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  1. /*
  2. * MOV demuxer
  3. * Copyright (c) 2001 Fabrice Bellard
  4. * Copyright (c) 2009 Baptiste Coudurier <baptiste dot coudurier at gmail dot com>
  5. *
  6. * first version by Francois Revol <revol@free.fr>
  7. * seek function by Gael Chardon <gael.dev@4now.net>
  8. *
  9. * This file is part of FFmpeg.
  10. *
  11. * FFmpeg is free software; you can redistribute it and/or
  12. * modify it under the terms of the GNU Lesser General Public
  13. * License as published by the Free Software Foundation; either
  14. * version 2.1 of the License, or (at your option) any later version.
  15. *
  16. * FFmpeg is distributed in the hope that it will be useful,
  17. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  19. * Lesser General Public License for more details.
  20. *
  21. * You should have received a copy of the GNU Lesser General Public
  22. * License along with FFmpeg; if not, write to the Free Software
  23. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  24. */
  25. #include <inttypes.h>
  26. #include <limits.h>
  27. #include <stdint.h>
  28. #include "libavutil/attributes.h"
  29. #include "libavutil/channel_layout.h"
  30. #include "libavutil/internal.h"
  31. #include "libavutil/intreadwrite.h"
  32. #include "libavutil/intfloat.h"
  33. #include "libavutil/mathematics.h"
  34. #include "libavutil/time_internal.h"
  35. #include "libavutil/avassert.h"
  36. #include "libavutil/avstring.h"
  37. #include "libavutil/dict.h"
  38. #include "libavutil/display.h"
  39. #include "libavutil/opt.h"
  40. #include "libavutil/aes.h"
  41. #include "libavutil/aes_ctr.h"
  42. #include "libavutil/pixdesc.h"
  43. #include "libavutil/sha.h"
  44. #include "libavutil/spherical.h"
  45. #include "libavutil/stereo3d.h"
  46. #include "libavutil/timecode.h"
  47. #include "libavcodec/ac3tab.h"
  48. #include "libavcodec/flac.h"
  49. #include "libavcodec/mpegaudiodecheader.h"
  50. #include "avformat.h"
  51. #include "internal.h"
  52. #include "avio_internal.h"
  53. #include "riff.h"
  54. #include "isom.h"
  55. #include "libavcodec/get_bits.h"
  56. #include "id3v1.h"
  57. #include "mov_chan.h"
  58. #include "replaygain.h"
  59. #if CONFIG_ZLIB
  60. #include <zlib.h>
  61. #endif
  62. #include "qtpalette.h"
  63. /* those functions parse an atom */
  64. /* links atom IDs to parse functions */
  65. typedef struct MOVParseTableEntry {
  66. uint32_t type;
  67. int (*parse)(MOVContext *ctx, AVIOContext *pb, MOVAtom atom);
  68. } MOVParseTableEntry;
  69. static int mov_read_default(MOVContext *c, AVIOContext *pb, MOVAtom atom);
  70. static int mov_read_mfra(MOVContext *c, AVIOContext *f);
  71. static int64_t add_ctts_entry(MOVStts** ctts_data, unsigned int* ctts_count, unsigned int* allocated_size,
  72. int count, int duration);
  73. static int mov_metadata_track_or_disc_number(MOVContext *c, AVIOContext *pb,
  74. unsigned len, const char *key)
  75. {
  76. char buf[16];
  77. short current, total = 0;
  78. avio_rb16(pb); // unknown
  79. current = avio_rb16(pb);
  80. if (len >= 6)
  81. total = avio_rb16(pb);
  82. if (!total)
  83. snprintf(buf, sizeof(buf), "%d", current);
  84. else
  85. snprintf(buf, sizeof(buf), "%d/%d", current, total);
  86. c->fc->event_flags |= AVFMT_EVENT_FLAG_METADATA_UPDATED;
  87. av_dict_set(&c->fc->metadata, key, buf, 0);
  88. return 0;
  89. }
  90. static int mov_metadata_int8_bypass_padding(MOVContext *c, AVIOContext *pb,
  91. unsigned len, const char *key)
  92. {
  93. /* bypass padding bytes */
  94. avio_r8(pb);
  95. avio_r8(pb);
  96. avio_r8(pb);
  97. c->fc->event_flags |= AVFMT_EVENT_FLAG_METADATA_UPDATED;
  98. av_dict_set_int(&c->fc->metadata, key, avio_r8(pb), 0);
  99. return 0;
  100. }
  101. static int mov_metadata_int8_no_padding(MOVContext *c, AVIOContext *pb,
  102. unsigned len, const char *key)
  103. {
  104. c->fc->event_flags |= AVFMT_EVENT_FLAG_METADATA_UPDATED;
  105. av_dict_set_int(&c->fc->metadata, key, avio_r8(pb), 0);
  106. return 0;
  107. }
  108. static int mov_metadata_gnre(MOVContext *c, AVIOContext *pb,
  109. unsigned len, const char *key)
  110. {
  111. short genre;
  112. avio_r8(pb); // unknown
  113. genre = avio_r8(pb);
  114. if (genre < 1 || genre > ID3v1_GENRE_MAX)
  115. return 0;
  116. c->fc->event_flags |= AVFMT_EVENT_FLAG_METADATA_UPDATED;
  117. av_dict_set(&c->fc->metadata, key, ff_id3v1_genre_str[genre-1], 0);
  118. return 0;
  119. }
  120. static const uint32_t mac_to_unicode[128] = {
  121. 0x00C4,0x00C5,0x00C7,0x00C9,0x00D1,0x00D6,0x00DC,0x00E1,
  122. 0x00E0,0x00E2,0x00E4,0x00E3,0x00E5,0x00E7,0x00E9,0x00E8,
  123. 0x00EA,0x00EB,0x00ED,0x00EC,0x00EE,0x00EF,0x00F1,0x00F3,
  124. 0x00F2,0x00F4,0x00F6,0x00F5,0x00FA,0x00F9,0x00FB,0x00FC,
  125. 0x2020,0x00B0,0x00A2,0x00A3,0x00A7,0x2022,0x00B6,0x00DF,
  126. 0x00AE,0x00A9,0x2122,0x00B4,0x00A8,0x2260,0x00C6,0x00D8,
  127. 0x221E,0x00B1,0x2264,0x2265,0x00A5,0x00B5,0x2202,0x2211,
  128. 0x220F,0x03C0,0x222B,0x00AA,0x00BA,0x03A9,0x00E6,0x00F8,
  129. 0x00BF,0x00A1,0x00AC,0x221A,0x0192,0x2248,0x2206,0x00AB,
  130. 0x00BB,0x2026,0x00A0,0x00C0,0x00C3,0x00D5,0x0152,0x0153,
  131. 0x2013,0x2014,0x201C,0x201D,0x2018,0x2019,0x00F7,0x25CA,
  132. 0x00FF,0x0178,0x2044,0x20AC,0x2039,0x203A,0xFB01,0xFB02,
  133. 0x2021,0x00B7,0x201A,0x201E,0x2030,0x00C2,0x00CA,0x00C1,
  134. 0x00CB,0x00C8,0x00CD,0x00CE,0x00CF,0x00CC,0x00D3,0x00D4,
  135. 0xF8FF,0x00D2,0x00DA,0x00DB,0x00D9,0x0131,0x02C6,0x02DC,
  136. 0x00AF,0x02D8,0x02D9,0x02DA,0x00B8,0x02DD,0x02DB,0x02C7,
  137. };
  138. static int mov_read_mac_string(MOVContext *c, AVIOContext *pb, int len,
  139. char *dst, int dstlen)
  140. {
  141. char *p = dst;
  142. char *end = dst+dstlen-1;
  143. int i;
  144. for (i = 0; i < len; i++) {
  145. uint8_t t, c = avio_r8(pb);
  146. if (p >= end)
  147. continue;
  148. if (c < 0x80)
  149. *p++ = c;
  150. else if (p < end)
  151. PUT_UTF8(mac_to_unicode[c-0x80], t, if (p < end) *p++ = t;);
  152. }
  153. *p = 0;
  154. return p - dst;
  155. }
  156. static int mov_read_covr(MOVContext *c, AVIOContext *pb, int type, int len)
  157. {
  158. AVPacket pkt;
  159. AVStream *st;
  160. MOVStreamContext *sc;
  161. enum AVCodecID id;
  162. int ret;
  163. switch (type) {
  164. case 0xd: id = AV_CODEC_ID_MJPEG; break;
  165. case 0xe: id = AV_CODEC_ID_PNG; break;
  166. case 0x1b: id = AV_CODEC_ID_BMP; break;
  167. default:
  168. av_log(c->fc, AV_LOG_WARNING, "Unknown cover type: 0x%x.\n", type);
  169. avio_skip(pb, len);
  170. return 0;
  171. }
  172. st = avformat_new_stream(c->fc, NULL);
  173. if (!st)
  174. return AVERROR(ENOMEM);
  175. sc = av_mallocz(sizeof(*sc));
  176. if (!sc)
  177. return AVERROR(ENOMEM);
  178. st->priv_data = sc;
  179. ret = av_get_packet(pb, &pkt, len);
  180. if (ret < 0)
  181. return ret;
  182. if (pkt.size >= 8 && id != AV_CODEC_ID_BMP) {
  183. if (AV_RB64(pkt.data) == 0x89504e470d0a1a0a) {
  184. id = AV_CODEC_ID_PNG;
  185. } else {
  186. id = AV_CODEC_ID_MJPEG;
  187. }
  188. }
  189. st->disposition |= AV_DISPOSITION_ATTACHED_PIC;
  190. st->attached_pic = pkt;
  191. st->attached_pic.stream_index = st->index;
  192. st->attached_pic.flags |= AV_PKT_FLAG_KEY;
  193. st->codecpar->codec_type = AVMEDIA_TYPE_VIDEO;
  194. st->codecpar->codec_id = id;
  195. return 0;
  196. }
  197. // 3GPP TS 26.244
  198. static int mov_metadata_loci(MOVContext *c, AVIOContext *pb, unsigned len)
  199. {
  200. char language[4] = { 0 };
  201. char buf[200], place[100];
  202. uint16_t langcode = 0;
  203. double longitude, latitude, altitude;
  204. const char *key = "location";
  205. if (len < 4 + 2 + 1 + 1 + 4 + 4 + 4) {
  206. av_log(c->fc, AV_LOG_ERROR, "loci too short\n");
  207. return AVERROR_INVALIDDATA;
  208. }
  209. avio_skip(pb, 4); // version+flags
  210. langcode = avio_rb16(pb);
  211. ff_mov_lang_to_iso639(langcode, language);
  212. len -= 6;
  213. len -= avio_get_str(pb, len, place, sizeof(place));
  214. if (len < 1) {
  215. av_log(c->fc, AV_LOG_ERROR, "place name too long\n");
  216. return AVERROR_INVALIDDATA;
  217. }
  218. avio_skip(pb, 1); // role
  219. len -= 1;
  220. if (len < 12) {
  221. av_log(c->fc, AV_LOG_ERROR,
  222. "loci too short (%u bytes left, need at least %d)\n", len, 12);
  223. return AVERROR_INVALIDDATA;
  224. }
  225. longitude = ((int32_t) avio_rb32(pb)) / (float) (1 << 16);
  226. latitude = ((int32_t) avio_rb32(pb)) / (float) (1 << 16);
  227. altitude = ((int32_t) avio_rb32(pb)) / (float) (1 << 16);
  228. // Try to output in the same format as the ?xyz field
  229. snprintf(buf, sizeof(buf), "%+08.4f%+09.4f", latitude, longitude);
  230. if (altitude)
  231. av_strlcatf(buf, sizeof(buf), "%+f", altitude);
  232. av_strlcatf(buf, sizeof(buf), "/%s", place);
  233. if (*language && strcmp(language, "und")) {
  234. char key2[16];
  235. snprintf(key2, sizeof(key2), "%s-%s", key, language);
  236. av_dict_set(&c->fc->metadata, key2, buf, 0);
  237. }
  238. c->fc->event_flags |= AVFMT_EVENT_FLAG_METADATA_UPDATED;
  239. return av_dict_set(&c->fc->metadata, key, buf, 0);
  240. }
  241. static int mov_metadata_hmmt(MOVContext *c, AVIOContext *pb, unsigned len)
  242. {
  243. int i, n_hmmt;
  244. if (len < 2)
  245. return 0;
  246. if (c->ignore_chapters)
  247. return 0;
  248. n_hmmt = avio_rb32(pb);
  249. for (i = 0; i < n_hmmt && !pb->eof_reached; i++) {
  250. int moment_time = avio_rb32(pb);
  251. avpriv_new_chapter(c->fc, i, av_make_q(1, 1000), moment_time, AV_NOPTS_VALUE, NULL);
  252. }
  253. return 0;
  254. }
  255. static int mov_read_udta_string(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  256. {
  257. char tmp_key[5];
  258. char key2[32], language[4] = {0};
  259. char *str = NULL;
  260. const char *key = NULL;
  261. uint16_t langcode = 0;
  262. uint32_t data_type = 0, str_size, str_size_alloc;
  263. int (*parse)(MOVContext*, AVIOContext*, unsigned, const char*) = NULL;
  264. int raw = 0;
  265. int num = 0;
  266. switch (atom.type) {
  267. case MKTAG( '@','P','R','M'): key = "premiere_version"; raw = 1; break;
  268. case MKTAG( '@','P','R','Q'): key = "quicktime_version"; raw = 1; break;
  269. case MKTAG( 'X','M','P','_'):
  270. if (c->export_xmp) { key = "xmp"; raw = 1; } break;
  271. case MKTAG( 'a','A','R','T'): key = "album_artist"; break;
  272. case MKTAG( 'a','k','I','D'): key = "account_type";
  273. parse = mov_metadata_int8_no_padding; break;
  274. case MKTAG( 'a','p','I','D'): key = "account_id"; break;
  275. case MKTAG( 'c','a','t','g'): key = "category"; break;
  276. case MKTAG( 'c','p','i','l'): key = "compilation";
  277. parse = mov_metadata_int8_no_padding; break;
  278. case MKTAG( 'c','p','r','t'): key = "copyright"; break;
  279. case MKTAG( 'd','e','s','c'): key = "description"; break;
  280. case MKTAG( 'd','i','s','k'): key = "disc";
  281. parse = mov_metadata_track_or_disc_number; break;
  282. case MKTAG( 'e','g','i','d'): key = "episode_uid";
  283. parse = mov_metadata_int8_no_padding; break;
  284. case MKTAG( 'F','I','R','M'): key = "firmware"; raw = 1; break;
  285. case MKTAG( 'g','n','r','e'): key = "genre";
  286. parse = mov_metadata_gnre; break;
  287. case MKTAG( 'h','d','v','d'): key = "hd_video";
  288. parse = mov_metadata_int8_no_padding; break;
  289. case MKTAG( 'H','M','M','T'):
  290. return mov_metadata_hmmt(c, pb, atom.size);
  291. case MKTAG( 'k','e','y','w'): key = "keywords"; break;
  292. case MKTAG( 'l','d','e','s'): key = "synopsis"; break;
  293. case MKTAG( 'l','o','c','i'):
  294. return mov_metadata_loci(c, pb, atom.size);
  295. case MKTAG( 'p','c','s','t'): key = "podcast";
  296. parse = mov_metadata_int8_no_padding; break;
  297. case MKTAG( 'p','g','a','p'): key = "gapless_playback";
  298. parse = mov_metadata_int8_no_padding; break;
  299. case MKTAG( 'p','u','r','d'): key = "purchase_date"; break;
  300. case MKTAG( 'r','t','n','g'): key = "rating";
  301. parse = mov_metadata_int8_no_padding; break;
  302. case MKTAG( 's','o','a','a'): key = "sort_album_artist"; break;
  303. case MKTAG( 's','o','a','l'): key = "sort_album"; break;
  304. case MKTAG( 's','o','a','r'): key = "sort_artist"; break;
  305. case MKTAG( 's','o','c','o'): key = "sort_composer"; break;
  306. case MKTAG( 's','o','n','m'): key = "sort_name"; break;
  307. case MKTAG( 's','o','s','n'): key = "sort_show"; break;
  308. case MKTAG( 's','t','i','k'): key = "media_type";
  309. parse = mov_metadata_int8_no_padding; break;
  310. case MKTAG( 't','r','k','n'): key = "track";
  311. parse = mov_metadata_track_or_disc_number; break;
  312. case MKTAG( 't','v','e','n'): key = "episode_id"; break;
  313. case MKTAG( 't','v','e','s'): key = "episode_sort";
  314. parse = mov_metadata_int8_bypass_padding; break;
  315. case MKTAG( 't','v','n','n'): key = "network"; break;
  316. case MKTAG( 't','v','s','h'): key = "show"; break;
  317. case MKTAG( 't','v','s','n'): key = "season_number";
  318. parse = mov_metadata_int8_bypass_padding; break;
  319. case MKTAG(0xa9,'A','R','T'): key = "artist"; break;
  320. case MKTAG(0xa9,'P','R','D'): key = "producer"; break;
  321. case MKTAG(0xa9,'a','l','b'): key = "album"; break;
  322. case MKTAG(0xa9,'a','u','t'): key = "artist"; break;
  323. case MKTAG(0xa9,'c','h','p'): key = "chapter"; break;
  324. case MKTAG(0xa9,'c','m','t'): key = "comment"; break;
  325. case MKTAG(0xa9,'c','o','m'): key = "composer"; break;
  326. case MKTAG(0xa9,'c','p','y'): key = "copyright"; break;
  327. case MKTAG(0xa9,'d','a','y'): key = "date"; break;
  328. case MKTAG(0xa9,'d','i','r'): key = "director"; break;
  329. case MKTAG(0xa9,'d','i','s'): key = "disclaimer"; break;
  330. case MKTAG(0xa9,'e','d','1'): key = "edit_date"; break;
  331. case MKTAG(0xa9,'e','n','c'): key = "encoder"; break;
  332. case MKTAG(0xa9,'f','m','t'): key = "original_format"; break;
  333. case MKTAG(0xa9,'g','e','n'): key = "genre"; break;
  334. case MKTAG(0xa9,'g','r','p'): key = "grouping"; break;
  335. case MKTAG(0xa9,'h','s','t'): key = "host_computer"; break;
  336. case MKTAG(0xa9,'i','n','f'): key = "comment"; break;
  337. case MKTAG(0xa9,'l','y','r'): key = "lyrics"; break;
  338. case MKTAG(0xa9,'m','a','k'): key = "make"; break;
  339. case MKTAG(0xa9,'m','o','d'): key = "model"; break;
  340. case MKTAG(0xa9,'n','a','m'): key = "title"; break;
  341. case MKTAG(0xa9,'o','p','e'): key = "original_artist"; break;
  342. case MKTAG(0xa9,'p','r','d'): key = "producer"; break;
  343. case MKTAG(0xa9,'p','r','f'): key = "performers"; break;
  344. case MKTAG(0xa9,'r','e','q'): key = "playback_requirements"; break;
  345. case MKTAG(0xa9,'s','r','c'): key = "original_source"; break;
  346. case MKTAG(0xa9,'s','t','3'): key = "subtitle"; break;
  347. case MKTAG(0xa9,'s','w','r'): key = "encoder"; break;
  348. case MKTAG(0xa9,'t','o','o'): key = "encoder"; break;
  349. case MKTAG(0xa9,'t','r','k'): key = "track"; break;
  350. case MKTAG(0xa9,'u','r','l'): key = "URL"; break;
  351. case MKTAG(0xa9,'w','r','n'): key = "warning"; break;
  352. case MKTAG(0xa9,'w','r','t'): key = "composer"; break;
  353. case MKTAG(0xa9,'x','y','z'): key = "location"; break;
  354. }
  355. retry:
  356. if (c->itunes_metadata && atom.size > 8) {
  357. int data_size = avio_rb32(pb);
  358. int tag = avio_rl32(pb);
  359. if (tag == MKTAG('d','a','t','a') && data_size <= atom.size) {
  360. data_type = avio_rb32(pb); // type
  361. avio_rb32(pb); // unknown
  362. str_size = data_size - 16;
  363. atom.size -= 16;
  364. if (atom.type == MKTAG('c', 'o', 'v', 'r')) {
  365. int ret = mov_read_covr(c, pb, data_type, str_size);
  366. if (ret < 0) {
  367. av_log(c->fc, AV_LOG_ERROR, "Error parsing cover art.\n");
  368. }
  369. return ret;
  370. } else if (!key && c->found_hdlr_mdta && c->meta_keys) {
  371. uint32_t index = AV_RB32(&atom.type);
  372. if (index < c->meta_keys_count && index > 0) {
  373. key = c->meta_keys[index];
  374. } else {
  375. av_log(c->fc, AV_LOG_WARNING,
  376. "The index of 'data' is out of range: %"PRId32" < 1 or >= %d.\n",
  377. index, c->meta_keys_count);
  378. }
  379. }
  380. } else return 0;
  381. } else if (atom.size > 4 && key && !c->itunes_metadata && !raw) {
  382. str_size = avio_rb16(pb); // string length
  383. if (str_size > atom.size) {
  384. raw = 1;
  385. avio_seek(pb, -2, SEEK_CUR);
  386. av_log(c->fc, AV_LOG_WARNING, "UDTA parsing failed retrying raw\n");
  387. goto retry;
  388. }
  389. langcode = avio_rb16(pb);
  390. ff_mov_lang_to_iso639(langcode, language);
  391. atom.size -= 4;
  392. } else
  393. str_size = atom.size;
  394. if (c->export_all && !key) {
  395. snprintf(tmp_key, 5, "%.4s", (char*)&atom.type);
  396. key = tmp_key;
  397. }
  398. if (!key)
  399. return 0;
  400. if (atom.size < 0 || str_size >= INT_MAX/2)
  401. return AVERROR_INVALIDDATA;
  402. // Allocates enough space if data_type is a int32 or float32 number, otherwise
  403. // worst-case requirement for output string in case of utf8 coded input
  404. num = (data_type >= 21 && data_type <= 23);
  405. str_size_alloc = (num ? 512 : (raw ? str_size : str_size * 2)) + 1;
  406. str = av_mallocz(str_size_alloc);
  407. if (!str)
  408. return AVERROR(ENOMEM);
  409. if (parse)
  410. parse(c, pb, str_size, key);
  411. else {
  412. if (!raw && (data_type == 3 || (data_type == 0 && (langcode < 0x400 || langcode == 0x7fff)))) { // MAC Encoded
  413. mov_read_mac_string(c, pb, str_size, str, str_size_alloc);
  414. } else if (data_type == 21) { // BE signed integer, variable size
  415. int val = 0;
  416. if (str_size == 1)
  417. val = (int8_t)avio_r8(pb);
  418. else if (str_size == 2)
  419. val = (int16_t)avio_rb16(pb);
  420. else if (str_size == 3)
  421. val = ((int32_t)(avio_rb24(pb)<<8))>>8;
  422. else if (str_size == 4)
  423. val = (int32_t)avio_rb32(pb);
  424. if (snprintf(str, str_size_alloc, "%d", val) >= str_size_alloc) {
  425. av_log(c->fc, AV_LOG_ERROR,
  426. "Failed to store the number (%d) in string.\n", val);
  427. av_free(str);
  428. return AVERROR_INVALIDDATA;
  429. }
  430. } else if (data_type == 22) { // BE unsigned integer, variable size
  431. unsigned int val = 0;
  432. if (str_size == 1)
  433. val = avio_r8(pb);
  434. else if (str_size == 2)
  435. val = avio_rb16(pb);
  436. else if (str_size == 3)
  437. val = avio_rb24(pb);
  438. else if (str_size == 4)
  439. val = avio_rb32(pb);
  440. if (snprintf(str, str_size_alloc, "%u", val) >= str_size_alloc) {
  441. av_log(c->fc, AV_LOG_ERROR,
  442. "Failed to store the number (%u) in string.\n", val);
  443. av_free(str);
  444. return AVERROR_INVALIDDATA;
  445. }
  446. } else if (data_type == 23 && str_size >= 4) { // BE float32
  447. float val = av_int2float(avio_rb32(pb));
  448. if (snprintf(str, str_size_alloc, "%f", val) >= str_size_alloc) {
  449. av_log(c->fc, AV_LOG_ERROR,
  450. "Failed to store the float32 number (%f) in string.\n", val);
  451. av_free(str);
  452. return AVERROR_INVALIDDATA;
  453. }
  454. } else {
  455. int ret = ffio_read_size(pb, str, str_size);
  456. if (ret < 0) {
  457. av_free(str);
  458. return ret;
  459. }
  460. str[str_size] = 0;
  461. }
  462. c->fc->event_flags |= AVFMT_EVENT_FLAG_METADATA_UPDATED;
  463. av_dict_set(&c->fc->metadata, key, str, 0);
  464. if (*language && strcmp(language, "und")) {
  465. snprintf(key2, sizeof(key2), "%s-%s", key, language);
  466. av_dict_set(&c->fc->metadata, key2, str, 0);
  467. }
  468. if (!strcmp(key, "encoder")) {
  469. int major, minor, micro;
  470. if (sscanf(str, "HandBrake %d.%d.%d", &major, &minor, &micro) == 3) {
  471. c->handbrake_version = 1000000*major + 1000*minor + micro;
  472. }
  473. }
  474. }
  475. av_freep(&str);
  476. return 0;
  477. }
  478. static int mov_read_chpl(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  479. {
  480. int64_t start;
  481. int i, nb_chapters, str_len, version;
  482. char str[256+1];
  483. int ret;
  484. if (c->ignore_chapters)
  485. return 0;
  486. if ((atom.size -= 5) < 0)
  487. return 0;
  488. version = avio_r8(pb);
  489. avio_rb24(pb);
  490. if (version)
  491. avio_rb32(pb); // ???
  492. nb_chapters = avio_r8(pb);
  493. for (i = 0; i < nb_chapters; i++) {
  494. if (atom.size < 9)
  495. return 0;
  496. start = avio_rb64(pb);
  497. str_len = avio_r8(pb);
  498. if ((atom.size -= 9+str_len) < 0)
  499. return 0;
  500. ret = ffio_read_size(pb, str, str_len);
  501. if (ret < 0)
  502. return ret;
  503. str[str_len] = 0;
  504. avpriv_new_chapter(c->fc, i, (AVRational){1,10000000}, start, AV_NOPTS_VALUE, str);
  505. }
  506. return 0;
  507. }
  508. #define MIN_DATA_ENTRY_BOX_SIZE 12
  509. static int mov_read_dref(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  510. {
  511. AVStream *st;
  512. MOVStreamContext *sc;
  513. int entries, i, j;
  514. if (c->fc->nb_streams < 1)
  515. return 0;
  516. st = c->fc->streams[c->fc->nb_streams-1];
  517. sc = st->priv_data;
  518. avio_rb32(pb); // version + flags
  519. entries = avio_rb32(pb);
  520. if (!entries ||
  521. entries > (atom.size - 1) / MIN_DATA_ENTRY_BOX_SIZE + 1 ||
  522. entries >= UINT_MAX / sizeof(*sc->drefs))
  523. return AVERROR_INVALIDDATA;
  524. sc->drefs_count = 0;
  525. av_free(sc->drefs);
  526. sc->drefs_count = 0;
  527. sc->drefs = av_mallocz(entries * sizeof(*sc->drefs));
  528. if (!sc->drefs)
  529. return AVERROR(ENOMEM);
  530. sc->drefs_count = entries;
  531. for (i = 0; i < entries; i++) {
  532. MOVDref *dref = &sc->drefs[i];
  533. uint32_t size = avio_rb32(pb);
  534. int64_t next = avio_tell(pb) + size - 4;
  535. if (size < 12)
  536. return AVERROR_INVALIDDATA;
  537. dref->type = avio_rl32(pb);
  538. avio_rb32(pb); // version + flags
  539. if (dref->type == MKTAG('a','l','i','s') && size > 150) {
  540. /* macintosh alias record */
  541. uint16_t volume_len, len;
  542. int16_t type;
  543. int ret;
  544. avio_skip(pb, 10);
  545. volume_len = avio_r8(pb);
  546. volume_len = FFMIN(volume_len, 27);
  547. ret = ffio_read_size(pb, dref->volume, 27);
  548. if (ret < 0)
  549. return ret;
  550. dref->volume[volume_len] = 0;
  551. av_log(c->fc, AV_LOG_DEBUG, "volume %s, len %d\n", dref->volume, volume_len);
  552. avio_skip(pb, 12);
  553. len = avio_r8(pb);
  554. len = FFMIN(len, 63);
  555. ret = ffio_read_size(pb, dref->filename, 63);
  556. if (ret < 0)
  557. return ret;
  558. dref->filename[len] = 0;
  559. av_log(c->fc, AV_LOG_DEBUG, "filename %s, len %d\n", dref->filename, len);
  560. avio_skip(pb, 16);
  561. /* read next level up_from_alias/down_to_target */
  562. dref->nlvl_from = avio_rb16(pb);
  563. dref->nlvl_to = avio_rb16(pb);
  564. av_log(c->fc, AV_LOG_DEBUG, "nlvl from %d, nlvl to %d\n",
  565. dref->nlvl_from, dref->nlvl_to);
  566. avio_skip(pb, 16);
  567. for (type = 0; type != -1 && avio_tell(pb) < next; ) {
  568. if(avio_feof(pb))
  569. return AVERROR_EOF;
  570. type = avio_rb16(pb);
  571. len = avio_rb16(pb);
  572. av_log(c->fc, AV_LOG_DEBUG, "type %d, len %d\n", type, len);
  573. if (len&1)
  574. len += 1;
  575. if (type == 2) { // absolute path
  576. av_free(dref->path);
  577. dref->path = av_mallocz(len+1);
  578. if (!dref->path)
  579. return AVERROR(ENOMEM);
  580. ret = ffio_read_size(pb, dref->path, len);
  581. if (ret < 0) {
  582. av_freep(&dref->path);
  583. return ret;
  584. }
  585. if (len > volume_len && !strncmp(dref->path, dref->volume, volume_len)) {
  586. len -= volume_len;
  587. memmove(dref->path, dref->path+volume_len, len);
  588. dref->path[len] = 0;
  589. }
  590. // trim string of any ending zeros
  591. for (j = len - 1; j >= 0; j--) {
  592. if (dref->path[j] == 0)
  593. len--;
  594. else
  595. break;
  596. }
  597. for (j = 0; j < len; j++)
  598. if (dref->path[j] == ':' || dref->path[j] == 0)
  599. dref->path[j] = '/';
  600. av_log(c->fc, AV_LOG_DEBUG, "path %s\n", dref->path);
  601. } else if (type == 0) { // directory name
  602. av_free(dref->dir);
  603. dref->dir = av_malloc(len+1);
  604. if (!dref->dir)
  605. return AVERROR(ENOMEM);
  606. ret = ffio_read_size(pb, dref->dir, len);
  607. if (ret < 0) {
  608. av_freep(&dref->dir);
  609. return ret;
  610. }
  611. dref->dir[len] = 0;
  612. for (j = 0; j < len; j++)
  613. if (dref->dir[j] == ':')
  614. dref->dir[j] = '/';
  615. av_log(c->fc, AV_LOG_DEBUG, "dir %s\n", dref->dir);
  616. } else
  617. avio_skip(pb, len);
  618. }
  619. } else {
  620. av_log(c->fc, AV_LOG_DEBUG, "Unknown dref type 0x%08"PRIx32" size %"PRIu32"\n",
  621. dref->type, size);
  622. entries--;
  623. i--;
  624. }
  625. avio_seek(pb, next, SEEK_SET);
  626. }
  627. return 0;
  628. }
  629. static int mov_read_hdlr(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  630. {
  631. AVStream *st;
  632. uint32_t type;
  633. uint32_t ctype;
  634. int64_t title_size;
  635. char *title_str;
  636. int ret;
  637. avio_r8(pb); /* version */
  638. avio_rb24(pb); /* flags */
  639. /* component type */
  640. ctype = avio_rl32(pb);
  641. type = avio_rl32(pb); /* component subtype */
  642. av_log(c->fc, AV_LOG_TRACE, "ctype=%s\n", av_fourcc2str(ctype));
  643. av_log(c->fc, AV_LOG_TRACE, "stype=%s\n", av_fourcc2str(type));
  644. if (c->trak_index < 0) { // meta not inside a trak
  645. if (type == MKTAG('m','d','t','a')) {
  646. c->found_hdlr_mdta = 1;
  647. }
  648. return 0;
  649. }
  650. st = c->fc->streams[c->fc->nb_streams-1];
  651. if (type == MKTAG('v','i','d','e'))
  652. st->codecpar->codec_type = AVMEDIA_TYPE_VIDEO;
  653. else if (type == MKTAG('s','o','u','n'))
  654. st->codecpar->codec_type = AVMEDIA_TYPE_AUDIO;
  655. else if (type == MKTAG('m','1','a',' '))
  656. st->codecpar->codec_id = AV_CODEC_ID_MP2;
  657. else if ((type == MKTAG('s','u','b','p')) || (type == MKTAG('c','l','c','p')))
  658. st->codecpar->codec_type = AVMEDIA_TYPE_SUBTITLE;
  659. avio_rb32(pb); /* component manufacture */
  660. avio_rb32(pb); /* component flags */
  661. avio_rb32(pb); /* component flags mask */
  662. title_size = atom.size - 24;
  663. if (title_size > 0) {
  664. if (title_size > FFMIN(INT_MAX, SIZE_MAX-1))
  665. return AVERROR_INVALIDDATA;
  666. title_str = av_malloc(title_size + 1); /* Add null terminator */
  667. if (!title_str)
  668. return AVERROR(ENOMEM);
  669. ret = ffio_read_size(pb, title_str, title_size);
  670. if (ret < 0) {
  671. av_freep(&title_str);
  672. return ret;
  673. }
  674. title_str[title_size] = 0;
  675. if (title_str[0]) {
  676. int off = (!c->isom && title_str[0] == title_size - 1);
  677. av_dict_set(&st->metadata, "handler_name", title_str + off, 0);
  678. }
  679. av_freep(&title_str);
  680. }
  681. return 0;
  682. }
  683. static int mov_read_esds(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  684. {
  685. return ff_mov_read_esds(c->fc, pb);
  686. }
  687. static int mov_read_dac3(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  688. {
  689. AVStream *st;
  690. enum AVAudioServiceType *ast;
  691. int ac3info, acmod, lfeon, bsmod;
  692. if (c->fc->nb_streams < 1)
  693. return 0;
  694. st = c->fc->streams[c->fc->nb_streams-1];
  695. ast = (enum AVAudioServiceType*)av_stream_new_side_data(st, AV_PKT_DATA_AUDIO_SERVICE_TYPE,
  696. sizeof(*ast));
  697. if (!ast)
  698. return AVERROR(ENOMEM);
  699. ac3info = avio_rb24(pb);
  700. bsmod = (ac3info >> 14) & 0x7;
  701. acmod = (ac3info >> 11) & 0x7;
  702. lfeon = (ac3info >> 10) & 0x1;
  703. st->codecpar->channels = ((int[]){2,1,2,3,3,4,4,5})[acmod] + lfeon;
  704. st->codecpar->channel_layout = avpriv_ac3_channel_layout_tab[acmod];
  705. if (lfeon)
  706. st->codecpar->channel_layout |= AV_CH_LOW_FREQUENCY;
  707. *ast = bsmod;
  708. if (st->codecpar->channels > 1 && bsmod == 0x7)
  709. *ast = AV_AUDIO_SERVICE_TYPE_KARAOKE;
  710. #if FF_API_LAVF_AVCTX
  711. FF_DISABLE_DEPRECATION_WARNINGS
  712. st->codec->audio_service_type = *ast;
  713. FF_ENABLE_DEPRECATION_WARNINGS
  714. #endif
  715. return 0;
  716. }
  717. static int mov_read_dec3(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  718. {
  719. AVStream *st;
  720. enum AVAudioServiceType *ast;
  721. int eac3info, acmod, lfeon, bsmod;
  722. if (c->fc->nb_streams < 1)
  723. return 0;
  724. st = c->fc->streams[c->fc->nb_streams-1];
  725. ast = (enum AVAudioServiceType*)av_stream_new_side_data(st, AV_PKT_DATA_AUDIO_SERVICE_TYPE,
  726. sizeof(*ast));
  727. if (!ast)
  728. return AVERROR(ENOMEM);
  729. /* No need to parse fields for additional independent substreams and its
  730. * associated dependent substreams since libavcodec's E-AC-3 decoder
  731. * does not support them yet. */
  732. avio_rb16(pb); /* data_rate and num_ind_sub */
  733. eac3info = avio_rb24(pb);
  734. bsmod = (eac3info >> 12) & 0x1f;
  735. acmod = (eac3info >> 9) & 0x7;
  736. lfeon = (eac3info >> 8) & 0x1;
  737. st->codecpar->channel_layout = avpriv_ac3_channel_layout_tab[acmod];
  738. if (lfeon)
  739. st->codecpar->channel_layout |= AV_CH_LOW_FREQUENCY;
  740. st->codecpar->channels = av_get_channel_layout_nb_channels(st->codecpar->channel_layout);
  741. *ast = bsmod;
  742. if (st->codecpar->channels > 1 && bsmod == 0x7)
  743. *ast = AV_AUDIO_SERVICE_TYPE_KARAOKE;
  744. #if FF_API_LAVF_AVCTX
  745. FF_DISABLE_DEPRECATION_WARNINGS
  746. st->codec->audio_service_type = *ast;
  747. FF_ENABLE_DEPRECATION_WARNINGS
  748. #endif
  749. return 0;
  750. }
  751. static int mov_read_ddts(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  752. {
  753. const uint32_t ddts_size = 20;
  754. AVStream *st = NULL;
  755. uint8_t *buf = NULL;
  756. uint32_t frame_duration_code = 0;
  757. uint32_t channel_layout_code = 0;
  758. GetBitContext gb;
  759. buf = av_malloc(ddts_size + AV_INPUT_BUFFER_PADDING_SIZE);
  760. if (!buf) {
  761. return AVERROR(ENOMEM);
  762. }
  763. if (avio_read(pb, buf, ddts_size) < ddts_size) {
  764. av_free(buf);
  765. return AVERROR_INVALIDDATA;
  766. }
  767. init_get_bits(&gb, buf, 8*ddts_size);
  768. if (c->fc->nb_streams < 1) {
  769. av_free(buf);
  770. return 0;
  771. }
  772. st = c->fc->streams[c->fc->nb_streams-1];
  773. st->codecpar->sample_rate = get_bits_long(&gb, 32);
  774. if (st->codecpar->sample_rate <= 0) {
  775. av_log(c->fc, AV_LOG_ERROR, "Invalid sample rate %d\n", st->codecpar->sample_rate);
  776. av_free(buf);
  777. return AVERROR_INVALIDDATA;
  778. }
  779. skip_bits_long(&gb, 32); /* max bitrate */
  780. st->codecpar->bit_rate = get_bits_long(&gb, 32);
  781. st->codecpar->bits_per_coded_sample = get_bits(&gb, 8);
  782. frame_duration_code = get_bits(&gb, 2);
  783. skip_bits(&gb, 30); /* various fields */
  784. channel_layout_code = get_bits(&gb, 16);
  785. st->codecpar->frame_size =
  786. (frame_duration_code == 0) ? 512 :
  787. (frame_duration_code == 1) ? 1024 :
  788. (frame_duration_code == 2) ? 2048 :
  789. (frame_duration_code == 3) ? 4096 : 0;
  790. if (channel_layout_code > 0xff) {
  791. av_log(c->fc, AV_LOG_WARNING, "Unsupported DTS audio channel layout");
  792. }
  793. st->codecpar->channel_layout =
  794. ((channel_layout_code & 0x1) ? AV_CH_FRONT_CENTER : 0) |
  795. ((channel_layout_code & 0x2) ? AV_CH_FRONT_LEFT : 0) |
  796. ((channel_layout_code & 0x2) ? AV_CH_FRONT_RIGHT : 0) |
  797. ((channel_layout_code & 0x4) ? AV_CH_SIDE_LEFT : 0) |
  798. ((channel_layout_code & 0x4) ? AV_CH_SIDE_RIGHT : 0) |
  799. ((channel_layout_code & 0x8) ? AV_CH_LOW_FREQUENCY : 0);
  800. st->codecpar->channels = av_get_channel_layout_nb_channels(st->codecpar->channel_layout);
  801. av_free(buf);
  802. return 0;
  803. }
  804. static int mov_read_chan(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  805. {
  806. AVStream *st;
  807. if (c->fc->nb_streams < 1)
  808. return 0;
  809. st = c->fc->streams[c->fc->nb_streams-1];
  810. if (atom.size < 16)
  811. return 0;
  812. /* skip version and flags */
  813. avio_skip(pb, 4);
  814. ff_mov_read_chan(c->fc, pb, st, atom.size - 4);
  815. return 0;
  816. }
  817. static int mov_read_wfex(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  818. {
  819. AVStream *st;
  820. int ret;
  821. if (c->fc->nb_streams < 1)
  822. return 0;
  823. st = c->fc->streams[c->fc->nb_streams-1];
  824. if ((ret = ff_get_wav_header(c->fc, pb, st->codecpar, atom.size, 0)) < 0)
  825. av_log(c->fc, AV_LOG_WARNING, "get_wav_header failed\n");
  826. return ret;
  827. }
  828. static int mov_read_pasp(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  829. {
  830. const int num = avio_rb32(pb);
  831. const int den = avio_rb32(pb);
  832. AVStream *st;
  833. if (c->fc->nb_streams < 1)
  834. return 0;
  835. st = c->fc->streams[c->fc->nb_streams-1];
  836. if ((st->sample_aspect_ratio.den != 1 || st->sample_aspect_ratio.num) && // default
  837. (den != st->sample_aspect_ratio.den || num != st->sample_aspect_ratio.num)) {
  838. av_log(c->fc, AV_LOG_WARNING,
  839. "sample aspect ratio already set to %d:%d, ignoring 'pasp' atom (%d:%d)\n",
  840. st->sample_aspect_ratio.num, st->sample_aspect_ratio.den,
  841. num, den);
  842. } else if (den != 0) {
  843. av_reduce(&st->sample_aspect_ratio.num, &st->sample_aspect_ratio.den,
  844. num, den, 32767);
  845. }
  846. return 0;
  847. }
  848. /* this atom contains actual media data */
  849. static int mov_read_mdat(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  850. {
  851. if (atom.size == 0) /* wrong one (MP4) */
  852. return 0;
  853. c->found_mdat=1;
  854. return 0; /* now go for moov */
  855. }
  856. #define DRM_BLOB_SIZE 56
  857. static int mov_read_adrm(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  858. {
  859. uint8_t intermediate_key[20];
  860. uint8_t intermediate_iv[20];
  861. uint8_t input[64];
  862. uint8_t output[64];
  863. uint8_t file_checksum[20];
  864. uint8_t calculated_checksum[20];
  865. struct AVSHA *sha;
  866. int i;
  867. int ret = 0;
  868. uint8_t *activation_bytes = c->activation_bytes;
  869. uint8_t *fixed_key = c->audible_fixed_key;
  870. c->aax_mode = 1;
  871. sha = av_sha_alloc();
  872. if (!sha)
  873. return AVERROR(ENOMEM);
  874. c->aes_decrypt = av_aes_alloc();
  875. if (!c->aes_decrypt) {
  876. ret = AVERROR(ENOMEM);
  877. goto fail;
  878. }
  879. /* drm blob processing */
  880. avio_read(pb, output, 8); // go to offset 8, absolute position 0x251
  881. avio_read(pb, input, DRM_BLOB_SIZE);
  882. avio_read(pb, output, 4); // go to offset 4, absolute position 0x28d
  883. avio_read(pb, file_checksum, 20);
  884. av_log(c->fc, AV_LOG_INFO, "[aax] file checksum == "); // required by external tools
  885. for (i = 0; i < 20; i++)
  886. av_log(c->fc, AV_LOG_INFO, "%02x", file_checksum[i]);
  887. av_log(c->fc, AV_LOG_INFO, "\n");
  888. /* verify activation data */
  889. if (!activation_bytes) {
  890. av_log(c->fc, AV_LOG_WARNING, "[aax] activation_bytes option is missing!\n");
  891. ret = 0; /* allow ffprobe to continue working on .aax files */
  892. goto fail;
  893. }
  894. if (c->activation_bytes_size != 4) {
  895. av_log(c->fc, AV_LOG_FATAL, "[aax] activation_bytes value needs to be 4 bytes!\n");
  896. ret = AVERROR(EINVAL);
  897. goto fail;
  898. }
  899. /* verify fixed key */
  900. if (c->audible_fixed_key_size != 16) {
  901. av_log(c->fc, AV_LOG_FATAL, "[aax] audible_fixed_key value needs to be 16 bytes!\n");
  902. ret = AVERROR(EINVAL);
  903. goto fail;
  904. }
  905. /* AAX (and AAX+) key derivation */
  906. av_sha_init(sha, 160);
  907. av_sha_update(sha, fixed_key, 16);
  908. av_sha_update(sha, activation_bytes, 4);
  909. av_sha_final(sha, intermediate_key);
  910. av_sha_init(sha, 160);
  911. av_sha_update(sha, fixed_key, 16);
  912. av_sha_update(sha, intermediate_key, 20);
  913. av_sha_update(sha, activation_bytes, 4);
  914. av_sha_final(sha, intermediate_iv);
  915. av_sha_init(sha, 160);
  916. av_sha_update(sha, intermediate_key, 16);
  917. av_sha_update(sha, intermediate_iv, 16);
  918. av_sha_final(sha, calculated_checksum);
  919. if (memcmp(calculated_checksum, file_checksum, 20)) { // critical error
  920. av_log(c->fc, AV_LOG_ERROR, "[aax] mismatch in checksums!\n");
  921. ret = AVERROR_INVALIDDATA;
  922. goto fail;
  923. }
  924. av_aes_init(c->aes_decrypt, intermediate_key, 128, 1);
  925. av_aes_crypt(c->aes_decrypt, output, input, DRM_BLOB_SIZE >> 4, intermediate_iv, 1);
  926. for (i = 0; i < 4; i++) {
  927. // file data (in output) is stored in big-endian mode
  928. if (activation_bytes[i] != output[3 - i]) { // critical error
  929. av_log(c->fc, AV_LOG_ERROR, "[aax] error in drm blob decryption!\n");
  930. ret = AVERROR_INVALIDDATA;
  931. goto fail;
  932. }
  933. }
  934. memcpy(c->file_key, output + 8, 16);
  935. memcpy(input, output + 26, 16);
  936. av_sha_init(sha, 160);
  937. av_sha_update(sha, input, 16);
  938. av_sha_update(sha, c->file_key, 16);
  939. av_sha_update(sha, fixed_key, 16);
  940. av_sha_final(sha, c->file_iv);
  941. fail:
  942. av_free(sha);
  943. return ret;
  944. }
  945. // Audible AAX (and AAX+) bytestream decryption
  946. static int aax_filter(uint8_t *input, int size, MOVContext *c)
  947. {
  948. int blocks = 0;
  949. unsigned char iv[16];
  950. memcpy(iv, c->file_iv, 16); // iv is overwritten
  951. blocks = size >> 4; // trailing bytes are not encrypted!
