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  1. /*
  2. * RV30 decoder
  3. * Copyright (c) 2007 Konstantin Shishkov
  4. *
  5. * This file is part of Libav.
  6. *
  7. * Libav 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. * Libav 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 Libav; 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. * RV30 decoder
  24. */
  25. #include "avcodec.h"
  26. #include "mpegvideo.h"
  27. #include "golomb.h"
  28. #include "rv34.h"
  29. #include "rv30data.h"
  30. static int rv30_parse_slice_header(RV34DecContext *r, GetBitContext *gb, SliceInfo *si)
  31. {
  32. int mb_bits;
  33. int w = r->s.width, h = r->s.height;
  34. int mb_size;
  35. int rpr;
  36. memset(si, 0, sizeof(SliceInfo));
  37. if(get_bits(gb, 3))
  38. return -1;
  39. si->type = get_bits(gb, 2);
  40. if(si->type == 1) si->type = 0;
  41. if(get_bits1(gb))
  42. return -1;
  43. si->quant = get_bits(gb, 5);
  44. skip_bits1(gb);
  45. si->pts = get_bits(gb, 13);
  46. rpr = get_bits(gb, r->rpr);
  47. if(rpr){
  48. w = r->s.avctx->extradata[6 + rpr*2] << 2;
  49. h = r->s.avctx->extradata[7 + rpr*2] << 2;
  50. }
  51. si->width = w;
  52. si->height = h;
  53. mb_size = ((w + 15) >> 4) * ((h + 15) >> 4);
  54. mb_bits = ff_rv34_get_start_offset(gb, mb_size);
  55. si->start = get_bits(gb, mb_bits);
  56. skip_bits1(gb);
  57. return 0;
  58. }
  59. /**
  60. * Decode 4x4 intra types array.
  61. */
  62. static int rv30_decode_intra_types(RV34DecContext *r, GetBitContext *gb, int8_t *dst)
  63. {
  64. int i, j, k;
  65. for(i = 0; i < 4; i++, dst += r->intra_types_stride - 4){
  66. for(j = 0; j < 4; j+= 2){
  67. unsigned code = svq3_get_ue_golomb(gb) << 1;
  68. if(code >= 81*2){
  69. av_log(r->s.avctx, AV_LOG_ERROR, "Incorrect intra prediction code\n");
  70. return -1;
  71. }
  72. for(k = 0; k < 2; k++){
  73. int A = dst[-r->intra_types_stride] + 1;
  74. int B = dst[-1] + 1;
  75. *dst++ = rv30_itype_from_context[A * 90 + B * 9 + rv30_itype_code[code + k]];
  76. if(dst[-1] == 9){
  77. av_log(r->s.avctx, AV_LOG_ERROR, "Incorrect intra prediction mode\n");
  78. return -1;
  79. }
  80. }
  81. }
  82. }
  83. return 0;
  84. }
  85. /**
  86. * Decode macroblock information.
  87. */
  88. static int rv30_decode_mb_info(RV34DecContext *r)
  89. {
  90. static const int rv30_p_types[6] = { RV34_MB_SKIP, RV34_MB_P_16x16, RV34_MB_P_8x8, -1, RV34_MB_TYPE_INTRA, RV34_MB_TYPE_INTRA16x16 };
  91. static const int rv30_b_types[6] = { RV34_MB_SKIP, RV34_MB_B_DIRECT, RV34_MB_B_FORWARD, RV34_MB_B_BACKWARD, RV34_MB_TYPE_INTRA, RV34_MB_TYPE_INTRA16x16 };
  92. MpegEncContext *s = &r->s;
  93. GetBitContext *gb = &s->gb;
  94. unsigned code = svq3_get_ue_golomb(gb);
  95. if (code > 11) {
  96. av_log(s->avctx, AV_LOG_ERROR, "Incorrect MB type code\n");
  97. return -1;
  98. }
  99. if(code > 5){
  100. av_log(s->avctx, AV_LOG_ERROR, "dquant needed\n");
  101. code -= 6;
  102. }
  103. if(s->pict_type != AV_PICTURE_TYPE_B)
  104. return rv30_p_types[code];
  105. else
  106. return rv30_b_types[code];
