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sanitizer
[ DIR ]
drwxr-xr-x
2025-04-02 10:31
adxintrin.h
2.8
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2025-03-31 10:29
ammintrin.h
3.14
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2025-03-31 10:29
avx2intrin.h
57.26
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2025-03-31 10:29
avx5124fmapsintrin.h
6.38
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avx5124vnniwintrin.h
4.16
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2025-03-31 10:29
avx512bitalgintrin.h
8.64
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2025-03-31 10:29
avx512bwintrin.h
99.13
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2025-03-31 10:29
avx512cdintrin.h
5.69
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avx512dqintrin.h
83.37
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2025-03-31 10:29
avx512erintrin.h
12.66
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2025-03-31 10:29
avx512fintrin.h
475.38
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2025-03-31 10:29
avx512ifmaintrin.h
3.35
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2025-03-31 10:29
avx512ifmavlintrin.h
5.26
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2025-03-31 10:29
avx512pfintrin.h
10.05
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2025-03-31 10:29
avx512vbmi2intrin.h
19.35
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2025-03-31 10:29
avx512vbmi2vlintrin.h
36.25
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2025-03-31 10:29
avx512vbmiintrin.h
4.81
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2025-03-31 10:29
avx512vbmivlintrin.h
8.17
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2025-03-31 10:29
avx512vlbwintrin.h
140.48
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2025-03-31 10:29
avx512vldqintrin.h
59.88
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2025-03-31 10:29
avx512vlintrin.h
414.04
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2025-03-31 10:29
avx512vnniintrin.h
4.85
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2025-03-31 10:29
avx512vnnivlintrin.h
8.05
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2025-03-31 10:29
avx512vpopcntdqintrin.h
3.04
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2025-03-31 10:29
avx512vpopcntdqvlintrin.h
4.56
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2025-03-31 10:29
avxintrin.h
49.43
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2025-03-31 10:29
bmi2intrin.h
3.31
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2025-03-31 10:29
bmiintrin.h
5.5
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2025-03-31 10:29
bmmintrin.h
1.13
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2025-03-31 10:29
cet.h
2.6
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2025-03-31 10:29
cetintrin.h
3.25
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2025-03-31 10:29
clflushoptintrin.h
1.62
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clwbintrin.h
1.55
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clzerointrin.h
1.46
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cpuid.h
8.72
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2025-03-31 10:29
cross-stdarg.h
2.5
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2025-03-31 10:29
emmintrin.h
49.84
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2025-03-31 10:29
f16cintrin.h
3.33
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2025-03-31 10:29
float.h
16.52
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2025-03-31 10:29
fma4intrin.h
8.92
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2025-03-31 10:29
fmaintrin.h
10.29
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2025-03-31 10:29
fxsrintrin.h
2.06
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2025-03-31 10:29
gcov.h
1.36
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2025-03-31 10:36
gfniintrin.h
14.7
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2025-03-31 10:29
ia32intrin.h
7.69
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2025-03-31 10:29
immintrin.h
5.33
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2025-03-31 10:29
iso646.h
1.24
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2025-03-31 10:29
limits.h
5.95
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2025-03-31 10:29
lwpintrin.h
3.32
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lzcntintrin.h
2.34
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2025-03-31 10:29
mm3dnow.h
6.91
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2025-03-31 10:29
mm_malloc.h
1.74
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2025-03-31 10:29
mmintrin.h
