// RUN: %clang_cc1 -x c -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx512bw -target-feature +avx512vl -emit-llvm -o - -Wall -Werror -Wsign-conversion | FileCheck %s // RUN: %clang_cc1 -x c -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx512bw -target-feature +avx512vl -fno-signed-char -emit-llvm -o - -Wall -Werror -Wsign-conversion | FileCheck %s // RUN: %clang_cc1 -x c -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx10.1 -emit-llvm -o - -Wall -Werror -Wsign-conversion | FileCheck %s // RUN: %clang_cc1 -x c++ -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx512bw -target-feature +avx512vl -emit-llvm -o - -Wall -Werror -Wsign-conversion | FileCheck %s // RUN: %clang_cc1 -x c++ -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx512bw -target-feature +avx512vl -fno-signed-char -emit-llvm -o - -Wall -Werror -Wsign-conversion | FileCheck %s // RUN: %clang_cc1 -x c++ -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx10.1 -emit-llvm -o - -Wall -Werror -Wsign-conversion | FileCheck %s // RUN: %clang_cc1 -x c -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx512bw -target-feature +avx512vl -emit-llvm -o - -Wall -Werror -Wsign-conversion -fexperimental-new-constant-interpreter | FileCheck %s // RUN: %clang_cc1 -x c -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx512bw -target-feature +avx512vl -fno-signed-char -emit-llvm -o - -Wall -Werror -Wsign-conversion -fexperimental-new-constant-interpreter | FileCheck %s // RUN: %clang_cc1 -x c -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx10.1 -emit-llvm -o - -Wall -Werror -Wsign-conversion -fexperimental-new-constant-interpreter | FileCheck %s // RUN: %clang_cc1 -x c++ -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx512bw -target-feature +avx512vl -emit-llvm -o - -Wall -Werror -Wsign-conversion -fexperimental-new-constant-interpreter | FileCheck %s // RUN: %clang_cc1 -x c++ -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx512bw -target-feature +avx512vl -fno-signed-char -emit-llvm -o - -Wall -Werror -Wsign-conversion -fexperimental-new-constant-interpreter | FileCheck %s // RUN: %clang_cc1 -x c++ -flax-vector-conversions=none -ffreestanding %s -triple=x86_64-apple-darwin -target-feature +avx10.1 -emit-llvm -o - -Wall -Werror -Wsign-conversion -fexperimental-new-constant-interpreter | FileCheck %s #include #include "builtin_test_helpers.h" __mmask32 test_mm256_cmpeq_epi8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpeq_epi8_mask // CHECK: icmp eq <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmpeq_epi8_mask(__a, __b); } __mmask32 test_mm256_mask_cmpeq_epi8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpeq_epi8_mask // CHECK: icmp eq <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmpeq_epi8_mask(__u, __a, __b); } __mmask16 test_mm_cmpeq_epi8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpeq_epi8_mask // CHECK: icmp eq <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmpeq_epi8_mask(__a, __b); } __mmask16 test_mm_mask_cmpeq_epi8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpeq_epi8_mask // CHECK: icmp eq <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmpeq_epi8_mask(__u, __a, __b); } __mmask16 test_mm256_cmpeq_epi16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpeq_epi16_mask // CHECK: icmp eq <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmpeq_epi16_mask(__a, __b); } __mmask16 test_mm256_mask_cmpeq_epi16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpeq_epi16_mask // CHECK: icmp eq <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmpeq_epi16_mask(__u, __a, __b); } __mmask8 test_mm_cmpeq_epi16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpeq_epi16_mask // CHECK: icmp eq <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmpeq_epi16_mask(__a, __b); } __mmask8 test_mm_mask_cmpeq_epi16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpeq_epi16_mask // CHECK: icmp eq <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmpeq_epi16_mask(__u, __a, __b); } __mmask32 test_mm256_cmpgt_epi8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpgt_epi8_mask // CHECK: icmp sgt <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmpgt_epi8_mask(__a, __b); } __mmask32 test_mm256_mask_cmpgt_epi8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpgt_epi8_mask // CHECK: icmp sgt <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmpgt_epi8_mask(__u, __a, __b); } __mmask16 test_mm_cmpgt_epi8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpgt_epi8_mask // CHECK: icmp sgt <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmpgt_epi8_mask(__a, __b); } __mmask16 test_mm_mask_cmpgt_epi8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpgt_epi8_mask // CHECK: icmp sgt <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmpgt_epi8_mask(__u, __a, __b); } __mmask16 test_mm256_cmpgt_epi16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpgt_epi16_mask // CHECK: icmp sgt <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmpgt_epi16_mask(__a, __b); } __mmask16 test_mm256_mask_cmpgt_epi16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpgt_epi16_mask // CHECK: icmp sgt <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmpgt_epi16_mask(__u, __a, __b); } __mmask8 test_mm_cmpgt_epi16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpgt_epi16_mask // CHECK: icmp sgt <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmpgt_epi16_mask(__a, __b); } __mmask8 test_mm_mask_cmpgt_epi16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpgt_epi16_mask // CHECK: icmp sgt <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmpgt_epi16_mask(__u, __a, __b); } __mmask16 test_mm_cmpeq_epu8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpeq_epu8_mask // CHECK: icmp eq <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmpeq_epu8_mask(__a, __b); } __mmask16 test_mm_mask_cmpeq_epu8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpeq_epu8_mask // CHECK: icmp eq <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmpeq_epu8_mask(__u, __a, __b); } __mmask8 test_mm_cmpeq_epu16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpeq_epu16_mask // CHECK: icmp eq <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmpeq_epu16_mask(__a, __b); } __mmask8 test_mm_mask_cmpeq_epu16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpeq_epu16_mask // CHECK: icmp eq <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmpeq_epu16_mask(__u, __a, __b); } __mmask32 test_mm256_cmpeq_epu8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpeq_epu8_mask // CHECK: icmp eq <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmpeq_epu8_mask(__a, __b); } __mmask32 test_mm256_mask_cmpeq_epu8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpeq_epu8_mask // CHECK: icmp eq <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmpeq_epu8_mask(__u, __a, __b); } __mmask16 test_mm256_cmpeq_epu16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpeq_epu16_mask // CHECK: icmp eq <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmpeq_epu16_mask(__a, __b); } __mmask16 test_mm256_mask_cmpeq_epu16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpeq_epu16_mask // CHECK: icmp eq <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmpeq_epu16_mask(__u, __a, __b); } __mmask16 test_mm_cmpgt_epu8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpgt_epu8_mask // CHECK: icmp ugt <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmpgt_epu8_mask(__a, __b); } __mmask16 test_mm_mask_cmpgt_epu8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpgt_epu8_mask // CHECK: icmp ugt <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmpgt_epu8_mask(__u, __a, __b); } __mmask8 test_mm_cmpgt_epu16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpgt_epu16_mask // CHECK: icmp ugt <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmpgt_epu16_mask(__a, __b); } __mmask8 test_mm_mask_cmpgt_epu16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpgt_epu16_mask // CHECK: icmp ugt <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmpgt_epu16_mask(__u, __a, __b); } __mmask32 test_mm256_cmpgt_epu8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpgt_epu8_mask // CHECK: icmp ugt <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmpgt_epu8_mask(__a, __b); } __mmask32 test_mm256_mask_cmpgt_epu8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpgt_epu8_mask // CHECK: icmp ugt <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmpgt_epu8_mask(__u, __a, __b); } __mmask16 test_mm256_cmpgt_epu16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpgt_epu16_mask // CHECK: icmp ugt <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmpgt_epu16_mask(__a, __b); } __mmask16 test_mm256_mask_cmpgt_epu16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpgt_epu16_mask // CHECK: icmp ugt <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmpgt_epu16_mask(__u, __a, __b); } __mmask16 test_mm_cmpge_epi8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpge_epi8_mask // CHECK: icmp sge <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmpge_epi8_mask(__a, __b); } __mmask16 test_mm_mask_cmpge_epi8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpge_epi8_mask // CHECK: icmp sge <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmpge_epi8_mask(__u, __a, __b); } __mmask16 test_mm_cmpge_epu8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpge_epu8_mask // CHECK: icmp uge <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmpge_epu8_mask(__a, __b); } __mmask16 test_mm_mask_cmpge_epu8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpge_epu8_mask // CHECK: icmp uge <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmpge_epu8_mask(__u, __a, __b); } __mmask8 test_mm_cmpge_epi16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpge_epi16_mask // CHECK: icmp sge <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmpge_epi16_mask(__a, __b); } __mmask8 test_mm_mask_cmpge_epi16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpge_epi16_mask // CHECK: icmp sge <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmpge_epi16_mask(__u, __a, __b); } __mmask8 test_mm_cmpge_epu16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpge_epu16_mask // CHECK: icmp uge <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmpge_epu16_mask(__a, __b); } __mmask8 test_mm_mask_cmpge_epu16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpge_epu16_mask // CHECK: icmp uge <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmpge_epu16_mask(__u, __a, __b); } __mmask32 test_mm256_cmpge_epi8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpge_epi8_mask // CHECK: icmp sge <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmpge_epi8_mask(__a, __b); } __mmask32 test_mm256_mask_cmpge_epi8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpge_epi8_mask // CHECK: icmp sge <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmpge_epi8_mask(__u, __a, __b); } __mmask32 test_mm256_cmpge_epu8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpge_epu8_mask // CHECK: icmp uge <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmpge_epu8_mask(__a, __b); } __mmask32 test_mm256_mask_cmpge_epu8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpge_epu8_mask // CHECK: icmp uge <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmpge_epu8_mask(__u, __a, __b); } __mmask16 test_mm256_cmpge_epi16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpge_epi16_mask // CHECK: icmp sge <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmpge_epi16_mask(__a, __b); } __mmask16 test_mm256_mask_cmpge_epi16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpge_epi16_mask // CHECK: icmp sge <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmpge_epi16_mask(__u, __a, __b); } __mmask16 test_mm256_cmpge_epu16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpge_epu16_mask // CHECK: icmp uge <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmpge_epu16_mask(__a, __b); } __mmask16 test_mm256_mask_cmpge_epu16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpge_epu16_mask // CHECK: icmp uge <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmpge_epu16_mask(__u, __a, __b); } __mmask16 test_mm_cmple_epi8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmple_epi8_mask // CHECK: icmp sle <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmple_epi8_mask(__a, __b); } __mmask16 test_mm_mask_cmple_epi8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmple_epi8_mask // CHECK: icmp sle <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmple_epi8_mask(__u, __a, __b); } __mmask16 test_mm_cmple_epu8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmple_epu8_mask // CHECK: icmp ule <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmple_epu8_mask(__a, __b); } __mmask16 test_mm_mask_cmple_epu8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmple_epu8_mask // CHECK: icmp ule <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmple_epu8_mask(__u, __a, __b); } __mmask8 test_mm_cmple_epi16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmple_epi16_mask // CHECK: icmp sle <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmple_epi16_mask(__a, __b); } __mmask8 test_mm_mask_cmple_epi16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmple_epi16_mask // CHECK: icmp sle <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmple_epi16_mask(__u, __a, __b); } __mmask8 test_mm_cmple_epu16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmple_epu16_mask // CHECK: icmp ule <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmple_epu16_mask(__a, __b); } __mmask8 test_mm_mask_cmple_epu16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmple_epu16_mask // CHECK: icmp ule <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmple_epu16_mask(__u, __a, __b); } __mmask32 test_mm256_cmple_epi8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmple_epi8_mask // CHECK: icmp sle <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmple_epi8_mask(__a, __b); } __mmask32 test_mm256_mask_cmple_epi8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmple_epi8_mask // CHECK: icmp sle <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmple_epi8_mask(__u, __a, __b); } __mmask32 test_mm256_cmple_epu8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmple_epu8_mask // CHECK: icmp ule <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmple_epu8_mask(__a, __b); } __mmask32 test_mm256_mask_cmple_epu8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmple_epu8_mask // CHECK: icmp ule <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmple_epu8_mask(__u, __a, __b); } __mmask16 test_mm256_cmple_epi16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmple_epi16_mask // CHECK: icmp sle <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmple_epi16_mask(__a, __b); } __mmask16 test_mm256_mask_cmple_epi16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmple_epi16_mask // CHECK: icmp sle <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmple_epi16_mask(__u, __a, __b); } __mmask16 test_mm256_cmple_epu16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmple_epu16_mask // CHECK: icmp ule <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmple_epu16_mask(__a, __b); } __mmask16 test_mm256_mask_cmple_epu16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmple_epu16_mask // CHECK: icmp ule <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmple_epu16_mask(__u, __a, __b); } __mmask16 test_mm_cmplt_epi8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmplt_epi8_mask // CHECK: icmp slt <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmplt_epi8_mask(__a, __b); } __mmask16 test_mm_mask_cmplt_epi8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmplt_epi8_mask // CHECK: icmp slt <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmplt_epi8_mask(__u, __a, __b); } __mmask16 test_mm_cmplt_epu8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmplt_epu8_mask // CHECK: icmp ult <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmplt_epu8_mask(__a, __b); } __mmask16 test_mm_mask_cmplt_epu8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmplt_epu8_mask // CHECK: icmp ult <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmplt_epu8_mask(__u, __a, __b); } __mmask8 test_mm_cmplt_epi16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmplt_epi16_mask // CHECK: icmp slt <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmplt_epi16_mask(__a, __b); } __mmask8 test_mm_mask_cmplt_epi16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmplt_epi16_mask // CHECK: icmp slt <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmplt_epi16_mask(__u, __a, __b); } __mmask8 test_mm_cmplt_epu16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmplt_epu16_mask // CHECK: icmp ult <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmplt_epu16_mask(__a, __b); } TEST_CONSTEXPR(_mm_cmplt_epu16_mask(((__m128i)(__v8hu){12351, 47995, 11802, 16970, 16956, 13965, 33529, 18928}), ((__m128i)(__v8hu){48792, 59915, 50576, 62643, 3758, 16415, 7966, 39475})) == (__mmask8)0xAF); __mmask8 