Coverage Report

Created: 2025-10-13 06:28

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libavif/ext/aom/av1/decoder/decodetxb.c
Line
Count
Source
1
/*
2
 * Copyright (c) 2017, 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 "av1/decoder/decodetxb.h"
13
14
#include "aom_ports/mem.h"
15
#include "av1/common/idct.h"
16
#include "av1/common/scan.h"
17
#include "av1/common/txb_common.h"
18
#include "av1/decoder/decodemv.h"
19
20
#define ACCT_STR __func__
21
22
41.3M
static int read_golomb(MACROBLOCKD *xd, aom_reader *r) {
23
41.3M
  int x = 1;
24
41.3M
  int length = 0;
25
41.3M
  int i = 0;
26
27
216M
  while (!i) {
28
175M
    i = aom_read_bit(r, ACCT_STR);
29
175M
    ++length;
30
175M
    if (length > 20) {
31
123
      aom_internal_error(xd->error_info, AOM_CODEC_CORRUPT_FRAME,
32
123
                         "Invalid length in read_golomb");
33
123
      break;
34
123
    }
35
175M
  }
36
37
181M
  for (i = 0; i < length - 1; ++i) {
38
140M
    x <<= 1;
39
140M
    x += aom_read_bit(r, ACCT_STR);
40
140M
  }
41
42
41.3M
  return x - 1;
43
41.3M
}
44
45
8.83M
static inline int rec_eob_pos(const int eob_token, const int extra) {
46
8.83M
  int eob = av1_eob_group_start[eob_token];
47
8.83M
  if (eob > 2) {
48
8.04M
    eob += extra;
49
8.04M
  }
50
8.83M
  return eob;
51
8.83M
}
52
53
static inline int get_dqv(const int16_t *dequant, int coeff_idx,
54
189M
                          const qm_val_t *iqmatrix) {
55
189M
  int dqv = dequant[!!coeff_idx];
56
189M
  if (iqmatrix != NULL)
57
2.36M
    dqv =
58
2.36M
        ((iqmatrix[coeff_idx] * dqv) + (1 << (AOM_QM_BITS - 1))) >> AOM_QM_BITS;
59
189M
  return dqv;
60
189M
}
61
62
static inline void read_coeffs_reverse_2d(aom_reader *r, TX_SIZE tx_size,
63
                                          int start_si, int end_si,
64
                                          const int16_t *scan, int bhl,
65
                                          uint8_t *levels,
66
                                          base_cdf_arr base_cdf,
67
7.58M
                                          br_cdf_arr br_cdf) {
68
226M
  for (int c = end_si; c >= start_si; --c) {
69
219M
    const int pos = scan[c];
70
219M
    const int coeff_ctx = get_lower_levels_ctx_2d(levels, pos, bhl, tx_size);
71
219M
    const int nsymbs = 4;
72
219M
    int level = aom_read_symbol(r, base_cdf[coeff_ctx], nsymbs, ACCT_STR);
73
219M
    if (level > NUM_BASE_LEVELS) {
74
95.0M
      const int br_ctx = get_br_ctx_2d(levels, pos, bhl);
75
95.0M
      aom_cdf_prob *cdf = br_cdf[br_ctx];
76
249M
      for (int idx = 0; idx < COEFF_BASE_RANGE; idx += BR_CDF_SIZE - 1) {
77
219M
        const int k = aom_read_symbol(r, cdf, BR_CDF_SIZE, ACCT_STR);
78
219M
        level += k;
79
219M
        if (k < BR_CDF_SIZE - 1) break;
80
219M
      }
81
95.0M
    }
82
219M
    levels[get_padded_idx(pos, bhl)] = level;
83
219M
  }
84
7.58M
}
85
86
static inline void read_coeffs_reverse(aom_reader *r, TX_SIZE tx_size,
87
                                       TX_CLASS tx_class, int start_si,
88
                                       int end_si, const int16_t *scan, int bhl,
89
                                       uint8_t *levels, base_cdf_arr base_cdf,
90
8.17M
