Coverage Report

Created: 2026-09-07 06:44

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/aom/aom_dsp/x86/intrapred_ssse3.c
Line
Count
Source
1
/*
2
 * Copyright (c) 2017, 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 <tmmintrin.h>
13
14
#include "config/aom_dsp_rtcd.h"
15
16
#include "aom_dsp/intrapred_common.h"
17
18
// -----------------------------------------------------------------------------
19
// PAETH_PRED
20
21
// Return 8 16-bit pixels in one row
22
static inline __m128i paeth_8x1_pred(const __m128i *left, const __m128i *top,
23
10.2M
                                     const __m128i *topleft) {
24
10.2M
  const __m128i base = _mm_sub_epi16(_mm_add_epi16(*top, *left), *topleft);
25
26
10.2M
  __m128i pl = _mm_abs_epi16(_mm_sub_epi16(base, *left));
27
10.2M
  __m128i pt = _mm_abs_epi16(_mm_sub_epi16(base, *top));
28
10.2M
  __m128i ptl = _mm_abs_epi16(_mm_sub_epi16(base, *topleft));
29
30
10.2M
  __m128i mask1 = _mm_cmpgt_epi16(pl, pt);
31
10.2M
  mask1 = _mm_or_si128(mask1, _mm_cmpgt_epi16(pl, ptl));
32
10.2M
  __m128i mask2 = _mm_cmpgt_epi16(pt, ptl);
33
34
10.2M
  pl = _mm_andnot_si128(mask1, *left);
35
36
10.2M
  ptl = _mm_and_si128(mask2, *topleft);
37
10.2M
  pt = _mm_andnot_si128(mask2, *top);
38
10.2M
  pt = _mm_or_si128(pt, ptl);
39
10.2M
  pt = _mm_and_si128(mask1, pt);
40
41
10.2M
  return _mm_or_si128(pl, pt);
42
10.2M
}
43
44
void aom_paeth_predictor_4x4_ssse3(uint8_t *dst, ptrdiff_t stride,
45
112k
                                   const uint8_t *above, const uint8_t *left) {
46
112k
  __m128i l = _mm_loadl_epi64((const __m128i *)left);
47
112k
  const __m128i t = _mm_loadl_epi64((const __m128i *)above);
48
112k
  const __m128i zero = _mm_setzero_si128();
49
112k
  const __m128i t16 = _mm_unpacklo_epi8(t, zero);
50
112k
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
51
112k
  __m128i rep = _mm_set1_epi16((short)0x8000);
52
112k
  const __m128i one = _mm_set1_epi16(1);
53
54
112k
  int i;
55
560k
  for (i = 0; i < 4; ++i) {
56
448k
    const __m128i l16 = _mm_shuffle_epi8(l, rep);
57
448k
    const __m128i row = paeth_8x1_pred(&l16, &t16, &tl16);
58
59
448k
    *(int *)dst = _mm_cvtsi128_si32(_mm_packus_epi16(row, row));
60
448k
    dst += stride;
61
448k
    rep = _mm_add_epi16(rep, one);
62
448k
  }
63
112k
}
64
65
void aom_paeth_predictor_4x8_ssse3(uint8_t *dst, ptrdiff_t stride,
66
46.8k
                                   const uint8_t *above, const uint8_t *left) {
67
46.8k
  __m128i l = _mm_loadl_epi64((const __m128i *)left);
68
46.8k
  const __m128i t = _mm_loadl_epi64((const __m128i *)above);
69
46.8k
  const __m128i zero = _mm_setzero_si128();
70
46.8k
  const __m128i t16 = _mm_unpacklo_epi8(t, zero);
71
46.8k
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
72
46.8k
  __m128i rep = _mm_set1_epi16((short)0x8000);
73
46.8k
  const __m128i one = _mm_set1_epi16(1);
74
75
46.8k
  int i;
76
421k
  for (i = 0; i < 8; ++i) {
77
374k
    const __m128i l16 = _mm_shuffle_epi8(l, rep);
78
374k
    const __m128i row = paeth_8x1_pred(&l16, &t16, &tl16);
79
80
374k
    *(int *)dst = _mm_cvtsi128_si32(_mm_packus_epi16(row, row));
81
374k
    dst += stride;
82
374k
    rep = _mm_add_epi16(rep, one);
83
374k
  }
84
46.8k
}
85
86
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
87
void aom_paeth_predictor_4x16_ssse3(uint8_t *dst, ptrdiff_t stride,
88
295k
                                    const uint8_t *above, const uint8_t *left) {
89
295k
  __m128i l = _mm_load_si128((const __m128i *)left);
90
295k
  const __m128i t = _mm_cvtsi32_si128(((const int *)above)[0]);
91
295k
  const __m128i zero = _mm_setzero_si128();
92
295k
  const __m128i t16 = _mm_unpacklo_epi8(t, zero);
93
295k
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
94
295k
  __m128i rep = _mm_set1_epi16((short)0x8000);
95
295k
  const __m128i one = _mm_set1_epi16(1);
96
97
5.02M
  for (int i = 0; i < 16; ++i) {
98
4.72M
    const __m128i l16 = _mm_shuffle_epi8(l, rep);
99
4.72M
    const __m128i row = paeth_8x1_pred(&l16, &t16, &tl16);
100
101
4.72M
    *(int *)dst = _mm_cvtsi128_si32(_mm_packus_epi16(row, row));
102
4.72M
    dst += stride;
103
4.72M
    rep = _mm_add_epi16(rep, one);
104
4.72M
  }
105
295k
}
106
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
107
108
void aom_paeth_predictor_8x4_ssse3(uint8_t *dst, ptrdiff_t stride,
109
69.1k
                                   const uint8_t *above, const uint8_t *left) {
110
69.1k
  __m128i l = _mm_loadl_epi64((const __m128i *)left);
111
69.1k
  const __m128i t = _mm_loadl_epi64((const __m128i *)above);
112
69.1k
  const __m128i zero = _mm_setzero_si128();
113
69.1k
  const __m128i t16 = _mm_unpacklo_epi8(t, zero);
114
69.1k
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
115
69.1k
  __m128i rep = _mm_set1_epi16((short)0x8000);
116
69.1k
  const __m128i one = _mm_set1_epi16(1);
117
118
69.1k
  int i;
119
345k
  for (i = 0; i < 4; ++i) {
120
276k
    const __m128i l16 = _mm_shuffle_epi8(l, rep);
121
276k
    const __m128i row = paeth_8x1_pred(&l16, &t16, &tl16);
122
123
276k
    _mm_storel_epi64((__m128i *)dst, _mm_packus_epi16(row, row));
124
276k
    dst += stride;
125
276k
    rep = _mm_add_epi16(rep, one);
126
276k
  }
127
69.1k
}
128
129
void aom_paeth_predictor_8x8_ssse3(uint8_t *dst, ptrdiff_t stride,
130
145k
                                   const uint8_t *above, const uint8_t *left) {
131
145k
  __m128i l = _mm_loadl_epi64((const __m128i *)left);
132
145k
  const __m128i t = _mm_loadl_epi64((const __m128i *)above);
133
145k
  const __m128i zero = _mm_setzero_si128();
134
145k
  const __m128i t16 = _mm_unpacklo_epi8(t, zero);
135
145k
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
136
145k
  __m128i rep = _mm_set1_epi16((short)0x8000);
137
145k
  const __m128i one = _mm_set1_epi16(1);
138
139
145k
  int i;
140
1.30M
  for (i = 0; i < 8; ++i) {
141
1.16M
    const __m128i l16 = _mm_shuffle_epi8(l, rep);
142
1.16M
    const __m128i row = paeth_8x1_pred(&l16, &t16, &tl16);
143
144
1.16M
    _mm_storel_epi64((__m128i *)dst, _mm_packus_epi16(row, row));
145
1.16M
    dst += stride;
146
1.16M
    rep = _mm_add_epi16(rep, one);
147
1.16M
  }
148
145k
}
149
150
void aom_paeth_predictor_8x16_ssse3(uint8_t *dst, ptrdiff_t stride,
151
45.9k
                                    const uint8_t *above, const uint8_t *left) {
152
45.9k
  __m128i l = _mm_load_si128((const __m128i *)left);
153
45.9k
  const __m128i t = _mm_loadl_epi64((const __m128i *)above);
154
45.9k
  const __m128i zero = _mm_setzero_si128();
155
45.9k
  const __m128i t16 = _mm_unpacklo_epi8(t, zero);
156
45.9k
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
157
45.9k
  __m128i rep = _mm_set1_epi16((short)0x8000);
158
45.9k
  const __m128i one = _mm_set1_epi16(1);
159
160
45.9k
  int i;
161
780k
  for (i = 0; i < 16; ++i) {
162
734k
    const __m128i l16 = _mm_shuffle_epi8(l, rep);
163
734k
    const __m128i row = paeth_8x1_pred(&l16, &t16, &tl16);
164
165
734k
    _mm_storel_epi64((__m128i *)dst, _mm_packus_epi16(row, row));
166
734k
    dst += stride;
167
734k
    rep = _mm_add_epi16(rep, one);
168
734k
  }
169
45.9k
}
170
171
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
172
void aom_paeth_predictor_8x32_ssse3(uint8_t *dst, ptrdiff_t stride,
173
30.5k
                                    const uint8_t *above, const uint8_t *left) {
174
30.5k
  const __m128i t = _mm_loadl_epi64((const __m128i *)above);
175
30.5k
  const __m128i zero = _mm_setzero_si128();
176
30.5k
  const __m128i t16 = _mm_unpacklo_epi8(t, zero);
177
30.5k
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
178
30.5k
  const __m128i one = _mm_set1_epi16(1);
179
180
91.5k
  for (int j = 0; j < 2; ++j) {
181
61.0k
    const __m128i l = _mm_load_si128((const __m128i *)(left + j * 16));
182
61.0k
    __m128i rep = _mm_set1_epi16((short)0x8000);
183
1.03M
    for (int i = 0; i < 16; ++i) {
184
976k
      const __m128i l16 = _mm_shuffle_epi8(l, rep);
185
976k
      const __m128i row = paeth_8x1_pred(&l16, &t16, &tl16);
186
187
976k
      _mm_storel_epi64((__m128i *)dst, _mm_packus_epi16(row, row));
188
976k
      dst += stride;
189
976k
      rep = _mm_add_epi16(rep, one);
190
976k
    }
191
61.0k
  }
192
30.5k
}
193
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
194
195
// Return 16 8-bit pixels in one row
196
static inline __m128i paeth_16x1_pred(const __m128i *left, const __m128i *top0,
197
                                      const __m128i *top1,
198
778k
                                      const __m128i *topleft) {
199
778k
  const __m128i p0 = paeth_8x1_pred(left, top0, topleft);
200
778k
  const __m128i p1 = paeth_8x1_pred(left, top1, topleft);
201
778k
  return _mm_packus_epi16(p0, p1);
202
778k
}
203
204
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
205
void aom_paeth_predictor_16x4_ssse3(uint8_t *dst, ptrdiff_t stride,
206
66.6k
                                    const uint8_t *above, const uint8_t *left) {
207
66.6k
  __m128i l = _mm_cvtsi32_si128(((const int *)left)[0]);
208
66.6k
  const __m128i t = _mm_load_si128((const __m128i *)above);
209
66.6k
  const __m128i zero = _mm_setzero_si128();
210
66.6k
  const __m128i top0 = _mm_unpacklo_epi8(t, zero);
211
66.6k
  const __m128i top1 = _mm_unpackhi_epi8(t, zero);
212
66.6k
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
213
66.6k
  __m128i rep = _mm_set1_epi16((short)0x8000);
214
66.6k
  const __m128i one = _mm_set1_epi16(1);
215
216
333k
  for (int i = 0; i < 4; ++i) {
217
266k
    const __m128i l16 = _mm_shuffle_epi8(l, rep);
218
266k
    const __m128i row = paeth_16x1_pred(&l16, &top0, &top1, &tl16);
219
220
266k
    _mm_store_si128((__m128i *)dst, row);
221
266k
    dst += stride;
222
266k
    rep = _mm_add_epi16(rep, one);
223
266k
  }
224
66.6k
}
225
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
226
227
void aom_paeth_predictor_16x8_ssse3(uint8_t *dst, ptrdiff_t stride,
228
0
                                    const uint8_t *above, const uint8_t *left) {
229
0
  __m128i l = _mm_loadl_epi64((const __m128i *)left);
230
0
  const __m128i t = _mm_load_si128((const __m128i *)above);
231
0
  const __m128i zero = _mm_setzero_si128();
232
0
  const __m128i top0 = _mm_unpacklo_epi8(t, zero);
233
0
  const __m128i top1 = _mm_unpackhi_epi8(t, zero);
234
0
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
235
0
  __m128i rep = _mm_set1_epi16((short)0x8000);
236
0
  const __m128i one = _mm_set1_epi16(1);
237
238
0
  int i;
239
0
  for (i = 0; i < 8; ++i) {
240
0
    const __m128i l16 = _mm_shuffle_epi8(l, rep);
241
0
    const __m128i row = paeth_16x1_pred(&l16, &top0, &top1, &tl16);
242
243
0
    _mm_store_si128((__m128i *)dst, row);
244
0
    dst += stride;
245
0
    rep = _mm_add_epi16(rep, one);
246
0
  }
247
0
}
248
249
void aom_paeth_predictor_16x16_ssse3(uint8_t *dst, ptrdiff_t stride,
250
                                     const uint8_t *above,
251
0
                                     const uint8_t *left) {
252
0
  __m128i l = _mm_load_si128((const __m128i *)left);
253
0
  const __m128i t = _mm_load_si128((const __m128i *)above);
254
0
  const __m128i zero = _mm_setzero_si128();
255
0
  const __m128i top0 = _mm_unpacklo_epi8(t, zero);
256
0
  const __m128i top1 = _mm_unpackhi_epi8(t, zero);
257
0
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
258
0
  __m128i rep = _mm_set1_epi16((short)0x8000);
259
0
  const __m128i one = _mm_set1_epi16(1);
260
261
0
  int i;
262
0
  for (i = 0; i < 16; ++i) {
263
0
    const __m128i l16 = _mm_shuffle_epi8(l, rep);
264
0
    const __m128i row = paeth_16x1_pred(&l16, &top0, &top1, &tl16);
265
266
0
    _mm_store_si128((__m128i *)dst, row);
267
0
    dst += stride;
268
0
    rep = _mm_add_epi16(rep, one);
269
0
  }
270
0
}
271
272
void aom_paeth_predictor_16x32_ssse3(uint8_t *dst, ptrdiff_t stride,
273
                                     const uint8_t *above,
274
0
                                     const uint8_t *left) {
275
0
  __m128i l = _mm_load_si128((const __m128i *)left);
276
0
  const __m128i t = _mm_load_si128((const __m128i *)above);
277
0
  const __m128i zero = _mm_setzero_si128();
278
0
  const __m128i top0 = _mm_unpacklo_epi8(t, zero);
279
0
  const __m128i top1 = _mm_unpackhi_epi8(t, zero);
280
0
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
281
0
  __m128i rep = _mm_set1_epi16((short)0x8000);
282
0
  const __m128i one = _mm_set1_epi16(1);
283
0
  __m128i l16;
284
285
0
  int i;
286
0
  for (i = 0; i < 16; ++i) {
287
0
    l16 = _mm_shuffle_epi8(l, rep);
288
0
    const __m128i row = paeth_16x1_pred(&l16, &top0, &top1, &tl16);
289
290
0
    _mm_store_si128((__m128i *)dst, row);
291
0
    dst += stride;
292
0
    rep = _mm_add_epi16(rep, one);
293
0
  }
294
295
0
  l = _mm_load_si128((const __m128i *)(left + 16));
296
0
  rep = _mm_set1_epi16((short)0x8000);
297
0
  for (i = 0; i < 16; ++i) {
298
0
    l16 = _mm_shuffle_epi8(l, rep);
299
0
    const __m128i row = paeth_16x1_pred(&l16, &top0, &top1, &tl16);
300
301
0
    _mm_store_si128((__m128i *)dst, row);
302
0
    dst += stride;
303
0
    rep = _mm_add_epi16(rep, one);
304
0
  }
305
0
}
306
307
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
308
void aom_paeth_predictor_16x64_ssse3(uint8_t *dst, ptrdiff_t stride,
309
                                     const uint8_t *above,
310
0
                                     const uint8_t *left) {
311
0
  const __m128i t = _mm_load_si128((const __m128i *)above);
312
0
  const __m128i zero = _mm_setzero_si128();
313
0
  const __m128i top0 = _mm_unpacklo_epi8(t, zero);
314
0
  const __m128i top1 = _mm_unpackhi_epi8(t, zero);
315
0
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
316
0
  const __m128i one = _mm_set1_epi16(1);
317
318
0
  for (int j = 0; j < 4; ++j) {
319
0
    const __m128i l = _mm_load_si128((const __m128i *)(left + j * 16));
320
0
    __m128i rep = _mm_set1_epi16((short)0x8000);
321
0
    for (int i = 0; i < 16; ++i) {
322
0
      const __m128i l16 = _mm_shuffle_epi8(l, rep);
323
0
      const __m128i row = paeth_16x1_pred(&l16, &top0, &top1, &tl16);
324
0
      _mm_store_si128((__m128i *)dst, row);
325
0
      dst += stride;
326
0
      rep = _mm_add_epi16(rep, one);
327
0
    }
328
0
  }
329
0
}
330
331
void aom_paeth_predictor_32x8_ssse3(uint8_t *dst, ptrdiff_t stride,
332
32.0k
                                    const uint8_t *above, const uint8_t *left) {
333
32.0k
  const __m128i a = _mm_load_si128((const __m128i *)above);
334
32.0k
  const __m128i b = _mm_load_si128((const __m128i *)(above + 16));
335
32.0k
  const __m128i zero = _mm_setzero_si128();
336
32.0k
  const __m128i al = _mm_unpacklo_epi8(a, zero);
337
32.0k
  const __m128i ah = _mm_unpackhi_epi8(a, zero);
338
32.0k
  const __m128i bl = _mm_unpacklo_epi8(b, zero);
339
32.0k
  const __m128i bh = _mm_unpackhi_epi8(b, zero);
340
341
32.0k
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
342
32.0k
  __m128i rep = _mm_set1_epi16((short)0x8000);
343
32.0k
  const __m128i one = _mm_set1_epi16(1);
344
32.0k
  const __m128i l = _mm_loadl_epi64((const __m128i *)left);
345
32.0k
  __m128i l16;
346
347
288k
  for (int i = 0; i < 8; ++i) {
348
256k
    l16 = _mm_shuffle_epi8(l, rep);
349
256k
    const __m128i r32l = paeth_16x1_pred(&l16, &al, &ah, &tl16);
350
256k
    const __m128i r32h = paeth_16x1_pred(&l16, &bl, &bh, &tl16);
351
352
256k
    _mm_store_si128((__m128i *)dst, r32l);
353
256k
    _mm_store_si128((__m128i *)(dst + 16), r32h);
354
256k
    dst += stride;
355
256k
    rep = _mm_add_epi16(rep, one);
356
256k
  }
357
32.0k
}
358
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
359
360
void aom_paeth_predictor_32x16_ssse3(uint8_t *dst, ptrdiff_t stride,
361
                                     const uint8_t *above,
362
0
                                     const uint8_t *left) {
363
0
  const __m128i a = _mm_load_si128((const __m128i *)above);
364
0
  const __m128i b = _mm_load_si128((const __m128i *)(above + 16));
365
0
  const __m128i zero = _mm_setzero_si128();
366
0
  const __m128i al = _mm_unpacklo_epi8(a, zero);
367
0
  const __m128i ah = _mm_unpackhi_epi8(a, zero);
368
0
  const __m128i bl = _mm_unpacklo_epi8(b, zero);
369
0
  const __m128i bh = _mm_unpackhi_epi8(b, zero);
370
371
0
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
372
0
  __m128i rep = _mm_set1_epi16((short)0x8000);
373
0
  const __m128i one = _mm_set1_epi16(1);
374
0
  __m128i l = _mm_load_si128((const __m128i *)left);
375
0
  __m128i l16;
376
377
0
  int i;
378
0
  for (i = 0; i < 16; ++i) {
379
0
    l16 = _mm_shuffle_epi8(l, rep);
380
0
    const __m128i r32l = paeth_16x1_pred(&l16, &al, &ah, &tl16);
381
0
    const __m128i r32h = paeth_16x1_pred(&l16, &bl, &bh, &tl16);
382
383
0
    _mm_store_si128((__m128i *)dst, r32l);
384
0
    _mm_store_si128((__m128i *)(dst + 16), r32h);
385
0
    dst += stride;
386
0
    rep = _mm_add_epi16(rep, one);
387
0
  }
388
0
}
389
390
void aom_paeth_predictor_32x32_ssse3(uint8_t *dst, ptrdiff_t stride,
391
                                     const uint8_t *above,
392
0
                                     const uint8_t *left) {
393
0
  const __m128i a = _mm_load_si128((const __m128i *)above);
394
0
  const __m128i b = _mm_load_si128((const __m128i *)(above + 16));
395
0
  const __m128i zero = _mm_setzero_si128();
396
0