test_mm_mask_cmplt_epu16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmplt_epu16_mask // CHECK: icmp ult <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmplt_epu16_mask(__u, __a, __b); } __mmask32 test_mm256_cmplt_epi8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmplt_epi8_mask // CHECK: icmp slt <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmplt_epi8_mask(__a, __b); } __mmask32 test_mm256_mask_cmplt_epi8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmplt_epi8_mask // CHECK: icmp slt <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmplt_epi8_mask(__u, __a, __b); } __mmask32 test_mm256_cmplt_epu8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmplt_epu8_mask // CHECK: icmp ult <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmplt_epu8_mask(__a, __b); } __mmask32 test_mm256_mask_cmplt_epu8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmplt_epu8_mask // CHECK: icmp ult <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmplt_epu8_mask(__u, __a, __b); } __mmask16 test_mm256_cmplt_epi16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmplt_epi16_mask // CHECK: icmp slt <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmplt_epi16_mask(__a, __b); } __mmask16 test_mm256_mask_cmplt_epi16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmplt_epi16_mask // CHECK: icmp slt <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmplt_epi16_mask(__u, __a, __b); } __mmask16 test_mm256_cmplt_epu16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmplt_epu16_mask // CHECK: icmp ult <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmplt_epu16_mask(__a, __b); } __mmask16 test_mm256_mask_cmplt_epu16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmplt_epu16_mask // CHECK: icmp ult <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmplt_epu16_mask(__u, __a, __b); } __mmask16 test_mm_cmpneq_epi8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpneq_epi8_mask // CHECK: icmp ne <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmpneq_epi8_mask(__a, __b); } __mmask16 test_mm_mask_cmpneq_epi8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpneq_epi8_mask // CHECK: icmp ne <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmpneq_epi8_mask(__u, __a, __b); } __mmask16 test_mm_cmpneq_epu8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpneq_epu8_mask // CHECK: icmp ne <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmpneq_epu8_mask(__a, __b); } __mmask16 test_mm_mask_cmpneq_epu8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpneq_epu8_mask // CHECK: icmp ne <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmpneq_epu8_mask(__u, __a, __b); } __mmask8 test_mm_cmpneq_epi16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpneq_epi16_mask // CHECK: icmp ne <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmpneq_epi16_mask(__a, __b); } __mmask8 test_mm_mask_cmpneq_epi16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpneq_epi16_mask // CHECK: icmp ne <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmpneq_epi16_mask(__u, __a, __b); } __mmask8 test_mm_cmpneq_epu16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmpneq_epu16_mask // CHECK: icmp ne <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmpneq_epu16_mask(__a, __b); } __mmask8 test_mm_mask_cmpneq_epu16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmpneq_epu16_mask // CHECK: icmp ne <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmpneq_epu16_mask(__u, __a, __b); } __mmask32 test_mm256_cmpneq_epi8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpneq_epi8_mask // CHECK: icmp ne <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmpneq_epi8_mask(__a, __b); } __mmask32 test_mm256_mask_cmpneq_epi8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpneq_epi8_mask // CHECK: icmp ne <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmpneq_epi8_mask(__u, __a, __b); } __mmask32 test_mm256_cmpneq_epu8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpneq_epu8_mask // CHECK: icmp ne <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmpneq_epu8_mask(__a, __b); } __mmask32 test_mm256_mask_cmpneq_epu8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpneq_epu8_mask // CHECK: icmp ne <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmpneq_epu8_mask(__u, __a, __b); } __mmask16 test_mm256_cmpneq_epi16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpneq_epi16_mask // CHECK: icmp ne <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmpneq_epi16_mask(__a, __b); } __mmask16 test_mm256_mask_cmpneq_epi16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpneq_epi16_mask // CHECK: icmp ne <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmpneq_epi16_mask(__u, __a, __b); } __mmask16 test_mm256_cmpneq_epu16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmpneq_epu16_mask // CHECK: icmp ne <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmpneq_epu16_mask(__a, __b); } __mmask16 test_mm256_mask_cmpneq_epu16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmpneq_epu16_mask // CHECK: icmp ne <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmpneq_epu16_mask(__u, __a, __b); } __mmask16 test_mm_cmp_epi8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmp_epi8_mask // CHECK: icmp eq <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmp_epi8_mask(__a, __b, 0); } TEST_CONSTEXPR(_mm_cmpeq_epi8_mask( ((__m128i)(__v16qi){5, 3, 7, 2, 9, 3, 7, 1, 5, 4, 8, 2, 9, 6, 7, 5}), ((__m128i)(__v16qi){5, 2, 7, 3, 9, 4, 6, 1, 5, 3, 8, 1, 9, 5, 7, 5}) ) == (__mmask16)0xd595); TEST_CONSTEXPR(_mm_cmplt_epi8_mask( ((__m128i)(__v16qi){1, 5, 3, 7, 2, 8, 4, 6, 9, 5, 3, 11, 2, 6, 15, 8}), ((__m128i)(__v16qi){2, 4, 6, 8, 3, 5, 7, 9, 4, 6, 8, 10, 5, 7, 9, 11}) ) == (__mmask16)0xb6dd); TEST_CONSTEXPR(_mm_cmple_epi8_mask( ((__m128i)(__v16qi){1, 3, 5, 7, 2, 6, 6, 8, 1, 3, 9, 7, 2, 4, 6, 10}), ((__m128i)(__v16qi){2, 3, 4, 7, 3, 4, 5, 8, 2, 3, 4, 7, 3, 4, 5, 8}) ) == (__mmask16)0x3b9b); __mmask16 test_mm_mask_cmp_epi8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmp_epi8_mask // CHECK: icmp eq <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmp_epi8_mask(__u, __a, __b, 0); } __mmask16 test_mm_cmp_epu8_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmp_epu8_mask // CHECK: icmp eq <16 x i8> %{{.*}}, %{{.*}} return (__mmask16)_mm_cmp_epu8_mask(__a, __b, 0); } __mmask16 test_mm_mask_cmp_epu8_mask(__mmask16 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmp_epu8_mask // CHECK: icmp eq <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm_mask_cmp_epu8_mask(__u, __a, __b, 0); } __mmask8 test_mm_cmp_epi16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmp_epi16_mask // CHECK: icmp eq <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmp_epi16_mask(__a, __b, 0); } __mmask8 test_mm_mask_cmp_epi16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmp_epi16_mask // CHECK: icmp eq <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmp_epi16_mask(__u, __a, __b, 0); } __mmask8 test_mm_cmp_epu16_mask(__m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_cmp_epu16_mask // CHECK: icmp eq <8 x i16> %{{.*}}, %{{.*}} return (__mmask8)_mm_cmp_epu16_mask(__a, __b, 0); } __mmask8 test_mm_mask_cmp_epu16_mask(__mmask8 __u, __m128i __a, __m128i __b) { // CHECK-LABEL: test_mm_mask_cmp_epu16_mask // CHECK: icmp eq <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return (__mmask8)_mm_mask_cmp_epu16_mask(__u, __a, __b, 0); } __mmask32 test_mm256_cmp_epi8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmp_epi8_mask // CHECK: icmp eq <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmp_epi8_mask(__a, __b, 0); } __mmask32 test_mm256_mask_cmp_epi8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmp_epi8_mask // CHECK: icmp eq <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmp_epi8_mask(__u, __a, __b, 0); } __mmask32 test_mm256_cmp_epu8_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmp_epu8_mask // CHECK: icmp eq <32 x i8> %{{.*}}, %{{.*}} return (__mmask32)_mm256_cmp_epu8_mask(__a, __b, 0); } __mmask32 test_mm256_mask_cmp_epu8_mask(__mmask32 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmp_epu8_mask // CHECK: icmp eq <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return (__mmask32)_mm256_mask_cmp_epu8_mask(__u, __a, __b, 0); } __mmask16 test_mm256_cmp_epi16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmp_epi16_mask // CHECK: icmp eq <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmp_epi16_mask(__a, __b, 0); } __mmask16 test_mm256_mask_cmp_epi16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmp_epi16_mask // CHECK: icmp eq <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmp_epi16_mask(__u, __a, __b, 0); } __mmask16 test_mm256_cmp_epu16_mask(__m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_cmp_epu16_mask // CHECK: icmp eq <16 x i16> %{{.*}}, %{{.*}} return (__mmask16)_mm256_cmp_epu16_mask(__a, __b, 0); } __mmask16 test_mm256_mask_cmp_epu16_mask(__mmask16 __u, __m256i __a, __m256i __b) { // CHECK-LABEL: test_mm256_mask_cmp_epu16_mask // CHECK: icmp eq <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return (__mmask16)_mm256_mask_cmp_epu16_mask(__u, __a, __b, 0); } __m256i test_mm256_mask_add_epi8 (__m256i __W, __mmask32 __U, __m256i __A, __m256i __B){ //CHECK-LABEL: test_mm256_mask_add_epi8 //CHECK: add <32 x i8> %{{.*}}, %{{.*}} //CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_add_epi8(__W, __U , __A, __B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_add_epi8((__m256i)(__v32qs){ 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99}, 0x20676BFF, (__m256i)(__v32qs){ -64, -65, 66, 67, 68, -69, -70, -71, -72, 73, 74, -75, 76, 77, -78, 79, -80, 81, 82, -83, 84, -85, 86, 87, -88, -89, -90, 91, -92, 93, 94, 95}, (__m256i)(__v32qs){ -1, -2, 3, -4, 5, -6, 7, 8, 9, -10, 11, -12, 13, 14, 15, 16, -17, 18, 19, 20, -21, 22, -23, -24, 25, 26, -27, -28, -29, 30, -31, 32}), -65, -67, 69, 63, 73, -75, -63, -63, -63, 63, 99, -87, 99, 91, -63, 99, -97, 99, 101, 99, 99, -63, 63, 99, 99, 99, 99, 99, 99, 123, 99, 99)); __m256i test_mm256_maskz_add_epi8 (__mmask32 __U, __m256i __A, __m256i __B) { //CHECK-LABEL: test_mm256_maskz_add_epi8 //CHECK: add <32 x i8> %{{.*}}, %{{.*}} //CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_add_epi8(__U , __A, __B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_add_epi8(0x20676BFF, (__m256i)(__v32qs){ -64, -65, 66, 67, 68, -69, -70, -71, -72, 73, 74, -75, 76, 77, -78, 79, -80, 81, 82, -83, 84, -85, 86, 87, -88, -89, -90, 91, -92, 93, 94, 95}, (__m256i)(__v32qs){ -1, -2, 3, -4, 5, -6, 7, 8, 9, -10, 11, -12, 13, 14, 15, 16, -17, 18, 19, 20, -21, 22, -23, -24, 25, 26, -27, -28, -29, 30, -31, 32}), -65, -67, 69, 63, 73, -75, -63, -63, -63, 63, 0, -87, 0, 91, -63, 0, -97, 99, 101, 0, 0, -63, 63, 0, 0, 0, 0, 0, 0, 123, 0, 0)); __m256i test_mm256_mask_add_epi16 (__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { //CHECK-LABEL: test_mm256_mask_add_epi16 //CHECK: add <16 x i16> %{{.*}}, %{{.*}} //CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_add_epi16(__W, __U , __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_add_epi16((__m256i)(__v16hi){ 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99}, 0x5A21, (__m256i)(__v16hi){ -32, -33, 34, -35, -36, 37, -38, -39, -40, -41, -42, 43, -44, -45, 46, 47}, (__m256i)(__v16hi){ -1, 2, 3, -4, 5, -6, 7, 8, 9, 10, -11, -12, -13, 14, -15, -16}), -33, 99, 99, 99, 99, 31, 99, 99, 99, -31, 99, 31, -57, 99, 31, 99)); __m256i test_mm256_maskz_add_epi16 (__mmask16 __U, __m256i __A, __m256i __B) { //CHECK-LABEL: test_mm256_maskz_add_epi16 //CHECK: add <16 x i16> %{{.*}}, %{{.*}} //CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_add_epi16(__U , __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_add_epi16(0x5A21, (__m256i)(__v16hi){ -32, -33, 34, -35, -36, 37, -38, -39, -40, -41, -42, 43, -44, -45, 46, 47}, (__m256i)(__v16hi){ -1, 2, 3, -4, 5, -6, 7, 8, 9, 10, -11, -12, -13, 14, -15, -16}), -33, 0, 0, 0, 0, 31, 0, 0, 0, -31, 0, 31, -57, 0, 31, 0)); __m256i test_mm256_mask_sub_epi8 (__m256i __W, __mmask32 __U, __m256i __A, __m256i __B) { //CHECK-LABEL: test_mm256_mask_sub_epi8 //CHECK: sub <32 x i8> %{{.*}}, %{{.*}} //CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_sub_epi8(__W, __U , __A, __B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_sub_epi8((__m256i)(__v32qs){ 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99}, 0x20676BFF, (__m256i)(__v32qs){ -64, -65, 66, 67, 68, -69, -70, -71, -72, 73, 74, -75, 76, 77, -78, 79, -80, 81, 82, -83, 84, -85, 86, 87, -88, -89, -90, 91, -92, 93, 94, 95}, (__m256i)(__v32qs){ -1, -2, 3, -4, 5, -6, 7, 8, 9, -10, 11, -12, 13, 14, 15, 16, -17, 18, 19, 20, -21, 22, -23, -24, 25, 26, -27, -28, -29, 30, -31, 32}), -63, -63, 63, 71, 63, -63, -77, -79, -81, 83, 99, -63, 99, 63, -93, 99, -63, 63, 63, 99, 99, -107, 109, 99, 99, 99, 99, 99, 99, 63, 99, 99)); __m256i test_mm256_maskz_sub_epi8 (__mmask32 __U, __m256i __A, __m256i __B) { //CHECK-LABEL: test_mm256_maskz_sub_epi8 //CHECK: sub <32 x i8> %{{.*}}, %{{.*}} //CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_sub_epi8(__U , __A, __B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_sub_epi8(0x20676BFF, (__m256i)(__v32qs){ -64, -65, 66, 67, 68, -69, -70, -71, -72, 73, 74, -75, 76, 77, -78, 79, -80, 81, 82, -83, 84, -85, 86, 87, -88, -89, -90, 91, -92, 93, 94, 95}, (__m256i)(__v32qs){ -1, -2, 3, -4, 5, -6, 7, 8, 9, -10, 11, -12, 13, 14, 15, 16, -17, 18, 19, 20, -21, 22, -23, -24, 25, 26, -27, -28, -29, 30, -31, 32}), -63, -63, 63, 71, 63, -63, -77, -79, -81, 83, 0, -63, 0, 63, -93, 0, -63, 63, 63, 0, 0, -107, 109, 0, 0, 0, 0, 0, 0, 63, 0, 0)); __m256i test_mm256_mask_sub_epi16 (__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { //CHECK-LABEL: test_mm256_mask_sub_epi16 //CHECK: sub <16 x i16> %{{.*}}, %{{.*}} //CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_sub_epi16(__W, __U , __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_sub_epi16((__m256i)(__v16hi){ 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99}, 0x5A21, (__m256i)(__v16hi){ -32, -33, 34, -35, -36, 37, -38, -39, -40, -41, -42, 43, -44, -45, 46, 47}, (__m256i)(__v16hi){ -1, 2, 3, -4, 5, -6, 7, 8, 9, 10, -11, -12, -13, 14, -15, -16}), -31, 99, 99, 99, 99, 43, 99, 99, 99, -51, 99, 55, -31, 99, 61, 99)); __m256i test_mm256_maskz_sub_epi16 (__mmask16 __U, __m256i __A, __m256i __B) { //CHECK-LABEL: test_mm256_maskz_sub_epi16 //CHECK: sub <16 x i16> %{{.*}}, %{{.*}} //CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_sub_epi16(__U , __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_sub_epi16(0x5A21, (__m256i)(__v16hi){ -32, -33, 34, -35, -36, 37, -38, -39, -40, -41, -42, 43, -44, -45, 46, 47}, (__m256i)(__v16hi){ -1, 2, 3, -4, 5, -6, 7, 8, 9, 10, -11, -12, -13, 14, -15, -16}), -31, 0, 0, 0, 0, 43, 0, 0, 0, -51, 0, 55, -31, 0, 61, 0)); __m128i test_mm_mask_add_epi8 (__m128i __W, __mmask16 __U, __m128i __A, __m128i __B) { //CHECK-LABEL: test_mm_mask_add_epi8 //CHECK: add <16 x i8> %{{.*}}, %{{.*}} //CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_add_epi8(__W, __U , __A, __B); } TEST_CONSTEXPR(match_v16qi(_mm_mask_add_epi8((__m128i)(__v16qs){ 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99}, 0x5693, (__m128i)(__v16qs){ 32, 33, 34, -35, -36, -37, 38, 39, -40, 41, -42, 43, -44, -45, 46, -47}, (__m128i)(__v16qs){ 1, 2, -3, -4, 5, -6, -7, 8, 9, -10, 11, 12, 13, 14, -15, 16}), 33, 35, 99, 99, -31, 99, 99, 47, 99, 31, -31, 99, -31, 99, 31, 99)); __m128i test_mm_maskz_add_epi8 (__mmask16 __U, __m128i __A, __m128i __B) { //CHECK-LABEL: test_mm_maskz_add_epi8 //CHECK: add <16 x i8> %{{.*}}, %{{.*}} //CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_add_epi8(__U , __A, __B); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_add_epi8(0x5693, (__m128i)(__v16qs){ 32, 33, 34, -35, -36, -37, 38, 39, -40, 41, -42, 43, -44, -45, 46, -47}, (__m128i)(__v16qs){ 1, 2, -3, -4, 5, -6, -7, 8, 9, -10, 11, 12, 13, 14, -15, 16}), 33, 35, 0, 0, -31, 0, 0, 47, 0, 31, -31, 0, -31, 0, 31, 0)); __m128i test_mm_mask_add_epi16 (__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { //CHECK-LABEL: test_mm_mask_add_epi16 //CHECK: add <8 x i16> %{{.*}}, %{{.*}} //CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_add_epi16(__W, __U , __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_add_epi16((__m128i)(__v8hi){ 99, 99, 99, 99, 99, 99, 99, 99}, 0x8D, (__m128i)(__v8hi){ -16, -17, -18, -19, -20, 21, 22, 23}, (__m128i)(__v8hi){ 1, 2, 3, -4, -5, -6, 7, -8}), -15, 99, -15, -23, 99, 99, 99, 15)); __m128i test_mm_maskz_add_epi16 (__mmask8 __U, __m128i __A, __m128i __B) { //CHECK-LABEL: test_mm_maskz_add_epi16 //CHECK: add <8 x i16> %{{.*}}, %{{.*}} //CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_add_epi16(__U , __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_add_epi16(0x8D, (__m128i)(__v8hi){ -16, -17, -18, -19, -20, 21, 22, 23}, (__m128i)(__v8hi){ 1, 2, 3, -4, -5, -6, 7, -8}), -15, 0, -15, -23, 0, 0, 0, 15)); __m128i test_mm_mask_sub_epi8 (__m128i __W, __mmask16 __U, __m128i __A, __m128i __B) { //CHECK-LABEL: test_mm_mask_sub_epi8 //CHECK: sub <16 x i8> %{{.