Coverage Report

Created: 2025-06-22 08:04

/src/aom/av1/common/convolve.c
Line
Count
Source
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 <string.h>
14
15
#include "config/aom_dsp_rtcd.h"
16
#include "config/av1_rtcd.h"
17
18
#include "av1/common/av1_common_int.h"
19
#include "av1/common/blockd.h"
20
#include "av1/common/convolve.h"
21
#include "av1/common/filter.h"
22
#include "av1/common/resize.h"
23
#include "aom_dsp/aom_dsp_common.h"
24
#include "aom_ports/mem.h"
25
26
void av1_convolve_horiz_rs_c(const uint8_t *src, int src_stride, uint8_t *dst,
27
                             int dst_stride, int w, int h,
28
                             const int16_t *x_filters, int x0_qn,
29
28.4k
                             int x_step_qn) {
30
28.4k
  src -= UPSCALE_NORMATIVE_TAPS / 2 - 1;
31
1.10M
  for (int y = 0; y < h; ++y) {
32
1.08M
    int x_qn = x0_qn;
33
137M
    for (int x = 0; x < w; ++x) {
34
136M
      const uint8_t *const src_x = &src[x_qn >> RS_SCALE_SUBPEL_BITS];
35
136M
      const int x_filter_idx =
36
136M
          (x_qn & RS_SCALE_SUBPEL_MASK) >> RS_SCALE_EXTRA_BITS;
37
136M
      assert(x_filter_idx <= RS_SUBPEL_MASK);
38
136M
      const int16_t *const x_filter =
39
136M
          &x_filters[x_filter_idx * UPSCALE_NORMATIVE_TAPS];
40
136M
      int sum = 0;
41
1.22G
      for (int k = 0; k < UPSCALE_NORMATIVE_TAPS; ++k)
42
1.09G
        sum += src_x[k] * x_filter[k];
43
136M
      dst[x] = clip_pixel(ROUND_POWER_OF_TWO(sum, FILTER_BITS));
44
136M
      x_qn += x_step_qn;
45
136M
    }
46
1.08M
    src += src_stride;
47
1.08M
    dst += dst_stride;
48
1.08M
  }
49
28.4k
}
50
51
#if CONFIG_AV1_HIGHBITDEPTH
52
void av1_highbd_convolve_horiz_rs_c(const uint16_t *src, int src_stride,
53
                                    uint16_t *dst, int dst_stride, int w, int h,
54
                                    const int16_t *x_filters, int x0_qn,
55
107k
                                    int x_step_qn, int bd) {
56
107k
  src -= UPSCALE_NORMATIVE_TAPS / 2 - 1;
57
4.27M
  for (int y = 0; y < h; ++y) {
58
4.16M
    int x_qn = x0_qn;
59
258M
    for (int x = 0; x < w; ++x) {
60
254M
      const uint16_t *const src_x = &src[x_qn >> RS_SCALE_SUBPEL_BITS];
61
254M
      const int x_filter_idx =
62
254M
          (x_qn & RS_SCALE_SUBPEL_MASK) >> RS_SCALE_EXTRA_BITS;
63
254M
      assert(x_filter_idx <= RS_SUBPEL_MASK);
64
254M
      const int16_t *const x_filter =
65
254M
          &x_filters[x_filter_idx * UPSCALE_NORMATIVE_TAPS];
66
254M
      int sum = 0;
67
2.29G
      for (int k = 0; k < UPSCALE_NORMATIVE_TAPS; ++k)
68
2.03G
        sum += src_x[k] * x_filter[k];
69
254M
      dst[x] = clip_pixel_highbd(ROUND_POWER_OF_TWO(sum, FILTER_BITS), bd);
70
254M
      x_qn += x_step_qn;
71
254M
    }
72
4.16M
    src += src_stride;
73
4.16M
    dst += dst_stride;
74
4.16M
  }
75
107k
}
76
#endif  // CONFIG_AV1_HIGHBITDEPTH
77
78
void av1_convolve_2d_sr_c(const uint8_t *src, int src_stride, uint8_t *dst,
79
                          int dst_stride, int w, int h,
80
                          const InterpFilterParams *filter_params_x,
81
                          const InterpFilterParams *filter_params_y,
82
                          const int subpel_x_qn, const int subpel_y_qn,
83
8.53k
                          ConvolveParams *conv_params) {
84
8.53k
  int16_t im_block[(MAX_SB_SIZE + MAX_FILTER_TAP - 1) * MAX_SB_SIZE];
85
8.53k
  int im_h = h + filter_params_y->taps - 1;
86
8.53k
  int im_stride = w;
87
8.53k
  assert(w <= MAX_SB_SIZE && h <= MAX_SB_SIZE);
88
8.53k
  const int fo_vert = filter_params_y->taps / 2 - 1;
89
8.53k
  const int fo_horiz = filter_params_x->taps / 2 - 1;
90
8.53k
  const int bd = 8;
91
8.53k
  const int bits =
92
8.53k
      FILTER_BITS * 2 - conv_params->round_0 - conv_params->round_1;
93
94
  // horizontal filter
95
8.53k
  const uint8_t *src_horiz = src - fo_vert * src_stride;
96
8.53k
  const int16_t *x_filter = av1_get_interp_filter_subpel_kernel(
97
8.53k
      filter_params_x, subpel_x_qn & SUBPEL_MASK);
98
118k
  for (int y = 0; y < im_h; ++y) {
99
692k
    for (int x = 0; x < w; ++x) {
100
583k
      int32_t sum = (1 << (bd + FILTER_BITS - 1));
101
5.25M
      for (int k = 0; k < filter_params_x->taps; ++k) {
102
4.66M
        sum += x_filter[k] * src_horiz[y * src_stride + x - fo_horiz + k];
103
4.66M
      }
104
105
      // TODO(aomedia:3393): for 12-tap filter, in extreme cases, the result can
106
      // be beyond the following range. For better prediction, a clamping can be
107
      // added for 12 tap filter to ensure the horizontal filtering result is
108
      // within 16 bit. The same applies to the vertical filtering.
109
583k
      assert(filter_params_x->taps > 8 ||
110
583k
             (0 <= sum && sum < (1 << (bd + FILTER_BITS + 1))));
111
583k
      im_block[y * im_stride + x] =
112
583k
          (int16_t)ROUND_POWER_OF_TWO(sum, conv_params->round_0);
113
583k
    }
114
109k
  }
115
116
  // vertical filter
117
8.53k
  int16_t *src_vert = im_block + fo_vert * im_stride;
118
8.53k
  const int16_t *y_filter = av1_get_interp_filter_subpel_kernel(
119
8.53k
      filter_params_y, subpel_y_qn & SUBPEL_MASK);
120
8.53k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
121
58.4k
  for (int y = 0; y < h; ++y) {
122
332k
    for (int x = 0; x < w; ++x) {
123
282k
      int32_t sum = 1 << offset_bits;
124
2.54M
      for (int k = 0; k < filter_params_y->taps; ++k) {
125
2.25M
        sum += y_filter[k] * src_vert[(y - fo_vert + k) * im_stride + x];
126
2.25M
      }
127
282k
      assert(filter_params_y->taps > 8 ||
128
282k
             (0 <= sum && sum < (1 << (offset_bits + 2))));
129
282k
      int16_t res = ROUND_POWER_OF_TWO(sum, conv_params->round_1) -
130
282k
                    ((1 << (offset_bits - conv_params->round_1)) +
131
282k
                     (1 << (offset_bits - conv_params->round_1 - 1)));
132
282k
      dst[y * dst_stride + x] = clip_pixel(ROUND_POWER_OF_TWO(res, bits));
133
282k
    }
134
49.8k
  }
135
8.53k
}
136
137
void av1_convolve_y_sr_c(const uint8_t *src, int src_stride, uint8_t *dst,
138
                         int dst_stride, int w, int h,
139
                         const InterpFilterParams *filter_params_y,
140
6.36k
                         const int subpel_y_qn) {
141
6.36k
  const int fo_vert = filter_params_y->taps / 2 - 1;
142
143
  // vertical filter
144
6.36k
  const int16_t *y_filter = av1_get_interp_filter_subpel_kernel(
145
6.36k
      filter_params_y, subpel_y_qn & SUBPEL_MASK);
146
44.5k
  for (int y = 0; y < h; ++y) {
147
284k
    for (int x = 0; x < w; ++x) {
148
246k
      int32_t res = 0;
149
2.21M
      for (int k = 0; k < filter_params_y->taps; ++k) {
150
1.97M
        res += y_filter[k] * src[(y - fo_vert + k) * src_stride + x];
151
1.97M
      }
152
246k
      dst[y * dst_stride + x] =
153
246k
          clip_pixel(ROUND_POWER_OF_TWO(res, FILTER_BITS));
154
246k
    }
155
38.1k
  }
156
6.36k
}
157
158
void av1_convolve_x_sr_c(const uint8_t *src, int src_stride, uint8_t *dst,
159
                         int dst_stride, int w, int h,
160
                         const InterpFilterParams *filter_params_x,
161
8.89k
                         const int subpel_x_qn, ConvolveParams *conv_params) {
162
8.89k
  const int fo_horiz = filter_params_x->taps / 2 - 1;
163
8.89k
  const int bits = FILTER_BITS - conv_params->round_0;
164
165
8.89k
  assert(bits >= 0);
166
8.89k
  assert((FILTER_BITS - conv_params->round_1) >= 0 ||
167
8.89k
         ((conv_params->round_0 + conv_params->round_1) == 2 * FILTER_BITS));
168
169
  // horizontal filter
170
8.89k
  const int16_t *x_filter = av1_get_interp_filter_subpel_kernel(
171
8.89k
      filter_params_x, subpel_x_qn & SUBPEL_MASK);
172
173
57.0k
  for (int y = 0; y < h; ++y) {
174
325k
    for (int x = 0; x < w; ++x) {
175
277k
      int32_t res = 0;
176
2.49M
      for (int k = 0; k < filter_params_x->taps; ++k) {
177
2.22M
        res += x_filter[k] * src[y * src_stride + x - fo_horiz + k];
178
2.22M
      }
179
277k
      res = ROUND_POWER_OF_TWO(res, conv_params->round_0);
180
277k
      dst[y * dst_stride + x] = clip_pixel(ROUND_POWER_OF_TWO(res, bits));
181
277k
    }
182
48.1k
  }
183
8.89k
}
184
185
// This function is exactly the same as av1_convolve_2d_sr_c, and is an
186
// optimized version for intrabc. Use the following 2-tap filter:
187
// DECLARE_ALIGNED(256, static const int16_t,
188
//                 av1_intrabc_bilinear_filter[2 * SUBPEL_SHIFTS]) = {
189
//   128, 0,  0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
190
//   64,  64, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
191
// };
192
void av1_convolve_2d_sr_intrabc_c(const uint8_t *src, int src_stride,
193
                                  uint8_t *dst, int dst_stride, int w, int h,
194
                                  const InterpFilterParams *filter_params_x,
195
                                  const InterpFilterParams *filter_params_y,
196
                                  const int subpel_x_qn, const int subpel_y_qn,
197
3.47k
                                  ConvolveParams *conv_params) {
198
3.47k
  assert(subpel_x_qn == 8);
199
3.47k
  assert(subpel_y_qn == 8);
200
3.47k
  assert(filter_params_x->taps == 2 && filter_params_y->taps == 2);
201
3.47k
  assert((conv_params->round_0 + conv_params->round_1) == 2 * FILTER_BITS);
202
3.47k
  (void)filter_params_x;
203
3.47k
  (void)subpel_x_qn;
204
3.47k
  (void)filter_params_y;
205
3.47k
  (void)subpel_y_qn;
206
3.47k
  (void)conv_params;
207
208
3.47k
  int16_t im_block[(MAX_SB_SIZE + MAX_FILTER_TAP - 1) * MAX_SB_SIZE];
209
3.47k
  int im_h = h + 1;
210
3.47k
  int im_stride = w;
211
3.47k
  assert(w <= MAX_SB_SIZE && h <= MAX_SB_SIZE);
212
3.47k
  const int bd = 8;
213
214
  // horizontal filter
215
  // explicitly operate for subpel_x_qn = 8.