                                       br_cdf_arr br_cdf) {
91
30.2M
  for (int c = end_si; c >= start_si; --c) {
92
22.0M
    const int pos = scan[c];
93
22.0M
    const int coeff_ctx =
94
22.0M
        get_lower_levels_ctx(levels, pos, bhl, tx_size, tx_class);
95
22.0M
    const int nsymbs = 4;
96
22.0M
    int level = aom_read_symbol(r, base_cdf[coeff_ctx], nsymbs, ACCT_STR);
97
22.0M
    if (level > NUM_BASE_LEVELS) {
98
13.3M
      const int br_ctx = get_br_ctx(levels, pos, bhl, tx_class);
99
13.3M
      aom_cdf_prob *cdf = br_cdf[br_ctx];
100
41.6M
      for (int idx = 0; idx < COEFF_BASE_RANGE; idx += BR_CDF_SIZE - 1) {
101
36.0M
        const int k = aom_read_symbol(r, cdf, BR_CDF_SIZE, ACCT_STR);
102
36.0M
        level += k;
103
36.0M
        if (k < BR_CDF_SIZE - 1) break;
104
36.0M
      }
105
13.3M
    }
106
22.0M
    levels[get_padded_idx(pos, bhl)] = level;
107
22.0M
  }
108
8.17M
}
109
110
static uint8_t read_coeffs_txb(const AV1_COMMON *const cm,
111
                               DecoderCodingBlock *dcb, aom_reader *const r,
112
                               const int blk_row, const int blk_col,
113
                               const int plane, const TXB_CTX *const txb_ctx,
114
11.4M
                               const TX_SIZE tx_size) {
115
11.4M
  MACROBLOCKD *const xd = &dcb->xd;
116
11.4M
  FRAME_CONTEXT *const ec_ctx = xd->tile_ctx;
117
11.4M
  const int32_t max_value = (1 << (7 + xd->bd)) - 1;
118
11.4M
  const int32_t min_value = -(1 << (7 + xd->bd));
119
11.4M
  const TX_SIZE txs_ctx = get_txsize_entropy_ctx(tx_size);
120
11.4M
  const PLANE_TYPE plane_type = get_plane_type(plane);
121
11.4M
  MB_MODE_INFO *const mbmi = xd->mi[0];
122
11.4M
  struct macroblockd_plane *const pd = &xd->plane[plane];
123
11.4M
  const int16_t *const dequant = pd->seg_dequant_QTX[mbmi->segment_id];
124
11.4M
  tran_low_t *const tcoeffs = dcb->dqcoeff_block[plane] + dcb->cb_offset[plane];
125
11.4M
  const int shift = av1_get_tx_scale(tx_size);
126
11.4M
  const int bhl = get_txb_bhl(tx_size);
127
11.4M
  const int width = get_txb_wide(tx_size);
128
11.4M
  const int height = get_txb_high(tx_size);
129
11.4M
  int cul_level = 0;
130
11.4M
  int dc_val = 0;
131
11.4M
  uint8_t levels_buf[TX_PAD_2D];
132
11.4M
  uint8_t *const levels = set_levels(levels_buf, height);
133
11.4M
  const int all_zero = aom_read_symbol(
134
11.4M
      r, ec_ctx->txb_skip_cdf[txs_ctx][txb_ctx->txb_skip_ctx], 2, ACCT_STR);
135
11.4M
  eob_info *eob_data = dcb->eob_data[plane] + dcb->txb_offset[plane];
136
11.4M
  uint16_t *const eob = &(eob_data->eob);
137
11.4M
  uint16_t *const max_scan_line = &(eob_data->max_scan_line);
138
11.4M
  *max_scan_line = 0;
139
11.4M
  *eob = 0;
140
141
#if CONFIG_INSPECTION
142
  if (plane == 0) {
143
    const int txk_type_idx =
144
        av1_get_txk_type_index(mbmi->bsize, blk_row, blk_col);
145
    mbmi->tx_skip[txk_type_idx] = all_zero;
146
  }
147
#endif
148
149
11.4M
  if (all_zero) {
150
2.24M
    *max_scan_line = 0;
151
2.24M
    if (plane == 0) {
152
794k
      xd->tx_type_map[blk_row * xd->tx_type_map_stride + blk_col] = DCT_DCT;
153
794k
    }
154
2.24M
    return 0;
155
2.24M
  }
156
157
9.23M
  if (plane == AOM_PLANE_Y) {
158
    // only y plane's tx_type is transmitted