*}}, %{{.*}} //CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_sub_epi8(__W, __U , __A, __B); } TEST_CONSTEXPR(match_v16qi(_mm_mask_sub_epi8((__m128i)(__v16qs){ 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99}, 0x5693, (__m128i)(__v16qs){ 32, 33, 34, -35, -36, -37, 38, 39, -40, 41, -42, 43, -44, -45, 46, -47}, (__m128i)(__v16qs){ 1, 2, -3, -4, 5, -6, -7, 8, 9, -10, 11, 12, 13, 14, -15, 16}), 31, 31, 99, 99, -41, 99, 99, 31, 99, 51, -53, 99, -57, 99, 61, 99)); __m128i test_mm_maskz_sub_epi8 (__mmask16 __U, __m128i __A, __m128i __B) { //CHECK-LABEL: test_mm_maskz_sub_epi8 //CHECK: sub <16 x i8> %{{.*}}, %{{.*}} //CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_sub_epi8(__U , __A, __B); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_sub_epi8(0x5693, (__m128i)(__v16qs){ 32, 33, 34, -35, -36, -37, 38, 39, -40, 41, -42, 43, -44, -45, 46, -47}, (__m128i)(__v16qs){ 1, 2, -3, -4, 5, -6, -7, 8, 9, -10, 11, 12, 13, 14, -15, 16}), 31, 31, 0, 0, -41, 0, 0, 31, 0, 51, -53, 0, -57, 0, 61, 0)); __m128i test_mm_mask_sub_epi16 (__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { //CHECK-LABEL: test_mm_mask_sub_epi16 //CHECK: sub <8 x i16> %{{.*}}, %{{.*}} //CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_sub_epi16(__W, __U , __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_sub_epi16((__m128i)(__v8hi){ 99, 99, 99, 99, 99, 99, 99, 99}, 0x8D, (__m128i)(__v8hi){ -16, -17, -18, -19, -20, 21, 22, 23}, (__m128i)(__v8hi){ 1, 2, 3, -4, -5, -6, 7, -8}), -17, 99, -21, -15, 99, 99, 99, 31)); __m128i test_mm_maskz_sub_epi16 (__mmask8 __U, __m128i __A, __m128i __B) { //CHECK-LABEL: test_mm_maskz_sub_epi16 //CHECK: sub <8 x i16> %{{.*}}, %{{.*}} //CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_sub_epi16(__U , __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_sub_epi16(0x8D, (__m128i)(__v8hi){ -16, -17, -18, -19, -20, 21, 22, 23}, (__m128i)(__v8hi){ 1, 2, 3, -4, -5, -6, 7, -8}), -17, 0, -21, -15, 0, 0, 0, 31)); __m256i test_mm256_mask_mullo_epi16 (__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { //CHECK-LABEL: test_mm256_mask_mullo_epi16 //CHECK: mul <16 x i16> %{{.*}}, %{{.*}} //CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_mullo_epi16(__W, __U , __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_mullo_epi16((__m256i)(__v16hi){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16}, 0x00FF, (__m256i)(__v16hi){+2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16, -17}, (__m256i)(__v16hi){-3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16, -17, +18}), -6, -12, -20, -30, -42, -56, -72, -90, -9, +10, -11, +12, -13, +14, -15, +16)); __m256i test_mm256_maskz_mullo_epi16 (__mmask16 __U, __m256i __A, __m256i __B) { //CHECK-LABEL: test_mm256_maskz_mullo_epi16 //CHECK: mul <16 x i16> %{{.*}}, %{{.*}} //CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_mullo_epi16(__U , __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_mullo_epi16(0x00FF, (__m256i)(__v16hi){+2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16, -17}, (__m256i)(__v16hi){-3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16, -17, +18}), -6, -12, -20, -30, -42, -56, -72, -90, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_mask_mullo_epi16 (__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { //CHECK-LABEL: test_mm_mask_mullo_epi16 //CHECK: mul <8 x i16> %{{.*}}, %{{.*}} //CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_mullo_epi16(__W, __U , __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_mullo_epi16((__m128i)(__v8hi){-1, +2, -3, +4, -5, +6, -7, +8}, 0x0F, (__m128i)(__v8hi){+2, -3, +4, -5, +6, -7, +8, -9}, (__m128i)(__v8hi){-3, +4, -5, +6, -7, +8, -9, +10}), -6, -12, -20, -30, -5, +6, -7, +8)); __m128i test_mm_maskz_mullo_epi16 (__mmask8 __U, __m128i __A, __m128i __B) { //CHECK-LABEL: test_mm_maskz_mullo_epi16 //CHECK: mul <8 x i16> %{{.*}}, %{{.*}} //CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_mullo_epi16(__U , __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_mullo_epi16(0x0F, (__m128i)(__v8hi){+2, -3, +4, -5, +6, -7, +8, -9}, (__m128i)(__v8hi){-3, +4, -5, +6, -7, +8, -9, +10}), -6, -12, -20, -30, 0, 0, 0, 0)); __m128i test_mm_mask_blend_epi8(__mmask16 __U, __m128i __A, __m128i __W) { // CHECK-LABEL: test_mm_mask_blend_epi8 // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_blend_epi8(__U,__A,__W); } TEST_CONSTEXPR(match_v16qi(_mm_mask_blend_epi8((__mmask16)0x0001,(__m128i)(__v16qi){2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2},(__m128i)(__v16qi){10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,25}),10,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2)); __m256i test_mm256_mask_blend_epi8(__mmask32 __U, __m256i __A, __m256i __W) { // CHECK-LABEL: test_mm256_mask_blend_epi8 // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_blend_epi8(__U,__A,__W); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_blend_epi8((__mmask32)0x00000001,(__m256i)(__v32qi){2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2},(__m256i)(__v32qi){10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,25,10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,25}),10,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2)); __m128i test_mm_mask_blend_epi16(__mmask8 __U, __m128i __A, __m128i __W) { // CHECK-LABEL: test_mm_mask_blend_epi16 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_blend_epi16(__U,__A,__W); } TEST_CONSTEXPR(match_v8hi(_mm_mask_blend_epi16((__mmask8)0x01,(__m128i)(__v8hi){2,2,2,2,2,2,2,2},(__m128i)(__v8hi){10,11,12,13,14,15,16,17}),10,2,2,2,2,2,2,2)); __m256i test_mm256_mask_blend_epi16(__mmask16 __U, __m256i __A, __m256i __W) { // CHECK-LABEL: test_mm256_mask_blend_epi16 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_blend_epi16(__U,__A,__W); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_blend_epi16((__mmask16)0x0001,(__m256i)(__v16hi){2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2},(__m256i)(__v16hi){10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,25}),10,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2)); __m128i test_mm_mask_abs_epi8(__m128i __W, __mmask16 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_abs_epi8 // CHECK: [[ABS:%.*]] = call <16 x i8> @llvm.abs.v16i8(<16 x i8> %{{.*}}, i1 false) // CHECK: [[TMP:%.*]] = bitcast <16 x i8> [[ABS]] to <2 x i64> // CHECK: [[ABS:%.*]] = bitcast <2 x i64> [[TMP]] to <16 x i8> // CHECK: select <16 x i1> %{{.*}}, <16 x i8> [[ABS]], <16 x i8> %{{.*}} return _mm_mask_abs_epi8(__W,__U,__A); } TEST_CONSTEXPR(match_v16qi(_mm_mask_abs_epi8((__m128i)(__v16qi){99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99}, (__mmask16)0x0001, (__m128i)(__v16qi){(char)-1, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2}), 1, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99)); __m128i test_mm_maskz_abs_epi8(__mmask16 __U, __m128i __A) { // CHECK-LABEL: test_mm_maskz_abs_epi8 // CHECK: [[ABS:%.*]] = call <16 x i8> @llvm.abs.v16i8(<16 x i8> %{{.*}}, i1 false) // CHECK: [[TMP:%.*]] = bitcast <16 x i8> [[ABS]] to <2 x i64> // CHECK: [[ABS:%.*]] = bitcast <2 x i64> [[TMP]] to <16 x i8> // CHECK: select <16 x i1> %{{.*}}, <16 x i8> [[ABS]], <16 x i8> %{{.*}} return _mm_maskz_abs_epi8(__U,__A); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_abs_epi8((__mmask16)0x5555, (__m128i)(__v16qi){(char)-1, 2, (char)-3, 4, (char)-5, 6, (char)-7, 8, (char)-9, 10, (char)-11, 12, (char)-13, 14, (char)-15, 16}), 1, 0, 3, 0, 5, 0, 7, 0, 9, 0, 11, 0, 13, 0, 15, 0)); __m256i test_mm256_mask_abs_epi8(__m256i __W, __mmask32 __U, __m256i __A) { // CHECK-LABEL: test_mm256_mask_abs_epi8 // CHECK: [[ABS:%.*]] = call <32 x i8> @llvm.abs.v32i8(<32 x i8> %{{.*}}, i1 false) // CHECK: [[TMP:%.*]] = bitcast <32 x i8> [[ABS]] to <4 x i64> // CHECK: [[ABS:%.*]] = bitcast <4 x i64> [[TMP]] to <32 x i8> // CHECK: select <32 x i1> %{{.*}}, <32 x i8> [[ABS]], <32 x i8> %{{.*}} return _mm256_mask_abs_epi8(__W,__U,__A); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_abs_epi8((__m256i)(__v32qi){99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99}, (__mmask32)0x00000001, (__m256i)(__v32qi){(char)-1, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2}), 1, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99)); __m256i test_mm256_maskz_abs_epi8(__mmask32 __U, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_abs_epi8 // CHECK: [[ABS:%.*]] = call <32 x i8> @llvm.abs.v32i8(<32 x i8> %{{.*}}, i1 false) // CHECK: [[TMP:%.*]] = bitcast <32 x i8> [[ABS]] to <4 x i64> // CHECK: [[ABS:%.*]] = bitcast <4 x i64> [[TMP]] to <32 x i8> // CHECK: select <32 x i1> %{{.*}}, <32 x i8> [[ABS]], <32 x i8> %{{.*}} return _mm256_maskz_abs_epi8(__U,__A); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_abs_epi8((__mmask32)0x55555555, (__m256i)(__v32qi){(char)-1, 2, (char)-3, 4, (char)-5, 6, (char)-7, 8, (char)-9, 10, (char)-11, 12, (char)-13, 14, (char)-15, 16, (char)-17, 18, (char)-19, 20, (char)-21, 22, (char)-23, 24, (char)-25, 26, (char)-27, 28, (char)-29, 30, (char)-31, 32}), 1, 0, 3, 0, 5, 0, 7, 0, 9, 0, 11, 0, 13, 0, 15, 0, 17, 0, 19, 0, 21, 0, 23, 0, 25, 0, 27, 0, 29, 0, 31, 0)); __m128i test_mm_mask_abs_epi16(__m128i __W, __mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_abs_epi16 // CHECK: [[ABS:%.*]] = call <8 x i16> @llvm.abs.v8i16(<8 x i16> %{{.*}}, i1 false) // CHECK: [[TMP:%.*]] = bitcast <8 x i16> [[ABS]] to <2 x i64> // CHECK: [[ABS:%.*]] = bitcast <2 x i64> [[TMP]] to <8 x i16> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> [[ABS]], <8 x i16> %{{.*}} return _mm_mask_abs_epi16(__W,__U,__A); } TEST_CONSTEXPR(match_v8hi(_mm_mask_abs_epi16((__m128i)(__v8hi){99, 99, 99, 99, 99, 99, 99, 99}, (__mmask16)0x01, (__m128i)(__v8hi){-1, 2, 2, 2, 2, 2, 2, 2}), 1, 99, 99, 99, 99, 99, 99, 99)); __m128i test_mm_maskz_abs_epi16(__mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_maskz_abs_epi16 // CHECK: [[ABS:%.*]] = call <8 x i16> @llvm.abs.v8i16(<8 x i16> %{{.*}}, i1 false) // CHECK: [[TMP:%.*]] = bitcast <8 x i16> [[ABS]] to <2 x i64> // CHECK: [[ABS:%.*]] = bitcast <2 x i64> [[TMP]] to <8 x i16> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> [[ABS]], <8 x i16> %{{.*}} return _mm_maskz_abs_epi16(__U,__A); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_abs_epi16((__mmask8)0x55, (__m128i)(__v8hi){-1, 2, -3, 4, -5, 6, -7, 8}), 1, 0, 3, 0, 5, 0, 7, 0)); __m256i test_mm256_mask_abs_epi16(__m256i __W, __mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_mask_abs_epi16 // CHECK: [[ABS:%.*]] = call <16 x i16> @llvm.abs.v16i16(<16 x i16> %{{.*}}, i1 false) // CHECK: [[TMP:%.*]] = bitcast <16 x i16> [[ABS]] to <4 x i64> // CHECK: [[ABS:%.*]] = bitcast <4 x i64> [[TMP]] to <16 x i16> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> [[ABS]], <16 x i16> %{{.*}} return _mm256_mask_abs_epi16(__W,__U,__A); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_abs_epi16((__m256i)(__v16hi){99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99}, (__mmask16)0x0001, (__m256i)(__v16hi){-128, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2}), 128, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99)); __m256i test_mm256_maskz_abs_epi16(__mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_abs_epi16 // CHECK: [[ABS:%.*]] = call <16 x i16> @llvm.abs.v16i16(<16 x i16> %{{.*}}, i1 false) // CHECK: [[TMP:%.*]] = bitcast <16 x i16> [[ABS]] to <4 x i64> // CHECK: [[ABS:%.*]] = bitcast <4 x i64> [[TMP]] to <16 x i16> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> [[ABS]], <16 x i16> %{{.*}} return _mm256_maskz_abs_epi16(__U,__A); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_abs_epi16((__mmask16)0x0001, (__m256i)(__v16hi){-128, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2}), 128, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_maskz_packs_epi32(__mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_packs_epi32 // CHECK: @llvm.x86.sse2.packssdw // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_packs_epi32(__M,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_packs_epi32((__mmask8)0xAA,(__m128i)(__v4si){40000,-50000,65535,-65536},(__m128i)(__v4si){0,50000,40000,-40000}),0,-32768,0,-32768,0,32767,0,-32768)); __m128i test_mm_mask_packs_epi32(__m128i __W, __mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_packs_epi32 // CHECK: @llvm.x86.sse2.packssdw // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_packs_epi32(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_packs_epi32((__m128i)(__v8hi){1,2,3,4,29,30,31,32},(__mmask8)0xAA,(__m128i)(__v4si){40000,-50000,65535,-65536},(__m128i)(__v4si){0,50000,40000,-40000}),1,-32768,3,-32768,29,32767,31,-32768)); __m256i test_mm256_maskz_packs_epi32(__mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_packs_epi32 // CHECK: @llvm.x86.avx2.packssdw // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_packs_epi32(__M,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_packs_epi32((__mmask32)0xAAAA,(__m256i)(__v8si){40000,-50000,32767,-32768,32768,-32769,65535,-65536},(__m256i)(__v8si){0,1,-1,65536,22222,-22222,40000,-40000}),0,-32768,0,-32768,0,1,0,32767,0,-32768,0,-32768,0,-22222,0,-32768)); __m256i test_mm256_mask_packs_epi32(__m256i __W, __mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_packs_epi32 // CHECK: @llvm.x86.avx2.packssdw // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_packs_epi32(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_packs_epi32((__m256i)(__v16hi){1,2,3,4,5,6,7,8,25,26,27,28,29,30,31,32},(__mmask16)0xAAAA,(__m256i)(__v8si){40000,-50000,32767,-32768,32768,-32769,65535,-65536},(__m256i)(__v8si){0,1,-1,65536,22222,-22222,40000,-40000}),1,-32768,3,-32768,5,1,7,32767,25,-32768,27,-32768,29,-22222,31,-32768)); __m128i test_mm_maskz_packs_epi16(__mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_packs_epi16 // CHECK: @llvm.x86.sse2.packsswb // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_packs_epi16(__M,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_packs_epi16((__mmask16)0xAAAA,(__m128i)(__v8hi){130,-200,127,-128,255,-255,127,-128},(__m128i)(__v8hi){0,1,-1,255,-128,90,-90,-32768}),0,-128,0,-128,0,-128,0,-128,0,1,0,127,0,90,0,-128)); __m128i test_mm_mask_packs_epi16(__m128i __W, __mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_packs_epi16 // CHECK: @llvm.x86.sse2.packsswb // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_packs_epi16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_mask_packs_epi16((__m128i)(__v16qi){1,2,3,4,5,6,7,8,57,58,59,60,61,62,63,64},(__mmask16)0xAAAA,(__m128i)(__v8hi){130,-200,127,-128,255,-255,127,-128},(__m128i)(__v8hi){0,1,-1,255,-128,90,-90,-32768}),1,-128,3,-128,5,-128,7,-128,57,1,59,127,61,90,63,-128)); __m256i test_mm256_maskz_packs_epi16(__mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_packs_epi16 // CHECK: @llvm.x86.avx2.packsswb // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_packs_epi16(__M,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_packs_epi16((__mmask32)0xAAAAAAAA,(__m256i)(__v16hi){130,-200,127,-128,300,-1000,42,-42,500,-500,7,-7,255,-255,127,-128},(__m256i)(__v16hi){0,1,-1,255,-129,128,20000,-32768,0,1,-1,127,-128,90,-90,-32768}),0,-128,0,-128,0,-128,0,-42,0,1,0,127,0,127,0,-128,0,-128,0,-7,0,-128,0,-128,0,1,0,127,0,90,0,-128)); __m256i test_mm256_mask_packs_epi16(__m256i __W, __mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_packs_epi16 // CHECK: @llvm.x86.avx2.packsswb // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_packs_epi16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_packs_epi16((__m256i)(__v32qs){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,49,50,51,52,53,54,55,56,57,58,59,60,61,62,63,64},(__mmask32)0xAAAAAAAA,(__m256i)(__v16hi){130,-200,127,-128,300,-1000,42,-42,500,-500,7,-7,255,-255,127,-128},(__m256i)(__v16hi){0,1,-1,255,-129,128,20000,-32768,0,1,-1,127,-128,90,-90,-32768}),1,-128,3,-128,5,-128,7,-42,9,1,11,127,13,127,15,-128,49,-128,51,-7,53,-128,55,-128,57,1,59,127,61,90,63,-128)); __m128i test_mm_mask_packus_epi32(__m128i __W, __mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_packus_epi32 // CHECK: @llvm.x86.sse41.packusdw // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_packus_epi32(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v8hu(_mm_mask_packus_epi32((__m128i)(__v8hu){1,2,3,4,5,6,7,8},(__mmask8)0xAA,(__m128i)(__v4si){40000,-50000,32767,-32768},(__m128i)(__v4si){0,1,-1,65536}),1,0,3,0,5,1,7,65535)); __m128i test_mm_maskz_packus_epi32(__mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_packus_epi32 // CHECK: @llvm.x86.sse41.packusdw // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_packus_epi32(__M,__A,__B); } TEST_CONSTEXPR(match_v8hu(_mm_maskz_packus_epi32((__mmask8)0xAA,(__m128i)(__v4si){40000,-50000,32767,-32768},(__m128i)(__v4si){0,1,-1,65536}),0,0,0,0,0,1,0,65535)); __m256i test_mm256_maskz_packus_epi32(__mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_packus_epi32 // CHECK: @llvm.x86.avx2.packusdw // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_packus_epi32(__M,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_packus_epi32((__mmask16)0xAAAA,(__m256i)(__v8si){40000,-50000,32767,-32768,32768,-32769,22222,-22222},(__m256i)(__v8si){0,1,-1,65536,40000,-40000,65535,0}),0,0,0,0,0,1,0,-1,0,0,0,0,0,0,0,0)); __m256i test_mm256_mask_packus_epi32(__m256i __W, __mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_packus_epi32 // CHECK: @llvm.x86.avx2.packusdw // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_packus_epi32(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_packus_epi32((__m256i)(__v16hi){1,2,3,4,5,6,7,8,25,26,27,28,29,30,31,32},(__mmask16)0xAAAA,(__m256i)(__v8si){40000,-50000,32767,-32768,32768,-32769,22222,-22222},(__m256i)(__v8si){0,1,-1,65536,40000,-40000,65535,0}),1,0,3,0,5,1,7,-1,25,0,27,0,29,0,31,0)); __m128i test_mm_maskz_packus_epi16(__mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_packus_epi16 // CHECK: @llvm.x86.sse2.packuswb // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_packus_epi16(__M,__A,__B); } TEST_CONSTEXPR(match_v16qu(_mm_maskz_packus_epi16((__mmask16)0xAAAA,(__m128i)(__v8hi){-1,0,1,127,128,255,256,-200},(__m128i)(__v8hi){0,1,-1,255,-129,128,20000,-32768}),0,0,0,127,0,255,0,0,0,1,0,255,0,128,0,0)); __m128i test_mm_mask_packus_epi16(__m128i __W, __mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_packus_epi16 // CHECK: @llvm.x86.sse2.packuswb // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_packus_epi16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16qu(_mm_mask_packus_epi16((__m128i)(__v16qu){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16},(__mmask16)0xAAAA,(__m128i)(__v8hi){-1,0,1,127,128,255,256,-200},(__m128i)(__v8hi){0,1,-1,255,-129,128,20000,-32768}),1,0,3,127,5,255,7,0,9,1,11,255,13,128,15,0)); __m256i test_mm256_maskz_packus_epi16(__mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_packus_epi16 // CHECK: @llvm.x86.avx2.packuswb // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_packus_epi16(__M,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_packus_epi16((__mmask32)0xAAAAAAAA,(__m256i)(__v16hi){-1,0,1,127,128,255,256,-200,300,42,-42,500,20000,-32768,129,-129},(__m256i)(__v16hi){0,1,-1,255,-129,128,20000,-32768,32767,-32767,127,-128,30000,-30000,90,-90}),0,0,0,127,0,-1,0,0,0,1,0,-1,0,-128,0,0,0,42,0,-1,0,0,0,0,0,0,0,0,0,0,0,0)); __m256i test_mm256_mask_packus_epi16(__m256i __W, __mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_packus_epi16 // CHECK: @llvm.x86.avx2.packuswb // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_packus_epi16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_packus_epi16((__m256i)(__v32qi){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,49,50,51,52,53,54,55,56,57,58,59,60,61,62,63,64},(__mmask32)0xAAAAAAAA,(__m256i)(__v16hi){-1,0,1,127,128,255,256,-200,300,42,-42,500,20000,-32768,129,-129},(__m256i)(__v16hi){0,1,-1,255,-129,128,20000,-32768,32767,-32767,127,-128,30000,-30000,90,-90}),1,0,3,127,5,-1,7,0,9,1,11,-1,13,-128,15,0,49,42,51,-1,53,0,55,0,57,0,59,0,61,0,63,0)); __m128i test_mm_mask_adds_epi8(__m128i __W, __mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_adds_epi8 // CHECK: @llvm.sadd.sat.v16i8 // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_adds_epi8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_mask_adds_epi8((__m128i)(__v16qs){1,2,3,4,5,6,7,8,57,58,59,60,61,62,63,64},(__mmask16)0xAAAA,(__m128i)(__v16qs){0,+1,-2,+3,-4,+5,-6,+7,-100,-50,+100,-20,-80,+120,-120,-20},(__m128i)(__v16qs){0,+1,-2,+3,-4,+5,-6,+7,+50,+80,-50,+110,+60,120,+20,-120}),1,+2,3,+6,5,+10,7,+14,57,+30,59,+90,61,+127,63,-128)); __m128i test_mm_maskz_adds_epi8(__mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_adds_epi8 // CHECK: @llvm.sadd.sat.v16i8 // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_adds_epi8(__U,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_adds_epi8((__mmask16)0xAAAA,(__m128i)(__v16qs){0,+1,-2,+3,-4,+5,-6,+7,-100,-50,+100,-20,-80,+120,-120,-20},(__m128i)(__v16qs){0,+1,-2,+3,-4,+5,-6,+7,+50,+80,-50,+110,+60,120,+20,-120}),0,+2,0,+6,0,+10,0,+14,0,+30,0,+90,0,+127,0,-128)); __m256i test_mm256_mask_adds_epi8(__m256i __W, __mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_adds_epi8 // CHECK: @llvm.sadd.sat.v32i8 // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_adds_epi8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_adds_epi8((__m256i)(__v32qs){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,49,50,51,52,53,54,55,56,57,58,59,60,61,62,63,64},(__mmask32)0xAAAAAAAA,(__m256i)(__v32qs){0,+1,-2,+3,-4,+5,-6,+7,-8,+9,-10,+11,-12,+13,-14,+15,+100,+50,-100,+20,+80,-50,+120,-20,-100,-50,+100,-20,-80,+50,-120,+20},(__m256i)(__v32qs){0,+1,-2,+3,-4,+5,-6,+7,-8,+9,-10,+11,-12,+13,-14,+15,+50,+80,-50,+110,+60,-30,+20,-10,+50,+80,-50,+110,+60,-30,+20,-10}),1,+2,3,+6,5,+10,7,+14,9,+18,11,+22,13,+26,15,+30,49,+127,51,+127,53,-80,+55,-30,57,+30,59,+90,61,+20,63,+10)); __m256i test_mm256_maskz_adds_epi8(__mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_adds_epi8 // CHECK: @llvm.sadd.sat.v32i8 // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_adds_epi8(__U,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_adds_epi8((__mmask32)0xAAAAAAAA,(__m256i)(__v32qs){0,+1,-2,+3,-4,+5,-6,+7,-8,+9,-10,+11,-12,+13,-14,+15,+100,+50,-100,+20,+80,-50,+120,-20,-100,-50,+100,-20,-80,+50,-120,+20},(__m256i)(__v32qs){0,+1,-2,+3,-4,+5,-6,+7,-8,+9,-10,+11,-12,+13,-14,+15,+50,+80,-50,+110,+60,-30,+20,-10,+50,+80,-50,+110,+60,-30,+20,-10}),0,+2,0,+6,0,+10,0,+14,0,+18,0,+22,0,+26,0,+30,0,+127,0,+127,0,-80,0,-30,0,+30,0,+90,0,+20,0,+10)); __m128i test_mm_mask_adds_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_adds_epi16 // CHECK: @llvm.sadd.sat.v8i16 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_adds_epi16(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_adds_epi16((__m128i)(__v8hi){9,10,11,12,13,14,15,16,},(__mmask8)0xAA,(__m128i)(__v8hi){-24,+25,-26,+27,+32000,-32000,+32000,+32000},(__m128i)(__v8hi){-24,+25,-26,+27,+800,-800,-800,+800}),9,+50,11,+54,13,-32768,15,+32767)); __m128i test_mm_maskz_adds_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_adds_epi16 // CHECK: @llvm.sadd.sat.v8i16 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_adds_epi16(__U,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_adds_epi16((__mmask8)0xAA,(__m128i)(__v8hi){-24,+25,-26,+27,+32000,-32000,+32000,+32000},(__m128i)(__v8hi){-24,+25,-26,+27,+800,-800,-800,+800}),0,+50,0,+54,0,-32768,0,+32767)); __m256i test_mm256_mask_adds_epi16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_adds_epi16 // CHECK: @llvm.sadd.sat.v16i16 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_adds_epi16(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_adds_epi16((__m256i)(__v16hi){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,},(__mmask16)0xAAAA,(__m256i)(__v16hi){0,+1,-2,+3,-4,+5,-6,+7,-24,+25,-26,+27,+32000,-32000,+32000,+32000},(__m256i)(__v16hi){0,+1,-2,+3,-4,+5,-6,+7,-24,+25,-26,+27,+800,-800,-800,+800}),1,+2,3,+6,5,+10,7,+14,9,+50,11,+54,13,-32768,15,+32767)); __m256i test_mm256_maskz_adds_epi16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_adds_epi16 // CHECK: @llvm.sadd.sat.v16i16 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_adds_epi16(__U,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_adds_epi16((__mmask16)0xAAAA,(__m256i)(__v16hi){0,+1,-2,+3,-4,+5,-6,+7,-24,+25,-26,+27,+32000,-32000,+32000,+32000},(__m256i)(__v16hi){0,+1,-2,+3,-4,+5,-6,+7,-24,+25,-26,+27,+800,-800,-800,+800}),0,+2,0,+6,0,+10,0,+14,0,+50,0,+54,0,-32768,0,+32767)); __m128i test_mm_mask_adds_epu8(__m128i __W, __mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_adds_epu8 // CHECK-NOT: @llvm.x86.sse2.paddus.b // CHECK: call <16 x i8> @llvm.uadd.sat.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_adds_epu8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v16qu(_mm_mask_adds_epu8((__m128i)(__v16qu){1,2,3,4,5,6,7,8,57,58,59,60,61,62,63,64},(__mmask16)0xAAAA,(__m128i)(__v16qu){0,0,0,0,0,0,0,0,+255,+255,+255,+255,+255,+255,+255,+255},(__m128i)(__v16qu){0,+63,+64,+127,+128,+191,+192,+255,0,+63,+64,+127,+128,+191,+192,+255}),1,+63,3,+127,5,+191,7,+255,57,+255,59,+255,61,+255,63,+255)); __m128i test_mm_maskz_adds_epu8(__mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_adds_epu8 // CHECK-NOT: @llvm.x86.sse2.paddus.b // CHECK: call <16 x i8> @llvm.uadd.sat.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_adds_epu8(__U,__A,__B); } TEST_CONSTEXPR(match_v16qu(_mm_maskz_adds_epu8((__mmask16)0xAAAA,(__m128i)(__v16qu){0,0,0,0,0,0,0,0,+255,+255,+255,+255,+255,+255,+255,+255},(__m128i)(__v16qu){0,+63,+64,+127,+128,+191,+192,+255,0,+63,+64,+127,+128,+191,+192,+255}),0,+63,0,+127,0,+191,0,+255,0,+255,0,+255,0,+255,0,+255)); __m256i test_mm256_mask_adds_epu8(__m256i __W, __mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_adds_epu8 // CHECK-NOT: @llvm.x86.avx2.paddus.b // CHECK: call <32 x i8> @llvm.uadd.sat.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_adds_epu8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v32qu(_mm256_mask_adds_epu8((__m256i)(__v32qu){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,49,50,51,52,53,54,55,56,57,58,59,60,61,62,63,64},(__mmask32)0xAAAAAAAA,(__m256i)(__v32qu){0,0,0,0,0,0,0,0,+63,+63,+63,+63,+63,+63,+63,+63,+192,+192,+192,+192,+192,+192,+192,+192,+255,+255,+255,+255,+255,+255,+255,+255},(__m256i)(__v32qu){0,+63,+64,+127,+128,+191,+192,+255,0,+63,+64,+127,+128,+191,+192,+255,0,+63,+64,+127,+128,+191,+192,+255,0,+63,+64,+127,+128,+191,+192,+255}),1,+63,3,+127,5,+191,7,+255,9,+126,11,+190,13,+254,15,+255,49,+255,51,+255,53,+255,55,+255,57,+255,59,+255,61,+255,63,+255)); __m256i test_mm256_maskz_adds_epu8(__mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_adds_epu8 // CHECK-NOT: @llvm.x86.avx2.paddus.b // CHECK: call <32 x i8> @llvm.uadd.sat.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_adds_epu8(__U,__A,__B); } TEST_CONSTEXPR(match_v32qu(_mm256_maskz_adds_epu8((__mmask32)0xAAAAAAAA,(__m256i)(__v32qu){0,0,0,0,0,0,0,0,+63,+63,+63,+63,+63,+63,+63,+63,+192,+192,+192,+192,+192,+192,+192,+192,+255,+255,+255,+255,+255,+255,+255,+255},(__m256i)(__v32qu){0,+63,+64,+127,+128,+191,+192,+255,0,+63,+64,+127,+128,+191,+192,+255,0,+63,+64,+127,+128,+191,+192,+255,0,+63,+64,+127,+128,+191,+192,+255}),0,+63,0,+127,0,+191,0,+255,0,+126,0,+190,0,+254,0,+255,0,+255,0,+255,0,+255,0,+255,0,+255,0,+255,0,+255,0,+255)); __m128i test_mm_mask_adds_epu16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_adds_epu16 // CHECK-NOT: @llvm.x86.sse2.paddus.w // CHECK: call <8 x i16> @llvm.uadd.sat.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_adds_epu16(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v8hu(_mm_mask_adds_epu16((__m128i)(__v8hu){25,26,27,28,29,30,31,32},(__mmask8)0xAA,(__m128i)(__v8hu){+16384,+16384,+16384,+16384,+49152,+49152,+49152,+49152},(__m128i)(__v8hu){0,+16384,+32767,+32768,+32767,+32768,+49152,+65535}),25,+32768,27,+49152,29,+65535,31,+65535)); __m128i test_mm_maskz_adds_epu16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_adds_epu16 // CHECK-NOT: @llvm.x86.sse2.paddus.w // CHECK: call <8 x i16> @llvm.uadd.sat.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_adds_epu16(__U,__A,__B); } TEST_CONSTEXPR(match_v8hu(_mm_maskz_adds_epu16((__mmask8)0xAA,(__m128i)(__v8hu){+16384,+16384,+16384,+16384,+49152,+49152,+49152,+49152},(__m128i)(__v8hu){0,+16384,+32767,+32768,+32767,+32768,+49152,+65535}),0,+32768,0,+49152,0,+65535,0,+65535)); __m256i test_mm256_mask_adds_epu16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_adds_epu16 // CHECK-NOT: @llvm.x86.avx2.paddus.w // CHECK: call <16 x i16> @llvm.uadd.sat.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_adds_epu16(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v16hu(_mm256_mask_adds_epu16((__m256i)(__v16hu){1,2,3,4,5,6,7,8,25,26,27,28,29,30,31,32},(__mmask16)0xAAAA,(__m256i)(__v16hu){0,0,0,0,+16384,+16384,+16384,+16384,+49152,+49152,+49152,+49152,+65535,+65535,+65535,+65535},(__m256i)(__v16hu){0,+32767,+32768,+65535,0,+16384,+32767,+32768,+32767,+32768,+49152,+65535,0,+32767,+32768,+65535}),1,+32767,3,+65535,5,+32768,7,+49152,25,+65535,27,+65535,29,+65535,31,+65535)); __m256i test_mm256_maskz_adds_epu16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_adds_epu16 // CHECK-NOT: @llvm.x86.avx2.paddus.w // CHECK: call <16 x i16> @llvm.uadd.sat.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_adds_epu16(__U,__A,__B); } TEST_CONSTEXPR(match_v16hu(_mm256_maskz_adds_epu16((__mmask16)0xAAAA,(__m256i)(__v16hu){0,0,0,0,+16384,+16384,+16384,+16384,+49152,+49152,+49152,+49152,+65535,+65535,+65535,+65535},(__m256i)(__v16hu){0,+32767,+32768,+65535,0,+16384,+32767,+32768,+32767,+32768,+49152,+65535,0,+32767,+32768,+65535}),0,+32767,0,+65535,0,+32768,0,+49152,0,+65535,0,+65535,0,+65535,0,+65535)); __m128i test_mm_mask_avg_epu8(__m128i __W, __mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_avg_epu8 // CHECK: @llvm.x86.sse2.pavg.b // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_avg_epu8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_mask_avg_epu8((__m128i)(__v16qi){0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}, 0x00FF, (__m128i)(__v16qi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m128i)(__v16qi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), 1, 2, 3, 4, 5, 6, 7, 8, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_maskz_avg_epu8(__mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_avg_epu8 // CHECK: @llvm.x86.sse2.pavg.b // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_avg_epu8(__U,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_avg_epu8(0x00FF, (__m128i)(__v16qi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m128i)(__v16qi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), 1, 2, 3, 4, 5, 6, 7, 8, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_mask_avg_epu8(__m256i __W, __mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_avg_epu8 // CHECK: @llvm.x86.avx2.pavg.b // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_avg_epu8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_avg_epu8((__m256i)(__v32qi){0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}, 0x0000FFFF, (__m256i)(__v32qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}, (__m256i)(__v32qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}), 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_maskz_avg_epu8(__mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_avg_epu8 // CHECK: @llvm.x86.avx2.pavg.b // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_avg_epu8(__U,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_avg_epu8(0x0000FFFF, (__m256i)(__v32qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}, (__m256i)(__v32qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}), 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_mask_avg_epu16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_avg_epu16 // CHECK: @llvm.x86.sse2.pavg.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_avg_epu16(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_avg_epu16((__m128i)(__v8hi){0, 1, 2, 3, 0, 0, 0, 0}, 0x0F, (__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}), 1, 2, 3, 4, 0, 0, 0, 0)); __m128i test_mm_maskz_avg_epu16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_avg_epu16 // CHECK: @llvm.x86.sse2.pavg.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_avg_epu16(__U,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_avg_epu16(0x0F, (__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}), 1, 2, 3, 4, 0, 0, 0, 0)); __m256i test_mm256_mask_avg_epu16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_avg_epu16 // CHECK: @llvm.x86.avx2.pavg.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_avg_epu16(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_avg_epu16((__m256i)(__v16hi){1, 2, 3, 4, 5, 6, 7, 8, 0, 0, 0, 0, 0, 0, 0, 0}, 0x00FF, (__m256i)(__v16hi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m256i)(__v16hi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), 1, 2, 3, 4, 5, 6, 7, 8, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_maskz_avg_epu16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_avg_epu16 // CHECK: @llvm.x86.avx2.pavg.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_avg_epu16(__U,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_avg_epu16(0x00FF, (__m256i)(__v16hi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m256i)(__v16hi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), 1, 2, 3, 4, 5, 6, 7, 8, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_maskz_max_epi8(__mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_max_epi8 // CHECK: [[RES:%.*]] = call <16 x i8> @llvm.smax.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i8>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i8> [[RES]], <16 x i8> {{.