Coverage Report

Created: 2026-05-16 06:27

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/aom/av1/common/txb_common.h
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
#ifndef AOM_AV1_COMMON_TXB_COMMON_H_
13
#define AOM_AV1_COMMON_TXB_COMMON_H_
14
15
#include "av1/common/av1_common_int.h"
16
17
extern const int16_t av1_eob_group_start[12];
18
extern const int16_t av1_eob_offset_bits[12];
19
20
extern const int8_t *av1_nz_map_ctx_offset[TX_SIZES_ALL];
21
22
typedef struct txb_ctx {
23
  int txb_skip_ctx;
24
  int dc_sign_ctx;
25
} TXB_CTX;
26
27
static const int base_level_count_to_index[13] = {
28
  0, 0, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3,
29
};
30
31
static const TX_CLASS tx_type_to_class[TX_TYPES] = {
32
  TX_CLASS_2D,     // DCT_DCT
33
  TX_CLASS_2D,     // ADST_DCT
34
  TX_CLASS_2D,     // DCT_ADST
35
  TX_CLASS_2D,     // ADST_ADST
36
  TX_CLASS_2D,     // FLIPADST_DCT
37
  TX_CLASS_2D,     // DCT_FLIPADST
38
  TX_CLASS_2D,     // FLIPADST_FLIPADST
39
  TX_CLASS_2D,     // ADST_FLIPADST
40
  TX_CLASS_2D,     // FLIPADST_ADST
41
  TX_CLASS_2D,     // IDTX
42
  TX_CLASS_VERT,   // V_DCT
43
  TX_CLASS_HORIZ,  // H_DCT
44
  TX_CLASS_VERT,   // V_ADST
45
  TX_CLASS_HORIZ,  // H_ADST
46
  TX_CLASS_VERT,   // V_FLIPADST
47
  TX_CLASS_HORIZ,  // H_FLIPADST
48
};
49
50
26.3M
static inline int get_txb_bhl(TX_SIZE tx_size) {
51
26.3M
  tx_size = av1_get_adjusted_tx_size(tx_size);
52
26.3M
  return tx_size_high_log2[tx_size];
53
26.3M
}
decodetxb.c:get_txb_bhl
Line
Count
Source
50
26.3M
static inline int get_txb_bhl(TX_SIZE tx_size) {
51
26.3M
  tx_size = av1_get_adjusted_tx_size(tx_size);
52
26.3M
  return tx_size_high_log2[tx_size];
53
26.3M
}
Unexecuted instantiation: entropy.c:get_txb_bhl
Unexecuted instantiation: entropymode.c:get_txb_bhl
Unexecuted instantiation: txb_common.c:get_txb_bhl
54
55
26.6M
static inline int get_txb_wide(TX_SIZE tx_size) {
56
26.6M
  tx_size = av1_get_adjusted_tx_size(tx_size);
57
26.6M
  return tx_size_wide[tx_size];
58
26.6M
}
decodetxb.c:get_txb_wide
Line
Count
Source
55
26.6M
static inline int get_txb_wide(TX_SIZE tx_size) {
56
26.6M
  tx_size = av1_get_adjusted_tx_size(tx_size);
57
26.6M
  return tx_size_wide[tx_size];
58
26.6M
}
Unexecuted instantiation: entropy.c:get_txb_wide
Unexecuted instantiation: entropymode.c:get_txb_wide
Unexecuted instantiation: txb_common.c:get_txb_wide
59
60
26.6M
static inline int get_txb_high(TX_SIZE tx_size) {
61
26.6M
  tx_size = av1_get_adjusted_tx_size(tx_size);
62
26.6M
  return tx_size_high[tx_size];
63
26.6M
}
decodetxb.c:get_txb_high
Line
Count
Source
60
26.6M
static inline int get_txb_high(TX_SIZE tx_size) {
61
26.6M
  tx_size = av1_get_adjusted_tx_size(tx_size);
62
26.6M
  return tx_size_high[tx_size];
63
26.6M
}
Unexecuted instantiation: entropy.c:get_txb_high
Unexecuted instantiation: entropymode.c:get_txb_high
Unexecuted instantiation: txb_common.c:get_txb_high
64
65
26.1M
static inline uint8_t *set_levels(uint8_t *const levels_buf, const int height) {
66
26.1M
  return levels_buf + TX_PAD_TOP * (height + TX_PAD_HOR);
67
26.1M
}
decodetxb.c:set_levels
Line
Count
Source
65
26.1M
static inline uint8_t *set_levels(uint8_t *const levels_buf, const int height) {
66
26.1M
  return levels_buf + TX_PAD_TOP * (height + TX_PAD_HOR);
67
26.1M
}
Unexecuted instantiation: entropy.c:set_levels
Unexecuted instantiation: entropymode.c:set_levels
Unexecuted instantiation: txb_common.c:set_levels
68
69
610M
static inline int get_padded_idx(const int idx, const int bhl) {
70
610M
  return idx + ((idx >> bhl) << TX_PAD_HOR_LOG2);
71
610M
}
decodetxb.c:get_padded_idx
Line
Count
Source
69
610M
static inline int get_padded_idx(const int idx, const int bhl) {
70
610M
  return idx + ((idx >> bhl) << TX_PAD_HOR_LOG2);
71
610M
}
Unexecuted instantiation: entropy.c:get_padded_idx
Unexecuted instantiation: entropymode.c:get_padded_idx
Unexecuted instantiation: txb_common.c:get_padded_idx
72
73
static inline int get_br_ctx_2d(const uint8_t *const levels,
74
                                const int c,  // raster order
75
11.1M
                                const int bhl) {
76
11.1M
  assert(c > 0);
77
11.1M
  const int col = c >> bhl;
78
11.1M
  const int row = c - (col << bhl);
79
11.1M
  const int stride = (1 << bhl) + TX_PAD_HOR;
80
11.1M
  const int pos = col * stride + row;
81
11.1M
  int mag = AOMMIN(levels[pos + 1], MAX_BASE_BR_RANGE) +
82
11.1M
            AOMMIN(levels[pos + stride], MAX_BASE_BR_RANGE) +
83
11.1M
            AOMMIN(levels[pos + 1 + stride], MAX_BASE_BR_RANGE);
84
11.1M
  mag = AOMMIN((mag + 1) >> 1, 6);
85
  //((row | col) < 2) is equivalent to ((row < 2) && (col < 2))
86
11.1M
  if ((row | col) < 2) return mag + 7;
87
9.02M
  return mag + 14;
88
11.1M
}
decodetxb.c:get_br_ctx_2d
Line
Count
Source
75
11.1M
                                const int bhl) {
76
11.1M
  assert(c > 0);
77
11.1M
  const int col = c >> bhl;
78
11.1M
  const int row = c - (col << bhl);
79
11.1M
  const int stride = (1 << bhl) + TX_PAD_HOR;
80
11.1M
  const int pos = col * stride + row;
81
11.1M
  int mag = AOMMIN(levels[pos + 1], MAX_BASE_BR_RANGE) +
82
11.1M
            AOMMIN(levels[pos + stride], MAX_BASE_BR_RANGE) +
83
11.1M