216
3.47k
  int16_t *im = im_block;
217
32.1k
  for (int y = 0; y < im_h; ++y) {
218
346k
    for (int x = 0; x < w; ++x) {
219
318k
      const int32_t sum = (1 << bd) + src[x] + src[x + 1];
220
318k
      assert(0 <= sum && sum < (1 << (bd + 2)));
221
318k
      im[x] = sum;
222
318k
    }
223
28.6k
    src += src_stride;
224
28.6k
    im += im_stride;
225
28.6k
  }
226
227
  // vertical filter
228
  // explicitly operate for subpel_y_qn = 8.
229
3.47k
  int16_t *src_vert = im_block;
230
28.6k
  for (int y = 0; y < h; ++y) {
231
314k
    for (int x = 0; x < w; ++x) {
232
289k
      const int32_t sum =
233
289k
          (1 << (bd + 2)) + src_vert[x] + src_vert[im_stride + x];
234
289k
      assert(0 <= sum && sum < (1 << (bd + 4)));
235
289k
      const int16_t res =
236
289k
          ROUND_POWER_OF_TWO(sum, 2) - ((1 << bd) + (1 << (bd - 1)));
237
289k
      dst[x] = clip_pixel(res);
238
289k
    }
239
25.1k
    src_vert += im_stride;
240
25.1k
    dst += dst_stride;
241
25.1k
  }
242
3.47k
}
243
244
// This function is exactly the same as av1_convolve_y_sr_c, and is an
245
// optimized version for intrabc.
246
void av1_convolve_y_sr_intrabc_c(const uint8_t *src, int src_stride,
247
                                 uint8_t *dst, int dst_stride, int w, int h,
248
                                 const InterpFilterParams *filter_params_y,
249
3.43k
                                 const int subpel_y_qn) {
250
3.43k
  assert(subpel_y_qn == 8);
251
3.43k
  assert(filter_params_y->taps == 2);
252
3.43k
  (void)filter_params_y;
253
3.43k
  (void)subpel_y_qn;
254
255
  // vertical filter
256
  // explicitly operate for subpel_y_qn = 8.
257
27.9k
  for (int y = 0; y < h; ++y) {
258
313k
    for (int x = 0; x < w; ++x) {
259
289k
      const int32_t res = src[x] + src[src_stride + x];
260
289k
      dst[x] = clip_pixel(ROUND_POWER_OF_TWO(res, 1));
261
289k
    }
262
24.5k
    src += src_stride;
263
24.5k
    dst += dst_stride;
264
24.5k
  }
265
3.43k
}
266
267
// This function is exactly the same as av1_convolve_x_sr_c, and is an
268
// optimized version for intrabc.
269
void av1_convolve_x_sr_intrabc_c(const uint8_t *src, int src_stride,
270
                                 uint8_t *dst, int dst_stride, int w, int h,
271
                                 const InterpFilterParams *filter_params_x,
272
                                 const int subpel_x_qn,
273
3.69k
                                 ConvolveParams *conv_params) {
274
3.69k
  assert(subpel_x_qn == 8);
275
3.69k
  assert(filter_params_x->taps == 2);
276
3.69k
  assert((conv_params->round_0 + conv_params->round_1) == 2 * FILTER_BITS);
277
3.69k
  (void)filter_params_x;
278
3.69k
  (void)subpel_x_qn;
279
3.69k
  (void)conv_params;
280
281
  // horizontal filter
282
  // explicitly operate for subpel_x_qn = 8.
283
39.3k
  for (int y = 0; y < h; ++y) {
284
793k
    for (int x = 0; x < w; ++x) {
285
757k
      const int32_t res = src[x] + src[x + 1];
286
757k
      dst[x] = clip_pixel(ROUND_POWER_OF_TWO(res, 1));
287
757k
    }
288
35.7k
    src += src_stride;
289
35.7k
    dst += dst_stride;
290
35.7k
  }
291
3.69k
}
292
293
void av1_dist_wtd_convolve_2d_c(const uint8_t *src, int src_stride,
294
                                uint8_t *dst, int dst_stride, int w, int h,
295
                                const InterpFilterParams *filter_params_x,
296
                                const InterpFilterParams *filter_params_y,
297
                                const int subpel_x_qn, const int subpel_y_qn,
298
3.23k
                                ConvolveParams *conv_params) {
299
3.23k
  CONV_BUF_TYPE *dst16 = conv_params->dst;
300
3.23k
  int dst16_stride = conv_params->dst_stride;
301
3.23k
  int16_t im_block[(MAX_SB_SIZE + MAX_FILTER_TAP - 1) * MAX_SB_SIZE];
302
3.23k
  int im_h = h + filter_params_y->taps - 1;
303
3.23k
  int im_stride = w;
304
3.23k
  const int fo_vert = filter_params_y->taps / 2 - 1;
305
3.23k
  const int fo_horiz = filter_params_x->taps / 2 - 1;
306
3.23k
  const int bd = 8;
307
3.23k
  const int round_bits =
308
3.23k
      2 * FILTER_BITS - conv_params->round_0 - conv_params->round_1;
309
310
  // horizontal filter
311
3.23k
  const uint8_t *src_horiz = src - fo_vert * src_stride;
312
3.23k
  const int16_t *x_filter = av1_get_interp_filter_subpel_kernel(
313
3.23k
      filter_params_x, subpel_x_qn & SUBPEL_MASK);
314
54.1k
  for (int y = 0; y < im_h; ++y) {
315
460k
    for (int x = 0; x < w; ++x) {
316
409k
      int32_t sum = (1 << (bd + FILTER_BITS - 1));
317
3.68M
      for (int k = 0; k < filter_params_x->taps; ++k) {
318
3.27M
        sum += x_filter[k] * src_horiz[y * src_stride + x - fo_horiz + k];
319
3.27M
      }
320
409k
      assert(filter_params_x->taps > 8 ||
321
409k
             (0 <= sum && sum < (1 << (bd + FILTER_BITS + 1))));
322
409k
      im_block[y * im_stride + x] =
323
409k
          (int16_t)ROUND_POWER_OF_TWO(sum, conv_params->round_0);
324
409k
    }
325
50.9k
  }
326
327
  // vertical filter
328
3.23k
  int16_t *src_vert = im_block + fo_vert * im_stride;
329
3.23k
  const int16_t *y_filter = av1_get_interp_filter_subpel_kernel(
330
3.23k
      filter_params_y, subpel_y_qn & SUBPEL_MASK);
331
3.23k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
332
31.5k
  for (int y = 0; y < h; ++y) {
333
263k
    for (int x = 0; x < w; ++x) {
334
234k
      int32_t sum = 1 << offset_bits;
335
2.11M
      for (int k = 0; k < filter_params_y->taps; ++k) {
336
1.87M
        sum += y_filter[k] * src_vert[(y - fo_vert + k) * im_stride + x];
337
1.87M
      }
338
234k
      assert(filter_params_y->taps > 8 ||
339
234k
             (0 <= sum && sum < (1 << (offset_bits + 2))));
340
234k
      CONV_BUF_TYPE res = ROUND_POWER_OF_TWO(sum, conv_params->round_1);
341
234k
      if (conv_params->do_average) {
342
122k
        int32_t tmp = dst16[y * dst16_stride + x];
343
122k
        if (conv_params->use_dist_wtd_comp_avg) {
344
52.9k
          tmp = tmp * conv_params->fwd_offset + res * conv_params->bck_offset;
345
52.9k
          tmp = tmp >> DIST_PRECISION_BITS;
346
69.6k
        } else {
347
69.6k
          tmp += res;
348
69.6k
          tmp = tmp >> 1;
349
69.6k
        }
350
122k
        tmp -= (1 << (offset_bits - conv_params->round_1)) +
351
122k
               (1 << (offset_bits - conv_params->round_1 - 1));
352
122k
        dst[y * dst_stride + x] =
353
122k
            clip_pixel(ROUND_POWER_OF_TWO(tmp, round_bits));
354
122k
      } else {
355
112k
        dst16[y * dst16_stride + x] = res;
356
112k
      }
357
234k
    }
358
28.3k
  }
359
3.23k
}
360
361
void av1_dist_wtd_convolve_y_c(const uint8_t *src, int src_stride, uint8_t *dst,
362
                               int dst_stride, int w, int h,
363
                               const InterpFilterParams *filter_params_y,
364
                               const int subpel_y_qn,
365
3.26k
                               ConvolveParams *conv_params) {
366
3.26k
  CONV_BUF_TYPE *dst16 = conv_params->dst;
367
3.26k
  int dst16_stride = conv_params->dst_stride;
368
3.26k
  const int fo_vert = filter_params_y->taps / 2 - 1;
369
3.26k
  const int bits = FILTER_BITS - conv_params->round_0;
370
3.26k
  const int bd = 8;
371
3.26k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
372
3.26k
  const int round_offset = (1 << (offset_bits - conv_params->round_1)) +
373
3.26k
                           (1 << (offset_bits - conv_params->round_1 - 1));
374
3.26k
  const int round_bits =
375
3.26k
      2 * FILTER_BITS - conv_params->round_0 - conv_params->round_1;
376
377
  // vertical filter
378
3.26k
  const int16_t *y_filter = av1_get_interp_filter_subpel_kernel(
379
3.26k
      filter_params_y, subpel_y_qn & SUBPEL_MASK);
380
34.7k
  for (int y = 0; y < h; ++y) {
381
293k
    for (int x = 0; x < w; ++x) {
382
261k
      int32_t res = 0;
383
2.35M
      for (int k = 0; k < filter_params_y->taps; ++k) {
384
2.09M
        res += y_filter[k] * src[(y - fo_vert + k) * src_stride + x];
385
2.09M
      }
386
261k
      res *= (1 << bits);
387
261k
      res = ROUND_POWER_OF_TWO(res, conv_params->round_1) + round_offset;
388
389
261k
      if (conv_params->do_average) {
390
76.8k
        int32_t tmp = dst16[y * dst16_stride + x];
391
76.8k
        if (conv_params->use_dist_wtd_comp_avg) {
392
10.1k
          tmp = tmp * conv_params->fwd_offset + res * conv_params->bck_offset;
393
10.1k
          tmp = tmp >> DIST_PRECISION_BITS;
394
66.6k
        } else {
395
66.6k
          tmp += res;
396
66.6k
          tmp = tmp >> 1;
397
66.6k
        }
398
76.8k
        tmp -= round_offset;
399
76.8k
        dst[y * dst_stride + x] =
400
76.8k
            clip_pixel(ROUND_POWER_OF_TWO(tmp, round_bits));
401
184k
      } else {
402
184k
        dst16[y * dst16_stride + x] = res;
403
184k
      }
404
261k
    }
405
31.5k
  }
406
3.26k
}
407
408
void av1_dist_wtd_convolve_x_c(const uint8_t *src, int src_stride, uint8_t *dst,
409
                               int dst_stride, int w, int h,
410
                               const InterpFilterParams *filter_params_x,
411
                               const int subpel_x_qn,
412
1.61k
                               ConvolveParams *conv_params) {
413
1.61k
  CONV_BUF_TYPE *dst16 = conv_params->dst;
414
1.61k
  int dst16_stride = conv_params->dst_stride;
415
1.61k
  const int fo_horiz = filter_params_x->taps / 2 - 1;
416
1.61k
  const int bits = FILTER_BITS - conv_params->round_1;
417
1.61k
  const int bd = 8;
418
1.61k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
419
1.61k
  const int round_offset = (1 << (offset_bits - conv_params->round_1)) +
420
1.61k
                           (1 << (offset_bits - conv_params->round_1 - 1));
421
1.61k
  const int round_bits =
422
1.61k
      2 * FILTER_BITS - conv_params->round_0 - conv_params->round_1;
423
424
  // horizontal filter
425
1.61k
  const int16_t *x_filter = av1_get_interp_filter_subpel_kernel(
426
1.61k
      filter_params_x, subpel_x_qn & SUBPEL_MASK);
427
16.1k
  for (int y = 0; y < h; ++y) {
428
140k
    for (int x = 0; x < w; ++x) {
429
126k
      int32_t res = 0;
430
1.13M
      for (int k = 0; k < filter_params_x->taps; ++k) {
431
1.01M
        res += x_filter[k] * src[y * src_stride + x - fo_horiz + k];
432
1.01M
      }
433
126k
      res = (1 << bits) * ROUND_POWER_OF_TWO(res, conv_params->round_0);
434
126k
      res += round_offset;
435
436
126k
      if (conv_params->do_average) {
437
47.9k
        int32_t tmp = dst16[y * dst16_stride + x];
438
47.9k
        if (conv_params->use_dist_wtd_comp_avg) {
439
21.8k
          tmp = tmp * conv_params->fwd_offset + res * conv_params->bck_offset;
440
21.8k
          tmp = tmp >> DIST_PRECISION_BITS;
441
26.0k
