Coverage Report

Created: 2026-05-23 07:06

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libvpx/vp9/encoder/vp9_quantize.c
Line
Count
Source
1
/*
2
 *  Copyright (c) 2010 The WebM project authors. All Rights Reserved.
3
 *
4
 *  Use of this source code is governed by a BSD-style license
5
 *  that can be found in the LICENSE file in the root of the source
6
 *  tree. An additional intellectual property rights grant can be found
7
 *  in the file PATENTS.  All contributing project authors may
8
 *  be found in the AUTHORS file in the root of the source tree.
9
 */
10
11
#include <assert.h>
12
#include <math.h>
13
#include "./vpx_dsp_rtcd.h"
14
#include "vpx_mem/vpx_mem.h"
15
#include "vpx_ports/bitops.h"
16
#include "vpx_ports/mem.h"
17
18
#include "vp9/common/vp9_quant_common.h"
19
#include "vp9/common/vp9_scan.h"
20
#include "vp9/common/vp9_seg_common.h"
21
22
#include "vp9/encoder/vp9_encoder.h"
23
#include "vp9/encoder/vp9_quantize.h"
24
#include "vp9/encoder/vp9_rd.h"
25
26
void vp9_quantize_fp_c(const tran_low_t *coeff_ptr, intptr_t n_coeffs,
27
                       const struct macroblock_plane *const mb_plane,
28
                       tran_low_t *qcoeff_ptr, tran_low_t *dqcoeff_ptr,
29
                       const int16_t *dequant_ptr, uint16_t *eob_ptr,
30
0
                       const struct ScanOrder *const scan_order) {
31
0
  int i, eob = -1;
32
0
  const int16_t *round_ptr = mb_plane->round_fp;
33
0
  const int16_t *quant_ptr = mb_plane->quant_fp;
34
0
  const int16_t *scan = scan_order->scan;
35
36
0
  memset(qcoeff_ptr, 0, n_coeffs * sizeof(*qcoeff_ptr));
37
0
  memset(dqcoeff_ptr, 0, n_coeffs * sizeof(*dqcoeff_ptr));
38
39
  // Quantization pass: All coefficients with index >= zero_flag are
40
  // skippable. Note: zero_flag can be zero.
41
0
  for (i = 0; i < n_coeffs; i++) {
42
0
    const int rc = scan[i];
43
0
    const int coeff = coeff_ptr[rc];
44
0
    const int coeff_sign = (coeff >> 31);
45
0
    const int abs_coeff = (coeff ^ coeff_sign) - coeff_sign;
46
47
0
    int tmp = clamp(abs_coeff + round_ptr[rc != 0], INT16_MIN, INT16_MAX);
48
0
    tmp = (tmp * quant_ptr[rc != 0]) >> 16;
49
50
0
    qcoeff_ptr[rc] = (tmp ^ coeff_sign) - coeff_sign;
51
0
    dqcoeff_ptr[rc] = qcoeff_ptr[rc] * dequant_ptr[rc != 0];
52
53
0
    if (tmp) eob = i;
54
0
  }
55
0
  *eob_ptr = eob + 1;
56
0
}
57
58
#if CONFIG_VP9_HIGHBITDEPTH
59
void vp9_highbd_quantize_fp_c(const tran_low_t *coeff_ptr, intptr_t n_coeffs,
60
                              const struct macroblock_plane *const mb_plane,
61
                              tran_low_t *qcoeff_ptr, tran_low_t *dqcoeff_ptr,
62
                              const int16_t *dequant_ptr, uint16_t *eob_ptr,
63
0
                              const struct ScanOrder *const scan_order) {
64
0
  int i;
65
0
  int eob = -1;
66
0
  const int16_t *round_ptr = mb_plane->round_fp;
67
0
  const int16_t *quant_ptr = mb_plane->quant_fp;
68
0
  const int16_t *scan = scan_order->scan;
69
70
0
  memset(qcoeff_ptr, 0, n_coeffs * sizeof(*qcoeff_ptr));
71
0
  memset(dqcoeff_ptr, 0, n_coeffs * sizeof(*dqcoeff_ptr));
72
73
  // Quantization pass: All coefficients with index >= zero_flag are
74
  // skippable. Note: zero_flag can be zero.
