Coverage Report

Created: 2026-04-01 07:49

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/aom/av1/decoder/decodemv.c
Line
Count
Source
1
/*
2
 * Copyright (c) 2016, Alliance for Open Media. All rights reserved.
3
 *
4
 * This source code is subject to the terms of the BSD 2 Clause License and
5
 * the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
6
 * was not distributed with this source code in the LICENSE file, you can
7
 * obtain it at www.aomedia.org/license/software. If the Alliance for Open
8
 * Media Patent License 1.0 was not distributed with this source code in the
9
 * PATENTS file, you can obtain it at www.aomedia.org/license/patent.
10
 */
11
12
#include <assert.h>
13
14
#include "av1/common/cfl.h"
15
#include "av1/common/common.h"
16
#include "av1/common/entropy.h"
17
#include "av1/common/entropymode.h"
18
#include "av1/common/entropymv.h"
19
#include "av1/common/mvref_common.h"
20
#include "av1/common/pred_common.h"
21
#include "av1/common/reconinter.h"
22
#include "av1/common/reconintra.h"
23
#include "av1/common/seg_common.h"
24
#include "av1/common/warped_motion.h"
25
26
#include "av1/decoder/decodeframe.h"
27
#include "av1/decoder/decodemv.h"
28
29
#include "aom_dsp/aom_dsp_common.h"
30
#include "aom_ports/bitops.h"
31
32
#define ACCT_STR __func__
33
34
#define DEC_MISMATCH_DEBUG 0
35
36
14.3M
static PREDICTION_MODE read_intra_mode(aom_reader *r, aom_cdf_prob *cdf) {
37
14.3M
  return (PREDICTION_MODE)aom_read_symbol(r, cdf, INTRA_MODES, ACCT_STR);
38
14.3M
}
39
40
14.5M
static void read_cdef(AV1_COMMON *cm, aom_reader *r, MACROBLOCKD *const xd) {
41
14.5M
  const int skip_txfm = xd->mi[0]->skip_txfm;
42
14.5M
  if (cm->features.coded_lossless) return;
43
14.3M
  if (cm->features.allow_intrabc) {
44
1.62M
    assert(cm->cdef_info.cdef_bits == 0);
45
1.62M
    return;
46
1.62M
  }
47
48
  // At the start of a superblock, mark that we haven't yet read CDEF strengths
49
  // for any of the CDEF units contained in this superblock.
50
12.7M
  const int sb_mask = (cm->seq_params->mib_size - 1);
51
12.7M
  const int mi_row_in_sb = (xd->mi_row & sb_mask);
52
12.7M
  const int mi_col_in_sb = (xd->mi_col & sb_mask);
53
12.7M
  if (mi_row_in_sb == 0 && mi_col_in_sb == 0) {
54
965k
    xd->cdef_transmitted[0] = xd->cdef_transmitted[1] =
55
965k
        xd->cdef_transmitted[2] = xd->cdef_transmitted[3] = false;
56
965k
  }
57
58
  // CDEF unit size is 64x64 irrespective of the superblock size.
59
12.7M
  const int cdef_size = 1 << (6 - MI_SIZE_LOG2);
60
61
  // Find index of this CDEF unit in this superblock.
62
12.7M
  const int index_mask = cdef_size;
63
12.7M
  const int cdef_unit_row_in_sb = ((xd->mi_row & index_mask) != 0);
64
12.7M
  const int cdef_unit_col_in_sb = ((xd->mi_col & index_mask) != 0);
65
12.7M
  const int index = (cm->seq_params->sb_size == BLOCK_128X128)
66
12.7M
                        ? cdef_unit_col_in_sb + 2 * cdef_unit_row_in_sb
67
12.7M
                        : 0;
68
69
  // Read CDEF strength from the first non-skip coding block in this CDEF unit.
70
12.7M
  if (!xd->cdef_transmitted[index] && !skip_txfm) {
71
    // CDEF strength for this CDEF unit needs to be read into the MB_MODE_INFO
72
    // of the 1st block in this CDEF unit.
73
602k
    const int first_block_mask = ~(cdef_size - 1);
74
602k
    CommonModeInfoParams *const mi_params = &cm->mi_params;
75
602k
    const int grid_idx =
76
602k
        get_mi_grid_idx(mi_params, xd->mi_row & first_block_mask,
77
602k
                        xd->mi_col & first_block_mask);
78
602k
    MB_MODE_INFO *const mbmi = mi_params->mi_grid_base[grid_idx];
79
602k
    mbmi->cdef_strength =
80
602k
        aom_read_literal(r, cm->cdef_info.cdef_bits, ACCT_STR);
81
602k
    xd->cdef_transmitted[index] = true;
82
602k
  }
83
12.7M
}
84
85
static int read_delta_qindex(AV1_COMMON *cm, const MACROBLOCKD *xd,
86
4.16M
                             aom_reader *r, MB_MODE_INFO *const mbmi) {
87
4.16M
  int sign, abs, reduced_delta_qindex = 0;
88
4.16M
  BLOCK_SIZE bsize = mbmi->bsize;
89
4.16M
  const int b_col = xd->mi_col & (cm->seq_params->mib_size - 1);
90
4.16M
  const int b_row = xd->mi_row & (cm->seq_params->mib_size - 1);
91
4.16M
  const int read_delta_q_flag = (b_col == 0 && b_row == 0);
92
4.16M
  FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
93
94
4.16M
  if ((bsize != cm->seq_params->sb_size || mbmi->skip_txfm == 0) &&
95
4.10M
      read_delta_q_flag) {
96
350k
    abs = aom_read_symbol(r, ec_ctx->delta_q_cdf, DELTA_Q_PROBS + 1, ACCT_STR);
97
350k
    const int smallval = (abs < DELTA_Q_SMALL);
98
99
350k
    if (!smallval) {
100
53.4k
      const int rem_bits = aom_read_literal(r, 3, ACCT_STR) + 1;
101
53.4k
      const int thr = (1 << rem_bits) + 1;
102
53.4k
      abs = aom_read_literal(r, rem_bits, ACCT_STR) + thr;
103
53.4k
    }
104
105
350k
    if (abs) {
106
94.5k
      sign = aom_read_bit(r, ACCT_STR);
107
255k
    } else {
108
255k
      sign = 1;
109
255k
    }
110
111
350k
    reduced_delta_qindex = sign ? -abs : abs;
112
350k
  }
113
4.16M
  return reduced_delta_qindex;
114
4.16M
}
115
static int read_delta_lflevel(const AV1_COMMON *const cm, aom_reader *r,
116
                              aom_cdf_prob *const cdf,
117
                              const MB_MODE_INFO *const mbmi, int mi_col,
118
6.14M
                              int mi_row) {
119
6.14M
  int reduced_delta_lflevel = 0;
120
6.14M
  const BLOCK_SIZE bsize = mbmi->bsize;
121
6.14M
  const int b_col = mi_col & (cm->seq_params->mib_size - 1);
122
6.14M
  const int b_row = mi_row & (cm->seq_params->mib_size - 1);
123
6.14M
  const int read_delta_lf_flag = (b_col == 0 && b_row == 0);
124
125
6.14M
  if ((bsize != cm->seq_params->sb_size || mbmi->skip_txfm == 0) &&
126
5.99M
      read_delta_lf_flag) {
127
577k
    int abs = aom_read_symbol(r, cdf, DELTA_LF_PROBS + 1, ACCT_STR);
128
577k
    const int smallval = (abs < DELTA_LF_SMALL);
129
577k
    if (!smallval) {
130
44.7k
      const int rem_bits = aom_read_literal(r, 3, ACCT_STR) + 1;
131
44.7k
      const int thr = (1 << rem_bits) + 1;
132
44.7k
      abs = aom_read_literal(r, rem_bits, ACCT_STR) + thr;
133
44.7k
    }
134
577k
    const int sign = abs ? aom_read_bit(r, ACCT_STR) : 1;
135
577k
    reduced_delta_lflevel = sign ? -abs : abs;
136
577k
  }
137
6.14M
  return reduced_delta_lflevel;
138
6.14M
}
139
140
static UV_PREDICTION_MODE read_intra_mode_uv(FRAME_CONTEXT *ec_ctx,
141
                                             aom_reader *r,
142
                                             CFL_ALLOWED_TYPE cfl_allowed,
143
13.0M
                                             PREDICTION_MODE y_mode) {
144
13.0M
  const UV_PREDICTION_MODE uv_mode =
145
13.0M
      aom_read_symbol(r, ec_ctx->uv_mode_cdf[cfl_allowed][y_mode],
146
13.0M
                      UV_INTRA_MODES - !cfl_allowed, ACCT_STR);
147
13.0M
  return uv_mode;
148
13.0M
}
149
150
static uint8_t read_cfl_alphas(FRAME_CONTEXT *const ec_ctx, aom_reader *r,
151
3.12M
                               int8_t *signs_out) {
152
3.12M
  const int8_t joint_sign =
153
3.12M
      aom_read_symbol(r, ec_ctx->cfl_sign_cdf, CFL_JOINT_SIGNS, "cfl:signs");
154
3.12M
  uint8_t idx = 0;
155
  // Magnitudes are only coded for nonzero values
156
3.12M
  if (CFL_SIGN_U(joint_sign) != CFL_SIGN_ZERO) {
157
2.92M
    aom_cdf_prob *cdf_u = ec_ctx->cfl_alpha_cdf[CFL_CONTEXT_U(joint_sign)];
158
2.92M
    idx = (uint8_t)aom_read_symbol(r, cdf_u, CFL_ALPHABET_SIZE, "cfl:alpha_u")
159
2.92M
          << CFL_ALPHABET_SIZE_LOG2;
160
2.92M
  }
161
3.12M
  if (CFL_SIGN_V(joint_sign) != CFL_SIGN_ZERO) {
162
2.22M
    aom_cdf_prob *cdf_v = ec_ctx->cfl_alpha_cdf[CFL_CONTEXT_V(joint_sign)];
163
2.22M
    idx += (uint8_t)aom_read_symbol(r, cdf_v, CFL_ALPHABET_SIZE, "cfl:alpha_v");
164
2.22M
  }
165
3.12M
  *signs_out = joint_sign;
166
3.12M
  return idx;
167
3.12M
}
168
169
static INTERINTRA_MODE read_interintra_mode(MACROBLOCKD *xd, aom_reader *r,
170
2.62k
                                            int size_group) {
171
2.62k
  const INTERINTRA_MODE ii_mode = (INTERINTRA_MODE)aom_read_symbol(
172
2.62k
      r, xd->tile_ctx->interintra_mode_cdf[size_group], INTERINTRA_MODES,
173
2.62k
      ACCT_STR);
174
2.62k
  return ii_mode;
175
2.62k
}
176
177
static PREDICTION_MODE read_inter_mode(FRAME_CONTEXT *ec_ctx, aom_reader *r,
178
25.1k
                                       int16_t ctx) {
179
25.1k
  int16_t mode_ctx = ctx & NEWMV_CTX_MASK;
180
25.1k
  int is_newmv, is_zeromv, is_refmv;
181
25.1k
  is_newmv = aom_read_symbol(r, ec_ctx->newmv_cdf[mode_ctx], 2, ACCT_STR) == 0;
182
25.1k
  if (is_newmv) return NEWMV;
183
184
13.2k
  mode_ctx = (ctx >> GLOBALMV_OFFSET) & GLOBALMV_CTX_MASK;
185
13.2k
  is_zeromv =
186
13.2k
      aom_read_symbol(r, ec_ctx->zeromv_cdf[mode_ctx], 2, ACCT_STR) == 0;
187
13.2k
  if (is_zeromv) return GLOBALMV;
188
189
12.3k
  mode_ctx = (ctx >> REFMV_OFFSET) & REFMV_CTX_MASK;
190
12.3k
  is_refmv = aom_read_symbol(r, ec_ctx->refmv_cdf[mode_ctx], 2, ACCT_STR) == 0;
191
12.3k
  if (is_refmv)
192
9.63k
    return NEARESTMV;
193
2.72k
  else
194
2.72k
    return NEARMV;
195
12.3k
}
196
197
static void read_drl_idx(FRAME_CONTEXT *ec_ctx, DecoderCodingBlock *dcb,
198
23.1k
                         MB_MODE_INFO *mbmi, aom_reader *r) {
199
23.1k
  MACROBLOCKD *const xd = &dcb->xd;
200
23.1k
  uint8_t ref_frame_type = av1_ref_frame_type(mbmi->ref_frame);
201
23.1k
  mbmi->ref_mv_idx = 0;
202
23.1k
  if (mbmi->mode == NEWMV || mbmi->mode == NEW_NEWMV) {
203
36.7k
    for (int idx = 0; idx < 2; ++idx) {
204
27.0k
      if (dcb->ref_mv_count[ref_frame_type] > idx + 1) {
205
11.0k
        uint8_t drl_ctx = av1_drl_ctx(xd->weight[ref_frame_type], idx);
206
11.0k
        int drl_idx = aom_read_symbol(r, ec_ctx->drl_cdf[drl_ctx], 2, ACCT_STR);
207
11.0k
        mbmi->ref_mv_idx = idx + drl_idx;
208
11.0k
        if (!drl_idx) return;
209
11.0k
      }
210
27.0k
    }
211
16.6k
  }
212
16.1k
  if (have_nearmv_in_inter_mode(mbmi->mode)) {
213
    // Offset the NEARESTMV mode.
