1 /*
2 * Copyright (c) 2016, Alliance for Open Media. All rights reserved
3 *
4 * This source code is subject to the terms of the BSD 2 Clause License and
5 * the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
6 * was not distributed with this source code in the LICENSE file, you can
7 * obtain it at www.aomedia.org/license/software. If the Alliance for Open
8 * Media Patent License 1.0 was not distributed with this source code in the
9 * PATENTS file, you can obtain it at www.aomedia.org/license/patent.
10 */
11
12 #ifndef AOM_AOM_DSP_SIMD_V256_INTRINSICS_C_H_
13 #define AOM_AOM_DSP_SIMD_V256_INTRINSICS_C_H_
14
15 #include <stdio.h>
16 #include <stdlib.h>
17
18 #include "config/aom_config.h"
19
20 #include "aom_dsp/simd/v128_intrinsics_c.h"
21
22 typedef union {
23 uint8_t u8[32];
24 uint16_t u16[16];
25 uint32_t u32[8];
26 uint64_t u64[4];
27 int8_t s8[32];
28 int16_t s16[16];
29 int32_t s32[8];
30 int64_t s64[4];
31 c_v64 v64[4];
32 c_v128 v128[2];
33 } c_v256;
34
c_v256_low_u32(c_v256 a)35 SIMD_INLINE uint32_t c_v256_low_u32(c_v256 a) { return a.u32[0]; }
36
c_v256_low_v64(c_v256 a)37 SIMD_INLINE c_v64 c_v256_low_v64(c_v256 a) { return a.v64[0]; }
38
c_v256_low_u64(c_v256 a)39 SIMD_INLINE uint64_t c_v256_low_u64(c_v256 a) { return a.u64[0]; }
40
c_v256_low_v128(c_v256 a)41 SIMD_INLINE c_v128 c_v256_low_v128(c_v256 a) { return a.v128[0]; }
42
c_v256_high_v128(c_v256 a)43 SIMD_INLINE c_v128 c_v256_high_v128(c_v256 a) { return a.v128[1]; }
44
c_v256_from_v128(c_v128 hi,c_v128 lo)45 SIMD_INLINE c_v256 c_v256_from_v128(c_v128 hi, c_v128 lo) {
46 c_v256 t;
47 t.v128[1] = hi;
48 t.v128[0] = lo;
49 return t;
50 }
51
c_v256_from_64(uint64_t a,uint64_t b,uint64_t c,uint64_t d)52 SIMD_INLINE c_v256 c_v256_from_64(uint64_t a, uint64_t b, uint64_t c,
53 uint64_t d) {
54 c_v256 t;
55 t.u64[3] = a;
56 t.u64[2] = b;
57 t.u64[1] = c;
58 t.u64[0] = d;
59 return t;
60 }
61
c_v256_from_v64(c_v64 a,c_v64 b,c_v64 c,c_v64 d)62 SIMD_INLINE c_v256 c_v256_from_v64(c_v64 a, c_v64 b, c_v64 c, c_v64 d) {
63 c_v256 t;
64 t.u64[3] = a.u64;
65 t.u64[2] = b.u64;
66 t.u64[1] = c.u64;
67 t.u64[0] = d.u64;
68 return t;
69 }
70
c_v256_load_unaligned(const void * p)71 SIMD_INLINE c_v256 c_v256_load_unaligned(const void *p) {
72 c_v256 t;
73 uint8_t *pp = (uint8_t *)p;
74 uint8_t *q = (uint8_t *)&t;
75 int c;
76 for (c = 0; c < 32; c++) q[c] = pp[c];
77 return t;
78 }
79
c_v256_load_aligned(const void * p)80 SIMD_INLINE c_v256 c_v256_load_aligned(const void *p) {
81 if (SIMD_CHECK && (uintptr_t)p & 31) {
82 fprintf(stderr, "Error: unaligned v256 load at %p\n", p);
83 abort();
84 }
85 return c_v256_load_unaligned(p);
86 }
87
c_v256_store_unaligned(void * p,c_v256 a)88 SIMD_INLINE void c_v256_store_unaligned(void *p, c_v256 a) {
89 uint8_t *pp = (uint8_t *)p;
90 uint8_t *q = (uint8_t *)&a;
91 int c;
92 for (c = 0; c < 32; c++) pp[c] = q[c];
93 }
94
c_v256_store_aligned(void * p,c_v256 a)95 SIMD_INLINE void c_v256_store_aligned(void *p, c_v256 a) {
96 if (SIMD_CHECK && (uintptr_t)p & 31) {
97 fprintf(stderr, "Error: unaligned v256 store at %p\n", p);
98 abort();
99 }
100 c_v256_store_unaligned(p, a);
101 }
102
c_v256_zero()103 SIMD_INLINE c_v256 c_v256_zero() {
104 c_v256 t;
105 t.u64[3] = t.u64[2] = t.u64[1] = t.u64[0] = 0;
106 return t;
107 }
108
c_v256_dup_8(uint8_t x)109 SIMD_INLINE c_v256 c_v256_dup_8(uint8_t x) {
110 c_v256 t;
111 t.v64[3] = t.v64[2] = t.v64[1] = t.v64[0] = c_v64_dup_8(x);
112 return t;
113 }
114
c_v256_dup_16(uint16_t x)115 SIMD_INLINE c_v256 c_v256_dup_16(uint16_t x) {
116 c_v256 t;
117 t.v64[3] = t.v64[2] = t.v64[1] = t.v64[0] = c_v64_dup_16(x);
118 return t;
119 }
120
c_v256_dup_32(uint32_t x)121 SIMD_INLINE c_v256 c_v256_dup_32(uint32_t x) {
122 c_v256 t;
123 t.v64[3] = t.v64[2] = t.v64[1] = t.v64[0] = c_v64_dup_32(x);
124 return t;
125 }
126
c_v256_dup_64(uint64_t x)127 SIMD_INLINE c_v256 c_v256_dup_64(uint64_t x) {
128 c_v256 t;
129 t.u64[3] = t.u64[2] = t.u64[1] = t.u64[0] = x;
130 return t;
131 }
132
c_v256_dotp_su8(c_v256 a,c_v256 b)133 SIMD_INLINE int64_t c_v256_dotp_su8(c_v256 a, c_v256 b) {
134 return c_v128_dotp_su8(a.v128[1], b.v128[1]) +
135 c_v128_dotp_su8(a.v128[0], b.v128[0]);
136 }
137
c_v256_dotp_s16(c_v256 a,c_v256 b)138 SIMD_INLINE int64_t c_v256_dotp_s16(c_v256 a, c_v256 b) {
139 return c_v128_dotp_s16(a.v128[1], b.v128[1]) +
140 c_v128_dotp_s16(a.v128[0], b.v128[0]);
141 }
142
c_v256_dotp_s32(c_v256 a,c_v256 b)143 SIMD_INLINE int64_t c_v256_dotp_s32(c_v256 a, c_v256 b) {
144 return c_v128_dotp_s32(a.v128[1], b.v128[1]) +
145 c_v128_dotp_s32(a.v128[0], b.v128[0]);
146 }
147
c_v256_hadd_u8(c_v256 a)148 SIMD_INLINE uint64_t c_v256_hadd_u8(c_v256 a) {
149 return c_v128_hadd_u8(a.v128[1]) + c_v128_hadd_u8(a.v128[0]);
150 }
151
152 typedef uint32_t c_sad256_internal;
153
c_v256_sad_u8_init()154 SIMD_INLINE c_sad256_internal c_v256_sad_u8_init() { return 0; }
155
156 /* Implementation dependent return value. Result must be finalised with
157 v256_sad_u8_sum().
