Coverage Report

Created: 2026-02-14 06:59

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libvpx/vp8/decoder/decodeframe.c
Line
Count
Source
1
/*
2
 *  Copyright (c) 2010 The WebM project authors. All Rights Reserved.
3
 *
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
6
 *  tree. An additional intellectual property rights grant can be found
7
 *  in the file PATENTS.  All contributing project authors may
8
 *  be found in the AUTHORS file in the root of the source tree.
9
 */
10
11
#include "vpx_config.h"
12
#include "vp8_rtcd.h"
13
#include "./vpx_scale_rtcd.h"
14
#include "onyxd_int.h"
15
#include "vp8/common/header.h"
16
#include "vp8/common/reconintra4x4.h"
17
#include "vp8/common/reconinter.h"
18
#include "detokenize.h"
19
#include "vp8/common/common.h"
20
#include "vp8/common/invtrans.h"
21
#include "vp8/common/alloccommon.h"
22
#include "vp8/common/entropymode.h"
23
#include "vp8/common/quant_common.h"
24
#include "vpx_scale/vpx_scale.h"
25
#include "vp8/common/reconintra.h"
26
#include "vp8/common/setupintrarecon.h"
27
28
#include "decodemv.h"
29
#include "vp8/common/extend.h"
30
#if CONFIG_ERROR_CONCEALMENT
31
#include "error_concealment.h"
32
#endif
33
#include "vpx_mem/vpx_mem.h"
34
#include "vp8/common/threading.h"
35
#include "decoderthreading.h"
36
#include "dboolhuff.h"
37
#include "vpx_dsp/vpx_dsp_common.h"
38
39
#include <assert.h>
40
#include <stdio.h>
41
42
7.74k
void vp8cx_init_de_quantizer(VP8D_COMP *pbi) {
43
7.74k
  int Q;
44
7.74k
  VP8_COMMON *const pc = &pbi->common;
45
46
999k
  for (Q = 0; Q < QINDEX_RANGE; ++Q) {
47
991k
    pc->Y1dequant[Q][0] = (short)vp8_dc_quant(Q, pc->y1dc_delta_q);
48
991k
    pc->Y2dequant[Q][0] = (short)vp8_dc2quant(Q, pc->y2dc_delta_q);
49
991k
    pc->UVdequant[Q][0] = (short)vp8_dc_uv_quant(Q, pc->uvdc_delta_q);
50
51
991k
    pc->Y1dequant[Q][1] = (short)vp8_ac_yquant(Q);
52
991k
    pc->Y2dequant[Q][1] = (short)vp8_ac2quant(Q, pc->y2ac_delta_q);
53
991k
    pc->UVdequant[Q][1] = (short)vp8_ac_uv_quant(Q, pc->uvac_delta_q);
54
991k
  }
55
7.74k
}
56
57
167M
void vp8_mb_init_dequantizer(VP8D_COMP *pbi, MACROBLOCKD *xd) {
58
167M
  int i;
59
167M
  int QIndex;
60
167M
  MB_MODE_INFO *mbmi = &xd->mode_info_context->mbmi;
61
167M
  VP8_COMMON *const pc = &pbi->common;
62
63
  /* Decide whether to use the default or alternate baseline Q value. */
64
167M
  if (xd->segmentation_enabled) {
65
    /* Abs Value */
66
167M
    if (xd->mb_segment_abs_delta == SEGMENT_ABSDATA) {
67
46.7M
      QIndex = xd->segment_feature_data[MB_LVL_ALT_Q][mbmi->segment_id];
68
69
      /* Delta Value */
70
121M
    } else {
71
121M
      QIndex = pc->base_qindex +
72
121M
               xd->segment_feature_data[MB_LVL_ALT_Q][mbmi->segment_id];
73
121M
    }
74
75
167M
    QIndex = (QIndex >= 0) ? ((QIndex <= MAXQ) ? QIndex : MAXQ)
76
167M
                           : 0; /* Clamp to valid range */
77
167M
  } else {
78
6.35k
    QIndex = pc->base_qindex;
79
6.35k
  }
80
81
  /* Set up the macroblock dequant constants */
82
167M
  xd->dequant_y1_dc[0] = 1;
83
167M
  xd->dequant_y1[0] = pc->Y1dequant[QIndex][0];
84
167M
  xd->dequant_y2[0] = pc->Y2dequant[QIndex][0];
85
167M
  xd->dequant_uv[0] = pc->UVdequant[QIndex][0];
86
87
2.68G
  for (i = 1; i < 16; ++i) {
88
2.51G
    xd->dequant_y1_dc[i] = xd->dequant_y1[i] = pc->Y1dequant[QIndex][1];
89
2.51G
    xd->dequant_y2[i] = pc->Y2dequant[QIndex][1];
90
2.51G
    xd->dequant_uv[i] = pc->UVdequant[QIndex][1];
91
2.51G
  }
92
167M
}
93
94
static void decode_macroblock(VP8D_COMP *pbi, MACROBLOCKD *xd,
95
386M
                              unsigned int mb_idx) {
96
386M
  MB_PREDICTION_MODE mode;
97
386M
  int i;
98
#if CONFIG_ERROR_CONCEALMENT
99
  int corruption_detected = 0;
100
#else
101
386M
  (void)mb_idx;
102
386M
#endif
103
104
386M
  if (xd->mode_info_context->mbmi.mb_skip_coeff) {
105
3.56M
    vp8_reset_mb_tokens_context(xd);
106
382M
  } else if (!vp8dx_bool_error(xd->current_bc)) {
107
1.30M
    int eobtotal;
108
1.30M
    eobtotal = vp8_decode_mb_tokens(pbi, xd);
109
110
    /* Special case:  Force the loopfilter to skip when eobtotal is zero */
111
1.30M
    xd->mode_info_context->mbmi.mb_skip_coeff = (eobtotal == 0);
112
1.30M
  }
113
114
386M
  mode = xd->mode_info_context->mbmi.mode;
115
116
386M
  if (xd->segmentation_enabled) vp8_mb_init_dequantizer(pbi, xd);
117
118
#if CONFIG_ERROR_CONCEALMENT
119
120
  if (pbi->ec_active) {
121
    int throw_residual;
122
    /* When we have independent partitions we can apply residual even
123
     * though other partitions within the frame are corrupt.
124
     */
125
    throw_residual =
126
        (!pbi->independent_partitions && pbi->frame_corrupt_residual);
127
    throw_residual = (throw_residual || vp8dx_bool_error(xd->current_bc));
128
129
    if ((mb_idx >= pbi->mvs_corrupt_from_mb || throw_residual)) {
130
      /* MB with corrupt residuals or corrupt mode/motion vectors.
131
       * Better to use the predictor as reconstruction.