30.62
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2025-03-31 10:29
movdirintrin.h
2.29
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2025-03-31 10:29
mwaitxintrin.h
1.71
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2025-03-31 10:29
nmmintrin.h
1.26
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2025-03-31 10:29
omp.h
5.85
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2025-03-31 10:36
openacc.h
4.53
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2025-03-31 10:36
pconfigintrin.h
2.29
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2025-03-31 10:29
pkuintrin.h
1.7
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2025-03-31 10:29
pmmintrin.h
4.27
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2025-03-31 10:29
popcntintrin.h
1.71
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2025-03-31 10:29
prfchwintrin.h
1.41
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2025-03-31 10:29
rdseedintrin.h
1.97
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2025-03-31 10:29
rtmintrin.h
2.67
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2025-03-31 10:29
sgxintrin.h
6.92
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2025-03-31 10:29
shaintrin.h
3.13
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2025-03-31 10:29
smmintrin.h
27.74
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2025-03-31 10:29
stdalign.h
1.18
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2025-03-31 10:29
stdarg.h
3.98
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2025-03-31 10:29
stdatomic.h
9.1
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2025-03-31 10:29
stdbool.h
1.49
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2025-03-31 10:29
stddef.h
13.81
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2025-03-31 10:29
stdfix.h
5.86
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2025-03-31 10:29
stdint-gcc.h
9.24
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2025-03-31 10:29
stdint.h
328
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2025-03-31 10:29
stdnoreturn.h
1.11
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2025-03-31 10:29
syslimits.h
330
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2025-03-31 10:07
tbmintrin.h
5.12
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2025-03-31 10:29
tmmintrin.h
8.15
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2025-03-31 10:29
unwind.h
10.65
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2025-03-31 10:36
vaesintrin.h
4.55
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2025-03-31 10:29
varargs.h
139
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2025-03-31 10:29
vpclmulqdqintrin.h
3.4
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2025-03-31 10:29
wbnoinvdintrin.h
1.58
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2025-03-31 10:29
wmmintrin.h
4.55
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2025-03-31 10:29
x86intrin.h
2.06
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2025-03-31 10:29
xmmintrin.h
41.22
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2025-03-31 10:29
xopintrin.h
27.9
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2025-03-31 10:29
xsavecintrin.h
1.78
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2025-03-31 10:29
xsaveintrin.h
2.46
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2025-03-31 10:29
xsaveoptintrin.h
1.86
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2025-03-31 10:29
xsavesintrin.h
2.11
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2025-03-31 10:29
xtestintrin.h
1.65
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2025-03-31 10:29
Save
Rename
/* Copyright (C) 2013-2018 Free Software Foundation, Inc. This file is part of GCC. GCC is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 3, or (at your option) any later version. GCC is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. Under Section 7 of GPL version 3, you are granted additional permissions described in the GCC Runtime Library Exception, version 3.1, as published by the Free Software Foundation. You should have received a copy of the GNU General Public License and a copy of the GCC Runtime Library Exception along with this program; see the files COPYING3 and COPYING.RUNTIME respectively. If not, see <http://www.gnu.org/licenses/>. */ #ifndef _IMMINTRIN_H_INCLUDED #error "Never use <avx512vbmi2vlintrin.h> directly; include <immintrin.h> instead." #endif #ifndef _AVX512VBMI2VLINTRIN_H_INCLUDED #define _AVX512VBMI2VLINTRIN_H_INCLUDED #if !defined(__AVX512VL__) || !defined(__AVX512VBMI2__) #pragma GCC push_options #pragma GCC target("avx512vbmi2,avx512vl") #define __DISABLE_AVX512VBMI2VL__ #endif /* __AVX512VBMIVL__ */ extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_compress_epi8 (__m128i __A, __mmask16 __B, __m128i __C) { return (__m128i) __builtin_ia32_compressqi128_mask ((__v16qi)__C, (__v16qi)__A, (__mmask16)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_compress_epi8 (__mmask16 __A, __m128i __B) { return (__m128i) __builtin_ia32_compressqi128_mask ((__v16qi) __B, (__v16qi) _mm_setzero_si128 (), (__mmask16) __A); } extern __inline void __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_compressstoreu_epi16 (void * __A, __mmask16 __B, __m256i __C) { __builtin_ia32_compressstoreuhi256_mask ((__v16hi *) __A, (__v16hi) __C, (__mmask16) __B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_compress_epi16 (__m128i __A, __mmask8 __B, __m128i __C) { return (__m128i) __builtin_ia32_compresshi128_mask ((__v8hi)__C, (__v8hi)__A, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_compress_epi16 (__mmask8 __A, __m128i __B) { return (__m128i) __builtin_ia32_compresshi128_mask ((__v8hi) __B, (__v8hi) _mm_setzero_si128 (), (__mmask8) __A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_compress_epi16 (__m256i __A, __mmask16 __B, __m256i __C) { return (__m256i) __builtin_ia32_compresshi256_mask ((__v16hi)__C, (__v16hi)__A, (__mmask16)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_compress_epi16 (__mmask16 __A, __m256i __B) { return (__m256i) __builtin_ia32_compresshi256_mask ((__v16hi) __B, (__v16hi) _mm256_setzero_si256 (), (__mmask16) __A); } extern __inline void __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_compressstoreu_epi8 (void * __A, __mmask16 __B, __m128i __C) { __builtin_ia32_compressstoreuqi128_mask ((__v16qi *) __A, (__v16qi) __C, (__mmask16) __B); } extern __inline void __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_compressstoreu_epi16 (void * __A, __mmask8 __B, __m128i __C) { __builtin_ia32_compressstoreuhi128_mask ((__v8hi *) __A, (__v8hi) __C, (__mmask8) __B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_expand_epi8 (__m128i __A, __mmask16 __B, __m128i __C) { return (__m128i) __builtin_ia32_expandqi128_mask ((__v16qi) __C, (__v16qi) __A, (__mmask16) __B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_expand_epi8 (__mmask16 __A, __m128i __B) { return (__m128i) __builtin_ia32_expandqi128_maskz ((__v16qi) __B, (__v16qi) _mm_setzero_si128 (), (__mmask16) __A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_expandloadu_epi8 (__m128i __A, __mmask16 __B, const void * __C) { return (__m128i) __builtin_ia32_expandloadqi128_mask ((const __v16qi *) __C, (__v16qi) __A, (__mmask16) __B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_expandloadu_epi8 (__mmask16 __A, const void * __B) { return (__m128i) __builtin_ia32_expandloadqi128_maskz ((const __v16qi *) __B, (__v16qi) _mm_setzero_si128 (), (__mmask16) __A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_expand_epi16 (__m128i __A, __mmask8 __B, __m128i __C) { return (__m128i) __builtin_ia32_expandhi128_mask ((__v8hi) __C, (__v8hi) __A, (__mmask8) __B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_expand_epi16 (__mmask8 __A, __m128i __B) { return (__m128i) __builtin_ia32_expandhi128_maskz ((__v8hi) __B, (__v8hi) _mm_setzero_si128 (), (__mmask8) __A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_expandloadu_epi16 (__m128i __A, __mmask8 __B, const void * __C) { return (__m128i) __builtin_ia32_expandloadhi128_mask ((const __v8hi *) __C, (__v8hi) __A, (__mmask8) __B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_expandloadu_epi16 (__mmask8 __A, const void * __B) { return (__m128i) __builtin_ia32_expandloadhi128_maskz ((const __v8hi *) __B, (__v8hi) _mm_setzero_si128 (), (__mmask8) __A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_expand_epi16 (__m256i __A, __mmask16 __B, __m256i __C) { return (__m256i) __builtin_ia32_expandhi256_mask ((__v16hi) __C, (__v16hi) __A, (__mmask16) __B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_expand_epi16 (__mmask16 __A, __m256i __B) { return (__m256i) __builtin_ia32_expandhi256_maskz ((__v16hi) __B, (__v16hi) _mm256_setzero_si256 (), (__mmask16) __A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_expandloadu_epi16 (__m256i __A, __mmask16 __B, const void * __C) { return (__m256i) __builtin_ia32_expandloadhi256_mask ((const __v16hi *) __C, (__v16hi) __A, (__mmask16) __B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_expandloadu_epi16 (__mmask16 __A, const void * __B) { return (__m256i) __builtin_ia32_expandloadhi256_maskz ((const __v16hi *) __B, (__v16hi) _mm256_setzero_si256 (), (__mmask16) __A); } #ifdef __OPTIMIZE__ extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shrdi_epi16 (__m256i __A, __m256i __B, int __C) { return (__m256i) __builtin_ia32_vpshrd_v16hi ((__v16hi)__A, (__v16hi) __B, __C); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shrdi_epi16 (__m256i __A, __mmask16 __B, __m256i __C, __m256i __D, int __E) { return (__m256i)__builtin_ia32_vpshrd_v16hi_mask ((__v16hi)__C, (__v16hi) __D, __E, (__v16hi) __A, (__mmask16)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shrdi_epi16 (__mmask16 __A, __m256i __B, __m256i __C, int __D) { return (__m256i)__builtin_ia32_vpshrd_v16hi_mask ((__v16hi)__B, (__v16hi) __C, __D, (__v16hi) _mm256_setzero_si256 (), (__mmask16)__A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shrdi_epi32 (__m256i __A, __mmask8 __B, __m256i __C, __m256i __D, int __E) { return (__m256i)__builtin_ia32_vpshrd_v8si_mask ((__v8si)__C, (__v8si) __D, __E, (__v8si) __A, (__mmask8)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shrdi_epi32 (__mmask8 __A, __m256i __B, __m256i __C, int __D) { return (__m256i)__builtin_ia32_vpshrd_v8si_mask ((__v8si)__B, (__v8si) __C, __D, (__v8si) _mm256_setzero_si256 (), (__mmask8)__A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shrdi_epi32 (__m256i __A, __m256i __B, int __C) { return (__m256i) __builtin_ia32_vpshrd_v8si ((__v8si)__A, (__v8si) __B, __C); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shrdi_epi64 (__m256i __A, __mmask8 __B, __m256i __C, __m256i __D, int __E) { return (__m256i)__builtin_ia32_vpshrd_v4di_mask ((__v4di)__C, (__v4di) __D, __E, (__v4di) __A, (__mmask8)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shrdi_epi64 (__mmask8 __A, __m256i __B, __m256i __C, int __D) { return (__m256i)__builtin_ia32_vpshrd_v4di_mask ((__v4di)__B, (__v4di) __C, __D, (__v4di) _mm256_setzero_si256 (), (__mmask8)__A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shrdi_epi64 (__m256i __A, __m256i __B, int __C) { return (__m256i) __builtin_ia32_vpshrd_v4di ((__v4di)__A, (__v4di) __B, __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shrdi_epi16 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D, int __E) { return (__m128i)__builtin_ia32_vpshrd_v8hi_mask ((__v8hi)__C, (__v8hi) __D, __E, (__v8hi) __A, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shrdi_epi16 (__mmask8 __A, __m128i __B, __m128i __C, int __D) { return (__m128i)__builtin_ia32_vpshrd_v8hi_mask ((__v8hi)__B, (__v8hi) __C, __D, (__v8hi) _mm_setzero_si128 (), (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shrdi_epi16 (__m128i __A, __m128i __B, int __C) { return (__m128i) __builtin_ia32_vpshrd_v8hi ((__v8hi)__A, (__v8hi) __B, __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shrdi_epi32 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D, int __E) { return (__m128i)__builtin_ia32_vpshrd_v4si_mask ((__v4si)__C, (__v4si) __D, __E, (__v4si) __A, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shrdi_epi32 (__mmask8 __A, __m128i __B, __m128i __C, int __D) { return (__m128i)__builtin_ia32_vpshrd_v4si_mask ((__v4si)__B, (__v4si) __C, __D, (__v4si) _mm_setzero_si128 (), (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shrdi_epi32 (__m128i __A, __m128i __B, int __C) { return (__m128i) __builtin_ia32_vpshrd_v4si ((__v4si)__A, (__v4si) __B, __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shrdi_epi64 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D, int __E) { return (__m128i)__builtin_ia32_vpshrd_v2di_mask ((__v2di)__C, (__v2di) __D, __E, (__v2di) __A, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shrdi_epi64 (__mmask8 __A, __m128i __B, __m128i __C, int __D) { return (__m128i)__builtin_ia32_vpshrd_v2di_mask ((__v2di)__B, (__v2di) __C, __D, (__v2di) _mm_setzero_si128 (), (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shrdi_epi64 (__m128i __A, __m128i __B, int __C) { return (__m128i) __builtin_ia32_vpshrd_v2di ((__v2di)__A, (__v2di) __B, __C); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shldi_epi16 (__m256i __A, __m256i __B, int __C) { return (__m256i) __builtin_ia32_vpshld_v16hi ((__v16hi)__A, (__v16hi) __B, __C); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shldi_epi16 (__m256i __A, __mmask16 __B, __m256i __C, __m256i __D, int __E) { return (__m256i)__builtin_ia32_vpshld_v16hi_mask ((__v16hi)__C, (__v16hi) __D, __E, (__v16hi) __A, (__mmask16)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shldi_epi16 (__mmask16 __A, __m256i __B, __m256i __C, int __D) { return (__m256i)__builtin_ia32_vpshld_v16hi_mask ((__v16hi)__B, (__v16hi) __C, __D, (__v16hi) _mm256_setzero_si256 (), (__mmask16)__A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shldi_epi32 (__m256i __A, __mmask8 __B, __m256i __C, __m256i __D, int __E) { return (__m256i)__builtin_ia32_vpshld_v8si_mask ((__v8si)__C, (__v8si) __D, __E, (__v8si) __A, (__mmask8)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shldi_epi32 (__mmask8 __A, __m256i __B, __m256i __C, int __D) { return (__m256i)__builtin_ia32_vpshld_v8si_mask ((__v8si)__B, (__v8si) __C, __D, (__v8si) _mm256_setzero_si256 (), (__mmask8)__A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shldi_epi32 (__m256i __A, __m256i __B, int __C) { return (__m256i) __builtin_ia32_vpshld_v8si ((__v8si)__A, (__v8si) __B, __C); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shldi_epi64 (__m256i __A, __mmask8 __B, __m256i __C, __m256i __D, int __E) { return (__m256i)__builtin_ia32_vpshld_v4di_mask ((__v4di)__C, (__v4di) __D, __E, (__v4di) __A, (__mmask8)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shldi_epi64 (__mmask8 __A, __m256i __B, __m256i __C, int __D) { return (__m256i)__builtin_ia32_vpshld_v4di_mask ((__v4di)__B, (__v4di) __C, __D, (__v4di) _mm256_setzero_si256 (), (__mmask8)__A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shldi_epi64 (__m256i __A, __m256i __B, int __C) { return (__m256i) __builtin_ia32_vpshld_v4di ((__v4di)__A, (__v4di) __B, __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shldi_epi16 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D, int __E) { return (__m128i)__builtin_ia32_vpshld_v8hi_mask ((__v8hi)__C, (__v8hi) __D, __E, (__v8hi) __A, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shldi_epi16 (__mmask8 __A, __m128i __B, __m128i __C, int __D) { return (__m128i)__builtin_ia32_vpshld_v8hi_mask ((__v8hi)__B, (__v8hi) __C, __D, (__v8hi) _mm_setzero_si128 (), (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shldi_epi16 (__m128i __A, __m128i __B, int __C) { return (__m128i) __builtin_ia32_vpshld_v8hi ((__v8hi)__A, (__v8hi) __B, __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shldi_epi32 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D, int __E) { return (__m128i)__builtin_ia32_vpshld_v4si_mask ((__v4si)__C, (__v4si) __D, __E, (__v4si) __A, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shldi_epi32 (__mmask8 __A, __m128i __B, __m128i __C, int __D) { return (__m128i)__builtin_ia32_vpshld_v4si_mask ((__v4si)__B, (__v4si) __C, __D, (__v4si) _mm_setzero_si128 (), (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shldi_epi32 (__m128i __A, __m128i __B, int __C) { return (__m128i) __builtin_ia32_vpshld_v4si ((__v4si)__A, (__v4si) __B, __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shldi_epi64 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D, int __E) { return (__m128i)__builtin_ia32_vpshld_v2di_mask ((__v2di)__C, (__v2di) __D, __E, (__v2di) __A, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shldi_epi64 (__mmask8 __A, __m128i __B, __m128i __C, int __D) { return (__m128i)__builtin_ia32_vpshld_v2di_mask ((__v2di)__B, (__v2di) __C, __D, (__v2di) _mm_setzero_si128 (), (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shldi_epi64 (__m128i __A, __m128i __B, int __C) { return (__m128i) __builtin_ia32_vpshld_v2di ((__v2di)__A, (__v2di) __B, __C); } #else #define _mm256_shrdi_epi16(A, B, C) \ ((__m256i) __builtin_ia32_vpshrd_v16hi ((__v16hi)(__m256i)(A), \ (__v16hi)(__m256i)(B),(int)(C))) #define _mm256_mask_shrdi_epi16(A, B, C, D, E) \ ((__m256i) __builtin_ia32_vpshrd_v16hi_mask ((__v16hi)(__m256i)(C), \ (__v16hi)(__m256i)(D), \ (int)(E), \ (__v16hi)(__m256i)(A), \ (__mmask16)(B))) #define _mm256_maskz_shrdi_epi16(A, B, C, D) \ ((__m256i) \ __builtin_ia32_vpshrd_v16hi_mask ((__v16hi)(__m256i)(B), \ (__v16hi)(__m256i)(C),(int)(D), \ (__v16hi)(__m256i)_mm256_setzero_si256 (), \ (__mmask16)(A))) #define _mm256_shrdi_epi32(A, B, C) \ ((__m256i) __builtin_ia32_vpshrd_v8si ((__v8si)(__m256i)(A), \ (__v8si)(__m256i)(B),(int)(C))) #define _mm256_mask_shrdi_epi32(A, B, C, D, E) \ ((__m256i) __builtin_ia32_vpshrd_v8si_mask ((__v8si)(__m256i)(C), \ (__v8si)(__m256i)(D), \ (int)(E), \ (__v8si)(__m256i)(A), \ (__mmask8)(B))) #define _mm256_maskz_shrdi_epi32(A, B, C, D) \ ((__m256i) \ __builtin_ia32_vpshrd_v8si_mask ((__v8si)(__m256i)(B), \ (__v8si)(__m256i)(C),(int)(D), \ (__v8si)(__m256i)_mm256_setzero_si256 (), \ (__mmask8)(A))) #define _mm256_shrdi_epi64(A, B, C) \ ((__m256i) __builtin_ia32_vpshrd_v4di ((__v4di)(__m256i)(A), \ (__v4di)(__m256i)(B),(int)(C))) #define _mm256_mask_shrdi_epi64(A, B, C, D, E) \ ((__m256i) __builtin_ia32_vpshrd_v4di_mask ((__v4di)(__m256i)(C), \ (__v4di)(__m256i)(D), (int)(E), \ (__v4di)(__m256i)(A), \ (__mmask8)(B))) #define _mm256_maskz_shrdi_epi64(A, B, C, D) \ ((__m256i) \ __builtin_ia32_vpshrd_v4di_mask ((__v4di)(__m256i)(B), \ (__v4di)(__m256i)(C),(int)(D), \ (__v4di)(__m256i)_mm256_setzero_si256 (), \ (__mmask8)(A))) #define _mm_shrdi_epi16(A, B, C) \ ((__m128i) __builtin_ia32_vpshrd_v8hi ((__v8hi)(__m128i)(A), \ (__v8hi)(__m128i)(B),(int)(C))) #define _mm_mask_shrdi_epi16(A, B, C, D, E) \ ((__m128i) __builtin_ia32_vpshrd_v8hi_mask ((__v8hi)(__m128i)(C), \ (__v8hi)(__m128i)(D), (int)(E), \ (__v8hi)(__m128i)(A), \ (__mmask8)(B))) #define _mm_maskz_shrdi_epi16(A, B, C, D) \ ((__m128i) \ __builtin_ia32_vpshrd_v8hi_mask ((__v8hi)(__m128i)(B), \ (__v8hi)(__m128i)(C),(int)(D), \ (__v8hi)(__m128i)_mm_setzero_si128 (), \ (__mmask8)(A))) #define _mm_shrdi_epi32(A, B, C) \ ((__m128i) __builtin_ia32_vpshrd_v4si ((__v4si)(__m128i)(A), \ (__v4si)(__m128i)(B),(int)(C))) #define _mm_mask_shrdi_epi32(A, B, C, D, E) \ ((__m128i) __builtin_ia32_vpshrd_v4si_mask ((__v4si)(__m128i)(C), \ (__v4si)(__m128i)(D), (int)(E), \ (__v4si)(__m128i)(A), \ (__mmask8)(B))) #define _mm_maskz_shrdi_epi32(A, B, C, D) \ ((__m128i) \ __builtin_ia32_vpshrd_v4si_mask ((__v4si)(__m128i)(B), \ (__v4si)(__m128i)(C),(int)(D), \ (__v4si)(__m128i)_mm_setzero_si128 (), \ (__mmask8)(A))) #define _mm_shrdi_epi64(A, B, C) \ ((__m128i) __builtin_ia32_vpshrd_v2di ((__v2di)(__m128i)(A), \ (__v2di)(__m128i)(B),(int)(C))) #define _mm_mask_shrdi_epi64(A, B, C, D, E) \ ((__m128i) __builtin_ia32_vpshrd_v2di_mask ((__v2di)(__m128i)(C), \ (__v2di)(__m128i)(D), (int)(E), \ (__v2di)(__m128i)(A), \ (__mmask8)(B))) #define _mm_maskz_shrdi_epi64(A, B, C, D) \ ((__m128i) \ __builtin_ia32_vpshrd_v2di_mask ((__v2di)(__m128i)(B), \ (__v2di)(__m128i)(C),(int)(D), \ (__v2di)(__m128i)_mm_setzero_si128 (), \ (__mmask8)(A))) #define _mm256_shldi_epi16(A, B, C) \ ((__m256i) __builtin_ia32_vpshld_v16hi ((__v16hi)(__m256i)(A), \ (__v16hi)(__m256i)(B),(int)(C))) #define _mm256_mask_shldi_epi16(A, B, C, D, E) \ ((__m256i) __builtin_ia32_vpshld_v16hi_mask ((__v16hi)(__m256i)(C), \ (__v16hi)(__m256i)(D), \ (int)(E), \ (__v16hi)(__m256i)(A), \ (__mmask16)(B))) #define _mm256_maskz_shldi_epi16(A, B, C, D) \ ((__m256i) \ __builtin_ia32_vpshld_v16hi_mask ((__v16hi)(__m256i)(B), \ (__v16hi)(__m256i)(C),(int)(D), \ (__v16hi)(__m256i)_mm256_setzero_si256 (), \ (__mmask16)(A))) #define _mm256_shldi_epi32(A, B, C) \ ((__m256i) __builtin_ia32_vpshld_v8si ((__v8si)(__m256i)(A), \ (__v8si)(__m256i)(B),(int)(C))) #define _mm256_mask_shldi_epi32(A, B, C, D, E) \ ((__m256i) __builtin_ia32_vpshld_v8si_mask ((__v8si)(__m256i)(C), \ (__v8si)(__m256i)(D), (int)(E), \ (__v8si)(__m256i)(A), \ (__mmask8)(B))) #define _mm256_maskz_shldi_epi32(A, B, C, D) \ ((__m256i) \ __builtin_ia32_vpshld_v8si_mask ((__v8si)(__m256i)(B), \ (__v8si)(__m256i)(C),(int)(D), \ (__v8si)(__m256i)_mm256_setzero_si256 (), \ (__mmask8)(A))) #define _mm256_shldi_epi64(A, B, C) \ ((__m256i) __builtin_ia32_vpshld_v4di ((__v4di)(__m256i)(A), \ (__v4di)(__m256i)(B),(int)(C))) #define _mm256_mask_shldi_epi64(A, B, C, D, E) \ ((__m256i) __builtin_ia32_vpshld_v4di_mask ((__v4di)(__m256i)(C), \ (__v4di)(__m256i)(D), (int)(E), \ (__v4di)(__m256i)(A), \ (__mmask8)(B))) #define _mm256_maskz_shldi_epi64(A, B, C, D) \ ((__m256i) \ __builtin_ia32_vpshld_v4di_mask ((__v4di)(__m256i)(B), \ (__v4di)(__m256i)(C),(int)(D), \ (__v4di)(__m256i)_mm256_setzero_si256 (), \ (__mmask8)(A))) #define _mm_shldi_epi16(A, B, C) \ ((__m128i) __builtin_ia32_vpshld_v8hi ((__v8hi)(__m128i)(A), \ (__v8hi)(__m128i)(B),(int)(C))) #define _mm_mask_shldi_epi16(A, B, C, D, E) \ ((__m128i) __builtin_ia32_vpshld_v8hi_mask ((__v8hi)(__m128i)(C), \ (__v8hi)(__m128i)(D), (int)(E), \ (__v8hi)(__m128i)(A), \ (__mmask8)(B))) #define _mm_maskz_shldi_epi16(A, B, C, D) \ ((__m128i) \ __builtin_ia32_vpshld_v8hi_mask ((__v8hi)(__m128i)(B), \ (__v8hi)(__m128i)(C),(int)(D), \ (__v8hi)(__m128i)_mm_setzero_si128 (), \ (__mmask8)(A))) #define _mm_shldi_epi32(A, B, C) \ ((__m128i) __builtin_ia32_vpshld_v4si ((__v4si)(__m128i)(A), \ (__v4si)(__m128i)(B),(int)(C))) #define _mm_mask_shldi_epi32(A, B, C, D, E) \ ((__m128i) __builtin_ia32_vpshld_v4si_mask ((__v4si)(__m128i)(C), \ (__v4si)(__m128i)(D), (int)(E), \ (__v4si)(__m128i)(A), \ (__mmask8)(B))) #define _mm_maskz_shldi_epi32(A, B, C, D) \ ((__m128i) \ __builtin_ia32_vpshld_v4si_mask ((__v4si)(__m128i)(B), \ (__v4si)(__m128i)(C),(int)(D), \ (__v4si)(__m128i)_mm_setzero_si128 (), \ (__mmask8)(A))) #define _mm_shldi_epi64(A, B, C) \ ((__m128i) __builtin_ia32_vpshld_v2di ((__v2di)(__m128i)(A), \ (__v2di)(__m128i)(B),(int)(C))) #define _mm_mask_shldi_epi64(A, B, C, D, E) \ ((__m128i) __builtin_ia32_vpshld_v2di_mask ((__v2di)(__m128i)(C), \ (__v2di)(__m128i)(D), (int)(E), \ (__v2di)(__m128i)(A), \ (__mmask8)(B))) #define _mm_maskz_shldi_epi64(A, B, C, D) \ ((__m128i) \ __builtin_ia32_vpshld_v2di_mask ((__v2di)(__m128i)(B), \ (__v2di)(__m128i)(C),(int)(D), \ (__v2di)(__m128i)_mm_setzero_si128 (), \ (__mmask8)(A))) #endif extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shrdv_epi16 (__m256i __A, __m256i __B, __m256i __C) { return (__m256i) __builtin_ia32_vpshrdv_v16hi ((__v16hi)__A, (__v16hi) __B, (__v16hi) __C); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shrdv_epi16 (__m256i __A, __mmask16 __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshrdv_v16hi_mask ((__v16hi)__A, (__v16hi) __C, (__v16hi) __D, (__mmask16)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shrdv_epi16 (__mmask16 __A, __m256i __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshrdv_v16hi_maskz ((__v16hi)__B, (__v16hi) __C, (__v16hi) __D, (__mmask16)__A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shrdv_epi32 (__m256i __A, __m256i __B, __m256i __C) { return (__m256i) __builtin_ia32_vpshrdv_v8si ((__v8si)__A, (__v8si) __B, (__v8si) __C); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shrdv_epi32 (__m256i __A, __mmask8 __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshrdv_v8si_mask ((__v8si)__A, (__v8si) __C, (__v8si) __D, (__mmask8)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shrdv_epi32 (__mmask8 __A, __m256i __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshrdv_v8si_maskz ((__v8si)__B, (__v8si) __C, (__v8si) __D, (__mmask8)__A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shrdv_epi64 (__m256i __A, __m256i __B, __m256i __C) { return (__m256i) __builtin_ia32_vpshrdv_v4di ((__v4di)__A, (__v4di) __B, (__v4di) __C); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shrdv_epi64 (__m256i __A, __mmask8 __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshrdv_v4di_mask ((__v4di)__A, (__v4di) __C, (__v4di) __D, (__mmask8)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shrdv_epi64 (__mmask8 __A, __m256i __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshrdv_v4di_maskz ((__v4di)__B, (__v4di) __C, (__v4di) __D, (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shrdv_epi16 (__m128i __A, __m128i __B, __m128i __C) { return (__m128i) __builtin_ia32_vpshrdv_v8hi ((__v8hi)__A, (__v8hi) __B, (__v8hi) __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shrdv_epi16 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshrdv_v8hi_mask ((__v8hi)__A, (__v8hi) __C, (__v8hi) __D, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shrdv_epi16 (__mmask8 __A, __m128i __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshrdv_v8hi_maskz ((__v8hi)__B, (__v8hi) __C, (__v8hi) __D, (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shrdv_epi32 (__m128i __A, __m128i __B, __m128i __C) { return (__m128i) __builtin_ia32_vpshrdv_v4si ((__v4si)__A, (__v4si) __B, (__v4si) __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shrdv_epi32 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshrdv_v4si_mask ((__v4si)__A, (__v4si) __C, (__v4si) __D, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shrdv_epi32 (__mmask8 __A, __m128i __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshrdv_v4si_maskz ((__v4si)__B, (__v4si) __C, (__v4si) __D, (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shrdv_epi64 (__m128i __A, __m128i __B, __m128i __C) { return (__m128i) __builtin_ia32_vpshrdv_v2di ((__v2di)__A, (__v2di) __B, (__v2di) __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shrdv_epi64 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshrdv_v2di_mask ((__v2di)__A, (__v2di) __C, (__v2di) __D, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shrdv_epi64 (__mmask8 __A, __m128i __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshrdv_v2di_maskz ((__v2di)__B, (__v2di) __C, (__v2di) __D, (__mmask8)__A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shldv_epi16 (__m256i __A, __m256i __B, __m256i __C) { return (__m256i) __builtin_ia32_vpshldv_v16hi ((__v16hi)__A, (__v16hi) __B, (__v16hi) __C); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shldv_epi16 (__m256i __A, __mmask16 __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshldv_v16hi_mask ((__v16hi)__A, (__v16hi) __C, (__v16hi) __D, (__mmask16)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shldv_epi16 (__mmask16 __A, __m256i __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshldv_v16hi_maskz ((__v16hi)__B, (__v16hi) __C, (__v16hi) __D, (__mmask16)__A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shldv_epi32 (__m256i __A, __m256i __B, __m256i __C) { return (__m256i) __builtin_ia32_vpshldv_v8si ((__v8si)__A, (__v8si) __B, (__v8si) __C); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shldv_epi32 (__m256i __A, __mmask8 __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshldv_v8si_mask ((__v8si)__A, (__v8si) __C, (__v8si) __D, (__mmask8)__B) ; } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shldv_epi32 (__mmask8 __A, __m256i __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshldv_v8si_maskz ((__v8si)__B, (__v8si) __C, (__v8si) __D, (__mmask8)__A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_shldv_epi64 (__m256i __A, __m256i __B, __m256i __C) { return (__m256i) __builtin_ia32_vpshldv_v4di ((__v4di)__A, (__v4di) __B, (__v4di) __C); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_shldv_epi64 (__m256i __A, __mmask8 __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshldv_v4di_mask ((__v4di)__A, (__v4di) __C, (__v4di) __D, (__mmask8)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_shldv_epi64 (__mmask8 __A, __m256i __B, __m256i __C, __m256i __D) { return (__m256i)__builtin_ia32_vpshldv_v4di_maskz ((__v4di)__B, (__v4di) __C, (__v4di) __D, (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shldv_epi16 (__m128i __A, __m128i __B, __m128i __C) { return (__m128i) __builtin_ia32_vpshldv_v8hi ((__v8hi)__A, (__v8hi) __B, (__v8hi) __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shldv_epi16 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshldv_v8hi_mask ((__v8hi)__A, (__v8hi) __C, (__v8hi) __D, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shldv_epi16 (__mmask8 __A, __m128i __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshldv_v8hi_maskz ((__v8hi)__B, (__v8hi) __C, (__v8hi) __D, (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shldv_epi32 (__m128i __A, __m128i __B, __m128i __C) { return (__m128i) __builtin_ia32_vpshldv_v4si ((__v4si)__A, (__v4si) __B, (__v4si) __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shldv_epi32 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshldv_v4si_mask ((__v4si)__A, (__v4si) __C, (__v4si) __D, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shldv_epi32 (__mmask8 __A, __m128i __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshldv_v4si_maskz ((__v4si)__B, (__v4si) __C, (__v4si) __D, (__mmask8)__A); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_shldv_epi64 (__m128i __A, __m128i __B, __m128i __C) { return (__m128i) __builtin_ia32_vpshldv_v2di ((__v2di)__A, (__v2di) __B, (__v2di) __C); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_mask_shldv_epi64 (__m128i __A, __mmask8 __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshldv_v2di_mask ((__v2di)__A, (__v2di) __C, (__v2di) __D, (__mmask8)__B); } extern __inline __m128i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm_maskz_shldv_epi64 (__mmask8 __A, __m128i __B, __m128i __C, __m128i __D) { return (__m128i)__builtin_ia32_vpshldv_v2di_maskz ((__v2di)__B, (__v2di) __C, (__v2di) __D, (__mmask8)__A); } #ifdef __DISABLE_AVX512VBMI2VL__ #undef __DISABLE_AVX512VBMI2VL__ #pragma GCC pop_options #endif /* __DISABLE_AVX512VBMIVL__ */ #if !defined(__AVX512VL__) || !defined(__AVX512VBMI2__) || \ !defined(__AVX512BW__) #pragma GCC push_options #pragma GCC target("avx512vbmi2,avx512vl,avx512bw") #define __DISABLE_AVX512VBMI2VLBW__ #endif /* __AVX512VBMIVLBW__ */ extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_compress_epi8 (__m256i __A, __mmask32 __B, __m256i __C) { return (__m256i) __builtin_ia32_compressqi256_mask ((__v32qi)__C, (__v32qi)__A, (__mmask32)__B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_compress_epi8 (__mmask32 __A, __m256i __B) { return (__m256i) __builtin_ia32_compressqi256_mask ((__v32qi) __B, (__v32qi) _mm256_setzero_si256 (), (__mmask32) __A); } extern __inline void __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_compressstoreu_epi8 (void * __A, __mmask32 __B, __m256i __C) { __builtin_ia32_compressstoreuqi256_mask ((__v32qi *) __A, (__v32qi) __C, (__mmask32) __B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_expand_epi8 (__m256i __A, __mmask32 __B, __m256i __C) { return (__m256i) __builtin_ia32_expandqi256_mask ((__v32qi) __C, (__v32qi) __A, (__mmask32) __B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_expand_epi8 (__mmask32 __A, __m256i __B) { return (__m256i) __builtin_ia32_expandqi256_maskz ((__v32qi) __B, (__v32qi) _mm256_setzero_si256 (), (__mmask32) __A); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_mask_expandloadu_epi8 (__m256i __A, __mmask32 __B, const void * __C) { return (__m256i) __builtin_ia32_expandloadqi256_mask ((const __v32qi *) __C, (__v32qi) __A, (__mmask32) __B); } extern __inline __m256i __attribute__((__gnu_inline__, __always_inline__, __artificial__)) _mm256_maskz_expandloadu_epi8 (__mmask32 __A, const void * __B) { return (__m256i) __builtin_ia32_expandloadqi256_maskz ((const __v32qi *) __B, (__v32qi) _mm256_setzero_si256 (), (__mmask32) __A); } #ifdef __DISABLE_AVX512VBMI2VLBW__ #undef __DISABLE_AVX512VBMI2VLBW__ #pragma GCC pop_options #endif /* __DISABLE_AVX512VBMIVLBW__ */ #endif /* _AVX512VBMIVLINTRIN_H_INCLUDED */