  952. av_aes_init(c->aes_decrypt, c->file_key, 128, 1);
  953. av_aes_crypt(c->aes_decrypt, input, input, blocks, iv, 1);
  954. return 0;
  955. }
  956. /* read major brand, minor version and compatible brands and store them as metadata */
  957. static int mov_read_ftyp(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  958. {
  959. uint32_t minor_ver;
  960. int comp_brand_size;
  961. char* comp_brands_str;
  962. uint8_t type[5] = {0};
  963. int ret = ffio_read_size(pb, type, 4);
  964. if (ret < 0)
  965. return ret;
  966. if (strcmp(type, "qt "))
  967. c->isom = 1;
  968. av_log(c->fc, AV_LOG_DEBUG, "ISO: File Type Major Brand: %.4s\n",(char *)&type);
  969. av_dict_set(&c->fc->metadata, "major_brand", type, 0);
  970. minor_ver = avio_rb32(pb); /* minor version */
  971. av_dict_set_int(&c->fc->metadata, "minor_version", minor_ver, 0);
  972. comp_brand_size = atom.size - 8;
  973. if (comp_brand_size < 0)
  974. return AVERROR_INVALIDDATA;
  975. comp_brands_str = av_malloc(comp_brand_size + 1); /* Add null terminator */
  976. if (!comp_brands_str)
  977. return AVERROR(ENOMEM);
  978. ret = ffio_read_size(pb, comp_brands_str, comp_brand_size);
  979. if (ret < 0) {
  980. av_freep(&comp_brands_str);
  981. return ret;
  982. }
  983. comp_brands_str[comp_brand_size] = 0;
  984. av_dict_set(&c->fc->metadata, "compatible_brands", comp_brands_str, 0);
  985. av_freep(&comp_brands_str);
  986. return 0;
  987. }
  988. /* this atom should contain all header atoms */
  989. static int mov_read_moov(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  990. {
  991. int ret;
  992. if (c->found_moov) {
  993. av_log(c->fc, AV_LOG_WARNING, "Found duplicated MOOV Atom. Skipped it\n");
  994. avio_skip(pb, atom.size);
  995. return 0;
  996. }
  997. if ((ret = mov_read_default(c, pb, atom)) < 0)
  998. return ret;
  999. /* we parsed the 'moov' atom, we can terminate the parsing as soon as we find the 'mdat' */
  1000. /* so we don't parse the whole file if over a network */
  1001. c->found_moov=1;
  1002. return 0; /* now go for mdat */
  1003. }
  1004. static MOVFragmentStreamInfo * get_frag_stream_info(
  1005. MOVFragmentIndex *frag_index,
  1006. int index,
  1007. int id)
  1008. {
  1009. int i;
  1010. MOVFragmentIndexItem * item;
  1011. if (index < 0 || index >= frag_index->nb_items)
  1012. return NULL;
  1013. item = &frag_index->item[index];
  1014. for (i = 0; i < item->nb_stream_info; i++)
  1015. if (item->stream_info[i].id == id)
  1016. return &item->stream_info[i];
  1017. // This shouldn't happen
  1018. return NULL;
  1019. }
  1020. static void set_frag_stream(MOVFragmentIndex *frag_index, int id)
  1021. {
  1022. int i;
  1023. MOVFragmentIndexItem * item;
  1024. if (frag_index->current < 0 ||
  1025. frag_index->current >= frag_index->nb_items)
  1026. return;
  1027. item = &frag_index->item[frag_index->current];
  1028. for (i = 0; i < item->nb_stream_info; i++)
  1029. if (item->stream_info[i].id == id) {
  1030. item->current = i;
  1031. return;
  1032. }
  1033. // id not found. This shouldn't happen.
  1034. item->current = -1;
  1035. }
  1036. static MOVFragmentStreamInfo * get_current_frag_stream_info(
  1037. MOVFragmentIndex *frag_index)
  1038. {
  1039. MOVFragmentIndexItem * item = &frag_index->item[frag_index->current];
  1040. if (item->current >= 0 && item->current < item->nb_stream_info)
  1041. return &item->stream_info[item->current];
  1042. // This shouldn't happen
  1043. return NULL;
  1044. }
  1045. static int search_frag_moof_offset(MOVFragmentIndex *frag_index, int64_t offset)
  1046. {
  1047. int a, b, m;
  1048. int64_t moof_offset;
  1049. // Optimize for appending new entries
  1050. if (!frag_index->nb_items ||
  1051. frag_index->item[frag_index->nb_items - 1].moof_offset < offset)
  1052. return frag_index->nb_items;
  1053. a = -1;
  1054. b = frag_index->nb_items;
  1055. while (b - a > 1) {
  1056. m = (a + b) >> 1;
  1057. moof_offset = frag_index->item[m].moof_offset;
  1058. if (moof_offset >= offset)
  1059. b = m;
  1060. if (moof_offset <= offset)
  1061. a = m;
  1062. }
  1063. return b;
  1064. }
  1065. static int64_t get_stream_info_time(MOVFragmentStreamInfo * frag_stream_info)
  1066. {
  1067. if (frag_stream_info) {
  1068. if (frag_stream_info->sidx_pts != AV_NOPTS_VALUE)
  1069. return frag_stream_info->sidx_pts;
  1070. if (frag_stream_info->first_tfra_pts != AV_NOPTS_VALUE)
  1071. return frag_stream_info->first_tfra_pts;
  1072. if (frag_stream_info->tfdt_dts != AV_NOPTS_VALUE)
  1073. return frag_stream_info->tfdt_dts;
  1074. }
  1075. return AV_NOPTS_VALUE;
  1076. }
  1077. static int64_t get_frag_time(MOVFragmentIndex *frag_index,
  1078. int index, int track_id)
  1079. {
  1080. MOVFragmentStreamInfo * frag_stream_info;
  1081. int64_t timestamp;
  1082. int i;
  1083. if (track_id >= 0) {
  1084. frag_stream_info = get_frag_stream_info(frag_index, index, track_id);
  1085. return frag_stream_info->sidx_pts;
  1086. }
  1087. for (i = 0; i < frag_index->item[index].nb_stream_info; i++) {
  1088. frag_stream_info = &frag_index->item[index].stream_info[i];
  1089. timestamp = get_stream_info_time(frag_stream_info);
  1090. if (timestamp != AV_NOPTS_VALUE)
  1091. return timestamp;
  1092. }
  1093. return AV_NOPTS_VALUE;
  1094. }
  1095. static int search_frag_timestamp(MOVFragmentIndex *frag_index,
  1096. AVStream *st, int64_t timestamp)
  1097. {
  1098. int a, b, m;
  1099. int64_t frag_time;
  1100. int id = -1;
  1101. if (st) {
  1102. // If the stream is referenced by any sidx, limit the search
  1103. // to fragments that referenced this stream in the sidx
  1104. MOVStreamContext *sc = st->priv_data;
  1105. if (sc->has_sidx)
  1106. id = st->id;
  1107. }
  1108. a = -1;
  1109. b = frag_index->nb_items;
  1110. while (b - a > 1) {
  1111. m = (a + b) >> 1;
  1112. frag_time = get_frag_time(frag_index, m, id);
  1113. if (frag_time != AV_NOPTS_VALUE) {
  1114. if (frag_time >= timestamp)
  1115. b = m;
  1116. if (frag_time <= timestamp)
  1117. a = m;
  1118. }
  1119. }
  1120. return a;
  1121. }
  1122. static int update_frag_index(MOVContext *c, int64_t offset)
  1123. {
  1124. int index, i;
  1125. MOVFragmentIndexItem * item;
  1126. MOVFragmentStreamInfo * frag_stream_info;
  1127. // If moof_offset already exists in frag_index, return index to it
  1128. index = search_frag_moof_offset(&c->frag_index, offset);
  1129. if (index < c->frag_index.nb_items &&
  1130. c->frag_index.item[index].moof_offset == offset)
  1131. return index;
  1132. // offset is not yet in frag index.
  1133. // Insert new item at index (sorted by moof offset)
  1134. item = av_fast_realloc(c->frag_index.item,
  1135. &c->frag_index.allocated_size,
  1136. (c->frag_index.nb_items + 1) *
  1137. sizeof(*c->frag_index.item));
  1138. if(!item)
  1139. return -1;
  1140. c->frag_index.item = item;
  1141. frag_stream_info = av_realloc_array(NULL, c->fc->nb_streams,
  1142. sizeof(*item->stream_info));
  1143. if (!frag_stream_info)
  1144. return -1;
  1145. for (i = 0; i < c->fc->nb_streams; i++) {
  1146. frag_stream_info[i].id = c->fc->streams[i]->id;
  1147. frag_stream_info[i].sidx_pts = AV_NOPTS_VALUE;
  1148. frag_stream_info[i].tfdt_dts = AV_NOPTS_VALUE;
  1149. frag_stream_info[i].first_tfra_pts = AV_NOPTS_VALUE;
  1150. frag_stream_info[i].index_entry = -1;
  1151. }
  1152. if (index < c->frag_index.nb_items)
  1153. memmove(c->frag_index.item + index + 1, c->frag_index.item + index,
  1154. (c->frag_index.nb_items - index) * sizeof(*c->frag_index.item));
  1155. item = &c->frag_index.item[index];
  1156. item->headers_read = 0;
  1157. item->current = 0;
  1158. item->nb_stream_info = c->fc->nb_streams;
  1159. item->moof_offset = offset;
  1160. item->stream_info = frag_stream_info;
  1161. c->frag_index.nb_items++;
  1162. return index;
  1163. }
  1164. static void fix_frag_index_entries(MOVFragmentIndex *frag_index, int index,
  1165. int id, int entries)
  1166. {
  1167. int i;
  1168. MOVFragmentStreamInfo * frag_stream_info;
  1169. if (index < 0)
  1170. return;
  1171. for (i = index; i < frag_index->nb_items; i++) {
  1172. frag_stream_info = get_frag_stream_info(frag_index, i, id);
  1173. if (frag_stream_info && frag_stream_info->index_entry >= 0)
  1174. frag_stream_info->index_entry += entries;
  1175. }
  1176. }
  1177. static int mov_read_moof(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1178. {
  1179. if (!c->has_looked_for_mfra && c->use_mfra_for > 0) {
  1180. c->has_looked_for_mfra = 1;
  1181. if (pb->seekable & AVIO_SEEKABLE_NORMAL) {
  1182. int ret;
  1183. av_log(c->fc, AV_LOG_VERBOSE, "stream has moof boxes, will look "
  1184. "for a mfra\n");
  1185. if ((ret = mov_read_mfra(c, pb)) < 0) {
  1186. av_log(c->fc, AV_LOG_VERBOSE, "found a moof box but failed to "
  1187. "read the mfra (may be a live ismv)\n");
  1188. }
  1189. } else {
  1190. av_log(c->fc, AV_LOG_VERBOSE, "found a moof box but stream is not "
  1191. "seekable, can not look for mfra\n");
  1192. }
  1193. }
  1194. c->fragment.moof_offset = c->fragment.implicit_offset = avio_tell(pb) - 8;
  1195. av_log(c->fc, AV_LOG_TRACE, "moof offset %"PRIx64"\n", c->fragment.moof_offset);
  1196. c->frag_index.current = update_frag_index(c, c->fragment.moof_offset);
  1197. return mov_read_default(c, pb, atom);
  1198. }
  1199. static void mov_metadata_creation_time(AVDictionary **metadata, int64_t time)
  1200. {
  1201. if (time) {
  1202. if(time >= 2082844800)
  1203. time -= 2082844800; /* seconds between 1904-01-01 and Epoch */
  1204. if ((int64_t)(time * 1000000ULL) / 1000000 != time) {
  1205. av_log(NULL, AV_LOG_DEBUG, "creation_time is not representable\n");
  1206. return;
  1207. }
  1208. avpriv_dict_set_timestamp(metadata, "creation_time", time * 1000000);
  1209. }
  1210. }
  1211. static int mov_read_mdhd(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1212. {
  1213. AVStream *st;
  1214. MOVStreamContext *sc;
  1215. int version;
  1216. char language[4] = {0};
  1217. unsigned lang;
  1218. int64_t creation_time;
  1219. if (c->fc->nb_streams < 1)
  1220. return 0;
  1221. st = c->fc->streams[c->fc->nb_streams-1];
  1222. sc = st->priv_data;
  1223. if (sc->time_scale) {
  1224. av_log(c->fc, AV_LOG_ERROR, "Multiple mdhd?\n");
  1225. return AVERROR_INVALIDDATA;
  1226. }
  1227. version = avio_r8(pb);
  1228. if (version > 1) {
  1229. avpriv_request_sample(c->fc, "Version %d", version);
  1230. return AVERROR_PATCHWELCOME;
  1231. }
  1232. avio_rb24(pb); /* flags */
  1233. if (version == 1) {
  1234. creation_time = avio_rb64(pb);
  1235. avio_rb64(pb);
  1236. } else {
  1237. creation_time = avio_rb32(pb);
  1238. avio_rb32(pb); /* modification time */
  1239. }
  1240. mov_metadata_creation_time(&st->metadata, creation_time);
  1241. sc->time_scale = avio_rb32(pb);
  1242. if (sc->time_scale <= 0) {
  1243. av_log(c->fc, AV_LOG_ERROR, "Invalid mdhd time scale %d, defaulting to 1\n", sc->time_scale);
  1244. sc->time_scale = 1;
  1245. }
  1246. st->duration = (version == 1) ? avio_rb64(pb) : avio_rb32(pb); /* duration */
  1247. lang = avio_rb16(pb); /* language */
  1248. if (ff_mov_lang_to_iso639(lang, language))
  1249. av_dict_set(&st->metadata, "language", language, 0);
  1250. avio_rb16(pb); /* quality */
  1251. return 0;
  1252. }
  1253. static int mov_read_mvhd(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1254. {
  1255. int i;
  1256. int64_t creation_time;
  1257. int version = avio_r8(pb); /* version */
  1258. avio_rb24(pb); /* flags */
  1259. if (version == 1) {
  1260. creation_time = avio_rb64(pb);
  1261. avio_rb64(pb);
  1262. } else {
  1263. creation_time = avio_rb32(pb);
  1264. avio_rb32(pb); /* modification time */
  1265. }
  1266. mov_metadata_creation_time(&c->fc->metadata, creation_time);
  1267. c->time_scale = avio_rb32(pb); /* time scale */
  1268. if (c->time_scale <= 0) {
  1269. av_log(c->fc, AV_LOG_ERROR, "Invalid mvhd time scale %d, defaulting to 1\n", c->time_scale);
  1270. c->time_scale = 1;
  1271. }
  1272. av_log(c->fc, AV_LOG_TRACE, "time scale = %i\n", c->time_scale);
  1273. c->duration = (version == 1) ? avio_rb64(pb) : avio_rb32(pb); /* duration */
  1274. // set the AVCodecContext duration because the duration of individual tracks
  1275. // may be inaccurate
  1276. if (c->time_scale > 0 && !c->trex_data)
  1277. c->fc->duration = av_rescale(c->duration, AV_TIME_BASE, c->time_scale);
  1278. avio_rb32(pb); /* preferred scale */
  1279. avio_rb16(pb); /* preferred volume */
  1280. avio_skip(pb, 10); /* reserved */
  1281. /* movie display matrix, store it in main context and use it later on */
  1282. for (i = 0; i < 3; i++) {
  1283. c->movie_display_matrix[i][0] = avio_rb32(pb); // 16.16 fixed point
  1284. c->movie_display_matrix[i][1] = avio_rb32(pb); // 16.16 fixed point
  1285. c->movie_display_matrix[i][2] = avio_rb32(pb); // 2.30 fixed point
  1286. }
  1287. avio_rb32(pb); /* preview time */
  1288. avio_rb32(pb); /* preview duration */
  1289. avio_rb32(pb); /* poster time */
  1290. avio_rb32(pb); /* selection time */
  1291. avio_rb32(pb); /* selection duration */
  1292. avio_rb32(pb); /* current time */
  1293. avio_rb32(pb); /* next track ID */
  1294. return 0;
  1295. }
  1296. static int mov_read_enda(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1297. {
  1298. AVStream *st;
  1299. int little_endian;
  1300. if (c->fc->nb_streams < 1)
  1301. return 0;
  1302. st = c->fc->streams[c->fc->nb_streams-1];
  1303. little_endian = avio_rb16(pb) & 0xFF;
  1304. av_log(c->fc, AV_LOG_TRACE, "enda %d\n", little_endian);
  1305. if (little_endian == 1) {
  1306. switch (st->codecpar->codec_id) {
  1307. case AV_CODEC_ID_PCM_S24BE:
  1308. st->codecpar->codec_id = AV_CODEC_ID_PCM_S24LE;
  1309. break;
  1310. case AV_CODEC_ID_PCM_S32BE:
  1311. st->codecpar->codec_id = AV_CODEC_ID_PCM_S32LE;
  1312. break;
  1313. case AV_CODEC_ID_PCM_F32BE:
  1314. st->codecpar->codec_id = AV_CODEC_ID_PCM_F32LE;
  1315. break;
  1316. case AV_CODEC_ID_PCM_F64BE:
  1317. st->codecpar->codec_id = AV_CODEC_ID_PCM_F64LE;
  1318. break;
  1319. default:
  1320. break;
  1321. }
  1322. }
  1323. return 0;
  1324. }
  1325. static int mov_read_colr(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1326. {
  1327. AVStream *st;
  1328. char color_parameter_type[5] = { 0 };
  1329. uint16_t color_primaries, color_trc, color_matrix;
  1330. int ret;
  1331. if (c->fc->nb_streams < 1)
  1332. return 0;
  1333. st = c->fc->streams[c->fc->nb_streams - 1];
  1334. ret = ffio_read_size(pb, color_parameter_type, 4);
  1335. if (ret < 0)
  1336. return ret;
  1337. if (strncmp(color_parameter_type, "nclx", 4) &&
  1338. strncmp(color_parameter_type, "nclc", 4)) {
  1339. av_log(c->fc, AV_LOG_WARNING, "unsupported color_parameter_type %s\n",
  1340. color_parameter_type);
  1341. return 0;
  1342. }
  1343. color_primaries = avio_rb16(pb);
  1344. color_trc = avio_rb16(pb);
  1345. color_matrix = avio_rb16(pb);
  1346. av_log(c->fc, AV_LOG_TRACE,
  1347. "%s: pri %d trc %d matrix %d",
  1348. color_parameter_type, color_primaries, color_trc, color_matrix);
  1349. if (!strncmp(color_parameter_type, "nclx", 4)) {
  1350. uint8_t color_range = avio_r8(pb) >> 7;
  1351. av_log(c->fc, AV_LOG_TRACE, " full %"PRIu8"", color_range);
  1352. if (color_range)
  1353. st->codecpar->color_range = AVCOL_RANGE_JPEG;
  1354. else
  1355. st->codecpar->color_range = AVCOL_RANGE_MPEG;
  1356. }
  1357. if (!av_color_primaries_name(color_primaries))
  1358. color_primaries = AVCOL_PRI_UNSPECIFIED;
  1359. if (!av_color_transfer_name(color_trc))
  1360. color_trc = AVCOL_TRC_UNSPECIFIED;
  1361. if (!av_color_space_name(color_matrix))
  1362. color_matrix = AVCOL_SPC_UNSPECIFIED;
  1363. st->codecpar->color_primaries = color_primaries;
  1364. st->codecpar->color_trc = color_trc;
  1365. st->codecpar->color_space = color_matrix;
  1366. av_log(c->fc, AV_LOG_TRACE, "\n");
  1367. return 0;
  1368. }
  1369. static int mov_read_fiel(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1370. {
  1371. AVStream *st;
  1372. unsigned mov_field_order;
  1373. enum AVFieldOrder decoded_field_order = AV_FIELD_UNKNOWN;
  1374. if (c->fc->nb_streams < 1) // will happen with jp2 files
  1375. return 0;
  1376. st = c->fc->streams[c->fc->nb_streams-1];
  1377. if (atom.size < 2)
  1378. return AVERROR_INVALIDDATA;
  1379. mov_field_order = avio_rb16(pb);
  1380. if ((mov_field_order & 0xFF00) == 0x0100)
  1381. decoded_field_order = AV_FIELD_PROGRESSIVE;
  1382. else if ((mov_field_order & 0xFF00) == 0x0200) {
  1383. switch (mov_field_order & 0xFF) {
  1384. case 0x01: decoded_field_order = AV_FIELD_TT;
  1385. break;
  1386. case 0x06: decoded_field_order = AV_FIELD_BB;
  1387. break;
  1388. case 0x09: decoded_field_order = AV_FIELD_TB;
  1389. break;
  1390. case 0x0E: decoded_field_order = AV_FIELD_BT;
  1391. break;
  1392. }
  1393. }
  1394. if (decoded_field_order == AV_FIELD_UNKNOWN && mov_field_order) {
  1395. av_log(NULL, AV_LOG_ERROR, "Unknown MOV field order 0x%04x\n", mov_field_order);
  1396. }
  1397. st->codecpar->field_order = decoded_field_order;
  1398. return 0;
  1399. }
  1400. static int mov_realloc_extradata(AVCodecParameters *par, MOVAtom atom)
  1401. {
  1402. int err = 0;
  1403. uint64_t size = (uint64_t)par->extradata_size + atom.size + 8 + AV_INPUT_BUFFER_PADDING_SIZE;
  1404. if (size > INT_MAX || (uint64_t)atom.size > INT_MAX)
  1405. return AVERROR_INVALIDDATA;
  1406. if ((err = av_reallocp(&par->extradata, size)) < 0) {
  1407. par->extradata_size = 0;
  1408. return err;
  1409. }
  1410. par->extradata_size = size - AV_INPUT_BUFFER_PADDING_SIZE;
  1411. return 0;
  1412. }
  1413. /* Read a whole atom into the extradata return the size of the atom read, possibly truncated if != atom.size */
  1414. static int64_t mov_read_atom_into_extradata(MOVContext *c, AVIOContext *pb, MOVAtom atom,
  1415. AVCodecParameters *par, uint8_t *buf)
  1416. {
  1417. int64_t result = atom.size;
  1418. int err;
  1419. AV_WB32(buf , atom.size + 8);
  1420. AV_WL32(buf + 4, atom.type);
  1421. err = ffio_read_size(pb, buf + 8, atom.size);
  1422. if (err < 0) {
  1423. par->extradata_size -= atom.size;
  1424. return err;
  1425. } else if (err < atom.size) {
  1426. av_log(c->fc, AV_LOG_WARNING, "truncated extradata\n");
  1427. par->extradata_size -= atom.size - err;
  1428. result = err;
  1429. }
  1430. memset(buf + 8 + err, 0, AV_INPUT_BUFFER_PADDING_SIZE);
  1431. return result;
  1432. }
  1433. /* FIXME modify QDM2/SVQ3/H.264 decoders to take full atom as extradata */
  1434. static int mov_read_extradata(MOVContext *c, AVIOContext *pb, MOVAtom atom,
  1435. enum AVCodecID codec_id)
  1436. {
  1437. AVStream *st;
  1438. uint64_t original_size;
  1439. int err;
  1440. if (c->fc->nb_streams < 1) // will happen with jp2 files
  1441. return 0;
  1442. st = c->fc->streams[c->fc->nb_streams-1];
  1443. if (st->codecpar->codec_id != codec_id)
  1444. return 0; /* unexpected codec_id - don't mess with extradata */
  1445. original_size = st->codecpar->extradata_size;
  1446. err = mov_realloc_extradata(st->codecpar, atom);
  1447. if (err)
  1448. return err;
  1449. err = mov_read_atom_into_extradata(c, pb, atom, st->codecpar, st->codecpar->extradata + original_size);
  1450. if (err < 0)
  1451. return err;
  1452. return 0; // Note: this is the original behavior to ignore truncation.
  1453. }
  1454. /* wrapper functions for reading ALAC/AVS/MJPEG/MJPEG2000 extradata atoms only for those codecs */
  1455. static int mov_read_alac(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1456. {
  1457. return mov_read_extradata(c, pb, atom, AV_CODEC_ID_ALAC);
  1458. }
  1459. static int mov_read_avss(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1460. {
  1461. return mov_read_extradata(c, pb, atom, AV_CODEC_ID_AVS);
  1462. }
  1463. static int mov_read_jp2h(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1464. {
  1465. return mov_read_extradata(c, pb, atom, AV_CODEC_ID_JPEG2000);
  1466. }
  1467. static int mov_read_dpxe(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1468. {
  1469. return mov_read_extradata(c, pb, atom, AV_CODEC_ID_R10K);
  1470. }
  1471. static int mov_read_avid(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1472. {
  1473. int ret = mov_read_extradata(c, pb, atom, AV_CODEC_ID_AVUI);
  1474. if(ret == 0)
  1475. ret = mov_read_extradata(c, pb, atom, AV_CODEC_ID_DNXHD);
  1476. return ret;
  1477. }
  1478. static int mov_read_targa_y216(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1479. {
  1480. int ret = mov_read_extradata(c, pb, atom, AV_CODEC_ID_TARGA_Y216);
  1481. if (!ret && c->fc->nb_streams >= 1) {
  1482. AVCodecParameters *par = c->fc->streams[c->fc->nb_streams-1]->codecpar;
  1483. if (par->extradata_size >= 40) {
  1484. par->height = AV_RB16(&par->extradata[36]);
  1485. par->width = AV_RB16(&par->extradata[38]);
  1486. }
  1487. }
  1488. return ret;
  1489. }
  1490. static int mov_read_ares(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1491. {
  1492. if (c->fc->nb_streams >= 1) {
  1493. AVCodecParameters *par = c->fc->streams[c->fc->nb_streams-1]->codecpar;
  1494. if (par->codec_tag == MKTAG('A', 'V', 'i', 'n') &&
  1495. par->codec_id == AV_CODEC_ID_H264 &&
  1496. atom.size > 11) {
  1497. int cid;
  1498. avio_skip(pb, 10);
  1499. cid = avio_rb16(pb);
  1500. /* For AVID AVCI50, force width of 1440 to be able to select the correct SPS and PPS */
  1501. if (cid == 0xd4d || cid == 0xd4e)
  1502. par->width = 1440;
  1503. return 0;
  1504. } else if ((par->codec_tag == MKTAG('A', 'V', 'd', '1') ||
  1505. par->codec_tag == MKTAG('A', 'V', 'd', 'n')) &&
  1506. atom.size >= 24) {
  1507. int num, den;
  1508. avio_skip(pb, 12);
  1509. num = avio_rb32(pb);
  1510. den = avio_rb32(pb);
  1511. if (num <= 0 || den <= 0)
  1512. return 0;
  1513. switch (avio_rb32(pb)) {
  1514. case 2:
  1515. if (den >= INT_MAX / 2)
  1516. return 0;
  1517. den *= 2;
  1518. case 1:
  1519. c->fc->streams[c->fc->nb_streams-1]->display_aspect_ratio.num = num;
  1520. c->fc->streams[c->fc->nb_streams-1]->display_aspect_ratio.den = den;
  1521. default:
  1522. return 0;
  1523. }
  1524. }
  1525. }
  1526. return mov_read_avid(c, pb, atom);
  1527. }
  1528. static int mov_read_aclr(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1529. {
  1530. int ret = 0;
  1531. int length = 0;
  1532. uint64_t original_size;
  1533. if (c->fc->nb_streams >= 1) {
  1534. AVCodecParameters *par = c->fc->streams[c->fc->nb_streams-1]->codecpar;
  1535. if (par->codec_id == AV_CODEC_ID_H264)
  1536. return 0;
  1537. if (atom.size == 16) {
  1538. original_size = par->extradata_size;
  1539. ret = mov_realloc_extradata(par, atom);
  1540. if (!ret) {
  1541. length = mov_read_atom_into_extradata(c, pb, atom, par, par->extradata + original_size);
  1542. if (length == atom.size) {
  1543. const uint8_t range_value = par->extradata[original_size + 19];
  1544. switch (range_value) {
  1545. case 1:
  1546. par->color_range = AVCOL_RANGE_MPEG;
  1547. break;
  1548. case 2:
  1549. par->color_range = AVCOL_RANGE_JPEG;
  1550. break;
  1551. default:
  1552. av_log(c, AV_LOG_WARNING, "ignored unknown aclr value (%d)\n", range_value);
  1553. break;
  1554. }
  1555. ff_dlog(c, "color_range: %d\n", par->color_range);
  1556. } else {
  1557. /* For some reason the whole atom was not added to the extradata */
  1558. av_log(c, AV_LOG_ERROR, "aclr not decoded - incomplete atom\n");
  1559. }
  1560. } else {
  1561. av_log(c, AV_LOG_ERROR, "aclr not decoded - unable to add atom to extradata\n");
  1562. }
  1563. } else {
  1564. av_log(c, AV_LOG_WARNING, "aclr not decoded - unexpected size %"PRId64"\n", atom.size);
  1565. }
  1566. }
  1567. return ret;
  1568. }
  1569. static int mov_read_svq3(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1570. {
  1571. return mov_read_extradata(c, pb, atom, AV_CODEC_ID_SVQ3);
  1572. }
  1573. static int mov_read_wave(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1574. {
  1575. AVStream *st;
  1576. int ret;
  1577. if (c->fc->nb_streams < 1)
  1578. return 0;
  1579. st = c->fc->streams[c->fc->nb_streams-1];
  1580. if ((uint64_t)atom.size > (1<<30))
  1581. return AVERROR_INVALIDDATA;
  1582. if (st->codecpar->codec_id == AV_CODEC_ID_QDM2 ||
  1583. st->codecpar->codec_id == AV_CODEC_ID_QDMC ||
  1584. st->codecpar->codec_id == AV_CODEC_ID_SPEEX) {
  1585. // pass all frma atom to codec, needed at least for QDMC and QDM2
  1586. av_freep(&st->codecpar->extradata);
  1587. ret = ff_get_extradata(c->fc, st->codecpar, pb, atom.size);
  1588. if (ret < 0)
  1589. return ret;
  1590. } else if (atom.size > 8) { /* to read frma, esds atoms */
  1591. if (st->codecpar->codec_id == AV_CODEC_ID_ALAC && atom.size >= 24) {
  1592. uint64_t buffer;
  1593. ret = ffio_ensure_seekback(pb, 8);
  1594. if (ret < 0)
  1595. return ret;
  1596. buffer = avio_rb64(pb);
  1597. atom.size -= 8;
  1598. if ( (buffer & 0xFFFFFFFF) == MKBETAG('f','r','m','a')
  1599. && buffer >> 32 <= atom.size
  1600. && buffer >> 32 >= 8) {
  1601. avio_skip(pb, -8);
  1602. atom.size += 8;
  1603. } else if (!st->codecpar->extradata_size) {
  1604. #define ALAC_EXTRADATA_SIZE 36
  1605. st->codecpar->extradata = av_mallocz(ALAC_EXTRADATA_SIZE + AV_INPUT_BUFFER_PADDING_SIZE);
  1606. if (!st->codecpar->extradata)
  1607. return AVERROR(ENOMEM);
  1608. st->codecpar->extradata_size = ALAC_EXTRADATA_SIZE;
  1609. AV_WB32(st->codecpar->extradata , ALAC_EXTRADATA_SIZE);
  1610. AV_WB32(st->codecpar->extradata + 4, MKTAG('a','l','a','c'));
  1611. AV_WB64(st->codecpar->extradata + 12, buffer);
  1612. avio_read(pb, st->codecpar->extradata + 20, 16);
  1613. avio_skip(pb, atom.size - 24);
  1614. return 0;
  1615. }
  1616. }
  1617. if ((ret = mov_read_default(c, pb, atom)) < 0)
  1618. return ret;
  1619. } else
  1620. avio_skip(pb, atom.size);
  1621. return 0;
  1622. }
  1623. /**
  1624. * This function reads atom content and puts data in extradata without tag
  1625. * nor size unlike mov_read_extradata.