75
0
  for (i = 0; i < n_coeffs; i++) {
76
0
    const int rc = scan[i];
77
0
    const int coeff = coeff_ptr[rc];
78
0
    const int coeff_sign = (coeff >> 31);
79
0
    const int abs_coeff = (coeff ^ coeff_sign) - coeff_sign;
80
0
    const int64_t tmp = abs_coeff + round_ptr[rc != 0];
81
0
    const int abs_qcoeff = (int)((tmp * quant_ptr[rc != 0]) >> 16);
82
0
    qcoeff_ptr[rc] = (tran_low_t)(abs_qcoeff ^ coeff_sign) - coeff_sign;
83
0
    dqcoeff_ptr[rc] = qcoeff_ptr[rc] * dequant_ptr[rc != 0];
84
0
    if (abs_qcoeff) eob = i;
85
0
  }
86
0
  *eob_ptr = eob + 1;
87
0
}
88
#endif
89
90
// TODO(jingning) Refactor this file and combine functions with similar
91
// operations.
92
void vp9_quantize_fp_32x32_c(const tran_low_t *coeff_ptr, intptr_t n_coeffs,
93
                             const struct macroblock_plane *const mb_plane,
94
                             tran_low_t *qcoeff_ptr, tran_low_t *dqcoeff_ptr,
95
                             const int16_t *dequant_ptr, uint16_t *eob_ptr,
96
0
                             const struct ScanOrder *const scan_order) {
97
0
  int i, eob = -1;
98
0
  const int16_t *round_ptr = mb_plane->round_fp;
99
0
  const int16_t *quant_ptr = mb_plane->quant_fp;
100
0
  const int16_t *scan = scan_order->scan;
101
102
0
  memset(qcoeff_ptr, 0, n_coeffs * sizeof(*qcoeff_ptr));
103
0
  memset(dqcoeff_ptr, 0, n_coeffs * sizeof(*dqcoeff_ptr));
104
105
0
  for (i = 0; i < n_coeffs; i++) {
106
0
    const int rc = scan[i];
107
0
    const int coeff = coeff_ptr[rc];
108
0
    const int coeff_sign = (coeff >> 31);
109
0
    int tmp = 0;
110
0
    int abs_coeff = (coeff ^ coeff_sign) - coeff_sign;
111
112
0
    if (abs_coeff >= (dequant_ptr[rc != 0] >> 2)) {
113
0
      abs_coeff += ROUND_POWER_OF_TWO(round_ptr[rc != 0], 1);
114
0
      abs_coeff = clamp(abs_coeff, INT16_MIN, INT16_MAX);
115
0
      tmp = (abs_coeff * quant_ptr[rc != 0]) >> 15;
116
0
      qcoeff_ptr[rc] = (tmp ^ coeff_sign) - coeff_sign;
117
0
      dqcoeff_ptr[rc] = qcoeff_ptr[rc] * dequant_ptr[rc != 0] / 2;
118
0
    }
119
120
0
    if (tmp) eob = i;
121
0
  }
122
0
  *eob_ptr = eob + 1;
123
0
}
124
125
#if CONFIG_VP9_HIGHBITDEPTH
126
void vp9_highbd_quantize_fp_32x32_c(
127
    const tran_low_t *coeff_ptr, intptr_t n_coeffs,
128
    const struct macroblock_plane *const mb_plane, tran_low_t *qcoeff_ptr,
129
    tran_low_t *dqcoeff_ptr, const int16_t *dequant_ptr, uint16_t *eob_ptr,
130
0
    const struct ScanOrder *const scan_order) {
131
0
  int i, eob = -1;
132
0
  const int16_t *round_ptr = mb_plane->round_fp;
133
0
  const int16_t *quant_ptr = mb_plane->quant_fp;
134
0
  const int16_t *scan = scan_order->scan;
135
136
0
  memset(qcoeff_ptr, 0, n_coeffs * sizeof(*qcoeff_ptr));
137
0
  memset(dqcoeff_ptr, 0, n_coeffs * sizeof(*dqcoeff_ptr));
138
139
0
  for (i = 0; i < n_coeffs; i++) {
140
0
    int abs_qcoeff = 0;
141
