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  1. /*
  2. * nut muxer
  3. * Copyright (c) 2004-2007 Michael Niedermayer
  4. *
  5. * This file is part of FFmpeg.
  6. *
  7. * FFmpeg is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU Lesser General Public
  9. * License as published by the Free Software Foundation; either
  10. * version 2.1 of the License, or (at your option) any later version.
  11. *
  12. * FFmpeg is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * Lesser General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU Lesser General Public
  18. * License along with FFmpeg; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. #include <stdint.h>
  22. #include "libavutil/intreadwrite.h"
  23. #include "libavutil/mathematics.h"
  24. #include "libavutil/tree.h"
  25. #include "libavutil/dict.h"
  26. #include "libavutil/avassert.h"
  27. #include "libavcodec/mpegaudiodata.h"
  28. #include "nut.h"
  29. #include "internal.h"
  30. #include "avio_internal.h"
  31. #include "riff.h"
  32. static int find_expected_header(AVCodecContext *c, int size, int key_frame,
  33. uint8_t out[64])
  34. {
  35. int sample_rate = c->sample_rate;
  36. if (size > 4096)
  37. return 0;
  38. AV_WB24(out, 1);
  39. if (c->codec_id == AV_CODEC_ID_MPEG4) {
  40. if (key_frame) {
  41. return 3;
  42. } else {
  43. out[3] = 0xB6;
  44. return 4;
  45. }
  46. } else if (c->codec_id == AV_CODEC_ID_MPEG1VIDEO ||
  47. c->codec_id == AV_CODEC_ID_MPEG2VIDEO) {
  48. return 3;
  49. } else if (c->codec_id == AV_CODEC_ID_H264) {
  50. return 3;
  51. } else if (c->codec_id == AV_CODEC_ID_MP3 ||
  52. c->codec_id == AV_CODEC_ID_MP2) {
  53. int lsf, mpeg25, sample_rate_index, bitrate_index, frame_size;
  54. int layer = c->codec_id == AV_CODEC_ID_MP3 ? 3 : 2;
  55. unsigned int header = 0xFFF00000;
  56. lsf = sample_rate < (24000 + 32000) / 2;
  57. mpeg25 = sample_rate < (12000 + 16000) / 2;
  58. sample_rate <<= lsf + mpeg25;
  59. if (sample_rate < (32000 + 44100) / 2) sample_rate_index = 2;
  60. else if (sample_rate < (44100 + 48000) / 2) sample_rate_index = 0;
  61. else sample_rate_index = 1;
  62. sample_rate = avpriv_mpa_freq_tab[sample_rate_index] >> (lsf + mpeg25);
  63. for (bitrate_index = 2; bitrate_index < 30; bitrate_index++) {
  64. frame_size =
  65. avpriv_mpa_bitrate_tab[lsf][layer - 1][bitrate_index >> 1];
  66. frame_size = (frame_size * 144000) / (sample_rate << lsf) +
  67. (bitrate_index & 1);
  68. if (frame_size == size)
  69. break;
  70. }
  71. header |= (!lsf) << 19;
  72. header |= (4 - layer) << 17;
  73. header |= 1 << 16; //no crc
  74. AV_WB32(out, header);
  75. if (size <= 0)
  76. return 2; //we guess there is no crc, if there is one the user clearly does not care about overhead
  77. if (bitrate_index == 30)
  78. return -1; //something is wrong ...
  79. header |= (bitrate_index >> 1) << 12;
  80. header |= sample_rate_index << 10;
  81. header |= (bitrate_index & 1) << 9;
  82. return 2; //FIXME actually put the needed ones in build_elision_headers()
  83. //return 3; //we guess that the private bit is not set
  84. //FIXME the above assumptions should be checked, if these turn out false too often something should be done
  85. }
  86. return 0;
  87. }
  88. static int find_header_idx(AVFormatContext *s, AVCodecContext *c, int size, int frame_type)
  89. {
  90. NUTContext *nut = s->priv_data;
  91. uint8_t out[64];
  92. int i;
  93. int len = find_expected_header(c, size, frame_type, out);
  94. for (i = 1; i < nut->header_count; i++) {
  95. if (len == nut->header_len[i] && !memcmp(out, nut->header[i], len)) {
  96. return i;
  97. }
  98. }
  99. return 0;
  100. }
  101. static void build_elision_headers(AVFormatContext *s)
  102. {
  103. NUTContext *nut = s->priv_data;
  104. int i;
  105. //FIXME this is lame
  106. //FIXME write a 2pass mode to find the maximal headers
  107. static const uint8_t headers[][5] = {
  108. { 3, 0x00, 0x00, 0x01 },
  109. { 4, 0x00, 0x00, 0x01, 0xB6},
  110. { 2, 0xFF, 0xFA }, //mp3+crc
  111. { 2, 0xFF, 0xFB }, //mp3
  112. { 2, 0xFF, 0xFC }, //mp2+crc
  113. { 2, 0xFF, 0xFD }, //mp2
  114. };
  115. nut->header_count = 7;
  116. for (i = 1; i < nut->header_count; i++) {
  117. nut->header_len[i] = headers[i - 1][0];
  118. nut->header[i] = &headers[i - 1][1];
  119. }
  120. }
  121. static void build_frame_code(AVFormatContext *s)
  122. {
