Coverage Report

Created: 2025-12-14 07:01

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libvpx/vp9/common/vp9_pred_common.c
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Source
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/*
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 *  Copyright (c) 2012 The WebM project authors. All Rights Reserved.
4
 *
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 *  Use of this source code is governed by a BSD-style license
6
 *  that can be found in the LICENSE file in the root of the source
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 *  tree. An additional intellectual property rights grant can be found
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 *  in the file PATENTS.  All contributing project authors may
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 *  be found in the AUTHORS file in the root of the source tree.
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 */
11
12
#include "vp9/common/vp9_common.h"
13
#include "vp9/common/vp9_pred_common.h"
14
#include "vp9/common/vp9_seg_common.h"
15
16
83.8k
int vp9_compound_reference_allowed(const VP9_COMMON *cm) {
17
83.8k
  int i;
18
153k
  for (i = 1; i < REFS_PER_FRAME; ++i)
19
143k
    if (cm->ref_frame_sign_bias[i + 1] != cm->ref_frame_sign_bias[1]) return 1;
20
21
9.70k
  return 0;
22
83.8k
}
23
24
22.6k
void vp9_setup_compound_reference_mode(VP9_COMMON *cm) {
25
22.6k
  if (cm->ref_frame_sign_bias[LAST_FRAME] ==
26
22.6k
      cm->ref_frame_sign_bias[GOLDEN_FRAME]) {
27
15.1k
    cm->comp_fixed_ref = ALTREF_FRAME;
28
15.1k
    cm->comp_var_ref[0] = LAST_FRAME;
29
15.1k
    cm->comp_var_ref[1] = GOLDEN_FRAME;
30
15.1k
  } else if (cm->ref_frame_sign_bias[LAST_FRAME] ==
31
7.44k
             cm->ref_frame_sign_bias[ALTREF_FRAME]) {
32
3.47k
    cm->comp_fixed_ref = GOLDEN_FRAME;
33
3.47k
    cm->comp_var_ref[0] = LAST_FRAME;
34
3.47k
    cm->comp_var_ref[1] = ALTREF_FRAME;
35
3.97k
  } else {
36
3.97k
    cm->comp_fixed_ref = LAST_FRAME;
37
3.97k
    cm->comp_var_ref[0] = GOLDEN_FRAME;
38
3.97k
    cm->comp_var_ref[1] = ALTREF_FRAME;
39
3.97k
  }
40
22.6k
}
41
42
int vp9_get_reference_mode_context(const VP9_COMMON *cm,
43
7.76M
                                   const MACROBLOCKD *xd) {
44
7.76M
  int ctx;
45
7.76M
  const MODE_INFO *const above_mi = xd->above_mi;
46
7.76M
  const MODE_INFO *const left_mi = xd->left_mi;
47
7.76M
  const int has_above = !!above_mi;
48
7.76M
  const int has_left = !!left_mi;
49
  // Note:
50
  // The mode info data structure has a one element border above and to the
51
  // left of the entries corresponding to real macroblocks.
52
  // The prediction flags in these dummy entries are initialized to 0.