214
    // TODO(jingning): Unify the two syntax decoding loops after the NEARESTMV
215
    // mode is factored in.
216
18.0k
    for (int idx = 1; idx < 3; ++idx) {
217
12.2k
      if (dcb->ref_mv_count[ref_frame_type] > idx + 1) {
218
1.20k
        uint8_t drl_ctx = av1_drl_ctx(xd->weight[ref_frame_type], idx);
219
1.20k
        int drl_idx = aom_read_symbol(r, ec_ctx->drl_cdf[drl_ctx], 2, ACCT_STR);
220
1.20k
        mbmi->ref_mv_idx = idx + drl_idx - 1;
221
1.20k
        if (!drl_idx) return;
222
1.20k
      }
223
12.2k
    }
224
6.47k
  }
225
16.1k
}
226
227
static MOTION_MODE read_motion_mode(AV1_COMMON *cm, MACROBLOCKD *xd,
228
54.6k
                                    MB_MODE_INFO *mbmi, aom_reader *r) {
229
54.6k
  if (cm->features.switchable_motion_mode == 0) return SIMPLE_TRANSLATION;
230
35.0k
  if (mbmi->skip_mode) return SIMPLE_TRANSLATION;
231
232
35.0k
  const MOTION_MODE last_motion_mode_allowed = motion_mode_allowed(
233
35.0k
      xd->global_motion, xd, mbmi, cm->features.allow_warped_motion);
234
35.0k
  int motion_mode;
235
236
35.0k
  if (last_motion_mode_allowed == SIMPLE_TRANSLATION) return SIMPLE_TRANSLATION;
237
238
8.32k
  if (last_motion_mode_allowed == OBMC_CAUSAL) {
239
6.20k
    motion_mode =
240
6.20k
        aom_read_symbol(r, xd->tile_ctx->obmc_cdf[mbmi->bsize], 2, ACCT_STR);
241
6.20k
    return (MOTION_MODE)(SIMPLE_TRANSLATION + motion_mode);
242
6.20k
  } else {
243
2.12k
    motion_mode = aom_read_symbol(r, xd->tile_ctx->motion_mode_cdf[mbmi->bsize],
244
2.12k
                                  MOTION_MODES, ACCT_STR);
245
2.12k
    return (MOTION_MODE)(SIMPLE_TRANSLATION + motion_mode);
246
2.12k
  }
247
8.32k
}
248
249
static PREDICTION_MODE read_inter_compound_mode(MACROBLOCKD *xd, aom_reader *r,
250
18.8k
                                                int16_t ctx) {
251
18.8k
  const int mode =
252
18.8k
      aom_read_symbol(r, xd->tile_ctx->inter_compound_mode_cdf[ctx],
253
18.8k
                      INTER_COMPOUND_MODES, ACCT_STR);
254
18.8k
  assert(is_inter_compound_mode(NEAREST_NEARESTMV + mode));
255
18.8k
  return NEAREST_NEARESTMV + mode;
256
18.8k
}
257
258
4.29M
int av1_neg_deinterleave(int diff, int ref, int max) {
259
4.29M
  if (!ref) return diff;
260
3.50M
  if (ref >= (max - 1)) return max - diff - 1;
261
3.04M
  if (2 * ref < max) {
262
1.77M
    if (diff <= 2 * ref) {
263
1.47M
      if (diff & 1)
264
210k
        return ref + ((diff + 1) >> 1);
265
1.26M
      else
266
1.26M
        return ref - (diff >> 1);
267
1.47M
    }
268
293k
    return diff;
269
1.77M
  } else {
270
1.27M
    if (diff <= 2 * (max - ref - 1)) {
271
1.08M
      if (diff & 1)
272
169k
        return ref + ((diff + 1) >> 1);
273
914k
      else
274
914k
        return ref - (diff >> 1);
275
1.08M
    }
276
186k
    return max - (diff + 1);
277
1.27M
  }
278
3.04M
}
279
280
static int read_segment_id(AV1_COMMON *const cm, const MACROBLOCKD *const xd,
281
4.31M
                           aom_reader *r, int skip) {
282
4.31M
  int cdf_num;
283
4.31M
  const uint8_t pred = av1_get_spatial_seg_pred(cm, xd, &cdf_num, 0);
284
4.31M
  if (skip) return pred;
285
286
4.29M
  FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
287
4.29M
  struct segmentation *const seg = &cm->seg;
288
4.29M
  struct segmentation_probs *const segp = &ec_ctx->seg;
289
4.29M
  aom_cdf_prob *pred_cdf = segp->spatial_pred_seg_cdf[cdf_num];
290
4.29M
  const int coded_id = aom_read_symbol(r, pred_cdf, MAX_SEGMENTS, ACCT_STR);
291
4.29M
  const int segment_id =
292
4.29M
      av1_neg_deinterleave(coded_id, pred, seg->last_active_segid + 1);
293
294
4.29M
  if (segment_id < 0 || segment_id > seg->last_active_segid) {
295
275
    aom_internal_error(xd->error_info, AOM_CODEC_CORRUPT_FRAME,
296
275
                       "Corrupted segment_ids");
297
275
  }
298
4.29M
  return segment_id;
299
4.31M
}
300
301
static int dec_get_segment_id(const AV1_COMMON *cm, const uint8_t *segment_ids,
302
14.5k
                              int mi_offset, int x_mis, int y_mis) {
303
14.5k
  int segment_id = INT_MAX;
304
305
39.7k
  for (int y = 0; y < y_mis; y++)
306
81.6k
    for (int x = 0; x < x_mis; x++)
307
56.4k
      segment_id = AOMMIN(
308
14.5k
          segment_id, segment_ids[mi_offset + y * cm->mi_params.mi_cols + x]);
309
310
14.5k
  assert(segment_id >= 0 && segment_id < MAX_SEGMENTS);
311
14.5k
  return segment_id;
312
14.5k
}
313
314
static int read_intra_segment_id(AV1_COMMON *const cm,
315
                                 const MACROBLOCKD *const xd, BLOCK_SIZE bsize,
316
14.4M
                                 aom_reader *r, int skip) {
317
14.4M
  struct segmentation *const seg = &cm->seg;
318
14.4M
  if (!seg->enabled) return 0;  // Default for disabled segmentation
319
14.4M
  assert(seg->update_map && !seg->temporal_update);
320
321
4.31M
  const CommonModeInfoParams *const mi_params = &cm->mi_params;
322
4.31M
  const int mi_row = xd->mi_row;
323
4.31M
  const int mi_col = xd->mi_col;
324
4.31M
  const int mi_stride = cm->mi_params.mi_cols;
325
4.31M
  const int mi_offset = mi_row * mi_stride + mi_col;
326
4.31M
  const int bw = mi_size_wide[bsize];
327
4.31M
  const int bh = mi_size_high[bsize];
328
4.31M
  const int x_mis = AOMMIN(mi_params->mi_cols - mi_col, bw);
329
4.31M
  const int y_mis = AOMMIN(mi_params->mi_rows - mi_row, bh);
330
4.31M
  const int segment_id = read_segment_id(cm, xd, r, skip);
331
4.31M
  set_segment_id(cm->cur_frame->seg_map, mi_offset, x_mis, y_mis, mi_stride,
332
4.31M
                 segment_id);
333
4.31M
  return segment_id;
334
4.31M
}
335
336
static void copy_segment_id(const CommonModeInfoParams *const mi_params,
337
                            const uint8_t *last_segment_ids,
338
                            uint8_t *current_segment_ids, int mi_offset,
339
10.5k
                            int x_mis, int y_mis) {
340
10.5k
  const int stride = mi_params->mi_cols;
341
10.5k
  if (last_segment_ids) {
342
7.64k
    assert(last_segment_ids != current_segment_ids);
343
22.5k
    for (int y = 0; y < y_mis; y++) {
344
14.8k
      memcpy(&current_segment_ids[mi_offset + y * stride],
345
14.8k
             &last_segment_ids[mi_offset + y * stride],
346
14.8k
             sizeof(current_segment_ids[0]) * x_mis);
347
14.8k
    }
348
7.64k
  } else {
349
9.45k
    for (int y = 0; y < y_mis; y++) {
350
6.51k
      memset(&current_segment_ids[mi_offset + y * stride], 0,
351
6.51k
             sizeof(current_segment_ids[0]) * x_mis);
352
6.51k
    }
353
2.94k
  }
354
10.5k
}
355
356
static int get_predicted_segment_id(AV1_COMMON *const cm, int mi_offset,
357
17.6k
                                    int x_mis, int y_mis) {
358
17.6k
  return cm->last_frame_seg_map ? dec_get_segment_id(cm, cm->last_frame_seg_map,
359
14.5k
                                                     mi_offset, x_mis, y_mis)
360
17.6k
                                : 0;
361
17.6k
}
362
363
static int read_inter_segment_id(AV1_COMMON *const cm, MACROBLOCKD *const xd,
364
108k
                                 int preskip, aom_reader *r) {
365
108k
  struct segmentation *const seg = &cm->seg;
366
108k
  const CommonModeInfoParams *const mi_params = &cm->mi_params;
367
108k
  MB_MODE_INFO *const mbmi = xd->mi[0];
368
108k
  const int mi_row = xd->mi_row;
369
108k
  const int mi_col = xd->mi_col;
370
108k
  const int mi_offset = mi_row * mi_params->mi_cols + mi_col;
371
108k
  const int bw = mi_size_wide[mbmi->bsize];
372
108k
  const int bh = mi_size_high[mbmi->bsize];
373
374
  // TODO(slavarnway): move x_mis, y_mis into xd ?????
375
108k
  const int x_mis = AOMMIN(mi_params->mi_cols - mi_col, bw);
376
108k
  const int y_mis = AOMMIN(mi_params->mi_rows - mi_row, bh);
377
378
108k
  if (!seg->enabled) return 0;  // Default for disabled segmentation
379
380
26.1k
  if (!seg->update_map) {
381
10.5k
    copy_segment_id(mi_params, cm->last_frame_seg_map, cm->cur_frame->seg_map,
382
10.5k
                    mi_offset, x_mis, y_mis);
383
10.5k
    return get_predicted_segment_id(cm, mi_offset, x_mis, y_mis);
384
10.5k
  }
385
386
15.5k
  uint8_t segment_id;
387
15.5k
  const int mi_stride = cm->mi_params.mi_cols;
388
15.5k
  if (preskip) {
389
14.9k
    if (!seg->segid_preskip) return 0;
390
14.9k
  } else {
391
673
    if (mbmi->skip_txfm) {
392
209
      if (seg->temporal_update) {
393
146
        mbmi->seg_id_predicted = 0;
394
146
      }
395
209
      segment_id = read_segment_id(cm, xd, r, 1);
396
209
      set_segment_id(cm->cur_frame->seg_map, mi_offset, x_mis, y_mis, mi_stride,
397
209
                     segment_id);
398
209
      return segment_id;
399
209
    }
400
673
  }
401
402
14.6k
  if (seg->temporal_update) {
403
10.7k
    const uint8_t ctx = av1_get_pred_context_seg_id(xd);
404
10.7k
    FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
405
10.7k
    struct segmentation_probs *const segp = &ec_ctx->seg;
406
10.7k
    aom_cdf_prob *pred_cdf = segp->pred_cdf[ctx];
407
10.7k
    mbmi->seg_id_predicted = aom_read_symbol(r, pred_cdf, 2, ACCT_STR);
408
10.7k
    if (mbmi->seg_id_predicted) {
409
7.09k
      segment_id = get_predicted_segment_id(cm, mi_offset, x_mis, y_mis);
410
7.09k
    } else {
411
3.69k
      segment_id = read_segment_id(cm, xd, r, 0);
412
3.69k
    }
413
10.7k
  } else {
414
3.90k
    segment_id = read_segment_id(cm, xd, r, 0);
415
3.90k
  }
416
14.6k
  set_segment_id(cm->cur_frame->seg_map, mi_offset, x_mis, y_mis, mi_stride,
417
14.6k
                 segment_id);
418
14.6k
  return segment_id;
419
15.5k
}
420
421
static int read_skip_mode(AV1_COMMON *cm, const MACROBLOCKD *xd, int segment_id,
422
62.1k
                          aom_reader *r) {
423
62.1k
  if (!cm->current_frame.skip_mode_info.skip_mode_flag) return 0;
424
425
5.95k
  if (segfeature_active(&cm->seg, segment_id, SEG_LVL_SKIP)) {
426
76
    return 0;
427
76
  }
428
429
5.87k
  if (!is_comp_ref_allowed(xd->mi[0]->bsize)) return 0;
430
431
4.14k
  if (segfeature_active(&cm->seg, segment_id, SEG_LVL_REF_FRAME) ||
432
4.07k
      segfeature_active(&cm->seg, segment_id, SEG_LVL_GLOBALMV)) {
433
    // These features imply single-reference mode, while skip mode implies
434
    // compound reference. Hence, the two are mutually exclusive.
