Coverage Report

Created: 2026-07-30 06:27

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/aom/av1/encoder/hybrid_fwd_txfm.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 "config/aom_config.h"
13
#include "config/av1_rtcd.h"
14
#include "config/aom_dsp_rtcd.h"
15
16
#include "av1/common/idct.h"
17
#include "av1/common/blockd.h"
18
#include "av1/encoder/hybrid_fwd_txfm.h"
19
20
/* 4-point reversible, orthonormal Walsh-Hadamard in 3.5 adds, 0.5 shifts per
21
   pixel. */
22
11.1M
void av1_fwht4x4_c(const int16_t *input, tran_low_t *output, int stride) {
23
11.1M
  int i;
24
11.1M
  tran_high_t a1, b1, c1, d1, e1;
25
11.1M
  const int16_t *ip_pass0 = input;
26
11.1M
  const tran_low_t *ip = NULL;
27
11.1M
  tran_low_t *op = output;
28
29
55.5M
  for (i = 0; i < 4; i++) {
30
44.4M
    a1 = ip_pass0[0 * stride];
31
44.4M
    b1 = ip_pass0[1 * stride];
32
44.4M
    c1 = ip_pass0[2 * stride];
33
44.4M
    d1 = ip_pass0[3 * stride];
34
35
44.4M
    a1 += b1;
36
44.4M
    d1 = d1 - c1;
37
44.4M
    e1 = (a1 - d1) >> 1;
38
44.4M
    b1 = e1 - b1;
39
44.4M
    c1 = e1 - c1;
40
44.4M
    a1 -= c1;
41
44.4M
    d1 += b1;
42
44.4M
    op[0] = (tran_low_t)a1;
43
44.4M
    op[4] = (tran_low_t)c1;
44
44.4M
    op[8] = (tran_low_t)d1;
45
44.4M
    op[12] = (tran_low_t)b1;
46
47
44.4M
    ip_pass0++;
48
44.4M
    op++;
49
44.4M
  }
50
11.1M
  ip = output;
51
11.1M
  op = output;
52
53
55.5M
  for (i = 0; i < 4; i++) {
54
44.4M
    a1 = ip[0];
55
44.4M
    b1 = ip[1];
56
44.4M
    c1 = ip[2];
57
44.4M
    d1 = ip[3];
58
59
44.4M
    a1 += b1;
60
44.4M
    d1 -= c1;
61
44.4M
    e1 = (a1 - d1) >> 1;
62
44.4M
    b1 = e1 - b1;
63
44.4M
    c1 = e1 - c1;
64
44.4M
    a1 -= c1;
65
44.4M
    d1 += b1;
66
44.4M
    op[0] = (tran_low_t)(a1 * UNIT_QUANT_FACTOR);
67
44.4M
    op[1] = (tran_low_t)(c1 * UNIT_QUANT_FACTOR);
68
44.4M
    op[2] = (tran_low_t)(d1 * UNIT_QUANT_FACTOR);
69
44.4M
    op[3] = (tran_low_t)(b1 * UNIT_QUANT_FACTOR);
70
71
44.4M
    ip += 4;
72
44.4M
    op += 4;
73
44.4M
  }
74
11.1M
}
75
76
void av1_highbd_fwht4x4_c(const int16_t *input, tran_low_t *output,
77
11.1M
                          int stride) {
78
11.1M
  av1_fwht4x4_c(input, output, stride);
79
11.1M
}
80
81
static void highbd_fwd_txfm_4x4(const int16_t *src_diff, tran_low_t *coeff,
82
11.2M
                                int diff_stride, TxfmParam *txfm_param) {
83
11.2M
  int32_t *dst_coeff = (int32_t *)coeff;
84
11.2M
  const TX_TYPE tx_type = txfm_param->tx_type;
85
11.2M
  const int bd = txfm_param->bd;
86
11.2M
  if (txfm_param->lossless) {
87
11.1M
    assert(tx_type == DCT_DCT);
88
11.1M
    av1_highbd_fwht4x4(src_diff, coeff, diff_stride);
89
11.1M
    return;
90
11.1M
  }
91
144k
  av1_fwd_txfm2d_4x4(src_diff, dst_coeff, diff_stride, tx_type, bd);
92
144k
}
93
94
static void highbd_fwd_txfm_4x8(const int16_t *src_diff, tran_low_t *coeff,