  const __m128i al = _mm_unpacklo_epi8(a, zero);
397
0
  const __m128i ah = _mm_unpackhi_epi8(a, zero);
398
0
  const __m128i bl = _mm_unpacklo_epi8(b, zero);
399
0
  const __m128i bh = _mm_unpackhi_epi8(b, zero);
400
401
0
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
402
0
  __m128i rep = _mm_set1_epi16((short)0x8000);
403
0
  const __m128i one = _mm_set1_epi16(1);
404
0
  __m128i l = _mm_load_si128((const __m128i *)left);
405
0
  __m128i l16;
406
407
0
  int i;
408
0
  for (i = 0; i < 16; ++i) {
409
0
    l16 = _mm_shuffle_epi8(l, rep);
410
0
    const __m128i r32l = paeth_16x1_pred(&l16, &al, &ah, &tl16);
411
0
    const __m128i r32h = paeth_16x1_pred(&l16, &bl, &bh, &tl16);
412
413
0
    _mm_store_si128((__m128i *)dst, r32l);
414
0
    _mm_store_si128((__m128i *)(dst + 16), r32h);
415
0
    dst += stride;
416
0
    rep = _mm_add_epi16(rep, one);
417
0
  }
418
419
0
  rep = _mm_set1_epi16((short)0x8000);
420
0
  l = _mm_load_si128((const __m128i *)(left + 16));
421
0
  for (i = 0; i < 16; ++i) {
422
0
    l16 = _mm_shuffle_epi8(l, rep);
423
0
    const __m128i r32l = paeth_16x1_pred(&l16, &al, &ah, &tl16);
424
0
    const __m128i r32h = paeth_16x1_pred(&l16, &bl, &bh, &tl16);
425
426
0
    _mm_store_si128((__m128i *)dst, r32l);
427
0
    _mm_store_si128((__m128i *)(dst + 16), r32h);
428
0
    dst += stride;
429
0
    rep = _mm_add_epi16(rep, one);
430
0
  }
431
0
}
432
433
void aom_paeth_predictor_32x64_ssse3(uint8_t *dst, ptrdiff_t stride,
434
                                     const uint8_t *above,
435
0
                                     const uint8_t *left) {
436
0
  const __m128i a = _mm_load_si128((const __m128i *)above);
437
0
  const __m128i b = _mm_load_si128((const __m128i *)(above + 16));
438
0
  const __m128i zero = _mm_setzero_si128();
439
0
  const __m128i al = _mm_unpacklo_epi8(a, zero);
440
0
  const __m128i ah = _mm_unpackhi_epi8(a, zero);
441
0
  const __m128i bl = _mm_unpacklo_epi8(b, zero);
442
0
  const __m128i bh = _mm_unpackhi_epi8(b, zero);
443
444
0
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
445
0
  const __m128i one = _mm_set1_epi16(1);
446
0
  __m128i l16;
447
448
0
  int i, j;
449
0
  for (j = 0; j < 4; ++j) {
450
0
    const __m128i l = _mm_load_si128((const __m128i *)(left + j * 16));
451
0
    __m128i rep = _mm_set1_epi16((short)0x8000);
452
0
    for (i = 0; i < 16; ++i) {
453
0
      l16 = _mm_shuffle_epi8(l, rep);
454
0
      const __m128i r32l = paeth_16x1_pred(&l16, &al, &ah, &tl16);
455
0
      const __m128i r32h = paeth_16x1_pred(&l16, &bl, &bh, &tl16);
456
457
0
      _mm_store_si128((__m128i *)dst, r32l);
458
0
      _mm_store_si128((__m128i *)(dst + 16), r32h);
459
0
      dst += stride;
460
0
      rep = _mm_add_epi16(rep, one);
461
0
    }
462
0
  }
463
0
}
464
465
void aom_paeth_predictor_64x32_ssse3(uint8_t *dst, ptrdiff_t stride,
466
                                     const uint8_t *above,
467
0
                                     const uint8_t *left) {
468
0
  const __m128i a = _mm_load_si128((const __m128i *)above);
469
0
  const __m128i b = _mm_load_si128((const __m128i *)(above + 16));
470
0
  const __m128i c = _mm_load_si128((const __m128i *)(above + 32));
471
0
  const __m128i d = _mm_load_si128((const __m128i *)(above + 48));
472
0
  const __m128i zero = _mm_setzero_si128();
473
0
  const __m128i al = _mm_unpacklo_epi8(a, zero);
474
0
  const __m128i ah = _mm_unpackhi_epi8(a, zero);
475
0
  const __m128i bl = _mm_unpacklo_epi8(b, zero);
476
0
  const __m128i bh = _mm_unpackhi_epi8(b, zero);
477
0
  const __m128i cl = _mm_unpacklo_epi8(c, zero);
478
0
  const __m128i ch = _mm_unpackhi_epi8(c, zero);
479
0
  const __m128i dl = _mm_unpacklo_epi8(d, zero);
480
0
  const __m128i dh = _mm_unpackhi_epi8(d, zero);
481
482
0
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
483
0
  const __m128i one = _mm_set1_epi16(1);
484
0
  __m128i l16;
485
486
0
  int i, j;
487
0
  for (j = 0; j < 2; ++j) {
488
0
    const __m128i l = _mm_load_si128((const __m128i *)(left + j * 16));
489
0
    __m128i rep = _mm_set1_epi16((short)0x8000);
490
0
    for (i = 0; i < 16; ++i) {
491
0
      l16 = _mm_shuffle_epi8(l, rep);
492
0
      const __m128i r0 = paeth_16x1_pred(&l16, &al, &ah, &tl16);
493
0
      const __m128i r1 = paeth_16x1_pred(&l16, &bl, &bh, &tl16);
494
0
      const __m128i r2 = paeth_16x1_pred(&l16, &cl, &ch, &tl16);
495
0
      const __m128i r3 = paeth_16x1_pred(&l16, &dl, &dh, &tl16);
496
497
0
      _mm_store_si128((__m128i *)dst, r0);
498
0
      _mm_store_si128((__m128i *)(dst + 16), r1);
499
0
      _mm_store_si128((__m128i *)(dst + 32), r2);
500
0
      _mm_store_si128((__m128i *)(dst + 48), r3);
501
0
      dst += stride;
502
0
      rep = _mm_add_epi16(rep, one);
503
0
    }
504
0
  }
505
0
}
506
507
void aom_paeth_predictor_64x64_ssse3(uint8_t *dst, ptrdiff_t stride,
508
                                     const uint8_t *above,
509
0
                                     const uint8_t *left) {
510
0
  const __m128i a = _mm_load_si128((const __m128i *)above);
511
0
  const __m128i b = _mm_load_si128((const __m128i *)(above + 16));
512
0
  const __m128i c = _mm_load_si128((const __m128i *)(above + 32));
513
0
  const __m128i d = _mm_load_si128((const __m128i *)(above + 48));
514
0
  const __m128i zero = _mm_setzero_si128();
515
0
  const __m128i al = _mm_unpacklo_epi8(a, zero);
516
0
  const __m128i ah = _mm_unpackhi_epi8(a, zero);
517
0
  const __m128i bl = _mm_unpacklo_epi8(b, zero);
518
0
  const __m128i bh = _mm_unpackhi_epi8(b, zero);
519
0
  const __m128i cl = _mm_unpacklo_epi8(c, zero);
520
0
  const __m128i ch = _mm_unpackhi_epi8(c, zero);
521
0
  const __m128i dl = _mm_unpacklo_epi8(d, zero);
522
0
  const __m128i dh = _mm_unpackhi_epi8(d, zero);
523
524
0
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
525
0
  const __m128i one = _mm_set1_epi16(1);
526
0
  __m128i l16;
527
528
0
  int i, j;
529
0
  for (j = 0; j < 4; ++j) {
530
0
    const __m128i l = _mm_load_si128((const __m128i *)(left + j * 16));
531
0
    __m128i rep = _mm_set1_epi16((short)0x8000);
532
0
    for (i = 0; i < 16; ++i) {
533
0
      l16 = _mm_shuffle_epi8(l, rep);
534
0
      const __m128i r0 = paeth_16x1_pred(&l16, &al, &ah, &tl16);
535
0
      const __m128i r1 = paeth_16x1_pred(&l16, &bl, &bh, &tl16);
536
0
      const __m128i r2 = paeth_16x1_pred(&l16, &cl, &ch, &tl16);
537
0
      const __m128i r3 = paeth_16x1_pred(&l16, &dl, &dh, &tl16);
538
539
0
      _mm_store_si128((__m128i *)dst, r0);
540
0
      _mm_store_si128((__m128i *)(dst + 16), r1);
541
0
      _mm_store_si128((__m128i *)(dst + 32), r2);
542
0
      _mm_store_si128((__m128i *)(dst + 48), r3);
543
0
      dst += stride;
544
0
      rep = _mm_add_epi16(rep, one);
545
0
    }
546
0
  }
547
0
}
548
549
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
550
void aom_paeth_predictor_64x16_ssse3(uint8_t *dst, ptrdiff_t stride,
551
                                     const uint8_t *above,
552
0
                                     const uint8_t *left) {
553
0
  const __m128i a = _mm_load_si128((const __m128i *)above);
554
0
  const __m128i b = _mm_load_si128((const __m128i *)(above + 16));
555
0
  const __m128i c = _mm_load_si128((const __m128i *)(above + 32));
556
0
  const __m128i d = _mm_load_si128((const __m128i *)(above + 48));
557
0
  const __m128i zero = _mm_setzero_si128();
558
0
  const __m128i al = _mm_unpacklo_epi8(a, zero);
559
0
  const __m128i ah = _mm_unpackhi_epi8(a, zero);
560
0
  const __m128i bl = _mm_unpacklo_epi8(b, zero);
561
0
  const __m128i bh = _mm_unpackhi_epi8(b, zero);
562
0
  const __m128i cl = _mm_unpacklo_epi8(c, zero);
563
0
  const __m128i ch = _mm_unpackhi_epi8(c, zero);
564
0
  const __m128i dl = _mm_unpacklo_epi8(d, zero);
565
0
  const __m128i dh = _mm_unpackhi_epi8(d, zero);
566
567
0
  const __m128i tl16 = _mm_set1_epi16((int16_t)above[-1]);
568
0
  const __m128i one = _mm_set1_epi16(1);
569
0
  __m128i l16;
570
571
0
  int i;
572
0
  const __m128i l = _mm_load_si128((const __m128i *)left);
573
0
  __m128i rep = _mm_set1_epi16((short)0x8000);
574
0
  for (i = 0; i < 16; ++i) {
575
0
    l16 = _mm_shuffle_epi8(l, rep);
576
0
    const __m128i r0 = paeth_16x1_pred(&l16, &al, &ah, &tl16);
577
0
    const __m128i r1 = paeth_16x1_pred(&l16, &bl, &bh, &tl16);
578
0
    const __m128i r2 = paeth_16x1_pred(&l16, &cl, &ch, &tl16);
579
0
    const __m128i r3 = paeth_16x1_pred(&l16, &dl, &dh, &tl16);
580
581
0
    _mm_store_si128((__m128i *)dst, r0);
582
0
    _mm_store_si128((__m128i *)(dst + 16), r1);
583
0
    _mm_store_si128((__m128i *)(dst + 32), r2);
584
0
    _mm_store_si128((__m128i *)(dst + 48), r3);
585
0
    dst += stride;
586
0
    rep = _mm_add_epi16(rep, one);
587
0
  }
588
0
}
589
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
590
591
// -----------------------------------------------------------------------------
592
// SMOOTH_PRED
593
594
// pixels[0]: above and below_pred interleave vector
595
// pixels[1]: left vector
596
// pixels[2]: right_pred vector
597
static inline void load_pixel_w4(const uint8_t *above, const uint8_t *left,
598
151k
                                 int height, __m128i *pixels) {
599
151k
  __m128i d = _mm_cvtsi32_si128(((const int *)above)[0]);
600
151k
  if (height == 4)
601
84.9k
    pixels[1] = _mm_cvtsi32_si128(((const int *)left)[0]);
602
66.4k
  else if (height == 8)
603
40.3k
    pixels[1] = _mm_loadl_epi64(((const __m128i *)left));
604
26.1k
  else
605
26.1k
    pixels[1] = _mm_loadu_si128(((const __m128i *)left));
606
607
151k
  pixels[2] = _mm_set1_epi16((int16_t)above[3]);
608
609
151k
  const __m128i bp = _mm_set1_epi16((int16_t)left[height - 1]);
610
151k
  const __m128i zero = _mm_setzero_si128();
611
151k
  d = _mm_unpacklo_epi8(d, zero);
612
151k
  pixels[0] = _mm_unpacklo_epi16(d, bp);
613
151k
}
614
615
// weight_h[0]: weight_h vector
616
// weight_h[1]: scale - weight_h vector
617
// weight_h[2]: same as [0], second half for height = 16 only
618
// weight_h[3]: same as [1], second half for height = 16 only
619
// weight_w[0]: weights_w and scale - weights_w interleave vector
620
static inline void load_weight_w4(int height, __m128i *weight_h,
621
151k
                                  __m128i *weight_w) {
622
151k
  const __m128i zero = _mm_setzero_si128();
623
151k
  const __m128i d = _mm_set1_epi16((int16_t)(1 << SMOOTH_WEIGHT_LOG2_SCALE));
624
151k
  const __m128i t = _mm_cvtsi32_si128(((const int *)smooth_weights)[0]);
625
151k
  weight_h[0] = _mm_unpacklo_epi8(t, zero);
626
151k
  weight_h[1] = _mm_sub_epi16(d, weight_h[0]);
627
151k
  weight_w[0] = _mm_unpacklo_epi16(weight_h[0], weight_h[1]);
628
629
151k
  if (height == 8) {
630
40.3k
    const __m128i weight = _mm_loadl_epi64((const __m128i *)&smooth_weights[4]);
631
40.3k
    weight_h[0] = _mm_unpacklo_epi8(weight, zero);
632
40.3k
    weight_h[1] = _mm_sub_epi16(d, weight_h[0]);
633
111k
  } else if (height == 16) {
634
26.1k
    const __m128i weight =
635
26.1k
        _mm_loadu_si128((const __m128i *)&smooth_weights[12]);
636
26.1k
    weight_h[0] = _mm_unpacklo_epi8(weight, zero);
637
26.1k
    weight_h[1] = _mm_sub_epi16(d, weight_h[0]);
638
26.1k
    weight_h[2] = _mm_unpackhi_epi8(weight, zero);
639
26.1k
    weight_h[3] = _mm_sub_epi16(d, weight_h[2]);
640
26.1k
  }
641
151k
}
642
643
static inline void smooth_pred_4xh(const __m128i *pixel, const __m128i *wh,
644
                                   const __m128i *ww, int h, uint8_t *dst,
645
177k
                                   ptrdiff_t stride, int second_half) {
646
177k
  const __m128i round = _mm_set1_epi32((1 << SMOOTH_WEIGHT_LOG2_SCALE));
647
177k
  const __m128i one = _mm_set1_epi16(1);
648
177k
  const __m128i inc = _mm_set1_epi16(0x202);
649
177k
  const __m128i gat = _mm_set1_epi32(0xc080400);
650
177k
  __m128i rep = second_half ? _mm_set1_epi16((short)0x8008)
651
177k
                            : _mm_set1_epi16((short)0x8000);
652
177k
  __m128i d = _mm_set1_epi16(0x100);
653
654
1.25M
  for (int i = 0; i < h; ++i) {
655
1.08M
    const __m128i wg_wg = _mm_shuffle_epi8(wh[0], d);
656
1.08M
    const __m128i sc_sc = _mm_shuffle_epi8(wh[1], d);
657
1.08M
    const __m128i wh_sc = _mm_unpacklo_epi16(wg_wg, sc_sc);
658
1.08M
    __m128i s = _mm_madd_epi16(pixel[0], wh_sc);
659
660
1.08M
    __m128i b = _mm_shuffle_epi8(pixel[1], rep);
661
1.08M
    b = _mm_unpacklo_epi16(b, pixel[2]);
662
1.08M
    __m128i sum = _mm_madd_epi16(b, ww[0]);
663
664
1.08M
    sum = _mm_add_epi32(s, sum);
665
1.08M
    sum = _mm_add_epi32(sum, round);
666
1.08M
    sum = _mm_srai_epi32(sum, 1 + SMOOTH_WEIGHT_LOG2_SCALE);
667
668
1.08M
    sum = _mm_shuffle_epi8(sum, gat);
669
1.08M
    *(int *)dst = _mm_cvtsi128_si32(sum);
670
1.08M
    dst += stride;
671
672
1.08M
    rep = _mm_add_epi16(rep, one);
673
1.08M
    d = _mm_add_epi16(d, inc);
674
1.08M
  }
675
177k
}
676
677
void aom_smooth_predictor_4x4_ssse3(uint8_t *dst, ptrdiff_t stride,
678
84.9k
                                    const uint8_t *above, const uint8_t *left) {
679
84.9k
  __m128i pixels[3];
680
84.9k
  load_pixel_w4(above, left, 4, pixels);
681
682
84.9k
  __m128i wh[4], ww[2];
683
84.9k
  load_weight_w4(4, wh, ww);
684
685
84.9k
  smooth_pred_4xh(pixels, wh, ww, 4, dst, stride, 0);
686
84.9k
}
687
688
void aom_smooth_predictor_4x8_ssse3(uint8_t *dst, ptrdiff_t stride,
689
40.3k
                                    const uint8_t *above, const uint8_t *left) {
690
40.3k
  __m128i pixels[3];
691
40.3k
  load_pixel_w4(above, left, 8, pixels);
692
693
40.3k
  __m128i wh[4], ww[2];
694
40.3k
  load_weight_w4(8, wh, ww);
695
696
40.3k
  smooth_pred_4xh(pixels, wh, ww, 8, dst, stride, 0);
697
40.3k
}
698
699
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
700
void aom_smooth_predictor_4x16_ssse3(uint8_t *dst, ptrdiff_t stride,
701
                                     const uint8_t *above,
702
26.1k
                                     const uint8_t *left) {
703
26.1k
  __m128i pixels[3];
704
26.1k
  load_pixel_w4(above, left, 16, pixels);
705
706
26.1k
  __m128i wh[4], ww[2];
707
26.1k
  load_weight_w4(16, wh, ww);
708
709
26.1k
  smooth_pred_4xh(pixels, wh, ww, 8, dst, stride, 0);
710
26.1k
  dst += stride << 3;
711
26.1k
  smooth_pred_4xh(pixels, &wh[2], ww, 8, dst, stride, 1);
712
26.1k
}
713
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
714
715
// pixels[0]: above and below_pred interleave vector, first half
716
// pixels[1]: above and below_pred interleave vector, second half
717
// pixels[2]: left vector
718
// pixels[3]: right_pred vector
719
// pixels[4]: above and below_pred interleave vector, first half
720
// pixels[5]: above and below_pred interleave vector, second half
721
// pixels[6]: left vector + 16
722
// pixels[7]: right_pred vector
723
static inline void load_pixel_w8(const uint8_t *above, const uint8_t *left,
724
231k
                                 int height, __m128i *pixels) {
725
231k
  const __m128i zero = _mm_setzero_si128();
726
231k
  const __m128i bp = _mm_set1_epi16((int16_t)left[height - 1]);
727
231k
  __m128i d = _mm_loadl_epi64((const __m128i *)above);
728
231k
  d = _mm_unpacklo_epi8(d, zero);
729
231k
  pixels[0] = _mm_unpacklo_epi16(d, bp);
730
231k
  pixels[1] = _mm_unpackhi_epi16(d, bp);
731
732
231k
  pixels[3] = _mm_set1_epi16((int16_t)above[7]);
733
734
231k
  if (height == 4) {
735
59.8k
    pixels[2] = _mm_cvtsi32_si128(((const int *)left)[0]);
736
171k
  } else if (height == 8) {
737
123k
    pixels[2] = _mm_loadl_epi64((const __m128i *)left);
738
123k
  } else if (height == 16) {
739
33.6k
    pixels[2] = _mm_load_si128((const __m128i *)left);
740
33.6k
  } else {
741
14.1k
    pixels[2] = _mm_load_si128((const __m128i *)left);
742
14.1k
    pixels[4] = pixels[0];
743
14.1k
    pixels[5] = pixels[1];
744
14.1k
    pixels[6] = _mm_load_si128((const __m128i *)(left + 16));
745
14.1k
    pixels[7] = pixels[3];
746
14.1k
  }
747
231k
}
748
749
// weight_h[0]: weight_h vector
750
// weight_h[1]: scale - weight_h vector
751
// weight_h[2]: same as [0], offset 8
752
// weight_h[3]: same as [1], offset 8
753
// weight_h[4]: same as [0], offset 16
754
// weight_h[5]: same as [1], offset 16
755
// weight_h[6]: same as [0], offset 24
756
// weight_h[7]: same as [1], offset 24
757
// weight_w[0]: weights_w and scale - weights_w interleave vector, first half
758
// weight_w[1]: weights_w and scale - weights_w interleave vector, second half
759
static inline void load_weight_w8(int height, __m128i *weight_h,
760
231k
                                  __m128i *weight_w) {
761
231k
  const __m128i zero = _mm_setzero_si128();
762
231k
  const int we_offset = height < 8 ? 0 : 4;
763
231k
  __m128i we = _mm_loadu_si128((const __m128i *)&smooth_weights[we_offset]);
764
231k
  weight_h[0] = _mm_unpacklo_epi8(we, zero);
765
231k
  const __m128i d = _mm_set1_epi16((int16_t)(1 << SMOOTH_WEIGHT_LOG2_SCALE));
766
231k
  weight_h[1] = _mm_sub_epi16(d, weight_h[0]);
767
768
231k
  if (height == 4) {
769
59.8k
    we = _mm_srli_si128(we, 4);
770
59.8k
    __m128i tmp1 = _mm_unpacklo_epi8(we, zero);
771
59.8k
    __m128i tmp2 = _mm_sub_epi16(d, tmp1);
772
59.8k
    weight_w[0] = _mm_unpacklo_epi16(tmp1, tmp2);
773
59.8k
    weight_w[1] = _mm_unpackhi_epi16(tmp1, tmp2);
774
171k
  } else {
775
171k