0
    const int rc = scan[i];
142
0
    const int coeff = coeff_ptr[rc];
143
0
    const int coeff_sign = (coeff >> 31);
144
0
    const int abs_coeff = (coeff ^ coeff_sign) - coeff_sign;
145
146
0
    if (abs_coeff >= (dequant_ptr[rc != 0] >> 2)) {
147
0
      const int64_t tmp = abs_coeff + ROUND_POWER_OF_TWO(round_ptr[rc != 0], 1);
148
0
      abs_qcoeff = (int)((tmp * quant_ptr[rc != 0]) >> 15);
149
0
      qcoeff_ptr[rc] = (tran_low_t)((abs_qcoeff ^ coeff_sign) - coeff_sign);
150
0
      dqcoeff_ptr[rc] = qcoeff_ptr[rc] * dequant_ptr[rc != 0] / 2;
151
0
    }
152
153
0
    if (abs_qcoeff) eob = i;
154
0
  }
155
0
  *eob_ptr = eob + 1;
156
0
}
157
#endif
158
159
37.5M
static void invert_quant(int16_t *quant, int16_t *shift, int d) {
160
37.5M
  unsigned int t;
161
37.5M
  int l, m;
162
37.5M
  t = (unsigned int)d;
163
37.5M
  l = get_msb(t);
164
37.5M
  m = 1 + (1 << (16 + l)) / d;
165
37.5M
  *quant = (int16_t)(m - (1 << 16));
166
37.5M
  *shift = 1 << (16 - l);
167
37.5M
}
168
169
9.38M
static int get_qzbin_factor(int q, vpx_bit_depth_t bit_depth) {
170
9.38M
  const int quant = vp9_dc_quant(q, 0, bit_depth);
171
9.38M
#if CONFIG_VP9_HIGHBITDEPTH
172
9.38M
  switch (bit_depth) {
173
9.38M
    case VPX_BITS_8: return q == 0 ? 64 : (quant < 148 ? 84 : 80);
174
0
    case VPX_BITS_10: return q == 0 ? 64 : (quant < 592 ? 84 : 80);
175
0
    default:
176
0
      assert(bit_depth == VPX_BITS_12);
177
0
      return q == 0 ? 64 : (quant < 2368 ? 84 : 80);
178
9.38M
  }
179
#else
180
  (void)bit_depth;
181
  return q == 0 ? 64 : (quant < 148 ? 84 : 80);
182
#endif
183
9.38M
}
184
185
36.6k
void vp9_init_quantizer(VP9_COMP *cpi) {
186
36.6k
  VP9_COMMON *const cm = &cpi->common;
187
36.6k
  QUANTS *const quants = &cpi->quants;
188
36.6k
  int i, q, quant;
189
190
9.41M
  for (q = 0; q < QINDEX_RANGE; q++) {
191
9.38M
    int qzbin_factor = get_qzbin_factor(q, cm->bit_depth);
192
9.38M
    int qrounding_factor = q == 0 ? 64 : 48;
193
9.38M
    const int sharpness_adjustment = 16 * (7 - cpi->oxcf.sharpness) / 7;
194
195
9.38M
    if (cpi->oxcf.sharpness > 0 && q > 0) {
196
0
      qzbin_factor = 64 + sharpness_adjustment;
197
0
      qrounding_factor = 64 - sharpness_adjustment;
198
0
    }
199
200
28.1M
    for (i = 0; i < 2; ++i) {
201
18.7M
      int qrounding_factor_fp = i == 0 ? 48 : 42;
202
18.7M
      if (q == 0) qrounding_factor_fp = 64;
203
18.7M
      if (cpi->oxcf.sharpness > 0)
204
0
        qrounding_factor_fp = 64 - sharpness_adjustment;
205
      // y
206
18.7M
      quant = i == 0 ? vp9_dc_quant(q, cm->y_dc_delta_q, cm->bit_depth)
207
18.7M
                     : vp9_ac_quant(q, 0, cm->bit_depth);
208
18.7M
      invert_quant(&quants->y_quant[q][i], &quants->y_quant_shift[q][i], quant);
209
18.7M
      quants->y_quant_fp[q][i] = (1 << 16) / quant;
210
18.7M
      quants->y_round_fp[q][i] = (qrounding_factor_fp * quant) >> 7;