            AOMMIN(levels[pos + 1 + stride], MAX_BASE_BR_RANGE);
84
11.1M
  mag = AOMMIN((mag + 1) >> 1, 6);
85
  //((row | col) < 2) is equivalent to ((row < 2) && (col < 2))
86
11.1M
  if ((row | col) < 2) return mag + 7;
87
9.02M
  return mag + 14;
88
11.1M
}
Unexecuted instantiation: entropy.c:get_br_ctx_2d
Unexecuted instantiation: entropymode.c:get_br_ctx_2d
Unexecuted instantiation: txb_common.c:get_br_ctx_2d
89
90
static AOM_FORCE_INLINE int get_br_ctx_eob(const int c,  // raster order
91
                                           const int bhl,
92
398k
                                           const TX_CLASS tx_class) {
93
398k
  const int col = c >> bhl;
94
398k
  const int row = c - (col << bhl);
95
398k
  if (c == 0) return 0;
96
125k
  if ((tx_class == TX_CLASS_2D && row < 2 && col < 2) ||
97
115k
      (tx_class == TX_CLASS_HORIZ && col == 0) ||
98
114k
      (tx_class == TX_CLASS_VERT && row == 0))
99
11.1k
    return 7;
100
114k
  return 14;
101
125k
}
decodetxb.c:get_br_ctx_eob
Line
Count
Source
92
398k
                                           const TX_CLASS tx_class) {
93
398k
  const int col = c >> bhl;
94
398k
  const int row = c - (col << bhl);
95
398k
  if (c == 0) return 0;
96
125k
  if ((tx_class == TX_CLASS_2D && row < 2 && col < 2) ||
97
115k
      (tx_class == TX_CLASS_HORIZ && col == 0) ||
98
114k
      (tx_class == TX_CLASS_VERT && row == 0))
99
11.1k
    return 7;
100
114k
  return 14;
101
125k
}
Unexecuted instantiation: entropy.c:get_br_ctx_eob
Unexecuted instantiation: entropymode.c:get_br_ctx_eob
Unexecuted instantiation: txb_common.c:get_br_ctx_eob
102
103
static AOM_FORCE_INLINE int get_br_ctx(const uint8_t *const levels,
104
                                       const int c,  // raster order
105
3.31M
                                       const int bhl, const TX_CLASS tx_class) {
106
3.31M
  const int col = c >> bhl;
107
3.31M
  const int row = c - (col << bhl);
108
3.31M
  const int stride = (1 << bhl) + TX_PAD_HOR;
109
3.31M
  const int pos = col * stride + row;
110
3.31M
  int mag = levels[pos + 1];
111
3.31M
  mag += levels[pos + stride];
112
3.31M
  switch (tx_class) {
113
2.44M
    case TX_CLASS_2D:
114
2.44M
      mag += levels[pos + stride + 1];
115
2.44M
      mag = AOMMIN((mag + 1) >> 1, 6);
116
2.44M
      if (c == 0) return mag;
117
3
      if ((row < 2) && (col < 2)) return mag + 7;
118
3
      break;
119
620k
    case TX_CLASS_HORIZ:
120
620k
      mag += levels[pos + (stride << 1)];
121
620k
      mag = AOMMIN((mag + 1) >> 1, 6);
122
620k
      if (c == 0) return mag;
123
560k
      if (col == 0) return mag + 7;
124
320k
      break;
125
320k
    case TX_CLASS_VERT:
126
249k
      mag += levels[pos + 2];
127
249k
      mag = AOMMIN((mag + 1) >> 1, 6);
128
249k
      if (c == 0) return mag;
129
225k
      if (row == 0) return mag + 7;
130
120k
      break;
131
120k
    default: break;
132
3.31M
  }
133
134
441k
  return mag + 14;
135
3.31M
}
decodetxb.c:get_br_ctx
Line
Count
Source
105
3.31M
                                       const int bhl, const TX_CLASS tx_class) {
106
3.31M
  const int col = c >> bhl;
107
3.31M
  const int row = c - (col << bhl);
108
3.31M
  const int stride = (1 << bhl) + TX_PAD_HOR;
109
3.31M
  const int pos = col * stride + row;
110
3.31M
  int mag = levels[pos + 1];
111
3.31M
  mag += levels[pos + stride];
112
3.31M
  switch (tx_class) {
113
2.44M
    case TX_CLASS_2D:
114
2.44M
      mag += levels[pos + stride + 1];
115
2.44M
      mag = AOMMIN((mag + 1) >> 1, 6);
116
2.44M
      if (c == 0) return mag;
117
3
      if ((row < 2) && (col < 2)) return mag + 7;
118
3
      break;
119
620k
    case TX_CLASS_HORIZ:
120
620k
      mag += levels[pos + (stride << 1)];
121
620k
      mag = AOMMIN((mag + 1) >> 1, 6);
122
620k
      if (c == 0) return mag;
123
560k
      if (col == 0) return mag + 7;
124
320k
      break;
125
320k
    case TX_CLASS_VERT:
126
249k
      mag += levels[pos + 2];
127
249k
      mag = AOMMIN((mag + 1) >> 1, 6);
128
249k
      if (c == 0) return mag;
129
225k
      if (row == 0) return mag + 7;
130
120k
      break;
131
120k
    default: break;
132
3.31M
  }
133
134
441k
  return mag + 14;
135
3.31M
}
Unexecuted instantiation: entropy.c:get_br_ctx
Unexecuted instantiation: entropymode.c:get_br_ctx
Unexecuted instantiation: txb_common.c:get_br_ctx
136
137
static const uint8_t clip_max3[256] = {
138
  0, 1, 2, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
139
  3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
140
  3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
141
  3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
142
  3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
143
  3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
144
  3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
145
  3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
146
  3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
147
  3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3
148
};
149
150
static AOM_FORCE_INLINE int get_nz_mag(const uint8_t *const levels,
151
24.1M
                                       const int bhl, const TX_CLASS tx_class) {
152
24.1M
  int mag;
153
154
  // Note: AOMMIN(level, 3) is useless for decoder since level < 3.