    weight_w[0] = _mm_unpacklo_epi16(weight_h[0], weight_h[1]);
776
171k
    weight_w[1] = _mm_unpackhi_epi16(weight_h[0], weight_h[1]);
777
171k
  }
778
779
231k
  if (height == 16) {
780
33.6k
    we = _mm_loadu_si128((const __m128i *)&smooth_weights[12]);
781
33.6k
    weight_h[0] = _mm_unpacklo_epi8(we, zero);
782
33.6k
    weight_h[1] = _mm_sub_epi16(d, weight_h[0]);
783
33.6k
    weight_h[2] = _mm_unpackhi_epi8(we, zero);
784
33.6k
    weight_h[3] = _mm_sub_epi16(d, weight_h[2]);
785
197k
  } else if (height == 32) {
786
14.1k
    const __m128i weight_lo =
787
14.1k
        _mm_loadu_si128((const __m128i *)&smooth_weights[28]);
788
14.1k
    weight_h[0] = _mm_unpacklo_epi8(weight_lo, zero);
789
14.1k
    weight_h[1] = _mm_sub_epi16(d, weight_h[0]);
790
14.1k
    weight_h[2] = _mm_unpackhi_epi8(weight_lo, zero);
791
14.1k
    weight_h[3] = _mm_sub_epi16(d, weight_h[2]);
792
14.1k
    const __m128i weight_hi =
793
14.1k
        _mm_loadu_si128((const __m128i *)&smooth_weights[28 + 16]);
794
14.1k
    weight_h[4] = _mm_unpacklo_epi8(weight_hi, zero);
795
14.1k
    weight_h[5] = _mm_sub_epi16(d, weight_h[4]);
796
14.1k
    weight_h[6] = _mm_unpackhi_epi8(weight_hi, zero);
797
14.1k
    weight_h[7] = _mm_sub_epi16(d, weight_h[6]);
798
14.1k
  }
799
231k
}
800
801
static inline void smooth_pred_8xh(const __m128i *pixels, const __m128i *wh,
802
                                   const __m128i *ww, int h, uint8_t *dst,
803
307k
                                   ptrdiff_t stride, int second_half) {
804
307k
  const __m128i round = _mm_set1_epi32((1 << SMOOTH_WEIGHT_LOG2_SCALE));
805
307k
  const __m128i one = _mm_set1_epi16(1);
806
307k
  const __m128i inc = _mm_set1_epi16(0x202);
807
307k
  const __m128i gat = _mm_set_epi32(0, 0, 0xe0c0a08, 0x6040200);
808
809
307k
  __m128i rep = second_half ? _mm_set1_epi16((short)0x8008)
810
307k
                            : _mm_set1_epi16((short)0x8000);
811
307k
  __m128i d = _mm_set1_epi16(0x100);
812
813
307k
  int i;
814
2.52M
  for (i = 0; i < h; ++i) {
815
2.22M
    const __m128i wg_wg = _mm_shuffle_epi8(wh[0], d);
816
2.22M
    const __m128i sc_sc = _mm_shuffle_epi8(wh[1], d);
817
2.22M
    const __m128i wh_sc = _mm_unpacklo_epi16(wg_wg, sc_sc);
818
2.22M
    __m128i s0 = _mm_madd_epi16(pixels[0], wh_sc);
819
2.22M
    __m128i s1 = _mm_madd_epi16(pixels[1], wh_sc);
820
821
2.22M
    __m128i b = _mm_shuffle_epi8(pixels[2], rep);
822
2.22M
    b = _mm_unpacklo_epi16(b, pixels[3]);
823
2.22M
    __m128i sum0 = _mm_madd_epi16(b, ww[0]);
824
2.22M
    __m128i sum1 = _mm_madd_epi16(b, ww[1]);
825
826
2.22M
    s0 = _mm_add_epi32(s0, sum0);
827
2.22M
    s0 = _mm_add_epi32(s0, round);
828
2.22M
    s0 = _mm_srai_epi32(s0, 1 + SMOOTH_WEIGHT_LOG2_SCALE);
829
830
2.22M
    s1 = _mm_add_epi32(s1, sum1);
831
2.22M
    s1 = _mm_add_epi32(s1, round);
832
2.22M
    s1 = _mm_srai_epi32(s1, 1 + SMOOTH_WEIGHT_LOG2_SCALE);
833
834
2.22M
    sum0 = _mm_packus_epi16(s0, s1);
835
2.22M
    sum0 = _mm_shuffle_epi8(sum0, gat);
836
2.22M
    _mm_storel_epi64((__m128i *)dst, sum0);
837
2.22M
    dst += stride;
838
839
2.22M
    rep = _mm_add_epi16(rep, one);
840
2.22M
    d = _mm_add_epi16(d, inc);
841
2.22M
  }
842
307k
}
843
844
void aom_smooth_predictor_8x4_ssse3(uint8_t *dst, ptrdiff_t stride,
845
59.8k
                                    const uint8_t *above, const uint8_t *left) {
846
59.8k
  __m128i pixels[4];
847
59.8k
  load_pixel_w8(above, left, 4, pixels);
848
849
59.8k
  __m128i wh[4], ww[2];
850
59.8k
  load_weight_w8(4, wh, ww);
851
852
59.8k
  smooth_pred_8xh(pixels, wh, ww, 4, dst, stride, 0);
853
59.8k
}
854
855
void aom_smooth_predictor_8x8_ssse3(uint8_t *dst, ptrdiff_t stride,
856
123k
                                    const uint8_t *above, const uint8_t *left) {
857
123k
  __m128i pixels[4];
858
123k
  load_pixel_w8(above, left, 8, pixels);
859
860
123k
  __m128i wh[4], ww[2];
861
123k
  load_weight_w8(8, wh, ww);
862
863
123k
  smooth_pred_8xh(pixels, wh, ww, 8, dst, stride, 0);
864
123k
}
865
866
void aom_smooth_predictor_8x16_ssse3(uint8_t *dst, ptrdiff_t stride,
867
                                     const uint8_t *above,
868
33.6k
                                     const uint8_t *left) {
869
33.6k
  __m128i pixels[4];
870
33.6k
  load_pixel_w8(above, left, 16, pixels);
871
872
33.6k
  __m128i wh[4], ww[2];
873
33.6k
  load_weight_w8(16, wh, ww);
874
875
33.6k
  smooth_pred_8xh(pixels, wh, ww, 8, dst, stride, 0);
876
33.6k
  dst += stride << 3;
877
33.6k
  smooth_pred_8xh(pixels, &wh[2], ww, 8, dst, stride, 1);
878
33.6k
}
879
880
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
881
void aom_smooth_predictor_8x32_ssse3(uint8_t *dst, ptrdiff_t stride,
882
                                     const uint8_t *above,
883
14.1k
                                     const uint8_t *left) {
884
14.1k
  __m128i pixels[8];
885
14.1k
  load_pixel_w8(above, left, 32, pixels);
886
887
14.1k
  __m128i wh[8], ww[2];
888
14.1k
  load_weight_w8(32, wh, ww);
889
890
14.1k
  smooth_pred_8xh(&pixels[0], wh, ww, 8, dst, stride, 0);
891
14.1k
  dst += stride << 3;
892
14.1k
  smooth_pred_8xh(&pixels[0], &wh[2], ww, 8, dst, stride, 1);
893
14.1k
  dst += stride << 3;
894
14.1k
  smooth_pred_8xh(&pixels[4], &wh[4], ww, 8, dst, stride, 0);
895
14.1k
  dst += stride << 3;
896
14.1k
  smooth_pred_8xh(&pixels[4], &wh[6], ww, 8, dst, stride, 1);
897
14.1k
}
898
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
899
900
// TODO(slavarnway): Visual Studio only supports restrict when /std:c11
901
// (available in 2019+) or greater is specified; __restrict can be used in that
902
// case. This should be moved to rtcd and used consistently between the
903
// function declarations and definitions to avoid warnings in Visual Studio
904
// when defining LIBAOM_RESTRICT to restrict or __restrict.
905
#if defined(_MSC_VER)
906
#define LIBAOM_RESTRICT
907
#else
908
#define LIBAOM_RESTRICT restrict
909
#endif
910
911
309k
static AOM_FORCE_INLINE __m128i Load4(const void *src) {
912
  // With new compilers such as clang 8.0.0 we can use the new _mm_loadu_si32
913
  // intrinsic. Both _mm_loadu_si32(src) and the code here are compiled into a
914
  // movss instruction.
915
  //
916
  // Until compiler support of _mm_loadu_si32 is widespread, use of
917
  // _mm_loadu_si32 is banned.
918
309k
  int val;
919
309k
  memcpy(&val, src, sizeof(val));
920
309k
  return _mm_cvtsi32_si128(val);
921
309k
}
922
923
66.1M
static AOM_FORCE_INLINE __m128i LoadLo8(const void *a) {
924
66.1M
  return _mm_loadl_epi64((const __m128i *)(a));
925
66.1M
}
926
927
655k
static AOM_FORCE_INLINE __m128i LoadUnaligned16(const void *a) {
928
655k
  return _mm_loadu_si128((const __m128i *)(a));
929
655k
}
930
931
770k
static AOM_FORCE_INLINE void Store4(void *dst, const __m128i x) {
932
770k
  const int val = _mm_cvtsi128_si32(x);
933
770k
  memcpy(dst, &val, sizeof(val));
934
770k
}
935
936
34.1M
static AOM_FORCE_INLINE void StoreLo8(void *a, const __m128i v) {
937
34.1M
  _mm_storel_epi64((__m128i *)(a), v);
938
34.1M
}
939
940
10.6M
static AOM_FORCE_INLINE void StoreUnaligned16(void *a, const __m128i v) {
941
10.6M
  _mm_storeu_si128((__m128i *)(a), v);
942
10.6M
}
943
944
67.1M
static AOM_FORCE_INLINE __m128i cvtepu8_epi16(__m128i x) {
945
67.1M
  return _mm_unpacklo_epi8((x), _mm_setzero_si128());
946
67.1M
}
947
948
172k
static AOM_FORCE_INLINE __m128i cvtepu8_epi32(__m128i x) {
949
172k
  const __m128i tmp = _mm_unpacklo_epi8((x), _mm_setzero_si128());
950
172k
  return _mm_unpacklo_epi16(tmp, _mm_setzero_si128());
951
172k
}
952
953
32.7M
static AOM_FORCE_INLINE __m128i cvtepu16_epi32(__m128i x) {
954
32.7M
  return _mm_unpacklo_epi16((x), _mm_setzero_si128());
955
32.7M
}
956
957
static void smooth_predictor_wxh(uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
958
                                 const uint8_t *LIBAOM_RESTRICT top_row,
959
                                 const uint8_t *LIBAOM_RESTRICT left_column,
960
374k
                                 int width, int height) {
961
374k
  const uint8_t *const sm_weights_h = smooth_weights + height - 4;
962
374k
  const uint8_t *const sm_weights_w = smooth_weights + width - 4;
963
374k
  const __m128i zero = _mm_setzero_si128();
964
374k
  const __m128i scale_value = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
965
374k
  const __m128i bottom_left = _mm_cvtsi32_si128(left_column[height - 1]);
966
374k
  const __m128i top_right = _mm_set1_epi16(top_row[width - 1]);
967
374k
  const __m128i round = _mm_set1_epi32(1 << SMOOTH_WEIGHT_LOG2_SCALE);
968
8.12M
  for (int y = 0; y < height; ++y) {
969
7.75M
    const __m128i weights_y = _mm_cvtsi32_si128(sm_weights_h[y]);
970
7.75M
    const __m128i left_y = _mm_cvtsi32_si128(left_column[y]);
971
7.75M
    const __m128i scale_m_weights_y = _mm_sub_epi16(scale_value, weights_y);
972
7.75M
    __m128i scaled_bottom_left =
973
7.75M
        _mm_mullo_epi16(scale_m_weights_y, bottom_left);
974
7.75M
    const __m128i weight_left_y =
975
7.75M
        _mm_shuffle_epi32(_mm_unpacklo_epi16(weights_y, left_y), 0);
976
7.75M
    scaled_bottom_left = _mm_add_epi32(scaled_bottom_left, round);
977
7.75M
    scaled_bottom_left = _mm_shuffle_epi32(scaled_bottom_left, 0);
978
40.4M
    for (int x = 0; x < width; x += 8) {
979
32.7M
      const __m128i top_x = LoadLo8(top_row + x);
980
32.7M
      const __m128i weights_x = LoadLo8(sm_weights_w + x);
981
32.7M
      const __m128i top_weights_x = _mm_unpacklo_epi8(top_x, weights_x);
982
32.7M
      const __m128i top_weights_x_lo = cvtepu8_epi16(top_weights_x);
983
32.7M
      const __m128i top_weights_x_hi = _mm_unpackhi_epi8(top_weights_x, zero);
984
985
      // Here opposite weights and pixels are multiplied, where the order of
986
      // interleaving is indicated in the names.
987
32.7M
      __m128i pred_lo = _mm_madd_epi16(top_weights_x_lo, weight_left_y);
988
32.7M
      __m128i pred_hi = _mm_madd_epi16(top_weights_x_hi, weight_left_y);
989
990
      // |scaled_bottom_left| is always scaled by the same weight each row, so
991
      // we only derive |scaled_top_right| values here.
992
32.7M
      const __m128i inverted_weights_x =
993
32.7M
          _mm_sub_epi16(scale_value, cvtepu8_epi16(weights_x));
994
32.7M
      const __m128i scaled_top_right =
995
32.7M
          _mm_mullo_epi16(inverted_weights_x, top_right);
996
32.7M
      const __m128i scaled_top_right_lo = cvtepu16_epi32(scaled_top_right);
997
32.7M
      const __m128i scaled_top_right_hi =
998
32.7M
          _mm_unpackhi_epi16(scaled_top_right, zero);
999
32.7M
      pred_lo = _mm_add_epi32(pred_lo, scaled_bottom_left);
1000
32.7M
      pred_hi = _mm_add_epi32(pred_hi, scaled_bottom_left);
1001
32.7M
      pred_lo = _mm_add_epi32(pred_lo, scaled_top_right_lo);
1002
32.7M
      pred_hi = _mm_add_epi32(pred_hi, scaled_top_right_hi);
1003
1004
      // The round value for RightShiftWithRounding was added with
1005
      // |scaled_bottom_left|.
1006
32.7M
      pred_lo = _mm_srli_epi32(pred_lo, (1 + SMOOTH_WEIGHT_LOG2_SCALE));
1007
32.7M
      pred_hi = _mm_srli_epi32(pred_hi, (1 + SMOOTH_WEIGHT_LOG2_SCALE));
1008
32.7M
      const __m128i pred = _mm_packus_epi16(pred_lo, pred_hi);
1009
32.7M
      StoreLo8(dst + x, _mm_packus_epi16(pred, pred));
1010
32.7M
    }
1011
7.75M
    dst += stride;
1012
7.75M
  }
1013
374k
}
1014
1015
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1016
void aom_smooth_predictor_16x4_ssse3(uint8_t *dst, ptrdiff_t stride,
1017
                                     const uint8_t *above,
1018
51.5k
                                     const uint8_t *left) {
1019
51.5k
  smooth_predictor_wxh(dst, stride, above, left, 16, 4);
1020
51.5k
}
1021
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1022
1023
void aom_smooth_predictor_16x8_ssse3(uint8_t *dst, ptrdiff_t stride,
1024
                                     const uint8_t *above,
1025
44.1k
                                     const uint8_t *left) {
1026
44.1k
  smooth_predictor_wxh(dst, stride, above, left, 16, 8);
1027
44.1k
}
1028
1029
void aom_smooth_predictor_16x16_ssse3(uint8_t *dst, ptrdiff_t stride,
1030
                                      const uint8_t *above,
1031
79.0k
                                      const uint8_t *left) {
1032
79.0k
  smooth_predictor_wxh(dst, stride, above, left, 16, 16);
1033
79.0k
}
1034
1035
void aom_smooth_predictor_16x32_ssse3(uint8_t *dst, ptrdiff_t stride,
1036
                                      const uint8_t *above,
1037
29.3k
                                      const uint8_t *left) {
1038
29.3k
  smooth_predictor_wxh(dst, stride, above, left, 16, 32);
1039
29.3k
}
1040
1041
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1042
void aom_smooth_predictor_16x64_ssse3(uint8_t *dst, ptrdiff_t stride,
1043
                                      const uint8_t *above,
1044
4.08k
                                      const uint8_t *left) {
1045
4.08k
  smooth_predictor_wxh(dst, stride, above, left, 16, 64);
1046
4.08k
}
1047
1048
void aom_smooth_predictor_32x8_ssse3(uint8_t *dst, ptrdiff_t stride,
1049
                                     const uint8_t *above,
1050
33.5k
                                     const uint8_t *left) {
1051
33.5k
  smooth_predictor_wxh(dst, stride, above, left, 32, 8);
1052
33.5k
}
1053
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1054
1055
void aom_smooth_predictor_32x16_ssse3(uint8_t *dst, ptrdiff_t stride,
1056
                                      const uint8_t *above,
1057
21.6k
                                      const uint8_t *left) {
1058
21.6k
  smooth_predictor_wxh(dst, stride, above, left, 32, 16);
1059
21.6k
}
1060
1061
void aom_smooth_predictor_32x32_ssse3(uint8_t *dst, ptrdiff_t stride,
1062
                                      const uint8_t *above,
1063
63.7k
                                      const uint8_t *left) {
1064
63.7k
  smooth_predictor_wxh(dst, stride, above, left, 32, 32);
1065
63.7k
}
1066
1067
void aom_smooth_predictor_32x64_ssse3(uint8_t *dst, ptrdiff_t stride,
1068
                                      const uint8_t *above,
1069
1.99k
                                      const uint8_t *left) {
1070
1.99k
  smooth_predictor_wxh(dst, stride, above, left, 32, 64);
1071
1.99k
}
1072
1073
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1074
void aom_smooth_predictor_64x16_ssse3(uint8_t *dst, ptrdiff_t stride,
1075
                                      const uint8_t *above,
1076
17.2k
                                      const uint8_t *left) {
1077
17.2k
  smooth_predictor_wxh(dst, stride, above, left, 64, 16);
1078
17.2k
}
1079
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1080
1081
void aom_smooth_predictor_64x32_ssse3(uint8_t *dst, ptrdiff_t stride,
1082
                                      const uint8_t *above,
1083
3.15k
                                      const uint8_t *left) {
1084
3.15k
  smooth_predictor_wxh(dst, stride, above, left, 64, 32);
1085
3.15k
}
1086
1087
void aom_smooth_predictor_64x64_ssse3(uint8_t *dst, ptrdiff_t stride,
1088
                                      const uint8_t *above,
1089
24.4k
                                      const uint8_t *left) {
1090
24.4k
  smooth_predictor_wxh(dst, stride, above, left, 64, 64);
1091
24.4k
}
1092
1093
// -----------------------------------------------------------------------------
1094
// Smooth horizontal/vertical helper functions.
1095
1096
// For Horizontal, pixels1 and pixels2 are the same repeated value. For
1097
// Vertical, weights1 and weights2 are the same, and scaled_corner1 and
1098
// scaled_corner2 are the same.
1099
static AOM_FORCE_INLINE void write_smooth_directional_sum16(
1100
    uint8_t *LIBAOM_RESTRICT dst, const __m128i pixels1, const __m128i pixels2,
1101
    const __m128i weights1, const __m128i weights2,
1102
    const __m128i scaled_corner1, const __m128i scaled_corner2,
1103
10.6M
    const __m128i round) {
1104
10.6M
  const __m128i weighted_px1 = _mm_mullo_epi16(pixels1, weights1);
1105
10.6M
  const __m128i weighted_px2 = _mm_mullo_epi16(pixels2, weights2);
1106
10.6M
  const __m128i pred_sum1 = _mm_add_epi16(scaled_corner1, weighted_px1);
1107
10.6M
  const __m128i pred_sum2 = _mm_add_epi16(scaled_corner2, weighted_px2);
1108
  // Equivalent to RightShiftWithRounding(pred[x][y], 8).
1109
10.6M
  const __m128i pred1 = _mm_srli_epi16(_mm_add_epi16(pred_sum1, round), 8);
1110
10.6M
  const __m128i pred2 = _mm_srli_epi16(_mm_add_epi16(pred_sum2, round), 8);
1111
10.6M
  StoreUnaligned16(dst, _mm_packus_epi16(pred1, pred2));
1112
10.6M
}
1113
1114
static AOM_FORCE_INLINE __m128i smooth_directional_sum8(
1115
1.43M
    const __m128i pixels, const __m128i weights, const __m128i scaled_corner) {
1116
1.43M
  const __m128i weighted_px = _mm_mullo_epi16(pixels, weights);
1117
1.43M
  return _mm_add_epi16(scaled_corner, weighted_px);
1118
1.43M
}
1119
1120
static AOM_FORCE_INLINE void write_smooth_directional_sum8(
1121
    uint8_t *LIBAOM_RESTRICT dst, const __m128i *pixels, const __m128i *weights,
1122
1.43M
    const __m128i *scaled_corner, const __m128i *round) {
1123
1.43M
  const __m128i pred_sum =
1124
1.43M
      smooth_directional_sum8(*pixels, *weights, *scaled_corner);
1125
  // Equivalent to RightShiftWithRounding(pred[x][y], 8).
