Coverage Report

Created: 2025-09-08 07:52

/src/aom/av1/common/cdef.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright (c) 2016, 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
#include <assert.h>
13
#include <stddef.h>
14
#include <string.h>
15
16
#include "config/aom_scale_rtcd.h"
17
18
#include "aom/aom_integer.h"
19
#include "aom_util/aom_pthread.h"
20
#include "av1/common/av1_common_int.h"
21
#include "av1/common/cdef.h"
22
#include "av1/common/cdef_block.h"
23
#include "av1/common/common.h"
24
#include "av1/common/common_data.h"
25
#include "av1/common/enums.h"
26
#include "av1/common/reconinter.h"
27
#include "av1/common/thread_common.h"
28
29
static int is_8x8_block_skip(MB_MODE_INFO **grid, int mi_row, int mi_col,
30
1.93M
                             int mi_stride) {
31
1.93M
  MB_MODE_INFO **mbmi = grid + mi_row * mi_stride + mi_col;
32
4.45M
  for (int r = 0; r < mi_size_high[BLOCK_8X8]; ++r, mbmi += mi_stride) {
33
8.26M
    for (int c = 0; c < mi_size_wide[BLOCK_8X8]; ++c) {
34
5.73M
      if (!mbmi[c]->skip_txfm) return 0;
35
5.73M
    }
36
3.20M
  }
37
38
1.25M
  return 1;
39
1.93M
}
40
41
int av1_cdef_compute_sb_list(const CommonModeInfoParams *const mi_params,
42
                             int mi_row, int mi_col, cdef_list *dlist,
43
50.9k
                             BLOCK_SIZE bs) {
44
50.9k
  MB_MODE_INFO **grid = mi_params->mi_grid_base;
45
50.9k
  int maxc = mi_params->mi_cols - mi_col;
46
50.9k
  int maxr = mi_params->mi_rows - mi_row;
47
48
51.0k
  if (bs == BLOCK_128X128 || bs == BLOCK_128X64)
49
0
    maxc = AOMMIN(maxc, MI_SIZE_128X128);
50
50.9k
  else
51
50.9k
    maxc = AOMMIN(maxc, MI_SIZE_64X64);
52
51.0k
  if (bs == BLOCK_128X128 || bs == BLOCK_64X128)
53
0
    maxr = AOMMIN(maxr, MI_SIZE_128X128);
54
50.9k
  else
55
50.9k
    maxr = AOMMIN(maxr, MI_SIZE_64X64);
56
57
50.9k
  const int r_step = 2;  // mi_size_high[BLOCK_8X8]
58
50.9k
  const int c_step = 2;  // mi_size_wide[BLOCK_8X8]
59
50.9k
  const int r_shift = 1;
60
50.9k
  const int c_shift = 1;
61
50.9k
  int count = 0;
62
403k
  for (int r = 0; r < maxr; r += r_step) {
63
2.28M
    for (int c = 0; c < maxc; c += c_step) {
64
1.93M
      if (!is_8x8_block_skip(grid, mi_row + r, mi_col + c,
65
1.93M
                             mi_params->mi_stride)) {
66
675k
        dlist[count].by = r >> r_shift;
67
675k
        dlist[count].bx = c >> c_shift;
68
675k
        count++;
69
675k
      }
70
1.93M
    }
71
352k
  }
72
50.9k
  return count;
73
50.9k
}
74
75
void cdef_copy_rect8_8bit_to_16bit_c(uint16_t *dst, int dstride,
76
                                     const uint8_t *src, int sstride, int width,
77
55.2k
                                     int height) {
78
1.09M
  for (int i = 0; i < height; i++) {
79
47.1M
    for (int j = 0; j < width; j++) {
80
46.1M
      dst[i * dstride + j] = src[i * sstride + j];
81
46.1M
    }
82
1.03M
  }
83
55.2k
}
84
85
#if CONFIG_AV1_HIGHBITDEPTH
86
