Coverage Report

Created: 2026-07-30 06:25

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/dav1d/src/lf_mask.c
Line
Count
Source
1
/*
2
 * Copyright © 2018, VideoLAN and dav1d authors
3
 * Copyright © 2018, Two Orioles, LLC
4
 * All rights reserved.
5
 *
6
 * Redistribution and use in source and binary forms, with or without
7
 * modification, are permitted provided that the following conditions are met:
8
 *
9
 * 1. Redistributions of source code must retain the above copyright notice, this
10
 *    list of conditions and the following disclaimer.
11
 *
12
 * 2. Redistributions in binary form must reproduce the above copyright notice,
13
 *    this list of conditions and the following disclaimer in the documentation
14
 *    and/or other materials provided with the distribution.
15
 *
16
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
17
 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
18
 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
19
 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
20
 * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
21
 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
22
 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
23
 * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
25
 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26
 */
27
28
#include "config.h"
29
30
#include <string.h>
31
32
#include "common/intops.h"
33
34
#include "src/ctx.h"
35
#include "src/levels.h"
36
#include "src/lf_mask.h"
37
#include "src/tables.h"
38
39
static void decomp_tx(uint8_t (*const txa)[2 /* txsz, step */][32 /* y */][32 /* x */],
40
                      const enum RectTxfmSize from,
41
                      const int depth,
42
                      const int y_off, const int x_off,
43
                      const uint16_t *const tx_masks)
44
705k
{
45
705k
    const TxfmInfo *const t_dim = &dav1d_txfm_dimensions[from];
46
705k
    const int is_split = (from == (int) TX_4X4 || depth > 1) ? 0 :
47
705k
        (tx_masks[depth] >> (y_off * 4 + x_off)) & 1;
48
49
705k
    if (is_split) {
50
22.2k
        const enum RectTxfmSize sub = t_dim->sub;
51
22.2k
        const int htw4 = t_dim->w >> 1, hth4 = t_dim->h >> 1;
52
53
22.2k
        decomp_tx(txa, sub, depth + 1, y_off * 2 + 0, x_off * 2 + 0, tx_masks);
54
22.2k
        if (t_dim->w >= t_dim->h)
55
17.7k
            decomp_tx((uint8_t(*)[2][32][32]) &txa[0][0][0][htw4],
56
17.7k
                      sub, depth + 1, y_off * 2 + 0, x_off * 2 + 1, tx_masks);
57
22.2k
        if (t_dim->h >= t_dim->w) {
58
16.9k
            decomp_tx((uint8_t(*)[2][32][32]) &txa[0][0][hth4][0],
59
16.9k
                      sub, depth + 1, y_off * 2 + 1, x_off * 2 + 0, tx_masks);
60
16.9k
            if (t_dim->w >= t_dim->h)
61
12.3k
                decomp_tx((uint8_t(*)[2][32][32]) &txa[0][0][hth4][htw4],
62
12.3k
                          sub, depth + 1, y_off * 2 + 1, x_off * 2 + 1, tx_masks);
63
16.9k
        }
64
683k
    } else {
65
683k
        const int lw = imin(2, t_dim->lw), lh = imin(2, t_dim->lh);
66
67
683k
#define set_ctx(rep_macro) \
68
2.69M
        for (int y = 0; y < t_dim->h; y++) { \
69
2.00M
            rep_macro(txa[0][0][y], 0, lw); \
70
2.00M
            rep_macro(txa[1][0][y], 0, lh); \
71
2.00M
            txa[0][1][y][0] = t_dim->w; \
72
2.00M
        }
73
683k
        case_set_upto16(t_dim->lw);
74
683k
#undef set_ctx
75
683k
        dav1d_memset_pow2[t_dim->lw](txa[1][1][0], t_dim->h);
76
683k
    }
77
705k
}
78
79
static inline void mask_edges_inter(uint16_t (*const masks)[32][3][2],
80
                                    const int by4, const int bx4,
81