  1626. */
  1627. static int mov_read_glbl(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1628. {
  1629. AVStream *st;
  1630. int ret;
  1631. if (c->fc->nb_streams < 1)
  1632. return 0;
  1633. st = c->fc->streams[c->fc->nb_streams-1];
  1634. if ((uint64_t)atom.size > (1<<30))
  1635. return AVERROR_INVALIDDATA;
  1636. if (atom.size >= 10) {
  1637. // Broken files created by legacy versions of libavformat will
  1638. // wrap a whole fiel atom inside of a glbl atom.
  1639. unsigned size = avio_rb32(pb);
  1640. unsigned type = avio_rl32(pb);
  1641. avio_seek(pb, -8, SEEK_CUR);
  1642. if (type == MKTAG('f','i','e','l') && size == atom.size)
  1643. return mov_read_default(c, pb, atom);
  1644. }
  1645. if (st->codecpar->extradata_size > 1 && st->codecpar->extradata) {
  1646. av_log(c, AV_LOG_WARNING, "ignoring multiple glbl\n");
  1647. return 0;
  1648. }
  1649. av_freep(&st->codecpar->extradata);
  1650. ret = ff_get_extradata(c->fc, st->codecpar, pb, atom.size);
  1651. if (ret < 0)
  1652. return ret;
  1653. return 0;
  1654. }
  1655. static int mov_read_dvc1(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1656. {
  1657. AVStream *st;
  1658. uint8_t profile_level;
  1659. int ret;
  1660. if (c->fc->nb_streams < 1)
  1661. return 0;
  1662. st = c->fc->streams[c->fc->nb_streams-1];
  1663. if (atom.size >= (1<<28) || atom.size < 7)
  1664. return AVERROR_INVALIDDATA;
  1665. profile_level = avio_r8(pb);
  1666. if ((profile_level & 0xf0) != 0xc0)
  1667. return 0;
  1668. avio_seek(pb, 6, SEEK_CUR);
  1669. av_freep(&st->codecpar->extradata);
  1670. ret = ff_get_extradata(c->fc, st->codecpar, pb, atom.size - 7);
  1671. if (ret < 0)
  1672. return ret;
  1673. return 0;
  1674. }
  1675. /**
  1676. * An strf atom is a BITMAPINFOHEADER struct. This struct is 40 bytes itself,
  1677. * but can have extradata appended at the end after the 40 bytes belonging
  1678. * to the struct.
  1679. */
  1680. static int mov_read_strf(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1681. {
  1682. AVStream *st;
  1683. int ret;
  1684. if (c->fc->nb_streams < 1)
  1685. return 0;
  1686. if (atom.size <= 40)
  1687. return 0;
  1688. st = c->fc->streams[c->fc->nb_streams-1];
  1689. if ((uint64_t)atom.size > (1<<30))
  1690. return AVERROR_INVALIDDATA;
  1691. avio_skip(pb, 40);
  1692. av_freep(&st->codecpar->extradata);
  1693. ret = ff_get_extradata(c->fc, st->codecpar, pb, atom.size - 40);
  1694. if (ret < 0)
  1695. return ret;
  1696. return 0;
  1697. }
  1698. static int mov_read_stco(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  1699. {
  1700. AVStream *st;
  1701. MOVStreamContext *sc;
  1702. unsigned int i, entries;
  1703. if (c->fc->nb_streams < 1)
  1704. return 0;
  1705. st = c->fc->streams[c->fc->nb_streams-1];
  1706. sc = st->priv_data;
  1707. avio_r8(pb); /* version */
  1708. avio_rb24(pb); /* flags */
  1709. entries = avio_rb32(pb);
  1710. if (!entries)
  1711. return 0;
  1712. if (sc->chunk_offsets)
  1713. av_log(c->fc, AV_LOG_WARNING, "Duplicated STCO atom\n");
  1714. av_free(sc->chunk_offsets);
  1715. sc->chunk_count = 0;
  1716. sc->chunk_offsets = av_malloc_array(entries, sizeof(*sc->chunk_offsets));
  1717. if (!sc->chunk_offsets)
  1718. return AVERROR(ENOMEM);
  1719. sc->chunk_count = entries;
  1720. if (atom.type == MKTAG('s','t','c','o'))
  1721. for (i = 0; i < entries && !pb->eof_reached; i++)
  1722. sc->chunk_offsets[i] = avio_rb32(pb);
  1723. else if (atom.type == MKTAG('c','o','6','4'))
  1724. for (i = 0; i < entries && !pb->eof_reached; i++)
  1725. sc->chunk_offsets[i] = avio_rb64(pb);
  1726. else
  1727. return AVERROR_INVALIDDATA;
  1728. sc->chunk_count = i;
  1729. if (pb->eof_reached)
  1730. return AVERROR_EOF;
  1731. return 0;
  1732. }
  1733. static int mov_codec_id(AVStream *st, uint32_t format)
  1734. {
  1735. int id = ff_codec_get_id(ff_codec_movaudio_tags, format);
  1736. if (id <= 0 &&
  1737. ((format & 0xFFFF) == 'm' + ('s' << 8) ||
  1738. (format & 0xFFFF) == 'T' + ('S' << 8)))
  1739. id = ff_codec_get_id(ff_codec_wav_tags, av_bswap32(format) & 0xFFFF);
  1740. if (st->codecpar->codec_type != AVMEDIA_TYPE_VIDEO && id > 0) {
  1741. st->codecpar->codec_type = AVMEDIA_TYPE_AUDIO;
  1742. } else if (st->codecpar->codec_type != AVMEDIA_TYPE_AUDIO &&
  1743. /* skip old ASF MPEG-4 tag */
  1744. format && format != MKTAG('m','p','4','s')) {
  1745. id = ff_codec_get_id(ff_codec_movvideo_tags, format);
  1746. if (id <= 0)
  1747. id = ff_codec_get_id(ff_codec_bmp_tags, format);
  1748. if (id > 0)
  1749. st->codecpar->codec_type = AVMEDIA_TYPE_VIDEO;
  1750. else if (st->codecpar->codec_type == AVMEDIA_TYPE_DATA ||
  1751. (st->codecpar->codec_type == AVMEDIA_TYPE_SUBTITLE &&
  1752. st->codecpar->codec_id == AV_CODEC_ID_NONE)) {
  1753. id = ff_codec_get_id(ff_codec_movsubtitle_tags, format);
  1754. if (id > 0)
  1755. st->codecpar->codec_type = AVMEDIA_TYPE_SUBTITLE;
  1756. }
  1757. }
  1758. st->codecpar->codec_tag = format;
  1759. return id;
  1760. }
  1761. static void mov_parse_stsd_video(MOVContext *c, AVIOContext *pb,
  1762. AVStream *st, MOVStreamContext *sc)
  1763. {
  1764. uint8_t codec_name[32] = { 0 };
  1765. int64_t stsd_start;
  1766. unsigned int len;
  1767. /* The first 16 bytes of the video sample description are already
  1768. * read in ff_mov_read_stsd_entries() */
  1769. stsd_start = avio_tell(pb) - 16;
  1770. avio_rb16(pb); /* version */
  1771. avio_rb16(pb); /* revision level */
  1772. avio_rb32(pb); /* vendor */
  1773. avio_rb32(pb); /* temporal quality */
  1774. avio_rb32(pb); /* spatial quality */
  1775. st->codecpar->width = avio_rb16(pb); /* width */
  1776. st->codecpar->height = avio_rb16(pb); /* height */
  1777. avio_rb32(pb); /* horiz resolution */
  1778. avio_rb32(pb); /* vert resolution */
  1779. avio_rb32(pb); /* data size, always 0 */
  1780. avio_rb16(pb); /* frames per samples */
  1781. len = avio_r8(pb); /* codec name, pascal string */
  1782. if (len > 31)
  1783. len = 31;
  1784. mov_read_mac_string(c, pb, len, codec_name, sizeof(codec_name));
  1785. if (len < 31)
  1786. avio_skip(pb, 31 - len);
  1787. if (codec_name[0])
  1788. av_dict_set(&st->metadata, "encoder", codec_name, 0);
  1789. /* codec_tag YV12 triggers an UV swap in rawdec.c */
  1790. if (!strncmp(codec_name, "Planar Y'CbCr 8-bit 4:2:0", 25)) {
  1791. st->codecpar->codec_tag = MKTAG('I', '4', '2', '0');
  1792. st->codecpar->width &= ~1;
  1793. st->codecpar->height &= ~1;
  1794. }
  1795. /* Flash Media Server uses tag H.263 with Sorenson Spark */
  1796. if (st->codecpar->codec_tag == MKTAG('H','2','6','3') &&
  1797. !strncmp(codec_name, "Sorenson H263", 13))
  1798. st->codecpar->codec_id = AV_CODEC_ID_FLV1;
  1799. st->codecpar->bits_per_coded_sample = avio_rb16(pb); /* depth */
  1800. avio_seek(pb, stsd_start, SEEK_SET);
  1801. if (ff_get_qtpalette(st->codecpar->codec_id, pb, sc->palette)) {
  1802. st->codecpar->bits_per_coded_sample &= 0x1F;
  1803. sc->has_palette = 1;
  1804. }
  1805. }
  1806. static void mov_parse_stsd_audio(MOVContext *c, AVIOContext *pb,
  1807. AVStream *st, MOVStreamContext *sc)
  1808. {
  1809. int bits_per_sample, flags;
  1810. uint16_t version = avio_rb16(pb);
  1811. AVDictionaryEntry *compatible_brands = av_dict_get(c->fc->metadata, "compatible_brands", NULL, AV_DICT_MATCH_CASE);
  1812. avio_rb16(pb); /* revision level */
  1813. avio_rb32(pb); /* vendor */
  1814. st->codecpar->channels = avio_rb16(pb); /* channel count */
  1815. st->codecpar->bits_per_coded_sample = avio_rb16(pb); /* sample size */
  1816. av_log(c->fc, AV_LOG_TRACE, "audio channels %d\n", st->codecpar->channels);
  1817. sc->audio_cid = avio_rb16(pb);
  1818. avio_rb16(pb); /* packet size = 0 */
  1819. st->codecpar->sample_rate = ((avio_rb32(pb) >> 16));
  1820. // Read QT version 1 fields. In version 0 these do not exist.
  1821. av_log(c->fc, AV_LOG_TRACE, "version =%d, isom =%d\n", version, c->isom);
  1822. if (!c->isom ||
  1823. (compatible_brands && strstr(compatible_brands->value, "qt "))) {
  1824. if (version == 1) {
  1825. sc->samples_per_frame = avio_rb32(pb);
  1826. avio_rb32(pb); /* bytes per packet */
  1827. sc->bytes_per_frame = avio_rb32(pb);
  1828. avio_rb32(pb); /* bytes per sample */
  1829. } else if (version == 2) {
  1830. avio_rb32(pb); /* sizeof struct only */
  1831. st->codecpar->sample_rate = av_int2double(avio_rb64(pb));
  1832. st->codecpar->channels = avio_rb32(pb);
  1833. avio_rb32(pb); /* always 0x7F000000 */
  1834. st->codecpar->bits_per_coded_sample = avio_rb32(pb);
  1835. flags = avio_rb32(pb); /* lpcm format specific flag */
  1836. sc->bytes_per_frame = avio_rb32(pb);
  1837. sc->samples_per_frame = avio_rb32(pb);
  1838. if (st->codecpar->codec_tag == MKTAG('l','p','c','m'))
  1839. st->codecpar->codec_id =
  1840. ff_mov_get_lpcm_codec_id(st->codecpar->bits_per_coded_sample,
  1841. flags);
  1842. }
  1843. if (version == 0 || (version == 1 && sc->audio_cid != -2)) {
  1844. /* can't correctly handle variable sized packet as audio unit */
  1845. switch (st->codecpar->codec_id) {
  1846. case AV_CODEC_ID_MP2:
  1847. case AV_CODEC_ID_MP3:
  1848. st->need_parsing = AVSTREAM_PARSE_FULL;
  1849. break;
  1850. }
  1851. }
  1852. }
  1853. if (sc->format == 0) {
  1854. if (st->codecpar->bits_per_coded_sample == 8)
  1855. st->codecpar->codec_id = mov_codec_id(st, MKTAG('r','a','w',' '));
  1856. else if (st->codecpar->bits_per_coded_sample == 16)
  1857. st->codecpar->codec_id = mov_codec_id(st, MKTAG('t','w','o','s'));
  1858. }
  1859. switch (st->codecpar->codec_id) {
  1860. case AV_CODEC_ID_PCM_S8:
  1861. case AV_CODEC_ID_PCM_U8:
  1862. if (st->codecpar->bits_per_coded_sample == 16)
  1863. st->codecpar->codec_id = AV_CODEC_ID_PCM_S16BE;
  1864. break;
  1865. case AV_CODEC_ID_PCM_S16LE:
  1866. case AV_CODEC_ID_PCM_S16BE:
  1867. if (st->codecpar->bits_per_coded_sample == 8)
  1868. st->codecpar->codec_id = AV_CODEC_ID_PCM_S8;
  1869. else if (st->codecpar->bits_per_coded_sample == 24)
  1870. st->codecpar->codec_id =
  1871. st->codecpar->codec_id == AV_CODEC_ID_PCM_S16BE ?
  1872. AV_CODEC_ID_PCM_S24BE : AV_CODEC_ID_PCM_S24LE;
  1873. else if (st->codecpar->bits_per_coded_sample == 32)
  1874. st->codecpar->codec_id =
  1875. st->codecpar->codec_id == AV_CODEC_ID_PCM_S16BE ?
  1876. AV_CODEC_ID_PCM_S32BE : AV_CODEC_ID_PCM_S32LE;
  1877. break;
  1878. /* set values for old format before stsd version 1 appeared */
  1879. case AV_CODEC_ID_MACE3:
  1880. sc->samples_per_frame = 6;
  1881. sc->bytes_per_frame = 2 * st->codecpar->channels;
  1882. break;
  1883. case AV_CODEC_ID_MACE6:
  1884. sc->samples_per_frame = 6;
  1885. sc->bytes_per_frame = 1 * st->codecpar->channels;
  1886. break;
  1887. case AV_CODEC_ID_ADPCM_IMA_QT:
  1888. sc->samples_per_frame = 64;
  1889. sc->bytes_per_frame = 34 * st->codecpar->channels;
  1890. break;
  1891. case AV_CODEC_ID_GSM:
  1892. sc->samples_per_frame = 160;
  1893. sc->bytes_per_frame = 33;
  1894. break;
  1895. default:
  1896. break;
  1897. }
  1898. bits_per_sample = av_get_bits_per_sample(st->codecpar->codec_id);
  1899. if (bits_per_sample) {
  1900. st->codecpar->bits_per_coded_sample = bits_per_sample;
  1901. sc->sample_size = (bits_per_sample >> 3) * st->codecpar->channels;
  1902. }
  1903. }
  1904. static void mov_parse_stsd_subtitle(MOVContext *c, AVIOContext *pb,
  1905. AVStream *st, MOVStreamContext *sc,
  1906. int64_t size)
  1907. {
  1908. // ttxt stsd contains display flags, justification, background
  1909. // color, fonts, and default styles, so fake an atom to read it
  1910. MOVAtom fake_atom = { .size = size };
  1911. // mp4s contains a regular esds atom
  1912. if (st->codecpar->codec_tag != AV_RL32("mp4s"))
  1913. mov_read_glbl(c, pb, fake_atom);
  1914. st->codecpar->width = sc->width;
  1915. st->codecpar->height = sc->height;
  1916. }
  1917. static uint32_t yuv_to_rgba(uint32_t ycbcr)
  1918. {
  1919. uint8_t r, g, b;
  1920. int y, cb, cr;
  1921. y = (ycbcr >> 16) & 0xFF;
  1922. cr = (ycbcr >> 8) & 0xFF;
  1923. cb = ycbcr & 0xFF;
  1924. b = av_clip_uint8((1164 * (y - 16) + 2018 * (cb - 128)) / 1000);
  1925. g = av_clip_uint8((1164 * (y - 16) - 813 * (cr - 128) - 391 * (cb - 128)) / 1000);
  1926. r = av_clip_uint8((1164 * (y - 16) + 1596 * (cr - 128) ) / 1000);
  1927. return (r << 16) | (g << 8) | b;
  1928. }
  1929. static int mov_rewrite_dvd_sub_extradata(AVStream *st)
  1930. {
  1931. char buf[256] = {0};
  1932. uint8_t *src = st->codecpar->extradata;
  1933. int i;
  1934. if (st->codecpar->extradata_size != 64)
  1935. return 0;
  1936. if (st->codecpar->width > 0 && st->codecpar->height > 0)
  1937. snprintf(buf, sizeof(buf), "size: %dx%d\n",
  1938. st->codecpar->width, st->codecpar->height);
  1939. av_strlcat(buf, "palette: ", sizeof(buf));
  1940. for (i = 0; i < 16; i++) {
  1941. uint32_t yuv = AV_RB32(src + i * 4);
  1942. uint32_t rgba = yuv_to_rgba(yuv);
  1943. av_strlcatf(buf, sizeof(buf), "%06"PRIx32"%s", rgba, i != 15 ? ", " : "");
  1944. }
  1945. if (av_strlcat(buf, "\n", sizeof(buf)) >= sizeof(buf))
  1946. return 0;
  1947. av_freep(&st->codecpar->extradata);
  1948. st->codecpar->extradata_size = 0;
  1949. st->codecpar->extradata = av_mallocz(strlen(buf) + AV_INPUT_BUFFER_PADDING_SIZE);
  1950. if (!st->codecpar->extradata)
  1951. return AVERROR(ENOMEM);
  1952. st->codecpar->extradata_size = strlen(buf);
  1953. memcpy(st->codecpar->extradata, buf, st->codecpar->extradata_size);
  1954. return 0;
  1955. }
  1956. static int mov_parse_stsd_data(MOVContext *c, AVIOContext *pb,
  1957. AVStream *st, MOVStreamContext *sc,
  1958. int64_t size)
  1959. {
  1960. int ret;
  1961. if (st->codecpar->codec_tag == MKTAG('t','m','c','d')) {
  1962. if ((int)size != size)
  1963. return AVERROR(ENOMEM);
  1964. ret = ff_get_extradata(c->fc, st->codecpar, pb, size);
  1965. if (ret < 0)
  1966. return ret;
  1967. if (size > 16) {
  1968. MOVStreamContext *tmcd_ctx = st->priv_data;
  1969. int val;
  1970. val = AV_RB32(st->codecpar->extradata + 4);
  1971. tmcd_ctx->tmcd_flags = val;
  1972. st->avg_frame_rate.num = st->codecpar->extradata[16]; /* number of frame */
  1973. st->avg_frame_rate.den = 1;
  1974. #if FF_API_LAVF_AVCTX
  1975. FF_DISABLE_DEPRECATION_WARNINGS
  1976. st->codec->time_base = av_inv_q(st->avg_frame_rate);
  1977. FF_ENABLE_DEPRECATION_WARNINGS
  1978. #endif
  1979. /* adjust for per frame dur in counter mode */
  1980. if (tmcd_ctx->tmcd_flags & 0x0008) {
  1981. int timescale = AV_RB32(st->codecpar->extradata + 8);
  1982. int framedur = AV_RB32(st->codecpar->extradata + 12);
  1983. st->avg_frame_rate.num *= timescale;
  1984. st->avg_frame_rate.den *= framedur;
  1985. #if FF_API_LAVF_AVCTX
  1986. FF_DISABLE_DEPRECATION_WARNINGS
  1987. st->codec->time_base.den *= timescale;
  1988. st->codec->time_base.num *= framedur;
  1989. FF_ENABLE_DEPRECATION_WARNINGS
  1990. #endif
  1991. }
  1992. if (size > 30) {
  1993. uint32_t len = AV_RB32(st->codecpar->extradata + 18); /* name atom length */
  1994. uint32_t format = AV_RB32(st->codecpar->extradata + 22);
  1995. if (format == AV_RB32("name") && (int64_t)size >= (int64_t)len + 18) {
  1996. uint16_t str_size = AV_RB16(st->codecpar->extradata + 26); /* string length */
  1997. if (str_size > 0 && size >= (int)str_size + 26) {
  1998. char *reel_name = av_malloc(str_size + 1);
  1999. if (!reel_name)
  2000. return AVERROR(ENOMEM);
  2001. memcpy(reel_name, st->codecpar->extradata + 30, str_size);
  2002. reel_name[str_size] = 0; /* Add null terminator */
  2003. /* don't add reel_name if emtpy string */
  2004. if (*reel_name == 0) {
  2005. av_free(reel_name);
  2006. } else {
  2007. av_dict_set(&st->metadata, "reel_name", reel_name, AV_DICT_DONT_STRDUP_VAL);
  2008. }
  2009. }
  2010. }
  2011. }
  2012. }
  2013. } else {
  2014. /* other codec type, just skip (rtp, mp4s ...) */
  2015. avio_skip(pb, size);
  2016. }
  2017. return 0;
  2018. }
  2019. static int mov_finalize_stsd_codec(MOVContext *c, AVIOContext *pb,
  2020. AVStream *st, MOVStreamContext *sc)
  2021. {
  2022. if (st->codecpar->codec_type == AVMEDIA_TYPE_AUDIO &&
  2023. !st->codecpar->sample_rate && sc->time_scale > 1)
  2024. st->codecpar->sample_rate = sc->time_scale;
  2025. /* special codec parameters handling */
  2026. switch (st->codecpar->codec_id) {
  2027. #if CONFIG_DV_DEMUXER
  2028. case AV_CODEC_ID_DVAUDIO:
  2029. c->dv_fctx = avformat_alloc_context();
  2030. if (!c->dv_fctx) {
  2031. av_log(c->fc, AV_LOG_ERROR, "dv demux context alloc error\n");
  2032. return AVERROR(ENOMEM);
  2033. }
  2034. c->dv_demux = avpriv_dv_init_demux(c->dv_fctx);
  2035. if (!c->dv_demux) {
  2036. av_log(c->fc, AV_LOG_ERROR, "dv demux context init error\n");
  2037. return AVERROR(ENOMEM);
  2038. }
  2039. sc->dv_audio_container = 1;
  2040. st->codecpar->codec_id = AV_CODEC_ID_PCM_S16LE;
  2041. break;
  2042. #endif
  2043. /* no ifdef since parameters are always those */
  2044. case AV_CODEC_ID_QCELP:
  2045. st->codecpar->channels = 1;
  2046. // force sample rate for qcelp when not stored in mov
  2047. if (st->codecpar->codec_tag != MKTAG('Q','c','l','p'))
  2048. st->codecpar->sample_rate = 8000;
  2049. // FIXME: Why is the following needed for some files?
  2050. sc->samples_per_frame = 160;
  2051. if (!sc->bytes_per_frame)
  2052. sc->bytes_per_frame = 35;
  2053. break;
  2054. case AV_CODEC_ID_AMR_NB:
  2055. st->codecpar->channels = 1;
  2056. /* force sample rate for amr, stsd in 3gp does not store sample rate */
  2057. st->codecpar->sample_rate = 8000;
  2058. break;
  2059. case AV_CODEC_ID_AMR_WB:
  2060. st->codecpar->channels = 1;
  2061. st->codecpar->sample_rate = 16000;
  2062. break;
  2063. case AV_CODEC_ID_MP2:
  2064. case AV_CODEC_ID_MP3:
  2065. /* force type after stsd for m1a hdlr */
  2066. st->codecpar->codec_type = AVMEDIA_TYPE_AUDIO;
  2067. break;
  2068. case AV_CODEC_ID_GSM:
  2069. case AV_CODEC_ID_ADPCM_MS:
  2070. case AV_CODEC_ID_ADPCM_IMA_WAV:
  2071. case AV_CODEC_ID_ILBC:
  2072. case AV_CODEC_ID_MACE3:
  2073. case AV_CODEC_ID_MACE6:
  2074. case AV_CODEC_ID_QDM2:
  2075. st->codecpar->block_align = sc->bytes_per_frame;
  2076. break;
  2077. case AV_CODEC_ID_ALAC:
  2078. if (st->codecpar->extradata_size == 36) {
  2079. st->codecpar->channels = AV_RB8 (st->codecpar->extradata + 21);
  2080. st->codecpar->sample_rate = AV_RB32(st->codecpar->extradata + 32);
  2081. }
  2082. break;
  2083. case AV_CODEC_ID_AC3:
  2084. case AV_CODEC_ID_EAC3:
  2085. case AV_CODEC_ID_MPEG1VIDEO:
  2086. case AV_CODEC_ID_VC1:
  2087. case AV_CODEC_ID_VP9:
  2088. st->need_parsing = AVSTREAM_PARSE_FULL;
  2089. break;
  2090. default:
  2091. break;
  2092. }
  2093. return 0;
  2094. }
  2095. static int mov_skip_multiple_stsd(MOVContext *c, AVIOContext *pb,
  2096. int codec_tag, int format,
  2097. int64_t size)
  2098. {
  2099. int video_codec_id = ff_codec_get_id(ff_codec_movvideo_tags, format);
  2100. if (codec_tag &&
  2101. (codec_tag != format &&
  2102. // AVID 1:1 samples with differing data format and codec tag exist
  2103. (codec_tag != AV_RL32("AV1x") || format != AV_RL32("AVup")) &&
  2104. // prores is allowed to have differing data format and codec tag
  2105. codec_tag != AV_RL32("apcn") && codec_tag != AV_RL32("apch") &&
  2106. // so is dv (sigh)
  2107. codec_tag != AV_RL32("dvpp") && codec_tag != AV_RL32("dvcp") &&
  2108. (c->fc->video_codec_id ? video_codec_id != c->fc->video_codec_id
  2109. : codec_tag != MKTAG('j','p','e','g')))) {
  2110. /* Multiple fourcc, we skip JPEG. This is not correct, we should
  2111. * export it as a separate AVStream but this needs a few changes
  2112. * in the MOV demuxer, patch welcome. */
  2113. av_log(c->fc, AV_LOG_WARNING, "multiple fourcc not supported\n");
  2114. avio_skip(pb, size);
  2115. return 1;
  2116. }
  2117. return 0;
  2118. }
  2119. int ff_mov_read_stsd_entries(MOVContext *c, AVIOContext *pb, int entries)
  2120. {
  2121. AVStream *st;
  2122. MOVStreamContext *sc;
  2123. int pseudo_stream_id;
  2124. if (c->fc->nb_streams < 1)
  2125. return 0;
  2126. st = c->fc->streams[c->fc->nb_streams-1];
  2127. sc = st->priv_data;
  2128. for (pseudo_stream_id = 0;
  2129. pseudo_stream_id < entries && !pb->eof_reached;
  2130. pseudo_stream_id++) {
  2131. //Parsing Sample description table
  2132. enum AVCodecID id;
  2133. int ret, dref_id = 1;
  2134. MOVAtom a = { AV_RL32("stsd") };
  2135. int64_t start_pos = avio_tell(pb);
  2136. int64_t size = avio_rb32(pb); /* size */
  2137. uint32_t format = avio_rl32(pb); /* data format */
  2138. if (size >= 16) {
  2139. avio_rb32(pb); /* reserved */
  2140. avio_rb16(pb); /* reserved */
  2141. dref_id = avio_rb16(pb);
  2142. } else if (size <= 7) {
  2143. av_log(c->fc, AV_LOG_ERROR,
  2144. "invalid size %"PRId64" in stsd\n", size);
  2145. return AVERROR_INVALIDDATA;
  2146. }
  2147. if (mov_skip_multiple_stsd(c, pb, st->codecpar->codec_tag, format,
  2148. size - (avio_tell(pb) - start_pos)))
  2149. continue;
  2150. sc->pseudo_stream_id = st->codecpar->codec_tag ? -1 : pseudo_stream_id;
  2151. sc->dref_id= dref_id;
  2152. sc->format = format;
  2153. id = mov_codec_id(st, format);
  2154. av_log(c->fc, AV_LOG_TRACE,
  2155. "size=%"PRId64" 4CC=%s codec_type=%d\n", size,
  2156. av_fourcc2str(format), st->codecpar->codec_type);
  2157. if (st->codecpar->codec_type==AVMEDIA_TYPE_VIDEO) {
  2158. st->codecpar->codec_id = id;
  2159. mov_parse_stsd_video(c, pb, st, sc);
  2160. } else if (st->codecpar->codec_type==AVMEDIA_TYPE_AUDIO) {
  2161. st->codecpar->codec_id = id;
  2162. mov_parse_stsd_audio(c, pb, st, sc);
  2163. if (st->codecpar->sample_rate < 0) {
  2164. av_log(c->fc, AV_LOG_ERROR, "Invalid sample rate %d\n", st->codecpar->sample_rate);
  2165. return AVERROR_INVALIDDATA;
  2166. }
  2167. } else if (st->codecpar->codec_type==AVMEDIA_TYPE_SUBTITLE){
  2168. st->codecpar->codec_id = id;
  2169. mov_parse_stsd_subtitle(c, pb, st, sc,
  2170. size - (avio_tell(pb) - start_pos));
  2171. } else {
  2172. ret = mov_parse_stsd_data(c, pb, st, sc,
  2173. size - (avio_tell(pb) - start_pos));
  2174. if (ret < 0)
  2175. return ret;
  2176. }
  2177. /* this will read extra atoms at the end (wave, alac, damr, avcC, hvcC, SMI ...) */
  2178. a.size = size - (avio_tell(pb) - start_pos);
  2179. if (a.size > 8) {
  2180. if ((ret = mov_read_default(c, pb, a)) < 0)
  2181. return ret;
  2182. } else if (a.size > 0)
  2183. avio_skip(pb, a.size);
  2184. if (sc->extradata && st->codecpar->extradata) {
  2185. int extra_size = st->codecpar->extradata_size;
  2186. /* Move the current stream extradata to the stream context one. */
  2187. sc->extradata_size[pseudo_stream_id] = extra_size;
  2188. sc->extradata[pseudo_stream_id] = av_malloc(extra_size + AV_INPUT_BUFFER_PADDING_SIZE);
  2189. if (!sc->extradata[pseudo_stream_id])
  2190. return AVERROR(ENOMEM);
  2191. memcpy(sc->extradata[pseudo_stream_id], st->codecpar->extradata, extra_size);
  2192. av_freep(&st->codecpar->extradata);
  2193. st->codecpar->extradata_size = 0;
  2194. }
  2195. }
  2196. if (pb->eof_reached)
  2197. return AVERROR_EOF;
  2198. return 0;
  2199. }
  2200. static int mov_read_stsd(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  2201. {
  2202. AVStream *st;
  2203. MOVStreamContext *sc;
  2204. int ret, entries;
  2205. if (c->fc->nb_streams < 1)
  2206. return 0;
  2207. st = c->fc->streams[c->fc->nb_streams - 1];
  2208. sc = st->priv_data;
  2209. avio_r8(pb); /* version */
  2210. avio_rb24(pb); /* flags */
  2211. entries = avio_rb32(pb);
  2212. if (entries <= 0) {
  2213. av_log(c->fc, AV_LOG_ERROR, "invalid STSD entries %d\n", entries);
  2214. return AVERROR_INVALIDDATA;
  2215. }
  2216. if (sc->extradata) {
  2217. av_log(c->fc, AV_LOG_ERROR,
  2218. "Duplicate stsd found in this track.\n");
  2219. return AVERROR_INVALIDDATA;
  2220. }
  2221. /* Prepare space for hosting multiple extradata. */
  2222. sc->extradata = av_mallocz_array(entries, sizeof(*sc->extradata));
  2223. if (!sc->extradata)
  2224. return AVERROR(ENOMEM);
  2225. sc->extradata_size = av_mallocz_array(entries, sizeof(*sc->extradata_size));
  2226. if (!sc->extradata_size) {
  2227. ret = AVERROR(ENOMEM);
  2228. goto fail;
  2229. }
  2230. ret = ff_mov_read_stsd_entries(c, pb, entries);
  2231. if (ret < 0)
  2232. goto fail;
  2233. sc->stsd_count = entries;
  2234. /* Restore back the primary extradata. */
  2235. av_freep(&st->codecpar->extradata);
  2236. st->codecpar->extradata_size = sc->extradata_size[0];
  2237. if (sc->extradata_size[0]) {
  2238. st->codecpar->extradata = av_mallocz(sc->extradata_size[0] + AV_INPUT_BUFFER_PADDING_SIZE);
  2239. if (!st->codecpar->extradata)
  2240. return AVERROR(ENOMEM);
  2241. memcpy(st->codecpar->extradata, sc->extradata[0], sc->extradata_size[0]);
  2242. }
  2243. return mov_finalize_stsd_codec(c, pb, st, sc);
  2244. fail:
  2245. av_freep(&sc->extradata);
  2246. av_freep(&sc->extradata_size);
  2247. return ret;
  2248. }
  2249. static int mov_read_stsc(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  2250. {
  2251. AVStream *st;
  2252. MOVStreamContext *sc;
  2253. unsigned int i, entries;
  2254. if (c->fc->nb_streams < 1)
  2255. return 0;
  2256. st = c->fc->streams[c->fc->nb_streams-1];
  2257. sc = st->priv_data;
  2258. avio_r8(pb); /* version */
  2259. avio_rb24(pb); /* flags */
  2260. entries = avio_rb32(pb);
  2261. if ((uint64_t)entries * 12 + 4 > atom.size)
  2262. return AVERROR_INVALIDDATA;
  2263. av_log(c->fc, AV_LOG_TRACE, "track[%u].stsc.entries = %u\n", c->fc->nb_streams - 1, entries);
  2264. if (!entries)
  2265. return 0;
  2266. if (sc->stsc_data)
  2267. av_log(c->fc, AV_LOG_WARNING, "Duplicated STSC atom\n");
  2268. av_free(sc->stsc_data);
  2269. sc->stsc_count = 0;
  2270. sc->stsc_data = av_malloc_array(entries, sizeof(*sc->stsc_data));
  2271. if (!sc->stsc_data)
  2272. return AVERROR(ENOMEM);
  2273. for (i = 0; i < entries && !pb->eof_reached; i++) {
  2274. sc->stsc_data[i].first = avio_rb32(pb);
  2275. sc->stsc_data[i].count = avio_rb32(pb);
  2276. sc->stsc_data[i].id = avio_rb32(pb);
  2277. }
  2278. sc->stsc_count = i;
  2279. if (pb->eof_reached)
  2280. return AVERROR_EOF;
  2281. return 0;
  2282. }
  2283. static inline int mov_stsc_index_valid(unsigned int index, unsigned int count)
  2284. {
  2285. return index < count - 1;
  2286. }
  2287. /* Compute the samples value for the stsc entry at the given index. */
  2288. static inline int mov_get_stsc_samples(MOVStreamContext *sc, unsigned int index)
  2289. {
  2290. int chunk_count;
  2291. if (mov_stsc_index_valid(index, sc->stsc_count))
  2292. chunk_count = sc->stsc_data[index + 1].first - sc->stsc_data[index].first;
  2293. else
  2294. chunk_count = sc->chunk_count - (sc->stsc_data[index].first - 1);
  2295. return sc->stsc_data[index].count * chunk_count;
  2296. }
  2297. static int mov_read_stps(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  2298. {
  2299. AVStream *st;
  2300. MOVStreamContext *sc;
  2301. unsigned i, entries;
  2302. if (c->fc->nb_streams < 1)
  2303. return 0;
  2304. st = c->fc->streams[c->fc->nb_streams-1];
  2305. sc = st->priv_data;
  2306. avio_rb32(pb); // version + flags
  2307. entries = avio_rb32(pb);
  2308. if (sc->stps_data)
  2309. av_log(c->fc, AV_LOG_WARNING, "Duplicated STPS atom\n");
  2310. av_free(sc->stps_data);
  2311. sc->stps_count = 0;
  2312. sc->stps_data = av_malloc_array(entries, sizeof(*sc->stps_data));
  2313. if (!sc->stps_data)
  2314. return AVERROR(ENOMEM);
  2315. for (i = 0; i < entries && !pb->eof_reached; i++) {
  2316. sc->stps_data[i] = avio_rb32(pb);
  2317. }
  2318. sc->stps_count = i;
  2319. if (pb->eof_reached)
  2320. return AVERROR_EOF;
  2321. return 0;
  2322. }
  2323. static int mov_read_stss(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  2324. {
  2325. AVStream *st;
  2326. MOVStreamContext *sc;
  2327. unsigned int i, entries;
  2328. if (c->fc->nb_streams < 1)
  2329. return 0;
  2330. st = c->fc->streams[c->fc->nb_streams-1];
  2331. sc = st->priv_data;
  2332. avio_r8(pb); /* version */
  2333. avio_rb24(pb); /* flags */
  2334. entries = avio_rb32(pb);
  2335. av_log(c->fc, AV_LOG_TRACE, "keyframe_count = %u\n", entries);
  2336. if (!entries)
  2337. {
  2338. sc->keyframe_absent = 1;
  2339. if (!st->need_parsing && st->codecpar->codec_type == AVMEDIA_TYPE_VIDEO)
  2340. st->need_parsing = AVSTREAM_PARSE_HEADERS;
  2341. return 0;
  2342. }
  2343. if (sc->keyframes)
  2344. av_log(c->fc, AV_LOG_WARNING, "Duplicated STSS atom\n");
  2345. if (entries >= UINT_MAX / sizeof(int))
  2346. return AVERROR_INVALIDDATA;
  2347. av_freep(&sc->keyframes);
  2348. sc->keyframe_count = 0;
  2349. sc->keyframes = av_malloc_array(entries, sizeof(*sc->keyframes));
  2350. if (!sc->keyframes)
  2351. return AVERROR(ENOMEM);
  2352. for (i = 0; i < entries && !pb->eof_reached; i++) {
  2353. sc->keyframes[i] = avio_rb32(pb);
  2354. }
  2355. sc->keyframe_count = i;
  2356. if (pb->eof_reached)
  2357. return AVERROR_EOF;
  2358. return 0;
  2359. }
  2360. static int mov_read_stsz(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  2361. {
  2362. AVStream *st;
  2363. MOVStreamContext *sc;
  2364. unsigned int i, entries, sample_size, field_size, num_bytes;
  2365. GetBitContext gb;
  2366. unsigned char* buf;
  2367. int ret;
  2368. if (c->fc->nb_streams < 1)
  2369. return 0;
  2370. st = c->fc->streams[c->fc->nb_streams-1];
  2371. sc = st->priv_data;
  2372. avio_r8(pb); /* version */
  2373. avio_rb24(pb); /* flags */
  2374. if (atom.type == MKTAG('s','t','s','z')) {
  2375. sample_size = avio_rb32(pb);
  2376. if (!sc->sample_size) /* do not overwrite value computed in stsd */
  2377. sc->sample_size = sample_size;
  2378. sc->stsz_sample_size = sample_size;
  2379. field_size = 32;
  2380. } else {
  2381. sample_size = 0;
  2382. avio_rb24(pb); /* reserved */
  2383. field_size = avio_r8(pb);
  2384. }
  2385. entries = avio_rb32(pb);
  2386. av_log(c->fc, AV_LOG_TRACE, "sample_size = %u sample_count = %u\n", sc->sample_size, entries);
  2387. sc->sample_count = entries;
  2388. if (sample_size)
  2389. return 0;
  2390. if (field_size != 4 && field_size != 8 && field_size != 16 && field_size != 32) {
  2391. av_log(c->fc, AV_LOG_ERROR, "Invalid sample field size %u\n", field_size);
  2392. return AVERROR_INVALIDDATA;
  2393. }
  2394. if (!entries)
  2395. return 0;
  2396. if (entries >= (UINT_MAX - 4) / field_size)
  2397. return AVERROR_INVALIDDATA;
  2398. if (sc->sample_sizes)
  2399. av_log(c->fc, AV_LOG_WARNING, "Duplicated STSZ atom\n");
  2400. av_free(sc->sample_sizes);
  2401. sc->sample_count = 0;
  2402. sc->sample_sizes = av_malloc_array(entries, sizeof(*sc->sample_sizes));
  2403. if (!sc->sample_sizes)
  2404. return AVERROR(ENOMEM);
  2405. num_bytes = (entries*field_size+4)>>3;
  2406. buf = av_malloc(num_bytes+AV_INPUT_BUFFER_PADDING_SIZE);
  2407. if (!buf) {
  2408. av_freep(&sc->sample_sizes);
  2409. return AVERROR(ENOMEM);
  2410. }
  2411. ret = ffio_read_size(pb, buf, num_bytes);
  2412. if (ret < 0) {
  2413. av_freep(&sc->sample_sizes);
  2414. av_free(buf);
  2415. return ret;
  2416. }
  2417. init_get_bits(&gb, buf, 8*num_bytes);
  2418. for (i = 0; i < entries && !pb->eof_reached; i++) {
  2419. sc->sample_sizes[i] = get_bits_long(&gb, field_size);
  2420. sc->data_size += sc->sample_sizes[i];
  2421. }
  2422. sc->sample_count = i;
  2423. av_free(buf);
  2424. if (pb->eof_reached)
  2425. return AVERROR_EOF;
  2426. return 0;
  2427. }
  2428. static int mov_read_stts(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  2429. {
  2430. AVStream *st;
  2431. MOVStreamContext *sc;
  2432. unsigned int i, entries;
  2433. int64_t duration=0;
  2434. int64_t total_sample_count=0;
  2435. if (c->fc->nb_streams < 1)
  2436. return 0;
  2437. st = c->fc->streams[c->fc->nb_streams-1];
  2438. sc = st->priv_data;
  2439. avio_r8(pb); /* version */
  2440. avio_rb24(pb); /* flags */
  2441. entries = avio_rb32(pb);
  2442. av_log(c->fc, AV_LOG_TRACE, "track[%u].stts.entries = %u\n",
  2443. c->fc->nb_streams-1, entries);
  2444. if (sc->stts_data)
  2445. av_log(c->fc, AV_LOG_WARNING, "Duplicated STTS atom\n");
  2446. av_free(sc->stts_data);
  2447. sc->stts_count = 0;
  2448. sc->stts_data = av_malloc_array(entries, sizeof(*sc->stts_data));
  2449. if (!sc->stts_data)
  2450. return AVERROR(ENOMEM);
  2451. for (i = 0; i < entries && !pb->eof_reached; i++) {
  2452. int sample_duration;
  2453. unsigned int sample_count;
  2454. sample_count=avio_rb32(pb);
  2455. sample_duration = avio_rb32(pb);
  2456. sc->stts_data[i].count= sample_count;
  2457. sc->stts_data[i].duration= sample_duration;
  2458. av_log(c->fc, AV_LOG_TRACE, "sample_count=%d, sample_duration=%d\n",
  2459. sample_count, sample_duration);
  2460. if ( i+1 == entries
  2461. && i
  2462. && sample_count == 1
  2463. && total_sample_count > 100
  2464. && sample_duration/10 > duration / total_sample_count)
  2465. sample_duration = duration / total_sample_count;
  2466. duration+=(int64_t)sample_duration*sample_count;
  2467. total_sample_count+=sample_count;
  2468. }
  2469. sc->stts_count = i;
  2470. sc->duration_for_fps += duration;
  2471. sc->nb_frames_for_fps += total_sample_count;
  2472. if (pb->eof_reached)
  2473. return AVERROR_EOF;
  2474. st->nb_frames= total_sample_count;
  2475. if (duration)
  2476. st->duration= duration;
  2477. sc->track_end = duration;
  2478. return 0;
  2479. }
  2480. static void mov_update_dts_shift(MOVStreamContext *sc, int duration)
  2481. {
  2482. if (duration < 0) {
  2483. if (duration == INT_MIN) {
  2484. av_log(NULL, AV_LOG_WARNING, "mov_update_dts_shift(): dts_shift set to %d\n", INT_MAX);
  2485. duration++;
  2486. }
  2487. sc->dts_shift = FFMAX(sc->dts_shift, -duration);
  2488. }
  2489. }
  2490. static int mov_read_ctts(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  2491. {
  2492. AVStream *st;
  2493. MOVStreamContext *sc;
  2494. unsigned int i, j, entries, ctts_count = 0;
  2495. if (c->fc->nb_streams < 1)
  2496. return 0;
  2497. st = c->fc->streams[c->fc->nb_streams-1];
  2498. sc = st->priv_data;
  2499. avio_r8(pb); /* version */
  2500. avio_rb24(pb); /* flags */
  2501. entries = avio_rb32(pb);
  2502. av_log(c->fc, AV_LOG_TRACE, "track[%u].ctts.entries = %u\n", c->fc->nb_streams - 1, entries);
  2503. if (!entries)
  2504. return 0;
  2505. if (entries >= UINT_MAX / sizeof(*sc->ctts_data))
  2506. return AVERROR_INVALIDDATA;
  2507. av_freep(&sc->ctts_data);
  2508. sc->ctts_data = av_fast_realloc(NULL, &sc->ctts_allocated_size, entries * sizeof(*sc->ctts_data));
  2509. if (!sc->ctts_data)
  2510. return AVERROR(ENOMEM);
  2511. for (i = 0; i < entries && !pb->eof_reached; i++) {
  2512. int count =avio_rb32(pb);
  2513. int duration =avio_rb32(pb);
  2514. if (count <= 0) {
  2515. av_log(c->fc, AV_LOG_TRACE,
  2516. "ignoring CTTS entry with count=%d duration=%d\n",
  2517. count, duration);
  2518. continue;
  2519. }
  2520. /* Expand entries such that we have a 1-1 mapping with samples. */
  2521. for (j = 0; j < count; j++)
  2522. add_ctts_entry(&sc->ctts_data, &ctts_count, &sc->ctts_allocated_size, 1, duration);
  2523. av_log(c->fc, AV_LOG_TRACE, "count=%d, duration=%d\n",
  2524. count, duration);
  2525. if (FFNABS(duration) < -(1<<28) && i+2<entries) {
  2526. av_log(c->fc, AV_LOG_WARNING, "CTTS invalid\n");
  2527. av_freep(&sc->ctts_data);
  2528. sc->ctts_count = 0;
  2529. return 0;
  2530. }
  2531. if (i+2<entries)
  2532. mov_update_dts_shift(sc, duration);
  2533. }
  2534. sc->ctts_count = ctts_count;
  2535. if (pb->eof_reached)
  2536. return AVERROR_EOF;
  2537. av_log(c->fc, AV_LOG_TRACE, "dts shift %d\n", sc->dts_shift);
  2538. return 0;
  2539. }
  2540. static int mov_read_sbgp(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  2541. {
  2542. AVStream *st;
  2543. MOVStreamContext *sc;
  2544. unsigned int i, entries;
  2545. uint8_t version;
  2546. uint32_t grouping_type;
  2547. if (c->fc->nb_streams < 1)
  2548. return 0;
  2549. st = c->fc->streams[c->fc->nb_streams-1];
  2550. sc = st->priv_data;
  2551. version = avio_r8(pb); /* version */
  2552. avio_rb24(pb); /* flags */
  2553. grouping_type = avio_rl32(pb);
  2554. if (grouping_type != MKTAG( 'r','a','p',' '))
  2555. return 0; /* only support 'rap ' grouping */
  2556. if (version == 1)
  2557. avio_rb32(pb); /* grouping_type_parameter */
  2558. entries = avio_rb32(pb);
  2559. if (!entries)
  2560. return 0;
  2561. if (sc->rap_group)
  2562. av_log(c->fc, AV_LOG_WARNING, "Duplicated SBGP atom\n");
  2563. av_free(sc->rap_group);
  2564. sc->rap_group_count = 0;
  2565. sc->rap_group = av_malloc_array(entries, sizeof(*sc->rap_group));
  2566. if (!sc->rap_group)
  2567. return AVERROR(ENOMEM);
  2568. for (i = 0; i < entries && !pb->eof_reached; i++) {
  2569. sc->rap_group[i].count = avio_rb32(pb); /* sample_count */
  2570. sc->rap_group[i].index = avio_rb32(pb); /* group_description_index */
  2571. }
  2572. sc->rap_group_count = i;
  2573. return pb->eof_reached ? AVERROR_EOF : 0;
  2574. }
  2575. /**
  2576. * Get ith edit list entry (media time, duration).