158 The result for more than 16 v256_sad_u8() calls is undefined. */
c_v256_sad_u8(c_sad256_internal s,c_v256 a,c_v256 b)159 SIMD_INLINE c_sad256_internal c_v256_sad_u8(c_sad256_internal s, c_v256 a,
160 c_v256 b) {
161 int c;
162 for (c = 0; c < 32; c++)
163 s += a.u8[c] > b.u8[c] ? a.u8[c] - b.u8[c] : b.u8[c] - a.u8[c];
164 return s;
165 }
166
c_v256_sad_u8_sum(c_sad256_internal s)167 SIMD_INLINE uint32_t c_v256_sad_u8_sum(c_sad256_internal s) { return s; }
168
169 typedef uint32_t c_ssd256_internal;
170
c_v256_ssd_u8_init()171 SIMD_INLINE c_ssd256_internal c_v256_ssd_u8_init() { return 0; }
172
173 /* Implementation dependent return value. Result must be finalised with
174 * v256_ssd_u8_sum(). */
c_v256_ssd_u8(c_ssd256_internal s,c_v256 a,c_v256 b)175 SIMD_INLINE c_ssd256_internal c_v256_ssd_u8(c_ssd256_internal s, c_v256 a,
176 c_v256 b) {
177 int c;
178 for (c = 0; c < 32; c++) s += (a.u8[c] - b.u8[c]) * (a.u8[c] - b.u8[c]);
179 return s;
180 }
181
c_v256_ssd_u8_sum(c_ssd256_internal s)182 SIMD_INLINE uint32_t c_v256_ssd_u8_sum(c_ssd256_internal s) { return s; }
183
c_v256_or(c_v256 a,c_v256 b)184 SIMD_INLINE c_v256 c_v256_or(c_v256 a, c_v256 b) {
185 return c_v256_from_v128(c_v128_or(a.v128[1], b.v128[1]),
186 c_v128_or(a.v128[0], b.v128[0]));
187 }
188
c_v256_xor(c_v256 a,c_v256 b)189 SIMD_INLINE c_v256 c_v256_xor(c_v256 a, c_v256 b) {
190 return c_v256_from_v128(c_v128_xor(a.v128[1], b.v128[1]),
191 c_v128_xor(a.v128[0], b.v128[0]));
192 }
193
c_v256_and(c_v256 a,c_v256 b)194 SIMD_INLINE c_v256 c_v256_and(c_v256 a, c_v256 b) {
195 return c_v256_from_v128(c_v128_and(a.v128[1], b.v128[1]),
196 c_v128_and(a.v128[0], b.v128[0]));
197 }
198
c_v256_andn(c_v256 a,c_v256 b)199 SIMD_INLINE c_v256 c_v256_andn(c_v256 a, c_v256 b) {
200 return c_v256_from_v128(c_v128_andn(a.v128[1], b.v128[1]),
201 c_v128_andn(a.v128[0], b.v128[0]));
202 }
203
c_v256_add_8(c_v256 a,c_v256 b)204 SIMD_INLINE c_v256 c_v256_add_8(c_v256 a, c_v256 b) {
205 return c_v256_from_v128(c_v128_add_8(a.v128[1], b.v128[1]),
206 c_v128_add_8(a.v128[0], b.v128[0]));
207 }
208
c_v256_add_16(c_v256 a,c_v256 b)209 SIMD_INLINE c_v256 c_v256_add_16(c_v256 a, c_v256 b) {
210 return c_v256_from_v128(c_v128_add_16(a.v128[1], b.v128[1]),
211 c_v128_add_16(a.v128[0], b.v128[0]));
212 }
213
c_v256_sadd_s8(c_v256 a,c_v256 b)214 SIMD_INLINE c_v256 c_v256_sadd_s8(c_v256 a, c_v256 b) {
215 return c_v256_from_v128(c_v128_sadd_s8(a.v128[1], b.v128[1]),
216 c_v128_sadd_s8(a.v128[0], b.v128[0]));
217 }
218
c_v256_sadd_u8(c_v256 a,c_v256 b)219 SIMD_INLINE c_v256 c_v256_sadd_u8(c_v256 a, c_v256 b) {
220 return c_v256_from_v128(c_v128_sadd_u8(a.v128[1], b.v128[1]),
221 c_v128_sadd_u8(a.v128[0], b.v128[0]));
222 }
223
c_v256_sadd_s16(c_v256 a,c_v256 b)224 SIMD_INLINE c_v256 c_v256_sadd_s16(c_v256 a, c_v256 b) {
225 return c_v256_from_v128(c_v128_sadd_s16(a.v128[1], b.v128[1]),
226 c_v128_sadd_s16(a.v128[0], b.v128[0]));
227 }
228
c_v256_add_32(c_v256 a,c_v256 b)229 SIMD_INLINE c_v256 c_v256_add_32(c_v256 a, c_v256 b) {
230 return c_v256_from_v128(c_v128_add_32(a.v128[1], b.v128[1]),
231 c_v128_add_32(a.v128[0], b.v128[0]));
232 }
233
c_v256_add_64(c_v256 a,c_v256 b)234 SIMD_INLINE c_v256 c_v256_add_64(c_v256 a, c_v256 b) {
235 return c_v256_from_v128(c_v128_add_64(a.v128[1], b.v128[1]),
236 c_v128_add_64(a.v128[0], b.v128[0]));
237 }
238
c_v256_sub_64(c_v256 a,c_v256 b)239 SIMD_INLINE c_v256 c_v256_sub_64(c_v256 a, c_v256 b) {
240 return c_v256_from_v128(c_v128_sub_64(a.v128[1], b.v128[1]),
241 c_v128_sub_64(a.v128[0], b.v128[0]));
242 }
243
c_v256_padd_u8(c_v256 a)244 SIMD_INLINE c_v256 c_v256_padd_u8(c_v256 a) {
245 c_v256 t;
246 for (int i = 0; i < 16; i++)
247 t.u16[i] = (uint16_t)a.u8[i * 2] + (uint16_t)a.u8[i * 2 + 1];
248 return t;
249 }
250
c_v256_padd_s16(c_v256 a)251 SIMD_INLINE c_v256 c_v256_padd_s16(c_v256 a) {
252 c_v256 t;
253 t.s32[0] = (int32_t)a.s16[0] + (int32_t)a.s16[1];
254 t.s32[1] = (int32_t)a.s16[2] + (int32_t)a.s16[3];
255 t.s32[2] = (int32_t)a.s16[4] + (int32_t)a.s16[5];
256 t.s32[3] = (int32_t)a.s16[6] + (int32_t)a.s16[7];
257 t.s32[4] = (int32_t)a.s16[8] + (int32_t)a.s16[9];
258 t.s32[5] = (int32_t)a.s16[10] + (int32_t)a.s16[11];
259 t.s32[6] = (int32_t)a.s16[12] + (int32_t)a.s16[13];
