Coverage Report

Created: 2026-02-26 06:26

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/aom/av1/encoder/txb_rdopt.c
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Count
Source
1
/*
2
 * Copyright (c) 2021, 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/encoder/txb_rdopt.h"
13
#include "av1/encoder/txb_rdopt_utils.h"
14
15
#include "av1/common/idct.h"
16
17
static INLINE void update_coeff_general(
18
    int *accu_rate, int64_t *accu_dist, int si, int eob, TX_SIZE tx_size,
19
    TX_CLASS tx_class, int bwl, int height, int64_t rdmult, int shift,
20
    int dc_sign_ctx, const int16_t *dequant, const int16_t *scan,
21
    const LV_MAP_COEFF_COST *txb_costs, const tran_low_t *tcoeff,
22
    tran_low_t *qcoeff, tran_low_t *dqcoeff, uint8_t *levels,
23
11.4k
    const qm_val_t *iqmatrix) {
24
11.4k
  const int dqv = get_dqv(dequant, scan[si], iqmatrix);
25
11.4k
  const int ci = scan[si];
26
11.4k
  const tran_low_t qc = qcoeff[ci];
27
11.4k
  const int is_last = si == (eob - 1);
28
11.4k
  const int coeff_ctx = get_lower_levels_ctx_general(
29
11.4k
      is_last, si, bwl, height, levels, ci, tx_size, tx_class);
30
11.4k
  if (qc == 0) {
31
0
    *accu_rate += txb_costs->base_cost[coeff_ctx][0];
32
11.4k
  } else {
33
11.4k
    const int sign = (qc < 0) ? 1 : 0;
34
11.4k
    const tran_low_t abs_qc = abs(qc);
35
11.4k
    const tran_low_t tqc = tcoeff[ci];
36
11.4k
    const tran_low_t dqc = dqcoeff[ci];
37
11.4k
    const int64_t dist = get_coeff_dist(tqc, dqc, shift);
38
11.4k
    const int64_t dist0 = get_coeff_dist(tqc, 0, shift);
39
11.4k
    const int rate =
40
11.4k
        get_coeff_cost_general(is_last, ci, abs_qc, sign, coeff_ctx,
41
11.4k
                               dc_sign_ctx, txb_costs, bwl, tx_class, levels);
42
11.4k
    const int64_t rd = RDCOST(rdmult, rate, dist);
43
44
11.4k
    tran_low_t qc_low, dqc_low;
45
11.4k
    tran_low_t abs_qc_low;
46
11.4k
    int64_t dist_low, rd_low;
47
11.4k
    int rate_low;
48
11.4k
    if (abs_qc == 1) {
49
0
      abs_qc_low = qc_low = dqc_low = 0;
50
0
      dist_low = dist0;
51
0
      rate_low = txb_costs->base_cost[coeff_ctx][0];
52
11.4k
    } else {
53
11.4k
      get_qc_dqc_low(abs_qc, sign, dqv, shift, &qc_low, &dqc_low);
54
11.4k
      abs_qc_low = abs_qc - 1;
55
11.4k
      dist_low = get_coeff_dist(tqc, dqc_low, shift);
56
11.4k
      rate_low =
57
11.4k
          get_coeff_cost_general(is_last, ci, abs_qc_low, sign, coeff_ctx,
58
11.4k
                                 dc_sign_ctx, txb_costs, bwl, tx_class, levels);
59
11.4k
    }
60
61
11.4k
    rd_low = RDCOST(rdmult, rate_low, dist_low);
62
11.4k
    if (rd_low < rd) {
63
164
      qcoeff[ci] = qc_low;
64
164
      dqcoeff[ci] = dqc_low;
65
164
      levels[get_padded_idx(ci, bwl)] = AOMMIN(abs_qc_low, INT8_MAX);
66
164
      *accu_rate += rate_low;
67
164
      *accu_dist += dist_low - dist0;
68
11.3k
    } else {
69
11.3k
      *accu_rate += rate;
70
11.3k
      *accu_dist += dist - dist0;
71
11.3k
    }
72
11.4k
  }
73
11.4k
}
74
75
static AOM_FORCE_INLINE void update_coeff_simple(
76
    int *accu_rate, int si, int eob, TX_SIZE tx_size, TX_CLASS tx_class,
77
    int bwl, int64_t rdmult, int shift, const int16_t *dequant,
78
    const int16_t *scan, const LV_MAP_COEFF_COST *txb_costs,
79
    const tran_low_t *tcoeff, tran_low_t *qcoeff, tran_low_t *dqcoeff,
80
15.3k
    uint8_t *levels, const qm_val_t *iqmatrix) {
81
15.3k
  const int dqv = get_dqv(dequant, scan[si], iqmatrix);
82
15.3k
  (void)eob;
