OLD | NEW |
1 /* | 1 /* |
2 * Copyright (c) 2010 The WebM project authors. All Rights Reserved. | 2 * Copyright (c) 2010 The WebM project authors. All Rights Reserved. |
3 * | 3 * |
4 * Use of this source code is governed by a BSD-style license | 4 * Use of this source code is governed by a BSD-style license |
5 * that can be found in the LICENSE file in the root of the source | 5 * that can be found in the LICENSE file in the root of the source |
6 * tree. An additional intellectual property rights grant can be found | 6 * tree. An additional intellectual property rights grant can be found |
7 * in the file PATENTS. All contributing project authors may | 7 * in the file PATENTS. All contributing project authors may |
8 * be found in the AUTHORS file in the root of the source tree. | 8 * be found in the AUTHORS file in the root of the source tree. |
9 */ | 9 */ |
10 | 10 |
11 #include <assert.h> | 11 #include <assert.h> |
12 | 12 |
13 #include "./vp9_rtcd.h" | 13 #include "./vp9_rtcd.h" |
14 #include "vpx_mem/vpx_mem.h" | 14 #include "vpx_mem/vpx_mem.h" |
15 #include "vpx_scale/vpx_scale.h" | 15 #include "vpx_scale/vpx_scale.h" |
16 | 16 |
17 #include "vp9/common/vp9_extend.h" | 17 #include "vp9/common/vp9_extend.h" |
18 #include "vp9/common/vp9_modecont.h" | 18 #include "vp9/common/vp9_modecont.h" |
19 #include "vp9/common/vp9_common.h" | 19 #include "vp9/common/vp9_common.h" |
20 #include "vp9/common/vp9_reconintra.h" | 20 #include "vp9/common/vp9_reconintra.h" |
21 #include "vp9/common/vp9_reconinter.h" | 21 #include "vp9/common/vp9_reconinter.h" |
22 #include "vp9/common/vp9_entropy.h" | 22 #include "vp9/common/vp9_entropy.h" |
23 #include "vp9/common/vp9_invtrans.h" | |
24 #include "vp9/common/vp9_alloccommon.h" | 23 #include "vp9/common/vp9_alloccommon.h" |
25 #include "vp9/common/vp9_entropymode.h" | 24 #include "vp9/common/vp9_entropymode.h" |
26 #include "vp9/common/vp9_quant_common.h" | 25 #include "vp9/common/vp9_quant_common.h" |
27 #include "vp9/common/vp9_seg_common.h" | 26 #include "vp9/common/vp9_seg_common.h" |
28 #include "vp9/common/vp9_tile_common.h" | 27 #include "vp9/common/vp9_tile_common.h" |
29 | 28 |
30 #include "vp9/decoder/vp9_dboolhuff.h" | 29 #include "vp9/decoder/vp9_dboolhuff.h" |
31 #include "vp9/decoder/vp9_decodframe.h" | 30 #include "vp9/decoder/vp9_decodframe.h" |
32 #include "vp9/decoder/vp9_detokenize.h" | 31 #include "vp9/decoder/vp9_detokenize.h" |
33 #include "vp9/decoder/vp9_decodemv.h" | 32 #include "vp9/decoder/vp9_decodemv.h" |
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192 xd->q_index = vp9_get_qindex(xd, segment_id, pc->base_qindex); | 191 xd->q_index = vp9_get_qindex(xd, segment_id, pc->base_qindex); |
193 | 192 |
194 xd->plane[0].dequant = pc->y_dequant[xd->q_index]; | 193 xd->plane[0].dequant = pc->y_dequant[xd->q_index]; |
195 for (i = 1; i < MAX_MB_PLANE; i++) | 194 for (i = 1; i < MAX_MB_PLANE; i++) |
