Coverage Report

Created: 2026-07-30 06:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/dav1d/src/ipred_tmpl.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 <stdlib.h>
31
#include <string.h>
32
33
#include "common/attributes.h"
34
#include "common/intops.h"
35
36
#include "src/ipred.h"
37
#include "src/tables.h"
38
39
static NOINLINE void
40
splat_dc(pixel *dst, const ptrdiff_t stride,
41
         const int width, const int height, const int dc HIGHBD_DECL_SUFFIX)
42
636k
{
43
636k
#if BITDEPTH == 8
44
636k
    assert(dc <= 0xff);
45
636k
    if (width > 4) {
46
229k
        const uint64_t dcN = dc * 0x0101010101010101ULL;
47
6.25M
        for (int y = 0; y < height; y++) {
48
30.2M
            for (int x = 0; x < width; x += sizeof(dcN))
49
24.1M
                *((uint64_t *) &dst[x]) = dcN;
50
6.02M
            dst += PXSTRIDE(stride);
51
6.02M
        }
52
406k
    } else {
53
406k
        const unsigned dcN = dc * 0x01010101U;
54
2.08M
        for (int y = 0; y < height; y++) {
55
3.35M
            for (int x = 0; x < width; x += sizeof(dcN))
56
1.67M
                *((unsigned *) &dst[x]) = dcN;
57
1.67M
            dst += PXSTRIDE(stride);
58
1.67M
        }
59
406k
    }
60
#else
61
    assert(dc <= bitdepth_max);
62
    const uint64_t dcN = dc * 0x0001000100010001ULL;
63
    for (int y = 0; y < height; y++) {
64
        for (int x = 0; x < width; x += sizeof(dcN) >> 1)
65
            *((uint64_t *) &dst[x]) = dcN;
66
        dst += PXSTRIDE(stride);
67
    }
68
#endif
69
636k
}
70
71
static NOINLINE void
72
cfl_pred(pixel *dst, const ptrdiff_t stride,
73
         const int width, const int height, const int dc,
74
         const int16_t *ac, const int alpha HIGHBD_DECL_SUFFIX)
75
130k
{
76
1.39M
    for (int y = 0; y < height; y++) {
77
15.4M
        for (int x = 0; x < width; x++) {
78
14.1M
            const int diff = alpha * ac[x];
79
14.1M
            dst[x] = iclip_pixel(dc + apply_sign((abs(diff) + 32) >> 6, diff));
80
14.1M
        }
81
1.26M
        ac += width;
82
1.26M
        dst += PXSTRIDE(stride);
83
1.26M
    }
84
130k
}
85
86
367k
static unsigned dc_gen_top(const pixel *const topleft, const int width) {
87
367k
    unsigned dc = width >> 1;
88
7.28M
    for (int i = 0; i < width; i++)
89
6.91M
       dc += topleft[1 + i];
90
367k
    return dc >> ctz(width);
91
367k
}
92
93
static void ipred_dc_top_c(pixel *dst, const ptrdiff_t stride,
94
                           const pixel *const topleft,
95
                           const int width, const int height, const int a,
96
                           const int max_width, const int max_height
97
                           HIGHBD_DECL_SUFFIX)
98
320k
{
99
320k
    splat_dc(dst, stride, width, height, dc_gen_top(topleft, width)
100
320k
             HIGHBD_TAIL_SUFFIX);
101
320k
}
102
103
static void ipred_cfl_top_c(pixel *dst, const ptrdiff_t stride,
104
                            const pixel *const topleft,
105
                            const int width, const int height,
106
                            const int16_t *ac, const int alpha
107
                            HIGHBD_DECL_SUFFIX)
108
47.7k
{
109
47.7k
    cfl_pred(dst, stride, width, height, dc_gen_top(topleft, width), ac, alpha
110
47.7k
             HIGHBD_TAIL_SUFFIX);
111
47.7k
}
112
113
161k
static unsigned dc_gen_left(const pixel *const topleft, const int height) {
114
161k
    unsigned dc = height >> 1;
115
2.60M
    for (int i = 0; i < height; i++)
116
2.44M
       dc += topleft[-(1 + i)];
117
161k
    return dc >> ctz(height);
118
161k
}
119
120
static void ipred_dc_left_c(pixel *dst, const ptrdiff_t stride,
121
                            const pixel *const topleft,
122
                            const int width, const int height, const int a,
123
                            const int max_width, const int max_height
124
                            HIGHBD_DECL_SUFFIX)
125
134k
{
126
134k
    splat_dc(dst, stride, width, height, dc_gen_left(topleft, height)
127
134k
             HIGHBD_TAIL_SUFFIX);
128
134k
}
129
130
static void ipred_cfl_left_c(pixel *dst, const ptrdiff_t stride,
131
                             const pixel *const topleft,
132
                             const int width, const int height,
133
                             const int16_t *ac, const int alpha
134
                             HIGHBD_DECL_SUFFIX)
135
27.6k
{
136
27.6k
    const unsigned dc = dc_gen_left(topleft, height);
137
27.6k
    cfl_pred(dst, stride, width, height, dc, ac, alpha HIGHBD_TAIL_SUFFIX);
138
27.6k
}
139
140
#if BITDEPTH == 8
141
101k
#define MULTIPLIER_1x2 0x5556
142
21.8k
#define MULTIPLIER_1x4 0x3334
143
61.8k
#define BASE_SHIFT 16
144
#else
145
#define MULTIPLIER_1x2 0xAAAB
146
#define MULTIPLIER_1x4 0x6667
147
#define BASE_SHIFT 17
148
#endif
149
150
static unsigned dc_gen(const pixel *const topleft,
151
                       const int width, const int height)
152
890k
{
153
890k
    unsigned dc = (width + height) >> 1;
154
6.63M
    for (int i = 0; i < width; i++)
155
5.74M
       dc += topleft[i + 1];
156
6.71M
    for (int i = 0; i < height; i++)
157
5.82M
       dc += topleft[-(i + 1)];
158
890k
    dc >>= ctz(width + height);
159
160
890k
    if (width != height) {
161
61.8k
        dc *= (width > height * 2 || height > width * 2) ? MULTIPLIER_1x4 :
162
61.8k
                                                           MULTIPLIER_1x2;
163
61.8k
        dc >>= BASE_SHIFT;
164
61.8k
    }
165
890k
    return dc;