83
  // this simple version assumes the coeff's scan_idx is not DC (scan_idx != 0)
84
  // and not the last (scan_idx != eob - 1)
85
15.3k
  assert(si != eob - 1);
86
15.3k
  assert(si > 0);
87
15.3k
  const int ci = scan[si];
88
15.3k
  const tran_low_t qc = qcoeff[ci];
89
15.3k
  const int coeff_ctx =
90
15.3k
      get_lower_levels_ctx(levels, ci, bwl, tx_size, tx_class);
91
15.3k
  if (qc == 0) {
92
9.44k
    *accu_rate += txb_costs->base_cost[coeff_ctx][0];
93
9.44k
  } else {
94
5.88k
    const tran_low_t abs_qc = abs(qc);
95
5.88k
    const tran_low_t abs_tqc = abs(tcoeff[ci]);
96
5.88k
    const tran_low_t abs_dqc = abs(dqcoeff[ci]);
97
5.88k
    int rate_low = 0;
98
5.88k
    const int rate = get_two_coeff_cost_simple(
99
5.88k
        ci, abs_qc, coeff_ctx, txb_costs, bwl, tx_class, levels, &rate_low);
100
5.88k
    if (abs_dqc < abs_tqc) {
101
2.29k
      *accu_rate += rate;
102
2.29k
      return;
103
2.29k
    }
104
105
3.58k
    const int64_t dist = get_coeff_dist(abs_tqc, abs_dqc, shift);
106
3.58k
    const int64_t rd = RDCOST(rdmult, rate, dist);
107
108
3.58k
    const tran_low_t abs_qc_low = abs_qc - 1;
109
3.58k
    const tran_low_t abs_dqc_low = (abs_qc_low * dqv) >> shift;
110
3.58k
    const int64_t dist_low = get_coeff_dist(abs_tqc, abs_dqc_low, shift);
111
3.58k
    const int64_t rd_low = RDCOST(rdmult, rate_low, dist_low);
112
113
3.58k
    if (rd_low < rd) {
114
395
      const int sign = (qc < 0) ? 1 : 0;
115
395
      qcoeff[ci] = (-sign ^ abs_qc_low) + sign;
116
395
      dqcoeff[ci] = (-sign ^ abs_dqc_low) + sign;
117
395
      levels[get_padded_idx(ci, bwl)] = AOMMIN(abs_qc_low, INT8_MAX);
118
395
      *accu_rate += rate_low;
119
3.18k
    } else {
120
3.18k
      *accu_rate += rate;
121
3.18k
    }
122
3.58k
  }
123
15.3k
}
124
125
static AOM_FORCE_INLINE void update_coeff_eob(
126
    int *accu_rate, int64_t *accu_dist, int *eob, int *nz_num, int *nz_ci,
127
    int si, TX_SIZE tx_size, TX_CLASS tx_class, int bwl, int height,
128
    int dc_sign_ctx, int64_t rdmult, int shift, const int16_t *dequant,
129
    const int16_t *scan, const LV_MAP_EOB_COST *txb_eob_costs,
130
    const LV_MAP_COEFF_COST *txb_costs, const tran_low_t *tcoeff,
131
    tran_low_t *qcoeff, tran_low_t *dqcoeff, uint8_t *levels, int sharpness,
132
12.0k
    const qm_val_t *iqmatrix) {
133
12.0k
  const int dqv = get_dqv(dequant, scan[si], iqmatrix);
134
12.0k
  assert(si != *eob - 1);
135
12.0k
  const int ci = scan[si];
136
12.0k
  const tran_low_t qc = qcoeff[ci];
137
12.0k
  const int coeff_ctx =
138
12.0k
      get_lower_levels_ctx(levels, ci, bwl, tx_size, tx_class);
139
12.0k
  if (qc == 0) {
140
9.24k
    *accu_rate += txb_costs->base_cost[coeff_ctx][0];
141
9.24k
  } else {
142
2.84k
    int lower_level = 0;
143
2.84k
    const tran_low_t abs_qc = abs(qc);
144
2.84k
    const tran_low_t tqc = tcoeff[ci];
145
2.84k
    const tran_low_t dqc = dqcoeff[ci];
146
2.84k
    const int sign = (qc < 0) ? 1 : 0;
147
2.84k
    const int64_t dist0 = get_coeff_dist(tqc, 0, shift);
148
2.84k
    int64_t dist = get_coeff_dist(tqc, dqc, shift) - dist0;
149
2.84k
    int rate =
150
2.84k
        get_coeff_cost_general(0, ci, abs_qc, sign, coeff_ctx, dc_sign_ctx,
151
2.84k
                               txb_costs, bwl, tx_class, levels);
152
2.84k
    int64_t rd = RDCOST(rdmult, *accu_rate + rate, *accu_dist + dist);
153
154
2.84k
    tran_low_t qc_low, dqc_low;
155
2.84k
    tran_low_t abs_qc_low;
156
2.84k
    int64_t dist_low, rd_low;
157
2.84k
