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  1. /**
  2. * @file
  3. * Vorbis I decoder
  4. * @author Denes Balatoni ( dbalatoni programozo hu )
  5. *
  6. * This file is part of FFmpeg.
  7. *
  8. * FFmpeg is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU Lesser General Public
  10. * License as published by the Free Software Foundation; either
  11. * version 2.1 of the License, or (at your option) any later version.
  12. *
  13. * FFmpeg is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  16. * Lesser General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU Lesser General Public
  19. * License along with FFmpeg; if not, write to the Free Software
  20. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  21. */
  22. #undef V_DEBUG
  23. //#define V_DEBUG
  24. //#define AV_DEBUG(...) av_log(NULL, AV_LOG_INFO, __VA_ARGS__)
  25. #include <math.h>
  26. #define ALT_BITSTREAM_READER_LE
  27. #include "avcodec.h"
  28. #include "get_bits.h"
  29. #include "dsputil.h"
  30. #include "fft.h"
  31. #include "fmtconvert.h"
  32. #include "vorbis.h"
  33. #include "xiph.h"
  34. #define V_NB_BITS 8
  35. #define V_NB_BITS2 11
  36. #define V_MAX_VLCS (1 << 16)
  37. #define V_MAX_PARTITIONS (1 << 20)
  38. #ifndef V_DEBUG
  39. #define AV_DEBUG(...)
  40. #endif
  41. #undef NDEBUG
  42. #include <assert.h>
  43. typedef struct {
  44. uint_fast8_t dimensions;
  45. uint_fast8_t lookup_type;
  46. uint_fast8_t maxdepth;
  47. VLC vlc;
  48. float *codevectors;
  49. unsigned int nb_bits;
  50. } vorbis_codebook;
  51. typedef union vorbis_floor_u vorbis_floor_data;
  52. typedef struct vorbis_floor0_s vorbis_floor0;
  53. typedef struct vorbis_floor1_s vorbis_floor1;
  54. struct vorbis_context_s;
  55. typedef
  56. int (* vorbis_floor_decode_func)
  57. (struct vorbis_context_s *, vorbis_floor_data *, float *);
  58. typedef struct {
  59. uint_fast8_t floor_type;
  60. vorbis_floor_decode_func decode;
  61. union vorbis_floor_u {
  62. struct vorbis_floor0_s {
  63. uint_fast8_t order;
  64. uint_fast16_t rate;
  65. uint_fast16_t bark_map_size;
  66. int_fast32_t *map[2];
  67. uint_fast32_t map_size[2];
  68. uint_fast8_t amplitude_bits;
  69. uint_fast8_t amplitude_offset;
  70. uint_fast8_t num_books;
  71. uint_fast8_t *book_list;
  72. float *lsp;
  73. } t0;
  74. struct vorbis_floor1_s {
  75. uint_fast8_t partitions;
  76. uint8_t partition_class[32];
  77. uint_fast8_t class_dimensions[16];
  78. uint_fast8_t class_subclasses[16];
  79. uint_fast8_t class_masterbook[16];
  80. int_fast16_t subclass_books[16][8];
  81. uint_fast8_t multiplier;
  82. uint_fast16_t x_list_dim;
  83. vorbis_floor1_entry *list;
  84. } t1;
  85. } data;
  86. } vorbis_floor;
  87. typedef struct {
  88. uint_fast16_t type;
  89. uint_fast32_t begin;
  90. uint_fast32_t end;
  91. unsigned partition_size;
  92. uint_fast8_t classifications;
  93. uint_fast8_t classbook;
  94. int_fast16_t books[64][8];
  95. uint_fast8_t maxpass;
  96. uint_fast16_t ptns_to_read;
  97. uint8_t *classifs;
  98. } vorbis_residue;
  99. typedef struct {
  100. uint_fast8_t submaps;
  101. uint_fast16_t coupling_steps;
  102. uint_fast8_t *magnitude;
  103. uint_fast8_t *angle;
  104. uint_fast8_t *mux;
  105. uint_fast8_t submap_floor[16];
  106. uint_fast8_t submap_residue[16];
  107. } vorbis_mapping;
  108. typedef struct {
  109. uint_fast8_t blockflag;
  110. uint_fast16_t windowtype;
  111. uint_fast16_t transformtype;
  112. uint_fast8_t mapping;
  113. } vorbis_mode;
  114. typedef struct vorbis_context_s {
  115. AVCodecContext *avccontext;
  116. GetBitContext gb;
  117. DSPContext dsp;
  118. FmtConvertContext fmt_conv;
  119. FFTContext mdct[2];
  120. uint_fast8_t first_frame;
  121. uint_fast32_t version;
  122. uint_fast8_t audio_channels;
  123. uint_fast32_t audio_samplerate;
  124. uint_fast32_t bitrate_maximum;
  125. uint_fast32_t bitrate_nominal;
  126. uint_fast32_t bitrate_minimum;
  127. uint_fast32_t blocksize[2];
  128. const float *win[2];
  129. uint_fast16_t codebook_count;
  130. vorbis_codebook *codebooks;
  131. uint_fast8_t floor_count;
  132. vorbis_floor *floors;
  133. uint_fast8_t residue_count;
  134. vorbis_residue *residues;
  135. uint_fast8_t mapping_count;
  136. vorbis_mapping *mappings;
  137. uint_fast8_t mode_count;
  138. vorbis_mode *modes;
  139. uint_fast8_t mode_number; // mode number for the current packet
  140. uint_fast8_t previous_window;
  141. float *channel_residues;
  142. float *channel_floors;
  143. float *saved;
  144. float scale_bias; // for float->int conversion
  145. } vorbis_context;
  146. /* Helper functions */
  147. #define BARK(x) \
  148. (13.1f * atan(0.00074f * (x)) + 2.24f * atan(1.85e-8f * (x) * (x)) + 1e-4f * (x))
  149. static const char idx_err_str[] = "Index value %d out of range (0 - %d) for %s at %s:%i\n";
  150. #define VALIDATE_INDEX(idx, limit) \
  151. if (idx >= limit) {\
  152. av_log(vc->avccontext, AV_LOG_ERROR,\
  153. idx_err_str,\
  154. (int)(idx), (int)(limit - 1), #idx, __FILE__, __LINE__);\
  155. return -1;\
  156. }
  157. #define GET_VALIDATED_INDEX(idx, bits, limit) \
  158. {\
  159. idx = get_bits(gb, bits);\
  160. VALIDATE_INDEX(idx, limit)\
  161. }
  162. static float vorbisfloat2float(unsigned val)
  163. {
  164. double mant = val & 0x1fffff;
  165. long exp = (val & 0x7fe00000L) >> 21;
  166. if (val & 0x80000000)
  167. mant = -mant;
  168. return ldexp(mant, exp - 20 - 768);
  169. }
  170. // Free all allocated memory -----------------------------------------
  171. static void vorbis_free(vorbis_context *vc)
  172. {
  173. int i;
  174. av_freep(&vc->channel_residues);
  175. av_freep(&vc->channel_floors);
  176. av_freep(&vc->saved);
  177. for (i = 0; i < vc->residue_count; i++)
  178. av_free(vc->residues[i].classifs);
  179. av_freep(&vc->residues);
  180. av_freep(&vc->modes);
  181. ff_mdct_end(&vc->mdct[0]);
  182. ff_mdct_end(&vc->mdct[1]);
  183. for (i = 0; i < vc->codebook_count; ++i) {
  184. av_free(vc->codebooks[i].codevectors);
  185. free_vlc(&vc->codebooks[i].vlc);
  186. }
  187. av_freep(&vc->codebooks);
  188. for (i = 0; i < vc->floor_count; ++i) {
  189. if (vc->floors[i].floor_type == 0) {
  190. av_free(vc->floors[i].data.t0.map[0]);
  191. av_free(vc->floors[i].data.t0.map[1]);
  192. av_free(vc->floors[i].data.t0.book_list);
  193. av_free(vc->floors[i].data.t0.lsp);
  194. } else {
  195. av_free(vc->floors[i].data.t1.list);
  196. }
  197. }
  198. av_freep(&vc->floors);
  199. for (i = 0; i < vc->mapping_count; ++i) {
  200. av_free(vc->mappings[i].magnitude);
  201. av_free(vc->mappings[i].angle);
  202. av_free(vc->mappings[i].mux);
  203. }
  204. av_freep(&vc->mappings);
  205. }
  206. // Parse setup header -------------------------------------------------
  207. // Process codebooks part
  208. static int vorbis_parse_setup_hdr_codebooks(vorbis_context *vc)
  209. {
  210. unsigned cb;
  211. uint8_t *tmp_vlc_bits;
  212. uint32_t *tmp_vlc_codes;
  213. GetBitContext *gb = &vc->gb;
