 0x43, 0x48, 0x55, 0x4b, 0x43, 0x48, 0x55, 0x4b, 0x43, 0x48, 0x55, 0x4b};
  225. MXFContext *mxf = s->priv_data;
  226. AVIOContext *pb = s->pb;
  227. int64_t end = avio_tell(pb) + klv->length;
  228. uint64_t size;
  229. uint64_t orig_size;
  230. uint64_t plaintext_size;
  231. uint8_t ivec[16];
  232. uint8_t tmpbuf[16];
  233. int index;
  234. if (!mxf->aesc && s->key && s->keylen == 16) {
  235. mxf->aesc = av_malloc(av_aes_size);
  236. if (!mxf->aesc)
  237. return -1;
  238. av_aes_init(mxf->aesc, s->key, 128, 1);
  239. }
  240. // crypto context
  241. avio_skip(pb, klv_decode_ber_length(pb));
  242. // plaintext offset
  243. klv_decode_ber_length(pb);
  244. plaintext_size = avio_rb64(pb);
  245. // source klv key
  246. klv_decode_ber_length(pb);
  247. avio_read(pb, klv->key, 16);
  248. if (!IS_KLV_KEY(klv, mxf_essence_element_key))
  249. return -1;
  250. index = mxf_get_stream_index(s, klv);
  251. if (index < 0)
  252. return -1;
  253. // source size
  254. klv_decode_ber_length(pb);
  255. orig_size = avio_rb64(pb);
  256. if (orig_size < plaintext_size)
  257. return -1;
  258. // enc. code
  259. size = klv_decode_ber_length(pb);
  260. if (size < 32 || size - 32 < orig_size)
  261. return -1;
  262. avio_read(pb, ivec, 16);
  263. avio_read(pb, tmpbuf, 16);
  264. if (mxf->aesc)
  265. av_aes_crypt(mxf->aesc, tmpbuf, tmpbuf, 1, ivec, 1);
  266. if (memcmp(tmpbuf, checkv, 16))
  267. av_log(s, AV_LOG_ERROR, "probably incorrect decryption key\n");
  268. size -= 32;
  269. size = av_get_packet(pb, pkt, size);
  270. if (size < 0)
  271. return size;
  272. else if (size < plaintext_size)
  273. return AVERROR_INVALIDDATA;
  274. size -= plaintext_size;
  275. if (mxf->aesc)
  276. av_aes_crypt(mxf->aesc, &pkt->data[plaintext_size],
  277. &pkt->data[plaintext_size], size >> 4, ivec, 1);
  278. av_shrink_packet(pkt, orig_size);
  279. pkt->stream_index = index;
  280. avio_skip(pb, end - avio_tell(pb));
  281. return 0;
  282. }
  283. static int mxf_read_packet(AVFormatContext *s, AVPacket *pkt)
  284. {
  285. KLVPacket klv;
  286. while (!url_feof(s->pb)) {
  287. if (klv_read_packet(&klv, s->pb) < 0)
  288. return -1;
  289. PRINT_KEY(s, "read packet", klv.key);
  290. av_dlog(s, "size %"PRIu64" offset %#"PRIx64"\n", klv.length, klv.offset);
  291. if (IS_KLV_KEY(klv.key, mxf_encrypted_triplet_key)) {
  292. int res = mxf_decrypt_triplet(s, pkt, &klv);
  293. if (res < 0) {
  294. av_log(s, AV_LOG_ERROR, "invalid encoded triplet\n");
  295. return -1;
  296. }
  297. return 0;
  298. }
  299. if (IS_KLV_KEY(klv.key, mxf_essence_element_key)) {
  300. int index = mxf_get_stream_index(s, &klv);
  301. if (index < 0) {
  302. av_log(s, AV_LOG_ERROR, "error getting stream index %d\n", AV_RB32(klv.key+12));
  303. goto skip;
  304. }
  305. if (s->streams[index]->discard == AVDISCARD_ALL)
  306. goto skip;
  307. /* check for 8 channels AES3 element */
  308. if (klv.key[12] == 0x06 && klv.key[13] == 0x01 && klv.key[14] == 0x10) {
  309. if (mxf_get_d10_aes3_packet(s->pb, s->streams[index], pkt, klv.length) < 0) {
  310. av_log(s, AV_LOG_ERROR, "error reading D-10 aes3 frame\n");
  311. return -1;
  312. }
  313. } else {
  314. int ret = av_get_packet(s->pb, pkt, klv.length);
  315. if (ret < 0)
  316. return ret;
  317. }
  318. pkt->stream_index = index;
  319. pkt->pos = klv.offset;
  320. return 0;
  321. } else
  322. skip:
  323. avio_skip(s->pb, klv.length);
  324. }
  325. return AVERROR_EOF;
  326. }
  327. static int mxf_read_primer_pack(void *arg, AVIOContext *pb, int tag, int size, UID uid)
  328. {
  329. MXFContext *mxf = arg;
  330. int item_num = avio_rb32(pb);
  331. int item_len = avio_rb32(pb);
  332. if (item_len != 18) {
  333. av_log(mxf->fc, AV_LOG_ERROR, "unsupported primer pack item length\n");
  334. return -1;
  335. }