196 xd->plane[i].dequant = pc->uv_dequant[xd->q_index]; | 195 xd->plane[i].dequant = pc->uv_dequant[xd->q_index]; |
197 } | 196 } |
198 | 197 |
199 static void decode_block(int plane, int block, BLOCK_SIZE_TYPE bsize, | 198 static void decode_block(int plane, int block, BLOCK_SIZE_TYPE bsize, |
200 int ss_txfrm_size, void *arg) { | 199 int ss_txfrm_size, void *arg) { |
201 MACROBLOCKD* const xd = arg; | 200 MACROBLOCKD* const xd = arg; |
202 int16_t* const qcoeff = BLOCK_OFFSET(xd->plane[plane].qcoeff, block, 16); | 201 struct macroblockd_plane *pd = &xd->plane[plane]; |
203 const int stride = xd->plane[plane].dst.stride; | 202 int16_t* const qcoeff = BLOCK_OFFSET(pd->qcoeff, block, 16); |
| 203 const int stride = pd->dst.stride; |
204 const int raster_block = txfrm_block_to_raster_block(xd, bsize, plane, | 204 const int raster_block = txfrm_block_to_raster_block(xd, bsize, plane, |
205 block, ss_txfrm_size); | 205 block, ss_txfrm_size); |
206 uint8_t* const dst = raster_block_offset_uint8(xd, bsize, plane, | 206 uint8_t* const dst = raster_block_offset_uint8(xd, bsize, plane, |
207 raster_block, | 207 raster_block, |
208 xd->plane[plane].dst.buf, | 208 pd->dst.buf, stride); |
209 stride); | |
210 | 209 |
211 TX_TYPE tx_type; | 210 TX_TYPE tx_type; |
212 | 211 |
213 switch (ss_txfrm_size / 2) { | 212 switch (ss_txfrm_size / 2) { |
214 case TX_4X4: | 213 case TX_4X4: |
215 tx_type = plane == 0 ? get_tx_type_4x4(xd, raster_block) : DCT_DCT; | 214 tx_type = plane == 0 ? get_tx_type_4x4(xd, raster_block) : DCT_DCT; |
216 if (tx_type == DCT_DCT) | 215 if (tx_type == DCT_DCT) |
217 xd->itxm_add(qcoeff, dst, stride, xd->plane[plane].eobs[block]); | 216 xd->itxm_add(qcoeff, dst, stride, pd->eobs[block]); |
218 else | 217 else |
219 vp9_iht_add_c(tx_type, qcoeff, dst, stride, | 218 vp9_iht_add_c(tx_type, qcoeff, dst, stride, pd->eobs[block]); |
220 xd->plane[plane].eobs[block]); | |
221 break; | 219 break; |
222 case TX_8X8: | 220 case TX_8X8: |
223 tx_type = plane == 0 ? get_tx_type_8x8(xd, raster_block) : DCT_DCT; | 221 tx_type = plane == 0 ? get_tx_type_8x8(xd, raster_block) : DCT_DCT; |
224 vp9_iht_add_8x8_c(tx_type, qcoeff, dst, stride, | 222 vp9_iht_add_8x8_c(tx_type, qcoeff, dst, stride, pd->eobs[block]); |
225 xd->plane[plane].eobs[block]); | |
226 break; | 223 break; |
227 case TX_16X16: | 224 case TX_16X16: |
228 tx_type = plane == 0 ? get_tx_type_16x16(xd, raster_block) : DCT_DCT; | 225 tx_type = plane == 0 ? get_tx_type_16x16(xd, raster_block) : DCT_DCT; |
229 vp9_iht_add_16x16_c(tx_type, qcoeff, dst, stride, | 226 vp9_iht_add_16x16_c(tx_type, qcoeff, dst, stride, pd->eobs[block]); |
230 xd->plane[plane].eobs[block]); | |
231 break; | 227 break; |
232 case TX_32X32: | 228 case TX_32X32: |
233 vp9_idct_add_32x32(qcoeff, dst, stride, xd->plane[plane].eobs[block]); | 229 vp9_idct_add_32x32(qcoeff, dst, stride, pd->eobs[block]); |
234 break; | 230 break; |
235 } | 231 } |
236 } | 232 } |
237 | 233 |