  123. NUTContext *nut = s->priv_data;
  124. int key_frame, index, pred, stream_id;
  125. int start = 1;
  126. int end = 254;
  127. int keyframe_0_esc = s->nb_streams > 2;
  128. int pred_table[10];
  129. FrameCode *ft;
  130. ft = &nut->frame_code[start];
  131. ft->flags = FLAG_CODED;
  132. ft->size_mul = 1;
  133. ft->pts_delta = 1;
  134. start++;
  135. if (keyframe_0_esc) {
  136. /* keyframe = 0 escape */
  137. FrameCode *ft = &nut->frame_code[start];
  138. ft->flags = FLAG_STREAM_ID | FLAG_SIZE_MSB | FLAG_CODED_PTS;
  139. ft->size_mul = 1;
  140. start++;
  141. }
  142. for (stream_id = 0; stream_id < s->nb_streams; stream_id++) {
  143. int start2 = start + (end - start) * stream_id / s->nb_streams;
  144. int end2 = start + (end - start) * (stream_id + 1) / s->nb_streams;
  145. AVCodecContext *codec = s->streams[stream_id]->codec;
  146. int is_audio = codec->codec_type == AVMEDIA_TYPE_AUDIO;
  147. int intra_only = /*codec->intra_only || */ is_audio;
  148. int pred_count;
  149. int frame_size = 0;
  150. if (codec->codec_type == AVMEDIA_TYPE_AUDIO) {
  151. frame_size = av_get_audio_frame_duration(codec, 0);
  152. if (codec->codec_id == AV_CODEC_ID_VORBIS && !frame_size)
  153. frame_size = 64;
  154. } else {
  155. AVRational f = av_div_q(codec->time_base, *nut->stream[stream_id].time_base);
  156. if (f.den == 1 && f.num>0)
  157. frame_size = f.num;
  158. }
  159. if (!frame_size)
  160. frame_size = 1;
  161. for (key_frame = 0; key_frame < 2; key_frame++) {
  162. if (!intra_only || !keyframe_0_esc || key_frame != 0) {
  163. FrameCode *ft = &nut->frame_code[start2];
  164. ft->flags = FLAG_KEY * key_frame;
  165. ft->flags |= FLAG_SIZE_MSB | FLAG_CODED_PTS;
  166. ft->stream_id = stream_id;
  167. ft->size_mul = 1;
  168. if (is_audio)
  169. ft->header_idx = find_header_idx(s, codec, -1, key_frame);
  170. start2++;
  171. }
  172. }
  173. key_frame = intra_only;
  174. #if 1
  175. if (is_audio) {
  176. int frame_bytes = codec->frame_size * (int64_t)codec->bit_rate /
  177. (8 * codec->sample_rate);
  178. int pts;
  179. for (pts = 0; pts < 2; pts++) {
  180. for (pred = 0; pred < 2; pred++) {
  181. FrameCode *ft = &nut->frame_code[start2];
  182. ft->flags = FLAG_KEY * key_frame;
  183. ft->stream_id = stream_id;
  184. ft->size_mul = frame_bytes + 2;
  185. ft->size_lsb = frame_bytes + pred;
  186. ft->pts_delta = pts * frame_size;
  187. ft->header_idx = find_header_idx(s, codec, frame_bytes + pred, key_frame);
  188. start2++;
  189. }
  190. }
  191. } else {
  192. FrameCode *ft = &nut->frame_code[start2];
  193. ft->flags = FLAG_KEY | FLAG_SIZE_MSB;
  194. ft->stream_id = stream_id;
  195. ft->size_mul = 1;
  196. ft->pts_delta = frame_size;
  197. start2++;
  198. }
  199. #endif
  200. if (codec->has_b_frames) {
  201. pred_count = 5;
  202. pred_table[0] = -2;
  203. pred_table[1] = -1;
  204. pred_table[2] = 1;
  205. pred_table[3] = 3;
  206. pred_table[4] = 4;
  207. } else if (codec->codec_id == AV_CODEC_ID_VORBIS) {
  208. pred_count = 3;
  209. pred_table[0] = 2;
  210. pred_table[1] = 9;
  211. pred_table[2] = 16;
  212. } else {
  213. pred_count = 1;
  214. pred_table[0] = 1;
  215. }
  216. for (pred = 0; pred < pred_count; pred++) {
  217. int start3 = start2 + (end2 - start2) * pred / pred_count;
  218. int end3 = start2 + (end2 - start2) * (pred + 1) / pred_count;
  219. pred_table[pred] *= frame_size;
  220. for (index = start3; index < end3; index++) {
  221. FrameCode *ft = &nut->frame_code[index];
  222. ft->flags = FLAG_KEY * key_frame;
  223. ft->flags |= FLAG_SIZE_MSB;
  224. ft->stream_id = stream_id;
  225. //FIXME use single byte size and pred from last
  226. ft->size_mul = end3 - start3;
  227. ft->size_lsb = index - start3;
  228. ft->pts_delta = pred_table[pred];
  229. if (is_audio)
  230. ft->header_idx = find_header_idx(s, codec, -1, key_frame);
  231. }
  232. }
  233. }
  234. memmove(&nut->frame_code['N' + 1], &nut->frame_code['N'], sizeof(FrameCode) * (255 - 'N'));
  235. nut->frame_code[0].flags =
  236. nut->frame_code[255].flags =
  237. nut->frame_code['N'].flags = FLAG_INVALID;
  238. }
  239. static void put_tt(NUTContext *nut, AVRational *time_base, AVIOContext *bc, uint64_t val)
  240. {
  241. val *= nut->time_base_count;
  242. val += time_base - nut->time_base;
  243. ff_put_v(bc, val);
  244. }
  245. /**
  246. * Store a string as vb.