132
       */
133
      pbi->frame_corrupt_residual = 1;
134
      memset(xd->qcoeff, 0, sizeof(xd->qcoeff));
135
136
      corruption_detected = 1;
137
138
      /* force idct to be skipped for B_PRED and use the
139
       * prediction only for reconstruction
140
       * */
141
      memset(xd->eobs, 0, 25);
142
    }
143
  }
144
#endif
145
146
  /* do prediction */
147
386M
  if (xd->mode_info_context->mbmi.ref_frame == INTRA_FRAME) {
148
383M
    vp8_build_intra_predictors_mbuv_s(
149
383M
        xd, xd->recon_above[1], xd->recon_above[2], xd->recon_left[1],
150
383M
        xd->recon_left[2], xd->recon_left_stride[1], xd->dst.u_buffer,
151
383M
        xd->dst.v_buffer, xd->dst.uv_stride);
152
153
383M
    if (mode != B_PRED) {
154
51.1M
      vp8_build_intra_predictors_mby_s(
155
51.1M
          xd, xd->recon_above[0], xd->recon_left[0], xd->recon_left_stride[0],
156
51.1M
          xd->dst.y_buffer, xd->dst.y_stride);
157
332M
    } else {
158
332M
      short *DQC = xd->dequant_y1;
159
332M
      int dst_stride = xd->dst.y_stride;
160
161
      /* clear out residual eob info */
162
332M
      if (xd->mode_info_context->mbmi.mb_skip_coeff) memset(xd->eobs, 0, 25);
163
164
332M
      intra_prediction_down_copy(xd, xd->recon_above[0] + 16);
165
166
5.65G
      for (i = 0; i < 16; ++i) {
167
5.31G
        BLOCKD *b = &xd->block[i];
168
5.31G
        unsigned char *dst = xd->dst.y_buffer + b->offset;
169
5.31G
        B_PREDICTION_MODE b_mode = xd->mode_info_context->bmi[i].as_mode;
170
5.31G
        unsigned char *Above = dst - dst_stride;
171
5.31G
        unsigned char *yleft = dst - 1;
172
5.31G
        int left_stride = dst_stride;
173
5.31G
        unsigned char top_left = Above[-1];
174
175
5.31G
        vp8_intra4x4_predict(Above, yleft, left_stride, b_mode, dst, dst_stride,
176
5.31G
                             top_left);
177
178
5.31G
        if (xd->eobs[i]) {
179
1.99G
          if (xd->eobs[i] > 1) {
180
1.14G
            vp8_dequant_idct_add(b->qcoeff, DQC, dst, dst_stride);
181
1.14G
          } else {
182
846M
            vp8_dc_only_idct_add(b->qcoeff[0] * DQC[0], dst, dst_stride, dst,
183
846M
                                 dst_stride);
184
846M
            memset(b->qcoeff, 0, 2 * sizeof(b->qcoeff[0]));
185
846M
          }
186
1.99G
        }
187
5.31G
      }
188
332M
    }
189
383M
  } else {
190
2.43M
    vp8_build_inter_predictors_mb(xd);
191
2.43M
  }
192
193
#if CONFIG_ERROR_CONCEALMENT
194
  if (corruption_detected) {
195
    return;
196
  }
197
#endif
198
199
386M
  if (!xd->mode_info_context->mbmi.mb_skip_coeff) {
200
    /* dequantization and idct */
201
382M
    if (mode != B_PRED) {
202
50.0M
      short *DQC = xd->dequant_y1;
203
204
50.0M
      if (mode != SPLITMV) {
205
49.3M
        BLOCKD *b = &xd->block[24];
206
207
        /* do 2nd order transform on the dc block */
208
49.3M
        if (xd->eobs[24] > 1) {
209
7.36M
          vp8_dequantize_b(b, xd->dequant_y2);
210
211
7.36M
          vp8_short_inv_walsh4x4(&b->dqcoeff[0], xd->qcoeff);
212
7.36M
          memset(b->qcoeff, 0, 16 * sizeof(b->qcoeff[0]));
213
42.0M
        } else {
214
42.0M
          b->dqcoeff[0] = (short)(b->qcoeff[0] * xd->dequant_y2[0]);
215
42.0M
          vp8_short_inv_walsh4x4_1(&b->dqcoeff[0], xd->qcoeff);
216
42.0M
          memset(b->qcoeff, 0, 2 * sizeof(b->qcoeff[0]));
217
42.0M
        }
218
219
        /* override the dc dequant constant in order to preserve the
220
         * dc components
221
         */
222
49.3M
        DQC = xd->dequant_y1_dc;
223
49.3M
      }
224
225
50.0M
      vp8_dequant_idct_add_y_block(xd->qcoeff, DQC, xd->dst.y_buffer,
226
50.0M
                                   xd->dst.y_stride, xd->eobs);
227
50.0M
    }
228
229
382M
    vp8_dequant_idct_add_uv_block(xd->qcoeff + 16 * 16, xd->dequant_uv,
230
382M
                                  xd->dst.u_buffer, xd->dst.v_buffer,
231
382M
                                  xd->dst.uv_stride, xd->eobs + 16);
232
382M
  }
233
386M
}
234
235
37.8k
static int get_delta_q(vp8_reader *bc, int prev, int *q_update) {
236
37.8k
  int ret_val = 0;
237
238
37.8k
  if (vp8_read_bit(bc)) {
239
6.29k
    ret_val = vp8_read_literal(bc, 4);
240
241
6.29k
    if (vp8_read_bit(bc)) ret_val = -ret_val;
242
6.29k
  }
243
244
  /* Trigger a quantizer update if the delta-q value has changed */
245
37.8k
  if (ret_val != prev) *q_update = 1;
246
247
37.8k
  return ret_val;
248
37.8k
}
249
250
#ifdef PACKET_TESTING
251
#include <stdio.h>
252
FILE *vpxlog = 0;
253
#endif
254
255
7.56k
static void yv12_extend_frame_top_c(YV12_BUFFER_CONFIG *ybf) {
256
7.56k
  int i;
257
7.56k
  unsigned char *src_ptr1;
258
7.56k
  unsigned char *dest_ptr1;
259
260
7.56k
  unsigned int Border;
261
7.56k
  int plane_stride;
262
263
  /***********/
264
  /* Y Plane */
265
  /***********/
266
7.56k
  Border = ybf->border;
267
7.56k
  plane_stride = ybf->y_stride;
268
7.56k
  src_ptr1 = ybf->y_buffer - Border;
269
7.56k
  dest_ptr1 = src_ptr1 - (Border * plane_stride);
270
271
249k
  for (i = 0; i < (int)Border; ++i) {
272
242k
    memcpy(dest_ptr1, src_ptr1, plane_stride);
273
242k
    dest_ptr1 += plane_stride;
274
242k
  }
275
276
  /***********/
277
  /* U Plane */
278
  /***********/
279
7.56k
  plane_stride = ybf->uv_stride;
280
7.56k
  Border /= 2;
281
7.56k
  src_ptr1 = ybf->u_buffer - Border;
282
7.56k
  dest_ptr1 = src_ptr1 - (Border * plane_stride);
283
284
128k
  for (i = 0; i < (int)(Border); ++i) {
285
121k
    memcpy(dest_ptr1, src_ptr1, plane_stride);
286
121k
    dest_ptr1 += plane_stride;
287
121k
  }
288
289
  /***********/
290
  /* V Plane */
291
  /***********/
292
293
7.56k
  src_ptr1 = ybf->v_buffer - Border;
294
7.56k
  dest_ptr1 = src_ptr1 - (Border * plane_stride);
295
296
128k
  for (i = 0; i < (int)(Border); ++i) {
297
121k
    memcpy(dest_ptr1, src_ptr1, plane_stride);
298
121k
    dest_ptr1 += plane_stride;
299
121k
  }
300
7.56k
}
301
302
7.56k
static void yv12_extend_frame_bottom_c(YV12_BUFFER_CONFIG *ybf) {
303
7.56k
  int i;
304
7.56k
  unsigned char *src_ptr1, *src_ptr2;
305
7.56k
  unsigned char *dest_ptr2;
306
307
7.56k
  unsigned int Border;
308
7.56k
  int plane_stride;
309
7.56k
  int plane_height;
310
311
  /***********/
312
  /* Y Plane */
313
  /***********/
314
7.56k
  Border = ybf->border;
315
7.56k
  plane_stride = ybf->y_stride;
316
7.56k
  plane_height = ybf->y_height;
317
318
7.56k
  src_ptr1 = ybf->y_buffer - Border;
319
7.56k
  src_ptr2 = src_ptr1 + (plane_height * plane_stride) - plane_stride;
320
7.56k
  dest_ptr2 = src_ptr2 + plane_stride;
321
322
249k
  for (i = 0; i < (int)Border; ++i) {
323
242k
    memcpy(dest_ptr2, src_ptr2, plane_stride);
324
242k
    dest_ptr2 += plane_stride;
325
242k
  }
326
327
  /***********/
328
  /* U Plane */
329
  /***********/
330
7.56k
  plane_stride = ybf->uv_stride;
331
7.56k
  plane_height = ybf->uv_height;
332
7.56k
  Border /= 2;
333
334
7.56k
  src_ptr1 = ybf->u_buffer - Border;
335
7.56k