166
890k
}
167
168
static void ipred_dc_c(pixel *dst, const ptrdiff_t stride,
169
                       const pixel *const topleft,
170
                       const int width, const int height, const int a,
171
                       const int max_width, const int max_height
172
                       HIGHBD_DECL_SUFFIX)
173
839k
{
174
839k
    splat_dc(dst, stride, width, height, dc_gen(topleft, width, height)
175
839k
             HIGHBD_TAIL_SUFFIX);
176
839k
}
177
178
static void ipred_cfl_c(pixel *dst, const ptrdiff_t stride,
179
                        const pixel *const topleft,
180
                        const int width, const int height,
181
                        const int16_t *ac, const int alpha
182
                        HIGHBD_DECL_SUFFIX)
183
51.7k
{
184
51.7k
    const unsigned dc = dc_gen(topleft, width, height);
185
51.7k
    cfl_pred(dst, stride, width, height, dc, ac, alpha HIGHBD_TAIL_SUFFIX);
186
51.7k
}
187
188
#undef MULTIPLIER_1x2
189
#undef MULTIPLIER_1x4
190
#undef BASE_SHIFT
191
192
static void ipred_dc_128_c(pixel *dst, const ptrdiff_t stride,
193
                           const pixel *const topleft,
194
                           const int width, const int height, const int a,
195
                           const int max_width, const int max_height
196
                           HIGHBD_DECL_SUFFIX)
197
48.7k
{
198
#if BITDEPTH == 16
199
    const int dc = (bitdepth_max + 1) >> 1;
200
#else
201
48.7k
    const int dc = 128;
202
48.7k
#endif
203
48.7k
    splat_dc(dst, stride, width, height, dc HIGHBD_TAIL_SUFFIX);
204
48.7k
}
205
206
static void ipred_cfl_128_c(pixel *dst, const ptrdiff_t stride,
207
                            const pixel *const topleft,
208
                            const int width, const int height,
209
                            const int16_t *ac, const int alpha
210
                            HIGHBD_DECL_SUFFIX)
211
3.07k
{
212
#if BITDEPTH == 16
213
    const int dc = (bitdepth_max + 1) >> 1;
214
#else
215
3.07k
    const int dc = 128;
216
3.07k
#endif
217
3.07k
    cfl_pred(dst, stride, width, height, dc, ac, alpha HIGHBD_TAIL_SUFFIX);
218
3.07k
}
219
220
static void ipred_v_c(pixel *dst, const ptrdiff_t stride,
221
                      const pixel *const topleft,
222
                      const int width, const int height, const int a,
223
                      const int max_width, const int max_height
224
                      HIGHBD_DECL_SUFFIX)
225
129k
{
226
1.96M
    for (int y = 0; y < height; y++) {
227
1.83M
        pixel_copy(dst, topleft + 1, width);
228
1.83M
        dst += PXSTRIDE(stride);
229
1.83M
    }
230
129k
}
231
232
static void ipred_h_c(pixel *dst, const ptrdiff_t stride,
233
                      const pixel *const topleft,
234
                      const int width, const int height, const int a,
235
                      const int max_width, const int max_height
236
                      HIGHBD_DECL_SUFFIX)
237
125k
{
238
1.75M
    for (int y = 0; y < height; y++) {
239
1.62M
        pixel_set(dst, topleft[-(1 + y)], width);
240
1.62M
        dst += PXSTRIDE(stride);
241
1.62M
    }
242
125k
}
243
244
static void ipred_paeth_c(pixel *dst, const ptrdiff_t stride,
245
                          const pixel *const tl_ptr,
246
                          const int width, const int height, const int a,
247
                          const int max_width, const int max_height
248
                          HIGHBD_DECL_SUFFIX)
249
132k
{
250
132k
    const int topleft = tl_ptr[0];
251
1.02M
    for (int y = 0; y < height; y++) {
252
892k
        const int left = tl_ptr[-(y + 1)];
253
11.5M
        for (int x = 0; x < width; x++) {
254
10.6M
            const int top = tl_ptr[1 + x];
255
10.6M
            const int base = left + top - topleft;
256
10.6M
            const int ldiff = abs(left - base);
257
10.6M
            const int tdiff = abs(top - base);
258
10.6M
            const int tldiff = abs(topleft - base);
259
260
10.6M
            dst[x] = ldiff <= tdiff && ldiff <= tldiff ? left :
261
10.6M
                     tdiff <= tldiff ? top : topleft;
262
10.6M
        }
263
892k
        dst += PXSTRIDE(stride);
264
892k
    }
265
132k
}
266
267
static void ipred_smooth_c(pixel *dst, const ptrdiff_t stride,
268
                           const pixel *const topleft,
269
                           const int width, const int height, const int a,
270
                           const int max_width, const int max_height
271
                           HIGHBD_DECL_SUFFIX)
272
158k
{
273
158k
    const uint8_t *const weights_hor = &dav1d_sm_weights[width];
274
158k
    const uint8_t *const weights_ver = &dav1d_sm_weights[height];
275
158k
    const int right = topleft[width], bottom = topleft[-height];
276
277
2.03M
    for (int y = 0; y < height; y++) {
278
43.8M
        for (int x = 0; x < width; x++) {
279
41.9M
            const int pred = weights_ver[y]  * topleft[1 + x] +
280
41.9M
                      (256 - weights_ver[y]) * bottom +
281
41.9M
                             weights_hor[x]  * topleft[-(1 + y)] +
282
41.9M
                      (256 - weights_hor[x]) * right;
283
41.9M
            dst[x] = (pred + 256) >> 9;
284
41.9M
        }
285
1.87M
        dst += PXSTRIDE(stride);
286
1.87M
    }
287
158k
}
288
289
static void ipred_smooth_v_c(pixel *dst, const ptrdiff_t stride,
290
                             const pixel *const topleft,
291
                             const int width, const int height, const int a,