53
7.76M
  if (has_above && has_left) {  // both edges available
54
7.53M
    if (!has_second_ref(above_mi) && !has_second_ref(left_mi))
55
      // neither edge uses comp pred (0/1)
56
3.19M
      ctx = (above_mi->ref_frame[0] == cm->comp_fixed_ref) ^
57
3.19M
            (left_mi->ref_frame[0] == cm->comp_fixed_ref);
58
4.33M
    else if (!has_second_ref(above_mi))
59
      // one of two edges uses comp pred (2/3)
60
1.56M
      ctx = 2 + (above_mi->ref_frame[0] == cm->comp_fixed_ref ||
61
1.09M
                 !is_inter_block(above_mi));
62
2.77M
    else if (!has_second_ref(left_mi))
63
      // one of two edges uses comp pred (2/3)
64
1.52M
      ctx = 2 + (left_mi->ref_frame[0] == cm->comp_fixed_ref ||
65
1.05M
                 !is_inter_block(left_mi));
66
1.24M
    else  // both edges use comp pred (4)
67
1.24M
      ctx = 4;
68
7.53M
  } else if (has_above || has_left) {  // one edge available
69
227k
    const MODE_INFO *edge_mi = has_above ? above_mi : left_mi;
70
71
227k
    if (!has_second_ref(edge_mi))
72
      // edge does not use comp pred (0/1)
73
175k
      ctx = edge_mi->ref_frame[0] == cm->comp_fixed_ref;
74
51.9k
    else
75
      // edge uses comp pred (3)
76
51.9k
      ctx = 3;
77
227k
  } else {  // no edges available (1)
78
9.97k
    ctx = 1;
79
9.97k
  }
80
7.76M
  assert(ctx >= 0 && ctx < COMP_INTER_CONTEXTS);
81
7.76M
  return ctx;
82
7.76M
}
83
84
// Returns a context number for the given MB prediction signal
85
int vp9_get_pred_context_comp_ref_p(const VP9_COMMON *cm,
86
5.77M
                                    const MACROBLOCKD *xd) {
87
5.77M
  int pred_context;
88
5.77M
  const MODE_INFO *const above_mi = xd->above_mi;
89
5.77M
  const MODE_INFO *const left_mi = xd->left_mi;
90
5.77M
  const int above_in_image = !!above_mi;
91
5.77M
  const int left_in_image = !!left_mi;
92
93
  // Note:
94
  // The mode info data structure has a one element border above and to the
95
  // left of the entries corresponding to real macroblocks.
96
  // The prediction flags in these dummy entries are initialized to 0.
97
5.77M
  const int fix_ref_idx = cm->ref_frame_sign_bias[cm->comp_fixed_ref];
98
5.77M
  const int var_ref_idx = !fix_ref_idx;
99
100
5.77M
  if (above_in_image && left_in_image) {  // both edges available
101
5.53M
    const int above_intra = !is_inter_block(above_mi);
102
5.53M
    const int left_intra = !is_inter_block(left_mi);
103
104
5.53M
    if (above_intra && left_intra) {  // intra/intra (2)
105
188k
      pred_context = 2;
106
5.34M
    } else if (above_intra || left_intra) {  // intra/inter
107
814k
      const MODE_INFO *edge_mi = above_intra ? left_mi : above_mi;
108
109
814k
      if (!has_second_ref(edge_mi))  // single pred (1/3)
110
348k
        pred_context = 1 + 2 * (edge_mi->ref_frame[0] != cm->comp_var_ref[1]);
111
466k
      else  // comp pred (1/3)
112
466k
        pred_context =
113
466k
            1 + 2 * (edge_mi->ref_frame[var_ref_idx] != cm->comp_var_ref[1]);
114
4.53M
    } else {  // inter/inter
115
4.53M
      const int l_sg = !has_second_ref(left_mi);
116
4.53M
      const int a_sg = !has_second_ref(above_mi);