  src_ptr2 = src_ptr1 + (plane_height * plane_stride) - plane_stride;
336
7.56k
  dest_ptr2 = src_ptr2 + plane_stride;
337
338
128k
  for (i = 0; i < (int)(Border); ++i) {
339
121k
    memcpy(dest_ptr2, src_ptr2, plane_stride);
340
121k
    dest_ptr2 += plane_stride;
341
121k
  }
342
343
  /***********/
344
  /* V Plane */
345
  /***********/
346
347
7.56k
  src_ptr1 = ybf->v_buffer - Border;
348
7.56k
  src_ptr2 = src_ptr1 + (plane_height * plane_stride) - plane_stride;
349
7.56k
  dest_ptr2 = src_ptr2 + plane_stride;
350
351
128k
  for (i = 0; i < (int)(Border); ++i) {
352
121k
    memcpy(dest_ptr2, src_ptr2, plane_stride);
353
121k
    dest_ptr2 += plane_stride;
354
121k
  }
355
7.56k
}
356
357
static void yv12_extend_frame_left_right_c(YV12_BUFFER_CONFIG *ybf,
358
                                           unsigned char *y_src,
359
                                           unsigned char *u_src,
360
1.14M
                                           unsigned char *v_src) {
361
1.14M
  int i;
362
1.14M
  unsigned char *src_ptr1, *src_ptr2;
363
1.14M
  unsigned char *dest_ptr1, *dest_ptr2;
364
365
1.14M
  unsigned int Border;
366
1.14M
  int plane_stride;
367
1.14M
  int plane_height;
368
1.14M
  int plane_width;
369
370
  /***********/
371
  /* Y Plane */
372
  /***********/
373
1.14M
  Border = ybf->border;
374
1.14M
  plane_stride = ybf->y_stride;
375
1.14M
  plane_height = 16;
376
1.14M
  plane_width = ybf->y_width;
377
378
  /* copy the left and right most columns out */
379
1.14M
  src_ptr1 = y_src;
380
1.14M
  src_ptr2 = src_ptr1 + plane_width - 1;
381
1.14M
  dest_ptr1 = src_ptr1 - Border;
382
1.14M
  dest_ptr2 = src_ptr2 + 1;
383
384
19.4M
  for (i = 0; i < plane_height; ++i) {
385
18.3M
    memset(dest_ptr1, src_ptr1[0], Border);
386
18.3M
    memset(dest_ptr2, src_ptr2[0], Border);
387
18.3M
    src_ptr1 += plane_stride;
388
18.3M
    src_ptr2 += plane_stride;
389
18.3M
    dest_ptr1 += plane_stride;
390
18.3M
    dest_ptr2 += plane_stride;
391
18.3M
  }
392
393
  /***********/
394
  /* U Plane */
395
  /***********/
396
1.14M
  plane_stride = ybf->uv_stride;
397
1.14M
  plane_height = 8;
398
1.14M
  plane_width = ybf->uv_width;
399
1.14M
  Border /= 2;
400
401
  /* copy the left and right most columns out */
402
1.14M
  src_ptr1 = u_src;
403
1.14M
  src_ptr2 = src_ptr1 + plane_width - 1;
404
1.14M
  dest_ptr1 = src_ptr1 - Border;
405
1.14M
  dest_ptr2 = src_ptr2 + 1;
406
407
10.3M
  for (i = 0; i < plane_height; ++i) {
408
9.16M
    memset(dest_ptr1, src_ptr1[0], Border);
409
9.16M
    memset(dest_ptr2, src_ptr2[0], Border);
410
9.16M
    src_ptr1 += plane_stride;
411
9.16M
    src_ptr2 += plane_stride;
412
9.16M
    dest_ptr1 += plane_stride;
413
9.16M
    dest_ptr2 += plane_stride;
414
9.16M
  }
415
416
  /***********/
417
  /* V Plane */
418
  /***********/
419
420
  /* copy the left and right most columns out */
421
1.14M
  src_ptr1 = v_src;
422
1.14M
  src_ptr2 = src_ptr1 + plane_width - 1;
423
1.14M
  dest_ptr1 = src_ptr1 - Border;
424
1.14M
  dest_ptr2 = src_ptr2 + 1;
425
426
10.3M
  for (i = 0; i < plane_height; ++i) {
427
9.16M
    memset(dest_ptr1, src_ptr1[0], Border);
428
9.16M
    memset(dest_ptr2, src_ptr2[0], Border);
429
9.16M
    src_ptr1 += plane_stride;
430
9.16M
    src_ptr2 += plane_stride;
431
9.16M
    dest_ptr1 += plane_stride;
432
9.16M
    dest_ptr2 += plane_stride;
433
9.16M
  }
434
1.14M
}
435
436
7.56k
static void decode_mb_rows(VP8D_COMP *pbi) {
437
7.56k
  VP8_COMMON *const pc = &pbi->common;
438
7.56k
  MACROBLOCKD *const xd = &pbi->mb;
439
440
7.56k
  MODE_INFO *lf_mic = xd->mode_info_context;
441
442
7.56k
  int ibc = 0;
443
7.56k
  int num_part = 1 << pc->multi_token_partition;
444
445
7.56k
  int recon_yoffset, recon_uvoffset;
446
7.56k
  int mb_row, mb_col;
447
7.56k
  int mb_idx = 0;
448
449
7.56k
  YV12_BUFFER_CONFIG *yv12_fb_new = pbi->dec_fb_ref[INTRA_FRAME];
450
451
7.56k
  int recon_y_stride = yv12_fb_new->y_stride;
452
7.56k
  int recon_uv_stride = yv12_fb_new->uv_stride;
453
454
7.56k
  unsigned char *ref_buffer[MAX_REF_FRAMES][3];
455
7.56k
  unsigned char *dst_buffer[3];
456
7.56k
  unsigned char *lf_dst[3];
457
7.56k
  unsigned char *eb_dst[3];
458
7.56k
  int i;
459
7.56k
  int ref_fb_corrupted[MAX_REF_FRAMES];
460
461
7.56k
  ref_fb_corrupted[INTRA_FRAME] = 0;
462
463
30.2k
  for (i = 1; i < MAX_REF_FRAMES; ++i) {
464
22.7k
    YV12_BUFFER_CONFIG *this_fb = pbi->dec_fb_ref[i];
465
466
22.7k
    ref_buffer[i][0] = this_fb->y_buffer;
467
22.7k
    ref_buffer[i][1] = this_fb->u_buffer;
468
22.7k
    ref_buffer[i][2] = this_fb->v_buffer;
469
470
22.7k
    ref_fb_corrupted[i] = this_fb->corrupted;
471
22.7k
  }
472
473
  /* Set up the buffer pointers */
474
7.56k
  eb_dst[0] = lf_dst[0] = dst_buffer[0] = yv12_fb_new->y_buffer;
475
7.56k
  eb_dst[1] = lf_dst[1] = dst_buffer[1] = yv12_fb_new->u_buffer;
476
7.56k
  eb_dst[2] = lf_dst[2] = dst_buffer[2] = yv12_fb_new->v_buffer;
477
478
7.56k
  xd->up_available = 0;
479
480
  /* Initialize the loop filter for this frame. */
481
7.56k
  if (pc->filter_level) vp8_loop_filter_frame_init(pc, xd, pc->filter_level);
482
483
7.56k
  vp8_setup_intra_recon_top_line(yv12_fb_new);
484
485
  /* Decode the individual macro block */
486
1.15M
  for (mb_row = 0; mb_row < pc->mb_rows; ++mb_row) {
487
1.14M
    if (num_part > 1) {
488
32.8k
      xd->current_bc = &pbi->mbc[ibc];
489
32.8k
      ibc++;
490
491
32.8k
      if (ibc == num_part) ibc = 0;
492
32.8k
    }
493
494
1.14M
    recon_yoffset = mb_row * recon_y_stride * 16;
495
1.14M
    recon_uvoffset = mb_row * recon_uv_stride * 8;
496
497
    /* reset contexts */
498
1.14M
    xd->above_context = pc->above_context;
499
1.14M
    memset(xd->left_context, 0, sizeof(ENTROPY_CONTEXT_PLANES));
500
501
1.14M
    xd->left_available = 0;
502
503
1.14M
    xd->mb_to_top_edge = -((mb_row * 16) << 3);
504
1.14M
    xd->mb_to_bottom_edge = ((pc->mb_rows - 1 - mb_row) * 16) << 3;
505
506
1.14M
    xd->recon_above[0] = dst_buffer[0] + recon_yoffset;
507
1.14M
    xd->recon_above[1] = dst_buffer[1] + recon_uvoffset;
508
1.14M
    xd->recon_above[2] = dst_buffer[2] + recon_uvoffset;
509
510
1.14M
    xd->recon_left[0] = xd->recon_above[0] - 1;
511
1.14M
    xd->recon_left[1] = xd->recon_above[1] - 1;
512
1.14M
    xd->recon_left[2] = xd->recon_above[2] - 1;
513
514
1.14M
    xd->recon_above[0] -= xd->dst.y_stride;
515
1.14M
    xd->recon_above[1] -= xd->dst.uv_stride;
516
1.14M
    xd->recon_above[2] -= xd->dst.uv_stride;
517
518
    /* TODO: move to outside row loop */
519
1.14M
    xd->recon_left_stride[0] = xd->dst.y_stride;
520
1.14M
    xd->recon_left_stride[1] = xd->dst.uv_stride;
521
522
1.14M
    setup_intra_recon_left(xd->recon_left[0], xd->recon_left[1],
523
1.14M
                           xd->recon_left[2], xd->dst.y_stride,
524
1.14M
                           xd->dst.uv_stride);
525
526
387M
    for (mb_col = 0; mb_col < pc->mb_cols; ++mb_col) {
527
      /* Distance of Mb to the various image edges.