238 static void decode_block_intra(int plane, int block, BLOCK_SIZE_TYPE bsize, | 234 static void decode_block_intra(int plane, int block, BLOCK_SIZE_TYPE bsize, |
239 int ss_txfrm_size, void *arg) { | 235 int ss_txfrm_size, void *arg) { |
240 MACROBLOCKD* const xd = arg; | 236 MACROBLOCKD* const xd = arg; |
241 int16_t* const qcoeff = BLOCK_OFFSET(xd->plane[plane].qcoeff, block, 16); | 237 struct macroblockd_plane *pd = &xd->plane[plane]; |
242 const int stride = xd->plane[plane].dst.stride; | 238 |
243 const int raster_block = txfrm_block_to_raster_block(xd, bsize, plane, | 239 const int raster_block = txfrm_block_to_raster_block(xd, bsize, plane, |
244 block, ss_txfrm_size); | 240 block, ss_txfrm_size); |
245 uint8_t* const dst = raster_block_offset_uint8(xd, bsize, plane, | 241 uint8_t* const dst = raster_block_offset_uint8(xd, bsize, plane, |
246 raster_block, | 242 raster_block, |
247 xd->plane[plane].dst.buf, | 243 pd->dst.buf, pd->dst.stride); |
248 stride); | |
249 const TX_SIZE tx_size = (TX_SIZE)(ss_txfrm_size / 2); | 244 const TX_SIZE tx_size = (TX_SIZE)(ss_txfrm_size / 2); |
250 TX_TYPE tx_type; | 245 int b_mode; |
251 int mode, b_mode; | |
252 int plane_b_size; | 246 int plane_b_size; |
253 int tx_ib = raster_block >> tx_size; | 247 const int tx_ib = raster_block >> tx_size; |
254 mode = plane == 0? xd->mode_info_context->mbmi.mode: | 248 const int mode = plane == 0 ? xd->mode_info_context->mbmi.mode |
255 xd->mode_info_context->mbmi.uv_mode; | 249 : xd->mode_info_context->mbmi.uv_mode; |
256 | 250 |
257 | 251 |
258 if (xd->mode_info_context->mbmi.sb_type < BLOCK_SIZE_SB8X8 && plane == 0) { | 252 if (plane == 0 && xd->mode_info_context->mbmi.sb_type < BLOCK_SIZE_SB8X8) { |
259 assert(bsize == BLOCK_SIZE_SB8X8); | 253 assert(bsize == BLOCK_SIZE_SB8X8); |
260 b_mode = xd->mode_info_context->bmi[raster_block].as_mode.first; | 254 b_mode = xd->mode_info_context->bmi[raster_block].as_mode.first; |
261 } else { | 255 } else { |
262 b_mode = mode; | 256 b_mode = mode; |
263 } | 257 } |
264 | 258 |
265 if (xd->mb_to_right_edge < 0 || xd->mb_to_bottom_edge < 0) { | 259 if (xd->mb_to_right_edge < 0 || xd->mb_to_bottom_edge < 0) |
266 extend_for_intra(xd, plane, block, bsize, ss_txfrm_size); | 260 extend_for_intra(xd, plane, block, bsize, ss_txfrm_size); |
267 } | |
268 | 261 |
269 plane_b_size = b_width_log2(bsize) - xd->plane[plane].subsampling_x; | 262 plane_b_size = b_width_log2(bsize) - pd->subsampling_x; |
270 vp9_predict_intra_block(xd, tx_ib, plane_b_size, tx_size, | 263 vp9_predict_intra_block(xd, tx_ib, plane_b_size, tx_size, b_mode, |
271 b_mode, dst, xd->plane[plane].dst.stride); | 264 dst, pd->dst.stride); |
272 | 265 |
273 // Early exit if there are no coefficients | 266 // Early exit if there are no coefficients |
274 if (xd->mode_info_context->mbmi.mb_skip_coeff) | 267 if (xd->mode_info_context->mbmi.mb_skip_coeff) |
275 return; | 268 return; |
276 | 269 |