292
                             const int max_width, const int max_height
293
                             HIGHBD_DECL_SUFFIX)
294
38.5k
{
295
38.5k
    const uint8_t *const weights_ver = &dav1d_sm_weights[height];
296
38.5k
    const int bottom = topleft[-height];
297
298
518k
    for (int y = 0; y < height; y++) {
299
11.1M
        for (int x = 0; x < width; x++) {
300
10.6M
            const int pred = weights_ver[y]  * topleft[1 + x] +
301
10.6M
                      (256 - weights_ver[y]) * bottom;
302
10.6M
            dst[x] = (pred + 128) >> 8;
303
10.6M
        }
304
479k
        dst += PXSTRIDE(stride);
305
479k
    }
306
38.5k
}
307
308
static void ipred_smooth_h_c(pixel *dst, const ptrdiff_t stride,
309
                             const pixel *const topleft,
310
                             const int width, const int height, const int a,
311
                             const int max_width, const int max_height
312
                             HIGHBD_DECL_SUFFIX)
313
67.2k
{
314
67.2k
    const uint8_t *const weights_hor = &dav1d_sm_weights[width];
315
67.2k
    const int right = topleft[width];
316
317
860k
    for (int y = 0; y < height; y++) {
318
18.4M
        for (int x = 0; x < width; x++) {
319
17.6M
            const int pred = weights_hor[x]  * topleft[-(y + 1)] +
320
17.6M
                      (256 - weights_hor[x]) * right;
321
17.6M
            dst[x] = (pred + 128) >> 8;
322
17.6M
        }
323
792k
        dst += PXSTRIDE(stride);
324
792k
    }
325
67.2k
}
326
327
static NOINLINE int get_filter_strength(const int wh, const int angle,
328
                                        const int is_sm)
329
219k
{
330
219k
    if (is_sm) {
331
41.5k
        if (wh <= 8) {
332
13.5k
            if (angle >= 64) return 2;
333
4.52k
            if (angle >= 40) return 1;
334
28.0k
        } else if (wh <= 16) {
335
10.4k
            if (angle >= 48) return 2;
336
6.93k
            if (angle >= 20) return 1;
337
17.6k
        } else if (wh <= 24) {
338
5.39k
            if (angle >=  4) return 3;
339
12.2k
        } else {
340
12.2k
            return 3;
341
12.2k
        }
342
178k
    } else {
343
178k
        if (wh <= 8) {
344
61.7k
            if (angle >= 56) return 1;
345
116k
        } else if (wh <= 16) {
346
14.8k
            if (angle >= 40) return 1;
347
101k
        } else if (wh <= 24) {
348
21.1k
            if (angle >= 32) return 3;
349
10.6k
            if (angle >= 16) return 2;
350
5.46k
            if (angle >=  8) return 1;
351
80.5k
        } else if (wh <= 32) {
352
20.3k
            if (angle >= 32) return 3;
353
10.3k
            if (angle >=  4) return 2;
354
2.19k
            return 1;
355
60.2k
        } else {
356
60.2k
            return 3;
357
60.2k
        }
358
178k
    }
359
24.9k
    return 0;
360
219k
}
361
362
static NOINLINE void filter_edge(pixel *const out, const int sz,
363
                                 const int lim_from, const int lim_to,
364
                                 const pixel *const in, const int from,
365
                                 const int to, const int strength)
366
194k
{
367
194k
    static const uint8_t kernel[3][5] = {
368
194k
        { 0, 4, 8, 4, 0 },
369
194k
        { 0, 5, 6, 5, 0 },
370
194k
        { 2, 4, 4, 4, 2 }
371
194k
    };
372
373
194k
    assert(strength > 0);
374
194k
    int i = 0;
375
273k
    for (; i < imin(sz, lim_from); i++)
376
78.3k
        out[i] = in[iclip(i, from, to - 1)];
377
3.94M
    for (; i < imin(lim_to, sz); i++) {
378
3.74M
        int s = 0;
379
22.4M
        for (int j = 0; j < 5; j++)
380
18.7M
            s += in[iclip(i - 2 + j, from, to - 1)] * kernel[strength - 1][j];
381
3.74M
        out[i] = (s + 8) >> 4;
382
3.74M
    }
383
405k
    for (; i < sz; i++)
384
210k
        out[i] = in[iclip(i, from, to - 1)];
385
194k
}
386
387
374k
static inline int get_upsample(const int wh, const int angle, const int is_sm) {
388
374k
    return angle < 40 && wh <= 16 >> is_sm;
389
374k
}
390
391
static NOINLINE void upsample_edge(pixel *const out, const int hsz,
392
                                   const pixel *const in, const int from,
393
                                   const int to HIGHBD_DECL_SUFFIX)
394
155k
{
395
155k
    static const int8_t kernel[4] = { -1, 9, 9, -1 };
396
155k
    int i;
397
1.16M
    for (i = 0; i < hsz - 1; i++) {
398
1.00M
        out[i * 2] = in[iclip(i, from, to - 1)];
399
400
1.00M
        int s = 0;
401
5.01M
        for (int j = 0; j < 4; j++)
402
4.01M
            s += in[iclip(i + j - 1, from, to - 1)] * kernel[j];
403
1.00M
        out[i * 2 + 1] = iclip_pixel((s + 8) >> 4);
404
1.00M
    }
405
155k
    out[i * 2] = in[iclip(i, from, to - 1)];
406
155k
}
407
408
static void ipred_z1_c(pixel *dst, const ptrdiff_t stride,
409
                       const pixel *const topleft_in,
410
                       const int width, const int height, int angle,
411
                       const int max_width, const int max_height
412
                       HIGHBD_DECL_SUFFIX)
413
84.5k
{
414
84.5k
    const int is_sm = (angle >> 9) & 0x1;
415
84.5k
    const int enable_intra_edge_filter = angle >> 10;
416
84.5k
    angle &= 511;
417
84.5k
    assert(angle < 90);
418
84.5k
    int dx = dav1d_dr_intra_derivative[angle >> 1];
419
84.5k
    pixel top_out[64 + 64];
420
84.5k
    const pixel *top;
421
84.5k
    int max_base_x;
422
84.5k
    const int upsample_above = enable_intra_edge_filter ?