435
    // In other words, skip_mode is implicitly 0 here.
436
181
    return 0;
437
181
  }
438
439
3.96k
  const int ctx = av1_get_skip_mode_context(xd);
440
3.96k
  FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
441
3.96k
  const int skip_mode =
442
3.96k
      aom_read_symbol(r, ec_ctx->skip_mode_cdfs[ctx], 2, ACCT_STR);
443
3.96k
  return skip_mode;
444
4.14k
}
445
446
static int read_skip_txfm(AV1_COMMON *cm, const MACROBLOCKD *xd, int segment_id,
447
14.5M
                          aom_reader *r) {
448
14.5M
  if (segfeature_active(&cm->seg, segment_id, SEG_LVL_SKIP)) {
449
2.74M
    return 1;
450
11.7M
  } else {
451
11.7M
    const int ctx = av1_get_skip_txfm_context(xd);
452
11.7M
    FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
453
11.7M
    const int skip_txfm =
454
11.7M
        aom_read_symbol(r, ec_ctx->skip_txfm_cdfs[ctx], 2, ACCT_STR);
455
11.7M
    return skip_txfm;
456
11.7M
  }
457
14.5M
}
458
459
// Merge the sorted list of cached colors(cached_colors[0...n_cached_colors-1])
460
// and the sorted list of transmitted colors(colors[n_cached_colors...n-1]) into
461
// one single sorted list(colors[...]).
462
static void merge_colors(uint16_t *colors, uint16_t *cached_colors,
463
303k
                         int n_colors, int n_cached_colors) {
464
303k
  if (n_cached_colors == 0) return;
465
139k
  int cache_idx = 0, trans_idx = n_cached_colors;
466
870k
  for (int i = 0; i < n_colors; ++i) {
467
730k
    if (cache_idx < n_cached_colors &&
468
519k
        (trans_idx >= n_colors ||
469
406k
         cached_colors[cache_idx] <= colors[trans_idx])) {
470
296k
      colors[i] = cached_colors[cache_idx++];
471
433k
    } else {
472
433k
      assert(trans_idx < n_colors);
473
433k
      colors[i] = colors[trans_idx++];
474
433k
    }
475
730k
  }
476
139k
}
477
478
static void read_palette_colors_y(MACROBLOCKD *const xd, int bit_depth,
479
248k
                                  PALETTE_MODE_INFO *const pmi, aom_reader *r) {
480
248k
  uint16_t color_cache[2 * PALETTE_MAX_SIZE];
481
248k
  uint16_t cached_colors[PALETTE_MAX_SIZE];
482
248k
  const int n_cache = av1_get_palette_cache(xd, 0, color_cache);
483
248k
  const int n = pmi->palette_size[0];
484
248k
  int idx = 0;
485
1.07M
  for (int i = 0; i < n_cache && idx < n; ++i)
486
831k
    if (aom_read_bit(r, ACCT_STR)) cached_colors[idx++] = color_cache[i];
487
248k
  if (idx < n) {
488
188k
    const int n_cached_colors = idx;
489
188k
    pmi->palette_colors[idx++] = aom_read_literal(r, bit_depth, ACCT_STR);
490
188k
    if (idx < n) {
491
159k
      const int min_bits = bit_depth - 3;
492
159k
      int bits = min_bits + aom_read_literal(r, 2, ACCT_STR);
493
159k
      int range = (1 << bit_depth) - pmi->palette_colors[idx - 1] - 1;
494
654k
      for (; idx < n; ++idx) {
495
495k
        assert(range >= 0);
496
495k
        const int delta = aom_read_literal(r, bits, ACCT_STR) + 1;
497
495k
        pmi->palette_colors[idx] = clamp(pmi->palette_colors[idx - 1] + delta,
498
495k
                                         0, (1 << bit_depth) - 1);
499
495k
        range -= (pmi->palette_colors[idx] - pmi->palette_colors[idx - 1]);
500
495k
        bits = AOMMIN(bits, aom_ceil_log2(range));
501
495k
      }
502
159k
    }
503
188k
    merge_colors(pmi->palette_colors, cached_colors, n, n_cached_colors);
504
188k
  } else {
505
60.1k
    memcpy(pmi->palette_colors, cached_colors, n * sizeof(cached_colors[0]));
506
60.1k
  }
507
248k
}
508
509
static void read_palette_colors_uv(MACROBLOCKD *const xd, int bit_depth,
510
                                   PALETTE_MODE_INFO *const pmi,
511
126k
                                   aom_reader *r) {
512
126k
  const int n = pmi->palette_size[1];
513
  // U channel colors.
514
126k
  uint16_t color_cache[2 * PALETTE_MAX_SIZE];
515
126k
  uint16_t cached_colors[PALETTE_MAX_SIZE];
516
126k
  const int n_cache = av1_get_palette_cache(xd, 1, color_cache);
517
126k
  int idx = 0;
518
255k
  for (int i = 0; i < n_cache && idx < n; ++i)
519
128k
    if (aom_read_bit(r, ACCT_STR)) cached_colors[idx++] = color_cache[i];
520
126k
  if (idx < n) {
521
114k
    const int n_cached_colors = idx;
522
114k
    idx += PALETTE_MAX_SIZE;
523
114k
    pmi->palette_colors[idx++] = aom_read_literal(r, bit_depth, ACCT_STR);
524
114k
    if (idx < PALETTE_MAX_SIZE + n) {
525
108k
      const int min_bits = bit_depth - 3;
526
108k
      int bits = min_bits + aom_read_literal(r, 2, ACCT_STR);
527
108k
      int range = (1 << bit_depth) - pmi->palette_colors[idx - 1];
528
428k
      for (; idx < PALETTE_MAX_SIZE + n; ++idx) {
529
320k
        assert(range >= 0);
530
320k
        const int delta = aom_read_literal(r, bits, ACCT_STR);
531
320k
        pmi->palette_colors[idx] = clamp(pmi->palette_colors[idx - 1] + delta,
532
320k
                                         0, (1 << bit_depth) - 1);
533
320k
        range -= (pmi->palette_colors[idx] - pmi->palette_colors[idx - 1]);
534
320k
        bits = AOMMIN(bits, aom_ceil_log2(range));
535
320k
      }
536
108k
    }
537
114k
    merge_colors(pmi->palette_colors + PALETTE_MAX_SIZE, cached_colors, n,
538
114k
                 n_cached_colors);
539
114k
  } else {
540
11.7k
    memcpy(pmi->palette_colors + PALETTE_MAX_SIZE, cached_colors,
541
11.7k
           n * sizeof(cached_colors[0]));
542
11.7k
  }
543
544
  // V channel colors.
545
126k
  if (aom_read_bit(r, ACCT_STR)) {  // Delta encoding.
546
60.5k
    const int min_bits_v = bit_depth - 4;
547
60.5k
    const int max_val = 1 << bit_depth;
548
60.5k
    int bits = min_bits_v + aom_read_literal(r, 2, ACCT_STR);
549
60.5k
    pmi->palette_colors[2 * PALETTE_MAX_SIZE] =
550
60.5k
        aom_read_literal(r, bit_depth, ACCT_STR);
551
247k
    for (int i = 1; i < n; ++i) {
552
187k
      int delta = aom_read_literal(r, bits, ACCT_STR);
553
187k
      if (delta && aom_read_bit(r, ACCT_STR)) delta = -delta;
554
187k
      int val = (int)pmi->palette_colors[2 * PALETTE_MAX_SIZE + i - 1] + delta;
555
187k
      if (val < 0) val += max_val;
556
187k
      if (val >= max_val) val -= max_val;
557
187k
      pmi->palette_colors[2 * PALETTE_MAX_SIZE + i] = val;
558
187k
    }
559
66.1k
  } else {
560
321k
    for (int i = 0; i < n; ++i) {
561
255k
      pmi->palette_colors[2 * PALETTE_MAX_SIZE + i] =
562
255k
          aom_read_literal(r, bit_depth, ACCT_STR);
563
255k
    }
564
66.1k
  }
565
126k
}
566
567
static void read_palette_mode_info(AV1_COMMON *const cm, MACROBLOCKD *const xd,
568
5.54M
                                   aom_reader *r) {
569
5.54M
  const int num_planes = av1_num_planes(cm);
570
5.54M
  MB_MODE_INFO *const mbmi = xd->mi[0];
571
5.54M
  const BLOCK_SIZE bsize = mbmi->bsize;
572
5.54M
  assert(av1_allow_palette(cm->features.allow_screen_content_tools, bsize));
573
5.54M
  PALETTE_MODE_INFO *const pmi = &mbmi->palette_mode_info;
574
5.54M
  const int bsize_ctx = av1_get_palette_bsize_ctx(bsize);
575
576
5.54M
  if (mbmi->mode == DC_PRED) {
577
2.13M
    const int palette_mode_ctx = av1_get_palette_mode_ctx(xd);
578
2.13M
    const int modev = aom_read_symbol(
579
2.13M
        r, xd->tile_ctx->palette_y_mode_cdf[bsize_ctx][palette_mode_ctx], 2,
580
2.13M
        ACCT_STR);
581
2.13M
    if (modev) {
582
248k
      pmi->palette_size[0] =
583
248k
          aom_read_symbol(r, xd->tile_ctx->palette_y_size_cdf[bsize_ctx],
584
248k
                          PALETTE_SIZES, ACCT_STR) +
585
248k
          2;
586
248k
      read_palette_colors_y(xd, cm->seq_params->bit_depth, pmi, r);
587
248k
    }
588
2.13M
  }
589
5.54M
  if (num_planes > 1 && mbmi->uv_mode == UV_DC_PRED && xd->is_chroma_ref) {
590
1.39M
    const int palette_uv_mode_ctx = (pmi->palette_size[0] > 0);
591
1.39M
    const int modev = aom_read_symbol(
592
1.39M
        r, xd->tile_ctx->palette_uv_mode_cdf[palette_uv_mode_ctx], 2, ACCT_STR);
593
1.39M
    if (modev) {
594
126k
      pmi->palette_size[1] =
595
126k
          aom_read_symbol(r, xd->tile_ctx->palette_uv_size_cdf[bsize_ctx],
596
126k
                          PALETTE_SIZES, ACCT_STR) +
597
126k
          2;
598
126k
      read_palette_colors_uv(xd, cm->seq_params->bit_depth, pmi, r);
599
126k
    }
600
1.39M
  }
601
5.54M
}
602
603
5.82M
static int read_angle_delta(aom_reader *r, aom_cdf_prob *cdf) {
604
5.82M
  const int sym = aom_read_symbol(r, cdf, 2 * MAX_ANGLE_DELTA + 1, ACCT_STR);
605
5.82M
  return sym - MAX_ANGLE_DELTA;
606
5.82M
}
607
608
static void read_filter_intra_mode_info(const AV1_COMMON *const cm,
609
14.3M
                                        MACROBLOCKD *const xd, aom_reader *r) {
610
14.3M
  MB_MODE_INFO *const mbmi = xd->mi[0];
611
14.3M
  FILTER_INTRA_MODE_INFO *filter_intra_mode_info =
612
14.3M
      &mbmi->filter_intra_mode_info;
613
614
14.3M
  if (av1_filter_intra_allowed(cm, mbmi)) {
615
3.60M
    filter_intra_mode_info->use_filter_intra = aom_read_symbol(
616
3.60M
        r, xd->tile_ctx->filter_intra_cdfs[mbmi->bsize], 2, ACCT_STR);
617
3.60M
    if (filter_intra_mode_info->use_filter_intra) {
618
2.37M
      filter_intra_mode_info->filter_intra_mode = aom_read_symbol(
619
2.37M
          r, xd->tile_ctx->filter_intra_mode_cdf, FILTER_INTRA_MODES, ACCT_STR);
620
2.37M
    }
621
10.7M
  } else {
622
10.7M
    filter_intra_mode_info->use_filter_intra = 0;
623
10.7M
  }
624
14.3M
}
625
626
void av1_read_tx_type(const AV1_COMMON *const cm, MACROBLOCKD *xd, int blk_row,
627
6.69M
                      int blk_col, TX_SIZE tx_size, aom_reader *r) {
628
6.69M
  MB_MODE_INFO *mbmi = xd->mi[0];
629
6.69M
  uint8_t *tx_type =
630
6.69M
      &xd->tx_type_map[blk_row * xd->tx_type_map_stride + blk_col];
631
6.69M
  *tx_type = DCT_DCT;
632
633
  // No need to read transform type if block is skipped.