                                    const int w4, const int h4, const int skip,
82
                                    const enum RectTxfmSize max_tx,
83
                                    const uint16_t *const tx_masks,
84
                                    uint8_t *const a, uint8_t *const l)
85
368k
{
86
368k
    const TxfmInfo *const t_dim = &dav1d_txfm_dimensions[max_tx];
87
368k
    int y, x;
88
89
368k
    ALIGN_STK_16(uint8_t, txa, 2 /* edge */, [2 /* txsz, step */][32 /* y */][32 /* x */]);
90
796k
    for (int y_off = 0, y = 0; y < h4; y += t_dim->h, y_off++)
91
1.06M
        for (int x_off = 0, x = 0; x < w4; x += t_dim->w, x_off++)
92
636k
            decomp_tx((uint8_t(*)[2][32][32]) &txa[0][0][y][x],
93
636k
                      max_tx, 0, y_off, x_off, tx_masks);
94
95
    // left block edge
96
368k
    unsigned mask = 1U << by4;
97
1.80M
    for (y = 0; y < h4; y++, mask <<= 1) {
98
1.43M
        const int sidx = mask >= 0x10000;
99
1.43M
        const unsigned smask = mask >> (sidx << 4);
100
1.43M
        masks[0][bx4][imin(txa[0][0][y][0], l[y])][sidx] |= smask;
101
1.43M
    }
102
103
    // top block edge
104
1.73M
    for (x = 0, mask = 1U << bx4; x < w4; x++, mask <<= 1) {
105
1.36M
        const int sidx = mask >= 0x10000;
106
1.36M
        const unsigned smask = mask >> (sidx << 4);
107
1.36M
        masks[1][by4][imin(txa[1][0][0][x], a[x])][sidx] |= smask;
108
1.36M
    }
109
110
368k
    if (!skip) {
111
        // inner (tx) left|right edges
112
715k
        for (y = 0, mask = 1U << by4; y < h4; y++, mask <<= 1) {
113
564k
            const int sidx = mask >= 0x10000U;
114
564k
            const unsigned smask = mask >> (sidx << 4);
115
564k
            int ltx = txa[0][0][y][0];
116
564k
            int step = txa[0][1][y][0];
117
792k
            for (x = step; x < w4; x += step) {
118
227k
                const int rtx = txa[0][0][y][x];
119
227k
                masks[0][bx4 + x][imin(rtx, ltx)][sidx] |= smask;
120
227k
                ltx = rtx;
121
227k
                step = txa[0][1][y][x];
122
227k
            }
123
564k
        }
124
125
        //            top
126
        // inner (tx) --- edges
127
        //           bottom
128
645k
        for (x = 0, mask = 1U << bx4; x < w4; x++, mask <<= 1) {
129
494k
            const int sidx = mask >= 0x10000U;
130
494k
            const unsigned smask = mask >> (sidx << 4);
131
494k
            int ttx = txa[1][0][0][x];
132
494k
            int step = txa[1][1][0][x];
133
723k
            for (y = step; y < h4; y += step) {
134
229k
                const int btx = txa[1][0][y][x];
135
229k
                masks[1][by4 + y][imin(ttx, btx)][sidx] |= smask;
136
229k
                ttx = btx;
137
229k
                step = txa[1][1][y][x];
138
229k
            }
139
494k
        }
140
150k
    }
141
142
1.80M
    for (y = 0; y < h4; y++)
143
1.43M
        l[y] = txa[0][0][y][w4 - 1];
144
368k
    memcpy(a, txa[1][0][h4 - 1], w4);
145
368k
}
146
147
static inline void mask_edges_intra(uint16_t (*const masks)[32][3][2],
148
                                    const int by4, const int bx4,
149
                                    const int w4, const int h4,
150
                                    const enum RectTxfmSize tx,
151
                                    uint8_t *const a, uint8_t *const l)
152
1.41M
{
153
1.41M
    const TxfmInfo *const t_dim = &dav1d_txfm_dimensions[tx];
154
1.41M
    const int twl4 = t_dim->lw, thl4 = t_dim->lh;
155
1.41M
    const int twl4c = imin(2, twl4), thl4c = imin(2, thl4);
156
1.41M
    int y, x;
157
158
    // left block edge
159
1.41M
    unsigned mask = 1U << by4;