117
4.53M
      const MV_REFERENCE_FRAME vrfa =
118
4.53M
          a_sg ? above_mi->ref_frame[0] : above_mi->ref_frame[var_ref_idx];
119
4.53M
      const MV_REFERENCE_FRAME vrfl =
120
4.53M
          l_sg ? left_mi->ref_frame[0] : left_mi->ref_frame[var_ref_idx];
121
122
4.53M
      if (vrfa == vrfl && cm->comp_var_ref[1] == vrfa) {
123
661k
        pred_context = 0;
124
3.86M
      } else if (l_sg && a_sg) {  // single/single
125
1.59M
        if ((vrfa == cm->comp_fixed_ref && vrfl == cm->comp_var_ref[0]) ||
126
1.37M
            (vrfl == cm->comp_fixed_ref && vrfa == cm->comp_var_ref[0]))
127
440k
          pred_context = 4;
128
1.15M
        else if (vrfa == vrfl)
129
682k
          pred_context = 3;
130
467k
        else
131
467k
          pred_context = 1;
132
2.27M
      } else if (l_sg || a_sg) {  // single/comp
133
330k
        const MV_REFERENCE_FRAME vrfc = l_sg ? vrfa : vrfl;
134
330k
        const MV_REFERENCE_FRAME rfs = a_sg ? vrfa : vrfl;
135
330k
        if (vrfc == cm->comp_var_ref[1] && rfs != cm->comp_var_ref[1])
136
90.8k
          pred_context = 1;
137
240k
        else if (rfs == cm->comp_var_ref[1] && vrfc != cm->comp_var_ref[1])
138
35.4k
          pred_context = 2;
139
204k
        else
140
204k
          pred_context = 4;
141
1.94M
      } else if (vrfa == vrfl) {  // comp/comp
142
1.04M
        pred_context = 4;
143
1.04M
      } else {
144
901k
        pred_context = 2;
145
901k
      }
146
4.53M
    }
147
5.53M
  } else if (above_in_image || left_in_image) {  // one edge available
148
227k
    const MODE_INFO *edge_mi = above_in_image ? above_mi : left_mi;
149
150
227k
    if (!is_inter_block(edge_mi)) {
151
10.5k
      pred_context = 2;
152
217k
    } else {
153
217k
      if (has_second_ref(edge_mi))
154
179k
        pred_context =
155
179k
            4 * (edge_mi->ref_frame[var_ref_idx] != cm->comp_var_ref[1]);
156
37.3k
      else
157
37.3k
        pred_context = 3 * (edge_mi->ref_frame[0] != cm->comp_var_ref[1]);
158
217k
    }
159
227k
  } else {  // no edges available (2)
160
10.7k
    pred_context = 2;
161
10.7k
  }
162
5.77M
  assert(pred_context >= 0 && pred_context < REF_CONTEXTS);
163
164
5.77M
  return pred_context;
165
5.77M
}
166
167
6.99M
int vp9_get_pred_context_single_ref_p1(const MACROBLOCKD *xd) {
168
6.99M
  int pred_context;
169
6.99M
  const MODE_INFO *const above_mi = xd->above_mi;
170
6.99M
  const MODE_INFO *const left_mi = xd->left_mi;
171
6.99M
  const int has_above = !!above_mi;
172
6.99M
  const int has_left = !!left_mi;
173
  // Note:
174
  // The mode info data structure has a one element border above and to the
175
  // left of the entries corresponding to real macroblocks.
176
  // The prediction flags in these dummy entries are initialized to 0.
177
6.99M
  if (has_above && has_left) {  // both edges available
178
6.31M
    const int above_intra = !is_inter_block(above_mi);
179
6.31M
    const int left_intra = !is_inter_block(left_mi);
180
181
6.31M
    if (above_intra && left_intra) {  // intra/intra
182
54.6k
      pred_context = 2;
183
6.25M
    } else if (above_intra || left_intra) {  // intra/inter or inter/intra