1126
1.43M
  const __m128i pred = _mm_srli_epi16(_mm_add_epi16(pred_sum, *round), 8);
1127
1.43M
  StoreLo8(dst, _mm_packus_epi16(pred, pred));
1128
1.43M
}
1129
1130
// -----------------------------------------------------------------------------
1131
// SMOOTH_V_PRED
1132
1133
static AOM_FORCE_INLINE void load_smooth_vertical_pixels4(
1134
    const uint8_t *LIBAOM_RESTRICT above, const uint8_t *LIBAOM_RESTRICT left,
1135
41.3k
    const int height, __m128i *pixels) {
1136
41.3k
  __m128i top = Load4(above);
1137
41.3k
  const __m128i bottom_left = _mm_set1_epi16(left[height - 1]);
1138
41.3k
  top = cvtepu8_epi16(top);
1139
41.3k
  pixels[0] = _mm_unpacklo_epi16(top, bottom_left);
1140
41.3k
}
1141
1142
// |weight_array| alternates weight vectors from the table with their inverted
1143
// (256-w) counterparts. This is precomputed by the compiler when the weights
1144
// table is visible to this module. Removing this visibility can cut speed by up
1145
// to half in both 4xH and 8xH transforms.
1146
static AOM_FORCE_INLINE void load_smooth_vertical_weights4(
1147
    const uint8_t *LIBAOM_RESTRICT weight_array, const int height,
1148
41.3k
    __m128i *weights) {
1149
41.3k
  const __m128i inverter = _mm_set1_epi16(256);
1150
1151
41.3k
  if (height == 4) {
1152
20.7k
    const __m128i weight = Load4(weight_array);
1153
20.7k
    weights[0] = cvtepu8_epi16(weight);
1154
20.7k
    weights[1] = _mm_sub_epi16(inverter, weights[0]);
1155
20.7k
  } else if (height == 8) {
1156
9.92k
    const __m128i weight = LoadLo8(weight_array + 4);
1157
9.92k
    weights[0] = cvtepu8_epi16(weight);
1158
9.92k
    weights[1] = _mm_sub_epi16(inverter, weights[0]);
1159
10.6k
  } else {
1160
10.6k
    const __m128i weight = LoadUnaligned16(weight_array + 12);
1161
10.6k
    const __m128i zero = _mm_setzero_si128();
1162
10.6k
    weights[0] = cvtepu8_epi16(weight);
1163
10.6k
    weights[1] = _mm_sub_epi16(inverter, weights[0]);
1164
10.6k
    weights[2] = _mm_unpackhi_epi8(weight, zero);
1165
10.6k
    weights[3] = _mm_sub_epi16(inverter, weights[2]);
1166
10.6k
  }
1167
41.3k
}
1168
1169
static AOM_FORCE_INLINE void write_smooth_vertical4xh(
1170
    const __m128i *pixel, const __m128i *weight, const int height,
1171
52.0k
    uint8_t *LIBAOM_RESTRICT dst, const ptrdiff_t stride) {
1172
52.0k
  const __m128i pred_round = _mm_set1_epi32(128);
1173
52.0k
  const __m128i mask_increment = _mm_set1_epi16(0x0202);
1174
52.0k
  const __m128i cvtepu8_epi32 = _mm_set1_epi32(0xC080400);
1175
52.0k
  __m128i y_select = _mm_set1_epi16(0x0100);
1176
1177
385k
  for (int y = 0; y < height; ++y) {
1178
333k
    const __m128i weight_y = _mm_shuffle_epi8(weight[0], y_select);
1179
333k
    const __m128i inverted_weight_y = _mm_shuffle_epi8(weight[1], y_select);
1180
333k
    const __m128i alternate_weights =
1181
333k
        _mm_unpacklo_epi16(weight_y, inverted_weight_y);
1182
    // Here the pixel vector is top_row[0], corner, top_row[1], corner, ...
1183
    // The madd instruction yields four results of the form:
1184
    // (top_row[x] * weight[y] + corner * inverted_weight[y])
1185
333k
    __m128i sum = _mm_madd_epi16(pixel[0], alternate_weights);
1186
333k
    sum = _mm_add_epi32(sum, pred_round);
1187
333k
    sum = _mm_srai_epi32(sum, 8);
1188
333k
    sum = _mm_shuffle_epi8(sum, cvtepu8_epi32);
1189
333k
    Store4(dst, sum);
1190
333k
    dst += stride;
1191
333k
    y_select = _mm_add_epi16(y_select, mask_increment);
1192
333k
  }
1193
52.0k
}
1194
1195
void aom_smooth_v_predictor_4x4_ssse3(
1196
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1197
    const uint8_t *LIBAOM_RESTRICT top_row,
1198
20.7k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1199
20.7k
  __m128i pixels;
1200
20.7k
  load_smooth_vertical_pixels4(top_row, left_column, 4, &pixels);
1201
1202
20.7k
  __m128i weights[2];
1203
20.7k
  load_smooth_vertical_weights4(smooth_weights, 4, weights);
1204
1205
20.7k
  write_smooth_vertical4xh(&pixels, weights, 4, dst, stride);
1206
20.7k
}
1207
1208
void aom_smooth_v_predictor_4x8_ssse3(
1209
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1210
    const uint8_t *LIBAOM_RESTRICT top_row,
1211
9.92k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1212
9.92k
  __m128i pixels;
1213
9.92k
  load_smooth_vertical_pixels4(top_row, left_column, 8, &pixels);
1214
1215
9.92k
  __m128i weights[2];
1216
9.92k
  load_smooth_vertical_weights4(smooth_weights, 8, weights);
1217
1218
9.92k
  write_smooth_vertical4xh(&pixels, weights, 8, dst, stride);
1219
9.92k
}
1220
1221
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1222
void aom_smooth_v_predictor_4x16_ssse3(
1223
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1224
    const uint8_t *LIBAOM_RESTRICT top_row,
1225
10.6k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1226
10.6k
  __m128i pixels;
1227
10.6k
  load_smooth_vertical_pixels4(top_row, left_column, 16, &pixels);
1228
1229
10.6k
  __m128i weights[4];
1230
10.6k
  load_smooth_vertical_weights4(smooth_weights, 16, weights);
1231
1232
10.6k
  write_smooth_vertical4xh(&pixels, weights, 8, dst, stride);
1233
10.6k
  dst += stride << 3;
1234
10.6k
  write_smooth_vertical4xh(&pixels, &weights[2], 8, dst, stride);
1235
10.6k
}
1236
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1237
1238
void aom_smooth_v_predictor_8x4_ssse3(
1239
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1240
    const uint8_t *LIBAOM_RESTRICT top_row,
1241
14.7k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1242
14.7k
  const __m128i bottom_left = _mm_set1_epi16(left_column[3]);
1243
14.7k
  const __m128i weights = cvtepu8_epi16(Load4(smooth_weights));
1244
14.7k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1245
14.7k
  const __m128i inverted_weights = _mm_sub_epi16(scale, weights);
1246
14.7k
  const __m128i scaled_bottom_left =
1247
14.7k
      _mm_mullo_epi16(inverted_weights, bottom_left);
1248
14.7k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
1249
14.7k
  __m128i y_select = _mm_set1_epi32(0x01000100);
1250
14.7k
  const __m128i top = cvtepu8_epi16(LoadLo8(top_row));
1251
14.7k
  __m128i weights_y = _mm_shuffle_epi8(weights, y_select);
1252
14.7k
  __m128i scaled_bottom_left_y = _mm_shuffle_epi8(scaled_bottom_left, y_select);
1253
14.7k
  write_smooth_directional_sum8(dst, &top, &weights_y, &scaled_bottom_left_y,
1254
14.7k
                                &round);
1255
14.7k
  dst += stride;
1256
14.7k
  y_select = _mm_set1_epi32(0x03020302);
1257
14.7k
  weights_y = _mm_shuffle_epi8(weights, y_select);
1258
14.7k
  scaled_bottom_left_y = _mm_shuffle_epi8(scaled_bottom_left, y_select);
1259
14.7k
  write_smooth_directional_sum8(dst, &top, &weights_y, &scaled_bottom_left_y,
1260
14.7k
                                &round);
1261
14.7k
  dst += stride;
1262
14.7k
  y_select = _mm_set1_epi32(0x05040504);
1263
14.7k
  weights_y = _mm_shuffle_epi8(weights, y_select);
1264
14.7k
  scaled_bottom_left_y = _mm_shuffle_epi8(scaled_bottom_left, y_select);
1265
14.7k
  write_smooth_directional_sum8(dst, &top, &weights_y, &scaled_bottom_left_y,
1266
14.7k
                                &round);
1267
14.7k
  dst += stride;
1268
14.7k
  y_select = _mm_set1_epi32(0x07060706);
1269
14.7k
  weights_y = _mm_shuffle_epi8(weights, y_select);
1270
14.7k
  scaled_bottom_left_y = _mm_shuffle_epi8(scaled_bottom_left, y_select);
1271
14.7k
  write_smooth_directional_sum8(dst, &top, &weights_y, &scaled_bottom_left_y,
1272
14.7k
                                &round);
1273
14.7k
}
1274
1275
void aom_smooth_v_predictor_8x8_ssse3(
1276
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1277
    const uint8_t *LIBAOM_RESTRICT top_row,
1278
38.7k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1279
38.7k
  const __m128i bottom_left = _mm_set1_epi16(left_column[7]);
1280
38.7k
  const __m128i weights = cvtepu8_epi16(LoadLo8(smooth_weights + 4));
1281
38.7k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1282
38.7k
  const __m128i inverted_weights = _mm_sub_epi16(scale, weights);
1283
38.7k
  const __m128i scaled_bottom_left =
1284
38.7k
      _mm_mullo_epi16(inverted_weights, bottom_left);
1285
38.7k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
1286
38.7k
  const __m128i top = cvtepu8_epi16(LoadLo8(top_row));
1287
348k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1288
309k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1289
309k
    const __m128i weights_y = _mm_shuffle_epi8(weights, y_select);
1290
309k
    const __m128i scaled_bottom_left_y =
1291
309k
        _mm_shuffle_epi8(scaled_bottom_left, y_select);
1292
309k
    write_smooth_directional_sum8(dst, &top, &weights_y, &scaled_bottom_left_y,
1293
309k
                                  &round);
1294
309k
    dst += stride;
1295
309k
  }
1296
38.7k
}
1297
1298
void aom_smooth_v_predictor_8x16_ssse3(
1299
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1300
    const uint8_t *LIBAOM_RESTRICT top_row,
1301
9.81k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1302
9.81k
  const __m128i bottom_left = _mm_set1_epi16(left_column[15]);
1303
9.81k
  const __m128i weights = LoadUnaligned16(smooth_weights + 12);
1304
1305
9.81k
  const __m128i weights1 = cvtepu8_epi16(weights);
1306
9.81k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights, 8));
1307
9.81k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1308
9.81k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
1309
9.81k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
1310
9.81k
  const __m128i scaled_bottom_left1 =
1311
9.81k
      _mm_mullo_epi16(inverted_weights1, bottom_left);
1312
9.81k
  const __m128i scaled_bottom_left2 =
1313
9.81k
      _mm_mullo_epi16(inverted_weights2, bottom_left);
1314
9.81k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
1315
9.81k
  const __m128i top = cvtepu8_epi16(LoadLo8(top_row));
1316
88.3k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1317
78.5k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1318
78.5k
    const __m128i weights_y = _mm_shuffle_epi8(weights1, y_select);
1319
78.5k
    const __m128i scaled_bottom_left_y =
1320
78.5k
        _mm_shuffle_epi8(scaled_bottom_left1, y_select);
1321
78.5k
    write_smooth_directional_sum8(dst, &top, &weights_y, &scaled_bottom_left_y,
1322
78.5k
                                  &round);
1323
78.5k
    dst += stride;
1324
78.5k
  }
1325
88.3k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1326
78.5k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1327
78.5k
    const __m128i weights_y = _mm_shuffle_epi8(weights2, y_select);
1328
78.5k
    const __m128i scaled_bottom_left_y =
1329
78.5k
        _mm_shuffle_epi8(scaled_bottom_left2, y_select);
1330
78.5k
    write_smooth_directional_sum8(dst, &top, &weights_y, &scaled_bottom_left_y,
1331
78.5k
                                  &round);
1332
78.5k
    dst += stride;
1333
78.5k
  }
1334
9.81k
}
1335
1336
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1337
void aom_smooth_v_predictor_8x32_ssse3(
1338
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1339
    const uint8_t *LIBAOM_RESTRICT top_row,
1340
3.72k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1341
3.72k
  const __m128i zero = _mm_setzero_si128();
1342
3.72k
  const __m128i bottom_left = _mm_set1_epi16(left_column[31]);
1343
3.72k
  const __m128i weights_lo = LoadUnaligned16(smooth_weights + 28);
1344
3.72k
  const __m128i weights_hi = LoadUnaligned16(smooth_weights + 44);
1345
3.72k
  const __m128i weights1 = cvtepu8_epi16(weights_lo);
1346
3.72k
  const __m128i weights2 = _mm_unpackhi_epi8(weights_lo, zero);
1347
3.72k
  const __m128i weights3 = cvtepu8_epi16(weights_hi);
1348
3.72k
  const __m128i weights4 = _mm_unpackhi_epi8(weights_hi, zero);
1349
3.72k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1350
3.72k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
1351
3.72k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
1352
3.72k
  const __m128i inverted_weights3 = _mm_sub_epi16(scale, weights3);
1353
3.72k
  const __m128i inverted_weights4 = _mm_sub_epi16(scale, weights4);
1354
3.72k
  const __m128i scaled_bottom_left1 =
1355
3.72k
      _mm_mullo_epi16(inverted_weights1, bottom_left);
1356
3.72k
  const __m128i scaled_bottom_left2 =
1357
3.72k
      _mm_mullo_epi16(inverted_weights2, bottom_left);
1358
3.72k
  const __m128i scaled_bottom_left3 =
1359
3.72k
      _mm_mullo_epi16(inverted_weights3, bottom_left);
1360
3.72k
  const __m128i scaled_bottom_left4 =
1361
3.72k
      _mm_mullo_epi16(inverted_weights4, bottom_left);
1362
3.72k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
1363
3.72k
  const __m128i top = cvtepu8_epi16(LoadLo8(top_row));
1364
33.4k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1365
29.7k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1366
29.7k
    const __m128i weights_y = _mm_shuffle_epi8(weights1, y_select);
1367
29.7k
    const __m128i scaled_bottom_left_y =
1368
29.7k
        _mm_shuffle_epi8(scaled_bottom_left1, y_select);
1369
29.7k
    write_smooth_directional_sum8(dst, &top, &weights_y, &scaled_bottom_left_y,
1370
29.7k
                                  &round);
1371
29.7k
    dst += stride;
1372
29.7k
  }
1373
33.4k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1374
29.7k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1375
29.7k
    const __m128i weights_y = _mm_shuffle_epi8(weights2, y_select);
1376
29.7k
    const __m128i scaled_bottom_left_y =
1377
29.7k
        _mm_shuffle_epi8(scaled_bottom_left2, y_select);
1378
29.7k
    write_smooth_directional_sum8(dst, &top, &weights_y, &scaled_bottom_left_y,
1379
29.7k
                                  &round);
1380
29.7k
    dst += stride;
1381
29.7k
  }
1382
33.4k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1383
29.7k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1384
29.7k
    const __m128i weights_y = _mm_shuffle_epi8(weights3, y_select);
1385
29.7k
    const __m128i scaled_bottom_left_y =
1386
29.7k
        _mm_shuffle_epi8(scaled_bottom_left3, y_select);
1387
29.7k
    write_smooth_directional_sum8(dst, &top, &weights_y, &scaled_bottom_left_y,
1388
29.7k
                                  &round);
1389
29.7k
    dst += stride;
1390
29.7k
  }
1391
33.4k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1392
29.7k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1393
29.7k
    const __m128i weights_y = _mm_shuffle_epi8(weights4, y_select);
1394
29.7k
    const __m128i scaled_bottom_left_y =
1395
29.7k
        _mm_shuffle_epi8(scaled_bottom_left4, y_select);
1396
29.7k
    write_smooth_directional_sum8(dst, &top, &weights_y, &scaled_bottom_left_y,
1397
29.7k
                                  &round);
1398
29.7k
    dst += stride;
1399
29.7k
  }
1400
3.72k
}
1401
1402
void aom_smooth_v_predictor_16x4_ssse3(
1403
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1404
    const uint8_t *LIBAOM_RESTRICT top_row,
1405
15.3k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1406
15.3k
  const __m128i bottom_left = _mm_set1_epi16(left_column[3]);
1407
15.3k
  const __m128i weights = cvtepu8_epi16(Load4(smooth_weights));
1408
15.3k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1409
15.3k
  const __m128i inverted_weights = _mm_sub_epi16(scale, weights);
1410
15.3k
  const __m128i scaled_bottom_left =
1411
15.3k
      _mm_mullo_epi16(inverted_weights, bottom_left);
1412
15.3k
  const __m128i round = _mm_set1_epi16(128);
1413
15.3k
  const __m128i top = LoadUnaligned16(top_row);
1414
15.3k
  const __m128i top_lo = cvtepu8_epi16(top);
1415
15.3k
  const __m128i top_hi = cvtepu8_epi16(_mm_srli_si128(top, 8));
1416
1417
15.3k
  __m128i y_select = _mm_set1_epi32(0x01000100);
1418
15.3k
  __m128i weights_y = _mm_shuffle_epi8(weights, y_select);
1419
15.3k
  __m128i scaled_bottom_left_y = _mm_shuffle_epi8(scaled_bottom_left, y_select);
1420
15.3k
  write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1421
15.3k
                                 scaled_bottom_left_y, scaled_bottom_left_y,
1422
15.3k
                                 round);
1423
15.3k
  dst += stride;
1424
15.3k
  y_select = _mm_set1_epi32(0x03020302);
1425
15.3k
  weights_y = _mm_shuffle_epi8(weights, y_select);
1426
15.3k
  scaled_bottom_left_y = _mm_shuffle_epi8(scaled_bottom_left, y_select);
1427
15.3k
  write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1428
15.3k
                                 scaled_bottom_left_y, scaled_bottom_left_y,
1429
15.3k
                                 round);
1430
15.3k
  dst += stride;
1431
15.3k
  y_select = _mm_set1_epi32(0x05040504);
1432
15.3k
  weights_y = _mm_shuffle_epi8(weights, y_select);
1433
15.3k
  scaled_bottom_left_y = _mm_shuffle_epi8(scaled_bottom_left, y_select);
1434
15.3k
  write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1435
15.3k
                                 scaled_bottom_left_y, scaled_bottom_left_y,
1436
15.3k
                                 round);
1437
15.3k
  dst += stride;
1438
15.3k
  y_select = _mm_set1_epi32(0x07060706);
1439
15.3k
  weights_y = _mm_shuffle_epi8(weights, y_select);
1440
15.3k
  scaled_bottom_left_y = _mm_shuffle_epi8(scaled_bottom_left, y_select);
1441
15.3k
  write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1442
15.3k
                                 scaled_bottom_left_y, scaled_bottom_left_y,
1443
15.3k
                                 round);
1444
15.3k
}
1445
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1446
1447
void aom_smooth_v_predictor_16x8_ssse3(
1448
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1449
    const uint8_t *LIBAOM_RESTRICT top_row,
1450
12.9k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1451
12.9k
  const __m128i bottom_left = _mm_set1_epi16(left_column[7]);
1452
12.9k
  const __m128i weights = cvtepu8_epi16(LoadLo8(smooth_weights + 4));
1453
12.9k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1454
12.9k
  const __m128i inverted_weights = _mm_sub_epi16(scale, weights);
1455
12.9k
  const __m128i scaled_bottom_left =
1456
12.9k
      _mm_mullo_epi16(inverted_weights, bottom_left);
1457
12.9k
  const __m128i round = _mm_set1_epi16(128);
1458
12.9k
  const __m128i top = LoadUnaligned16(top_row);
1459
12.9k
  const __m128i top_lo = cvtepu8_epi16(top);
1460
12.9k
  const __m128i top_hi = cvtepu8_epi16(_mm_srli_si128(top, 8));
1461
116k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1462
103k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1463
103k
    const __m128i weights_y = _mm_shuffle_epi8(weights, y_select);
1464
103k
    const __m128i scaled_bottom_left_y =
1465
103k
        _mm_shuffle_epi8(scaled_bottom_left, y_select);
1466
103k
    write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1467
103k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1468
103k
                                   round);
1469
103k
    dst += stride;
1470
103k
  }
1471
12.9k
}
1472
1473
void aom_smooth_v_predictor_16x16_ssse3(
1474
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1475
    const uint8_t *LIBAOM_RESTRICT top_row,
1476
30.5k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1477
30.5k
  const __m128i bottom_left = _mm_set1_epi16(left_column[15]);
1478
30.5k
  const __m128i zero = _mm_setzero_si128();
1479
30.5k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1480
30.5k
  const __m128i weights = LoadUnaligned16(smooth_weights + 12);
1481
30.5k
  const __m128i weights_lo = cvtepu8_epi16(weights);
1482
30.5k
  const __m128i weights_hi = _mm_unpackhi_epi8(weights, zero);
1483
30.5k
  const __m128i inverted_weights_lo = _mm_sub_epi16(scale, weights_lo);
1484
30.5k
  const __m128i inverted_weights_hi = _mm_sub_epi16(scale, weights_hi);
1485
30.5k
  const __m128i scaled_bottom_left_lo =
1486
30.5k
      _mm_mullo_epi16(inverted_weights_lo, bottom_left);
1487
30.5k
  const __m128i scaled_bottom_left_hi =
1488
30.5k
      _mm_mullo_epi16(inverted_weights_hi, bottom_left);
1489
30.5k
  const __m128i round = _mm_set1_epi16(128);
1490
1491
30.5k
  const __m128i top = LoadUnaligned16(top_row);
1492
30.5k
  const __m128i top_lo = cvtepu8_epi16(top);
1493
30.5k
  const __m128i top_hi = _mm_unpackhi_epi8(top, zero);
1494
274k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1495
244k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1496
244k
    const __m128i weights_y = _mm_shuffle_epi8(weights_lo, y_select);
1497
244k
    const __m128i scaled_bottom_left_y =
1498
244k
        _mm_shuffle_epi8(scaled_bottom_left_lo, y_select);
1499
244k
    write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1500
244k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1501
244k
                                   round);
1502
244k
    dst += stride;
1503
244k
  }
1504
274k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1505
244k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1506
244k
    const __m128i weights_y = _mm_shuffle_epi8(weights_hi, y_select);
1507
244k
    const __m128i scaled_bottom_left_y =
1508
244k
        _mm_shuffle_epi8(scaled_bottom_left_hi, y_select);
1509
244k
    write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1510
244k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1511
244k
                                   round);
1512
244k
    dst += stride;
1513
244k
  }
1514
30.5k
}
1515
1516
void aom_smooth_v_predictor_16x32_ssse3(
1517
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1518
    const uint8_t *LIBAOM_RESTRICT top_row,
1519
7.53k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1520
7.53k
  const __m128i bottom_left = _mm_set1_epi16(left_column[31]);
1521
7.53k
  const __m128i weights_lo = LoadUnaligned16(smooth_weights + 28);
1522
7.53k
  const __m128i weights_hi = LoadUnaligned16(smooth_weights + 44);
1523
7.53k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1524
7.53k
  const __m128i zero = _mm_setzero_si128();
1525
7.53k
  const __m128i weights1 = cvtepu8_epi16(weights_lo);