        } else {
442
26.0k
          tmp += res;
443
26.0k
          tmp = tmp >> 1;
444
26.0k
        }
445
47.9k
        tmp -= round_offset;
446
47.9k
        dst[y * dst_stride + x] =
447
47.9k
            clip_pixel(ROUND_POWER_OF_TWO(tmp, round_bits));
448
78.4k
      } else {
449
78.4k
        dst16[y * dst16_stride + x] = res;
450
78.4k
      }
451
126k
    }
452
14.5k
  }
453
1.61k
}
454
455
void av1_dist_wtd_convolve_2d_copy_c(const uint8_t *src, int src_stride,
456
                                     uint8_t *dst, int dst_stride, int w, int h,
457
6.27k
                                     ConvolveParams *conv_params) {
458
6.27k
  CONV_BUF_TYPE *dst16 = conv_params->dst;
459
6.27k
  int dst16_stride = conv_params->dst_stride;
460
6.27k
  const int bits =
461
6.27k
      FILTER_BITS * 2 - conv_params->round_1 - conv_params->round_0;
462
6.27k
  const int bd = 8;
463
6.27k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
464
6.27k
  const int round_offset = (1 << (offset_bits - conv_params->round_1)) +
465
6.27k
                           (1 << (offset_bits - conv_params->round_1 - 1));
466
467
67.2k
  for (int y = 0; y < h; ++y) {
468
714k
    for (int x = 0; x < w; ++x) {
469
653k
      CONV_BUF_TYPE res = src[y * src_stride + x] << bits;
470
653k
      res += round_offset;
471
472
653k
      if (conv_params->do_average) {
473
114k
        int32_t tmp = dst16[y * dst16_stride + x];
474
114k
        if (conv_params->use_dist_wtd_comp_avg) {
475
17.0k
          tmp = tmp * conv_params->fwd_offset + res * conv_params->bck_offset;
476
17.0k
          tmp = tmp >> DIST_PRECISION_BITS;
477
97.6k
        } else {
478
97.6k
          tmp += res;
479
97.6k
          tmp = tmp >> 1;
480
97.6k
        }
481
114k
        tmp -= round_offset;
482
114k
        dst[y * dst_stride + x] = clip_pixel(ROUND_POWER_OF_TWO(tmp, bits));
483
538k
      } else {
484
538k
        dst16[y * dst16_stride + x] = res;
485
538k
      }
486
653k
    }
487
60.9k
  }
488
6.27k
}
489
490
void av1_convolve_2d_scale_c(const uint8_t *src, int src_stride, uint8_t *dst,
491
                             int dst_stride, int w, int h,
492
                             const InterpFilterParams *filter_params_x,
493
                             const InterpFilterParams *filter_params_y,
494
                             const int subpel_x_qn, const int x_step_qn,
495
                             const int subpel_y_qn, const int y_step_qn,
496
13.9k
                             ConvolveParams *conv_params) {
497
13.9k
  int16_t im_block[(2 * MAX_SB_SIZE + MAX_FILTER_TAP) * MAX_SB_SIZE];
498
13.9k
  int im_h = (((h - 1) * y_step_qn + subpel_y_qn) >> SCALE_SUBPEL_BITS) +
499
13.9k
             filter_params_y->taps;
500
13.9k
  CONV_BUF_TYPE *dst16 = conv_params->dst;
501
13.9k
  const int dst16_stride = conv_params->dst_stride;
502
13.9k
  const int bits =
503
13.9k
      FILTER_BITS * 2 - conv_params->round_0 - conv_params->round_1;
504
13.9k
  assert(bits >= 0);
505
13.9k
  int im_stride = w;
506
13.9k
  const int fo_vert = filter_params_y->taps / 2 - 1;
507
13.9k
  const int fo_horiz = filter_params_x->taps / 2 - 1;
508
13.9k
  const int bd = 8;
509
510
  // horizontal filter
511
13.9k
  const uint8_t *src_horiz = src - fo_vert * src_stride;
512
214k
  for (int y = 0; y < im_h; ++y) {
513
200k
    int x_qn = subpel_x_qn;
514
2.01M
    for (int x = 0; x < w; ++x, x_qn += x_step_qn) {
515
1.80M
      const uint8_t *const src_x = &src_horiz[(x_qn >> SCALE_SUBPEL_BITS)];
516
1.80M
      const int x_filter_idx = (x_qn & SCALE_SUBPEL_MASK) >> SCALE_EXTRA_BITS;
517
1.80M
      assert(x_filter_idx < SUBPEL_SHIFTS);
518
1.80M
      const int16_t *x_filter =
519
1.80M
          av1_get_interp_filter_subpel_kernel(filter_params_x, x_filter_idx);
520
1.80M
      int32_t sum = (1 << (bd + FILTER_BITS - 1));
521
16.2M
      for (int k = 0; k < filter_params_x->taps; ++k) {
522
14.4M
        sum += x_filter[k] * src_x[k - fo_horiz];
523
14.4M
      }
524
1.80M
      assert(filter_params_x->taps > 8 ||
525
1.80M
             (0 <= sum && sum < (1 << (bd + FILTER_BITS + 1))));
526
1.80M
      im_block[y * im_stride + x] =
527
1.80M
          (int16_t)ROUND_POWER_OF_TWO(sum, conv_params->round_0);
528
1.80M
    }
529
200k
    src_horiz += src_stride;
530
200k
  }
531
532
  // vertical filter
533
13.9k
  int16_t *src_vert = im_block + fo_vert * im_stride;
534
13.9k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
535
104k
  for (int x = 0; x < w; ++x) {
536
90.6k
    int y_qn = subpel_y_qn;
537
1.26M
    for (int y = 0; y < h; ++y, y_qn += y_step_qn) {
538
1.17M
      const int16_t *src_y = &src_vert[(y_qn >> SCALE_SUBPEL_BITS) * im_stride];
539
1.17M
      const int y_filter_idx = (y_qn & SCALE_SUBPEL_MASK) >> SCALE_EXTRA_BITS;
540
1.17M
      assert(y_filter_idx < SUBPEL_SHIFTS);
541
1.17M
      const int16_t *y_filter =
542
1.17M
          av1_get_interp_filter_subpel_kernel(filter_params_y, y_filter_idx);
543
1.17M
      int32_t sum = 1 << offset_bits;
544
10.5M
      for (int k = 0; k < filter_params_y->taps; ++k) {
545
9.40M
        sum += y_filter[k] * src_y[(k - fo_vert) * im_stride];
546
9.40M
      }
547
1.17M
      assert(filter_params_y->taps > 8 ||
548
1.17M
             (0 <= sum && sum < (1 << (offset_bits + 2))));
549
1.17M
      CONV_BUF_TYPE res = ROUND_POWER_OF_TWO(sum, conv_params->round_1);
550
1.17M
      if (conv_params->is_compound) {
551
356k
        if (conv_params->do_average) {
552
258k
          int32_t tmp = dst16[y * dst16_stride + x];
553
258k
          if (conv_params->use_dist_wtd_comp_avg) {
554
136k
            tmp = tmp * conv_params->fwd_offset + res * conv_params->bck_offset;
555
136k
            tmp = tmp >> DIST_PRECISION_BITS;
556
136k
          } else {
557
121k
            tmp += res;
558
121k
            tmp = tmp >> 1;
559
121k
          }
560
          /* Subtract round offset and convolve round */
561
258k
          tmp = tmp - ((1 << (offset_bits - conv_params->round_1)) +
562
258k
                       (1 << (offset_bits - conv_params->round_1 - 1)));
563
258k
          dst[y * dst_stride + x] = clip_pixel(ROUND_POWER_OF_TWO(tmp, bits));
564
258k
        } else {
565
98.1k
          dst16[y * dst16_stride + x] = res;
566
98.1k
        }
567
818k
      } else {
568
        /* Subtract round offset and convolve round */
569
818k
        int32_t tmp = res - ((1 << (offset_bits - conv_params->round_1)) +
570
818k
                             (1 << (offset_bits - conv_params->round_1 - 1)));
571
818k
        dst[y * dst_stride + x] = clip_pixel(ROUND_POWER_OF_TWO(tmp, bits));
572
818k
      }
573
1.17M
    }
574
90.6k
    src_vert++;
575
90.6k
  }
576
13.9k
}
577
578
static void convolve_2d_scale_wrapper(
579
    const uint8_t *src, int src_stride, uint8_t *dst, int dst_stride, int w,
580
    int h, const InterpFilterParams *filter_params_x,
581
    const InterpFilterParams *filter_params_y, const int subpel_x_qn,
582
    const int x_step_qn, const int subpel_y_qn, const int y_step_qn,
583
13.9k
    ConvolveParams *conv_params) {
584
13.9k
  if (conv_params->is_compound) {
585
3.20k
    assert(conv_params->dst != NULL);
586
3.20k
  }
587
13.9k
  av1_convolve_2d_scale(src, src_stride, dst, dst_stride, w, h, filter_params_x,
588
13.9k
                        filter_params_y, subpel_x_qn, x_step_qn, subpel_y_qn,
589
13.9k
                        y_step_qn, conv_params);
590
13.9k
}
591
592
static void convolve_2d_facade_compound(
593
    const uint8_t *src, int src_stride, uint8_t *dst, int dst_stride, int w,
594
    int h, const InterpFilterParams *filter_params_x,
595
    const InterpFilterParams *filter_params_y, const int subpel_x_qn,
596
14.3k
    const int subpel_y_qn, ConvolveParams *conv_params) {
597
14.3k
  const bool need_x = subpel_x_qn != 0;
598
14.3k
  const bool need_y = subpel_y_qn != 0;
599
14.3k
  if (!need_x && !need_y) {
600
6.27k
    av1_dist_wtd_convolve_2d_copy(src, src_stride, dst, dst_stride, w, h,
601
6.27k
                                  conv_params);
602
8.10k
  } else if (need_x && !need_y) {
603
1.61k
    av1_dist_wtd_convolve_x(src, src_stride, dst, dst_stride, w, h,
604
1.61k
                            filter_params_x, subpel_x_qn, conv_params);
605
6.49k
  } else if (!need_x && need_y) {
606
3.26k
    av1_dist_wtd_convolve_y(src, src_stride, dst, dst_stride, w, h,
607
3.26k
                            filter_params_y, subpel_y_qn, conv_params);
608
3.26k
  } else {
609
3.23k
    assert(need_y && need_x);
610
3.23k
    av1_dist_wtd_convolve_2d(src, src_stride, dst, dst_stride, w, h,
611
3.23k
                             filter_params_x, filter_params_y, subpel_x_qn,
612
3.23k
                             subpel_y_qn, conv_params);
613
3.23k
  }
614
14.3k
}
615
616
static void convolve_2d_facade_single(
617
    const uint8_t *src, int src_stride, uint8_t *dst, int dst_stride, int w,
618
    int h, const InterpFilterParams *filter_params_x,
619
    const InterpFilterParams *filter_params_y, const int subpel_x_qn,
620
224k
    const int subpel_y_qn, ConvolveParams *conv_params) {
621
224k
  const bool need_x = subpel_x_qn != 0;
622
224k
  const bool need_y = subpel_y_qn != 0;
623
224k
  if (!need_x && !need_y) {
624
201k
    aom_convolve_copy(src, src_stride, dst, dst_stride, w, h);
625
201k
  } else if (need_x && !need_y) {
626
8.89k
    av1_convolve_x_sr(src, src_stride, dst, dst_stride, w, h, filter_params_x,
627
8.89k
                      subpel_x_qn, conv_params);
628
14.8k
  } else if (!need_x && need_y) {
629
6.36k
    av1_convolve_y_sr(src, src_stride, dst, dst_stride, w, h, filter_params_y,
630
6.36k
                      subpel_y_qn);
631
8.53k
  } else {
632
8.53k
    assert(need_x && need_y);
633
8.53k
    av1_convolve_2d_sr(src, src_stride, dst, dst_stride, w, h, filter_params_x,
634
8.53k
                       filter_params_y, subpel_x_qn, subpel_y_qn, conv_params);
635
8.53k
  }
636
224k
}
637
638
void av1_convolve_2d_facade(const uint8_t *src, int src_stride, uint8_t *dst,
639
                            int dst_stride, int w, int h,
640
                            const InterpFilterParams *interp_filters[2],
641
                            const int subpel_x_qn, int x_step_q4,
642
                            const int subpel_y_qn, int y_step_q4, int scaled,
643
263k
                            ConvolveParams *conv_params) {
644
263k
  (void)x_step_q4;
645
263k
  (void)y_step_q4;
646
263k
  (void)dst;
647
263k
  (void)dst_stride;
648
649
263k
  const InterpFilterParams *filter_params_x = interp_filters[0];
650
263k
  const InterpFilterParams *filter_params_y = interp_filters[1];
651
652
  // TODO(jingning, yunqing): Add SIMD support to 2-tap filter case.