void cdef_copy_rect8_16bit_to_16bit_c(uint16_t *dst, int dstride,
87
                                      const uint16_t *src, int sstride,
88
107k
                                      int width, int height) {
89
1.81M
  for (int i = 0; i < height; i++) {
90
50.5M
    for (int j = 0; j < width; j++) {
91
48.7M
      dst[i * dstride + j] = src[i * sstride + j];
92
48.7M
    }
93
1.71M
  }
94
107k
}
95
#endif  // CONFIG_AV1_HIGHBITDEPTH
96
97
void av1_cdef_copy_sb8_16_lowbd(uint16_t *const dst, int dstride,
98
                                const uint8_t *src, int src_voffset,
99
                                int src_hoffset, int sstride, int vsize,
100
55.2k
                                int hsize) {
101
55.2k
  const uint8_t *base = &src[src_voffset * (ptrdiff_t)sstride + src_hoffset];
102
55.2k
  cdef_copy_rect8_8bit_to_16bit(dst, dstride, base, sstride, hsize, vsize);
103
55.2k
}
104
105
#if CONFIG_AV1_HIGHBITDEPTH
106
void av1_cdef_copy_sb8_16_highbd(uint16_t *const dst, int dstride,
107
                                 const uint8_t *src, int src_voffset,
108
                                 int src_hoffset, int sstride, int vsize,
109
107k
                                 int hsize) {
110
107k
  const uint16_t *base =
111
107k
      &CONVERT_TO_SHORTPTR(src)[src_voffset * (ptrdiff_t)sstride + src_hoffset];
112
107k
  cdef_copy_rect8_16bit_to_16bit(dst, dstride, base, sstride, hsize, vsize);
113
107k
}
114
#endif  // CONFIG_AV1_HIGHBITDEPTH
115
116
void av1_cdef_copy_sb8_16(const AV1_COMMON *const cm, uint16_t *const dst,
117
                          int dstride, const uint8_t *src, int src_voffset,
118
162k
                          int src_hoffset, int sstride, int vsize, int hsize) {
119
162k
#if CONFIG_AV1_HIGHBITDEPTH
120
162k
  if (cm->seq_params->use_highbitdepth) {
121
107k
    av1_cdef_copy_sb8_16_highbd(dst, dstride, src, src_voffset, src_hoffset,
122
107k
                                sstride, vsize, hsize);
123
107k
    return;
124
107k
  }
125
#else
126
  (void)cm;
127
#endif  // CONFIG_AV1_HIGHBITDEPTH
128
55.1k
  av1_cdef_copy_sb8_16_lowbd(dst, dstride, src, src_voffset, src_hoffset,
129
55.1k
                             sstride, vsize, hsize);
130
55.1k
}
131
132
static inline void copy_rect(uint16_t *dst, int dstride, const uint16_t *src,
133
222k
                             int sstride, int v, int h) {
134
5.75M
  for (int i = 0; i < v; i++) {
135
52.4M
    for (int j = 0; j < h; j++) {
136
46.9M
      dst[i * dstride + j] = src[i * sstride + j];
137
46.9M
    }
138
5.53M
  }
139
222k
}
140
141
// Prepares intermediate input buffer for CDEF.
142
// Inputs:
143
//   cm: Pointer to common structure.
144
//   fb_info: Pointer to the CDEF block-level parameter structure.
145
//   colbuf: Left column buffer for CDEF.
146
//   cdef_left: Left block is filtered or not.
147
//   fbc, fbr: col and row index of a block.
148
//   plane: plane index Y/CB/CR.
149
// Returns:
150
//   Nothing will be returned.