95
22.0k
                                int diff_stride, TxfmParam *txfm_param) {
96
22.0k
  int32_t *dst_coeff = (int32_t *)coeff;
97
22.0k
  av1_fwd_txfm2d_4x8(src_diff, dst_coeff, diff_stride, txfm_param->tx_type,
98
22.0k
                     txfm_param->bd);
99
22.0k
}
100
101
static void highbd_fwd_txfm_8x4(const int16_t *src_diff, tran_low_t *coeff,
102
31.4k
                                int diff_stride, TxfmParam *txfm_param) {
103
31.4k
  int32_t *dst_coeff = (int32_t *)coeff;
104
31.4k
  av1_fwd_txfm2d_8x4(src_diff, dst_coeff, diff_stride, txfm_param->tx_type,
105
31.4k
                     txfm_param->bd);
106
31.4k
}
107
108
static void highbd_fwd_txfm_8x16(const int16_t *src_diff, tran_low_t *coeff,
109
61.3k
                                 int diff_stride, TxfmParam *txfm_param) {
110
61.3k
  int32_t *dst_coeff = (int32_t *)coeff;
111
61.3k
  const TX_TYPE tx_type = txfm_param->tx_type;
112
61.3k
  const int bd = txfm_param->bd;
113
61.3k
  av1_fwd_txfm2d_8x16(src_diff, dst_coeff, diff_stride, tx_type, bd);
114
61.3k
}
115
116
static void highbd_fwd_txfm_16x8(const int16_t *src_diff, tran_low_t *coeff,
117
83.1k
                                 int diff_stride, TxfmParam *txfm_param) {
118
83.1k
  int32_t *dst_coeff = (int32_t *)coeff;
119
83.1k
  const TX_TYPE tx_type = txfm_param->tx_type;
120
83.1k
  const int bd = txfm_param->bd;
121
83.1k
  av1_fwd_txfm2d_16x8(src_diff, dst_coeff, diff_stride, tx_type, bd);
122
83.1k
}
123
124
static void highbd_fwd_txfm_16x32(const int16_t *src_diff, tran_low_t *coeff,
125
28.2k
                                  int diff_stride, TxfmParam *txfm_param) {
126
28.2k
  int32_t *dst_coeff = (int32_t *)coeff;
127
28.2k
  av1_fwd_txfm2d_16x32(src_diff, dst_coeff, diff_stride, txfm_param->tx_type,
128
28.2k
                       txfm_param->bd);
129
28.2k
}
130
131
static void highbd_fwd_txfm_32x16(const int16_t *src_diff, tran_low_t *coeff,
132
35.6k
                                  int diff_stride, TxfmParam *txfm_param) {
133
35.6k
  int32_t *dst_coeff = (int32_t *)coeff;
134
35.6k
  av1_fwd_txfm2d_32x16(src_diff, dst_coeff, diff_stride, txfm_param->tx_type,
135
35.6k
                       txfm_param->bd);
136
35.6k
}
137
138
#if !CONFIG_REALTIME_ONLY
139
static void highbd_fwd_txfm_16x4(const int16_t *src_diff, tran_low_t *coeff,
140
0
                                 int diff_stride, TxfmParam *txfm_param) {
141
0
  int32_t *dst_coeff = (int32_t *)coeff;
142
0
  av1_fwd_txfm2d_16x4(src_diff, dst_coeff, diff_stride, txfm_param->tx_type,
143
0
                      txfm_param->bd);
144
0
}
145
146
static void highbd_fwd_txfm_4x16(const int16_t *src_diff, tran_low_t *coeff,
147
0
                                 int diff_stride, TxfmParam *txfm_param) {
148
0
  int32_t *dst_coeff = (int32_t *)coeff;
149
0
  av1_fwd_txfm2d_4x16(src_diff, dst_coeff, diff_stride, txfm_param->tx_type,