  214. uint_fast16_t *codebook_multiplicands;
  215. vc->codebook_count = get_bits(gb, 8) + 1;
  216. AV_DEBUG(" Codebooks: %d \n", vc->codebook_count);
  217. vc->codebooks = av_mallocz(vc->codebook_count * sizeof(*vc->codebooks));
  218. tmp_vlc_bits = av_mallocz(V_MAX_VLCS * sizeof(*tmp_vlc_bits));
  219. tmp_vlc_codes = av_mallocz(V_MAX_VLCS * sizeof(*tmp_vlc_codes));
  220. codebook_multiplicands = av_malloc(V_MAX_VLCS * sizeof(*codebook_multiplicands));
  221. for (cb = 0; cb < vc->codebook_count; ++cb) {
  222. vorbis_codebook *codebook_setup = &vc->codebooks[cb];
  223. unsigned ordered, t, entries, used_entries = 0;
  224. AV_DEBUG(" %u. Codebook\n", cb);
  225. if (get_bits(gb, 24) != 0x564342) {
  226. av_log(vc->avccontext, AV_LOG_ERROR,
  227. " %u. Codebook setup data corrupt.\n", cb);
  228. goto error;
  229. }
  230. codebook_setup->dimensions=get_bits(gb, 16);
  231. if (codebook_setup->dimensions > 16 || codebook_setup->dimensions == 0) {
  232. av_log(vc->avccontext, AV_LOG_ERROR,
  233. " %u. Codebook's dimension is invalid (%d).\n",
  234. cb, codebook_setup->dimensions);
  235. goto error;
  236. }
  237. entries = get_bits(gb, 24);
  238. if (entries > V_MAX_VLCS) {
  239. av_log(vc->avccontext, AV_LOG_ERROR,
  240. " %u. Codebook has too many entries (%u).\n",
  241. cb, entries);
  242. goto error;
  243. }
  244. ordered = get_bits1(gb);
  245. AV_DEBUG(" codebook_dimensions %d, codebook_entries %u\n",
  246. codebook_setup->dimensions, entries);
  247. if (!ordered) {
  248. unsigned ce, flag;
  249. unsigned sparse = get_bits1(gb);
  250. AV_DEBUG(" not ordered \n");
  251. if (sparse) {
  252. AV_DEBUG(" sparse \n");
  253. used_entries = 0;
  254. for (ce = 0; ce < entries; ++ce) {
  255. flag = get_bits1(gb);
  256. if (flag) {
  257. tmp_vlc_bits[ce] = get_bits(gb, 5) + 1;
  258. ++used_entries;
  259. } else
  260. tmp_vlc_bits[ce] = 0;
  261. }
  262. } else {
  263. AV_DEBUG(" not sparse \n");
  264. used_entries = entries;
  265. for (ce = 0; ce < entries; ++ce)
  266. tmp_vlc_bits[ce] = get_bits(gb, 5) + 1;
  267. }
  268. } else {
  269. unsigned current_entry = 0;
  270. unsigned current_length = get_bits(gb, 5) + 1;
  271. AV_DEBUG(" ordered, current length: %u\n", current_length); //FIXME
  272. used_entries = entries;
  273. for (; current_entry < used_entries && current_length <= 32; ++current_length) {
  274. unsigned i, number;
  275. AV_DEBUG(" number bits: %u ", ilog(entries - current_entry));
  276. number = get_bits(gb, ilog(entries - current_entry));
  277. AV_DEBUG(" number: %u\n", number);
  278. for (i = current_entry; i < number+current_entry; ++i)
  279. if (i < used_entries)
  280. tmp_vlc_bits[i] = current_length;
  281. current_entry+=number;
  282. }
  283. if (current_entry>used_entries) {
  284. av_log(vc->avccontext, AV_LOG_ERROR, " More codelengths than codes in codebook. \n");
  285. goto error;
  286. }
  287. }
  288. codebook_setup->lookup_type = get_bits(gb, 4);
  289. AV_DEBUG(" lookup type: %d : %s \n", codebook_setup->lookup_type, codebook_setup->lookup_type ? "vq" : "no lookup");
  290. // If the codebook is used for (inverse) VQ, calculate codevectors.
  291. if (codebook_setup->lookup_type == 1) {
  292. unsigned i, j, k;
  293. unsigned codebook_lookup_values = ff_vorbis_nth_root(entries, codebook_setup->dimensions);
  294. float codebook_minimum_value = vorbisfloat2float(get_bits_long(gb, 32));
  295. float codebook_delta_value = vorbisfloat2float(get_bits_long(gb, 32));
  296. unsigned codebook_value_bits = get_bits(gb, 4) + 1;
  297. unsigned codebook_sequence_p = get_bits1(gb);
  298. AV_DEBUG(" We expect %d numbers for building the codevectors. \n", codebook_lookup_values);
  299. AV_DEBUG(" delta %f minmum %f \n", codebook_delta_value, codebook_minimum_value);
  300. for (i = 0; i < codebook_lookup_values; ++i) {
  301. codebook_multiplicands[i] = get_bits(gb, codebook_value_bits);
  302. AV_DEBUG(" multiplicands*delta+minmum : %e \n", (float)codebook_multiplicands[i]*codebook_delta_value+codebook_minimum_value);
  303. AV_DEBUG(" multiplicand %d \n", codebook_multiplicands[i]);
  304. }
  305. // Weed out unused vlcs and build codevector vector
  306. codebook_setup->codevectors = used_entries ? av_mallocz(used_entries *
  307. codebook_setup->dimensions *
  308. sizeof(*codebook_setup->codevectors))
  309. : NULL;
  310. for (j = 0, i = 0; i < entries; ++i) {
  311. unsigned dim = codebook_setup->dimensions;
  312. if (tmp_vlc_bits[i]) {
  313. float last = 0.0;
  314. unsigned lookup_offset = i;
  315. #ifdef V_DEBUG
  316. av_log(vc->avccontext, AV_LOG_INFO, "Lookup offset %u ,", i);
  317. #endif
  318. for (k = 0; k < dim; ++k) {
  319. unsigned multiplicand_offset = lookup_offset % codebook_lookup_values;
  320. codebook_setup->codevectors[j * dim + k] = codebook_multiplicands[multiplicand_offset] * codebook_delta_value + codebook_minimum_value + last;
  321. if (codebook_sequence_p)
  322. last = codebook_setup->codevectors[j * dim + k];
  323. lookup_offset/=codebook_lookup_values;
  324. }
  325. tmp_vlc_bits[j] = tmp_vlc_bits[i];
  326. #ifdef V_DEBUG
  327. av_log(vc->avccontext, AV_LOG_INFO, "real lookup offset %u, vector: ", j);
  328. for (k = 0; k < dim; ++k)
  329. av_log(vc->avccontext, AV_LOG_INFO, " %f ", codebook_setup->codevectors[j * dim + k]);
  330. av_log(vc->avccontext, AV_LOG_INFO, "\n");
  331. #endif
  332. ++j;
  333. }
  334. }
  335. if (j != used_entries) {
  336. av_log(vc->avccontext, AV_LOG_ERROR, "Bug in codevector vector building code. \n");
  337. goto error;
  338. }
  339. entries = used_entries;
  340. } else if (codebook_setup->lookup_type >= 2) {
  341. av_log(vc->avccontext, AV_LOG_ERROR, "Codebook lookup type not supported. \n");
  342. goto error;
  343. }
  344. // Initialize VLC table
  345. if (ff_vorbis_len2vlc(tmp_vlc_bits, tmp_vlc_codes, entries)) {
  346. av_log(vc->avccontext, AV_LOG_ERROR, " Invalid code lengths while generating vlcs. \n");
  347. goto error;
  348. }
  349. codebook_setup->maxdepth = 0;
  350. for (t = 0; t < entries; ++t)
  351. if (tmp_vlc_bits[t] >= codebook_setup->maxdepth)
  352. codebook_setup->maxdepth = tmp_vlc_bits[t];
  353. if (codebook_setup->maxdepth > 3 * V_NB_BITS)
  354. codebook_setup->nb_bits = V_NB_BITS2;
  355. else
  356. codebook_setup->nb_bits = V_NB_BITS;
  357. codebook_setup->maxdepth = (codebook_setup->maxdepth+codebook_setup->nb_bits - 1) / codebook_setup->nb_bits;
  358. if (init_vlc(&codebook_setup->vlc, codebook_setup->nb_bits, entries, tmp_vlc_bits, sizeof(*tmp_vlc_bits), sizeof(*tmp_vlc_bits), tmp_vlc_codes, sizeof(*tmp_vlc_codes), sizeof(*tmp_vlc_codes), INIT_VLC_LE)) {
  359. av_log(vc->avccontext, AV_LOG_ERROR, " Error generating vlc tables. \n");
  360. goto error;
  361. }
  362. }
  363. av_free(tmp_vlc_bits);
  364. av_free(tmp_vlc_codes);
  365. av_free(codebook_multiplicands);
  366. return 0;
  367. // Error:
  368. error:
  369. av_free(tmp_vlc_bits);
  370. av_free(tmp_vlc_codes);
  371. av_free(codebook_multiplicands);
  372. return -1;
  373. }