  336. if (item_num > UINT_MAX / item_len)
  337. return -1;
  338. mxf->local_tags_count = item_num;
  339. mxf->local_tags = av_malloc(item_num*item_len);
  340. if (!mxf->local_tags)
  341. return -1;
  342. avio_read(pb, mxf->local_tags, item_num*item_len);
  343. return 0;
  344. }
  345. static int mxf_add_metadata_set(MXFContext *mxf, void *metadata_set)
  346. {
  347. if (mxf->metadata_sets_count+1 >= UINT_MAX / sizeof(*mxf->metadata_sets))
  348. return AVERROR(ENOMEM);
  349. mxf->metadata_sets = av_realloc(mxf->metadata_sets, (mxf->metadata_sets_count + 1) * sizeof(*mxf->metadata_sets));
  350. if (!mxf->metadata_sets)
  351. return -1;
  352. mxf->metadata_sets[mxf->metadata_sets_count] = metadata_set;
  353. mxf->metadata_sets_count++;
  354. return 0;
  355. }
  356. static int mxf_read_cryptographic_context(void *arg, AVIOContext *pb, int tag, int size, UID uid)
  357. {
  358. MXFCryptoContext *cryptocontext = arg;
  359. if (size != 16)
  360. return -1;
  361. if (IS_KLV_KEY(uid, mxf_crypto_source_container_ul))
  362. avio_read(pb, cryptocontext->source_container_ul, 16);
  363. return 0;
  364. }
  365. static int mxf_read_content_storage(void *arg, AVIOContext *pb, int tag, int size, UID uid)
  366. {
  367. MXFContext *mxf = arg;
  368. switch (tag) {
  369. case 0x1901:
  370. mxf->packages_count = avio_rb32(pb);
  371. if (mxf->packages_count >= UINT_MAX / sizeof(UID))
  372. return -1;
  373. mxf->packages_refs = av_malloc(mxf->packages_count * sizeof(UID));
  374. if (!mxf->packages_refs)
  375. return -1;
  376. avio_skip(pb, 4); /* useless size of objects, always 16 according to specs */
  377. avio_read(pb, (uint8_t *)mxf->packages_refs, mxf->packages_count * sizeof(UID));
  378. break;
  379. }
  380. return 0;
  381. }
  382. static int mxf_read_source_clip(void *arg, AVIOContext *pb, int tag, int size, UID uid)
  383. {
  384. MXFStructuralComponent *source_clip = arg;
  385. switch(tag) {
  386. case 0x0202:
  387. source_clip->duration = avio_rb64(pb);
  388. break;
  389. case 0x1201:
  390. source_clip->start_position = avio_rb64(pb);
  391. break;
  392. case 0x1101:
  393. /* UMID, only get last 16 bytes */
  394. avio_skip(pb, 16);
  395. avio_read(pb, source_clip->source_package_uid, 16);
  396. break;
  397. case 0x1102:
  398. source_clip->source_track_id = avio_rb32(pb);
  399. break;
  400. }
  401. return 0;
  402. }
  403. static int mxf_read_material_package(void *arg, AVIOContext *pb, int tag, int size, UID uid)
  404. {
  405. MXFPackage *package = arg;
  406. switch(tag) {
  407. case 0x4403:
  408. package->tracks_count = avio_rb32(pb);
  409. if (package->tracks_count >= UINT_MAX / sizeof(UID))
  410. return -1;
  411. package->tracks_refs = av_malloc(package->tracks_count * sizeof(UID));
  412. if (!package->tracks_refs)
  413. return -1;
  414. avio_skip(pb, 4); /* useless size of objects, always 16 according to specs */
  415. avio_read(pb, (uint8_t *)package->tracks_refs, package->tracks_count * sizeof(UID));
  416. break;
  417. }
  418. return 0;
  419. }
  420. static int mxf_read_track(void *arg, AVIOContext *pb, int tag, int size, UID uid)
  421. {
  422. MXFTrack *track = arg;
  423. switch(tag) {
  424. case 0x4801:
  425. track->track_id = avio_rb32(pb);
  426. break;
  427. case 0x4804:
  428. avio_read(pb, track->track_number, 4);
  429. break;
  430. case 0x4B01:
  431. track->edit_rate.den = avio_rb32(pb);
  432. track->edit_rate.num = avio_rb32(pb);
  433. break;
  434. case 0x4803:
  435. avio_read(pb, track->sequence_ref, 16);
  436. break;
  437. }
  438. return 0;
  439. }
  440. static int mxf_read_sequence(void *arg, AVIOContext *pb, int tag, int size, UID uid)
  441. {
  442. MXFSequence *sequence = arg;
  443. switch(tag) {
  444. case 0x0202:
  445. sequence->duration = avio_rb64(pb);
  446. break;
  447. case 0x0201:
  448. avio_read(pb, sequence->data_definition_ul, 16);
  449. break;
  450. case 0x1001:
  451. sequence->structural_components_count = avio_rb32(pb);
  452. if (sequence->structural_components_count >= UINT_MAX / sizeof(UID))
  453. return -1;
  454. sequence->structural_components_refs = av_malloc(sequence->structural_components_count * sizeof(UID));
  455. if (!sequence->structural_components_refs)
  456. return -1;
  457. avio_skip(pb, 4); /* useless size of objects, always 16 according to specs */
  458. avio_read(pb, (uint8_t *)sequence->structural_components_refs, sequence->structural_components_count * sizeof(UID));
  459. break;
  460. }
  461. return 0;
  462. }
  463. static int mxf_read_source_package(void *arg, AVIOContext *pb, int tag, int size, UID uid)
  464. {
  465. MXFPackage *package = arg;
  466. switch(tag) {
  467. case 0x4403:
  468. package->tracks_count = avio_rb32(pb);
  469. if (package->tracks_count >= UINT_MAX / sizeof(UID))
  470. return -1;
  471. package->tracks_refs = av_malloc(package->tracks_count * sizeof(UID));
  472. if (!package->tracks_refs)
  473. return -1;
  474. avio_skip(pb, 4); /* useless size of objects, always 16 according to specs */
  475. avio_read(pb, (uint8_t *)package->tracks_refs, package->tracks_count * sizeof(UID));
  476. break;
  477. case 0x4401:
  478. /* UMID, only get last 16 bytes */
  479. avio_skip(pb, 16);
  480. avio_read(pb, package->package_uid, 16);
  481. break;
  482. case 0x4701:
  483. avio_read(pb, package->descriptor_ref, 16);
  484. break;
  485. }
  486. return 0;
  487. }
  488. static int mxf_read_index_table_segment(void *arg, AVIOContext *pb, int tag, int size, UID uid)
  489. {
  490. switch(tag) {
  491. case 0x3F05: av_dlog(NULL, "EditUnitByteCount %d\n", avio_rb32(pb)); break;
  492. case 0x3F06: av_dlog(NULL, "IndexSID %d\n", avio_rb32(pb)); break;
  493. case 0x3F07: av_dlog(NULL, "BodySID %d\n", avio_rb32(pb)); break;
  494. case 0x3F0B: av_dlog(NULL, "IndexEditRate %d/%d\n", avio_rb32(pb), avio_rb32(pb)); break;
  495. case 0x3F0C: av_dlog(NULL, "IndexStartPosition %"PRIu64"\n", avio_rb64(pb)); break;
  496. case 0x3F0D: av_dlog(NULL, "IndexDuration %"PRIu64"\n", avio_rb64(pb)); break;
  497. }
  498. return 0;
  499. }
  500. static void mxf_read_pixel_layout(AVIOContext *pb, MXFDescriptor *descriptor)
  501. {
  502. int code, value, ofs = 0;
  503. char layout[16] = {0};
  504. do {
  505. code = avio_r8(pb);
  506. value = avio_r8(pb);
  507. av_dlog(NULL, "pixel layout: code %#x\n", code);
  508. if (ofs < 16) {
  509. layout[ofs++] = code;
  510. layout[ofs++] = value;
  511. }
  512. } while (code != 0); /* SMPTE 377M E.2.46 */
  513. ff_mxf_decode_pixel_layout(layout, &descriptor->pix_fmt);
  514. }
  515. static int mxf_read_generic_descriptor(void *arg, AVIOContext *pb, int tag, int size, UID uid)
  516. {
  517. MXFDescriptor *descriptor = arg;
  518. switch(tag) {
  519. case 0x3F01:
  520. descriptor->sub_descriptors_count = avio_rb32(pb);
  521. if (descriptor->sub_descriptors_count >= UINT_MAX / sizeof(UID))
  522. return -1;
  523. descriptor->sub_descriptors_refs = av_malloc(descriptor->sub_descriptors_count * sizeof(UID));
  524. if (!descriptor->sub_descriptors_refs)
  525. return -1;
  526. avio_skip(pb, 4); /* useless size of objects, always 16 according to specs */
  527. avio_read(pb, (uint8_t *)descriptor->sub_descriptors_refs, descriptor->sub_descriptors_count * sizeof(UID));
  528. break;
  529. case 0x3004:
  530. avio_read(pb, descriptor->essence_container_ul, 16);
  531. break;
  532. case 0x3006:
  533. descriptor->linked_track_id = avio_rb32(pb);
  534. break;
  535. case 0x3201: /* PictureEssenceCoding */
  536. avio_read(pb, descriptor->essence_codec_ul, 16);
  537. break;
  538. case 0x3203:
  539. descriptor->width = avio_rb32(pb);
  540. break;