    int rate_low;
158
159
2.84k
    if (abs_qc == 1) {
160
2.66k
      abs_qc_low = 0;
161
2.66k
      dqc_low = qc_low = 0;
162
2.66k
      dist_low = 0;
163
2.66k
      rate_low = txb_costs->base_cost[coeff_ctx][0];
164
2.66k
      rd_low = RDCOST(rdmult, *accu_rate + rate_low, *accu_dist);
165
2.66k
    } else {
166
174
      get_qc_dqc_low(abs_qc, sign, dqv, shift, &qc_low, &dqc_low);
167
174
      abs_qc_low = abs_qc - 1;
168
174
      dist_low = get_coeff_dist(tqc, dqc_low, shift) - dist0;
169
174
      rate_low =
170
174
          get_coeff_cost_general(0, ci, abs_qc_low, sign, coeff_ctx,
171
174
                                 dc_sign_ctx, txb_costs, bwl, tx_class, levels);
172
174
      rd_low = RDCOST(rdmult, *accu_rate + rate_low, *accu_dist + dist_low);
173
174
    }
174
175
2.84k
    int lower_level_new_eob = 0;
176
2.84k
    const int new_eob = si + 1;
177
2.84k
    const int coeff_ctx_new_eob = get_lower_levels_ctx_eob(bwl, height, si);
178
2.84k
    const int new_eob_cost =
179
2.84k
        get_eob_cost(new_eob, txb_eob_costs, txb_costs, tx_class);
180
2.84k
    int rate_coeff_eob =
181
2.84k
        new_eob_cost + get_coeff_cost_eob(ci, abs_qc, sign, coeff_ctx_new_eob,
182
2.84k
                                          dc_sign_ctx, txb_costs, bwl,
183
2.84k
                                          tx_class);
184
2.84k
    int64_t dist_new_eob = dist;
185
2.84k
    int64_t rd_new_eob = RDCOST(rdmult, rate_coeff_eob, dist_new_eob);
186
187
2.84k
    if (abs_qc_low > 0) {
188
174
      const int rate_coeff_eob_low =
189
174
          new_eob_cost + get_coeff_cost_eob(ci, abs_qc_low, sign,
190
174
                                            coeff_ctx_new_eob, dc_sign_ctx,
191
174
                                            txb_costs, bwl, tx_class);
192
174
      const int64_t dist_new_eob_low = dist_low;
193
174
      const int64_t rd_new_eob_low =
194
174
          RDCOST(rdmult, rate_coeff_eob_low, dist_new_eob_low);
195
174
      if (rd_new_eob_low < rd_new_eob) {
196
6
        lower_level_new_eob = 1;
197
6
        rd_new_eob = rd_new_eob_low;
198
6
        rate_coeff_eob = rate_coeff_eob_low;
199
6
        dist_new_eob = dist_new_eob_low;
200
6
      }
201
174
    }
202
203
2.84k
    if (sharpness == 0 || abs_qc > 1) {
204
2.84k
      if (rd_low < rd) {
205
541
        lower_level = 1;
206
541
        rd = rd_low;
207
541
        rate = rate_low;
208
541
        dist = dist_low;
209
541
      }
210
2.84k
    }
211
212
2.84k
    if (sharpness == 0 && rd_new_eob < rd) {
213
2.24k
      for (int ni = 0; ni < *nz_num; ++ni) {
214
1.14k
        int last_ci = nz_ci[ni];
215
1.14k
        levels[get_padded_idx(last_ci, bwl)] = 0;
216
1.14k
        qcoeff[last_ci] = 0;
217
1.14k
        dqcoeff[last_ci] = 0;
218
1.14k
      }
219
1.10k
      *eob = new_eob;
220
1.10k
      *nz_num = 0;
221
1.10k
      *accu_rate = rate_coeff_eob;
222
1.10k
      *accu_dist = dist_new_eob;
223
1.10k
      lower_level = lower_level_new_eob;
224
1.74k
    } else {
225
1.74k
      *accu_rate += rate;
226
1.74k
      *accu_dist += dist;
227
1.74k
    }
228
229
2.84k
    if (lower_level) {
230
152
      qcoeff[ci] = qc_low;
231
152
      dqcoeff[ci] = dqc_low;
232
152
      levels[get_padded_idx(ci, bwl)] = AOMMIN(abs_qc_low, INT8_MAX);
233
152
    }
234
2.84k
    if (qcoeff[ci]) {
235
2.69k
      nz_ci[*nz_num] = ci;
236
2.69k
      ++*nz_num;
237
2.69k
    }
238
2.84k
  }
239
12.0k
}
240
241
static INLINE void update_skip(int *accu_rate, int64_t accu_dist, int *eob,