653
  // 2-tap filter indicates that it is for IntraBC.
654
263k
  if (filter_params_x->taps == 2 || filter_params_y->taps == 2) {
655
189k
    assert(filter_params_x->taps == 2 && filter_params_y->taps == 2);
656
189k
    assert(!scaled);
657
189k
    if (subpel_x_qn && subpel_y_qn) {
658
3.47k
      av1_convolve_2d_sr_intrabc(src, src_stride, dst, dst_stride, w, h,
659
3.47k
                                 filter_params_x, filter_params_y, subpel_x_qn,
660
3.47k
                                 subpel_y_qn, conv_params);
661
3.47k
      return;
662
186k
    } else if (subpel_x_qn) {
663
3.69k
      av1_convolve_x_sr_intrabc(src, src_stride, dst, dst_stride, w, h,
664
3.69k
                                filter_params_x, subpel_x_qn, conv_params);
665
3.69k
      return;
666
182k
    } else if (subpel_y_qn) {
667
3.43k
      av1_convolve_y_sr_intrabc(src, src_stride, dst, dst_stride, w, h,
668
3.43k
                                filter_params_y, subpel_y_qn);
669
3.43k
      return;
670
3.43k
    }
671
189k
  }
672
673
253k
  if (scaled) {
674
13.9k
    convolve_2d_scale_wrapper(src, src_stride, dst, dst_stride, w, h,
675
13.9k
                              filter_params_x, filter_params_y, subpel_x_qn,
676
13.9k
                              x_step_q4, subpel_y_qn, y_step_q4, conv_params);
677
239k
  } else if (conv_params->is_compound) {
678
14.3k
    convolve_2d_facade_compound(src, src_stride, dst, dst_stride, w, h,
679
14.3k
                                filter_params_x, filter_params_y, subpel_x_qn,
680
14.3k
                                subpel_y_qn, conv_params);
681
224k
  } else {
682
224k
    convolve_2d_facade_single(src, src_stride, dst, dst_stride, w, h,
683
224k
                              filter_params_x, filter_params_y, subpel_x_qn,
684
224k
                              subpel_y_qn, conv_params);
685
224k
  }
686
253k
}
687
688
#if CONFIG_AV1_HIGHBITDEPTH
689
void av1_highbd_convolve_x_sr_c(const uint16_t *src, int src_stride,
690
                                uint16_t *dst, int dst_stride, int w, int h,
691
                                const InterpFilterParams *filter_params_x,
692
                                const int subpel_x_qn,
693
9.53k
                                ConvolveParams *conv_params, int bd) {
694
9.53k
  const int fo_horiz = filter_params_x->taps / 2 - 1;
695
9.53k
  const int bits = FILTER_BITS - conv_params->round_0;
696
697
9.53k
  assert(bits >= 0);
698
9.53k
  assert((FILTER_BITS - conv_params->round_1) >= 0 ||
699
9.53k
         ((conv_params->round_0 + conv_params->round_1) == 2 * FILTER_BITS));
700
701
  // horizontal filter
702
9.53k
  const int16_t *x_filter = av1_get_interp_filter_subpel_kernel(
703
9.53k
      filter_params_x, subpel_x_qn & SUBPEL_MASK);
704
68.6k
  for (int y = 0; y < h; ++y) {
705
431k
    for (int x = 0; x < w; ++x) {
706
372k
      int32_t res = 0;
707
3.35M
      for (int k = 0; k < filter_params_x->taps; ++k) {
708
2.97M
        res += x_filter[k] * src[y * src_stride + x - fo_horiz + k];
709
2.97M
      }
710
372k
      res = ROUND_POWER_OF_TWO(res, conv_params->round_0);
711
372k
      dst[y * dst_stride + x] =
712
372k
          clip_pixel_highbd(ROUND_POWER_OF_TWO(res, bits), bd);
713
372k
    }
714
59.0k
  }
715
9.53k
}
716
717
void av1_highbd_convolve_y_sr_c(const uint16_t *src, int src_stride,
718
                                uint16_t *dst, int dst_stride, int w, int h,
719
                                const InterpFilterParams *filter_params_y,
720
6.27k
                                const int subpel_y_qn, int bd) {
721
6.27k
  const int fo_vert = filter_params_y->taps / 2 - 1;
722
  // vertical filter
723
6.27k
  const int16_t *y_filter = av1_get_interp_filter_subpel_kernel(
724
6.27k
      filter_params_y, subpel_y_qn & SUBPEL_MASK);
725
50.1k
  for (int y = 0; y < h; ++y) {
726
362k
    for (int x = 0; x < w; ++x) {
727
318k
      int32_t res = 0;
728
2.86M
      for (int k = 0; k < filter_params_y->taps; ++k) {
729
2.54M
        res += y_filter[k] * src[(y - fo_vert + k) * src_stride + x];
730
2.54M
      }
731
318k
      dst[y * dst_stride + x] =
732
318k
          clip_pixel_highbd(ROUND_POWER_OF_TWO(res, FILTER_BITS), bd);
733
318k
    }
734
43.9k
  }
735
6.27k
}
736
737
void av1_highbd_convolve_2d_sr_c(const uint16_t *src, int src_stride,
738
                                 uint16_t *dst, int dst_stride, int w, int h,
739
                                 const InterpFilterParams *filter_params_x,
740
                                 const InterpFilterParams *filter_params_y,
741
                                 const int subpel_x_qn, const int subpel_y_qn,
742
9.70k
                                 ConvolveParams *conv_params, int bd) {
743
9.70k
  int16_t im_block[(MAX_SB_SIZE + MAX_FILTER_TAP - 1) * MAX_SB_SIZE];
744
9.70k
  int im_h = h + filter_params_y->taps - 1;
745
9.70k
  int im_stride = w;
746
9.70k
  assert(w <= MAX_SB_SIZE && h <= MAX_SB_SIZE);
747
9.70k
  const int fo_vert = filter_params_y->taps / 2 - 1;
748
9.70k
  const int fo_horiz = filter_params_x->taps / 2 - 1;
749
9.70k
  const int bits =
750
9.70k
      FILTER_BITS * 2 - conv_params->round_0 - conv_params->round_1;
751
9.70k
  assert(bits >= 0);
752
753
  // horizontal filter
754
9.70k
  const uint16_t *src_horiz = src - fo_vert * src_stride;
755
9.70k
  const int16_t *x_filter = av1_get_interp_filter_subpel_kernel(
756
9.70k
      filter_params_x, subpel_x_qn & SUBPEL_MASK);
757
137k
  for (int y = 0; y < im_h; ++y) {
758
863k
    for (int x = 0; x < w; ++x) {
759
735k
      int32_t sum = (1 << (bd + FILTER_BITS - 1));
760
6.62M
      for (int k = 0; k < filter_params_x->taps; ++k) {
761
5.88M
        sum += x_filter[k] * src_horiz[y * src_stride + x - fo_horiz + k];
762
5.88M
      }
763
735k
      assert(filter_params_x->taps > 8 ||
764
735k
             (0 <= sum && sum < (1 << (bd + FILTER_BITS + 1))));
765
735k
      im_block[y * im_stride + x] =
766
735k
          ROUND_POWER_OF_TWO(sum, conv_params->round_0);
767
735k
    }
768
128k
  }
769
770
  // vertical filter
771
9.70k
  int16_t *src_vert = im_block + fo_vert * im_stride;
772
9.70k
  const int16_t *y_filter = av1_get_interp_filter_subpel_kernel(
773
9.70k
      filter_params_y, subpel_y_qn & SUBPEL_MASK);
774
9.70k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
775
69.7k
  for (int y = 0; y < h; ++y) {
776
424k
    for (int x = 0; x < w; ++x) {
777
364k
      int32_t sum = 1 << offset_bits;
778
3.28M
      for (int k = 0; k < filter_params_y->taps; ++k) {
779
2.91M
        sum += y_filter[k] * src_vert[(y - fo_vert + k) * im_stride + x];
780
2.91M
      }
781
364k
      assert(filter_params_y->taps > 8 ||
782
364k
             (0 <= sum && sum < (1 << (offset_bits + 2))));
783
364k
      int32_t res = ROUND_POWER_OF_TWO(sum, conv_params->round_1) -
784
364k
                    ((1 << (offset_bits - conv_params->round_1)) +
785
364k
                     (1 << (offset_bits - conv_params->round_1 - 1)));
786
364k
      dst[y * dst_stride + x] =
787
364k
          clip_pixel_highbd(ROUND_POWER_OF_TWO(res, bits), bd);
788
364k
    }
789
60.0k
  }
790
9.70k
}
791
792
// This function is exactly the same as av1_highbd_convolve_2d_sr_c, and is an
793
// optimized version for intrabc. Use the following 2-tap filter:
794
// DECLARE_ALIGNED(256, static const int16_t,
795
//                 av1_intrabc_bilinear_filter[2 * SUBPEL_SHIFTS]) = {
796
//   128, 0,  0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
797
//   64,  64, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
798
// };
799
void av1_highbd_convolve_2d_sr_intrabc_c(
800
    const uint16_t *src, int src_stride, uint16_t *dst, int dst_stride, int w,
801
    int h, const InterpFilterParams *filter_params_x,
802
    const InterpFilterParams *filter_params_y, const int subpel_x_qn,
803
22.4k
    const int subpel_y_qn, ConvolveParams *conv_params, int bd) {
804
22.4k
  const int bits =
805
22.4k
      FILTER_BITS * 2 - conv_params->round_0 - conv_params->round_1;
806
22.4k
  assert(bits >= 0);
807
22.4k
  assert(subpel_x_qn == 8);
808
22.4k
  assert(subpel_y_qn == 8);
809
22.4k
  assert(filter_params_x->taps == 2 && filter_params_y->taps == 2);
810
22.4k
  assert((conv_params->round_0 + conv_params->round_1) == 2 * FILTER_BITS);
811
22.4k
  (void)filter_params_x;
812
22.4k
  (void)subpel_x_qn;
813
22.4k
  (void)filter_params_y;
814
22.4k
  (void)subpel_y_qn;
815
22.4k
  (void)conv_params;
816
817
22.4k
  int16_t im_block[(MAX_SB_SIZE + MAX_FILTER_TAP - 1) * MAX_SB_SIZE];
818
22.4k
  int im_h = h + 1;
819
22.4k
  int im_stride = w;
820
22.4k
  assert(w <= MAX_SB_SIZE && h <= MAX_SB_SIZE);
821
822
  // horizontal filter
823
  // explicitly operate for subpel_x_qn = 8.