211
18.7M
      quants->y_zbin[q][i] = ROUND_POWER_OF_TWO(qzbin_factor * quant, 7);
212
18.7M
      quants->y_round[q][i] = (qrounding_factor * quant) >> 7;
213
18.7M
      cpi->y_dequant[q][i] = quant;
214
215
      // uv
216
18.7M
      quant = i == 0 ? vp9_dc_quant(q, cm->uv_dc_delta_q, cm->bit_depth)
217
18.7M
                     : vp9_ac_quant(q, cm->uv_ac_delta_q, cm->bit_depth);
218
18.7M
      invert_quant(&quants->uv_quant[q][i], &quants->uv_quant_shift[q][i],
219
18.7M
                   quant);
220
18.7M
      quants->uv_quant_fp[q][i] = (1 << 16) / quant;
221
18.7M
      quants->uv_round_fp[q][i] = (qrounding_factor_fp * quant) >> 7;
222
18.7M
      quants->uv_zbin[q][i] = ROUND_POWER_OF_TWO(qzbin_factor * quant, 7);
223
18.7M
      quants->uv_round[q][i] = (qrounding_factor * quant) >> 7;
224
18.7M
      cpi->uv_dequant[q][i] = quant;
225
18.7M
    }
226
227
65.6M
    for (i = 2; i < 8; i++) {
228
56.2M
      quants->y_quant[q][i] = quants->y_quant[q][1];
229
56.2M
      quants->y_quant_fp[q][i] = quants->y_quant_fp[q][1];
230
56.2M
      quants->y_round_fp[q][i] = quants->y_round_fp[q][1];
231
56.2M
      quants->y_quant_shift[q][i] = quants->y_quant_shift[q][1];
232
56.2M
      quants->y_zbin[q][i] = quants->y_zbin[q][1];
233
56.2M
      quants->y_round[q][i] = quants->y_round[q][1];
234
56.2M
      cpi->y_dequant[q][i] = cpi->y_dequant[q][1];
235
236
56.2M
      quants->uv_quant[q][i] = quants->uv_quant[q][1];
237
56.2M
      quants->uv_quant_fp[q][i] = quants->uv_quant_fp[q][1];
238
56.2M
      quants->uv_round_fp[q][i] = quants->uv_round_fp[q][1];
239
56.2M
      quants->uv_quant_shift[q][i] = quants->uv_quant_shift[q][1];
240
56.2M
      quants->uv_zbin[q][i] = quants->uv_zbin[q][1];
241
56.2M
      quants->uv_round[q][i] = quants->uv_round[q][1];
242
56.2M
      cpi->uv_dequant[q][i] = cpi->uv_dequant[q][1];
243
56.2M
    }
244
9.38M
  }
245
36.6k
}
246
247
11.2M
void vp9_init_plane_quantizers(VP9_COMP *cpi, MACROBLOCK *x) {
248
11.2M
  const VP9_COMMON *const cm = &cpi->common;
249
11.2M
  MACROBLOCKD *const xd = &x->e_mbd;
250
11.2M
  QUANTS *const quants = &cpi->quants;
251
11.2M
  const int segment_id = xd->mi[0]->segment_id;
252
11.2M
  const int qindex = vp9_get_qindex(&cm->seg, segment_id, cm->base_qindex);
253
11.2M
  const int rdmult = vp9_compute_rd_mult(cpi, qindex + cm->y_dc_delta_q);
254
11.2M
  int i;
255
256
  // Y
257
11.2M
  x->plane[0].quant = quants->y_quant[qindex];
258
11.2M
  x->plane[0].quant_fp = quants->y_quant_fp[qindex];
259
11.2M
  x->plane[0].round_fp = quants->y_round_fp[qindex];
260
11.2M
  x->plane[0].quant_shift = quants->y_quant_shift[qindex];
261
11.2M
  x->plane[0].zbin = quants->y_zbin[qindex];
262
11.2M
  x->plane[0].round = quants->y_round[qindex];
263
11.2M
  xd->plane[0].dequant = cpi->y_dequant[qindex];
264
11.2M