634
6.69M
  if (mbmi->skip_txfm ||
635
6.69M
      segfeature_active(&cm->seg, mbmi->segment_id, SEG_LVL_SKIP))
636
0
    return;
637
638
  // No need to read transform type for lossless mode(qindex==0).
639
6.69M
  const int qindex = xd->qindex[mbmi->segment_id];
640
6.69M
  if (qindex == 0) return;
641
642
5.30M
  const int inter_block = is_inter_block(mbmi);
643
5.30M
  if (get_ext_tx_types(tx_size, inter_block, cm->features.reduced_tx_set_used) >
644
5.30M
      1) {
645
4.55M
    const TxSetType tx_set_type = av1_get_ext_tx_set_type(
646
4.55M
        tx_size, inter_block, cm->features.reduced_tx_set_used);
647
4.55M
    const int eset =
648
4.55M
        get_ext_tx_set(tx_size, inter_block, cm->features.reduced_tx_set_used);
649
    // eset == 0 should correspond to a set with only DCT_DCT and
650
    // there is no need to read the tx_type
651
4.55M
    assert(eset != 0);
652
653
4.55M
    const TX_SIZE square_tx_size = txsize_sqr_map[tx_size];
654
4.55M
    FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
655
4.55M
    if (inter_block) {
656
63.1k
      *tx_type = av1_ext_tx_inv[tx_set_type][aom_read_symbol(
657
63.1k
          r, ec_ctx->inter_ext_tx_cdf[eset][square_tx_size],
658
63.1k
          av1_num_ext_tx_set[tx_set_type], ACCT_STR)];
659
4.49M
    } else {
660
4.49M
      const PREDICTION_MODE intra_mode =
661
4.49M
          mbmi->filter_intra_mode_info.use_filter_intra
662
4.49M
              ? fimode_to_intradir[mbmi->filter_intra_mode_info
663
863k
                                       .filter_intra_mode]
664
4.49M
              : mbmi->mode;
665
4.49M
      *tx_type = av1_ext_tx_inv[tx_set_type][aom_read_symbol(
666
4.49M
          r, ec_ctx->intra_ext_tx_cdf[eset][square_tx_size][intra_mode],
667
4.49M
          av1_num_ext_tx_set[tx_set_type], ACCT_STR)];
668
4.49M
    }
669
4.55M
  }
670
5.30M
}
671
672
static inline void read_mv(aom_reader *r, MV *mv, const MV *ref,
673
                           nmv_context *ctx, MvSubpelPrecision precision);
674
675
static inline int is_mv_valid(const MV *mv);
676
677
static inline int assign_dv(AV1_COMMON *cm, MACROBLOCKD *xd, int_mv *mv,
678
                            const int_mv *ref_mv, int mi_row, int mi_col,
679
121k
                            BLOCK_SIZE bsize, aom_reader *r) {
680
121k
  FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
681
121k
  read_mv(r, &mv->as_mv, &ref_mv->as_mv, &ec_ctx->ndvc, MV_SUBPEL_NONE);
682
  // DV should not have sub-pel.
683
121k
  assert((mv->as_mv.col & 7) == 0);
684
121k
  assert((mv->as_mv.row & 7) == 0);
685
121k
  mv->as_mv.col = (mv->as_mv.col >> 3) * 8;
686
121k
  mv->as_mv.row = (mv->as_mv.row >> 3) * 8;
687
121k
  int valid = is_mv_valid(&mv->as_mv) &&
688
121k
              av1_is_dv_valid(mv->as_mv, cm, xd, mi_row, mi_col, bsize,
689
121k
                              cm->seq_params->mib_size_log2);
690
121k
  return valid;
691
121k
}
692
693
static void read_intrabc_info(AV1_COMMON *const cm, DecoderCodingBlock *dcb,
694
1.71M
                              aom_reader *r) {
695
1.71M
  MACROBLOCKD *const xd = &dcb->xd;
696
1.71M
  MB_MODE_INFO *const mbmi = xd->mi[0];
697
1.71M
  FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
698
1.71M
  mbmi->use_intrabc = aom_read_symbol(r, ec_ctx->intrabc_cdf, 2, ACCT_STR);
699
1.71M
  if (mbmi->use_intrabc) {
700
121k
    BLOCK_SIZE bsize = mbmi->bsize;
701
121k
    mbmi->mode = DC_PRED;
702
121k
    mbmi->uv_mode = UV_DC_PRED;
703
121k
    mbmi->interp_filters = av1_broadcast_interp_filter(BILINEAR);
704
121k
    mbmi->motion_mode = SIMPLE_TRANSLATION;
705
706
121k
    int16_t inter_mode_ctx[MODE_CTX_REF_FRAMES];
707
121k
    int_mv ref_mvs[INTRA_FRAME + 1][MAX_MV_REF_CANDIDATES];
708
709
121k
    av1_find_mv_refs(cm, xd, mbmi, INTRA_FRAME, dcb->ref_mv_count,
710
121k
                     xd->ref_mv_stack, xd->weight, ref_mvs, /*global_mvs=*/NULL,
711
121k
                     inter_mode_ctx);
712
713
121k
    int_mv nearestmv, nearmv;
714
715
121k
    av1_find_best_ref_mvs(0, ref_mvs[INTRA_FRAME], &nearestmv, &nearmv, 0);
716
121k
    int_mv dv_ref = nearestmv.as_int == 0 ? nearmv : nearestmv;
717
121k
    if (dv_ref.as_int == 0)
718
15.8k
      av1_find_ref_dv(&dv_ref, &xd->tile, cm->seq_params->mib_size, xd->mi_row);
719
    // Ref DV should not have sub-pel.
720
121k
    int valid_dv = (dv_ref.as_mv.col & 7) == 0 && (dv_ref.as_mv.row & 7) == 0;
721
121k
    dv_ref.as_mv.col = (dv_ref.as_mv.col >> 3) * 8;
722
121k
    dv_ref.as_mv.row = (dv_ref.as_mv.row >> 3) * 8;
723
121k
    valid_dv = valid_dv && assign_dv(cm, xd, &mbmi->mv[0], &dv_ref, xd->mi_row,
724
121k
                                     xd->mi_col, bsize, r);
725
121k
    if (!valid_dv) {
726
      // Intra bc motion vectors are not valid - signal corrupt frame
727
1.37k
      aom_internal_error(xd->error_info, AOM_CODEC_CORRUPT_FRAME,
728
1.37k
                         "Invalid intrabc dv");
729
1.37k
    }
730
121k
  }
731
1.71M
}
732
733
// If delta q is present, reads delta_q index.
734
// Also reads delta_q loop filter levels, if present.
735
static void read_delta_q_params(AV1_COMMON *const cm, MACROBLOCKD *const xd,
736
14.5M
                                aom_reader *r) {
737
14.5M
  DeltaQInfo *const delta_q_info = &cm->delta_q_info;
738
739
14.5M
  if (delta_q_info->delta_q_present_flag) {
740
4.16M
    MB_MODE_INFO *const mbmi = xd->mi[0];
741
4.16M
    xd->current_base_qindex +=
742
4.16M
        read_delta_qindex(cm, xd, r, mbmi) * delta_q_info->delta_q_res;
743
    /* Normative: Clamp to [1,MAXQ] to not interfere with lossless mode */
744
4.16M
    xd->current_base_qindex = clamp(xd->current_base_qindex, 1, MAXQ);
745
4.16M
    FRAME_CONTEXT *const ec_ctx = xd->tile_ctx;
746
4.16M
    if (delta_q_info->delta_lf_present_flag) {
747
2.02M
      const int mi_row = xd->mi_row;
748
2.02M
      const int mi_col = xd->mi_col;
749
2.02M
      if (delta_q_info->delta_lf_multi) {
750
1.37M
        const int frame_lf_count =
751
1.37M
            av1_num_planes(cm) > 1 ? FRAME_LF_COUNT : FRAME_LF_COUNT - 2;
752
6.87M
        for (int lf_id = 0; lf_id < frame_lf_count; ++lf_id) {
753
5.49M
          const int tmp_lvl =
754
5.49M
              xd->delta_lf[lf_id] +
755
5.49M
              read_delta_lflevel(cm, r, ec_ctx->delta_lf_multi_cdf[lf_id], mbmi,
756
5.49M
                                 mi_col, mi_row) *
757
5.49M
                  delta_q_info->delta_lf_res;
758
5.49M
          mbmi->delta_lf[lf_id] = xd->delta_lf[lf_id] =
759
5.49M
              clamp(tmp_lvl, -MAX_LOOP_FILTER, MAX_LOOP_FILTER);
760
5.49M
        }
761
1.37M
      } else {
762
649k
        const int tmp_lvl = xd->delta_lf_from_base +
763
649k
                            read_delta_lflevel(cm, r, ec_ctx->delta_lf_cdf,
764
649k
                                               mbmi, mi_col, mi_row) *
765
649k
                                delta_q_info->delta_lf_res;
766
649k
        mbmi->delta_lf_from_base = xd->delta_lf_from_base =
767
649k
            clamp(tmp_lvl, -MAX_LOOP_FILTER, MAX_LOOP_FILTER);
768
649k
      }
769
2.02M
    }
770
4.16M
  }
771
14.5M
}
772
773
static void read_intra_frame_mode_info(AV1_COMMON *const cm,
774
14.4M
                                       DecoderCodingBlock *dcb, aom_reader *r) {
775
14.4M
  MACROBLOCKD *const xd = &dcb->xd;
776
14.4M
  MB_MODE_INFO *const mbmi = xd->mi[0];
777
14.4M
  const MB_MODE_INFO *above_mi = xd->above_mbmi;
778
14.4M
  const MB_MODE_INFO *left_mi = xd->left_mbmi;
779
14.4M
  const BLOCK_SIZE bsize = mbmi->bsize;
780
14.4M
  struct segmentation *const seg = &cm->seg;
781
782
14.4M
  FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
783
784
14.4M
  if (seg->segid_preskip)
785
4.26M
    mbmi->segment_id = read_intra_segment_id(cm, xd, bsize, r, 0);
786
787
14.4M
  mbmi->skip_txfm = read_skip_txfm(cm, xd, mbmi->segment_id, r);
788
789
14.4M
  if (!seg->segid_preskip)
790
10.1M
    mbmi->segment_id = read_intra_segment_id(cm, xd, bsize, r, mbmi->skip_txfm);
791
792
14.4M
  read_cdef(cm, r, xd);
793
794
14.4M
  read_delta_q_params(cm, xd, r);
795
796
14.4M
  mbmi->current_qindex = xd->current_base_qindex;
797
798
14.4M
  mbmi->ref_frame[0] = INTRA_FRAME;
799
14.4M
  mbmi->ref_frame[1] = NONE_FRAME;
800
14.4M
  mbmi->palette_mode_info.palette_size[0] = 0;
801
14.4M
  mbmi->palette_mode_info.palette_size[1] = 0;
802
14.4M
  mbmi->filter_intra_mode_info.use_filter_intra = 0;
803
804
14.4M
  const int mi_row = xd->mi_row;
805
14.4M
  const int mi_col = xd->mi_col;
806
14.4M
  xd->above_txfm_context = cm->above_contexts.txfm[xd->tile.tile_row] + mi_col;
807
14.4M
  xd->left_txfm_context =