  541. case 0x3202:
  542. descriptor->height = avio_rb32(pb);
  543. break;
  544. case 0x320E:
  545. descriptor->aspect_ratio.num = avio_rb32(pb);
  546. descriptor->aspect_ratio.den = avio_rb32(pb);
  547. break;
  548. case 0x3D03:
  549. descriptor->sample_rate.num = avio_rb32(pb);
  550. descriptor->sample_rate.den = avio_rb32(pb);
  551. break;
  552. case 0x3D06: /* SoundEssenceCompression */
  553. avio_read(pb, descriptor->essence_codec_ul, 16);
  554. break;
  555. case 0x3D07:
  556. descriptor->channels = avio_rb32(pb);
  557. break;
  558. case 0x3D01:
  559. descriptor->bits_per_sample = avio_rb32(pb);
  560. break;
  561. case 0x3401:
  562. mxf_read_pixel_layout(pb, descriptor);
  563. break;
  564. default:
  565. /* Private uid used by SONY C0023S01.mxf */
  566. if (IS_KLV_KEY(uid, mxf_sony_mpeg4_extradata)) {
  567. descriptor->extradata = av_malloc(size + FF_INPUT_BUFFER_PADDING_SIZE);
  568. if (!descriptor->extradata)
  569. return -1;
  570. descriptor->extradata_size = size;
  571. avio_read(pb, descriptor->extradata, size);
  572. }
  573. break;
  574. }
  575. return 0;
  576. }
  577. /*
  578. * Match an uid independently of the version byte and up to len common bytes
  579. * Returns: boolean
  580. */
  581. static int mxf_match_uid(const UID key, const UID uid, int len)
  582. {
  583. int i;
  584. for (i = 0; i < len; i++) {
  585. if (i != 7 && key[i] != uid[i])
  586. return 0;
  587. }
  588. return 1;
  589. }
  590. static const MXFCodecUL *mxf_get_codec_ul(const MXFCodecUL *uls, UID *uid)
  591. {
  592. while (uls->uid[0]) {
  593. if(mxf_match_uid(uls->uid, *uid, uls->matching_len))
  594. break;
  595. uls++;
  596. }
  597. return uls;
  598. }
  599. static void *mxf_resolve_strong_ref(MXFContext *mxf, UID *strong_ref, enum MXFMetadataSetType type)
  600. {
  601. int i;
  602. if (!strong_ref)
  603. return NULL;
  604. for (i = 0; i < mxf->metadata_sets_count; i++) {
  605. if (!memcmp(*strong_ref, mxf->metadata_sets[i]->uid, 16) &&
  606. (type == AnyType || mxf->metadata_sets[i]->type == type)) {
  607. return mxf->metadata_sets[i];
  608. }
  609. }
  610. return NULL;
  611. }
  612. static const MXFCodecUL mxf_essence_container_uls[] = {
  613. // video essence container uls
  614. { { 0x06,0x0E,0x2B,0x34,0x04,0x01,0x01,0x02,0x0D,0x01,0x03,0x01,0x02,0x04,0x60,0x01 }, 14, CODEC_ID_MPEG2VIDEO }, /* MPEG-ES Frame wrapped */
  615. { { 0x06,0x0E,0x2B,0x34,0x04,0x01,0x01,0x01,0x0D,0x01,0x03,0x01,0x02,0x02,0x41,0x01 }, 14, CODEC_ID_DVVIDEO }, /* DV 625 25mbps */
  616. // sound essence container uls
  617. { { 0x06,0x0E,0x2B,0x34,0x04,0x01,0x01,0x01,0x0D,0x01,0x03,0x01,0x02,0x06,0x01,0x00 }, 14, CODEC_ID_PCM_S16LE }, /* BWF Frame wrapped */
  618. { { 0x06,0x0E,0x2B,0x34,0x04,0x01,0x01,0x02,0x0D,0x01,0x03,0x01,0x02,0x04,0x40,0x01 }, 14, CODEC_ID_MP2 }, /* MPEG-ES Frame wrapped, 0x40 ??? stream id */
  619. { { 0x06,0x0E,0x2B,0x34,0x04,0x01,0x01,0x01,0x0D,0x01,0x03,0x01,0x02,0x01,0x01,0x01 }, 14, CODEC_ID_PCM_S16LE }, /* D-10 Mapping 50Mbps PAL Extended Template */
  620. { { 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00 }, 0, CODEC_ID_NONE },
  621. };
  622. static int mxf_parse_structural_metadata(MXFContext *mxf)
  623. {
  624. MXFPackage *material_package = NULL;
  625. MXFPackage *temp_package = NULL;
  626. int i, j, k;
  627. av_dlog(mxf->fc, "metadata sets count %d\n", mxf->metadata_sets_count);
  628. /* TODO: handle multiple material packages (OP3x) */
  629. for (i = 0; i < mxf->packages_count; i++) {
  630. material_package = mxf_resolve_strong_ref(mxf, &mxf->packages_refs[i], MaterialPackage);
  631. if (material_package) break;
  632. }
  633. if (!material_package) {
  634. av_log(mxf->fc, AV_LOG_ERROR, "no material package found\n");
  635. return -1;
  636. }
  637. for (i = 0; i < material_package->tracks_count; i++) {