151
static void cdef_prepare_fb(const AV1_COMMON *const cm, CdefBlockInfo *fb_info,
152
                            uint16_t **const colbuf, const int cdef_left,
153
54.3k
                            int fbc, int fbr, int plane) {
154
54.3k
  const CommonModeInfoParams *const mi_params = &cm->mi_params;
155
54.3k
  uint16_t *src = fb_info->src;
156
54.3k
  const int luma_stride =
157
54.3k
      ALIGN_POWER_OF_TWO(mi_params->mi_cols << MI_SIZE_LOG2, 4);
158
54.3k
  const int nvfb = (mi_params->mi_rows + MI_SIZE_64X64 - 1) / MI_SIZE_64X64;
159
54.3k
  const int nhfb = (mi_params->mi_cols + MI_SIZE_64X64 - 1) / MI_SIZE_64X64;
160
54.3k
  int cstart = 0;
161
54.3k
  if (!cdef_left) cstart = -CDEF_HBORDER;
162
54.3k
  int rend, cend;
163
54.3k
  const int nhb =
164
54.3k
      AOMMIN(MI_SIZE_64X64, mi_params->mi_cols - MI_SIZE_64X64 * fbc);
165
54.3k
  const int nvb =
166
54.3k
      AOMMIN(MI_SIZE_64X64, mi_params->mi_rows - MI_SIZE_64X64 * fbr);
167
54.3k
  const int hsize = nhb << fb_info->mi_wide_l2;
168
54.3k
  const int vsize = nvb << fb_info->mi_high_l2;
169
54.3k
  const uint16_t *top_linebuf = fb_info->top_linebuf[plane];
170
54.3k
  const uint16_t *bot_linebuf = fb_info->bot_linebuf[plane];
171
54.3k
  const int bot_offset = (vsize + CDEF_VBORDER) * CDEF_BSTRIDE;
172
54.3k
  const int stride =
173
54.3k
      luma_stride >> (plane == AOM_PLANE_Y ? 0 : cm->seq_params->subsampling_x);
174
175
54.3k
  if (fbc == nhfb - 1)
176
39.7k
    cend = hsize;
177
14.6k
  else
178
14.6k
    cend = hsize + CDEF_HBORDER;
179
180
54.3k
  if (fbr == nvfb - 1)
181
17.1k
    rend = vsize;
182
37.2k
  else
183
37.2k
    rend = vsize + CDEF_VBORDER;
184
185
  /* Copy in the pixels we need from the current superblock for
186
  deringing.*/
187
54.3k
  av1_cdef_copy_sb8_16(
188
54.3k
      cm, &src[CDEF_VBORDER * CDEF_BSTRIDE + CDEF_HBORDER + cstart],
189
54.3k
      CDEF_BSTRIDE, fb_info->dst, fb_info->roffset, fb_info->coffset + cstart,
190
54.3k
      fb_info->dst_stride, vsize, cend - cstart);
191
192
  /* Copy in the pixels we need for the current superblock from bottom buffer.*/
193
54.3k
  if (fbr < nvfb - 1) {
194
37.3k
    copy_rect(&src[bot_offset + CDEF_HBORDER], CDEF_BSTRIDE,
195
37.3k
              &bot_linebuf[fb_info->coffset], stride, CDEF_VBORDER, hsize);
196
37.3k
  } else {
197
17.0k
    fill_rect(&src[bot_offset + CDEF_HBORDER], CDEF_BSTRIDE, CDEF_VBORDER,
198
17.0k
              hsize, CDEF_VERY_LARGE);
199
17.0k
  }
200
54.3k
  if (fbr < nvfb - 1 && fbc > 0) {
201
8.77k
    copy_rect(&src[bot_offset], CDEF_BSTRIDE,
202
8.77k
              &bot_linebuf[fb_info->coffset - CDEF_HBORDER], stride,
203
8.77k
              CDEF_VBORDER, CDEF_HBORDER);
204
45.5k
  } else {
205
45.5k
    fill_rect(&src[bot_offset], CDEF_BSTRIDE, CDEF_VBORDER, CDEF_HBORDER,
206
45.5k
              CDEF_VERY_LARGE);
207
45.5k
  }
208
54.3k
  if (fbr < nvfb - 1 && fbc < nhfb - 1) {
209
8.75k
    copy_rect(&src[bot_offset + hsize + CDEF_HBORDER], CDEF_BSTRIDE,
210
8.75k
              &bot_linebuf[fb_info->coffset + hsize], stride, CDEF_VBORDER,
211
8.75k
              CDEF_HBORDER);
212
45.6k
  } else {
213
45.6k
    fill_rect(&src[bot_offset + hsize + CDEF_HBORDER], CDEF_BSTRIDE,
214
45.6k
              CDEF_VBORDER, CDEF_HBORDER, CDEF_VERY_LARGE);
215
45.6k
  }
216
217