159
5.73M
    av1_read_tx_type(cm, xd, blk_row, blk_col, tx_size, r);
160
5.73M
  }
161
9.23M
  const TX_TYPE tx_type =
162
9.23M
      av1_get_tx_type(xd, plane_type, blk_row, blk_col, tx_size,
163
9.23M
                      cm->features.reduced_tx_set_used);
164
9.23M
  const TX_CLASS tx_class = tx_type_to_class[tx_type];
165
9.23M
  const qm_val_t *iqmatrix =
166
9.23M
      av1_get_iqmatrix(&cm->quant_params, xd, plane, tx_size, tx_type);
167
9.23M
  const SCAN_ORDER *const scan_order = get_scan(tx_size, tx_type);
168
9.23M
  const int16_t *const scan = scan_order->scan;
169
9.23M
  int eob_extra = 0;
170
9.23M
  int eob_pt = 1;
171
172
9.23M
  const int eob_multi_size = txsize_log2_minus4[tx_size];
173
9.23M
  const int eob_multi_ctx = (tx_class == TX_CLASS_2D) ? 0 : 1;
174
9.23M
  switch (eob_multi_size) {
175
4.99M
    case 0:
176
4.99M
      eob_pt =
177
4.99M
          aom_read_symbol(r, ec_ctx->eob_flag_cdf16[plane_type][eob_multi_ctx],
178
4.99M
                          5, ACCT_STR) +
179
4.99M
          1;
180
4.99M
      break;
181
598k
    case 1:
182
598k
      eob_pt =
183
598k
          aom_read_symbol(r, ec_ctx->eob_flag_cdf32[plane_type][eob_multi_ctx],
184
598k
                          6, ACCT_STR) +
185
598k
          1;
186
598k
      break;
187
2.58M
    case 2:
188
2.58M
      eob_pt =
189
2.58M
          aom_read_symbol(r, ec_ctx->eob_flag_cdf64[plane_type][eob_multi_ctx],
190
2.58M
                          7, ACCT_STR) +
191
2.58M
          1;
192
2.58M
      break;
193
287k
    case 3:
194
287k
      eob_pt =
195
287k
          aom_read_symbol(r, ec_ctx->eob_flag_cdf128[plane_type][eob_multi_ctx],
196
287k
                          8, ACCT_STR) +
197
287k
          1;
198
287k
      break;
199
377k
    case 4:
200
377k
      eob_pt =
201
377k
          aom_read_symbol(r, ec_ctx->eob_flag_cdf256[plane_type][eob_multi_ctx],
202
377k
                          9, ACCT_STR) +
203
377k
          1;
204
377k
      break;
205
106k
    case 5:
206
106k
      eob_pt =
207
106k
          aom_read_symbol(r, ec_ctx->eob_flag_cdf512[plane_type][eob_multi_ctx],
208
106k
                          10, ACCT_STR) +
209
106k
          1;
210
106k
      break;
211
161k
    case 6:
212
161k
    default:
213
161k
      eob_pt = aom_read_symbol(
214
161k
                   r, ec_ctx->eob_flag_cdf1024[plane_type][eob_multi_ctx], 11,
215
161k
                   ACCT_STR) +
216
161k
               1;
217
161k
      break;
218
9.23M
  }
219
220
9.00M
  const int eob_offset_bits = av1_eob_offset_bits[eob_pt];
221
9.00M
  if (eob_offset_bits > 0) {
222
8.19M
    const int eob_ctx = eob_pt - 3;
223
8.19M
    int bit = aom_read_symbol(
224
8.19M
        r, ec_ctx->eob_extra_cdf[txs_ctx][plane_type][eob_ctx], 2, ACCT_STR);
225
8.19M
    if (bit) {
226
6.95M
      eob_extra += (1 << (eob_offset_bits - 1));
227
6.95M
    }
228
229
29.8M
    for (int i = 1; i < eob_offset_bits; i++) {
230
21.6M
      bit = aom_read_bit(r, ACCT_STR);
231
21.6M
      if (bit) {
232
17.8M
        eob_extra += (1 << (eob_offset_bits - 1 - i));
233
17.8M
      }
234
21.6M
    }
235
8.19M
  }
236
9.00M
  *eob = rec_eob_pos(eob_pt, eob_extra);
237
238
9.00M
  if (*eob > 1) {
239
8.14M
