Coverage Report

Created: 2026-07-16 06:31

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/dav1d/src/filmgrain_tmpl.c
Line
Count
Source
1
/*
2
 * Copyright © 2018, Niklas Haas
3
 * Copyright © 2018, VideoLAN and dav1d authors
4
 * Copyright © 2018, Two Orioles, LLC
5
 * All rights reserved.
6
 *
7
 * Redistribution and use in source and binary forms, with or without
8
 * modification, are permitted provided that the following conditions are met:
9
 *
10
 * 1. Redistributions of source code must retain the above copyright notice, this
11
 *    list of conditions and the following disclaimer.
12
 *
13
 * 2. Redistributions in binary form must reproduce the above copyright notice,
14
 *    this list of conditions and the following disclaimer in the documentation
15
 *    and/or other materials provided with the distribution.
16
 *
17
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
18
 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
19
 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
20
 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
21
 * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
22
 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
23
 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
24
 * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
26
 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
 */
28
29
#include "common/attributes.h"
30
#include "common/intops.h"
31
32
#include "src/filmgrain.h"
33
#include "src/tables.h"
34
35
1.27k
#define SUB_GRAIN_WIDTH 44
36
1.16k
#define SUB_GRAIN_HEIGHT 38
37
38
35.8M
static inline int get_random_number(const int bits, unsigned *const state) {
39
35.8M
    const int r = *state;
40
35.8M
    unsigned bit = ((r >> 0) ^ (r >> 1) ^ (r >> 3) ^ (r >> 12)) & 1;
41
35.8M
    *state = (r >> 1) | (bit << 15);
42
43
35.8M
    return (*state >> (16 - bits)) & ((1 << bits) - 1);
44
35.8M
}
45
46
100M
static inline int round2(const int x, const uint64_t shift) {
47
100M
    return (x + ((1 << shift) >> 1)) >> shift;
48
100M
}
49
50
static void generate_grain_y_c(entry buf[][GRAIN_WIDTH],
51
                               const Dav1dFilmGrainData *const data
52
                               HIGHBD_DECL_SUFFIX)
53
2.78k
{
54
2.78k
    const int bitdepth_min_8 = bitdepth_from_max(bitdepth_max) - 8;
55
2.78k
    unsigned seed = data->seed;
56
2.78k
    const int shift = 4 - bitdepth_min_8 + data->grain_scale_shift;
57
2.78k
    const int grain_ctr = 128 << bitdepth_min_8;
58
2.78k
    const int grain_min = -grain_ctr, grain_max = grain_ctr - 1;
59
60
206k
    for (int y = 0; y < GRAIN_HEIGHT; y++) {
61
16.8M
        for (int x = 0; x < GRAIN_WIDTH; x++) {
62
16.6M
            const int value = get_random_number(11, &seed);
63
16.6M
            buf[y][x] = round2(dav1d_gaussian_sequence[ value ], shift);
64
16.6M
        }
65
203k
    }
66
67
2.78k
    const int ar_pad = 3;
68
2.78k
    const int ar_lag = data->ar_coeff_lag;
69
70
197k
    for (int y = ar_pad; y < GRAIN_HEIGHT; y++) {
71
15.0M
        for (int x = ar_pad; x < GRAIN_WIDTH - ar_pad; x++) {
72
14.8M
            const int8_t *coeff = data->ar_coeffs_y;
73
14.8M
            int sum = 0;
74
46.0M
            for (int dy = -ar_lag; dy <= 0; dy++) {