824
22.4k
  int16_t *im = im_block;
825
191k
  for (int y = 0; y < im_h; ++y) {
826
1.74M
    for (int x = 0; x < w; ++x) {
827
1.57M
      int32_t sum = (1 << (bd + FILTER_BITS - 1)) + 64 * (src[x] + src[x + 1]);
828
1.57M
      assert(0 <= sum && sum < (1 << (bd + FILTER_BITS + 1)));
829
1.57M
      sum = ROUND_POWER_OF_TWO(sum, conv_params->round_0);
830
1.57M
      im[x] = sum;
831
1.57M
    }
832
169k
    src += src_stride;
833
169k
    im += im_stride;
834
169k
  }
835
836
  // vertical filter
837
  // explicitly operate for subpel_y_qn = 8.
838
22.4k
  int16_t *src_vert = im_block;
839
22.4k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
840
169k
  for (int y = 0; y < h; ++y) {
841
1.55M
    for (int x = 0; x < w; ++x) {
842
1.40M
      const int32_t sum =
843
1.40M
          (1 << offset_bits) + 64 * (src_vert[x] + src_vert[im_stride + x]);
844
1.40M
      assert(0 <= sum && sum < (1 << (offset_bits + 2)));
845
1.40M
      const int32_t res = ROUND_POWER_OF_TWO(sum, conv_params->round_1) -
846
1.40M
                          ((1 << (offset_bits - conv_params->round_1)) +
847
1.40M
                           (1 << (offset_bits - conv_params->round_1 - 1)));
848
849
1.40M
      dst[x] = clip_pixel_highbd(ROUND_POWER_OF_TWO(res, bits), bd);
850
1.40M
    }
851
147k
    src_vert += im_stride;
852
147k
    dst += dst_stride;
853
147k
  }
854
22.4k
}
855
856
// This function is exactly the same as av1_highbd_convolve_y_sr_c, and is an
857
// optimized version for intrabc.
858
void av1_highbd_convolve_y_sr_intrabc_c(
859
    const uint16_t *src, int src_stride, uint16_t *dst, int dst_stride, int w,
860
    int h, const InterpFilterParams *filter_params_y, const int subpel_y_qn,
861
20.4k
    int bd) {
862
20.4k
  assert(subpel_y_qn == 8);
863
20.4k
  assert(filter_params_y->taps == 2);
864
20.4k
  (void)filter_params_y;
865
20.4k
  (void)subpel_y_qn;
866
867
  // vertical filter
868
  // explicitly operate for subpel_y_qn = 8.
869
148k
  for (int y = 0; y < h; ++y) {
870
1.19M
    for (int x = 0; x < w; ++x) {
871
1.06M
      const int32_t res = src[x] + src[src_stride + x];
872
1.06M
      dst[x] = clip_pixel_highbd(ROUND_POWER_OF_TWO(res, 1), bd);
873
1.06M
    }
874
128k
    src += src_stride;
875
128k
    dst += dst_stride;
876
128k
  }
877
20.4k
}
878
879
// This function is exactly the same as av1_highbd_convolve_x_sr_c, and is an
880
// optimized version for intrabc.
881
void av1_highbd_convolve_x_sr_intrabc_c(
882
    const uint16_t *src, int src_stride, uint16_t *dst, int dst_stride, int w,
883
    int h, const InterpFilterParams *filter_params_x, const int subpel_x_qn,
884
21.0k
    ConvolveParams *conv_params, int bd) {
885
21.0k
  const int bits = FILTER_BITS - conv_params->round_0;
886
21.0k
  assert(bits >= 0);
887
21.0k
  assert(subpel_x_qn == 8);
888
21.0k
  assert(filter_params_x->taps == 2);
889
21.0k
  assert((conv_params->round_0 + conv_params->round_1) == 2 * FILTER_BITS);
890
21.0k
  (void)filter_params_x;
891
21.0k
  (void)subpel_x_qn;
892
893
  // horizontal filter
894
  // explicitly operate for subpel_x_qn = 8.
895
164k
  for (int y = 0; y < h; ++y) {
896
1.84M
    for (int x = 0; x < w; ++x) {
897
1.69M
      int32_t res = 64 * (src[x] + src[x + 1]);
898
1.69M
      res = ROUND_POWER_OF_TWO(res, conv_params->round_0);
899
1.69M
      dst[x] = clip_pixel_highbd(ROUND_POWER_OF_TWO(res, bits), bd);
900
1.69M
    }
901
143k
    src += src_stride;
902
143k
    dst += dst_stride;
903
143k
  }
904
21.0k
}
905
906
void av1_highbd_dist_wtd_convolve_2d_c(
907
    const uint16_t *src, int src_stride, uint16_t *dst, int dst_stride, int w,
908
    int h, const InterpFilterParams *filter_params_x,
909
    const InterpFilterParams *filter_params_y, const int subpel_x_qn,
910
6.08k
    const int subpel_y_qn, ConvolveParams *conv_params, int bd) {
911
6.08k
  int x, y, k;
912
6.08k
  int16_t im_block[(MAX_SB_SIZE + MAX_FILTER_TAP - 1) * MAX_SB_SIZE];
913
6.08k
  CONV_BUF_TYPE *dst16 = conv_params->dst;
914
6.08k
  int dst16_stride = conv_params->dst_stride;
915
6.08k
  int im_h = h + filter_params_y->taps - 1;
916
6.08k
  int im_stride = w;
917
6.08k
  const int fo_vert = filter_params_y->taps / 2 - 1;
918
6.08k
  const int fo_horiz = filter_params_x->taps / 2 - 1;
919
6.08k
  const int round_bits =
920
6.08k
      2 * FILTER_BITS - conv_params->round_0 - conv_params->round_1;
921
6.08k
  assert(round_bits >= 0);
922
923
  // horizontal filter
924
6.08k
  const uint16_t *src_horiz = src - fo_vert * src_stride;
925
6.08k
  const int16_t *x_filter = av1_get_interp_filter_subpel_kernel(
926
6.08k
      filter_params_x, subpel_x_qn & SUBPEL_MASK);
927
107k
  for (y = 0; y < im_h; ++y) {
928
1.01M
    for (x = 0; x < w; ++x) {
929
913k
      int32_t sum = (1 << (bd + FILTER_BITS - 1));
930
8.22M
      for (k = 0; k < filter_params_x->taps; ++k) {
931
7.30M
        sum += x_filter[k] * src_horiz[y * src_stride + x - fo_horiz + k];
932
7.30M
      }
933
913k
      assert(filter_params_x->taps > 8 ||
934
913k
             (0 <= sum && sum < (1 << (bd + FILTER_BITS + 1))));
935
913k
      (void)bd;
936
913k
      im_block[y * im_stride + x] =
937
913k
          (int16_t)ROUND_POWER_OF_TWO(sum, conv_params->round_0);
938
913k
    }
939
101k
  }
940
941
  // vertical filter
942
6.08k
  int16_t *src_vert = im_block + fo_vert * im_stride;
943
6.08k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
944
6.08k
  const int16_t *y_filter = av1_get_interp_filter_subpel_kernel(
945
6.08k
      filter_params_y, subpel_y_qn & SUBPEL_MASK);
946
64.6k
  for (y = 0; y < h; ++y) {
947
611k
    for (x = 0; x < w; ++x) {
948
552k
      int32_t sum = 1 << offset_bits;
949
4.97M
      for (k = 0; k < filter_params_y->taps; ++k) {
950
4.41M
        sum += y_filter[k] * src_vert[(y - fo_vert + k) * im_stride + x];
951
4.41M
      }
952
552k
      assert(filter_params_y->taps > 8 ||
953
552k
             (0 <= sum && sum < (1 << (offset_bits + 2))));
954
552k
      CONV_BUF_TYPE res = ROUND_POWER_OF_TWO(sum, conv_params->round_1);
955
552k
      if (conv_params->do_average) {
956
185k
        int32_t tmp = dst16[y * dst16_stride + x];
957
185k
        if (conv_params->use_dist_wtd_comp_avg) {
958
14.3k
          tmp = tmp * conv_params->fwd_offset + res * conv_params->bck_offset;
959
14.3k
          tmp = tmp >> DIST_PRECISION_BITS;
960
170k
        } else {
961
170k
          tmp += res;
962
170k
          tmp = tmp >> 1;
963
170k
        }
964
185k
        tmp -= (1 << (offset_bits - conv_params->round_1)) +
965
185k
               (1 << (offset_bits - conv_params->round_1 - 1));
966
185k
        dst[y * dst_stride + x] =
967
185k
            clip_pixel_highbd(ROUND_POWER_OF_TWO(tmp, round_bits), bd);
968
367k
      } else {
969
367k
        dst16[y * dst16_stride + x] = res;
970
367k
      }
971
552k
    }
972
58.5k
  }
973
6.08k
}
974
975
void av1_highbd_dist_wtd_convolve_x_c(const uint16_t *src, int src_stride,
976
                                      uint16_t *dst, int dst_stride, int w,
977
                                      int h,
978
                                      const InterpFilterParams *filter_params_x,
979
                                      const int subpel_x_qn,
980
3.74k
                                      ConvolveParams *conv_params, int bd) {
981
3.74k
  CONV_BUF_TYPE *dst16 = conv_params->dst;
982
3.74k
  int dst16_stride = conv_params->dst_stride;
983
3.74k
  const int fo_horiz = filter_params_x->taps / 2 - 1;
984
3.74k
  const int bits = FILTER_BITS - conv_params->round_1;
985
3.74k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
986
3.74k
  const int round_offset = (1 << (offset_bits - conv_params->round_1)) +
987
3.74k
                           (1 << (offset_bits - conv_params->round_1 - 1));
988
3.74k
  const int round_bits =
989
3.74k
      2 * FILTER_BITS - conv_params->round_0 - conv_params->round_1;
990
3.74k
  assert(round_bits >= 0);
991
3.74k
  assert(bits >= 0);
992
  // horizontal filter
993
3.74k
  const int16_t *x_filter = av1_get_interp_filter_subpel_kernel(
994
3.74k
      filter_params_x, subpel_x_qn & SUBPEL_MASK);
995
45.9k
  for (int y = 0; y < h; ++y) {
996
458k
    for (int x = 0; x < w; ++x) {
997
416k
      int32_t res = 0;
998
3.74M
      for (int k = 0; k < filter_params_x->taps; ++k) {
999
3.32M
        res += x_filter[k] * src[y * src_stride + x - fo_horiz + k];
1000
3.32M
      }
1001
416k
      res = (1 << bits) * ROUND_POWER_OF_TWO(res, conv_params->round_0);
1002
416k
      res += round_offset;
1003
1004
416k
      if (conv_params->do_average) {
1005
249k
        int32_t tmp = dst16[y * dst16_stride + x];
1006
249k
        if (conv_params->use_dist_wtd_comp_avg) {
1007
11.5k
          tmp = tmp * conv_params->fwd_offset + res * conv_params->bck_offset;
1008
11.5k