528
       * These are specified to 8th pel as they are always compared to values
529
       * that are in 1/8th pel units
530
       */
531
386M
      xd->mb_to_left_edge = -((mb_col * 16) << 3);
532
386M
      xd->mb_to_right_edge = ((pc->mb_cols - 1 - mb_col) * 16) << 3;
533
534
#if CONFIG_ERROR_CONCEALMENT
535
      {
536
        int corrupt_residual =
537
            (!pbi->independent_partitions && pbi->frame_corrupt_residual) ||
538
            vp8dx_bool_error(xd->current_bc);
539
        if (pbi->ec_active &&
540
            xd->mode_info_context->mbmi.ref_frame == INTRA_FRAME &&
541
            corrupt_residual) {
542
          /* We have an intra block with corrupt coefficients, better to
543
           * conceal with an inter block. Interpolate MVs from neighboring
544
           * MBs.
545
           *
546
           * Note that for the first mb with corrupt residual in a frame,
547
           * we might not discover that before decoding the residual. That
548
           * happens after this check, and therefore no inter concealment
549
           * will be done.
550
           */
551
          vp8_interpolate_motion(xd, mb_row, mb_col, pc->mb_rows, pc->mb_cols);
552
        }
553
      }
554
#endif
555
556
386M
      xd->dst.y_buffer = dst_buffer[0] + recon_yoffset;
557
386M
      xd->dst.u_buffer = dst_buffer[1] + recon_uvoffset;
558
386M
      xd->dst.v_buffer = dst_buffer[2] + recon_uvoffset;
559
560
386M
      if (xd->mode_info_context->mbmi.ref_frame >= LAST_FRAME) {
561
2.43M
        const MV_REFERENCE_FRAME ref = xd->mode_info_context->mbmi.ref_frame;
562
2.43M
        xd->pre.y_buffer = ref_buffer[ref][0] + recon_yoffset;
563
2.43M
        xd->pre.u_buffer = ref_buffer[ref][1] + recon_uvoffset;
564
2.43M
        xd->pre.v_buffer = ref_buffer[ref][2] + recon_uvoffset;
565
383M
      } else {
566
        // ref_frame is INTRA_FRAME, pre buffer should not be used.
567
383M
        xd->pre.y_buffer = 0;
568
383M
        xd->pre.u_buffer = 0;
569
383M
        xd->pre.v_buffer = 0;
570
383M
      }
571
572
      /* propagate errors from reference frames */
573
386M
      xd->corrupted |= ref_fb_corrupted[xd->mode_info_context->mbmi.ref_frame];
574
575
386M
      decode_macroblock(pbi, xd, mb_idx);
576
577
386M
      mb_idx++;
578
386M
      xd->left_available = 1;
579
580
      /* check if the boolean decoder has suffered an error */
581
386M
      xd->corrupted |= vp8dx_bool_error(xd->current_bc);
582
583
386M
      xd->recon_above[0] += 16;
584
386M
      xd->recon_above[1] += 8;
585
386M
      xd->recon_above[2] += 8;
586
386M
      xd->recon_left[0] += 16;
587
386M
      xd->recon_left[1] += 8;
588
386M
      xd->recon_left[2] += 8;
589
590
386M
      recon_yoffset += 16;
591
386M
      recon_uvoffset += 8;
592
593
386M
      ++xd->mode_info_context; /* next mb */
594
595
386M
      xd->above_context++;
596
386M
    }
597
598
    /* adjust to the next row of mbs */
599
1.14M
    vp8_extend_mb_row(yv12_fb_new, xd->dst.y_buffer + 16, xd->dst.u_buffer + 8,
600
1.14M
                      xd->dst.v_buffer + 8);
601
602
1.14M
    ++xd->mode_info_context; /* skip prediction column */
603
1.14M
    xd->up_available = 1;
604
605
1.14M
    if (pc->filter_level) {
606
683k
      if (mb_row > 0) {
607
681k
        if (pc->filter_type == NORMAL_LOOPFILTER) {
608
473k
          vp8_loop_filter_row_normal(pc, lf_mic, mb_row - 1, recon_y_stride,
609
473k
                                     recon_uv_stride, lf_dst[0], lf_dst[1],
610
473k
                                     lf_dst[2]);
611
473k
        } else {
612
207k
          vp8_loop_filter_row_simple(pc, lf_mic, mb_row - 1, recon_y_stride,
613
207k
                                     lf_dst[0]);
614
207k
        }
615
681k
        if (mb_row > 1) {
616
678k
          yv12_extend_frame_left_right_c(yv12_fb_new, eb_dst[0], eb_dst[1],
617
678k
                                         eb_dst[2]);
618
619
678k
          eb_dst[0] += recon_y_stride * 16;
620
678k
          eb_dst[1] += recon_uv_stride * 8;
621
678k
          eb_dst[2] += recon_uv_stride * 8;
622
678k
        }
623
624
681k
        lf_dst[0] += recon_y_stride * 16;
625
681k
        lf_dst[1] += recon_uv_stride * 8;
626
681k
        lf_dst[2] += recon_uv_stride * 8;
627
681k
        lf_mic += pc->mb_cols;
628
681k
        lf_mic++; /* Skip border mb */
629
681k
      }
630
683k
    } else {
631
461k
      if (mb_row > 0) {
632
        /**/
633
456k
        yv12_extend_frame_left_right_c(yv12_fb_new, eb_dst[0], eb_dst[1],
634
456k
                                       eb_dst[2]);
635
456k
        eb_dst[0] += recon_y_stride * 16;
636
456k
        eb_dst[1] += recon_uv_stride * 8;
637
456k
        eb_dst[2] += recon_uv_stride * 8;
638
456k
      }
639
461k
    }
640
1.14M
  }
641
642
7.56k
  if (pc->filter_level) {
643
2.66k
    if (pc->filter_type == NORMAL_LOOPFILTER) {
644
2.03k
      vp8_loop_filter_row_normal(pc, lf_mic, mb_row - 1, recon_y_stride,
645
2.03k
                                 recon_uv_stride, lf_dst[0], lf_dst[1],
646
2.03k
                                 lf_dst[2]);
647
2.03k
    } else {
648
633
      vp8_loop_filter_row_simple(pc, lf_mic, mb_row - 1, recon_y_stride,
649
633
                                 lf_dst[0]);
650
633
    }
651
652
2.66k
    yv12_extend_frame_left_right_c(yv12_fb_new, eb_dst[0], eb_dst[1],
653
2.66k
                                   eb_dst[2]);
654
2.66k
    eb_dst[0] += recon_y_stride * 16;
655
2.66k
    eb_dst[1] += recon_uv_stride * 8;
656
2.66k
    eb_dst[2] += recon_uv_stride * 8;
657
2.66k
  }
658
7.56k
  yv12_extend_frame_left_right_c(yv12_fb_new, eb_dst[0], eb_dst[1], eb_dst[2]);
659
7.56k
  yv12_extend_frame_top_c(yv12_fb_new);
660
7.56k
  yv12_extend_frame_bottom_c(yv12_fb_new);
661
7.56k
}
662
663
static unsigned int read_partition_size(VP8D_COMP *pbi,
664
573
                                        const unsigned char *cx_size) {
665
573
  unsigned char temp[3];
666
573
  if (pbi->decrypt_cb) {
667
0
    pbi->decrypt_cb(pbi->decrypt_state, cx_size, temp, 3);
668
0
    cx_size = temp;
669
0
  }
670
573
  return cx_size[0] + (cx_size[1] << 8) + (cx_size[2] << 16);
671
573
}
672
673
static int read_is_valid(const unsigned char *start, size_t len,
674
8.46k
                         const unsigned char *end) {
675
8.46k
  return len != 0 && end > start && len <= (size_t)(end - start);
676
8.46k
}
677
678
static unsigned int read_available_partition_size(
679
    VP8D_COMP *pbi, const unsigned char *token_part_sizes,
680
    const unsigned char *fragment_start,
681
    const unsigned char *first_fragment_end, const unsigned char *fragment_end,
682
7.89k
    int i, int num_part) {
683
7.89k
  VP8_COMMON *pc = &pbi->common;
684
7.89k
  const unsigned char *partition_size_ptr = token_part_sizes + i * 3;
685
7.89k
  unsigned int partition_size = 0;
686
7.89k
  ptrdiff_t bytes_left = fragment_end - fragment_start;
687
7.89k
  if (bytes_left < 0) {
688
0
    vpx_internal_error(
689
0
        &pc->error, VPX_CODEC_CORRUPT_FRAME,
690
0
        "Truncated packet or corrupt partition. No bytes left %d.",
691
0
        (int)bytes_left);
692
0
  }
693
  /* Calculate the length of this partition. The last partition
694
   * size is implicit. If the partition size can't be read, then
695
   * either use the remaining data in the buffer (for EC mode)
696
   * or throw an error.