  /* Copy in the pixels we need from the current superblock from top buffer.*/
218
54.3k
  if (fbr > 0) {
219
40.2k
    copy_rect(&src[CDEF_HBORDER], CDEF_BSTRIDE, &top_linebuf[fb_info->coffset],
220
40.2k
              stride, CDEF_VBORDER, hsize);
221
40.2k
  } else {
222
14.1k
    fill_rect(&src[CDEF_HBORDER], CDEF_BSTRIDE, CDEF_VBORDER, hsize,
223
14.1k
              CDEF_VERY_LARGE);
224
14.1k
  }
225
54.3k
  if (fbr > 0 && fbc > 0) {
226
11.0k
    copy_rect(src, CDEF_BSTRIDE, &top_linebuf[fb_info->coffset - CDEF_HBORDER],
227
11.0k
              stride, CDEF_VBORDER, CDEF_HBORDER);
228
43.2k
  } else {
229
43.2k
    fill_rect(src, CDEF_BSTRIDE, CDEF_VBORDER, CDEF_HBORDER, CDEF_VERY_LARGE);
230
43.2k
  }
231
54.3k
  if (fbr > 0 && fbc < nhfb - 1) {
232
11.0k
    copy_rect(&src[hsize + CDEF_HBORDER], CDEF_BSTRIDE,
233
11.0k
              &top_linebuf[fb_info->coffset + hsize], stride, CDEF_VBORDER,
234
11.0k
              CDEF_HBORDER);
235
43.3k
  } else {
236
43.3k
    fill_rect(&src[hsize + CDEF_HBORDER], CDEF_BSTRIDE, CDEF_VBORDER,
237
43.3k
              CDEF_HBORDER, CDEF_VERY_LARGE);
238
43.3k
  }
239
54.3k
  if (cdef_left) {
240
    /* If we deringed the superblock on the left then we need to copy in
241
    saved pixels. */
242
50.8k
    copy_rect(src, CDEF_BSTRIDE, colbuf[plane], CDEF_HBORDER,
243
50.8k
              rend + CDEF_VBORDER, CDEF_HBORDER);
244
50.8k
  }
245
  /* Saving pixels in case we need to dering the superblock on the
246
  right. */
247
54.3k
  copy_rect(colbuf[plane], CDEF_HBORDER, src + hsize, CDEF_BSTRIDE,
248
54.3k
            rend + CDEF_VBORDER, CDEF_HBORDER);
249
250
54.3k
  if (fb_info->frame_boundary[LEFT]) {
251
39.6k
    fill_rect(src, CDEF_BSTRIDE, vsize + 2 * CDEF_VBORDER, CDEF_HBORDER,
252
39.6k
              CDEF_VERY_LARGE);
253
39.6k
  }
254
54.3k
  if (fb_info->frame_boundary[RIGHT]) {
255
39.7k
    fill_rect(&src[hsize + CDEF_HBORDER], CDEF_BSTRIDE,
256
39.7k
              vsize + 2 * CDEF_VBORDER, CDEF_HBORDER, CDEF_VERY_LARGE);
257
39.7k
  }
258
54.3k
}
259
260
static inline void cdef_filter_fb(CdefBlockInfo *const fb_info, int plane,
261
54.4k
                                  uint8_t use_highbitdepth) {
262
54.4k
  ptrdiff_t offset =
263
54.4k
      (ptrdiff_t)fb_info->dst_stride * fb_info->roffset + fb_info->coffset;
264
54.4k
  if (use_highbitdepth) {
265
30.9k
    av1_cdef_filter_fb(
266
30.9k
        NULL, CONVERT_TO_SHORTPTR(fb_info->dst + offset), fb_info->dst_stride,
267
30.9k
        &fb_info->src[CDEF_VBORDER * CDEF_BSTRIDE + CDEF_HBORDER],
268
30.9k
        fb_info->xdec, fb_info->ydec, fb_info->dir, NULL, fb_info->var, plane,
269
30.9k
        fb_info->dlist, fb_info->cdef_count, fb_info->level,
270
30.9k
        fb_info->sec_strength, fb_info->damping, fb_info->coeff_shift);
271
30.9k
  } else {
272
23.4k
    av1_cdef_filter_fb(
273
23.4k
        fb_info->dst + offset, NULL, fb_info->dst_stride,
274
23.4k
        &fb_info->src[CDEF_VBORDER * CDEF_BSTRIDE + CDEF_HBORDER],
275
23.4k
        fb_info->xdec, fb_info->ydec, fb_info->dir, NULL, fb_info->var, plane,
276
23.4k
        fb_info->dlist, fb_info->cdef_count, fb_info->level,
277
23.4k
        fb_info->sec_strength, fb_info->damping, fb_info->coeff_shift);
278
23.4k
  }
279
54.4k
}
280
281
// Initializes block-level parameters for CDEF.
