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

720 lines
28KB

  1. /*
  2. * FLAC parser
  3. * Copyright (c) 2010 Michael Chinen
  4. *
  5. * This file is part of FFmpeg.
  6. *
  7. * FFmpeg is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU Lesser General Public
  9. * License as published by the Free Software Foundation; either
  10. * version 2.1 of the License, or (at your option) any later version.
  11. *
  12. * FFmpeg is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * Lesser General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU Lesser General Public
  18. * License along with FFmpeg; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. /**
  22. * @file
  23. * FLAC parser
  24. *
  25. * The FLAC parser buffers input until FLAC_MIN_HEADERS has been found.
  26. * Each time it finds and verifies a CRC-8 header it sees which of the
  27. * FLAC_MAX_SEQUENTIAL_HEADERS that came before it have a valid CRC-16 footer
  28. * that ends at the newly found header.
  29. * Headers are scored by FLAC_HEADER_BASE_SCORE plus the max of its crc-verified
  30. * children, penalized by changes in sample rate, frame number, etc.
  31. * The parser returns the frame with the highest score.
  32. **/
  33. #include "libavutil/attributes.h"
  34. #include "libavutil/crc.h"
  35. #include "libavutil/fifo.h"
  36. #include "bytestream.h"
  37. #include "parser.h"
  38. #include "flac.h"
  39. /** maximum number of adjacent headers that compare CRCs against each other */
  40. #define FLAC_MAX_SEQUENTIAL_HEADERS 3
  41. /** minimum number of headers buffered and checked before returning frames */
  42. #define FLAC_MIN_HEADERS 10
  43. /** estimate for average size of a FLAC frame */
  44. #define FLAC_AVG_FRAME_SIZE 8192
  45. /** scoring settings for score_header */
  46. #define FLAC_HEADER_BASE_SCORE 10
  47. #define FLAC_HEADER_CHANGED_PENALTY 7
  48. #define FLAC_HEADER_CRC_FAIL_PENALTY 50
  49. #define FLAC_HEADER_NOT_PENALIZED_YET 100000
  50. #define FLAC_HEADER_NOT_SCORED_YET -100000
  51. /** largest possible size of flac header */
  52. #define MAX_FRAME_HEADER_SIZE 16
  53. typedef struct FLACHeaderMarker {
  54. int offset; /**< byte offset from start of FLACParseContext->buffer */
  55. int *link_penalty; /**< pointer to array of local scores between this header
  56. and the one at a distance equal array position */
  57. int max_score; /**< maximum score found after checking each child that
  58. has a valid CRC */
  59. FLACFrameInfo fi; /**< decoded frame header info */
  60. struct FLACHeaderMarker *next; /**< next CRC-8 verified header that
  61. immediately follows this one in
  62. the bytestream */
  63. struct FLACHeaderMarker *best_child; /**< following frame header with
  64. which this frame has the best
  65. score with */
  66. } FLACHeaderMarker;
  67. typedef struct FLACParseContext {
  68. AVCodecParserContext *pc; /**< parent context */
  69. AVCodecContext *avctx; /**< codec context pointer for logging */
  70. FLACHeaderMarker *headers; /**< linked-list that starts at the first
  71. CRC-8 verified header within buffer */
  72. FLACHeaderMarker *best_header; /**< highest scoring header within buffer */
  73. int nb_headers_found; /**< number of headers found in the last
  74. flac_parse() call */
  75. int nb_headers_buffered; /**< number of headers that are buffered */
  76. int best_header_valid; /**< flag set when the parser returns junk;
  77. if set return best_header next time */
  78. AVFifoBuffer *fifo_buf; /**< buffer to store all data until headers
  79. can be verified */
  80. int end_padded; /**< specifies if fifo_buf's end is padded */
  81. uint8_t *wrap_buf; /**< general fifo read buffer when wrapped */
  82. int wrap_buf_allocated_size; /**< actual allocated size of the buffer */
  83. FLACFrameInfo last_fi; /**< last decoded frame header info */
  84. int last_fi_valid; /**< set if last_fi is valid */
  85. } FLACParseContext;
  86. static int frame_header_is_valid(AVCodecContext *avctx, const uint8_t *buf,
  87. FLACFrameInfo *fi)
  88. {
  89. GetBitContext gb;
  90. init_get_bits(&gb, buf, MAX_FRAME_HEADER_SIZE * 8);
  91. return !ff_flac_decode_frame_header(avctx, &gb, fi, 127);
  92. }
  93. /**
  94. * Non-destructive fast fifo pointer fetching
  95. * Returns a pointer from the specified offset.