  107. }
  108. static inline void rv30_weak_loop_filter(uint8_t *src, const int step,
  109. const int stride, const int lim)
  110. {
  111. const uint8_t *cm = ff_cropTbl + MAX_NEG_CROP;
  112. int i, diff;
  113. for(i = 0; i < 4; i++){
  114. diff = ((src[-2*step] - src[1*step]) - (src[-1*step] - src[0*step])*4) >> 3;
  115. diff = av_clip(diff, -lim, lim);
  116. src[-1*step] = cm[src[-1*step] + diff];
  117. src[ 0*step] = cm[src[ 0*step] - diff];
  118. src += stride;
  119. }
  120. }
  121. static void rv30_loop_filter(RV34DecContext *r, int row)
  122. {
  123. MpegEncContext *s = &r->s;
  124. int mb_pos, mb_x;
  125. int i, j, k;
  126. uint8_t *Y, *C;
  127. int loc_lim, cur_lim, left_lim = 0, top_lim = 0;
  128. mb_pos = row * s->mb_stride;
  129. for(mb_x = 0; mb_x < s->mb_width; mb_x++, mb_pos++){
  130. int mbtype = s->current_picture_ptr->mb_type[mb_pos];
  131. if(IS_INTRA(mbtype) || IS_SEPARATE_DC(mbtype))
  132. r->deblock_coefs[mb_pos] = 0xFFFF;
  133. if(IS_INTRA(mbtype))
  134. r->cbp_chroma[mb_pos] = 0xFF;
  135. }
  136. /* all vertical edges are filtered first
  137. * and horizontal edges are filtered on the next iteration
  138. */
  139. mb_pos = row * s->mb_stride;
  140. for(mb_x = 0; mb_x < s->mb_width; mb_x++, mb_pos++){
  141. cur_lim = rv30_loop_filt_lim[s->current_picture_ptr->qscale_table[mb_pos]];
  142. if(mb_x)
  143. left_lim = rv30_loop_filt_lim[s->current_picture_ptr->qscale_table[mb_pos - 1]];
  144. for(j = 0; j < 16; j += 4){
  145. Y = s->current_picture_ptr->f.data[0] + mb_x*16 + (row*16 + j) * s->linesize + 4 * !mb_x;
  146. for(i = !mb_x; i < 4; i++, Y += 4){
  147. int ij = i + j;
  148. loc_lim = 0;
  149. if(r->deblock_coefs[mb_pos] & (1 << ij))
  150. loc_lim = cur_lim;
  151. else if(!i && r->deblock_coefs[mb_pos - 1] & (1 << (ij + 3)))
  152. loc_lim = left_lim;
  153. else if( i && r->deblock_coefs[mb_pos] & (1 << (ij - 1)))
  154. loc_lim = cur_lim;
  155. if(loc_lim)
  156. rv30_weak_loop_filter(Y, 1, s->linesize, loc_lim);
  157. }
  158. }
  159. for(k = 0; k < 2; k++){
  160. int cur_cbp, left_cbp = 0;
  161. cur_cbp = (r->cbp_chroma[mb_pos] >> (k*4)) & 0xF;
  162. if(mb_x)
  163. left_cbp = (r->cbp_chroma[mb_pos - 1] >> (k*4)) & 0xF;
  164. for(j = 0; j < 8; j += 4){
  165. C = s->current_picture_ptr->f.data[k + 1] + mb_x*8 + (row*8 + j) * s->uvlinesize + 4 * !mb_x;
  166. for(i = !mb_x; i < 2; i++, C += 4){
  167. int ij = i + (j >> 1);
  168. loc_lim = 0;
  169. if (cur_cbp & (1 << ij))
  170. loc_lim = cur_lim;
  171. else if(!i && left_cbp & (1 << (ij + 1)))
  172. loc_lim = left_lim;
  173. else if( i && cur_cbp & (1 << (ij - 1)))
  174. loc_lim = cur_lim;
  175. if(loc_lim)
  176. rv30_weak_loop_filter(C, 1, s->uvlinesize, loc_lim);
  177. }
  178. }
  179. }
  180. }
  181. mb_pos = row * s->mb_stride;
  182. for(mb_x = 0; mb_x < s->mb_width; mb_x++, mb_pos++){
  183. cur_lim = rv30_loop_filt_lim[s->current_picture_ptr->qscale_table[mb_pos]];
  184. if(row)
  185. top_lim = rv30_loop_filt_lim[s->current_picture_ptr->qscale_table[mb_pos - s->mb_stride]];