155
24.1M
  mag = clip_max3[levels[(1 << bhl) + TX_PAD_HOR]];  // { 0, 1 }
156
24.1M
  mag += clip_max3[levels[1]];                       // { 1, 0 }
157
158
24.1M
  if (tx_class == TX_CLASS_2D) {
159
7.18M
    mag += clip_max3[levels[(1 << bhl) + TX_PAD_HOR + 1]];          // { 1, 1 }
160
7.18M
    mag += clip_max3[levels[(2 << bhl) + (2 << TX_PAD_HOR_LOG2)]];  // { 0, 2 }
161
7.18M
    mag += clip_max3[levels[2]];                                    // { 2, 0 }
162
16.9M
  } else if (tx_class == TX_CLASS_VERT) {
163
5.35M
    mag += clip_max3[levels[2]];  // { 2, 0 }
164
5.35M
    mag += clip_max3[levels[3]];  // { 3, 0 }
165
5.35M
    mag += clip_max3[levels[4]];  // { 4, 0 }
166
11.6M
  } else {
167
11.6M
    mag += clip_max3[levels[(2 << bhl) + (2 << TX_PAD_HOR_LOG2)]];  // { 0, 2 }
168
11.6M
    mag += clip_max3[levels[(3 << bhl) + (3 << TX_PAD_HOR_LOG2)]];  // { 0, 3 }
169
11.6M
    mag += clip_max3[levels[(4 << bhl) + (4 << TX_PAD_HOR_LOG2)]];  // { 0, 4 }
170
11.6M
  }
171
172
24.1M
  return mag;
173
24.1M
}
decodetxb.c:get_nz_mag
Line
Count
Source
151
24.1M
                                       const int bhl, const TX_CLASS tx_class) {
152
24.1M
  int mag;
153
154
  // Note: AOMMIN(level, 3) is useless for decoder since level < 3.
155
24.1M
  mag = clip_max3[levels[(1 << bhl) + TX_PAD_HOR]];  // { 0, 1 }
156
24.1M
  mag += clip_max3[levels[1]];                       // { 1, 0 }
157
158
24.1M
  if (tx_class == TX_CLASS_2D) {
159
7.18M
    mag += clip_max3[levels[(1 << bhl) + TX_PAD_HOR + 1]];          // { 1, 1 }
160
7.18M
    mag += clip_max3[levels[(2 << bhl) + (2 << TX_PAD_HOR_LOG2)]];  // { 0, 2 }
161
7.18M
    mag += clip_max3[levels[2]];                                    // { 2, 0 }
162
16.9M
  } else if (tx_class == TX_CLASS_VERT) {
163
5.35M
    mag += clip_max3[levels[2]];  // { 2, 0 }
164
5.35M
    mag += clip_max3[levels[3]];  // { 3, 0 }
165
5.35M
    mag += clip_max3[levels[4]];  // { 4, 0 }
166
11.6M
  } else {
167
11.6M
    mag += clip_max3[levels[(2 << bhl) + (2 << TX_PAD_HOR_LOG2)]];  // { 0, 2 }
168
11.6M
    mag += clip_max3[levels[(3 << bhl) + (3 << TX_PAD_HOR_LOG2)]];  // { 0, 3 }
169
11.6M
    mag += clip_max3[levels[(4 << bhl) + (4 << TX_PAD_HOR_LOG2)]];  // { 0, 4 }
170
11.6M
  }
171
172
24.1M
  return mag;
173
24.1M
}
Unexecuted instantiation: entropy.c:get_nz_mag
Unexecuted instantiation: entropymode.c:get_nz_mag
Unexecuted instantiation: txb_common.c:get_nz_mag
174
175
#define NZ_MAP_CTX_0 SIG_COEF_CONTEXTS_2D
176
#define NZ_MAP_CTX_5 (NZ_MAP_CTX_0 + 5)
177
#define NZ_MAP_CTX_10 (NZ_MAP_CTX_0 + 10)
178
179
static const int nz_map_ctx_offset_1d[32] = {
180
  NZ_MAP_CTX_0,  NZ_MAP_CTX_5,  NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10,
181
  NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10,
182
  NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10,
183
  NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10,
184
  NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10,
185
  NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10, NZ_MAP_CTX_10,
186
  NZ_MAP_CTX_10, NZ_MAP_CTX_10,
187
};
188
189
static AOM_FORCE_INLINE int get_nz_map_ctx_from_stats(
190
    const int stats,
191
    const int coeff_idx,  // raster order
192
24.1M
    const int bhl, const TX_SIZE tx_size, const TX_CLASS tx_class) {
193
  // tx_class == 0(TX_CLASS_2D)
194
24.1M
  if ((tx_class | coeff_idx) == 0) return 0;
195
16.9M
  int ctx = (stats + 1) >> 1;
196
16.9M
  ctx = AOMMIN(ctx, 4);
197
16.9M
  switch (tx_class) {
198
0
    case TX_CLASS_2D: {
199
      // This is the algorithm to generate av1_nz_map_ctx_offset[][]
200
      //   const int width = tx_size_wide[tx_size];
201