423
62.0k
        get_upsample(width + height, 90 - angle, is_sm) : 0;
424
84.5k
    if (upsample_above) {
425
33.0k
        upsample_edge(top_out, width + height, &topleft_in[1], -1,
426
33.0k
                      width + imin(width, height) HIGHBD_TAIL_SUFFIX);
427
33.0k
        top = top_out;
428
33.0k
        max_base_x = 2 * (width + height) - 2;
429
33.0k
        dx <<= 1;
430
51.4k
    } else {
431
51.4k
        const int filter_strength = enable_intra_edge_filter ?
432
29.0k
            get_filter_strength(width + height, 90 - angle, is_sm) : 0;
433
51.4k
        if (filter_strength) {
434
23.1k
            filter_edge(top_out, width + height, 0, width + height,
435
23.1k
                        &topleft_in[1], -1, width + imin(width, height),
436
23.1k
                        filter_strength);
437
23.1k
            top = top_out;
438
23.1k
            max_base_x = width + height - 1;
439
28.3k
        } else {
440
28.3k
            top = &topleft_in[1];
441
28.3k
            max_base_x = width + imin(width, height) - 1;
442
28.3k
        }
443
51.4k
    }
444
84.5k
    const int base_inc = 1 + upsample_above;
445
1.03M
    for (int y = 0, xpos = dx; y < height;
446
947k
         y++, dst += PXSTRIDE(stride), xpos += dx)
447
947k
    {
448
947k
        const int frac = xpos & 0x3E;
449
450
20.7M
        for (int x = 0, base = xpos >> 6; x < width; x++, base += base_inc) {
451
19.8M
            if (base < max_base_x) {
452
19.7M
                const int v = top[base] * (64 - frac) + top[base + 1] * frac;
453
19.7M
                dst[x] = (v + 32) >> 6;
454
19.7M
            } else {
455
50.5k
                pixel_set(&dst[x], top[max_base_x], width - x);
456
50.5k
                break;
457
50.5k
            }
458
19.8M
        }
459
947k
    }
460
84.5k
}
461
462
static void ipred_z2_c(pixel *dst, const ptrdiff_t stride,
463
                       const pixel *const topleft_in,
464
                       const int width, const int height, int angle,
465
                       const int max_width, const int max_height
466
                       HIGHBD_DECL_SUFFIX)
467
166k
{
468
166k
    const int is_sm = (angle >> 9) & 0x1;
469
166k
    const int enable_intra_edge_filter = angle >> 10;
470
166k
    angle &= 511;
471
166k
    assert(angle > 90 && angle < 180);
472
166k
    int dy = dav1d_dr_intra_derivative[(angle - 90) >> 1];
473
166k
    int dx = dav1d_dr_intra_derivative[(180 - angle) >> 1];
474
166k
    const int upsample_left = enable_intra_edge_filter ?
475
124k
        get_upsample(width + height, 180 - angle, is_sm) : 0;
476
166k
    const int upsample_above = enable_intra_edge_filter ?
477
124k
        get_upsample(width + height, angle - 90, is_sm) : 0;
478
166k
    pixel edge[64 + 64 + 1];
479
166k
    pixel *const topleft = &edge[64];
480
481
166k
    if (upsample_above) {
482
36.4k
        upsample_edge(topleft, width + 1, topleft_in, 0, width + 1
483
36.4k
                      HIGHBD_TAIL_SUFFIX);
484
36.4k
        dx <<= 1;
485
130k
    } else {
486
130k
        const int filter_strength = enable_intra_edge_filter ?
487
87.6k
            get_filter_strength(width + height, angle - 90, is_sm) : 0;
488
489
130k
        if (filter_strength) {
490
81.9k
            filter_edge(&topleft[1], width, 0, max_width,
491
81.9k
                        &topleft_in[1], -1, width,
492
81.9k
                        filter_strength);
493
81.9k
        } else {
494
48.0k
            pixel_copy(&topleft[1], &topleft_in[1], width);
495
48.0k
        }
496
130k
    }
497
166k
    if (upsample_left) {
498
37.1k
        upsample_edge(&topleft[-height * 2], height + 1, &topleft_in[-height],
499
37.1k
                      0, height + 1 HIGHBD_TAIL_SUFFIX);
500
37.1k
        dy <<= 1;
501
129k
    } else {
502
129k
        const int filter_strength = enable_intra_edge_filter ?