808
14.4M
      xd->left_txfm_context_buffer + (mi_row & MAX_MIB_MASK);
809
810
14.4M
  if (av1_allow_intrabc(cm)) {
811
1.71M
    read_intrabc_info(cm, dcb, r);
812
1.71M
    if (is_intrabc_block(mbmi)) return;
813
1.71M
  }
814
815
14.3M
  mbmi->mode = read_intra_mode(r, get_y_mode_cdf(ec_ctx, above_mi, left_mi));
816
817
14.3M
  const int use_angle_delta = av1_use_angle_delta(bsize);
818
14.3M
  mbmi->angle_delta[PLANE_TYPE_Y] =
819
14.3M
      (use_angle_delta && av1_is_directional_mode(mbmi->mode))
820
14.3M
          ? read_angle_delta(r, ec_ctx->angle_delta_cdf[mbmi->mode - V_PRED])
821
14.3M
          : 0;
822
823
14.3M
  if (!cm->seq_params->monochrome && xd->is_chroma_ref) {
824
13.0M
    mbmi->uv_mode =
825
13.0M
        read_intra_mode_uv(ec_ctx, r, is_cfl_allowed(xd), mbmi->mode);
826
13.0M
    if (mbmi->uv_mode == UV_CFL_PRED) {
827
3.12M
      mbmi->cfl_alpha_idx = read_cfl_alphas(ec_ctx, r, &mbmi->cfl_alpha_signs);
828
3.12M
    }
829
13.0M
    const PREDICTION_MODE intra_mode = get_uv_mode(mbmi->uv_mode);
830
13.0M
    mbmi->angle_delta[PLANE_TYPE_UV] =
831
13.0M
        (use_angle_delta && av1_is_directional_mode(intra_mode))
832
13.0M
            ? read_angle_delta(r, ec_ctx->angle_delta_cdf[intra_mode - V_PRED])
833
13.0M
            : 0;
834
13.0M
  } else {
835
    // Avoid decoding angle_info if there is no chroma prediction
836
1.29M
    mbmi->uv_mode = UV_DC_PRED;
837
1.29M
  }
838
14.3M
  xd->cfl.store_y = store_cfl_required(cm, xd);
839
840
14.3M
  if (av1_allow_palette(cm->features.allow_screen_content_tools, bsize))
841
5.53M
    read_palette_mode_info(cm, xd, r);
842
843
14.3M
  read_filter_intra_mode_info(cm, xd, r);
844
14.3M
}
845
846
static int read_mv_component(aom_reader *r, nmv_component *mvcomp,
847
192k
                             int use_subpel, int usehp) {
848
192k
  int mag, d, fr, hp;
849
192k
  const int sign = aom_read_symbol(r, mvcomp->sign_cdf, 2, ACCT_STR);
850
192k
  const int mv_class =
851
192k
      aom_read_symbol(r, mvcomp->classes_cdf, MV_CLASSES, ACCT_STR);
852
192k
  const int class0 = mv_class == MV_CLASS_0;
853
854
  // Integer part
855
192k
  if (class0) {
856
171k
    d = aom_read_symbol(r, mvcomp->class0_cdf, CLASS0_SIZE, ACCT_STR);
857
171k
    mag = 0;
858
171k
  } else {
859
21.4k
    const int n = mv_class + CLASS0_BITS - 1;  // number of bits
860
21.4k
    d = 0;
861
60.0k
    for (int i = 0; i < n; ++i)
862
38.5k
      d |= aom_read_symbol(r, mvcomp->bits_cdf[i], 2, ACCT_STR) << i;
863
21.4k
    mag = CLASS0_SIZE << (mv_class + 2);
864
21.4k
  }
865
866
192k
  if (use_subpel) {
867
    // Fractional part
868
23.9k
    fr = aom_read_symbol(r, class0 ? mvcomp->class0_fp_cdf[d] : mvcomp->fp_cdf,
869
23.9k
                         MV_FP_SIZE, ACCT_STR);
870
871
    // High precision part (if hp is not used, the default value of the hp is 1)
872
23.9k
    hp = usehp ? aom_read_symbol(
873
23.9k
                     r, class0 ? mvcomp->class0_hp_cdf : mvcomp->hp_cdf, 2,
874
23.9k
                     ACCT_STR)
875
23.9k
               : 1;
876
168k
  } else {
877
168k
    fr = 3;
878
168k
    hp = 1;
879
168k
  }
880
881
  // Result
882
192k
  mag += ((d << 3) | (fr << 1) | hp) + 1;
883
192k
  return sign ? -mag : mag;
884
192k
}
885
886
static inline void read_mv(aom_reader *r, MV *mv, const MV *ref,
887
147k
                           nmv_context *ctx, MvSubpelPrecision precision) {
888
147k
  MV diff = kZeroMv;
889
147k
  const MV_JOINT_TYPE joint_type =
890
147k
      (MV_JOINT_TYPE)aom_read_symbol(r, ctx->joints_cdf, MV_JOINTS, ACCT_STR);
891
892
147k
  if (mv_joint_vertical(joint_type))
893
99.1k
    diff.row = read_mv_component(r, &ctx->comps[0], precision > MV_SUBPEL_NONE,
894
99.1k
                                 precision > MV_SUBPEL_LOW_PRECISION);
895
896
147k
  if (mv_joint_horizontal(joint_type))
897
93.3k
    diff.col = read_mv_component(r, &ctx->comps[1], precision > MV_SUBPEL_NONE,
898
93.3k
                                 precision > MV_SUBPEL_LOW_PRECISION);
899
900
147k
  mv->row = ref->row + diff.row;
901
147k
  mv->col = ref->col + diff.col;
902
147k
}
903
904
static REFERENCE_MODE read_block_reference_mode(AV1_COMMON *cm,
905
                                                const MACROBLOCKD *xd,
906
43.6k
                                                aom_reader *r) {
907
43.6k
  if (!is_comp_ref_allowed(xd->mi[0]->bsize)) return SINGLE_REFERENCE;
908
33.8k
  if (cm->current_frame.reference_mode == REFERENCE_MODE_SELECT) {
909
27.6k
    const int ctx = av1_get_reference_mode_context(xd);
910
27.6k
    const REFERENCE_MODE mode = (REFERENCE_MODE)aom_read_symbol(
911
27.6k
        r, xd->tile_ctx->comp_inter_cdf[ctx], 2, ACCT_STR);
912
27.6k
    return mode;  // SINGLE_REFERENCE or COMPOUND_REFERENCE
913
27.6k
  } else {
914
6.26k
    assert(cm->current_frame.reference_mode == SINGLE_REFERENCE);
915
6.26k
    return cm->current_frame.reference_mode;
916
6.26k
  }
917
33.8k
}
918
919
#define READ_REF_BIT(pname) \
920
128k
  aom_read_symbol(r, av1_get_pred_cdf_##pname(xd), 2, ACCT_STR)
921
922
static COMP_REFERENCE_TYPE read_comp_reference_type(const MACROBLOCKD *xd,
923
18.8k
                                                    aom_reader *r) {
924
18.8k
  const int ctx = av1_get_comp_reference_type_context(xd);
925
18.8k
  const COMP_REFERENCE_TYPE comp_ref_type =
926
18.8k
      (COMP_REFERENCE_TYPE)aom_read_symbol(
927
18.8k
          r, xd->tile_ctx->comp_ref_type_cdf[ctx], 2, ACCT_STR);
928
18.8k
  return comp_ref_type;  // UNIDIR_COMP_REFERENCE or BIDIR_COMP_REFERENCE
929
18.8k
}
930
931
static void set_ref_frames_for_skip_mode(AV1_COMMON *const cm,
932
30
                                         MV_REFERENCE_FRAME ref_frame[2]) {
933
30
  ref_frame[0] = LAST_FRAME + cm->current_frame.skip_mode_info.ref_frame_idx_0;
934
30
  ref_frame[1] = LAST_FRAME + cm->current_frame.skip_mode_info.ref_frame_idx_1;
935
30
}
936
937
// Read the referncence frame
938
static void read_ref_frames(AV1_COMMON *const cm, MACROBLOCKD *const xd,
939
                            aom_reader *r, int segment_id,
940
57.3k
                            MV_REFERENCE_FRAME ref_frame[2]) {
941
57.3k
  if (xd->mi[0]->skip_mode) {
942
30
    set_ref_frames_for_skip_mode(cm, ref_frame);
943
30
    return;
944
30
  }
945
946
57.2k
  if (segfeature_active(&cm->seg, segment_id, SEG_LVL_REF_FRAME)) {
947
7.48k
    ref_frame[0] = (MV_REFERENCE_FRAME)get_segdata(&cm->seg, segment_id,
948
7.48k
                                                   SEG_LVL_REF_FRAME);
949
7.48k
    ref_frame[1] = NONE_FRAME;
950
49.8k
  } else if (segfeature_active(&cm->seg, segment_id, SEG_LVL_SKIP) ||
951
46.8k
             segfeature_active(&cm->seg, segment_id, SEG_LVL_GLOBALMV)) {
952
6.11k
    ref_frame[0] = LAST_FRAME;
953
6.11k
    ref_frame[1] = NONE_FRAME;
954
43.6k
  } else {
955
43.6k
    const REFERENCE_MODE mode = read_block_reference_mode(cm, xd, r);
956
957
43.6k
    if (mode == COMPOUND_REFERENCE) {
958
18.8k
      const COMP_REFERENCE_TYPE comp_ref_type = read_comp_reference_type(xd, r);
959
960
18.8k
      if (comp_ref_type == UNIDIR_COMP_REFERENCE) {
961
6.17k
        const int bit = READ_REF_BIT(uni_comp_ref_p);
962
6.17k
        if (bit) {
963
1.62k
          ref_frame[0] = BWDREF_FRAME;
964
1.62k
          ref_frame[1] = ALTREF_FRAME;
965
4.55k
        } else {
966
4.55k
          const int bit1 = READ_REF_BIT(uni_comp_ref_p1);
967
4.55k
          if (bit1) {
968
1.89k
            const int bit2 = READ_REF_BIT(uni_comp_ref_p2);
969
1.89k
            if (bit2) {
970
1.08k
              ref_frame[0] = LAST_FRAME;
971
1.08k
              ref_frame[1] = GOLDEN_FRAME;
972
1.08k
            } else {
973
810
              ref_frame[0] = LAST_FRAME;
974
810
              ref_frame[1] = LAST3_FRAME;
975
810
            }
976
2.65k
          } else {
977
2.65k
            ref_frame[0] = LAST_FRAME;
978
2.65k
            ref_frame[1] = LAST2_FRAME;
979
2.65k
          }
980
4.55k
        }
981
982
6.17k
        return;
983
6.17k
      }
984
985
18.8k
      assert(comp_ref_type == BIDIR_COMP_REFERENCE);
986
987
12.7k
      const int idx = 1;
988
12.7k
      const int bit = READ_REF_BIT(comp_ref_p);
989
      // Decode forward references.
990
12.7k
      if (!bit) {
991
10.5k
        const int bit1 = READ_REF_BIT(comp_ref_p1);
992
10.5k
        ref_frame[!idx] = bit1 ? LAST2_FRAME : LAST_FRAME;
993
10.5k
      } else {
994
2.15k
        const int bit2 = READ_REF_BIT(comp_ref_p2);
995
2.15k
        ref_frame[!idx] = bit2 ? GOLDEN_FRAME : LAST3_FRAME;
996
2.15k
      }
997
998
      // Decode backward references.