242
                               int nz_num, int *nz_ci, int64_t rdmult,
243
                               int skip_cost, int non_skip_cost,
244
41.2k
                               tran_low_t *qcoeff, tran_low_t *dqcoeff) {
245
41.2k
  const int64_t rd = RDCOST(rdmult, *accu_rate + non_skip_cost, accu_dist);
246
41.2k
  const int64_t rd_new_eob = RDCOST(rdmult, skip_cost, 0);
247
41.2k
  if (rd_new_eob < rd) {
248
34.4k
    for (int i = 0; i < nz_num; ++i) {
249
17.2k
      const int ci = nz_ci[i];
250
17.2k
      qcoeff[ci] = 0;
251
17.2k
      dqcoeff[ci] = 0;
252
      // no need to set up levels because this is the last step
253
      // levels[get_padded_idx(ci, bwl)] = 0;
254
17.2k
    }
255
17.2k
    *accu_rate = 0;
256
17.2k
    *eob = 0;
257
17.2k
  }
258
41.2k
}
259
260
// TODO(angiebird): use this function whenever it's possible
261
static int get_tx_type_cost(const MACROBLOCK *x, const MACROBLOCKD *xd,
262
                            int plane, TX_SIZE tx_size, TX_TYPE tx_type,
263
67.2k
                            int reduced_tx_set_used) {
264
67.2k
  if (plane > 0) return 0;
265
266
31.8k
  const TX_SIZE square_tx_size = txsize_sqr_map[tx_size];
267
268
31.8k
  const MB_MODE_INFO *mbmi = xd->mi[0];
269
31.8k
  const int is_inter = is_inter_block(mbmi);
270
31.8k
  if (get_ext_tx_types(tx_size, is_inter, reduced_tx_set_used) > 1 &&
271
18.2k
      !xd->lossless[xd->mi[0]->segment_id]) {
272
13.5k
    const int ext_tx_set =
273
13.5k
        get_ext_tx_set(tx_size, is_inter, reduced_tx_set_used);
274
13.5k
    if (is_inter) {
275
0
      if (ext_tx_set > 0)
276
0
        return x->mode_costs
277
0
            .inter_tx_type_costs[ext_tx_set][square_tx_size][tx_type];
278
13.5k
    } else {
279
13.5k
      if (ext_tx_set > 0) {
280
13.5k
        PREDICTION_MODE intra_dir;
281
13.5k
        if (mbmi->filter_intra_mode_info.use_filter_intra)
282
0
          intra_dir = fimode_to_intradir[mbmi->filter_intra_mode_info
283
0
                                             .filter_intra_mode];
284
13.5k
        else
285
13.5k
          intra_dir = mbmi->mode;
286
13.5k
        return x->mode_costs.intra_tx_type_costs[ext_tx_set][square_tx_size]
287
13.5k
                                                [intra_dir][tx_type];
288
13.5k
      }
289
13.5k
    }
290
13.5k
  }
291
18.2k
  return 0;
292
31.8k
}
293
294
int av1_optimize_txb(const struct AV1_COMP *cpi, MACROBLOCK *x, int plane,
295
                     int block, TX_SIZE tx_size, TX_TYPE tx_type,
296
                     const TXB_CTX *const txb_ctx, int *rate_cost,
297
42.0k
                     int sharpness) {
298
42.0k
  MACROBLOCKD *xd = &x->e_mbd;
299
42.0k
  const struct macroblock_plane *p = &x->plane[plane];
300
42.0k
  const SCAN_ORDER *scan_order = get_scan(tx_size, tx_type);
301
42.0k
  const int16_t *scan = scan_order->scan;
302
42.0k
  const int shift = av1_get_tx_scale(tx_size);
303
42.0k
  int eob = p->eobs[block];
304
42.0k
  const int16_t *dequant = p->dequant_QTX;
305
42.0k
  const qm_val_t *iqmatrix =
306
42.0k
      av1_get_iqmatrix(&cpi->common.quant_params, xd, plane, tx_size, tx_type);
307
42.0k
  const int block_offset = BLOCK_OFFSET(block);
308
42.0k
  tran_low_t *qcoeff = p->qcoeff + block_offset;
309
42.0k
  tran_low_t *dqcoeff = p->dqcoeff + block_offset;
310
42.0k
  const tran_low_t *tcoeff = p->coeff + block_offset;
311
42.0k
  const CoeffCosts *coeff_costs = &x->coeff_costs;
312
313
  // This function is not called if eob = 0.