  374. // Process time domain transforms part (unused in Vorbis I)
  375. static int vorbis_parse_setup_hdr_tdtransforms(vorbis_context *vc)
  376. {
  377. GetBitContext *gb = &vc->gb;
  378. unsigned i, vorbis_time_count = get_bits(gb, 6) + 1;
  379. for (i = 0; i < vorbis_time_count; ++i) {
  380. unsigned vorbis_tdtransform = get_bits(gb, 16);
  381. AV_DEBUG(" Vorbis time domain transform %u: %u\n",
  382. vorbis_time_count, vorbis_tdtransform);
  383. if (vorbis_tdtransform) {
  384. av_log(vc->avccontext, AV_LOG_ERROR, "Vorbis time domain transform data nonzero. \n");
  385. return -1;
  386. }
  387. }
  388. return 0;
  389. }
  390. // Process floors part
  391. static int vorbis_floor0_decode(vorbis_context *vc,
  392. vorbis_floor_data *vfu, float *vec);
  393. static void create_map(vorbis_context *vc, unsigned floor_number);
  394. static int vorbis_floor1_decode(vorbis_context *vc,
  395. vorbis_floor_data *vfu, float *vec);
  396. static int vorbis_parse_setup_hdr_floors(vorbis_context *vc)
  397. {
  398. GetBitContext *gb = &vc->gb;
  399. int i,j,k;
  400. vc->floor_count = get_bits(gb, 6) + 1;
  401. vc->floors = av_mallocz(vc->floor_count * sizeof(*vc->floors));
  402. for (i = 0; i < vc->floor_count; ++i) {
  403. vorbis_floor *floor_setup = &vc->floors[i];
  404. floor_setup->floor_type = get_bits(gb, 16);
  405. AV_DEBUG(" %d. floor type %d \n", i, floor_setup->floor_type);
  406. if (floor_setup->floor_type == 1) {
  407. int maximum_class = -1;
  408. unsigned rangebits, rangemax, floor1_values = 2;
  409. floor_setup->decode = vorbis_floor1_decode;
  410. floor_setup->data.t1.partitions = get_bits(gb, 5);
  411. AV_DEBUG(" %d.floor: %d partitions \n", i, floor_setup->data.t1.partitions);
  412. for (j = 0; j < floor_setup->data.t1.partitions; ++j) {
  413. floor_setup->data.t1.partition_class[j] = get_bits(gb, 4);
  414. if (floor_setup->data.t1.partition_class[j] > maximum_class)
  415. maximum_class = floor_setup->data.t1.partition_class[j];
  416. AV_DEBUG(" %d. floor %d partition class %d \n", i, j, floor_setup->data.t1.partition_class[j]);
  417. }
  418. AV_DEBUG(" maximum class %d \n", maximum_class);
  419. for (j = 0; j <= maximum_class; ++j) {
  420. floor_setup->data.t1.class_dimensions[j] = get_bits(gb, 3) + 1;
  421. floor_setup->data.t1.class_subclasses[j] = get_bits(gb, 2);
  422. AV_DEBUG(" %d floor %d class dim: %d subclasses %d \n", i, j, floor_setup->data.t1.class_dimensions[j], floor_setup->data.t1.class_subclasses[j]);
  423. if (floor_setup->data.t1.class_subclasses[j]) {
  424. GET_VALIDATED_INDEX(floor_setup->data.t1.class_masterbook[j], 8, vc->codebook_count)
  425. AV_DEBUG(" masterbook: %d \n", floor_setup->data.t1.class_masterbook[j]);
  426. }
  427. for (k = 0; k < (1 << floor_setup->data.t1.class_subclasses[j]); ++k) {
  428. int16_t bits = get_bits(gb, 8) - 1;
  429. if (bits != -1)
  430. VALIDATE_INDEX(bits, vc->codebook_count)
  431. floor_setup->data.t1.subclass_books[j][k] = bits;
  432. AV_DEBUG(" book %d. : %d \n", k, floor_setup->data.t1.subclass_books[j][k]);
  433. }
  434. }
  435. floor_setup->data.t1.multiplier = get_bits(gb, 2) + 1;
  436. floor_setup->data.t1.x_list_dim = 2;
  437. for (j = 0; j < floor_setup->data.t1.partitions; ++j)
  438. floor_setup->data.t1.x_list_dim+=floor_setup->data.t1.class_dimensions[floor_setup->data.t1.partition_class[j]];
  439. floor_setup->data.t1.list = av_mallocz(floor_setup->data.t1.x_list_dim *
  440. sizeof(*floor_setup->data.t1.list));
  441. rangebits = get_bits(gb, 4);
  442. rangemax = (1 << rangebits);
  443. if (rangemax > vc->blocksize[1] / 2) {
  444. av_log(vc->avccontext, AV_LOG_ERROR,
  445. "Floor value is too large for blocksize: %u (%"PRIuFAST32")\n",
  446. rangemax, vc->blocksize[1] / 2);
  447. return -1;
  448. }
  449. floor_setup->data.t1.list[0].x = 0;
  450. floor_setup->data.t1.list[1].x = rangemax;
  451. for (j = 0; j < floor_setup->data.t1.partitions; ++j) {
  452. for (k = 0; k < floor_setup->data.t1.class_dimensions[floor_setup->data.t1.partition_class[j]]; ++k, ++floor1_values) {
  453. floor_setup->data.t1.list[floor1_values].x = get_bits(gb, rangebits);
  454. AV_DEBUG(" %u. floor1 Y coord. %d\n", floor1_values,
  455. floor_setup->data.t1.list[floor1_values].x);
  456. }
  457. }
  458. // Precalculate order of x coordinates - needed for decode
  459. ff_vorbis_ready_floor1_list(floor_setup->data.t1.list, floor_setup->data.t1.x_list_dim);
  460. } else if (floor_setup->floor_type == 0) {
  461. unsigned max_codebook_dim = 0;
  462. floor_setup->decode = vorbis_floor0_decode;
  463. floor_setup->data.t0.order = get_bits(gb, 8);
  464. floor_setup->data.t0.rate = get_bits(gb, 16);
  465. floor_setup->data.t0.bark_map_size = get_bits(gb, 16);
  466. floor_setup->data.t0.amplitude_bits = get_bits(gb, 6);
  467. /* zero would result in a div by zero later *
  468. * 2^0 - 1 == 0 */
  469. if (floor_setup->data.t0.amplitude_bits == 0) {
  470. av_log(vc->avccontext, AV_LOG_ERROR,
  471. "Floor 0 amplitude bits is 0.\n");
  472. return -1;
  473. }
  474. floor_setup->data.t0.amplitude_offset = get_bits(gb, 8);
  475. floor_setup->data.t0.num_books = get_bits(gb, 4) + 1;
  476. /* allocate mem for booklist */
  477. floor_setup->data.t0.book_list =
  478. av_malloc(floor_setup->data.t0.num_books);
  479. if (!floor_setup->data.t0.book_list)
  480. return -1;
  481. /* read book indexes */
  482. {
  483. int idx;
  484. unsigned book_idx;
  485. for (idx = 0; idx < floor_setup->data.t0.num_books; ++idx) {
  486. GET_VALIDATED_INDEX(book_idx, 8, vc->codebook_count)
  487. floor_setup->data.t0.book_list[idx] = book_idx;
  488. if (vc->codebooks[book_idx].dimensions > max_codebook_dim)
  489. max_codebook_dim = vc->codebooks[book_idx].dimensions;
  490. }
  491. }
  492. create_map(vc, i);
  493. /* codebook dim is for padding if codebook dim doesn't *
  494. * divide order+1 then we need to read more data */
  495. floor_setup->data.t0.lsp =
  496. av_malloc((floor_setup->data.t0.order + 1 + max_codebook_dim)
  497. * sizeof(*floor_setup->data.t0.lsp));
  498. if (!floor_setup->data.t0.lsp)
  499. return -1;
  500. #ifdef V_DEBUG /* debug output parsed headers */
  501. AV_DEBUG("floor0 order: %u\n", floor_setup->data.t0.order);
  502. AV_DEBUG("floor0 rate: %u\n", floor_setup->data.t0.rate);
  503. AV_DEBUG("floor0 bark map size: %u\n",
  504. floor_setup->data.t0.bark_map_size);
  505. AV_DEBUG("floor0 amplitude bits: %u\n",
  506. floor_setup->data.t0.amplitude_bits);
  507. AV_DEBUG("floor0 amplitude offset: %u\n",
  508. floor_setup->data.t0.amplitude_offset);
  509. AV_DEBUG("floor0 number of books: %u\n",
  510. floor_setup->data.t0.num_books);
  511. AV_DEBUG("floor0 book list pointer: %p\n",
  512. floor_setup->data.t0.book_list);
  513. {
  514. int idx;
  515. for (idx = 0; idx < floor_setup->data.t0.num_books; ++idx) {
  516. AV_DEBUG(" Book %d: %u\n",
  517. idx+1,
  518. floor_setup->data.t0.book_list[idx]);
  519. }
  520. }
  521. #endif
  522. } else {
  523. av_log(vc->avccontext, AV_LOG_ERROR, "Invalid floor type!\n");
  524. return -1;