  x->plane[0].quant_thred[0] = x->plane[0].zbin[0] * x->plane[0].zbin[0];
265
11.2M
  x->plane[0].quant_thred[1] = x->plane[0].zbin[1] * x->plane[0].zbin[1];
266
267
  // UV
268
33.7M
  for (i = 1; i < 3; i++) {
269
22.4M
    x->plane[i].quant = quants->uv_quant[qindex];
270
22.4M
    x->plane[i].quant_fp = quants->uv_quant_fp[qindex];
271
22.4M
    x->plane[i].round_fp = quants->uv_round_fp[qindex];
272
22.4M
    x->plane[i].quant_shift = quants->uv_quant_shift[qindex];
273
22.4M
    x->plane[i].zbin = quants->uv_zbin[qindex];
274
22.4M
    x->plane[i].round = quants->uv_round[qindex];
275
22.4M
    xd->plane[i].dequant = cpi->uv_dequant[qindex];
276
22.4M
    x->plane[i].quant_thred[0] = x->plane[i].zbin[0] * x->plane[i].zbin[0];
277
22.4M
    x->plane[i].quant_thred[1] = x->plane[i].zbin[1] * x->plane[i].zbin[1];
278
22.4M
  }
279
280
11.2M
  x->skip_block = segfeature_active(&cm->seg, segment_id, SEG_LVL_SKIP);
281
11.2M
  x->q_index = qindex;
282
283
11.2M
  set_error_per_bit(x, rdmult);
284
285
11.2M
  vp9_initialize_me_consts(cpi, x, x->q_index);
286
11.2M
}
287
288
75.2k
void vp9_frame_init_quantizer(VP9_COMP *cpi) {
289
75.2k
  vp9_init_plane_quantizers(cpi, &cpi->td.mb);
290
75.2k
}
291
292
75.2k
void vp9_set_quantizer(VP9_COMP *cpi, int q, int ext_rc_delta_q_uv) {
293
75.2k
  VP9_COMMON *cm = &cpi->common;
294
  // quantizer has to be reinitialized with vp9_init_quantizer() if any
295
  // delta_q changes.
296
75.2k
  cm->base_qindex = q;
297
75.2k
  cm->y_dc_delta_q = 0;
298
75.2k
  cm->uv_dc_delta_q = 0;
299
75.2k
  cm->uv_ac_delta_q = 0;
300
301
75.2k
  if (ext_rc_delta_q_uv != 0) {
302
0
    cm->uv_dc_delta_q = cm->uv_ac_delta_q = ext_rc_delta_q_uv;
303
0
    vp9_init_quantizer(cpi);
304
0
    return;
305
0
  }
306
307
75.2k
  if (cpi->oxcf.delta_q_uv != 0) {
308
0
    cm->uv_dc_delta_q = cm->uv_ac_delta_q = cpi->oxcf.delta_q_uv;
309
0
    vp9_init_quantizer(cpi);
310
0
  }
311
75.2k
}
312
313
// Table that converts 0-63 Q-range values passed in outside to the Qindex
314
// range used internally.
315
static const int quantizer_to_qindex[] = {
316
  0,   4,   8,   12,  16,  20,  24,  28,  32,  36,  40,  44,  48,
317
  52,  56,  60,  64,  68,  72,  76,  80,  84,  88,  92,  96,  100,
318
  104, 108, 112, 116, 120, 124, 128, 132, 136, 140, 144, 148, 152,
319
  156, 160, 164, 168, 172, 176, 180, 184, 188, 192, 196, 200, 204,
320
  208, 212, 216, 220, 224, 228, 232, 236, 240, 244, 249, 255,
321
};
322
323
91.8k
int vp9_quantizer_to_qindex(int quantizer) {
324
91.8k
  assert(quantizer >= 0 && quantizer <= 63);
325
91.8k
  return quantizer_to_qindex[quantizer];
326
91.8k
}
327
328
74.7k
int vp9_qindex_to_quantizer(int qindex) {
329
74.7k
  int quantizer;
330
331
1.68M
  for (quantizer = 0; quantizer < 64; ++quantizer)
332
1.68M
    if (quantizer_to_qindex[quantizer] >= qindex) return quantizer;
333
334
0
  return 63;
335
74.7k
}