999
12.7k
      const int bit_bwd = READ_REF_BIT(comp_bwdref_p);
1000
12.7k
      if (!bit_bwd) {
1001
7.69k
        const int bit1_bwd = READ_REF_BIT(comp_bwdref_p1);
1002
7.69k
        ref_frame[idx] = bit1_bwd ? ALTREF2_FRAME : BWDREF_FRAME;
1003
7.69k
      } else {
1004
5.02k
        ref_frame[idx] = ALTREF_FRAME;
1005
5.02k
      }
1006
24.7k
    } else if (mode == SINGLE_REFERENCE) {
1007
24.7k
      const int bit0 = READ_REF_BIT(single_ref_p1);
1008
24.7k
      if (bit0) {
1009
9.78k
        const int bit1 = READ_REF_BIT(single_ref_p2);
1010
9.78k
        if (!bit1) {
1011
5.03k
          const int bit5 = READ_REF_BIT(single_ref_p6);
1012
5.03k
          ref_frame[0] = bit5 ? ALTREF2_FRAME : BWDREF_FRAME;
1013
5.03k
        } else {
1014
4.75k
          ref_frame[0] = ALTREF_FRAME;
1015
4.75k
        }
1016
15.0k
      } else {
1017
15.0k
        const int bit2 = READ_REF_BIT(single_ref_p3);
1018
15.0k
        if (bit2) {
1019
3.90k
          const int bit4 = READ_REF_BIT(single_ref_p5);
1020
3.90k
          ref_frame[0] = bit4 ? GOLDEN_FRAME : LAST3_FRAME;
1021
11.1k
        } else {
1022
11.1k
          const int bit3 = READ_REF_BIT(single_ref_p4);
1023
11.1k
          ref_frame[0] = bit3 ? LAST2_FRAME : LAST_FRAME;
1024
11.1k
        }
1025
15.0k
      }
1026
1027
24.7k
      ref_frame[1] = NONE_FRAME;
1028
24.7k
    } else {
1029
0
      assert(0 && "Invalid prediction mode.");
1030
0
    }
1031
43.6k
  }
1032
57.2k
}
1033
1034
static inline void read_mb_interp_filter(const MACROBLOCKD *const xd,
1035
                                         InterpFilter interp_filter,
1036
                                         bool enable_dual_filter,
1037
                                         MB_MODE_INFO *const mbmi,
1038
57.3k
                                         aom_reader *r) {
1039
57.3k
  FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
1040
1041
57.3k
  if (!av1_is_interp_needed(xd)) {
1042
9.61k
    set_default_interp_filters(mbmi, interp_filter);
1043
9.61k
    return;
1044
9.61k
  }
1045
1046
47.7k
  if (interp_filter != SWITCHABLE) {
1047
22.8k
    mbmi->interp_filters = av1_broadcast_interp_filter(interp_filter);
1048
24.8k
  } else {
1049
24.8k
    InterpFilter ref0_filter[2] = { EIGHTTAP_REGULAR, EIGHTTAP_REGULAR };
1050
43.8k
    for (int dir = 0; dir < 2; ++dir) {
1051
34.3k
      const int ctx = av1_get_pred_context_switchable_interp(xd, dir);
1052
34.3k
      ref0_filter[dir] = (InterpFilter)aom_read_symbol(
1053
34.3k
          r, ec_ctx->switchable_interp_cdf[ctx], SWITCHABLE_FILTERS, ACCT_STR);
1054
34.3k
      if (!enable_dual_filter) {
1055
15.3k
        ref0_filter[1] = ref0_filter[0];
1056
15.3k
        break;
1057
15.3k
      }
1058
34.3k
    }
1059
    // The index system works as: (0, 1) -> (vertical, horizontal) filter types
1060
24.8k
    mbmi->interp_filters.as_filters.x_filter = ref0_filter[1];
1061
24.8k
    mbmi->interp_filters.as_filters.y_filter = ref0_filter[0];
1062
24.8k
  }
1063
47.7k
}
1064
1065
static void read_intra_block_mode_info(AV1_COMMON *const cm,
1066
                                       MACROBLOCKD *const xd,
1067
                                       MB_MODE_INFO *const mbmi,
1068
4.80k
                                       aom_reader *r) {
1069
4.80k
  const BLOCK_SIZE bsize = mbmi->bsize;
1070
4.80k
  const int use_angle_delta = av1_use_angle_delta(bsize);
1071
1072
4.80k
  mbmi->ref_frame[0] = INTRA_FRAME;
1073
4.80k
  mbmi->ref_frame[1] = NONE_FRAME;
1074
1075
4.80k
  FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
1076
1077
4.80k
  mbmi->mode = read_intra_mode(r, ec_ctx->y_mode_cdf[size_group_lookup[bsize]]);
1078
1079
4.80k
  mbmi->angle_delta[PLANE_TYPE_Y] =
1080
4.80k
      use_angle_delta && av1_is_directional_mode(mbmi->mode)
1081
4.80k
          ? read_angle_delta(r, ec_ctx->angle_delta_cdf[mbmi->mode - V_PRED])
1082
4.80k
          : 0;
1083
4.80k
  if (!cm->seq_params->monochrome && xd->is_chroma_ref) {
1084
3.22k
    mbmi->uv_mode =
1085
3.22k
        read_intra_mode_uv(ec_ctx, r, is_cfl_allowed(xd), mbmi->mode);
1086
3.22k
    if (mbmi->uv_mode == UV_CFL_PRED) {
1087
240
      mbmi->cfl_alpha_idx =
1088
240
          read_cfl_alphas(xd->tile_ctx, r, &mbmi->cfl_alpha_signs);
1089
240
    }
1090
3.22k
    const PREDICTION_MODE intra_mode = get_uv_mode(mbmi->uv_mode);
1091
3.22k
    mbmi->angle_delta[PLANE_TYPE_UV] =
1092
3.22k
        use_angle_delta && av1_is_directional_mode(intra_mode)
1093
3.22k
            ? read_angle_delta(r, ec_ctx->angle_delta_cdf[intra_mode - V_PRED])
1094
3.22k
            : 0;
1095
3.22k
  } else {
1096
    // Avoid decoding angle_info if there is no chroma prediction
1097
1.58k
    mbmi->uv_mode = UV_DC_PRED;
1098
1.58k
  }
1099
4.80k
  xd->cfl.store_y = store_cfl_required(cm, xd);
1100
1101
4.80k
  mbmi->palette_mode_info.palette_size[0] = 0;
1102
4.80k
  mbmi->palette_mode_info.palette_size[1] = 0;
1103
4.80k
  if (av1_allow_palette(cm->features.allow_screen_content_tools, bsize))
1104
2.43k
    read_palette_mode_info(cm, xd, r);
1105
1106
4.80k
  read_filter_intra_mode_info(cm, xd, r);
1107
4.80k
}
1108
1109
198k
static inline int is_mv_valid(const MV *mv) {
1110
198k
  return mv->row > MV_LOW && mv->row < MV_UPP && mv->col > MV_LOW &&
1111
198k
         mv->col < MV_UPP;
1112
198k
}
1113
1114
static inline int assign_mv(AV1_COMMON *cm, MACROBLOCKD *xd,
1115
                            PREDICTION_MODE mode,
1116
                            MV_REFERENCE_FRAME ref_frame[2], int_mv mv[2],
1117
                            int_mv ref_mv[2], int_mv nearest_mv[2],
1118
                            int_mv near_mv[2], int is_compound, int allow_hp,
1119
57.3k
                            aom_reader *r) {
1120
57.3k
  FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
1121
57.3k
  MB_MODE_INFO *mbmi = xd->mi[0];
1122
57.3k
  BLOCK_SIZE bsize = mbmi->bsize;
1123
57.3k
  FeatureFlags *const features = &cm->features;
1124
57.3k
  if (features->cur_frame_force_integer_mv) {
1125
13.1k
    allow_hp = MV_SUBPEL_NONE;
1126
13.1k
  }
1127
57.3k
  switch (mode) {
1128
11.9k
    case NEWMV: {
1129
11.9k
      nmv_context *const nmvc = &ec_ctx->nmvc;
1130
11.9k
      read_mv(r, &mv[0].as_mv, &ref_mv[0].as_mv, nmvc, allow_hp);
1131
11.9k
      break;
1132
0
    }
1133
9.63k
    case NEARESTMV: {
1134
9.63k
      mv[0].as_int = nearest_mv[0].as_int;
1135
9.63k
      break;
1136
0
    }
1137
2.72k
    case NEARMV: {
1138
2.72k
      mv[0].as_int = near_mv[0].as_int;
1139
2.72k
      break;
1140
0
    }
1141
14.1k
    case GLOBALMV: {
1142
14.1k
      mv[0].as_int = gm_get_motion_vector(&cm->global_motion[ref_frame[0]],
1143
14.1k
                                          features->allow_high_precision_mv,
1144
14.1k
                                          bsize, xd->mi_col, xd->mi_row,
1145
14.1k
                                          features->cur_frame_force_integer_mv)
1146
14.1k
                         .as_int;
1147
14.1k
      break;
1148
0
    }
1149
4.75k
    case NEW_NEWMV: {
1150
4.75k
      assert(is_compound);
1151
14.2k
      for (int i = 0; i < 2; ++i) {
1152
9.50k
        nmv_context *const nmvc = &ec_ctx->nmvc;
1153
9.50k
        read_mv(r, &mv[i].as_mv, &ref_mv[i].as_mv, nmvc, allow_hp);
1154
9.50k
      }
1155
4.75k
      break;
1156
4.75k
    }
1157
4.30k
    case NEAREST_NEARESTMV: {
1158
4.30k
      assert(is_compound);
1159
4.30k
      mv[0].as_int = nearest_mv[0].as_int;
1160
4.30k
      mv[1].as_int = nearest_mv[1].as_int;
1161
4.30k
      break;
1162
4.30k
    }
1163
1.88k
    case NEAR_NEARMV: {
1164
1.88k
      assert(is_compound);
1165
1.88k
      mv[0].as_int = near_mv[0].as_int;
1166
1.88k
      mv[1].as_int = near_mv[1].as_int;
1167
1.88k
      break;
1168
1.88k
    }
1169
1.77k
    case NEW_NEARESTMV: {
1170
1.77k
      nmv_context *const nmvc = &ec_ctx->nmvc;
1171
1.77k
      read_mv(r, &mv[0].as_mv, &ref_mv[0].as_mv, nmvc, allow_hp);
1172
1.77k
      assert(is_compound);
1173
1.77k
      mv[1].as_int = nearest_mv[1].as_int;
1174
1.77k
      break;
1175
1.77k
    }
1176
1.06k
    case NEAREST_NEWMV: {
1177
1.06k
      nmv_context *const nmvc = &ec_ctx->nmvc;
1178
1.06k
      mv[0].as_int = nearest_mv[0].as_int;
1179
1.06k
      read_mv(r, &mv[1].as_mv, &ref_mv[1].as_mv, nmvc, allow_hp);
1180
1.06k
      assert(is_compound);
1181
1.06k
      break;
1182
1.06k
    }
1183
1.68k
    case NEAR_NEWMV: {
1184
1.68k
      nmv_context *const nmvc = &ec_ctx->nmvc;
1185
1.68k
      mv[0].as_int = near_mv[0].as_int;
1186
1.68k
      read_mv(r, &mv[1].as_mv, &ref_mv[1].as_mv, nmvc, allow_hp);
1187
1.68k
      assert(is_compound);