260 t.s32[7] = (int32_t)a.s16[14] + (int32_t)a.s16[15];
261 return t;
262 }
263
c_v256_sub_8(c_v256 a,c_v256 b)264 SIMD_INLINE c_v256 c_v256_sub_8(c_v256 a, c_v256 b) {
265 return c_v256_from_v128(c_v128_sub_8(a.v128[1], b.v128[1]),
266 c_v128_sub_8(a.v128[0], b.v128[0]));
267 }
268
c_v256_ssub_u8(c_v256 a,c_v256 b)269 SIMD_INLINE c_v256 c_v256_ssub_u8(c_v256 a, c_v256 b) {
270 return c_v256_from_v128(c_v128_ssub_u8(a.v128[1], b.v128[1]),
271 c_v128_ssub_u8(a.v128[0], b.v128[0]));
272 }
273
c_v256_ssub_s8(c_v256 a,c_v256 b)274 SIMD_INLINE c_v256 c_v256_ssub_s8(c_v256 a, c_v256 b) {
275 return c_v256_from_v128(c_v128_ssub_s8(a.v128[1], b.v128[1]),
276 c_v128_ssub_s8(a.v128[0], b.v128[0]));
277 }
278
c_v256_sub_16(c_v256 a,c_v256 b)279 SIMD_INLINE c_v256 c_v256_sub_16(c_v256 a, c_v256 b) {
280 return c_v256_from_v128(c_v128_sub_16(a.v128[1], b.v128[1]),
281 c_v128_sub_16(a.v128[0], b.v128[0]));
282 }
283
c_v256_ssub_s16(c_v256 a,c_v256 b)284 SIMD_INLINE c_v256 c_v256_ssub_s16(c_v256 a, c_v256 b) {
285 return c_v256_from_v128(c_v128_ssub_s16(a.v128[1], b.v128[1]),
286 c_v128_ssub_s16(a.v128[0], b.v128[0]));
287 }
288
c_v256_ssub_u16(c_v256 a,c_v256 b)289 SIMD_INLINE c_v256 c_v256_ssub_u16(c_v256 a, c_v256 b) {
290 return c_v256_from_v128(c_v128_ssub_u16(a.v128[1], b.v128[1]),
291 c_v128_ssub_u16(a.v128[0], b.v128[0]));
292 }
293
c_v256_sub_32(c_v256 a,c_v256 b)294 SIMD_INLINE c_v256 c_v256_sub_32(c_v256 a, c_v256 b) {
295 return c_v256_from_v128(c_v128_sub_32(a.v128[1], b.v128[1]),
296 c_v128_sub_32(a.v128[0], b.v128[0]));
297 }
298
c_v256_abs_s16(c_v256 a)299 SIMD_INLINE c_v256 c_v256_abs_s16(c_v256 a) {
300 return c_v256_from_v128(c_v128_abs_s16(a.v128[1]), c_v128_abs_s16(a.v128[0]));
301 }
302
c_v256_abs_s8(c_v256 a)303 SIMD_INLINE c_v256 c_v256_abs_s8(c_v256 a) {
304 return c_v256_from_v128(c_v128_abs_s8(a.v128[1]), c_v128_abs_s8(a.v128[0]));
305 }
306
c_v256_mul_s16(c_v128 a,c_v128 b)307 SIMD_INLINE c_v256 c_v256_mul_s16(c_v128 a, c_v128 b) {
308 c_v128 lo_bits = c_v128_mullo_s16(a, b);
309 c_v128 hi_bits = c_v128_mulhi_s16(a, b);
310 return c_v256_from_v128(c_v128_ziphi_16(hi_bits, lo_bits),
311 c_v128_ziplo_16(hi_bits, lo_bits));
312 }
313
c_v256_mullo_s16(c_v256 a,c_v256 b)314 SIMD_INLINE c_v256 c_v256_mullo_s16(c_v256 a, c_v256 b) {
315 return c_v256_from_v128(c_v128_mullo_s16(a.v128[1], b.v128[1]),
316 c_v128_mullo_s16(a.v128[0], b.v128[0]));
317 }
318
c_v256_mulhi_s16(c_v256 a,c_v256 b)319 SIMD_INLINE c_v256 c_v256_mulhi_s16(c_v256 a, c_v256 b) {
320 return c_v256_from_v128(c_v128_mulhi_s16(a.v128[1], b.v128[1]),
321 c_v128_mulhi_s16(a.v128[0], b.v128[0]));
322 }
323
c_v256_mullo_s32(c_v256 a,c_v256 b)324 SIMD_INLINE c_v256 c_v256_mullo_s32(c_v256 a, c_v256 b) {
325 return c_v256_from_v128(c_v128_mullo_s32(a.v128[1], b.v128[1]),
326 c_v128_mullo_s32(a.v128[0], b.v128[0]));
327 }
328
c_v256_madd_s16(c_v256 a,c_v256 b)329 SIMD_INLINE c_v256 c_v256_madd_s16(c_v256 a, c_v256 b) {
330 return c_v256_from_v128(c_v128_madd_s16(a.v128[1], b.v128[1]),
331 c_v128_madd_s16(a.v128[0], b.v128[0]));
332 }
333
c_v256_madd_us8(c_v256 a,c_v256 b)334 SIMD_INLINE c_v256 c_v256_madd_us8(c_v256 a, c_v256 b) {
335 return c_v256_from_v128(c_v128_madd_us8(a.v128[1], b.v128[1]),
336 c_v128_madd_us8(a.v128[0], b.v128[0]));
337 }
338
c_v256_avg_u8(c_v256 a,c_v256 b)339 SIMD_INLINE c_v256 c_v256_avg_u8(c_v256 a, c_v256 b) {
340 return c_v256_from_v128(c_v128_avg_u8(a.v128[1], b.v128[1]),
341 c_v128_avg_u8(a.v128[0], b.v128[0]));
342 }
343
c_v256_rdavg_u8(c_v256 a,c_v256 b)344 SIMD_INLINE c_v256 c_v256_rdavg_u8(c_v256 a, c_v256 b) {
345 return c_v256_from_v128(c_v128_rdavg_u8(a.v128[1], b.v128[1]),
346 c_v128_rdavg_u8(a.v128[0], b.v128[0]));
347 }
348
c_v256_rdavg_u16(c_v256 a,c_v256 b)349 SIMD_INLINE c_v256 c_v256_rdavg_u16(c_v256 a, c_v256 b) {
350 return c_v256_from_v128(c_v128_rdavg_u16(a.v128[1], b.v128[1]),
351 c_v128_rdavg_u16(a.v128[0], b.v128[0]));
352 }
353
c_v256_avg_u16(c_v256 a,c_v256 b)354 SIMD_INLINE c_v256 c_v256_avg_u16(c_v256 a, c_v256 b) {
355 return c_v256_from_v128(c_v128_avg_u16(a.v128[1], b.v128[1]),
356 c_v128_avg_u16(a.v128[0], b.v128[0]));
357 }
358
c_v256_min_u8(c_v256 a,c_v256 b)359 SIMD_INLINE c_v256 c_v256_min_u8(c_v256 a, c_v256 b) {
