Coverage Report

Created: 2026-08-31 06:35

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libvpx/vp8/encoder/encodemv.c
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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 "vp8/common/common.h"
12
#include "encodemv.h"
13
#include "vp8/common/entropymode.h"
14
#include "vp8/common/systemdependent.h"
15
#include "vpx_ports/system_state.h"
16
17
#include <math.h>
18
19
static void encode_mvcomponent(vp8_writer *const w, const int v,
20
1.56M
                               const struct mv_context *mvc) {
21
1.56M
  const vp8_prob *p = mvc->prob;
22
1.56M
  const int x = v < 0 ? -v : v;
23
24
1.56M
  if (x < mvnum_short) { /* Small */
25
623k
    vp8_write(w, 0, p[mvpis_short]);
26
623k
    vp8_treed_write(w, vp8_small_mvtree, p + MVPshort, x, 3);
27
28
623k
    if (!x) return; /* no sign bit */
29
941k
  } else {          /* Large */
30
941k
    int i = 0;
31
32
941k
    vp8_write(w, 1, p[mvpis_short]);
33
34
2.82M
    do {
35
2.82M
      vp8_write(w, (x >> i) & 1, p[MVPbits + i]);
36
2.82M
    } while (++i < 3);
37
38
941k
    i = mvlong_width - 1; /* Skip bit 3, which is sometimes implicit */
39
40
5.64M
    do {
41
5.64M
      vp8_write(w, (x >> i) & 1, p[MVPbits + i]);
42
5.64M
    } while (--i > 3);
43
44
941k
    if (x & 0xFFF0) vp8_write(w, (x >> 3) & 1, p[MVPbits + 3]);
45
941k
  }
46
47
1.19M
  vp8_write(w, v < 0, p[MVPsign]);
48
1.19M
}
49
#if 0
50
static int max_mv_r = 0;
51
static int max_mv_c = 0;
52
#endif
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void vp8_encode_motion_vector(vp8_writer *w, const MV *mv,
54
782k
                              const MV_CONTEXT *mvc) {
55
#if 0
56
    {
57
        if (abs(mv->row >> 1) > max_mv_r)
58
        {
59
            FILE *f = fopen("maxmv.stt", "a");
60
            max_mv_r = abs(mv->row >> 1);
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            fprintf(f, "New Mv Row Max %6d\n", (mv->row >> 1));
62
63
            if ((abs(mv->row) / 2) != max_mv_r)
64
                fprintf(f, "MV Row conversion error %6d\n", abs(mv->row) / 2);
65
66
            fclose(f);
67
        }
68
69
        if (abs(mv->col >> 1) > max_mv_c)
70
        {
71
            FILE *f = fopen("maxmv.stt", "a");
72
            fprintf(f, "New Mv Col Max %6d\n", (mv->col >> 1));
73
            max_mv_c = abs(mv->col >> 1);
74
            fclose(f);
75
        }
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    }
77
#endif
78
79
782k
  encode_mvcomponent(w, mv->row >> 1, &mvc[0]);
80
782k
  encode_mvcomponent(w, mv->col >> 1, &mvc[1]);
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782k
}
82
83
static unsigned int cost_mvcomponent(const int v,
84
138M
                                     const struct mv_context *mvc) {
85
138M
  const vp8_prob *p = mvc->prob;
86
138M
  const int x = v;
87
138M
  unsigned int cost;
88
89
138M
  if (x < mvnum_short) {
90
1.08M
    cost = vp8_cost_zero(p[mvpis_short]) +
91
1.08M
           vp8_treed_cost(vp8_small_mvtree, p + MVPshort, x, 3);
92
93
1.08M
    if (!x) return cost;
94
137M
  } else {
95
137M
    int i = 0;
96
137M
    cost = vp8_cost_one(p[mvpis_short]);
97
98
412M
    do {
99
412M
      cost += vp8_cost_bit(p[MVPbits + i], (x >> i) & 1);
100
101
412M
    } while (++i < 3);
102
103
137M
    i = mvlong_width - 1; /* Skip bit 3, which is sometimes implicit */
104
105
824M
    do {
106
824M
      cost += vp8_cost_bit(p[MVPbits + i], (x >> i) & 1);
107
108
824M
    } while (--i > 3);
109
110
137M