*}} return _mm_maskz_max_epi8(__M,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_max_epi8(0x00FF, (__m128i)(__v16qs){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16}, (__m128i)(__v16qs){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}), +1, +2, +3, +4, +5, +6, +7, +8, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_mask_max_epi8(__m128i __W, __mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_max_epi8 // CHECK: [[RES:%.*]] = call <16 x i8> @llvm.smax.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i8>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i8> [[RES]], <16 x i8> {{.*}} return _mm_mask_max_epi8(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_mask_max_epi8((__m128i)(__v16qs){+1, +2, +3, +4, +5, +6, +7, +8, -9, -10, -11, -12, -13, -14, -15, -16}, 0x00FF, (__m128i)(__v16qs){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16}, (__m128i)(__v16qs){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}), +1, +2, +3, +4, +5, +6, +7, +8, -9, -10, -11, -12, -13, -14, -15, -16)); __m256i test_mm256_maskz_max_epi8(__mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_max_epi8 // CHECK: [[RES:%.*]] = call <32 x i8> @llvm.smax.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<32 x i8>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <32 x i1> {{.*}}, <32 x i8> [[RES]], <32 x i8> {{.*}} return _mm256_maskz_max_epi8(__M,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_max_epi8(0x0000FFFF, (__m256i)(__v32qs){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16, +17, -18, +19, -20, +21, -22, +23, -24, +25, -26, +27, -28, +29, -30, +31, -32}, (__m256i)(__v32qs){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16, -17, +18, -19, +20, -21, +22, -23, +24, -25, +26, -27, +28, -29, +30, -31, +32}), +1, +2, +3, +4, +5, +6, +7, +8, +9, +10, +11, +12, +13, +14, +15, +16, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_mask_max_epi8(__m256i __W, __mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_max_epi8 // CHECK: [[RES:%.*]] = call <32 x i8> @llvm.smax.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<32 x i8>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <32 x i1> {{.*}}, <32 x i8> [[RES]], <32 x i8> {{.*}} return _mm256_mask_max_epi8(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_max_epi8((__m256i)(__v32qs){+1, +2, +3, +4, +5, +6, +7, +8, +9, +10, +11, +12, +13, +14, +15, +16, -17, -18, -19, -20, -21, -22, -23, -24, -25, -26, -27, -28, -29, -30, -31, -32}, 0x0000FFFF, (__m256i)(__v32qs){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16, +17, -18, +19, -20, +21, -22, +23, -24, +25, -26, +27, -28, +29, -30, +31, -32}, (__m256i)(__v32qs){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16, -17, +18, -19, +20, -21, +22, -23, +24, -25, +26, -27, +28, -29, +30, -31, +32}), +1, +2, +3, +4, +5, +6, +7, +8, +9, +10, +11, +12, +13, +14, +15, +16, -17, -18, -19, -20, -21, -22, -23, -24, -25, -26, -27, -28, -29, -30, -31, -32)); __m128i test_mm_maskz_max_epi16(__mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_max_epi16 // CHECK: [[RES:%.*]] = call <8 x i16> @llvm.smax.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<8 x i16>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <8 x i1> {{.*}}, <8 x i16> [[RES]], <8 x i16> {{.*}} return _mm_maskz_max_epi16(__M,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_max_epi16(0x0F, (__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v8hi){1, 2, 3, 5, 8, 12, 20, 32}), 1, 2, 3, 5, 0, 0, 0, 0)); __m128i test_mm_mask_max_epi16(__m128i __W, __mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_max_epi16 // CHECK: [[RES:%.*]] = call <8 x i16> @llvm.smax.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<8 x i16>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <8 x i1> {{.*}}, <8 x i16> [[RES]], <8 x i16> {{.*}} return _mm_mask_max_epi16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_max_epi16((__m128i)(__v8hi){1, 1, 1, 1, 0, 0, 0, 0}, 0x0F, (__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v8hi){1, 2, 3, 5, 8, 12, 20, 32}), 1, 2, 3, 5, 0, 0, 0, 0)); __m256i test_mm256_maskz_max_epi16(__mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_max_epi16 // CHECK: [[RES:%.*]] = call <16 x i16> @llvm.smax.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i16>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i16> [[RES]], <16 x i16> {{.*}} return _mm256_maskz_max_epi16(__M,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_max_epi16(0x00FF, (__m256i)(__v16hi){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}, (__m256i)(__v16hi){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16}), +1, +2, +3, +4, +5, +6, +7, +8, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_mask_max_epi16(__m256i __W, __mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_max_epi16 // CHECK: [[RES:%.*]] = call <16 x i16> @llvm.smax.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i16>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i16> [[RES]], <16 x i16> {{.*}} return _mm256_mask_max_epi16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_max_epi16((__m256i)(__v16hi){1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0}, 0x00FF, (__m256i)(__v16hi){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}, (__m256i)(__v16hi){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16}), +1, +2, +3, +4, +5, +6, +7, +8, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_maskz_max_epu8(__mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_max_epu8 // CHECK: [[RES:%.*]] = call <16 x i8> @llvm.umax.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i8>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i8> [[RES]], <16 x i8> {{.*}} return _mm_maskz_max_epu8(__M,__A,__B); } TEST_CONSTEXPR(match_v16qu(_mm_maskz_max_epu8(0x00FF, (__m128i)(__v16qu){9, 10, 11, 12, 13, 14, 15, 16, 1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v16qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), 9, 10, 11, 12, 13, 14, 15, 16, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_mask_max_epu8(__m128i __W, __mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_max_epu8 // CHECK: [[RES:%.*]] = call <16 x i8> @llvm.umax.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i8>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i8> [[RES]], <16 x i8> {{.*}} return _mm_mask_max_epu8(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16qu(_mm_mask_max_epu8((__m128i)(__v16qu){1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0}, 0x00FF, (__m128i)(__v16qu){9, 10, 11, 12, 13, 14, 15, 16, 1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v16qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), 9, 10, 11, 12, 13, 14, 15, 16, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_maskz_max_epu8(__mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_max_epu8 // CHECK: [[RES:%.*]] = call <32 x i8> @llvm.umax.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<32 x i8>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <32 x i1> {{.*}}, <32 x i8> [[RES]], <32 x i8> {{.*}} return _mm256_maskz_max_epu8(__M,__A,__B); } TEST_CONSTEXPR(match_v32qu(_mm256_maskz_max_epu8(0x0000FFFF, (__m256i)(__v32qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}, (__m256i)(__v32qu){0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31}), 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_mask_max_epu8(__m256i __W, __mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_max_epu8 // CHECK: [[RES:%.*]] = call <32 x i8> @llvm.umax.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<32 x i8>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <32 x i1> {{.*}}, <32 x i8> [[RES]], <32 x i8> {{.*}} return _mm256_mask_max_epu8(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v32qu(_mm256_mask_max_epu8((__m256i)(__v32qu){1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}, 0x0000FFFF, (__m256i)(__v32qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}, (__m256i)(__v32qu){0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31}), 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_maskz_max_epu16(__mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_max_epu16 // CHECK: [[RES:%.*]] = call <8 x i16> @llvm.umax.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<8 x i16>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <8 x i1> {{.*}}, <8 x i16> [[RES]], <8 x i16> {{.*}} return _mm_maskz_max_epu16(__M,__A,__B); } TEST_CONSTEXPR(match_v8hu(_mm_maskz_max_epu16(0x0F, (__m128i)(__v8hu){1, 3, 5, 7, 9, 11, 13, 15}, (__m128i)(__v8hu){3, 4, 5, 6, 7, 8, 9, 10}), 3, 4, 5, 7, 0, 0, 0, 0)); __m128i test_mm_mask_max_epu16(__m128i __W, __mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_max_epu16 // CHECK: [[RES:%.*]] = call <8 x i16> @llvm.umax.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<8 x i16>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <8 x i1> {{.*}}, <8 x i16> [[RES]], <8 x i16> {{.*}} return _mm_mask_max_epu16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v8hu(_mm_mask_max_epu16((__m128i)(__v8hu){1, 1, 1, 1, 0, 0, 0, 0}, 0x0F, (__m128i)(__v8hu){1, 3, 5, 7, 9, 11, 13, 15}, (__m128i)(__v8hu){3, 4, 5, 6, 7, 8, 9, 10}), 3, 4, 5, 7, 0, 0, 0, 0)); __m256i test_mm256_maskz_max_epu16(__mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_max_epu16 // CHECK: [[RES:%.*]] = call <16 x i16> @llvm.umax.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i16>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i16> [[RES]], <16 x i16> {{.*}} return _mm256_maskz_max_epu16(__M,__A,__B); } TEST_CONSTEXPR(match_v16hu(_mm256_maskz_max_epu16(0x00FF, (__m256i)(__v16hu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m256i)(__v16hu){0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}), 1, 2, 3, 4, 5, 6, 7, 8, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_mask_max_epu16(__m256i __W, __mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_max_epu16 // CHECK: [[RES:%.*]] = call <16 x i16> @llvm.umax.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i16>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i16> [[RES]], <16 x i16> {{.*}} return _mm256_mask_max_epu16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16hu(_mm256_mask_max_epu16((__m256i)(__v16hu){1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0}, 0x00FF, (__m256i)(__v16hu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m256i)(__v16hu){0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}), 1, 2, 3, 4, 5, 6, 7, 8, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_maskz_min_epi8(__mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_min_epi8 // CHECK: [[RES:%.*]] = call <16 x i8> @llvm.smin.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i8>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i8> [[RES]], <16 x i8> {{.*}} return _mm_maskz_min_epi8(__M,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_min_epi8(0x00FF, (__m128i)(__v16qs){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16}, (__m128i)(__v16qs){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}), -1, -2, -3, -4, -5, -6, -7, -8, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_mask_min_epi8(__m128i __W, __mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_min_epi8 // CHECK: [[RES:%.*]] = call <16 x i8> @llvm.smin.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i8>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i8> [[RES]], <16 x i8> {{.*}} return _mm_mask_min_epi8(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_mask_min_epi8((__m128i)(__v16qs){+1, +2, +3, +4, +5, +6, +7, +8, -9, -10, -11, -12, -13, -14, -15, -16}, 0x00FF, (__m128i)(__v16qs){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16}, (__m128i)(__v16qs){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}), -1, -2, -3, -4, -5, -6, -7, -8, -9, -10, -11, -12, -13, -14, -15, -16)); __m256i test_mm256_maskz_min_epi8(__mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_min_epi8 // CHECK: [[RES:%.*]] = call <32 x i8> @llvm.smin.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<32 x i8>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <32 x i1> {{.*}}, <32 x i8> [[RES]], <32 x i8> {{.*}} return _mm256_maskz_min_epi8(__M,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_min_epi8(0x0000FFFF, (__m256i)(__v32qs){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16, +17, -18, +19, -20, +21, -22, +23, -24, +25, -26, +27, -28, +29, -30, +31, -32}, (__m256i)(__v32qs){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16, -17, +18, -19, +20, -21, +22, -23, +24, -25, +26, -27, +28, -29, +30, -31, +32}), -1, -2, -3, -4, -5, -6, -7, -8, -9, -10, -11, -12, -13, -14, -15, -16, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_mask_min_epi8(__m256i __W, __mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_min_epi8 // CHECK: [[RES:%.*]] = call <32 x i8> @llvm.smin.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<32 x i8>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <32 x i1> {{.*}}, <32 x i8> [[RES]], <32 x i8> {{.*}} return _mm256_mask_min_epi8(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_min_epi8((__m256i)(__v32qs){+1, +2, +3, +4, +5, +6, +7, +8, +9, +10, +11, +12, +13, +14, +15, +16, -17, -18, -19, -20, -21, -22, -23, -24, -25, -26, -27, -28, -29, -30, -31, -32}, 0x0000FFFF, (__m256i)(__v32qs){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16, +17, -18, +19, -20, +21, -22, +23, -24, +25, -26, +27, -28, +29, -30, +31, -32}, (__m256i)(__v32qs){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16, -17, +18, -19, +20, -21, +22, -23, +24, -25, +26, -27, +28, -29, +30, -31, +32}), -1, -2, -3, -4, -5, -6, -7, -8, -9, -10, -11, -12, -13, -14, -15, -16, -17, -18, -19, -20, -21, -22, -23, -24, -25, -26, -27, -28, -29, -30, -31, -32)); __m128i test_mm_maskz_min_epi16(__mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_min_epi16 // CHECK: [[RES:%.*]] = call <8 x i16> @llvm.smin.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<8 x i16>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <8 x i1> {{.*}}, <8 x i16> [[RES]], <8 x i16> {{.*}} return _mm_maskz_min_epi16(__M,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_min_epi16(0x0F, (__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v8hi){1, 2, 3, 5, 8, 12, 20, 32}), 1, 2, 3, 4, 0, 0, 0, 0)); __m128i test_mm_mask_min_epi16(__m128i __W, __mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_min_epi16 // CHECK: [[RES:%.*]] = call <8 x i16> @llvm.smin.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<8 x i16>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <8 x i1> {{.*}}, <8 x i16> [[RES]], <8 x i16> {{.*}} return _mm_mask_min_epi16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_min_epi16((__m128i)(__v8hi){1, 1, 1, 1, 0, 0, 0, 0}, 0x0F, (__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v8hi){1, 2, 3, 5, 8, 12, 20, 32}), 1, 2, 3, 4, 0, 0, 0, 0)); __m256i test_mm256_maskz_min_epi16(__mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_min_epi16 // CHECK: [[RES:%.*]] = call <16 x i16> @llvm.smin.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i16>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i16> [[RES]], <16 x i16> {{.*}} return _mm256_maskz_min_epi16(__M,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_min_epi16(0x00FF, (__m256i)(__v16hi){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}, (__m256i)(__v16hi){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16}), -1, -2, -3, -4, -5, -6, -7, -8, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_mask_min_epi16(__m256i __W, __mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_min_epi16 // CHECK: [[RES:%.*]] = call <16 x i16> @llvm.smin.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i16>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i16> [[RES]], <16 x i16> {{.*}} return _mm256_mask_min_epi16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_min_epi16((__m256i)(__v16hi){1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0}, 0x00FF, (__m256i)(__v16hi){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}, (__m256i)(__v16hi){-1, +2, -3, +4, -5, +6, -7, +8, -9, +10, -11, +12, -13, +14, -15, +16}), -1, -2, -3, -4, -5, -6, -7, -8, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_maskz_min_epu8(__mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_min_epu8 // CHECK: [[RES:%.*]] = call <16 x i8> @llvm.umin.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i8>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i8> [[RES]], <16 x i8> {{.*}} return _mm_maskz_min_epu8(__M,__A,__B); } TEST_CONSTEXPR(match_v16qu(_mm_maskz_min_epu8(0x00FF, (__m128i)(__v16qu){9, 10, 11, 12, 13, 14, 15, 16, 1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v16qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), 1, 2, 3, 4, 5, 6, 7, 8, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_mask_min_epu8(__m128i __W, __mmask16 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_min_epu8 // CHECK: [[RES:%.*]] = call <16 x i8> @llvm.umin.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i8>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i8> [[RES]], <16 x i8> {{.