360 return c_v256_from_v128(c_v128_min_u8(a.v128[1], b.v128[1]),
361 c_v128_min_u8(a.v128[0], b.v128[0]));
362 }
363
c_v256_max_u8(c_v256 a,c_v256 b)364 SIMD_INLINE c_v256 c_v256_max_u8(c_v256 a, c_v256 b) {
365 return c_v256_from_v128(c_v128_max_u8(a.v128[1], b.v128[1]),
366 c_v128_max_u8(a.v128[0], b.v128[0]));
367 }
368
c_v256_min_s8(c_v256 a,c_v256 b)369 SIMD_INLINE c_v256 c_v256_min_s8(c_v256 a, c_v256 b) {
370 return c_v256_from_v128(c_v128_min_s8(a.v128[1], b.v128[1]),
371 c_v128_min_s8(a.v128[0], b.v128[0]));
372 }
373
c_v256_movemask_8(c_v256 a)374 SIMD_INLINE uint32_t c_v256_movemask_8(c_v256 a) {
375 return ((a.s8[31] < 0) << 31) | ((a.s8[30] < 0) << 30) |
376 ((a.s8[29] < 0) << 29) | ((a.s8[28] < 0) << 28) |
377 ((a.s8[27] < 0) << 27) | ((a.s8[26] < 0) << 26) |
378 ((a.s8[25] < 0) << 25) | ((a.s8[24] < 0) << 24) |
379 ((a.s8[23] < 0) << 23) | ((a.s8[22] < 0) << 22) |
380 ((a.s8[21] < 0) << 21) | ((a.s8[20] < 0) << 20) |
381 ((a.s8[19] < 0) << 19) | ((a.s8[18] < 0) << 18) |
382 ((a.s8[17] < 0) << 17) | ((a.s8[16] < 0) << 16) |
383 ((a.s8[15] < 0) << 15) | ((a.s8[14] < 0) << 14) |
384 ((a.s8[13] < 0) << 13) | ((a.s8[12] < 0) << 12) |
385 ((a.s8[11] < 0) << 11) | ((a.s8[10] < 0) << 10) |
386 ((a.s8[9] < 0) << 9) | ((a.s8[8] < 0) << 8) | ((a.s8[7] < 0) << 7) |
387 ((a.s8[6] < 0) << 6) | ((a.s8[5] < 0) << 5) | ((a.s8[4] < 0) << 4) |
388 ((a.s8[3] < 0) << 3) | ((a.s8[2] < 0) << 2) | ((a.s8[1] < 0) << 1) |
389 ((a.s8[0] < 0) << 0);
390 }
391
c_v256_blend_8(c_v256 a,c_v256 b,c_v256 c)392 SIMD_INLINE c_v256 c_v256_blend_8(c_v256 a, c_v256 b, c_v256 c) {
393 c_v256 t;
394 for (int i = 0; i < 32; i++) t.u8[i] = c.s8[i] < 0 ? b.u8[i] : a.u8[i];
395 return t;
396 }
397
c_v256_max_s8(c_v256 a,c_v256 b)398 SIMD_INLINE c_v256 c_v256_max_s8(c_v256 a, c_v256 b) {
399 return c_v256_from_v128(c_v128_max_s8(a.v128[1], b.v128[1]),
400 c_v128_max_s8(a.v128[0], b.v128[0]));
401 }
402
c_v256_min_s16(c_v256 a,c_v256 b)403 SIMD_INLINE c_v256 c_v256_min_s16(c_v256 a, c_v256 b) {
404 return c_v256_from_v128(c_v128_min_s16(a.v128[1], b.v128[1]),
405 c_v128_min_s16(a.v128[0], b.v128[0]));
406 }
407
c_v256_max_s16(c_v256 a,c_v256 b)408 SIMD_INLINE c_v256 c_v256_max_s16(c_v256 a, c_v256 b) {
409 return c_v256_from_v128(c_v128_max_s16(a.v128[1], b.v128[1]),
410 c_v128_max_s16(a.v128[0], b.v128[0]));
411 }
412
c_v256_min_s32(c_v256 a,c_v256 b)413 SIMD_INLINE c_v256 c_v256_min_s32(c_v256 a, c_v256 b) {
414 return c_v256_from_v128(c_v128_min_s32(a.v128[1], b.v128[1]),
415 c_v128_min_s32(a.v128[0], b.v128[0]));
416 }
417
c_v256_max_s32(c_v256 a,c_v256 b)418 SIMD_INLINE c_v256 c_v256_max_s32(c_v256 a, c_v256 b) {
419 return c_v256_from_v128(c_v128_max_s32(a.v128[1], b.v128[1]),
420 c_v128_max_s32(a.v128[0], b.v128[0]));
421 }
422
c_v256_ziplo_8(c_v256 a,c_v256 b)423 SIMD_INLINE c_v256 c_v256_ziplo_8(c_v256 a, c_v256 b) {
424 return c_v256_from_v128(c_v128_ziphi_8(a.v128[0], b.v128[0]),
425 c_v128_ziplo_8(a.v128[0], b.v128[0]));
426 }
427
c_v256_ziphi_8(c_v256 a,c_v256 b)428 SIMD_INLINE c_v256 c_v256_ziphi_8(c_v256 a, c_v256 b) {
429 return c_v256_from_v128(c_v128_ziphi_8(a.v128[1], b.v128[1]),
430 c_v128_ziplo_8(a.v128[1], b.v128[1]));
431 }
432
c_v256_ziplo_16(c_v256 a,c_v256 b)433 SIMD_INLINE c_v256 c_v256_ziplo_16(c_v256 a, c_v256 b) {
434 return c_v256_from_v128(c_v128_ziphi_16(a.v128[0], b.v128[0]),
435 c_v128_ziplo_16(a.v128[0], b.v128[0]));
436 }
437
c_v256_ziphi_16(c_v256 a,c_v256 b)438 SIMD_INLINE c_v256 c_v256_ziphi_16(c_v256 a, c_v256 b) {
439 return c_v256_from_v128(c_v128_ziphi_16(a.v128[1], b.v128[1]),
440 c_v128_ziplo_16(a.v128[1], b.v128[1]));
441 }
442
c_v256_ziplo_32(c_v256 a,c_v256 b)443 SIMD_INLINE c_v256 c_v256_ziplo_32(c_v256 a, c_v256 b) {
444 return c_v256_from_v128(c_v128_ziphi_32(a.v128[0], b.v128[0]),
445 c_v128_ziplo_32(a.v128[0], b.v128[0]));
446 }
447
c_v256_ziphi_32(c_v256 a,c_v256 b)448 SIMD_INLINE c_v256 c_v256_ziphi_32(c_v256 a, c_v256 b) {
449 return c_v256_from_v128(c_v128_ziphi_32(a.v128[1], b.v128[1]),
450 c_v128_ziplo_32(a.v128[1], b.v128[1]));
451 }
452
c_v256_ziplo_64(c_v256 a,c_v256 b)453 SIMD_INLINE c_v256 c_v256_ziplo_64(c_v256 a, c_v256 b) {
454 return c_v256_from_v128(c_v128_ziphi_64(a.v128[0], b.v128[0]),