314
42.0k
  assert(eob > 0);
315
316
42.0k
  const AV1_COMMON *cm = &cpi->common;
317
42.0k
  const PLANE_TYPE plane_type = get_plane_type(plane);
318
42.0k
  const TX_SIZE txs_ctx = get_txsize_entropy_ctx(tx_size);
319
42.0k
  const TX_CLASS tx_class = tx_type_to_class[tx_type];
320
42.0k
  const MB_MODE_INFO *mbmi = xd->mi[0];
321
42.0k
  const int bwl = get_txb_bwl(tx_size);
322
42.0k
  const int width = get_txb_wide(tx_size);
323
42.0k
  const int height = get_txb_high(tx_size);
324
42.0k
  assert(width == (1 << bwl));
325
42.0k
  const int is_inter = is_inter_block(mbmi);
326
42.0k
  const LV_MAP_COEFF_COST *txb_costs =
327
42.0k
      &coeff_costs->coeff_costs[txs_ctx][plane_type];
328
42.0k
  const int eob_multi_size = txsize_log2_minus4[tx_size];
329
42.0k
  const LV_MAP_EOB_COST *txb_eob_costs =
330
42.0k
      &coeff_costs->eob_costs[eob_multi_size][plane_type];
331
332
42.0k
  const int rshift = 2;
333
334
42.0k
  const int64_t rdmult =
335
42.0k
      (((int64_t)x->rdmult *
336
42.0k
        (plane_rd_mult[is_inter][plane_type] << (2 * (xd->bd - 8)))) +
337
42.0k
       2) >>
338
42.0k
      rshift;
339
340
42.0k
  uint8_t levels_buf[TX_PAD_2D];
341
42.0k
  uint8_t *const levels = set_levels(levels_buf, width);
342
343
42.0k
  if (eob > 1) av1_txb_init_levels(qcoeff, width, height, levels);
344
345
  // TODO(angirbird): check iqmatrix
346
347
42.0k
  const int non_skip_cost = txb_costs->txb_skip_cost[txb_ctx->txb_skip_ctx][0];
348
42.0k
  const int skip_cost = txb_costs->txb_skip_cost[txb_ctx->txb_skip_ctx][1];
349
42.0k
  const int eob_cost = get_eob_cost(eob, txb_eob_costs, txb_costs, tx_class);
350
42.0k
  int accu_rate = eob_cost;
351
42.0k
  int64_t accu_dist = 0;
352
42.0k
  int si = eob - 1;
353
42.0k
  const int ci = scan[si];
354
42.0k
  const tran_low_t qc = qcoeff[ci];
355
42.0k
  const tran_low_t abs_qc = abs(qc);
356
42.0k
  const int sign = qc < 0;
357
42.0k
  const int max_nz_num = 2;
358
42.0k
  int nz_num = 1;
359
42.0k
  int nz_ci[3] = { ci, 0, 0 };
360
42.0k
  if (abs_qc >= 2) {
361
10.8k
    update_coeff_general(&accu_rate, &accu_dist, si, eob, tx_size, tx_class,
362
10.8k
                         bwl, height, rdmult, shift, txb_ctx->dc_sign_ctx,
363
10.8k
                         dequant, scan, txb_costs, tcoeff, qcoeff, dqcoeff,
364
10.8k
                         levels, iqmatrix);
365
10.8k
    --si;
366
31.1k
  } else {
367
31.1k
    assert(abs_qc == 1);
368
31.1k
    const int coeff_ctx = get_lower_levels_ctx_eob(bwl, height, si);
369
31.1k
    accu_rate +=
370
31.1k
        get_coeff_cost_eob(ci, abs_qc, sign, coeff_ctx, txb_ctx->dc_sign_ctx,
371
31.1k
                           txb_costs, bwl, tx_class);
372
31.1k
    const tran_low_t tqc = tcoeff[ci];
373
31.1k
    const tran_low_t dqc = dqcoeff[ci];
374
31.1k
    const int64_t dist = get_coeff_dist(tqc, dqc, shift);
375
31.1k
    const int64_t dist0 = get_coeff_dist(tqc, 0, shift);
376
31.1k
    accu_dist += dist - dist0;
377
31.1k
    --si;
378
31.1k
  }
379
380
42.0k
#define UPDATE_COEFF_EOB_CASE(tx_class_literal)                            \
381
42.0k
  case tx_class_literal:                                                   \
382
54.1k
    for (; si >= 0 && nz_num <= max_nz_num; --si) {                        \
383
12.0k
      update_coeff_eob(&accu_rate, &accu_dist, &eob, &nz_num, nz_ci, si,   \
384
12.0k
                       tx_size, tx_class_literal, bwl, height,             \
385
12.0k
                       txb_ctx->dc_sign_ctx, rdmult, shift, dequant, scan, \
386
12.0k
                       txb_eob_costs, txb_costs, tcoeff, qcoeff, dqcoeff,  \
387
12.0k
                       levels, sharpness, iqmatrix);                       \
388
12.0k
    }                                                                      \
389
42.0k
    break;
390
42.0k
  switch (tx_class) {
391
42.0k
    UPDATE_COEFF_EOB_CASE(TX_CLASS_2D);
392
0