    if (x & 0xFFF0) cost += vp8_cost_bit(p[MVPbits + 3], (x >> 3) & 1);
111
137M
  }
112
113
138M
  return cost; /* + vp8_cost_bit( p [MVPsign], v < 0); */
114
138M
}
115
116
void vp8_build_component_cost_table(int *mvcost[2], const MV_CONTEXT *mvc,
117
70.3k
                                    int mvc_flag[2]) {
118
70.3k
  int i = 1;
119
70.3k
  unsigned int cost0 = 0;
120
70.3k
  unsigned int cost1 = 0;
121
122
70.3k
  vpx_clear_system_state();
123
124
70.3k
  i = 1;
125
126
70.3k
  if (mvc_flag[0]) {
127
67.1k
    mvcost[0][0] = cost_mvcomponent(0, &mvc[0]);
128
129
68.6M
    do {
130
68.6M
      cost0 = cost_mvcomponent(i, &mvc[0]);
131
132
68.6M
      mvcost[0][i] = cost0 + vp8_cost_zero(mvc[0].prob[MVPsign]);
133
68.6M
      mvcost[0][-i] = cost0 + vp8_cost_one(mvc[0].prob[MVPsign]);
134
68.6M
    } while (++i <= mv_max);
135
67.1k
  }
136
137
70.3k
  i = 1;
138
139
70.3k
  if (mvc_flag[1]) {
140
68.1k
    mvcost[1][0] = cost_mvcomponent(0, &mvc[1]);
141
142
69.6M
    do {
143
69.6M
      cost1 = cost_mvcomponent(i, &mvc[1]);
144
145
69.6M
      mvcost[1][i] = cost1 + vp8_cost_zero(mvc[1].prob[MVPsign]);
146
69.6M
      mvcost[1][-i] = cost1 + vp8_cost_one(mvc[1].prob[MVPsign]);
147
69.6M
    } while (++i <= mv_max);
148
68.1k
  }
149
70.3k
}
150
151
/* Motion vector probability table update depends on benefit.
152
 * Small correction allows for the fact that an update to an MV probability
153
 * may have benefit in subsequent frames as well as the current one.
154
 */
155
10.3M
#define MV_PROB_UPDATE_CORRECTION -1
156
157
10.3M
static void calc_prob(vp8_prob *p, const unsigned int ct[2]) {
158
10.3M
  const unsigned int tot = ct[0] + ct[1];
159
160
10.3M
  if (tot) {
161
2.47M
    const vp8_prob x = ((ct[0] * 255) / tot) & ~1u;
162
2.47M
    *p = x ? x : 1;
163
2.47M
  }
164
10.3M
}
165
166
static void update(vp8_writer *const w, const unsigned int ct[2],
167
                   vp8_prob *const cur_p, const vp8_prob new_p,
168
10.3M
                   const vp8_prob update_p, int *updated) {
169
10.3M
  const int cur_b = vp8_cost_branch(ct, *cur_p);
170
10.3M
  const int new_b = vp8_cost_branch(ct, new_p);
171
10.3M
  const int cost =
172
10.3M
      7 + MV_PROB_UPDATE_CORRECTION +
173
10.3M
      ((vp8_cost_one(update_p) - vp8_cost_zero(update_p) + 128) >> 8);
174
175
10.3M
  if (cur_b - new_b > cost) {
176
36.0k
    *cur_p = new_p;
177
36.0k
    vp8_write(w, 1, update_p);
178
36.0k
    vp8_write_literal(w, new_p >> 1, 7);
179
36.0k
    *updated = 1;
180
181
36.0k
  } else
182
10.2M
    vp8_write(w, 0, update_p);
183
10.3M
}
184
185
static void write_component_probs(vp8_writer *const w,
186
                                  struct mv_context *cur_mvc,
187
                                  const struct mv_context *default_mvc_,
188
                                  const struct mv_context *update_mvc,
189
                                  const unsigned int events[MVvals],
190
543k
                                  unsigned int rc, int *updated) {
191
543k
  vp8_prob *Pcur = cur_mvc->prob;
192
543k
  const vp8_prob *default_mvc = default_mvc_->prob;
193
543k
  const vp8_prob *Pupdate = update_mvc->prob;
194
543k
  unsigned int is_short_ct[2], sign_ct[2];
195
196
543k
  unsigned int bit_ct[mvlong_width][2];
197
198
543k
  unsigned int short_ct[mvnum_short];
199
543k
  unsigned int short_bct[mvnum_short - 1][2];
200
201
543k
  vp8_prob Pnew[MVPcount];
202
203
543k
  (void)rc;
204
543k
  vp8_copy_array(Pnew, default_mvc, MVPcount);
205
206
543k
  vp8_zero(is_short_ct);
207
543k
  vp8_zero(sign_ct);
208
543k