277 switch (ss_txfrm_size / 2) { | 270 decode_block(plane, block, bsize, ss_txfrm_size, arg); |
278 case TX_4X4: | |
279 tx_type = plane == 0 ? get_tx_type_4x4(xd, raster_block) : DCT_DCT; | |
280 if (tx_type == DCT_DCT) | |
281 xd->itxm_add(qcoeff, dst, stride, xd->plane[plane].eobs[block]); | |
282 else | |
283 vp9_iht_add_c(tx_type, qcoeff, dst, stride, | |
284 xd->plane[plane].eobs[block]); | |
285 break; | |
286 case TX_8X8: | |
287 tx_type = plane == 0 ? get_tx_type_8x8(xd, raster_block) : DCT_DCT; | |
288 vp9_iht_add_8x8_c(tx_type, qcoeff, dst, stride, | |
289 xd->plane[plane].eobs[block]); | |
290 break; | |
291 case TX_16X16: | |
292 tx_type = plane == 0 ? get_tx_type_16x16(xd, raster_block) : DCT_DCT; | |
293 vp9_iht_add_16x16_c(tx_type, qcoeff, dst, stride, | |
294 xd->plane[plane].eobs[block]); | |
295 break; | |
296 case TX_32X32: | |
297 vp9_idct_add_32x32(qcoeff, dst, stride, xd->plane[plane].eobs[block]); | |
298 break; | |
299 } | |
300 } | 271 } |
301 | 272 |
302 static void decode_atom(VP9D_COMP *pbi, MACROBLOCKD *xd, | 273 static void decode_atom(VP9D_COMP *pbi, MACROBLOCKD *xd, |
303 int mi_row, int mi_col, | 274 int mi_row, int mi_col, |
304 vp9_reader *r, BLOCK_SIZE_TYPE bsize) { | 275 vp9_reader *r, BLOCK_SIZE_TYPE bsize) { |
305 MB_MODE_INFO *const mbmi = &xd->mode_info_context->mbmi; | 276 MB_MODE_INFO *const mbmi = &xd->mode_info_context->mbmi; |
306 | 277 |
307 assert(mbmi->ref_frame[0] != INTRA_FRAME); | 278 assert(mbmi->ref_frame[0] != INTRA_FRAME); |
308 | 279 |
309 if ((pbi->common.frame_type != KEY_FRAME) && (!pbi->common.intra_only)) | 280 if ((pbi->common.frame_type != KEY_FRAME) && (!pbi->common.intra_only)) |
310 vp9_setup_interp_filters(xd, mbmi->interp_filter, &pbi->common); | 281 vp9_setup_interp_filters(xd, mbmi->interp_filter, &pbi->common); |
311 | 282 |
312 // prediction | 283 // prediction |
313 vp9_build_inter_predictors_sb(xd, mi_row, mi_col, bsize); | 284 vp9_build_inter_predictors_sb(xd, mi_row, mi_col, bsize); |
314 | 285 |
315 if (mbmi->mb_skip_coeff) { | 286 if (mbmi->mb_skip_coeff) { |
316 vp9_reset_sb_tokens_context(xd, bsize); | 287 vp9_reset_sb_tokens_context(xd, bsize); |
317 } else { | 288 } else { |
318 // re-initialize macroblock dequantizer before detokenization | |
319 if (xd->segmentation_enabled) | 289 if (xd->segmentation_enabled) |
320 mb_init_dequantizer(&pbi->common, xd); | 290 mb_init_dequantizer(&pbi->common, xd); |
321 | 291 |
322 if (!vp9_reader_has_error(r)) { | 292 if (!vp9_reader_has_error(r)) |
323 vp9_decode_tokens(pbi, xd, r, bsize); | 293 vp9_decode_tokens(pbi, r, bsize); |
324 } | |
325 | 294 |
326 foreach_transformed_block(xd, bsize, decode_block, xd); | 295 foreach_transformed_block(xd, bsize, decode_block, xd); |
327 } | 296 } |
328 } | 297 } |
329 | 298 |
330 static void decode_sb_intra(VP9D_COMP *pbi, MACROBLOCKD *xd, | 299 static void decode_sb_intra(VP9D_COMP *pbi, MACROBLOCKD *xd, |
331 int mi_row, int mi_col, | 300 int mi_row, int mi_col, |