    UPDATE_COEFF_EOB_CASE(TX_CLASS_HORIZ);
393
0
    UPDATE_COEFF_EOB_CASE(TX_CLASS_VERT);
394
0
#undef UPDATE_COEFF_EOB_CASE
395
0
    default: assert(false);
396
42.0k
  }
397
398
42.0k
  if (si == -1 && nz_num <= max_nz_num && sharpness == 0) {
399
41.2k
    update_skip(&accu_rate, accu_dist, &eob, nz_num, nz_ci, rdmult, skip_cost,
400
41.2k
                non_skip_cost, qcoeff, dqcoeff);
401
41.2k
  }
402
403
42.0k
#define UPDATE_COEFF_SIMPLE_CASE(tx_class_literal)                             \
404
42.0k
  case tx_class_literal:                                                       \
405
57.3k
    for (; si >= 1; --si) {                                                    \
406
15.3k
      update_coeff_simple(&accu_rate, si, eob, tx_size, tx_class_literal, bwl, \
407
15.3k
                          rdmult, shift, dequant, scan, txb_costs, tcoeff,     \
408
15.3k
                          qcoeff, dqcoeff, levels, iqmatrix);                  \
409
15.3k
    }                                                                          \
410
42.0k
    break;
411
42.0k
  switch (tx_class) {
412
42.0k
    UPDATE_COEFF_SIMPLE_CASE(TX_CLASS_2D);
413
0
    UPDATE_COEFF_SIMPLE_CASE(TX_CLASS_HORIZ);
414
0
    UPDATE_COEFF_SIMPLE_CASE(TX_CLASS_VERT);
415
0
#undef UPDATE_COEFF_SIMPLE_CASE
416
0
    default: assert(false);
417
42.0k
  }
418
419
  // DC position
420
42.0k
  if (si == 0) {
421
    // no need to update accu_dist because it's not used after this point
422
601
    int64_t dummy_dist = 0;
423
601
    update_coeff_general(&accu_rate, &dummy_dist, si, eob, tx_size, tx_class,
424
601
                         bwl, height, rdmult, shift, txb_ctx->dc_sign_ctx,
425
601
                         dequant, scan, txb_costs, tcoeff, qcoeff, dqcoeff,
426
601
                         levels, iqmatrix);
427
601
  }
428
429
42.0k
  const int tx_type_cost = get_tx_type_cost(x, xd, plane, tx_size, tx_type,
430
42.0k
                                            cm->features.reduced_tx_set_used);
431
42.0k
  if (eob == 0)
432
17.2k
    accu_rate += skip_cost;
433
24.8k
  else
434
24.8k
    accu_rate += non_skip_cost + tx_type_cost;
435
436
42.0k
  p->eobs[block] = eob;
437
42.0k
  p->txb_entropy_ctx[block] =
438
42.0k
      av1_get_txb_entropy_context(qcoeff, scan_order, p->eobs[block]);
439
440
42.0k
  *rate_cost = accu_rate;
441
42.0k
  return eob;
442
42.0k
}
443
444
static AOM_FORCE_INLINE int warehouse_efficients_txb(
445
    const MACROBLOCK *x, const int plane, const int block,
446
    const TX_SIZE tx_size, const TXB_CTX *const txb_ctx,
447
    const struct macroblock_plane *p, const int eob,
448
    const PLANE_TYPE plane_type, const LV_MAP_COEFF_COST *const coeff_costs,
449
    const MACROBLOCKD *const xd, const TX_TYPE tx_type, const TX_CLASS tx_class,
450
25.1k
    int reduced_tx_set_used) {
451
25.1k
  const tran_low_t *const qcoeff = p->qcoeff + BLOCK_OFFSET(block);
452
25.1k
  const int txb_skip_ctx = txb_ctx->txb_skip_ctx;
453
25.1k
  const int bwl = get_txb_bwl(tx_size);
454
25.1k
  const int width = get_txb_wide(tx_size);
455
25.1k
  const int height = get_txb_high(tx_size);
456
25.1k
  const SCAN_ORDER *const scan_order = get_scan(tx_size, tx_type);
457
25.1k
  const int16_t *const scan = scan_order->scan;
458
25.1k
  uint8_t levels_buf[TX_PAD_2D];
459
25.1k
  uint8_t *const levels = set_levels(levels_buf, width);
460
25.1k
  DECLARE_ALIGNED(16, int8_t, coeff_contexts[MAX_TX_SQUARE]);
461
25.1k
  const int eob_multi_size = txsize_log2_minus4[tx_size];
462
25.1k
  const LV_MAP_EOB_COST *const eob_costs =
463
25.1k
      &x->coeff_costs.eob_costs[eob_multi_size][plane_type];
464
25.1k
  int cost = coeff_costs->txb_skip_cost[txb_skip_ctx][0];
465
466
25.1k
  av1_txb_init_levels(qcoeff, width, height, levels);
467
468
25.1k
  cost += get_tx_type_cost(x, xd, plane, tx_size, tx_type, reduced_tx_set_used);
469
470
25.1k
