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  1. /*
  2. * Copyright (C) 2006 Aurelien Jacobs <aurel@gnuage.org>
  3. *
  4. * This file is part of Libav.
  5. *
  6. * Libav is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU Lesser General Public
  8. * License as published by the Free Software Foundation; either
  9. * version 2.1 of the License, or (at your option) any later version.
  10. *
  11. * Libav is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  14. * Lesser General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU Lesser General Public
  17. * License along with Libav; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  19. */
  20. /**
  21. * @file
  22. * VP5 and VP6 compatible video decoder (common features)
  23. */
  24. #ifndef AVCODEC_VP56_H
  25. #define AVCODEC_VP56_H
  26. #include "avcodec.h"
  27. #include "get_bits.h"
  28. #include "hpeldsp.h"
  29. #include "bytestream.h"
  30. #include "h264chroma.h"
  31. #include "videodsp.h"
  32. #include "vp3dsp.h"
  33. #include "vp56dsp.h"
  34. typedef struct vp56_context VP56Context;
  35. typedef enum {
  36. VP56_FRAME_NONE =-1,
  37. VP56_FRAME_CURRENT = 0,
  38. VP56_FRAME_PREVIOUS = 1,
  39. VP56_FRAME_GOLDEN = 2,
  40. VP56_FRAME_GOLDEN2 = 3,
  41. } VP56Frame;
  42. typedef enum {
  43. VP56_MB_INTER_NOVEC_PF = 0, /**< Inter MB, no vector, from previous frame */
  44. VP56_MB_INTRA = 1, /**< Intra MB */
  45. VP56_MB_INTER_DELTA_PF = 2, /**< Inter MB, above/left vector + delta, from previous frame */
  46. VP56_MB_INTER_V1_PF = 3, /**< Inter MB, first vector, from previous frame */
  47. VP56_MB_INTER_V2_PF = 4, /**< Inter MB, second vector, from previous frame */
  48. VP56_MB_INTER_NOVEC_GF = 5, /**< Inter MB, no vector, from golden frame */
  49. VP56_MB_INTER_DELTA_GF = 6, /**< Inter MB, above/left vector + delta, from golden frame */
  50. VP56_MB_INTER_4V = 7, /**< Inter MB, 4 vectors, from previous frame */
  51. VP56_MB_INTER_V1_GF = 8, /**< Inter MB, first vector, from golden frame */
  52. VP56_MB_INTER_V2_GF = 9, /**< Inter MB, second vector, from golden frame */
  53. } VP56mb;
  54. typedef struct VP56Tree {
  55. int8_t val;
  56. int8_t prob_idx;
  57. } VP56Tree;
  58. typedef struct VP56mv {
  59. DECLARE_ALIGNED(4, int16_t, x);
  60. int16_t y;
  61. } VP56mv;
  62. #define VP56_SIZE_CHANGE 1
  63. typedef void (*VP56ParseVectorAdjustment)(VP56Context *s,
  64. VP56mv *vect);
  65. typedef void (*VP56Filter)(VP56Context *s, uint8_t *dst, uint8_t *src,
  66. int offset1, int offset2, ptrdiff_t stride,
  67. VP56mv mv, int mask, int select, int luma);
  68. typedef void (*VP56ParseCoeff)(VP56Context *s);
  69. typedef void (*VP56DefaultModelsInit)(VP56Context *s);
  70. typedef void (*VP56ParseVectorModels)(VP56Context *s);
  71. typedef int (*VP56ParseCoeffModels)(VP56Context *s);
  72. typedef int (*VP56ParseHeader)(VP56Context *s, const uint8_t *buf,
  73. int buf_size, int *golden_frame);
  74. typedef struct VP56RangeCoder {
  75. int high;
  76. int bits; /* stored negated (i.e. negative "bits" is a positive number of
  77. bits left) in order to eliminate a negate in cache refilling */
  78. const uint8_t *buffer;
  79. const uint8_t *end;
  80. unsigned int code_word;
  81. } VP56RangeCoder;
  82. typedef struct VP56RefDc {
  83. uint8_t not_null_dc;
  84. VP56Frame ref_frame;
  85. int16_t dc_coeff;
  86. } VP56RefDc;
  87. typedef struct VP56Macroblock {
  88. uint8_t type;
  89. VP56mv mv;
  90. } VP56Macroblock;
  91. typedef struct VP56Model {
  92. uint8_t coeff_reorder[64]; /* used in vp6 only */
  93. uint8_t coeff_index_to_pos[64]; /* used in vp6 only */
  94. uint8_t vector_sig[2]; /* delta sign */
  95. uint8_t vector_dct[2]; /* delta coding types */
  96. uint8_t vector_pdi[2][2]; /* predefined delta init */
  97. uint8_t vector_pdv[2][7]; /* predefined delta values */
  98. uint8_t vector_fdv[2][8]; /* 8 bit delta value definition */
  99. uint8_t coeff_dccv[2][11]; /* DC coeff value */
  100. uint8_t coeff_ract[2][3][6][11]; /* Run/AC coding type and AC coeff value */
  101. uint8_t coeff_acct[2][3][3][6][5];/* vp5 only AC coding type for coding group < 3 */