184
691k
      const MODE_INFO *edge_mi = above_intra ? left_mi : above_mi;
185
691k
      if (!has_second_ref(edge_mi))
186
347k
        pred_context = 4 * (edge_mi->ref_frame[0] == LAST_FRAME);
187
343k
      else
188
343k
        pred_context = 1 + (edge_mi->ref_frame[0] == LAST_FRAME ||
189
187k
                            edge_mi->ref_frame[1] == LAST_FRAME);
190
5.56M
    } else {  // inter/inter
191
5.56M
      const int above_has_second = has_second_ref(above_mi);
192
5.56M
      const int left_has_second = has_second_ref(left_mi);
193
5.56M
      const MV_REFERENCE_FRAME above0 = above_mi->ref_frame[0];
194
5.56M
      const MV_REFERENCE_FRAME above1 = above_mi->ref_frame[1];
195
5.56M
      const MV_REFERENCE_FRAME left0 = left_mi->ref_frame[0];
196
5.56M
      const MV_REFERENCE_FRAME left1 = left_mi->ref_frame[1];
197
198
5.56M
      if (above_has_second && left_has_second) {
199
764k
        pred_context = 1 + (above0 == LAST_FRAME || above1 == LAST_FRAME ||
200
325k
                            left0 == LAST_FRAME || left1 == LAST_FRAME);
201
4.80M
      } else if (above_has_second || left_has_second) {
202
2.31M
        const MV_REFERENCE_FRAME rfs = !above_has_second ? above0 : left0;
203
2.31M
        const MV_REFERENCE_FRAME crf1 = above_has_second ? above0 : left0;
204
2.31M
        const MV_REFERENCE_FRAME crf2 = above_has_second ? above1 : left1;
205
206
2.31M
        if (rfs == LAST_FRAME)
207
1.02M
          pred_context = 3 + (crf1 == LAST_FRAME || crf2 == LAST_FRAME);
208
1.29M
        else
209
1.29M
          pred_context = (crf1 == LAST_FRAME || crf2 == LAST_FRAME);
210
2.48M
      } else {
211
2.48M
        pred_context = 2 * (above0 == LAST_FRAME) + 2 * (left0 == LAST_FRAME);
212
2.48M
      }
213
5.56M
    }
214
6.31M
  } else if (has_above || has_left) {  // one edge available
215
638k
    const MODE_INFO *edge_mi = has_above ? above_mi : left_mi;
216
638k
    if (!is_inter_block(edge_mi)) {  // intra
217
29.3k
      pred_context = 2;
218
609k
    } else {  // inter
219
609k
      if (!has_second_ref(edge_mi))
220
572k
        pred_context = 4 * (edge_mi->ref_frame[0] == LAST_FRAME);
221
36.6k
      else
222
36.6k
        pred_context = 1 + (edge_mi->ref_frame[0] == LAST_FRAME ||
223
29.2k
                            edge_mi->ref_frame[1] == LAST_FRAME);
224
609k
    }
225
638k
  } else {  // no edges available
226
46.7k
    pred_context = 2;
227
46.7k
  }
228
229
6.99M
  assert(pred_context >= 0 && pred_context < REF_CONTEXTS);
230
6.99M
  return pred_context;
231
6.99M
}
232
233
2.91M
int vp9_get_pred_context_single_ref_p2(const MACROBLOCKD *xd) {
234
2.91M
  int pred_context;
235
2.91M
  const MODE_INFO *const above_mi = xd->above_mi;
236
2.91M
  const MODE_INFO *const left_mi = xd->left_mi;
237
2.91M
  const int has_above = !!above_mi;
238
2.91M
  const int has_left = !!left_mi;
239
240
  // Note:
241
  // The mode info data structure has a one element border above and to the
242
  // left of the entries corresponding to real macroblocks.
243
  // The prediction flags in these dummy entries are initialized to 0.