      //   const int height = tx_size_high[tx_size];
202
      //   if (width < height) {
203
      //     if (row < 2) return 11 + ctx;
204
      //   } else if (width > height) {
205
      //     if (col < 2) return 16 + ctx;
206
      //   }
207
      //   if (row + col < 2) return ctx + 1;
208
      //   if (row + col < 4) return 5 + ctx + 1;
209
      //   return 21 + ctx;
210
0
      return ctx + av1_nz_map_ctx_offset[tx_size][coeff_idx];
211
0
    }
212
11.7M
    case TX_CLASS_HORIZ: {
213
11.7M
      const int col = coeff_idx >> bhl;
214
11.7M
      return ctx + nz_map_ctx_offset_1d[col];
215
0
    }
216
5.35M
    case TX_CLASS_VERT: {
217
5.35M
      const int col = coeff_idx >> bhl;
218
5.35M
      const int row = coeff_idx - (col << bhl);
219
5.35M
      return ctx + nz_map_ctx_offset_1d[row];
220
0
    }
221
0
    default: break;
222
16.9M
  }
223
0
  return 0;
224
16.9M
}
decodetxb.c:get_nz_map_ctx_from_stats
Line
Count
Source
192
24.1M
    const int bhl, const TX_SIZE tx_size, const TX_CLASS tx_class) {
193
  // tx_class == 0(TX_CLASS_2D)
194
24.1M
  if ((tx_class | coeff_idx) == 0) return 0;
195
16.9M
  int ctx = (stats + 1) >> 1;
196
16.9M
  ctx = AOMMIN(ctx, 4);
197
16.9M
  switch (tx_class) {
198
0
    case TX_CLASS_2D: {
199
      // This is the algorithm to generate av1_nz_map_ctx_offset[][]
200
      //   const int width = tx_size_wide[tx_size];
201
      //   const int height = tx_size_high[tx_size];
202
      //   if (width < height) {
203
      //     if (row < 2) return 11 + ctx;
204
      //   } else if (width > height) {
205
      //     if (col < 2) return 16 + ctx;
206
      //   }
207
      //   if (row + col < 2) return ctx + 1;
208
      //   if (row + col < 4) return 5 + ctx + 1;
209
      //   return 21 + ctx;
210
0
      return ctx + av1_nz_map_ctx_offset[tx_size][coeff_idx];
211
0
    }
212
11.7M
    case TX_CLASS_HORIZ: {
213
11.7M
      const int col = coeff_idx >> bhl;
214
11.7M
      return ctx + nz_map_ctx_offset_1d[col];
215
0
    }
216
5.35M
    case TX_CLASS_VERT: {
217
5.35M
      const int col = coeff_idx >> bhl;
218
5.35M
      const int row = coeff_idx - (col << bhl);
219
5.35M
      return ctx + nz_map_ctx_offset_1d[row];
220
0
    }
221
0
    default: break;
222
16.9M
  }
223
0
  return 0;
224
16.9M
}
Unexecuted instantiation: entropy.c:get_nz_map_ctx_from_stats
Unexecuted instantiation: entropymode.c:get_nz_map_ctx_from_stats
Unexecuted instantiation: txb_common.c:get_nz_map_ctx_from_stats
225
226
typedef aom_cdf_prob (*base_cdf_arr)[CDF_SIZE(4)];
227
typedef aom_cdf_prob (*br_cdf_arr)[CDF_SIZE(BR_CDF_SIZE)];
228
229
16.8M
static inline int get_lower_levels_ctx_eob(int bhl, int width, int scan_idx) {
230
16.8M
  if (scan_idx == 0) return 0;
231
8.09M
  if (scan_idx <= (width << bhl) / 8) return 1;
232
4.18M
  if (scan_idx <= (width << bhl) / 4) return 2;
233
3.03M
  return 3;
234
4.18M
}
decodetxb.c:get_lower_levels_ctx_eob
Line
Count
Source
229
16.8M
static inline int get_lower_levels_ctx_eob(int bhl, int width, int scan_idx) {
230
16.8M
  if (scan_idx == 0) return 0;
231
8.09M
  if (scan_idx <= (width << bhl) / 8) return 1;
232
4.18M
  if (scan_idx <= (width << bhl) / 4) return 2;
233
3.03M
  return 3;
234
4.18M
}
Unexecuted instantiation: entropy.c:get_lower_levels_ctx_eob
Unexecuted instantiation: entropymode.c:get_lower_levels_ctx_eob
Unexecuted instantiation: txb_common.c:get_lower_levels_ctx_eob
235
236
static inline int get_lower_levels_ctx_2d(const uint8_t *levels, int coeff_idx,
237
170M
                                          int bhl, TX_SIZE tx_size) {
238
170M
  assert(coeff_idx > 0);
239
170M
  int mag;
240
  // Note: AOMMIN(level, 3) is useless for decoder since level < 3.