697
   */
698
7.89k
  if (i < num_part - 1) {
699
573
    if (read_is_valid(partition_size_ptr, 3, first_fragment_end)) {
700
573
      partition_size = read_partition_size(pbi, partition_size_ptr);
701
573
    } else if (pbi->ec_active) {
702
0
      partition_size = (unsigned int)bytes_left;
703
0
    } else {
704
0
      vpx_internal_error(&pc->error, VPX_CODEC_CORRUPT_FRAME,
705
0
                         "Truncated partition size data");
706
0
    }
707
7.32k
  } else {
708
7.32k
    partition_size = (unsigned int)bytes_left;
709
7.32k
  }
710
711
  /* Validate the calculated partition length. If the buffer
712
   * described by the partition can't be fully read, then restrict
713
   * it to the portion that can be (for EC mode) or throw an error.
714
   */
715
7.89k
  if (!read_is_valid(fragment_start, partition_size, fragment_end)) {
716
509
    if (pbi->ec_active) {
717
0
      partition_size = (unsigned int)bytes_left;
718
509
    } else {
719
509
      vpx_internal_error(&pc->error, VPX_CODEC_CORRUPT_FRAME,
720
509
                         "Truncated packet or corrupt partition "
721
509
                         "%d length",
722
509
                         i + 1);
723
509
    }
724
509
  }
725
7.89k
  return partition_size;
726
7.89k
}
727
728
static void setup_token_decoder(VP8D_COMP *pbi,
729
9.79k
                                const unsigned char *token_part_sizes) {
730
9.79k
  vp8_reader *bool_decoder = &pbi->mbc[0];
731
9.79k
  unsigned int partition_idx;
732
9.79k
  unsigned int fragment_idx;
733
9.79k
  unsigned int num_token_partitions;
734
9.79k
  const unsigned char *first_fragment_end =
735
9.79k
      pbi->fragments.ptrs[0] + pbi->fragments.sizes[0];
736
737
9.79k
  TOKEN_PARTITION multi_token_partition =
738
9.79k
      (TOKEN_PARTITION)vp8_read_literal(&pbi->mbc[8], 2);
739
9.79k
  if (!vp8dx_bool_error(&pbi->mbc[8])) {
740
9.48k
    pbi->common.multi_token_partition = multi_token_partition;
741
9.48k
  }
742
9.79k
  num_token_partitions = 1 << pbi->common.multi_token_partition;
743
744
  /* Check for partitions within the fragments and unpack the fragments
745
   * so that each fragment pointer points to its corresponding partition. */
746
19.5k
  for (fragment_idx = 0; fragment_idx < pbi->fragments.count; ++fragment_idx) {
747
9.79k
    unsigned int fragment_size = pbi->fragments.sizes[fragment_idx];
748
9.79k
    const unsigned char *fragment_end =
749
9.79k
        pbi->fragments.ptrs[fragment_idx] + fragment_size;
750
    /* Special case for handling the first partition since we have already
751
     * read its size. */
752
9.79k
    if (fragment_idx == 0) {
753
      /* Size of first partition + token partition sizes element */
754
9.79k
      ptrdiff_t ext_first_part_size = token_part_sizes -
755
9.79k
                                      pbi->fragments.ptrs[0] +
756
9.79k
                                      3 * (num_token_partitions - 1);
757
9.79k
      if (fragment_size < (unsigned int)ext_first_part_size)
758
1.71k
        vpx_internal_error(&pbi->common.error, VPX_CODEC_CORRUPT_FRAME,
759
1.71k
                           "Corrupted fragment size %d", fragment_size);
760
9.79k
      fragment_size -= (unsigned int)ext_first_part_size;
761
9.79k
      if (fragment_size > 0) {
762
7.84k
        pbi->fragments.sizes[0] = (unsigned int)ext_first_part_size;
763
        /* The fragment contains an additional partition. Move to
764
         * next. */
765
7.84k
        fragment_idx++;
766
7.84k
        pbi->fragments.ptrs[fragment_idx] =
767
7.84k
            pbi->fragments.ptrs[0] + pbi->fragments.sizes[0];
768
7.84k
      }
769
9.79k
    }
770
    /* Split the chunk into partitions read from the bitstream */
771
17.6k
    while (fragment_size > 0) {
772
7.89k
      ptrdiff_t partition_size = read_available_partition_size(
773
7.89k
          pbi, token_part_sizes, pbi->fragments.ptrs[fragment_idx],
774
7.89k
          first_fragment_end, fragment_end, fragment_idx - 1,
775
7.89k
          num_token_partitions);
776
7.89k
      pbi->fragments.sizes[fragment_idx] = (unsigned int)partition_size;
777
7.89k
      if (fragment_size < (unsigned int)partition_size)
778
0
        vpx_internal_error(&pbi->common.error, VPX_CODEC_CORRUPT_FRAME,
779
0
                           "Corrupted fragment size %d", fragment_size);
780
7.89k
      fragment_size -= (unsigned int)partition_size;
781
7.89k
      assert(fragment_idx <= num_token_partitions);
782
7.89k
      if (fragment_size > 0) {
783
        /* The fragment contains an additional partition.
