Coverage Report

Created: 2026-07-25 07:52

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libvpx/vp8/decoder/detokenize.c
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Count
Source
1
/*
2
 *  Copyright (c) 2010 The WebM project authors. All Rights Reserved.
3
 *
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 *  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
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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
8
 *  be found in the AUTHORS file in the root of the source tree.
9
 */
10
11
#include "vp8/common/blockd.h"
12
#include "onyxd_int.h"
13
#include "vpx_mem/vpx_mem.h"
14
#include "vpx_ports/compiler_attributes.h"
15
#include "vpx_ports/mem.h"
16
#include "detokenize.h"
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18
10.5M
void vp8_reset_mb_tokens_context(MACROBLOCKD *x) {
19
10.5M
  ENTROPY_CONTEXT *a_ctx = ((ENTROPY_CONTEXT *)x->above_context);
20
10.5M
  ENTROPY_CONTEXT *l_ctx = ((ENTROPY_CONTEXT *)x->left_context);
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22
10.5M
  memset(a_ctx, 0, sizeof(ENTROPY_CONTEXT_PLANES) - 1);
23
10.5M
  memset(l_ctx, 0, sizeof(ENTROPY_CONTEXT_PLANES) - 1);
24
25
  /* Clear entropy contexts for Y2 blocks */
26
10.5M
  if (!x->mode_info_context->mbmi.is_4x4) {
27
9.79M
    a_ctx[8] = l_ctx[8] = 0;
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9.79M
  }
29
10.5M
}
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31
/*
32
    ------------------------------------------------------------------------------
33
    Residual decoding (Paragraph 13.2 / 13.3)
34
*/
35
static const uint8_t kBands[16 + 1] = {
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  0, 1, 2, 3, 6, 4, 5, 6, 6,
37
  6, 6, 6, 6, 6, 6, 7, 0 /* extra entry as sentinel */
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};
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40
static const uint8_t kCat3[] = { 173, 148, 140, 0 };
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static const uint8_t kCat4[] = { 176, 155, 140, 135, 0 };
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static const uint8_t kCat5[] = { 180, 157, 141, 134, 130, 0 };
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static const uint8_t kCat6[] = { 254, 254, 243, 230, 196, 177,
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                                 153, 140, 133, 130, 129, 0 };
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static const uint8_t *const kCat3456[] = { kCat3, kCat4, kCat5, kCat6 };
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static const uint8_t kZigzag[16] = { 0, 1,  4,  8,  5, 2,  3,  6,
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                                     9, 12, 13, 10, 7, 11, 14, 15 };
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49
189M
#define VP8GetBit vp8dx_decode_bool
50
#define NUM_PROBAS 11
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#define NUM_CTX 3
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/* for const-casting */
54
typedef const uint8_t (*ProbaArray)[NUM_CTX][NUM_PROBAS];
55
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// With corrupt / fuzzed streams the calculation of br->value may overflow. See
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// b/148271109.
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static VPX_NO_UNSIGNED_OVERFLOW_CHECK int GetSigned(BOOL_DECODER *br,
59
22.6M
                                                    int value_to_sign) {
60
22.6M
  int split = (br->range + 1) >> 1;
61
22.6M
  VP8_BD_VALUE bigsplit = (VP8_BD_VALUE)split << (VP8_BD_VALUE_SIZE - 8);
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22.6M
  int v;
63
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22.6M
  if (br->count < 0) vp8dx_bool_decoder_fill(br);
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66
22.6M
  if (br->value < bigsplit) {
67
11.2M
    br->range = split;
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11.2M
    v = value_to_sign;
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11.4M
  } else {
70
11.4M
    br->range = br->range - split;
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11.4M
    br->value = br->value - bigsplit;
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11.4M
    v = -value_to_sign;
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11.4M
  }
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22.6M
  br->range += br->range;
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22.6M