282
static inline void cdef_init_fb_col(const MACROBLOCKD *const xd,
283
                                    CdefBlockInfo *const fb_info, int *level,
284
                                    int *sec_strength, int fbc, int fbr,
285
54.3k
                                    int plane) {
286
54.3k
  const PLANE_TYPE plane_type = get_plane_type(plane);
287
54.3k
  fb_info->level = level[plane_type];
288
54.3k
  fb_info->sec_strength = sec_strength[plane_type];
289
54.3k
  fb_info->dst = xd->plane[plane].dst.buf;
290
54.3k
  fb_info->dst_stride = xd->plane[plane].dst.stride;
291
292
54.3k
  fb_info->xdec = xd->plane[plane].subsampling_x;
293
54.3k
  fb_info->ydec = xd->plane[plane].subsampling_y;
294
54.3k
  fb_info->mi_wide_l2 = MI_SIZE_LOG2 - xd->plane[plane].subsampling_x;
295
54.3k
  fb_info->mi_high_l2 = MI_SIZE_LOG2 - xd->plane[plane].subsampling_y;
296
54.3k
  fb_info->roffset = MI_SIZE_64X64 * fbr << fb_info->mi_high_l2;
297
54.3k
  fb_info->coffset = MI_SIZE_64X64 * fbc << fb_info->mi_wide_l2;
298
54.3k
}
299
300
static void cdef_fb_col(const AV1_COMMON *const cm, const MACROBLOCKD *const xd,
301
                        CdefBlockInfo *const fb_info, uint16_t **const colbuf,
302
52.2k
                        int *cdef_left, int fbc, int fbr) {
303
52.2k
  const CommonModeInfoParams *const mi_params = &cm->mi_params;
304
52.2k
  const int mbmi_cdef_strength =
305
52.2k
      mi_params
306
52.2k
          ->mi_grid_base[MI_SIZE_64X64 * fbr * mi_params->mi_stride +
307
52.2k
                         MI_SIZE_64X64 * fbc]
308
52.2k
          ->cdef_strength;
309
52.2k
  const int num_planes = av1_num_planes(cm);
310
52.2k
  int is_zero_level[PLANE_TYPES] = { 1, 1 };
311
52.2k
  int level[PLANE_TYPES] = { 0 };
312
52.2k
  int sec_strength[PLANE_TYPES] = { 0 };
313
52.2k
  const CdefInfo *const cdef_info = &cm->cdef_info;
314
315
52.2k
  if (mi_params->mi_grid_base[MI_SIZE_64X64 * fbr * mi_params->mi_stride +
316
52.2k
                              MI_SIZE_64X64 * fbc] == NULL ||
317
52.2k
      mbmi_cdef_strength == -1) {
318
0
    av1_zero_array(cdef_left, num_planes);
319
0
    return;
320
0
  }
321
322
  // Compute level and secondary strength for planes
323
52.2k
  level[PLANE_TYPE_Y] =
324
52.2k
      cdef_info->cdef_strengths[mbmi_cdef_strength] / CDEF_SEC_STRENGTHS;
325
52.2k
  sec_strength[PLANE_TYPE_Y] =
326
52.2k
      cdef_info->cdef_strengths[mbmi_cdef_strength] % CDEF_SEC_STRENGTHS;
327
52.2k
  sec_strength[PLANE_TYPE_Y] += sec_strength[PLANE_TYPE_Y] == 3;
328
52.2k
  is_zero_level[PLANE_TYPE_Y] =
329
52.2k
      (level[PLANE_TYPE_Y] == 0) && (sec_strength[PLANE_TYPE_Y] == 0);
330
331
52.2k
  if (num_planes > 1) {
332
39.3k
    level[PLANE_TYPE_UV] =
333
39.3k
        cdef_info->cdef_uv_strengths[mbmi_cdef_strength] / CDEF_SEC_STRENGTHS;
334
39.3k
    sec_strength[PLANE_TYPE_UV] =
335
39.3k
        cdef_info->cdef_uv_strengths[mbmi_cdef_strength] % CDEF_SEC_STRENGTHS;
336
39.3k
    sec_strength[PLANE_TYPE_UV] += sec_strength[PLANE_TYPE_UV] == 3;
337
39.3k
    is_zero_level[PLANE_TYPE_UV] =
338
39.3k
        (level[PLANE_TYPE_UV] == 0) && (sec_strength[PLANE_TYPE_UV] == 0);
339
39.3k
  }
340
341
52.2k
  if (is_zero_level[PLANE_TYPE_Y] && is_zero_level[PLANE_TYPE_UV]) {
342
1.36k
    av1_zero_array(cdef_left, num_planes);
343
1.36k
    return;
344
1.36k
  }
345
346
50.9k
  fb_info->cdef_count = av1_cdef_compute_sb_list(mi_params, fbr * MI_SIZE_64X64,
347
50.9k
                                                 fbc * MI_SIZE_64X64,
348
50.9k
                                                 fb_info->dlist, BLOCK_64X64);
349
50.9k
  if (!fb_info->cdef_count) {
350
27.9k
    av1_zero_array(cdef_left, num_planes);
351
27.9k
    return;
352
27.9k
  }
353
354
79.9k
  for (int plane = 0; plane < num_planes; plane++) {
355
    // Do not skip cdef filtering for luma plane as filter direction is
356
    // computed based on luma.