503
87.0k
            get_filter_strength(width + height, 180 - angle, is_sm) : 0;
504
505
129k
        if (filter_strength) {
506
75.6k
            filter_edge(&topleft[-height], height, height - max_height, height,
507
75.6k
                        &topleft_in[-height],
508
75.6k
                        0, height + 1, filter_strength);
509
75.6k
        } else {
510
53.6k
            pixel_copy(&topleft[-height], &topleft_in[-height], height);
511
53.6k
        }
512
129k
    }
513
166k
    *topleft = *topleft_in;
514
515
166k
    const int base_inc_x = 1 + upsample_above;
516
166k
    const pixel *const left = &topleft[-(1 + upsample_left)];
517
2.16M
    for (int y = 0, xpos = ((1 + upsample_above) << 6) - dx; y < height;
518
1.99M
         y++, xpos -= dx, dst += PXSTRIDE(stride))
519
1.99M
    {
520
1.99M
        int base_x = xpos >> 6;
521
1.99M
        const int frac_x = xpos & 0x3E;
522
523
45.9M
        for (int x = 0, ypos = (y << (6 + upsample_left)) - dy; x < width;
524
43.9M
             x++, base_x += base_inc_x, ypos -= dy)
525
43.9M
        {
526
43.9M
            int v;
527
43.9M
            if (base_x >= 0) {
528
21.0M
                v = topleft[base_x] * (64 - frac_x) +
529
21.0M
                    topleft[base_x + 1] * frac_x;
530
22.9M
            } else {
531
22.9M
                const int base_y = ypos >> 6;
532
22.9M
                assert(base_y >= -(1 + upsample_left));
533
22.9M
                const int frac_y = ypos & 0x3E;
534
22.9M
                v = left[-base_y] * (64 - frac_y) +
535
22.9M
                    left[-(base_y + 1)] * frac_y;
536
22.9M
            }
537
43.9M
            dst[x] = (v + 32) >> 6;
538
43.9M
        }
539
1.99M
    }
540
166k
}
541
542
static void ipred_z3_c(pixel *dst, const ptrdiff_t stride,
543
                       const pixel *const topleft_in,
544
                       const int width, const int height, int angle,
545
                       const int max_width, const int max_height
546
                       HIGHBD_DECL_SUFFIX)
547
87.4k
{
548
87.4k
    const int is_sm = (angle >> 9) & 0x1;
549
87.4k
    const int enable_intra_edge_filter = angle >> 10;
550
87.4k
    angle &= 511;
551
87.4k
    assert(angle > 180);
552
87.4k
    int dy = dav1d_dr_intra_derivative[(270 - angle) >> 1];
553
87.4k
    pixel left_out[64 + 64];
554
87.4k
    const pixel *left;
555
87.4k
    int max_base_y;
556
87.4k
    const int upsample_left = enable_intra_edge_filter ?
557
65.9k
        get_upsample(width + height, angle - 180, is_sm) : 0;
558
87.4k
    if (upsample_left) {
559
49.7k
        upsample_edge(left_out, width + height,
560
49.7k
                      &topleft_in[-(width + height)],
561
49.7k
                      imax(width - height, 0), width + height + 1
562
49.7k
                      HIGHBD_TAIL_SUFFIX);
563
49.7k
        left = &left_out[2 * (width + height) - 2];
564
49.7k
        max_base_y = 2 * (width + height) - 2;
565
49.7k
        dy <<= 1;
566
49.7k
    } else {
567
37.7k
        const int filter_strength = enable_intra_edge_filter ?
568
21.4k
            get_filter_strength(width + height, angle - 180, is_sm) : 0;
569
570
37.7k
        if (filter_strength) {
571
14.3k
            filter_edge(left_out, width + height, 0, width + height,
572
14.3k
                        &topleft_in[-(width + height)],
573
14.3k
                        imax(width - height, 0), width + height + 1,
574
14.3k
                        filter_strength);
575
14.3k
            left = &left_out[width + height - 1];
576
14.3k
            max_base_y = width + height - 1;
577
23.3k
        } else {
578
23.3k
            left = &topleft_in[-1];
579
23.3k
            max_base_y = height + imin(width, height) - 1;
580
23.3k
        }
581
37.7k
    }
582
87.4k
    const int base_inc = 1 + upsample_left;
583
895k
    for (int x = 0, ypos = dy; x < width; x++, ypos += dy) {
584
808k
        const int frac = ypos & 0x3E;
585
586
15.3M
        for (int y = 0, base = ypos >> 6; y < height; y++, base += base_inc) {
587
14.5M