  525. }
  526. }
  527. return 0;
  528. }
  529. // Process residues part
  530. static int vorbis_parse_setup_hdr_residues(vorbis_context *vc)
  531. {
  532. GetBitContext *gb = &vc->gb;
  533. unsigned i, j, k;
  534. vc->residue_count = get_bits(gb, 6)+1;
  535. vc->residues = av_mallocz(vc->residue_count * sizeof(*vc->residues));
  536. AV_DEBUG(" There are %d residues. \n", vc->residue_count);
  537. for (i = 0; i < vc->residue_count; ++i) {
  538. vorbis_residue *res_setup = &vc->residues[i];
  539. uint_fast8_t cascade[64];
  540. unsigned high_bits, low_bits;
  541. res_setup->type = get_bits(gb, 16);
  542. AV_DEBUG(" %u. residue type %d\n", i, res_setup->type);
  543. res_setup->begin = get_bits(gb, 24);
  544. res_setup->end = get_bits(gb, 24);
  545. res_setup->partition_size = get_bits(gb, 24) + 1;
  546. /* Validations to prevent a buffer overflow later. */
  547. if (res_setup->begin>res_setup->end ||
  548. res_setup->end > vc->avccontext->channels * vc->blocksize[1] / 2 ||
  549. (res_setup->end-res_setup->begin) / res_setup->partition_size > V_MAX_PARTITIONS) {
  550. av_log(vc->avccontext, AV_LOG_ERROR, "partition out of bounds: type, begin, end, size, blocksize: %"PRIdFAST16", %"PRIdFAST32", %"PRIdFAST32", %u, %"PRIdFAST32"\n", res_setup->type, res_setup->begin, res_setup->end, res_setup->partition_size, vc->blocksize[1] / 2);
  551. return -1;
  552. }
  553. res_setup->classifications = get_bits(gb, 6) + 1;
  554. GET_VALIDATED_INDEX(res_setup->classbook, 8, vc->codebook_count)
  555. res_setup->ptns_to_read =
  556. (res_setup->end - res_setup->begin) / res_setup->partition_size;
  557. res_setup->classifs = av_malloc(res_setup->ptns_to_read *
  558. vc->audio_channels *
  559. sizeof(*res_setup->classifs));
  560. if (!res_setup->classifs)
  561. return AVERROR(ENOMEM);
  562. AV_DEBUG(" begin %d end %d part.size %d classif.s %d classbook %d \n", res_setup->begin, res_setup->end, res_setup->partition_size,
  563. res_setup->classifications, res_setup->classbook);
  564. for (j = 0; j < res_setup->classifications; ++j) {
  565. high_bits = 0;
  566. low_bits = get_bits(gb, 3);
  567. if (get_bits1(gb))
  568. high_bits = get_bits(gb, 5);
  569. cascade[j] = (high_bits << 3) + low_bits;
  570. AV_DEBUG(" %u class cascade depth: %d\n", j, ilog(cascade[j]));
  571. }
  572. res_setup->maxpass = 0;
  573. for (j = 0; j < res_setup->classifications; ++j) {
  574. for (k = 0; k < 8; ++k) {
  575. if (cascade[j]&(1 << k)) {
  576. GET_VALIDATED_INDEX(res_setup->books[j][k], 8, vc->codebook_count)
  577. AV_DEBUG(" %u class cascade depth %u book: %d\n",
  578. j, k, res_setup->books[j][k]);
  579. if (k>res_setup->maxpass)
  580. res_setup->maxpass = k;
  581. } else {
  582. res_setup->books[j][k] = -1;
  583. }
  584. }
  585. }
  586. }
  587. return 0;
  588. }
  589. // Process mappings part
  590. static int vorbis_parse_setup_hdr_mappings(vorbis_context *vc)
  591. {
  592. GetBitContext *gb = &vc->gb;
  593. unsigned i, j;
  594. vc->mapping_count = get_bits(gb, 6)+1;
  595. vc->mappings = av_mallocz(vc->mapping_count * sizeof(*vc->mappings));
  596. AV_DEBUG(" There are %d mappings. \n", vc->mapping_count);
  597. for (i = 0; i < vc->mapping_count; ++i) {
  598. vorbis_mapping *mapping_setup = &vc->mappings[i];
  599. if (get_bits(gb, 16)) {
  600. av_log(vc->avccontext, AV_LOG_ERROR, "Other mappings than type 0 are not compliant with the Vorbis I specification. \n");
  601. return -1;
  602. }
  603. if (get_bits1(gb)) {
  604. mapping_setup->submaps = get_bits(gb, 4) + 1;
  605. } else {
  606. mapping_setup->submaps = 1;
  607. }
  608. if (get_bits1(gb)) {
  609. mapping_setup->coupling_steps = get_bits(gb, 8) + 1;
  610. mapping_setup->magnitude = av_mallocz(mapping_setup->coupling_steps *
  611. sizeof(*mapping_setup->magnitude));
  612. mapping_setup->angle = av_mallocz(mapping_setup->coupling_steps *
  613. sizeof(*mapping_setup->angle));
  614. for (j = 0; j < mapping_setup->coupling_steps; ++j) {
  615. GET_VALIDATED_INDEX(mapping_setup->magnitude[j], ilog(vc->audio_channels - 1), vc->audio_channels)
  616. GET_VALIDATED_INDEX(mapping_setup->angle[j], ilog(vc->audio_channels - 1), vc->audio_channels)
  617. }
  618. } else {
  619. mapping_setup->coupling_steps = 0;
  620. }
  621. AV_DEBUG(" %u mapping coupling steps: %d\n",
  622. i, mapping_setup->coupling_steps);
  623. if (get_bits(gb, 2)) {
  624. av_log(vc->avccontext, AV_LOG_ERROR, "%u. mapping setup data invalid.\n", i);
  625. return -1; // following spec.
  626. }
  627. if (mapping_setup->submaps>1) {
  628. mapping_setup->mux = av_mallocz(vc->audio_channels *
  629. sizeof(*mapping_setup->mux));
  630. for (j = 0; j < vc->audio_channels; ++j)
  631. mapping_setup->mux[j] = get_bits(gb, 4);
  632. }
  633. for (j = 0; j < mapping_setup->submaps; ++j) {
  634. skip_bits(gb, 8); // FIXME check?
  635. GET_VALIDATED_INDEX(mapping_setup->submap_floor[j], 8, vc->floor_count)
  636. GET_VALIDATED_INDEX(mapping_setup->submap_residue[j], 8, vc->residue_count)
  637. AV_DEBUG(" %u mapping %u submap : floor %d, residue %d\n",
  638. i, j,
  639. mapping_setup->submap_floor[j],
  640. mapping_setup->submap_residue[j]);
  641. }
  642. }
  643. return 0;
  644. }
  645. // Process modes part
  646. static void create_map(vorbis_context *vc, unsigned floor_number)
  647. {
  648. vorbis_floor *floors = vc->floors;
  649. vorbis_floor0 *vf;
  650. int idx;
  651. int blockflag, n;
  652. int_fast32_t *map;
  653. for (blockflag = 0; blockflag < 2; ++blockflag) {
  654. n = vc->blocksize[blockflag] / 2;
  655. floors[floor_number].data.t0.map[blockflag] =
  656. av_malloc((n+1) * sizeof(int_fast32_t)); // n + sentinel
  657. map = floors[floor_number].data.t0.map[blockflag];
  658. vf = &floors[floor_number].data.t0;
  659. for (idx = 0; idx < n; ++idx) {
  660. map[idx] = floor(BARK((vf->rate * idx) / (2.0f * n)) *
  661. ((vf->bark_map_size) /
  662. BARK(vf->rate / 2.0f)));
  663. if (vf->bark_map_size-1 < map[idx])
  664. map[idx] = vf->bark_map_size - 1;
  665. }
  666. map[n] = -1;
  667. vf->map_size[blockflag] = n;
  668. }
  669. #ifdef V_DEBUG
  670. for (idx = 0; idx <= n; ++idx) {
  671. AV_DEBUG("floor0 map: map at pos %d is %d\n",
  672. idx, map[idx]);
  673. }
  674. #endif
  675. }
  676. static int vorbis_parse_setup_hdr_modes(vorbis_context *vc)
  677. {
  678. GetBitContext *gb = &vc->gb;
  679. unsigned i;
  680. vc->mode_count = get_bits(gb, 6) + 1;
  681. vc->modes = av_mallocz(vc->mode_count * sizeof(*vc->modes));
  682. AV_DEBUG(" There are %d modes.\n", vc->mode_count);
  683. for (i = 0; i < vc->mode_count; ++i) {
  684. vorbis_mode *mode_setup = &vc->modes[i];
  685. mode_setup->blockflag = get_bits1(gb);
  686. mode_setup->windowtype = get_bits(gb, 16); //FIXME check
  687. mode_setup->transformtype = get_bits(gb, 16); //FIXME check
  688. GET_VALIDATED_INDEX(mode_setup->mapping, 8, vc->mapping_count);
  689. AV_DEBUG(" %u mode: blockflag %d, windowtype %d, transformtype %d, mapping %d\n",
  690. i, mode_setup->blockflag, mode_setup->windowtype,