357
57.0k
    if (plane && is_zero_level[get_plane_type(plane)]) {
358
2.62k
      cdef_left[plane] = 0;
359
2.62k
      continue;
360
2.62k
    }
361
54.3k
    cdef_init_fb_col(xd, fb_info, level, sec_strength, fbc, fbr, plane);
362
54.3k
    cdef_prepare_fb(cm, fb_info, colbuf, cdef_left[plane], fbc, fbr, plane);
363
54.3k
    cdef_filter_fb(fb_info, plane, cm->seq_params->use_highbitdepth);
364
54.3k
    cdef_left[plane] = 1;
365
54.3k
  }
366
22.9k
}
367
368
// Initializes row-level parameters for CDEF frame.
369
void av1_cdef_init_fb_row(const AV1_COMMON *const cm,
370
                          const MACROBLOCKD *const xd,
371
                          CdefBlockInfo *const fb_info,
372
                          uint16_t **const linebuf, uint16_t *const src,
373
510
                          struct AV1CdefSyncData *const cdef_sync, int fbr) {
374
510
  (void)cdef_sync;
375
510
  const int num_planes = av1_num_planes(cm);
376
510
  const int nvfb = (cm->mi_params.mi_rows + MI_SIZE_64X64 - 1) / MI_SIZE_64X64;
377
510
  const int luma_stride =
378
510
      ALIGN_POWER_OF_TWO(cm->mi_params.mi_cols << MI_SIZE_LOG2, 4);
379
510
  const bool ping_pong = fbr & 1;
380
  // for the current filter block, it's top left corner mi structure (mi_tl)
381
  // is first accessed to check whether the top and left boundaries are
382
  // frame boundaries. Then bottom-left and top-right mi structures are
383
  // accessed to check whether the bottom and right boundaries
384
  // (respectively) are frame boundaries.
385
  //
386
  // Note that we can't just check the bottom-right mi structure - eg. if
387
  // we're at the right-hand edge of the frame but not the bottom, then
388
  // the bottom-right mi is NULL but the bottom-left is not.
389
510
  fb_info->frame_boundary[TOP] = (MI_SIZE_64X64 * fbr == 0) ? 1 : 0;
390
510
  if (fbr != nvfb - 1)
391
239
    fb_info->frame_boundary[BOTTOM] =
392
239
        (MI_SIZE_64X64 * (fbr + 1) == cm->mi_params.mi_rows) ? 1 : 0;
393
271
  else
394
271
    fb_info->frame_boundary[BOTTOM] = 1;
395
396
510
  fb_info->src = src;
397
510
  fb_info->damping = cm->cdef_info.cdef_damping;
398
510
  fb_info->coeff_shift = AOMMAX(cm->seq_params->bit_depth - 8, 0);
399
510
  av1_zero(fb_info->dir);
400
510
  av1_zero(fb_info->var);
401
402
1.98k
  for (int plane = 0; plane < num_planes; plane++) {
403
1.47k
    const int mi_high_l2 = MI_SIZE_LOG2 - xd->plane[plane].subsampling_y;
404
1.47k
    const int offset = MI_SIZE_64X64 * (fbr + 1) << mi_high_l2;
405
1.47k
    const int stride = luma_stride >> xd->plane[plane].subsampling_x;
406
    // here ping-pong buffers are maintained for top linebuf
407
    // to avoid linebuf over-write by consecutive row.