  cost += get_eob_cost(eob, eob_costs, coeff_costs, tx_class);
471
472
25.1k
  av1_get_nz_map_contexts(levels, scan, eob, tx_size, tx_class, coeff_contexts);
473
474
25.1k
  const int(*lps_cost)[COEFF_BASE_RANGE + 1 + COEFF_BASE_RANGE + 1] =
475
25.1k
      coeff_costs->lps_cost;
476
25.1k
  int c = eob - 1;
477
25.1k
  {
478
25.1k
    const int pos = scan[c];
479
25.1k
    const tran_low_t v = qcoeff[pos];
480
25.1k
    const int sign = AOMSIGN(v);
481
25.1k
    const int level = (v ^ sign) - sign;
482
25.1k
    const int coeff_ctx = coeff_contexts[pos];
483
25.1k
    cost += coeff_costs->base_eob_cost[coeff_ctx][AOMMIN(level, 3) - 1];
484
485
25.1k
    if (v) {
486
      // sign bit cost
487
25.1k
      if (level > NUM_BASE_LEVELS) {
488
20.6k
        const int ctx = get_br_ctx_eob(pos, bwl, tx_class);
489
20.6k
        cost += get_br_cost(level, lps_cost[ctx]);
490
20.6k
      }
491
25.1k
      if (c) {
492
6.07k
        cost += av1_cost_literal(1);
493
19.0k
      } else {
494
19.0k
        const int sign01 = (sign ^ sign) - sign;
495
19.0k
        const int dc_sign_ctx = txb_ctx->dc_sign_ctx;
496
19.0k
        cost += coeff_costs->dc_sign_cost[dc_sign_ctx][sign01];
497
19.0k
        return cost;
498
19.0k
      }
499
25.1k
    }
500
25.1k
  }
501
6.07k
  const int(*base_cost)[8] = coeff_costs->base_cost;
502
389k
  for (c = eob - 2; c >= 1; --c) {
503
383k
    const int pos = scan[c];
504
383k
    const int coeff_ctx = coeff_contexts[pos];
505
383k
    const tran_low_t v = qcoeff[pos];
506
383k
    const int level = abs(v);
507
383k
    cost += base_cost[coeff_ctx][AOMMIN(level, 3)];
508
383k
    if (v) {
509
      // sign bit cost
510
135k
      cost += av1_cost_literal(1);
511
135k
      if (level > NUM_BASE_LEVELS) {
512
67.7k
        const int ctx = get_br_ctx(levels, pos, bwl, tx_class);
513
67.7k
        cost += get_br_cost(level, lps_cost[ctx]);
514
67.7k
      }
515
135k
    }
516
383k
  }
517
  // c == 0 after previous loop
518
6.07k
  {
519
6.07k
    const int pos = scan[c];
520
6.07k
    const tran_low_t v = qcoeff[pos];
521
6.07k
    const int coeff_ctx = coeff_contexts[pos];
522
6.07k
    const int sign = AOMSIGN(v);
523
6.07k
    const int level = (v ^ sign) - sign;
524
6.07k
    cost += base_cost[coeff_ctx][AOMMIN(level, 3)];
525
526
6.07k
    if (v) {
527
      // sign bit cost
528
6.07k
      const int sign01 = (sign ^ sign) - sign;
529
6.07k
      const int dc_sign_ctx = txb_ctx->dc_sign_ctx;
530
6.07k
      cost += coeff_costs->dc_sign_cost[dc_sign_ctx][sign01];
531
6.07k
      if (level > NUM_BASE_LEVELS) {
532
6.07k
        const int ctx = get_br_ctx(levels, pos, bwl, tx_class);
533
6.07k
        cost += get_br_cost(level, lps_cost[ctx]);
534
6.07k
      }
535
6.07k
    }
536
6.07k
  }
537
6.07k
  return cost;
538
25.1k
}
539
540
int av1_cost_coeffs_txb_estimate(const MACROBLOCK *x, const int plane,
541
                                 const int block, const TX_SIZE tx_size,
542
0
                                 const TX_TYPE tx_type) {
543
0
  assert(plane == 0);
544
545
0
  int cost = 0;
546
0
  const struct macroblock_plane *p = &x->plane[plane];
547
0
  const SCAN_ORDER *scan_order = get_scan(tx_size, tx_type);
548
0
  const int16_t *scan = scan_order->scan;
549
0
  tran_low_t *qcoeff = p->qcoeff + BLOCK_OFFSET(block);
550
551
0
  int eob = p->eobs[block];
552
553
  // coeffs
554
0
  int c = eob - 1;
555
  // eob
556
0
  {
557
0
    const int pos = scan[c];
558
0
    const tran_low_t v = abs(qcoeff[pos]) - 1;
559
0
    cost += (v << (AV1_PROB_COST_SHIFT + 2));
560
0
  }
561
  // other coeffs
562
0
  for (c = eob - 2; c >= 0; c--) {
563
0
    const int pos = scan[c];
564
0
    const tran_low_t v = abs(qcoeff[pos]);
565
0
    const int idx = AOMMIN(v, 14);
566
567
0
    cost += costLUT[idx];
568
0
  }
569
570
  // const_term does not contain DC, and log(e) does not contain eob, so both
571
  // (eob-1)
572
0