150
0
                      txfm_param->bd);
151
0
}
152
153
static void highbd_fwd_txfm_32x8(const int16_t *src_diff, tran_low_t *coeff,
154
0
                                 int diff_stride, TxfmParam *txfm_param) {
155
0
  int32_t *dst_coeff = (int32_t *)coeff;
156
0
  av1_fwd_txfm2d_32x8(src_diff, dst_coeff, diff_stride, txfm_param->tx_type,
157
0
                      txfm_param->bd);
158
0
}
159
160
static void highbd_fwd_txfm_8x32(const int16_t *src_diff, tran_low_t *coeff,
161
0
                                 int diff_stride, TxfmParam *txfm_param) {
162
0
  int32_t *dst_coeff = (int32_t *)coeff;
163
0
  av1_fwd_txfm2d_8x32(src_diff, dst_coeff, diff_stride, txfm_param->tx_type,
164
0
                      txfm_param->bd);
165
0
}
166
#endif
167
168
static void highbd_fwd_txfm_8x8(const int16_t *src_diff, tran_low_t *coeff,
169
270k
                                int diff_stride, TxfmParam *txfm_param) {
170
270k
  int32_t *dst_coeff = (int32_t *)coeff;
171
270k
  const TX_TYPE tx_type = txfm_param->tx_type;
172
270k
  const int bd = txfm_param->bd;
173
270k
  av1_fwd_txfm2d_8x8(src_diff, dst_coeff, diff_stride, tx_type, bd);
174
270k
}
175
176
static void highbd_fwd_txfm_16x16(const int16_t *src_diff, tran_low_t *coeff,
177
325k
                                  int diff_stride, TxfmParam *txfm_param) {
178
325k
  int32_t *dst_coeff = (int32_t *)coeff;
179
325k
  const TX_TYPE tx_type = txfm_param->tx_type;
180
325k
  const int bd = txfm_param->bd;
181
325k
  av1_fwd_txfm2d_16x16(src_diff, dst_coeff, diff_stride, tx_type, bd);
182
325k
}
183
184
static void highbd_fwd_txfm_32x32(const int16_t *src_diff, tran_low_t *coeff,
185
238k
                                  int diff_stride, TxfmParam *txfm_param) {
186
238k
  int32_t *dst_coeff = (int32_t *)coeff;
187
238k
  const TX_TYPE tx_type = txfm_param->tx_type;
188
238k
  const int bd = txfm_param->bd;
189
238k
  av1_fwd_txfm2d_32x32(src_diff, dst_coeff, diff_stride, tx_type, bd);
190
238k
}
191
192
static void highbd_fwd_txfm_32x64(const int16_t *src_diff, tran_low_t *coeff,
193
0
                                  int diff_stride, TxfmParam *txfm_param) {
194
0
  assert(txfm_param->tx_type == DCT_DCT);
195
0
  int32_t *dst_coeff = (int32_t *)coeff;
196
0
  const int bd = txfm_param->bd;
197
0
  av1_fwd_txfm2d_32x64(src_diff, dst_coeff, diff_stride, txfm_param->tx_type,
198
0
                       bd);
199
0
}
200
201
static void highbd_fwd_txfm_64x32(const int16_t *src_diff, tran_low_t *coeff,
202
0
                                  int diff_stride, TxfmParam *txfm_param) {
203
0
  assert(txfm_param->tx_type == DCT_DCT);
204
0
  int32_t *dst_coeff = (int32_t *)coeff;
205
0
  const int bd = txfm_param->bd;
206
0
  av1_fwd_txfm2d_64x32(src_diff, dst_coeff, diff_stride, txfm_param->tx_type,
207
0
                       bd);