  638. MXFPackage *source_package = NULL;
  639. MXFTrack *material_track = NULL;
  640. MXFTrack *source_track = NULL;
  641. MXFTrack *temp_track = NULL;
  642. MXFDescriptor *descriptor = NULL;
  643. MXFStructuralComponent *component = NULL;
  644. UID *essence_container_ul = NULL;
  645. const MXFCodecUL *codec_ul = NULL;
  646. const MXFCodecUL *container_ul = NULL;
  647. AVStream *st;
  648. if (!(material_track = mxf_resolve_strong_ref(mxf, &material_package->tracks_refs[i], Track))) {
  649. av_log(mxf->fc, AV_LOG_ERROR, "could not resolve material track strong ref\n");
  650. continue;
  651. }
  652. if (!(material_track->sequence = mxf_resolve_strong_ref(mxf, &material_track->sequence_ref, Sequence))) {
  653. av_log(mxf->fc, AV_LOG_ERROR, "could not resolve material track sequence strong ref\n");
  654. continue;
  655. }
  656. /* TODO: handle multiple source clips */
  657. for (j = 0; j < material_track->sequence->structural_components_count; j++) {
  658. /* TODO: handle timecode component */
  659. component = mxf_resolve_strong_ref(mxf, &material_track->sequence->structural_components_refs[j], SourceClip);
  660. if (!component)
  661. continue;
  662. for (k = 0; k < mxf->packages_count; k++) {
  663. temp_package = mxf_resolve_strong_ref(mxf, &mxf->packages_refs[k], SourcePackage);
  664. if (!temp_package)
  665. continue;
  666. if (!memcmp(temp_package->package_uid, component->source_package_uid, 16)) {
  667. source_package = temp_package;
  668. break;
  669. }
  670. }
  671. if (!source_package) {
  672. av_log(mxf->fc, AV_LOG_ERROR, "material track %d: no corresponding source package found\n", material_track->track_id);
  673. break;
  674. }
  675. for (k = 0; k < source_package->tracks_count; k++) {
  676. if (!(temp_track = mxf_resolve_strong_ref(mxf, &source_package->tracks_refs[k], Track))) {
  677. av_log(mxf->fc, AV_LOG_ERROR, "could not resolve source track strong ref\n");
  678. return -1;
  679. }
  680. if (temp_track->track_id == component->source_track_id) {
  681. source_track = temp_track;
  682. break;
  683. }
  684. }
  685. if (!source_track) {
  686. av_log(mxf->fc, AV_LOG_ERROR, "material track %d: no corresponding source track found\n", material_track->track_id);
  687. break;
  688. }
  689. }
  690. if (!source_track)
  691. continue;
  692. st = av_new_stream(mxf->fc, source_track->track_id);
  693. if (!st) {
  694. av_log(mxf->fc, AV_LOG_ERROR, "could not allocate stream\n");
  695. return -1;
  696. }
  697. st->priv_data = source_track;
  698. st->duration = component->duration;
  699. if (st->duration == -1)
  700. st->duration = AV_NOPTS_VALUE;
  701. st->start_time = component->start_position;
  702. av_set_pts_info(st, 64, material_track->edit_rate.num, material_track->edit_rate.den);
  703. if (!(source_track->sequence = mxf_resolve_strong_ref(mxf, &source_track->sequence_ref, Sequence))) {
  704. av_log(mxf->fc, AV_LOG_ERROR, "could not resolve source track sequence strong ref\n");
  705. return -1;
  706. }
  707. PRINT_KEY(mxf->fc, "data definition ul", source_track->sequence->data_definition_ul);
  708. codec_ul = mxf_get_codec_ul(ff_mxf_data_definition_uls, &source_track->sequence->data_definition_ul);
  709. st->codec->codec_type = codec_ul->id;
  710. source_package->descriptor = mxf_resolve_strong_ref(mxf, &source_package->descriptor_ref, AnyType);
  711. if (source_package->descriptor) {
  712. if (source_package->descriptor->type == MultipleDescriptor) {
  713. for (j = 0; j < source_package->descriptor->sub_descriptors_count; j++) {
  714. MXFDescriptor *sub_descriptor = mxf_resolve_strong_ref(mxf, &source_package->descriptor->sub_descriptors_refs[j], Descriptor);
  715. if (!sub_descriptor) {
  716. av_log(mxf->fc, AV_LOG_ERROR, "could not resolve sub descriptor strong ref\n");
  717. continue;
  718. }