*}} return _mm_mask_min_epu8(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16qu(_mm_mask_min_epu8((__m128i)(__v16qu){1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0}, 0x00FF, (__m128i)(__v16qu){9, 10, 11, 12, 13, 14, 15, 16, 1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v16qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), 1, 2, 3, 4, 5, 6, 7, 8, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_maskz_min_epu8(__mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_min_epu8 // CHECK: [[RES:%.*]] = call <32 x i8> @llvm.umin.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<32 x i8>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <32 x i1> {{.*}}, <32 x i8> [[RES]], <32 x i8> {{.*}} return _mm256_maskz_min_epu8(__M,__A,__B); } TEST_CONSTEXPR(match_v32qu(_mm256_maskz_min_epu8(0x0000FFFF, (__m256i)(__v32qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}, (__m256i)(__v32qu){0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31}), 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_mask_min_epu8(__m256i __W, __mmask32 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_min_epu8 // CHECK: [[RES:%.*]] = call <32 x i8> @llvm.umin.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<32 x i8>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <32 x i1> {{.*}}, <32 x i8> [[RES]], <32 x i8> {{.*}} return _mm256_mask_min_epu8(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v32qu(_mm256_mask_min_epu8((__m256i)(__v32qu){1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}, 0x0000FFFF, (__m256i)(__v32qu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}, (__m256i)(__v32qu){0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31}), 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_maskz_min_epu16(__mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_min_epu16 // CHECK: [[RES:%.*]] = call <8 x i16> @llvm.umin.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<8 x i16>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <8 x i1> {{.*}}, <8 x i16> [[RES]], <8 x i16> {{.*}} return _mm_maskz_min_epu16(__M,__A,__B); } TEST_CONSTEXPR(match_v8hu(_mm_maskz_min_epu16(0x0F, (__m128i)(__v8hu){1, 3, 5, 7, 9, 11, 13, 15}, (__m128i)(__v8hu){3, 4, 5, 6, 7, 8, 9, 10}), 1, 3, 5, 6, 0, 0, 0, 0)); __m128i test_mm_mask_min_epu16(__m128i __W, __mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_min_epu16 // CHECK: [[RES:%.*]] = call <8 x i16> @llvm.umin.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<8 x i16>]] [[RES]] to [[DSTTY:<2 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <8 x i1> {{.*}}, <8 x i16> [[RES]], <8 x i16> {{.*}} return _mm_mask_min_epu16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v8hu(_mm_mask_min_epu16((__m128i)(__v8hu){1, 1, 1, 1, 0, 0, 0, 0}, 0x0F, (__m128i)(__v8hu){1, 3, 5, 7, 9, 11, 13, 15}, (__m128i)(__v8hu){3, 4, 5, 6, 7, 8, 9, 10}), 1, 3, 5, 6, 0, 0, 0, 0)); __m256i test_mm256_maskz_min_epu16(__mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_min_epu16 // CHECK: [[RES:%.*]] = call <16 x i16> @llvm.umin.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i16>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i16> [[RES]], <16 x i16> {{.*}} return _mm256_maskz_min_epu16(__M,__A,__B); } TEST_CONSTEXPR(match_v16hu(_mm256_maskz_min_epu16(0x00FF, (__m256i)(__v16hu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m256i)(__v16hu){0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}), 0, 1, 2, 3, 4, 5, 6, 7, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_mask_min_epu16(__m256i __W, __mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_min_epu16 // CHECK: [[RES:%.*]] = call <16 x i16> @llvm.umin.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: [[TMP:%.*]] = bitcast [[SRCTY:<16 x i16>]] [[RES]] to [[DSTTY:<4 x i64>]] // CHECK: [[RES:%.*]] = bitcast [[DSTTY]] [[TMP]] to [[SRCTY]] // CHECK: select <16 x i1> {{.*}}, <16 x i16> [[RES]], <16 x i16> {{.*}} return _mm256_mask_min_epu16(__W,__M,__A,__B); } TEST_CONSTEXPR(match_v16hu(_mm256_mask_min_epu16((__m256i)(__v16hu){1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0}, 0x00FF, (__m256i)(__v16hu){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m256i)(__v16hu){0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}), 0, 1, 2, 3, 4, 5, 6, 7, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_mask_shuffle_epi8(__m128i __W, __mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_shuffle_epi8 // CHECK: @llvm.x86.ssse3.pshuf.b // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_shuffle_epi8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_mask_shuffle_epi8((__m128i)(__v16qi){1,1,1,1,1,1,1,1,2,2,4,4,6,6,8,8}, 0x00FF, (__m128i)(__v16qi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}, (__m128i)(__v16qi){15,14,13,12,11,10,9,8,7,6,5,4,3,2,1,0}), 15,14,13,12,11,10,9,8,2,2,4,4,6,6,8,8)); __m128i test_mm_maskz_shuffle_epi8(__mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_shuffle_epi8 // CHECK: @llvm.x86.ssse3.pshuf.b // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_shuffle_epi8(__U,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_shuffle_epi8(0xAAAA, (__m128i)(__v16qi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}, (__m128i)(__v16qi){15,14,13,12,11,10,9,8,7,6,5,4,3,2,1,0}), 0,14,0,12,0,10,0,8,0,6,0,4,0,2,0,0)); __m256i test_mm256_mask_shuffle_epi8(__m256i __W, __mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_shuffle_epi8 // CHECK: @llvm.x86.avx2.pshuf.b // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_shuffle_epi8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_shuffle_epi8((__m256i)(__v32qi){1,1,1,1,1,1,1,1,2,2,2,2,2,2,2,2,3,3,3,3,3,3,3,3,4,4,4,4,4,4,4,4}, 0x80808080, (__m256i)(__v32qi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,25,26,27,28,29,30,31}, (__m256i)(__v32qi){31,30,29,28,27,26,25,24,23,22,21,20,19,18,17,16,15,14,13,12,11,10,9,8,7,6,5,4,3,2,1,0}), 1,1,1,1,1,1,1,8,2,2,2,2,2,2,2,0,3,3,3,3,3,3,3,24,4,4,4,4,4,4,4,16)); __m256i test_mm256_maskz_shuffle_epi8(__mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_shuffle_epi8 // CHECK: @llvm.x86.avx2.pshuf.b // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_shuffle_epi8(__U,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_shuffle_epi8(0x0000FFFF, (__m256i)(__v32qi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,25,26,27,28,29,30,31}, (__m256i)(__v32qi){31,30,29,28,27,26,25,24,23,22,21,20,19,18,17,16,15,14,13,12,11,10,9,8,7,6,5,4,3,2,1,0}), 15,14,13,12,11,10,9,8,7,6,5,4,3,2,1,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0)); __m128i test_mm_mask_subs_epi8(__m128i __W, __mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_subs_epi8 // CHECK: @llvm.ssub.sat.v16i8 // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_subs_epi8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_mask_subs_epi8((__m128i)(__v16qs){1,2,3,4,5,6,7,8,57,58,59,60,61,62,63,64},(__mmask16)0xAAAA,(__m128i)(__v16qs){1,-100,3,4,5,-6,7,100,57,-100,59,60,61,-62,63,100},(__m128i)(__v16qs){1,100,3,4,5,6,7,-100,57,100,59,60,61,62,63,-100}),1,-128,3,0,5,-12,7,127,57,-128,59,0,61,-124,63,127)); __m128i test_mm_maskz_subs_epi8(__mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_subs_epi8 // CHECK: @llvm.ssub.sat.v16i8 // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_subs_epi8(__U,__A,__B); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_subs_epi8((__mmask16)0xAAAA,(__m128i)(__v16qs){1,-100,3,4,5,-6,7,100,57,-100,59,60,61,-62,63,100},(__m128i)(__v16qs){1,100,3,4,5,6,7,-100,57,100,59,60,61,62,63,-100}),0,-128,0,0,0,-12,0,127,0,-128,0,0,0,-124,0,127)); __m256i test_mm256_mask_subs_epi8(__m256i __W, __mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_subs_epi8 // CHECK: @llvm.ssub.sat.v32i8 // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_subs_epi8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_subs_epi8((__m256i)(__v32qs){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,49,50,51,52,53,54,55,56,57,58,59,60,61,62,63,64},(__mmask32)0xAAAAAAAA,(__m256i)(__v32qs){1,-100,3,4,5,-6,7,100,9,-100,11,12,13,-14,15,100,49,-100,51,52,53,-54,55,100,57,-100,59,60,61,-62,63,100},(__m256i)(__v32qs){1,100,3,4,5,6,7,-100,9,100,11,12,13,14,15,-100,49,100,51,52,53,54,55,-100,57,100,59,60,61,62,63,-100}),1,-128,3,0,5,-12,7,127,9,-128,11,0,13,-28,15,127,49,-128,51,0,53,-108,55,127,57,-128,59,0,61,-124,63,127)); __m256i test_mm256_maskz_subs_epi8(__mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_subs_epi8 // CHECK: @llvm.ssub.sat.v32i8 // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_subs_epi8(__U,__A,__B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_subs_epi8((__mmask32)0xAAAAAAAA,(__m256i)(__v32qs){1,-100,3,4,5,-6,7,100,9,-100,11,12,13,-14,15,100,49,-100,51,52,53,-54,55,100,57,-100,59,60,61,-62,63,100},(__m256i)(__v32qs){1,100,3,4,5,6,7,-100,9,100,11,12,13,14,15,-100,49,100,51,52,53,54,55,-100,57,100,59,60,61,62,63,-100}),0,-128,0,0,0,-12,0,127,0,-128,0,0,0,-28,0,127,0,-128,0,0,0,-108,0,127,0,-128,0,0,0,-124,0,127)); __m128i test_mm_mask_subs_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_subs_epi16 // CHECK: @llvm.ssub.sat.v8i16 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_subs_epi16(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_subs_epi16((__m128i)(__v8hi){1,2,3,4,29,30,31,32},(__mmask8)0xAA,(__m128i)(__v8hi){1,-30000,3,30000,29,-30,31,32},(__m128i)(__v8hi){1,30000,3,-30000,29,30,31,-32}),1,-32768,3,32767,29,-60,31,64)); __m128i test_mm_maskz_subs_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_subs_epi16 // CHECK: @llvm.ssub.sat.v8i16 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_subs_epi16(__U,__A,__B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_subs_epi16((__mmask8)0xAA,(__m128i)(__v8hi){1,-30000,3,30000,29,-30,31,32},(__m128i)(__v8hi){1,30000,3,-30000,29,30,31,-32}),0,-32768,0,32767,0,-60,0,64)); __m256i test_mm256_mask_subs_epi16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_subs_epi16 // CHECK: @llvm.ssub.sat.v16i16 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_subs_epi16(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_subs_epi16((__m256i)(__v16hi){1,2,3,4,5,6,7,8,25,26,27,28,29,30,31,32},(__mmask16)0xAAAA,(__m256i)(__v16hi){1,-30000,3,30000,5,-6,7,8,25,-30000,27,30000,29,-30,31,32},(__m256i)(__v16hi){1,30000,3,-30000,5,6,7,-8,25,30000,27,-30000,29,30,31,-32}),1,-32768,3,32767,5,-12,7,16,25,-32768,27,32767,29,-60,31,64)); __m256i test_mm256_maskz_subs_epi16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_subs_epi16 // CHECK: @llvm.ssub.sat.v16i16 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_subs_epi16(__U,__A,__B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_subs_epi16((__mmask16)0xAAAA,(__m256i)(__v16hi){1,-30000,3,30000,5,-6,7,8,25,-30000,27,30000,29,-30,31,32},(__m256i)(__v16hi){1,30000,3,-30000,5,6,7,-8,25,30000,27,-30000,29,30,31,-32}),0,-32768,0,32767,0,-12,0,16,0,-32768,0,32767,0,-60,0,64)); __m128i test_mm_mask_subs_epu8(__m128i __W, __mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_subs_epu8 // CHECK-NOT: @llvm.x86.sse2.psubus.b // CHECK: call <16 x i8> @llvm.usub.sat.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_subs_epu8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v16qu(_mm_mask_subs_epu8((__m128i)(__v16qu){1,2,3,4,5,6,7,8,57,58,59,60,61,62,63,64},(__mmask16)0xAAAA,(__m128i)(__v16qu){0,250,0,128,0,20,0,255,0,0,0,1,0,100,0,255},(__m128i)(__v16qu){0,50,0,128,0,30,0,1,0,1,0,0,0,99,0,255}),1,200,3,0,5,0,7,254,57,0,59,1,61,1,63,0)); __m128i test_mm_maskz_subs_epu8(__mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_subs_epu8 // CHECK-NOT: @llvm.x86.sse2.psubus.b // CHECK: call <16 x i8> @llvm.usub.sat.v16i8(<16 x i8> %{{.*}}, <16 x i8> %{{.*}}) // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_subs_epu8(__U,__A,__B); } TEST_CONSTEXPR(match_v16qu(_mm_maskz_subs_epu8((__mmask16)0xAAAA,(__m128i)(__v16qu){0,250,0,128,0,20,0,255,0,0,0,1,0,100,0,255},(__m128i)(__v16qu){0,50,0,128,0,30,0,1,0,1,0,0,0,99,0,255}),0,200,0,0,0,0,0,254,0,0,0,1,0,1,0,0)); __m256i test_mm256_mask_subs_epu8(__m256i __W, __mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_subs_epu8 // CHECK-NOT: @llvm.x86.avx2.psubus.b // CHECK: call <32 x i8> @llvm.usub.sat.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_subs_epu8(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v32qu(_mm256_mask_subs_epu8((__m256i)(__v32qu){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,49,50,51,52,53,54,55,56,57,58,59,60,61,62,63,64},(__mmask32)0xAAAAAAAA,(__m256i)(__v32qu){0,250,0,128,0,20,0,255,0,0,0,1,0,100,0,255,0,250,0,128,0,20,0,255,0,0,0,1,0,100,0,255},(__m256i)(__v32qu){0,50,0,128,0,30,0,1,0,1,0,0,0,99,0,255,0,50,0,128,0,30,0,1,0,1,0,0,0,99,0,255}),1,200,3,0,5,0,7,254,9,0,11,1,13,1,15,0,49,200,51,0,53,0,55,254,57,0,59,1,61,1,63,0)); __m256i test_mm256_maskz_subs_epu8(__mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_subs_epu8 // CHECK-NOT: @llvm.x86.avx2.psubus.b // CHECK: call <32 x i8> @llvm.usub.sat.v32i8(<32 x i8> %{{.*}}, <32 x i8> %{{.*}}) // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_subs_epu8(__U,__A,__B); } TEST_CONSTEXPR(match_v32qu(_mm256_maskz_subs_epu8((__mmask32)0xAAAAAAAA,(__m256i)(__v32qu){0,250,0,128,0,20,0,255,0,0,0,1,0,100,0,255,0,250,0,128,0,20,0,255,0,0,0,1,0,100,0,255},(__m256i)(__v32qu){0,50,0,128,0,30,0,1,0,1,0,0,0,99,0,255,0,50,0,128,0,30,0,1,0,1,0,0,0,99,0,255}),0,200,0,0,0,0,0,254,0,0,0,1,0,1,0,0,0,200,0,0,0,0,0,254,0,0,0,1,0,1,0,0)); __m128i test_mm_mask_subs_epu16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_subs_epu16 // CHECK-NOT: @llvm.x86.sse2.psubus.w // CHECK: call <8 x i16> @llvm.usub.sat.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_subs_epu16(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v8hu(_mm_mask_subs_epu16((__m128i)(__v8hu){101,102,103,104,129,130,131,132},(__mmask8)0xAAu,(__m128i)(__v8hu){0,65000,0,40000,0,1,0,50000},(__m128i)(__v8hu){0,5000,0,60000,0,0,0,25000}),101,60000,103,0,129,1,131,25000)); __m128i test_mm_maskz_subs_epu16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_subs_epu16 // CHECK-NOT: @llvm.x86.sse2.psubus.w // CHECK: call <8 x i16> @llvm.usub.sat.v8i16(<8 x i16> %{{.*}}, <8 x i16> %{{.*}}) // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_subs_epu16(__U,__A,__B); } TEST_CONSTEXPR(match_v8hu(_mm_maskz_subs_epu16((__mmask8)0xAAu,(__m128i)(__v8hu){0,65000,0,40000,0,1,0,50000},(__m128i)(__v8hu){0,5000,0,60000,0,0,0,25000}),0,60000,0,0,0,1,0,25000)); __m256i test_mm256_mask_subs_epu16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_subs_epu16 // CHECK-NOT: @llvm.x86.avx2.psubus.w // CHECK: call <16 x i16> @llvm.usub.sat.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_subs_epu16(__W,__U,__A,__B); } TEST_CONSTEXPR(match_v16hu(_mm256_mask_subs_epu16((__m256i)(__v16hu){101,102,103,104,105,106,107,108,125,126,127,128,129,130,131,132},(__mmask16)0xAAAAu,(__m256i)(__v16hu){0,65000,0,40000,0,100,0,65535,0,0,0,1000,0,1,0,50000},(__m256i)(__v16hu){0,5000,0,40000,0,200,0,1,0,1,0,65535,0,0,0,25000}),101,60000,103,0,105,0,107,65534,125,0,127,0,129,1,131,25000)); __m256i test_mm256_maskz_subs_epu16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_subs_epu16 // CHECK-NOT: @llvm.x86.avx2.psubus.w // CHECK: call <16 x i16> @llvm.usub.sat.v16i16(<16 x i16> %{{.*}}, <16 x i16> %{{.