  247. */
  248. static void put_str(AVIOContext *bc, const char *string)
  249. {
  250. int len = strlen(string);
  251. ff_put_v(bc, len);
  252. avio_write(bc, string, len);
  253. }
  254. static void put_s(AVIOContext *bc, int64_t val)
  255. {
  256. ff_put_v(bc, 2 * FFABS(val) - (val > 0));
  257. }
  258. #ifdef TRACE
  259. static inline void ff_put_v_trace(AVIOContext *bc, uint64_t v, const char *file,
  260. const char *func, int line)
  261. {
  262. av_log(NULL, AV_LOG_DEBUG, "ff_put_v %5"PRId64" / %"PRIX64" in %s %s:%d\n", v, v, file, func, line);
  263. ff_put_v(bc, v);
  264. }
  265. static inline void put_s_trace(AVIOContext *bc, int64_t v, const char *file, const char *func, int line)
  266. {
  267. av_log(NULL, AV_LOG_DEBUG, "put_s %5"PRId64" / %"PRIX64" in %s %s:%d\n", v, v, file, func, line);
  268. put_s(bc, v);
  269. }
  270. #define ff_put_v(bc, v) ff_put_v_trace(bc, v, __FILE__, __PRETTY_FUNCTION__, __LINE__)
  271. #define put_s(bc, v) put_s_trace(bc, v, __FILE__, __PRETTY_FUNCTION__, __LINE__)
  272. #endif
  273. //FIXME remove calculate_checksum
  274. static void put_packet(NUTContext *nut, AVIOContext *bc, AVIOContext *dyn_bc,
  275. int calculate_checksum, uint64_t startcode)
  276. {
  277. uint8_t *dyn_buf = NULL;
  278. int dyn_size = avio_close_dyn_buf(dyn_bc, &dyn_buf);
  279. int forw_ptr = dyn_size + 4 * calculate_checksum;
  280. if (forw_ptr > 4096)
  281. ffio_init_checksum(bc, ff_crc04C11DB7_update, 0);
  282. avio_wb64(bc, startcode);
  283. ff_put_v(bc, forw_ptr);
  284. if (forw_ptr > 4096)
  285. avio_wl32(bc, ffio_get_checksum(bc));
  286. if (calculate_checksum)
  287. ffio_init_checksum(bc, ff_crc04C11DB7_update, 0);
  288. avio_write(bc, dyn_buf, dyn_size);
  289. if (calculate_checksum)
  290. avio_wl32(bc, ffio_get_checksum(bc));
  291. av_free(dyn_buf);
  292. }
  293. static void write_mainheader(NUTContext *nut, AVIOContext *bc)
  294. {
  295. int i, j, tmp_pts, tmp_flags, tmp_stream, tmp_mul, tmp_size, tmp_fields,
  296. tmp_head_idx;
  297. int64_t tmp_match;
  298. ff_put_v(bc, NUT_VERSION);
  299. ff_put_v(bc, nut->avf->nb_streams);
  300. ff_put_v(bc, nut->max_distance);
  301. ff_put_v(bc, nut->time_base_count);
  302. for (i = 0; i < nut->time_base_count; i++) {
  303. ff_put_v(bc, nut->time_base[i].num);
  304. ff_put_v(bc, nut->time_base[i].den);
  305. }
  306. tmp_pts = 0;
  307. tmp_mul = 1;
  308. tmp_stream = 0;
  309. tmp_match = 1 - (1LL << 62);
  310. tmp_head_idx = 0;
  311. for (i = 0; i < 256; ) {
  312. tmp_fields = 0;
  313. tmp_size = 0;
  314. // tmp_res=0;
  315. if (tmp_pts != nut->frame_code[i].pts_delta ) tmp_fields = 1;
  316. if (tmp_mul != nut->frame_code[i].size_mul ) tmp_fields = 2;
  317. if (tmp_stream != nut->frame_code[i].stream_id ) tmp_fields = 3;
  318. if (tmp_size != nut->frame_code[i].size_lsb ) tmp_fields = 4;
  319. // if (tmp_res != nut->frame_code[i].res ) tmp_fields=5;
  320. if (tmp_head_idx != nut->frame_code[i].header_idx) tmp_fields = 8;
  321. tmp_pts = nut->frame_code[i].pts_delta;
  322. tmp_flags = nut->frame_code[i].flags;
  323. tmp_stream = nut->frame_code[i].stream_id;
  324. tmp_mul = nut->frame_code[i].size_mul;
  325. tmp_size = nut->frame_code[i].size_lsb;
  326. // tmp_res = nut->frame_code[i].res;
  327. tmp_head_idx = nut->frame_code[i].header_idx;
  328. for (j = 0; i < 256; j++, i++) {
  329. if (i == 'N') {
  330. j--;
  331. continue;
  332. }
  333. if (nut->frame_code[i].pts_delta != tmp_pts ||
  334. nut->frame_code[i].flags != tmp_flags ||
  335. nut->frame_code[i].stream_id != tmp_stream ||
  336. nut->frame_code[i].size_mul != tmp_mul ||
  337. nut->frame_code[i].size_lsb != tmp_size + j ||
  338. // nut->frame_code[i].res != tmp_res ||
  339. nut->frame_code[i].header_idx != tmp_head_idx)
  340. break;
  341. }
  342. if (j != tmp_mul - tmp_size)
  343. tmp_fields = 6;
  344. ff_put_v(bc, tmp_flags);
  345. ff_put_v(bc, tmp_fields);
  346. if (tmp_fields > 0) put_s(bc, tmp_pts);