160
8.25M
    for (y = 0; y < h4; y++, mask <<= 1) {
161
6.83M
        const int sidx = mask >= 0x10000;
162
6.83M
        const unsigned smask = mask >> (sidx << 4);
163
6.83M
        masks[0][bx4][imin(twl4c, l[y])][sidx] |= smask;
164
6.83M
    }
165
166
    // top block edge
167
7.68M
    for (x = 0, mask = 1U << bx4; x < w4; x++, mask <<= 1) {
168
6.27M
        const int sidx = mask >= 0x10000;
169
6.27M
        const unsigned smask = mask >> (sidx << 4);
170
6.27M
        masks[1][by4][imin(thl4c, a[x])][sidx] |= smask;
171
6.27M
    }
172
173
    // inner (tx) left|right edges
174
1.41M
    const int hstep = t_dim->w;
175
1.41M
    unsigned t = 1U << by4;
176
1.41M
    unsigned inner = (unsigned) ((((uint64_t) t) << h4) - t);
177
1.41M
    unsigned inner1 = inner & 0xffff, inner2 = inner >> 16;
178
1.76M
    for (x = hstep; x < w4; x += hstep) {
179
358k
        if (inner1) masks[0][bx4 + x][twl4c][0] |= inner1;
180
358k
        if (inner2) masks[0][bx4 + x][twl4c][1] |= inner2;
181
358k
    }
182
183
    //            top
184
    // inner (tx) --- edges
185
    //           bottom
186
1.41M
    const int vstep = t_dim->h;
187
1.41M
    t = 1U << bx4;
188
1.41M
    inner = (unsigned) ((((uint64_t) t) << w4) - t);
189
1.41M
    inner1 = inner & 0xffff;
190
1.41M
    inner2 = inner >> 16;
191
1.82M
    for (y = vstep; y < h4; y += vstep) {
192
409k
        if (inner1) masks[1][by4 + y][thl4c][0] |= inner1;
193
409k
        if (inner2) masks[1][by4 + y][thl4c][1] |= inner2;
194
409k
    }
195
196
1.41M
    dav1d_memset_likely_pow2(a, thl4c, w4);
197
1.41M
    dav1d_memset_likely_pow2(l, twl4c, h4);
198
1.41M
}
199
200
static void mask_edges_chroma(uint16_t (*const masks)[32][2][2],
201
                              const int cby4, const int cbx4,
202
                              const int cw4, const int ch4,
203
                              const int skip_inter,
204
                              const enum RectTxfmSize tx,
205
                              uint8_t *const a, uint8_t *const l,
206
                              const int ss_hor, const int ss_ver)
207
1.41M
{
208
1.41M
    const TxfmInfo *const t_dim = &dav1d_txfm_dimensions[tx];
209
1.41M
    const int twl4 = t_dim->lw, thl4 = t_dim->lh;
210
1.41M
    const int twl4c = !!twl4, thl4c = !!thl4;
211
1.41M
    int y, x;
212
1.41M
    const int vbits = 4 - ss_ver, hbits = 4 - ss_hor;
213
1.41M
    const int vmask = 16 >> ss_ver, hmask = 16 >> ss_hor;
214
1.41M
    const unsigned vmax = 1 << vmask, hmax = 1 << hmask;
215
216
    // left block edge
217
1.41M
    unsigned mask = 1U << cby4;
218
6.38M
    for (y = 0; y < ch4; y++, mask <<= 1) {
219
4.96M
        const int sidx = mask >= vmax;
220
4.96M
        const unsigned smask = mask >> (sidx << vbits);
221
4.96M
        masks[0][cbx4][imin(twl4c, l[y])][sidx] |= smask;
222
4.96M
    }
223
224
    // top block edge
225
5.82M
    for (x = 0, mask = 1U << cbx4; x < cw4; x++, mask <<= 1) {
226
4.40M
        const int sidx = mask >= hmax;
227
4.40M
        const unsigned smask = mask >> (sidx << hbits);
228
4.40M
        masks[1][cby4][imin(thl4c, a[x])][sidx] |= smask;
229
4.40M
    }
230
231
1.41M
    if (!skip_inter) {
232
        // inner (tx) left|right edges
233
1.22M
        const int hstep = t_dim->w;
234
1.22M
        unsigned t = 1U << cby4;
235
1.22M
        unsigned inner = (unsigned) ((((uint64_t) t) << ch4) - t);
236
1.22M
        unsigned inner1 = inner & ((1 << vmask) - 1), inner2 = inner >> vmask;
237
1.33M
        for (x = hstep; x < cw4; x += hstep) {
238
114k
            if (inner1) masks[0][cbx4 + x][twl4c][0] |= inner1;
239
114k