  102. uint8_t coeff_dcct[2][36][5]; /* DC coeff coding type */
  103. uint8_t coeff_runv[2][14]; /* run value (vp6 only) */
  104. uint8_t mb_type[3][10][10]; /* model for decoding MB type */
  105. uint8_t mb_types_stats[3][10][2];/* contextual, next MB type stats */
  106. } VP56Model;
  107. struct vp56_context {
  108. AVCodecContext *avctx;
  109. H264ChromaContext h264chroma;
  110. HpelDSPContext hdsp;
  111. VideoDSPContext vdsp;
  112. VP3DSPContext vp3dsp;
  113. VP56DSPContext vp56dsp;
  114. uint8_t idct_scantable[64];
  115. AVFrame *frames[4];
  116. uint8_t *edge_emu_buffer_alloc;
  117. uint8_t *edge_emu_buffer;
  118. VP56RangeCoder c;
  119. VP56RangeCoder cc;
  120. VP56RangeCoder *ccp;
  121. int sub_version;
  122. /* frame info */
  123. int plane_width[4];
  124. int plane_height[4];
  125. int mb_width; /* number of horizontal MB */
  126. int mb_height; /* number of vertical MB */
  127. int block_offset[6];
  128. int quantizer;
  129. uint16_t dequant_dc;
  130. uint16_t dequant_ac;
  131. /* DC predictors management */
  132. VP56RefDc *above_blocks;
  133. VP56RefDc left_block[4];
  134. int above_block_idx[6];
  135. int16_t prev_dc[3][3]; /* [plan][ref_frame] */
  136. /* blocks / macroblock */
  137. VP56mb mb_type;
  138. VP56Macroblock *macroblocks;
  139. DECLARE_ALIGNED(16, int16_t, block_coeff)[6][64];
  140. /* motion vectors */
  141. VP56mv mv[6]; /* vectors for each block in MB */
  142. VP56mv vector_candidate[2];
  143. int vector_candidate_pos;
  144. /* filtering hints */
  145. int filter_header; /* used in vp6 only */
  146. int deblock_filtering;
  147. int filter_selection;
  148. int filter_mode;
  149. int max_vector_length;
  150. int sample_variance_threshold;
  151. uint8_t coeff_ctx[4][64]; /* used in vp5 only */
  152. uint8_t coeff_ctx_last[4]; /* used in vp5 only */
  153. int has_alpha;
  154. /* upside-down flipping hints */
  155. int flip; /* are we flipping ? */
  156. int frbi; /* first row block index in MB */
  157. int srbi; /* second row block index in MB */
  158. ptrdiff_t stride[4]; /* stride for each plan */
  159. const uint8_t *vp56_coord_div;
  160. VP56ParseVectorAdjustment parse_vector_adjustment;
  161. VP56Filter filter;
  162. VP56ParseCoeff parse_coeff;
  163. VP56DefaultModelsInit default_models_init;
  164. VP56ParseVectorModels parse_vector_models;
  165. VP56ParseCoeffModels parse_coeff_models;
  166. VP56ParseHeader parse_header;
  167. VP56Model *modelp;
  168. VP56Model models[2];
  169. /* huffman decoding */
  170. int use_huffman;
  171. GetBitContext gb;
  172. VLC dccv_vlc[2];
  173. VLC runv_vlc[2];
  174. VLC ract_vlc[2][3][6];
  175. unsigned int nb_null[2][2]; /* number of consecutive NULL DC/AC */
  176. };
  177. int ff_vp56_init(AVCodecContext *avctx, int flip, int has_alpha);
  178. int ff_vp56_free(AVCodecContext *avctx);
  179. void ff_vp56_init_dequant(VP56Context *s, int quantizer);
  180. int ff_vp56_decode_frame(AVCodecContext *avctx, void *data, int *got_frame,
  181. AVPacket *avpkt);
  182. /**
  183. * vp56 specific range coder implementation
  184. */
  185. extern const uint8_t ff_vp56_norm_shift[256];
  186. void ff_vp56_init_range_decoder(VP56RangeCoder *c, const uint8_t *buf, int buf_size);
  187. static av_always_inline unsigned int vp56_rac_renorm(VP56RangeCoder *c)
  188. {
  189. int shift = ff_vp56_norm_shift[c->high];
  190. int bits = c->bits;
  191. unsigned int code_word = c->code_word;
  192. c->high <<= shift;
  193. code_word <<= shift;
  194. bits += shift;
  195. if(bits >= 0 && c->buffer < c->end) {
  196. code_word |= bytestream_get_be16(&c->buffer) << bits;
  197. bits -= 16;
  198. }
  199. c->bits = bits;
  200. return code_word;
  201. }
  202. #if ARCH_ARM
  203. #include "arm/vp56_arith.h"
  204. #elif ARCH_X86
  205. #include "x86/vp56_arith.h"
  206. #endif
  207. #ifndef vp56_rac_get_prob
  208. #define vp56_rac_get_prob vp56_rac_get_prob
  209. static av_always_inline int vp56_rac_get_prob(VP56RangeCoder *c, uint8_t prob)
  210. {
  211. unsigned int code_word = vp56_rac_renorm(c);