1526
7.53k
  const __m128i weights2 = _mm_unpackhi_epi8(weights_lo, zero);
1527
7.53k
  const __m128i weights3 = cvtepu8_epi16(weights_hi);
1528
7.53k
  const __m128i weights4 = _mm_unpackhi_epi8(weights_hi, zero);
1529
7.53k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
1530
7.53k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
1531
7.53k
  const __m128i inverted_weights3 = _mm_sub_epi16(scale, weights3);
1532
7.53k
  const __m128i inverted_weights4 = _mm_sub_epi16(scale, weights4);
1533
7.53k
  const __m128i scaled_bottom_left1 =
1534
7.53k
      _mm_mullo_epi16(inverted_weights1, bottom_left);
1535
7.53k
  const __m128i scaled_bottom_left2 =
1536
7.53k
      _mm_mullo_epi16(inverted_weights2, bottom_left);
1537
7.53k
  const __m128i scaled_bottom_left3 =
1538
7.53k
      _mm_mullo_epi16(inverted_weights3, bottom_left);
1539
7.53k
  const __m128i scaled_bottom_left4 =
1540
7.53k
      _mm_mullo_epi16(inverted_weights4, bottom_left);
1541
7.53k
  const __m128i round = _mm_set1_epi16(128);
1542
1543
7.53k
  const __m128i top = LoadUnaligned16(top_row);
1544
7.53k
  const __m128i top_lo = cvtepu8_epi16(top);
1545
7.53k
  const __m128i top_hi = _mm_unpackhi_epi8(top, zero);
1546
67.8k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1547
60.2k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1548
60.2k
    const __m128i weights_y = _mm_shuffle_epi8(weights1, y_select);
1549
60.2k
    const __m128i scaled_bottom_left_y =
1550
60.2k
        _mm_shuffle_epi8(scaled_bottom_left1, y_select);
1551
60.2k
    write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1552
60.2k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1553
60.2k
                                   round);
1554
60.2k
    dst += stride;
1555
60.2k
  }
1556
67.8k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1557
60.2k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1558
60.2k
    const __m128i weights_y = _mm_shuffle_epi8(weights2, y_select);
1559
60.2k
    const __m128i scaled_bottom_left_y =
1560
60.2k
        _mm_shuffle_epi8(scaled_bottom_left2, y_select);
1561
60.2k
    write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1562
60.2k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1563
60.2k
                                   round);
1564
60.2k
    dst += stride;
1565
60.2k
  }
1566
67.8k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1567
60.2k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1568
60.2k
    const __m128i weights_y = _mm_shuffle_epi8(weights3, y_select);
1569
60.2k
    const __m128i scaled_bottom_left_y =
1570
60.2k
        _mm_shuffle_epi8(scaled_bottom_left3, y_select);
1571
60.2k
    write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1572
60.2k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1573
60.2k
                                   round);
1574
60.2k
    dst += stride;
1575
60.2k
  }
1576
67.8k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1577
60.2k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1578
60.2k
    const __m128i weights_y = _mm_shuffle_epi8(weights4, y_select);
1579
60.2k
    const __m128i scaled_bottom_left_y =
1580
60.2k
        _mm_shuffle_epi8(scaled_bottom_left4, y_select);
1581
60.2k
    write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1582
60.2k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1583
60.2k
                                   round);
1584
60.2k
    dst += stride;
1585
60.2k
  }
1586
7.53k
}
1587
1588
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1589
void aom_smooth_v_predictor_16x64_ssse3(
1590
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1591
    const uint8_t *LIBAOM_RESTRICT top_row,
1592
1.16k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1593
1.16k
  const __m128i bottom_left = _mm_set1_epi16(left_column[63]);
1594
1.16k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1595
1.16k
  const __m128i round = _mm_set1_epi16(128);
1596
1.16k
  const __m128i zero = _mm_setzero_si128();
1597
1.16k
  const __m128i top = LoadUnaligned16(top_row);
1598
1.16k
  const __m128i top_lo = cvtepu8_epi16(top);
1599
1.16k
  const __m128i top_hi = _mm_unpackhi_epi8(top, zero);
1600
1.16k
  const uint8_t *weights_base_ptr = smooth_weights + 60;
1601
5.83k
  for (int left_offset = 0; left_offset < 64; left_offset += 16) {
1602
4.66k
    const __m128i weights = LoadUnaligned16(weights_base_ptr + left_offset);
1603
4.66k
    const __m128i weights_lo = cvtepu8_epi16(weights);
1604
4.66k
    const __m128i weights_hi = _mm_unpackhi_epi8(weights, zero);
1605
4.66k
    const __m128i inverted_weights_lo = _mm_sub_epi16(scale, weights_lo);
1606
4.66k
    const __m128i inverted_weights_hi = _mm_sub_epi16(scale, weights_hi);
1607
4.66k
    const __m128i scaled_bottom_left_lo =
1608
4.66k
        _mm_mullo_epi16(inverted_weights_lo, bottom_left);
1609
4.66k
    const __m128i scaled_bottom_left_hi =
1610
4.66k
        _mm_mullo_epi16(inverted_weights_hi, bottom_left);
1611
1612
41.9k
    for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1613
37.3k
      const __m128i y_select = _mm_set1_epi32(y_mask);
1614
37.3k
      const __m128i weights_y = _mm_shuffle_epi8(weights_lo, y_select);
1615
37.3k
      const __m128i scaled_bottom_left_y =
1616
37.3k
          _mm_shuffle_epi8(scaled_bottom_left_lo, y_select);
1617
37.3k
      write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1618
37.3k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
1619
37.3k
                                     round);
1620
37.3k
      dst += stride;
1621
37.3k
    }
1622
41.9k
    for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1623
37.3k
      const __m128i y_select = _mm_set1_epi32(y_mask);
1624
37.3k
      const __m128i weights_y = _mm_shuffle_epi8(weights_hi, y_select);
1625
37.3k
      const __m128i scaled_bottom_left_y =
1626
37.3k
          _mm_shuffle_epi8(scaled_bottom_left_hi, y_select);
1627
37.3k
      write_smooth_directional_sum16(dst, top_lo, top_hi, weights_y, weights_y,
1628
37.3k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
1629
37.3k
                                     round);
1630
37.3k
      dst += stride;
1631
37.3k
    }
1632
4.66k
  }
1633
1.16k
}
1634
1635
void aom_smooth_v_predictor_32x8_ssse3(
1636
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1637
    const uint8_t *LIBAOM_RESTRICT top_row,
1638
16.9k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1639
16.9k
  const __m128i zero = _mm_setzero_si128();
1640
16.9k
  const __m128i bottom_left = _mm_set1_epi16(left_column[7]);
1641
16.9k
  const __m128i top_lo = LoadUnaligned16(top_row);
1642
16.9k
  const __m128i top_hi = LoadUnaligned16(top_row + 16);
1643
16.9k
  const __m128i top1 = cvtepu8_epi16(top_lo);
1644
16.9k
  const __m128i top2 = _mm_unpackhi_epi8(top_lo, zero);
1645
16.9k
  const __m128i top3 = cvtepu8_epi16(top_hi);
1646
16.9k
  const __m128i top4 = _mm_unpackhi_epi8(top_hi, zero);
1647
16.9k
  __m128i scale = _mm_set1_epi16(256);
1648
16.9k
  const __m128i weights = cvtepu8_epi16(LoadLo8(smooth_weights + 4));
1649
16.9k
  const __m128i inverted_weights = _mm_sub_epi16(scale, weights);
1650
16.9k
  const __m128i scaled_bottom_left =
1651
16.9k
      _mm_mullo_epi16(inverted_weights, bottom_left);
1652
16.9k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
1653
152k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1654
135k
    __m128i y_select = _mm_set1_epi32(y_mask);
1655
135k
    const __m128i weights_y = _mm_shuffle_epi8(weights, y_select);
1656
135k
    const __m128i scaled_bottom_left_y =
1657
135k
        _mm_shuffle_epi8(scaled_bottom_left, y_select);
1658
135k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1659
135k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1660
135k
                                   round);
1661
135k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1662
135k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1663
135k
                                   round);
1664
135k
    dst += stride;
1665
135k
  }
1666
16.9k
}
1667
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1668
1669
void aom_smooth_v_predictor_32x16_ssse3(
1670
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1671
    const uint8_t *LIBAOM_RESTRICT top_row,
1672
6.93k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1673
6.93k
  const __m128i zero = _mm_setzero_si128();
1674
6.93k
  const __m128i bottom_left = _mm_set1_epi16(left_column[15]);
1675
6.93k
  const __m128i top_lo = LoadUnaligned16(top_row);
1676
6.93k
  const __m128i top_hi = LoadUnaligned16(top_row + 16);
1677
6.93k
  const __m128i top1 = cvtepu8_epi16(top_lo);
1678
6.93k
  const __m128i top2 = _mm_unpackhi_epi8(top_lo, zero);
1679
6.93k
  const __m128i top3 = cvtepu8_epi16(top_hi);
1680
6.93k
  const __m128i top4 = _mm_unpackhi_epi8(top_hi, zero);
1681
6.93k
  const __m128i weights = LoadUnaligned16(smooth_weights + 12);
1682
6.93k
  const __m128i weights1 = cvtepu8_epi16(weights);
1683
6.93k
  const __m128i weights2 = _mm_unpackhi_epi8(weights, zero);
1684
6.93k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1685
6.93k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
1686
6.93k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
1687
6.93k
  const __m128i scaled_bottom_left1 =
1688
6.93k
      _mm_mullo_epi16(inverted_weights1, bottom_left);
1689
6.93k
  const __m128i scaled_bottom_left2 =
1690
6.93k
      _mm_mullo_epi16(inverted_weights2, bottom_left);
1691
6.93k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
1692
62.4k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1693
55.4k
    __m128i y_select = _mm_set1_epi32(y_mask);
1694
55.4k
    const __m128i weights_y = _mm_shuffle_epi8(weights1, y_select);
1695
55.4k
    const __m128i scaled_bottom_left_y =
1696
55.4k
        _mm_shuffle_epi8(scaled_bottom_left1, y_select);
1697
55.4k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1698
55.4k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1699
55.4k
                                   round);
1700
55.4k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1701
55.4k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1702
55.4k
                                   round);
1703
55.4k
    dst += stride;
1704
55.4k
  }
1705
62.4k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1706
55.4k
    __m128i y_select = _mm_set1_epi32(y_mask);
1707
55.4k
    const __m128i weights_y = _mm_shuffle_epi8(weights2, y_select);
1708
55.4k
    const __m128i scaled_bottom_left_y =
1709
55.4k
        _mm_shuffle_epi8(scaled_bottom_left2, y_select);
1710
55.4k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1711
55.4k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1712
55.4k
                                   round);
1713
55.4k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1714
55.4k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1715
55.4k
                                   round);
1716
55.4k
    dst += stride;
1717
55.4k
  }
1718
6.93k
}
1719
1720
void aom_smooth_v_predictor_32x32_ssse3(
1721
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1722
    const uint8_t *LIBAOM_RESTRICT top_row,
1723
36.6k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1724
36.6k
  const __m128i bottom_left = _mm_set1_epi16(left_column[31]);
1725
36.6k
  const __m128i weights_lo = LoadUnaligned16(smooth_weights + 28);
1726
36.6k
  const __m128i weights_hi = LoadUnaligned16(smooth_weights + 44);
1727
36.6k
  const __m128i zero = _mm_setzero_si128();
1728
36.6k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1729
36.6k
  const __m128i top_lo = LoadUnaligned16(top_row);
1730
36.6k
  const __m128i top_hi = LoadUnaligned16(top_row + 16);
1731
36.6k
  const __m128i top1 = cvtepu8_epi16(top_lo);
1732
36.6k
  const __m128i top2 = _mm_unpackhi_epi8(top_lo, zero);
1733
36.6k
  const __m128i top3 = cvtepu8_epi16(top_hi);
1734
36.6k
  const __m128i top4 = _mm_unpackhi_epi8(top_hi, zero);
1735
36.6k
  const __m128i weights1 = cvtepu8_epi16(weights_lo);
1736
36.6k
  const __m128i weights2 = _mm_unpackhi_epi8(weights_lo, zero);
1737
36.6k
  const __m128i weights3 = cvtepu8_epi16(weights_hi);
1738
36.6k
  const __m128i weights4 = _mm_unpackhi_epi8(weights_hi, zero);
1739
36.6k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
1740
36.6k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
1741
36.6k
  const __m128i inverted_weights3 = _mm_sub_epi16(scale, weights3);
1742
36.6k
  const __m128i inverted_weights4 = _mm_sub_epi16(scale, weights4);
1743
36.6k
  const __m128i scaled_bottom_left1 =
1744
36.6k
      _mm_mullo_epi16(inverted_weights1, bottom_left);
1745
36.6k
  const __m128i scaled_bottom_left2 =
1746
36.6k
      _mm_mullo_epi16(inverted_weights2, bottom_left);
1747
36.6k
  const __m128i scaled_bottom_left3 =
1748
36.6k
      _mm_mullo_epi16(inverted_weights3, bottom_left);
1749
36.6k
  const __m128i scaled_bottom_left4 =
1750
36.6k
      _mm_mullo_epi16(inverted_weights4, bottom_left);
1751
36.6k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
1752
329k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1753
292k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1754
292k
    const __m128i weights_y = _mm_shuffle_epi8(weights1, y_select);
1755
292k
    const __m128i scaled_bottom_left_y =
1756
292k
        _mm_shuffle_epi8(scaled_bottom_left1, y_select);
1757
292k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1758
292k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1759
292k
                                   round);
1760
292k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1761
292k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1762
292k
                                   round);
1763
292k
    dst += stride;
1764
292k
  }
1765
329k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1766
292k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1767
292k
    const __m128i weights_y = _mm_shuffle_epi8(weights2, y_select);
1768
292k
    const __m128i scaled_bottom_left_y =
1769
292k
        _mm_shuffle_epi8(scaled_bottom_left2, y_select);
1770
292k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1771
292k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1772
292k
                                   round);
1773
292k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1774
292k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1775
292k
                                   round);
1776
292k
    dst += stride;
1777
292k
  }
1778
329k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1779
292k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1780
292k
    const __m128i weights_y = _mm_shuffle_epi8(weights3, y_select);
1781
292k
    const __m128i scaled_bottom_left_y =
1782
292k
        _mm_shuffle_epi8(scaled_bottom_left3, y_select);
1783
292k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1784
292k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1785
292k
                                   round);
1786
292k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1787
292k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1788
292k
                                   round);
1789
292k
    dst += stride;
1790
292k
  }
1791
329k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1792
292k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1793
292k
    const __m128i weights_y = _mm_shuffle_epi8(weights4, y_select);
1794
292k
    const __m128i scaled_bottom_left_y =
1795
292k
        _mm_shuffle_epi8(scaled_bottom_left4, y_select);
1796
292k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1797
292k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1798
292k
                                   round);
1799
292k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1800
292k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1801
292k
                                   round);
1802
292k
    dst += stride;
1803
292k
  }
1804
36.6k
}
1805
1806
void aom_smooth_v_predictor_32x64_ssse3(
1807
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1808
    const uint8_t *LIBAOM_RESTRICT top_row,
1809
455
    const uint8_t *LIBAOM_RESTRICT left_column) {
1810
455
  const __m128i zero = _mm_setzero_si128();
1811
455
  const __m128i bottom_left = _mm_set1_epi16(left_column[63]);
1812
455
  const __m128i top_lo = LoadUnaligned16(top_row);
1813
455
  const __m128i top_hi = LoadUnaligned16(top_row + 16);
1814
455
  const __m128i top1 = cvtepu8_epi16(top_lo);
1815
455
  const __m128i top2 = _mm_unpackhi_epi8(top_lo, zero);
1816
455
  const __m128i top3 = cvtepu8_epi16(top_hi);
1817
455
  const __m128i top4 = _mm_unpackhi_epi8(top_hi, zero);
1818
455
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1819
455
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
1820
455
  const uint8_t *weights_base_ptr = smooth_weights + 60;
1821
2.27k
  for (int left_offset = 0; left_offset < 64; left_offset += 16) {
1822
1.82k
    const __m128i weights = LoadUnaligned16(weights_base_ptr + left_offset);
1823
1.82k
    const __m128i weights_lo = cvtepu8_epi16(weights);
1824
1.82k
    const __m128i weights_hi = _mm_unpackhi_epi8(weights, zero);
1825
1.82k
    const __m128i inverted_weights_lo = _mm_sub_epi16(scale, weights_lo);
1826
1.82k
    const __m128i inverted_weights_hi = _mm_sub_epi16(scale, weights_hi);
1827
1.82k
    const __m128i scaled_bottom_left_lo =
1828
1.82k
        _mm_mullo_epi16(inverted_weights_lo, bottom_left);
1829
1.82k
    const __m128i scaled_bottom_left_hi =
1830
1.82k
        _mm_mullo_epi16(inverted_weights_hi, bottom_left);
1831
1832
16.3k
    for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1833
14.5k
      const __m128i y_select = _mm_set1_epi32(y_mask);
1834
14.5k
      const __m128i weights_y = _mm_shuffle_epi8(weights_lo, y_select);
1835
14.5k
      const __m128i scaled_bottom_left_y =
1836
14.5k
          _mm_shuffle_epi8(scaled_bottom_left_lo, y_select);
1837
14.5k
      write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1838
14.5k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
1839
14.5k
                                     round);
1840
14.5k
      write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1841
14.5k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
1842
14.5k
                                     round);
1843
14.5k
      dst += stride;
1844
14.5k
    }
1845
16.3k
    for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1846
14.5k
      const __m128i y_select = _mm_set1_epi32(y_mask);
1847
14.5k
      const __m128i weights_y = _mm_shuffle_epi8(weights_hi, y_select);
1848
14.5k
      const __m128i scaled_bottom_left_y =
1849
14.5k
          _mm_shuffle_epi8(scaled_bottom_left_hi, y_select);
1850
14.5k
      write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1851
14.5k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
1852
14.5k
                                     round);
1853
14.5k
      write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1854
14.5k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
1855
14.5k
                                     round);
1856
14.5k
      dst += stride;
1857
14.5k
    }
1858
1.82k
  }
1859
455
}
1860
1861
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1862
void aom_smooth_v_predictor_64x16_ssse3(
1863
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1864
    const uint8_t *LIBAOM_RESTRICT top_row,
1865
8.97k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1866
8.97k
  const __m128i bottom_left = _mm_set1_epi16(left_column[15]);
1867
8.97k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1868
8.97k
  const __m128i zero = _mm_setzero_si128();
1869
8.97k
  const __m128i top_lolo = LoadUnaligned16(top_row);
1870
8.97k
  const __m128i top_lohi = LoadUnaligned16(top_row + 16);
1871
8.97k
  const __m128i top1 = cvtepu8_epi16(top_lolo);
1872
8.97k
  const __m128i top2 = _mm_unpackhi_epi8(top_lolo, zero);
1873
8.97k
  const __m128i top3 = cvtepu8_epi16(top_lohi);
1874
8.97k
  const __m128i top4 = _mm_unpackhi_epi8(top_lohi, zero);
1875
1876
8.97k
  const __m128i weights = LoadUnaligned16(smooth_weights + 12);
1877
8.97k
  const __m128i weights1 = cvtepu8_epi16(weights);
1878
8.97k
  const __m128i weights2 = _mm_unpackhi_epi8(weights, zero);
1879
8.97k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
1880
8.97k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
1881
8.97k
  const __m128i top_hilo = LoadUnaligned16(top_row + 32);
1882
8.97k
  const __m128i top_hihi = LoadUnaligned16(top_row + 48);
1883
8.97k
  const __m128i top5 = cvtepu8_epi16(top_hilo);
1884
8.97k
  const __m128i top6 = _mm_unpackhi_epi8(top_hilo, zero);
1885
8.97k
  const __m128i top7 = cvtepu8_epi16(top_hihi);
1886
8.97k
  const __m128i top8 = _mm_unpackhi_epi8(top_hihi, zero);
1887
8.97k
  const __m128i scaled_bottom_left1 =
1888
8.97k
      _mm_mullo_epi16(inverted_weights1, bottom_left);
1889
8.97k
  const __m128i scaled_bottom_left2 =
1890
8.97k
      _mm_mullo_epi16(inverted_weights2, bottom_left);
1891
8.97k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
1892
80.7k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1893
71.8k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1894
71.8k
    const __m128i weights_y = _mm_shuffle_epi8(weights1, y_select);
1895
71.8k
    const __m128i scaled_bottom_left_y =
1896
71.8k
        _mm_shuffle_epi8(scaled_bottom_left1, y_select);
1897
71.8k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1898
71.8k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1899
71.8k
                                   round);
1900
71.8k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1901
71.8k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1902
71.8k
                                   round);
1903
71.8k
    write_smooth_directional_sum16(dst + 32, top5, top6, weights_y, weights_y,
1904
71.8k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1905
71.8k
                                   round);