455 c_v128_ziplo_64(a.v128[0], b.v128[0]));
456 }
457
c_v256_ziphi_64(c_v256 a,c_v256 b)458 SIMD_INLINE c_v256 c_v256_ziphi_64(c_v256 a, c_v256 b) {
459 return c_v256_from_v128(c_v128_ziphi_64(a.v128[1], b.v128[1]),
460 c_v128_ziplo_64(a.v128[1], b.v128[1]));
461 }
462
c_v256_ziplo_128(c_v256 a,c_v256 b)463 SIMD_INLINE c_v256 c_v256_ziplo_128(c_v256 a, c_v256 b) {
464 return c_v256_from_v128(a.v128[0], b.v128[0]);
465 }
466
c_v256_ziphi_128(c_v256 a,c_v256 b)467 SIMD_INLINE c_v256 c_v256_ziphi_128(c_v256 a, c_v256 b) {
468 return c_v256_from_v128(a.v128[1], b.v128[1]);
469 }
470
c_v256_zip_8(c_v128 a,c_v128 b)471 SIMD_INLINE c_v256 c_v256_zip_8(c_v128 a, c_v128 b) {
472 return c_v256_from_v128(c_v128_ziphi_8(a, b), c_v128_ziplo_8(a, b));
473 }
474
c_v256_zip_16(c_v128 a,c_v128 b)475 SIMD_INLINE c_v256 c_v256_zip_16(c_v128 a, c_v128 b) {
476 return c_v256_from_v128(c_v128_ziphi_16(a, b), c_v128_ziplo_16(a, b));
477 }
478
c_v256_zip_32(c_v128 a,c_v128 b)479 SIMD_INLINE c_v256 c_v256_zip_32(c_v128 a, c_v128 b) {
480 return c_v256_from_v128(c_v128_ziphi_32(a, b), c_v128_ziplo_32(a, b));
481 }
482
_c_v256_unzip_8(c_v256 a,c_v256 b,int mode)483 SIMD_INLINE c_v256 _c_v256_unzip_8(c_v256 a, c_v256 b, int mode) {
484 c_v256 t;
485 int i;
486 if (mode) {
487 for (i = 0; i < 16; i++) {
488 t.u8[i] = a.u8[i * 2 + 1];
489 t.u8[i + 16] = b.u8[i * 2 + 1];
490 }
491 } else {
492 for (i = 0; i < 16; i++) {
493 t.u8[i] = b.u8[i * 2];
494 t.u8[i + 16] = a.u8[i * 2];
495 }
496 }
497 return t;
498 }
499
c_v256_unziplo_8(c_v256 a,c_v256 b)500 SIMD_INLINE c_v256 c_v256_unziplo_8(c_v256 a, c_v256 b) {
501 return CONFIG_BIG_ENDIAN ? _c_v256_unzip_8(a, b, 1)
502 : _c_v256_unzip_8(a, b, 0);
503 }
504
c_v256_unziphi_8(c_v256 a,c_v256 b)505 SIMD_INLINE c_v256 c_v256_unziphi_8(c_v256 a, c_v256 b) {
506 return CONFIG_BIG_ENDIAN ? _c_v256_unzip_8(b, a, 0)
507 : _c_v256_unzip_8(b, a, 1);
508 }
509
_c_v256_unzip_16(c_v256 a,c_v256 b,int mode)510 SIMD_INLINE c_v256 _c_v256_unzip_16(c_v256 a, c_v256 b, int mode) {
511 c_v256 t;
512 int i;
513 if (mode) {
514 for (i = 0; i < 8; i++) {
515 t.u16[i] = a.u16[i * 2 + 1];
516 t.u16[i + 8] = b.u16[i * 2 + 1];
517 }
518 } else {
519 for (i = 0; i < 8; i++) {
520 t.u16[i] = b.u16[i * 2];
521 t.u16[i + 8] = a.u16[i * 2];
522 }
523 }
524 return t;
525 }
526
c_v256_unziplo_16(c_v256 a,c_v256 b)527 SIMD_INLINE c_v256 c_v256_unziplo_16(c_v256 a, c_v256 b) {
528 return CONFIG_BIG_ENDIAN ? _c_v256_unzip_16(a, b, 1)
529 : _c_v256_unzip_16(a, b, 0);
530 }
531
c_v256_unziphi_16(c_v256 a,c_v256 b)532 SIMD_INLINE c_v256 c_v256_unziphi_16(c_v256 a, c_v256 b) {
533 return CONFIG_BIG_ENDIAN ? _c_v256_unzip_16(b, a, 0)
534 : _c_v256_unzip_16(b, a, 1);
535 }
536
_c_v256_unzip_32(c_v256 a,c_v256 b,int mode)537 SIMD_INLINE c_v256 _c_v256_unzip_32(c_v256 a, c_v256 b, int mode) {
538 c_v256 t;
539 if (mode) {
540 t.u32[7] = b.u32[7];
541 t.u32[6] = b.u32[5];
542 t.u32[5] = b.u32[3];
543 t.u32[4] = b.u32[1];
544 t.u32[3] = a.u32[7];
545 t.u32[2] = a.u32[5];
546 t.u32[1] = a.u32[3];
547 t.u32[0] = a.u32[1];
548 } else {
549 t.u32[7] = a.u32[6];
550 t.u32[6] = a.u32[4];
551 t.u32[5] = a.u32[2];
552 t.u32[4] = a.u32[0];
553 t.u32[3] = b.u32[6];
554 t.u32[2] = b.u32[4];
555 t.u32[1] = b.u32[2];
556 t.u32[0] = b.u32[0];
557 }
558 return t;
559 }
560
c_v256_unziplo_32(c_v256 a,c_v256 b)561 SIMD_INLINE c_v256 c_v256_unziplo_32(c_v256 a, c_v256 b) {
562 return CONFIG_BIG_ENDIAN ? _c_v256_unzip_32(a, b, 1)
563 : _c_v256_unzip_32(a, b, 0);
564 }
565
c_v256_unziphi_32(c_v256 a,c_v256 b)566 SIMD_INLINE c_v256 c_v256_unziphi_32(c_v256 a, c_v256 b) {
567 return CONFIG_BIG_ENDIAN ? _c_v256_unzip_32(b, a, 0)
568 : _c_v256_unzip_32(b, a, 1);
569 }
570
_c_v256_unzip_64(c_v256 a,c_v256 b,int mode)571 SIMD_INLINE c_v256 _c_v256_unzip_64(c_v256 a, c_v256 b, int mode) {
572 c_v256 t;
573 if (mode) {
574 t.u64[3] = b.u64[3];
575 t.u64[2] = b.u64[1];
576 t.u64[1] = a.u64[3];
577 t.u64[0] = a.u64[1];
578 } else {
579 t.u64[3] = a.u64[2];
580 t.u64[2] = a.u64[0];
581 t.u64[1] = b.u64[2];
582 t.u64[0] = b.u64[0];
583 }
584 return t;
585 }
586
c_v256_unziplo_64(c_v256 a,c_v256 b)587 SIMD_INLINE c_v256 c_v256_unziplo_64(c_v256 a, c_v256 b) {
588 return CONFIG_BIG_ENDIAN ? _c_v256_unzip_64(a, b, 1)