75
127M
                for (int dx = -ar_lag; dx <= ar_lag; dx++) {
76
110M
                    if (!dx && !dy)
77
14.8M
                        break;
78
95.7M
                    sum += *(coeff++) * buf[y + dy][x + dx];
79
95.7M
                }
80
31.2M
            }
81
82
14.8M
            const int grain = buf[y][x] + round2(sum, data->ar_coeff_shift);
83
14.8M
            buf[y][x] = iclip(grain, grain_min, grain_max);
84
14.8M
        }
85
194k
    }
86
2.78k
}
87
88
static NOINLINE void
89
generate_grain_uv_c(entry buf[][GRAIN_WIDTH],
90
                    const entry buf_y[][GRAIN_WIDTH],
91
                    const Dav1dFilmGrainData *const data, const intptr_t uv,
92
                    const int subx, const int suby HIGHBD_DECL_SUFFIX)
93
4.08k
{
94
4.08k
    const int bitdepth_min_8 = bitdepth_from_max(bitdepth_max) - 8;
95
4.08k
    unsigned seed = data->seed ^ (uv ? 0x49d8 : 0xb524);
96
4.08k
    const int shift = 4 - bitdepth_min_8 + data->grain_scale_shift;
97
4.08k
    const int grain_ctr = 128 << bitdepth_min_8;
98
4.08k
    const int grain_min = -grain_ctr, grain_max = grain_ctr - 1;
99
100
4.08k
    const int chromaW = subx ? SUB_GRAIN_WIDTH  : GRAIN_WIDTH;
101
4.08k
    const int chromaH = suby ? SUB_GRAIN_HEIGHT : GRAIN_HEIGHT;
102
103
261k
    for (int y = 0; y < chromaH; y++) {
104
19.3M
        for (int x = 0; x < chromaW; x++) {
105
19.0M
            const int value = get_random_number(11, &seed);
106
19.0M
            buf[y][x] = round2(dav1d_gaussian_sequence[ value ], shift);
107
19.0M
        }
108
257k
    }
109
110
4.08k
    const int ar_pad = 3;
111
4.08k
    const int ar_lag = data->ar_coeff_lag;
112
113
248k
    for (int y = ar_pad; y < chromaH; y++) {
114
17.0M
        for (int x = ar_pad; x < chromaW - ar_pad; x++) {
115
16.7M
            const int8_t *coeff = data->ar_coeffs_uv[uv];
116
16.7M
            int sum = 0;
117
53.3M
            for (int dy = -ar_lag; dy <= 0; dy++) {
118
146M
                for (int dx = -ar_lag; dx <= ar_lag; dx++) {
119
                    // For the final (current) pixel, we need to add in the
120
                    // contribution from the luma grain texture
121
127M
                    if (!dx && !dy) {
122
16.7M
                        if (!data->num_y_points)
123
7.47M
                            break;
124
9.28M
                        int luma = 0;
125
9.28M
                        const int lumaX = ((x - ar_pad) << subx) + ar_pad;
126
9.28M
                        const int lumaY = ((y - ar_pad) << suby) + ar_pad;
127
19.8M
                        for (int i = 0; i <= suby; i++) {
128
23.8M
                            for (int j = 0; j <= subx; j++) {
129
13.2M
                                luma += buf_y[lumaY + i][lumaX + j];
130
13.2M
                            }
131
10.5M
                        }
132
9.28M
                        luma = round2(luma, subx + suby);
133
9.28M
                        sum += luma * (*coeff);
134
9.28M
                        break;
135
16.7M
                    }
136
137
110M
                    sum += *(coeff++) * buf[y + dy][x + dx];
138
110M
                }
139
36.5M
            }
140
141
16.7M