  347. if (tmp_fields > 1) ff_put_v(bc, tmp_mul);
  348. if (tmp_fields > 2) ff_put_v(bc, tmp_stream);
  349. if (tmp_fields > 3) ff_put_v(bc, tmp_size);
  350. if (tmp_fields > 4) ff_put_v(bc, 0 /*tmp_res*/);
  351. if (tmp_fields > 5) ff_put_v(bc, j);
  352. if (tmp_fields > 6) ff_put_v(bc, tmp_match);
  353. if (tmp_fields > 7) ff_put_v(bc, tmp_head_idx);
  354. }
  355. ff_put_v(bc, nut->header_count - 1);
  356. for (i = 1; i < nut->header_count; i++) {
  357. ff_put_v(bc, nut->header_len[i]);
  358. avio_write(bc, nut->header[i], nut->header_len[i]);
  359. }
  360. }
  361. static int write_streamheader(AVFormatContext *avctx, AVIOContext *bc,
  362. AVStream *st, int i)
  363. {
  364. NUTContext *nut = avctx->priv_data;
  365. AVCodecContext *codec = st->codec;
  366. ff_put_v(bc, i);
  367. switch (codec->codec_type) {
  368. case AVMEDIA_TYPE_VIDEO: ff_put_v(bc, 0); break;
  369. case AVMEDIA_TYPE_AUDIO: ff_put_v(bc, 1); break;
  370. case AVMEDIA_TYPE_SUBTITLE: ff_put_v(bc, 2); break;
  371. default: ff_put_v(bc, 3); break;
  372. }
  373. ff_put_v(bc, 4);
  374. if (codec->codec_tag) {
  375. avio_wl32(bc, codec->codec_tag);
  376. } else {
  377. av_log(avctx, AV_LOG_ERROR, "No codec tag defined for stream %d\n", i);
  378. return AVERROR(EINVAL);
  379. }
  380. ff_put_v(bc, nut->stream[i].time_base - nut->time_base);
  381. ff_put_v(bc, nut->stream[i].msb_pts_shift);
  382. ff_put_v(bc, nut->stream[i].max_pts_distance);
  383. ff_put_v(bc, codec->has_b_frames);
  384. avio_w8(bc, 0); /* flags: 0x1 - fixed_fps, 0x2 - index_present */
  385. ff_put_v(bc, codec->extradata_size);
  386. avio_write(bc, codec->extradata, codec->extradata_size);
  387. switch (codec->codec_type) {
  388. case AVMEDIA_TYPE_AUDIO:
  389. ff_put_v(bc, codec->sample_rate);
  390. ff_put_v(bc, 1);
  391. ff_put_v(bc, codec->channels);
  392. break;
  393. case AVMEDIA_TYPE_VIDEO:
  394. ff_put_v(bc, codec->width);
  395. ff_put_v(bc, codec->height);
  396. if (st->sample_aspect_ratio.num <= 0 ||
  397. st->sample_aspect_ratio.den <= 0) {
  398. ff_put_v(bc, 0);
  399. ff_put_v(bc, 0);
  400. } else {
  401. ff_put_v(bc, st->sample_aspect_ratio.num);
  402. ff_put_v(bc, st->sample_aspect_ratio.den);
  403. }
  404. ff_put_v(bc, 0); /* csp type -- unknown */
  405. break;
  406. default:
  407. break;
  408. }
  409. return 0;
  410. }
  411. static int add_info(AVIOContext *bc, const char *type, const char *value)
  412. {
  413. put_str(bc, type);
  414. put_s(bc, -1);
  415. put_str(bc, value);
  416. return 1;
  417. }
  418. static int write_globalinfo(NUTContext *nut, AVIOContext *bc)
  419. {
  420. AVFormatContext *s = nut->avf;
  421. AVDictionaryEntry *t = NULL;
  422. AVIOContext *dyn_bc;
  423. uint8_t *dyn_buf = NULL;
  424. int count = 0, dyn_size;
  425. int ret = avio_open_dyn_buf(&dyn_bc);
  426. if (ret < 0)
  427. return ret;
  428. while ((t = av_dict_get(s->metadata, "", t, AV_DICT_IGNORE_SUFFIX)))
  429. count += add_info(dyn_bc, t->key, t->value);
  430. ff_put_v(bc, 0); //stream_if_plus1
  431. ff_put_v(bc, 0); //chapter_id
  432. ff_put_v(bc, 0); //timestamp_start
  433. ff_put_v(bc, 0); //length
  434. ff_put_v(bc, count);
  435. dyn_size = avio_close_dyn_buf(dyn_bc, &dyn_buf);
  436. avio_write(bc, dyn_buf, dyn_size);
  437. av_free(dyn_buf);
  438. return 0;
  439. }
  440. static int write_streaminfo(NUTContext *nut, AVIOContext *bc, int stream_id) {
  441. AVFormatContext *s= nut->avf;
  442. AVStream* st = s->streams[stream_id];
  443. AVDictionaryEntry *t = NULL;
  444. AVIOContext *dyn_bc;
  445. uint8_t *dyn_buf=NULL;
  446. int count=0, dyn_size, i;
  447. int ret = avio_open_dyn_buf(&dyn_bc);
  448. if (ret < 0)
  449. return ret;
  450. while ((t = av_dict_get(st->metadata, "", t, AV_DICT_IGNORE_SUFFIX)))
  451. count += add_info(dyn_bc, t->key, t->value);
  452. for (i=0; ff_nut_dispositions[i].flag; ++i) {
  453. if (st->disposition & ff_nut_dispositions[i].flag)
  454. count += add_info(dyn_bc, "Disposition", ff_nut_dispositions[i].str);