784
         * Move to next. */
785
54
        fragment_idx++;
786
54
        pbi->fragments.ptrs[fragment_idx] =
787
54
            pbi->fragments.ptrs[fragment_idx - 1] + partition_size;
788
54
      }
789
7.89k
    }
790
9.79k
  }
791
792
9.79k
  pbi->fragments.count = num_token_partitions + 1;
793
794
17.7k
  for (partition_idx = 1; partition_idx < pbi->fragments.count;
795
9.79k
       ++partition_idx) {
796
8.00k
    if (vp8dx_start_decode(bool_decoder, pbi->fragments.ptrs[partition_idx],
797
8.00k
                           pbi->fragments.sizes[partition_idx], pbi->decrypt_cb,
798
8.00k
                           pbi->decrypt_state)) {
799
0
      vpx_internal_error(&pbi->common.error, VPX_CODEC_MEM_ERROR,
800
0
                         "Failed to allocate bool decoder %d", partition_idx);
801
0
    }
802
803
8.00k
    bool_decoder++;
804
8.00k
  }
805
806
9.79k
#if CONFIG_MULTITHREAD
807
  /* Clamp number of decoder threads */
808
9.79k
  if (pbi->decoding_thread_count > num_token_partitions - 1) {
809
0
    pbi->decoding_thread_count = num_token_partitions - 1;
810
0
  }
811
9.79k
  if ((int)pbi->decoding_thread_count > pbi->common.mb_rows - 1) {
812
0
    assert(pbi->common.mb_rows > 0);
813
0
    pbi->decoding_thread_count = pbi->common.mb_rows - 1;
814
0
  }
815
9.79k
#endif
816
9.79k
}
817
818
9.79k
static void init_frame(VP8D_COMP *pbi) {
819
9.79k
  VP8_COMMON *const pc = &pbi->common;
820
9.79k
  MACROBLOCKD *const xd = &pbi->mb;
821
822
9.79k
  if (pc->frame_type == KEY_FRAME) {
823
    /* Various keyframe initializations */
824
3.60k
    memcpy(pc->fc.mvc, vp8_default_mv_context, sizeof(vp8_default_mv_context));
825
826
3.60k
    vp8_init_mbmode_probs(pc);
827
828
3.60k
    vp8_default_coef_probs(pc);
829
830
    /* reset the segment feature data to 0 with delta coding (Default state). */
831
3.60k
    memset(xd->segment_feature_data, 0, sizeof(xd->segment_feature_data));
832
3.60k
    xd->mb_segment_abs_delta = SEGMENT_DELTADATA;
833
834
    /* reset the mode ref deltasa for loop filter */
835
3.60k
    memset(xd->ref_lf_deltas, 0, sizeof(xd->ref_lf_deltas));
836
3.60k
    memset(xd->mode_lf_deltas, 0, sizeof(xd->mode_lf_deltas));
837
838
    /* All buffers are implicitly updated on key frames. */
839
3.60k
    pc->refresh_golden_frame = 1;
840
3.60k
    pc->refresh_alt_ref_frame = 1;
841
3.60k
    pc->copy_buffer_to_gf = 0;
842
3.60k
    pc->copy_buffer_to_arf = 0;
843
844
    /* Note that Golden and Altref modes cannot be used on a key frame so
845
     * ref_frame_sign_bias[] is undefined and meaningless
846
     */
847
3.60k
    pc->ref_frame_sign_bias[GOLDEN_FRAME] = 0;
848
3.60k
    pc->ref_frame_sign_bias[ALTREF_FRAME] = 0;
849
6.18k
  } else {
850
    /* To enable choice of different interploation filters */
851
6.18k
    if (!pc->use_bilinear_mc_filter) {
852
334
      xd->subpixel_predict = vp8_sixtap_predict4x4;
853
334
      xd->subpixel_predict8x4 = vp8_sixtap_predict8x4;
854
334
      xd->subpixel_predict8x8 = vp8_sixtap_predict8x8;
855
334
      xd->subpixel_predict16x16 = vp8_sixtap_predict16x16;
856
5.85k
    } else {
857
5.85k
      xd->subpixel_predict = vp8_bilinear_predict4x4;
858
5.85k
      xd->subpixel_predict8x4 = vp8_bilinear_predict8x4;
859
5.85k
      xd->subpixel_predict8x8 = vp8_bilinear_predict8x8;
860
5.85k
      xd->subpixel_predict16x16 = vp8_bilinear_predict16x16;
861
5.85k
    }
862
863
6.18k
    if (pbi->decoded_key_frame && pbi->ec_enabled && !pbi->ec_active) {
864
0
      pbi->ec_active = 1;
865
0
    }
866
6.18k
  }
867
868
9.79k
  xd->left_context = &pc->left_context;
869
9.79k
  xd->mode_info_context = pc->mi;
870
9.79k
  xd->frame_type = pc->frame_type;
871
9.79k
  xd->mode_info_context->mbmi.mode = DC_PRED;
872
9.79k
  xd->mode_info_stride = pc->mode_info_stride;
873
9.79k
  xd->corrupted = 0; /* init without corruption */
874
875
9.79k
  xd->fullpixel_mask = ~0;
876
9.79k
  if (pc->full_pixel) xd->fullpixel_mask = ~7;
877
9.79k
}
878
879
144k
int vp8_decode_frame(VP8D_COMP *pbi) {
880
144k
  vp8_reader *const bc = &pbi->mbc[8];
881
144k
  VP8_COMMON *const pc = &pbi->common;
882
144k
  MACROBLOCKD *const xd = &pbi->mb;
883
144k
  const unsigned char *data = pbi->fragments.ptrs[0];
884
144k
  const unsigned int data_sz = pbi->fragments.sizes[0];
885
144k
  const unsigned char *data_end = data + data_sz;
886
144k
  ptrdiff_t first_partition_length_in_bytes;
887
888
144k
  int i, j, k, l;
889
144k
  const int *const mb_feature_data_bits = vp8_mb_feature_data_bits;
890
144k
  int corrupt_tokens = 0;
891
144k
  int prev_independent_partitions = pbi->independent_partitions;
892
893
144k
  YV12_BUFFER_CONFIG *yv12_fb_new = pbi->dec_fb_ref[INTRA_FRAME];
894
895
  /* start with no corruption of current frame */
896
144k
  xd->corrupted = 0;
897
144k
  yv12_fb_new->corrupted = 0;
898
899
144k
  if (data_end - data < 3) {
900
37.4k
    if (!pbi->ec_active) {
901
37.4k
      vpx_internal_error(&pc->error, VPX_CODEC_CORRUPT_FRAME,
902
37.4k
                         "Truncated packet");
903
37.4k
    }
904
905
    /* Declare the missing frame as an inter frame since it will
906
       be handled as an inter frame when we have estimated its
907
       motion vectors. */
908
37.4k
    pc->frame_type = INTER_FRAME;
909
37.4k
    pc->version = 0;
910
37.4k
    pc->show_frame = 1;
911
37.4k
    first_partition_length_in_bytes = 0;
912
107k
  } else {
913
107k
    unsigned char clear_buffer[10];
914
107k
    const unsigned char *clear = data;
915
107k
    if (pbi->decrypt_cb) {
916
0
      int n = (int)VPXMIN(sizeof(clear_buffer), data_sz);
917
0
      pbi->decrypt_cb(pbi->decrypt_state, data, clear_buffer, n);
918
0
      clear = clear_buffer;
919
0
    }
920
921
107k
    pc->frame_type = (FRAME_TYPE)(clear[0] & 1);
922
107k
    pc->version = (clear[0] >> 1) & 7;
923
107k
    pc->show_frame = (clear[0] >> 4) & 1;
924
107k
    first_partition_length_in_bytes =
925
107k
        (clear[0] | (clear[1] << 8) | (clear[2] << 16)) >> 5;
926
927
107k
    if (!pbi->ec_active && (data + first_partition_length_in_bytes > data_end ||
928
79.7k
                            data + first_partition_length_in_bytes < data ||
929
87.7k
                            first_partition_length_in_bytes == 0)) {
930
87.7k
      vpx_internal_error(&pc->error, VPX_CODEC_CORRUPT_FRAME,
931
87.7k
                         "Truncated packet or corrupt partition 0 length");
932
87.7k
    }
933
934
107k
    data += 3;
935
107k
    clear += 3;
936
937
107k
    vp8_setup_version(pc);
938
939
107k
    if (pc->frame_type == KEY_FRAME) {
940
      /* vet via sync code */
941
      /* When error concealment is enabled we should only check the sync
942
       * code if we have enough bits available
943
       */
944
5.14k
      if (data + 3 < data_end) {
945
4.05k
        if (clear[0] != 0x9d || clear[1] != 0x01 || clear[2] != 0x2a) {
946
359
          vpx_internal_error(&pc->error, VPX_CODEC_UNSUP_BITSTREAM,
947
359
                             "Invalid frame sync code");
948
359
        }
949
4.05k
      }
950
951
      /* If error concealment is enabled we should only parse the new size
952
       * if we have enough data. Otherwise we will end up with the wrong
953
       * size.