208
0
}
209
210
#if !CONFIG_REALTIME_ONLY
211
static void highbd_fwd_txfm_16x64(const int16_t *src_diff, tran_low_t *coeff,
212
0
                                  int diff_stride, TxfmParam *txfm_param) {
213
0
  assert(txfm_param->tx_type == DCT_DCT);
214
0
  int32_t *dst_coeff = (int32_t *)coeff;
215
0
  const int bd = txfm_param->bd;
216
0
  av1_fwd_txfm2d_16x64(src_diff, dst_coeff, diff_stride, DCT_DCT, bd);
217
0
}
218
219
static void highbd_fwd_txfm_64x16(const int16_t *src_diff, tran_low_t *coeff,
220
0
                                  int diff_stride, TxfmParam *txfm_param) {
221
0
  assert(txfm_param->tx_type == DCT_DCT);
222
0
  int32_t *dst_coeff = (int32_t *)coeff;
223
0
  const int bd = txfm_param->bd;
224
0
  av1_fwd_txfm2d_64x16(src_diff, dst_coeff, diff_stride, DCT_DCT, bd);
225
0
}
226
#endif
227
228
static void highbd_fwd_txfm_64x64(const int16_t *src_diff, tran_low_t *coeff,
229
0
                                  int diff_stride, TxfmParam *txfm_param) {
230
0
  assert(txfm_param->tx_type == DCT_DCT);
231
0
  int32_t *dst_coeff = (int32_t *)coeff;
232
0
  const int bd = txfm_param->bd;
233
0
  av1_fwd_txfm2d_64x64(src_diff, dst_coeff, diff_stride, DCT_DCT, bd);
234
0
}
235
236
void av1_fwd_txfm(const int16_t *src_diff, tran_low_t *coeff, int diff_stride,
237
12.3M
                  TxfmParam *txfm_param) {
238
12.3M
  if (txfm_param->bd == 8)
239
12.3M
    av1_lowbd_fwd_txfm(src_diff, coeff, diff_stride, txfm_param);
240
18.4E
  else
241
18.4E
    av1_highbd_fwd_txfm(src_diff, coeff, diff_stride, txfm_param);
242
12.3M
}
243
244
void av1_lowbd_fwd_txfm_c(const int16_t *src_diff, tran_low_t *coeff,
245
12.3M
                          int diff_stride, TxfmParam *txfm_param) {
246
12.3M
  av1_highbd_fwd_txfm(src_diff, coeff, diff_stride, txfm_param);
247
12.3M
}
248
249
void av1_highbd_fwd_txfm(const int16_t *src_diff, tran_low_t *coeff,
250
12.3M
                         int diff_stride, TxfmParam *txfm_param) {
251
12.3M
  assert(av1_ext_tx_used[txfm_param->tx_set_type][txfm_param->tx_type]);
252
12.3M
  const TX_SIZE tx_size = txfm_param->tx_size;
253
12.3M
  switch (tx_size) {
254
0
    case TX_64X64:
255
0
      highbd_fwd_txfm_64x64(src_diff, coeff, diff_stride, txfm_param);
256
0
      break;
257
0
    case TX_32X64:
258
0
      highbd_fwd_txfm_32x64(src_diff, coeff, diff_stride, txfm_param);
259
0
      break;
260
0
    case TX_64X32:
261
0
      highbd_fwd_txfm_64x32(src_diff, coeff, diff_stride, txfm_param);
262
0
      break;
263
264
238k
    case TX_32X32:
265
238k
      highbd_fwd_txfm_32x32(src_diff, coeff, diff_stride, txfm_param);
266
238k
      break;
267
325k
    case TX_16X16:
268
325k
      highbd_fwd_txfm_16x16(src_diff, coeff, diff_stride, txfm_param);
269
325k
      break;
270
270k
    case TX_8X8:
271
270k
      highbd_fwd_txfm_8x8(src_diff, coeff, diff_stride, txfm_param);