  2577. */
  2578. static int get_edit_list_entry(MOVContext *mov,
  2579. const MOVStreamContext *msc,
  2580. unsigned int edit_list_index,
  2581. int64_t *edit_list_media_time,
  2582. int64_t *edit_list_duration,
  2583. int64_t global_timescale)
  2584. {
  2585. if (edit_list_index == msc->elst_count) {
  2586. return 0;
  2587. }
  2588. *edit_list_media_time = msc->elst_data[edit_list_index].time;
  2589. *edit_list_duration = msc->elst_data[edit_list_index].duration;
  2590. /* duration is in global timescale units;convert to msc timescale */
  2591. if (global_timescale == 0) {
  2592. avpriv_request_sample(mov->fc, "Support for mvhd.timescale = 0 with editlists");
  2593. return 0;
  2594. }
  2595. *edit_list_duration = av_rescale(*edit_list_duration, msc->time_scale,
  2596. global_timescale);
  2597. return 1;
  2598. }
  2599. /**
  2600. * Find the closest previous frame to the timestamp_pts, in e_old index
  2601. * entries. Searching for just any frame / just key frames can be controlled by
  2602. * last argument 'flag'.
  2603. * Note that if ctts_data is not NULL, we will always search for a key frame
  2604. * irrespective of the value of 'flag'. If we don't find any keyframe, we will
  2605. * return the first frame of the video.
  2606. *
  2607. * Here the timestamp_pts is considered to be a presentation timestamp and
  2608. * the timestamp of index entries are considered to be decoding timestamps.
  2609. *
  2610. * Returns 0 if successful in finding a frame, else returns -1.
  2611. * Places the found index corresponding output arg.
  2612. *
  2613. * If ctts_old is not NULL, then refines the searched entry by searching
  2614. * backwards from the found timestamp, to find the frame with correct PTS.
  2615. *
  2616. * Places the found ctts_index and ctts_sample in corresponding output args.
  2617. */
  2618. static int find_prev_closest_index(AVStream *st,
  2619. AVIndexEntry *e_old,
  2620. int nb_old,
  2621. MOVStts* ctts_data,
  2622. int64_t ctts_count,
  2623. int64_t timestamp_pts,
  2624. int flag,
  2625. int64_t* index,
  2626. int64_t* ctts_index,
  2627. int64_t* ctts_sample)
  2628. {
  2629. MOVStreamContext *msc = st->priv_data;
  2630. AVIndexEntry *e_keep = st->index_entries;
  2631. int nb_keep = st->nb_index_entries;
  2632. int64_t i = 0;
  2633. int64_t index_ctts_count;
  2634. av_assert0(index);
  2635. // If dts_shift > 0, then all the index timestamps will have to be offset by
  2636. // at least dts_shift amount to obtain PTS.
  2637. // Hence we decrement the searched timestamp_pts by dts_shift to find the closest index element.
  2638. if (msc->dts_shift > 0) {
  2639. timestamp_pts -= msc->dts_shift;
  2640. }
  2641. st->index_entries = e_old;
  2642. st->nb_index_entries = nb_old;
  2643. *index = av_index_search_timestamp(st, timestamp_pts, flag | AVSEEK_FLAG_BACKWARD);
  2644. // Keep going backwards in the index entries until the timestamp is the same.
  2645. if (*index >= 0) {
  2646. for (i = *index; i > 0 && e_old[i].timestamp == e_old[i - 1].timestamp;
  2647. i--) {
  2648. if ((flag & AVSEEK_FLAG_ANY) ||
  2649. (e_old[i - 1].flags & AVINDEX_KEYFRAME)) {
  2650. *index = i - 1;
  2651. }
  2652. }
  2653. }
  2654. // If we have CTTS then refine the search, by searching backwards over PTS
  2655. // computed by adding corresponding CTTS durations to index timestamps.
  2656. if (ctts_data && *index >= 0) {
  2657. av_assert0(ctts_index);
  2658. av_assert0(ctts_sample);
  2659. // Find out the ctts_index for the found frame.
  2660. *ctts_index = 0;
  2661. *ctts_sample = 0;
  2662. for (index_ctts_count = 0; index_ctts_count < *index; index_ctts_count++) {
  2663. if (*ctts_index < ctts_count) {
  2664. (*ctts_sample)++;
  2665. if (ctts_data[*ctts_index].count == *ctts_sample) {
  2666. (*ctts_index)++;
  2667. *ctts_sample = 0;
  2668. }
  2669. }
  2670. }
  2671. while (*index >= 0 && (*ctts_index) >= 0) {
  2672. // Find a "key frame" with PTS <= timestamp_pts (So that we can decode B-frames correctly).
  2673. // No need to add dts_shift to the timestamp here becase timestamp_pts has already been
  2674. // compensated by dts_shift above.
  2675. if ((e_old[*index].timestamp + ctts_data[*ctts_index].duration) <= timestamp_pts &&
  2676. (e_old[*index].flags & AVINDEX_KEYFRAME)) {
  2677. break;
  2678. }
  2679. (*index)--;
  2680. if (*ctts_sample == 0) {
  2681. (*ctts_index)--;
  2682. if (*ctts_index >= 0)
  2683. *ctts_sample = ctts_data[*ctts_index].count - 1;
  2684. } else {
  2685. (*ctts_sample)--;
  2686. }
  2687. }
  2688. }
  2689. /* restore AVStream state*/
  2690. st->index_entries = e_keep;
  2691. st->nb_index_entries = nb_keep;
  2692. return *index >= 0 ? 0 : -1;
  2693. }
  2694. /**
  2695. * Add index entry with the given values, to the end of st->index_entries.
  2696. * Returns the new size st->index_entries if successful, else returns -1.
  2697. *
  2698. * This function is similar to ff_add_index_entry in libavformat/utils.c
  2699. * except that here we are always unconditionally adding an index entry to
  2700. * the end, instead of searching the entries list and skipping the add if
  2701. * there is an existing entry with the same timestamp.
  2702. * This is needed because the mov_fix_index calls this func with the same
  2703. * unincremented timestamp for successive discarded frames.
  2704. */
  2705. static int64_t add_index_entry(AVStream *st, int64_t pos, int64_t timestamp,
  2706. int size, int distance, int flags)
  2707. {
  2708. AVIndexEntry *entries, *ie;
  2709. int64_t index = -1;
  2710. const size_t min_size_needed = (st->nb_index_entries + 1) * sizeof(AVIndexEntry);
  2711. // Double the allocation each time, to lower memory fragmentation.
  2712. // Another difference from ff_add_index_entry function.
  2713. const size_t requested_size =
  2714. min_size_needed > st->index_entries_allocated_size ?
  2715. FFMAX(min_size_needed, 2 * st->index_entries_allocated_size) :
  2716. min_size_needed;
  2717. if((unsigned)st->nb_index_entries + 1 >= UINT_MAX / sizeof(AVIndexEntry))
  2718. return -1;
  2719. entries = av_fast_realloc(st->index_entries,
  2720. &st->index_entries_allocated_size,
  2721. requested_size);
  2722. if(!entries)
  2723. return -1;
  2724. st->index_entries= entries;
  2725. index= st->nb_index_entries++;
  2726. ie= &entries[index];
  2727. ie->pos = pos;
  2728. ie->timestamp = timestamp;
  2729. ie->min_distance= distance;
  2730. ie->size= size;
  2731. ie->flags = flags;
  2732. return index;
  2733. }
  2734. /**
  2735. * Rewrite timestamps of index entries in the range [end_index - frame_duration_buffer_size, end_index)
  2736. * by subtracting end_ts successively by the amounts given in frame_duration_buffer.
  2737. */
  2738. static void fix_index_entry_timestamps(AVStream* st, int end_index, int64_t end_ts,
  2739. int64_t* frame_duration_buffer,
  2740. int frame_duration_buffer_size) {
  2741. int i = 0;
  2742. av_assert0(end_index >= 0 && end_index <= st->nb_index_entries);
  2743. for (i = 0; i < frame_duration_buffer_size; i++) {
  2744. end_ts -= frame_duration_buffer[frame_duration_buffer_size - 1 - i];
  2745. st->index_entries[end_index - 1 - i].timestamp = end_ts;
  2746. }
  2747. }
  2748. /**
  2749. * Append a new ctts entry to ctts_data.
  2750. * Returns the new ctts_count if successful, else returns -1.
  2751. */
  2752. static int64_t add_ctts_entry(MOVStts** ctts_data, unsigned int* ctts_count, unsigned int* allocated_size,
  2753. int count, int duration)
  2754. {
  2755. MOVStts *ctts_buf_new;
  2756. const size_t min_size_needed = (*ctts_count + 1) * sizeof(MOVStts);
  2757. const size_t requested_size =
  2758. min_size_needed > *allocated_size ?
  2759. FFMAX(min_size_needed, 2 * (*allocated_size)) :
  2760. min_size_needed;
  2761. if((unsigned)(*ctts_count) + 1 >= UINT_MAX / sizeof(MOVStts))
  2762. return -1;
  2763. ctts_buf_new = av_fast_realloc(*ctts_data, allocated_size, requested_size);
  2764. if(!ctts_buf_new)
  2765. return -1;
  2766. *ctts_data = ctts_buf_new;
  2767. ctts_buf_new[*ctts_count].count = count;
  2768. ctts_buf_new[*ctts_count].duration = duration;
  2769. *ctts_count = (*ctts_count) + 1;
  2770. return *ctts_count;
  2771. }
  2772. static void mov_current_sample_inc(MOVStreamContext *sc)
  2773. {
  2774. sc->current_sample++;
  2775. sc->current_index++;
  2776. if (sc->index_ranges &&
  2777. sc->current_index >= sc->current_index_range->end &&
  2778. sc->current_index_range->end) {
  2779. sc->current_index_range++;
  2780. sc->current_index = sc->current_index_range->start;
  2781. }
  2782. }
  2783. static void mov_current_sample_dec(MOVStreamContext *sc)
  2784. {
  2785. sc->current_sample--;
  2786. sc->current_index--;
  2787. if (sc->index_ranges &&
  2788. sc->current_index < sc->current_index_range->start &&
  2789. sc->current_index_range > sc->index_ranges) {
  2790. sc->current_index_range--;
  2791. sc->current_index = sc->current_index_range->end - 1;
  2792. }
  2793. }
  2794. static void mov_current_sample_set(MOVStreamContext *sc, int current_sample)
  2795. {
  2796. int64_t range_size;
  2797. sc->current_sample = current_sample;
  2798. sc->current_index = current_sample;
  2799. if (!sc->index_ranges) {
  2800. return;
  2801. }
  2802. for (sc->current_index_range = sc->index_ranges;
  2803. sc->current_index_range->end;
  2804. sc->current_index_range++) {
  2805. range_size = sc->current_index_range->end - sc->current_index_range->start;
  2806. if (range_size > current_sample) {
  2807. sc->current_index = sc->current_index_range->start + current_sample;
  2808. break;
  2809. }
  2810. current_sample -= range_size;
  2811. }
  2812. }
  2813. /**
  2814. * Fix st->index_entries, so that it contains only the entries (and the entries
  2815. * which are needed to decode them) that fall in the edit list time ranges.
  2816. * Also fixes the timestamps of the index entries to match the timeline
  2817. * specified the edit lists.
  2818. */
  2819. static void mov_fix_index(MOVContext *mov, AVStream *st)
  2820. {
  2821. MOVStreamContext *msc = st->priv_data;
  2822. AVIndexEntry *e_old = st->index_entries;
  2823. int nb_old = st->nb_index_entries;
  2824. const AVIndexEntry *e_old_end = e_old + nb_old;
  2825. const AVIndexEntry *current = NULL;
  2826. MOVStts *ctts_data_old = msc->ctts_data;
  2827. int64_t ctts_index_old = 0;
  2828. int64_t ctts_sample_old = 0;
  2829. int64_t ctts_count_old = msc->ctts_count;
  2830. int64_t edit_list_media_time = 0;
  2831. int64_t edit_list_duration = 0;
  2832. int64_t frame_duration = 0;
  2833. int64_t edit_list_dts_counter = 0;
  2834. int64_t edit_list_dts_entry_end = 0;
  2835. int64_t edit_list_start_ctts_sample = 0;
  2836. int64_t curr_cts;
  2837. int64_t curr_ctts = 0;
  2838. int64_t min_corrected_pts = -1;
  2839. int64_t empty_edits_sum_duration = 0;
  2840. int64_t edit_list_index = 0;
  2841. int64_t index;
  2842. int flags;
  2843. int64_t start_dts = 0;
  2844. int64_t edit_list_start_encountered = 0;
  2845. int64_t search_timestamp = 0;
  2846. int64_t* frame_duration_buffer = NULL;
  2847. int num_discarded_begin = 0;
  2848. int first_non_zero_audio_edit = -1;
  2849. int packet_skip_samples = 0;
  2850. MOVIndexRange *current_index_range;
  2851. int i;
  2852. int found_keyframe_after_edit = 0;
  2853. if (!msc->elst_data || msc->elst_count <= 0 || nb_old <= 0) {
  2854. return;
  2855. }
  2856. // allocate the index ranges array
  2857. msc->index_ranges = av_malloc((msc->elst_count + 1) * sizeof(msc->index_ranges[0]));
  2858. if (!msc->index_ranges) {
  2859. av_log(mov->fc, AV_LOG_ERROR, "Cannot allocate index ranges buffer\n");
  2860. return;
  2861. }
  2862. msc->current_index_range = msc->index_ranges;
  2863. current_index_range = msc->index_ranges - 1;
  2864. // Clean AVStream from traces of old index
  2865. st->index_entries = NULL;
  2866. st->index_entries_allocated_size = 0;
  2867. st->nb_index_entries = 0;
  2868. // Clean ctts fields of MOVStreamContext
  2869. msc->ctts_data = NULL;
  2870. msc->ctts_count = 0;
  2871. msc->ctts_index = 0;
  2872. msc->ctts_sample = 0;
  2873. msc->ctts_allocated_size = 0;
  2874. // If the dts_shift is positive (in case of negative ctts values in mov),
  2875. // then negate the DTS by dts_shift
  2876. if (msc->dts_shift > 0) {
  2877. edit_list_dts_entry_end -= msc->dts_shift;
  2878. av_log(mov->fc, AV_LOG_DEBUG, "Shifting DTS by %d because of negative CTTS.\n", msc->dts_shift);
  2879. }
  2880. start_dts = edit_list_dts_entry_end;
  2881. while (get_edit_list_entry(mov, msc, edit_list_index, &edit_list_media_time,
  2882. &edit_list_duration, mov->time_scale)) {
  2883. av_log(mov->fc, AV_LOG_DEBUG, "Processing st: %d, edit list %"PRId64" - media time: %"PRId64", duration: %"PRId64"\n",
  2884. st->index, edit_list_index, edit_list_media_time, edit_list_duration);
  2885. edit_list_index++;
  2886. edit_list_dts_counter = edit_list_dts_entry_end;
  2887. edit_list_dts_entry_end += edit_list_duration;
  2888. num_discarded_begin = 0;
  2889. if (edit_list_media_time == -1) {
  2890. empty_edits_sum_duration += edit_list_duration;
  2891. continue;
  2892. }
  2893. // If we encounter a non-negative edit list reset the skip_samples/start_pad fields and set them
  2894. // according to the edit list below.
  2895. if (st->codecpar->codec_type == AVMEDIA_TYPE_AUDIO) {
  2896. if (first_non_zero_audio_edit < 0) {
  2897. first_non_zero_audio_edit = 1;
  2898. } else {
  2899. first_non_zero_audio_edit = 0;
  2900. }
  2901. if (first_non_zero_audio_edit > 0)
  2902. st->skip_samples = msc->start_pad = 0;
  2903. }
  2904. // While reordering frame index according to edit list we must handle properly
  2905. // the scenario when edit list entry starts from none key frame.
  2906. // We find closest previous key frame and preserve it and consequent frames in index.
  2907. // All frames which are outside edit list entry time boundaries will be dropped after decoding.
  2908. search_timestamp = edit_list_media_time;
  2909. if (st->codecpar->codec_type == AVMEDIA_TYPE_AUDIO) {
  2910. // Audio decoders like AAC need need a decoder delay samples previous to the current sample,
  2911. // to correctly decode this frame. Hence for audio we seek to a frame 1 sec. before the
  2912. // edit_list_media_time to cover the decoder delay.
  2913. search_timestamp = FFMAX(search_timestamp - msc->time_scale, e_old[0].timestamp);
  2914. }
  2915. if (find_prev_closest_index(st, e_old, nb_old, ctts_data_old, ctts_count_old, search_timestamp, 0,
  2916. &index, &ctts_index_old, &ctts_sample_old) < 0) {
  2917. av_log(mov->fc, AV_LOG_WARNING,
  2918. "st: %d edit list: %"PRId64" Missing key frame while searching for timestamp: %"PRId64"\n",
  2919. st->index, edit_list_index, search_timestamp);
  2920. if (find_prev_closest_index(st, e_old, nb_old, ctts_data_old, ctts_count_old, search_timestamp, AVSEEK_FLAG_ANY,
  2921. &index, &ctts_index_old, &ctts_sample_old) < 0) {
  2922. av_log(mov->fc, AV_LOG_WARNING,
  2923. "st: %d edit list %"PRId64" Cannot find an index entry before timestamp: %"PRId64".\n",
  2924. st->index, edit_list_index, search_timestamp);
  2925. index = 0;
  2926. ctts_index_old = 0;
  2927. ctts_sample_old = 0;
  2928. }
  2929. }
  2930. current = e_old + index;
  2931. edit_list_start_ctts_sample = ctts_sample_old;
  2932. // Iterate over index and arrange it according to edit list
  2933. edit_list_start_encountered = 0;
  2934. found_keyframe_after_edit = 0;
  2935. for (; current < e_old_end; current++, index++) {
  2936. // check if frame outside edit list mark it for discard
  2937. frame_duration = (current + 1 < e_old_end) ?
  2938. ((current + 1)->timestamp - current->timestamp) : edit_list_duration;
  2939. flags = current->flags;
  2940. // frames (pts) before or after edit list
  2941. curr_cts = current->timestamp + msc->dts_shift;
  2942. curr_ctts = 0;
  2943. if (ctts_data_old && ctts_index_old < ctts_count_old) {
  2944. curr_ctts = ctts_data_old[ctts_index_old].duration;
  2945. av_log(mov->fc, AV_LOG_DEBUG, "stts: %"PRId64" ctts: %"PRId64", ctts_index: %"PRId64", ctts_count: %"PRId64"\n",
  2946. curr_cts, curr_ctts, ctts_index_old, ctts_count_old);
  2947. curr_cts += curr_ctts;
  2948. ctts_sample_old++;
  2949. if (ctts_sample_old == ctts_data_old[ctts_index_old].count) {
  2950. if (add_ctts_entry(&msc->ctts_data, &msc->ctts_count,
  2951. &msc->ctts_allocated_size,
  2952. ctts_data_old[ctts_index_old].count - edit_list_start_ctts_sample,
  2953. ctts_data_old[ctts_index_old].duration) == -1) {
  2954. av_log(mov->fc, AV_LOG_ERROR, "Cannot add CTTS entry %"PRId64" - {%"PRId64", %d}\n",
  2955. ctts_index_old,
  2956. ctts_data_old[ctts_index_old].count - edit_list_start_ctts_sample,
  2957. ctts_data_old[ctts_index_old].duration);
  2958. break;
  2959. }
  2960. ctts_index_old++;
  2961. ctts_sample_old = 0;
  2962. edit_list_start_ctts_sample = 0;
  2963. }
  2964. }
  2965. if (curr_cts < edit_list_media_time || curr_cts >= (edit_list_duration + edit_list_media_time)) {
  2966. if (st->codecpar->codec_type == AVMEDIA_TYPE_AUDIO && st->codecpar->codec_id != AV_CODEC_ID_VORBIS &&
  2967. curr_cts < edit_list_media_time && curr_cts + frame_duration > edit_list_media_time &&
  2968. first_non_zero_audio_edit > 0) {
  2969. packet_skip_samples = edit_list_media_time - curr_cts;
  2970. st->skip_samples += packet_skip_samples;
  2971. // Shift the index entry timestamp by packet_skip_samples to be correct.
  2972. edit_list_dts_counter -= packet_skip_samples;
  2973. if (edit_list_start_encountered == 0) {
  2974. edit_list_start_encountered = 1;
  2975. // Make timestamps strictly monotonically increasing for audio, by rewriting timestamps for
  2976. // discarded packets.
  2977. if (frame_duration_buffer) {
  2978. fix_index_entry_timestamps(st, st->nb_index_entries, edit_list_dts_counter,
  2979. frame_duration_buffer, num_discarded_begin);
  2980. av_freep(&frame_duration_buffer);
  2981. }
  2982. }
  2983. av_log(mov->fc, AV_LOG_DEBUG, "skip %d audio samples from curr_cts: %"PRId64"\n", packet_skip_samples, curr_cts);
  2984. } else {
  2985. flags |= AVINDEX_DISCARD_FRAME;
  2986. av_log(mov->fc, AV_LOG_DEBUG, "drop a frame at curr_cts: %"PRId64" @ %"PRId64"\n", curr_cts, index);
  2987. if (st->codecpar->codec_type == AVMEDIA_TYPE_AUDIO && edit_list_start_encountered == 0) {
  2988. num_discarded_begin++;
  2989. frame_duration_buffer = av_realloc(frame_duration_buffer,
  2990. num_discarded_begin * sizeof(int64_t));
  2991. if (!frame_duration_buffer) {
  2992. av_log(mov->fc, AV_LOG_ERROR, "Cannot reallocate frame duration buffer\n");
  2993. break;
  2994. }
  2995. frame_duration_buffer[num_discarded_begin - 1] = frame_duration;
  2996. // Increment skip_samples for the first non-zero audio edit list
  2997. if (first_non_zero_audio_edit > 0 && st->codecpar->codec_id != AV_CODEC_ID_VORBIS) {
  2998. st->skip_samples += frame_duration;
  2999. }
  3000. }
  3001. }
  3002. } else {
  3003. if (min_corrected_pts < 0) {
  3004. min_corrected_pts = edit_list_dts_counter + curr_ctts + msc->dts_shift;
  3005. } else {
  3006. min_corrected_pts = FFMIN(min_corrected_pts, edit_list_dts_counter + curr_ctts + msc->dts_shift);
  3007. }
  3008. if (edit_list_start_encountered == 0) {
  3009. edit_list_start_encountered = 1;
  3010. // Make timestamps strictly monotonically increasing for audio, by rewriting timestamps for
  3011. // discarded packets.
  3012. if (st->codecpar->codec_type == AVMEDIA_TYPE_AUDIO && frame_duration_buffer) {
  3013. fix_index_entry_timestamps(st, st->nb_index_entries, edit_list_dts_counter,
  3014. frame_duration_buffer, num_discarded_begin);
  3015. av_freep(&frame_duration_buffer);
  3016. }
  3017. }
  3018. }
  3019. if (add_index_entry(st, current->pos, edit_list_dts_counter, current->size,
  3020. current->min_distance, flags) == -1) {
  3021. av_log(mov->fc, AV_LOG_ERROR, "Cannot add index entry\n");
  3022. break;
  3023. }
  3024. // Update the index ranges array
  3025. if (current_index_range < msc->index_ranges || index != current_index_range->end) {
  3026. current_index_range++;
  3027. current_index_range->start = index;
  3028. }
  3029. current_index_range->end = index + 1;
  3030. // Only start incrementing DTS in frame_duration amounts, when we encounter a frame in edit list.
  3031. if (edit_list_start_encountered > 0) {
  3032. edit_list_dts_counter = edit_list_dts_counter + frame_duration;
  3033. }
  3034. // Break when found first key frame after edit entry completion
  3035. if ((curr_cts + frame_duration >= (edit_list_duration + edit_list_media_time)) &&
  3036. ((flags & AVINDEX_KEYFRAME) || ((st->codecpar->codec_type == AVMEDIA_TYPE_AUDIO)))) {
  3037. if (ctts_data_old) {
  3038. // If we have CTTS and this is the the first keyframe after edit elist,
  3039. // wait for one more, because there might be trailing B-frames after this I-frame
  3040. // that do belong to the edit.
  3041. if (st->codecpar->codec_type != AVMEDIA_TYPE_AUDIO && found_keyframe_after_edit == 0) {
  3042. found_keyframe_after_edit = 1;
  3043. continue;
  3044. }
  3045. if (ctts_sample_old != 0) {
  3046. if (add_ctts_entry(&msc->ctts_data, &msc->ctts_count,
  3047. &msc->ctts_allocated_size,
  3048. ctts_sample_old - edit_list_start_ctts_sample,
  3049. ctts_data_old[ctts_index_old].duration) == -1) {
  3050. av_log(mov->fc, AV_LOG_ERROR, "Cannot add CTTS entry %"PRId64" - {%"PRId64", %d}\n",
  3051. ctts_index_old, ctts_sample_old - edit_list_start_ctts_sample,
  3052. ctts_data_old[ctts_index_old].duration);
  3053. break;
  3054. }
  3055. }
  3056. }
  3057. break;
  3058. }
  3059. }
  3060. }
  3061. // If there are empty edits, then min_corrected_pts might be positive intentionally. So we subtract the
  3062. // sum duration of emtpy edits here.
  3063. min_corrected_pts -= empty_edits_sum_duration;
  3064. // If the minimum pts turns out to be greater than zero after fixing the index, then we subtract the
  3065. // dts by that amount to make the first pts zero.