  vp8_zero(bit_ct);
209
543k
  vp8_zero(short_ct);
210
543k
  vp8_zero(short_bct);
211
212
  /* j=0 */
213
543k
  {
214
543k
    const int c = events[mv_max];
215
216
543k
    is_short_ct[0] += c; /* Short vector */
217
543k
    short_ct[0] += c;    /* Magnitude distribution */
218
543k
  }
219
220
  /* j: 1 ~ mv_max (1023) */
221
543k
  {
222
543k
    int j = 1;
223
224
555M
    do {
225
555M
      const int c1 = events[mv_max + j]; /* positive */
226
555M
      const int c2 = events[mv_max - j]; /* negative */
227
555M
      const int c = c1 + c2;
228
555M
      int a = j;
229
230
555M
      sign_ct[0] += c1;
231
555M
      sign_ct[1] += c2;
232
233
555M
      if (a < mvnum_short) {
234
3.80M
        is_short_ct[0] += c; /* Short vector */
235
3.80M
        short_ct[a] += c;    /* Magnitude distribution */
236
552M
      } else {
237
552M
        int k = mvlong_width - 1;
238
552M
        is_short_ct[1] += c; /* Long vector */
239
240
        /*  bit 3 not always encoded. */
241
5.52G
        do {
242
5.52G
          bit_ct[k][(a >> k) & 1] += c;
243
244
5.52G
        } while (--k >= 0);
245
552M
      }
246
555M
    } while (++j <= mv_max);
247
543k
  }
248
249
543k
  calc_prob(Pnew + mvpis_short, is_short_ct);
250
251
543k
  calc_prob(Pnew + MVPsign, sign_ct);
252
253
543k
  {
254
543k
    vp8_prob p[mvnum_short - 1]; /* actually only need branch ct */
255
543k
    int j = 0;
256
257
543k
    vp8_tree_probs_from_distribution(8, vp8_small_mvencodings, vp8_small_mvtree,
258
543k
                                     p, short_bct, short_ct, 256, 1);
259
260
3.80M
    do {
261
3.80M
      calc_prob(Pnew + MVPshort + j, short_bct[j]);
262
263
3.80M
    } while (++j < mvnum_short - 1);
264
543k
  }
265
266
543k
  {
267
543k
    int j = 0;
268
269
5.43M
    do {
270
5.43M
      calc_prob(Pnew + MVPbits + j, bit_ct[j]);
271
272
5.43M
    } while (++j < mvlong_width);
273
543k
  }
274
275
543k
  update(w, is_short_ct, Pcur + mvpis_short, Pnew[mvpis_short], *Pupdate++,
276
543k
         updated);
277
278
543k
  update(w, sign_ct, Pcur + MVPsign, Pnew[MVPsign], *Pupdate++, updated);
279
280
543k
  {
281
543k
    const vp8_prob *const new_p = Pnew + MVPshort;
282
543k
    vp8_prob *const cur_p = Pcur + MVPshort;
283
284
543k
    int j = 0;
285
286
3.80M
    do {
287
3.80M
      update(w, short_bct[j], cur_p + j, new_p[j], *Pupdate++, updated);
288
289
3.80M
    } while (++j < mvnum_short - 1);
290
543k
  }
291
292
543k
  {
293
543k
    const vp8_prob *const new_p = Pnew + MVPbits;
294
543k
    vp8_prob *const cur_p = Pcur + MVPbits;
295
296
543k
    int j = 0;
297
298
5.43M
    do {
299
5.43M
      update(w, bit_ct[j], cur_p + j, new_p[j], *Pupdate++, updated);
300
301
5.43M
    } while (++j < mvlong_width);
302
543k
  }
303
543k
}
304
305
271k
void vp8_write_mvprobs(VP8_COMP *cpi) {
306
271k
  vp8_writer *const w = cpi->bc;
307
271k
  MV_CONTEXT *mvc = cpi->common.fc.mvc;
308
271k
  int flags[2] = { 0, 0 };
309
271k
  write_component_probs(w, &mvc[0], &vp8_default_mv_context[0],
310
271k
                        &vp8_mv_update_probs[0], cpi->mb.MVcount[0], 0,
311
271k
                        &flags[0]);
312
271k
  write_component_probs(w, &mvc[1], &vp8_default_mv_context[1],
313
271k
                        &vp8_mv_update_probs[1], cpi->mb.MVcount[1], 1,
314
271k
                        &flags[1]);
315
316
271k
  if (flags[0] || flags[1]) {
317
11.4k
    vp8_build_component_cost_table(
318
11.4k
        cpi->mb.mvcost, (const MV_CONTEXT *)cpi->common.fc.mvc, flags);
319
11.4k
  }
320
271k
}