  719. if (sub_descriptor->linked_track_id == source_track->track_id) {
  720. descriptor = sub_descriptor;
  721. break;
  722. }
  723. }
  724. } else if (source_package->descriptor->type == Descriptor)
  725. descriptor = source_package->descriptor;
  726. }
  727. if (!descriptor) {
  728. av_log(mxf->fc, AV_LOG_INFO, "source track %d: stream %d, no descriptor found\n", source_track->track_id, st->index);
  729. continue;
  730. }
  731. PRINT_KEY(mxf->fc, "essence codec ul", descriptor->essence_codec_ul);
  732. PRINT_KEY(mxf->fc, "essence container ul", descriptor->essence_container_ul);
  733. essence_container_ul = &descriptor->essence_container_ul;
  734. /* HACK: replacing the original key with mxf_encrypted_essence_container
  735. * is not allowed according to s429-6, try to find correct information anyway */
  736. if (IS_KLV_KEY(essence_container_ul, mxf_encrypted_essence_container)) {
  737. av_log(mxf->fc, AV_LOG_INFO, "broken encrypted mxf file\n");
  738. for (k = 0; k < mxf->metadata_sets_count; k++) {
  739. MXFMetadataSet *metadata = mxf->metadata_sets[k];
  740. if (metadata->type == CryptoContext) {
  741. essence_container_ul = &((MXFCryptoContext *)metadata)->source_container_ul;
  742. break;
  743. }
  744. }
  745. }
  746. /* TODO: drop PictureEssenceCoding and SoundEssenceCompression, only check EssenceContainer */
  747. codec_ul = mxf_get_codec_ul(ff_mxf_codec_uls, &descriptor->essence_codec_ul);
  748. st->codec->codec_id = codec_ul->id;
  749. if (descriptor->extradata) {
  750. st->codec->extradata = descriptor->extradata;
  751. st->codec->extradata_size = descriptor->extradata_size;
  752. }
  753. if (st->codec->codec_type == AVMEDIA_TYPE_VIDEO) {
  754. container_ul = mxf_get_codec_ul(mxf_essence_container_uls, essence_container_ul);
  755. if (st->codec->codec_id == CODEC_ID_NONE)
  756. st->codec->codec_id = container_ul->id;
  757. st->codec->width = descriptor->width;
  758. st->codec->height = descriptor->height;
  759. if (st->codec->codec_id == CODEC_ID_RAWVIDEO)
  760. st->codec->pix_fmt = descriptor->pix_fmt;
  761. st->need_parsing = AVSTREAM_PARSE_HEADERS;
  762. } else if (st->codec->codec_type == AVMEDIA_TYPE_AUDIO) {
  763. container_ul = mxf_get_codec_ul(mxf_essence_container_uls, essence_container_ul);
  764. if (st->codec->codec_id == CODEC_ID_NONE)
  765. st->codec->codec_id = container_ul->id;
  766. st->codec->channels = descriptor->channels;
  767. st->codec->bits_per_coded_sample = descriptor->bits_per_sample;
  768. st->codec->sample_rate = descriptor->sample_rate.num / descriptor->sample_rate.den;
  769. /* TODO: implement CODEC_ID_RAWAUDIO */
  770. if (st->codec->codec_id == CODEC_ID_PCM_S16LE) {
  771. if (descriptor->bits_per_sample == 24)
  772. st->codec->codec_id = CODEC_ID_PCM_S24LE;
  773. else if (descriptor->bits_per_sample == 32)
  774. st->codec->codec_id = CODEC_ID_PCM_S32LE;
  775. } else if (st->codec->codec_id == CODEC_ID_PCM_S16BE) {
  776. if (descriptor->bits_per_sample == 24)
  777. st->codec->codec_id = CODEC_ID_PCM_S24BE;
  778. else if (descriptor->bits_per_sample == 32)
  779. st->codec->codec_id = CODEC_ID_PCM_S32BE;
  780. } else if (st->codec->codec_id == CODEC_ID_MP2) {
  781. st->need_parsing = AVSTREAM_PARSE_FULL;
  782. }
  783. }
  784. if (st->codec->codec_type != AVMEDIA_TYPE_DATA && (*essence_container_ul)[15] > 0x01) {
  785. av_log(mxf->fc, AV_LOG_WARNING, "only frame wrapped mappings are correctly supported\n");
  786. st->need_parsing = AVSTREAM_PARSE_FULL;
  787. }
  788. }
  789. return 0;
  790. }
  791. static const MXFMetadataReadTableEntry mxf_metadata_read_table[] = {
  792. { { 0x06,0x0E,0x2B,0x34,0x02,0x05,0x01,0x01,0x0d,0x01,0x02,0x01,0x01,0x05,0x01,0x00 }, mxf_read_primer_pack },
  793. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x18,0x00 }, mxf_read_content_storage, 0, AnyType },