332 vp9_reader *r, BLOCK_SIZE_TYPE bsize) { | 301 vp9_reader *r, BLOCK_SIZE_TYPE bsize) { |
333 MB_MODE_INFO *const mbmi = &xd->mode_info_context->mbmi; | 302 MB_MODE_INFO *const mbmi = &xd->mode_info_context->mbmi; |
334 if (mbmi->mb_skip_coeff) { | 303 if (mbmi->mb_skip_coeff) { |
335 vp9_reset_sb_tokens_context(xd, bsize); | 304 vp9_reset_sb_tokens_context(xd, bsize); |
336 } else { | 305 } else { |
337 // re-initialize macroblock dequantizer before detokenization | |
338 if (xd->segmentation_enabled) | 306 if (xd->segmentation_enabled) |
339 mb_init_dequantizer(&pbi->common, xd); | 307 mb_init_dequantizer(&pbi->common, xd); |
340 | 308 |
341 if (!vp9_reader_has_error(r)) { | 309 if (!vp9_reader_has_error(r)) |
342 vp9_decode_tokens(pbi, xd, r, bsize); | 310 vp9_decode_tokens(pbi, r, bsize); |
343 } | |
344 } | 311 } |
345 | 312 |
346 foreach_transformed_block(xd, bsize, decode_block_intra, xd); | 313 foreach_transformed_block(xd, bsize, decode_block_intra, xd); |
347 } | 314 } |
348 | 315 |
349 | 316 |
350 static void decode_sb(VP9D_COMP *pbi, MACROBLOCKD *xd, int mi_row, int mi_col, | 317 static void decode_sb(VP9D_COMP *pbi, MACROBLOCKD *xd, int mi_row, int mi_col, |
351 vp9_reader *r, BLOCK_SIZE_TYPE bsize) { | 318 vp9_reader *r, BLOCK_SIZE_TYPE bsize) { |
352 const int bwl = mi_width_log2(bsize), bhl = mi_height_log2(bsize); | 319 const int bwl = mi_width_log2(bsize), bhl = mi_height_log2(bsize); |
353 const int bw = 1 << bwl, bh = 1 << bhl; | 320 const int bw = 1 << bwl, bh = 1 << bhl; |
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367 vp9_build_inter_predictors_sb(xd, mi_row, mi_col, bsize); | 334 vp9_build_inter_predictors_sb(xd, mi_row, mi_col, bsize); |
368 | 335 |
369 if (mbmi->mb_skip_coeff) { | 336 if (mbmi->mb_skip_coeff) { |
370 vp9_reset_sb_tokens_context(xd, bsize); | 337 vp9_reset_sb_tokens_context(xd, bsize); |
371 } else { | 338 } else { |
372 // re-initialize macroblock dequantizer before detokenization | 339 // re-initialize macroblock dequantizer before detokenization |
373 if (xd->segmentation_enabled) | 340 if (xd->segmentation_enabled) |
374 mb_init_dequantizer(pc, xd); | 341 mb_init_dequantizer(pc, xd); |
375 | 342 |
376 // dequantization and idct | 343 // dequantization and idct |
377 eobtotal = vp9_decode_tokens(pbi, xd, r, bsize); | 344 eobtotal = vp9_decode_tokens(pbi, r, bsize); |
378 if (eobtotal == 0) { // skip loopfilter | 345 if (eobtotal == 0) { // skip loopfilter |
379 for (n = 0; n < bw * bh; n++) { | 346 for (n = 0; n < bw * bh; n++) { |
380 const int x_idx = n & (bw - 1), y_idx = n >> bwl; | 347 const int x_idx = n & (bw - 1), y_idx = n >> bwl; |
381 | 348 |
382 if (mi_col + x_idx < pc->mi_cols && mi_row + y_idx < pc->mi_rows) | 349 if (mi_col + x_idx < pc->mi_cols && mi_row + y_idx < pc->mi_rows) |
383 mi[y_idx * mis + x_idx].mbmi.mb_skip_coeff = 1; | 350 mi[y_idx * mis + x_idx].mbmi.mb_skip_coeff = 1; |
384 } | 351 } |