272
270k
      break;
273
22.0k
    case TX_4X8:
274
22.0k
      highbd_fwd_txfm_4x8(src_diff, coeff, diff_stride, txfm_param);
275
22.0k
      break;
276
31.4k
    case TX_8X4:
277
31.4k
      highbd_fwd_txfm_8x4(src_diff, coeff, diff_stride, txfm_param);
278
31.4k
      break;
279
61.3k
    case TX_8X16:
280
61.3k
      highbd_fwd_txfm_8x16(src_diff, coeff, diff_stride, txfm_param);
281
61.3k
      break;
282
83.1k
    case TX_16X8:
283
83.1k
      highbd_fwd_txfm_16x8(src_diff, coeff, diff_stride, txfm_param);
284
83.1k
      break;
285
28.2k
    case TX_16X32:
286
28.2k
      highbd_fwd_txfm_16x32(src_diff, coeff, diff_stride, txfm_param);
287
28.2k
      break;
288
35.6k
    case TX_32X16:
289
35.6k
      highbd_fwd_txfm_32x16(src_diff, coeff, diff_stride, txfm_param);
290
35.6k
      break;
291
11.2M
    case TX_4X4:
292
11.2M
      highbd_fwd_txfm_4x4(src_diff, coeff, diff_stride, txfm_param);
293
11.2M
      break;
294
0
#if !CONFIG_REALTIME_ONLY
295
0
    case TX_4X16:
296
0
      highbd_fwd_txfm_4x16(src_diff, coeff, diff_stride, txfm_param);
297
0
      break;
298
0
    case TX_16X4:
299
0
      highbd_fwd_txfm_16x4(src_diff, coeff, diff_stride, txfm_param);
300
0
      break;
301
0
    case TX_8X32:
302
0
      highbd_fwd_txfm_8x32(src_diff, coeff, diff_stride, txfm_param);
303
0
      break;
304
0
    case TX_32X8:
305
0
      highbd_fwd_txfm_32x8(src_diff, coeff, diff_stride, txfm_param);
306
0
      break;
307
0
    case TX_16X64:
308
0
      highbd_fwd_txfm_16x64(src_diff, coeff, diff_stride, txfm_param);
309
0
      break;
310
0
    case TX_64X16:
311
0
      highbd_fwd_txfm_64x16(src_diff, coeff, diff_stride, txfm_param);
312
0
      break;
313
0
#endif
314
0
    default: assert(0); break;
315
12.3M
  }
316
12.3M
}
317
318
void av1_quick_txfm(int use_hadamard, TX_SIZE tx_size, BitDepthInfo bd_info,
319
                    const int16_t *src_diff, int src_stride,
320
1.46M
                    tran_low_t *coeff) {
321
1.46M
  if (use_hadamard) {
322
1.22M
    switch (tx_size) {
323
0
      case TX_4X4: aom_hadamard_4x4(src_diff, src_stride, coeff); break;
324
478k
      case TX_8X8: aom_hadamard_8x8(src_diff, src_stride, coeff); break;
325
376k
      case TX_16X16: aom_hadamard_16x16(src_diff, src_stride, coeff); break;
326
368k
      case TX_32X32: aom_hadamard_32x32(src_diff, src_stride, coeff); break;
327
0
      default: assert(0);
328
1.22M
    }
329
1.22M
  } else {
330
237k
    TxfmParam txfm_param;
331
237k
    txfm_param.tx_type = DCT_DCT;
332
237k
    txfm_param.tx_size = tx_size;
333
237k
    txfm_param.lossless = 0;
334
237k
    txfm_param.bd = bd_info.bit_depth;
335
237k
    txfm_param.is_hbd = bd_info.use_highbitdepth_buf;
336
237k
    txfm_param.tx_set_type = EXT_TX_SET_ALL16;
337
237k
    av1_fwd_txfm(src_diff, coeff, src_stride, &txfm_param);
338
237k
  }
339
1.46M
}