          tmp = tmp >> DIST_PRECISION_BITS;
1009
237k
        } else {
1010
237k
          tmp += res;
1011
237k
          tmp = tmp >> 1;
1012
237k
        }
1013
249k
        tmp -= round_offset;
1014
249k
        dst[y * dst_stride + x] =
1015
249k
            clip_pixel_highbd(ROUND_POWER_OF_TWO(tmp, round_bits), bd);
1016
249k
      } else {
1017
166k
        dst16[y * dst16_stride + x] = res;
1018
166k
      }
1019
416k
    }
1020
42.1k
  }
1021
3.74k
}
1022
1023
void av1_highbd_dist_wtd_convolve_y_c(const uint16_t *src, int src_stride,
1024
                                      uint16_t *dst, int dst_stride, int w,
1025
                                      int h,
1026
                                      const InterpFilterParams *filter_params_y,
1027
                                      const int subpel_y_qn,
1028
3.86k
                                      ConvolveParams *conv_params, int bd) {
1029
3.86k
  CONV_BUF_TYPE *dst16 = conv_params->dst;
1030
3.86k
  int dst16_stride = conv_params->dst_stride;
1031
3.86k
  const int fo_vert = filter_params_y->taps / 2 - 1;
1032
3.86k
  const int bits = FILTER_BITS - conv_params->round_0;
1033
3.86k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
1034
3.86k
  const int round_offset = (1 << (offset_bits - conv_params->round_1)) +
1035
3.86k
                           (1 << (offset_bits - conv_params->round_1 - 1));
1036
3.86k
  const int round_bits =
1037
3.86k
      2 * FILTER_BITS - conv_params->round_0 - conv_params->round_1;
1038
3.86k
  assert(round_bits >= 0);
1039
3.86k
  assert(bits >= 0);
1040
  // vertical filter
1041
3.86k
  const int16_t *y_filter = av1_get_interp_filter_subpel_kernel(
1042
3.86k
      filter_params_y, subpel_y_qn & SUBPEL_MASK);
1043
45.6k
  for (int y = 0; y < h; ++y) {
1044
433k
    for (int x = 0; x < w; ++x) {
1045
391k
      int32_t res = 0;
1046
3.52M
      for (int k = 0; k < filter_params_y->taps; ++k) {
1047
3.13M
        res += y_filter[k] * src[(y - fo_vert + k) * src_stride + x];
1048
3.13M
      }
1049
391k
      res *= (1 << bits);
1050
391k
      res = ROUND_POWER_OF_TWO(res, conv_params->round_1) + round_offset;
1051
1052
391k
      if (conv_params->do_average) {
1053
121k
        int32_t tmp = dst16[y * dst16_stride + x];
1054
121k
        if (conv_params->use_dist_wtd_comp_avg) {
1055
12.0k
          tmp = tmp * conv_params->fwd_offset + res * conv_params->bck_offset;
1056
12.0k
          tmp = tmp >> DIST_PRECISION_BITS;
1057
109k
        } else {
1058
109k
          tmp += res;
1059
109k
          tmp = tmp >> 1;
1060
109k
        }
1061
121k
        tmp -= round_offset;
1062
121k
        dst[y * dst_stride + x] =
1063
121k
            clip_pixel_highbd(ROUND_POWER_OF_TWO(tmp, round_bits), bd);
1064
270k
      } else {
1065
270k
        dst16[y * dst16_stride + x] = res;
1066
270k
      }
1067
391k
    }
1068
41.8k
  }
1069
3.86k
}
1070
1071
void av1_highbd_dist_wtd_convolve_2d_copy_c(const uint16_t *src, int src_stride,
1072
                                            uint16_t *dst, int dst_stride,
1073
                                            int w, int h,
1074
                                            ConvolveParams *conv_params,
1075
13.7k
                                            int bd) {
1076
13.7k
  CONV_BUF_TYPE *dst16 = conv_params->dst;
1077
13.7k
  int dst16_stride = conv_params->dst_stride;
1078
13.7k
  const int bits =
1079
13.7k
      FILTER_BITS * 2 - conv_params->round_1 - conv_params->round_0;
1080
13.7k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
1081
13.7k
  const int round_offset = (1 << (offset_bits - conv_params->round_1)) +
1082
13.7k
                           (1 << (offset_bits - conv_params->round_1 - 1));
1083
13.7k
  assert(bits >= 0);
1084
1085
136k
  for (int y = 0; y < h; ++y) {
1086
1.23M
    for (int x = 0; x < w; ++x) {
1087
1.10M
      CONV_BUF_TYPE res = src[y * src_stride + x] << bits;
1088
1.10M
      res += round_offset;
1089
1.10M
      if (conv_params->do_average) {
1090
338k
        int32_t tmp = dst16[y * dst16_stride + x];
1091
338k
        if (conv_params->use_dist_wtd_comp_avg) {
1092
178k
          tmp = tmp * conv_params->fwd_offset + res * conv_params->bck_offset;
1093
178k
          tmp = tmp >> DIST_PRECISION_BITS;
1094
178k
        } else {
1095
160k
          tmp += res;
1096
160k
          tmp = tmp >> 1;
1097
160k
        }
1098
338k
        tmp -= round_offset;
1099
338k
        dst[y * dst_stride + x] =
1100
338k
            clip_pixel_highbd(ROUND_POWER_OF_TWO(tmp, bits), bd);
1101
769k
      } else {
1102
769k
        dst16[y * dst16_stride + x] = res;
1103
769k
      }
1104
1.10M
    }
1105
122k
  }
1106
13.7k
}
1107
1108
void av1_highbd_convolve_2d_scale_c(const uint16_t *src, int src_stride,
1109
                                    uint16_t *dst, int dst_stride, int w, int h,
1110
                                    const InterpFilterParams *filter_params_x,
1111
                                    const InterpFilterParams *filter_params_y,
1112
                                    const int subpel_x_qn, const int x_step_qn,
1113
                                    const int subpel_y_qn, const int y_step_qn,
1114
14.7k
                                    ConvolveParams *conv_params, int bd) {
1115
14.7k
  int16_t im_block[(2 * MAX_SB_SIZE + MAX_FILTER_TAP) * MAX_SB_SIZE];
1116
14.7k
  int im_h = (((h - 1) * y_step_qn + subpel_y_qn) >> SCALE_SUBPEL_BITS) +
1117
14.7k
             filter_params_y->taps;
1118
14.7k
  int im_stride = w;
1119
14.7k
  const int fo_vert = filter_params_y->taps / 2 - 1;
1120
14.7k
  const int fo_horiz = filter_params_x->taps / 2 - 1;
1121
14.7k
  CONV_BUF_TYPE *dst16 = conv_params->dst;
1122
14.7k
  const int dst16_stride = conv_params->dst_stride;
1123
14.7k
  const int bits =
1124
14.7k
      FILTER_BITS * 2 - conv_params->round_0 - conv_params->round_1;
1125
14.7k
  assert(bits >= 0);
1126
  // horizontal filter
1127
14.7k
  const uint16_t *src_horiz = src - fo_vert * src_stride;
1128
219k
  for (int y = 0; y < im_h; ++y) {
1129
204k
    int x_qn = subpel_x_qn;
1130
2.17M
    for (int x = 0; x < w; ++x, x_qn += x_step_qn) {
1131
1.96M
      const uint16_t *const src_x = &src_horiz[(x_qn >> SCALE_SUBPEL_BITS)];
1132
1.96M
      const int x_filter_idx = (x_qn & SCALE_SUBPEL_MASK) >> SCALE_EXTRA_BITS;
1133
1.96M
      assert(x_filter_idx < SUBPEL_SHIFTS);
1134
1.96M
      const int16_t *x_filter =
1135
1.96M
          av1_get_interp_filter_subpel_kernel(filter_params_x, x_filter_idx);
1136
1.96M
      int32_t sum = (1 << (bd + FILTER_BITS - 1));
1137
17.7M
      for (int k = 0; k < filter_params_x->taps; ++k) {
1138
15.7M
        sum += x_filter[k] * src_x[k - fo_horiz];
1139
15.7M
      }
1140
1.96M
      assert(filter_params_x->taps > 8 ||
1141
1.96M
             (0 <= sum && sum < (1 << (bd + FILTER_BITS + 1))));
1142
1.96M
      im_block[y * im_stride + x] =
1143
1.96M
          (int16_t)ROUND_POWER_OF_TWO(sum, conv_params->round_0);
1144
1.96M
    }
1145
204k
    src_horiz += src_stride;
1146
204k
  }
1147
1148
  // vertical filter
1149
14.7k
  int16_t *src_vert = im_block + fo_vert * im_stride;
1150
14.7k
  const int offset_bits = bd + 2 * FILTER_BITS - conv_params->round_0;
1151
112k
  for (int x = 0; x < w; ++x) {
1152
98.2k
    int y_qn = subpel_y_qn;
1153
1.40M
    for (int y = 0; y < h; ++y, y_qn += y_step_qn) {
1154
1.30M
      const int16_t *src_y = &src_vert[(y_qn >> SCALE_SUBPEL_BITS) * im_stride];
1155
1.30M
      const int y_filter_idx = (y_qn & SCALE_SUBPEL_MASK) >> SCALE_EXTRA_BITS;
1156
1.30M
      assert(y_filter_idx < SUBPEL_SHIFTS);
1157
1.30M
      const int16_t *y_filter =
1158
1.30M
          av1_get_interp_filter_subpel_kernel(filter_params_y, y_filter_idx);
1159
1.30M
      int32_t sum = 1 << offset_bits;
1160
11.7M
      for (int k = 0; k < filter_params_y->taps; ++k) {
1161
10.4M
        sum += y_filter[k] * src_y[(k - fo_vert) * im_stride];
1162
10.4M
      }
1163
1.30M
      assert(filter_params_y->taps > 8 ||
1164
1.30M
             (0 <= sum && sum < (1 << (offset_bits + 2))));
1165
1.30M
      CONV_BUF_TYPE res = ROUND_POWER_OF_TWO(sum, conv_params->round_1);
1166
1.30M
      if (conv_params->is_compound) {
1167
416k
        if (conv_params->do_average) {
1168
183k
          int32_t tmp = dst16[y * dst16_stride + x];
1169
183k
          if (conv_params->use_dist_wtd_comp_avg) {
1170
50.8k
            tmp = tmp * conv_params->fwd_offset + res * conv_params->bck_offset;
1171
50.8k
            tmp = tmp >> DIST_PRECISION_BITS;
1172
133k
          } else {
1173
133k
            tmp += res;
1174
133k
            tmp = tmp >> 1;
1175
133k
          }
1176
          /* Subtract round offset and convolve round */
1177
183k
          tmp = tmp - ((1 << (offset_bits - conv_params->round_1)) +
1178
183k