241
170M
  levels = levels + get_padded_idx(coeff_idx, bhl);
242
170M
  mag = AOMMIN(levels[(1 << bhl) + TX_PAD_HOR], 3);               // { 0, 1 }
243
170M
  mag += AOMMIN(levels[1], 3);                                    // { 1, 0 }
244
170M
  mag += AOMMIN(levels[(1 << bhl) + TX_PAD_HOR + 1], 3);          // { 1, 1 }
245
170M
  mag += AOMMIN(levels[(2 << bhl) + (2 << TX_PAD_HOR_LOG2)], 3);  // { 0, 2 }
246
170M
  mag += AOMMIN(levels[2], 3);                                    // { 2, 0 }
247
248
170M
  const int ctx = AOMMIN((mag + 1) >> 1, 4);
249
170M
  return ctx + av1_nz_map_ctx_offset[tx_size][coeff_idx];
250
170M
}
decodetxb.c:get_lower_levels_ctx_2d
Line
Count
Source
237
170M
                                          int bhl, TX_SIZE tx_size) {
238
170M
  assert(coeff_idx > 0);
239
170M
  int mag;
240
  // Note: AOMMIN(level, 3) is useless for decoder since level < 3.
241
170M
  levels = levels + get_padded_idx(coeff_idx, bhl);
242
170M
  mag = AOMMIN(levels[(1 << bhl) + TX_PAD_HOR], 3);               // { 0, 1 }
243
170M
  mag += AOMMIN(levels[1], 3);                                    // { 1, 0 }
244
170M
  mag += AOMMIN(levels[(1 << bhl) + TX_PAD_HOR + 1], 3);          // { 1, 1 }
245
170M
  mag += AOMMIN(levels[(2 << bhl) + (2 << TX_PAD_HOR_LOG2)], 3);  // { 0, 2 }
246
170M
  mag += AOMMIN(levels[2], 3);                                    // { 2, 0 }
247
248
170M
  const int ctx = AOMMIN((mag + 1) >> 1, 4);
249
170M
  return ctx + av1_nz_map_ctx_offset[tx_size][coeff_idx];
250
170M
}
Unexecuted instantiation: entropy.c:get_lower_levels_ctx_2d
Unexecuted instantiation: entropymode.c:get_lower_levels_ctx_2d
Unexecuted instantiation: txb_common.c:get_lower_levels_ctx_2d
251
static AOM_FORCE_INLINE int get_lower_levels_ctx(const uint8_t *levels,
252
                                                 int coeff_idx, int bhl,
253
                                                 TX_SIZE tx_size,
254
24.2M
                                                 TX_CLASS tx_class) {
255
24.2M
  const int stats =
256
24.2M
      get_nz_mag(levels + get_padded_idx(coeff_idx, bhl), bhl, tx_class);
257
24.2M
  return get_nz_map_ctx_from_stats(stats, coeff_idx, bhl, tx_size, tx_class);
258
24.2M
}
decodetxb.c:get_lower_levels_ctx
Line
Count
Source
254
24.2M
                                                 TX_CLASS tx_class) {
255
24.2M
  const int stats =
256
24.2M
      get_nz_mag(levels + get_padded_idx(coeff_idx, bhl), bhl, tx_class);
257
24.2M
  return get_nz_map_ctx_from_stats(stats, coeff_idx, bhl, tx_size, tx_class);
258
24.2M
}
Unexecuted instantiation: entropy.c:get_lower_levels_ctx
Unexecuted instantiation: entropymode.c:get_lower_levels_ctx
Unexecuted instantiation: txb_common.c:get_lower_levels_ctx
259
260
static inline int get_lower_levels_ctx_general(int is_last, int scan_idx,
261
                                               int bhl, int width,
262
                                               const uint8_t *levels,
263
                                               int coeff_idx, TX_SIZE tx_size,
264
0
                                               TX_CLASS tx_class) {
265
0
  if (is_last) {
266
0
    if (scan_idx == 0) return 0;
267
0
    if (scan_idx <= (width << bhl) >> 3) return 1;
268
0
    if (scan_idx <= (width << bhl) >> 2) return 2;
269
0
    return 3;
270
0
  }
271
0
  return get_lower_levels_ctx(levels, coeff_idx, bhl, tx_size, tx_class);
272
0
}
Unexecuted instantiation: decodetxb.c:get_lower_levels_ctx_general
Unexecuted instantiation: entropy.c:get_lower_levels_ctx_general
Unexecuted instantiation: entropymode.c:get_lower_levels_ctx_general
Unexecuted instantiation: txb_common.c:get_lower_levels_ctx_general
273
274
17.0M
static inline void set_dc_sign(int *cul_level, int dc_val) {
275
17.0M
  if (dc_val < 0)
276
3.65M
    *cul_level |= 1 << COEFF_CONTEXT_BITS;
277
13.3M
  else if (dc_val > 0)
278
11.0M
    *cul_level += 2 << COEFF_CONTEXT_BITS;
279
17.0M
}
decodetxb.c:set_dc_sign
Line
Count
Source
274
17.0M
static inline void set_dc_sign(int *cul_level, int dc_val) {
275
17.0M
  if (dc_val < 0)
276
3.65M
    *cul_level |= 1 << COEFF_CONTEXT_BITS;
277
13.3M
  else if (dc_val > 0)
278
11.0M
    *cul_level += 2 << COEFF_CONTEXT_BITS;
279
17.0M
}
Unexecuted instantiation: entropy.c:set_dc_sign
Unexecuted instantiation: entropymode.c:set_dc_sign
Unexecuted instantiation: txb_common.c:set_dc_sign
280
281
static void get_txb_ctx_general(const BLOCK_SIZE plane_bsize,
282
                                const TX_SIZE tx_size, const int plane,
283
                                const ENTROPY_CONTEXT *const a,
284
                                const ENTROPY_CONTEXT *const l,
285
11.2M
                                TXB_CTX *const txb_ctx) {
286
26.6M
#define MAX_TX_SIZE_UNIT 16
287
11.2M
  static const int8_t signs[3] = { 0, -1, 1 };
288
11.2M