  794. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x37,0x00 }, mxf_read_source_package, sizeof(MXFPackage), SourcePackage },
  795. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x36,0x00 }, mxf_read_material_package, sizeof(MXFPackage), MaterialPackage },
  796. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x0F,0x00 }, mxf_read_sequence, sizeof(MXFSequence), Sequence },
  797. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x11,0x00 }, mxf_read_source_clip, sizeof(MXFStructuralComponent), SourceClip },
  798. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x44,0x00 }, mxf_read_generic_descriptor, sizeof(MXFDescriptor), MultipleDescriptor },
  799. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x42,0x00 }, mxf_read_generic_descriptor, sizeof(MXFDescriptor), Descriptor }, /* Generic Sound */
  800. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x28,0x00 }, mxf_read_generic_descriptor, sizeof(MXFDescriptor), Descriptor }, /* CDCI */
  801. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x29,0x00 }, mxf_read_generic_descriptor, sizeof(MXFDescriptor), Descriptor }, /* RGBA */
  802. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x51,0x00 }, mxf_read_generic_descriptor, sizeof(MXFDescriptor), Descriptor }, /* MPEG 2 Video */
  803. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x48,0x00 }, mxf_read_generic_descriptor, sizeof(MXFDescriptor), Descriptor }, /* Wave */
  804. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x47,0x00 }, mxf_read_generic_descriptor, sizeof(MXFDescriptor), Descriptor }, /* AES3 */
  805. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x3A,0x00 }, mxf_read_track, sizeof(MXFTrack), Track }, /* Static Track */
  806. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x01,0x01,0x01,0x01,0x3B,0x00 }, mxf_read_track, sizeof(MXFTrack), Track }, /* Generic Track */
  807. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x04,0x01,0x02,0x02,0x00,0x00 }, mxf_read_cryptographic_context, sizeof(MXFCryptoContext), CryptoContext },
  808. { { 0x06,0x0E,0x2B,0x34,0x02,0x53,0x01,0x01,0x0d,0x01,0x02,0x01,0x01,0x10,0x01,0x00 }, mxf_read_index_table_segment, sizeof(MXFIndexTableSegment), IndexTableSegment },
  809. { { 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00 }, NULL, 0, AnyType },
  810. };
  811. static int mxf_read_local_tags(MXFContext *mxf, KLVPacket *klv, MXFMetadataReadFunc *read_child, int ctx_size, enum MXFMetadataSetType type)
  812. {
  813. AVIOContext *pb = mxf->fc->pb;
  814. MXFMetadataSet *ctx = ctx_size ? av_mallocz(ctx_size) : mxf;
  815. uint64_t klv_end = avio_tell(pb) + klv->length;
  816. if (!ctx)
  817. return -1;
  818. while (avio_tell(pb) + 4 < klv_end) {
  819. int tag = avio_rb16(pb);
  820. int size = avio_rb16(pb); /* KLV specified by 0x53 */
  821. uint64_t next = avio_tell(pb) + size;
  822. UID uid = {0};
  823. av_dlog(mxf->fc, "local tag %#04x size %d\n", tag, size);
  824. if (!size) { /* ignore empty tag, needed for some files with empty UMID tag */
  825. av_log(mxf->fc, AV_LOG_ERROR, "local tag %#04x with 0 size\n", tag);
  826. continue;
  827. }
  828. if (tag > 0x7FFF) { /* dynamic tag */
  829. int i;
  830. for (i = 0; i < mxf->local_tags_count; i++) {
  831. int local_tag = AV_RB16(mxf->local_tags+i*18);
  832. if (local_tag == tag) {
  833. memcpy(uid, mxf->local_tags+i*18+2, 16);
  834. av_dlog(mxf->fc, "local tag %#04x\n", local_tag);
  835. PRINT_KEY(mxf->fc, "uid", uid);
  836. }
  837. }
  838. }
  839. if (ctx_size && tag == 0x3C0A)
  840. avio_read(pb, ctx->uid, 16);
  841. else if (read_child(ctx, pb, tag, size, uid) < 0)
  842. return -1;
  843. avio_seek(pb, next, SEEK_SET);
  844. }
  845. if (ctx_size) ctx->type = type;
  846. return ctx_size ? mxf_add_metadata_set(mxf, ctx) : 0;
  847. }