1188
1.68k
      break;
1189
1.68k
    }
1190
1.68k
    case NEW_NEARMV: {
1191
184
      nmv_context *const nmvc = &ec_ctx->nmvc;
1192
184
      read_mv(r, &mv[0].as_mv, &ref_mv[0].as_mv, nmvc, allow_hp);
1193
184
      assert(is_compound);
1194
184
      mv[1].as_int = near_mv[1].as_int;
1195
184
      break;
1196
184
    }
1197
3.27k
    case GLOBAL_GLOBALMV: {
1198
3.27k
      assert(is_compound);
1199
3.27k
      mv[0].as_int = gm_get_motion_vector(&cm->global_motion[ref_frame[0]],
1200
3.27k
                                          features->allow_high_precision_mv,
1201
3.27k
                                          bsize, xd->mi_col, xd->mi_row,
1202
3.27k
                                          features->cur_frame_force_integer_mv)
1203
3.27k
                         .as_int;
1204
3.27k
      mv[1].as_int = gm_get_motion_vector(&cm->global_motion[ref_frame[1]],
1205
3.27k
                                          features->allow_high_precision_mv,
1206
3.27k
                                          bsize, xd->mi_col, xd->mi_row,
1207
3.27k
                                          features->cur_frame_force_integer_mv)
1208
3.27k
                         .as_int;
1209
3.27k
      break;
1210
3.27k
    }
1211
0
    default: {
1212
0
      return 0;
1213
3.27k
    }
1214
57.3k
  }
1215
1216
57.3k
  int ret = is_mv_valid(&mv[0].as_mv);
1217
57.3k
  if (is_compound) {
1218
18.9k
    ret = ret && is_mv_valid(&mv[1].as_mv);
1219
18.9k
  }
1220
57.3k
  return ret;
1221
57.3k
}
1222
1223
static int read_is_inter_block(AV1_COMMON *const cm, MACROBLOCKD *const xd,
1224
62.0k
                               int segment_id, aom_reader *r) {
1225
62.0k
  if (segfeature_active(&cm->seg, segment_id, SEG_LVL_REF_FRAME)) {
1226
7.62k
    const int frame = get_segdata(&cm->seg, segment_id, SEG_LVL_REF_FRAME);
1227
7.62k
    if (frame < LAST_FRAME) return 0;
1228
7.48k
    return frame != INTRA_FRAME;
1229
7.62k
  }
1230
54.4k
  if (segfeature_active(&cm->seg, segment_id, SEG_LVL_GLOBALMV)) {
1231
3.58k
    return 1;
1232
3.58k
  }
1233
50.8k
  const int ctx = av1_get_intra_inter_context(xd);
1234
50.8k
  FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
1235
50.8k
  const int is_inter =
1236
50.8k
      aom_read_symbol(r, ec_ctx->intra_inter_cdf[ctx], 2, ACCT_STR);
1237
50.8k
  return is_inter;
1238
54.4k
}
1239
1240
#if DEC_MISMATCH_DEBUG
1241
static void dec_dump_logs(AV1_COMMON *cm, MB_MODE_INFO *const mbmi, int mi_row,
1242
                          int mi_col, int16_t mode_ctx) {
1243
  int_mv mv[2] = { { 0 } };
1244
  for (int ref = 0; ref < 1 + has_second_ref(mbmi); ++ref)
1245
    mv[ref].as_mv = mbmi->mv[ref].as_mv;
1246
1247
  const int16_t newmv_ctx = mode_ctx & NEWMV_CTX_MASK;
1248
  int16_t zeromv_ctx = -1;
1249
  int16_t refmv_ctx = -1;
1250
  if (mbmi->mode != NEWMV) {
1251
    zeromv_ctx = (mode_ctx >> GLOBALMV_OFFSET) & GLOBALMV_CTX_MASK;
1252
    if (mbmi->mode != GLOBALMV)
1253
      refmv_ctx = (mode_ctx >> REFMV_OFFSET) & REFMV_CTX_MASK;
1254
  }
1255
1256
#define FRAME_TO_CHECK 11
1257
  if (cm->current_frame.frame_number == FRAME_TO_CHECK && cm->show_frame == 1) {
1258
    printf(
1259
        "=== DECODER ===: "
1260
        "Frame=%d, (mi_row,mi_col)=(%d,%d), skip_mode=%d, mode=%d, bsize=%d, "
1261
        "show_frame=%d, mv[0]=(%d,%d), mv[1]=(%d,%d), ref[0]=%d, "
1262
        "ref[1]=%d, motion_mode=%d, mode_ctx=%d, "
1263
        "newmv_ctx=%d, zeromv_ctx=%d, refmv_ctx=%d, tx_size=%d\n",
1264
        cm->current_frame.frame_number, mi_row, mi_col, mbmi->skip_mode,
1265
        mbmi->mode, mbmi->sb_type, cm->show_frame, mv[0].as_mv.row,
1266
        mv[0].as_mv.col, mv[1].as_mv.row, mv[1].as_mv.col, mbmi->ref_frame[0],
1267
        mbmi->ref_frame[1], mbmi->motion_mode, mode_ctx, newmv_ctx, zeromv_ctx,
1268
        refmv_ctx, mbmi->tx_size);
1269
  }
1270
}
1271
#endif  // DEC_MISMATCH_DEBUG
1272
1273
static void read_inter_block_mode_info(AV1Decoder *const pbi,
1274
                                       DecoderCodingBlock *dcb,
1275
                                       MB_MODE_INFO *const mbmi,
1276
57.3k
                                       aom_reader *r) {
1277
57.3k
  AV1_COMMON *const cm = &pbi->common;
1278
57.3k
  FeatureFlags *const features = &cm->features;
1279
57.3k
  const BLOCK_SIZE bsize = mbmi->bsize;
1280
57.3k
  const int allow_hp = features->allow_high_precision_mv;
1281
57.3k
  int_mv nearestmv[2], nearmv[2];
1282
57.3k
  int_mv ref_mvs[MODE_CTX_REF_FRAMES][MAX_MV_REF_CANDIDATES] = { { { 0 } } };
1283
57.3k
  int16_t inter_mode_ctx[MODE_CTX_REF_FRAMES];
1284
57.3k
  int pts[SAMPLES_ARRAY_SIZE], pts_inref[SAMPLES_ARRAY_SIZE];
1285
57.3k
  MACROBLOCKD *const xd = &dcb->xd;
1286
57.3k
  FRAME_CONTEXT *ec_ctx = xd->tile_ctx;
1287
1288
57.3k
  mbmi->uv_mode = UV_DC_PRED;
1289
57.3k
  mbmi->palette_mode_info.palette_size[0] = 0;
1290
57.3k
  mbmi->palette_mode_info.palette_size[1] = 0;
1291
1292
57.3k
  av1_collect_neighbors_ref_counts(xd);
1293
1294
57.3k
  read_ref_frames(cm, xd, r, mbmi->segment_id, mbmi->ref_frame);
1295
57.3k
  const int is_compound = has_second_ref(mbmi);
1296
1297
57.3k
  const MV_REFERENCE_FRAME ref_frame = av1_ref_frame_type(mbmi->ref_frame);
1298
57.3k
  av1_find_mv_refs(cm, xd, mbmi, ref_frame, dcb->ref_mv_count, xd->ref_mv_stack,
1299
57.3k
                   xd->weight, ref_mvs, /*global_mvs=*/NULL, inter_mode_ctx);
1300
1301
57.3k
  mbmi->ref_mv_idx = 0;
1302
1303
57.3k
  if (mbmi->skip_mode) {
1304
30
    assert(is_compound);
1305
30
    mbmi->mode = NEAREST_NEARESTMV;
1306
57.2k
  } else {
1307
57.2k
    if (segfeature_active(&cm->seg, mbmi->segment_id, SEG_LVL_SKIP) ||
1308
50.0k
        segfeature_active(&cm->seg, mbmi->segment_id, SEG_LVL_GLOBALMV)) {
1309
13.2k
      mbmi->mode = GLOBALMV;
1310
44.0k
    } else {
1311
44.0k
      const int mode_ctx =
1312
44.0k
          av1_mode_context_analyzer(inter_mode_ctx, mbmi->ref_frame);
1313
44.0k
      if (is_compound)
1314
18.8k
        mbmi->mode = read_inter_compound_mode(xd, r, mode_ctx);
1315
25.1k
      else
1316
25.1k
        mbmi->mode = read_inter_mode(ec_ctx, r, mode_ctx);
1317
44.0k
      if (mbmi->mode == NEWMV || mbmi->mode == NEW_NEWMV ||
1318
27.3k
          have_nearmv_in_inter_mode(mbmi->mode))
1319
23.1k
        read_drl_idx(ec_ctx, dcb, mbmi, r);
1320
44.0k
    }
1321
57.2k
  }
1322
1323
57.3k
  if (is_compound != is_inter_compound_mode(mbmi->mode)) {
1324
0
    aom_internal_error(xd->error_info, AOM_CODEC_CORRUPT_FRAME,
1325
0
                       "Prediction mode %d invalid with ref frame %d %d",
1326
0
                       mbmi->mode, mbmi->ref_frame[0], mbmi->ref_frame[1]);
1327
0
  }
1328
1329
57.3k
  if (!is_compound && mbmi->mode != GLOBALMV) {
1330
24.2k
    av1_find_best_ref_mvs(allow_hp, ref_mvs[mbmi->ref_frame[0]], &nearestmv[0],
1331
24.2k
                          &nearmv[0], features->cur_frame_force_integer_mv);
1332
24.2k
  }
1333
1334
57.3k
  if (is_compound && mbmi->mode != GLOBAL_GLOBALMV) {
1335
15.6k
    const int ref_mv_idx = mbmi->ref_mv_idx + 1;
1336
15.6k
    nearestmv[0] = xd->ref_mv_stack[ref_frame][0].this_mv;
1337
15.6k
    nearestmv[1] = xd->ref_mv_stack[ref_frame][0].comp_mv;
1338
15.6k
    nearmv[0] = xd->ref_mv_stack[ref_frame][ref_mv_idx].this_mv;
1339
15.6k
    nearmv[1] = xd->ref_mv_stack[ref_frame][ref_mv_idx].comp_mv;
1340
15.6k
    lower_mv_precision(&nearestmv[0].as_mv, allow_hp,
1341
15.6k
                       features->cur_frame_force_integer_mv);
1342
15.6k
    lower_mv_precision(&nearestmv[1].as_mv, allow_hp,
1343
15.6k
                       features->cur_frame_force_integer_mv);
1344
15.6k
    lower_mv_precision(&nearmv[0].as_mv, allow_hp,
1345
15.6k
                       features->cur_frame_force_integer_mv);
1346
15.6k
    lower_mv_precision(&nearmv[1].as_mv, allow_hp,
1347
15.6k
                       features->cur_frame_force_integer_mv);
1348
41.6k
  } else if (mbmi->ref_mv_idx > 0 && mbmi->mode == NEARMV) {
1349
307
    nearmv[0] =
1350
307
        xd->ref_mv_stack[mbmi->ref_frame[0]][1 + mbmi->ref_mv_idx].this_mv;
1351
307
  }
1352
1353
57.3k
  int_mv ref_mv[2] = { nearestmv[0], nearestmv[1] };
1354
1355
57.3k
  if (is_compound) {
1356
18.9k
    int ref_mv_idx = mbmi->ref_mv_idx;
1357
    // Special case: NEAR_NEWMV and NEW_NEARMV modes use
1358
    // 1 + mbmi->ref_mv_idx (like NEARMV) instead of
1359
    // mbmi->ref_mv_idx (like NEWMV)
1360
18.9k
    if (mbmi->mode == NEAR_NEWMV || mbmi->mode == NEW_NEARMV)
1361
1.86k
      ref_mv_idx = 1 + mbmi->ref_mv_idx;
1362
1363
    // TODO(jingning, yunqing): Do we need a lower_mv_precision() call here?