244
2.91M
  if (has_above && has_left) {  // both edges available
245
2.73M
    const int above_intra = !is_inter_block(above_mi);
246
2.73M
    const int left_intra = !is_inter_block(left_mi);
247
248
2.73M
    if (above_intra && left_intra) {  // intra/intra
249
25.4k
      pred_context = 2;
250
2.70M
    } else if (above_intra || left_intra) {  // intra/inter or inter/intra
251
276k
      const MODE_INFO *edge_mi = above_intra ? left_mi : above_mi;
252
276k
      if (!has_second_ref(edge_mi)) {
253
133k
        if (edge_mi->ref_frame[0] == LAST_FRAME)
254
18.2k
          pred_context = 3;
255
114k
        else
256
114k
          pred_context = 4 * (edge_mi->ref_frame[0] == GOLDEN_FRAME);
257
143k
      } else {
258
143k
        pred_context = 1 + 2 * (edge_mi->ref_frame[0] == GOLDEN_FRAME ||
259
107k
                                edge_mi->ref_frame[1] == GOLDEN_FRAME);
260
143k
      }
261
2.43M
    } else {  // inter/inter
262
2.43M
      const int above_has_second = has_second_ref(above_mi);
263
2.43M
      const int left_has_second = has_second_ref(left_mi);
264
2.43M
      const MV_REFERENCE_FRAME above0 = above_mi->ref_frame[0];
265
2.43M
      const MV_REFERENCE_FRAME above1 = above_mi->ref_frame[1];
266
2.43M
      const MV_REFERENCE_FRAME left0 = left_mi->ref_frame[0];
267
2.43M
      const MV_REFERENCE_FRAME left1 = left_mi->ref_frame[1];
268
269
2.43M
      if (above_has_second && left_has_second) {
270
267k
        if (above0 == left0 && above1 == left1)
271
186k
          pred_context =
272
186k
              3 * (above0 == GOLDEN_FRAME || above1 == GOLDEN_FRAME ||
273
148k
                   left0 == GOLDEN_FRAME || left1 == GOLDEN_FRAME);
274
81.2k
        else
275
81.2k
          pred_context = 2;
276
2.16M
      } else if (above_has_second || left_has_second) {
277
1.47M
        const MV_REFERENCE_FRAME rfs = !above_has_second ? above0 : left0;
278
1.47M
        const MV_REFERENCE_FRAME crf1 = above_has_second ? above0 : left0;
279
1.47M
        const MV_REFERENCE_FRAME crf2 = above_has_second ? above1 : left1;
280
281
1.47M
        if (rfs == GOLDEN_FRAME)
282
212k
          pred_context = 3 + (crf1 == GOLDEN_FRAME || crf2 == GOLDEN_FRAME);
283
1.26M
        else if (rfs == ALTREF_FRAME)
284
553k
          pred_context = crf1 == GOLDEN_FRAME || crf2 == GOLDEN_FRAME;
285
712k
        else
286
712k
          pred_context = 1 + 2 * (crf1 == GOLDEN_FRAME || crf2 == GOLDEN_FRAME);
287
1.47M
      } else {
288
687k
        if (above0 == LAST_FRAME && left0 == LAST_FRAME) {
289
71.5k
          pred_context = 3;
290
616k
        } else if (above0 == LAST_FRAME || left0 == LAST_FRAME) {
291
228k
          const MV_REFERENCE_FRAME edge0 =
292
228k
              (above0 == LAST_FRAME) ? left0 : above0;
293
228k
          pred_context = 4 * (edge0 == GOLDEN_FRAME);
294
387k
        } else {
295
387k
          pred_context =
296
387k
              2 * (above0 == GOLDEN_FRAME) + 2 * (left0 == GOLDEN_FRAME);
297
387k
        }
298
687k
      }
299
2.43M
    }
300
2.73M
  } else if (has_above || has_left) {  // one edge available
301
169k
    const MODE_INFO *edge_mi = has_above ? above_mi : left_mi;
302
303
169k
    if (!is_inter_block(edge_mi) ||
304
156k
        (edge_mi->ref_frame[0] == LAST_FRAME && !has_second_ref(edge_mi)))
305
29.9k
      pred_context = 2;
306
139k
    else if (!has_second_ref(edge_mi))
307
119k
      pred_context = 4 * (edge_mi->ref_frame[0] == GOLDEN_FRAME);
308
20.6k
    else
309
20.6k
      pred_context = 3 * (edge_mi->ref_frame[0] == GOLDEN_FRAME ||
310
17.3k
                          edge_mi->ref_frame[1] == GOLDEN_FRAME);
311
169k
  } else {  // no edges available (2)
312
7.27k
    pred_context = 2;
313
7.27k
  }
314
2.91M
  assert(pred_context >= 0 && pred_context < REF_CONTEXTS);
315
2.91M
  return pred_context;
316
2.91M
}