Coverage Report

Created: 2025-07-23 08:18

/src/aom/av1/common/obmc.h
Line
Count
Source (jump to first uncovered line)
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_OBMC_H_
13
#define AOM_AV1_COMMON_OBMC_H_
14
15
typedef void (*overlappable_nb_visitor_t)(MACROBLOCKD *xd, int rel_mi_row,
16
                                          int rel_mi_col, uint8_t op_mi_size,
17
                                          int dir, MB_MODE_INFO *nb_mi,
18
                                          void *fun_ctxt, const int num_planes);
19
20
static INLINE void foreach_overlappable_nb_above(const AV1_COMMON *cm,
21
                                                 MACROBLOCKD *xd, int nb_max,
22
                                                 overlappable_nb_visitor_t fun,
23
2.53k
                                                 void *fun_ctxt) {
24
2.53k
  if (!xd->up_available) return;
25
26
0
  const int num_planes = av1_num_planes(cm);
27
0
  int nb_count = 0;
28
0
  const int mi_col = xd->mi_col;
29
  // prev_row_mi points into the mi array, starting at the beginning of the
30
  // previous row.
31
0
  MB_MODE_INFO **prev_row_mi = xd->mi - mi_col - 1 * xd->mi_stride;
32
0
  const int end_col = AOMMIN(mi_col + xd->width, cm->mi_params.mi_cols);
33
0
  uint8_t mi_step;
34
0
  for (int above_mi_col = mi_col; above_mi_col < end_col && nb_count < nb_max;
35
0
       above_mi_col += mi_step) {
36
0
    MB_MODE_INFO **above_mi = prev_row_mi + above_mi_col;
37
0
    mi_step =
38
0
        AOMMIN(mi_size_wide[above_mi[0]->bsize], mi_size_wide[BLOCK_64X64]);
39
    // If we're considering a block with width 4, it should be treated as
40
    // half of a pair of blocks with chroma information in the second. Move
41
    // above_mi_col back to the start of the pair if needed, set above_mbmi
42
    // to point at the block with chroma information, and set mi_step to 2 to
43
    // step over the entire pair at the end of the iteration.
44
0
    if (mi_step == 1) {
45
0
      above_mi_col &= ~1;
46
0
      above_mi = prev_row_mi + above_mi_col + 1;
47
0
      mi_step = 2;
48
0
    }
49
0
    if (is_neighbor_overlappable(*above_mi)) {
50
0
      ++nb_count;
51
0
      fun(xd, 0, above_mi_col - mi_col, AOMMIN(xd->width, mi_step), 0,
52
0
          *above_mi, fun_ctxt, num_planes);
53
0
    }
54
0
  }
55
0
}
Unexecuted instantiation: decodeframe.c:foreach_overlappable_nb_above
Unexecuted instantiation: rdopt.c:foreach_overlappable_nb_above
Unexecuted instantiation: reconinter_enc.c:foreach_overlappable_nb_above
reconinter.c:foreach_overlappable_nb_above
Line
Count
Source
23
2.53k
                                                 void *fun_ctxt) {
24
2.53k
  if (!xd->up_available) return;
25
26
0
  const int num_planes = av1_num_planes(cm);
27
0
  int nb_count = 0;
28
0
  const int mi_col = xd->mi_col;
29
  // prev_row_mi points into the mi array, starting at the beginning of the
30
  // previous row.
31
0
  MB_MODE_INFO **prev_row_mi = xd->mi - mi_col - 1 * xd->mi_stride;
32
0
  const int end_col = AOMMIN(mi_col + xd->width, cm->mi_params.mi_cols);
33
0
  uint8_t mi_step;
34
0
  for (int above_mi_col = mi_col; above_mi_col < end_col && nb_count < nb_max;
35
0
       above_mi_col += mi_step) {
36
0
    MB_MODE_INFO **above_mi = prev_row_mi + above_mi_col;
37
0
    mi_step =
38
0
        AOMMIN(mi_size_wide[above_mi[0]->bsize], mi_size_wide[BLOCK_64X64]);
39
    // If we're considering a block with width 4, it should be treated as
40
    // half of a pair of blocks with chroma information in the second. Move
41
    // above_mi_col back to the start of the pair if needed, set above_mbmi
42
    // to point at the block with chroma information, and set mi_step to 2 to
43
    // step over the entire pair at the end of the iteration.