  3066. if (st->codecpar->codec_type == AVMEDIA_TYPE_VIDEO && min_corrected_pts > 0) {
  3067. av_log(mov->fc, AV_LOG_DEBUG, "Offset DTS by %"PRId64" to make first pts zero.\n", min_corrected_pts);
  3068. for (i = 0; i < st->nb_index_entries; ++i) {
  3069. st->index_entries[i].timestamp -= min_corrected_pts;
  3070. }
  3071. }
  3072. // Update av stream length
  3073. st->duration = edit_list_dts_entry_end - start_dts;
  3074. msc->start_pad = st->skip_samples;
  3075. // Free the old index and the old CTTS structures
  3076. av_free(e_old);
  3077. av_free(ctts_data_old);
  3078. // Null terminate the index ranges array
  3079. current_index_range++;
  3080. current_index_range->start = 0;
  3081. current_index_range->end = 0;
  3082. msc->current_index = msc->index_ranges[0].start;
  3083. }
  3084. static void mov_build_index(MOVContext *mov, AVStream *st)
  3085. {
  3086. MOVStreamContext *sc = st->priv_data;
  3087. int64_t current_offset;
  3088. int64_t current_dts = 0;
  3089. unsigned int stts_index = 0;
  3090. unsigned int stsc_index = 0;
  3091. unsigned int stss_index = 0;
  3092. unsigned int stps_index = 0;
  3093. unsigned int i, j;
  3094. uint64_t stream_size = 0;
  3095. if (sc->elst_count) {
  3096. int i, edit_start_index = 0, multiple_edits = 0;
  3097. int64_t empty_duration = 0; // empty duration of the first edit list entry
  3098. int64_t start_time = 0; // start time of the media
  3099. for (i = 0; i < sc->elst_count; i++) {
  3100. const MOVElst *e = &sc->elst_data[i];
  3101. if (i == 0 && e->time == -1) {
  3102. /* if empty, the first entry is the start time of the stream
  3103. * relative to the presentation itself */
  3104. empty_duration = e->duration;
  3105. edit_start_index = 1;
  3106. } else if (i == edit_start_index && e->time >= 0) {
  3107. start_time = e->time;
  3108. } else {
  3109. multiple_edits = 1;
  3110. }
  3111. }
  3112. if (multiple_edits && !mov->advanced_editlist)
  3113. av_log(mov->fc, AV_LOG_WARNING, "multiple edit list entries, "
  3114. "Use -advanced_editlist to correctly decode otherwise "
  3115. "a/v desync might occur\n");
  3116. /* adjust first dts according to edit list */
  3117. if ((empty_duration || start_time) && mov->time_scale > 0) {
  3118. if (empty_duration)
  3119. empty_duration = av_rescale(empty_duration, sc->time_scale, mov->time_scale);
  3120. sc->time_offset = start_time - empty_duration;
  3121. if (!mov->advanced_editlist)
  3122. current_dts = -sc->time_offset;
  3123. }
  3124. if (!multiple_edits && !mov->advanced_editlist &&
  3125. st->codecpar->codec_id == AV_CODEC_ID_AAC && start_time > 0)
  3126. sc->start_pad = start_time;
  3127. }
  3128. /* only use old uncompressed audio chunk demuxing when stts specifies it */
  3129. if (!(st->codecpar->codec_type == AVMEDIA_TYPE_AUDIO &&
  3130. sc->stts_count == 1 && sc->stts_data[0].duration == 1)) {
  3131. unsigned int current_sample = 0;
  3132. unsigned int stts_sample = 0;
  3133. unsigned int sample_size;
  3134. unsigned int distance = 0;
  3135. unsigned int rap_group_index = 0;
  3136. unsigned int rap_group_sample = 0;
  3137. int64_t last_dts = 0;
  3138. int64_t dts_correction = 0;
  3139. int rap_group_present = sc->rap_group_count && sc->rap_group;
  3140. int key_off = (sc->keyframe_count && sc->keyframes[0] > 0) || (sc->stps_count && sc->stps_data[0] > 0);
  3141. current_dts -= sc->dts_shift;
  3142. last_dts = current_dts;
  3143. if (!sc->sample_count || st->nb_index_entries)
  3144. return;
  3145. if (sc->sample_count >= UINT_MAX / sizeof(*st->index_entries) - st->nb_index_entries)
  3146. return;
  3147. if (av_reallocp_array(&st->index_entries,
  3148. st->nb_index_entries + sc->sample_count,
  3149. sizeof(*st->index_entries)) < 0) {
  3150. st->nb_index_entries = 0;
  3151. return;
  3152. }
  3153. st->index_entries_allocated_size = (st->nb_index_entries + sc->sample_count) * sizeof(*st->index_entries);
  3154. for (i = 0; i < sc->chunk_count; i++) {
  3155. int64_t next_offset = i+1 < sc->chunk_count ? sc->chunk_offsets[i+1] : INT64_MAX;
  3156. current_offset = sc->chunk_offsets[i];
  3157. while (mov_stsc_index_valid(stsc_index, sc->stsc_count) &&
  3158. i + 1 == sc->stsc_data[stsc_index + 1].first)
  3159. stsc_index++;
  3160. if (next_offset > current_offset && sc->sample_size>0 && sc->sample_size < sc->stsz_sample_size &&
  3161. sc->stsc_data[stsc_index].count * (int64_t)sc->stsz_sample_size > next_offset - current_offset) {
  3162. av_log(mov->fc, AV_LOG_WARNING, "STSZ sample size %d invalid (too large), ignoring\n", sc->stsz_sample_size);
  3163. sc->stsz_sample_size = sc->sample_size;
  3164. }
  3165. if (sc->stsz_sample_size>0 && sc->stsz_sample_size < sc->sample_size) {
  3166. av_log(mov->fc, AV_LOG_WARNING, "STSZ sample size %d invalid (too small), ignoring\n", sc->stsz_sample_size);
  3167. sc->stsz_sample_size = sc->sample_size;
  3168. }
  3169. for (j = 0; j < sc->stsc_data[stsc_index].count; j++) {
  3170. int keyframe = 0;
  3171. if (current_sample >= sc->sample_count) {
  3172. av_log(mov->fc, AV_LOG_ERROR, "wrong sample count\n");
  3173. return;
  3174. }
  3175. if (!sc->keyframe_absent && (!sc->keyframe_count || current_sample+key_off == sc->keyframes[stss_index])) {
  3176. keyframe = 1;
  3177. if (stss_index + 1 < sc->keyframe_count)
  3178. stss_index++;
  3179. } else if (sc->stps_count && current_sample+key_off == sc->stps_data[stps_index]) {
  3180. keyframe = 1;
  3181. if (stps_index + 1 < sc->stps_count)
  3182. stps_index++;
  3183. }
  3184. if (rap_group_present && rap_group_index < sc->rap_group_count) {
  3185. if (sc->rap_group[rap_group_index].index > 0)
  3186. keyframe = 1;
  3187. if (++rap_group_sample == sc->rap_group[rap_group_index].count) {
  3188. rap_group_sample = 0;
  3189. rap_group_index++;
  3190. }
  3191. }
  3192. if (sc->keyframe_absent
  3193. && !sc->stps_count
  3194. && !rap_group_present
  3195. && (st->codecpar->codec_type == AVMEDIA_TYPE_AUDIO || (i==0 && j==0)))
  3196. keyframe = 1;
  3197. if (keyframe)
  3198. distance = 0;
  3199. sample_size = sc->stsz_sample_size > 0 ? sc->stsz_sample_size : sc->sample_sizes[current_sample];
  3200. if (sc->pseudo_stream_id == -1 ||
  3201. sc->stsc_data[stsc_index].id - 1 == sc->pseudo_stream_id) {
  3202. AVIndexEntry *e;
  3203. if (sample_size > 0x3FFFFFFF) {
  3204. av_log(mov->fc, AV_LOG_ERROR, "Sample size %u is too large\n", sample_size);
  3205. return;
  3206. }
  3207. e = &st->index_entries[st->nb_index_entries++];
  3208. e->pos = current_offset;
  3209. e->timestamp = current_dts;
  3210. e->size = sample_size;
  3211. e->min_distance = distance;
  3212. e->flags = keyframe ? AVINDEX_KEYFRAME : 0;
  3213. av_log(mov->fc, AV_LOG_TRACE, "AVIndex stream %d, sample %u, offset %"PRIx64", dts %"PRId64", "
  3214. "size %u, distance %u, keyframe %d\n", st->index, current_sample,
  3215. current_offset, current_dts, sample_size, distance, keyframe);
  3216. if (st->codecpar->codec_type == AVMEDIA_TYPE_VIDEO && st->nb_index_entries < 100)
  3217. ff_rfps_add_frame(mov->fc, st, current_dts);
  3218. }
  3219. current_offset += sample_size;
  3220. stream_size += sample_size;
  3221. /* A negative sample duration is invalid based on the spec,
  3222. * but some samples need it to correct the DTS. */
  3223. if (sc->stts_data[stts_index].duration < 0) {
  3224. av_log(mov->fc, AV_LOG_WARNING,
  3225. "Invalid SampleDelta %d in STTS, at %d st:%d\n",
  3226. sc->stts_data[stts_index].duration, stts_index,
  3227. st->index);
  3228. dts_correction += sc->stts_data[stts_index].duration - 1;
  3229. sc->stts_data[stts_index].duration = 1;
  3230. }
  3231. current_dts += sc->stts_data[stts_index].duration;
  3232. if (!dts_correction || current_dts + dts_correction > last_dts) {
  3233. current_dts += dts_correction;
  3234. dts_correction = 0;
  3235. } else {
  3236. /* Avoid creating non-monotonous DTS */
  3237. dts_correction += current_dts - last_dts - 1;
  3238. current_dts = last_dts + 1;
  3239. }
  3240. last_dts = current_dts;
  3241. distance++;
  3242. stts_sample++;
  3243. current_sample++;
  3244. if (stts_index + 1 < sc->stts_count && stts_sample == sc->stts_data[stts_index].count) {
  3245. stts_sample = 0;
  3246. stts_index++;
  3247. }
  3248. }
  3249. }
  3250. if (st->duration > 0)
  3251. st->codecpar->bit_rate = stream_size*8*sc->time_scale/st->duration;
  3252. } else {
  3253. unsigned chunk_samples, total = 0;
  3254. // compute total chunk count
  3255. for (i = 0; i < sc->stsc_count; i++) {
  3256. unsigned count, chunk_count;
  3257. chunk_samples = sc->stsc_data[i].count;
  3258. if (i != sc->stsc_count - 1 &&
  3259. sc->samples_per_frame && chunk_samples % sc->samples_per_frame) {
  3260. av_log(mov->fc, AV_LOG_ERROR, "error unaligned chunk\n");
  3261. return;
  3262. }
  3263. if (sc->samples_per_frame >= 160) { // gsm
  3264. count = chunk_samples / sc->samples_per_frame;
  3265. } else if (sc->samples_per_frame > 1) {
  3266. unsigned samples = (1024/sc->samples_per_frame)*sc->samples_per_frame;
  3267. count = (chunk_samples+samples-1) / samples;
  3268. } else {
  3269. count = (chunk_samples+1023) / 1024;
  3270. }
  3271. if (mov_stsc_index_valid(i, sc->stsc_count))
  3272. chunk_count = sc->stsc_data[i+1].first - sc->stsc_data[i].first;
  3273. else
  3274. chunk_count = sc->chunk_count - (sc->stsc_data[i].first - 1);
  3275. total += chunk_count * count;
  3276. }
  3277. av_log(mov->fc, AV_LOG_TRACE, "chunk count %u\n", total);
  3278. if (total >= UINT_MAX / sizeof(*st->index_entries) - st->nb_index_entries)
  3279. return;
  3280. if (av_reallocp_array(&st->index_entries,
  3281. st->nb_index_entries + total,
  3282. sizeof(*st->index_entries)) < 0) {
  3283. st->nb_index_entries = 0;
  3284. return;
  3285. }
  3286. st->index_entries_allocated_size = (st->nb_index_entries + total) * sizeof(*st->index_entries);
  3287. // populate index
  3288. for (i = 0; i < sc->chunk_count; i++) {
  3289. current_offset = sc->chunk_offsets[i];
  3290. if (mov_stsc_index_valid(stsc_index, sc->stsc_count) &&
  3291. i + 1 == sc->stsc_data[stsc_index + 1].first)
  3292. stsc_index++;
  3293. chunk_samples = sc->stsc_data[stsc_index].count;
  3294. while (chunk_samples > 0) {
  3295. AVIndexEntry *e;
  3296. unsigned size, samples;
  3297. if (sc->samples_per_frame > 1 && !sc->bytes_per_frame) {
  3298. avpriv_request_sample(mov->fc,
  3299. "Zero bytes per frame, but %d samples per frame",
  3300. sc->samples_per_frame);
  3301. return;
  3302. }
  3303. if (sc->samples_per_frame >= 160) { // gsm
  3304. samples = sc->samples_per_frame;
  3305. size = sc->bytes_per_frame;
  3306. } else {
  3307. if (sc->samples_per_frame > 1) {
  3308. samples = FFMIN((1024 / sc->samples_per_frame)*
  3309. sc->samples_per_frame, chunk_samples);
  3310. size = (samples / sc->samples_per_frame) * sc->bytes_per_frame;
  3311. } else {
  3312. samples = FFMIN(1024, chunk_samples);
  3313. size = samples * sc->sample_size;
  3314. }
  3315. }
  3316. if (st->nb_index_entries >= total) {
  3317. av_log(mov->fc, AV_LOG_ERROR, "wrong chunk count %u\n", total);
  3318. return;
  3319. }
  3320. if (size > 0x3FFFFFFF) {
  3321. av_log(mov->fc, AV_LOG_ERROR, "Sample size %u is too large\n", size);
  3322. return;
  3323. }
  3324. e = &st->index_entries[st->nb_index_entries++];
  3325. e->pos = current_offset;
  3326. e->timestamp = current_dts;
  3327. e->size = size;
  3328. e->min_distance = 0;
  3329. e->flags = AVINDEX_KEYFRAME;
  3330. av_log(mov->fc, AV_LOG_TRACE, "AVIndex stream %d, chunk %u, offset %"PRIx64", dts %"PRId64", "
  3331. "size %u, duration %u\n", st->index, i, current_offset, current_dts,
  3332. size, samples);
  3333. current_offset += size;
  3334. current_dts += samples;
  3335. chunk_samples -= samples;
  3336. }
  3337. }
  3338. }
  3339. if (!mov->ignore_editlist && mov->advanced_editlist) {
  3340. // Fix index according to edit lists.
  3341. mov_fix_index(mov, st);
  3342. }
  3343. }
  3344. static int test_same_origin(const char *src, const char *ref) {
  3345. char src_proto[64];
  3346. char ref_proto[64];
  3347. char src_auth[256];
  3348. char ref_auth[256];
  3349. char src_host[256];
  3350. char ref_host[256];
  3351. int src_port=-1;
  3352. int ref_port=-1;
  3353. av_url_split(src_proto, sizeof(src_proto), src_auth, sizeof(src_auth), src_host, sizeof(src_host), &src_port, NULL, 0, src);
  3354. av_url_split(ref_proto, sizeof(ref_proto), ref_auth, sizeof(ref_auth), ref_host, sizeof(ref_host), &ref_port, NULL, 0, ref);
  3355. if (strlen(src) == 0) {
  3356. return -1;
  3357. } else if (strlen(src_auth) + 1 >= sizeof(src_auth) ||
  3358. strlen(ref_auth) + 1 >= sizeof(ref_auth) ||
  3359. strlen(src_host) + 1 >= sizeof(src_host) ||
  3360. strlen(ref_host) + 1 >= sizeof(ref_host)) {
  3361. return 0;
  3362. } else if (strcmp(src_proto, ref_proto) ||
  3363. strcmp(src_auth, ref_auth) ||
  3364. strcmp(src_host, ref_host) ||
  3365. src_port != ref_port) {
  3366. return 0;
  3367. } else
  3368. return 1;
  3369. }
  3370. static int mov_open_dref(MOVContext *c, AVIOContext **pb, const char *src, MOVDref *ref)
  3371. {
  3372. /* try relative path, we do not try the absolute because it can leak information about our
  3373. system to an attacker */
  3374. if (ref->nlvl_to > 0 && ref->nlvl_from > 0) {
  3375. char filename[1025];
  3376. const char *src_path;
  3377. int i, l;
  3378. /* find a source dir */
  3379. src_path = strrchr(src, '/');
  3380. if (src_path)
  3381. src_path++;
  3382. else
  3383. src_path = src;
  3384. /* find a next level down to target */
  3385. for (i = 0, l = strlen(ref->path) - 1; l >= 0; l--)
  3386. if (ref->path[l] == '/') {
  3387. if (i == ref->nlvl_to - 1)
  3388. break;
  3389. else
  3390. i++;
  3391. }
  3392. /* compose filename if next level down to target was found */
  3393. if (i == ref->nlvl_to - 1 && src_path - src < sizeof(filename)) {
  3394. memcpy(filename, src, src_path - src);
  3395. filename[src_path - src] = 0;
  3396. for (i = 1; i < ref->nlvl_from; i++)
  3397. av_strlcat(filename, "../", sizeof(filename));
  3398. av_strlcat(filename, ref->path + l + 1, sizeof(filename));
  3399. if (!c->use_absolute_path) {
  3400. int same_origin = test_same_origin(src, filename);
  3401. if (!same_origin) {
  3402. av_log(c->fc, AV_LOG_ERROR,
  3403. "Reference with mismatching origin, %s not tried for security reasons, "
  3404. "set demuxer option use_absolute_path to allow it anyway\n",
  3405. ref->path);
  3406. return AVERROR(ENOENT);
  3407. }
  3408. if(strstr(ref->path + l + 1, "..") ||
  3409. strstr(ref->path + l + 1, ":") ||
  3410. (ref->nlvl_from > 1 && same_origin < 0) ||
  3411. (filename[0] == '/' && src_path == src))
  3412. return AVERROR(ENOENT);
  3413. }
  3414. if (strlen(filename) + 1 == sizeof(filename))
  3415. return AVERROR(ENOENT);
  3416. if (!c->fc->io_open(c->fc, pb, filename, AVIO_FLAG_READ, NULL))
  3417. return 0;
  3418. }
  3419. } else if (c->use_absolute_path) {
  3420. av_log(c->fc, AV_LOG_WARNING, "Using absolute path on user request, "
  3421. "this is a possible security issue\n");
  3422. if (!c->fc->io_open(c->fc, pb, ref->path, AVIO_FLAG_READ, NULL))
  3423. return 0;
  3424. } else {
  3425. av_log(c->fc, AV_LOG_ERROR,
  3426. "Absolute path %s not tried for security reasons, "
  3427. "set demuxer option use_absolute_path to allow absolute paths\n",
  3428. ref->path);
  3429. }
  3430. return AVERROR(ENOENT);
  3431. }
  3432. static void fix_timescale(MOVContext *c, MOVStreamContext *sc)
  3433. {
  3434. if (sc->time_scale <= 0) {
  3435. av_log(c->fc, AV_LOG_WARNING, "stream %d, timescale not set\n", sc->ffindex);
  3436. sc->time_scale = c->time_scale;
  3437. if (sc->time_scale <= 0)
  3438. sc->time_scale = 1;
  3439. }
  3440. }
  3441. static int mov_read_trak(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  3442. {
  3443. AVStream *st;
  3444. MOVStreamContext *sc;
  3445. int ret;
  3446. st = avformat_new_stream(c->fc, NULL);
  3447. if (!st) return AVERROR(ENOMEM);
  3448. st->id = c->fc->nb_streams;
  3449. sc = av_mallocz(sizeof(MOVStreamContext));
  3450. if (!sc) return AVERROR(ENOMEM);
  3451. st->priv_data = sc;
  3452. st->codecpar->codec_type = AVMEDIA_TYPE_DATA;
  3453. sc->ffindex = st->index;
  3454. c->trak_index = st->index;
  3455. if ((ret = mov_read_default(c, pb, atom)) < 0)
  3456. return ret;
  3457. c->trak_index = -1;
  3458. /* sanity checks */
  3459. if ((sc->chunk_count && (!sc->stts_count || !sc->stsc_count ||
  3460. (!sc->sample_size && !sc->sample_count))) ||
  3461. (!sc->chunk_count && sc->sample_count)) {
  3462. av_log(c->fc, AV_LOG_ERROR, "stream %d, missing mandatory atoms, broken header\n",
  3463. st->index);
  3464. return 0;
  3465. }
  3466. fix_timescale(c, sc);
  3467. avpriv_set_pts_info(st, 64, 1, sc->time_scale);
  3468. mov_build_index(c, st);
  3469. if (sc->dref_id-1 < sc->drefs_count && sc->drefs[sc->dref_id-1].path) {
  3470. MOVDref *dref = &sc->drefs[sc->dref_id - 1];
  3471. if (c->enable_drefs) {
  3472. if (mov_open_dref(c, &sc->pb, c->fc->filename, dref) < 0)
  3473. av_log(c->fc, AV_LOG_ERROR,
  3474. "stream %d, error opening alias: path='%s', dir='%s', "
  3475. "filename='%s', volume='%s', nlvl_from=%d, nlvl_to=%d\n",
  3476. st->index, dref->path, dref->dir, dref->filename,
  3477. dref->volume, dref->nlvl_from, dref->nlvl_to);
  3478. } else {
  3479. av_log(c->fc, AV_LOG_WARNING,
  3480. "Skipped opening external track: "
  3481. "stream %d, alias: path='%s', dir='%s', "
  3482. "filename='%s', volume='%s', nlvl_from=%d, nlvl_to=%d."
  3483. "Set enable_drefs to allow this.\n",
  3484. st->index, dref->path, dref->dir, dref->filename,
  3485. dref->volume, dref->nlvl_from, dref->nlvl_to);
  3486. }
  3487. } else {
  3488. sc->pb = c->fc->pb;
  3489. sc->pb_is_copied = 1;
  3490. }
  3491. if (st->codecpar->codec_type == AVMEDIA_TYPE_VIDEO) {
  3492. if (!st->sample_aspect_ratio.num && st->codecpar->width && st->codecpar->height &&
  3493. sc->height && sc->width &&
  3494. (st->codecpar->width != sc->width || st->codecpar->height != sc->height)) {
  3495. st->sample_aspect_ratio = av_d2q(((double)st->codecpar->height * sc->width) /
  3496. ((double)st->codecpar->width * sc->height), INT_MAX);
  3497. }
  3498. #if FF_API_R_FRAME_RATE
  3499. if (sc->stts_count == 1 || (sc->stts_count == 2 && sc->stts_data[1].count == 1))
  3500. av_reduce(&st->r_frame_rate.num, &st->r_frame_rate.den,
  3501. sc->time_scale, sc->stts_data[0].duration, INT_MAX);
  3502. #endif
  3503. }
  3504. // done for ai5q, ai52, ai55, ai1q, ai12 and ai15.
  3505. if (!st->codecpar->extradata_size && st->codecpar->codec_id == AV_CODEC_ID_H264 &&
  3506. TAG_IS_AVCI(st->codecpar->codec_tag)) {
  3507. ret = ff_generate_avci_extradata(st);
  3508. if (ret < 0)
  3509. return ret;
  3510. }
  3511. switch (st->codecpar->codec_id) {
  3512. #if CONFIG_H261_DECODER
  3513. case AV_CODEC_ID_H261:
  3514. #endif
  3515. #if CONFIG_H263_DECODER
  3516. case AV_CODEC_ID_H263:
  3517. #endif
  3518. #if CONFIG_MPEG4_DECODER
  3519. case AV_CODEC_ID_MPEG4:
  3520. #endif
  3521. st->codecpar->width = 0; /* let decoder init width/height */
  3522. st->codecpar->height= 0;
  3523. break;
  3524. }
  3525. // If the duration of the mp3 packets is not constant, then they could need a parser
  3526. if (st->codecpar->codec_id == AV_CODEC_ID_MP3
  3527. && sc->stts_count > 3
  3528. && sc->stts_count*10 > st->nb_frames
  3529. && sc->time_scale == st->codecpar->sample_rate) {
  3530. st->need_parsing = AVSTREAM_PARSE_FULL;
  3531. }
  3532. /* Do not need those anymore. */
  3533. av_freep(&sc->chunk_offsets);
  3534. av_freep(&sc->sample_sizes);
  3535. av_freep(&sc->keyframes);
  3536. av_freep(&sc->stts_data);
  3537. av_freep(&sc->stps_data);
  3538. av_freep(&sc->elst_data);
  3539. av_freep(&sc->rap_group);
  3540. return 0;
  3541. }
  3542. static int mov_read_ilst(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  3543. {
  3544. int ret;
  3545. c->itunes_metadata = 1;
  3546. ret = mov_read_default(c, pb, atom);
  3547. c->itunes_metadata = 0;
  3548. return ret;
  3549. }
  3550. static int mov_read_keys(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  3551. {
  3552. uint32_t count;
  3553. uint32_t i;
  3554. if (atom.size < 8)
  3555. return 0;
  3556. avio_skip(pb, 4);
  3557. count = avio_rb32(pb);
  3558. if (count > UINT_MAX / sizeof(*c->meta_keys) - 1) {
  3559. av_log(c->fc, AV_LOG_ERROR,
  3560. "The 'keys' atom with the invalid key count: %"PRIu32"\n", count);
  3561. return AVERROR_INVALIDDATA;
  3562. }
  3563. c->meta_keys_count = count + 1;
  3564. c->meta_keys = av_mallocz(c->meta_keys_count * sizeof(*c->meta_keys));
  3565. if (!c->meta_keys)
  3566. return AVERROR(ENOMEM);
  3567. for (i = 1; i <= count; ++i) {
  3568. uint32_t key_size = avio_rb32(pb);
  3569. uint32_t type = avio_rl32(pb);
  3570. if (key_size < 8) {
  3571. av_log(c->fc, AV_LOG_ERROR,
  3572. "The key# %"PRIu32" in meta has invalid size:"
  3573. "%"PRIu32"\n", i, key_size);
  3574. return AVERROR_INVALIDDATA;
  3575. }
  3576. key_size -= 8;
  3577. if (type != MKTAG('m','d','t','a')) {
  3578. avio_skip(pb, key_size);
  3579. }
  3580. c->meta_keys[i] = av_mallocz(key_size + 1);
  3581. if (!c->meta_keys[i])
  3582. return AVERROR(ENOMEM);
  3583. avio_read(pb, c->meta_keys[i], key_size);
  3584. }
  3585. return 0;
  3586. }
  3587. static int mov_read_custom(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  3588. {
  3589. int64_t end = avio_tell(pb) + atom.size;
  3590. uint8_t *key = NULL, *val = NULL, *mean = NULL;
  3591. int i;
  3592. int ret = 0;
  3593. AVStream *st;
  3594. MOVStreamContext *sc;
  3595. if (c->fc->nb_streams < 1)
  3596. return 0;
  3597. st = c->fc->streams[c->fc->nb_streams-1];
  3598. sc = st->priv_data;
  3599. for (i = 0; i < 3; i++) {
  3600. uint8_t **p;
  3601. uint32_t len, tag;
  3602. if (end - avio_tell(pb) <= 12)
  3603. break;
  3604. len = avio_rb32(pb);
  3605. tag = avio_rl32(pb);
  3606. avio_skip(pb, 4); // flags
  3607. if (len < 12 || len - 12 > end - avio_tell(pb))
  3608. break;
  3609. len -= 12;
  3610. if (tag == MKTAG('m', 'e', 'a', 'n'))
  3611. p = &mean;
  3612. else if (tag == MKTAG('n', 'a', 'm', 'e'))
  3613. p = &key;
  3614. else if (tag == MKTAG('d', 'a', 't', 'a') && len > 4) {
  3615. avio_skip(pb, 4);
  3616. len -= 4;
  3617. p = &val;
  3618. } else
  3619. break;
  3620. *p = av_malloc(len + 1);
  3621. if (!*p)
  3622. break;
  3623. ret = ffio_read_size(pb, *p, len);
  3624. if (ret < 0) {
  3625. av_freep(p);
  3626. break;
  3627. }
  3628. (*p)[len] = 0;
  3629. }
  3630. if (mean && key && val) {
  3631. if (strcmp(key, "iTunSMPB") == 0) {
  3632. int priming, remainder, samples;
  3633. if(sscanf(val, "%*X %X %X %X", &priming, &remainder, &samples) == 3){
  3634. if(priming>0 && priming<16384)
  3635. sc->start_pad = priming;
  3636. }
  3637. }
  3638. if (strcmp(key, "cdec") != 0) {
  3639. av_dict_set(&c->fc->metadata, key, val,
  3640. AV_DICT_DONT_STRDUP_KEY | AV_DICT_DONT_STRDUP_VAL);
  3641. key = val = NULL;
  3642. }
  3643. } else {
  3644. av_log(c->fc, AV_LOG_VERBOSE,
  3645. "Unhandled or malformed custom metadata of size %"PRId64"\n", atom.size);
  3646. }
  3647. avio_seek(pb, end, SEEK_SET);
  3648. av_freep(&key);
  3649. av_freep(&val);
  3650. av_freep(&mean);
  3651. return ret;
  3652. }
  3653. static int mov_read_meta(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  3654. {
  3655. while (atom.size > 8) {
  3656. uint32_t tag = avio_rl32(pb);
  3657. atom.size -= 4;
  3658. if (tag == MKTAG('h','d','l','r')) {
  3659. avio_seek(pb, -8, SEEK_CUR);
  3660. atom.size += 8;
  3661. return mov_read_default(c, pb, atom);
  3662. }
  3663. }
  3664. return 0;
  3665. }
  3666. // return 1 when matrix is identity, 0 otherwise
  3667. #define IS_MATRIX_IDENT(matrix) \
  3668. ( (matrix)[0][0] == (1 << 16) && \
  3669. (matrix)[1][1] == (1 << 16) && \
  3670. (matrix)[2][2] == (1 << 30) && \
  3671. !(matrix)[0][1] && !(matrix)[0][2] && \
  3672. !(matrix)[1][0] && !(matrix)[1][2] && \
  3673. !(matrix)[2][0] && !(matrix)[2][1])
  3674. static int mov_read_tkhd(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  3675. {
  3676. int i, j, e;
  3677. int width;
  3678. int height;
  3679. int display_matrix[3][3];
  3680. int res_display_matrix[3][3] = { { 0 } };
  3681. AVStream *st;
  3682. MOVStreamContext *sc;
  3683. int version;
  3684. int flags;
  3685. if (c->fc->nb_streams < 1)
  3686. return 0;
  3687. st = c->fc->streams[c->fc->nb_streams-1];
  3688. sc = st->priv_data;
  3689. version = avio_r8(pb);
  3690. flags = avio_rb24(pb);
  3691. st->disposition |= (flags & MOV_TKHD_FLAG_ENABLED) ? AV_DISPOSITION_DEFAULT : 0;
  3692. if (version == 1) {
  3693. avio_rb64(pb);
  3694. avio_rb64(pb);
  3695. } else {
  3696. avio_rb32(pb); /* creation time */
  3697. avio_rb32(pb); /* modification time */
  3698. }
  3699. st->id = (int)avio_rb32(pb); /* track id (NOT 0 !)*/
  3700. avio_rb32(pb); /* reserved */
  3701. /* highlevel (considering edits) duration in movie timebase */
  3702. (version == 1) ? avio_rb64(pb) : avio_rb32(pb);
  3703. avio_rb32(pb); /* reserved */
  3704. avio_rb32(pb); /* reserved */
  3705. avio_rb16(pb); /* layer */
  3706. avio_rb16(pb); /* alternate group */
  3707. avio_rb16(pb); /* volume */
  3708. avio_rb16(pb); /* reserved */
  3709. //read in the display matrix (outlined in ISO 14496-12, Section 6.2.2)
  3710. // they're kept in fixed point format through all calculations
  3711. // save u,v,z to store the whole matrix in the AV_PKT_DATA_DISPLAYMATRIX
  3712. // side data, but the scale factor is not needed to calculate aspect ratio
  3713. for (i = 0; i < 3; i++) {
  3714. display_matrix[i][0] = avio_rb32(pb); // 16.16 fixed point
  3715. display_matrix[i][1] = avio_rb32(pb); // 16.16 fixed point
  3716. display_matrix[i][2] = avio_rb32(pb); // 2.30 fixed point
  3717. }
  3718. width = avio_rb32(pb); // 16.16 fixed point track width
  3719. height = avio_rb32(pb); // 16.16 fixed point track height
  3720. sc->width = width >> 16;
  3721. sc->height = height >> 16;
  3722. // apply the moov display matrix (after the tkhd one)
  3723. for (i = 0; i < 3; i++) {
  3724. const int sh[3] = { 16, 16, 30 };
  3725. for (j = 0; j < 3; j++) {
  3726. for (e = 0; e < 3; e++) {
  3727. res_display_matrix[i][j] +=
  3728. ((int64_t) display_matrix[i][e] *
  3729. c->movie_display_matrix[e][j]) >> sh[e];
  3730. }
  3731. }
  3732. }
  3733. // save the matrix when it is not the default identity
  3734. if (!IS_MATRIX_IDENT(res_display_matrix)) {
  3735. double rotate;
  3736. av_freep(&sc->display_matrix);
  3737. sc->display_matrix = av_malloc(sizeof(int32_t) * 9);
  3738. if (!sc->display_matrix)
  3739. return AVERROR(ENOMEM);
  3740. for (i = 0; i < 3; i++)
  3741. for (j = 0; j < 3; j++)
  3742. sc->display_matrix[i * 3 + j] = res_display_matrix[i][j];
  3743. #if FF_API_OLD_ROTATE_API
  3744. rotate = av_display_rotation_get(sc->display_matrix);
  3745. if (!isnan(rotate)) {
  3746. char rotate_buf[64];
  3747. rotate = -rotate;
  3748. if (rotate < 0) // for backward compatibility
  3749. rotate += 360;
  3750. snprintf(rotate_buf, sizeof(rotate_buf), "%g", rotate);
  3751. av_dict_set(&st->metadata, "rotate", rotate_buf, 0);
  3752. }
  3753. #endif
  3754. }
  3755. // transform the display width/height according to the matrix
  3756. // to keep the same scale, use [width height 1<<16]
  3757. if (width && height && sc->display_matrix) {
  3758. double disp_transform[2];
  3759. for (i = 0; i < 2; i++)
  3760. disp_transform[i] = hypot(sc->display_matrix[0 + i],
  3761. sc->display_matrix[3 + i]);
  3762. if (disp_transform[0] > 0 && disp_transform[1] > 0 &&
  3763. disp_transform[0] < (1<<24) && disp_transform[1] < (1<<24) &&
  3764. fabs((disp_transform[0] / disp_transform[1]) - 1.0) > 0.01)
  3765. st->sample_aspect_ratio = av_d2q(
  3766. disp_transform[0] / disp_transform[1],
  3767. INT_MAX);
  3768. }
  3769. return 0;
  3770. }
  3771. static int mov_read_tfhd(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  3772. {
  3773. MOVFragment *frag = &c->fragment;
  3774. MOVTrackExt *trex = NULL;
  3775. int flags, track_id, i;
  3776. avio_r8(pb); /* version */
  3777. flags = avio_rb24(pb);
  3778. track_id = avio_rb32(pb);
  3779. if (!track_id)
  3780. return AVERROR_INVALIDDATA;
  3781. frag->track_id = track_id;
  3782. set_frag_stream(&c->frag_index, track_id);
  3783. for (i = 0; i < c->trex_count; i++)
  3784. if (c->trex_data[i].track_id == frag->track_id) {
  3785. trex = &c->trex_data[i];
  3786. break;
  3787. }
  3788. if (!trex) {
  3789. av_log(c->fc, AV_LOG_ERROR, "could not find corresponding trex\n");
  3790. return AVERROR_INVALIDDATA;
  3791. }
  3792. frag->base_data_offset = flags & MOV_TFHD_BASE_DATA_OFFSET ?
  3793. avio_rb64(pb) : flags & MOV_TFHD_DEFAULT_BASE_IS_MOOF ?
  3794. frag->moof_offset : frag->implicit_offset;
  3795. frag->stsd_id = flags & MOV_TFHD_STSD_ID ? avio_rb32(pb) : trex->stsd_id;
  3796. frag->duration = flags & MOV_TFHD_DEFAULT_DURATION ?
  3797. avio_rb32(pb) : trex->duration;
  3798. frag->size = flags & MOV_TFHD_DEFAULT_SIZE ?
  3799. avio_rb32(pb) : trex->size;
  3800. frag->flags = flags & MOV_TFHD_DEFAULT_FLAGS ?
  3801. avio_rb32(pb) : trex->flags;
  3802. av_log(c->fc, AV_LOG_TRACE, "frag flags 0x%x\n", frag->flags);
  3803. return 0;
  3804. }
  3805. static int mov_read_chap(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  3806. {
  3807. unsigned i, num;
  3808. void *new_tracks;
  3809. num = atom.size / 4;
  3810. if (!(new_tracks = av_malloc_array(num, sizeof(int))))
  3811. return AVERROR(ENOMEM);
  3812. av_free(c->chapter_tracks);
  3813. c->chapter_tracks = new_tracks;
  3814. c->nb_chapter_tracks = num;
  3815. for (i = 0; i < num && !pb->eof_reached; i++)
  3816. c->chapter_tracks[i] = avio_rb32(pb);
  3817. return 0;
  3818. }
  3819. static int mov_read_trex(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  3820. {
  3821. MOVTrackExt *trex;
  3822. int err;
  3823. if ((uint64_t)c->trex_count+1 >= UINT_MAX / sizeof(*c->trex_data))
  3824. return AVERROR_INVALIDDATA;
  3825. if ((err = av_reallocp_array(&c->trex_data, c->trex_count + 1,
  3826. sizeof(*c->trex_data))) < 0) {
  3827. c->trex_count = 0;
  3828. return err;
  3829. }
  3830. c->fc->duration = AV_NOPTS_VALUE; // the duration from mvhd is not representing the whole file when fragments are used.
  3831. trex = &c->trex_data[c->trex_count++];
  3832. avio_r8(pb); /* version */
  3833. avio_rb24(pb); /* flags */
  3834. trex->track_id = avio_rb32(pb);
  3835. trex->stsd_id = avio_rb32(pb);
  3836. trex->duration = avio_rb32(pb);
  3837. trex->size = avio_rb32(pb);
  3838. trex->flags = avio_rb32(pb);
  3839. return 0;
  3840. }
  3841. static int mov_read_tfdt(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  3842. {
  3843. MOVFragment *frag = &c->fragment;
  3844. AVStream *st = NULL;
  3845. MOVStreamContext *sc;
  3846. int version, i;
  3847. MOVFragmentStreamInfo * frag_stream_info;
  3848. int64_t base_media_decode_time;
  3849. for (i = 0; i < c->fc->nb_streams; i++) {
  3850. if (c->fc->streams[i]->id == frag->track_id) {
  3851. st = c->fc->streams[i];
  3852. break;
  3853. }
  3854. }
  3855. if (!st) {
  3856. av_log(c->fc, AV_LOG_ERROR, "could not find corresponding track id %u\n", frag->track_id);
  3857. return AVERROR_INVALIDDATA;
  3858. }
  3859. sc = st->priv_data;
  3860. if (sc->pseudo_stream_id + 1 != frag->stsd_id)
  3861. return 0;
  3862. version = avio_r8(pb);
  3863. avio_rb24(pb); /* flags */
  3864. if (version) {
  3865. base_media_decode_time = avio_rb64(pb);
  3866. } else {
  3867. base_media_decode_time = avio_rb32(pb);
  3868. }
  3869. frag_stream_info = get_current_frag_stream_info(&c->frag_index);
  3870. if (frag_stream_info)
  3871. frag_stream_info->tfdt_dts = base_media_decode_time;
  3872. sc->track_end = base_media_decode_time;
  3873. return 0;
  3874. }
  3875. static int mov_read_trun(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  3876. {
  3877. MOVFragment *frag = &c->fragment;
  3878. AVStream *st = NULL;
  3879. MOVStreamContext *sc;
  3880. MOVStts *ctts_data;
  3881. uint64_t offset;
  3882. int64_t dts, pts = AV_NOPTS_VALUE;
  3883. int data_offset = 0;
  3884. unsigned entries, first_sample_flags = frag->flags;
  3885. int flags, distance, i;
  3886. int64_t prev_dts = AV_NOPTS_VALUE;
  3887. int next_frag_index = -1, index_entry_pos;
  3888. size_t requested_size;
  3889. AVIndexEntry *new_entries;
  3890. MOVFragmentStreamInfo * frag_stream_info;
  3891. for (i = 0; i < c->fc->nb_streams; i++) {
  3892. if (c->fc->streams[i]->id == frag->track_id) {
  3893. st = c->fc->streams[i];
  3894. break;
  3895. }
  3896. }
  3897. if (!st) {
  3898. av_log(c->fc, AV_LOG_ERROR, "could not find corresponding track id %u\n", frag->track_id);
  3899. return AVERROR_INVALIDDATA;
  3900. }
  3901. sc = st->priv_data;
  3902. if (sc->pseudo_stream_id+1 != frag->stsd_id && sc->pseudo_stream_id != -1)
  3903. return 0;
  3904. // Find the next frag_index index that has a valid index_entry for
  3905. // the current track_id.
  3906. //
  3907. // A valid index_entry means the trun for the fragment was read
  3908. // and it's samples are in index_entries at the given position.
  3909. // New index entries will be inserted before the index_entry found.