385 } else { | 352 } else { |
386 foreach_transformed_block(xd, bsize, decode_block, xd); | 353 foreach_transformed_block(xd, bsize, decode_block, xd); |
387 } | 354 } |
388 } | 355 } |
389 } | 356 } |
390 | 357 |
391 static void set_offsets(VP9D_COMP *pbi, BLOCK_SIZE_TYPE bsize, | 358 static void set_offsets(VP9D_COMP *pbi, BLOCK_SIZE_TYPE bsize, |
392 int mi_row, int mi_col) { | 359 int mi_row, int mi_col) { |
| 360 VP9_COMMON *const cm = &pbi->common; |
| 361 MACROBLOCKD *const xd = &pbi->mb; |
393 const int bh = 1 << mi_height_log2(bsize); | 362 const int bh = 1 << mi_height_log2(bsize); |
394 const int bw = 1 << mi_width_log2(bsize); | 363 const int bw = 1 << mi_width_log2(bsize); |
395 VP9_COMMON *const cm = &pbi->common; | |
396 MACROBLOCKD *const xd = &pbi->mb; | |
397 const int mi_idx = mi_row * cm->mode_info_stride + mi_col; | 364 const int mi_idx = mi_row * cm->mode_info_stride + mi_col; |
398 int i; | 365 int i; |
399 | 366 |
400 xd->mode_info_context = cm->mi + mi_idx; | 367 xd->mode_info_context = cm->mi + mi_idx; |
401 xd->mode_info_context->mbmi.sb_type = bsize; | 368 xd->mode_info_context->mbmi.sb_type = bsize; |
402 // Special case: if prev_mi is NULL, the previous mode info context | 369 // Special case: if prev_mi is NULL, the previous mode info context |
403 // cannot be used. | 370 // cannot be used. |
404 xd->prev_mode_info_context = cm->prev_mi ? | 371 xd->prev_mode_info_context = cm->prev_mi ? cm->prev_mi + mi_idx : NULL; |
405 cm->prev_mi + mi_idx : NULL; | |
406 | 372 |
407 for (i = 0; i < MAX_MB_PLANE; i++) { | 373 for (i = 0; i < MAX_MB_PLANE; i++) { |
408 xd->plane[i].above_context = cm->above_context[i] + | 374 struct macroblockd_plane *pd = &xd->plane[i]; |
409 (mi_col * 2 >> xd->plane[i].subsampling_x); | 375 pd->above_context = cm->above_context[i] + |
410 xd->plane[i].left_context = cm->left_context[i] + | 376 (mi_col * 2 >> pd->subsampling_x); |
411 (((mi_row * 2) & 15) >> xd->plane[i].subsampling_y); | 377 pd->left_context = cm->left_context[i] + |
| 378 (((mi_row * 2) & 15) >> pd->subsampling_y); |
412 } | 379 } |
413 xd->above_seg_context = cm->above_seg_context + mi_col; | 380 xd->above_seg_context = cm->above_seg_context + mi_col; |
414 xd->left_seg_context = cm->left_seg_context + (mi_row & MI_MASK); | 381 xd->left_seg_context = cm->left_seg_context + (mi_row & MI_MASK); |
415 | 382 |
416 // Distance of Mb to the various image edges. These are specified to 8th pel | 383 // Distance of Mb to the various image edges. These are specified to 8th pel |
417 // as they are always compared to values that are in 1/8th pel units | 384 // as they are always compared to values that are in 1/8th pel units |
418 set_mi_row_col(cm, xd, mi_row, bh, mi_col, bw); | 385 set_mi_row_col(cm, xd, mi_row, bh, mi_col, bw); |
419 | 386 |
420 setup_dst_planes(xd, &cm->yv12_fb[cm->new_fb_idx], mi_row, mi_col); | 387 setup_dst_planes(xd, &cm->yv12_fb[cm->new_fb_idx], mi_row, mi_col); |