            if (inner2) masks[0][cbx4 + x][twl4c][1] |= inner2;
240
114k
        }
241
242
        //            top
243
        // inner (tx) --- edges
244
        //           bottom
245
1.22M
        const int vstep = t_dim->h;
246
1.22M
        t = 1U << cbx4;
247
1.22M
        inner = (unsigned) ((((uint64_t) t) << cw4) - t);
248
1.22M
        inner1 = inner & ((1 << hmask) - 1), inner2 = inner >> hmask;
249
1.37M
        for (y = vstep; y < ch4; y += vstep) {
250
152k
            if (inner1) masks[1][cby4 + y][thl4c][0] |= inner1;
251
152k
            if (inner2) masks[1][cby4 + y][thl4c][1] |= inner2;
252
152k
        }
253
1.22M
    }
254
255
1.41M
    dav1d_memset_likely_pow2(a, thl4c, cw4);
256
1.41M
    dav1d_memset_likely_pow2(l, twl4c, ch4);
257
1.41M
}
258
259
void dav1d_create_lf_mask_intra(Av1Filter *const lflvl,
260
                                uint8_t (*const level_cache)[4],
261
                                const ptrdiff_t b4_stride,
262
                                const uint8_t (*filter_level)[8][2],
263
                                const int bx, const int by,
264
                                const int iw, const int ih,
265
                                const enum BlockSize bs,
266
                                const enum RectTxfmSize ytx,
267
                                const enum RectTxfmSize uvtx,
268
                                const enum Dav1dPixelLayout layout,
269
                                uint8_t *const ay, uint8_t *const ly,
270
                                uint8_t *const auv, uint8_t *const luv)
271
1.44M
{
272
1.44M
    const uint8_t *const b_dim = dav1d_block_dimensions[bs];
273
1.44M
    const int bw4 = imin(iw - bx, b_dim[0]);
274
1.44M
    const int bh4 = imin(ih - by, b_dim[1]);
275
1.44M
    const int bx4 = bx & 31;
276
1.44M
    const int by4 = by & 31;
277
1.44M
    assert(bw4 >= 0 && bh4 >= 0);
278
279
1.44M
    if (bw4 && bh4) {
280
1.40M
        uint8_t (*level_cache_ptr)[4] = level_cache + by * b4_stride + bx;
281
8.22M
        for (int y = 0; y < bh4; y++) {
282
64.3M
            for (int x = 0; x < bw4; x++) {
283
57.5M
                level_cache_ptr[x][0] = filter_level[0][0][0];
284
57.5M
                level_cache_ptr[x][1] = filter_level[1][0][0];
285
57.5M
            }
286
6.81M
            level_cache_ptr += b4_stride;
287
6.81M
        }
288
289
1.40M
        mask_edges_intra(lflvl->filter_y, by4, bx4, bw4, bh4, ytx, ay, ly);
290
1.40M
    }
291
292
1.44M
    if (!auv) return;
293
294
1.10M
    const int ss_ver = layout == DAV1D_PIXEL_LAYOUT_I420;
295
1.10M
    const int ss_hor = layout != DAV1D_PIXEL_LAYOUT_I444;
296
1.10M
    const int cbw4 = imin(((iw + ss_hor) >> ss_hor) - (bx >> ss_hor),
297
1.10M
                          (b_dim[0] + ss_hor) >> ss_hor);
298
1.10M
    const int cbh4 = imin(((ih + ss_ver) >> ss_ver) - (by >> ss_ver),
299
1.10M
                          (b_dim[1] + ss_ver) >> ss_ver);
300
1.10M
    assert(cbw4 >= 0 && cbh4 >= 0);
301
302
1.10M
    if (!cbw4 || !cbh4) return;
303
304
1.09M
    const int cbx4 = bx4 >> ss_hor;
305
1.09M
    const int cby4 = by4 >> ss_ver;
306
307
1.09M
    uint8_t (*level_cache_ptr)[4] =
308
1.09M
        level_cache + (by >> ss_ver) * b4_stride + (bx >> ss_hor);
309
4.92M
    for (int y = 0; y < cbh4; y++) {
310
25.6M
        for (int x = 0; x < cbw4; x++) {
311
21.7M
            level_cache_ptr[x][2] = filter_level[2][0][0];
312
21.7M
            level_cache_ptr[x][3] = filter_level[3][0][0];
313
21.7M
        }
314
3.83M
        level_cache_ptr += b4_stride;
315
3.83M
    }
316
317
1.09M
    mask_edges_chroma(lflvl->filter_uv, cby4, cbx4, cbw4, cbh4, 0, uvtx,