  96. * If possible the pointer points within the fifo buffer.
  97. * Otherwise (if it would cause a wrap around,) a pointer to a user-specified
  98. * buffer is used.
  99. * The pointer can be NULL. In any case it will be reallocated to hold the size.
  100. * If the returned pointer will be used after subsequent calls to flac_fifo_read_wrap
  101. * then the subsequent calls should pass in a different wrap_buf so as to not
  102. * overwrite the contents of the previous wrap_buf.
  103. * This function is based on av_fifo_generic_read, which is why there is a comment
  104. * about a memory barrier for SMP.
  105. */
  106. static uint8_t* flac_fifo_read_wrap(FLACParseContext *fpc, int offset, int len,
  107. uint8_t** wrap_buf, int* allocated_size)
  108. {
  109. AVFifoBuffer *f = fpc->fifo_buf;
  110. uint8_t *start = f->rptr + offset;
  111. uint8_t *tmp_buf;
  112. if (start >= f->end)
  113. start -= f->end - f->buffer;
  114. if (f->end - start >= len)
  115. return start;
  116. tmp_buf = av_fast_realloc(*wrap_buf, allocated_size, len);
  117. if (!tmp_buf) {
  118. av_log(fpc->avctx, AV_LOG_ERROR,
  119. "couldn't reallocate wrap buffer of size %d", len);
  120. return NULL;
  121. }
  122. *wrap_buf = tmp_buf;
  123. do {
  124. int seg_len = FFMIN(f->end - start, len);
  125. memcpy(tmp_buf, start, seg_len);
  126. tmp_buf = (uint8_t*)tmp_buf + seg_len;
  127. // memory barrier needed for SMP here in theory
  128. start += seg_len - (f->end - f->buffer);
  129. len -= seg_len;
  130. } while (len > 0);
  131. return *wrap_buf;
  132. }
  133. /**
  134. * Return a pointer in the fifo buffer where the offset starts at until
  135. * the wrap point or end of request.
  136. * len will contain the valid length of the returned buffer.
  137. * A second call to flac_fifo_read (with new offset and len) should be called
  138. * to get the post-wrap buf if the returned len is less than the requested.