589 : _c_v256_unzip_64(a, b, 0);
590 }
591
c_v256_unziphi_64(c_v256 a,c_v256 b)592 SIMD_INLINE c_v256 c_v256_unziphi_64(c_v256 a, c_v256 b) {
593 return CONFIG_BIG_ENDIAN ? _c_v256_unzip_64(b, a, 0)
594 : _c_v256_unzip_64(b, a, 1);
595 }
596
c_v256_unpack_u8_s16(c_v128 a)597 SIMD_INLINE c_v256 c_v256_unpack_u8_s16(c_v128 a) {
598 return c_v256_from_v128(c_v128_unpackhi_u8_s16(a), c_v128_unpacklo_u8_s16(a));
599 }
600
c_v256_unpacklo_u8_s16(c_v256 a)601 SIMD_INLINE c_v256 c_v256_unpacklo_u8_s16(c_v256 a) {
602 return c_v256_from_v128(c_v128_unpackhi_u8_s16(a.v128[0]),
603 c_v128_unpacklo_u8_s16(a.v128[0]));
604 }
605
c_v256_unpackhi_u8_s16(c_v256 a)606 SIMD_INLINE c_v256 c_v256_unpackhi_u8_s16(c_v256 a) {
607 return c_v256_from_v128(c_v128_unpackhi_u8_s16(a.v128[1]),
608 c_v128_unpacklo_u8_s16(a.v128[1]));
609 }
610
c_v256_unpack_s8_s16(c_v128 a)611 SIMD_INLINE c_v256 c_v256_unpack_s8_s16(c_v128 a) {
612 return c_v256_from_v128(c_v128_unpackhi_s8_s16(a), c_v128_unpacklo_s8_s16(a));
613 }
614
c_v256_unpacklo_s8_s16(c_v256 a)615 SIMD_INLINE c_v256 c_v256_unpacklo_s8_s16(c_v256 a) {
616 return c_v256_from_v128(c_v128_unpackhi_s8_s16(a.v128[0]),
617 c_v128_unpacklo_s8_s16(a.v128[0]));
618 }
619
c_v256_unpackhi_s8_s16(c_v256 a)620 SIMD_INLINE c_v256 c_v256_unpackhi_s8_s16(c_v256 a) {
621 return c_v256_from_v128(c_v128_unpackhi_s8_s16(a.v128[1]),
622 c_v128_unpacklo_s8_s16(a.v128[1]));
623 }
624
c_v256_pack_s32_s16(c_v256 a,c_v256 b)625 SIMD_INLINE c_v256 c_v256_pack_s32_s16(c_v256 a, c_v256 b) {
626 return c_v256_from_v128(c_v128_pack_s32_s16(a.v128[1], a.v128[0]),
627 c_v128_pack_s32_s16(b.v128[1], b.v128[0]));
628 }
629
c_v256_pack_s32_u16(c_v256 a,c_v256 b)630 SIMD_INLINE c_v256 c_v256_pack_s32_u16(c_v256 a, c_v256 b) {
631 return c_v256_from_v128(c_v128_pack_s32_u16(a.v128[1], a.v128[0]),
632 c_v128_pack_s32_u16(b.v128[1], b.v128[0]));
633 }
634
c_v256_pack_s16_u8(c_v256 a,c_v256 b)635 SIMD_INLINE c_v256 c_v256_pack_s16_u8(c_v256 a, c_v256 b) {
636 return c_v256_from_v128(c_v128_pack_s16_u8(a.v128[1], a.v128[0]),
637 c_v128_pack_s16_u8(b.v128[1], b.v128[0]));
638 }
639
c_v256_pack_s16_s8(c_v256 a,c_v256 b)640 SIMD_INLINE c_v256 c_v256_pack_s16_s8(c_v256 a, c_v256 b) {
641 return c_v256_from_v128(c_v128_pack_s16_s8(a.v128[1], a.v128[0]),
642 c_v128_pack_s16_s8(b.v128[1], b.v128[0]));
643 }
644
c_v256_unpack_u16_s32(c_v128 a)645 SIMD_INLINE c_v256 c_v256_unpack_u16_s32(c_v128 a) {
646 return c_v256_from_v128(c_v128_unpackhi_u16_s32(a),
647 c_v128_unpacklo_u16_s32(a));
648 }
649
c_v256_unpack_s16_s32(c_v128 a)650 SIMD_INLINE c_v256 c_v256_unpack_s16_s32(c_v128 a) {
651 return c_v256_from_v128(c_v128_unpackhi_s16_s32(a),
652 c_v128_unpacklo_s16_s32(a));
653 }
654
c_v256_unpacklo_u16_s32(c_v256 a)655 SIMD_INLINE c_v256 c_v256_unpacklo_u16_s32(c_v256 a) {
656 return c_v256_from_v128(c_v128_unpackhi_u16_s32(a.v128[0]),
657 c_v128_unpacklo_u16_s32(a.v128[0]));
658 }
659
c_v256_unpacklo_s16_s32(c_v256 a)660 SIMD_INLINE c_v256 c_v256_unpacklo_s16_s32(c_v256 a) {
661 return c_v256_from_v128(c_v128_unpackhi_s16_s32(a.v128[0]),
662 c_v128_unpacklo_s16_s32(a.v128[0]));
663 }
664
c_v256_unpackhi_u16_s32(c_v256 a)665 SIMD_INLINE c_v256 c_v256_unpackhi_u16_s32(c_v256 a) {
666 return c_v256_from_v128(c_v128_unpackhi_u16_s32(a.v128[1]),
667 c_v128_unpacklo_u16_s32(a.v128[1]));
668 }
669
c_v256_unpackhi_s16_s32(c_v256 a)670 SIMD_INLINE c_v256 c_v256_unpackhi_s16_s32(c_v256 a) {
671 return c_v256_from_v128(c_v128_unpackhi_s16_s32(a.v128[1]),
672 c_v128_unpacklo_s16_s32(a.v128[1]));
673 }
674
c_v256_shuffle_8(c_v256 a,c_v256 pattern)675 SIMD_INLINE c_v256 c_v256_shuffle_8(c_v256 a, c_v256 pattern) {
676 c_v256 t;
677 int c;
678 for (c = 0; c < 32; c++)
679 t.u8[c] = a.u8[CONFIG_BIG_ENDIAN ? 31 - (pattern.u8[c] & 31)
680 : pattern.u8[c] & 31];
681
682 return t;
683 }
684
c_v256_wideshuffle_8(c_v256 a,c_v256 b,c_v256 pattern)685 SIMD_INLINE c_v256 c_v256_wideshuffle_8(c_v256 a, c_v256 b, c_v256 pattern) {
686 c_v256 t;
687 int c;
688 for (c = 0; c < 32; c++)
689 t.u8[c] = (pattern.u8[c] < 32
690 ? b.u8
691 : a.u8)[CONFIG_BIG_ENDIAN ? 31 - (pattern.u8[c] & 31)
692 : pattern.u8[c] & 31];
693 return t;
694 }
695
696 // Pairwise / dual-lane shuffle: shuffle two 128 bit lates.