1906
71.8k
    write_smooth_directional_sum16(dst + 48, top7, top8, weights_y, weights_y,
1907
71.8k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1908
71.8k
                                   round);
1909
71.8k
    dst += stride;
1910
71.8k
  }
1911
80.7k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1912
71.8k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1913
71.8k
    const __m128i weights_y = _mm_shuffle_epi8(weights2, y_select);
1914
71.8k
    const __m128i scaled_bottom_left_y =
1915
71.8k
        _mm_shuffle_epi8(scaled_bottom_left2, y_select);
1916
71.8k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1917
71.8k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1918
71.8k
                                   round);
1919
71.8k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1920
71.8k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1921
71.8k
                                   round);
1922
71.8k
    write_smooth_directional_sum16(dst + 32, top5, top6, weights_y, weights_y,
1923
71.8k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1924
71.8k
                                   round);
1925
71.8k
    write_smooth_directional_sum16(dst + 48, top7, top8, weights_y, weights_y,
1926
71.8k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1927
71.8k
                                   round);
1928
71.8k
    dst += stride;
1929
71.8k
  }
1930
8.97k
}
1931
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
1932
1933
void aom_smooth_v_predictor_64x32_ssse3(
1934
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
1935
    const uint8_t *LIBAOM_RESTRICT top_row,
1936
1.59k
    const uint8_t *LIBAOM_RESTRICT left_column) {
1937
1.59k
  const __m128i zero = _mm_setzero_si128();
1938
1.59k
  const __m128i bottom_left = _mm_set1_epi16(left_column[31]);
1939
1.59k
  const __m128i top_lolo = LoadUnaligned16(top_row);
1940
1.59k
  const __m128i top_lohi = LoadUnaligned16(top_row + 16);
1941
1.59k
  const __m128i top1 = cvtepu8_epi16(top_lolo);
1942
1.59k
  const __m128i top2 = _mm_unpackhi_epi8(top_lolo, zero);
1943
1.59k
  const __m128i top3 = cvtepu8_epi16(top_lohi);
1944
1.59k
  const __m128i top4 = _mm_unpackhi_epi8(top_lohi, zero);
1945
1.59k
  const __m128i top_hilo = LoadUnaligned16(top_row + 32);
1946
1.59k
  const __m128i top_hihi = LoadUnaligned16(top_row + 48);
1947
1.59k
  const __m128i top5 = cvtepu8_epi16(top_hilo);
1948
1.59k
  const __m128i top6 = _mm_unpackhi_epi8(top_hilo, zero);
1949
1.59k
  const __m128i top7 = cvtepu8_epi16(top_hihi);
1950
1.59k
  const __m128i top8 = _mm_unpackhi_epi8(top_hihi, zero);
1951
1.59k
  const __m128i weights_lo = LoadUnaligned16(smooth_weights + 28);
1952
1.59k
  const __m128i weights_hi = LoadUnaligned16(smooth_weights + 44);
1953
1.59k
  const __m128i weights1 = cvtepu8_epi16(weights_lo);
1954
1.59k
  const __m128i weights2 = _mm_unpackhi_epi8(weights_lo, zero);
1955
1.59k
  const __m128i weights3 = cvtepu8_epi16(weights_hi);
1956
1.59k
  const __m128i weights4 = _mm_unpackhi_epi8(weights_hi, zero);
1957
1.59k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
1958
1.59k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
1959
1.59k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
1960
1.59k
  const __m128i inverted_weights3 = _mm_sub_epi16(scale, weights3);
1961
1.59k
  const __m128i inverted_weights4 = _mm_sub_epi16(scale, weights4);
1962
1.59k
  const __m128i scaled_bottom_left1 =
1963
1.59k
      _mm_mullo_epi16(inverted_weights1, bottom_left);
1964
1.59k
  const __m128i scaled_bottom_left2 =
1965
1.59k
      _mm_mullo_epi16(inverted_weights2, bottom_left);
1966
1.59k
  const __m128i scaled_bottom_left3 =
1967
1.59k
      _mm_mullo_epi16(inverted_weights3, bottom_left);
1968
1.59k
  const __m128i scaled_bottom_left4 =
1969
1.59k
      _mm_mullo_epi16(inverted_weights4, bottom_left);
1970
1.59k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
1971
1972
14.3k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1973
12.7k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1974
12.7k
    const __m128i weights_y = _mm_shuffle_epi8(weights1, y_select);
1975
12.7k
    const __m128i scaled_bottom_left_y =
1976
12.7k
        _mm_shuffle_epi8(scaled_bottom_left1, y_select);
1977
12.7k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1978
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1979
12.7k
                                   round);
1980
12.7k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
1981
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1982
12.7k
                                   round);
1983
12.7k
    write_smooth_directional_sum16(dst + 32, top5, top6, weights_y, weights_y,
1984
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1985
12.7k
                                   round);
1986
12.7k
    write_smooth_directional_sum16(dst + 48, top7, top8, weights_y, weights_y,
1987
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1988
12.7k
                                   round);
1989
12.7k
    dst += stride;
1990
12.7k
  }
1991
14.3k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
1992
12.7k
    const __m128i y_select = _mm_set1_epi32(y_mask);
1993
12.7k
    const __m128i weights_y = _mm_shuffle_epi8(weights2, y_select);
1994
12.7k
    const __m128i scaled_bottom_left_y =
1995
12.7k
        _mm_shuffle_epi8(scaled_bottom_left2, y_select);
1996
12.7k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
1997
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
1998
12.7k
                                   round);
1999
12.7k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
2000
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
2001
12.7k
                                   round);
2002
12.7k
    write_smooth_directional_sum16(dst + 32, top5, top6, weights_y, weights_y,
2003
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
2004
12.7k
                                   round);
2005
12.7k
    write_smooth_directional_sum16(dst + 48, top7, top8, weights_y, weights_y,
2006
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
2007
12.7k
                                   round);
2008
12.7k
    dst += stride;
2009
12.7k
  }
2010
14.3k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2011
12.7k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2012
12.7k
    const __m128i weights_y = _mm_shuffle_epi8(weights3, y_select);
2013
12.7k
    const __m128i scaled_bottom_left_y =
2014
12.7k
        _mm_shuffle_epi8(scaled_bottom_left3, y_select);
2015
12.7k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
2016
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
2017
12.7k
                                   round);
2018
12.7k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
2019
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
2020
12.7k
                                   round);
2021
12.7k
    write_smooth_directional_sum16(dst + 32, top5, top6, weights_y, weights_y,
2022
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
2023
12.7k
                                   round);
2024
12.7k
    write_smooth_directional_sum16(dst + 48, top7, top8, weights_y, weights_y,
2025
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
2026
12.7k
                                   round);
2027
12.7k
    dst += stride;
2028
12.7k
  }
2029
14.3k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2030
12.7k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2031
12.7k
    const __m128i weights_y = _mm_shuffle_epi8(weights4, y_select);
2032
12.7k
    const __m128i scaled_bottom_left_y =
2033
12.7k
        _mm_shuffle_epi8(scaled_bottom_left4, y_select);
2034
12.7k
    write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
2035
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
2036
12.7k
                                   round);
2037
12.7k
    write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
2038
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
2039
12.7k
                                   round);
2040
12.7k
    write_smooth_directional_sum16(dst + 32, top5, top6, weights_y, weights_y,
2041
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
2042
12.7k
                                   round);
2043
12.7k
    write_smooth_directional_sum16(dst + 48, top7, top8, weights_y, weights_y,
2044
12.7k
                                   scaled_bottom_left_y, scaled_bottom_left_y,
2045
12.7k
                                   round);
2046
12.7k
    dst += stride;
2047
12.7k
  }
2048
1.59k
}
2049
2050
void aom_smooth_v_predictor_64x64_ssse3(
2051
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2052
    const uint8_t *LIBAOM_RESTRICT top_row,
2053
3.83k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2054
3.83k
  const __m128i zero = _mm_setzero_si128();
2055
3.83k
  const __m128i bottom_left = _mm_set1_epi16(left_column[63]);
2056
3.83k
  const __m128i top_lolo = LoadUnaligned16(top_row);
2057
3.83k
  const __m128i top_lohi = LoadUnaligned16(top_row + 16);
2058
3.83k
  const __m128i top1 = cvtepu8_epi16(top_lolo);
2059
3.83k
  const __m128i top2 = _mm_unpackhi_epi8(top_lolo, zero);
2060
3.83k
  const __m128i top3 = cvtepu8_epi16(top_lohi);
2061
3.83k
  const __m128i top4 = _mm_unpackhi_epi8(top_lohi, zero);
2062
3.83k
  const __m128i top_hilo = LoadUnaligned16(top_row + 32);
2063
3.83k
  const __m128i top_hihi = LoadUnaligned16(top_row + 48);
2064
3.83k
  const __m128i top5 = cvtepu8_epi16(top_hilo);
2065
3.83k
  const __m128i top6 = _mm_unpackhi_epi8(top_hilo, zero);
2066
3.83k
  const __m128i top7 = cvtepu8_epi16(top_hihi);
2067
3.83k
  const __m128i top8 = _mm_unpackhi_epi8(top_hihi, zero);
2068
3.83k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2069
3.83k
  const __m128i round = _mm_set1_epi16(128);
2070
3.83k
  const uint8_t *weights_base_ptr = smooth_weights + 60;
2071
19.1k
  for (int left_offset = 0; left_offset < 64; left_offset += 16) {
2072
15.3k
    const __m128i weights = LoadUnaligned16(weights_base_ptr + left_offset);
2073
15.3k
    const __m128i weights_lo = cvtepu8_epi16(weights);
2074
15.3k
    const __m128i weights_hi = _mm_unpackhi_epi8(weights, zero);
2075
15.3k
    const __m128i inverted_weights_lo = _mm_sub_epi16(scale, weights_lo);
2076
15.3k
    const __m128i inverted_weights_hi = _mm_sub_epi16(scale, weights_hi);
2077
15.3k
    const __m128i scaled_bottom_left_lo =
2078
15.3k
        _mm_mullo_epi16(inverted_weights_lo, bottom_left);
2079
15.3k
    const __m128i scaled_bottom_left_hi =
2080
15.3k
        _mm_mullo_epi16(inverted_weights_hi, bottom_left);
2081
138k
    for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2082
122k
      const __m128i y_select = _mm_set1_epi32(y_mask);
2083
122k
      const __m128i weights_y = _mm_shuffle_epi8(weights_lo, y_select);
2084
122k
      const __m128i scaled_bottom_left_y =
2085
122k
          _mm_shuffle_epi8(scaled_bottom_left_lo, y_select);
2086
122k
      write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
2087
122k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
2088
122k
                                     round);
2089
122k
      write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
2090
122k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
2091
122k
                                     round);
2092
122k
      write_smooth_directional_sum16(dst + 32, top5, top6, weights_y, weights_y,
2093
122k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
2094
122k
                                     round);
2095
122k
      write_smooth_directional_sum16(dst + 48, top7, top8, weights_y, weights_y,
2096
122k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
2097
122k
                                     round);
2098
122k
      dst += stride;
2099
122k
    }
2100
138k
    for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2101
122k
      const __m128i y_select = _mm_set1_epi32(y_mask);
2102
122k
      const __m128i weights_y = _mm_shuffle_epi8(weights_hi, y_select);
2103
122k
      const __m128i scaled_bottom_left_y =
2104
122k
          _mm_shuffle_epi8(scaled_bottom_left_hi, y_select);
2105
122k
      write_smooth_directional_sum16(dst, top1, top2, weights_y, weights_y,
2106
122k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
2107
122k
                                     round);
2108
122k
      write_smooth_directional_sum16(dst + 16, top3, top4, weights_y, weights_y,
2109
122k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
2110
122k
                                     round);
2111
122k
      write_smooth_directional_sum16(dst + 32, top5, top6, weights_y, weights_y,
2112
122k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
2113
122k
                                     round);
2114
122k
      write_smooth_directional_sum16(dst + 48, top7, top8, weights_y, weights_y,
2115
122k
                                     scaled_bottom_left_y, scaled_bottom_left_y,
2116
122k
                                     round);
2117
122k
      dst += stride;
2118
122k
    }
2119
15.3k
  }
2120
3.83k
}
2121
2122
// -----------------------------------------------------------------------------
2123
// SMOOTH_H_PRED
2124
static AOM_FORCE_INLINE void write_smooth_horizontal_sum4(
2125
    uint8_t *LIBAOM_RESTRICT dst, const __m128i *left_y, const __m128i *weights,
2126
437k
    const __m128i *scaled_top_right, const __m128i *round) {
2127
437k
  const __m128i weighted_left_y = _mm_mullo_epi16(*left_y, *weights);
2128
437k
  const __m128i pred_sum = _mm_add_epi32(*scaled_top_right, weighted_left_y);
2129
  // Equivalent to RightShiftWithRounding(pred[x][y], 8).
2130
437k
  const __m128i pred = _mm_srli_epi32(_mm_add_epi32(pred_sum, *round), 8);
2131
437k
  const __m128i cvtepi32_epi8 = _mm_set1_epi32(0x0C080400);
2132
437k
  Store4(dst, _mm_shuffle_epi8(pred, cvtepi32_epi8));
2133
437k
}
2134
2135
void aom_smooth_h_predictor_4x4_ssse3(
2136
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2137
    const uint8_t *LIBAOM_RESTRICT top_row,
2138
37.6k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2139
37.6k
  const __m128i top_right = _mm_set1_epi32(top_row[3]);
2140
37.6k
  const __m128i left = cvtepu8_epi32(Load4(left_column));
2141
37.6k
  const __m128i weights = cvtepu8_epi32(Load4(smooth_weights));
2142
37.6k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2143
37.6k
  const __m128i inverted_weights = _mm_sub_epi32(scale, weights);
2144
37.6k
  const __m128i scaled_top_right = _mm_mullo_epi16(inverted_weights, top_right);
2145
37.6k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2146
37.6k
  __m128i left_y = _mm_shuffle_epi32(left, 0);
2147
37.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2148
37.6k
                               &round);
2149
37.6k
  dst += stride;
2150
37.6k
  left_y = _mm_shuffle_epi32(left, 0x55);
2151
37.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2152
37.6k
                               &round);
2153
37.6k
  dst += stride;
2154
37.6k
  left_y = _mm_shuffle_epi32(left, 0xaa);
2155
37.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2156
37.6k
                               &round);
2157
37.6k
  dst += stride;
2158
37.6k
  left_y = _mm_shuffle_epi32(left, 0xff);
2159
37.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2160
37.6k
                               &round);
2161
37.6k
}
2162
2163
void aom_smooth_h_predictor_4x8_ssse3(
2164
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2165
    const uint8_t *LIBAOM_RESTRICT top_row,
2166
14.5k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2167
14.5k
  const __m128i top_right = _mm_set1_epi32(top_row[3]);
2168
14.5k
  const __m128i weights = cvtepu8_epi32(Load4(smooth_weights));
2169
14.5k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2170
14.5k
  const __m128i inverted_weights = _mm_sub_epi32(scale, weights);
2171
14.5k
  const __m128i scaled_top_right = _mm_mullo_epi16(inverted_weights, top_right);
2172
14.5k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2173
14.5k
  __m128i left = cvtepu8_epi32(Load4(left_column));
2174
14.5k
  __m128i left_y = _mm_shuffle_epi32(left, 0);
2175
14.5k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2176
14.5k
                               &round);
2177
14.5k
  dst += stride;
2178
14.5k
  left_y = _mm_shuffle_epi32(left, 0x55);
2179
14.5k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2180
14.5k
                               &round);
2181
14.5k
  dst += stride;
2182
14.5k
  left_y = _mm_shuffle_epi32(left, 0xaa);
2183
14.5k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2184
14.5k
                               &round);
2185
14.5k
  dst += stride;
2186
14.5k
  left_y = _mm_shuffle_epi32(left, 0xff);
2187
14.5k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2188
14.5k
                               &round);
2189
14.5k
  dst += stride;
2190
2191
14.5k
  left = cvtepu8_epi32(Load4(left_column + 4));
2192
14.5k
  left_y = _mm_shuffle_epi32(left, 0);
2193
14.5k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2194
14.5k
                               &round);
2195
14.5k
  dst += stride;
2196
14.5k
  left_y = _mm_shuffle_epi32(left, 0x55);
2197
14.5k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2198
14.5k
                               &round);
2199
14.5k
  dst += stride;
2200
14.5k
  left_y = _mm_shuffle_epi32(left, 0xaa);
2201
14.5k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2202
14.5k
                               &round);
2203
14.5k
  dst += stride;
2204
14.5k
  left_y = _mm_shuffle_epi32(left, 0xff);
2205
14.5k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2206
14.5k
                               &round);
2207
14.5k
}
2208
2209
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
2210
void aom_smooth_h_predictor_4x16_ssse3(
2211
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2212
    const uint8_t *LIBAOM_RESTRICT top_row,
2213
10.6k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2214
10.6k
  const __m128i top_right = _mm_set1_epi32(top_row[3]);
2215
10.6k
  const __m128i weights = cvtepu8_epi32(Load4(smooth_weights));
2216
10.6k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2217
10.6k
  const __m128i inverted_weights = _mm_sub_epi32(scale, weights);
2218
10.6k
  const __m128i scaled_top_right = _mm_mullo_epi16(inverted_weights, top_right);
2219
10.6k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2220
10.6k
  __m128i left = cvtepu8_epi32(Load4(left_column));
2221
10.6k
  __m128i left_y = _mm_shuffle_epi32(left, 0);
2222
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2223
10.6k
                               &round);
2224
10.6k
  dst += stride;
2225
10.6k
  left_y = _mm_shuffle_epi32(left, 0x55);
2226
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2227
10.6k
                               &round);
2228
10.6k
  dst += stride;
2229
10.6k
  left_y = _mm_shuffle_epi32(left, 0xaa);
2230
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2231
10.6k
                               &round);
2232
10.6k
  dst += stride;
2233
10.6k
  left_y = _mm_shuffle_epi32(left, 0xff);
2234
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2235
10.6k
                               &round);
2236
10.6k
  dst += stride;
2237
2238
10.6k
  left = cvtepu8_epi32(Load4(left_column + 4));
2239
10.6k
  left_y = _mm_shuffle_epi32(left, 0);
2240
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2241
10.6k
                               &round);
2242
10.6k
  dst += stride;
2243
10.6k
  left_y = _mm_shuffle_epi32(left, 0x55);
2244
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2245
10.6k
                               &round);
2246
10.6k
  dst += stride;
2247
10.6k
  left_y = _mm_shuffle_epi32(left, 0xaa);
2248
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2249
10.6k
                               &round);
2250
10.6k
  dst += stride;
2251
10.6k
  left_y = _mm_shuffle_epi32(left, 0xff);
2252
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2253
10.6k
                               &round);
2254
10.6k
  dst += stride;
2255
2256
10.6k
  left = cvtepu8_epi32(Load4(left_column + 8));
2257
10.6k
  left_y = _mm_shuffle_epi32(left, 0);
2258
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2259
10.6k
                               &round);
2260
10.6k
  dst += stride;
2261
10.6k
  left_y = _mm_shuffle_epi32(left, 0x55);
2262
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2263
10.6k
                               &round);
2264
10.6k
  dst += stride;
2265
10.6k
  left_y = _mm_shuffle_epi32(left, 0xaa);
2266
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2267
10.6k
                               &round);
2268
10.6k
  dst += stride;
2269
10.6k
  left_y = _mm_shuffle_epi32(left, 0xff);
2270
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2271
10.6k
                               &round);
2272
10.6k
  dst += stride;
2273
2274
10.6k
  left = cvtepu8_epi32(Load4(left_column + 12));
2275
10.6k
  left_y = _mm_shuffle_epi32(left, 0);
2276
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2277
10.6k
                               &round);
2278
10.6k
  dst += stride;
2279
10.6k
  left_y = _mm_shuffle_epi32(left, 0x55);
2280
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2281
10.6k
                               &round);
2282
10.6k
  dst += stride;
2283
10.6k
  left_y = _mm_shuffle_epi32(left, 0xaa);
2284
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2285
10.6k
                               &round);
2286
10.6k
  dst += stride;
2287
10.6k
  left_y = _mm_shuffle_epi32(left, 0xff);
2288
10.6k
  write_smooth_horizontal_sum4(dst, &left_y, &weights, &scaled_top_right,
2289
10.6k
                               &round);
2290
10.6k
}
2291
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
2292
2293
// For SMOOTH_H, |pixels| is the repeated left value for the row. For SMOOTH_V,
2294
// |pixels| is a segment of the top row or the whole top row, and |weights| is
2295
// repeated.