  139. **/
  140. static uint8_t* flac_fifo_read(FLACParseContext *fpc, int offset, int *len)
  141. {
  142. AVFifoBuffer *f = fpc->fifo_buf;
  143. uint8_t *start = f->rptr + offset;
  144. if (start >= f->end)
  145. start -= f->end - f->buffer;
  146. *len = FFMIN(*len, f->end - start);
  147. return start;
  148. }
  149. static int find_headers_search_validate(FLACParseContext *fpc, int offset)
  150. {
  151. FLACFrameInfo fi;
  152. uint8_t *header_buf;
  153. int size = 0;
  154. header_buf = flac_fifo_read_wrap(fpc, offset,
  155. MAX_FRAME_HEADER_SIZE,
  156. &fpc->wrap_buf,
  157. &fpc->wrap_buf_allocated_size);
  158. if (frame_header_is_valid(fpc->avctx, header_buf, &fi)) {
  159. FLACHeaderMarker **end_handle = &fpc->headers;
  160. int i;
  161. size = 0;
  162. while (*end_handle) {
  163. end_handle = &(*end_handle)->next;
  164. size++;
  165. }
  166. *end_handle = av_mallocz(sizeof(FLACHeaderMarker));
  167. if (!*end_handle) {
  168. av_log(fpc->avctx, AV_LOG_ERROR,
  169. "couldn't allocate FLACHeaderMarker\n");
  170. return AVERROR(ENOMEM);
  171. }
  172. (*end_handle)->fi = fi;
  173. (*end_handle)->offset = offset;
  174. (*end_handle)->link_penalty = av_malloc(sizeof(int) *
  175. FLAC_MAX_SEQUENTIAL_HEADERS);
  176. for (i = 0; i < FLAC_MAX_SEQUENTIAL_HEADERS; i++)
  177. (*end_handle)->link_penalty[i] = FLAC_HEADER_NOT_PENALIZED_YET;
  178. fpc->nb_headers_found++;
  179. size++;
  180. }
  181. return size;
  182. }
  183. static int find_headers_search(FLACParseContext *fpc, uint8_t *buf, int buf_size,
  184. int search_start)
  185. {
  186. int size = 0, mod_offset = (buf_size - 1) % 4, i, j;
  187. uint32_t x;
  188. for (i = 0; i < mod_offset; i++) {
  189. if ((AV_RB16(buf + i) & 0xFFFE) == 0xFFF8)
  190. size = find_headers_search_validate(fpc, search_start + i);
  191. }
  192. for (; i < buf_size - 1; i += 4) {
  193. x = AV_RB32(buf + i);
  194. if (((x & ~(x + 0x01010101)) & 0x80808080)) {
  195. for (j = 0; j < 4; j++) {
  196. if ((AV_RB16(buf + i + j) & 0xFFFE) == 0xFFF8)
  197. size = find_headers_search_validate(fpc, search_start + i + j);
  198. }
  199. }
  200. }
  201. return size;
  202. }
  203. static int find_new_headers(FLACParseContext *fpc, int search_start)
  204. {
  205. FLACHeaderMarker *end;
  206. int search_end, size = 0, read_len, temp;
  207. uint8_t *buf;
  208. fpc->nb_headers_found = 0;
  209. /* Search for a new header of at most 16 bytes. */
  210. search_end = av_fifo_size(fpc->fifo_buf) - (MAX_FRAME_HEADER_SIZE - 1);
  211. read_len = search_end - search_start + 1;
  212. buf = flac_fifo_read(fpc, search_start, &read_len);
  213. size = find_headers_search(fpc, buf, read_len, search_start);
  214. search_start += read_len - 1;
  215. /* If fifo end was hit do the wrap around. */
  216. if (search_start != search_end) {
  217. uint8_t wrap[2];
  218. wrap[0] = buf[read_len - 1];
  219. read_len = search_end - search_start + 1;
  220. /* search_start + 1 is the post-wrap offset in the fifo. */
  221. buf = flac_fifo_read(fpc, search_start + 1, &read_len);
  222. wrap[1] = buf[0];
  223. if ((AV_RB16(wrap) & 0xFFFE) == 0xFFF8) {
  224. temp = find_headers_search_validate(fpc, search_start);
  225. size = FFMAX(size, temp);
  226. }
  227. search_start++;
  228. /* Continue to do the last half of the wrap. */
  229. temp = find_headers_search(fpc, buf, read_len, search_start);
  230. size = FFMAX(size, temp);