                       (1 << (offset_bits - conv_params->round_1 - 1)));
1179
183k
          dst[y * dst_stride + x] =
1180
183k
              clip_pixel_highbd(ROUND_POWER_OF_TWO(tmp, bits), bd);
1181
232k
        } else {
1182
232k
          dst16[y * dst16_stride + x] = res;
1183
232k
        }
1184
892k
      } else {
1185
        /* Subtract round offset and convolve round */
1186
892k
        int32_t tmp = res - ((1 << (offset_bits - conv_params->round_1)) +
1187
892k
                             (1 << (offset_bits - conv_params->round_1 - 1)));
1188
892k
        dst[y * dst_stride + x] =
1189
892k
            clip_pixel_highbd(ROUND_POWER_OF_TWO(tmp, bits), bd);
1190
892k
      }
1191
1.30M
    }
1192
98.2k
    src_vert++;
1193
98.2k
  }
1194
14.7k
}
1195
1196
static void highbd_convolve_2d_facade_compound(
1197
    const uint16_t *src, int src_stride, uint16_t *dst, int dst_stride,
1198
    const int w, const int h, const InterpFilterParams *filter_params_x,
1199
    const InterpFilterParams *filter_params_y, const int subpel_x_qn,
1200
27.4k
    const int subpel_y_qn, ConvolveParams *conv_params, int bd) {
1201
27.4k
  const bool need_x = subpel_x_qn != 0;
1202
27.4k
  const bool need_y = subpel_y_qn != 0;
1203
27.4k
  if (!need_x && !need_y) {
1204
13.7k
    av1_highbd_dist_wtd_convolve_2d_copy(src, src_stride, dst, dst_stride, w, h,
1205
13.7k
                                         conv_params, bd);
1206
13.7k
  } else if (need_x && !need_y) {
1207
3.74k
    av1_highbd_dist_wtd_convolve_x(src, src_stride, dst, dst_stride, w, h,
1208
3.74k
                                   filter_params_x, subpel_x_qn, conv_params,
1209
3.74k
                                   bd);
1210
9.94k
  } else if (!need_x && need_y) {
1211
3.86k
    av1_highbd_dist_wtd_convolve_y(src, src_stride, dst, dst_stride, w, h,
1212
3.86k
                                   filter_params_y, subpel_y_qn, conv_params,
1213
3.86k
                                   bd);
1214
6.08k
  } else {
1215
6.08k
    assert(need_x && need_y);
1216
6.08k
    av1_highbd_dist_wtd_convolve_2d(src, src_stride, dst, dst_stride, w, h,
1217
6.08k
                                    filter_params_x, filter_params_y,
1218
6.08k
                                    subpel_x_qn, subpel_y_qn, conv_params, bd);
1219
6.08k
  }
1220
27.4k
}
1221
1222
static void highbd_convolve_2d_facade_single(
1223
    const uint16_t *src, int src_stride, uint16_t *dst, int dst_stride,
1224
    const int w, const int h, const InterpFilterParams *filter_params_x,
1225
    const InterpFilterParams *filter_params_y, const int subpel_x_qn,
1226
120k
    const int subpel_y_qn, ConvolveParams *conv_params, int bd) {
1227
120k
  const bool need_x = subpel_x_qn != 0;
1228
120k
  const bool need_y = subpel_y_qn != 0;
1229
1230
120k
  if (!need_x && !need_y) {
1231
95.2k
    aom_highbd_convolve_copy(src, src_stride, dst, dst_stride, w, h);
1232
95.2k
  } else if (need_x && !need_y) {
1233
9.53k
    av1_highbd_convolve_x_sr(src, src_stride, dst, dst_stride, w, h,
1234
9.53k
                             filter_params_x, subpel_x_qn, conv_params, bd);
1235
15.9k
  } else if (!need_x && need_y) {
1236
6.27k
    av1_highbd_convolve_y_sr(src, src_stride, dst, dst_stride, w, h,
1237
6.27k
                             filter_params_y, subpel_y_qn, bd);
1238
9.70k
  } else {
1239
9.70k
    assert(need_x && need_y);
1240
9.70k
    av1_highbd_convolve_2d_sr(src, src_stride, dst, dst_stride, w, h,
1241
9.70k
                              filter_params_x, filter_params_y, subpel_x_qn,
1242
9.70k
                              subpel_y_qn, conv_params, bd);
1243
9.70k
  }
1244
120k
}
1245
1246
void av1_highbd_convolve_2d_facade(const uint8_t *src8, int src_stride,
1247
                                   uint8_t *dst8, int dst_stride, int w, int h,
1248
                                   const InterpFilterParams *interp_filters[2],
1249
                                   const int subpel_x_qn, int x_step_q4,
1250
                                   const int subpel_y_qn, int y_step_q4,
1251
                                   int scaled, ConvolveParams *conv_params,
1252
226k
                                   int bd) {
1253
226k
  (void)x_step_q4;
1254
226k
  (void)y_step_q4;
1255
226k
  (void)dst_stride;
1256
226k
  const uint16_t *src = CONVERT_TO_SHORTPTR(src8);
1257
1258
226k
  const InterpFilterParams *filter_params_x = interp_filters[0];
1259
226k
  const InterpFilterParams *filter_params_y = interp_filters[1];
1260
1261
226k
  uint16_t *dst = CONVERT_TO_SHORTPTR(dst8);
1262
  // 2-tap filter indicates that it is for IntraBC.
1263
226k
  if (filter_params_x->taps == 2 || filter_params_y->taps == 2) {
1264
141k
    assert(filter_params_x->taps == 2 && filter_params_y->taps == 2);
1265
141k
    assert(!scaled);
1266
141k
    if (subpel_x_qn && subpel_y_qn) {
1267
22.4k
      av1_highbd_convolve_2d_sr_intrabc_c(
1268
22.4k
          src, src_stride, dst, dst_stride, w, h, filter_params_x,
1269
22.4k
          filter_params_y, subpel_x_qn, subpel_y_qn, conv_params, bd);
1270
22.4k
      return;
1271
118k
    } else if (subpel_x_qn) {
1272
21.0k
      av1_highbd_convolve_x_sr_intrabc_c(src, src_stride, dst, dst_stride, w, h,
1273
21.0k
                                         filter_params_x, subpel_x_qn,
1274
21.0k
                                         conv_params, bd);
1275
21.0k
      return;
1276
97.8k
    } else if (subpel_y_qn) {
1277
20.4k
      av1_highbd_convolve_y_sr_intrabc_c(src, src_stride, dst, dst_stride, w, h,
1278
20.4k
                                         filter_params_y, subpel_y_qn, bd);
1279
20.4k
      return;
1280
20.4k
    }
1281
141k
  }
1282
1283
162k
  if (scaled) {
1284
14.7k
    if (conv_params->is_compound) {
1285
2.98k
      assert(conv_params->dst != NULL);
1286
2.98k
    }
1287
14.7k
    av1_highbd_convolve_2d_scale(src, src_stride, dst, dst_stride, w, h,
1288
14.7k
                                 filter_params_x, filter_params_y, subpel_x_qn,
1289
14.7k
                                 x_step_q4, subpel_y_qn, y_step_q4, conv_params,
1290
14.7k
                                 bd);
1291
148k
  } else if (conv_params->is_compound) {
1292
27.4k
    highbd_convolve_2d_facade_compound(
1293
27.4k
        src, src_stride, dst, dst_stride, w, h, filter_params_x,
1294
27.4k
        filter_params_y, subpel_x_qn, subpel_y_qn, conv_params, bd);
1295
120k
  } else {
1296
120k
    highbd_convolve_2d_facade_single(src, src_stride, dst, dst_stride, w, h,
1297
120k
                                     filter_params_x, filter_params_y,
1298
120k
                                     subpel_x_qn, subpel_y_qn, conv_params, bd);
1299
120k
  }
1300
162k
}
1301
#endif  // CONFIG_AV1_HIGHBITDEPTH
1302
1303
// Note: Fixed size intermediate buffers, place limits on parameters
1304
// of some functions. 2d filtering proceeds in 2 steps:
1305
//   (1) Interpolate horizontally into an intermediate buffer, temp.
1306
//   (2) Interpolate temp vertically to derive the sub-pixel result.
1307
// Deriving the maximum number of rows in the temp buffer (135):
1308
// --Smallest scaling factor is x1/2 ==> y_step_q4 = 32 (Normative).
1309
// --Largest block size is 128x128 pixels.
1310
// --128 rows in the downscaled frame span a distance of (128 - 1) * 32 in the
1311
//   original frame (in 1/16th pixel units).
1312
// --Must round-up because block may be located at sub-pixel position.
1313
// --Require an additional SUBPEL_TAPS rows for the 8-tap filter tails.
1314
// --((128 - 1) * 32 + 15) >> 4 + 8 = 263.
1315
#define WIENER_MAX_EXT_SIZE 263
1316
1317
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1318
13.7M
static inline int horz_scalar_product(const uint8_t *a, const int16_t *b) {
1319
13.7M
  int sum = 0;
1320
124M
  for (int k = 0; k < SUBPEL_TAPS; ++k) sum += a[k] * b[k];
1321
13.7M
  return sum;
1322
13.7M
}
1323
1324
#if CONFIG_AV1_HIGHBITDEPTH
1325
static inline int highbd_horz_scalar_product(const uint16_t *a,
1326
45.6M
                                             const int16_t *b) {
1327
45.6M
  int sum = 0;
1328
411M
  for (int k = 0; k < SUBPEL_TAPS; ++k) sum += a[k] * b[k];
1329
45.6M
  return sum;
1330
45.6M
}
1331
#endif
1332
1333
static inline int highbd_vert_scalar_product(const uint16_t *a,
1334
                                             ptrdiff_t a_stride,
1335
55.7M
                                             const int16_t *b) {
1336
55.7M
  int sum = 0;
1337
505M
  for (int k = 0; k < SUBPEL_TAPS; ++k) sum += a[k * a_stride] * b[k];
1338
55.7M
  return sum;
1339
55.7M
}
1340
1341
61.3k
static const InterpKernel *get_filter_base(const int16_t *filter) {
1342
  // NOTE: This assumes that the filter table is 256-byte aligned.
1343
  // TODO(agrange) Modify to make independent of table alignment.