            const int grain = buf[y][x] + round2(sum, data->ar_coeff_shift);
142
16.7M
            buf[y][x] = iclip(grain, grain_min, grain_max);
143
16.7M
        }
144
244k
    }
145
4.08k
}
146
147
#define gnuv_ss_fn(nm, ss_x, ss_y) \
148
4.08k
static decl_generate_grain_uv_fn(generate_grain_uv_##nm##_c) { \
149
4.08k
    generate_grain_uv_c(buf, buf_y, data, uv, ss_x, ss_y HIGHBD_TAIL_SUFFIX); \
150
4.08k
}
filmgrain_tmpl.c:generate_grain_uv_420_c
Line
Count
Source
148
1.16k
static decl_generate_grain_uv_fn(generate_grain_uv_##nm##_c) { \
149
1.16k
    generate_grain_uv_c(buf, buf_y, data, uv, ss_x, ss_y HIGHBD_TAIL_SUFFIX); \
150
1.16k
}
filmgrain_tmpl.c:generate_grain_uv_422_c
Line
Count
Source
148
111
static decl_generate_grain_uv_fn(generate_grain_uv_##nm##_c) { \
149
111
    generate_grain_uv_c(buf, buf_y, data, uv, ss_x, ss_y HIGHBD_TAIL_SUFFIX); \
150
111
}
filmgrain_tmpl.c:generate_grain_uv_444_c
Line
Count
Source
148
2.80k
static decl_generate_grain_uv_fn(generate_grain_uv_##nm##_c) { \
149
2.80k
    generate_grain_uv_c(buf, buf_y, data, uv, ss_x, ss_y HIGHBD_TAIL_SUFFIX); \
150
2.80k
}
151
152
gnuv_ss_fn(420, 1, 1);
153
gnuv_ss_fn(422, 1, 0);
154
gnuv_ss_fn(444, 0, 0);
155
156
// samples from the correct block of a grain LUT, while taking into account the
157
// offsets provided by the offsets cache
158
static inline entry sample_lut(const entry grain_lut[][GRAIN_WIDTH],
159
                               const int offsets[2][2], const int subx, const int suby,
160
                               const int bx, const int by, const int x, const int y)
161
24.7M
{
162
24.7M
    const int randval = offsets[bx][by];
163
24.7M
    const int offx = 3 + (2 >> subx) * (3 + (randval >> 4));
164
24.7M
    const int offy = 3 + (2 >> suby) * (3 + (randval & 0xF));
165
24.7M
    return grain_lut[offy + y + (FG_BLOCK_SIZE >> suby) * by]
166
24.7M
                    [offx + x + (FG_BLOCK_SIZE >> subx) * bx];
167
24.7M
}
168
169
static void fgy_32x32xn_c(pixel *const dst_row, const pixel *const src_row,
170
                          const ptrdiff_t stride,
171
                          const Dav1dFilmGrainData *const data, const size_t pw,
172
                          const uint8_t scaling[SCALING_SIZE],
173
                          const entry grain_lut[][GRAIN_WIDTH],
174
                          const int bh, const int row_num HIGHBD_DECL_SUFFIX)
175
20.5k
{
176
20.5k
    const int rows = 1 + (data->overlap_flag && row_num > 0);
177
20.5k
    const int bitdepth_min_8 = bitdepth_from_max(bitdepth_max) - 8;
178
20.5k
    const int grain_ctr = 128 << bitdepth_min_8;
179
20.5k
    const int grain_min = -grain_ctr, grain_max = grain_ctr - 1;
180
181
20.5k
    int min_value, max_value;
182
20.5k
    if (data->clip_to_restricted_range) {
183
13.6k
        min_value = 16 << bitdepth_min_8;
184
13.6k
        max_value = 235 << bitdepth_min_8;
185
13.6k
    } else {
186
6.88k
        min_value = 0;
187
6.88k
        max_value = BITDEPTH_MAX;
188
6.88k
    }
189
190
    // seed[0] contains the current row, seed[1] contains the previous
191
20.5k
    unsigned seed[2];
192
56.1k
    for (int i = 0; i < rows; i++) {
193
35.6k
        seed[i] = data->seed;
194
35.6k
        seed[i] ^= (((row_num - i) * 37  + 178) & 0xFF) << 8;