  848. static int mxf_read_header(AVFormatContext *s, AVFormatParameters *ap)
  849. {
  850. MXFContext *mxf = s->priv_data;
  851. KLVPacket klv;
  852. if (!mxf_read_sync(s->pb, mxf_header_partition_pack_key, 14)) {
  853. av_log(s, AV_LOG_ERROR, "could not find header partition pack key\n");
  854. return -1;
  855. }
  856. avio_seek(s->pb, -14, SEEK_CUR);
  857. mxf->fc = s;
  858. while (!url_feof(s->pb)) {
  859. const MXFMetadataReadTableEntry *metadata;
  860. if (klv_read_packet(&klv, s->pb) < 0)
  861. return -1;
  862. PRINT_KEY(s, "read header", klv.key);
  863. av_dlog(s, "size %"PRIu64" offset %#"PRIx64"\n", klv.length, klv.offset);
  864. if (IS_KLV_KEY(klv.key, mxf_encrypted_triplet_key) ||
  865. IS_KLV_KEY(klv.key, mxf_essence_element_key)) {
  866. /* FIXME avoid seek */
  867. avio_seek(s->pb, klv.offset, SEEK_SET);
  868. break;
  869. }
  870. for (metadata = mxf_metadata_read_table; metadata->read; metadata++) {
  871. if (IS_KLV_KEY(klv.key, metadata->key)) {
  872. int res;
  873. if (klv.key[5] == 0x53) {
  874. res = mxf_read_local_tags(mxf, &klv, metadata->read, metadata->ctx_size, metadata->type);
  875. } else
  876. res = metadata->read(mxf, s->pb, 0, 0, NULL);
  877. if (res < 0) {
  878. av_log(s, AV_LOG_ERROR, "error reading header metadata\n");
  879. return -1;
  880. }
  881. break;
  882. }
  883. }
  884. if (!metadata->read)
  885. avio_skip(s->pb, klv.length);
  886. }
  887. return mxf_parse_structural_metadata(mxf);
  888. }
  889. static int mxf_read_close(AVFormatContext *s)
  890. {
  891. MXFContext *mxf = s->priv_data;
  892. int i;
  893. av_freep(&mxf->packages_refs);
  894. for (i = 0; i < s->nb_streams; i++)
  895. s->streams[i]->priv_data = NULL;
  896. for (i = 0; i < mxf->metadata_sets_count; i++) {
  897. switch (mxf->metadata_sets[i]->type) {
  898. case MultipleDescriptor:
  899. av_freep(&((MXFDescriptor *)mxf->metadata_sets[i])->sub_descriptors_refs);
  900. break;
  901. case Sequence:
  902. av_freep(&((MXFSequence *)mxf->metadata_sets[i])->structural_components_refs);
  903. break;
  904. case SourcePackage:
  905. case MaterialPackage:
  906. av_freep(&((MXFPackage *)mxf->metadata_sets[i])->tracks_refs);
  907. break;
  908. default:
  909. break;
  910. }
  911. av_freep(&mxf->metadata_sets[i]);
  912. }
  913. av_freep(&mxf->metadata_sets);
  914. av_freep(&mxf->aesc);
  915. av_freep(&mxf->local_tags);
  916. return 0;
  917. }
  918. static int mxf_probe(AVProbeData *p) {
  919. uint8_t *bufp = p->buf;
  920. uint8_t *end = p->buf + p->buf_size;
  921. if (p->buf_size < sizeof(mxf_header_partition_pack_key))
  922. return 0;
  923. /* Must skip Run-In Sequence and search for MXF header partition pack key SMPTE 377M 5.5 */
  924. end -= sizeof(mxf_header_partition_pack_key);
  925. for (; bufp < end; bufp++) {
  926. if (IS_KLV_KEY(bufp, mxf_header_partition_pack_key))
  927. return AVPROBE_SCORE_MAX;
  928. }
  929. return 0;
  930. }
  931. /* rudimentary byte seek */
  932. /* XXX: use MXF Index */
  933. static int mxf_read_seek(AVFormatContext *s, int stream_index, int64_t sample_time, int flags)
  934. {
  935. AVStream *st = s->streams[stream_index];
  936. int64_t seconds;
  937. if (!s->bit_rate)
  938. return -1;
  939. if (sample_time < 0)
  940. sample_time = 0;
  941. seconds = av_rescale(sample_time, st->time_base.num, st->time_base.den);
  942. avio_seek(s->pb, (s->bit_rate * seconds) >> 3, SEEK_SET);
  943. av_update_cur_dts(s, st, sample_time);
  944. return 0;
  945. }
  946. AVInputFormat ff_mxf_demuxer = {
  947. .name = "mxf",
  948. .long_name = NULL_IF_CONFIG_SMALL("Material eXchange Format"),
  949. .priv_data_size = sizeof(MXFContext),
  950. .read_probe = mxf_probe,
  951. .read_header = mxf_read_header,
  952. .read_packet = mxf_read_packet,
  953. .read_close = mxf_read_close,
  954. .read_seek = mxf_read_seek,
  955. };