  455. }
  456. if (st->codec->codec_type == AVMEDIA_TYPE_VIDEO) {
  457. uint8_t buf[256];
  458. snprintf(buf, sizeof(buf), "%d/%d", st->codec->time_base.den, st->codec->time_base.num);
  459. count += add_info(dyn_bc, "r_frame_rate", buf);
  460. }
  461. dyn_size = avio_close_dyn_buf(dyn_bc, &dyn_buf);
  462. if (count) {
  463. ff_put_v(bc, stream_id + 1); //stream_id_plus1
  464. ff_put_v(bc, 0); //chapter_id
  465. ff_put_v(bc, 0); //timestamp_start
  466. ff_put_v(bc, 0); //length
  467. ff_put_v(bc, count);
  468. avio_write(bc, dyn_buf, dyn_size);
  469. }
  470. av_free(dyn_buf);
  471. return count;
  472. }
  473. static int write_chapter(NUTContext *nut, AVIOContext *bc, int id)
  474. {
  475. AVIOContext *dyn_bc;
  476. uint8_t *dyn_buf = NULL;
  477. AVDictionaryEntry *t = NULL;
  478. AVChapter *ch = nut->avf->chapters[id];
  479. int ret, dyn_size, count = 0;
  480. ret = avio_open_dyn_buf(&dyn_bc);
  481. if (ret < 0)
  482. return ret;
  483. ff_put_v(bc, 0); // stream_id_plus1
  484. put_s(bc, id + 1); // chapter_id
  485. put_tt(nut, nut->chapter[id].time_base, bc, ch->start); // chapter_start
  486. ff_put_v(bc, ch->end - ch->start); // chapter_len
  487. while ((t = av_dict_get(ch->metadata, "", t, AV_DICT_IGNORE_SUFFIX)))
  488. count += add_info(dyn_bc, t->key, t->value);
  489. ff_put_v(bc, count);
  490. dyn_size = avio_close_dyn_buf(dyn_bc, &dyn_buf);
  491. avio_write(bc, dyn_buf, dyn_size);
  492. av_freep(&dyn_buf);
  493. return 0;
  494. }
  495. static int write_index(NUTContext *nut, AVIOContext *bc) {
  496. int i;
  497. Syncpoint dummy= { .pos= 0 };
  498. Syncpoint *next_node[2] = { NULL };
  499. int64_t startpos = avio_tell(bc);
  500. int64_t payload_size;
  501. put_tt(nut, nut->max_pts_tb, bc, nut->max_pts);
  502. ff_put_v(bc, nut->sp_count);
  503. for (i=0; i<nut->sp_count; i++) {
  504. av_tree_find(nut->syncpoints, &dummy, (void *) ff_nut_sp_pos_cmp, (void**)next_node);
  505. ff_put_v(bc, (next_node[1]->pos >> 4) - (dummy.pos>>4));
  506. dummy.pos = next_node[1]->pos;
  507. }
  508. for (i=0; i<nut->avf->nb_streams; i++) {
  509. StreamContext *nus= &nut->stream[i];
  510. int64_t last_pts= -1;
  511. int j, k;
  512. for (j=0; j<nut->sp_count; j++) {
  513. int flag;
  514. int n = 0;
  515. if (j && nus->keyframe_pts[j] == nus->keyframe_pts[j-1]) {
  516. av_log(nut->avf, AV_LOG_WARNING, "Multiple keyframes with same PTS\n");
  517. nus->keyframe_pts[j] = AV_NOPTS_VALUE;
  518. }
  519. flag = (nus->keyframe_pts[j] != AV_NOPTS_VALUE) ^ (j+1 == nut->sp_count);
  520. for (; j<nut->sp_count && (nus->keyframe_pts[j] != AV_NOPTS_VALUE) == flag; j++)
  521. n++;
  522. ff_put_v(bc, 1 + 2*flag + 4*n);
  523. for (k= j - n; k<=j && k<nut->sp_count; k++) {
  524. if (nus->keyframe_pts[k] == AV_NOPTS_VALUE)
  525. continue;
  526. av_assert0(nus->keyframe_pts[k] > last_pts);
  527. ff_put_v(bc, nus->keyframe_pts[k] - last_pts);
  528. last_pts = nus->keyframe_pts[k];
  529. }
  530. }
  531. }
  532. payload_size = avio_tell(bc) - startpos + 8 + 4;
  533. avio_wb64(bc, 8 + payload_size + av_log2(payload_size) / 7 + 1 + 4*(payload_size > 4096));
  534. return 0;
  535. }
  536. static int write_headers(AVFormatContext *avctx, AVIOContext *bc)
  537. {
  538. NUTContext *nut = avctx->priv_data;
  539. AVIOContext *dyn_bc;
  540. int i, ret;
  541. ff_metadata_conv_ctx(avctx, ff_nut_metadata_conv, NULL);
  542. ret = avio_open_dyn_buf(&dyn_bc);
  543. if (ret < 0)
  544. return ret;
  545. write_mainheader(nut, dyn_bc);
  546. put_packet(nut, bc, dyn_bc, 1, MAIN_STARTCODE);
  547. for (i = 0; i < nut->avf->nb_streams; i++) {
  548. ret = avio_open_dyn_buf(&dyn_bc);
  549. if (ret < 0)
  550. return ret;
  551. ret = write_streamheader(avctx, dyn_bc, nut->avf->streams[i], i);
  552. if (ret < 0)
  553. return ret;
  554. put_packet(nut, bc, dyn_bc, 1, STREAM_STARTCODE);
  555. }
  556. ret = avio_open_dyn_buf(&dyn_bc);
  557. if (ret < 0)
  558. return ret;
  559. write_globalinfo(nut, dyn_bc);