  691. mode_setup->transformtype, mode_setup->mapping);
  692. }
  693. return 0;
  694. }
  695. // Process the whole setup header using the functions above
  696. static int vorbis_parse_setup_hdr(vorbis_context *vc)
  697. {
  698. GetBitContext *gb = &vc->gb;
  699. if ((get_bits(gb, 8) != 'v') || (get_bits(gb, 8) != 'o') ||
  700. (get_bits(gb, 8) != 'r') || (get_bits(gb, 8) != 'b') ||
  701. (get_bits(gb, 8) != 'i') || (get_bits(gb, 8) != 's')) {
  702. av_log(vc->avccontext, AV_LOG_ERROR, " Vorbis setup header packet corrupt (no vorbis signature). \n");
  703. return -1;
  704. }
  705. if (vorbis_parse_setup_hdr_codebooks(vc)) {
  706. av_log(vc->avccontext, AV_LOG_ERROR, " Vorbis setup header packet corrupt (codebooks). \n");
  707. return -2;
  708. }
  709. if (vorbis_parse_setup_hdr_tdtransforms(vc)) {
  710. av_log(vc->avccontext, AV_LOG_ERROR, " Vorbis setup header packet corrupt (time domain transforms). \n");
  711. return -3;
  712. }
  713. if (vorbis_parse_setup_hdr_floors(vc)) {
  714. av_log(vc->avccontext, AV_LOG_ERROR, " Vorbis setup header packet corrupt (floors). \n");
  715. return -4;
  716. }
  717. if (vorbis_parse_setup_hdr_residues(vc)) {
  718. av_log(vc->avccontext, AV_LOG_ERROR, " Vorbis setup header packet corrupt (residues). \n");
  719. return -5;
  720. }
  721. if (vorbis_parse_setup_hdr_mappings(vc)) {
  722. av_log(vc->avccontext, AV_LOG_ERROR, " Vorbis setup header packet corrupt (mappings). \n");
  723. return -6;
  724. }
  725. if (vorbis_parse_setup_hdr_modes(vc)) {
  726. av_log(vc->avccontext, AV_LOG_ERROR, " Vorbis setup header packet corrupt (modes). \n");
  727. return -7;
  728. }
  729. if (!get_bits1(gb)) {
  730. av_log(vc->avccontext, AV_LOG_ERROR, " Vorbis setup header packet corrupt (framing flag). \n");
  731. return -8; // framing flag bit unset error
  732. }
  733. return 0;
  734. }
  735. // Process the identification header
  736. static int vorbis_parse_id_hdr(vorbis_context *vc)
  737. {
  738. GetBitContext *gb = &vc->gb;
  739. unsigned bl0, bl1;
  740. if ((get_bits(gb, 8) != 'v') || (get_bits(gb, 8) != 'o') ||
  741. (get_bits(gb, 8) != 'r') || (get_bits(gb, 8) != 'b') ||
  742. (get_bits(gb, 8) != 'i') || (get_bits(gb, 8) != 's')) {
  743. av_log(vc->avccontext, AV_LOG_ERROR, " Vorbis id header packet corrupt (no vorbis signature). \n");
  744. return -1;
  745. }
  746. vc->version = get_bits_long(gb, 32); //FIXME check 0
  747. vc->audio_channels = get_bits(gb, 8);
  748. if (vc->audio_channels <= 0) {
  749. av_log(vc->avccontext, AV_LOG_ERROR, "Invalid number of channels\n");
  750. return -1;
  751. }
  752. vc->audio_samplerate = get_bits_long(gb, 32);
  753. if (vc->audio_samplerate <= 0) {
  754. av_log(vc->avccontext, AV_LOG_ERROR, "Invalid samplerate\n");
  755. return -1;
  756. }
  757. vc->bitrate_maximum = get_bits_long(gb, 32);
  758. vc->bitrate_nominal = get_bits_long(gb, 32);
  759. vc->bitrate_minimum = get_bits_long(gb, 32);
  760. bl0 = get_bits(gb, 4);
  761. bl1 = get_bits(gb, 4);
  762. vc->blocksize[0] = (1 << bl0);
  763. vc->blocksize[1] = (1 << bl1);
  764. if (bl0 > 13 || bl0 < 6 || bl1 > 13 || bl1 < 6 || bl1 < bl0) {
  765. av_log(vc->avccontext, AV_LOG_ERROR, " Vorbis id header packet corrupt (illegal blocksize). \n");
  766. return -3;
  767. }
  768. // output format int16
  769. if (vc->blocksize[1] / 2 * vc->audio_channels * 2 > AVCODEC_MAX_AUDIO_FRAME_SIZE) {
  770. av_log(vc->avccontext, AV_LOG_ERROR, "Vorbis channel count makes "
  771. "output packets too large.\n");
  772. return -4;
  773. }
  774. vc->win[0] = ff_vorbis_vwin[bl0 - 6];
  775. vc->win[1] = ff_vorbis_vwin[bl1 - 6];
  776. if ((get_bits1(gb)) == 0) {
  777. av_log(vc->avccontext, AV_LOG_ERROR, " Vorbis id header packet corrupt (framing flag not set). \n");
  778. return -2;
  779. }
  780. vc->channel_residues = av_malloc((vc->blocksize[1] / 2) * vc->audio_channels * sizeof(*vc->channel_residues));
  781. vc->channel_floors = av_malloc((vc->blocksize[1] / 2) * vc->audio_channels * sizeof(*vc->channel_floors));
  782. vc->saved = av_mallocz((vc->blocksize[1] / 4) * vc->audio_channels * sizeof(*vc->saved));
  783. vc->previous_window = 0;
  784. ff_mdct_init(&vc->mdct[0], bl0, 1, -vc->scale_bias);
  785. ff_mdct_init(&vc->mdct[1], bl1, 1, -vc->scale_bias);
  786. AV_DEBUG(" vorbis version %d \n audio_channels %d \n audio_samplerate %d \n bitrate_max %d \n bitrate_nom %d \n bitrate_min %d \n blk_0 %d blk_1 %d \n ",
  787. vc->version, vc->audio_channels, vc->audio_samplerate, vc->bitrate_maximum, vc->bitrate_nominal, vc->bitrate_minimum, vc->blocksize[0], vc->blocksize[1]);
  788. /*
  789. BLK = vc->blocksize[0];
  790. for (i = 0; i < BLK / 2; ++i) {
  791. vc->win[0][i] = sin(0.5*3.14159265358*(sin(((float)i + 0.5) / (float)BLK*3.14159265358))*(sin(((float)i + 0.5) / (float)BLK*3.14159265358)));
  792. }
  793. */
  794. return 0;
  795. }
  796. // Process the extradata using the functions above (identification header, setup header)
  797. static av_cold int vorbis_decode_init(AVCodecContext *avccontext)
  798. {
  799. vorbis_context *vc = avccontext->priv_data ;
  800. uint8_t *headers = avccontext->extradata;
  801. int headers_len = avccontext->extradata_size;
  802. uint8_t *header_start[3];
  803. int header_len[3];
  804. GetBitContext *gb = &(vc->gb);
  805. int hdr_type;
  806. vc->avccontext = avccontext;
  807. dsputil_init(&vc->dsp, avccontext);
  808. ff_fmt_convert_init(&vc->fmt_conv, avccontext);
  809. vc->scale_bias = 32768.0f;
  810. if (!headers_len) {
  811. av_log(avccontext, AV_LOG_ERROR, "Extradata missing.\n");
  812. return -1;
  813. }
  814. if (ff_split_xiph_headers(headers, headers_len, 30, header_start, header_len) < 0) {
  815. av_log(avccontext, AV_LOG_ERROR, "Extradata corrupt.\n");
  816. return -1;
  817. }
  818. init_get_bits(gb, header_start[0], header_len[0]*8);
  819. hdr_type = get_bits(gb, 8);
  820. if (hdr_type != 1) {
  821. av_log(avccontext, AV_LOG_ERROR, "First header is not the id header.\n");
  822. return -1;
  823. }
  824. if (vorbis_parse_id_hdr(vc)) {
  825. av_log(avccontext, AV_LOG_ERROR, "Id header corrupt.\n");
  826. vorbis_free(vc);
  827. return -1;
  828. }
  829. init_get_bits(gb, header_start[2], header_len[2]*8);
  830. hdr_type = get_bits(gb, 8);
  831. if (hdr_type != 5) {
  832. av_log(avccontext, AV_LOG_ERROR, "Third header is not the setup header.\n");
  833. vorbis_free(vc);
  834. return -1;
  835. }
  836. if (vorbis_parse_setup_hdr(vc)) {
  837. av_log(avccontext, AV_LOG_ERROR, "Setup header corrupt.\n");
  838. vorbis_free(vc);
  839. return -1;
  840. }
  841. if (vc->audio_channels > 8)
  842. avccontext->channel_layout = 0;
  843. else
  844. avccontext->channel_layout = ff_vorbis_channel_layouts[vc->audio_channels - 1];
  845. avccontext->channels = vc->audio_channels;
  846. avccontext->sample_rate = vc->audio_samplerate;
  847. avccontext->frame_size = FFMIN(vc->blocksize[0], vc->blocksize[1]) >> 2;
  848. avccontext->sample_fmt =
  849. avccontext->request_sample_fmt == AV_SAMPLE_FMT_FLT ?