421 } | 388 } |
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467 else | 434 else |
468 decode_sb(pbi, xd, mi_row, mi_col, r, bsize); | 435 decode_sb(pbi, xd, mi_row, mi_col, r, bsize); |
469 | 436 |
470 xd->corrupted |= vp9_reader_has_error(r); | 437 xd->corrupted |= vp9_reader_has_error(r); |
471 } | 438 } |
472 | 439 |
473 static void decode_modes_sb(VP9D_COMP *pbi, int mi_row, int mi_col, | 440 static void decode_modes_sb(VP9D_COMP *pbi, int mi_row, int mi_col, |
474 vp9_reader* r, BLOCK_SIZE_TYPE bsize) { | 441 vp9_reader* r, BLOCK_SIZE_TYPE bsize) { |
475 VP9_COMMON *const pc = &pbi->common; | 442 VP9_COMMON *const pc = &pbi->common; |
476 MACROBLOCKD *const xd = &pbi->mb; | 443 MACROBLOCKD *const xd = &pbi->mb; |
477 int bsl = mi_width_log2(bsize), bs = (1 << bsl) / 2; | 444 int bs = (1 << mi_width_log2(bsize)) / 2, n; |
478 int n; | |
479 PARTITION_TYPE partition = PARTITION_NONE; | 445 PARTITION_TYPE partition = PARTITION_NONE; |
480 BLOCK_SIZE_TYPE subsize; | 446 BLOCK_SIZE_TYPE subsize; |
481 | 447 |
482 if (mi_row >= pc->mi_rows || mi_col >= pc->mi_cols) | 448 if (mi_row >= pc->mi_rows || mi_col >= pc->mi_cols) |
483 return; | 449 return; |
484 | 450 |
485 if (bsize < BLOCK_SIZE_SB8X8) | 451 if (bsize < BLOCK_SIZE_SB8X8) |
486 if (xd->ab_index != 0) | 452 if (xd->ab_index != 0) |
487 return; | 453 return; |
488 | 454 |
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556 vpx_internal_error(&pc->error, VPX_CODEC_CORRUPT_FRAME, | 522 vpx_internal_error(&pc->error, VPX_CODEC_CORRUPT_FRAME, |
557 "Truncated packet or corrupt tile length"); | 523 "Truncated packet or corrupt tile length"); |
558 | 524 |
559 if (vp9_reader_init(r, data, read_size)) | 525 if (vp9_reader_init(r, data, read_size)) |
560 vpx_internal_error(&pc->error, VPX_CODEC_MEM_ERROR, | 526 vpx_internal_error(&pc->error, VPX_CODEC_MEM_ERROR, |
561 "Failed to allocate bool decoder %d", 1); | 527 "Failed to allocate bool decoder %d", 1); |
562 } | 528 } |
563 | 529 |
564 static void read_coef_probs_common(FRAME_CONTEXT *fc, TX_SIZE tx_size, | 530 static void read_coef_probs_common(FRAME_CONTEXT *fc, TX_SIZE tx_size, |
565 vp9_reader *r) { | 531 vp9_reader *r) { |
566 const int entropy_nodes_update = UNCONSTRAINED_NODES; | |
567 vp9_coeff_probs_model *coef_probs = fc->coef_probs[tx_size]; | 532 vp9_coeff_probs_model *coef_probs = fc->coef_probs[tx_size]; |
568 | 533 |
569 int i, j, k, l, m; | |
570 | |
571 if (vp9_read_bit(r)) { | 534 if (vp9_read_bit(r)) { |
| 535 int i, j, k, l, m; |
572 for (i = 0; i < BLOCK_TYPES; i++) { | 536 for (i = 0; i < BLOCK_TYPES; i++) { |
573 for (j = 0; j < REF_TYPES; j++) { | 537 for (j = 0; j < REF_TYPES; j++) { |
574 for (k = 0; k < COEF_BANDS; k++) { | 538 for (k = 0; k < COEF_BANDS; k++) { |
575 for (l = 0; l < PREV_COEF_CONTEXTS; l++) { | 539 for (l = 0; l < PREV_COEF_CONTEXTS; l++) { |
576 const int mstart = 0; | |
577 if (l >= 3 && k == 0) | 540 if (l >= 3 && k == 0) |