195
35.6k
        seed[i] ^= (((row_num - i) * 173 + 105) & 0xFF);
196
35.6k
    }
197
198
20.5k
    assert(stride % (FG_BLOCK_SIZE * sizeof(pixel)) == 0);
199
200
20.5k
    int offsets[2 /* col offset */][2 /* row offset */];
201
202
    // process this row in FG_BLOCK_SIZE^2 blocks
203
56.9k
    for (unsigned bx = 0; bx < pw; bx += FG_BLOCK_SIZE) {
204
36.4k
        const int bw = imin(FG_BLOCK_SIZE, (int) pw - bx);
205
206
36.4k
        if (data->overlap_flag && bx) {
207
            // shift previous offsets left
208
39.6k
            for (int i = 0; i < rows; i++)
209
25.5k
                offsets[1][i] = offsets[0][i];
210
14.1k
        }
211
212
        // update current offsets
213
98.9k
        for (int i = 0; i < rows; i++)
214
62.5k
            offsets[0][i] = get_random_number(8, &seed[i]);
215
216
        // x/y block offsets to compensate for overlapped regions
217
36.4k
        const int ystart = data->overlap_flag && row_num ? imin(2, bh) : 0;
218
36.4k
        const int xstart = data->overlap_flag && bx      ? imin(2, bw) : 0;
219
220
36.4k
        static const int w[2][2] = { { 27, 17 }, { 17, 27 } };
221
222
36.4k
#define add_noise_y(x, y, grain)                                                  \
223
12.9M
        const pixel *const src = src_row + (y) * PXSTRIDE(stride) + (x) + bx;     \
224
12.9M
        pixel *const dst = dst_row + (y) * PXSTRIDE(stride) + (x) + bx;           \
225
12.9M
        const int noise = round2(scaling[ *src ] * (grain), data->scaling_shift); \
226
12.9M
        *dst = iclip(*src + noise, min_value, max_value);
227
228
940k
        for (int y = ystart; y < bh; y++) {
229
            // Non-overlapped image region (straightforward)
230
12.2M
            for (int x = xstart; x < bw; x++) {
231
11.3M
                int grain = sample_lut(grain_lut, offsets, 0, 0, 0, 0, x, y);
232
11.3M
                add_noise_y(x, y, grain);
233
11.3M
            }
234
235
            // Special case for overlapped column
236
1.57M
            for (int x = 0; x < xstart; x++) {
237
673k
                int grain = sample_lut(grain_lut, offsets, 0, 0, 0, 0, x, y);
238
673k
                int old   = sample_lut(grain_lut, offsets, 0, 0, 1, 0, x, y);
239
673k
                grain = round2(old * w[x][0] + grain * w[x][1], 5);
240
673k
                grain = iclip(grain, grain_min, grain_max);
241
673k
                add_noise_y(x, y, grain);
242
673k
            }
243
904k
        }
244
245
88.2k
        for (int y = 0; y < ystart; y++) {
246
            // Special case for overlapped row (sans corner)
247
964k
            for (int x = xstart; x < bw; x++) {
248
912k
                int grain = sample_lut(grain_lut, offsets, 0, 0, 0, 0, x, y);
249
912k
                int old   = sample_lut(grain_lut, offsets, 0, 0, 0, 1, x, y);
250
912k
                grain = round2(old * w[y][0] + grain * w[y][1], 5);
251
912k
                grain = iclip(grain, grain_min, grain_max);
252
912k
                add_noise_y(x, y, grain);
253
912k
            }
254
255
            // Special case for doubly-overlapped corner
256
95.1k
            for (int x = 0; x < xstart; x++) {
257
                // Blend the top pixel with the top left block