    memset(levels_buf, 0,
240
8.14M
           sizeof(*levels_buf) *
241
8.14M
               ((height + TX_PAD_HOR) * (width + TX_PAD_VER) + TX_PAD_END));
242
8.14M
  }
243
244
9.00M
  {
245
    // Read the non-zero coefficient with scan index eob-1
246
    // TODO(angiebird): Put this into a function
247
9.00M
    const int c = *eob - 1;
248
9.00M
    const int pos = scan[c];
249
9.00M
    const int coeff_ctx = get_lower_levels_ctx_eob(bhl, width, c);
250
9.00M
    const int nsymbs = 3;
251
9.00M
    aom_cdf_prob *cdf =
252
9.00M
        ec_ctx->coeff_base_eob_cdf[txs_ctx][plane_type][coeff_ctx];
253
9.00M
    int level = aom_read_symbol(r, cdf, nsymbs, ACCT_STR) + 1;
254
9.00M
    if (level > NUM_BASE_LEVELS) {
255
4.61M
      const int br_ctx = get_br_ctx_eob(pos, bhl, tx_class);
256
4.61M
      cdf = ec_ctx->coeff_br_cdf[AOMMIN(txs_ctx, TX_32X32)][plane_type][br_ctx];
257
15.7M
      for (int idx = 0; idx < COEFF_BASE_RANGE; idx += BR_CDF_SIZE - 1) {
258
13.4M
        const int k = aom_read_symbol(r, cdf, BR_CDF_SIZE, ACCT_STR);
259
13.4M
        level += k;
260
13.4M
        if (k < BR_CDF_SIZE - 1) break;
261
13.4M
      }
262
4.61M
    }
263
9.00M
    levels[get_padded_idx(pos, bhl)] = level;
264
9.00M
  }
265
9.00M
  if (*eob > 1) {
266
8.18M
    base_cdf_arr base_cdf = ec_ctx->coeff_base_cdf[txs_ctx][plane_type];
267
8.18M
    br_cdf_arr br_cdf =
268
8.18M
        ec_ctx->coeff_br_cdf[AOMMIN(txs_ctx, TX_32X32)][plane_type];
269
8.18M
    if (tx_class == TX_CLASS_2D) {
270
7.59M
      read_coeffs_reverse_2d(r, tx_size, 1, *eob - 1 - 1, scan, bhl, levels,
271
7.59M
                             base_cdf, br_cdf);
272
7.59M
      read_coeffs_reverse(r, tx_size, tx_class, 0, 0, scan, bhl, levels,
273
7.59M
                          base_cdf, br_cdf);
274
7.59M
    } else {
275
595k
      read_coeffs_reverse(r, tx_size, tx_class, 0, *eob - 1 - 1, scan, bhl,
276
595k
                          levels, base_cdf, br_cdf);
277
595k
    }
278
8.18M
  }
279
280
289M
  for (int c = 0; c < *eob; ++c) {
281
280M
    const int pos = scan[c];
282
280M
    uint8_t sign;
283
280M
    tran_low_t level = levels[get_padded_idx(pos, bhl)];
284
280M
    if (level) {
285
189M
      *max_scan_line = AOMMAX(*max_scan_line, pos);
286
189M
      if (c == 0) {
287
8.16M
        const int dc_sign_ctx = txb_ctx->dc_sign_ctx;
288
8.16M
        sign = aom_read_symbol(r, ec_ctx->dc_sign_cdf[plane_type][dc_sign_ctx],
289
8.16M
                               2, ACCT_STR);
290
181M
      } else {
291
181M
        sign = aom_read_bit(r, ACCT_STR);
292
181M
      }
293
189M
      if (level >= MAX_BASE_BR_RANGE) {
294
41.1M
        level += read_golomb(xd, r);
295
41.1M
      }
296
297
189M
      if (c == 0) dc_val = sign ? -level : level;
298
299
      // Bitmasking to clamp level to valid range:
300
      //   The valid range for 8/10/12 bit vdieo is at most 14/16/18 bit
301
189M
      level &= 0xfffff;
302
189M
      cul_level += level;
303
189M
      tran_low_t dq_coeff;
304
      // Bitmasking to clamp dq_coeff to valid range:
305
      //   The valid range for 8/10/12 bit video is at most 17/19/21 bit
306
189M
      dq_coeff =
307
189M
          (tran_low_t)((int64_t)level * get_dqv(dequant, scan[c], iqmatrix) &