1344
61.3k
  return (const InterpKernel *)(((intptr_t)filter) & ~((intptr_t)0xFF));
1345
61.3k
}
1346
1347
61.3k
static int get_filter_offset(const int16_t *f, const InterpKernel *base) {
1348
61.3k
  return (int)((const InterpKernel *)(intptr_t)f - base);
1349
61.3k
}
1350
1351
static void convolve_add_src_horiz_hip(const uint8_t *src, ptrdiff_t src_stride,
1352
                                       uint16_t *dst, ptrdiff_t dst_stride,
1353
                                       const InterpKernel *x_filters, int x0_q4,
1354
                                       int x_step_q4, int w, int h,
1355
8.51k
                                       int round0_bits) {
1356
8.51k
  const int bd = 8;
1357
8.51k
  src -= SUBPEL_TAPS / 2 - 1;
1358
306k
  for (int y = 0; y < h; ++y) {
1359
297k
    int x_q4 = x0_q4;
1360
14.1M
    for (int x = 0; x < w; ++x) {
1361
13.8M
      const uint8_t *const src_x = &src[x_q4 >> SUBPEL_BITS];
1362
13.8M
      const int16_t *const x_filter = x_filters[x_q4 & SUBPEL_MASK];
1363
13.8M
      const int rounding = ((int)src_x[SUBPEL_TAPS / 2 - 1] << FILTER_BITS) +
1364
13.8M
                           (1 << (bd + FILTER_BITS - 1));
1365
13.8M
      const int sum = horz_scalar_product(src_x, x_filter) + rounding;
1366
13.8M
      dst[x] = (uint16_t)clamp(ROUND_POWER_OF_TWO(sum, round0_bits), 0,
1367
13.8M
                               WIENER_CLAMP_LIMIT(round0_bits, bd) - 1);
1368
13.8M
      x_q4 += x_step_q4;
1369
13.8M
    }
1370
297k
    src += src_stride;
1371
297k
    dst += dst_stride;
1372
297k
  }
1373
8.51k
}
1374
1375
static void convolve_add_src_vert_hip(const uint16_t *src, ptrdiff_t src_stride,
1376
                                      uint8_t *dst, ptrdiff_t dst_stride,
1377
                                      const InterpKernel *y_filters, int y0_q4,
1378
                                      int y_step_q4, int w, int h,
1379
8.49k
                                      int round1_bits) {
1380
8.49k
  const int bd = 8;
1381
8.49k
  src -= src_stride * (SUBPEL_TAPS / 2 - 1);
1382
1383
330k
  for (int x = 0; x < w; ++x) {
1384
321k
    int y_q4 = y0_q4;
1385
11.4M
    for (int y = 0; y < h; ++y) {
1386
11.1M
      const uint16_t *src_y = &src[(y_q4 >> SUBPEL_BITS) * src_stride];
1387
11.1M
      const int16_t *const y_filter = y_filters[y_q4 & SUBPEL_MASK];
1388
11.1M
      const int rounding =
1389
11.1M
          ((int)src_y[(SUBPEL_TAPS / 2 - 1) * src_stride] << FILTER_BITS) -
1390
11.1M
          (1 << (bd + round1_bits - 1));
1391
11.1M
      const int sum =
1392
11.1M
          highbd_vert_scalar_product(src_y, src_stride, y_filter) + rounding;
1393
11.1M
      dst[y * dst_stride] = clip_pixel(ROUND_POWER_OF_TWO(sum, round1_bits));
1394
11.1M
      y_q4 += y_step_q4;
1395
11.1M
    }
1396
321k
    ++src;
1397
321k
    ++dst;
1398
321k
  }
1399
8.49k
}
1400
1401
void av1_wiener_convolve_add_src_c(const uint8_t *src, ptrdiff_t src_stride,
1402
                                   uint8_t *dst, ptrdiff_t dst_stride,
1403
                                   const int16_t *filter_x, int x_step_q4,
1404
                                   const int16_t *filter_y, int y_step_q4,
1405
                                   int w, int h,
1406
8.50k
                                   const WienerConvolveParams *conv_params) {
1407
8.50k
  const InterpKernel *const filters_x = get_filter_base(filter_x);
1408
8.50k
  const int x0_q4 = get_filter_offset(filter_x, filters_x);
1409
1410
8.50k
  const InterpKernel *const filters_y = get_filter_base(filter_y);
1411
8.50k
  const int y0_q4 = get_filter_offset(filter_y, filters_y);
1412
1413
8.50k
  uint16_t temp[WIENER_MAX_EXT_SIZE * MAX_SB_SIZE];
1414
8.50k
  const int intermediate_height =
1415
8.50k
      (((h - 1) * y_step_q4 + y0_q4) >> SUBPEL_BITS) + SUBPEL_TAPS - 1;
1416
8.50k
  memset(temp + (intermediate_height * MAX_SB_SIZE), 0, MAX_SB_SIZE);
1417
1418
8.50k
  assert(w <= MAX_SB_SIZE);
1419
8.50k
  assert(h <= MAX_SB_SIZE);
1420
8.50k
  assert(y_step_q4 <= 32);
1421
8.50k
  assert(x_step_q4 <= 32);
1422
1423
8.50k
  convolve_add_src_horiz_hip(src - src_stride * (SUBPEL_TAPS / 2 - 1),
1424
8.50k
                             src_stride, temp, MAX_SB_SIZE, filters_x, x0_q4,
1425
8.50k
                             x_step_q4, w, intermediate_height,
1426
8.50k
                             conv_params->round_0);
1427
8.50k
  convolve_add_src_vert_hip(temp + MAX_SB_SIZE * (SUBPEL_TAPS / 2 - 1),
1428
8.50k
                            MAX_SB_SIZE, dst, dst_stride, filters_y, y0_q4,
1429
8.50k
                            y_step_q4, w, h, conv_params->round_1);
1430
8.50k
}
1431
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1432
1433
#if CONFIG_AV1_HIGHBITDEPTH
1434
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1435
static void highbd_convolve_add_src_horiz_hip(
1436
    const uint8_t *src8, ptrdiff_t src_stride, uint16_t *dst,
1437
    ptrdiff_t dst_stride, const InterpKernel *x_filters, int x0_q4,
1438
22.1k
    int x_step_q4, int w, int h, int round0_bits, int bd) {
1439
22.1k
  const int extraprec_clamp_limit = WIENER_CLAMP_LIMIT(round0_bits, bd);
1440
22.1k
  uint16_t *src = CONVERT_TO_SHORTPTR(src8);
1441
22.1k
  src -= SUBPEL_TAPS / 2 - 1;
1442
1.01M
  for (int y = 0; y < h; ++y) {
1443
992k
    int x_q4 = x0_q4;
1444
46.6M
    for (int x = 0; x < w; ++x) {
1445
45.6M
      const uint16_t *const src_x = &src[x_q4 >> SUBPEL_BITS];
1446
45.6M
      const int16_t *const x_filter = x_filters[x_q4 & SUBPEL_MASK];
1447
45.6M
      const int rounding = ((int)src_x[SUBPEL_TAPS / 2 - 1] << FILTER_BITS) +
1448
45.6M
                           (1 << (bd + FILTER_BITS - 1));
1449
45.6M
      const int sum = highbd_horz_scalar_product(src_x, x_filter) + rounding;
1450
45.6M
      dst[x] = (uint16_t)clamp(ROUND_POWER_OF_TWO(sum, round0_bits), 0,
1451
45.6M
                               extraprec_clamp_limit - 1);
1452
45.6M
      x_q4 += x_step_q4;
1453
45.6M
    }
1454
992k
    src += src_stride;
1455
992k
    dst += dst_stride;
1456
992k
  }
1457
22.1k
}
1458
1459
static void highbd_convolve_add_src_vert_hip(
1460
    const uint16_t *src, ptrdiff_t src_stride, uint8_t *dst8,
1461
    ptrdiff_t dst_stride, const InterpKernel *y_filters, int y0_q4,
1462
22.1k
    int y_step_q4, int w, int h, int round1_bits, int bd) {
1463
22.1k
  uint16_t *dst = CONVERT_TO_SHORTPTR(dst8);
1464
22.1k
  src -= src_stride * (SUBPEL_TAPS / 2 - 1);
1465
978k
  for (int x = 0; x < w; ++x) {
1466
956k
    int y_q4 = y0_q4;
1467
46.6M
    for (int y = 0; y < h; ++y) {
1468
45.6M
      const uint16_t *src_y = &src[(y_q4 >> SUBPEL_BITS) * src_stride];
1469
45.6M
      const int16_t *const y_filter = y_filters[y_q4 & SUBPEL_MASK];
1470
45.6M
      const int rounding =
1471
45.6M
          ((int)src_y[(SUBPEL_TAPS / 2 - 1) * src_stride] << FILTER_BITS) -
1472
45.6M
          (1 << (bd + round1_bits - 1));
1473
45.6M
      const int sum =
1474
45.6M
          highbd_vert_scalar_product(src_y, src_stride, y_filter) + rounding;
1475
45.6M
      dst[y * dst_stride] =
1476
45.6M
          clip_pixel_highbd(ROUND_POWER_OF_TWO(sum, round1_bits), bd);
1477
45.6M
      y_q4 += y_step_q4;
1478
45.6M
    }
1479
956k
    ++src;
1480
956k
    ++dst;
1481
956k
  }
1482
22.1k
}
1483
1484
void av1_highbd_wiener_convolve_add_src_c(
1485
    const uint8_t *src, ptrdiff_t src_stride, uint8_t *dst,
1486
    ptrdiff_t dst_stride, const int16_t *filter_x, int x_step_q4,
1487
    const int16_t *filter_y, int y_step_q4, int w, int h,
1488
22.1k
    const WienerConvolveParams *conv_params, int bd) {
1489
22.1k
  const InterpKernel *const filters_x = get_filter_base(filter_x);
1490
22.1k
  const int x0_q4 = get_filter_offset(filter_x, filters_x);
1491
1492
22.1k
  const InterpKernel *const filters_y = get_filter_base(filter_y);
1493
22.1k
  const int y0_q4 = get_filter_offset(filter_y, filters_y);
1494
1495
22.1k
  uint16_t temp[WIENER_MAX_EXT_SIZE * MAX_SB_SIZE];
1496
22.1k
  const int intermediate_height =
1497
22.1k
      (((h - 1) * y_step_q4 + y0_q4) >> SUBPEL_BITS) + SUBPEL_TAPS;
1498
1499
22.1k
  assert(w <= MAX_SB_SIZE);
1500
22.1k
  assert(h <= MAX_SB_SIZE);
1501
22.1k
  assert(y_step_q4 <= 32);
1502
22.1k
  assert(x_step_q4 <= 32);
1503
22.1k
  assert(bd + FILTER_BITS - conv_params->round_0 + 2 <= 16);
1504
1505
22.1k
  highbd_convolve_add_src_horiz_hip(src - src_stride * (SUBPEL_TAPS / 2 - 1),
1506
22.1k
                                    src_stride, temp, MAX_SB_SIZE, filters_x,
1507
22.1k
                                    x0_q4, x_step_q4, w, intermediate_height,
1508
22.1k
                                    conv_params->round_0, bd);
1509
22.1k
  highbd_convolve_add_src_vert_hip(
1510
22.1k
      temp + MAX_SB_SIZE * (SUBPEL_TAPS / 2 - 1), MAX_SB_SIZE, dst, dst_stride,
1511
22.1k
      filters_y, y0_q4, y_step_q4, w, h, conv_params->round_1, bd);
1512
22.1k
}
1513
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1514
#endif  // CONFIG_AV1_HIGHBITDEPTH