258
43.3k
                int top = sample_lut(grain_lut, offsets, 0, 0, 0, 1, x, y);
259
43.3k
                int old = sample_lut(grain_lut, offsets, 0, 0, 1, 1, x, y);
260
43.3k
                top = round2(old * w[x][0] + top * w[x][1], 5);
261
43.3k
                top = iclip(top, grain_min, grain_max);
262
263
                // Blend the current pixel with the left block
264
43.3k
                int grain = sample_lut(grain_lut, offsets, 0, 0, 0, 0, x, y);
265
43.3k
                old = sample_lut(grain_lut, offsets, 0, 0, 1, 0, x, y);
266
43.3k
                grain = round2(old * w[x][0] + grain * w[x][1], 5);
267
43.3k
                grain = iclip(grain, grain_min, grain_max);
268
269
                // Mix the row rows together and apply grain
270
43.3k
                grain = round2(top * w[y][0] + grain * w[y][1], 5);
271
43.3k
                grain = iclip(grain, grain_min, grain_max);
272
43.3k
                add_noise_y(x, y, grain);
273
43.3k
            }
274
51.8k
        }
275
36.4k
    }
276
20.5k
}
277
278
static NOINLINE void
279
fguv_32x32xn_c(pixel *const dst_row, const pixel *const src_row,
280
               const ptrdiff_t stride, const Dav1dFilmGrainData *const data,
281
               const size_t pw, const uint8_t scaling[SCALING_SIZE],
282
               const entry grain_lut[][GRAIN_WIDTH], const int bh,
283
               const int row_num, const pixel *const luma_row,
284
               const ptrdiff_t luma_stride, const int uv, const int is_id,
285
               const int sx, const int sy HIGHBD_DECL_SUFFIX)
286
30.2k
{
287
30.2k
    const int rows = 1 + (data->overlap_flag && row_num > 0);
288
30.2k
    const int bitdepth_min_8 = bitdepth_from_max(bitdepth_max) - 8;
289
30.2k
    const int grain_ctr = 128 << bitdepth_min_8;
290
30.2k
    const int grain_min = -grain_ctr, grain_max = grain_ctr - 1;
291
292
30.2k
    int min_value, max_value;
293
30.2k
    if (data->clip_to_restricted_range) {
294
20.5k
        min_value = 16 << bitdepth_min_8;
295
20.5k
        max_value = (is_id ? 235 : 240) << bitdepth_min_8;
296
20.5k
    } else {
297
9.67k
        min_value = 0;
298
9.67k
        max_value = BITDEPTH_MAX;
299
9.67k
    }
300
301
    // seed[0] contains the current row, seed[1] contains the previous
302
30.2k
    unsigned seed[2];
303
80.9k
    for (int i = 0; i < rows; i++) {
304
50.7k
        seed[i] = data->seed;
305
50.7k
        seed[i] ^= (((row_num - i) * 37  + 178) & 0xFF) << 8;
306
50.7k
        seed[i] ^= (((row_num - i) * 173 + 105) & 0xFF);
307
50.7k
    }
308
309
30.2k
    assert(stride % (FG_BLOCK_SIZE * sizeof(pixel)) == 0);
310
311
30.2k
    int offsets[2 /* col offset */][2 /* row offset */];
312
313
    // process this row in FG_BLOCK_SIZE^2 blocks (subsampled)
314
78.9k
    for (unsigned bx = 0; bx < pw; bx += FG_BLOCK_SIZE >> sx) {
315
48.7k
        const int bw = imin(FG_BLOCK_SIZE >> sx, (int)(pw - bx));
316
48.7k
        if (data->overlap_flag && bx) {
317
            // shift previous offsets left
318
42.8k
            for (int i = 0; i < rows; i++)
319
26.7k
                offsets[1][i] = offsets[0][i];
320
16.1k
        }
321
322
        // update current offsets
323
127k
        for (int i = 0; i < rows; i++)