  static const int8_t dc_sign_contexts[4 * MAX_TX_SIZE_UNIT + 1] = {
289
11.2M
    1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
290
11.2M
    1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
291
11.2M
    2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2
292
11.2M
  };
293
11.2M
  const int txb_w_unit = tx_size_wide_unit[tx_size];
294
11.2M
  const int txb_h_unit = tx_size_high_unit[tx_size];
295
11.2M
  int dc_sign = 0;
296
11.2M
  int k = 0;
297
298
51.2M
  do {
299
51.2M
    const unsigned int sign = ((uint8_t)a[k]) >> COEFF_CONTEXT_BITS;
300
51.2M
    assert(sign <= 2);
301
51.2M
    dc_sign += signs[sign];
302
51.2M
  } while (++k < txb_w_unit);
303
304
11.2M
  k = 0;
305
32.9M
  do {
306
32.9M
    const unsigned int sign = ((uint8_t)l[k]) >> COEFF_CONTEXT_BITS;
307
32.9M
    assert(sign <= 2);
308
32.9M
    dc_sign += signs[sign];
309
32.9M
  } while (++k < txb_h_unit);
310
311
11.2M
  txb_ctx->dc_sign_ctx = dc_sign_contexts[dc_sign + 2 * MAX_TX_SIZE_UNIT];
312
313
11.2M
  if (plane == 0) {
314
4.63M
    if (plane_bsize == txsize_to_bsize[tx_size]) {
315
4.12M
      txb_ctx->txb_skip_ctx = 0;
316
4.12M
    } else {
317
      // This is the algorithm to generate table skip_contexts[top][left].
318
      //    const int max = AOMMIN(top | left, 4);
319
      //    const int min = AOMMIN(AOMMIN(top, left), 4);
320
      //    if (!max)
321
      //      txb_skip_ctx = 1;
322
      //    else if (!min)
323
      //      txb_skip_ctx = 2 + (max > 3);
324
      //    else if (max <= 3)
325
      //      txb_skip_ctx = 4;
326
      //    else if (min <= 3)
327
      //      txb_skip_ctx = 5;
328
      //    else
329
      //      txb_skip_ctx = 6;
330
516k
      static const uint8_t skip_contexts[5][5] = { { 1, 2, 2, 2, 3 },
331
516k
                                                   { 2, 4, 4, 4, 5 },
332
516k
                                                   { 2, 4, 4, 4, 5 },
333
516k
                                                   { 2, 4, 4, 4, 5 },
334
516k
                                                   { 3, 5, 5, 5, 6 } };
335
      // For top and left, we only care about which of the following three
336
      // categories they belong to: { 0 }, { 1, 2, 3 }, or { 4, 5, ... }. The
337
      // spec calculates top and left with the Max() function. We can calculate
338
      // an approximate max with bitwise OR because the real max and the
339
      // approximate max belong to the same category.
340
516k
      int top = 0;
341
516k
      int left = 0;
342
343
516k
      k = 0;
344
6.13M
      do {
345
6.13M
        top |= a[k];
346
6.13M
      } while (++k < txb_w_unit);
347
516k
      top &= COEFF_CONTEXT_MASK;
348
516k
      top = AOMMIN(top, 4);
349
350
516k
      k = 0;
351
6.07M
      do {
352
6.07M
        left |= l[k];
353
6.07M
      } while (++k < txb_h_unit);
354
516k
      left &= COEFF_CONTEXT_MASK;
355
516k
      left = AOMMIN(left, 4);
356
357
516k
      txb_ctx->txb_skip_ctx = skip_contexts[top][left];
358
516k
    }
359
6.58M
  } else {
360
6.58M
    const int ctx_base = get_entropy_context(tx_size, a, l);
361
6.58M
    const int ctx_offset = (num_pels_log2_lookup[plane_bsize] >
362
6.58M
                            num_pels_log2_lookup[txsize_to_bsize[tx_size]])
363
6.58M
                               ? 10
364
6.58M
                               : 7;
365
6.58M
    txb_ctx->txb_skip_ctx = ctx_base + ctx_offset;
366
6.58M
  }
367
11.2M
}
decodetxb.c:get_txb_ctx_general
Line
Count
Source
285
11.2M
                                TXB_CTX *const txb_ctx) {
286
11.2M
#define MAX_TX_SIZE_UNIT 16
287
11.2M
  static const int8_t signs[3] = { 0, -1, 1 };
288
11.2M
  static const int8_t dc_sign_contexts[4 * MAX_TX_SIZE_UNIT + 1] = {
289
11.2M
    1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
290
11.2M
    1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
291
11.2M
    2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2
292
11.2M
  };
293
11.2M
  const int txb_w_unit = tx_size_wide_unit[tx_size];
294
11.2M
  const int txb_h_unit = tx_size_high_unit[tx_size];
295
11.2M
  int dc_sign = 0;
296
11.2M
  int k = 0;
297
298
51.2M
  do {
299
51.2M
    const unsigned int sign = ((uint8_t)a[k]) >> COEFF_CONTEXT_BITS;
300
51.2M
    assert(sign <= 2);
301
51.2M
    dc_sign += signs[sign];
302
51.2M
  } while (++k < txb_w_unit);
303
304
11.2M
  k = 0;
305
32.9M
  do {
306
32.9M
    const unsigned int sign = ((uint8_t)l[k]) >> COEFF_CONTEXT_BITS;
307
32.9M
    assert(sign <= 2);
308
32.9M
    dc_sign += signs[sign];
309
32.9M
  } while (++k < txb_h_unit);
310
311
11.2M
  txb_ctx->dc_sign_ctx = dc_sign_contexts[dc_sign + 2 * MAX_TX_SIZE_UNIT];
312
313
11.2M
  if (plane == 0) {
314
4.63M
    if (plane_bsize == txsize_to_bsize[tx_size]) {
315
4.12M
      txb_ctx->txb_skip_ctx = 0;
316
4.12M
    } else {
317
      // This is the algorithm to generate table skip_contexts[top][left].