  231. search_start += read_len - 1;
  232. }
  233. /* Return the size even if no new headers were found. */
  234. if (!size && fpc->headers)
  235. for (end = fpc->headers; end; end = end->next)
  236. size++;
  237. return size;
  238. }
  239. static int check_header_fi_mismatch(FLACParseContext *fpc,
  240. FLACFrameInfo *header_fi,
  241. FLACFrameInfo *child_fi,
  242. int log_level_offset)
  243. {
  244. int deduction = 0;
  245. if (child_fi->samplerate != header_fi->samplerate) {
  246. deduction += FLAC_HEADER_CHANGED_PENALTY;
  247. av_log(fpc->avctx, AV_LOG_WARNING + log_level_offset,
  248. "sample rate change detected in adjacent frames\n");
  249. }
  250. if (child_fi->bps != header_fi->bps) {
  251. deduction += FLAC_HEADER_CHANGED_PENALTY;
  252. av_log(fpc->avctx, AV_LOG_WARNING + log_level_offset,
  253. "bits per sample change detected in adjacent frames\n");
  254. }
  255. if (child_fi->is_var_size != header_fi->is_var_size) {
  256. /* Changing blocking strategy not allowed per the spec */
  257. deduction += FLAC_HEADER_BASE_SCORE;
  258. av_log(fpc->avctx, AV_LOG_WARNING + log_level_offset,
  259. "blocking strategy change detected in adjacent frames\n");
  260. }
  261. if (child_fi->channels != header_fi->channels) {
  262. deduction += FLAC_HEADER_CHANGED_PENALTY;
  263. av_log(fpc->avctx, AV_LOG_WARNING + log_level_offset,
  264. "number of channels change detected in adjacent frames\n");
  265. }
  266. return deduction;
  267. }
  268. static int check_header_mismatch(FLACParseContext *fpc,
  269. FLACHeaderMarker *header,
  270. FLACHeaderMarker *child,
  271. int log_level_offset)
  272. {
  273. FLACFrameInfo *header_fi = &header->fi, *child_fi = &child->fi;
  274. int deduction, deduction_expected = 0, i;
  275. deduction = check_header_fi_mismatch(fpc, header_fi, child_fi,
  276. log_level_offset);
  277. /* Check sample and frame numbers. */
  278. if ((child_fi->frame_or_sample_num - header_fi->frame_or_sample_num
  279. != header_fi->blocksize) &&
  280. (child_fi->frame_or_sample_num
  281. != header_fi->frame_or_sample_num + 1)) {
  282. FLACHeaderMarker *curr;
  283. int expected_frame_num, expected_sample_num;
  284. /* If there are frames in the middle we expect this deduction,
  285. as they are probably valid and this one follows it */
  286. expected_frame_num = expected_sample_num = header_fi->frame_or_sample_num;
  287. curr = header;
  288. while (curr != child) {
  289. /* Ignore frames that failed all crc checks */
  290. for (i = 0; i < FLAC_MAX_SEQUENTIAL_HEADERS; i++) {
  291. if (curr->link_penalty[i] < FLAC_HEADER_CRC_FAIL_PENALTY) {
  292. expected_frame_num++;
  293. expected_sample_num += curr->fi.blocksize;
  294. break;
  295. }
  296. }
  297. curr = curr->next;
  298. }
  299. if (expected_frame_num == child_fi->frame_or_sample_num ||
  300. expected_sample_num == child_fi->frame_or_sample_num)
  301. deduction_expected = deduction ? 0 : 1;
  302. deduction += FLAC_HEADER_CHANGED_PENALTY;
  303. av_log(fpc->avctx, AV_LOG_WARNING + log_level_offset,
  304. "sample/frame number mismatch in adjacent frames\n");
  305. }
  306. /* If we have suspicious headers, check the CRC between them */
  307. if (deduction && !deduction_expected) {
  308. FLACHeaderMarker *curr;
  309. int read_len;
  310. uint8_t *buf;
  311. uint32_t crc = 1;
  312. int inverted_test = 0;
  313. /* Since CRC is expensive only do it if we haven't yet.