324
78.6k
            offsets[0][i] = get_random_number(8, &seed[i]);
325
326
        // x/y block offsets to compensate for overlapped regions
327
48.7k
        const int ystart = data->overlap_flag && row_num ? imin(2 >> sy, bh) : 0;
328
48.7k
        const int xstart = data->overlap_flag && bx      ? imin(2 >> sx, bw) : 0;
329
330
48.7k
        static const int w[2 /* sub */][2 /* off */][2] = {
331
48.7k
            { { 27, 17 }, { 17, 27 } },
332
48.7k
            { { 23, 22 } },
333
48.7k
        };
334
335
48.7k
#define add_noise_uv(x, y, grain)                                                    \
336
13.8M
            const int lx = (bx + x) << sx;                                           \
337
13.8M
            const int ly = y << sy;                                                  \
338
13.8M
            const pixel *const luma = luma_row + ly * PXSTRIDE(luma_stride) + lx;    \
339
13.8M
            pixel avg = luma[0];                                                     \
340
13.8M
            if (sx)                                                                  \
341
13.8M
                avg = (avg + luma[1] + 1) >> 1;                                      \
342
13.8M
            const pixel *const src = src_row + (y) * PXSTRIDE(stride) + (bx + (x));  \
343
13.8M
            pixel *const dst = dst_row + (y) * PXSTRIDE(stride) + (bx + (x));        \
344
13.8M
            int val = avg;                                                           \
345
13.8M
            if (!data->chroma_scaling_from_luma) {                                   \
346
2.73M
                const int combined = avg * data->uv_luma_mult[uv] +                  \
347
2.73M
                               *src * data->uv_mult[uv];                             \
348
2.73M
                val = iclip_pixel( (combined >> 6) +                                 \
349
2.73M
                                   (data->uv_offset[uv] * (1 << bitdepth_min_8)) );  \
350
2.73M
            }                                                                        \
351
13.8M
            const int noise = round2(scaling[ val ] * (grain), data->scaling_shift); \
352
13.8M
            *dst = iclip(*src + noise, min_value, max_value);
353
354
1.03M
        for (int y = ystart; y < bh; y++) {
355
            // Non-overlapped image region (straightforward)
356
13.4M
            for (int x = xstart; x < bw; x++) {
357
12.5M
                int grain = sample_lut(grain_lut, offsets, sx, sy, 0, 0, x, y);
358
12.5M
                add_noise_uv(x, y, grain);
359
12.5M
            }
360
361
            // Special case for overlapped column
362
1.55M
            for (int x = 0; x < xstart; x++) {
363
566k
                int grain = sample_lut(grain_lut, offsets, sx, sy, 0, 0, x, y);
364
566k
                int old   = sample_lut(grain_lut, offsets, sx, sy, 1, 0, x, y);
365
566k
                grain = round2(old * w[sx][x][0] + grain * w[sx][x][1], 5);
366
566k
                grain = iclip(grain, grain_min, grain_max);
367
566k
                add_noise_uv(x, y, grain);
368
566k
            }
369
986k
        }
370
371
101k
        for (int y = 0; y < ystart; y++) {
372