c_v256_pshuffle_8(c_v256 a,c_v256 pattern)697 SIMD_INLINE c_v256 c_v256_pshuffle_8(c_v256 a, c_v256 pattern) {
698 return c_v256_from_v128(
699 c_v128_shuffle_8(c_v256_high_v128(a), c_v256_high_v128(pattern)),
700 c_v128_shuffle_8(c_v256_low_v128(a), c_v256_low_v128(pattern)));
701 }
702
c_v256_cmpgt_s8(c_v256 a,c_v256 b)703 SIMD_INLINE c_v256 c_v256_cmpgt_s8(c_v256 a, c_v256 b) {
704 return c_v256_from_v128(c_v128_cmpgt_s8(a.v128[1], b.v128[1]),
705 c_v128_cmpgt_s8(a.v128[0], b.v128[0]));
706 }
707
c_v256_cmplt_s8(c_v256 a,c_v256 b)708 SIMD_INLINE c_v256 c_v256_cmplt_s8(c_v256 a, c_v256 b) {
709 return c_v256_from_v128(c_v128_cmplt_s8(a.v128[1], b.v128[1]),
710 c_v128_cmplt_s8(a.v128[0], b.v128[0]));
711 }
712
c_v256_cmpeq_8(c_v256 a,c_v256 b)713 SIMD_INLINE c_v256 c_v256_cmpeq_8(c_v256 a, c_v256 b) {
714 return c_v256_from_v128(c_v128_cmpeq_8(a.v128[1], b.v128[1]),
715 c_v128_cmpeq_8(a.v128[0], b.v128[0]));
716 }
717
c_v256_cmpgt_s16(c_v256 a,c_v256 b)718 SIMD_INLINE c_v256 c_v256_cmpgt_s16(c_v256 a, c_v256 b) {
719 return c_v256_from_v128(c_v128_cmpgt_s16(a.v128[1], b.v128[1]),
720 c_v128_cmpgt_s16(a.v128[0], b.v128[0]));
721 }
722
c_v256_cmplt_s16(c_v256 a,c_v256 b)723 SIMD_INLINE c_v256 c_v256_cmplt_s16(c_v256 a, c_v256 b) {
724 return c_v256_from_v128(c_v128_cmplt_s16(a.v128[1], b.v128[1]),
725 c_v128_cmplt_s16(a.v128[0], b.v128[0]));
726 }
727
c_v256_cmpeq_16(c_v256 a,c_v256 b)728 SIMD_INLINE c_v256 c_v256_cmpeq_16(c_v256 a, c_v256 b) {
729 return c_v256_from_v128(c_v128_cmpeq_16(a.v128[1], b.v128[1]),
730 c_v128_cmpeq_16(a.v128[0], b.v128[0]));
731 }
732
c_v256_cmpgt_s32(c_v256 a,c_v256 b)733 SIMD_INLINE c_v256 c_v256_cmpgt_s32(c_v256 a, c_v256 b) {
734 return c_v256_from_v128(c_v128_cmpgt_s32(a.v128[1], b.v128[1]),
735 c_v128_cmpgt_s32(a.v128[0], b.v128[0]));
736 }
737
c_v256_cmplt_s32(c_v256 a,c_v256 b)738 SIMD_INLINE c_v256 c_v256_cmplt_s32(c_v256 a, c_v256 b) {
739 return c_v256_from_v128(c_v128_cmplt_s32(a.v128[1], b.v128[1]),
740 c_v128_cmplt_s32(a.v128[0], b.v128[0]));
741 }
742
c_v256_cmpeq_32(c_v256 a,c_v256 b)743 SIMD_INLINE c_v256 c_v256_cmpeq_32(c_v256 a, c_v256 b) {
744 return c_v256_from_v128(c_v128_cmpeq_32(a.v128[1], b.v128[1]),
745 c_v128_cmpeq_32(a.v128[0], b.v128[0]));
746 }
747
c_v256_shl_n_byte(c_v256 a,unsigned int n)748 SIMD_INLINE c_v256 c_v256_shl_n_byte(c_v256 a, unsigned int n) {
749 if (n < 16)
750 return c_v256_from_v128(c_v128_or(c_v128_shl_n_byte(a.v128[1], n),
751 c_v128_shr_n_byte(a.v128[0], 16 - n)),
752 c_v128_shl_n_byte(a.v128[0], n));
753 else if (n > 16)
754 return c_v256_from_v128(c_v128_shl_n_byte(a.v128[0], n - 16),
755 c_v128_zero());
756 else
757 return c_v256_from_v128(c_v256_low_v128(a), c_v128_zero());
758 }
759
c_v256_shr_n_byte(c_v256 a,unsigned int n)760 SIMD_INLINE c_v256 c_v256_shr_n_byte(c_v256 a, unsigned int n) {
761 if (n < 16)
762 return c_v256_from_v128(c_v128_shr_n_byte(a.v128[1], n),
763 c_v128_or(c_v128_shr_n_byte(a.v128[0], n),
764 c_v128_shl_n_byte(a.v128[1], 16 - n)));
765 else if (n > 16)
766 return c_v256_from_v128(c_v128_zero(),
767 c_v128_shr_n_byte(a.v128[1], n - 16));
768 else
769 return c_v256_from_v128(c_v128_zero(), c_v256_high_v128(a));
770 }
771
c_v256_align(c_v256 a,c_v256 b,unsigned int c)772 SIMD_INLINE c_v256 c_v256_align(c_v256 a, c_v256 b, unsigned int c) {
773 if (SIMD_CHECK && c > 31) {
774 fprintf(stderr, "Error: undefined alignment %d\n", c);
775 abort();
776 }
777 return c ? c_v256_or(c_v256_shr_n_byte(b, c), c_v256_shl_n_byte(a, 32 - c))
778 : b;
779 }
780
c_v256_shl_8(c_v256 a,unsigned int c)781 SIMD_INLINE c_v256 c_v256_shl_8(c_v256 a, unsigned int c) {
782 return c_v256_from_v128(c_v128_shl_8(a.v128[1], c),
783 c_v128_shl_8(a.v128[0], c));
784 }
785
c_v256_shr_u8(c_v256 a,unsigned int c)786 SIMD_INLINE c_v256 c_v256_shr_u8(c_v256 a, unsigned int c) {
787 return c_v256_from_v128(c_v128_shr_u8(a.v128[1], c),
788 c_v128_shr_u8(a.v128[0], c));
789 }
790
c_v256_shr_s8(c_v256 a,unsigned int c)791 SIMD_INLINE c_v256 c_v256_shr_s8(c_v256 a, unsigned int c) {
792 return c_v256_from_v128(c_v128_shr_s8(a.v128[1], c),
793 c_v128_shr_s8(a.v128[0], c));
794 }
795
c_v256_shl_16(c_v256 a,unsigned int c)796 SIMD_INLINE c_v256 c_v256_shl_16(c_v256 a, unsigned int c) {
797 return c_v256_from_v128(c_v128_shl_16(a.v128[1], c),
798 c_v128_shl_16(a.v128[0], c));
799 }
800
c_v256_shr_u16(c_v256 a,unsigned int c)801 SIMD_INLINE c_v256 c_v256_shr_u16(c_v256 a, unsigned int c) {
802 return c_v256_from_v128(c_v128_shr_u16(a.v128[1], c),
803 c_v128_shr_u16(a.v128[0], c));
804 }
805
c_v256_shr_s16(c_v256 a,unsigned int c)806 SIMD_INLINE c_v256 c_v256_shr_s16(c_v256 a, unsigned int c) {
807 return c_v256_from_v128(c_v128_shr_s16(a.v128[1], c),
808 c_v128_shr_s16(a.v128[0], c));
809 }
810
c_v256_shl_32(c_v256 a,unsigned int c)811 SIMD_INLINE c_v256 c_v256_shl_32(c_v256 a, unsigned int c) {
812 return c_v256_from_v128(c_v128_shl_32(a.v128[1], c),
813 c_v128_shl_32(a.v128[0], c));
814 }
815
c_v256_shr_u32(c_v256 a,unsigned int c)816 SIMD_INLINE c_v256 c_v256_shr_u32(c_v256 a, unsigned int c) {