  850. AV_SAMPLE_FMT_FLT : AV_SAMPLE_FMT_S16;
  851. return 0 ;
  852. }
  853. // Decode audiopackets -------------------------------------------------
  854. // Read and decode floor
  855. static int vorbis_floor0_decode(vorbis_context *vc,
  856. vorbis_floor_data *vfu, float *vec)
  857. {
  858. vorbis_floor0 *vf = &vfu->t0;
  859. float *lsp = vf->lsp;
  860. unsigned amplitude, book_idx;
  861. unsigned blockflag = vc->modes[vc->mode_number].blockflag;
  862. amplitude = get_bits(&vc->gb, vf->amplitude_bits);
  863. if (amplitude > 0) {
  864. float last = 0;
  865. unsigned idx, lsp_len = 0;
  866. vorbis_codebook codebook;
  867. book_idx = get_bits(&vc->gb, ilog(vf->num_books));
  868. if (book_idx >= vf->num_books) {
  869. av_log(vc->avccontext, AV_LOG_ERROR,
  870. "floor0 dec: booknumber too high!\n");
  871. book_idx = 0;
  872. }
  873. AV_DEBUG("floor0 dec: booknumber: %u\n", book_idx);
  874. codebook = vc->codebooks[vf->book_list[book_idx]];
  875. /* Invalid codebook! */
  876. if (!codebook.codevectors)
  877. return -1;
  878. while (lsp_len<vf->order) {
  879. int vec_off;
  880. AV_DEBUG("floor0 dec: book dimension: %d\n", codebook.dimensions);
  881. AV_DEBUG("floor0 dec: maximum depth: %d\n", codebook.maxdepth);
  882. /* read temp vector */
  883. vec_off = get_vlc2(&vc->gb, codebook.vlc.table,
  884. codebook.nb_bits, codebook.maxdepth)
  885. * codebook.dimensions;
  886. AV_DEBUG("floor0 dec: vector offset: %d\n", vec_off);
  887. /* copy each vector component and add last to it */
  888. for (idx = 0; idx < codebook.dimensions; ++idx)
  889. lsp[lsp_len+idx] = codebook.codevectors[vec_off+idx] + last;
  890. last = lsp[lsp_len+idx-1]; /* set last to last vector component */
  891. lsp_len += codebook.dimensions;
  892. }
  893. #ifdef V_DEBUG
  894. /* DEBUG: output lsp coeffs */
  895. {
  896. int idx;
  897. for (idx = 0; idx < lsp_len; ++idx)
  898. AV_DEBUG("floor0 dec: coeff at %d is %f\n", idx, lsp[idx]);
  899. }
  900. #endif
  901. /* synthesize floor output vector */
  902. {
  903. int i;
  904. int order = vf->order;
  905. float wstep = M_PI / vf->bark_map_size;
  906. for (i = 0; i < order; i++)
  907. lsp[i] = 2.0f * cos(lsp[i]);
  908. AV_DEBUG("floor0 synth: map_size = %d; m = %d; wstep = %f\n",
  909. vf->map_size, order, wstep);
  910. i = 0;
  911. while (i < vf->map_size[blockflag]) {
  912. int j, iter_cond = vf->map[blockflag][i];
  913. float p = 0.5f;
  914. float q = 0.5f;
  915. float two_cos_w = 2.0f * cos(wstep * iter_cond); // needed all times
  916. /* similar part for the q and p products */
  917. for (j = 0; j + 1 < order; j += 2) {
  918. q *= lsp[j] - two_cos_w;
  919. p *= lsp[j + 1] - two_cos_w;
  920. }
  921. if (j == order) { // even order
  922. p *= p * (2.0f - two_cos_w);
  923. q *= q * (2.0f + two_cos_w);
  924. } else { // odd order
  925. q *= two_cos_w-lsp[j]; // one more time for q
  926. /* final step and square */
  927. p *= p * (4.f - two_cos_w * two_cos_w);
  928. q *= q;
  929. }
  930. /* calculate linear floor value */
  931. q = exp((((amplitude*vf->amplitude_offset) /
  932. (((1 << vf->amplitude_bits) - 1) * sqrt(p + q)))
  933. - vf->amplitude_offset) * .11512925f);
  934. /* fill vector */
  935. do {
  936. vec[i] = q; ++i;
  937. } while (vf->map[blockflag][i] == iter_cond);
  938. }
  939. }
  940. } else {
  941. /* this channel is unused */
  942. return 1;
  943. }
  944. AV_DEBUG(" Floor0 decoded\n");
  945. return 0;
  946. }
  947. static int vorbis_floor1_decode(vorbis_context *vc,
  948. vorbis_floor_data *vfu, float *vec)
  949. {
  950. vorbis_floor1 *vf = &vfu->t1;
  951. GetBitContext *gb = &vc->gb;
  952. uint_fast16_t range_v[4] = { 256, 128, 86, 64 };
  953. unsigned range = range_v[vf->multiplier-1];
  954. uint_fast16_t floor1_Y[258];
  955. uint_fast16_t floor1_Y_final[258];
  956. int floor1_flag[258];
  957. unsigned partition_class, cdim, cbits, csub, cval, offset, i, j;
  958. int book, adx, ady, dy, off, predicted, err;
  959. if (!get_bits1(gb)) // silence
  960. return 1;
  961. // Read values (or differences) for the floor's points
  962. floor1_Y[0] = get_bits(gb, ilog(range - 1));
  963. floor1_Y[1] = get_bits(gb, ilog(range - 1));
  964. AV_DEBUG("floor 0 Y %d floor 1 Y %d \n", floor1_Y[0], floor1_Y[1]);
  965. offset = 2;
  966. for (i = 0; i < vf->partitions; ++i) {
  967. partition_class = vf->partition_class[i];
  968. cdim = vf->class_dimensions[partition_class];
  969. cbits = vf->class_subclasses[partition_class];
  970. csub = (1 << cbits) - 1;
  971. cval = 0;
  972. AV_DEBUG("Cbits %u\n", cbits);
  973. if (cbits) // this reads all subclasses for this partition's class
  974. cval = get_vlc2(gb, vc->codebooks[vf->class_masterbook[partition_class]].vlc.table,
  975. vc->codebooks[vf->class_masterbook[partition_class]].nb_bits, 3);
  976. for (j = 0; j < cdim; ++j) {
  977. book = vf->subclass_books[partition_class][cval & csub];
  978. AV_DEBUG("book %d Cbits %u cval %u bits:%d\n",
  979. book, cbits, cval, get_bits_count(gb));
  980. cval = cval >> cbits;
  981. if (book > -1) {
  982. floor1_Y[offset+j] = get_vlc2(gb, vc->codebooks[book].vlc.table,
  983. vc->codebooks[book].nb_bits, 3);
  984. } else {
  985. floor1_Y[offset+j] = 0;
  986. }
  987. AV_DEBUG(" floor(%d) = %d \n", vf->list[offset+j].x, floor1_Y[offset+j]);
  988. }
  989. offset+=cdim;
  990. }
  991. // Amplitude calculation from the differences
  992. floor1_flag[0] = 1;
  993. floor1_flag[1] = 1;
  994. floor1_Y_final[0] = floor1_Y[0];
  995. floor1_Y_final[1] = floor1_Y[1];
  996. for (i = 2; i < vf->x_list_dim; ++i) {
  997. unsigned val, highroom, lowroom, room, high_neigh_offs, low_neigh_offs;
  998. low_neigh_offs = vf->list[i].low;
  999. high_neigh_offs = vf->list[i].high;
  1000. dy = floor1_Y_final[high_neigh_offs] - floor1_Y_final[low_neigh_offs]; // render_point begin
  1001. adx = vf->list[high_neigh_offs].x - vf->list[low_neigh_offs].x;
  1002. ady = FFABS(dy);
  1003. err = ady * (vf->list[i].x - vf->list[low_neigh_offs].x);
  1004. off = err / adx;
  1005. if (dy < 0) {
  1006. predicted = floor1_Y_final[low_neigh_offs] - off;
  1007. } else {
  1008. predicted = floor1_Y_final[low_neigh_offs] + off;
  1009. } // render_point end
  1010. val = floor1_Y[i];
  1011. highroom = range-predicted;
  1012. lowroom = predicted;
  1013. if (highroom < lowroom) {
  1014. room = highroom * 2;
  1015. } else {
  1016. room = lowroom * 2; // SPEC mispelling
  1017. }
  1018. if (val) {
  1019. floor1_flag[low_neigh_offs] = 1;
  1020. floor1_flag[high_neigh_offs] = 1;
  1021. floor1_flag[i] = 1;
  1022. if (val >= room) {
  1023. if (highroom > lowroom) {
  1024. floor1_Y_final[i] = val - lowroom + predicted;
  1025. } else {
  1026. floor1_Y_final[i] = predicted - val + highroom - 1;
  1027. }
  1028. } else {
  1029. if (val & 1) {
  1030. floor1_Y_final[i] = predicted - (val + 1) / 2;
  1031. } else {
  1032. floor1_Y_final[i] = predicted + val / 2;
  1033. }
  1034. }
  1035. } else {
  1036. floor1_flag[i] = 0;
  1037. floor1_Y_final[i] = predicted;
  1038. }
  1039. AV_DEBUG(" Decoded floor(%d) = %d / val %u\n",
  1040. vf->list[i].x, floor1_Y_final[i], val);
  1041. }
  1042. // Curve synth - connect the calculated dots and convert from dB scale FIXME optimize ?