  314. This assumes a CRC penalty is greater than all other check penalties */
  315. curr = header->next;
  316. for (i = 0; i < FLAC_MAX_SEQUENTIAL_HEADERS && curr != child; i++)
  317. curr = curr->next;
  318. if (header->link_penalty[i] < FLAC_HEADER_CRC_FAIL_PENALTY ||
  319. header->link_penalty[i] == FLAC_HEADER_NOT_PENALIZED_YET) {
  320. FLACHeaderMarker *start, *end;
  321. /* Although overlapping chains are scored, the crc should never
  322. have to be computed twice for a single byte. */
  323. start = header;
  324. end = child;
  325. if (i > 0 &&
  326. header->link_penalty[i - 1] >= FLAC_HEADER_CRC_FAIL_PENALTY) {
  327. while (start->next != child)
  328. start = start->next;
  329. inverted_test = 1;
  330. } else if (i > 0 &&
  331. header->next->link_penalty[i-1] >=
  332. FLAC_HEADER_CRC_FAIL_PENALTY ) {
  333. end = header->next;
  334. inverted_test = 1;
  335. }
  336. read_len = end->offset - start->offset;
  337. buf = flac_fifo_read(fpc, start->offset, &read_len);
  338. crc = av_crc(av_crc_get_table(AV_CRC_16_ANSI), 0, buf, read_len);
  339. read_len = (end->offset - start->offset) - read_len;
  340. if (read_len) {
  341. buf = flac_fifo_read(fpc, end->offset - read_len, &read_len);
  342. crc = av_crc(av_crc_get_table(AV_CRC_16_ANSI), crc, buf, read_len);
  343. }
  344. }
  345. if (!crc ^ !inverted_test) {
  346. deduction += FLAC_HEADER_CRC_FAIL_PENALTY;
  347. av_log(fpc->avctx, AV_LOG_WARNING + log_level_offset,
  348. "crc check failed from offset %i (frame %"PRId64") to %i (frame %"PRId64")\n",
  349. header->offset, header_fi->frame_or_sample_num,
  350. child->offset, child_fi->frame_or_sample_num);
  351. }
  352. }
  353. return deduction;
  354. }
  355. /**
  356. * Score a header.
  357. *
  358. * Give FLAC_HEADER_BASE_SCORE points to a frame for existing.
  359. * If it has children, (subsequent frames of which the preceding CRC footer
  360. * validates against this one,) then take the maximum score of the children,
  361. * with a penalty of FLAC_HEADER_CHANGED_PENALTY applied for each change to
  362. * bps, sample rate, channels, but not decorrelation mode, or blocksize,
  363. * because it can change often.
  364. **/
  365. static int score_header(FLACParseContext *fpc, FLACHeaderMarker *header)
  366. {
  367. FLACHeaderMarker *child;
  368. int dist = 0;
  369. int child_score;
  370. int base_score = FLAC_HEADER_BASE_SCORE;
  371. if (header->max_score != FLAC_HEADER_NOT_SCORED_YET)
  372. return header->max_score;
  373. /* Modify the base score with changes from the last output header */
  374. if (fpc->last_fi_valid) {
  375. /* Silence the log since this will be repeated if selected */
  376. base_score -= check_header_fi_mismatch(fpc, &fpc->last_fi, &header->fi,
  377. AV_LOG_DEBUG);
  378. }
  379. header->max_score = base_score;
  380. /* Check and compute the children's scores. */
  381. child = header->next;
  382. for (dist = 0; dist < FLAC_MAX_SEQUENTIAL_HEADERS && child; dist++) {
  383. /* Look at the child's frame header info and penalize suspicious
  384. changes between the headers. */
  385. if (header->link_penalty[dist] == FLAC_HEADER_NOT_PENALIZED_YET) {
  386. header->link_penalty[dist] = check_header_mismatch(fpc, header,
  387. child, AV_LOG_DEBUG);
  388. }