954
       */
955
5.14k
      if (data + 6 < data_end) {
956
3.60k
        pc->Width = (clear[3] | (clear[4] << 8)) & 0x3fff;
957
3.60k
        pc->horiz_scale = clear[4] >> 6;
958
3.60k
        pc->Height = (clear[5] | (clear[6] << 8)) & 0x3fff;
959
3.60k
        pc->vert_scale = clear[6] >> 6;
960
3.60k
        data += 7;
961
3.60k
      } else if (!pbi->ec_active) {
962
1.18k
        vpx_internal_error(&pc->error, VPX_CODEC_CORRUPT_FRAME,
963
1.18k
                           "Truncated key frame header");
964
1.18k
      } else {
965
        /* Error concealment is active, clear the frame. */
966
359
        data = data_end;
967
359
      }
968
102k
    } else {
969
102k
      xd->pre = *yv12_fb_new;
970
102k
      xd->dst = *yv12_fb_new;
971
102k
    }
972
107k
  }
973
144k
  if ((!pbi->decoded_key_frame && pc->frame_type != KEY_FRAME)) {
974
8.19k
    return -1;
975
8.19k
  }
976
977
136k
  init_frame(pbi);
978
979
136k
  if (vp8dx_start_decode(bc, data, (unsigned int)(data_end - data),
980
136k
                         pbi->decrypt_cb, pbi->decrypt_state)) {
981
0
    vpx_internal_error(&pc->error, VPX_CODEC_MEM_ERROR,
982
0
                       "Failed to allocate bool decoder 0");
983
0
  }
984
136k
  if (pc->frame_type == KEY_FRAME) {
985
3.60k
    (void)vp8_read_bit(bc);  // colorspace
986
3.60k
    pc->clamp_type = (CLAMP_TYPE)vp8_read_bit(bc);
987
3.60k
  }
988
989
  /* Is segmentation enabled */
990
136k
  xd->segmentation_enabled = (unsigned char)vp8_read_bit(bc);
991
992
136k
  if (xd->segmentation_enabled) {
993
    /* Signal whether or not the segmentation map is being explicitly updated
994
     * this frame. */
995
1.47k
    xd->update_mb_segmentation_map = (unsigned char)vp8_read_bit(bc);
996
1.47k
    xd->update_mb_segmentation_data = (unsigned char)vp8_read_bit(bc);
997
998
1.47k
    if (xd->update_mb_segmentation_data) {
999
1.05k
      xd->mb_segment_abs_delta = (unsigned char)vp8_read_bit(bc);
1000
1001
1.05k
      memset(xd->segment_feature_data, 0, sizeof(xd->segment_feature_data));
1002
1003
      /* For each segmentation feature (Quant and loop filter level) */
1004
3.15k
      for (i = 0; i < MB_LVL_MAX; ++i) {
1005
10.5k
        for (j = 0; j < MAX_MB_SEGMENTS; ++j) {
1006
          /* Frame level data */
1007
8.40k
          if (vp8_read_bit(bc)) {
1008
3.65k
            xd->segment_feature_data[i][j] =
1009
3.65k
                (signed char)vp8_read_literal(bc, mb_feature_data_bits[i]);
1010
1011
3.65k
            if (vp8_read_bit(bc)) {
1012
2.08k
              xd->segment_feature_data[i][j] = -xd->segment_feature_data[i][j];
1013
2.08k
            }
1014
4.75k
          } else {
1015
4.75k
            xd->segment_feature_data[i][j] = 0;
1016
4.75k
          }
1017
8.40k
        }
1018
2.10k
      }
1019
1.05k
    }
1020
1021
1.47k
    if (xd->update_mb_segmentation_map) {
1022
      /* Which macro block level features are enabled */
1023
1.03k
      memset(xd->mb_segment_tree_probs, 255, sizeof(xd->mb_segment_tree_probs));
1024
1025
      /* Read the probs used to decode the segment id for each macro block. */
1026
4.12k
      for (i = 0; i < MB_FEATURE_TREE_PROBS; ++i) {
1027
        /* If not explicitly set value is defaulted to 255 by memset above */
1028
3.09k
        if (vp8_read_bit(bc)) {
1029
1.24k
          xd->mb_segment_tree_probs[i] = (vp8_prob)vp8_read_literal(bc, 8);
1030
1.24k
        }
1031
3.09k
      }
1032
1.03k
    }
1033
135k
  } else {
1034
    /* No segmentation updates on this frame */
1035
135k
    xd->update_mb_segmentation_map = 0;
1036
135k
    xd->update_mb_segmentation_data = 0;
1037
135k
  }
1038
1039
  /* Read the loop filter level and type */
1040
136k
  pc->filter_type = (LOOPFILTERTYPE)vp8_read_bit(bc);
1041
136k
  pc->filter_level = vp8_read_literal(bc, 6);
1042
136k
  pc->sharpness_level = vp8_read_literal(bc, 3);
1043
1044
  /* Read in loop filter deltas applied at the MB level based on mode or ref
1045
   * frame. */
1046
136k
  xd->mode_ref_lf_delta_update = 0;
1047
136k
  xd->mode_ref_lf_delta_enabled = (unsigned char)vp8_read_bit(bc);
1048
1049
136k
  if (xd->mode_ref_lf_delta_enabled) {
1050
    /* Do the deltas need to be updated */
1051
6.15k
    xd->mode_ref_lf_delta_update = (unsigned char)vp8_read_bit(bc);
1052
1053
6.15k
    if (xd->mode_ref_lf_delta_update) {
1054
      /* Send update */
1055
27.8k
      for (i = 0; i < MAX_REF_LF_DELTAS; ++i) {
1056
22.3k
        if (vp8_read_bit(bc)) {
1057
          /*sign = vp8_read_bit( bc );*/
1058
9.94k
          xd->ref_lf_deltas[i] = (signed char)vp8_read_literal(bc, 6);
1059
1060
9.94k
          if (vp8_read_bit(bc)) { /* Apply sign */
1061
5.17k
            xd->ref_lf_deltas[i] = xd->ref_lf_deltas[i] * -1;
1062
5.17k
          }
1063
9.94k
        }
1064
22.3k
      }
1065
1066
      /* Send update */
1067
27.8k
      for (i = 0; i < MAX_MODE_LF_DELTAS; ++i) {
1068
22.3k
        if (vp8_read_bit(bc)) {
1069
          /*sign = vp8_read_bit( bc );*/
1070
1.96k
          xd->mode_lf_deltas[i] = (signed char)vp8_read_literal(bc, 6);
1071
1072
1.96k
          if (vp8_read_bit(bc)) { /* Apply sign */
1073
1.32k
            xd->mode_lf_deltas[i] = xd->mode_lf_deltas[i] * -1;
1074
1.32k
          }
1075
1.96k
        }
1076
22.3k
      }
1077
5.57k
    }
1078
6.15k
  }
1079
1080
136k
  setup_token_decoder(pbi, data + first_partition_length_in_bytes);
1081
1082
136k
  xd->current_bc = &pbi->mbc[0];
1083
1084
  /* Read the default quantizers. */
1085
136k
  {
1086
136k
    int Q, q_update;
1087
1088
136k
    Q = vp8_read_literal(bc, 7); /* AC 1st order Q = default */
1089
136k
    pc->base_qindex = Q;
1090
136k
    q_update = 0;
1091
136k
    pc->y1dc_delta_q = get_delta_q(bc, pc->y1dc_delta_q, &q_update);
1092
136k
    pc->y2dc_delta_q = get_delta_q(bc, pc->y2dc_delta_q, &q_update);
1093
136k
    pc->y2ac_delta_q = get_delta_q(bc, pc->y2ac_delta_q, &q_update);
1094
136k
    pc->uvdc_delta_q = get_delta_q(bc, pc->uvdc_delta_q, &q_update);
1095
136k
    pc->uvac_delta_q = get_delta_q(bc, pc->uvac_delta_q, &q_update);
1096
1097
136k
    if (q_update) vp8cx_init_de_quantizer(pbi);
1098
1099
    /* MB level dequantizer setup */
1100
136k
    vp8_mb_init_dequantizer(pbi, &pbi->mb);
1101
136k
  }
1102
1103
  /* Determine if the golden frame or ARF buffer should be updated and how.
1104
   * For all non key frames the GF and ARF refresh flags and sign bias
1105
   * flags must be set explicitly.