  cost += (const_term + loge_par) * (eob - 1);
573
574
0
  return cost;
575
0
}
576
577
static AOM_FORCE_INLINE int warehouse_efficients_txb_laplacian(
578
    const MACROBLOCK *x, const int plane, const int block,
579
    const TX_SIZE tx_size, const TXB_CTX *const txb_ctx, const int eob,
580
    const PLANE_TYPE plane_type, const LV_MAP_COEFF_COST *const coeff_costs,
581
    const MACROBLOCKD *const xd, const TX_TYPE tx_type, const TX_CLASS tx_class,
582
0
    int reduced_tx_set_used) {
583
0
  const int txb_skip_ctx = txb_ctx->txb_skip_ctx;
584
585
0
  const int eob_multi_size = txsize_log2_minus4[tx_size];
586
0
  const LV_MAP_EOB_COST *const eob_costs =
587
0
      &x->coeff_costs.eob_costs[eob_multi_size][plane_type];
588
0
  int cost = coeff_costs->txb_skip_cost[txb_skip_ctx][0];
589
590
0
  cost += get_tx_type_cost(x, xd, plane, tx_size, tx_type, reduced_tx_set_used);
591
592
0
  cost += get_eob_cost(eob, eob_costs, coeff_costs, tx_class);
593
594
0
  cost += av1_cost_coeffs_txb_estimate(x, plane, block, tx_size, tx_type);
595
0
  return cost;
596
0
}
597
598
int av1_cost_coeffs_txb(const MACROBLOCK *x, const int plane, const int block,
599
                        const TX_SIZE tx_size, const TX_TYPE tx_type,
600
11.6M
                        const TXB_CTX *const txb_ctx, int reduced_tx_set_used) {
601
11.6M
  const struct macroblock_plane *p = &x->plane[plane];
602
11.6M
  const int eob = p->eobs[block];
603
11.6M
  const TX_SIZE txs_ctx = get_txsize_entropy_ctx(tx_size);
604
11.6M
  const PLANE_TYPE plane_type = get_plane_type(plane);
605
11.6M
  const LV_MAP_COEFF_COST *const coeff_costs =
606
11.6M
      &x->coeff_costs.coeff_costs[txs_ctx][plane_type];
607
11.6M
  if (eob == 0) {
608
11.6M
    return coeff_costs->txb_skip_cost[txb_ctx->txb_skip_ctx][1];
609
11.6M
  }
610
611
25.4k
  const MACROBLOCKD *const xd = &x->e_mbd;
612
25.4k
  const TX_CLASS tx_class = tx_type_to_class[tx_type];
613
614
25.4k
  return warehouse_efficients_txb(x, plane, block, tx_size, txb_ctx, p, eob,
615
25.4k
                                  plane_type, coeff_costs, xd, tx_type,
616
25.4k
                                  tx_class, reduced_tx_set_used);
617
11.6M
}
618
619
int av1_cost_coeffs_txb_laplacian(const MACROBLOCK *x, const int plane,
620
                                  const int block, const TX_SIZE tx_size,
621
                                  const TX_TYPE tx_type,
622
                                  const TXB_CTX *const txb_ctx,
623
                                  const int reduced_tx_set_used,
624
0
                                  const int adjust_eob) {
625
0
  const struct macroblock_plane *p = &x->plane[plane];
626
0
  int eob = p->eobs[block];
627
628
0
  if (adjust_eob) {
629
0
    const SCAN_ORDER *scan_order = get_scan(tx_size, tx_type);
630
0
    const int16_t *scan = scan_order->scan;
631
0
    tran_low_t *tcoeff = p->coeff + BLOCK_OFFSET(block);
632
0
    tran_low_t *qcoeff = p->qcoeff + BLOCK_OFFSET(block);
633
0
    tran_low_t *dqcoeff = p->dqcoeff + BLOCK_OFFSET(block);
634
0
    update_coeff_eob_fast(&eob, av1_get_tx_scale(tx_size), p->dequant_QTX, scan,
635
0
                          tcoeff, qcoeff, dqcoeff);
636
0
    p->eobs[block] = eob;
637
0
  }
638
639
0
  const TX_SIZE txs_ctx = get_txsize_entropy_ctx(tx_size);
640
0
  const PLANE_TYPE plane_type = get_plane_type(plane);
641
0
  const LV_MAP_COEFF_COST *const coeff_costs =
642
0
      &x->coeff_costs.coeff_costs[txs_ctx][plane_type];
643
0
  if (eob == 0) {
644
0
    return coeff_costs->txb_skip_cost[txb_ctx->txb_skip_ctx][1];
645
0
  }
646
647
0
  const MACROBLOCKD *const xd = &x->e_mbd;
648
0
  const TX_CLASS tx_class = tx_type_to_class[tx_type];
649
650
0
  return warehouse_efficients_txb_laplacian(
651
0
      x, plane, block, tx_size, txb_ctx, eob, plane_type, coeff_costs, xd,
652
0
      tx_type, tx_class, reduced_tx_set_used);
653
0
}