  186. for(j = 4*!row; j < 16; j += 4){
  187. Y = s->current_picture_ptr->f.data[0] + mb_x*16 + (row*16 + j) * s->linesize;
  188. for(i = 0; i < 4; i++, Y += 4){
  189. int ij = i + j;
  190. loc_lim = 0;
  191. if(r->deblock_coefs[mb_pos] & (1 << ij))
  192. loc_lim = cur_lim;
  193. else if(!j && r->deblock_coefs[mb_pos - s->mb_stride] & (1 << (ij + 12)))
  194. loc_lim = top_lim;
  195. else if( j && r->deblock_coefs[mb_pos] & (1 << (ij - 4)))
  196. loc_lim = cur_lim;
  197. if(loc_lim)
  198. rv30_weak_loop_filter(Y, s->linesize, 1, loc_lim);
  199. }
  200. }
  201. for(k = 0; k < 2; k++){
  202. int cur_cbp, top_cbp = 0;
  203. cur_cbp = (r->cbp_chroma[mb_pos] >> (k*4)) & 0xF;
  204. if(row)
  205. top_cbp = (r->cbp_chroma[mb_pos - s->mb_stride] >> (k*4)) & 0xF;
  206. for(j = 4*!row; j < 8; j += 4){
  207. C = s->current_picture_ptr->f.data[k+1] + mb_x*8 + (row*8 + j) * s->uvlinesize;
  208. for(i = 0; i < 2; i++, C += 4){
  209. int ij = i + (j >> 1);
  210. loc_lim = 0;
  211. if (r->cbp_chroma[mb_pos] & (1 << ij))
  212. loc_lim = cur_lim;
  213. else if(!j && top_cbp & (1 << (ij + 2)))
  214. loc_lim = top_lim;
  215. else if( j && cur_cbp & (1 << (ij - 2)))
  216. loc_lim = cur_lim;
  217. if(loc_lim)
  218. rv30_weak_loop_filter(C, s->uvlinesize, 1, loc_lim);
  219. }
  220. }
  221. }
  222. }
  223. }
  224. /**
  225. * Initialize decoder.
  226. */
  227. static av_cold int rv30_decode_init(AVCodecContext *avctx)
  228. {
  229. RV34DecContext *r = avctx->priv_data;
  230. int ret;
  231. r->rv30 = 1;
  232. if ((ret = ff_rv34_decode_init(avctx)) < 0)
  233. return ret;
  234. if(avctx->extradata_size < 2){
  235. av_log(avctx, AV_LOG_ERROR, "Extradata is too small.\n");
  236. return -1;
  237. }
  238. r->rpr = (avctx->extradata[1] & 7) >> 1;
  239. r->rpr = FFMIN(r->rpr + 1, 3);
  240. if(avctx->extradata_size - 8 < (r->rpr - 1) * 2){
  241. av_log(avctx, AV_LOG_ERROR, "Insufficient extradata - need at least %d bytes, got %d\n",
  242. 6 + r->rpr * 2, avctx->extradata_size);
  243. return AVERROR(EINVAL);
  244. }
  245. r->parse_slice_header = rv30_parse_slice_header;
  246. r->decode_intra_types = rv30_decode_intra_types;
  247. r->decode_mb_info = rv30_decode_mb_info;
  248. r->loop_filter = rv30_loop_filter;
  249. r->luma_dc_quant_i = rv30_luma_dc_quant;
  250. r->luma_dc_quant_p = rv30_luma_dc_quant;
  251. return 0;
  252. }
  253. AVCodec ff_rv30_decoder = {
  254. .name = "rv30",
  255. .long_name = NULL_IF_CONFIG_SMALL("RealVideo 3.0"),
  256. .type = AVMEDIA_TYPE_VIDEO,
  257. .id = AV_CODEC_ID_RV30,
  258. .priv_data_size = sizeof(RV34DecContext),
  259. .init = rv30_decode_init,
  260. .close = ff_rv34_decode_end,
  261. .decode = ff_rv34_decode_frame,
  262. .capabilities = CODEC_CAP_DR1 | CODEC_CAP_DELAY |
  263. CODEC_CAP_FRAME_THREADS,
  264. .flush = ff_mpeg_flush,
  265. .pix_fmts = ff_pixfmt_list_420,
  266. .init_thread_copy = ONLY_IF_THREADS_ENABLED(ff_rv34_decode_init_thread_copy),
  267. .update_thread_context = ONLY_IF_THREADS_ENABLED(ff_rv34_decode_update_thread_context),
  268. };