1106
   */
1107
136k
  if (pc->frame_type != KEY_FRAME) {
1108
    /* Should the GF or ARF be updated from the current frame */
1109
4.34k
    pc->refresh_golden_frame = vp8_read_bit(bc);
1110
#if CONFIG_ERROR_CONCEALMENT
1111
    /* Assume we shouldn't refresh golden if the bit is missing */
1112
    xd->corrupted |= vp8dx_bool_error(bc);
1113
    if (pbi->ec_active && xd->corrupted) pc->refresh_golden_frame = 0;
1114
#endif
1115
1116
4.34k
    pc->refresh_alt_ref_frame = vp8_read_bit(bc);
1117
#if CONFIG_ERROR_CONCEALMENT
1118
    /* Assume we shouldn't refresh altref if the bit is missing */
1119
    xd->corrupted |= vp8dx_bool_error(bc);
1120
    if (pbi->ec_active && xd->corrupted) pc->refresh_alt_ref_frame = 0;
1121
#endif
1122
1123
    /* Buffer to buffer copy flags. */
1124
4.34k
    pc->copy_buffer_to_gf = 0;
1125
1126
4.34k
    if (!pc->refresh_golden_frame) {
1127
3.89k
      pc->copy_buffer_to_gf = vp8_read_literal(bc, 2);
1128
3.89k
    }
1129
1130
#if CONFIG_ERROR_CONCEALMENT
1131
    /* Assume we shouldn't copy to the golden if the bit is missing */
1132
    xd->corrupted |= vp8dx_bool_error(bc);
1133
    if (pbi->ec_active && xd->corrupted) pc->copy_buffer_to_gf = 0;
1134
#endif
1135
1136
4.34k
    pc->copy_buffer_to_arf = 0;
1137
1138
4.34k
    if (!pc->refresh_alt_ref_frame) {
1139
3.85k
      pc->copy_buffer_to_arf = vp8_read_literal(bc, 2);
1140
3.85k
    }
1141
1142
#if CONFIG_ERROR_CONCEALMENT
1143
    /* Assume we shouldn't copy to the alt-ref if the bit is missing */
1144
    xd->corrupted |= vp8dx_bool_error(bc);
1145
    if (pbi->ec_active && xd->corrupted) pc->copy_buffer_to_arf = 0;
1146
#endif
1147
1148
4.34k
    pc->ref_frame_sign_bias[GOLDEN_FRAME] = vp8_read_bit(bc);
1149
4.34k
    pc->ref_frame_sign_bias[ALTREF_FRAME] = vp8_read_bit(bc);
1150
4.34k
  }
1151
1152
136k
  pc->refresh_entropy_probs = vp8_read_bit(bc);
1153
#if CONFIG_ERROR_CONCEALMENT
1154
  /* Assume we shouldn't refresh the probabilities if the bit is
1155
   * missing */
1156
  xd->corrupted |= vp8dx_bool_error(bc);
1157
  if (pbi->ec_active && xd->corrupted) pc->refresh_entropy_probs = 0;
1158
#endif
1159
136k
  if (pc->refresh_entropy_probs == 0) {
1160
6.34k
    pc->lfc = pc->fc;
1161
6.34k
  }
1162
1163
136k
  pc->refresh_last_frame = pc->frame_type == KEY_FRAME || vp8_read_bit(bc);
1164
1165
#if CONFIG_ERROR_CONCEALMENT
1166
  /* Assume we should refresh the last frame if the bit is missing */
1167
  xd->corrupted |= vp8dx_bool_error(bc);
1168
  if (pbi->ec_active && xd->corrupted) pc->refresh_last_frame = 1;
1169
#endif
1170
1171
136k
  {
1172
136k
    pbi->independent_partitions = 1;
1173
1174
    /* read coef probability tree */
1175
166k
    for (i = 0; i < BLOCK_TYPES; ++i) {
1176
272k
      for (j = 0; j < COEF_BANDS; ++j) {
1177
968k
        for (k = 0; k < PREV_COEF_CONTEXTS; ++k) {
1178
8.71M
          for (l = 0; l < ENTROPY_NODES; ++l) {
1179
7.99M
            vp8_prob *const p = pc->fc.coef_probs[i][j][k] + l;
1180
1181
7.99M
            if (vp8_read(bc, vp8_coef_update_probs[i][j][k][l])) {
1182
97.4k
              *p = (vp8_prob)vp8_read_literal(bc, 8);
1183
97.4k
            }
1184
7.99M
            if (k > 0 && *p != pc->fc.coef_probs[i][j][k - 1][l]) {
1185
2.98M
              pbi->independent_partitions = 0;
1186
2.98M
            }
1187
7.99M
          }
1188
726k
        }
1189
242k
      }
1190
30.2k
    }
1191
136k
  }
1192
1193
  /* clear out the coeff buffer */
1194
136k
  memset(xd->qcoeff, 0, sizeof(xd->qcoeff));
1195
1196
136k
  vp8_decode_mode_mvs(pbi);
1197
1198
#if CONFIG_ERROR_CONCEALMENT
1199
  if (pbi->ec_active &&
1200
      pbi->mvs_corrupt_from_mb < (unsigned int)pc->mb_cols * pc->mb_rows) {
1201
    /* Motion vectors are missing in this frame. We will try to estimate
1202
     * them and then continue decoding the frame as usual */
1203
    vp8_estimate_missing_mvs(pbi);
1204
  }
1205
#endif
1206
1207
136k
  memset(pc->above_context, 0, sizeof(ENTROPY_CONTEXT_PLANES) * pc->mb_cols);
1208
136k
  pbi->frame_corrupt_residual = 0;
1209
1210
136k
#if CONFIG_MULTITHREAD
1211
136k
  if (vpx_atomic_load_acquire(&pbi->b_multithreaded_rd) &&
1212
0
      pc->multi_token_partition != ONE_PARTITION) {
1213
0
    unsigned int thread;
1214
0
    if (vp8mt_decode_mb_rows(pbi, xd)) {
1215
0
      vp8_decoder_remove_threads(pbi);
1216
0
      pbi->restart_threads = 1;
1217
0
      vpx_internal_error(&pbi->common.error, VPX_CODEC_CORRUPT_FRAME, NULL);
1218
0
    }
1219
0
    vp8_yv12_extend_frame_borders(yv12_fb_new);
1220
0
    for (thread = 0; thread < pbi->decoding_thread_count; ++thread) {
1221
0
      corrupt_tokens |= pbi->mb_row_di[thread].mbd.corrupted;
1222
0
    }
1223
0
  } else
1224
136k
#endif
1225
136k
  {
1226
136k
    decode_mb_rows(pbi);
1227
136k
    corrupt_tokens |= xd->corrupted;
1228
136k
  }
1229
1230
  /* Collect information about decoder corruption. */
1231
  /* 1. Check first boolean decoder for errors. */
1232
136k
  yv12_fb_new->corrupted = vp8dx_bool_error(bc);
1233
  /* 2. Check the macroblock information */
1234
136k
  yv12_fb_new->corrupted |= corrupt_tokens;
1235
1236
136k
  if (!pbi->decoded_key_frame) {
1237
3.22k
    if (pc->frame_type == KEY_FRAME && !yv12_fb_new->corrupted) {
1238
915
      pbi->decoded_key_frame = 1;
1239
2.30k
    } else {
1240
2.30k
      vpx_internal_error(&pbi->common.error, VPX_CODEC_CORRUPT_FRAME,
1241
2.30k
                         "A stream must start with a complete key frame");
1242
2.30k
    }
1243
3.22k
  }
1244
1245
  /* vpx_log("Decoder: Frame Decoded, Size Roughly:%d bytes
1246
   * \n",bc->pos+pbi->bc2.pos); */
1247
1248
136k
  if (pc->refresh_entropy_probs == 0) {
1249
4.64k
    pc->fc = pc->lfc;
1250
4.64k
    pbi->independent_partitions = prev_independent_partitions;
1251
4.64k
  }
1252
1253
#ifdef PACKET_TESTING
1254
  {
1255
    FILE *f = fopen("decompressor.VP8", "ab");
1256
    unsigned int size = pbi->bc2.pos + pbi->bc.pos + 8;
1257
    fwrite((void *)&size, 4, 1, f);
1258
    fwrite((void *)pbi->Source, size, 1, f);
1259
    fclose(f);
1260
  }
1261
#endif
1262
1263
136k
  return 0;
1264
144k
}