1364
18.9k
    if (compound_ref0_mode(mbmi->mode) == NEWMV)
1365
6.71k
      ref_mv[0] = xd->ref_mv_stack[ref_frame][ref_mv_idx].this_mv;
1366
1367
18.9k
    if (compound_ref1_mode(mbmi->mode) == NEWMV)
1368
7.49k
      ref_mv[1] = xd->ref_mv_stack[ref_frame][ref_mv_idx].comp_mv;
1369
38.3k
  } else {
1370
38.3k
    if (mbmi->mode == NEWMV) {
1371
11.9k
      if (dcb->ref_mv_count[ref_frame] > 1)
1372
5.23k
        ref_mv[0] = xd->ref_mv_stack[ref_frame][mbmi->ref_mv_idx].this_mv;
1373
11.9k
    }
1374
38.3k
  }
1375
1376
57.3k
  if (mbmi->skip_mode) assert(mbmi->mode == NEAREST_NEARESTMV);
1377
1378
57.3k
  const int mv_corrupted_flag =
1379
57.3k
      !assign_mv(cm, xd, mbmi->mode, mbmi->ref_frame, mbmi->mv, ref_mv,
1380
57.3k
                 nearestmv, nearmv, is_compound, allow_hp, r);
1381
57.3k
  aom_merge_corrupted_flag(&dcb->corrupted, mv_corrupted_flag);
1382
1383
57.3k
  mbmi->use_wedge_interintra = 0;
1384
57.3k
  if (cm->seq_params->enable_interintra_compound && !mbmi->skip_mode &&
1385
21.4k
      is_interintra_allowed(mbmi)) {
1386
8.58k
    const int bsize_group = size_group_lookup[bsize];
1387
8.58k
    const int interintra =
1388
8.58k
        aom_read_symbol(r, ec_ctx->interintra_cdf[bsize_group], 2, ACCT_STR);
1389
8.58k
    assert(mbmi->ref_frame[1] == NONE_FRAME);
1390
8.58k
    if (interintra) {
1391
2.62k
      const INTERINTRA_MODE interintra_mode =
1392
2.62k
          read_interintra_mode(xd, r, bsize_group);
1393
2.62k
      mbmi->ref_frame[1] = INTRA_FRAME;
1394
2.62k
      mbmi->interintra_mode = interintra_mode;
1395
2.62k
      mbmi->angle_delta[PLANE_TYPE_Y] = 0;
1396
2.62k
      mbmi->angle_delta[PLANE_TYPE_UV] = 0;
1397
2.62k
      mbmi->filter_intra_mode_info.use_filter_intra = 0;
1398
2.62k
      if (av1_is_wedge_used(bsize)) {
1399
2.62k
        mbmi->use_wedge_interintra = aom_read_symbol(
1400
2.62k
            r, ec_ctx->wedge_interintra_cdf[bsize], 2, ACCT_STR);
1401
2.62k
        if (mbmi->use_wedge_interintra) {
1402
1.11k
          mbmi->interintra_wedge_index = (int8_t)aom_read_symbol(
1403
1.11k
              r, ec_ctx->wedge_idx_cdf[bsize], MAX_WEDGE_TYPES, ACCT_STR);
1404
1.11k
        }
1405
2.62k
      }
1406
2.62k
    }
1407
8.58k
  }
1408
1409
133k
  for (int ref = 0; ref < 1 + has_second_ref(mbmi); ++ref) {
1410
76.2k
    const MV_REFERENCE_FRAME frame = mbmi->ref_frame[ref];
1411
76.2k
    xd->block_ref_scale_factors[ref] = get_ref_scale_factors_const(cm, frame);
1412
76.2k
  }
1413
1414
57.3k
  mbmi->motion_mode = SIMPLE_TRANSLATION;
1415
57.3k
  if (is_motion_variation_allowed_bsize(mbmi->bsize) && !mbmi->skip_mode &&
1416
39.3k
      !has_second_ref(mbmi)) {
1417
20.5k
    mbmi->num_proj_ref = av1_findSamples(cm, xd, pts, pts_inref);
1418
20.5k
  }
1419
57.3k
  av1_count_overlappable_neighbors(cm, xd);
1420
1421
57.3k
  if (mbmi->ref_frame[1] != INTRA_FRAME)
1422
54.6k
    mbmi->motion_mode = read_motion_mode(cm, xd, mbmi, r);
1423
1424
  // init
1425
57.3k
  mbmi->comp_group_idx = 0;
1426
57.3k
  mbmi->compound_idx = 1;
1427
57.3k
  mbmi->interinter_comp.type = COMPOUND_AVERAGE;
1428
1429
57.3k
  if (has_second_ref(mbmi) && !mbmi->skip_mode) {
1430
    // Read idx to indicate current compound inter prediction mode group
1431
18.8k
    const int masked_compound_used = is_any_masked_compound_used(bsize) &&
1432
18.8k
                                     cm->seq_params->enable_masked_compound;
1433
1434
18.8k
    if (masked_compound_used) {
1435
10.4k
      const int ctx_comp_group_idx = get_comp_group_idx_context(xd);
1436
10.4k
      mbmi->comp_group_idx = (uint8_t)aom_read_symbol(
1437
10.4k
          r, ec_ctx->comp_group_idx_cdf[ctx_comp_group_idx], 2, ACCT_STR);
1438
10.4k
    }
1439
1440
18.8k
    if (mbmi->comp_group_idx == 0) {
1441
15.3k
      if (cm->seq_params->order_hint_info.enable_dist_wtd_comp) {
1442
9.33k
        const int comp_index_ctx = get_comp_index_context(cm, xd);
1443
9.33k
        mbmi->compound_idx = (uint8_t)aom_read_symbol(
1444
9.33k
            r, ec_ctx->compound_index_cdf[comp_index_ctx], 2, ACCT_STR);
1445
9.33k
        mbmi->interinter_comp.type =
1446
9.33k
            mbmi->compound_idx ? COMPOUND_AVERAGE : COMPOUND_DISTWTD;
1447
9.33k
      } else {
1448
        // Distance-weighted compound is disabled, so always use average
1449
6.00k
        mbmi->compound_idx = 1;
1450
6.00k
        mbmi->interinter_comp.type = COMPOUND_AVERAGE;
1451
6.00k
      }
1452
15.3k
    } else {
1453
3.54k
      assert(cm->current_frame.reference_mode != SINGLE_REFERENCE &&
1454
3.54k
             is_inter_compound_mode(mbmi->mode) &&
1455
3.54k
             mbmi->motion_mode == SIMPLE_TRANSLATION);
1456
3.54k
      assert(masked_compound_used);
1457
1458
      // compound_diffwtd, wedge
1459
3.54k
      if (is_interinter_compound_used(COMPOUND_WEDGE, bsize)) {
1460
3.54k
        mbmi->interinter_comp.type =
1461
3.54k
            COMPOUND_WEDGE + aom_read_symbol(r,
1462
3.54k
                                             ec_ctx->compound_type_cdf[bsize],
1463
3.54k
                                             MASKED_COMPOUND_TYPES, ACCT_STR);
1464
3.54k
      } else {
1465
0
        mbmi->interinter_comp.type = COMPOUND_DIFFWTD;
1466
0
      }
1467
1468
3.54k
      if (mbmi->interinter_comp.type == COMPOUND_WEDGE) {
1469
2.68k
        assert(is_interinter_compound_used(COMPOUND_WEDGE, bsize));
1470
2.68k
        mbmi->interinter_comp.wedge_index = (int8_t)aom_read_symbol(
1471
2.68k
            r, ec_ctx->wedge_idx_cdf[bsize], MAX_WEDGE_TYPES, ACCT_STR);
1472
2.68k
        mbmi->interinter_comp.wedge_sign = (int8_t)aom_read_bit(r, ACCT_STR);
1473
2.68k
      } else {
1474
868
        assert(mbmi->interinter_comp.type == COMPOUND_DIFFWTD);
1475
868
        mbmi->interinter_comp.mask_type =
1476
868
            aom_read_literal(r, MAX_DIFFWTD_MASK_BITS, ACCT_STR);
1477
868
      }
1478
3.54k
    }
1479
18.8k
  }
1480
1481
57.3k
  read_mb_interp_filter(xd, features->interp_filter,
1482
57.3k
                        cm->seq_params->enable_dual_filter, mbmi, r);
1483
1484
57.3k
  if (mbmi->motion_mode == WARPED_CAUSAL) {
1485
1.17k
    const int mi_row = xd->mi_row;
1486
1.17k
    const int mi_col = xd->mi_col;
1487
1.17k
    mbmi->wm_params.wmtype = DEFAULT_WMTYPE;
1488
1.17k
    mbmi->wm_params.invalid = 0;
1489
1490
1.17k
    if (mbmi->num_proj_ref > 1) {
1491
519
      mbmi->num_proj_ref = av1_selectSamples(&mbmi->mv[0].as_mv, pts, pts_inref,
1492
519
                                             mbmi->num_proj_ref, bsize);
1493
519
    }
1494
1495
1.17k
    if (av1_find_projection(mbmi->num_proj_ref, pts, pts_inref, bsize,
1496
1.17k
                            mbmi->mv[0].as_mv.row, mbmi->mv[0].as_mv.col,
1497
1.17k
                            &mbmi->wm_params, mi_row, mi_col)) {
1498
#if WARPED_MOTION_DEBUG
1499
      printf("Warning: unexpected warped model from aomenc\n");
1500
#endif
1501
546
      mbmi->wm_params.invalid = 1;
1502
546
    }
1503
1.17k
  }
1504
1505
57.3k
  xd->cfl.store_y = store_cfl_required(cm, xd);
1506
1507
#if DEC_MISMATCH_DEBUG
1508
  dec_dump_logs(cm, mi, mi_row, mi_col, mode_ctx);
1509
#endif  // DEC_MISMATCH_DEBUG
1510
57.3k
}
1511
1512
static void read_inter_frame_mode_info(AV1Decoder *const pbi,
1513
62.1k
                                       DecoderCodingBlock *dcb, aom_reader *r) {
1514
62.1k
  AV1_COMMON *const cm = &pbi->common;
1515
62.1k
  MACROBLOCKD *const xd = &dcb->xd;
1516
62.1k
  MB_MODE_INFO *const mbmi = xd->mi[0];
1517
62.1k
  int inter_block = 1;
1518
1519
62.1k
  mbmi->mv[0].as_int = 0;
1520
62.1k
  mbmi->mv[1].as_int = 0;
1521
62.1k
  mbmi->segment_id = read_inter_segment_id(cm, xd, 1, r);
1522
1523
62.1k
  mbmi->skip_mode = read_skip_mode(cm, xd, mbmi->segment_id, r);
1524
1525
62.1k
  if (mbmi->skip_mode)
1526
30
    mbmi->skip_txfm = 1;
1527
62.1k
  else
1528
62.1k
    mbmi->skip_txfm = read_skip_txfm(cm, xd, mbmi->segment_id, r);
1529
1530
62.1k
  if (!cm->seg.segid_preskip)
1531
45.8k
    mbmi->segment_id = read_inter_segment_id(cm, xd, 0, r);
1532
1533
62.1k
  read_cdef(cm, r, xd);
1534
1535
62.1k
  read_delta_q_params(cm, xd, r);
1536
1537
62.1k
  if (!mbmi->skip_mode)
1538
62.0k
    inter_block = read_is_inter_block(cm, xd, mbmi->segment_id, r);
1539
1540
62.1k
  mbmi->current_qindex = xd->current_base_qindex;
1541
1542
62.1k
  xd->above_txfm_context =
1543
62.1k
      cm->above_contexts.txfm[xd->tile.tile_row] + xd->mi_col;
1544
62.1k
  xd->left_txfm_context =
1545
62.1k
      xd->left_txfm_context_buffer + (xd->mi_row & MAX_MIB_MASK);
1546
1547
62.1k
  if (inter_block)
1548
57.3k
    read_inter_block_mode_info(pbi, dcb, mbmi, r);
1549
4.84k
  else
1550
4.84k
    read_intra_block_mode_info(cm, xd, mbmi, r);
1551
62.1k
}
1552
1553
static void intra_copy_frame_mvs(AV1_COMMON *const cm, int mi_row, int mi_col,
1554
14.5k
                                 int x_mis, int y_mis) {
1555
14.5k
  const int frame_mvs_stride = ROUND_POWER_OF_TWO(cm->mi_params.mi_cols, 1);
1556
14.5k
  MV_REF *frame_mvs =
1557
14.5k
      cm->cur_frame->mvs + (mi_row >> 1) * frame_mvs_stride + (mi_col >> 1);
1558
14.5k
  x_mis = ROUND_POWER_OF_TWO(x_mis, 1);
1559
14.5k
  y_mis = ROUND_POWER_OF_TWO(y_mis, 1);
1560
1561
34.3k
  for (int h = 0; h < y_mis; h++) {
1562
19.8k
    MV_REF *mv = frame_mvs;
1563
71.7k
    for (int w = 0; w < x_mis; w++) {
1564
51.9k
      mv->ref_frame = NONE_FRAME;
1565
51.9k
      mv++;
1566
51.9k
    }
1567
19.8k
    frame_mvs += frame_mvs_stride;
1568
19.8k
  }
1569
14.5k
}
1570
1571
void av1_read_mode_info(AV1Decoder *const pbi, DecoderCodingBlock *dcb,
1572
14.5M
                        aom_reader *r, int x_mis, int y_mis) {
1573
14.5M
  AV1_COMMON *const cm = &pbi->common;
1574
14.5M
  MACROBLOCKD *const xd = &dcb->xd;
1575
14.5M
  MB_MODE_INFO *const mi = xd->mi[0];
1576
14.5M
  mi->use_intrabc = 0;
1577
1578
14.5M
  if (frame_is_intra_only(cm)) {
1579
14.4M
    read_intra_frame_mode_info(cm, dcb, r);
1580
14.4M
    if (cm->seq_params->order_hint_info.enable_ref_frame_mvs)
1581
14.5k
      intra_copy_frame_mvs(cm, xd->mi_row, xd->mi_col, x_mis, y_mis);
1582
14.4M
  } else {
1583
62.1k
    read_inter_frame_mode_info(pbi, dcb, r);
1584
62.1k
    if (cm->seq_params->order_hint_info.enable_ref_frame_mvs)
1585
38.5k
      av1_copy_frame_mvs(cm, mi, xd->mi_row, xd->mi_col, x_mis, y_mis);
1586
62.1k
  }
1587
14.5M
}