318
      //    const int max = AOMMIN(top | left, 4);
319
      //    const int min = AOMMIN(AOMMIN(top, left), 4);
320
      //    if (!max)
321
      //      txb_skip_ctx = 1;
322
      //    else if (!min)
323
      //      txb_skip_ctx = 2 + (max > 3);
324
      //    else if (max <= 3)
325
      //      txb_skip_ctx = 4;
326
      //    else if (min <= 3)
327
      //      txb_skip_ctx = 5;
328
      //    else
329
      //      txb_skip_ctx = 6;
330
516k
      static const uint8_t skip_contexts[5][5] = { { 1, 2, 2, 2, 3 },
331
516k
                                                   { 2, 4, 4, 4, 5 },
332
516k
                                                   { 2, 4, 4, 4, 5 },
333
516k
                                                   { 2, 4, 4, 4, 5 },
334
516k
                                                   { 3, 5, 5, 5, 6 } };
335
      // For top and left, we only care about which of the following three
336
      // categories they belong to: { 0 }, { 1, 2, 3 }, or { 4, 5, ... }. The
337
      // spec calculates top and left with the Max() function. We can calculate
338
      // an approximate max with bitwise OR because the real max and the
339
      // approximate max belong to the same category.
340
516k
      int top = 0;
341
516k
      int left = 0;
342
343
516k
      k = 0;
344
6.13M
      do {
345
6.13M
        top |= a[k];
346
6.13M
      } while (++k < txb_w_unit);
347
516k
      top &= COEFF_CONTEXT_MASK;
348
516k
      top = AOMMIN(top, 4);
349
350
516k
      k = 0;
351
6.07M
      do {
352
6.07M
        left |= l[k];
353
6.07M
      } while (++k < txb_h_unit);
354
516k
      left &= COEFF_CONTEXT_MASK;
355
516k
      left = AOMMIN(left, 4);
356
357
516k
      txb_ctx->txb_skip_ctx = skip_contexts[top][left];
358
516k
    }
359
6.58M
  } else {
360
6.58M
    const int ctx_base = get_entropy_context(tx_size, a, l);
361
6.58M
    const int ctx_offset = (num_pels_log2_lookup[plane_bsize] >
362
6.58M
                            num_pels_log2_lookup[txsize_to_bsize[tx_size]])
363
6.58M
                               ? 10
364
6.58M
                               : 7;
365
6.58M
    txb_ctx->txb_skip_ctx = ctx_base + ctx_offset;
366
6.58M
  }
367
11.2M
}
Unexecuted instantiation: entropy.c:get_txb_ctx_general
Unexecuted instantiation: entropymode.c:get_txb_ctx_general
Unexecuted instantiation: txb_common.c:get_txb_ctx_general
368
369
#define SPECIALIZE_GET_TXB_CTX(w, h)                                          \
370
  static void get_txb_ctx_##w##x##h(                                          \
371
      const BLOCK_SIZE plane_bsize, const int plane,                          \
372
      const ENTROPY_CONTEXT *const a, const ENTROPY_CONTEXT *const l,         \
373
15.3M
      TXB_CTX *const txb_ctx) {                                               \
374
15.3M
    static const int8_t signs[3] = { 0, -1, 1 };                              \
375
15.3M
    static const int8_t dc_sign_contexts[4 * MAX_TX_SIZE_UNIT + 1] = {        \
376
15.3M
      1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,       \
377
15.3M
      1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2,       \
378
15.3M
      2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2           \
379
15.3M
    };                                                                        \
380
15.3M
    const TX_SIZE tx_size = TX_##w##X##h;                                     \
381
15.3M
    const int txb_w_unit = tx_size_wide_unit[tx_size];                        \
382
15.3M
    const int txb_h_unit = tx_size_high_unit[tx_size];                        \
383
15.3M
    int dc_sign = 0;                                                          \
384
15.3M
    int k = 0;                                                                \
385
15.3M
                                                                              \
386
37.3M
    do {                                                                      \
387
37.3M
      const unsigned int sign = ((uint8_t)a[k]) >> COEFF_CONTEXT_BITS;        \
388
37.3M
      assert(sign <= 2);                                                      \
389
37.4M
      dc_sign += signs[sign];                                                 \
390
37.4M
    } while (++k < txb_w_unit);                                               \
391
15.3M
                                                                              \
392
15.4M
    k = 0;                                                                    \
393
37.4M
    do {                                                                      \
394
37.4M
      const unsigned int sign = ((uint8_t)l[k]) >> COEFF_CONTEXT_BITS;        \
395
37.4M
      assert(sign <= 2);                                                      \
396
37.4M
      dc_sign += signs[sign];                                                 \
397
37.4M
    } while (++k < txb_h_unit);                                               \
398
15.4M
                                                                              \
399
15.4M
    txb_ctx->dc_sign_ctx = dc_sign_contexts[dc_sign + 2 * MAX_TX_SIZE_UNIT];  \
400
15.4M
                                                                              \
401
15.4M
    if (plane == 0) {                                                         \
402
7.30M
      if (plane_bsize == txsize_to_bsize[tx_size]) {                          \
403
2.37M
        txb_ctx->txb_skip_ctx = 0;                                            \
404
4.92M
      } else {                                                                \
405
4.92M