            if (base < max_base_y) {
588
14.5M
                const int v = left[-base] * (64 - frac) +
589
14.5M
                              left[-(base + 1)] * frac;
590
14.5M
                dst[y * PXSTRIDE(stride) + x] = (v + 32) >> 6;
591
14.5M
            } else {
592
16.0k
                do {
593
16.0k
                    dst[y * PXSTRIDE(stride) + x] = left[-max_base_y];
594
16.0k
                } while (++y < height);
595
4.57k
                break;
596
4.57k
            }
597
14.5M
        }
598
808k
    }
599
87.4k
}
600
601
#if ARCH_X86
602
#define FILTER(flt_ptr, p0, p1, p2, p3, p4, p5, p6) \
603
4.76M
    flt_ptr[ 0] * p0 + flt_ptr[ 1] * p1 +           \
604
4.76M
    flt_ptr[16] * p2 + flt_ptr[17] * p3 +           \
605
4.76M
    flt_ptr[32] * p4 + flt_ptr[33] * p5 +           \
606
4.76M
    flt_ptr[48] * p6
607
4.76M
#define FLT_INCR 2
608
#else
609
#define FILTER(flt_ptr, p0, p1, p2, p3, p4, p5, p6) \
610
    flt_ptr[ 0] * p0 + flt_ptr[ 8] * p1 +           \
611
    flt_ptr[16] * p2 + flt_ptr[24] * p3 +           \
612
    flt_ptr[32] * p4 + flt_ptr[40] * p5 +           \
613
    flt_ptr[48] * p6
614
#define FLT_INCR 1
615
#endif
616
617
/* Up to 32x32 only */
618
static void ipred_filter_c(pixel *dst, const ptrdiff_t stride,
619
                           const pixel *const topleft_in,
620
                           const int width, const int height, int filt_idx,
621
                           const int max_width, const int max_height
622
                           HIGHBD_DECL_SUFFIX)
623
43.7k
{
624
43.7k
    filt_idx &= 511;
625
43.7k
    assert(filt_idx < 5);
626
627
43.7k
    const int8_t *const filter = dav1d_filter_intra_taps[filt_idx];
628
43.7k
    const pixel *top = &topleft_in[1];
629
243k
    for (int y = 0; y < height; y += 2) {
630
199k
        const pixel *topleft = &topleft_in[-y];
631
199k
        const pixel *left = &topleft[-1];
632
199k
        ptrdiff_t left_stride = -1;
633
794k
        for (int x = 0; x < width; x += 4) {
634
595k
            const int p0 = *topleft;
635
595k
            const int p1 = top[0], p2 = top[1], p3 = top[2], p4 = top[3];
636
595k
            const int p5 = left[0 * left_stride], p6 = left[1 * left_stride];
637
595k
            pixel *ptr = &dst[x];
638
595k
            const int8_t *flt_ptr = filter;
639
640
1.78M
            for (int yy = 0; yy < 2; yy++) {
641
5.95M
                for (int xx = 0; xx < 4; xx++, flt_ptr += FLT_INCR) {
642
4.76M
                    const int acc = FILTER(flt_ptr, p0, p1, p2, p3, p4, p5, p6);
643
4.76M
                    ptr[xx] = iclip_pixel((acc + 8) >> 4);
644
4.76M
                }
645
1.19M
                ptr += PXSTRIDE(stride);
646
1.19M
            }
647
595k
            left = &dst[x + 4 - 1];
648
595k
            left_stride = PXSTRIDE(stride);
649
595k
            top += 4;
650
595k
            topleft = &top[-1];
651
595k
        }
652
199k
        top = &dst[PXSTRIDE(stride)];
653
199k
        dst = &dst[PXSTRIDE(stride) * 2];
654
199k
    }
655
43.7k
}
656
657
static NOINLINE void
658
cfl_ac_c(int16_t *ac, const pixel *ypx, const ptrdiff_t stride,
659
         const int w_pad, const int h_pad, const int width, const int height,
660
         const int ss_hor, const int ss_ver)
661
74.2k
{
662
74.2k
    int y, x;
663
74.2k
    int16_t *const ac_orig = ac;
664
665
74.2k
    assert(w_pad >= 0 && w_pad * 4 < width);
666
74.2k
    assert(h_pad >= 0 && h_pad * 4 < height);
667
668
806k
    for (y = 0; y < height - 4 * h_pad; y++) {
669
9.09M
        for (x = 0; x < width - 4 * w_pad; x++) {
670
8.36M
            int ac_sum = ypx[x << ss_hor];
671
8.36M
            if (ss_hor) ac_sum += ypx[x * 2 + 1];
672
8.36M
            if (ss_ver) {
673
420k
                ac_sum += ypx[(x << ss_hor) + PXSTRIDE(stride)];
674
420k
                if (ss_hor) ac_sum += ypx[x * 2 + 1 + PXSTRIDE(stride)];
675
420k
            }
676
8.36M
            ac[x] = ac_sum << (1 + !ss_ver + !ss_hor);
677
8.36M
        }
678
882k
        for (; x < width; x++)
679
150k
            ac[x] = ac[x - 1];