  389. child_score = score_header(fpc, child) - header->link_penalty[dist];
  390. if (FLAC_HEADER_BASE_SCORE + child_score > header->max_score) {
  391. /* Keep the child because the frame scoring is dynamic. */
  392. header->best_child = child;
  393. header->max_score = base_score + child_score;
  394. }
  395. child = child->next;
  396. }
  397. return header->max_score;
  398. }
  399. static void score_sequences(FLACParseContext *fpc)
  400. {
  401. FLACHeaderMarker *curr;
  402. int best_score = 0;//FLAC_HEADER_NOT_SCORED_YET;
  403. /* First pass to clear all old scores. */
  404. for (curr = fpc->headers; curr; curr = curr->next)
  405. curr->max_score = FLAC_HEADER_NOT_SCORED_YET;
  406. /* Do a second pass to score them all. */
  407. for (curr = fpc->headers; curr; curr = curr->next) {
  408. if (score_header(fpc, curr) > best_score) {
  409. fpc->best_header = curr;
  410. best_score = curr->max_score;
  411. }
  412. }
  413. }
  414. static int get_best_header(FLACParseContext* fpc, const uint8_t **poutbuf,
  415. int *poutbuf_size)
  416. {
  417. FLACHeaderMarker *header = fpc->best_header;
  418. FLACHeaderMarker *child = header->best_child;
  419. if (!child) {
  420. *poutbuf_size = av_fifo_size(fpc->fifo_buf) - header->offset;
  421. } else {
  422. *poutbuf_size = child->offset - header->offset;
  423. /* If the child has suspicious changes, log them */
  424. check_header_mismatch(fpc, header, child, 0);
  425. }
  426. if (header->fi.channels != fpc->avctx->channels ||
  427. !fpc->avctx->channel_layout) {
  428. fpc->avctx->channels = header->fi.channels;
  429. ff_flac_set_channel_layout(fpc->avctx);
  430. }
  431. fpc->avctx->sample_rate = header->fi.samplerate;
  432. fpc->pc->duration = header->fi.blocksize;
  433. *poutbuf = flac_fifo_read_wrap(fpc, header->offset, *poutbuf_size,
  434. &fpc->wrap_buf,
  435. &fpc->wrap_buf_allocated_size);
  436. fpc->best_header_valid = 0;
  437. fpc->last_fi_valid = 1;
  438. fpc->last_fi = header->fi;
  439. /* Return the negative overread index so the client can compute pos.
  440. This should be the amount overread to the beginning of the child */
  441. if (child)
  442. return child->offset - av_fifo_size(fpc->fifo_buf);
  443. return 0;
  444. }
  445. static int flac_parse(AVCodecParserContext *s, AVCodecContext *avctx,
  446. const uint8_t **poutbuf, int *poutbuf_size,
  447. const uint8_t *buf, int buf_size)
  448. {
  449. FLACParseContext *fpc = s->priv_data;
  450. FLACHeaderMarker *curr;
  451. int nb_headers;
  452. const uint8_t *read_end = buf;
  453. const uint8_t *read_start = buf;
  454. if (s->flags & PARSER_FLAG_COMPLETE_FRAMES) {
  455. FLACFrameInfo fi;
  456. if (frame_header_is_valid(avctx, buf, &fi))
  457. s->duration = fi.blocksize;
  458. *poutbuf = buf;
  459. *poutbuf_size = buf_size;
  460. return buf_size;
  461. }
  462. fpc->avctx = avctx;
  463. if (fpc->best_header_valid)
  464. return get_best_header(fpc, poutbuf, poutbuf_size);
  465. /* If a best_header was found last call remove it with the buffer data. */
  466. if (fpc->best_header && fpc->best_header->best_child) {
  467. FLACHeaderMarker *temp;
  468. FLACHeaderMarker *best_child = fpc->best_header->best_child;
  469. /* Remove headers in list until the end of the best_header. */
  470. for (curr = fpc->headers; curr != best_child; curr = temp) {