318
1.09M
                      auv, luv, ss_hor, ss_ver);
319
1.09M
}
320
321
void dav1d_create_lf_mask_inter(Av1Filter *const lflvl,
322
                                uint8_t (*const level_cache)[4],
323
                                const ptrdiff_t b4_stride,
324
                                const uint8_t (*filter_level)[8][2],
325
                                const int bx, const int by,
326
                                const int iw, const int ih,
327
                                const int skip, const enum BlockSize bs,
328
                                const enum RectTxfmSize max_ytx,
329
                                const uint16_t *const tx_masks,
330
                                const enum RectTxfmSize uvtx,
331
                                const enum Dav1dPixelLayout layout,
332
                                uint8_t *const ay, uint8_t *const ly,
333
                                uint8_t *const auv, uint8_t *const luv)
334
381k
{
335
381k
    const uint8_t *const b_dim = dav1d_block_dimensions[bs];
336
381k
    const int bw4 = imin(iw - bx, b_dim[0]);
337
381k
    const int bh4 = imin(ih - by, b_dim[1]);
338
381k
    const int bx4 = bx & 31;
339
381k
    const int by4 = by & 31;
340
381k
    assert(bw4 >= 0 && bh4 >= 0);
341
342
381k
    if (bw4 && bh4) {
343
368k
        uint8_t (*level_cache_ptr)[4] = level_cache + by * b4_stride + bx;
344
1.80M
        for (int y = 0; y < bh4; y++) {
345
10.4M
            for (int x = 0; x < bw4; x++) {
346
9.05M
                level_cache_ptr[x][0] = filter_level[0][0][0];
347
9.05M
                level_cache_ptr[x][1] = filter_level[1][0][0];
348
9.05M
            }
349
1.43M
            level_cache_ptr += b4_stride;
350
1.43M
        }
351
352
368k
        mask_edges_inter(lflvl->filter_y, by4, bx4, bw4, bh4, skip,
353
368k
                         max_ytx, tx_masks, ay, ly);
354
368k
    }
355
356
381k
    if (!auv) return;
357
358
330k
    const int ss_ver = layout == DAV1D_PIXEL_LAYOUT_I420;
359
330k
    const int ss_hor = layout != DAV1D_PIXEL_LAYOUT_I444;
360
330k
    const int cbw4 = imin(((iw + ss_hor) >> ss_hor) - (bx >> ss_hor),
361
330k
                          (b_dim[0] + ss_hor) >> ss_hor);
362
330k
    const int cbh4 = imin(((ih + ss_ver) >> ss_ver) - (by >> ss_ver),
363
330k
                          (b_dim[1] + ss_ver) >> ss_ver);
364
330k
    assert(cbw4 >= 0 && cbh4 >= 0);
365
366
330k
    if (!cbw4 || !cbh4) return;
367
368
319k
    const int cbx4 = bx4 >> ss_hor;
369
319k
    const int cby4 = by4 >> ss_ver;
370
371
319k
    uint8_t (*level_cache_ptr)[4] =
372
319k
        level_cache + (by >> ss_ver) * b4_stride + (bx >> ss_hor);
373
1.43M
    for (int y = 0; y < cbh4; y++) {
374
7.92M
        for (int x = 0; x < cbw4; x++) {
375
6.81M
            level_cache_ptr[x][2] = filter_level[2][0][0];
376
6.81M
            level_cache_ptr[x][3] = filter_level[3][0][0];
377
6.81M
        }
378
1.11M
        level_cache_ptr += b4_stride;
379
1.11M
    }
380
381
319k
    mask_edges_chroma(lflvl->filter_uv, cby4, cbx4, cbw4, cbh4, skip, uvtx,
382
319k
                      auv, luv, ss_hor, ss_ver);
383
319k
}
384
385
41.7k
void dav1d_calc_eih(Av1FilterLUT *const lim_lut, const int filter_sharpness) {
386
    // set E/I/H values from loopfilter level
387
41.7k
    const int sharp = filter_sharpness;
388
2.71M
    for (int level = 0; level < 64; level++) {
389
2.67M
        int limit = level;
390
391
2.67M
        if (sharp > 0) {
392
2.04M
            limit >>= (sharp + 3) >> 2;
393
2.04M
            limit = imin(limit, 9 - sharp);
394
2.04M
        }
395
2.67M
        limit = imax(limit, 1);