2296
void aom_smooth_h_predictor_8x4_ssse3(
2297
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2298
    const uint8_t *LIBAOM_RESTRICT top_row,
2299
25.1k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2300
25.1k
  const __m128i top_right = _mm_set1_epi16(top_row[7]);
2301
25.1k
  const __m128i left = cvtepu8_epi16(Load4(left_column));
2302
25.1k
  const __m128i weights = cvtepu8_epi16(LoadLo8(smooth_weights + 4));
2303
25.1k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2304
25.1k
  const __m128i inverted_weights = _mm_sub_epi16(scale, weights);
2305
25.1k
  const __m128i scaled_top_right = _mm_mullo_epi16(inverted_weights, top_right);
2306
25.1k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2307
25.1k
  __m128i y_select = _mm_set1_epi32(0x01000100);
2308
25.1k
  __m128i left_y = _mm_shuffle_epi8(left, y_select);
2309
25.1k
  write_smooth_directional_sum8(dst, &left_y, &weights, &scaled_top_right,
2310
25.1k
                                &round);
2311
25.1k
  dst += stride;
2312
25.1k
  y_select = _mm_set1_epi32(0x03020302);
2313
25.1k
  left_y = _mm_shuffle_epi8(left, y_select);
2314
25.1k
  write_smooth_directional_sum8(dst, &left_y, &weights, &scaled_top_right,
2315
25.1k
                                &round);
2316
25.1k
  dst += stride;
2317
25.1k
  y_select = _mm_set1_epi32(0x05040504);
2318
25.1k
  left_y = _mm_shuffle_epi8(left, y_select);
2319
25.1k
  write_smooth_directional_sum8(dst, &left_y, &weights, &scaled_top_right,
2320
25.1k
                                &round);
2321
25.1k
  dst += stride;
2322
25.1k
  y_select = _mm_set1_epi32(0x07060706);
2323
25.1k
  left_y = _mm_shuffle_epi8(left, y_select);
2324
25.1k
  write_smooth_directional_sum8(dst, &left_y, &weights, &scaled_top_right,
2325
25.1k
                                &round);
2326
25.1k
}
2327
2328
void aom_smooth_h_predictor_8x8_ssse3(
2329
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2330
    const uint8_t *LIBAOM_RESTRICT top_row,
2331
33.5k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2332
33.5k
  const __m128i top_right = _mm_set1_epi16(top_row[7]);
2333
33.5k
  const __m128i left = cvtepu8_epi16(LoadLo8(left_column));
2334
33.5k
  const __m128i weights = cvtepu8_epi16(LoadLo8(smooth_weights + 4));
2335
33.5k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2336
33.5k
  const __m128i inverted_weights = _mm_sub_epi16(scale, weights);
2337
33.5k
  const __m128i scaled_top_right = _mm_mullo_epi16(inverted_weights, top_right);
2338
33.5k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2339
301k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2340
268k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2341
268k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2342
268k
    write_smooth_directional_sum8(dst, &left_y, &weights, &scaled_top_right,
2343
268k
                                  &round);
2344
268k
    dst += stride;
2345
268k
  }
2346
33.5k
}
2347
2348
void aom_smooth_h_predictor_8x16_ssse3(
2349
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2350
    const uint8_t *LIBAOM_RESTRICT top_row,
2351
13.9k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2352
13.9k
  const __m128i top_right = _mm_set1_epi16(top_row[7]);
2353
13.9k
  const __m128i weights = cvtepu8_epi16(LoadLo8(smooth_weights + 4));
2354
13.9k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2355
13.9k
  const __m128i inverted_weights = _mm_sub_epi16(scale, weights);
2356
13.9k
  const __m128i scaled_top_right = _mm_mullo_epi16(inverted_weights, top_right);
2357
13.9k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2358
13.9k
  __m128i left = cvtepu8_epi16(LoadLo8(left_column));
2359
125k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2360
111k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2361
111k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2362
111k
    write_smooth_directional_sum8(dst, &left_y, &weights, &scaled_top_right,
2363
111k
                                  &round);
2364
111k
    dst += stride;
2365
111k
  }
2366
13.9k
  left = cvtepu8_epi16(LoadLo8(left_column + 8));
2367
125k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2368
111k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2369
111k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2370
111k
    write_smooth_directional_sum8(dst, &left_y, &weights, &scaled_top_right,
2371
111k
                                  &round);
2372
111k
    dst += stride;
2373
111k
  }
2374
13.9k
}
2375
2376
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
2377
void aom_smooth_h_predictor_8x32_ssse3(
2378
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2379
    const uint8_t *LIBAOM_RESTRICT top_row,
2380
6.01k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2381
6.01k
  const __m128i top_right = _mm_set1_epi16(top_row[7]);
2382
6.01k
  const __m128i weights = cvtepu8_epi16(LoadLo8(smooth_weights + 4));
2383
6.01k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2384
6.01k
  const __m128i inverted_weights = _mm_sub_epi16(scale, weights);
2385
6.01k
  const __m128i scaled_top_right = _mm_mullo_epi16(inverted_weights, top_right);
2386
6.01k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2387
6.01k
  __m128i left = cvtepu8_epi16(LoadLo8(left_column));
2388
54.1k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2389
48.1k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2390
48.1k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2391
48.1k
    write_smooth_directional_sum8(dst, &left_y, &weights, &scaled_top_right,
2392
48.1k
                                  &round);
2393
48.1k
    dst += stride;
2394
48.1k
  }
2395
6.01k
  left = cvtepu8_epi16(LoadLo8(left_column + 8));
2396
54.1k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2397
48.1k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2398
48.1k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2399
48.1k
    write_smooth_directional_sum8(dst, &left_y, &weights, &scaled_top_right,
2400
48.1k
                                  &round);
2401
48.1k
    dst += stride;
2402
48.1k
  }
2403
6.01k
  left = cvtepu8_epi16(LoadLo8(left_column + 16));
2404
54.1k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2405
48.1k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2406
48.1k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2407
48.1k
    write_smooth_directional_sum8(dst, &left_y, &weights, &scaled_top_right,
2408
48.1k
                                  &round);
2409
48.1k
    dst += stride;
2410
48.1k
  }
2411
6.01k
  left = cvtepu8_epi16(LoadLo8(left_column + 24));
2412
54.1k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2413
48.1k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2414
48.1k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2415
48.1k
    write_smooth_directional_sum8(dst, &left_y, &weights, &scaled_top_right,
2416
48.1k
                                  &round);
2417
48.1k
    dst += stride;
2418
48.1k
  }
2419
6.01k
}
2420
2421
void aom_smooth_h_predictor_16x4_ssse3(
2422
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2423
    const uint8_t *LIBAOM_RESTRICT top_row,
2424
20.2k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2425
20.2k
  const __m128i top_right = _mm_set1_epi16(top_row[15]);
2426
20.2k
  const __m128i left = cvtepu8_epi16(Load4(left_column));
2427
20.2k
  const __m128i weights = LoadUnaligned16(smooth_weights + 12);
2428
20.2k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2429
20.2k
  const __m128i weights1 = cvtepu8_epi16(weights);
2430
20.2k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights, 8));
2431
20.2k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2432
20.2k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2433
20.2k
  const __m128i scaled_top_right1 =
2434
20.2k
      _mm_mullo_epi16(inverted_weights1, top_right);
2435
20.2k
  const __m128i scaled_top_right2 =
2436
20.2k
      _mm_mullo_epi16(inverted_weights2, top_right);
2437
20.2k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2438
20.2k
  __m128i y_mask = _mm_set1_epi32(0x01000100);
2439
20.2k
  __m128i left_y = _mm_shuffle_epi8(left, y_mask);
2440
20.2k
  write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2441
20.2k
                                 scaled_top_right1, scaled_top_right2, round);
2442
20.2k
  dst += stride;
2443
20.2k
  y_mask = _mm_set1_epi32(0x03020302);
2444
20.2k
  left_y = _mm_shuffle_epi8(left, y_mask);
2445
20.2k
  write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2446
20.2k
                                 scaled_top_right1, scaled_top_right2, round);
2447
20.2k
  dst += stride;
2448
20.2k
  y_mask = _mm_set1_epi32(0x05040504);
2449
20.2k
  left_y = _mm_shuffle_epi8(left, y_mask);
2450
20.2k
  write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2451
20.2k
                                 scaled_top_right1, scaled_top_right2, round);
2452
20.2k
  dst += stride;
2453
20.2k
  y_mask = _mm_set1_epi32(0x07060706);
2454
20.2k
  left_y = _mm_shuffle_epi8(left, y_mask);
2455
20.2k
  write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2456
20.2k
                                 scaled_top_right1, scaled_top_right2, round);
2457
20.2k
}
2458
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
2459
2460
void aom_smooth_h_predictor_16x8_ssse3(
2461
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2462
    const uint8_t *LIBAOM_RESTRICT top_row,
2463
17.1k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2464
17.1k
  const __m128i top_right = _mm_set1_epi16(top_row[15]);
2465
17.1k
  const __m128i left = cvtepu8_epi16(LoadLo8(left_column));
2466
17.1k
  const __m128i weights = LoadUnaligned16(smooth_weights + 12);
2467
17.1k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2468
17.1k
  const __m128i weights1 = cvtepu8_epi16(weights);
2469
17.1k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights, 8));
2470
17.1k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2471
17.1k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2472
17.1k
  const __m128i scaled_top_right1 =
2473
17.1k
      _mm_mullo_epi16(inverted_weights1, top_right);
2474
17.1k
  const __m128i scaled_top_right2 =
2475
17.1k
      _mm_mullo_epi16(inverted_weights2, top_right);
2476
17.1k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2477
154k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2478
137k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2479
137k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2480
137k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2481
137k
                                   scaled_top_right1, scaled_top_right2, round);
2482
137k
    dst += stride;
2483
137k
  }
2484
17.1k
}
2485
2486
void aom_smooth_h_predictor_16x16_ssse3(
2487
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2488
    const uint8_t *LIBAOM_RESTRICT top_row,
2489
31.1k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2490
31.1k
  const __m128i top_right = _mm_set1_epi16(top_row[15]);
2491
31.1k
  const __m128i weights = LoadUnaligned16(smooth_weights + 12);
2492
31.1k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2493
31.1k
  const __m128i weights1 = cvtepu8_epi16(weights);
2494
31.1k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights, 8));
2495
31.1k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2496
31.1k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2497
31.1k
  const __m128i scaled_top_right1 =
2498
31.1k
      _mm_mullo_epi16(inverted_weights1, top_right);
2499
31.1k
  const __m128i scaled_top_right2 =
2500
31.1k
      _mm_mullo_epi16(inverted_weights2, top_right);
2501
31.1k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2502
31.1k
  __m128i left = cvtepu8_epi16(LoadLo8(left_column));
2503
280k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2504
248k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2505
248k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2506
248k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2507
248k
                                   scaled_top_right1, scaled_top_right2, round);
2508
248k
    dst += stride;
2509
248k
  }
2510
31.1k
  left = cvtepu8_epi16(LoadLo8(left_column + 8));
2511
280k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2512
248k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2513
248k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2514
248k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2515
248k
                                   scaled_top_right1, scaled_top_right2, round);
2516
248k
    dst += stride;
2517
248k
  }
2518
31.1k
}
2519
2520
void aom_smooth_h_predictor_16x32_ssse3(
2521
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2522
    const uint8_t *LIBAOM_RESTRICT top_row,
2523
9.99k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2524
9.99k
  const __m128i top_right = _mm_set1_epi16(top_row[15]);
2525
9.99k
  const __m128i weights = LoadUnaligned16(smooth_weights + 12);
2526
9.99k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2527
9.99k
  const __m128i weights1 = cvtepu8_epi16(weights);
2528
9.99k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights, 8));
2529
9.99k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2530
9.99k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2531
9.99k
  const __m128i scaled_top_right1 =
2532
9.99k
      _mm_mullo_epi16(inverted_weights1, top_right);
2533
9.99k
  const __m128i scaled_top_right2 =
2534
9.99k
      _mm_mullo_epi16(inverted_weights2, top_right);
2535
9.99k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2536
9.99k
  __m128i left = cvtepu8_epi16(LoadLo8(left_column));
2537
89.9k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2538
79.9k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2539
79.9k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2540
79.9k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2541
79.9k
                                   scaled_top_right1, scaled_top_right2, round);
2542
79.9k
    dst += stride;
2543
79.9k
  }
2544
9.99k
  left = cvtepu8_epi16(LoadLo8(left_column + 8));
2545
89.9k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2546
79.9k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2547
79.9k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2548
79.9k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2549
79.9k
                                   scaled_top_right1, scaled_top_right2, round);
2550
79.9k
    dst += stride;
2551
79.9k
  }
2552
9.99k
  left = cvtepu8_epi16(LoadLo8(left_column + 16));
2553
89.9k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2554
79.9k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2555
79.9k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2556
79.9k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2557
79.9k
                                   scaled_top_right1, scaled_top_right2, round);
2558
79.9k
    dst += stride;
2559
79.9k
  }
2560
9.99k
  left = cvtepu8_epi16(LoadLo8(left_column + 24));
2561
89.9k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2562
79.9k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2563
79.9k
    const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2564
79.9k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2565
79.9k
                                   scaled_top_right1, scaled_top_right2, round);
2566
79.9k
    dst += stride;
2567
79.9k
  }
2568
9.99k
}
2569
2570
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
2571
void aom_smooth_h_predictor_16x64_ssse3(
2572
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2573
    const uint8_t *LIBAOM_RESTRICT top_row,
2574
2.48k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2575
2.48k
  const __m128i top_right = _mm_set1_epi16(top_row[15]);
2576
2.48k
  const __m128i weights = LoadUnaligned16(smooth_weights + 12);
2577
2.48k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2578
2.48k
  const __m128i weights1 = cvtepu8_epi16(weights);
2579
2.48k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights, 8));
2580
2.48k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2581
2.48k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2582
2.48k
  const __m128i scaled_top_right1 =
2583
2.48k
      _mm_mullo_epi16(inverted_weights1, top_right);
2584
2.48k
  const __m128i scaled_top_right2 =
2585
2.48k
      _mm_mullo_epi16(inverted_weights2, top_right);
2586
2.48k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2587
22.3k
  for (int left_offset = 0; left_offset < 64; left_offset += 8) {
2588
19.8k
    const __m128i left = cvtepu8_epi16(LoadLo8(left_column + left_offset));
2589
178k
    for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2590
159k
      const __m128i y_select = _mm_set1_epi32(y_mask);
2591
159k
      const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2592
159k
      write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2593
159k
                                     scaled_top_right1, scaled_top_right2,
2594
159k
                                     round);
2595
159k
      dst += stride;
2596
159k
    }
2597
19.8k
  }
2598
2.48k
}
2599
2600
void aom_smooth_h_predictor_32x8_ssse3(
2601
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2602
    const uint8_t *LIBAOM_RESTRICT top_row,
2603
14.7k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2604
14.7k
  const __m128i top_right = _mm_set1_epi16(top_row[31]);
2605
14.7k
  const __m128i left = cvtepu8_epi16(LoadLo8(left_column));
2606
14.7k
  const __m128i weights_lo = LoadUnaligned16(smooth_weights + 28);
2607
14.7k
  const __m128i weights_hi = LoadUnaligned16(smooth_weights + 44);
2608
14.7k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2609
14.7k
  const __m128i weights1 = cvtepu8_epi16(weights_lo);
2610
14.7k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights_lo, 8));
2611
14.7k
  const __m128i weights3 = cvtepu8_epi16(weights_hi);
2612
14.7k
  const __m128i weights4 = cvtepu8_epi16(_mm_srli_si128(weights_hi, 8));
2613
14.7k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2614
14.7k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2615
14.7k
  const __m128i inverted_weights3 = _mm_sub_epi16(scale, weights3);
2616
14.7k
  const __m128i inverted_weights4 = _mm_sub_epi16(scale, weights4);
2617
14.7k
  const __m128i scaled_top_right1 =
2618
14.7k
      _mm_mullo_epi16(inverted_weights1, top_right);
2619
14.7k
  const __m128i scaled_top_right2 =
2620
14.7k
      _mm_mullo_epi16(inverted_weights2, top_right);
2621
14.7k
  const __m128i scaled_top_right3 =
2622
14.7k
      _mm_mullo_epi16(inverted_weights3, top_right);
2623
14.7k
  const __m128i scaled_top_right4 =
2624
14.7k
      _mm_mullo_epi16(inverted_weights4, top_right);
2625
14.7k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2626
132k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2627
117k
    __m128i y_select = _mm_set1_epi32(y_mask);
2628
117k
    __m128i left_y = _mm_shuffle_epi8(left, y_select);
2629
117k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2630
117k
                                   scaled_top_right1, scaled_top_right2, round);
2631
117k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2632
117k
                                   scaled_top_right3, scaled_top_right4, round);
2633
117k
    dst += stride;
2634
117k
  }
2635
14.7k
}
2636
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
2637
2638
void aom_smooth_h_predictor_32x16_ssse3(
2639
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2640
    const uint8_t *LIBAOM_RESTRICT top_row,
2641
6.26k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2642
6.26k
  const __m128i top_right = _mm_set1_epi16(top_row[31]);
2643
6.26k
  const __m128i left1 = cvtepu8_epi16(LoadLo8(left_column));
2644
6.26k
  const __m128i weights_lo = LoadUnaligned16(smooth_weights + 28);
2645
6.26k
  const __m128i weights_hi = LoadUnaligned16(smooth_weights + 44);
2646
6.26k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2647
6.26k
  const __m128i weights1 = cvtepu8_epi16(weights_lo);
2648
6.26k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights_lo, 8));
2649
6.26k
  const __m128i weights3 = cvtepu8_epi16(weights_hi);
2650
6.26k
  const __m128i weights4 = cvtepu8_epi16(_mm_srli_si128(weights_hi, 8));
2651
6.26k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2652
6.26k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2653
6.26k
  const __m128i inverted_weights3 = _mm_sub_epi16(scale, weights3);
2654
6.26k
  const __m128i inverted_weights4 = _mm_sub_epi16(scale, weights4);
2655
6.26k
  const __m128i scaled_top_right1 =
2656
6.26k
      _mm_mullo_epi16(inverted_weights1, top_right);
2657
6.26k
  const __m128i scaled_top_right2 =
2658
6.26k
      _mm_mullo_epi16(inverted_weights2, top_right);
2659
6.26k
  const __m128i scaled_top_right3 =
2660
6.26k
      _mm_mullo_epi16(inverted_weights3, top_right);
2661
6.26k
  const __m128i scaled_top_right4 =
2662
6.26k
      _mm_mullo_epi16(inverted_weights4, top_right);
2663
6.26k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2664
56.3k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2665
50.0k
    __m128i y_select = _mm_set1_epi32(y_mask);
2666
50.0k
    __m128i left_y = _mm_shuffle_epi8(left1, y_select);
2667
50.0k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2668
50.0k
                                   scaled_top_right1, scaled_top_right2, round);
2669
50.0k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2670
50.0k
                                   scaled_top_right3, scaled_top_right4, round);
2671
50.0k
    dst += stride;
2672
50.0k
  }
2673
6.26k
  const __m128i left2 =
2674
6.26k
      cvtepu8_epi16(LoadLo8((const uint8_t *)left_column + 8));
2675
56.3k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2676
50.0k
    __m128i y_select = _mm_set1_epi32(y_mask);
2677
50.0k
    __m128i left_y = _mm_shuffle_epi8(left2, y_select);
2678
50.0k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2679
50.0k
                                   scaled_top_right1, scaled_top_right2, round);
2680
50.0k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2681
50.0k
                                   scaled_top_right3, scaled_top_right4, round);
2682
50.0k
    dst += stride;
2683
50.0k
  }
2684
6.26k
}
2685
2686
void aom_smooth_h_predictor_32x32_ssse3(
2687
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2688
    const uint8_t *LIBAOM_RESTRICT top_row,
2689