  3910. index_entry_pos = st->nb_index_entries;
  3911. for (i = c->frag_index.current + 1; i < c->frag_index.nb_items; i++) {
  3912. frag_stream_info = get_frag_stream_info(&c->frag_index, i, frag->track_id);
  3913. if (frag_stream_info && frag_stream_info->index_entry >= 0) {
  3914. next_frag_index = i;
  3915. index_entry_pos = frag_stream_info->index_entry;
  3916. break;
  3917. }
  3918. }
  3919. avio_r8(pb); /* version */
  3920. flags = avio_rb24(pb);
  3921. entries = avio_rb32(pb);
  3922. av_log(c->fc, AV_LOG_TRACE, "flags 0x%x entries %u\n", flags, entries);
  3923. if ((uint64_t)entries+sc->ctts_count >= UINT_MAX/sizeof(*sc->ctts_data))
  3924. return AVERROR_INVALIDDATA;
  3925. if (flags & MOV_TRUN_DATA_OFFSET) data_offset = avio_rb32(pb);
  3926. if (flags & MOV_TRUN_FIRST_SAMPLE_FLAGS) first_sample_flags = avio_rb32(pb);
  3927. frag_stream_info = get_current_frag_stream_info(&c->frag_index);
  3928. if (frag_stream_info)
  3929. {
  3930. if (frag_stream_info->first_tfra_pts != AV_NOPTS_VALUE &&
  3931. c->use_mfra_for == FF_MOV_FLAG_MFRA_PTS) {
  3932. pts = frag_stream_info->first_tfra_pts;
  3933. av_log(c->fc, AV_LOG_DEBUG, "found mfra time %"PRId64
  3934. ", using it for pts\n", pts);
  3935. } else if (frag_stream_info->sidx_pts != AV_NOPTS_VALUE) {
  3936. // FIXME: sidx earliest_presentation_time is *PTS*, s.b.
  3937. // pts = frag_stream_info->sidx_pts;
  3938. dts = frag_stream_info->sidx_pts - sc->time_offset;
  3939. av_log(c->fc, AV_LOG_DEBUG, "found sidx time %"PRId64
  3940. ", using it for pts\n", pts);
  3941. } else if (frag_stream_info->tfdt_dts != AV_NOPTS_VALUE) {
  3942. dts = frag_stream_info->tfdt_dts - sc->time_offset;
  3943. av_log(c->fc, AV_LOG_DEBUG, "found tfdt time %"PRId64
  3944. ", using it for dts\n", dts);
  3945. } else {
  3946. dts = sc->track_end - sc->time_offset;
  3947. av_log(c->fc, AV_LOG_DEBUG, "found track end time %"PRId64
  3948. ", using it for dts\n", dts);
  3949. }
  3950. } else {
  3951. dts = sc->track_end - sc->time_offset;
  3952. av_log(c->fc, AV_LOG_DEBUG, "found track end time %"PRId64
  3953. ", using it for dts\n", dts);
  3954. }
  3955. offset = frag->base_data_offset + data_offset;
  3956. distance = 0;
  3957. av_log(c->fc, AV_LOG_TRACE, "first sample flags 0x%x\n", first_sample_flags);
  3958. // realloc space for new index entries
  3959. if((unsigned)st->nb_index_entries + entries >= UINT_MAX / sizeof(AVIndexEntry)) {
  3960. entries = UINT_MAX / sizeof(AVIndexEntry) - st->nb_index_entries;
  3961. av_log(c->fc, AV_LOG_ERROR, "Failed to add index entry\n");
  3962. }
  3963. if (entries <= 0)
  3964. return -1;
  3965. requested_size = (st->nb_index_entries + entries) * sizeof(AVIndexEntry);
  3966. new_entries = av_fast_realloc(st->index_entries,
  3967. &st->index_entries_allocated_size,
  3968. requested_size);
  3969. if(!new_entries)
  3970. return AVERROR(ENOMEM);
  3971. st->index_entries= new_entries;
  3972. requested_size = (st->nb_index_entries + entries) * sizeof(*sc->ctts_data);
  3973. ctts_data = av_fast_realloc(sc->ctts_data, &sc->ctts_allocated_size,
  3974. requested_size);
  3975. if (!ctts_data)
  3976. return AVERROR(ENOMEM);
  3977. sc->ctts_data = ctts_data;
  3978. // In case there were samples without ctts entries, ensure they get
  3979. // zero valued entries. This ensures clips which mix boxes with and
  3980. // without ctts entries don't pickup uninitialized data.
  3981. memset(sc->ctts_data + sc->ctts_count, 0,
  3982. (st->nb_index_entries - sc->ctts_count) * sizeof(*sc->ctts_data));
  3983. if (index_entry_pos < st->nb_index_entries) {
  3984. // Make hole in index_entries and ctts_data for new samples
  3985. memmove(st->index_entries + index_entry_pos + entries,
  3986. st->index_entries + index_entry_pos,
  3987. sizeof(*st->index_entries) *
  3988. (st->nb_index_entries - index_entry_pos));
  3989. memmove(sc->ctts_data + index_entry_pos + entries,
  3990. sc->ctts_data + index_entry_pos,
  3991. sizeof(*sc->ctts_data) * (sc->ctts_count - index_entry_pos));
  3992. if (index_entry_pos < sc->current_sample) {
  3993. sc->current_sample += entries;
  3994. }
  3995. }
  3996. st->nb_index_entries += entries;
  3997. sc->ctts_count = st->nb_index_entries;
  3998. // Record the index_entry position in frag_index of this fragment
  3999. if (frag_stream_info)
  4000. frag_stream_info->index_entry = index_entry_pos;
  4001. if (index_entry_pos > 0)
  4002. prev_dts = st->index_entries[index_entry_pos-1].timestamp;
  4003. for (i = 0; i < entries && !pb->eof_reached; i++) {
  4004. unsigned sample_size = frag->size;
  4005. int sample_flags = i ? frag->flags : first_sample_flags;
  4006. unsigned sample_duration = frag->duration;
  4007. unsigned ctts_duration = 0;
  4008. int keyframe = 0;
  4009. int index_entry_flags = 0;
  4010. if (flags & MOV_TRUN_SAMPLE_DURATION) sample_duration = avio_rb32(pb);
  4011. if (flags & MOV_TRUN_SAMPLE_SIZE) sample_size = avio_rb32(pb);
  4012. if (flags & MOV_TRUN_SAMPLE_FLAGS) sample_flags = avio_rb32(pb);
  4013. if (flags & MOV_TRUN_SAMPLE_CTS) ctts_duration = avio_rb32(pb);
  4014. mov_update_dts_shift(sc, ctts_duration);
  4015. if (pts != AV_NOPTS_VALUE) {
  4016. dts = pts - sc->dts_shift;
  4017. if (flags & MOV_TRUN_SAMPLE_CTS) {
  4018. dts -= ctts_duration;
  4019. } else {
  4020. dts -= sc->time_offset;
  4021. }
  4022. av_log(c->fc, AV_LOG_DEBUG,
  4023. "pts %"PRId64" calculated dts %"PRId64
  4024. " sc->dts_shift %d ctts.duration %d"
  4025. " sc->time_offset %"PRId64
  4026. " flags & MOV_TRUN_SAMPLE_CTS %d\n",
  4027. pts, dts,
  4028. sc->dts_shift, ctts_duration,
  4029. sc->time_offset, flags & MOV_TRUN_SAMPLE_CTS);
  4030. pts = AV_NOPTS_VALUE;
  4031. }
  4032. if (st->codecpar->codec_type == AVMEDIA_TYPE_AUDIO)
  4033. keyframe = 1;
  4034. else
  4035. keyframe =
  4036. !(sample_flags & (MOV_FRAG_SAMPLE_FLAG_IS_NON_SYNC |
  4037. MOV_FRAG_SAMPLE_FLAG_DEPENDS_YES));
  4038. if (keyframe) {
  4039. distance = 0;
  4040. index_entry_flags |= AVINDEX_KEYFRAME;
  4041. }
  4042. // Fragments can overlap in time. Discard overlapping frames after
  4043. // decoding.
  4044. if (prev_dts >= dts)
  4045. index_entry_flags |= AVINDEX_DISCARD_FRAME;
  4046. st->index_entries[index_entry_pos].pos = offset;
  4047. st->index_entries[index_entry_pos].timestamp = dts;
  4048. st->index_entries[index_entry_pos].size= sample_size;
  4049. st->index_entries[index_entry_pos].min_distance= distance;
  4050. st->index_entries[index_entry_pos].flags = index_entry_flags;
  4051. sc->ctts_data[index_entry_pos].count = 1;
  4052. sc->ctts_data[index_entry_pos].duration = ctts_duration;
  4053. index_entry_pos++;
  4054. av_log(c->fc, AV_LOG_TRACE, "AVIndex stream %d, sample %d, offset %"PRIx64", dts %"PRId64", "
  4055. "size %u, distance %d, keyframe %d\n", st->index,
  4056. index_entry_pos, offset, dts, sample_size, distance, keyframe);
  4057. distance++;
  4058. dts += sample_duration;
  4059. offset += sample_size;
  4060. sc->data_size += sample_size;
  4061. sc->duration_for_fps += sample_duration;
  4062. sc->nb_frames_for_fps ++;
  4063. }
  4064. if (i < entries) {
  4065. // EOF found before reading all entries. Fix the hole this would
  4066. // leave in index_entries and ctts_data
  4067. int gap = entries - i;
  4068. memmove(st->index_entries + index_entry_pos,
  4069. st->index_entries + index_entry_pos + gap,
  4070. sizeof(*st->index_entries) *
  4071. (st->nb_index_entries - (index_entry_pos + gap)));
  4072. memmove(sc->ctts_data + index_entry_pos,
  4073. sc->ctts_data + index_entry_pos + gap,
  4074. sizeof(*sc->ctts_data) *
  4075. (sc->ctts_count - (index_entry_pos + gap)));
  4076. st->nb_index_entries -= gap;
  4077. sc->ctts_count -= gap;
  4078. if (index_entry_pos < sc->current_sample) {
  4079. sc->current_sample -= gap;
  4080. }
  4081. entries = i;
  4082. }
  4083. // The end of this new fragment may overlap in time with the start
  4084. // of the next fragment in index_entries. Mark the samples in the next
  4085. // fragment that overlap with AVINDEX_DISCARD_FRAME
  4086. prev_dts = AV_NOPTS_VALUE;
  4087. if (index_entry_pos > 0)
  4088. prev_dts = st->index_entries[index_entry_pos-1].timestamp;
  4089. for (i = index_entry_pos; i < st->nb_index_entries; i++) {
  4090. if (prev_dts < st->index_entries[i].timestamp)
  4091. break;
  4092. st->index_entries[i].flags |= AVINDEX_DISCARD_FRAME;
  4093. }
  4094. // If a hole was created to insert the new index_entries into,
  4095. // the index_entry recorded for all subsequent moof must
  4096. // be incremented by the number of entries inserted.
  4097. fix_frag_index_entries(&c->frag_index, next_frag_index,
  4098. frag->track_id, entries);
  4099. if (pb->eof_reached)
  4100. return AVERROR_EOF;
  4101. frag->implicit_offset = offset;
  4102. sc->track_end = dts + sc->time_offset;
  4103. if (st->duration < sc->track_end)
  4104. st->duration = sc->track_end;
  4105. return 0;
  4106. }
  4107. static int mov_read_sidx(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4108. {
  4109. int64_t offset = avio_tell(pb) + atom.size, pts, timestamp;
  4110. uint8_t version;
  4111. unsigned i, j, track_id, item_count;
  4112. AVStream *st = NULL;
  4113. AVStream *ref_st = NULL;
  4114. MOVStreamContext *sc, *ref_sc = NULL;
  4115. AVRational timescale;
  4116. version = avio_r8(pb);
  4117. if (version > 1) {
  4118. avpriv_request_sample(c->fc, "sidx version %u", version);
  4119. return 0;
  4120. }
  4121. avio_rb24(pb); // flags
  4122. track_id = avio_rb32(pb); // Reference ID
  4123. for (i = 0; i < c->fc->nb_streams; i++) {
  4124. if (c->fc->streams[i]->id == track_id) {
  4125. st = c->fc->streams[i];
  4126. break;
  4127. }
  4128. }
  4129. if (!st) {
  4130. av_log(c->fc, AV_LOG_WARNING, "could not find corresponding track id %d\n", track_id);
  4131. return 0;
  4132. }
  4133. sc = st->priv_data;
  4134. timescale = av_make_q(1, avio_rb32(pb));
  4135. if (timescale.den <= 0) {
  4136. av_log(c->fc, AV_LOG_ERROR, "Invalid sidx timescale 1/%d\n", timescale.den);
  4137. return AVERROR_INVALIDDATA;
  4138. }
  4139. if (version == 0) {
  4140. pts = avio_rb32(pb);
  4141. offset += avio_rb32(pb);
  4142. } else {
  4143. pts = avio_rb64(pb);
  4144. offset += avio_rb64(pb);
  4145. }
  4146. avio_rb16(pb); // reserved
  4147. item_count = avio_rb16(pb);
  4148. for (i = 0; i < item_count; i++) {
  4149. int index;
  4150. MOVFragmentStreamInfo * frag_stream_info;
  4151. uint32_t size = avio_rb32(pb);
  4152. uint32_t duration = avio_rb32(pb);
  4153. if (size & 0x80000000) {
  4154. avpriv_request_sample(c->fc, "sidx reference_type 1");
  4155. return AVERROR_PATCHWELCOME;
  4156. }
  4157. avio_rb32(pb); // sap_flags
  4158. timestamp = av_rescale_q(pts, st->time_base, timescale);
  4159. index = update_frag_index(c, offset);
  4160. frag_stream_info = get_frag_stream_info(&c->frag_index, index, track_id);
  4161. if (frag_stream_info)
  4162. frag_stream_info->sidx_pts = timestamp;
  4163. offset += size;
  4164. pts += duration;
  4165. }
  4166. st->duration = sc->track_end = pts;
  4167. sc->has_sidx = 1;
  4168. if (offset == avio_size(pb)) {
  4169. // Find first entry in fragment index that came from an sidx.
  4170. // This will pretty much always be the first entry.
  4171. for (i = 0; i < c->frag_index.nb_items; i++) {
  4172. MOVFragmentIndexItem * item = &c->frag_index.item[i];
  4173. for (j = 0; ref_st == NULL && j < item->nb_stream_info; j++) {
  4174. MOVFragmentStreamInfo * si;
  4175. si = &item->stream_info[j];
  4176. if (si->sidx_pts != AV_NOPTS_VALUE) {
  4177. ref_st = c->fc->streams[i];
  4178. ref_sc = ref_st->priv_data;
  4179. break;
  4180. }
  4181. }
  4182. }
  4183. for (i = 0; i < c->fc->nb_streams; i++) {
  4184. st = c->fc->streams[i];
  4185. sc = st->priv_data;
  4186. if (!sc->has_sidx) {
  4187. st->duration = sc->track_end = av_rescale(ref_st->duration, sc->time_scale, ref_sc->time_scale);
  4188. }
  4189. }
  4190. c->frag_index.complete = 1;
  4191. }
  4192. return 0;
  4193. }
  4194. /* this atom should be null (from specs), but some buggy files put the 'moov' atom inside it... */
  4195. /* like the files created with Adobe Premiere 5.0, for samples see */
  4196. /* http://graphics.tudelft.nl/~wouter/publications/soundtests/ */
  4197. static int mov_read_wide(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4198. {
  4199. int err;
  4200. if (atom.size < 8)
  4201. return 0; /* continue */
  4202. if (avio_rb32(pb) != 0) { /* 0 sized mdat atom... use the 'wide' atom size */
  4203. avio_skip(pb, atom.size - 4);
  4204. return 0;
  4205. }
  4206. atom.type = avio_rl32(pb);
  4207. atom.size -= 8;
  4208. if (atom.type != MKTAG('m','d','a','t')) {
  4209. avio_skip(pb, atom.size);
  4210. return 0;
  4211. }
  4212. err = mov_read_mdat(c, pb, atom);
  4213. return err;
  4214. }
  4215. static int mov_read_cmov(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4216. {
  4217. #if CONFIG_ZLIB
  4218. AVIOContext ctx;
  4219. uint8_t *cmov_data;
  4220. uint8_t *moov_data; /* uncompressed data */
  4221. long cmov_len, moov_len;
  4222. int ret = -1;
  4223. avio_rb32(pb); /* dcom atom */
  4224. if (avio_rl32(pb) != MKTAG('d','c','o','m'))
  4225. return AVERROR_INVALIDDATA;
  4226. if (avio_rl32(pb) != MKTAG('z','l','i','b')) {
  4227. av_log(c->fc, AV_LOG_ERROR, "unknown compression for cmov atom !\n");
  4228. return AVERROR_INVALIDDATA;
  4229. }
  4230. avio_rb32(pb); /* cmvd atom */
  4231. if (avio_rl32(pb) != MKTAG('c','m','v','d'))
  4232. return AVERROR_INVALIDDATA;
  4233. moov_len = avio_rb32(pb); /* uncompressed size */
  4234. cmov_len = atom.size - 6 * 4;
  4235. cmov_data = av_malloc(cmov_len);
  4236. if (!cmov_data)
  4237. return AVERROR(ENOMEM);
  4238. moov_data = av_malloc(moov_len);
  4239. if (!moov_data) {
  4240. av_free(cmov_data);
  4241. return AVERROR(ENOMEM);
  4242. }
  4243. ret = ffio_read_size(pb, cmov_data, cmov_len);
  4244. if (ret < 0)
  4245. goto free_and_return;
  4246. if (uncompress (moov_data, (uLongf *) &moov_len, (const Bytef *)cmov_data, cmov_len) != Z_OK)
  4247. goto free_and_return;
  4248. if (ffio_init_context(&ctx, moov_data, moov_len, 0, NULL, NULL, NULL, NULL) != 0)
  4249. goto free_and_return;
  4250. ctx.seekable = AVIO_SEEKABLE_NORMAL;
  4251. atom.type = MKTAG('m','o','o','v');
  4252. atom.size = moov_len;
  4253. ret = mov_read_default(c, &ctx, atom);
  4254. free_and_return:
  4255. av_free(moov_data);
  4256. av_free(cmov_data);
  4257. return ret;
  4258. #else
  4259. av_log(c->fc, AV_LOG_ERROR, "this file requires zlib support compiled in\n");
  4260. return AVERROR(ENOSYS);
  4261. #endif
  4262. }
  4263. /* edit list atom */
  4264. static int mov_read_elst(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4265. {
  4266. MOVStreamContext *sc;
  4267. int i, edit_count, version;
  4268. int64_t elst_entry_size;
  4269. if (c->fc->nb_streams < 1 || c->ignore_editlist)
  4270. return 0;
  4271. sc = c->fc->streams[c->fc->nb_streams-1]->priv_data;
  4272. version = avio_r8(pb); /* version */
  4273. avio_rb24(pb); /* flags */
  4274. edit_count = avio_rb32(pb); /* entries */
  4275. atom.size -= 8;
  4276. elst_entry_size = version == 1 ? 20 : 12;
  4277. if (atom.size != edit_count * elst_entry_size) {
  4278. if (c->fc->strict_std_compliance >= FF_COMPLIANCE_STRICT) {
  4279. av_log(c->fc, AV_LOG_ERROR, "Invalid edit list entry_count: %d for elst atom of size: %"PRId64" bytes.\n",
  4280. edit_count, atom.size + 8);
  4281. return AVERROR_INVALIDDATA;
  4282. } else {
  4283. edit_count = atom.size / elst_entry_size;
  4284. if (edit_count * elst_entry_size != atom.size) {
  4285. av_log(c->fc, AV_LOG_WARNING, "ELST atom of %"PRId64" bytes, bigger than %d entries.", atom.size, edit_count);
  4286. }
  4287. }
  4288. }
  4289. if (!edit_count)
  4290. return 0;
  4291. if (sc->elst_data)
  4292. av_log(c->fc, AV_LOG_WARNING, "Duplicated ELST atom\n");
  4293. av_free(sc->elst_data);
  4294. sc->elst_count = 0;
  4295. sc->elst_data = av_malloc_array(edit_count, sizeof(*sc->elst_data));
  4296. if (!sc->elst_data)
  4297. return AVERROR(ENOMEM);
  4298. av_log(c->fc, AV_LOG_TRACE, "track[%u].edit_count = %i\n", c->fc->nb_streams - 1, edit_count);
  4299. for (i = 0; i < edit_count && atom.size > 0 && !pb->eof_reached; i++) {
  4300. MOVElst *e = &sc->elst_data[i];
  4301. if (version == 1) {
  4302. e->duration = avio_rb64(pb);
  4303. e->time = avio_rb64(pb);
  4304. atom.size -= 16;
  4305. } else {
  4306. e->duration = avio_rb32(pb); /* segment duration */
  4307. e->time = (int32_t)avio_rb32(pb); /* media time */
  4308. atom.size -= 8;
  4309. }
  4310. e->rate = avio_rb32(pb) / 65536.0;
  4311. atom.size -= 4;
  4312. av_log(c->fc, AV_LOG_TRACE, "duration=%"PRId64" time=%"PRId64" rate=%f\n",
  4313. e->duration, e->time, e->rate);
  4314. if (e->time < 0 && e->time != -1 &&
  4315. c->fc->strict_std_compliance >= FF_COMPLIANCE_STRICT) {
  4316. av_log(c->fc, AV_LOG_ERROR, "Track %d, edit %d: Invalid edit list media time=%"PRId64"\n",
  4317. c->fc->nb_streams-1, i, e->time);
  4318. return AVERROR_INVALIDDATA;
  4319. }
  4320. }
  4321. sc->elst_count = i;
  4322. return 0;
  4323. }
  4324. static int mov_read_tmcd(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4325. {
  4326. MOVStreamContext *sc;
  4327. if (c->fc->nb_streams < 1)
  4328. return AVERROR_INVALIDDATA;
  4329. sc = c->fc->streams[c->fc->nb_streams - 1]->priv_data;
  4330. sc->timecode_track = avio_rb32(pb);
  4331. return 0;
  4332. }
  4333. static int mov_read_vpcc(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4334. {
  4335. AVStream *st;
  4336. int version, color_range, color_primaries, color_trc, color_space;
  4337. if (c->fc->nb_streams < 1)
  4338. return 0;
  4339. st = c->fc->streams[c->fc->nb_streams - 1];
  4340. if (atom.size < 5) {
  4341. av_log(c->fc, AV_LOG_ERROR, "Empty VP Codec Configuration box\n");
  4342. return AVERROR_INVALIDDATA;
  4343. }
  4344. version = avio_r8(pb);
  4345. if (version != 1) {
  4346. av_log(c->fc, AV_LOG_WARNING, "Unsupported VP Codec Configuration box version %d\n", version);
  4347. return 0;
  4348. }
  4349. avio_skip(pb, 3); /* flags */
  4350. avio_skip(pb, 2); /* profile + level */
  4351. color_range = avio_r8(pb); /* bitDepth, chromaSubsampling, videoFullRangeFlag */
  4352. color_primaries = avio_r8(pb);
  4353. color_trc = avio_r8(pb);
  4354. color_space = avio_r8(pb);
  4355. if (avio_rb16(pb)) /* codecIntializationDataSize */
  4356. return AVERROR_INVALIDDATA;
  4357. if (!av_color_primaries_name(color_primaries))
  4358. color_primaries = AVCOL_PRI_UNSPECIFIED;
  4359. if (!av_color_transfer_name(color_trc))
  4360. color_trc = AVCOL_TRC_UNSPECIFIED;
  4361. if (!av_color_space_name(color_space))
  4362. color_space = AVCOL_SPC_UNSPECIFIED;
  4363. st->codecpar->color_range = (color_range & 1) ? AVCOL_RANGE_JPEG : AVCOL_RANGE_MPEG;
  4364. st->codecpar->color_primaries = color_primaries;
  4365. st->codecpar->color_trc = color_trc;
  4366. st->codecpar->color_space = color_space;
  4367. return 0;
  4368. }
  4369. static int mov_read_smdm(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4370. {
  4371. MOVStreamContext *sc;
  4372. const int chroma_den = 50000;
  4373. const int luma_den = 10000;
  4374. int i, j, version;
  4375. if (c->fc->nb_streams < 1)
  4376. return AVERROR_INVALIDDATA;
  4377. sc = c->fc->streams[c->fc->nb_streams - 1]->priv_data;
  4378. if (atom.size < 5) {
  4379. av_log(c->fc, AV_LOG_ERROR, "Empty Mastering Display Metadata box\n");
  4380. return AVERROR_INVALIDDATA;
  4381. }
  4382. version = avio_r8(pb);
  4383. if (version) {
  4384. av_log(c->fc, AV_LOG_WARNING, "Unsupported Mastering Display Metadata box version %d\n", version);
  4385. return 0;
  4386. }
  4387. avio_skip(pb, 3); /* flags */
  4388. sc->mastering = av_mastering_display_metadata_alloc();
  4389. if (!sc->mastering)
  4390. return AVERROR(ENOMEM);
  4391. for (i = 0; i < 3; i++)
  4392. for (j = 0; j < 2; j++)
  4393. sc->mastering->display_primaries[i][j] =
  4394. av_make_q(lrint(((double)avio_rb16(pb) / (1 << 16)) * chroma_den), chroma_den);
  4395. for (i = 0; i < 2; i++)
  4396. sc->mastering->white_point[i] =
  4397. av_make_q(lrint(((double)avio_rb16(pb) / (1 << 16)) * chroma_den), chroma_den);
  4398. sc->mastering->max_luminance =
  4399. av_make_q(lrint(((double)avio_rb32(pb) / (1 << 8)) * luma_den), luma_den);
  4400. sc->mastering->min_luminance =
  4401. av_make_q(lrint(((double)avio_rb32(pb) / (1 << 14)) * luma_den), luma_den);
  4402. sc->mastering->has_primaries = 1;
  4403. sc->mastering->has_luminance = 1;
  4404. return 0;
  4405. }
  4406. static int mov_read_coll(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4407. {
  4408. MOVStreamContext *sc;
  4409. int version;
  4410. if (c->fc->nb_streams < 1)
  4411. return AVERROR_INVALIDDATA;
  4412. sc = c->fc->streams[c->fc->nb_streams - 1]->priv_data;
  4413. if (atom.size < 5) {
  4414. av_log(c->fc, AV_LOG_ERROR, "Empty Content Light Level box\n");
  4415. return AVERROR_INVALIDDATA;
  4416. }
  4417. version = avio_r8(pb);
  4418. if (version) {
  4419. av_log(c->fc, AV_LOG_WARNING, "Unsupported Content Light Level box version %d\n", version);
  4420. return 0;
  4421. }
  4422. avio_skip(pb, 3); /* flags */
  4423. sc->coll = av_content_light_metadata_alloc(&sc->coll_size);
  4424. if (!sc->coll)
  4425. return AVERROR(ENOMEM);
  4426. sc->coll->MaxCLL = avio_rb16(pb);
  4427. sc->coll->MaxFALL = avio_rb16(pb);
  4428. return 0;
  4429. }
  4430. static int mov_read_st3d(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4431. {
  4432. AVStream *st;
  4433. MOVStreamContext *sc;
  4434. enum AVStereo3DType type;
  4435. int mode;
  4436. if (c->fc->nb_streams < 1)
  4437. return 0;
  4438. st = c->fc->streams[c->fc->nb_streams - 1];
  4439. sc = st->priv_data;
  4440. if (atom.size < 5) {
  4441. av_log(c->fc, AV_LOG_ERROR, "Empty stereoscopic video box\n");
  4442. return AVERROR_INVALIDDATA;
  4443. }
  4444. avio_skip(pb, 4); /* version + flags */
  4445. mode = avio_r8(pb);
  4446. switch (mode) {
  4447. case 0:
  4448. type = AV_STEREO3D_2D;
  4449. break;
  4450. case 1:
  4451. type = AV_STEREO3D_TOPBOTTOM;
  4452. break;
  4453. case 2:
  4454. type = AV_STEREO3D_SIDEBYSIDE;
  4455. break;
  4456. default:
  4457. av_log(c->fc, AV_LOG_WARNING, "Unknown st3d mode value %d\n", mode);
  4458. return 0;
  4459. }
  4460. sc->stereo3d = av_stereo3d_alloc();
  4461. if (!sc->stereo3d)
  4462. return AVERROR(ENOMEM);
  4463. sc->stereo3d->type = type;
  4464. return 0;
  4465. }
  4466. static int mov_read_sv3d(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4467. {
  4468. AVStream *st;
  4469. MOVStreamContext *sc;
  4470. int size, version, layout;
  4471. int32_t yaw, pitch, roll;
  4472. uint32_t l = 0, t = 0, r = 0, b = 0;
  4473. uint32_t tag, padding = 0;
  4474. enum AVSphericalProjection projection;
  4475. if (c->fc->nb_streams < 1)
  4476. return 0;
  4477. st = c->fc->streams[c->fc->nb_streams - 1];
  4478. sc = st->priv_data;
  4479. if (atom.size < 8) {
  4480. av_log(c->fc, AV_LOG_ERROR, "Empty spherical video box\n");
  4481. return AVERROR_INVALIDDATA;
  4482. }
  4483. size = avio_rb32(pb);
  4484. if (size <= 12 || size > atom.size)
  4485. return AVERROR_INVALIDDATA;
  4486. tag = avio_rl32(pb);
  4487. if (tag != MKTAG('s','v','h','d')) {
  4488. av_log(c->fc, AV_LOG_ERROR, "Missing spherical video header\n");
  4489. return 0;
  4490. }
  4491. version = avio_r8(pb);
  4492. if (version != 0) {
  4493. av_log(c->fc, AV_LOG_WARNING, "Unknown spherical version %d\n",
  4494. version);
  4495. return 0;
  4496. }
  4497. avio_skip(pb, 3); /* flags */
  4498. avio_skip(pb, size - 12); /* metadata_source */
  4499. size = avio_rb32(pb);
  4500. if (size > atom.size)
  4501. return AVERROR_INVALIDDATA;
  4502. tag = avio_rl32(pb);
  4503. if (tag != MKTAG('p','r','o','j')) {
  4504. av_log(c->fc, AV_LOG_ERROR, "Missing projection box\n");
  4505. return 0;
  4506. }
  4507. size = avio_rb32(pb);
  4508. if (size > atom.size)
  4509. return AVERROR_INVALIDDATA;
  4510. tag = avio_rl32(pb);
  4511. if (tag != MKTAG('p','r','h','d')) {
  4512. av_log(c->fc, AV_LOG_ERROR, "Missing projection header box\n");
  4513. return 0;
  4514. }
  4515. version = avio_r8(pb);
  4516. if (version != 0) {
  4517. av_log(c->fc, AV_LOG_WARNING, "Unknown spherical version %d\n",
  4518. version);
  4519. return 0;
  4520. }
  4521. avio_skip(pb, 3); /* flags */
  4522. /* 16.16 fixed point */
  4523. yaw = avio_rb32(pb);
  4524. pitch = avio_rb32(pb);
  4525. roll = avio_rb32(pb);
  4526. size = avio_rb32(pb);
  4527. if (size > atom.size)
  4528. return AVERROR_INVALIDDATA;
  4529. tag = avio_rl32(pb);
  4530. version = avio_r8(pb);
  4531. if (version != 0) {
  4532. av_log(c->fc, AV_LOG_WARNING, "Unknown spherical version %d\n",
  4533. version);
  4534. return 0;
  4535. }
  4536. avio_skip(pb, 3); /* flags */
  4537. switch (tag) {
  4538. case MKTAG('c','b','m','p'):
  4539. layout = avio_rb32(pb);
  4540. if (layout) {
  4541. av_log(c->fc, AV_LOG_WARNING,
  4542. "Unsupported cubemap layout %d\n", layout);
  4543. return 0;
  4544. }
  4545. projection = AV_SPHERICAL_CUBEMAP;
  4546. padding = avio_rb32(pb);
  4547. break;
  4548. case MKTAG('e','q','u','i'):
  4549. t = avio_rb32(pb);
  4550. b = avio_rb32(pb);
  4551. l = avio_rb32(pb);
  4552. r = avio_rb32(pb);
  4553. if (b >= UINT_MAX - t || r >= UINT_MAX - l) {
  4554. av_log(c->fc, AV_LOG_ERROR,
  4555. "Invalid bounding rectangle coordinates "
  4556. "%"PRIu32",%"PRIu32",%"PRIu32",%"PRIu32"\n", l, t, r, b);
  4557. return AVERROR_INVALIDDATA;
  4558. }
  4559. if (l || t || r || b)
  4560. projection = AV_SPHERICAL_EQUIRECTANGULAR_TILE;
  4561. else
  4562. projection = AV_SPHERICAL_EQUIRECTANGULAR;
  4563. break;
  4564. default:
  4565. av_log(c->fc, AV_LOG_ERROR, "Unknown projection type\n");
  4566. return 0;
  4567. }
  4568. sc->spherical = av_spherical_alloc(&sc->spherical_size);
  4569. if (!sc->spherical)
  4570. return AVERROR(ENOMEM);
  4571. sc->spherical->projection = projection;
  4572. sc->spherical->yaw = yaw;
  4573. sc->spherical->pitch = pitch;
  4574. sc->spherical->roll = roll;
  4575. sc->spherical->padding = padding;
  4576. sc->spherical->bound_left = l;
  4577. sc->spherical->bound_top = t;
  4578. sc->spherical->bound_right = r;
  4579. sc->spherical->bound_bottom = b;
  4580. return 0;
  4581. }
  4582. static int mov_parse_uuid_spherical(MOVStreamContext *sc, AVIOContext *pb, size_t len)
  4583. {
  4584. int ret = 0;
  4585. uint8_t *buffer = av_malloc(len + 1);
  4586. const char *val;
  4587. if (!buffer)
  4588. return AVERROR(ENOMEM);
  4589. buffer[len] = '\0';
  4590. ret = ffio_read_size(pb, buffer, len);
  4591. if (ret < 0)
  4592. goto out;
  4593. /* Check for mandatory keys and values, try to support XML as best-effort */
  4594. if (!sc->spherical &&
  4595. av_stristr(buffer, "<GSpherical:StitchingSoftware>") &&
  4596. (val = av_stristr(buffer, "<GSpherical:Spherical>")) &&
  4597. av_stristr(val, "true") &&
  4598. (val = av_stristr(buffer, "<GSpherical:Stitched>")) &&
  4599. av_stristr(val, "true") &&
  4600. (val = av_stristr(buffer, "<GSpherical:ProjectionType>")) &&
  4601. av_stristr(val, "equirectangular")) {
  4602. sc->spherical = av_spherical_alloc(&sc->spherical_size);
  4603. if (!sc->spherical)
  4604. goto out;
  4605. sc->spherical->projection = AV_SPHERICAL_EQUIRECTANGULAR;
  4606. if (av_stristr(buffer, "<GSpherical:StereoMode>") && !sc->stereo3d) {
  4607. enum AVStereo3DType mode;
  4608. if (av_stristr(buffer, "left-right"))
  4609. mode = AV_STEREO3D_SIDEBYSIDE;
  4610. else if (av_stristr(buffer, "top-bottom"))
  4611. mode = AV_STEREO3D_TOPBOTTOM;
  4612. else
  4613. mode = AV_STEREO3D_2D;
  4614. sc->stereo3d = av_stereo3d_alloc();
  4615. if (!sc->stereo3d)
  4616. goto out;
  4617. sc->stereo3d->type = mode;
  4618. }
  4619. /* orientation */
  4620. val = av_stristr(buffer, "<GSpherical:InitialViewHeadingDegrees>");
  4621. if (val)
  4622. sc->spherical->yaw = strtol(val, NULL, 10) * (1 << 16);
  4623. val = av_stristr(buffer, "<GSpherical:InitialViewPitchDegrees>");
  4624. if (val)
  4625. sc->spherical->pitch = strtol(val, NULL, 10) * (1 << 16);
  4626. val = av_stristr(buffer, "<GSpherical:InitialViewRollDegrees>");
  4627. if (val)
  4628. sc->spherical->roll = strtol(val, NULL, 10) * (1 << 16);
  4629. }
  4630. out:
  4631. av_free(buffer);
  4632. return ret;
  4633. }
  4634. static int mov_read_uuid(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4635. {
  4636. AVStream *st;
  4637. MOVStreamContext *sc;
  4638. int64_t ret;
  4639. uint8_t uuid[16];
  4640. static const uint8_t uuid_isml_manifest[] = {
  4641. 0xa5, 0xd4, 0x0b, 0x30, 0xe8, 0x14, 0x11, 0xdd,
  4642. 0xba, 0x2f, 0x08, 0x00, 0x20, 0x0c, 0x9a, 0x66
  4643. };
  4644. static const uint8_t uuid_xmp[] = {
  4645. 0xbe, 0x7a, 0xcf, 0xcb, 0x97, 0xa9, 0x42, 0xe8,
  4646. 0x9c, 0x71, 0x99, 0x94, 0x91, 0xe3, 0xaf, 0xac
  4647. };
  4648. static const uint8_t uuid_spherical[] = {
  4649. 0xff, 0xcc, 0x82, 0x63, 0xf8, 0x55, 0x4a, 0x93,
  4650. 0x88, 0x14, 0x58, 0x7a, 0x02, 0x52, 0x1f, 0xdd,
  4651. };
  4652. if (atom.size < sizeof(uuid) || atom.size >= FFMIN(INT_MAX, SIZE_MAX))
  4653. return AVERROR_INVALIDDATA;
  4654. if (c->fc->nb_streams < 1)
  4655. return 0;
  4656. st = c->fc->streams[c->fc->nb_streams - 1];
  4657. sc = st->priv_data;
  4658. ret = avio_read(pb, uuid, sizeof(uuid));
  4659. if (ret < 0) {
  4660. return ret;
  4661. } else if (ret != sizeof(uuid)) {
  4662. return AVERROR_INVALIDDATA;
  4663. }
  4664. if (!memcmp(uuid, uuid_isml_manifest, sizeof(uuid))) {
  4665. uint8_t *buffer, *ptr;
  4666. char *endptr;
  4667. size_t len = atom.size - sizeof(uuid);
  4668. if (len < 4) {
  4669. return AVERROR_INVALIDDATA;
  4670. }
  4671. ret = avio_skip(pb, 4); // zeroes
  4672. len -= 4;
  4673. buffer = av_mallocz(len + 1);
  4674. if (!buffer) {
  4675. return AVERROR(ENOMEM);
  4676. }
  4677. ret = avio_read(pb, buffer, len);
  4678. if (ret < 0) {
  4679. av_free(buffer);
  4680. return ret;
  4681. } else if (ret != len) {
  4682. av_free(buffer);
  4683. return AVERROR_INVALIDDATA;
  4684. }
  4685. ptr = buffer;
  4686. while ((ptr = av_stristr(ptr, "systemBitrate=\""))) {
  4687. ptr += sizeof("systemBitrate=\"") - 1;
  4688. c->bitrates_count++;
  4689. c->bitrates = av_realloc_f(c->bitrates, c->bitrates_count, sizeof(*c->bitrates));
  4690. if (!c->bitrates) {
  4691. c->bitrates_count = 0;
  4692. av_free(buffer);
  4693. return AVERROR(ENOMEM);
  4694. }
  4695. errno = 0;
  4696. ret = strtol(ptr, &endptr, 10);