  1043. ff_vorbis_floor1_render_list(vf->list, vf->x_list_dim, floor1_Y_final, floor1_flag, vf->multiplier, vec, vf->list[1].x);
  1044. AV_DEBUG(" Floor decoded\n");
  1045. return 0;
  1046. }
  1047. // Read and decode residue
  1048. static av_always_inline int vorbis_residue_decode_internal(vorbis_context *vc,
  1049. vorbis_residue *vr,
  1050. unsigned ch,
  1051. uint_fast8_t *do_not_decode,
  1052. float *vec,
  1053. unsigned vlen,
  1054. int vr_type)
  1055. {
  1056. GetBitContext *gb = &vc->gb;
  1057. unsigned c_p_c = vc->codebooks[vr->classbook].dimensions;
  1058. unsigned ptns_to_read = vr->ptns_to_read;
  1059. uint8_t *classifs = vr->classifs;
  1060. unsigned pass, ch_used, i, j, k, l;
  1061. if (vr_type == 2) {
  1062. for (j = 1; j < ch; ++j)
  1063. do_not_decode[0] &= do_not_decode[j]; // FIXME - clobbering input
  1064. if (do_not_decode[0])
  1065. return 0;
  1066. ch_used = 1;
  1067. } else {
  1068. ch_used = ch;
  1069. }
  1070. AV_DEBUG(" residue type 0/1/2 decode begin, ch: %d cpc %d \n", ch, c_p_c);
  1071. for (pass = 0; pass <= vr->maxpass; ++pass) { // FIXME OPTIMIZE?
  1072. uint16_t voffset, partition_count, j_times_ptns_to_read;
  1073. voffset = vr->begin;
  1074. for (partition_count = 0; partition_count < ptns_to_read;) { // SPEC error
  1075. if (!pass) {
  1076. unsigned inverse_class = ff_inverse[vr->classifications];
  1077. for (j_times_ptns_to_read = 0, j = 0; j < ch_used; ++j) {
  1078. if (!do_not_decode[j]) {
  1079. unsigned temp = get_vlc2(gb, vc->codebooks[vr->classbook].vlc.table,
  1080. vc->codebooks[vr->classbook].nb_bits, 3);
  1081. AV_DEBUG("Classword: %u\n", temp);
  1082. assert(vr->classifications > 1 && temp <= 65536); //needed for inverse[]
  1083. for (i = 0; i < c_p_c; ++i) {
  1084. unsigned temp2;
  1085. temp2 = (((uint64_t)temp) * inverse_class) >> 32;
  1086. if (partition_count + c_p_c - 1 - i < ptns_to_read)
  1087. classifs[j_times_ptns_to_read + partition_count + c_p_c - 1 - i] = temp - temp2 * vr->classifications;
  1088. temp = temp2;
  1089. }
  1090. }
  1091. j_times_ptns_to_read += ptns_to_read;
  1092. }
  1093. }
  1094. for (i = 0; (i < c_p_c) && (partition_count < ptns_to_read); ++i) {
  1095. for (j_times_ptns_to_read = 0, j = 0; j < ch_used; ++j) {
  1096. unsigned voffs;
  1097. if (!do_not_decode[j]) {
  1098. unsigned vqclass = classifs[j_times_ptns_to_read + partition_count];
  1099. int vqbook = vr->books[vqclass][pass];
  1100. if (vqbook >= 0 && vc->codebooks[vqbook].codevectors) {
  1101. unsigned coffs;
  1102. unsigned dim = vc->codebooks[vqbook].dimensions;
  1103. unsigned step = dim == 1 ? vr->partition_size
  1104. : FASTDIV(vr->partition_size, dim);
  1105. vorbis_codebook codebook = vc->codebooks[vqbook];
  1106. if (vr_type == 0) {
  1107. voffs = voffset+j*vlen;
  1108. for (k = 0; k < step; ++k) {
  1109. coffs = get_vlc2(gb, codebook.vlc.table, codebook.nb_bits, 3) * dim;
  1110. for (l = 0; l < dim; ++l)
  1111. vec[voffs + k + l * step] += codebook.codevectors[coffs + l]; // FPMATH
  1112. }
  1113. } else if (vr_type == 1) {
  1114. voffs = voffset + j * vlen;
  1115. for (k = 0; k < step; ++k) {
  1116. coffs = get_vlc2(gb, codebook.vlc.table, codebook.nb_bits, 3) * dim;
  1117. for (l = 0; l < dim; ++l, ++voffs) {
  1118. vec[voffs]+=codebook.codevectors[coffs+l]; // FPMATH
  1119. AV_DEBUG(" pass %d offs: %d curr: %f change: %f cv offs.: %d \n", pass, voffs, vec[voffs], codebook.codevectors[coffs+l], coffs);
  1120. }
  1121. }
  1122. } else if (vr_type == 2 && ch == 2 && (voffset & 1) == 0 && (dim & 1) == 0) { // most frequent case optimized
  1123. voffs = voffset >> 1;
  1124. if (dim == 2) {
  1125. for (k = 0; k < step; ++k) {
  1126. coffs = get_vlc2(gb, codebook.vlc.table, codebook.nb_bits, 3) * 2;
  1127. vec[voffs + k ] += codebook.codevectors[coffs ]; // FPMATH
  1128. vec[voffs + k + vlen] += codebook.codevectors[coffs + 1]; // FPMATH
  1129. }
  1130. } else if (dim == 4) {
  1131. for (k = 0; k < step; ++k, voffs += 2) {
  1132. coffs = get_vlc2(gb, codebook.vlc.table, codebook.nb_bits, 3) * 4;
  1133. vec[voffs ] += codebook.codevectors[coffs ]; // FPMATH
  1134. vec[voffs + 1 ] += codebook.codevectors[coffs + 2]; // FPMATH
  1135. vec[voffs + vlen ] += codebook.codevectors[coffs + 1]; // FPMATH
  1136. vec[voffs + vlen + 1] += codebook.codevectors[coffs + 3]; // FPMATH
  1137. }
  1138. } else
  1139. for (k = 0; k < step; ++k) {
  1140. coffs = get_vlc2(gb, codebook.vlc.table, codebook.nb_bits, 3) * dim;
  1141. for (l = 0; l < dim; l += 2, voffs++) {
  1142. vec[voffs ] += codebook.codevectors[coffs + l ]; // FPMATH
  1143. vec[voffs + vlen] += codebook.codevectors[coffs + l + 1]; // FPMATH
  1144. AV_DEBUG(" pass %d offs: %d curr: %f change: %f cv offs.: %d+%d \n", pass, voffset / ch + (voffs % ch) * vlen, vec[voffset / ch + (voffs % ch) * vlen], codebook.codevectors[coffs + l], coffs, l);
  1145. }
  1146. }
  1147. } else if (vr_type == 2) {
  1148. voffs = voffset;
  1149. for (k = 0; k < step; ++k) {
  1150. coffs = get_vlc2(gb, codebook.vlc.table, codebook.nb_bits, 3) * dim;
  1151. for (l = 0; l < dim; ++l, ++voffs) {
  1152. vec[voffs / ch + (voffs % ch) * vlen] += codebook.codevectors[coffs + l]; // FPMATH FIXME use if and counter instead of / and %
  1153. AV_DEBUG(" pass %d offs: %d curr: %f change: %f cv offs.: %d+%d \n", pass, voffset / ch + (voffs % ch) * vlen, vec[voffset / ch + (voffs % ch) * vlen], codebook.codevectors[coffs + l], coffs, l);
  1154. }
  1155. }
  1156. }
  1157. }
  1158. }
  1159. j_times_ptns_to_read += ptns_to_read;
  1160. }
  1161. ++partition_count;
  1162. voffset += vr->partition_size;
  1163. }
  1164. }
  1165. }
  1166. return 0;
  1167. }
  1168. static inline int vorbis_residue_decode(vorbis_context *vc, vorbis_residue *vr,
  1169. unsigned ch,
  1170. uint_fast8_t *do_not_decode,
  1171. float *vec, unsigned vlen)
  1172. {
  1173. if (vr->type == 2)
  1174. return vorbis_residue_decode_internal(vc, vr, ch, do_not_decode, vec, vlen, 2);
  1175. else if (vr->type == 1)
  1176. return vorbis_residue_decode_internal(vc, vr, ch, do_not_decode, vec, vlen, 1);
  1177. else if (vr->type == 0)
  1178. return vorbis_residue_decode_internal(vc, vr, ch, do_not_decode, vec, vlen, 0);
  1179. else {
  1180. av_log(vc->avccontext, AV_LOG_ERROR, " Invalid residue type while residue decode?! \n");
  1181. return -1;
  1182. }
  1183. }
  1184. void vorbis_inverse_coupling(float *mag, float *ang, int blocksize)
  1185. {
  1186. int i;
  1187. for (i = 0; i < blocksize; i++) {
  1188. if (mag[i] > 0.0) {
  1189. if (ang[i] > 0.0) {
  1190. ang[i] = mag[i] - ang[i];
  1191. } else {
  1192. float temp = ang[i];
  1193. ang[i] = mag[i];
  1194. mag[i] += temp;
  1195. }
  1196. } else {
  1197. if (ang[i] > 0.0) {
  1198. ang[i] += mag[i];
  1199. } else {
  1200. float temp = ang[i];
  1201. ang[i] = mag[i];
  1202. mag[i] -= temp;
  1203. }
  1204. }
  1205. }
  1206. }
  1207. // Decode the audio packet using the functions above
  1208. static int vorbis_parse_audio_packet(vorbis_context *vc)
  1209. {
  1210. GetBitContext *gb = &vc->gb;
  1211. FFTContext *mdct;
  1212. unsigned previous_window = vc->previous_window;
  1213. unsigned mode_number, blockflag, blocksize;
  1214. int i, j;
  1215. uint_fast8_t no_residue[255];
  1216. uint_fast8_t do_not_decode[255];
  1217. vorbis_mapping *mapping;
  1218. float *ch_res_ptr = vc->channel_residues;
  1219. float *ch_floor_ptr = vc->channel_floors;
  1220. uint_fast8_t res_chan[255];
  1221. unsigned res_num = 0;
  1222. int retlen = 0;
  1223. if (get_bits1(gb)) {
  1224. av_log(vc->avccontext, AV_LOG_ERROR, "Not a Vorbis I audio packet.\n");
  1225. return -1; // packet type not audio
  1226. }
  1227. if (vc->mode_count == 1) {
  1228. mode_number = 0;
  1229. } else {
  1230. GET_VALIDATED_INDEX(mode_number, ilog(vc->mode_count-1), vc->mode_count)
  1231. }
  1232. vc->mode_number = mode_number;
  1233. mapping = &vc->mappings[vc->modes[mode_number].mapping];
  1234. AV_DEBUG(" Mode number: %u , mapping: %d , blocktype %d\n", mode_number,
  1235. vc->modes[mode_number].mapping, vc->modes[mode_number].blockflag);
  1236. blockflag = vc->modes[mode_number].blockflag;
  1237. blocksize = vc->blocksize[blockflag];
  1238. if (blockflag)
  1239. skip_bits(gb, 2); // previous_window, next_window
  1240. memset(ch_res_ptr, 0, sizeof(float) * vc->audio_channels * blocksize / 2); //FIXME can this be removed ?