  560. put_packet(nut, bc, dyn_bc, 1, INFO_STARTCODE);
  561. for (i = 0; i < nut->avf->nb_streams; i++) {
  562. ret = avio_open_dyn_buf(&dyn_bc);
  563. if (ret < 0)
  564. return ret;
  565. ret = write_streaminfo(nut, dyn_bc, i);
  566. if (ret < 0)
  567. return ret;
  568. if (ret > 0)
  569. put_packet(nut, bc, dyn_bc, 1, INFO_STARTCODE);
  570. else {
  571. uint8_t *buf;
  572. avio_close_dyn_buf(dyn_bc, &buf);
  573. av_free(buf);
  574. }
  575. }
  576. for (i = 0; i < nut->avf->nb_chapters; i++) {
  577. ret = avio_open_dyn_buf(&dyn_bc);
  578. if (ret < 0)
  579. return ret;
  580. ret = write_chapter(nut, dyn_bc, i);
  581. if (ret < 0) {
  582. uint8_t *buf;
  583. avio_close_dyn_buf(dyn_bc, &buf);
  584. av_freep(&buf);
  585. return ret;
  586. }
  587. put_packet(nut, bc, dyn_bc, 1, INFO_STARTCODE);
  588. }
  589. nut->last_syncpoint_pos = INT_MIN;
  590. nut->header_count++;
  591. return 0;
  592. }
  593. static int nut_write_header(AVFormatContext *s)
  594. {
  595. NUTContext *nut = s->priv_data;
  596. AVIOContext *bc = s->pb;
  597. int i, j, ret;
  598. nut->avf = s;
  599. nut->stream = av_calloc(s->nb_streams, sizeof(*nut->stream ));
  600. nut->chapter = av_calloc(s->nb_chapters, sizeof(*nut->chapter));
  601. nut->time_base= av_calloc(s->nb_streams +
  602. s->nb_chapters, sizeof(*nut->time_base));
  603. if (!nut->stream || !nut->chapter || !nut->time_base) {
  604. av_freep(&nut->stream);
  605. av_freep(&nut->chapter);
  606. av_freep(&nut->time_base);
  607. return AVERROR(ENOMEM);
  608. }
  609. for (i = 0; i < s->nb_streams; i++) {
  610. AVStream *st = s->streams[i];
  611. int ssize;
  612. AVRational time_base;
  613. ff_parse_specific_params(st->codec, &time_base.den, &ssize, &time_base.num);
  614. if (st->codec->codec_type == AVMEDIA_TYPE_AUDIO && st->codec->sample_rate) {
  615. time_base = (AVRational) {1, st->codec->sample_rate};
  616. } else {
  617. time_base = ff_choose_timebase(s, st, 48000);
  618. }
  619. avpriv_set_pts_info(st, 64, time_base.num, time_base.den);
  620. for (j = 0; j < nut->time_base_count; j++)
  621. if (!memcmp(&time_base, &nut->time_base[j], sizeof(AVRational))) {
  622. break;
  623. }
  624. nut->time_base[j] = time_base;
  625. nut->stream[i].time_base = &nut->time_base[j];
  626. if (j == nut->time_base_count)
  627. nut->time_base_count++;
  628. if (INT64_C(1000) * time_base.num >= time_base.den)
  629. nut->stream[i].msb_pts_shift = 7;
  630. else
  631. nut->stream[i].msb_pts_shift = 14;
  632. nut->stream[i].max_pts_distance =
  633. FFMAX(time_base.den, time_base.num) / time_base.num;
  634. }
  635. for (i = 0; i < s->nb_chapters; i++) {
  636. AVChapter *ch = s->chapters[i];
  637. for (j = 0; j < nut->time_base_count; j++)
  638. if (!memcmp(&ch->time_base, &nut->time_base[j], sizeof(AVRational)))
  639. break;
  640. nut->time_base[j] = ch->time_base;
  641. nut->chapter[i].time_base = &nut->time_base[j];
  642. if (j == nut->time_base_count)
  643. nut->time_base_count++;
  644. }
  645. nut->max_distance = MAX_DISTANCE;
  646. build_elision_headers(s);
  647. build_frame_code(s);
  648. av_assert0(nut->frame_code['N'].flags == FLAG_INVALID);
  649. avio_write(bc, ID_STRING, strlen(ID_STRING));
  650. avio_w8(bc, 0);
  651. if ((ret = write_headers(s, bc)) < 0)
  652. return ret;
  653. if (s->avoid_negative_ts < 0)
  654. s->avoid_negative_ts = 1;
  655. avio_flush(bc);
  656. return 0;
  657. }
  658. static int get_needed_flags(NUTContext *nut, StreamContext *nus, FrameCode *fc,
  659. AVPacket *pkt)
  660. {
  661. int flags = 0;
  662. if (pkt->flags & AV_PKT_FLAG_KEY)
  663. flags |= FLAG_KEY;
  664. if (pkt->stream_index != fc->stream_id)
  665. flags |= FLAG_STREAM_ID;
  666. if (pkt->size / fc->size_mul)
  667. flags |= FLAG_SIZE_MSB;
  668. if (pkt->pts - nus->last_pts != fc->pts_delta)
  669. flags |= FLAG_CODED_PTS;
  670. if (pkt->size > 2 * nut->max_distance)
  671. flags |= FLAG_CHECKSUM;
  672. if (FFABS(pkt->pts - nus->last_pts) > nus->max_pts_distance)