817 return c_v256_from_v128(c_v128_shr_u32(a.v128[1], c),
818 c_v128_shr_u32(a.v128[0], c));
819 }
820
c_v256_shr_s32(c_v256 a,unsigned int c)821 SIMD_INLINE c_v256 c_v256_shr_s32(c_v256 a, unsigned int c) {
822 return c_v256_from_v128(c_v128_shr_s32(a.v128[1], c),
823 c_v128_shr_s32(a.v128[0], c));
824 }
825
c_v256_shr_s64(c_v256 a,unsigned int n)826 SIMD_INLINE c_v256 c_v256_shr_s64(c_v256 a, unsigned int n) {
827 c_v256 t;
828 if (SIMD_CHECK && n > 63) {
829 fprintf(stderr, "Error: undefined s64 shift right %d\n", n);
830 abort();
831 }
832 t.s64[3] = a.s64[3] >> n;
833 t.s64[2] = a.s64[2] >> n;
834 t.s64[1] = a.s64[1] >> n;
835 t.s64[0] = a.s64[0] >> n;
836 return t;
837 }
838
c_v256_shr_u64(c_v256 a,unsigned int n)839 SIMD_INLINE c_v256 c_v256_shr_u64(c_v256 a, unsigned int n) {
840 c_v256 t;
841 if (SIMD_CHECK && n > 63) {
842 fprintf(stderr, "Error: undefined s64 shift right %d\n", n);
843 abort();
844 }
845 t.u64[3] = a.u64[3] >> n;
846 t.u64[2] = a.u64[2] >> n;
847 t.u64[1] = a.u64[1] >> n;
848 t.u64[0] = a.u64[0] >> n;
849 return t;
850 }
851
c_v256_shl_64(c_v256 a,unsigned int n)852 SIMD_INLINE c_v256 c_v256_shl_64(c_v256 a, unsigned int n) {
853 c_v256 t;
854 if (SIMD_CHECK && n > 63) {
855 fprintf(stderr, "Error: undefined s64 shift right %d\n", n);
856 abort();
857 }
858 t.u64[3] = a.u64[3] << n;
859 t.u64[2] = a.u64[2] << n;
860 t.u64[1] = a.u64[1] << n;
861 t.u64[0] = a.u64[0] << n;
862 return t;
863 }
864
c_v256_shl_n_8(c_v256 a,unsigned int n)865 SIMD_INLINE c_v256 c_v256_shl_n_8(c_v256 a, unsigned int n) {
866 return c_v256_shl_8(a, n);
867 }
868
c_v256_shl_n_16(c_v256 a,unsigned int n)869 SIMD_INLINE c_v256 c_v256_shl_n_16(c_v256 a, unsigned int n) {
870 return c_v256_shl_16(a, n);
871 }
872
c_v256_shl_n_32(c_v256 a,unsigned int n)873 SIMD_INLINE c_v256 c_v256_shl_n_32(c_v256 a, unsigned int n) {
874 return c_v256_shl_32(a, n);
875 }
876
c_v256_shl_n_64(c_v256 a,unsigned int n)877 SIMD_INLINE c_v256 c_v256_shl_n_64(c_v256 a, unsigned int n) {
878 return c_v256_shl_64(a, n);
879 }
880
c_v256_shr_n_u8(c_v256 a,unsigned int n)881 SIMD_INLINE c_v256 c_v256_shr_n_u8(c_v256 a, unsigned int n) {
882 return c_v256_shr_u8(a, n);
883 }
884
c_v256_shr_n_u16(c_v256 a,unsigned int n)885 SIMD_INLINE c_v256 c_v256_shr_n_u16(c_v256 a, unsigned int n) {
886 return c_v256_shr_u16(a, n);
887 }
888
c_v256_shr_n_u32(c_v256 a,unsigned int n)889 SIMD_INLINE c_v256 c_v256_shr_n_u32(c_v256 a, unsigned int n) {
890 return c_v256_shr_u32(a, n);
891 }
892
c_v256_shr_n_u64(c_v256 a,unsigned int n)893 SIMD_INLINE c_v256 c_v256_shr_n_u64(c_v256 a, unsigned int n) {
894 return c_v256_shr_u64(a, n);
895 }
896
c_v256_shr_n_s8(c_v256 a,unsigned int n)897 SIMD_INLINE c_v256 c_v256_shr_n_s8(c_v256 a, unsigned int n) {
898 return c_v256_shr_s8(a, n);
899 }
900
c_v256_shr_n_s16(c_v256 a,unsigned int n)901 SIMD_INLINE c_v256 c_v256_shr_n_s16(c_v256 a, unsigned int n) {
902 return c_v256_shr_s16(a, n);
903 }
904
c_v256_shr_n_s32(c_v256 a,unsigned int n)905 SIMD_INLINE c_v256 c_v256_shr_n_s32(c_v256 a, unsigned int n) {
906 return c_v256_shr_s32(a, n);
907 }
908
c_v256_shr_n_s64(c_v256 a,unsigned int n)909 SIMD_INLINE c_v256 c_v256_shr_n_s64(c_v256 a, unsigned int n) {
910 return c_v256_shr_s64(a, n);
911 }
912
c_v256_shr_n_word(c_v256 a,const unsigned int n)913 SIMD_INLINE c_v256 c_v256_shr_n_word(c_v256 a, const unsigned int n) {
914 return c_v256_shr_n_byte(a, 2 * n);
915 }
c_v256_shl_n_word(c_v256 a,const unsigned int n)916 SIMD_INLINE c_v256 c_v256_shl_n_word(c_v256 a, const unsigned int n) {
917 return c_v256_shl_n_byte(a, 2 * n);
918 }
919
920 typedef uint32_t c_sad256_internal_u16;
921
c_v256_sad_u16_init()922 SIMD_INLINE c_sad256_internal_u16 c_v256_sad_u16_init() { return 0; }
923
924 /* Implementation dependent return value. Result must be finalised with
925 v256_sad_u16_sum(). */
c_v256_sad_u16(c_sad256_internal_u16 s,c_v256 a,c_v256 b)926 SIMD_INLINE c_sad256_internal_u16 c_v256_sad_u16(c_sad256_internal_u16 s,
927 c_v256 a, c_v256 b) {
928 int c;
929 for (c = 0; c < 16; c++)
930 s += a.u16[c] > b.u16[c] ? a.u16[c] - b.u16[c] : b.u16[c] - a.u16[c];
931 return s;
932 }
933
c_v256_sad_u16_sum(c_sad256_internal_u16 s)934 SIMD_INLINE uint32_t c_v256_sad_u16_sum(c_sad256_internal_u16 s) { return s; }
935
936 typedef uint64_t c_ssd256_internal_s16;
937
c_v256_ssd_s16_init()938 SIMD_INLINE c_ssd256_internal_s16 c_v256_ssd_s16_init() { return 0; }
939
940 /* Implementation dependent return value. Result must be finalised with
941 * v256_ssd_s16_sum(). */
c_v256_ssd_s16(c_ssd256_internal_s16 s,c_v256 a,c_v256 b)942 SIMD_INLINE c_ssd256_internal_s16 c_v256_ssd_s16(c_ssd256_internal_s16 s,
943 c_v256 a, c_v256 b) {
944 int c;
945 for (c = 0; c < 16; c++)
946 s += (int32_t)(int16_t)(a.s16[c] - b.s16[c]) *
947 (int32_t)(int16_t)(a.s16[c] - b.s16[c]);
948 return s;
949 }
950
c_v256_ssd_s16_sum(c_ssd256_internal_s16 s)951 SIMD_INLINE uint64_t c_v256_ssd_s16_sum(c_ssd256_internal_s16 s) { return s; }
952
953 #endif // AOM_AOM_DSP_SIMD_V256_INTRINSICS_C_H_
954