  1241. memset(ch_floor_ptr, 0, sizeof(float) * vc->audio_channels * blocksize / 2); //FIXME can this be removed ?
  1242. // Decode floor
  1243. for (i = 0; i < vc->audio_channels; ++i) {
  1244. vorbis_floor *floor;
  1245. int ret;
  1246. if (mapping->submaps > 1) {
  1247. floor = &vc->floors[mapping->submap_floor[mapping->mux[i]]];
  1248. } else {
  1249. floor = &vc->floors[mapping->submap_floor[0]];
  1250. }
  1251. ret = floor->decode(vc, &floor->data, ch_floor_ptr);
  1252. if (ret < 0) {
  1253. av_log(vc->avccontext, AV_LOG_ERROR, "Invalid codebook in vorbis_floor_decode.\n");
  1254. return -1;
  1255. }
  1256. no_residue[i] = ret;
  1257. ch_floor_ptr += blocksize / 2;
  1258. }
  1259. // Nonzero vector propagate
  1260. for (i = mapping->coupling_steps - 1; i >= 0; --i) {
  1261. if (!(no_residue[mapping->magnitude[i]] & no_residue[mapping->angle[i]])) {
  1262. no_residue[mapping->magnitude[i]] = 0;
  1263. no_residue[mapping->angle[i]] = 0;
  1264. }
  1265. }
  1266. // Decode residue
  1267. for (i = 0; i < mapping->submaps; ++i) {
  1268. vorbis_residue *residue;
  1269. unsigned ch = 0;
  1270. for (j = 0; j < vc->audio_channels; ++j) {
  1271. if ((mapping->submaps == 1) || (i == mapping->mux[j])) {
  1272. res_chan[j] = res_num;
  1273. if (no_residue[j]) {
  1274. do_not_decode[ch] = 1;
  1275. } else {
  1276. do_not_decode[ch] = 0;
  1277. }
  1278. ++ch;
  1279. ++res_num;
  1280. }
  1281. }
  1282. residue = &vc->residues[mapping->submap_residue[i]];
  1283. vorbis_residue_decode(vc, residue, ch, do_not_decode, ch_res_ptr, blocksize/2);
  1284. ch_res_ptr += ch * blocksize / 2;
  1285. }
  1286. // Inverse coupling
  1287. for (i = mapping->coupling_steps - 1; i >= 0; --i) { //warning: i has to be signed
  1288. float *mag, *ang;
  1289. mag = vc->channel_residues+res_chan[mapping->magnitude[i]] * blocksize / 2;
  1290. ang = vc->channel_residues+res_chan[mapping->angle[i]] * blocksize / 2;
  1291. vc->dsp.vorbis_inverse_coupling(mag, ang, blocksize / 2);
  1292. }
  1293. // Dotproduct, MDCT
  1294. mdct = &vc->mdct[blockflag];
  1295. for (j = vc->audio_channels-1;j >= 0; j--) {
  1296. ch_floor_ptr = vc->channel_floors + j * blocksize / 2;
  1297. ch_res_ptr = vc->channel_residues + res_chan[j] * blocksize / 2;
  1298. vc->dsp.vector_fmul(ch_floor_ptr, ch_floor_ptr, ch_res_ptr, blocksize / 2);
  1299. mdct->imdct_half(mdct, ch_res_ptr, ch_floor_ptr);
  1300. }
  1301. // Overlap/add, save data for next overlapping FPMATH
  1302. retlen = (blocksize + vc->blocksize[previous_window]) / 4;
  1303. for (j = 0; j < vc->audio_channels; j++) {
  1304. unsigned bs0 = vc->blocksize[0];
  1305. unsigned bs1 = vc->blocksize[1];
  1306. float *residue = vc->channel_residues + res_chan[j] * blocksize / 2;
  1307. float *saved = vc->saved + j * bs1 / 4;
  1308. float *ret = vc->channel_floors + j * retlen;
  1309. float *buf = residue;
  1310. const float *win = vc->win[blockflag & previous_window];
  1311. if (blockflag == previous_window) {
  1312. vc->dsp.vector_fmul_window(ret, saved, buf, win, blocksize / 4);
  1313. } else if (blockflag > previous_window) {
  1314. vc->dsp.vector_fmul_window(ret, saved, buf, win, bs0 / 4);
  1315. memcpy(ret+bs0/2, buf+bs0/4, ((bs1-bs0)/4) * sizeof(float));
  1316. } else {
  1317. memcpy(ret, saved, ((bs1 - bs0) / 4) * sizeof(float));
  1318. vc->dsp.vector_fmul_window(ret + (bs1 - bs0) / 4, saved + (bs1 - bs0) / 4, buf, win, bs0 / 4);
  1319. }
  1320. memcpy(saved, buf + blocksize / 4, blocksize / 4 * sizeof(float));
  1321. }
  1322. vc->previous_window = blockflag;
  1323. return retlen;
  1324. }
  1325. // Return the decoded audio packet through the standard api
  1326. static int vorbis_decode_frame(AVCodecContext *avccontext,
  1327. void *data, int *data_size,
  1328. AVPacket *avpkt)
  1329. {
  1330. const uint8_t *buf = avpkt->data;
  1331. int buf_size = avpkt->size;
  1332. vorbis_context *vc = avccontext->priv_data ;
  1333. GetBitContext *gb = &(vc->gb);
  1334. const float *channel_ptrs[255];
  1335. int i, len;
  1336. if (!buf_size)
  1337. return 0;
  1338. AV_DEBUG("packet length %d \n", buf_size);
  1339. init_get_bits(gb, buf, buf_size*8);
  1340. len = vorbis_parse_audio_packet(vc);
  1341. if (len <= 0) {
  1342. *data_size = 0;
  1343. return buf_size;
  1344. }
  1345. if (!vc->first_frame) {
  1346. vc->first_frame = 1;
  1347. *data_size = 0;
  1348. return buf_size ;
  1349. }
  1350. AV_DEBUG("parsed %d bytes %d bits, returned %d samples (*ch*bits) \n", get_bits_count(gb)/8, get_bits_count(gb)%8, len);
  1351. if (vc->audio_channels > 8) {
  1352. for (i = 0; i < vc->audio_channels; i++)
  1353. channel_ptrs[i] = vc->channel_floors + i * len;
  1354. } else {
  1355. for (i = 0; i < vc->audio_channels; i++)
  1356. channel_ptrs[i] = vc->channel_floors +
  1357. len * ff_vorbis_channel_layout_offsets[vc->audio_channels - 1][i];
  1358. }
  1359. *data_size = len * vc->audio_channels;
  1360. if (avccontext->sample_fmt == AV_SAMPLE_FMT_FLT) {
  1361. float_interleave(data, channel_ptrs, len, vc->audio_channels);
  1362. *data_size *= sizeof(float);
  1363. } else {
  1364. vc->fmt_conv.float_to_int16_interleave(data, channel_ptrs, len,
  1365. vc->audio_channels);
  1366. *data_size *= 2;
  1367. }
  1368. return buf_size ;
  1369. }
  1370. // Close decoder
  1371. static av_cold int vorbis_decode_close(AVCodecContext *avccontext)
  1372. {
  1373. vorbis_context *vc = avccontext->priv_data;
  1374. vorbis_free(vc);
  1375. return 0 ;
  1376. }
  1377. AVCodec ff_vorbis_decoder = {
  1378. "vorbis",
  1379. AVMEDIA_TYPE_AUDIO,
  1380. CODEC_ID_VORBIS,
  1381. sizeof(vorbis_context),
  1382. vorbis_decode_init,
  1383. NULL,
  1384. vorbis_decode_close,
  1385. vorbis_decode_frame,
  1386. .long_name = NULL_IF_CONFIG_SMALL("Vorbis"),
  1387. .channel_layouts = ff_vorbis_channel_layouts,
  1388. };