308
189M
                       0xffffff);
309
189M
      dq_coeff = dq_coeff >> shift;
310
189M
      if (sign) {
311
100M
        dq_coeff = -dq_coeff;
312
100M
      }
313
189M
      tcoeffs[pos] = clamp(dq_coeff, min_value, max_value);
314
189M
    }
315
280M
  }
316
317
9.00M
  cul_level = AOMMIN(COEFF_CONTEXT_MASK, cul_level);
318
319
  // DC value
320
9.00M
  set_dc_sign(&cul_level, dc_val);
321
322
9.00M
  return cul_level;
323
9.23M
}
324
325
void av1_read_coeffs_txb(const AV1_COMMON *const cm, DecoderCodingBlock *dcb,
326
                         aom_reader *const r, const int plane, const int row,
327
11.4M
                         const int col, const TX_SIZE tx_size) {
328
#if TXCOEFF_TIMER
329
  struct aom_usec_timer timer;
330
  aom_usec_timer_start(&timer);
331
#endif
332
11.4M
  MACROBLOCKD *const xd = &dcb->xd;
333
11.4M
  MB_MODE_INFO *const mbmi = xd->mi[0];
334
11.4M
  struct macroblockd_plane *const pd = &xd->plane[plane];
335
336
11.4M
  const BLOCK_SIZE bsize = mbmi->bsize;
337
11.4M
  assert(bsize < BLOCK_SIZES_ALL);
338
11.4M
  const BLOCK_SIZE plane_bsize =
339
11.4M
      get_plane_block_size(bsize, pd->subsampling_x, pd->subsampling_y);
340
341
11.4M
  TXB_CTX txb_ctx;
342
11.4M
  get_txb_ctx(plane_bsize, tx_size, plane, pd->above_entropy_context + col,
343
11.4M
              pd->left_entropy_context + row, &txb_ctx);
344
11.4M
  const uint8_t cul_level =
345
11.4M
      read_coeffs_txb(cm, dcb, r, row, col, plane, &txb_ctx, tx_size);
346
11.4M
  av1_set_entropy_contexts(xd, pd, plane, plane_bsize, tx_size, cul_level, col,
347
11.4M
                           row);
348
349
11.4M
  if (is_inter_block(mbmi)) {
350
531k
    const PLANE_TYPE plane_type = get_plane_type(plane);
351
    // tx_type will be read out in av1_read_coeffs_txb_facade
352
531k
    const TX_TYPE tx_type = av1_get_tx_type(xd, plane_type, row, col, tx_size,
353
531k
                                            cm->features.reduced_tx_set_used);
354
355
531k
    if (plane == 0) {
356
304k
      const int txw = tx_size_wide_unit[tx_size];
357
304k
      const int txh = tx_size_high_unit[tx_size];
358
      // The 16x16 unit is due to the constraint from tx_64x64 which sets the
359
      // maximum tx size for chroma as 32x32. Coupled with 4x1 transform block
360
      // size, the constraint takes effect in 32x16 / 16x32 size too. To solve
361
      // the intricacy, cover all the 16x16 units inside a 64 level transform.
362
304k
      if (txw == tx_size_wide_unit[TX_64X64] ||
363
300k
          txh == tx_size_high_unit[TX_64X64]) {
364
5.10k
        const int tx_unit = tx_size_wide_unit[TX_16X16];
365
5.10k
        const int stride = xd->tx_type_map_stride;
366
23.1k
        for (int idy = 0; idy < txh; idy += tx_unit) {
367
80.2k
          for (int idx = 0; idx < txw; idx += tx_unit) {
368
62.2k
            xd->tx_type_map[(row + idy) * stride + col + idx] = tx_type;
369
62.2k
          }
370
18.0k
        }
371
5.10k
      }
372
304k
    }
373
531k
  }
374
375
#if TXCOEFF_TIMER
376
  aom_usec_timer_mark(&timer);
377
  const int64_t elapsed_time = aom_usec_timer_elapsed(&timer);
378
  cm->txcoeff_timer += elapsed_time;
379
  ++cm->txb_count;
380
#endif
381
11.4M
}