  212. unsigned int low = 1 + (((c->high - 1) * prob) >> 8);
  213. unsigned int low_shift = low << 16;
  214. int bit = code_word >= low_shift;
  215. c->high = bit ? c->high - low : low;
  216. c->code_word = bit ? code_word - low_shift : code_word;
  217. return bit;
  218. }
  219. #endif
  220. #ifndef vp56_rac_get_prob_branchy
  221. // branchy variant, to be used where there's a branch based on the bit decoded
  222. static av_always_inline int vp56_rac_get_prob_branchy(VP56RangeCoder *c, int prob)
  223. {
  224. unsigned long code_word = vp56_rac_renorm(c);
  225. unsigned low = 1 + (((c->high - 1) * prob) >> 8);
  226. unsigned low_shift = low << 16;
  227. if (code_word >= low_shift) {
  228. c->high -= low;
  229. c->code_word = code_word - low_shift;
  230. return 1;
  231. }
  232. c->high = low;
  233. c->code_word = code_word;
  234. return 0;
  235. }
  236. #endif
  237. static av_always_inline int vp56_rac_get(VP56RangeCoder *c)
  238. {
  239. unsigned int code_word = vp56_rac_renorm(c);
  240. /* equiprobable */
  241. int low = (c->high + 1) >> 1;
  242. unsigned int low_shift = low << 16;
  243. int bit = code_word >= low_shift;
  244. if (bit) {
  245. c->high -= low;
  246. code_word -= low_shift;
  247. } else {
  248. c->high = low;
  249. }
  250. c->code_word = code_word;
  251. return bit;
  252. }
  253. // rounding is different than vp56_rac_get, is vp56_rac_get wrong?
  254. static av_always_inline int vp8_rac_get(VP56RangeCoder *c)
  255. {
  256. return vp56_rac_get_prob(c, 128);
  257. }
  258. static int vp56_rac_gets(VP56RangeCoder *c, int bits)
  259. {
  260. int value = 0;
  261. while (bits--) {
  262. value = (value << 1) | vp56_rac_get(c);
  263. }
  264. return value;
  265. }
  266. static int vp8_rac_get_uint(VP56RangeCoder *c, int bits)
  267. {
  268. int value = 0;
  269. while (bits--) {
  270. value = (value << 1) | vp8_rac_get(c);
  271. }
  272. return value;
  273. }
  274. // fixme: add 1 bit to all the calls to this?
  275. static av_unused int vp8_rac_get_sint(VP56RangeCoder *c, int bits)
  276. {
  277. int v;
  278. if (!vp8_rac_get(c))
  279. return 0;
  280. v = vp8_rac_get_uint(c, bits);
  281. if (vp8_rac_get(c))
  282. v = -v;
  283. return v;
  284. }
  285. // P(7)
  286. static av_unused int vp56_rac_gets_nn(VP56RangeCoder *c, int bits)
  287. {
  288. int v = vp56_rac_gets(c, 7) << 1;
  289. return v + !v;
  290. }
  291. static av_unused int vp8_rac_get_nn(VP56RangeCoder *c)
  292. {
  293. int v = vp8_rac_get_uint(c, 7) << 1;
  294. return v + !v;
  295. }
  296. static av_always_inline
  297. int vp56_rac_get_tree(VP56RangeCoder *c,
  298. const VP56Tree *tree,
  299. const uint8_t *probs)
  300. {
  301. while (tree->val > 0) {
  302. if (vp56_rac_get_prob(c, probs[tree->prob_idx]))
  303. tree += tree->val;
  304. else
  305. tree++;
  306. }
  307. return -tree->val;
  308. }
  309. /**
  310. * This is identical to vp8_rac_get_tree except for the possibility of starting
  311. * on a node other than the root node, needed for coeff decode where this is
  312. * used to save a bit after a 0 token (by disallowing EOB to immediately follow.)
  313. */
  314. static av_always_inline
  315. int vp8_rac_get_tree_with_offset(VP56RangeCoder *c, const int8_t (*tree)[2],
  316. const uint8_t *probs, int i)
  317. {
  318. do {
  319. i = tree[i][vp56_rac_get_prob(c, probs[i])];
  320. } while (i > 0);
  321. return -i;
  322. }
  323. // how probabilities are associated with decisions is different I think
  324. // well, the new scheme fits in the old but this way has one fewer branches per decision
  325. static av_always_inline
  326. int vp8_rac_get_tree(VP56RangeCoder *c, const int8_t (*tree)[2],
  327. const uint8_t *probs)
  328. {
  329. return vp8_rac_get_tree_with_offset(c, tree, probs, 0);
  330. }
  331. // DCTextra
  332. static av_always_inline int vp8_rac_get_coeff(VP56RangeCoder *c, const uint8_t *prob)
  333. {
  334. int v = 0;
  335. do {
  336. v = (v<<1) + vp56_rac_get_prob(c, *prob++);
  337. } while (*prob);
  338. return v;
  339. }
  340. #endif /* AVCODEC_VP56_H */