  471. if (curr != fpc->best_header) {
  472. av_log(avctx, AV_LOG_DEBUG,
  473. "dropping low score %i frame header from offset %i to %i\n",
  474. curr->max_score, curr->offset, curr->next->offset);
  475. }
  476. temp = curr->next;
  477. av_freep(&curr->link_penalty);
  478. av_free(curr);
  479. fpc->nb_headers_buffered--;
  480. }
  481. /* Release returned data from ring buffer. */
  482. av_fifo_drain(fpc->fifo_buf, best_child->offset);
  483. /* Fix the offset for the headers remaining to match the new buffer. */
  484. for (curr = best_child->next; curr; curr = curr->next)
  485. curr->offset -= best_child->offset;
  486. fpc->nb_headers_buffered--;
  487. best_child->offset = 0;
  488. fpc->headers = best_child;
  489. if (fpc->nb_headers_buffered >= FLAC_MIN_HEADERS) {
  490. fpc->best_header = best_child;
  491. return get_best_header(fpc, poutbuf, poutbuf_size);
  492. }
  493. fpc->best_header = NULL;
  494. } else if (fpc->best_header) {
  495. /* No end frame no need to delete the buffer; probably eof */
  496. FLACHeaderMarker *temp;
  497. for (curr = fpc->headers; curr != fpc->best_header; curr = temp) {
  498. temp = curr->next;
  499. av_freep(&curr->link_penalty);
  500. av_free(curr);
  501. }
  502. fpc->headers = fpc->best_header->next;
  503. av_freep(&fpc->best_header->link_penalty);
  504. av_freep(&fpc->best_header);
  505. }
  506. /* Find and score new headers. */
  507. /* buf_size is to zero when padding, so check for this since we do */
  508. /* not want to try to read more input once we have found the end. */
  509. /* Note that as (non-modified) parameters, buf can be non-NULL, */
  510. /* while buf_size is 0. */
  511. while ((buf && buf_size && read_end < buf + buf_size &&
  512. fpc->nb_headers_buffered < FLAC_MIN_HEADERS)
  513. || ((!buf || !buf_size) && !fpc->end_padded)) {
  514. int start_offset;
  515. /* Pad the end once if EOF, to check the final region for headers. */
  516. if (!buf || !buf_size) {
  517. fpc->end_padded = 1;
  518. buf_size = MAX_FRAME_HEADER_SIZE;
  519. read_end = read_start + MAX_FRAME_HEADER_SIZE;
  520. } else {
  521. /* The maximum read size is the upper-bound of what the parser
  522. needs to have the required number of frames buffered */
  523. int nb_desired = FLAC_MIN_HEADERS - fpc->nb_headers_buffered + 1;
  524. read_end = read_end + FFMIN(buf + buf_size - read_end,
  525. nb_desired * FLAC_AVG_FRAME_SIZE);
  526. }
  527. /* Fill the buffer. */
  528. if ( av_fifo_space(fpc->fifo_buf) < read_end - read_start
  529. && av_fifo_realloc2(fpc->fifo_buf, (read_end - read_start) + 2*av_fifo_size(fpc->fifo_buf)) < 0) {
  530. av_log(avctx, AV_LOG_ERROR,
  531. "couldn't reallocate buffer of size %td\n",
  532. (read_end - read_start) + av_fifo_size(fpc->fifo_buf));
  533. goto handle_error;
  534. }
  535. if (buf && buf_size) {
  536. av_fifo_generic_write(fpc->fifo_buf, (void*) read_start,
  537. read_end - read_start, NULL);
  538. } else {
  539. int8_t pad[MAX_FRAME_HEADER_SIZE] = { 0 };
  540. av_fifo_generic_write(fpc->fifo_buf, (void*) pad, sizeof(pad), NULL);
  541. }
  542. /* Tag headers and update sequences. */
  543. start_offset = av_fifo_size(fpc->fifo_buf) -
  544. ((read_end - read_start) + (MAX_FRAME_HEADER_SIZE - 1));
  545. start_offset = FFMAX(0, start_offset);