680
732k
        ac += width;
681
732k
        ypx += PXSTRIDE(stride) << ss_ver;
682
732k
    }
683
86.5k
    for (; y < height; y++) {
684
12.3k
        memcpy(ac, &ac[-width], width * sizeof(*ac));
685
12.3k
        ac += width;
686
12.3k
    }
687
688
74.2k
    const int log2sz = ctz(width) + ctz(height);
689
74.2k
    int sum = (1 << log2sz) >> 1;
690
819k
    for (ac = ac_orig, y = 0; y < height; y++) {
691
9.43M
        for (x = 0; x < width; x++)
692
8.68M
            sum += ac[x];
693
744k
        ac += width;
694
744k
    }
695
74.2k
    sum >>= log2sz;
696
697
    // subtract DC
698
818k
    for (ac = ac_orig, y = 0; y < height; y++) {
699
9.42M
        for (x = 0; x < width; x++)
700
8.68M
            ac[x] -= sum;
701
744k
        ac += width;
702
744k
    }
703
74.2k
}
704
705
#define cfl_ac_fn(fmt, ss_hor, ss_ver) \
706
static void cfl_ac_##fmt##_c(int16_t *const ac, const pixel *const ypx, \
707
                             const ptrdiff_t stride, const int w_pad, \
708
74.2k
                             const int h_pad, const int cw, const int ch) \
709
74.2k
{ \
710
74.2k
    cfl_ac_c(ac, ypx, stride, w_pad, h_pad, cw, ch, ss_hor, ss_ver); \
711
74.2k
}
ipred_tmpl.c:cfl_ac_420_c
Line
Count
Source
708
6.84k
                             const int h_pad, const int cw, const int ch) \
709
6.84k
{ \
710
6.84k
    cfl_ac_c(ac, ypx, stride, w_pad, h_pad, cw, ch, ss_hor, ss_ver); \
711
6.84k
}
ipred_tmpl.c:cfl_ac_422_c
Line
Count
Source
708
927
                             const int h_pad, const int cw, const int ch) \
709
927
{ \
710
927
    cfl_ac_c(ac, ypx, stride, w_pad, h_pad, cw, ch, ss_hor, ss_ver); \
711
927
}
ipred_tmpl.c:cfl_ac_444_c
Line
Count
Source
708
66.4k
                             const int h_pad, const int cw, const int ch) \
709
66.4k
{ \
710
66.4k
    cfl_ac_c(ac, ypx, stride, w_pad, h_pad, cw, ch, ss_hor, ss_ver); \
711
66.4k
}
712
713
cfl_ac_fn(420, 1, 1)
714
cfl_ac_fn(422, 1, 0)
715
cfl_ac_fn(444, 0, 0)
716
717
static void pal_pred_c(pixel *dst, const ptrdiff_t stride,
718
                       const pixel *const pal, const uint8_t *idx,
719
                       const int w, const int h)
720
5.47k
{
721
82.2k
    for (int y = 0; y < h; y++) {
722
687k
        for (int x = 0; x < w; x += 2) {
723
610k
            const int i = *idx++;
724
610k
            assert(!(i & 0x88));
725
610k
            dst[x + 0] = pal[i & 7];
726
610k
            dst[x + 1] = pal[i >> 4];
727
610k
        }
728
76.7k
        dst += PXSTRIDE(stride);
729
76.7k
    }
730
5.47k
}
731
732
#if HAVE_ASM
733
#if ARCH_AARCH64 || ARCH_ARM
734
#include "src/arm/ipred.h"
735
#elif ARCH_RISCV
736
#include "src/riscv/ipred.h"
737
#elif ARCH_X86
738
#include "src/x86/ipred.h"
739
#elif ARCH_LOONGARCH64
740
#include "src/loongarch/ipred.h"
741
#endif
742
#endif
743
744
26.2k
COLD void bitfn(dav1d_intra_pred_dsp_init)(Dav1dIntraPredDSPContext *const c) {
745
26.2k
    c->intra_pred[DC_PRED      ] = ipred_dc_c;
746
26.2k
    c->intra_pred[DC_128_PRED  ] = ipred_dc_128_c;
747
26.2k
    c->intra_pred[TOP_DC_PRED  ] = ipred_dc_top_c;
748
26.2k
    c->intra_pred[LEFT_DC_PRED ] = ipred_dc_left_c;
749
26.2k
    c->intra_pred[HOR_PRED     ] = ipred_h_c;
750
26.2k
    c->intra_pred[VERT_PRED    ] = ipred_v_c;
751
26.2k
    c->intra_pred[PAETH_PRED   ] = ipred_paeth_c;
752
26.2k
    c->intra_pred[SMOOTH_PRED  ] = ipred_smooth_c;
753
26.2k
    c->intra_pred[SMOOTH_V_PRED] = ipred_smooth_v_c;
754
26.2k
    c->intra_pred[SMOOTH_H_PRED] = ipred_smooth_h_c;
755
26.2k
    c->intra_pred[Z1_PRED      ] = ipred_z1_c;
756
26.2k
    c->intra_pred[Z2_PRED      ] = ipred_z2_c;
757
26.2k
    c->intra_pred[Z3_PRED      ] = ipred_z3_c;
758
26.2k
    c->intra_pred[FILTER_PRED  ] = ipred_filter_c;
759
760
26.2k
    c->cfl_ac[DAV1D_PIXEL_LAYOUT_I420 - 1] = cfl_ac_420_c;
761
26.2k
    c->cfl_ac[DAV1D_PIXEL_LAYOUT_I422 - 1] = cfl_ac_422_c;
762
26.2k
    c->cfl_ac[DAV1D_PIXEL_LAYOUT_I444 - 1] = cfl_ac_444_c;
763
764
26.2k
    c->cfl_pred[DC_PRED     ] = ipred_cfl_c;
765
26.2k