  4697. if (ret < 0 || errno || *endptr != '"') {
  4698. c->bitrates[c->bitrates_count - 1] = 0;
  4699. } else {
  4700. c->bitrates[c->bitrates_count - 1] = ret;
  4701. }
  4702. }
  4703. av_free(buffer);
  4704. } else if (!memcmp(uuid, uuid_xmp, sizeof(uuid))) {
  4705. uint8_t *buffer;
  4706. size_t len = atom.size - sizeof(uuid);
  4707. if (c->export_xmp) {
  4708. buffer = av_mallocz(len + 1);
  4709. if (!buffer) {
  4710. return AVERROR(ENOMEM);
  4711. }
  4712. ret = avio_read(pb, buffer, len);
  4713. if (ret < 0) {
  4714. av_free(buffer);
  4715. return ret;
  4716. } else if (ret != len) {
  4717. av_free(buffer);
  4718. return AVERROR_INVALIDDATA;
  4719. }
  4720. buffer[len] = '\0';
  4721. av_dict_set(&c->fc->metadata, "xmp", buffer, 0);
  4722. av_free(buffer);
  4723. } else {
  4724. // skip all uuid atom, which makes it fast for long uuid-xmp file
  4725. ret = avio_skip(pb, len);
  4726. if (ret < 0)
  4727. return ret;
  4728. }
  4729. } else if (!memcmp(uuid, uuid_spherical, sizeof(uuid))) {
  4730. size_t len = atom.size - sizeof(uuid);
  4731. ret = mov_parse_uuid_spherical(sc, pb, len);
  4732. if (ret < 0)
  4733. return ret;
  4734. if (!sc->spherical)
  4735. av_log(c->fc, AV_LOG_WARNING, "Invalid spherical metadata found\n"); }
  4736. return 0;
  4737. }
  4738. static int mov_read_free(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4739. {
  4740. int ret;
  4741. uint8_t content[16];
  4742. if (atom.size < 8)
  4743. return 0;
  4744. ret = avio_read(pb, content, FFMIN(sizeof(content), atom.size));
  4745. if (ret < 0)
  4746. return ret;
  4747. if ( !c->found_moov
  4748. && !c->found_mdat
  4749. && !memcmp(content, "Anevia\x1A\x1A", 8)
  4750. && c->use_mfra_for == FF_MOV_FLAG_MFRA_AUTO) {
  4751. c->use_mfra_for = FF_MOV_FLAG_MFRA_PTS;
  4752. }
  4753. return 0;
  4754. }
  4755. static int mov_read_frma(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4756. {
  4757. uint32_t format = avio_rl32(pb);
  4758. MOVStreamContext *sc;
  4759. enum AVCodecID id;
  4760. AVStream *st;
  4761. if (c->fc->nb_streams < 1)
  4762. return 0;
  4763. st = c->fc->streams[c->fc->nb_streams - 1];
  4764. sc = st->priv_data;
  4765. switch (sc->format)
  4766. {
  4767. case MKTAG('e','n','c','v'): // encrypted video
  4768. case MKTAG('e','n','c','a'): // encrypted audio
  4769. id = mov_codec_id(st, format);
  4770. if (st->codecpar->codec_id != AV_CODEC_ID_NONE &&
  4771. st->codecpar->codec_id != id) {
  4772. av_log(c->fc, AV_LOG_WARNING,
  4773. "ignoring 'frma' atom of '%.4s', stream has codec id %d\n",
  4774. (char*)&format, st->codecpar->codec_id);
  4775. break;
  4776. }
  4777. st->codecpar->codec_id = id;
  4778. sc->format = format;
  4779. break;
  4780. default:
  4781. if (format != sc->format) {
  4782. av_log(c->fc, AV_LOG_WARNING,
  4783. "ignoring 'frma' atom of '%.4s', stream format is '%.4s'\n",
  4784. (char*)&format, (char*)&sc->format);
  4785. }
  4786. break;
  4787. }
  4788. return 0;
  4789. }
  4790. static int mov_read_senc(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4791. {
  4792. AVStream *st;
  4793. MOVStreamContext *sc;
  4794. size_t auxiliary_info_size;
  4795. if (c->decryption_key_len == 0 || c->fc->nb_streams < 1)
  4796. return 0;
  4797. st = c->fc->streams[c->fc->nb_streams - 1];
  4798. sc = st->priv_data;
  4799. if (sc->cenc.aes_ctr) {
  4800. av_log(c->fc, AV_LOG_ERROR, "duplicate senc atom\n");
  4801. return AVERROR_INVALIDDATA;
  4802. }
  4803. avio_r8(pb); /* version */
  4804. sc->cenc.use_subsamples = avio_rb24(pb) & 0x02; /* flags */
  4805. avio_rb32(pb); /* entries */
  4806. if (atom.size < 8 || atom.size > FFMIN(INT_MAX, SIZE_MAX)) {
  4807. av_log(c->fc, AV_LOG_ERROR, "senc atom size %"PRId64" invalid\n", atom.size);
  4808. return AVERROR_INVALIDDATA;
  4809. }
  4810. /* save the auxiliary info as is */
  4811. auxiliary_info_size = atom.size - 8;
  4812. sc->cenc.auxiliary_info = av_malloc(auxiliary_info_size);
  4813. if (!sc->cenc.auxiliary_info) {
  4814. return AVERROR(ENOMEM);
  4815. }
  4816. sc->cenc.auxiliary_info_end = sc->cenc.auxiliary_info + auxiliary_info_size;
  4817. sc->cenc.auxiliary_info_pos = sc->cenc.auxiliary_info;
  4818. sc->cenc.auxiliary_info_index = 0;
  4819. if (avio_read(pb, sc->cenc.auxiliary_info, auxiliary_info_size) != auxiliary_info_size) {
  4820. av_log(c->fc, AV_LOG_ERROR, "failed to read the auxiliary info");
  4821. return AVERROR_INVALIDDATA;
  4822. }
  4823. /* initialize the cipher */
  4824. sc->cenc.aes_ctr = av_aes_ctr_alloc();
  4825. if (!sc->cenc.aes_ctr) {
  4826. return AVERROR(ENOMEM);
  4827. }
  4828. return av_aes_ctr_init(sc->cenc.aes_ctr, c->decryption_key);
  4829. }
  4830. static int mov_read_saiz(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4831. {
  4832. AVStream *st;
  4833. MOVStreamContext *sc;
  4834. size_t data_size;
  4835. int atom_header_size;
  4836. int flags;
  4837. if (c->decryption_key_len == 0 || c->fc->nb_streams < 1)
  4838. return 0;
  4839. st = c->fc->streams[c->fc->nb_streams - 1];
  4840. sc = st->priv_data;
  4841. if (sc->cenc.auxiliary_info_sizes || sc->cenc.auxiliary_info_default_size) {
  4842. av_log(c->fc, AV_LOG_ERROR, "duplicate saiz atom\n");
  4843. return AVERROR_INVALIDDATA;
  4844. }
  4845. atom_header_size = 9;
  4846. avio_r8(pb); /* version */
  4847. flags = avio_rb24(pb);
  4848. if ((flags & 0x01) != 0) {
  4849. atom_header_size += 8;
  4850. avio_rb32(pb); /* info type */
  4851. avio_rb32(pb); /* info type param */
  4852. }
  4853. sc->cenc.auxiliary_info_default_size = avio_r8(pb);
  4854. avio_rb32(pb); /* entries */
  4855. if (atom.size <= atom_header_size) {
  4856. return 0;
  4857. }
  4858. if (atom.size > FFMIN(INT_MAX, SIZE_MAX)) {
  4859. av_log(c->fc, AV_LOG_ERROR, "saiz atom auxiliary_info_sizes size %"PRId64" invalid\n", atom.size);
  4860. return AVERROR_INVALIDDATA;
  4861. }
  4862. /* save the auxiliary info sizes as is */
  4863. data_size = atom.size - atom_header_size;
  4864. sc->cenc.auxiliary_info_sizes = av_malloc(data_size);
  4865. if (!sc->cenc.auxiliary_info_sizes) {
  4866. return AVERROR(ENOMEM);
  4867. }
  4868. sc->cenc.auxiliary_info_sizes_count = data_size;
  4869. if (avio_read(pb, sc->cenc.auxiliary_info_sizes, data_size) != data_size) {
  4870. av_log(c->fc, AV_LOG_ERROR, "failed to read the auxiliary info sizes");
  4871. return AVERROR_INVALIDDATA;
  4872. }
  4873. return 0;
  4874. }
  4875. static int mov_read_dfla(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4876. {
  4877. AVStream *st;
  4878. int last, type, size, ret;
  4879. uint8_t buf[4];
  4880. if (c->fc->nb_streams < 1)
  4881. return 0;
  4882. st = c->fc->streams[c->fc->nb_streams-1];
  4883. if ((uint64_t)atom.size > (1<<30) || atom.size < 42)
  4884. return AVERROR_INVALIDDATA;
  4885. /* Check FlacSpecificBox version. */
  4886. if (avio_r8(pb) != 0)
  4887. return AVERROR_INVALIDDATA;
  4888. avio_rb24(pb); /* Flags */
  4889. avio_read(pb, buf, sizeof(buf));
  4890. flac_parse_block_header(buf, &last, &type, &size);
  4891. if (type != FLAC_METADATA_TYPE_STREAMINFO || size != FLAC_STREAMINFO_SIZE) {
  4892. av_log(c->fc, AV_LOG_ERROR, "STREAMINFO must be first FLACMetadataBlock\n");
  4893. return AVERROR_INVALIDDATA;
  4894. }
  4895. ret = ff_get_extradata(c->fc, st->codecpar, pb, size);
  4896. if (ret < 0)
  4897. return ret;
  4898. if (!last)
  4899. av_log(c->fc, AV_LOG_WARNING, "non-STREAMINFO FLACMetadataBlock(s) ignored\n");
  4900. return 0;
  4901. }
  4902. static int mov_seek_auxiliary_info(MOVContext *c, MOVStreamContext *sc, int64_t index)
  4903. {
  4904. size_t auxiliary_info_seek_offset = 0;
  4905. int i;
  4906. if (sc->cenc.auxiliary_info_default_size) {
  4907. auxiliary_info_seek_offset = (size_t)sc->cenc.auxiliary_info_default_size * index;
  4908. } else if (sc->cenc.auxiliary_info_sizes) {
  4909. if (index > sc->cenc.auxiliary_info_sizes_count) {
  4910. av_log(c, AV_LOG_ERROR, "current sample %"PRId64" greater than the number of auxiliary info sample sizes %"SIZE_SPECIFIER"\n",
  4911. index, sc->cenc.auxiliary_info_sizes_count);
  4912. return AVERROR_INVALIDDATA;
  4913. }
  4914. for (i = 0; i < index; i++) {
  4915. auxiliary_info_seek_offset += sc->cenc.auxiliary_info_sizes[i];
  4916. }
  4917. }
  4918. if (auxiliary_info_seek_offset > sc->cenc.auxiliary_info_end - sc->cenc.auxiliary_info) {
  4919. av_log(c, AV_LOG_ERROR, "auxiliary info offset %"SIZE_SPECIFIER" greater than auxiliary info size %"SIZE_SPECIFIER"\n",
  4920. auxiliary_info_seek_offset, (size_t)(sc->cenc.auxiliary_info_end - sc->cenc.auxiliary_info));
  4921. return AVERROR_INVALIDDATA;
  4922. }
  4923. sc->cenc.auxiliary_info_pos = sc->cenc.auxiliary_info + auxiliary_info_seek_offset;
  4924. sc->cenc.auxiliary_info_index = index;
  4925. return 0;
  4926. }
  4927. static int cenc_filter(MOVContext *c, MOVStreamContext *sc, int64_t index, uint8_t *input, int size)
  4928. {
  4929. uint32_t encrypted_bytes;
  4930. uint16_t subsample_count;
  4931. uint16_t clear_bytes;
  4932. uint8_t* input_end = input + size;
  4933. int ret;
  4934. if (index != sc->cenc.auxiliary_info_index) {
  4935. ret = mov_seek_auxiliary_info(c, sc, index);
  4936. if (ret < 0) {
  4937. return ret;
  4938. }
  4939. }
  4940. /* read the iv */
  4941. if (AES_CTR_IV_SIZE > sc->cenc.auxiliary_info_end - sc->cenc.auxiliary_info_pos) {
  4942. av_log(c->fc, AV_LOG_ERROR, "failed to read iv from the auxiliary info\n");
  4943. return AVERROR_INVALIDDATA;
  4944. }
  4945. av_aes_ctr_set_iv(sc->cenc.aes_ctr, sc->cenc.auxiliary_info_pos);
  4946. sc->cenc.auxiliary_info_pos += AES_CTR_IV_SIZE;
  4947. if (!sc->cenc.use_subsamples)
  4948. {
  4949. /* decrypt the whole packet */
  4950. av_aes_ctr_crypt(sc->cenc.aes_ctr, input, input, size);
  4951. return 0;
  4952. }
  4953. /* read the subsample count */
  4954. if (sizeof(uint16_t) > sc->cenc.auxiliary_info_end - sc->cenc.auxiliary_info_pos) {
  4955. av_log(c->fc, AV_LOG_ERROR, "failed to read subsample count from the auxiliary info\n");
  4956. return AVERROR_INVALIDDATA;
  4957. }
  4958. subsample_count = AV_RB16(sc->cenc.auxiliary_info_pos);
  4959. sc->cenc.auxiliary_info_pos += sizeof(uint16_t);
  4960. for (; subsample_count > 0; subsample_count--)
  4961. {
  4962. if (6 > sc->cenc.auxiliary_info_end - sc->cenc.auxiliary_info_pos) {
  4963. av_log(c->fc, AV_LOG_ERROR, "failed to read subsample from the auxiliary info\n");
  4964. return AVERROR_INVALIDDATA;
  4965. }
  4966. /* read the number of clear / encrypted bytes */
  4967. clear_bytes = AV_RB16(sc->cenc.auxiliary_info_pos);
  4968. sc->cenc.auxiliary_info_pos += sizeof(uint16_t);
  4969. encrypted_bytes = AV_RB32(sc->cenc.auxiliary_info_pos);
  4970. sc->cenc.auxiliary_info_pos += sizeof(uint32_t);
  4971. if ((uint64_t)clear_bytes + encrypted_bytes > input_end - input) {
  4972. av_log(c->fc, AV_LOG_ERROR, "subsample size exceeds the packet size left\n");
  4973. return AVERROR_INVALIDDATA;
  4974. }
  4975. /* skip the clear bytes */
  4976. input += clear_bytes;
  4977. /* decrypt the encrypted bytes */
  4978. av_aes_ctr_crypt(sc->cenc.aes_ctr, input, input, encrypted_bytes);
  4979. input += encrypted_bytes;
  4980. }
  4981. if (input < input_end) {
  4982. av_log(c->fc, AV_LOG_ERROR, "leftover packet bytes after subsample processing\n");
  4983. return AVERROR_INVALIDDATA;
  4984. }
  4985. sc->cenc.auxiliary_info_index++;
  4986. return 0;
  4987. }
  4988. static int mov_read_dops(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  4989. {
  4990. const int OPUS_SEEK_PREROLL_MS = 80;
  4991. AVStream *st;
  4992. size_t size;
  4993. int16_t pre_skip;
  4994. if (c->fc->nb_streams < 1)
  4995. return 0;
  4996. st = c->fc->streams[c->fc->nb_streams-1];
  4997. if ((uint64_t)atom.size > (1<<30) || atom.size < 11)
  4998. return AVERROR_INVALIDDATA;
  4999. /* Check OpusSpecificBox version. */
  5000. if (avio_r8(pb) != 0) {
  5001. av_log(c->fc, AV_LOG_ERROR, "unsupported OpusSpecificBox version\n");
  5002. return AVERROR_INVALIDDATA;
  5003. }
  5004. /* OpusSpecificBox size plus magic for Ogg OpusHead header. */
  5005. size = atom.size + 8;
  5006. if (ff_alloc_extradata(st->codecpar, size))
  5007. return AVERROR(ENOMEM);
  5008. AV_WL32(st->codecpar->extradata, MKTAG('O','p','u','s'));
  5009. AV_WL32(st->codecpar->extradata + 4, MKTAG('H','e','a','d'));
  5010. AV_WB8(st->codecpar->extradata + 8, 1); /* OpusHead version */
  5011. avio_read(pb, st->codecpar->extradata + 9, size - 9);
  5012. /* OpusSpecificBox is stored in big-endian, but OpusHead is
  5013. little-endian; aside from the preceeding magic and version they're
  5014. otherwise currently identical. Data after output gain at offset 16
  5015. doesn't need to be bytewapped. */
  5016. pre_skip = AV_RB16(st->codecpar->extradata + 10);
  5017. AV_WL16(st->codecpar->extradata + 10, pre_skip);
  5018. AV_WL32(st->codecpar->extradata + 12, AV_RB32(st->codecpar->extradata + 12));
  5019. AV_WL16(st->codecpar->extradata + 16, AV_RB16(st->codecpar->extradata + 16));
  5020. st->codecpar->initial_padding = pre_skip;
  5021. st->codecpar->seek_preroll = av_rescale_q(OPUS_SEEK_PREROLL_MS,
  5022. (AVRational){1, 1000},
  5023. (AVRational){1, 48000});
  5024. return 0;
  5025. }
  5026. static const MOVParseTableEntry mov_default_parse_table[] = {
  5027. { MKTAG('A','C','L','R'), mov_read_aclr },
  5028. { MKTAG('A','P','R','G'), mov_read_avid },
  5029. { MKTAG('A','A','L','P'), mov_read_avid },
  5030. { MKTAG('A','R','E','S'), mov_read_ares },
  5031. { MKTAG('a','v','s','s'), mov_read_avss },
  5032. { MKTAG('c','h','p','l'), mov_read_chpl },
  5033. { MKTAG('c','o','6','4'), mov_read_stco },
  5034. { MKTAG('c','o','l','r'), mov_read_colr },
  5035. { MKTAG('c','t','t','s'), mov_read_ctts }, /* composition time to sample */
  5036. { MKTAG('d','i','n','f'), mov_read_default },
  5037. { MKTAG('D','p','x','E'), mov_read_dpxe },
  5038. { MKTAG('d','r','e','f'), mov_read_dref },
  5039. { MKTAG('e','d','t','s'), mov_read_default },
  5040. { MKTAG('e','l','s','t'), mov_read_elst },
  5041. { MKTAG('e','n','d','a'), mov_read_enda },
  5042. { MKTAG('f','i','e','l'), mov_read_fiel },
  5043. { MKTAG('a','d','r','m'), mov_read_adrm },
  5044. { MKTAG('f','t','y','p'), mov_read_ftyp },
  5045. { MKTAG('g','l','b','l'), mov_read_glbl },
  5046. { MKTAG('h','d','l','r'), mov_read_hdlr },
  5047. { MKTAG('i','l','s','t'), mov_read_ilst },
  5048. { MKTAG('j','p','2','h'), mov_read_jp2h },
  5049. { MKTAG('m','d','a','t'), mov_read_mdat },
  5050. { MKTAG('m','d','h','d'), mov_read_mdhd },
  5051. { MKTAG('m','d','i','a'), mov_read_default },
  5052. { MKTAG('m','e','t','a'), mov_read_meta },
  5053. { MKTAG('m','i','n','f'), mov_read_default },
  5054. { MKTAG('m','o','o','f'), mov_read_moof },
  5055. { MKTAG('m','o','o','v'), mov_read_moov },
  5056. { MKTAG('m','v','e','x'), mov_read_default },
  5057. { MKTAG('m','v','h','d'), mov_read_mvhd },
  5058. { MKTAG('S','M','I',' '), mov_read_svq3 },
  5059. { MKTAG('a','l','a','c'), mov_read_alac }, /* alac specific atom */
  5060. { MKTAG('a','v','c','C'), mov_read_glbl },
  5061. { MKTAG('p','a','s','p'), mov_read_pasp },
  5062. { MKTAG('s','i','d','x'), mov_read_sidx },
  5063. { MKTAG('s','t','b','l'), mov_read_default },
  5064. { MKTAG('s','t','c','o'), mov_read_stco },
  5065. { MKTAG('s','t','p','s'), mov_read_stps },
  5066. { MKTAG('s','t','r','f'), mov_read_strf },
  5067. { MKTAG('s','t','s','c'), mov_read_stsc },
  5068. { MKTAG('s','t','s','d'), mov_read_stsd }, /* sample description */
  5069. { MKTAG('s','t','s','s'), mov_read_stss }, /* sync sample */
  5070. { MKTAG('s','t','s','z'), mov_read_stsz }, /* sample size */
  5071. { MKTAG('s','t','t','s'), mov_read_stts },
  5072. { MKTAG('s','t','z','2'), mov_read_stsz }, /* compact sample size */
  5073. { MKTAG('t','k','h','d'), mov_read_tkhd }, /* track header */
  5074. { MKTAG('t','f','d','t'), mov_read_tfdt },
  5075. { MKTAG('t','f','h','d'), mov_read_tfhd }, /* track fragment header */
  5076. { MKTAG('t','r','a','k'), mov_read_trak },
  5077. { MKTAG('t','r','a','f'), mov_read_default },
  5078. { MKTAG('t','r','e','f'), mov_read_default },
  5079. { MKTAG('t','m','c','d'), mov_read_tmcd },
  5080. { MKTAG('c','h','a','p'), mov_read_chap },
  5081. { MKTAG('t','r','e','x'), mov_read_trex },
  5082. { MKTAG('t','r','u','n'), mov_read_trun },
  5083. { MKTAG('u','d','t','a'), mov_read_default },
  5084. { MKTAG('w','a','v','e'), mov_read_wave },
  5085. { MKTAG('e','s','d','s'), mov_read_esds },
  5086. { MKTAG('d','a','c','3'), mov_read_dac3 }, /* AC-3 info */
  5087. { MKTAG('d','e','c','3'), mov_read_dec3 }, /* EAC-3 info */
  5088. { MKTAG('d','d','t','s'), mov_read_ddts }, /* DTS audio descriptor */
  5089. { MKTAG('w','i','d','e'), mov_read_wide }, /* place holder */
  5090. { MKTAG('w','f','e','x'), mov_read_wfex },
  5091. { MKTAG('c','m','o','v'), mov_read_cmov },
  5092. { MKTAG('c','h','a','n'), mov_read_chan }, /* channel layout */
  5093. { MKTAG('d','v','c','1'), mov_read_dvc1 },
  5094. { MKTAG('s','b','g','p'), mov_read_sbgp },
  5095. { MKTAG('h','v','c','C'), mov_read_glbl },
  5096. { MKTAG('u','u','i','d'), mov_read_uuid },
  5097. { MKTAG('C','i','n', 0x8e), mov_read_targa_y216 },
  5098. { MKTAG('f','r','e','e'), mov_read_free },
  5099. { MKTAG('-','-','-','-'), mov_read_custom },
  5100. { MKTAG('s','i','n','f'), mov_read_default },
  5101. { MKTAG('f','r','m','a'), mov_read_frma },
  5102. { MKTAG('s','e','n','c'), mov_read_senc },
  5103. { MKTAG('s','a','i','z'), mov_read_saiz },
  5104. { MKTAG('d','f','L','a'), mov_read_dfla },
  5105. { MKTAG('s','t','3','d'), mov_read_st3d }, /* stereoscopic 3D video box */
  5106. { MKTAG('s','v','3','d'), mov_read_sv3d }, /* spherical video box */
  5107. { MKTAG('d','O','p','s'), mov_read_dops },
  5108. { MKTAG('S','m','D','m'), mov_read_smdm },
  5109. { MKTAG('C','o','L','L'), mov_read_coll },
  5110. { MKTAG('v','p','c','C'), mov_read_vpcc },
  5111. { 0, NULL }
  5112. };
  5113. static int mov_read_default(MOVContext *c, AVIOContext *pb, MOVAtom atom)
  5114. {
  5115. int64_t total_size = 0;
  5116. MOVAtom a;
  5117. int i;
  5118. if (c->atom_depth > 10) {
  5119. av_log(c->fc, AV_LOG_ERROR, "Atoms too deeply nested\n");
  5120. return AVERROR_INVALIDDATA;
  5121. }
  5122. c->atom_depth ++;
  5123. if (atom.size < 0)
  5124. atom.size = INT64_MAX;
  5125. while (total_size <= atom.size - 8 && !avio_feof(pb)) {
  5126. int (*parse)(MOVContext*, AVIOContext*, MOVAtom) = NULL;
  5127. a.size = atom.size;
  5128. a.type=0;
  5129. if (atom.size >= 8) {
  5130. a.size = avio_rb32(pb);
  5131. a.type = avio_rl32(pb);
  5132. if (a.type == MKTAG('f','r','e','e') &&
  5133. a.size >= 8 &&
  5134. c->fc->strict_std_compliance < FF_COMPLIANCE_STRICT &&
  5135. c->moov_retry) {
  5136. uint8_t buf[8];
  5137. uint32_t *type = (uint32_t *)buf + 1;
  5138. if (avio_read(pb, buf, 8) != 8)
  5139. return AVERROR_INVALIDDATA;
  5140. avio_seek(pb, -8, SEEK_CUR);
  5141. if (*type == MKTAG('m','v','h','d') ||
  5142. *type == MKTAG('c','m','o','v')) {
  5143. av_log(c->fc, AV_LOG_ERROR, "Detected moov in a free atom.\n");
  5144. a.type = MKTAG('m','o','o','v');
  5145. }
  5146. }
  5147. if (atom.type != MKTAG('r','o','o','t') &&
  5148. atom.type != MKTAG('m','o','o','v'))
  5149. {
  5150. if (a.type == MKTAG('t','r','a','k') || a.type == MKTAG('m','d','a','t'))
  5151. {
  5152. av_log(c->fc, AV_LOG_ERROR, "Broken file, trak/mdat not at top-level\n");
  5153. avio_skip(pb, -8);
  5154. c->atom_depth --;
  5155. return 0;
  5156. }
  5157. }
  5158. total_size += 8;
  5159. if (a.size == 1 && total_size + 8 <= atom.size) { /* 64 bit extended size */
  5160. a.size = avio_rb64(pb) - 8;
  5161. total_size += 8;
  5162. }
  5163. }
  5164. av_log(c->fc, AV_LOG_TRACE, "type:'%s' parent:'%s' sz: %"PRId64" %"PRId64" %"PRId64"\n",
  5165. av_fourcc2str(a.type), av_fourcc2str(atom.type), a.size, total_size, atom.size);
  5166. if (a.size == 0) {
  5167. a.size = atom.size - total_size + 8;
  5168. }
  5169. a.size -= 8;
  5170. if (a.size < 0)
  5171. break;
  5172. a.size = FFMIN(a.size, atom.size - total_size);
  5173. for (i = 0; mov_default_parse_table[i].type; i++)
  5174. if (mov_default_parse_table[i].type == a.type) {
  5175. parse = mov_default_parse_table[i].parse;
  5176. break;
  5177. }
  5178. // container is user data
  5179. if (!parse && (atom.type == MKTAG('u','d','t','a') ||
  5180. atom.type == MKTAG('i','l','s','t')))
  5181. parse = mov_read_udta_string;
  5182. // Supports parsing the QuickTime Metadata Keys.
  5183. // https://developer.apple.com/library/mac/documentation/QuickTime/QTFF/Metadata/Metadata.html
  5184. if (!parse && c->found_hdlr_mdta &&
  5185. atom.type == MKTAG('m','e','t','a') &&
  5186. a.type == MKTAG('k','e','y','s')) {
  5187. parse = mov_read_keys;
  5188. }
  5189. if (!parse) { /* skip leaf atoms data */
  5190. avio_skip(pb, a.size);
  5191. } else {
  5192. int64_t start_pos = avio_tell(pb);
  5193. int64_t left;
  5194. int err = parse(c, pb, a);
  5195. if (err < 0) {
  5196. c->atom_depth --;
  5197. return err;
  5198. }
  5199. if (c->found_moov && c->found_mdat &&
  5200. ((!(pb->seekable & AVIO_SEEKABLE_NORMAL) || c->fc->flags & AVFMT_FLAG_IGNIDX || c->frag_index.complete) ||
  5201. start_pos + a.size == avio_size(pb))) {
  5202. if (!(pb->seekable & AVIO_SEEKABLE_NORMAL) || c->fc->flags & AVFMT_FLAG_IGNIDX || c->frag_index.complete)
  5203. c->next_root_atom = start_pos + a.size;
  5204. c->atom_depth --;
  5205. return 0;
  5206. }
  5207. left = a.size - avio_tell(pb) + start_pos;
  5208. if (left > 0) /* skip garbage at atom end */
  5209. avio_skip(pb, left);
  5210. else if (left < 0) {
  5211. av_log(c->fc, AV_LOG_WARNING,
  5212. "overread end of atom '%.4s' by %"PRId64" bytes\n",
  5213. (char*)&a.type, -left);
  5214. avio_seek(pb, left, SEEK_CUR);
  5215. }
  5216. }
  5217. total_size += a.size;
  5218. }
  5219. if (total_size < atom.size && atom.size < 0x7ffff)
  5220. avio_skip(pb, atom.size - total_size);
  5221. c->atom_depth --;
  5222. return 0;
  5223. }
  5224. static int mov_probe(AVProbeData *p)
  5225. {
  5226. int64_t offset;
  5227. uint32_t tag;
  5228. int score = 0;
  5229. int moov_offset = -1;
  5230. /* check file header */
  5231. offset = 0;
  5232. for (;;) {
  5233. /* ignore invalid offset */
  5234. if ((offset + 8) > (unsigned int)p->buf_size)
  5235. break;
  5236. tag = AV_RL32(p->buf + offset + 4);
  5237. switch(tag) {
  5238. /* check for obvious tags */
  5239. case MKTAG('m','o','o','v'):
  5240. moov_offset = offset + 4;
  5241. case MKTAG('m','d','a','t'):
  5242. case MKTAG('p','n','o','t'): /* detect movs with preview pics like ew.mov and april.mov */
  5243. case MKTAG('u','d','t','a'): /* Packet Video PVAuthor adds this and a lot of more junk */
  5244. case MKTAG('f','t','y','p'):
  5245. if (AV_RB32(p->buf+offset) < 8 &&
  5246. (AV_RB32(p->buf+offset) != 1 ||
  5247. offset + 12 > (unsigned int)p->buf_size ||
  5248. AV_RB64(p->buf+offset + 8) == 0)) {
  5249. score = FFMAX(score, AVPROBE_SCORE_EXTENSION);
  5250. } else if (tag == MKTAG('f','t','y','p') &&
  5251. ( AV_RL32(p->buf + offset + 8) == MKTAG('j','p','2',' ')
  5252. || AV_RL32(p->buf + offset + 8) == MKTAG('j','p','x',' ')
  5253. )) {
  5254. score = FFMAX(score, 5);
  5255. } else {
  5256. score = AVPROBE_SCORE_MAX;
  5257. }
  5258. offset = FFMAX(4, AV_RB32(p->buf+offset)) + offset;
  5259. break;
  5260. /* those are more common words, so rate then a bit less */
  5261. case MKTAG('e','d','i','w'): /* xdcam files have reverted first tags */
  5262. case MKTAG('w','i','d','e'):
  5263. case MKTAG('f','r','e','e'):
  5264. case MKTAG('j','u','n','k'):
  5265. case MKTAG('p','i','c','t'):
  5266. score = FFMAX(score, AVPROBE_SCORE_MAX - 5);
  5267. offset = FFMAX(4, AV_RB32(p->buf+offset)) + offset;
  5268. break;
  5269. case MKTAG(0x82,0x82,0x7f,0x7d):
  5270. case MKTAG('s','k','i','p'):
  5271. case MKTAG('u','u','i','d'):
  5272. case MKTAG('p','r','f','l'):
  5273. /* if we only find those cause probedata is too small at least rate them */
  5274. score = FFMAX(score, AVPROBE_SCORE_EXTENSION);
  5275. offset = FFMAX(4, AV_RB32(p->buf+offset)) + offset;
  5276. break;
  5277. default:
  5278. offset = FFMAX(4, AV_RB32(p->buf+offset)) + offset;
  5279. }
  5280. }
  5281. if(score > AVPROBE_SCORE_MAX - 50 && moov_offset != -1) {
  5282. /* moov atom in the header - we should make sure that this is not a
  5283. * MOV-packed MPEG-PS */
  5284. offset = moov_offset;
  5285. while(offset < (p->buf_size - 16)){ /* Sufficient space */
  5286. /* We found an actual hdlr atom */
  5287. if(AV_RL32(p->buf + offset ) == MKTAG('h','d','l','r') &&
  5288. AV_RL32(p->buf + offset + 8) == MKTAG('m','h','l','r') &&
  5289. AV_RL32(p->buf + offset + 12) == MKTAG('M','P','E','G')){
  5290. av_log(NULL, AV_LOG_WARNING, "Found media data tag MPEG indicating this is a MOV-packed MPEG-PS.\n");
  5291. /* We found a media handler reference atom describing an
  5292. * MPEG-PS-in-MOV, return a
  5293. * low score to force expanding the probe window until
  5294. * mpegps_probe finds what it needs */
  5295. return 5;
  5296. }else
  5297. /* Keep looking */
  5298. offset+=2;
  5299. }
  5300. }
  5301. return score;
  5302. }
  5303. // must be done after parsing all trak because there's no order requirement
  5304. static void mov_read_chapters(AVFormatContext *s)
  5305. {
  5306. MOVContext *mov = s->priv_data;
  5307. AVStream *st;
  5308. MOVStreamContext *sc;
  5309. int64_t cur_pos;
  5310. int i, j;
  5311. int chapter_track;
  5312. for (j = 0; j < mov->nb_chapter_tracks; j++) {
  5313. chapter_track = mov->chapter_tracks[j];
  5314. st = NULL;
  5315. for (i = 0; i < s->nb_streams; i++)
  5316. if (s->streams[i]->id == chapter_track) {
  5317. st = s->streams[i];
  5318. break;
  5319. }
  5320. if (!st) {
  5321. av_log(s, AV_LOG_ERROR, "Referenced QT chapter track not found\n");
  5322. continue;
  5323. }
  5324. sc = st->priv_data;
  5325. cur_pos = avio_tell(sc->pb);
  5326. if (st->codecpar->codec_type == AVMEDIA_TYPE_VIDEO) {
  5327. st->disposition |= AV_DISPOSITION_ATTACHED_PIC | AV_DISPOSITION_TIMED_THUMBNAILS;
  5328. if (st->nb_index_entries) {
  5329. // Retrieve the first frame, if possible
  5330. AVPacket pkt;
  5331. AVIndexEntry *sample = &st->index_entries[0];
  5332. if (avio_seek(sc->pb, sample->pos, SEEK_SET) != sample->pos) {
  5333. av_log(s, AV_LOG_ERROR, "Failed to retrieve first frame\n");
  5334. goto finish;
  5335. }
  5336. if (av_get_packet(sc->pb, &pkt, sample->size) < 0)
  5337. goto finish;
  5338. st->attached_pic = pkt;
  5339. st->attached_pic.stream_index = st->index;
  5340. st->attached_pic.flags |= AV_PKT_FLAG_KEY;
  5341. }
  5342. } else {
  5343. st->codecpar->codec_type = AVMEDIA_TYPE_DATA;
  5344. st->codecpar->codec_id = AV_CODEC_ID_BIN_DATA;
  5345. st->discard = AVDISCARD_ALL;
  5346. for (i = 0; i < st->nb_index_entries; i++) {
  5347. AVIndexEntry *sample = &st->index_entries[i];
  5348. int64_t end = i+1 < st->nb_index_entries ? st->index_entries[i+1].timestamp : st->duration;
  5349. uint8_t *title;
  5350. uint16_t ch;
  5351. int len, title_len;
  5352. if (end < sample->timestamp) {
  5353. av_log(s, AV_LOG_WARNING, "ignoring stream duration which is shorter than chapters\n");
  5354. end = AV_NOPTS_VALUE;
  5355. }
  5356. if (avio_seek(sc->pb, sample->pos, SEEK_SET) != sample->pos) {
  5357. av_log(s, AV_LOG_ERROR, "Chapter %d not found in file\n", i);
  5358. goto finish;
  5359. }
  5360. // the first two bytes are the length of the title
  5361. len = avio_rb16(sc->pb);
  5362. if (len > sample->size-2)
  5363. continue;
  5364. title_len = 2*len + 1;
  5365. if (!(title = av_mallocz(title_len)))
  5366. goto finish;
  5367. // The samples could theoretically be in any encoding if there's an encd
  5368. // atom following, but in practice are only utf-8 or utf-16, distinguished
  5369. // instead by the presence of a BOM
  5370. if (!len) {
  5371. title[0] = 0;
  5372. } else {
  5373. ch = avio_rb16(sc->pb);
  5374. if (ch == 0xfeff)
  5375. avio_get_str16be(sc->pb, len, title, title_len);
  5376. else if (ch == 0xfffe)
  5377. avio_get_str16le(sc->pb, len, title, title_len);
  5378. else {
  5379. AV_WB16(title, ch);
  5380. if (len == 1 || len == 2)
  5381. title[len] = 0;
  5382. else
  5383. avio_get_str(sc->pb, INT_MAX, title + 2, len - 1);
  5384. }
  5385. }
  5386. avpriv_new_chapter(s, i, st->time_base, sample->timestamp, end, title);
  5387. av_freep(&title);
  5388. }
  5389. }
  5390. finish:
  5391. avio_seek(sc->pb, cur_pos, SEEK_SET);
  5392. }
  5393. }
  5394. static int parse_timecode_in_framenum_format(AVFormatContext *s, AVStream *st,
  5395. uint32_t value, int flags)
  5396. {
  5397. AVTimecode tc;
  5398. char buf[AV_TIMECODE_STR_SIZE];
  5399. AVRational rate = st->avg_frame_rate;
  5400. int ret = av_timecode_init(&tc, rate, flags, 0, s);
  5401. if (ret < 0)
  5402. return ret;
  5403. av_dict_set(&st->metadata, "timecode",
  5404. av_timecode_make_string(&tc, buf, value), 0);
  5405. return 0;
  5406. }
  5407. static int mov_read_rtmd_track(AVFormatContext *s, AVStream *st)
  5408. {
  5409. MOVStreamContext *sc = st->priv_data;
  5410. char buf[AV_TIMECODE_STR_SIZE];
  5411. int64_t cur_pos = avio_tell(sc->pb);
  5412. int hh, mm, ss, ff, drop;
  5413. if (!st->nb_index_entries)
  5414. return -1;
  5415. avio_seek(sc->pb, st->index_entries->pos, SEEK_SET);
  5416. avio_skip(s->pb, 13);
  5417. hh = avio_r8(s->pb);
  5418. mm = avio_r8(s->pb);
  5419. ss = avio_r8(s->pb);
  5420. drop = avio_r8(s->pb);
  5421. ff = avio_r8(s->pb);
  5422. snprintf(buf, AV_TIMECODE_STR_SIZE, "%02d:%02d:%02d%c%02d",
  5423. hh, mm, ss, drop ? ';' : ':', ff);
  5424. av_dict_set(&st->metadata, "timecode", buf, 0);
  5425. avio_seek(sc->pb, cur_pos, SEEK_SET);
  5426. return 0;
  5427. }
  5428. static int mov_read_timecode_track(AVFormatContext *s, AVStream *st)
  5429. {
  5430. MOVStreamContext *sc = st->priv_data;
  5431. int flags = 0;
  5432. int64_t cur_pos = avio_tell(sc->pb);
  5433. uint32_t value;
  5434. if (!st->nb_index_entries)
  5435. return -1;
  5436. avio_seek(sc->pb, st->index_entries->pos, SEEK_SET);
  5437. value = avio_rb32(s->pb);
  5438. if (sc->tmcd_flags & 0x0001) flags |= AV_TIMECODE_FLAG_DROPFRAME;
  5439. if (sc->tmcd_flags & 0x0002) flags |= AV_TIMECODE_FLAG_24HOURSMAX;
  5440. if (sc->tmcd_flags & 0x0004) flags |= AV_TIMECODE_FLAG_ALLOWNEGATIVE;
  5441. /* Assume Counter flag is set to 1 in tmcd track (even though it is likely
  5442. * not the case) and thus assume "frame number format" instead of QT one.