  546. nb_headers = find_new_headers(fpc, start_offset);
  547. if (nb_headers < 0) {
  548. av_log(avctx, AV_LOG_ERROR,
  549. "find_new_headers couldn't allocate FLAC header\n");
  550. goto handle_error;
  551. }
  552. fpc->nb_headers_buffered = nb_headers;
  553. /* Wait till FLAC_MIN_HEADERS to output a valid frame. */
  554. if (!fpc->end_padded && fpc->nb_headers_buffered < FLAC_MIN_HEADERS) {
  555. if (buf && read_end < buf + buf_size) {
  556. read_start = read_end;
  557. continue;
  558. } else {
  559. goto handle_error;
  560. }
  561. }
  562. /* If headers found, update the scores since we have longer chains. */
  563. if (fpc->end_padded || fpc->nb_headers_found)
  564. score_sequences(fpc);
  565. /* restore the state pre-padding */
  566. if (fpc->end_padded) {
  567. int warp = fpc->fifo_buf->wptr - fpc->fifo_buf->buffer < MAX_FRAME_HEADER_SIZE;
  568. /* HACK: drain the tail of the fifo */
  569. fpc->fifo_buf->wptr -= MAX_FRAME_HEADER_SIZE;
  570. fpc->fifo_buf->wndx -= MAX_FRAME_HEADER_SIZE;
  571. if (warp) {
  572. fpc->fifo_buf->wptr += fpc->fifo_buf->end -
  573. fpc->fifo_buf->buffer;
  574. }
  575. buf_size = 0;
  576. read_start = read_end = NULL;
  577. }
  578. }
  579. curr = fpc->headers;
  580. for (curr = fpc->headers; curr; curr = curr->next) {
  581. if (curr->max_score > 0 &&
  582. (!fpc->best_header || curr->max_score > fpc->best_header->max_score)) {
  583. fpc->best_header = curr;
  584. }
  585. }
  586. if (fpc->best_header) {
  587. fpc->best_header_valid = 1;
  588. if (fpc->best_header->offset > 0) {
  589. /* Output a junk frame. */
  590. av_log(avctx, AV_LOG_DEBUG, "Junk frame till offset %i\n",
  591. fpc->best_header->offset);
  592. /* Set duration to 0. It is unknown or invalid in a junk frame. */
  593. s->duration = 0;
  594. *poutbuf_size = fpc->best_header->offset;
  595. *poutbuf = flac_fifo_read_wrap(fpc, 0, *poutbuf_size,
  596. &fpc->wrap_buf,
  597. &fpc->wrap_buf_allocated_size);
  598. return buf_size ? (read_end - buf) : (fpc->best_header->offset -
  599. av_fifo_size(fpc->fifo_buf));
  600. }
  601. if (!buf_size)
  602. return get_best_header(fpc, poutbuf, poutbuf_size);
  603. }
  604. handle_error:
  605. *poutbuf = NULL;
  606. *poutbuf_size = 0;
  607. return read_end - buf;
  608. }
  609. static av_cold int flac_parse_init(AVCodecParserContext *c)
  610. {
  611. FLACParseContext *fpc = c->priv_data;
  612. fpc->pc = c;
  613. /* There will generally be FLAC_MIN_HEADERS buffered in the fifo before
  614. it drains. This is allocated early to avoid slow reallocation. */
  615. fpc->fifo_buf = av_fifo_alloc(FLAC_AVG_FRAME_SIZE * (FLAC_MIN_HEADERS + 3));
  616. return 0;
  617. }
  618. static void flac_parse_close(AVCodecParserContext *c)
  619. {
  620. FLACParseContext *fpc = c->priv_data;
  621. FLACHeaderMarker *curr = fpc->headers, *temp;
  622. while (curr) {
  623. temp = curr->next;
  624. av_freep(&curr->link_penalty);
  625. av_free(curr);
  626. curr = temp;
  627. }
  628. av_fifo_free(fpc->fifo_buf);
  629. av_free(fpc->wrap_buf);
  630. }
  631. AVCodecParser ff_flac_parser = {
  632. .codec_ids = { AV_CODEC_ID_FLAC },
  633. .priv_data_size = sizeof(FLACParseContext),
  634. .parser_init = flac_parse_init,
  635. .parser_parse = flac_parse,
  636. .parser_close = flac_parse_close,
  637. };