*}}) // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_subs_epu16(__U,__A,__B); } TEST_CONSTEXPR(match_v16hu(_mm256_maskz_subs_epu16((__mmask16)0xAAAAu,(__m256i)(__v16hu){0,65000,0,40000,0,100,10,65535,0,0,0,1000,0,1,10000,50000},(__m256i)(__v16hu){0,5000,0,40000,0,200,0,1,0,1,0,65535,0,0,0,25000}),0,60000,0,0,0,0,0,65534,0,0,0,0,0,1,0,25000)); __m128i test_mm_mask2_permutex2var_epi16(__m128i __A, __m128i __I, __mmask8 __U, __m128i __B) { // CHECK-LABEL: test_mm_mask2_permutex2var_epi16 // CHECK: @llvm.x86.avx512.vpermi2var.hi.128 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask2_permutex2var_epi16(__A,__I,__U,__B); } __m256i test_mm256_mask2_permutex2var_epi16(__m256i __A, __m256i __I, __mmask16 __U, __m256i __B) { // CHECK-LABEL: test_mm256_mask2_permutex2var_epi16 // CHECK: @llvm.x86.avx512.vpermi2var.hi.256 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask2_permutex2var_epi16(__A,__I,__U,__B); } __m128i test_mm_permutex2var_epi16(__m128i __A, __m128i __I, __m128i __B) { // CHECK-LABEL: test_mm_permutex2var_epi16 // CHECK: @llvm.x86.avx512.vpermi2var.hi.128 return _mm_permutex2var_epi16(__A,__I,__B); } __m128i test_mm_mask_permutex2var_epi16(__m128i __A, __mmask8 __U, __m128i __I, __m128i __B) { // CHECK-LABEL: test_mm_mask_permutex2var_epi16 // CHECK: @llvm.x86.avx512.vpermi2var.hi.128 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_permutex2var_epi16(__A,__U,__I,__B); } __m128i test_mm_maskz_permutex2var_epi16(__mmask8 __U, __m128i __A, __m128i __I, __m128i __B) { // CHECK-LABEL: test_mm_maskz_permutex2var_epi16 // CHECK: @llvm.x86.avx512.vpermi2var.hi.128 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_permutex2var_epi16(__U,__A,__I,__B); } __m256i test_mm256_permutex2var_epi16(__m256i __A, __m256i __I, __m256i __B) { // CHECK-LABEL: test_mm256_permutex2var_epi16 // CHECK: @llvm.x86.avx512.vpermi2var.hi.256 return _mm256_permutex2var_epi16(__A,__I,__B); } __m256i test_mm256_mask_permutex2var_epi16(__m256i __A, __mmask16 __U, __m256i __I, __m256i __B) { // CHECK-LABEL: test_mm256_mask_permutex2var_epi16 // CHECK: @llvm.x86.avx512.vpermi2var.hi.256 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_permutex2var_epi16(__A,__U,__I,__B); } __m256i test_mm256_maskz_permutex2var_epi16(__mmask16 __U, __m256i __A, __m256i __I, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_permutex2var_epi16 // CHECK: @llvm.x86.avx512.vpermi2var.hi.256 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_permutex2var_epi16(__U,__A,__I,__B); } TEST_CONSTEXPR(match_v8hi( _mm_permutex2var_epi16((__m128i)(__v8hi){0, 10, 20, 30, 40, 50, 60, 70}, (__m128i)(__v8hi){0, 7, 8, 15, 1, 9, 2, 10}, (__m128i)(__v8hi){100, 110, 120, 130, 140, 150, 160, 170}), 0, 70, 100, 170, 10, 110, 20, 120)); TEST_CONSTEXPR(match_v8hi( _mm_mask_permutex2var_epi16((__m128i)(__v8hi){-1, -2, -3, -4, -5, -6, -7, -8}, 0xAA, (__m128i)(__v8hi){0, 7, 8, 15, 1, 9, 2, 10}, (__m128i)(__v8hi){100, 110, 120, 130, 140, 150, 160, 170}), -1, -8, -3, 170, -5, 110, -7, 120)); TEST_CONSTEXPR(match_v8hi( _mm_maskz_permutex2var_epi16(0xAA, (__m128i)(__v8hi){0, 10, 20, 30, 40, 50, 60, 70}, (__m128i)(__v8hi){0, 7, 8, 15, 1, 9, 2, 10}, (__m128i)(__v8hi){100, 110, 120, 130, 140, 150, 160, 170}), 0, 70, 0, 170, 0, 110, 0, 120)); TEST_CONSTEXPR(match_v8hi( _mm_mask2_permutex2var_epi16((__m128i)(__v8hi){0, 10, 20, 30, 40, 50, 60, 70}, (__m128i)(__v8hi){0, 7, 8, 15, 1, 9, 2, 10}, 0x55, (__m128i)(__v8hi){100, 110, 120, 130, 140, 150, 160, 170}), 0, 7, 100, 15, 10, 9, 20, 10)); TEST_CONSTEXPR(match_v16hi( _mm256_permutex2var_epi16( (__m256i)(__v16hi){0, 10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 110, 120, 130, 140, 150}, (__m256i)(__v16hi){0, 15, 16, 31, 1, 17, 2, 18, 3, 19, 4, 20, 5, 21, 6, 22}, (__m256i)(__v16hi){200, 210, 220, 230, 240, 250, 260, 270, 280, 290, 300, 310, 320, 330, 340, 350}), 0, 150, 200, 350, 10, 210, 20, 220, 30, 230, 40, 240, 50, 250, 60, 260)); TEST_CONSTEXPR(match_v16hi( _mm256_mask_permutex2var_epi16( (__m256i)(__v16hi){-1, -2, -3, -4, -5, -6, -7, -8, -9, -10, -11, -12, -13, -14, -15, -16}, 0xAAAA, (__m256i)(__v16hi){0, 15, 16, 31, 1, 17, 2, 18, 3, 19, 4, 20, 5, 21, 6, 22}, (__m256i)(__v16hi){200, 210, 220, 230, 240, 250, 260, 270, 280, 290, 300, 310, 320, 330, 340, 350}), -1, -16, -3, 350, -5, 210, -7, 220, -9, 230, -11, 240, -13, 250, -15, 260)); TEST_CONSTEXPR(match_v16hi( _mm256_maskz_permutex2var_epi16( 0x5555, (__m256i)(__v16hi){0, 10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 110, 120, 130, 140, 150}, (__m256i)(__v16hi){0, 15, 16, 31, 1, 17, 2, 18, 3, 19, 4, 20, 5, 21, 6, 22}, (__m256i)(__v16hi){200, 210, 220, 230, 240, 250, 260, 270, 280, 290, 300, 310, 320, 330, 340, 350}), 0, 0, 200, 0, 10, 0, 20, 0, 30, 0, 40, 0, 50, 0, 60, 0)); __m128i test_mm_mask_maddubs_epi16(__m128i __W, __mmask8 __U, __m128i __X, __m128i __Y) { // CHECK-LABEL: test_mm_mask_maddubs_epi16 // CHECK: @llvm.x86.ssse3.pmadd.ub.sw // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_maddubs_epi16(__W, __U, __X, __Y); } TEST_CONSTEXPR(match_v8hi(_mm_mask_maddubs_epi16((__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}, 0x0F, (__m128i)(__v16qi){1, 1, 2, 2, 3, 3, 4, 4, 1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v16qs){2, 3, 4, 5, 6, 7, 8, 9, -1, -1, -2, -2, -3, -3, -4, -4}), 5, 18, 39, 68, 5, 6, 7, 8)); __m128i test_mm_maskz_maddubs_epi16(__mmask8 __U, __m128i __X, __m128i __Y) { // CHECK-LABEL: test_mm_maskz_maddubs_epi16 // CHECK: @llvm.x86.ssse3.pmadd.ub.sw // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_maddubs_epi16(__U, __X, __Y); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_maddubs_epi16(0x0F, (__m128i)(__v16qi){1, 1, 2, 2, 3, 3, 4, 4, 1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v16qs){2, 3, 4, 5, 6, 7, 8, 9, -1, -1, -2, -2, -3, -3, -4, -4}), 5, 18, 39, 68, 0, 0, 0, 0)); __m256i test_mm256_mask_maddubs_epi16(__m256i __W, __mmask16 __U, __m256i __X, __m256i __Y) { // CHECK-LABEL: test_mm256_mask_maddubs_epi16 // CHECK: @llvm.x86.avx2.pmadd.ub.sw // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_maddubs_epi16(__W, __U, __X, __Y); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_maddubs_epi16((__m256i)(__v16hi){-1, -2, -3, -4, -5, -6, -7, -8, -9, -10, -11, -12, -13, -14, -15, -16}, 0x00FF, (__m256i)(__v32qi){1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8, 1, 2, 3, 4, 5, 6, 7, 8, 1, 2, 3, 4, 5, 6, 7,8}, (__m256i)(__v32qs){2, 3, 4, 5, 6, 7, 8, 9, 1, 2, 3, 4, 5, 6, 7, 8, -1, -1, -2, -2, -3, -3, -4, -4, -5, -5, -6, -6, -7, -7, -8, -8}), 5, 18, 39, 68, 15, 42, 77, 120, -9, -10, -11, -12, -13, -14, -15, -16)); __m256i test_mm256_maskz_maddubs_epi16(__mmask16 __U, __m256i __X, __m256i __Y) { // CHECK-LABEL: test_mm256_maskz_maddubs_epi16 // CHECK: @llvm.x86.avx2.pmadd.ub.sw // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_maddubs_epi16(__U, __X, __Y); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_maddubs_epi16(0x00FF, (__m256i)(__v32qi){1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8, 1, 2, 3, 4, 5, 6, 7, 8, 1, 2, 3, 4, 5, 6, 7,8}, (__m256i)(__v32qs){2, 3, 4, 5, 6, 7, 8, 9, 1, 2, 3, 4, 5, 6, 7, 8, -1, -1, -2, -2, -3, -3, -4, -4, -5, -5, -6, -6, -7, -7, -8, -8}), 5, 18, 39, 68, 15, 42, 77, 120, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_mask_madd_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_madd_epi16 // CHECK: @llvm.x86.sse2.pmadd.wd // CHECK: select <4 x i1> %{{.*}}, <4 x i32> %{{.*}}, <4 x i32> %{{.*}} return _mm_mask_madd_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v4si(_mm_mask_madd_epi16((__m128i)(__v4si){1, 2, 3, 4}, 0x3, (__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v8hi){9, 10, 11, 12, 13, 14, 15, 16}), 29, 81, 3, 4)); __m128i test_mm_maskz_madd_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_madd_epi16 // CHECK: @llvm.x86.sse2.pmadd.wd // CHECK: select <4 x i1> %{{.*}}, <4 x i32> %{{.*}}, <4 x i32> %{{.*}} return _mm_maskz_madd_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v4si(_mm_maskz_madd_epi16(0x3, (__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}, (__m128i)(__v8hi){9, 10, 11, 12, 13, 14, 15, 16}), 29, 81, 0, 0)); __m256i test_mm256_mask_madd_epi16(__m256i __W, __mmask8 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_madd_epi16 // CHECK: @llvm.x86.avx2.pmadd.wd // CHECK: select <8 x i1> %{{.*}}, <8 x i32> %{{.*}}, <8 x i32> %{{.*}} return _mm256_mask_madd_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v8si(_mm256_mask_madd_epi16((__m256i)(__v8si){1, 2, 3, 4, 5, 6, 7, 8}, 0x0F, (__m256i)(__v16hi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m256i)(__v16hi){10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 110, 120, 130, 140, 150, 160}), 50, 250, 610, 1130, 5, 6, 7, 8)); __m256i test_mm256_maskz_madd_epi16(__mmask8 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_madd_epi16 // CHECK: @llvm.x86.avx2.pmadd.wd // CHECK: select <8 x i1> %{{.*}}, <8 x i32> %{{.*}}, <8 x i32> %{{.*}} return _mm256_maskz_madd_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v8si(_mm256_maskz_madd_epi16(0x0F, (__m256i)(__v16hi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m256i)(__v16hi){10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 110, 120, 130, 140, 150, 160}), 50, 250, 610, 1130, 0, 0, 0, 0)); __m128i test_mm_cvtsepi16_epi8(__m128i __A) { // CHECK-LABEL: test_mm_cvtsepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovs.wb.128 return _mm_cvtsepi16_epi8(__A); } __m128i test_mm_mask_cvtsepi16_epi8(__m128i __O, __mmask8 __M, __m128i __A) { // CHECK-LABEL: test_mm_mask_cvtsepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovs.wb.128 return _mm_mask_cvtsepi16_epi8(__O, __M, __A); } __m128i test_mm_maskz_cvtsepi16_epi8(__mmask8 __M, __m128i __A) { // CHECK-LABEL: test_mm_maskz_cvtsepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovs.wb.128 return _mm_maskz_cvtsepi16_epi8(__M, __A); } __m128i test_mm256_cvtsepi16_epi8(__m256i __A) { // CHECK-LABEL: test_mm256_cvtsepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovs.wb.256 return _mm256_cvtsepi16_epi8(__A); } __m128i test_mm256_mask_cvtsepi16_epi8(__m128i __O, __mmask16 __M, __m256i __A) { // CHECK-LABEL: test_mm256_mask_cvtsepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovs.wb.256 return _mm256_mask_cvtsepi16_epi8(__O, __M, __A); } __m128i test_mm256_maskz_cvtsepi16_epi8(__mmask16 __M, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_cvtsepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovs.wb.256 return _mm256_maskz_cvtsepi16_epi8(__M, __A); } __m128i test_mm_cvtusepi16_epi8(__m128i __A) { // CHECK-LABEL: test_mm_cvtusepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovus.wb.128 return _mm_cvtusepi16_epi8(__A); } __m128i test_mm_mask_cvtusepi16_epi8(__m128i __O, __mmask8 __M, __m128i __A) { // CHECK-LABEL: test_mm_mask_cvtusepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovus.wb.128 return _mm_mask_cvtusepi16_epi8(__O, __M, __A); } __m128i test_mm_maskz_cvtusepi16_epi8(__mmask8 __M, __m128i __A) { // CHECK-LABEL: test_mm_maskz_cvtusepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovus.wb.128 return _mm_maskz_cvtusepi16_epi8(__M, __A); } __m128i test_mm256_cvtusepi16_epi8(__m256i __A) { // CHECK-LABEL: test_mm256_cvtusepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovus.wb.256 return _mm256_cvtusepi16_epi8(__A); } __m128i test_mm256_mask_cvtusepi16_epi8(__m128i __O, __mmask16 __M, __m256i __A) { // CHECK-LABEL: test_mm256_mask_cvtusepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovus.wb.256 return _mm256_mask_cvtusepi16_epi8(__O, __M, __A); } __m128i test_mm256_maskz_cvtusepi16_epi8(__mmask16 __M, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_cvtusepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmovus.wb.256 return _mm256_maskz_cvtusepi16_epi8(__M, __A); } __m128i test_mm_cvtepi16_epi8(__m128i __A) { // CHECK-LABEL: test_mm_cvtepi16_epi8 // CHECK: trunc <8 x i16> %{{.*}} to <8 x i8> // CHECK: shufflevector <8 x i8> %{{.*}}, <8 x i8> %{{.*}}, <16 x i32> return _mm_cvtepi16_epi8(__A); } TEST_CONSTEXPR(match_v16qi(_mm_cvtepi16_epi8((__m128i)(__v8hi){1, 2, 3, 4, 5, 6, 7, 8}), 1, 2, 3, 4, 5, 6, 7, 8, 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_mask_cvtepi16_epi8(__m128i __O, __mmask8 __M, __m128i __A) { // CHECK-LABEL: test_mm_mask_cvtepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmov.wb.128 return _mm_mask_cvtepi16_epi8(__O, __M, __A); } __m128i test_mm_maskz_cvtepi16_epi8(__mmask8 __M, __m128i __A) { // CHECK-LABEL: test_mm_maskz_cvtepi16_epi8 // CHECK: @llvm.x86.avx512.mask.pmov.wb.128 return _mm_maskz_cvtepi16_epi8(__M, __A); } __m128i test_mm256_cvtepi16_epi8(__m256i __A) { // CHECK-LABEL: test_mm256_cvtepi16_epi8 // CHECK: trunc <16 x i16> %{{.*}} to <16 x i8> return _mm256_cvtepi16_epi8(__A); } TEST_CONSTEXPR(match_v16qi(_mm256_cvtepi16_epi8((__m256i)(__v16hi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16)); __m128i test_mm256_mask_cvtepi16_epi8(__m128i __O, __mmask16 __M, __m256i __A) { // CHECK-LABEL: test_mm256_mask_cvtepi16_epi8 // CHECK: trunc <16 x i16> %{{.*}} to <16 x i8> // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm256_mask_cvtepi16_epi8(__O, __M, __A); } TEST_CONSTEXPR(match_v16qi(_mm256_mask_cvtepi16_epi8(_mm_set1_epi8(-177), /*1010 0011 0011 0101=*/0xa335, (__m256i)(__v16hi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), 1, -177, 3, -177, 5, 6, -177, -177, 9, 10, -177, -177, -177, 14, -177, 16)); __m128i test_mm256_maskz_cvtepi16_epi8(__mmask16 __M, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_cvtepi16_epi8 // CHECK: trunc <16 x i16> %{{.*}} to <16 x i8> // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm256_maskz_cvtepi16_epi8(__M, __A); } TEST_CONSTEXPR(match_v16qi(_mm256_maskz_cvtepi16_epi8(/*1010 0011 0011 0101=*/0xa335, (__m256i)(__v16hi){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), 1, 0, 3, 0, 5, 6, 0, 0, 9, 10, 0, 0, 0, 14, 0, 16)); __m128i test_mm_mask_mulhrs_epi16(__m128i __W, __mmask8 __U, __m128i __X, __m128i __Y) { // CHECK-LABEL: test_mm_mask_mulhrs_epi16 // CHECK: @llvm.x86.ssse3.pmul.hr.sw // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_mulhrs_epi16(__W, __U, __X, __Y); } TEST_CONSTEXPR(match_v8hi(_mm_mask_mulhrs_epi16(_mm_set1_epi16(1), 0x0F, (__m128i)(__v8hi){+100, +200, -300, -400, +500, +600, -700, +800}, (__m128i)(__v8hi){+8000, -7000, +6000, -5000, +4000, -3000, +2000, -1000}), +24, -43, -55, +61, +1, +1, +1, +1)); __m128i test_mm_maskz_mulhrs_epi16(__mmask8 __U, __m128i __X, __m128i __Y) { // CHECK-LABEL: test_mm_maskz_mulhrs_epi16 // CHECK: @llvm.x86.ssse3.pmul.hr.sw // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_mulhrs_epi16(__U, __X, __Y); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_mulhrs_epi16(0x0F, (__m128i)(__v8hi){+100, +200, -300, -400, +500, +600, -700, +800}, (__m128i)(__v8hi){+8000, -7000, +6000, -5000, +4000, -3000, +2000, -1000}), +24, -43, -55, +61, 0, 0, 0, 0)); __m256i test_mm256_mask_mulhrs_epi16(__m256i __W, __mmask16 __U, __m256i __X, __m256i __Y) { // CHECK-LABEL: test_mm256_mask_mulhrs_epi16 // CHECK: @llvm.x86.avx2.pmul.hr.sw // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_mulhrs_epi16(__W, __U, __X, __Y); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_mulhrs_epi16(_mm256_set1_epi16(1), 0xF00F, (__m256i)(__v16hi){+100, +200, -300, -400, +500, +600, -700, +800, -900, -1000, +1100, +1200, -1300, -1400, +1500, +1600}, (__m256i)(__v16hi){+1600, -1500, +1400, -1300, +1200, -1100, +1000, -900, +800, -700, +600, -500, +400, -300, +200, -100}), +5, -9, -13, +16, +1, +1, +1, +1, +1, +1, +1, +1, -16, +13, +9, -5)); __m256i test_mm256_maskz_mulhrs_epi16(__mmask16 __U, __m256i __X, __m256i __Y) { // CHECK-LABEL: test_mm256_maskz_mulhrs_epi16 // CHECK: @llvm.x86.avx2.pmul.hr.sw // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_mulhrs_epi16(__U, __X, __Y); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_mulhrs_epi16(0xF00F, (__m256i)(__v16hi){+100, +200, -300, -400, +500, +600, -700, +800, -900, -1000, +1100, +1200, -1300, -1400, +1500, +1600}, (__m256i)(__v16hi){+1600, -1500, +1400, -1300, +1200, -1100, +1000, -900, +800, -700, +600, -500, +400, -300, +200, -100}), +5, -9, -13, +16, 0, 0, 0, 0, 0, 0, 0, 0, -16, +13, +9, -5)); __m128i test_mm_mask_mulhi_epu16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_mulhi_epu16 // CHECK: @llvm.x86.sse2.pmulhu.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_mulhi_epu16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_mulhi_epu16(_mm_set1_epi16(1), 0x3C, (__m128i)(__v8hi){+1, -2, +3, -4, +5, -6, +7, -8}, (__m128i)(__v8hi){-16, -14, +12, +10, -8, +6, -4, +2}), 1, 1, 0, 9, 4, 5, 1, 1)); __m128i test_mm_maskz_mulhi_epu16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_mulhi_epu16 // CHECK: @llvm.x86.sse2.pmulhu.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_mulhi_epu16(__U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_mulhi_epu16(0x87, (__m128i)(__v8hi){+1, -2, +3, -4, +5, -6, +7, -8}, (__m128i)(__v8hi){-16, -14, +12, +10, -8, +6, -4, +2}), 0, -16, 0, 0, 0, 0, 0, 1)); __m256i test_mm256_mask_mulhi_epu16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_mulhi_epu16 // CHECK: @llvm.x86.avx2.pmulhu.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_mulhi_epu16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_mulhi_epu16(_mm256_set1_epi16(1), 0xF00F, (__m256i)(__v16hi){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}, (__m256i)(__v16hi){-32, -30, +28, +26, -24, -22, +20, +18, -16, -14, +12, +10, -8, +6, -4, +2}), 0, -32, 0, 25, 1, 1, 1, 1, 1, 1, 1, 1, 12, 5, 14, 1)); __m256i test_mm256_maskz_mulhi_epu16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_mulhi_epu16 // CHECK: @llvm.x86.avx2.pmulhu.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_mulhi_epu16(__U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_mulhi_epu16(0x0FF0, (__m256i)(__v16hi){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}, (__m256i)(__v16hi){-32, -30, +28, +26, -24, -22, +20, +18, -16, -14, +12, +10, -8, +6, -4, +2}), 0, 0, 0, 0, 4, -28, 0, 17, 8, -24, 0, 9, 0, 0, 0, 0)); __m128i test_mm_mask_mulhi_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_mulhi_epi16 // CHECK: @llvm.x86.sse2.pmulh.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_mulhi_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_mulhi_epu16(_mm_set1_epi16(1), 0x78, (__m128i)(__v8hi){+1, -2, +3, -4, +5, -6, +7, -8}, (__m128i)(__v8hi){-16, -14, +12, +10, -8, +6, -4, +2}), 1, 1, 1, 9, 4, 5, 6, 1)); __m128i test_mm_maskz_mulhi_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_mulhi_epi16 // CHECK: @llvm.x86.sse2.pmulh.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_mulhi_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_mulhi_epi16(0xC3, (__m128i)(__v8hi){+1, -2, +3, -4, +5, -6, +7, -8}, (__m128i)(__v8hi){-16, -14, +12, +10, -8, +6, -4, +2}), -1, 0, 0, 0, 0, 0, -1, -1)); __m256i test_mm256_mask_mulhi_epi16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_mulhi_epi16 // CHECK: @llvm.x86.avx2.pmulh.