  br->value += br->value;
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22.6M
  br->count--;
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78
22.6M
  return v;
79
22.6M
}
80
/*
81
   Returns the position of the last non-zero coeff plus one
82
   (and 0 if there's no coeff at all)
83
*/
84
static int GetCoeffs(BOOL_DECODER *br, ProbaArray prob, int ctx, int n,
85
89.6M
                     int16_t *out) {
86
89.6M
  const uint8_t *p = prob[n][ctx];
87
89.6M
  if (!VP8GetBit(br, p[0])) { /* first EOB is more a 'CBP' bit. */
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76.2M
    return 0;
89
76.2M
  }
90
38.7M
  while (1) {
91
38.7M
    ++n;
92
38.7M
    if (!VP8GetBit(br, p[1])) {
93
16.0M
      p = prob[kBands[n]][0];
94
22.6M
    } else { /* non zero coeff */
95
22.6M
      int v, j;
96
22.6M
      if (!VP8GetBit(br, p[2])) {
97
18.1M
        p = prob[kBands[n]][1];
98
18.1M
        v = 1;
99
18.1M
      } else {
100
4.48M
        if (!VP8GetBit(br, p[3])) {
101
3.72M
          if (!VP8GetBit(br, p[4])) {
102
2.72M
            v = 2;
103
2.72M
          } else {
104
1.00M
            v = 3 + VP8GetBit(br, p[5]);
105
1.00M
          }
106
3.72M
        } else {
107
758k
          if (!VP8GetBit(br, p[6])) {
108
348k
            if (!VP8GetBit(br, p[7])) {
109
245k
              v = 5 + VP8GetBit(br, 159);
110
245k
            } else {
111
103k
              v = 7 + 2 * VP8GetBit(br, 165);
112
103k
              v += VP8GetBit(br, 145);
113
103k
            }
114
409k
          } else {
115
409k
            const uint8_t *tab;
116
409k
            const int bit1 = VP8GetBit(br, p[8]);
117
409k
            const int bit0 = VP8GetBit(br, p[9 + bit1]);
118
409k
            const int cat = 2 * bit1 + bit0;
119
409k
            v = 0;
120
4.58M
            for (tab = kCat3456[cat]; *tab; ++tab) {
121
4.17M
              v += v + VP8GetBit(br, *tab);
122
4.17M
            }
123
409k
            v += 3 + (8 << cat);
124
409k
          }
125
758k
        }
126
4.48M
        p = prob[kBands[n]][2];
127
4.48M
      }
128
22.6M
      j = kZigzag[n - 1];
129
130
22.6M
      out[j] = GetSigned(br, v);
131
132
22.6M
      if (n == 16 || !VP8GetBit(br, p[0])) { /* EOB */
133
13.2M
        return n;
134
13.2M
      }
135
22.6M
    }
136
25.4M
    if (n == 16) {
137
68.7k
      return 16;
138
68.7k
    }
139
25.4M
  }
140
13.3M
}
141
142
3.64M
int vp8_decode_mb_tokens(VP8D_COMP *dx, MACROBLOCKD *x) {
143
3.64M
  BOOL_DECODER *bc = x->current_bc;
144
3.64M
  const FRAME_CONTEXT *const fc = &dx->common.fc;
145
3.64M
  char *eobs = x->eobs;
146
147
3.64M
  int i;
148
3.64M
  int nonzeros;
149
3.64M
  int eobtotal = 0;
150
151
3.64M
  short *qcoeff_ptr;
152
3.64M
  ProbaArray coef_probs;
153
3.64M
  ENTROPY_CONTEXT *a_ctx = ((ENTROPY_CONTEXT *)x->above_context);
154
3.64M
  ENTROPY_CONTEXT *l_ctx = ((ENTROPY_CONTEXT *)x->left_context);
155
3.64M
  ENTROPY_CONTEXT *a;
156
3.64M
  ENTROPY_CONTEXT *l;
157
3.64M
  int skip_dc = 0;
158
159
3.64M
  qcoeff_ptr = &x->qcoeff[0];
160
161
3.64M
  if (!x->mode_info_context->mbmi.is_4x4) {
162
2.02M
    a = a_ctx + 8;
163
2.02M
    l = l_ctx + 8;
164
165
2.02M
    coef_probs = fc->coef_probs[1];
166
167
2.02M
    nonzeros = GetCoeffs(bc, coef_probs, (*a + *l), 0, qcoeff_ptr + 24 * 16);
168
2.02M
    *a = *l = (nonzeros > 0);
169
170
2.02M
    eobs[24] = nonzeros;
171
2.02M
    eobtotal += nonzeros - 16;
172
173
2.02M
    coef_probs = fc->coef_probs[0];
174
2.02M
    skip_dc = 1;
175
2.02M
  } else {
176
1.62M
    coef_probs = fc->coef_probs[3];
177
1.62M
    skip_dc = 0;
178
1.62M
  }
179
180
62.0M
  for (i = 0; i < 16; ++i) {
181
58.3M
    a = a_ctx + (i & 3);
182
58.3M
    l = l_ctx + ((i & 0xc) >> 2);
183
184
58.3M
    nonzeros = GetCoeffs(bc, coef_probs, (*a + *l), skip_dc, qcoeff_ptr);
185
58.3M
    *a = *l = (nonzeros > 0);
186
187
58.3M
    nonzeros += skip_dc;
188
58.3M
    eobs[i] = nonzeros;
189
58.3M
    eobtotal += nonzeros;
190
58.3M
    qcoeff_ptr += 16;
191
58.3M
  }
192
193
3.64M
  coef_probs = fc->coef_probs[2];
194
195
3.64M
  a_ctx += 4;
196
3.64M
  l_ctx += 4;
197
32.8M
  for (i = 16; i < 24; ++i) {
198
29.1M
    a = a_ctx + ((i > 19) << 1) + (i & 1);
199
29.1M
    l = l_ctx + ((i > 19) << 1) + ((i & 3) > 1);
200
201
29.1M
    nonzeros = GetCoeffs(bc, coef_probs, (*a + *l), 0, qcoeff_ptr);
202
29.1M
    *a = *l = (nonzeros > 0);
203
204
29.1M
    eobs[i] = nonzeros;
205
29.1M
    eobtotal += nonzeros;
206
29.1M
    qcoeff_ptr += 16;
207
29.1M
  }
208
209
3.64M
  return eobtotal;
210
3.64M
}