31.4k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2690
31.4k
  const __m128i top_right = _mm_set1_epi16(top_row[31]);
2691
31.4k
  const __m128i weights_lo = LoadUnaligned16(smooth_weights + 28);
2692
31.4k
  const __m128i weights_hi = LoadUnaligned16(smooth_weights + 44);
2693
31.4k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2694
31.4k
  const __m128i weights1 = cvtepu8_epi16(weights_lo);
2695
31.4k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights_lo, 8));
2696
31.4k
  const __m128i weights3 = cvtepu8_epi16(weights_hi);
2697
31.4k
  const __m128i weights4 = cvtepu8_epi16(_mm_srli_si128(weights_hi, 8));
2698
31.4k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2699
31.4k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2700
31.4k
  const __m128i inverted_weights3 = _mm_sub_epi16(scale, weights3);
2701
31.4k
  const __m128i inverted_weights4 = _mm_sub_epi16(scale, weights4);
2702
31.4k
  const __m128i scaled_top_right1 =
2703
31.4k
      _mm_mullo_epi16(inverted_weights1, top_right);
2704
31.4k
  const __m128i scaled_top_right2 =
2705
31.4k
      _mm_mullo_epi16(inverted_weights2, top_right);
2706
31.4k
  const __m128i scaled_top_right3 =
2707
31.4k
      _mm_mullo_epi16(inverted_weights3, top_right);
2708
31.4k
  const __m128i scaled_top_right4 =
2709
31.4k
      _mm_mullo_epi16(inverted_weights4, top_right);
2710
31.4k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2711
31.4k
  __m128i left = cvtepu8_epi16(LoadLo8(left_column));
2712
283k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2713
251k
    __m128i y_select = _mm_set1_epi32(y_mask);
2714
251k
    __m128i left_y = _mm_shuffle_epi8(left, y_select);
2715
251k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2716
251k
                                   scaled_top_right1, scaled_top_right2, round);
2717
251k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2718
251k
                                   scaled_top_right3, scaled_top_right4, round);
2719
251k
    dst += stride;
2720
251k
  }
2721
31.4k
  left = cvtepu8_epi16(LoadLo8(left_column + 8));
2722
283k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2723
251k
    __m128i y_select = _mm_set1_epi32(y_mask);
2724
251k
    __m128i left_y = _mm_shuffle_epi8(left, y_select);
2725
251k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2726
251k
                                   scaled_top_right1, scaled_top_right2, round);
2727
251k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2728
251k
                                   scaled_top_right3, scaled_top_right4, round);
2729
251k
    dst += stride;
2730
251k
  }
2731
31.4k
  left = cvtepu8_epi16(LoadLo8(left_column + 16));
2732
283k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2733
251k
    __m128i y_select = _mm_set1_epi32(y_mask);
2734
251k
    __m128i left_y = _mm_shuffle_epi8(left, y_select);
2735
251k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2736
251k
                                   scaled_top_right1, scaled_top_right2, round);
2737
251k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2738
251k
                                   scaled_top_right3, scaled_top_right4, round);
2739
251k
    dst += stride;
2740
251k
  }
2741
31.4k
  left = cvtepu8_epi16(LoadLo8(left_column + 24));
2742
283k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2743
251k
    __m128i y_select = _mm_set1_epi32(y_mask);
2744
251k
    __m128i left_y = _mm_shuffle_epi8(left, y_select);
2745
251k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2746
251k
                                   scaled_top_right1, scaled_top_right2, round);
2747
251k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2748
251k
                                   scaled_top_right3, scaled_top_right4, round);
2749
251k
    dst += stride;
2750
251k
  }
2751
31.4k
}
2752
2753
void aom_smooth_h_predictor_32x64_ssse3(
2754
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2755
    const uint8_t *LIBAOM_RESTRICT top_row,
2756
671
    const uint8_t *LIBAOM_RESTRICT left_column) {
2757
671
  const __m128i top_right = _mm_set1_epi16(top_row[31]);
2758
671
  const __m128i weights_lo = LoadUnaligned16(smooth_weights + 28);
2759
671
  const __m128i weights_hi = LoadUnaligned16(smooth_weights + 44);
2760
671
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2761
671
  const __m128i weights1 = cvtepu8_epi16(weights_lo);
2762
671
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights_lo, 8));
2763
671
  const __m128i weights3 = cvtepu8_epi16(weights_hi);
2764
671
  const __m128i weights4 = cvtepu8_epi16(_mm_srli_si128(weights_hi, 8));
2765
671
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2766
671
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2767
671
  const __m128i inverted_weights3 = _mm_sub_epi16(scale, weights3);
2768
671
  const __m128i inverted_weights4 = _mm_sub_epi16(scale, weights4);
2769
671
  const __m128i scaled_top_right1 =
2770
671
      _mm_mullo_epi16(inverted_weights1, top_right);
2771
671
  const __m128i scaled_top_right2 =
2772
671
      _mm_mullo_epi16(inverted_weights2, top_right);
2773
671
  const __m128i scaled_top_right3 =
2774
671
      _mm_mullo_epi16(inverted_weights3, top_right);
2775
671
  const __m128i scaled_top_right4 =
2776
671
      _mm_mullo_epi16(inverted_weights4, top_right);
2777
671
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2778
6.03k
  for (int left_offset = 0; left_offset < 64; left_offset += 8) {
2779
5.36k
    const __m128i left = cvtepu8_epi16(LoadLo8(left_column + left_offset));
2780
48.3k
    for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2781
42.9k
      const __m128i y_select = _mm_set1_epi32(y_mask);
2782
42.9k
      const __m128i left_y = _mm_shuffle_epi8(left, y_select);
2783
42.9k
      write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2784
42.9k
                                     scaled_top_right1, scaled_top_right2,
2785
42.9k
                                     round);
2786
42.9k
      write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3,
2787
42.9k
                                     weights4, scaled_top_right3,
2788
42.9k
                                     scaled_top_right4, round);
2789
42.9k
      dst += stride;
2790
42.9k
    }
2791
5.36k
  }
2792
671
}
2793
2794
#if !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
2795
void aom_smooth_h_predictor_64x16_ssse3(
2796
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2797
    const uint8_t *LIBAOM_RESTRICT top_row,
2798
3.67k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2799
3.67k
  const __m128i top_right = _mm_set1_epi16(top_row[63]);
2800
3.67k
  const __m128i left1 = cvtepu8_epi16(LoadLo8(left_column));
2801
3.67k
  const __m128i weights_lolo = LoadUnaligned16(smooth_weights + 60);
2802
3.67k
  const __m128i weights_lohi = LoadUnaligned16(smooth_weights + 76);
2803
3.67k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2804
3.67k
  const __m128i weights1 = cvtepu8_epi16(weights_lolo);
2805
3.67k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights_lolo, 8));
2806
3.67k
  const __m128i weights3 = cvtepu8_epi16(weights_lohi);
2807
3.67k
  const __m128i weights4 = cvtepu8_epi16(_mm_srli_si128(weights_lohi, 8));
2808
3.67k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2809
3.67k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2810
3.67k
  const __m128i inverted_weights3 = _mm_sub_epi16(scale, weights3);
2811
3.67k
  const __m128i inverted_weights4 = _mm_sub_epi16(scale, weights4);
2812
3.67k
  const __m128i scaled_top_right1 =
2813
3.67k
      _mm_mullo_epi16(inverted_weights1, top_right);
2814
3.67k
  const __m128i scaled_top_right2 =
2815
3.67k
      _mm_mullo_epi16(inverted_weights2, top_right);
2816
3.67k
  const __m128i scaled_top_right3 =
2817
3.67k
      _mm_mullo_epi16(inverted_weights3, top_right);
2818
3.67k
  const __m128i scaled_top_right4 =
2819
3.67k
      _mm_mullo_epi16(inverted_weights4, top_right);
2820
3.67k
  const __m128i weights_hilo = LoadUnaligned16(smooth_weights + 92);
2821
3.67k
  const __m128i weights_hihi = LoadUnaligned16(smooth_weights + 108);
2822
3.67k
  const __m128i weights5 = cvtepu8_epi16(weights_hilo);
2823
3.67k
  const __m128i weights6 = cvtepu8_epi16(_mm_srli_si128(weights_hilo, 8));
2824
3.67k
  const __m128i weights7 = cvtepu8_epi16(weights_hihi);
2825
3.67k
  const __m128i weights8 = cvtepu8_epi16(_mm_srli_si128(weights_hihi, 8));
2826
3.67k
  const __m128i inverted_weights5 = _mm_sub_epi16(scale, weights5);
2827
3.67k
  const __m128i inverted_weights6 = _mm_sub_epi16(scale, weights6);
2828
3.67k
  const __m128i inverted_weights7 = _mm_sub_epi16(scale, weights7);
2829
3.67k
  const __m128i inverted_weights8 = _mm_sub_epi16(scale, weights8);
2830
3.67k
  const __m128i scaled_top_right5 =
2831
3.67k
      _mm_mullo_epi16(inverted_weights5, top_right);
2832
3.67k
  const __m128i scaled_top_right6 =
2833
3.67k
      _mm_mullo_epi16(inverted_weights6, top_right);
2834
3.67k
  const __m128i scaled_top_right7 =
2835
3.67k
      _mm_mullo_epi16(inverted_weights7, top_right);
2836
3.67k
  const __m128i scaled_top_right8 =
2837
3.67k
      _mm_mullo_epi16(inverted_weights8, top_right);
2838
3.67k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2839
33.0k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2840
29.4k
    __m128i y_select = _mm_set1_epi32(y_mask);
2841
29.4k
    __m128i left_y = _mm_shuffle_epi8(left1, y_select);
2842
29.4k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2843
29.4k
                                   scaled_top_right1, scaled_top_right2, round);
2844
29.4k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2845
29.4k
                                   scaled_top_right3, scaled_top_right4, round);
2846
29.4k
    write_smooth_directional_sum16(dst + 32, left_y, left_y, weights5, weights6,
2847
29.4k
                                   scaled_top_right5, scaled_top_right6, round);
2848
29.4k
    write_smooth_directional_sum16(dst + 48, left_y, left_y, weights7, weights8,
2849
29.4k
                                   scaled_top_right7, scaled_top_right8, round);
2850
29.4k
    dst += stride;
2851
29.4k
  }
2852
3.67k
  const __m128i left2 = cvtepu8_epi16(LoadLo8(left_column + 8));
2853
33.0k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2854
29.4k
    __m128i y_select = _mm_set1_epi32(y_mask);
2855
29.4k
    __m128i left_y = _mm_shuffle_epi8(left2, y_select);
2856
29.4k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2857
29.4k
                                   scaled_top_right1, scaled_top_right2, round);
2858
29.4k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2859
29.4k
                                   scaled_top_right3, scaled_top_right4, round);
2860
29.4k
    write_smooth_directional_sum16(dst + 32, left_y, left_y, weights5, weights6,
2861
29.4k
                                   scaled_top_right5, scaled_top_right6, round);
2862
29.4k
    write_smooth_directional_sum16(dst + 48, left_y, left_y, weights7, weights8,
2863
29.4k
                                   scaled_top_right7, scaled_top_right8, round);
2864
29.4k
    dst += stride;
2865
29.4k
  }
2866
3.67k
}
2867
#endif  // !CONFIG_REALTIME_ONLY || CONFIG_AV1_DECODER
2868
2869
void aom_smooth_h_predictor_64x32_ssse3(
2870
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2871
    const uint8_t *LIBAOM_RESTRICT top_row,
2872
1.24k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2873
1.24k
  const __m128i top_right = _mm_set1_epi16(top_row[63]);
2874
1.24k
  const __m128i left1 = cvtepu8_epi16(LoadLo8(left_column));
2875
1.24k
  const __m128i weights_lolo = LoadUnaligned16(smooth_weights + 60);
2876
1.24k
  const __m128i weights_lohi = LoadUnaligned16(smooth_weights + 76);
2877
1.24k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2878
1.24k
  const __m128i weights1 = cvtepu8_epi16(weights_lolo);
2879
1.24k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights_lolo, 8));
2880
1.24k
  const __m128i weights3 = cvtepu8_epi16(weights_lohi);
2881
1.24k
  const __m128i weights4 = cvtepu8_epi16(_mm_srli_si128(weights_lohi, 8));
2882
1.24k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2883
1.24k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2884
1.24k
  const __m128i inverted_weights3 = _mm_sub_epi16(scale, weights3);
2885
1.24k
  const __m128i inverted_weights4 = _mm_sub_epi16(scale, weights4);
2886
1.24k
  const __m128i scaled_top_right1 =
2887
1.24k
      _mm_mullo_epi16(inverted_weights1, top_right);
2888
1.24k
  const __m128i scaled_top_right2 =
2889
1.24k
      _mm_mullo_epi16(inverted_weights2, top_right);
2890
1.24k
  const __m128i scaled_top_right3 =
2891
1.24k
      _mm_mullo_epi16(inverted_weights3, top_right);
2892
1.24k
  const __m128i scaled_top_right4 =
2893
1.24k
      _mm_mullo_epi16(inverted_weights4, top_right);
2894
1.24k
  const __m128i weights_hilo = LoadUnaligned16(smooth_weights + 92);
2895
1.24k
  const __m128i weights_hihi = LoadUnaligned16(smooth_weights + 108);
2896
1.24k
  const __m128i weights5 = cvtepu8_epi16(weights_hilo);
2897
1.24k
  const __m128i weights6 = cvtepu8_epi16(_mm_srli_si128(weights_hilo, 8));
2898
1.24k
  const __m128i weights7 = cvtepu8_epi16(weights_hihi);
2899
1.24k
  const __m128i weights8 = cvtepu8_epi16(_mm_srli_si128(weights_hihi, 8));
2900
1.24k
  const __m128i inverted_weights5 = _mm_sub_epi16(scale, weights5);
2901
1.24k
  const __m128i inverted_weights6 = _mm_sub_epi16(scale, weights6);
2902
1.24k
  const __m128i inverted_weights7 = _mm_sub_epi16(scale, weights7);
2903
1.24k
  const __m128i inverted_weights8 = _mm_sub_epi16(scale, weights8);
2904
1.24k
  const __m128i scaled_top_right5 =
2905
1.24k
      _mm_mullo_epi16(inverted_weights5, top_right);
2906
1.24k
  const __m128i scaled_top_right6 =
2907
1.24k
      _mm_mullo_epi16(inverted_weights6, top_right);
2908
1.24k
  const __m128i scaled_top_right7 =
2909
1.24k
      _mm_mullo_epi16(inverted_weights7, top_right);
2910
1.24k
  const __m128i scaled_top_right8 =
2911
1.24k
      _mm_mullo_epi16(inverted_weights8, top_right);
2912
1.24k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
2913
11.1k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2914
9.92k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2915
9.92k
    const __m128i left_y = _mm_shuffle_epi8(left1, y_select);
2916
9.92k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2917
9.92k
                                   scaled_top_right1, scaled_top_right2, round);
2918
9.92k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2919
9.92k
                                   scaled_top_right3, scaled_top_right4, round);
2920
9.92k
    write_smooth_directional_sum16(dst + 32, left_y, left_y, weights5, weights6,
2921
9.92k
                                   scaled_top_right5, scaled_top_right6, round);
2922
9.92k
    write_smooth_directional_sum16(dst + 48, left_y, left_y, weights7, weights8,
2923
9.92k
                                   scaled_top_right7, scaled_top_right8, round);
2924
9.92k
    dst += stride;
2925
9.92k
  }
2926
1.24k
  const __m128i left2 = cvtepu8_epi16(LoadLo8(left_column + 8));
2927
11.1k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2928
9.92k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2929
9.92k
    const __m128i left_y = _mm_shuffle_epi8(left2, y_select);
2930
9.92k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2931
9.92k
                                   scaled_top_right1, scaled_top_right2, round);
2932
9.92k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2933
9.92k
                                   scaled_top_right3, scaled_top_right4, round);
2934
9.92k
    write_smooth_directional_sum16(dst + 32, left_y, left_y, weights5, weights6,
2935
9.92k
                                   scaled_top_right5, scaled_top_right6, round);
2936
9.92k
    write_smooth_directional_sum16(dst + 48, left_y, left_y, weights7, weights8,
2937
9.92k
                                   scaled_top_right7, scaled_top_right8, round);
2938
9.92k
    dst += stride;
2939
9.92k
  }
2940
1.24k
  const __m128i left3 = cvtepu8_epi16(LoadLo8(left_column + 16));
2941
11.1k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2942
9.92k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2943
9.92k
    const __m128i left_y = _mm_shuffle_epi8(left3, y_select);
2944
9.92k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2945
9.92k
                                   scaled_top_right1, scaled_top_right2, round);
2946
9.92k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2947
9.92k
                                   scaled_top_right3, scaled_top_right4, round);
2948
9.92k
    write_smooth_directional_sum16(dst + 32, left_y, left_y, weights5, weights6,
2949
9.92k
                                   scaled_top_right5, scaled_top_right6, round);
2950
9.92k
    write_smooth_directional_sum16(dst + 48, left_y, left_y, weights7, weights8,
2951
9.92k
                                   scaled_top_right7, scaled_top_right8, round);
2952
9.92k
    dst += stride;
2953
9.92k
  }
2954
1.24k
  const __m128i left4 = cvtepu8_epi16(LoadLo8(left_column + 24));
2955
11.1k
  for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
2956
9.92k
    const __m128i y_select = _mm_set1_epi32(y_mask);
2957
9.92k
    const __m128i left_y = _mm_shuffle_epi8(left4, y_select);
2958
9.92k
    write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
2959
9.92k
                                   scaled_top_right1, scaled_top_right2, round);
2960
9.92k
    write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3, weights4,
2961
9.92k
                                   scaled_top_right3, scaled_top_right4, round);
2962
9.92k
    write_smooth_directional_sum16(dst + 32, left_y, left_y, weights5, weights6,
2963
9.92k
                                   scaled_top_right5, scaled_top_right6, round);
2964
9.92k
    write_smooth_directional_sum16(dst + 48, left_y, left_y, weights7, weights8,
2965
9.92k
                                   scaled_top_right7, scaled_top_right8, round);
2966
9.92k
    dst += stride;
2967
9.92k
  }
2968
1.24k
}
2969
2970
void aom_smooth_h_predictor_64x64_ssse3(
2971
    uint8_t *LIBAOM_RESTRICT dst, ptrdiff_t stride,
2972
    const uint8_t *LIBAOM_RESTRICT top_row,
2973
3.46k
    const uint8_t *LIBAOM_RESTRICT left_column) {
2974
3.46k
  const __m128i top_right = _mm_set1_epi16(top_row[63]);
2975
3.46k
  const __m128i weights_lolo = LoadUnaligned16(smooth_weights + 60);
2976
3.46k
  const __m128i weights_lohi = LoadUnaligned16(smooth_weights + 76);
2977
3.46k
  const __m128i scale = _mm_set1_epi16(1 << SMOOTH_WEIGHT_LOG2_SCALE);
2978
3.46k
  const __m128i weights1 = cvtepu8_epi16(weights_lolo);
2979
3.46k
  const __m128i weights2 = cvtepu8_epi16(_mm_srli_si128(weights_lolo, 8));
2980
3.46k
  const __m128i weights3 = cvtepu8_epi16(weights_lohi);
2981
3.46k
  const __m128i weights4 = cvtepu8_epi16(_mm_srli_si128(weights_lohi, 8));
2982
3.46k
  const __m128i inverted_weights1 = _mm_sub_epi16(scale, weights1);
2983
3.46k
  const __m128i inverted_weights2 = _mm_sub_epi16(scale, weights2);
2984
3.46k
  const __m128i inverted_weights3 = _mm_sub_epi16(scale, weights3);
2985
3.46k
  const __m128i inverted_weights4 = _mm_sub_epi16(scale, weights4);
2986
3.46k
  const __m128i scaled_top_right1 =
2987
3.46k
      _mm_mullo_epi16(inverted_weights1, top_right);
2988
3.46k
  const __m128i scaled_top_right2 =
2989
3.46k
      _mm_mullo_epi16(inverted_weights2, top_right);
2990
3.46k
  const __m128i scaled_top_right3 =
2991
3.46k
      _mm_mullo_epi16(inverted_weights3, top_right);
2992
3.46k
  const __m128i scaled_top_right4 =
2993
3.46k
      _mm_mullo_epi16(inverted_weights4, top_right);
2994
3.46k
  const __m128i weights_hilo = LoadUnaligned16(smooth_weights + 92);
2995
3.46k
  const __m128i weights_hihi = LoadUnaligned16(smooth_weights + 108);
2996
3.46k
  const __m128i weights5 = cvtepu8_epi16(weights_hilo);
2997
3.46k
  const __m128i weights6 = cvtepu8_epi16(_mm_srli_si128(weights_hilo, 8));
2998
3.46k
  const __m128i weights7 = cvtepu8_epi16(weights_hihi);
2999
3.46k
  const __m128i weights8 = cvtepu8_epi16(_mm_srli_si128(weights_hihi, 8));
3000
3.46k
  const __m128i inverted_weights5 = _mm_sub_epi16(scale, weights5);
3001
3.46k
  const __m128i inverted_weights6 = _mm_sub_epi16(scale, weights6);
3002
3.46k
  const __m128i inverted_weights7 = _mm_sub_epi16(scale, weights7);
3003
3.46k
  const __m128i inverted_weights8 = _mm_sub_epi16(scale, weights8);
3004
3.46k
  const __m128i scaled_top_right5 =
3005
3.46k
      _mm_mullo_epi16(inverted_weights5, top_right);
3006
3.46k
  const __m128i scaled_top_right6 =
3007
3.46k
      _mm_mullo_epi16(inverted_weights6, top_right);
3008
3.46k
  const __m128i scaled_top_right7 =
3009
3.46k
      _mm_mullo_epi16(inverted_weights7, top_right);
3010
3.46k
  const __m128i scaled_top_right8 =
3011
3.46k
      _mm_mullo_epi16(inverted_weights8, top_right);
3012
3.46k
  const __m128i round = _mm_set1_epi16(1 << (SMOOTH_WEIGHT_LOG2_SCALE - 1));
3013
31.2k
  for (int left_offset = 0; left_offset < 64; left_offset += 8) {
3014
27.7k
    const __m128i left = cvtepu8_epi16(LoadLo8(left_column + left_offset));
3015
249k
    for (int y_mask = 0x01000100; y_mask < 0x0F0E0F0F; y_mask += 0x02020202) {
3016
221k
      const __m128i y_select = _mm_set1_epi32(y_mask);
3017
221k
      const __m128i left_y = _mm_shuffle_epi8(left, y_select);
3018
221k
      write_smooth_directional_sum16(dst, left_y, left_y, weights1, weights2,
3019
221k
                                     scaled_top_right1, scaled_top_right2,
3020
221k
                                     round);
3021
221k
      write_smooth_directional_sum16(dst + 16, left_y, left_y, weights3,
3022
221k
                                     weights4, scaled_top_right3,
3023
221k
                                     scaled_top_right4, round);
3024
221k
      write_smooth_directional_sum16(dst + 32, left_y, left_y, weights5,
3025
221k
                                     weights6, scaled_top_right5,
3026
221k
                                     scaled_top_right6, round);
3027
221k
      write_smooth_directional_sum16(dst + 48, left_y, left_y, weights7,
3028
221k
                                     weights8, scaled_top_right7,
3029
221k
                                     scaled_top_right8, round);
3030
221k
      dst += stride;
3031
221k
    }
3032
27.7k
  }
3033
3.46k
}