44
0
    if (mi_step == 1) {
45
0
      above_mi_col &= ~1;
46
0
      above_mi = prev_row_mi + above_mi_col + 1;
47
0
      mi_step = 2;
48
0
    }
49
0
    if (is_neighbor_overlappable(*above_mi)) {
50
0
      ++nb_count;
51
0
      fun(xd, 0, above_mi_col - mi_col, AOMMIN(xd->width, mi_step), 0,
52
0
          *above_mi, fun_ctxt, num_planes);
53
0
    }
54
0
  }
55
0
}
56
57
static INLINE void foreach_overlappable_nb_left(const AV1_COMMON *cm,
58
                                                MACROBLOCKD *xd, int nb_max,
59
                                                overlappable_nb_visitor_t fun,
60
2.60k
                                                void *fun_ctxt) {
61
2.60k
  if (!xd->left_available) return;
62
63
407
  const int num_planes = av1_num_planes(cm);
64
407
  int nb_count = 0;
65
  // prev_col_mi points into the mi array, starting at the top of the
66
  // previous column
67
407
  const int mi_row = xd->mi_row;
68
407
  MB_MODE_INFO **prev_col_mi = xd->mi - 1 - mi_row * xd->mi_stride;
69
407
  const int end_row = AOMMIN(mi_row + xd->height, cm->mi_params.mi_rows);
70
407
  uint8_t mi_step;
71
814
  for (int left_mi_row = mi_row; left_mi_row < end_row && nb_count < nb_max;
72
407
       left_mi_row += mi_step) {
73
407
    MB_MODE_INFO **left_mi = prev_col_mi + left_mi_row * xd->mi_stride;
74
407
    mi_step =
75
407
        AOMMIN(mi_size_high[left_mi[0]->bsize], mi_size_high[BLOCK_64X64]);
76
407
    if (mi_step == 1) {
77
131
      left_mi_row &= ~1;
78
131
      left_mi = prev_col_mi + (left_mi_row + 1) * xd->mi_stride;
79
131
      mi_step = 2;
80
131
    }
81
407
    if (is_neighbor_overlappable(*left_mi)) {
82
401
      ++nb_count;
83
401
      fun(xd, left_mi_row - mi_row, 0, AOMMIN(xd->height, mi_step), 1, *left_mi,
84
401
          fun_ctxt, num_planes);
85
401
    }
86
407
  }
87
407
}
decodeframe.c:foreach_overlappable_nb_left
Line
Count
Source
60
66
                                                void *fun_ctxt) {
61
66
  if (!xd->left_available) return;
62
63
66
  const int num_planes = av1_num_planes(cm);
64
66
  int nb_count = 0;
65
  // prev_col_mi points into the mi array, starting at the top of the
66
  // previous column
67
66
  const int mi_row = xd->mi_row;
68
66
  MB_MODE_INFO **prev_col_mi = xd->mi - 1 - mi_row * xd->mi_stride;
69
66
  const int end_row = AOMMIN(mi_row + xd->height, cm->mi_params.mi_rows);
70
66
  uint8_t mi_step;
71
132
  for (int left_mi_row = mi_row; left_mi_row < end_row && nb_count < nb_max;
72
66
       left_mi_row += mi_step) {
73
66
    MB_MODE_INFO **left_mi = prev_col_mi + left_mi_row * xd->mi_stride;
74
66
    mi_step =
75
66
        AOMMIN(mi_size_high[left_mi[0]->bsize], mi_size_high[BLOCK_64X64]);
76
66
    if (mi_step == 1) {
77
25
      left_mi_row &= ~1;
78
25
      left_mi = prev_col_mi + (left_mi_row + 1) * xd->mi_stride;
79
25
      mi_step = 2;
80
25
    }
81
66
    if (is_neighbor_overlappable(*left_mi)) {
82
66
      ++nb_count;
83
66
      fun(xd, left_mi_row - mi_row, 0, AOMMIN(xd->height, mi_step), 1, *left_mi,
84
66
          fun_ctxt, num_planes);
85
66
    }
86
66
  }
87
66
}
Unexecuted instantiation: rdopt.c:foreach_overlappable_nb_left
Unexecuted instantiation: reconinter_enc.c:foreach_overlappable_nb_left
reconinter.c:foreach_overlappable_nb_left
Line
Count
Source
60
2.53k
                                                void *fun_ctxt) {
61
2.53k
  if (!xd->left_available) return;
62
63
341
  const int num_planes = av1_num_planes(cm);
64
341
  int nb_count = 0;
65
  // prev_col_mi points into the mi array, starting at the top of the
66
  // previous column
67
341
  const int mi_row = xd->mi_row;
68
341
  MB_MODE_INFO **prev_col_mi = xd->mi - 1 - mi_row * xd->mi_stride;
69
341
  const int end_row = AOMMIN(mi_row + xd->height, cm->mi_params.mi_rows);
70
341
  uint8_t mi_step;
71
682
  for (int left_mi_row = mi_row; left_mi_row < end_row && nb_count < nb_max;
72
341
       left_mi_row += mi_step) {
73
341
    MB_MODE_INFO **left_mi = prev_col_mi + left_mi_row * xd->mi_stride;
74
341
    mi_step =
75
341
        AOMMIN(mi_size_high[left_mi[0]->bsize], mi_size_high[BLOCK_64X64]);
76
341
    if (mi_step == 1) {
77
106
      left_mi_row &= ~1;
78
106
      left_mi = prev_col_mi + (left_mi_row + 1) * xd->mi_stride;
79
106
      mi_step = 2;
80
106
    }
81
341
    if (is_neighbor_overlappable(*left_mi)) {
82
335
      ++nb_count;
83
335
      fun(xd, left_mi_row - mi_row, 0, AOMMIN(xd->height, mi_step), 1, *left_mi,
84
335
          fun_ctxt, num_planes);
85
335
    }
86
341
  }
87
341
}
88
89
#endif  // AOM_AV1_COMMON_OBMC_H_