            // Special case for overlapped row (sans corner)
373
823k
            for (int x = xstart; x < bw; x++) {
374
770k
                int grain = sample_lut(grain_lut, offsets, sx, sy, 0, 0, x, y);
375
770k
                int old   = sample_lut(grain_lut, offsets, sx, sy, 0, 1, x, y);
376
770k
                grain = round2(old * w[sy][y][0] + grain * w[sy][y][1], 5);
377
770k
                grain = iclip(grain, grain_min, grain_max);
378
770k
                add_noise_uv(x, y, grain);
379
770k
            }
380
381
            // Special case for doubly-overlapped corner
382
84.5k
            for (int x = 0; x < xstart; x++) {
383
                // Blend the top pixel with the top left block
384
31.5k
                int top = sample_lut(grain_lut, offsets, sx, sy, 0, 1, x, y);
385
31.5k
                int old = sample_lut(grain_lut, offsets, sx, sy, 1, 1, x, y);
386
31.5k
                top = round2(old * w[sx][x][0] + top * w[sx][x][1], 5);
387
31.5k
                top = iclip(top, grain_min, grain_max);
388
389
                // Blend the current pixel with the left block
390
31.5k
                int grain = sample_lut(grain_lut, offsets, sx, sy, 0, 0, x, y);
391
31.5k
                old = sample_lut(grain_lut, offsets, sx, sy, 1, 0, x, y);
392
31.5k
                grain = round2(old * w[sx][x][0] + grain * w[sx][x][1], 5);
393
31.5k
                grain = iclip(grain, grain_min, grain_max);
394
395
                // Mix the row rows together and apply to image
396
31.5k
                grain = round2(top * w[sy][y][0] + grain * w[sy][y][1], 5);
397
31.5k
                grain = iclip(grain, grain_min, grain_max);
398
31.5k
                add_noise_uv(x, y, grain);
399
31.5k
            }
400
53.0k
        }
401
48.7k
    }
402
30.2k
}
403
404
#define fguv_ss_fn(nm, ss_x, ss_y) \
405
30.3k
static decl_fguv_32x32xn_fn(fguv_32x32xn_##nm##_c) { \
406
30.3k
    fguv_32x32xn_c(dst_row, src_row, stride, data, pw, scaling, grain_lut, bh, \
407
30.3k
                   row_num, luma_row, luma_stride, uv_pl, is_id, ss_x, ss_y \
408
30.3k
                   HIGHBD_TAIL_SUFFIX); \
409
30.3k
}
filmgrain_tmpl.c:fguv_32x32xn_420_c
Line
Count
Source
405
5.96k
static decl_fguv_32x32xn_fn(fguv_32x32xn_##nm##_c) { \
406
5.96k
    fguv_32x32xn_c(dst_row, src_row, stride, data, pw, scaling, grain_lut, bh, \
407
5.96k
                   row_num, luma_row, luma_stride, uv_pl, is_id, ss_x, ss_y \
408
5.96k
                   HIGHBD_TAIL_SUFFIX); \
409
5.96k
}
filmgrain_tmpl.c:fguv_32x32xn_422_c
Line
Count
Source
405
270
static decl_fguv_32x32xn_fn(fguv_32x32xn_##nm##_c) { \
406
270
    fguv_32x32xn_c(dst_row, src_row, stride, data, pw, scaling, grain_lut, bh, \
407
270
                   row_num, luma_row, luma_stride, uv_pl, is_id, ss_x, ss_y \
408
270
                   HIGHBD_TAIL_SUFFIX); \
409
270
}
filmgrain_tmpl.c:fguv_32x32xn_444_c
Line
Count
Source
405
24.0k
static decl_fguv_32x32xn_fn(fguv_32x32xn_##nm##_c) { \
406
24.0k
    fguv_32x32xn_c(dst_row, src_row, stride, data, pw, scaling, grain_lut, bh, \
407
24.0k
                   row_num, luma_row, luma_stride, uv_pl, is_id, ss_x, ss_y \
408
24.0k
                   HIGHBD_TAIL_SUFFIX); \
409
24.0k
}
410
411
fguv_ss_fn(420, 1, 1);