    c->cfl_pred[DC_128_PRED ] = ipred_cfl_128_c;
766
26.2k
    c->cfl_pred[TOP_DC_PRED ] = ipred_cfl_top_c;
767
26.2k
    c->cfl_pred[LEFT_DC_PRED] = ipred_cfl_left_c;
768
769
26.2k
    c->pal_pred = pal_pred_c;
770
771
#if HAVE_ASM
772
#if ARCH_AARCH64 || ARCH_ARM
773
    intra_pred_dsp_init_arm(c);
774
#elif ARCH_RISCV
775
    intra_pred_dsp_init_riscv(c);
776
#elif ARCH_X86
777
    intra_pred_dsp_init_x86(c);
778
#elif ARCH_LOONGARCH64
779
    intra_pred_dsp_init_loongarch(c);
780
#endif
781
#endif
782
26.2k
}
dav1d_intra_pred_dsp_init_8bpc
Line
Count
Source
744
12.0k
COLD void bitfn(dav1d_intra_pred_dsp_init)(Dav1dIntraPredDSPContext *const c) {
745
12.0k
    c->intra_pred[DC_PRED      ] = ipred_dc_c;
746
12.0k
    c->intra_pred[DC_128_PRED  ] = ipred_dc_128_c;
747
12.0k
    c->intra_pred[TOP_DC_PRED  ] = ipred_dc_top_c;
748
12.0k
    c->intra_pred[LEFT_DC_PRED ] = ipred_dc_left_c;
749
12.0k
    c->intra_pred[HOR_PRED     ] = ipred_h_c;
750
12.0k
    c->intra_pred[VERT_PRED    ] = ipred_v_c;
751
12.0k
    c->intra_pred[PAETH_PRED   ] = ipred_paeth_c;
752
12.0k
    c->intra_pred[SMOOTH_PRED  ] = ipred_smooth_c;
753
12.0k
    c->intra_pred[SMOOTH_V_PRED] = ipred_smooth_v_c;
754
12.0k
    c->intra_pred[SMOOTH_H_PRED] = ipred_smooth_h_c;
755
12.0k
    c->intra_pred[Z1_PRED      ] = ipred_z1_c;
756
12.0k
    c->intra_pred[Z2_PRED      ] = ipred_z2_c;
757
12.0k
    c->intra_pred[Z3_PRED      ] = ipred_z3_c;
758
12.0k
    c->intra_pred[FILTER_PRED  ] = ipred_filter_c;
759
760
12.0k
    c->cfl_ac[DAV1D_PIXEL_LAYOUT_I420 - 1] = cfl_ac_420_c;
761
12.0k
    c->cfl_ac[DAV1D_PIXEL_LAYOUT_I422 - 1] = cfl_ac_422_c;
762
12.0k
    c->cfl_ac[DAV1D_PIXEL_LAYOUT_I444 - 1] = cfl_ac_444_c;
763
764
12.0k
    c->cfl_pred[DC_PRED     ] = ipred_cfl_c;
765
12.0k
    c->cfl_pred[DC_128_PRED ] = ipred_cfl_128_c;
766
12.0k
    c->cfl_pred[TOP_DC_PRED ] = ipred_cfl_top_c;
767
12.0k
    c->cfl_pred[LEFT_DC_PRED] = ipred_cfl_left_c;
768
769
12.0k
    c->pal_pred = pal_pred_c;
770
771
#if HAVE_ASM
772
#if ARCH_AARCH64 || ARCH_ARM
773
    intra_pred_dsp_init_arm(c);
774
#elif ARCH_RISCV
775
    intra_pred_dsp_init_riscv(c);
776
#elif ARCH_X86
777
    intra_pred_dsp_init_x86(c);
778
#elif ARCH_LOONGARCH64
779
    intra_pred_dsp_init_loongarch(c);
780
#endif
781
#endif
782
12.0k
}
dav1d_intra_pred_dsp_init_16bpc
Line
Count
Source
744
14.1k
COLD void bitfn(dav1d_intra_pred_dsp_init)(Dav1dIntraPredDSPContext *const c) {
745
14.1k
    c->intra_pred[DC_PRED      ] = ipred_dc_c;
746
14.1k
    c->intra_pred[DC_128_PRED  ] = ipred_dc_128_c;
747
14.1k
    c->intra_pred[TOP_DC_PRED  ] = ipred_dc_top_c;
748
14.1k
    c->intra_pred[LEFT_DC_PRED ] = ipred_dc_left_c;
749
14.1k
    c->intra_pred[HOR_PRED     ] = ipred_h_c;
750
14.1k
    c->intra_pred[VERT_PRED    ] = ipred_v_c;
751
14.1k
    c->intra_pred[PAETH_PRED   ] = ipred_paeth_c;
752
14.1k
    c->intra_pred[SMOOTH_PRED  ] = ipred_smooth_c;
753
14.1k
    c->intra_pred[SMOOTH_V_PRED] = ipred_smooth_v_c;
754
14.1k
    c->intra_pred[SMOOTH_H_PRED] = ipred_smooth_h_c;
755
14.1k
    c->intra_pred[Z1_PRED      ] = ipred_z1_c;
756
14.1k
    c->intra_pred[Z2_PRED      ] = ipred_z2_c;
757
14.1k
    c->intra_pred[Z3_PRED      ] = ipred_z3_c;
758
14.1k
    c->intra_pred[FILTER_PRED  ] = ipred_filter_c;
759
760
14.1k
    c->cfl_ac[DAV1D_PIXEL_LAYOUT_I420 - 1] = cfl_ac_420_c;
761
14.1k
    c->cfl_ac[DAV1D_PIXEL_LAYOUT_I422 - 1] = cfl_ac_422_c;
762
14.1k
    c->cfl_ac[DAV1D_PIXEL_LAYOUT_I444 - 1] = cfl_ac_444_c;
763
764
14.1k
    c->cfl_pred[DC_PRED     ] = ipred_cfl_c;
765
14.1k
    c->cfl_pred[DC_128_PRED ] = ipred_cfl_128_c;
766
14.1k
    c->cfl_pred[TOP_DC_PRED ] = ipred_cfl_top_c;
767
14.1k
    c->cfl_pred[LEFT_DC_PRED] = ipred_cfl_left_c;
768
769
14.1k
    c->pal_pred = pal_pred_c;
770
771
#if HAVE_ASM
772
#if ARCH_AARCH64 || ARCH_ARM
773
    intra_pred_dsp_init_arm(c);
774
#elif ARCH_RISCV
775
    intra_pred_dsp_init_riscv(c);
776
#elif ARCH_X86
777
    intra_pred_dsp_init_x86(c);
778
#elif ARCH_LOONGARCH64
779
    intra_pred_dsp_init_loongarch(c);
780
#endif
781
#endif
782
14.1k
}