  673. flags |= FLAG_CHECKSUM;
  674. if (pkt->size < nut->header_len[fc->header_idx] ||
  675. (pkt->size > 4096 && fc->header_idx) ||
  676. memcmp(pkt->data, nut->header[fc->header_idx],
  677. nut->header_len[fc->header_idx]))
  678. flags |= FLAG_HEADER_IDX;
  679. return flags | (fc->flags & FLAG_CODED);
  680. }
  681. static int find_best_header_idx(NUTContext *nut, AVPacket *pkt)
  682. {
  683. int i;
  684. int best_i = 0;
  685. int best_len = 0;
  686. if (pkt->size > 4096)
  687. return 0;
  688. for (i = 1; i < nut->header_count; i++)
  689. if (pkt->size >= nut->header_len[i]
  690. && nut->header_len[i] > best_len
  691. && !memcmp(pkt->data, nut->header[i], nut->header_len[i])) {
  692. best_i = i;
  693. best_len = nut->header_len[i];
  694. }
  695. return best_i;
  696. }
  697. static int nut_write_packet(AVFormatContext *s, AVPacket *pkt)
  698. {
  699. NUTContext *nut = s->priv_data;
  700. StreamContext *nus = &nut->stream[pkt->stream_index];
  701. AVIOContext *bc = s->pb, *dyn_bc;
  702. FrameCode *fc;
  703. int64_t coded_pts;
  704. int best_length, frame_code, flags, needed_flags, i, header_idx;
  705. int best_header_idx;
  706. int key_frame = !!(pkt->flags & AV_PKT_FLAG_KEY);
  707. int store_sp = 0;
  708. int ret;
  709. if (pkt->pts < 0) {
  710. av_log(s, AV_LOG_ERROR,
  711. "Negative pts not supported stream %d, pts %"PRId64"\n",
  712. pkt->stream_index, pkt->pts);
  713. return AVERROR(EINVAL);
  714. }
  715. if (1LL << (20 + 3 * nut->header_count) <= avio_tell(bc))
  716. write_headers(s, bc);
  717. if (key_frame && !(nus->last_flags & FLAG_KEY))
  718. store_sp = 1;
  719. if (pkt->size + 30 /*FIXME check*/ + avio_tell(bc) >= nut->last_syncpoint_pos + nut->max_distance)
  720. store_sp = 1;
  721. //FIXME: Ensure store_sp is 1 in the first place.
  722. if (store_sp) {
  723. Syncpoint *sp, dummy = { .pos = INT64_MAX };
  724. ff_nut_reset_ts(nut, *nus->time_base, pkt->dts);
  725. for (i = 0; i < s->nb_streams; i++) {
  726. AVStream *st = s->streams[i];
  727. int64_t dts_tb = av_rescale_rnd(pkt->dts,
  728. nus->time_base->num * (int64_t)nut->stream[i].time_base->den,
  729. nus->time_base->den * (int64_t)nut->stream[i].time_base->num,
  730. AV_ROUND_DOWN);
  731. int index = av_index_search_timestamp(st, dts_tb,
  732. AVSEEK_FLAG_BACKWARD);
  733. if (index >= 0)
  734. dummy.pos = FFMIN(dummy.pos, st->index_entries[index].pos);
  735. }
  736. if (dummy.pos == INT64_MAX)
  737. dummy.pos = 0;
  738. sp = av_tree_find(nut->syncpoints, &dummy, (void *)ff_nut_sp_pos_cmp,
  739. NULL);
  740. nut->last_syncpoint_pos = avio_tell(bc);
  741. ret = avio_open_dyn_buf(&dyn_bc);
  742. if (ret < 0)
  743. return ret;
  744. put_tt(nut, nus->time_base, dyn_bc, pkt->dts);
  745. ff_put_v(dyn_bc, sp ? (nut->last_syncpoint_pos - sp->pos) >> 4 : 0);
  746. put_packet(nut, bc, dyn_bc, 1, SYNCPOINT_STARTCODE);
  747. if ((ret = ff_nut_add_sp(nut, nut->last_syncpoint_pos, 0 /*unused*/, pkt->dts)) < 0)
  748. return ret;
  749. if ((1ll<<60) % nut->sp_count == 0)
  750. for (i=0; i<s->nb_streams; i++) {
  751. int j;
  752. StreamContext *nus = &nut->stream[i];
  753. av_reallocp_array(&nus->keyframe_pts, 2*nut->sp_count, sizeof(*nus->keyframe_pts));
  754. if (!nus->keyframe_pts)
  755. return AVERROR(ENOMEM);
  756. for (j=nut->sp_count == 1 ? 0 : nut->sp_count; j<2*nut->sp_count; j++)
  757. nus->keyframe_pts[j] = AV_NOPTS_VALUE;
  758. }
  759. }
  760. av_assert0(nus->last_pts != AV_NOPTS_VALUE);
  761. coded_pts = pkt->pts & ((1 << nus->msb_pts_shift) - 1);
  762. if (ff_lsb2full(nus, coded_pts) != pkt->pts)
  763. coded_pts = pkt->pts + (1 << nus->msb_pts_shift);
  764. best_header_idx = find_best_header_idx(nut, pkt);
  765. best_length = INT_MAX;
  766. frame_code = -1;
  767. for (i = 0; i < 256; i++) {
  768. int length = 0;
  769. FrameCode *fc = &nut->frame_code[i];
  770. int flags = fc->flags;
  771. if (flags & FLAG_INVALID)
  772. continue;