  5443. * No sample with tmcd track can be found with a QT timecode at the moment,
  5444. * despite what the tmcd track "suggests" (Counter flag set to 0 means QT
  5445. * format). */
  5446. parse_timecode_in_framenum_format(s, st, value, flags);
  5447. avio_seek(sc->pb, cur_pos, SEEK_SET);
  5448. return 0;
  5449. }
  5450. static int mov_read_close(AVFormatContext *s)
  5451. {
  5452. MOVContext *mov = s->priv_data;
  5453. int i, j;
  5454. for (i = 0; i < s->nb_streams; i++) {
  5455. AVStream *st = s->streams[i];
  5456. MOVStreamContext *sc = st->priv_data;
  5457. if (!sc)
  5458. continue;
  5459. av_freep(&sc->ctts_data);
  5460. for (j = 0; j < sc->drefs_count; j++) {
  5461. av_freep(&sc->drefs[j].path);
  5462. av_freep(&sc->drefs[j].dir);
  5463. }
  5464. av_freep(&sc->drefs);
  5465. sc->drefs_count = 0;
  5466. if (!sc->pb_is_copied)
  5467. ff_format_io_close(s, &sc->pb);
  5468. sc->pb = NULL;
  5469. av_freep(&sc->chunk_offsets);
  5470. av_freep(&sc->stsc_data);
  5471. av_freep(&sc->sample_sizes);
  5472. av_freep(&sc->keyframes);
  5473. av_freep(&sc->stts_data);
  5474. av_freep(&sc->stps_data);
  5475. av_freep(&sc->elst_data);
  5476. av_freep(&sc->rap_group);
  5477. av_freep(&sc->display_matrix);
  5478. av_freep(&sc->index_ranges);
  5479. if (sc->extradata)
  5480. for (j = 0; j < sc->stsd_count; j++)
  5481. av_free(sc->extradata[j]);
  5482. av_freep(&sc->extradata);
  5483. av_freep(&sc->extradata_size);
  5484. av_freep(&sc->cenc.auxiliary_info);
  5485. av_freep(&sc->cenc.auxiliary_info_sizes);
  5486. av_aes_ctr_free(sc->cenc.aes_ctr);
  5487. av_freep(&sc->stereo3d);
  5488. av_freep(&sc->spherical);
  5489. av_freep(&sc->mastering);
  5490. av_freep(&sc->coll);
  5491. }
  5492. if (mov->dv_demux) {
  5493. avformat_free_context(mov->dv_fctx);
  5494. mov->dv_fctx = NULL;
  5495. }
  5496. if (mov->meta_keys) {
  5497. for (i = 1; i < mov->meta_keys_count; i++) {
  5498. av_freep(&mov->meta_keys[i]);
  5499. }
  5500. av_freep(&mov->meta_keys);
  5501. }
  5502. av_freep(&mov->trex_data);
  5503. av_freep(&mov->bitrates);
  5504. for (i = 0; i < mov->frag_index.nb_items; i++) {
  5505. av_freep(&mov->frag_index.item[i].stream_info);
  5506. }
  5507. av_freep(&mov->frag_index.item);
  5508. av_freep(&mov->aes_decrypt);
  5509. av_freep(&mov->chapter_tracks);
  5510. return 0;
  5511. }
  5512. static int tmcd_is_referenced(AVFormatContext *s, int tmcd_id)
  5513. {
  5514. int i;
  5515. for (i = 0; i < s->nb_streams; i++) {
  5516. AVStream *st = s->streams[i];
  5517. MOVStreamContext *sc = st->priv_data;
  5518. if (st->codecpar->codec_type == AVMEDIA_TYPE_VIDEO &&
  5519. sc->timecode_track == tmcd_id)
  5520. return 1;
  5521. }
  5522. return 0;
  5523. }
  5524. /* look for a tmcd track not referenced by any video track, and export it globally */
  5525. static void export_orphan_timecode(AVFormatContext *s)
  5526. {
  5527. int i;
  5528. for (i = 0; i < s->nb_streams; i++) {
  5529. AVStream *st = s->streams[i];
  5530. if (st->codecpar->codec_tag == MKTAG('t','m','c','d') &&
  5531. !tmcd_is_referenced(s, i + 1)) {
  5532. AVDictionaryEntry *tcr = av_dict_get(st->metadata, "timecode", NULL, 0);
  5533. if (tcr) {
  5534. av_dict_set(&s->metadata, "timecode", tcr->value, 0);
  5535. break;
  5536. }
  5537. }
  5538. }
  5539. }
  5540. static int read_tfra(MOVContext *mov, AVIOContext *f)
  5541. {
  5542. int version, fieldlength, i, j;
  5543. int64_t pos = avio_tell(f);
  5544. uint32_t size = avio_rb32(f);
  5545. unsigned track_id, item_count;
  5546. if (avio_rb32(f) != MKBETAG('t', 'f', 'r', 'a')) {
  5547. return 1;
  5548. }
  5549. av_log(mov->fc, AV_LOG_VERBOSE, "found tfra\n");
  5550. version = avio_r8(f);
  5551. avio_rb24(f);
  5552. track_id = avio_rb32(f);
  5553. fieldlength = avio_rb32(f);
  5554. item_count = avio_rb32(f);
  5555. for (i = 0; i < item_count; i++) {
  5556. int64_t time, offset;
  5557. int index;
  5558. MOVFragmentStreamInfo * frag_stream_info;
  5559. if (avio_feof(f)) {
  5560. return AVERROR_INVALIDDATA;
  5561. }
  5562. if (version == 1) {
  5563. time = avio_rb64(f);
  5564. offset = avio_rb64(f);
  5565. } else {
  5566. time = avio_rb32(f);
  5567. offset = avio_rb32(f);
  5568. }
  5569. // The first sample of each stream in a fragment is always a random
  5570. // access sample. So it's entry in the tfra can be used as the
  5571. // initial PTS of the fragment.
  5572. index = update_frag_index(mov, offset);
  5573. frag_stream_info = get_frag_stream_info(&mov->frag_index, index, track_id);
  5574. if (frag_stream_info &&
  5575. frag_stream_info->first_tfra_pts == AV_NOPTS_VALUE)
  5576. frag_stream_info->first_tfra_pts = time;
  5577. for (j = 0; j < ((fieldlength >> 4) & 3) + 1; j++)
  5578. avio_r8(f);
  5579. for (j = 0; j < ((fieldlength >> 2) & 3) + 1; j++)
  5580. avio_r8(f);
  5581. for (j = 0; j < ((fieldlength >> 0) & 3) + 1; j++)
  5582. avio_r8(f);
  5583. }
  5584. avio_seek(f, pos + size, SEEK_SET);
  5585. return 0;
  5586. }
  5587. static int mov_read_mfra(MOVContext *c, AVIOContext *f)
  5588. {
  5589. int64_t stream_size = avio_size(f);
  5590. int64_t original_pos = avio_tell(f);
  5591. int64_t seek_ret;
  5592. int32_t mfra_size;
  5593. int ret = -1;
  5594. if ((seek_ret = avio_seek(f, stream_size - 4, SEEK_SET)) < 0) {
  5595. ret = seek_ret;
  5596. goto fail;
  5597. }
  5598. mfra_size = avio_rb32(f);
  5599. if (mfra_size < 0 || mfra_size > stream_size) {
  5600. av_log(c->fc, AV_LOG_DEBUG, "doesn't look like mfra (unreasonable size)\n");
  5601. goto fail;
  5602. }
  5603. if ((seek_ret = avio_seek(f, -mfra_size, SEEK_CUR)) < 0) {
  5604. ret = seek_ret;
  5605. goto fail;
  5606. }
  5607. if (avio_rb32(f) != mfra_size) {
  5608. av_log(c->fc, AV_LOG_DEBUG, "doesn't look like mfra (size mismatch)\n");
  5609. goto fail;
  5610. }
  5611. if (avio_rb32(f) != MKBETAG('m', 'f', 'r', 'a')) {
  5612. av_log(c->fc, AV_LOG_DEBUG, "doesn't look like mfra (tag mismatch)\n");
  5613. goto fail;
  5614. }
  5615. av_log(c->fc, AV_LOG_VERBOSE, "stream has mfra\n");
  5616. do {
  5617. ret = read_tfra(c, f);
  5618. if (ret < 0)
  5619. goto fail;
  5620. } while (!ret);
  5621. ret = 0;
  5622. fail:
  5623. seek_ret = avio_seek(f, original_pos, SEEK_SET);
  5624. if (seek_ret < 0) {
  5625. av_log(c->fc, AV_LOG_ERROR,
  5626. "failed to seek back after looking for mfra\n");
  5627. ret = seek_ret;
  5628. }
  5629. return ret;
  5630. }
  5631. static int mov_read_header(AVFormatContext *s)
  5632. {
  5633. MOVContext *mov = s->priv_data;
  5634. AVIOContext *pb = s->pb;
  5635. int j, err;
  5636. MOVAtom atom = { AV_RL32("root") };
  5637. int i;
  5638. if (mov->decryption_key_len != 0 && mov->decryption_key_len != AES_CTR_KEY_SIZE) {
  5639. av_log(s, AV_LOG_ERROR, "Invalid decryption key len %d expected %d\n",
  5640. mov->decryption_key_len, AES_CTR_KEY_SIZE);
  5641. return AVERROR(EINVAL);
  5642. }
  5643. mov->fc = s;
  5644. mov->trak_index = -1;
  5645. /* .mov and .mp4 aren't streamable anyway (only progressive download if moov is before mdat) */
  5646. if (pb->seekable & AVIO_SEEKABLE_NORMAL)
  5647. atom.size = avio_size(pb);
  5648. else
  5649. atom.size = INT64_MAX;
  5650. /* check MOV header */
  5651. do {
  5652. if (mov->moov_retry)
  5653. avio_seek(pb, 0, SEEK_SET);
  5654. if ((err = mov_read_default(mov, pb, atom)) < 0) {
  5655. av_log(s, AV_LOG_ERROR, "error reading header\n");
  5656. mov_read_close(s);
  5657. return err;
  5658. }
  5659. } while ((pb->seekable & AVIO_SEEKABLE_NORMAL) && !mov->found_moov && !mov->moov_retry++);
  5660. if (!mov->found_moov) {
  5661. av_log(s, AV_LOG_ERROR, "moov atom not found\n");
  5662. mov_read_close(s);
  5663. return AVERROR_INVALIDDATA;
  5664. }
  5665. av_log(mov->fc, AV_LOG_TRACE, "on_parse_exit_offset=%"PRId64"\n", avio_tell(pb));
  5666. if (pb->seekable & AVIO_SEEKABLE_NORMAL) {
  5667. if (mov->nb_chapter_tracks > 0 && !mov->ignore_chapters)
  5668. mov_read_chapters(s);
  5669. for (i = 0; i < s->nb_streams; i++)
  5670. if (s->streams[i]->codecpar->codec_tag == AV_RL32("tmcd")) {
  5671. mov_read_timecode_track(s, s->streams[i]);
  5672. } else if (s->streams[i]->codecpar->codec_tag == AV_RL32("rtmd")) {
  5673. mov_read_rtmd_track(s, s->streams[i]);
  5674. }
  5675. }
  5676. /* copy timecode metadata from tmcd tracks to the related video streams */
  5677. for (i = 0; i < s->nb_streams; i++) {
  5678. AVStream *st = s->streams[i];
  5679. MOVStreamContext *sc = st->priv_data;
  5680. if (sc->timecode_track > 0) {
  5681. AVDictionaryEntry *tcr;
  5682. int tmcd_st_id = -1;
  5683. for (j = 0; j < s->nb_streams; j++)
  5684. if (s->streams[j]->id == sc->timecode_track)
  5685. tmcd_st_id = j;
  5686. if (tmcd_st_id < 0 || tmcd_st_id == i)
  5687. continue;
  5688. tcr = av_dict_get(s->streams[tmcd_st_id]->metadata, "timecode", NULL, 0);
  5689. if (tcr)
  5690. av_dict_set(&st->metadata, "timecode", tcr->value, 0);
  5691. }
  5692. }
  5693. export_orphan_timecode(s);
  5694. for (i = 0; i < s->nb_streams; i++) {
  5695. AVStream *st = s->streams[i];
  5696. MOVStreamContext *sc = st->priv_data;
  5697. fix_timescale(mov, sc);
  5698. if(st->codecpar->codec_type == AVMEDIA_TYPE_AUDIO && st->codecpar->codec_id == AV_CODEC_ID_AAC) {
  5699. st->skip_samples = sc->start_pad;
  5700. }
  5701. if (st->codecpar->codec_type == AVMEDIA_TYPE_VIDEO && sc->nb_frames_for_fps > 0 && sc->duration_for_fps > 0)
  5702. av_reduce(&st->avg_frame_rate.num, &st->avg_frame_rate.den,
  5703. sc->time_scale*(int64_t)sc->nb_frames_for_fps, sc->duration_for_fps, INT_MAX);
  5704. if (st->codecpar->codec_type == AVMEDIA_TYPE_SUBTITLE) {
  5705. if (st->codecpar->width <= 0 || st->codecpar->height <= 0) {
  5706. st->codecpar->width = sc->width;
  5707. st->codecpar->height = sc->height;
  5708. }
  5709. if (st->codecpar->codec_id == AV_CODEC_ID_DVD_SUBTITLE) {
  5710. if ((err = mov_rewrite_dvd_sub_extradata(st)) < 0)
  5711. return err;
  5712. }
  5713. }
  5714. if (mov->handbrake_version &&
  5715. mov->handbrake_version <= 1000000*0 + 1000*10 + 2 && // 0.10.2
  5716. st->codecpar->codec_id == AV_CODEC_ID_MP3
  5717. ) {
  5718. av_log(s, AV_LOG_VERBOSE, "Forcing full parsing for mp3 stream\n");
  5719. st->need_parsing = AVSTREAM_PARSE_FULL;
  5720. }
  5721. }
  5722. if (mov->trex_data) {
  5723. for (i = 0; i < s->nb_streams; i++) {
  5724. AVStream *st = s->streams[i];
  5725. MOVStreamContext *sc = st->priv_data;
  5726. if (st->duration > 0) {
  5727. if (sc->data_size > INT64_MAX / sc->time_scale / 8) {
  5728. av_log(s, AV_LOG_ERROR, "Overflow during bit rate calculation %"PRId64" * 8 * %d\n",
  5729. sc->data_size, sc->time_scale);
  5730. mov_read_close(s);
  5731. return AVERROR_INVALIDDATA;
  5732. }
  5733. st->codecpar->bit_rate = sc->data_size * 8 * sc->time_scale / st->duration;
  5734. }
  5735. }
  5736. }
  5737. if (mov->use_mfra_for > 0) {
  5738. for (i = 0; i < s->nb_streams; i++) {
  5739. AVStream *st = s->streams[i];
  5740. MOVStreamContext *sc = st->priv_data;
  5741. if (sc->duration_for_fps > 0) {
  5742. if (sc->data_size > INT64_MAX / sc->time_scale / 8) {
  5743. av_log(s, AV_LOG_ERROR, "Overflow during bit rate calculation %"PRId64" * 8 * %d\n",
  5744. sc->data_size, sc->time_scale);
  5745. mov_read_close(s);
  5746. return AVERROR_INVALIDDATA;
  5747. }
  5748. st->codecpar->bit_rate = sc->data_size * 8 * sc->time_scale /
  5749. sc->duration_for_fps;
  5750. }
  5751. }
  5752. }
  5753. for (i = 0; i < mov->bitrates_count && i < s->nb_streams; i++) {
  5754. if (mov->bitrates[i]) {
  5755. s->streams[i]->codecpar->bit_rate = mov->bitrates[i];
  5756. }
  5757. }
  5758. ff_rfps_calculate(s);
  5759. for (i = 0; i < s->nb_streams; i++) {
  5760. AVStream *st = s->streams[i];
  5761. MOVStreamContext *sc = st->priv_data;
  5762. switch (st->codecpar->codec_type) {
  5763. case AVMEDIA_TYPE_AUDIO:
  5764. err = ff_replaygain_export(st, s->metadata);
  5765. if (err < 0) {
  5766. mov_read_close(s);
  5767. return err;
  5768. }
  5769. break;
  5770. case AVMEDIA_TYPE_VIDEO:
  5771. if (sc->display_matrix) {
  5772. err = av_stream_add_side_data(st, AV_PKT_DATA_DISPLAYMATRIX, (uint8_t*)sc->display_matrix,
  5773. sizeof(int32_t) * 9);
  5774. if (err < 0)
  5775. return err;
  5776. sc->display_matrix = NULL;
  5777. }
  5778. if (sc->stereo3d) {
  5779. err = av_stream_add_side_data(st, AV_PKT_DATA_STEREO3D,
  5780. (uint8_t *)sc->stereo3d,
  5781. sizeof(*sc->stereo3d));
  5782. if (err < 0)
  5783. return err;
  5784. sc->stereo3d = NULL;
  5785. }
  5786. if (sc->spherical) {
  5787. err = av_stream_add_side_data(st, AV_PKT_DATA_SPHERICAL,
  5788. (uint8_t *)sc->spherical,
  5789. sc->spherical_size);
  5790. if (err < 0)
  5791. return err;
  5792. sc->spherical = NULL;
  5793. }
  5794. if (sc->mastering) {
  5795. err = av_stream_add_side_data(st, AV_PKT_DATA_MASTERING_DISPLAY_METADATA,
  5796. (uint8_t *)sc->mastering,
  5797. sizeof(*sc->mastering));
  5798. if (err < 0)
  5799. return err;
  5800. sc->mastering = NULL;
  5801. }
  5802. if (sc->coll) {
  5803. err = av_stream_add_side_data(st, AV_PKT_DATA_CONTENT_LIGHT_LEVEL,
  5804. (uint8_t *)sc->coll,
  5805. sc->coll_size);
  5806. if (err < 0)
  5807. return err;
  5808. sc->coll = NULL;
  5809. }
  5810. break;
  5811. }
  5812. }
  5813. ff_configure_buffers_for_index(s, AV_TIME_BASE);
  5814. for (i = 0; i < mov->frag_index.nb_items; i++)
  5815. if (mov->frag_index.item[i].moof_offset <= mov->fragment.moof_offset)
  5816. mov->frag_index.item[i].headers_read = 1;
  5817. return 0;
  5818. }
  5819. static AVIndexEntry *mov_find_next_sample(AVFormatContext *s, AVStream **st)
  5820. {
  5821. AVIndexEntry *sample = NULL;
  5822. int64_t best_dts = INT64_MAX;
  5823. int i;
  5824. for (i = 0; i < s->nb_streams; i++) {
  5825. AVStream *avst = s->streams[i];
  5826. MOVStreamContext *msc = avst->priv_data;
  5827. if (msc->pb && msc->current_sample < avst->nb_index_entries) {
  5828. AVIndexEntry *current_sample = &avst->index_entries[msc->current_sample];
  5829. int64_t dts = av_rescale(current_sample->timestamp, AV_TIME_BASE, msc->time_scale);
  5830. av_log(s, AV_LOG_TRACE, "stream %d, sample %d, dts %"PRId64"\n", i, msc->current_sample, dts);
  5831. if (!sample || (!(s->pb->seekable & AVIO_SEEKABLE_NORMAL) && current_sample->pos < sample->pos) ||
  5832. ((s->pb->seekable & AVIO_SEEKABLE_NORMAL) &&
  5833. ((msc->pb != s->pb && dts < best_dts) || (msc->pb == s->pb &&
  5834. ((FFABS(best_dts - dts) <= AV_TIME_BASE && current_sample->pos < sample->pos) ||
  5835. (FFABS(best_dts - dts) > AV_TIME_BASE && dts < best_dts)))))) {
  5836. sample = current_sample;
  5837. best_dts = dts;
  5838. *st = avst;
  5839. }
  5840. }
  5841. }
  5842. return sample;
  5843. }
  5844. static int should_retry(AVIOContext *pb, int error_code) {
  5845. if (error_code == AVERROR_EOF || avio_feof(pb))
  5846. return 0;
  5847. return 1;
  5848. }
  5849. static int mov_switch_root(AVFormatContext *s, int64_t target, int index)
  5850. {
  5851. MOVContext *mov = s->priv_data;
  5852. if (index >= 0 && index < mov->frag_index.nb_items)
  5853. target = mov->frag_index.item[index].moof_offset;
  5854. if (avio_seek(s->pb, target, SEEK_SET) != target) {
  5855. av_log(mov->fc, AV_LOG_ERROR, "root atom offset 0x%"PRIx64": partial file\n", target);
  5856. return AVERROR_INVALIDDATA;
  5857. }
  5858. mov->next_root_atom = 0;
  5859. if (index < 0 || index >= mov->frag_index.nb_items)
  5860. index = search_frag_moof_offset(&mov->frag_index, target);
  5861. if (index < mov->frag_index.nb_items) {
  5862. if (index + 1 < mov->frag_index.nb_items)
  5863. mov->next_root_atom = mov->frag_index.item[index + 1].moof_offset;
  5864. if (mov->frag_index.item[index].headers_read)
  5865. return 0;
  5866. mov->frag_index.item[index].headers_read = 1;
  5867. }
  5868. mov->found_mdat = 0;
  5869. if (mov_read_default(mov, s->pb, (MOVAtom){ AV_RL32("root"), INT64_MAX }) < 0 ||
  5870. avio_feof(s->pb))
  5871. return AVERROR_EOF;
  5872. av_log(s, AV_LOG_TRACE, "read fragments, offset 0x%"PRIx64"\n", avio_tell(s->pb));
  5873. return 1;
  5874. }
  5875. static int mov_change_extradata(MOVStreamContext *sc, AVPacket *pkt)
  5876. {
  5877. uint8_t *side, *extradata;
  5878. int extradata_size;
  5879. /* Save the current index. */
  5880. sc->last_stsd_index = sc->stsc_data[sc->stsc_index].id - 1;
  5881. /* Notify the decoder that extradata changed. */
  5882. extradata_size = sc->extradata_size[sc->last_stsd_index];
  5883. extradata = sc->extradata[sc->last_stsd_index];
  5884. if (extradata_size > 0 && extradata) {
  5885. side = av_packet_new_side_data(pkt,
  5886. AV_PKT_DATA_NEW_EXTRADATA,
  5887. extradata_size);
  5888. if (!side)
  5889. return AVERROR(ENOMEM);
  5890. memcpy(side, extradata, extradata_size);
  5891. }
  5892. return 0;
  5893. }
  5894. static int mov_read_packet(AVFormatContext *s, AVPacket *pkt)
  5895. {
  5896. MOVContext *mov = s->priv_data;
  5897. MOVStreamContext *sc;
  5898. AVIndexEntry *sample;
  5899. AVStream *st = NULL;
  5900. int64_t current_index;
  5901. int ret;
  5902. mov->fc = s;
  5903. retry:
  5904. sample = mov_find_next_sample(s, &st);
  5905. if (!sample || (mov->next_root_atom && sample->pos > mov->next_root_atom)) {
  5906. if (!mov->next_root_atom)
  5907. return AVERROR_EOF;
  5908. if ((ret = mov_switch_root(s, mov->next_root_atom, -1)) < 0)
  5909. return ret;
  5910. goto retry;
  5911. }
  5912. sc = st->priv_data;
  5913. /* must be done just before reading, to avoid infinite loop on sample */
  5914. current_index = sc->current_index;
  5915. mov_current_sample_inc(sc);
  5916. if (mov->next_root_atom) {
  5917. sample->pos = FFMIN(sample->pos, mov->next_root_atom);
  5918. sample->size = FFMIN(sample->size, (mov->next_root_atom - sample->pos));
  5919. }
  5920. if (st->discard != AVDISCARD_ALL) {
  5921. int64_t ret64 = avio_seek(sc->pb, sample->pos, SEEK_SET);
  5922. if (ret64 != sample->pos) {
  5923. av_log(mov->fc, AV_LOG_ERROR, "stream %d, offset 0x%"PRIx64": partial file\n",
  5924. sc->ffindex, sample->pos);
  5925. if (should_retry(sc->pb, ret64)) {
  5926. mov_current_sample_dec(sc);
  5927. }
  5928. return AVERROR_INVALIDDATA;
  5929. }
  5930. if( st->discard == AVDISCARD_NONKEY && 0==(sample->flags & AVINDEX_KEYFRAME) ) {
  5931. av_log(mov->fc, AV_LOG_DEBUG, "Nonkey frame from stream %d discarded due to AVDISCARD_NONKEY\n", sc->ffindex);
  5932. goto retry;
  5933. }
  5934. ret = av_get_packet(sc->pb, pkt, sample->size);
  5935. if (ret < 0) {
  5936. if (should_retry(sc->pb, ret)) {
  5937. mov_current_sample_dec(sc);
  5938. }
  5939. return ret;
  5940. }
  5941. if (sc->has_palette) {
  5942. uint8_t *pal;
  5943. pal = av_packet_new_side_data(pkt, AV_PKT_DATA_PALETTE, AVPALETTE_SIZE);
  5944. if (!pal) {
  5945. av_log(mov->fc, AV_LOG_ERROR, "Cannot append palette to packet\n");
  5946. } else {
  5947. memcpy(pal, sc->palette, AVPALETTE_SIZE);
  5948. sc->has_palette = 0;
  5949. }
  5950. }
  5951. #if CONFIG_DV_DEMUXER
  5952. if (mov->dv_demux && sc->dv_audio_container) {
  5953. avpriv_dv_produce_packet(mov->dv_demux, pkt, pkt->data, pkt->size, pkt->pos);
  5954. av_freep(&pkt->data);
  5955. pkt->size = 0;
  5956. ret = avpriv_dv_get_packet(mov->dv_demux, pkt);
  5957. if (ret < 0)
  5958. return ret;
  5959. }
  5960. #endif
  5961. if (st->codecpar->codec_id == AV_CODEC_ID_MP3 && !st->need_parsing && pkt->size > 4) {
  5962. if (ff_mpa_check_header(AV_RB32(pkt->data)) < 0)
  5963. st->need_parsing = AVSTREAM_PARSE_FULL;
  5964. }
  5965. }
  5966. pkt->stream_index = sc->ffindex;
  5967. pkt->dts = sample->timestamp;
  5968. if (sample->flags & AVINDEX_DISCARD_FRAME) {
  5969. pkt->flags |= AV_PKT_FLAG_DISCARD;
  5970. }
  5971. if (sc->ctts_data && sc->ctts_index < sc->ctts_count) {
  5972. pkt->pts = pkt->dts + sc->dts_shift + sc->ctts_data[sc->ctts_index].duration;
  5973. /* update ctts context */
  5974. sc->ctts_sample++;
  5975. if (sc->ctts_index < sc->ctts_count &&
  5976. sc->ctts_data[sc->ctts_index].count == sc->ctts_sample) {
  5977. sc->ctts_index++;
  5978. sc->ctts_sample = 0;
  5979. }
  5980. } else {
  5981. int64_t next_dts = (sc->current_sample < st->nb_index_entries) ?
  5982. st->index_entries[sc->current_sample].timestamp : st->duration;
  5983. pkt->duration = next_dts - pkt->dts;
  5984. pkt->pts = pkt->dts;
  5985. }
  5986. if (st->discard == AVDISCARD_ALL)
  5987. goto retry;
  5988. pkt->flags |= sample->flags & AVINDEX_KEYFRAME ? AV_PKT_FLAG_KEY : 0;
  5989. pkt->pos = sample->pos;
  5990. /* Multiple stsd handling. */
  5991. if (sc->stsc_data) {
  5992. /* Keep track of the stsc index for the given sample, then check
  5993. * if the stsd index is different from the last used one. */
  5994. sc->stsc_sample++;
  5995. if (mov_stsc_index_valid(sc->stsc_index, sc->stsc_count) &&
  5996. mov_get_stsc_samples(sc, sc->stsc_index) == sc->stsc_sample) {
  5997. sc->stsc_index++;
  5998. sc->stsc_sample = 0;
  5999. /* Do not check indexes after a switch. */
  6000. } else if (sc->stsc_data[sc->stsc_index].id > 0 &&
  6001. sc->stsc_data[sc->stsc_index].id - 1 < sc->stsd_count &&
  6002. sc->stsc_data[sc->stsc_index].id - 1 != sc->last_stsd_index) {
  6003. ret = mov_change_extradata(sc, pkt);
  6004. if (ret < 0)
  6005. return ret;
  6006. }
  6007. }
  6008. if (mov->aax_mode)
  6009. aax_filter(pkt->data, pkt->size, mov);
  6010. if (sc->cenc.aes_ctr) {
  6011. ret = cenc_filter(mov, sc, current_index, pkt->data, pkt->size);
  6012. if (ret) {
  6013. return ret;
  6014. }
  6015. }
  6016. return 0;
  6017. }
  6018. static int mov_seek_fragment(AVFormatContext *s, AVStream *st, int64_t timestamp)
  6019. {
  6020. MOVContext *mov = s->priv_data;
  6021. int index;
  6022. if (!mov->frag_index.complete)
  6023. return 0;
  6024. index = search_frag_timestamp(&mov->frag_index, st, timestamp);
  6025. if (index < 0)
  6026. index = 0;
  6027. if (!mov->frag_index.item[index].headers_read)
  6028. return mov_switch_root(s, -1, index);
  6029. if (index + 1 < mov->frag_index.nb_items)
  6030. mov->next_root_atom = mov->frag_index.item[index + 1].moof_offset;
  6031. return 0;
  6032. }
  6033. static int mov_seek_stream(AVFormatContext *s, AVStream *st, int64_t timestamp, int flags)
  6034. {
  6035. MOVStreamContext *sc = st->priv_data;
  6036. int sample, time_sample, ret;
  6037. unsigned int i;
  6038. timestamp -= sc->time_offset;
  6039. ret = mov_seek_fragment(s, st, timestamp);
  6040. if (ret < 0)
  6041. return ret;
  6042. sample = av_index_search_timestamp(st, timestamp, flags);
  6043. av_log(s, AV_LOG_TRACE, "stream %d, timestamp %"PRId64", sample %d\n", st->index, timestamp, sample);
  6044. if (sample < 0 && st->nb_index_entries && timestamp < st->index_entries[0].timestamp)
  6045. sample = 0;
  6046. if (sample < 0) /* not sure what to do */
  6047. return AVERROR_INVALIDDATA;
  6048. mov_current_sample_set(sc, sample);
  6049. av_log(s, AV_LOG_TRACE, "stream %d, found sample %d\n", st->index, sc->current_sample);
  6050. /* adjust ctts index */
  6051. if (sc->ctts_data) {
  6052. time_sample = 0;
  6053. for (i = 0; i < sc->ctts_count; i++) {
  6054. int next = time_sample + sc->ctts_data[i].count;
  6055. if (next > sc->current_sample) {
  6056. sc->ctts_index = i;
  6057. sc->ctts_sample = sc->current_sample - time_sample;
  6058. break;
  6059. }
  6060. time_sample = next;
  6061. }
  6062. }
  6063. /* adjust stsd index */
  6064. time_sample = 0;
  6065. for (i = 0; i < sc->stsc_count; i++) {
  6066. int next = time_sample + mov_get_stsc_samples(sc, i);
  6067. if (next > sc->current_sample) {
  6068. sc->stsc_index = i;
  6069. sc->stsc_sample = sc->current_sample - time_sample;
  6070. break;
  6071. }
  6072. time_sample = next;
  6073. }
  6074. return sample;
  6075. }
  6076. static int mov_read_seek(AVFormatContext *s, int stream_index, int64_t sample_time, int flags)
  6077. {
  6078. MOVContext *mc = s->priv_data;
  6079. AVStream *st;
  6080. int sample;
  6081. int i;
  6082. if (stream_index >= s->nb_streams)
  6083. return AVERROR_INVALIDDATA;
  6084. st = s->streams[stream_index];
  6085. sample = mov_seek_stream(s, st, sample_time, flags);
  6086. if (sample < 0)
  6087. return sample;
  6088. if (mc->seek_individually) {
  6089. /* adjust seek timestamp to found sample timestamp */
  6090. int64_t seek_timestamp = st->index_entries[sample].timestamp;
  6091. for (i = 0; i < s->nb_streams; i++) {
  6092. int64_t timestamp;
  6093. MOVStreamContext *sc = s->streams[i]->priv_data;
  6094. st = s->streams[i];
  6095. st->skip_samples = (sample_time <= 0) ? sc->start_pad : 0;
  6096. if (stream_index == i)
  6097. continue;
  6098. timestamp = av_rescale_q(seek_timestamp, s->streams[stream_index]->time_base, st->time_base);
  6099. mov_seek_stream(s, st, timestamp, flags);
  6100. }
  6101. } else {
  6102. for (i = 0; i < s->nb_streams; i++) {
  6103. MOVStreamContext *sc;
  6104. st = s->streams[i];
  6105. sc = st->priv_data;
  6106. mov_current_sample_set(sc, 0);
  6107. }
  6108. while (1) {
  6109. MOVStreamContext *sc;
  6110. AVIndexEntry *entry = mov_find_next_sample(s, &st);
  6111. if (!entry)
  6112. return AVERROR_INVALIDDATA;
  6113. sc = st->priv_data;
  6114. if (sc->ffindex == stream_index && sc->current_sample == sample)
  6115. break;
  6116. mov_current_sample_inc(sc);
  6117. }
  6118. }
  6119. return 0;
  6120. }
  6121. #define OFFSET(x) offsetof(MOVContext, x)
  6122. #define FLAGS AV_OPT_FLAG_VIDEO_PARAM | AV_OPT_FLAG_DECODING_PARAM
  6123. static const AVOption mov_options[] = {
  6124. {"use_absolute_path",
  6125. "allow using absolute path when opening alias, this is a possible security issue",
  6126. OFFSET(use_absolute_path), AV_OPT_TYPE_BOOL, {.i64 = 0},
  6127. 0, 1, FLAGS},
  6128. {"seek_streams_individually",
  6129. "Seek each stream individually to the to the closest point",
  6130. OFFSET(seek_individually), AV_OPT_TYPE_BOOL, { .i64 = 1 },
  6131. 0, 1, FLAGS},
  6132. {"ignore_editlist", "Ignore the edit list atom.", OFFSET(ignore_editlist), AV_OPT_TYPE_BOOL, {.i64 = 0},
  6133. 0, 1, FLAGS},
  6134. {"advanced_editlist",
  6135. "Modify the AVIndex according to the editlists. Use this option to decode in the order specified by the edits.",
  6136. OFFSET(advanced_editlist), AV_OPT_TYPE_BOOL, {.i64 = 1},
  6137. 0, 1, FLAGS},
  6138. {"ignore_chapters", "", OFFSET(ignore_chapters), AV_OPT_TYPE_BOOL, {.i64 = 0},
  6139. 0, 1, FLAGS},
  6140. {"use_mfra_for",
  6141. "use mfra for fragment timestamps",
  6142. OFFSET(use_mfra_for), AV_OPT_TYPE_INT, {.i64 = FF_MOV_FLAG_MFRA_AUTO},
  6143. -1, FF_MOV_FLAG_MFRA_PTS, FLAGS,
  6144. "use_mfra_for"},
  6145. {"auto", "auto", 0, AV_OPT_TYPE_CONST, {.i64 = FF_MOV_FLAG_MFRA_AUTO}, 0, 0,
  6146. FLAGS, "use_mfra_for" },
  6147. {"dts", "dts", 0, AV_OPT_TYPE_CONST, {.i64 = FF_MOV_FLAG_MFRA_DTS}, 0, 0,
  6148. FLAGS, "use_mfra_for" },
  6149. {"pts", "pts", 0, AV_OPT_TYPE_CONST, {.i64 = FF_MOV_FLAG_MFRA_PTS}, 0, 0,
  6150. FLAGS, "use_mfra_for" },
  6151. { "export_all", "Export unrecognized metadata entries", OFFSET(export_all),
  6152. AV_OPT_TYPE_BOOL, { .i64 = 0 }, 0, 1, .flags = FLAGS },
  6153. { "export_xmp", "Export full XMP metadata", OFFSET(export_xmp),
  6154. AV_OPT_TYPE_BOOL, { .i64 = 0 }, 0, 1, .flags = FLAGS },
  6155. { "activation_bytes", "Secret bytes for Audible AAX files", OFFSET(activation_bytes),
  6156. AV_OPT_TYPE_BINARY, .flags = AV_OPT_FLAG_DECODING_PARAM },
  6157. { "audible_fixed_key", // extracted from libAAX_SDK.so and AAXSDKWin.dll files!
  6158. "Fixed key used for handling Audible AAX files", OFFSET(audible_fixed_key),
  6159. AV_OPT_TYPE_BINARY, {.str="77214d4b196a87cd520045fd20a51d67"},
  6160. .flags = AV_OPT_FLAG_DECODING_PARAM },
  6161. { "decryption_key", "The media decryption key (hex)", OFFSET(decryption_key), AV_OPT_TYPE_BINARY, .flags = AV_OPT_FLAG_DECODING_PARAM },
  6162. { "enable_drefs", "Enable external track support.", OFFSET(enable_drefs), AV_OPT_TYPE_BOOL,
  6163. {.i64 = 0}, 0, 1, FLAGS },
  6164. { NULL },
  6165. };
  6166. static const AVClass mov_class = {
  6167. .class_name = "mov,mp4,m4a,3gp,3g2,mj2",
  6168. .item_name = av_default_item_name,
  6169. .option = mov_options,
  6170. .version = LIBAVUTIL_VERSION_INT,
  6171. };
  6172. AVInputFormat ff_mov_demuxer = {
  6173. .name = "mov,mp4,m4a,3gp,3g2,mj2",
  6174. .long_name = NULL_IF_CONFIG_SMALL("QuickTime / MOV"),
  6175. .priv_class = &mov_class,
  6176. .priv_data_size = sizeof(MOVContext),
  6177. .extensions = "mov,mp4,m4a,3gp,3g2,mj2",
  6178. .read_probe = mov_probe,
  6179. .read_header = mov_read_header,
  6180. .read_packet = mov_read_packet,
  6181. .read_close = mov_read_close,
  6182. .read_seek = mov_read_seek,
  6183. .flags = AVFMT_NO_BYTE_SEEK,
  6184. };