408
1.47k
    uint16_t *const top_linebuf =
409
1.47k
        &linebuf[plane][ping_pong * CDEF_VBORDER * stride];
410
1.47k
    fb_info->bot_linebuf[plane] = &linebuf[plane][(CDEF_VBORDER << 1) * stride];
411
412
1.47k
    if (fbr != nvfb - 1)  // top line buffer copy
413
717
      av1_cdef_copy_sb8_16(cm, top_linebuf, stride, xd->plane[plane].dst.buf,
414
717
                           offset - CDEF_VBORDER, 0,
415
717
                           xd->plane[plane].dst.stride, CDEF_VBORDER, stride);
416
1.47k
    fb_info->top_linebuf[plane] =
417
1.47k
        &linebuf[plane][(!ping_pong) * CDEF_VBORDER * stride];
418
419
1.47k
    if (fbr != nvfb - 1)  // bottom line buffer copy
420
717
      av1_cdef_copy_sb8_16(cm, fb_info->bot_linebuf[plane], stride,
421
717
                           xd->plane[plane].dst.buf, offset, 0,
422
717
                           xd->plane[plane].dst.stride, CDEF_VBORDER, stride);
423
1.47k
  }
424
510
}
425
426
void av1_cdef_fb_row(const AV1_COMMON *const cm, MACROBLOCKD *xd,
427
                     uint16_t **const linebuf, uint16_t **const colbuf,
428
                     uint16_t *const src, int fbr,
429
                     cdef_init_fb_row_t cdef_init_fb_row_fn,
430
                     struct AV1CdefSyncData *const cdef_sync,
431
27.3k
                     struct aom_internal_error_info *error_info) {
432
  // TODO(aomedia:3276): Pass error_info to the low-level functions as required
433
  // in future to handle error propagation.
434
27.3k
  (void)error_info;
435
27.3k
  CdefBlockInfo fb_info;
436
27.3k
  int cdef_left[MAX_MB_PLANE] = { 1, 1, 1 };
437
27.3k
  const int nhfb = (cm->mi_params.mi_cols + MI_SIZE_64X64 - 1) / MI_SIZE_64X64;
438
439
27.3k
  cdef_init_fb_row_fn(cm, xd, &fb_info, linebuf, src, cdef_sync, fbr);
440
27.3k
#if CONFIG_MULTITHREAD
441
27.3k
  if (cdef_sync && cm->cdef_info.allocated_num_workers > 1) {
442
26.8k
    pthread_mutex_lock(cdef_sync->mutex_);
443
26.8k
    const bool cdef_mt_exit = cdef_sync->cdef_mt_exit;
444
26.8k
    pthread_mutex_unlock(cdef_sync->mutex_);
445
    // Exit in case any worker has encountered an error.
446
26.8k
    if (cdef_mt_exit) return;
447
26.8k
  }
448
27.3k
#endif
449
79.5k
  for (int fbc = 0; fbc < nhfb; fbc++) {
450
52.2k
    fb_info.frame_boundary[LEFT] = (MI_SIZE_64X64 * fbc == 0) ? 1 : 0;
451
52.2k
    if (fbc != nhfb - 1)
452
25.6k
      fb_info.frame_boundary[RIGHT] =
453
25.6k
          (MI_SIZE_64X64 * (fbc + 1) == cm->mi_params.mi_cols) ? 1 : 0;
454
26.6k
    else
455
26.6k
      fb_info.frame_boundary[RIGHT] = 1;
456
52.2k
    cdef_fb_col(cm, xd, &fb_info, colbuf, &cdef_left[0], fbc, fbr);
457
52.2k
  }
458
27.3k
}
459
460
// Perform CDEF on input frame.
461
// Inputs:
462
//   frame: Pointer to input frame buffer.
463
//   cm: Pointer to common structure.
464
//   xd: Pointer to common current coding block structure.
465
// Returns:
466
//   Nothing will be returned.
467
void av1_cdef_frame(YV12_BUFFER_CONFIG *frame, AV1_COMMON *const cm,
468
271
                    MACROBLOCKD *xd, cdef_init_fb_row_t cdef_init_fb_row_fn) {
469
271
  const int num_planes = av1_num_planes(cm);
470
271
  const int nvfb = (cm->mi_params.mi_rows + MI_SIZE_64X64 - 1) / MI_SIZE_64X64;
471
472
271
  av1_setup_dst_planes(xd->plane, cm->seq_params->sb_size, frame, 0, 0, 0,
473
271
                       num_planes);
474
475
781
  for (int fbr = 0; fbr < nvfb; fbr++)
476
510
    av1_cdef_fb_row(cm, xd, cm->cdef_info.linebuf, cm->cdef_info.colbuf,
477
510
                    cm->cdef_info.srcbuf, fbr, cdef_init_fb_row_fn, NULL,
478
510
                    xd->error_info);
479
271
}