  773. needed_flags = get_needed_flags(nut, nus, fc, pkt);
  774. if (flags & FLAG_CODED) {
  775. length++;
  776. flags = needed_flags;
  777. }
  778. if ((flags & needed_flags) != needed_flags)
  779. continue;
  780. if ((flags ^ needed_flags) & FLAG_KEY)
  781. continue;
  782. if (flags & FLAG_STREAM_ID)
  783. length += ff_get_v_length(pkt->stream_index);
  784. if (pkt->size % fc->size_mul != fc->size_lsb)
  785. continue;
  786. if (flags & FLAG_SIZE_MSB)
  787. length += ff_get_v_length(pkt->size / fc->size_mul);
  788. if (flags & FLAG_CHECKSUM)
  789. length += 4;
  790. if (flags & FLAG_CODED_PTS)
  791. length += ff_get_v_length(coded_pts);
  792. if ( (flags & FLAG_CODED)
  793. && nut->header_len[best_header_idx] > nut->header_len[fc->header_idx] + 1) {
  794. flags |= FLAG_HEADER_IDX;
  795. }
  796. if (flags & FLAG_HEADER_IDX) {
  797. length += 1 - nut->header_len[best_header_idx];
  798. } else {
  799. length -= nut->header_len[fc->header_idx];
  800. }
  801. length *= 4;
  802. length += !(flags & FLAG_CODED_PTS);
  803. length += !(flags & FLAG_CHECKSUM);
  804. if (length < best_length) {
  805. best_length = length;
  806. frame_code = i;
  807. }
  808. }
  809. av_assert0(frame_code != -1);
  810. fc = &nut->frame_code[frame_code];
  811. flags = fc->flags;
  812. needed_flags = get_needed_flags(nut, nus, fc, pkt);
  813. header_idx = fc->header_idx;
  814. ffio_init_checksum(bc, ff_crc04C11DB7_update, 0);
  815. avio_w8(bc, frame_code);
  816. if (flags & FLAG_CODED) {
  817. ff_put_v(bc, (flags ^ needed_flags) & ~(FLAG_CODED));
  818. flags = needed_flags;
  819. }
  820. if (flags & FLAG_STREAM_ID) ff_put_v(bc, pkt->stream_index);
  821. if (flags & FLAG_CODED_PTS) ff_put_v(bc, coded_pts);
  822. if (flags & FLAG_SIZE_MSB ) ff_put_v(bc, pkt->size / fc->size_mul);
  823. if (flags & FLAG_HEADER_IDX) ff_put_v(bc, header_idx = best_header_idx);
  824. if (flags & FLAG_CHECKSUM) avio_wl32(bc, ffio_get_checksum(bc));
  825. else ffio_get_checksum(bc);
  826. avio_write(bc, pkt->data + nut->header_len[header_idx], pkt->size - nut->header_len[header_idx]);
  827. nus->last_flags = flags;
  828. nus->last_pts = pkt->pts;
  829. //FIXME just store one per syncpoint
  830. if (flags & FLAG_KEY) {
  831. av_add_index_entry(
  832. s->streams[pkt->stream_index],
  833. nut->last_syncpoint_pos,
  834. pkt->pts,
  835. 0,
  836. 0,
  837. AVINDEX_KEYFRAME);
  838. if (nus->keyframe_pts && nus->keyframe_pts[nut->sp_count] == AV_NOPTS_VALUE)
  839. nus->keyframe_pts[nut->sp_count] = pkt->pts;
  840. }
  841. if (!nut->max_pts_tb || av_compare_ts(nut->max_pts, *nut->max_pts_tb, pkt->pts, *nus->time_base) < 0) {
  842. nut->max_pts = pkt->pts;
  843. nut->max_pts_tb = nus->time_base;
  844. }
  845. return 0;
  846. }
  847. static int nut_write_trailer(AVFormatContext *s)
  848. {
  849. NUTContext *nut = s->priv_data;
  850. AVIOContext *bc = s->pb, *dyn_bc;
  851. int i, ret;
  852. while (nut->header_count < 3)
  853. write_headers(s, bc);
  854. ret = avio_open_dyn_buf(&dyn_bc);
  855. if (ret >= 0 && nut->sp_count) {
  856. write_index(nut, dyn_bc);
  857. put_packet(nut, bc, dyn_bc, 1, INDEX_STARTCODE);
  858. }
  859. ff_nut_free_sp(nut);
  860. for (i=0; i<s->nb_streams; i++)
  861. av_freep(&nut->stream[i].keyframe_pts);
  862. av_freep(&nut->stream);
  863. av_freep(&nut->chapter);
  864. av_freep(&nut->time_base);
  865. return 0;
  866. }
  867. AVOutputFormat ff_nut_muxer = {
  868. .name = "nut",
  869. .long_name = NULL_IF_CONFIG_SMALL("NUT"),
  870. .mime_type = "video/x-nut",
  871. .extensions = "nut",
  872. .priv_data_size = sizeof(NUTContext),
  873. .audio_codec = CONFIG_LIBVORBIS ? AV_CODEC_ID_VORBIS :
  874. CONFIG_LIBMP3LAME ? AV_CODEC_ID_MP3 : AV_CODEC_ID_MP2,
  875. .video_codec = AV_CODEC_ID_MPEG4,
  876. .write_header = nut_write_header,
  877. .write_packet = nut_write_packet,
  878. .write_trailer = nut_write_trailer,
  879. .flags = AVFMT_GLOBALHEADER | AVFMT_VARIABLE_FPS,
  880. .codec_tag = ff_nut_codec_tags,
  881. };