        static const uint8_t skip_contexts[5][5] = { { 1, 2, 2, 2, 3 },       \
406
4.92M
                                                     { 2, 4, 4, 4, 5 },       \
407
4.92M
                                                     { 2, 4, 4, 4, 5 },       \
408
4.92M
                                                     { 2, 4, 4, 4, 5 },       \
409
4.92M
                                                     { 3, 5, 5, 5, 6 } };     \
410
4.92M
        int top = 0;                                                          \
411
4.92M
        int left = 0;                                                         \
412
4.92M
                                                                              \
413
4.92M
        k = 0;                                                                \
414
6.89M
        do {                                                                  \
415
6.89M
          top |= a[k];                                                        \
416
6.89M
        } while (++k < txb_w_unit);                                           \
417
4.92M
        top &= COEFF_CONTEXT_MASK;                                            \
418
4.92M
        top = AOMMIN(top, 4);                                                 \
419
4.92M
                                                                              \
420
4.92M
        k = 0;                                                                \
421
6.89M
        do {                                                                  \
422
6.89M
          left |= l[k];                                                       \
423
6.89M
        } while (++k < txb_h_unit);                                           \
424
4.92M
        left &= COEFF_CONTEXT_MASK;                                           \
425
4.92M
        left = AOMMIN(left, 4);                                               \
426
4.92M
                                                                              \
427
4.92M
        txb_ctx->txb_skip_ctx = skip_contexts[top][left];                     \
428
4.92M
      }                                                                       \
429
8.11M
    } else {                                                                  \
430
8.11M
      const int ctx_base = get_entropy_context(tx_size, a, l);                \
431
8.11M
      const int ctx_offset = (num_pels_log2_lookup[plane_bsize] >             \
432
8.11M
                              num_pels_log2_lookup[txsize_to_bsize[tx_size]]) \
433
8.11M
                                 ? 10                                         \
434
8.11M
                                 : 7;                                         \
435
8.11M
      txb_ctx->txb_skip_ctx = ctx_base + ctx_offset;                          \
436
8.11M
    }                                                                         \
437
15.4M
  }
Unexecuted instantiation: entropy.c:get_txb_ctx_4x4
Unexecuted instantiation: entropy.c:get_txb_ctx_8x8
Unexecuted instantiation: entropy.c:get_txb_ctx_16x16
Unexecuted instantiation: entropy.c:get_txb_ctx_32x32
Unexecuted instantiation: entropymode.c:get_txb_ctx_4x4
Unexecuted instantiation: entropymode.c:get_txb_ctx_8x8
Unexecuted instantiation: entropymode.c:get_txb_ctx_16x16
Unexecuted instantiation: entropymode.c:get_txb_ctx_32x32
Unexecuted instantiation: txb_common.c:get_txb_ctx_4x4
Unexecuted instantiation: txb_common.c:get_txb_ctx_8x8
Unexecuted instantiation: txb_common.c:get_txb_ctx_16x16
Unexecuted instantiation: txb_common.c:get_txb_ctx_32x32
438
439
8.14M
SPECIALIZE_GET_TXB_CTX(4, 4)
440
3.23M
SPECIALIZE_GET_TXB_CTX(8, 8)
441
2.23M
SPECIALIZE_GET_TXB_CTX(16, 16)
442
1.72M
SPECIALIZE_GET_TXB_CTX(32, 32)
443
444
// Wrapper for get_txb_ctx that calls the specialized version of get_txb_ctc_*
445
// so that the compiler can compile away the while loops.
446
static inline void get_txb_ctx(const BLOCK_SIZE plane_bsize,
447
                               const TX_SIZE tx_size, const int plane,
448
                               const ENTROPY_CONTEXT *const a,
449
                               const ENTROPY_CONTEXT *const l,
450
26.5M
                               TXB_CTX *const txb_ctx) {
451
26.5M
  switch (tx_size) {
452
8.18M
    case TX_4X4: get_txb_ctx_4x4(plane_bsize, plane, a, l, txb_ctx); break;
453
3.23M
    case TX_8X8: get_txb_ctx_8x8(plane_bsize, plane, a, l, txb_ctx); break;
454
2.23M
    case TX_16X16: get_txb_ctx_16x16(plane_bsize, plane, a, l, txb_ctx); break;
455
1.72M
    case TX_32X32: get_txb_ctx_32x32(plane_bsize, plane, a, l, txb_ctx); break;
456
11.2M
    default:
457
11.2M
      get_txb_ctx_general(plane_bsize, tx_size, plane, a, l, txb_ctx);
458
11.2M
      break;
459
26.5M
  }
460
26.5M
}
decodetxb.c:get_txb_ctx
Line
Count
Source
450
26.5M
                               TXB_CTX *const txb_ctx) {
451
26.5M
  switch (tx_size) {
452
8.18M
    case TX_4X4: get_txb_ctx_4x4(plane_bsize, plane, a, l, txb_ctx); break;
453
3.23M
    case TX_8X8: get_txb_ctx_8x8(plane_bsize, plane, a, l, txb_ctx); break;
454
2.23M
    case TX_16X16: get_txb_ctx_16x16(plane_bsize, plane, a, l, txb_ctx); break;
455
1.72M
    case TX_32X32: get_txb_ctx_32x32(plane_bsize, plane, a, l, txb_ctx); break;
456
11.2M
    default:
457
11.2M
      get_txb_ctx_general(plane_bsize, tx_size, plane, a, l, txb_ctx);
458
11.2M
      break;
459
26.5M
  }
460
26.5M
}
Unexecuted instantiation: entropy.c:get_txb_ctx
Unexecuted instantiation: entropymode.c:get_txb_ctx
Unexecuted instantiation: txb_common.c:get_txb_ctx
461
#undef MAX_TX_SIZE_UNIT
462
463
#endif  // AOM_AV1_COMMON_TXB_COMMON_H_