578 continue; | 541 continue; |
579 | 542 |
580 for (m = mstart; m < entropy_nodes_update; m++) { | 543 for (m = 0; m < UNCONSTRAINED_NODES; m++) { |
581 vp9_prob *const p = coef_probs[i][j][k][l] + m; | 544 vp9_prob *const p = coef_probs[i][j][k][l] + m; |
582 | 545 |
583 if (vp9_read(r, VP9_COEF_UPDATE_PROB)) { | 546 if (vp9_read(r, VP9_COEF_UPDATE_PROB)) |
584 *p = vp9_read_prob_diff_update(r, *p); | 547 *p = vp9_read_prob_diff_update(r, *p); |
585 } | |
586 } | 548 } |
587 } | 549 } |
588 } | 550 } |
589 } | 551 } |
590 } | 552 } |
591 } | 553 } |
592 } | 554 } |
593 | 555 |
594 static void read_coef_probs(VP9D_COMP *pbi, vp9_reader *r) { | 556 static void read_coef_probs(VP9D_COMP *pbi, vp9_reader *r) { |
595 const TXFM_MODE txfm_mode = pbi->common.txfm_mode; | 557 const TXFM_MODE txfm_mode = pbi->common.txfm_mode; |
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1111 if (!cm->error_resilient_mode) { | 1073 if (!cm->error_resilient_mode) { |
1112 cm->refresh_frame_context = vp9_rb_read_bit(rb); | 1074 cm->refresh_frame_context = vp9_rb_read_bit(rb); |
1113 cm->frame_parallel_decoding_mode = vp9_rb_read_bit(rb); | 1075 cm->frame_parallel_decoding_mode = vp9_rb_read_bit(rb); |
1114 } else { | 1076 } else { |
1115 cm->refresh_frame_context = 0; | 1077 cm->refresh_frame_context = 0; |
1116 cm->frame_parallel_decoding_mode = 1; | 1078 cm->frame_parallel_decoding_mode = 1; |
1117 } | 1079 } |
1118 | 1080 |
1119 cm->frame_context_idx = vp9_rb_read_literal(rb, NUM_FRAME_CONTEXTS_LG2); | 1081 cm->frame_context_idx = vp9_rb_read_literal(rb, NUM_FRAME_CONTEXTS_LG2); |
1120 | 1082 |
1121 if ((cm->frame_type == KEY_FRAME) || | 1083 if (cm->frame_type == KEY_FRAME || cm->error_resilient_mode || cm->intra_only) |
1122 cm->error_resilient_mode || cm->intra_only) | |
1123 vp9_setup_past_independence(cm, xd); | 1084 vp9_setup_past_independence(cm, xd); |
1124 | 1085 |
1125 setup_loopfilter(pbi, rb); | 1086 setup_loopfilter(pbi, rb); |
1126 setup_quantization(pbi, rb); | 1087 setup_quantization(pbi, rb); |
1127 setup_segmentation(pbi, rb); | 1088 setup_segmentation(pbi, rb); |
1128 | 1089 |
1129 setup_tile_info(cm, rb); | 1090 setup_tile_info(cm, rb); |
1130 | 1091 |
1131 return vp9_rb_read_literal(rb, 16); | 1092 return vp9_rb_read_literal(rb, 16); |
1132 } | 1093 } |
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1229 vp9_adapt_nmv_probs(pc, xd->allow_high_precision_mv); | 1190 vp9_adapt_nmv_probs(pc, xd->allow_high_precision_mv); |
1230 } | 1191 } |
1231 } | 1192 } |
1232 | 1193 |
1233 if (pc->refresh_frame_context) | 1194 if (pc->refresh_frame_context) |
1234 pc->frame_contexts[pc->frame_context_idx] = pc->fc; | 1195 pc->frame_contexts[pc->frame_context_idx] = pc->fc; |
1235 | 1196 |
1236 *p_data_end = vp9_reader_find_end(&residual_bc); | 1197 *p_data_end = vp9_reader_find_end(&residual_bc); |
1237 return 0; | 1198 return 0; |
1238 } | 1199 } |
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