396
397
2.67M
        lim_lut->i[level] = limit;
398
2.67M
        lim_lut->e[level] = 2 * (level + 2) + limit;
399
2.67M
    }
400
41.7k
    lim_lut->sharp[0] = (sharp + 3) >> 2;
401
41.7k
    lim_lut->sharp[1] = sharp ? 9 - sharp : 0xff;
402
41.7k
}
403
404
static void calc_lf_value(uint8_t (*const lflvl_values)[2],
405
                          const int base_lvl, const int lf_delta,
406
                          const int seg_delta,
407
                          const Dav1dLoopfilterModeRefDeltas *const mr_delta)
408
1.15M
{
409
1.15M
    const int base = iclip(iclip(base_lvl + lf_delta, 0, 63) + seg_delta, 0, 63);
410
411
1.15M
    if (!mr_delta) {
412
900k
        memset(lflvl_values, base, sizeof(*lflvl_values) * 8);
413
900k
    } else {
414
257k
        const int sh = base >= 32;
415
257k
        lflvl_values[0][0] = lflvl_values[0][1] =
416
257k
            iclip(base + (mr_delta->ref_delta[0] * (1 << sh)), 0, 63);
417
2.05M
        for (int r = 1; r < 8; r++) {
418
5.40M
            for (int m = 0; m < 2; m++) {
419
3.60M
                const int delta =
420
3.60M
                    mr_delta->mode_delta[m] + mr_delta->ref_delta[r];
421
3.60M
                lflvl_values[r][m] = iclip(base + (delta * (1 << sh)), 0, 63);
422
3.60M
            }
423
1.80M
        }
424
257k
    }
425
1.15M
}
426
427
static inline void calc_lf_value_chroma(uint8_t (*const lflvl_values)[2],
428
                                        const int base_lvl, const int lf_delta,
429
                                        const int seg_delta,
430
                                        const Dav1dLoopfilterModeRefDeltas *const mr_delta)
431
630k
{
432
630k
    if (!base_lvl)
433
102k
        memset(lflvl_values, 0, sizeof(*lflvl_values) * 8);
434
527k
    else
435
527k
        calc_lf_value(lflvl_values, base_lvl, lf_delta, seg_delta, mr_delta);
436
630k
}
437
438
void dav1d_calc_lf_values(uint8_t (*const lflvl_values)[4][8][2],
439
                          const Dav1dFrameHeader *const hdr,
440
                          const int8_t lf_delta[4])
441
98.8k
{
442
98.8k
    const int n_seg = hdr->segmentation.enabled ? 8 : 1;
443
444
98.8k
    if (!hdr->loopfilter.level_y[0] && !hdr->loopfilter.level_y[1]) {
445
6.80k
        memset(lflvl_values, 0, sizeof(*lflvl_values) * n_seg);
446
6.80k
        return;
447
6.80k
    }
448
449
92.0k
    const Dav1dLoopfilterModeRefDeltas *const mr_deltas =
450
92.0k
        hdr->loopfilter.mode_ref_delta_enabled ?
451
92.0k
        &hdr->loopfilter.mode_ref_deltas : NULL;
452
407k
    for (int s = 0; s < n_seg; s++) {
453
315k
        const Dav1dSegmentationData *const segd =
454
315k
            hdr->segmentation.enabled ? &hdr->segmentation.seg_data.d[s] : NULL;
455
456
315k
        calc_lf_value(lflvl_values[s][0], hdr->loopfilter.level_y[0],
457
315k
                      lf_delta[0], segd ? segd->delta_lf_y_v : 0, mr_deltas);
458
315k
        calc_lf_value(lflvl_values[s][1], hdr->loopfilter.level_y[1],
459
315k
                      lf_delta[hdr->delta.lf.multi ? 1 : 0],
460
315k
                      segd ? segd->delta_lf_y_h : 0, mr_deltas);
461
315k
        calc_lf_value_chroma(lflvl_values[s][2], hdr->loopfilter.level_u,
462
315k
                             lf_delta[hdr->delta.lf.multi ? 2 : 0],
463
315k
                             segd ? segd->delta_lf_u : 0, mr_deltas);
464
315k
        calc_lf_value_chroma(lflvl_values[s][3], hdr->loopfilter.level_v,
465
315k
                             lf_delta[hdr->delta.lf.multi ? 3 : 0],
466
315k
                             segd ? segd->delta_lf_v : 0, mr_deltas);
467
315k
    }
468
92.0k
}