412
fguv_ss_fn(422, 1, 0);
413
fguv_ss_fn(444, 0, 0);
414
415
#if HAVE_ASM
416
#if ARCH_AARCH64 || ARCH_ARM
417
#include "src/arm/filmgrain.h"
418
#elif ARCH_X86
419
#include "src/x86/filmgrain.h"
420
#elif ARCH_RISCV
421
#include "src/riscv/filmgrain.h"
422
#endif
423
#endif
424
425
36.5k
COLD void bitfn(dav1d_film_grain_dsp_init)(Dav1dFilmGrainDSPContext *const c) {
426
36.5k
    c->generate_grain_y = generate_grain_y_c;
427
36.5k
    c->generate_grain_uv[DAV1D_PIXEL_LAYOUT_I420 - 1] = generate_grain_uv_420_c;
428
36.5k
    c->generate_grain_uv[DAV1D_PIXEL_LAYOUT_I422 - 1] = generate_grain_uv_422_c;
429
36.5k
    c->generate_grain_uv[DAV1D_PIXEL_LAYOUT_I444 - 1] = generate_grain_uv_444_c;
430
431
36.5k
    c->fgy_32x32xn = fgy_32x32xn_c;
432
36.5k
    c->fguv_32x32xn[DAV1D_PIXEL_LAYOUT_I420 - 1] = fguv_32x32xn_420_c;
433
36.5k
    c->fguv_32x32xn[DAV1D_PIXEL_LAYOUT_I422 - 1] = fguv_32x32xn_422_c;
434
36.5k
    c->fguv_32x32xn[DAV1D_PIXEL_LAYOUT_I444 - 1] = fguv_32x32xn_444_c;
435
436
#if HAVE_ASM
437
#if ARCH_AARCH64 || ARCH_ARM
438
    film_grain_dsp_init_arm(c);
439
#elif ARCH_X86
440
    film_grain_dsp_init_x86(c);
441
#elif ARCH_RISCV
442
    film_grain_dsp_init_riscv(c);
443
#endif
444
#endif
445
36.5k
}
dav1d_film_grain_dsp_init_8bpc
Line
Count
Source
425
15.9k
COLD void bitfn(dav1d_film_grain_dsp_init)(Dav1dFilmGrainDSPContext *const c) {
426
15.9k
    c->generate_grain_y = generate_grain_y_c;
427
15.9k
    c->generate_grain_uv[DAV1D_PIXEL_LAYOUT_I420 - 1] = generate_grain_uv_420_c;
428
15.9k
    c->generate_grain_uv[DAV1D_PIXEL_LAYOUT_I422 - 1] = generate_grain_uv_422_c;
429
15.9k
    c->generate_grain_uv[DAV1D_PIXEL_LAYOUT_I444 - 1] = generate_grain_uv_444_c;
430
431
15.9k
    c->fgy_32x32xn = fgy_32x32xn_c;
432
15.9k
    c->fguv_32x32xn[DAV1D_PIXEL_LAYOUT_I420 - 1] = fguv_32x32xn_420_c;
433
15.9k
    c->fguv_32x32xn[DAV1D_PIXEL_LAYOUT_I422 - 1] = fguv_32x32xn_422_c;
434
15.9k
    c->fguv_32x32xn[DAV1D_PIXEL_LAYOUT_I444 - 1] = fguv_32x32xn_444_c;
435
436
#if HAVE_ASM
437
#if ARCH_AARCH64 || ARCH_ARM
438
    film_grain_dsp_init_arm(c);
439
#elif ARCH_X86
440
    film_grain_dsp_init_x86(c);
441
#elif ARCH_RISCV
442
    film_grain_dsp_init_riscv(c);
443
#endif
444
#endif
445
15.9k
}
dav1d_film_grain_dsp_init_16bpc
Line
Count
Source
425
20.6k
COLD void bitfn(dav1d_film_grain_dsp_init)(Dav1dFilmGrainDSPContext *const c) {
426
20.6k
    c->generate_grain_y = generate_grain_y_c;
427
20.6k
    c->generate_grain_uv[DAV1D_PIXEL_LAYOUT_I420 - 1] = generate_grain_uv_420_c;
428
20.6k
    c->generate_grain_uv[DAV1D_PIXEL_LAYOUT_I422 - 1] = generate_grain_uv_422_c;
429
20.6k
    c->generate_grain_uv[DAV1D_PIXEL_LAYOUT_I444 - 1] = generate_grain_uv_444_c;
430
431
20.6k
    c->fgy_32x32xn = fgy_32x32xn_c;
432
20.6k
    c->fguv_32x32xn[DAV1D_PIXEL_LAYOUT_I420 - 1] = fguv_32x32xn_420_c;
433
20.6k
    c->fguv_32x32xn[DAV1D_PIXEL_LAYOUT_I422 - 1] = fguv_32x32xn_422_c;
434
20.6k
    c->fguv_32x32xn[DAV1D_PIXEL_LAYOUT_I444 - 1] = fguv_32x32xn_444_c;
435
436
#if HAVE_ASM
437
#if ARCH_AARCH64 || ARCH_ARM
438
    film_grain_dsp_init_arm(c);
439
#elif ARCH_X86
440
    film_grain_dsp_init_x86(c);
441
#elif ARCH_RISCV
442
    film_grain_dsp_init_riscv(c);
443
#endif
444
#endif
445
20.6k
}