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_mulhi_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_mulhi_epi16(_mm256_set1_epi16(1), 0x0FF0, (__m256i)(__v16hi){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}, (__m256i)(__v16hi){-32, -30, +28, +26, -24, -22, +20, +18, -16, -14, +12, +10, -8, +6, -4, +2}), 1, 1, 1, 1, -1, 0, 0, -1, -1, 0, 0, -1, 1, 1, 1, 1)); __m256i test_mm256_maskz_mulhi_epi16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_mulhi_epi16 // CHECK: @llvm.x86.avx2.pmulh.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_mulhi_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_mulhi_epi16(0xF00F, (__m256i)(__v16hi){+1, -2, +3, -4, +5, -6, +7, -8, +9, -10, +11, -12, +13, -14, +15, -16}, (__m256i)(__v16hi){-32, -30, +28, +26, -24, -22, +20, +18, -16, -14, +12, +10, -8, +6, -4, +2}), -1, 0, 0, -1, 0, 0, 0, 0, 0, 0, 0, 0, -1, -1, -1, -1)); __m128i test_mm_mask_unpackhi_epi8(__m128i __W, __mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_unpackhi_epi8 // CHECK: shufflevector <16 x i8> %{{.*}}, <16 x i8> %{{.*}}, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_unpackhi_epi8(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v16qi(_mm_mask_unpackhi_epi8((__m128i)(__v16qs){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16},(__mmask16)0xFAAA,(__m128i)(__v16qs){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115},(__m128i)(__v16qs){-1,-2,-3,-4,-5,-6,-7,-8,-9,-10,-11,-12,-13,-14,-15,-16}),1,-9,3,-10,5,-11,7,-12,9,-13,11,-14,114,-15,115,-16)); __m128i test_mm_maskz_unpackhi_epi8(__mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_unpackhi_epi8 // CHECK: shufflevector <16 x i8> %{{.*}}, <16 x i8> %{{.*}}, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_unpackhi_epi8(__U, __A, __B); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_unpackhi_epi8((__mmask16)0xFAAA,(__m128i)(__v16qs){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115},(__m128i)(__v16qs){-1,-2,-3,-4,-5,-6,-7,-8,-9,-10,-11,-12,-13,-14,-15,-16}),0,-9,0,-10,0,-11,0,-12,0,-13,0,-14,114,-15,115,-16)); __m256i test_mm256_mask_unpackhi_epi8(__m256i __W, __mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_unpackhi_epi8 // CHECK: shufflevector <32 x i8> %{{.*}}, <32 x i8> %{{.*}}, <32 x i32> // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_unpackhi_epi8(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_unpackhi_epi8((__m256i)(__v32qs){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,49,50,51,52,53,54,55,56,57,58,59,60,61,62,63,64},(__mmask32)0xFAAAAAAA,(__m256i)(__v32qs){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115,-104,-103,-102,-101,-100,-99,-98,-97,-96,-95,-94,-93,-92,-91,-90,-89},(__m256i)(__v32qs){-1,-2,-3,-4,-5,-6,-7,-8,-9,-10,-11,-12,-13,-14,-15,-16,-49,-50,-51,-52,-53,-54,-55,-56,-57,-58,-59,-60,-61,-62,-63,-64}),1,-9,3,-10,5,-11,7,-12,9,-13,11,-14,13,-15,15,-16,49,-57,51,-58,53,-59,55,-60,57,-61,59,-62,-90,-63,-89,-64)); __m256i test_mm256_maskz_unpackhi_epi8(__mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_unpackhi_epi8 // CHECK: shufflevector <32 x i8> %{{.*}}, <32 x i8> %{{.*}}, <32 x i32> // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_unpackhi_epi8(__U, __A, __B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_unpackhi_epi8((__mmask32)0xFAAAAAAA,(__m256i)(__v32qs){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115,-104,-103,-102,-101,-100,-99,-98,-97,-96,-95,-94,-93,-92,-91,-90,-89},(__m256i)(__v32qs){-1,-2,-3,-4,-5,-6,-7,-8,-9,-10,-11,-12,-13,-14,-15,-16,-49,-50,-51,-52,-53,-54,-55,-56,-57,-58,-59,-60,-61,-62,-63,-64}),0,-9,0,-10,0,-11,0,-12,0,-13,0,-14,0,-15,0,-16,0,-57,0,-58,0,-59,0,-60,0,-61,0,-62,-90,-63,-89,-64)); __m128i test_mm_mask_unpackhi_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_unpackhi_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> %{{.*}}, <8 x i32> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_unpackhi_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_unpackhi_epi16((__m128i)(__v8hi){1,2,3,4,5,6,7,8},(__mmask8)0xFA,(__m128i)(__v8hi){100,101,102,103,104,105,106,107},(__m128i)(__v8hi){200,201,202,203,204,205,206,207}),1,204,3,205,106,206,107,207)); __m128i test_mm_maskz_unpackhi_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_unpackhi_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> %{{.*}}, <8 x i32> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_unpackhi_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_unpackhi_epi16((__mmask8)0xFA,(__m128i)(__v8hi){100,101,102,103,104,105,106,107},(__m128i)(__v8hi){200,201,202,203,204,205,206,207}),0,204,0,205,106,206,107,207)); __m256i test_mm256_mask_unpackhi_epi16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_unpackhi_epi16 // CHECK: shufflevector <16 x i16> %{{.*}}, <16 x i16> %{{.*}}, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_unpackhi_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_unpackhi_epi16((__m256i)(__v16hi){1,2,3,4,5,6,7,8,25,26,27,28,29,30,31,32},(__mmask16)0xFAAAu,(__m256i)(__v16hi){100,101,102,103,104,105,106,107,130,131,132,133,134,135,136,137},(__m256i)(__v16hi){200,201,202,203,204,205,206,207,230,231,232,233,234,235,236,237}),1,204,3,205,5,206,7,207,25,234,27,235,136,236,137,237)); __m256i test_mm256_maskz_unpackhi_epi16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_unpackhi_epi16 // CHECK: shufflevector <16 x i16> %{{.*}}, <16 x i16> %{{.*}}, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_unpackhi_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_unpackhi_epi16((__mmask16)0xFAAAu,(__m256i)(__v16hi){100,101,102,103,104,105,106,107,130,131,132,133,134,135,136,137},(__m256i)(__v16hi){200,201,202,203,204,205,206,207,230,231,232,233,234,235,236,237}),0,204,0,205,0,206,0,207,0,234,0,235,136,236,137,237)); __m128i test_mm_mask_unpacklo_epi8(__m128i __W, __mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_unpacklo_epi8 // CHECK: shufflevector <16 x i8> %{{.*}}, <16 x i8> %{{.*}}, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_unpacklo_epi8(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v16qi(_mm_mask_unpacklo_epi8((__m128i)(__v16qs){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16},(__mmask16)0xFAAA,(__m128i)(__v16qs){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115},(__m128i)(__v16qs){-1,-2,-3,-4,-5,-6,-7,-8,-9,-10,-11,-12,-13,-14,-15,-16}),1,-1,3,-2,5,-3,7,-4,9,-5,11,-6,106,-7,107,-8)); __m128i test_mm_maskz_unpacklo_epi8(__mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_unpacklo_epi8 // CHECK: shufflevector <16 x i8> %{{.*}}, <16 x i8> %{{.*}}, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_unpacklo_epi8(__U, __A, __B); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_unpacklo_epi8((__mmask16)0xFAAA,(__m128i)(__v16qs){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115},(__m128i)(__v16qs){-1,-2,-3,-4,-5,-6,-7,-8,-9,-10,-11,-12,-13,-14,-15,-16}),0,-1,0,-2,0,-3,0,-4,0,-5,0,-6,106,-7,107,-8)); __m256i test_mm256_mask_unpacklo_epi8(__m256i __W, __mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_unpacklo_epi8 // CHECK: shufflevector <32 x i8> %{{.*}}, <32 x i8> %{{.*}}, <32 x i32> // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_unpacklo_epi8(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_unpacklo_epi8((__m256i)(__v32qs){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,49,50,51,52,53,54,55,56,57,58,59,60,61,62,63,64},(__mmask32)0xFAAAAAAA,(__m256i)(__v32qs){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115,-50,-51,-52,-53,-54,-55,-56,-57,-58,-59,-60,-61,-62,-63,-64,-65},(__m256i)(__v32qs){-1,-2,-3,-4,-5,-6,-7,-8,-9,-10,-11,-12,-13,-14,-15,-16,60,61,62,63,64,65,66,67,68,69,70,71,72,73,74,75}),1,-1,3,-2,5,-3,7,-4,9,-5,11,-6,13,-7,15,-8,49,60,51,61,53,62,55,63,57,64,59,65,-56,66,-57,67)); __m256i test_mm256_maskz_unpacklo_epi8(__mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_unpacklo_epi8 // CHECK: shufflevector <32 x i8> %{{.*}}, <32 x i8> %{{.*}}, <32 x i32> // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_unpacklo_epi8(__U, __A, __B); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_unpacklo_epi8((__mmask32)0xFAAAAAAA,(__m256i)(__v32qs){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115,-50,-51,-52,-53,-54,-55,-56,-57,-58,-59,-60,-61,-62,-63,-64,-65},(__m256i)(__v32qs){-1,-2,-3,-4,-5,-6,-7,-8,-9,-10,-11,-12,-13,-14,-15,-16,60,61,62,63,64,65,66,67,68,69,70,71,72,73,74,75}),0,-1,0,-2,0,-3,0,-4,0,-5,0,-6,0,-7,0,-8,0,60,0,61,0,62,0,63,0,64,0,65,-56,66,-57,67)); __m128i test_mm_mask_unpacklo_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_unpacklo_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> %{{.*}}, <8 x i32> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_unpacklo_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_unpacklo_epi16((__m128i)(__v8hi){1,2,3,4,5,6,7,8},(__mmask8)0xFAu,(__m128i)(__v8hi){100,101,102,103,104,105,106,107},(__m128i)(__v8hi){200,201,202,203,204,205,206,207}),1,200,3,201,102,202,103,203)); __m128i test_mm_maskz_unpacklo_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_unpacklo_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> %{{.*}}, <8 x i32> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_unpacklo_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_unpacklo_epi16((__mmask8)0xFAu,(__m128i)(__v8hi){100,101,102,103,104,105,106,107},(__m128i)(__v8hi){200,201,202,203,204,205,206,207}),0,200,0,201,102,202,103,203)); __m256i test_mm256_mask_unpacklo_epi16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_unpacklo_epi16 // CHECK: shufflevector <16 x i16> %{{.*}}, <16 x i16> %{{.*}}, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_unpacklo_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_unpacklo_epi16((__m256i)(__v16hi){1,2,3,4,5,6,7,8,25,26,27,28,29,30,31,32},(__mmask16)0xFAAAu,(__m256i)(__v16hi){100,101,102,103,104,105,106,107,130,131,132,133,134,135,136,137},(__m256i)(__v16hi){200,201,202,203,204,205,206,207,230,231,232,233,234,235,236,237}),1,200,3,201,5,202,7,203,25,230,27,231,132,232,133,233)); __m256i test_mm256_maskz_unpacklo_epi16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_unpacklo_epi16 // CHECK: shufflevector <16 x i16> %{{.*}}, <16 x i16> %{{.*}}, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_unpacklo_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_unpacklo_epi16((__mmask16)0xFAAAu,(__m256i)(__v16hi){100,101,102,103,104,105,106,107,130,131,132,133,134,135,136,137},(__m256i)(__v16hi){200,201,202,203,204,205,206,207,230,231,232,233,234,235,236,237}),0,200,0,201,0,202,0,203,0,230,0,231,132,232,133,233)); __m128i test_mm_mask_cvtepi8_epi16(__m128i __W, __mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_cvtepi8_epi16 // CHECK: sext <8 x i8> %{{.*}} to <8 x i16> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_cvtepi8_epi16(__W, __U, __A); } TEST_CONSTEXPR(match_v8hi(_mm_mask_cvtepi8_epi16(_mm_set1_epi16(-777),(__mmask8)0xA5,(__m128i)(__v16qs){1,-2,3,-4,5,-6,7,-8,9,10,11,12,13,14,15,16}),1,-777,3,-777,-777,-6,-777,-8)); __m128i test_mm_maskz_cvtepi8_epi16(__mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_maskz_cvtepi8_epi16 // CHECK: sext <8 x i8> %{{.*}} to <8 x i16> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_cvtepi8_epi16(__U, __A); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_cvtepi8_epi16((__mmask8)0xA5,(__m128i)(__v16qs){1,-2,3,-4,5,-6,7,-8,9,10,11,12,13,14,15,16}),1,0,3,0,0,-6,0,-8)); __m256i test_mm256_mask_cvtepi8_epi16(__m256i __W, __mmask16 __U, __m128i __A) { // CHECK-LABEL: test_mm256_mask_cvtepi8_epi16 // CHECK: sext <16 x i8> %{{.*}} to <16 x i16> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_cvtepi8_epi16(__W, __U, __A); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_cvtepi8_epi16(_mm256_set1_epi16(-777),/*1001110010100101=*/0x9ca5,(__m128i)(__v16qs){1,-2,3,-4,5,-6,7,-8,25,-26,27,-28,29,-30,31,-32}),1,-777,3,-777,-777,-6,-777,-8,-777,-777,27,-28,29,-777,-777,-32)); __m256i test_mm256_maskz_cvtepi8_epi16(__mmask16 __U, __m128i __A) { // CHECK-LABEL: test_mm256_maskz_cvtepi8_epi16 // CHECK: sext <16 x i8> %{{.*}} to <16 x i16> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_cvtepi8_epi16(__U, __A); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_cvtepi8_epi16(/*1001110010100101=*/0x9ca5,(__m128i)(__v16qs){1,-2,3,-4,5,-6,7,-8,25,-26,27,-28,29,-30,31,-32}),1,0,3,0,0,-6,0,-8,0,0,27,-28,29,0,0,-32)); __m128i test_mm_mask_cvtepu8_epi16(__m128i __W, __mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_cvtepu8_epi16 // CHECK: zext <8 x i8> %{{.*}} to <8 x i16> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_cvtepu8_epi16(__W, __U, __A); } TEST_CONSTEXPR(match_v8hi(_mm_mask_cvtepu8_epi16(_mm_set1_epi16(-777),(__mmask8)0xA5,(__m128i)(__v16qu){25,26,27,28,29,30,31,32,0,0,0,0,0,0,0,0}),25,-777,27,-777,-777,30,-777,32)); __m128i test_mm_maskz_cvtepu8_epi16(__mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_maskz_cvtepu8_epi16 // CHECK: zext <8 x i8> %{{.*}} to <8 x i16> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_cvtepu8_epi16(__U, __A); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_cvtepu8_epi16((__mmask8)0xA5,(__m128i)(__v16qu){25,26,27,28,29,30,31,32,0,0,0,0,0,0,0,0}),25,0,27,0,0,30,0,32)); __m256i test_mm256_mask_cvtepu8_epi16(__m256i __W, __mmask16 __U, __m128i __A) { // CHECK-LABEL: test_mm256_mask_cvtepu8_epi16 // CHECK: zext <16 x i8> %{{.*}} to <16 x i16> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_cvtepu8_epi16(__W, __U, __A); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_cvtepu8_epi16(_mm256_set1_epi16(-777),/*1001110010100101=*/0x9ca5,(__m128i)(__v16qu){1,2,3,4,5,6,7,8,25,26,27,28,29,30,31,32}),1,-777,3,-777,-777,6,-777,8,-777,-777,27,28,29,-777,-777,32)); __m256i test_mm256_maskz_cvtepu8_epi16(__mmask16 __U, __m128i __A) { // CHECK-LABEL: test_mm256_maskz_cvtepu8_epi16 // CHECK: zext <16 x i8> %{{.*}} to <16 x i16> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_cvtepu8_epi16(__U, __A); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_cvtepu8_epi16(/*1001110010100101=*/0x9ca5,(__m128i)(__v16qu){1,2,3,4,5,6,7,8,25,26,27,28,29,30,31,32}),1,0,3,0,0,6,0,8,0,0,27,28,29,0,0,32)); __m256i test_mm256_sllv_epi16(__m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_sllv_epi16 // CHECK: @llvm.x86.avx512.psllv.w.256( return _mm256_sllv_epi16(__A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_sllv_epi16((__m256i)(__v16hi){ -32, 33, -34, 35, -36, -37, 38, -39, -40, -41, 42, 43, 44, -45, -46, -47}, (__m256i)(__v16hi){ 1, -2, 3, 4, 5, 6, -7, 8, -9, -10, 11, -12, 13, -14, 15, 16}), -64, 0, -272, 560, -1152, -2368, 0, -9984, 0, 0, 20480, 0, -32768, 0, 0, 0)); __m256i test_mm256_mask_sllv_epi16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_sllv_epi16 // CHECK: @llvm.x86.avx512.psllv.w.256( // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_sllv_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_sllv_epi16((__m256i)(__v16hi){ 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999}, 0xFF56, (__m256i)(__v16hi){ -32, 33, -34, 35, -36, -37, 38, -39, -40, -41, 42, 43, 44, -45, -46, -47}, (__m256i)(__v16hi){ 1, -2, 3, 4, 5, 6, -7, 8, -9, -10, 11, -12, 13, -14, 15, 16}), 999, 0, -272, 999, -1152, 999, 0, 999, 0, 0, 20480, 0, -32768, 0, 0, 0)); __m256i test_mm256_maskz_sllv_epi16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_sllv_epi16 // CHECK: @llvm.x86.avx512.psllv.w.256( // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_sllv_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_sllv_epi16(0xFF56, (__m256i)(__v16hi){ -32, 33, -34, 35, -36, -37, 38, -39, -40, -41, 42, 43, 44, -45, -46, -47}, (__m256i)(__v16hi){ 1, -2, 3, 4, 5, 6, -7, 8, -9, -10, 11, -12, 13, -14, 15, 16}), 0, 0, -272, 0, -1152, 0, 0, 0, 0, 0, 20480, 0, -32768, 0, 0, 0)); __m128i test_mm_sllv_epi16(__m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_sllv_epi16 // CHECK: @llvm.x86.avx512.psllv.w.128( return _mm_sllv_epi16(__A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_sllv_epi16((__m128i)(__v8hi){ 16, 17, 18, -19, -20, -21, 22, 23}, (__m128i)(__v8hi){ 1, 2, -3, -4, 5, -6, -7, 8}), 32, 68, 0, 0, -640, 0, 0, 5888)); __m128i test_mm_mask_sllv_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_sllv_epi16 // CHECK: @llvm.x86.avx512.psllv.w.128( // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_sllv_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_sllv_epi16((__m128i)(__v8hi){ 999, 999, 999, 999, 999, 999, 999, 999}, 0x93, (__m128i)(__v8hi){ 16, 17, 18, -19, -20, -21, 22, 23}, (__m128i)(__v8hi){ 1, 2, -3, -4, 5, -6, -7, 8}), 32, 68, 999, 999, -640, 999, 999, 5888)); __m128i test_mm_maskz_sllv_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_sllv_epi16 // CHECK: @llvm.x86.avx512.psllv.w.128( // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_sllv_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_sllv_epi16(0x93, (__m128i)(__v8hi){ 16, 17, 18, -19, -20, -21, 22, 23}, (__m128i)(__v8hi){ 1, 2, -3, -4, 5, -6, -7, 8}), 32, 68, 0, 0, -640, 0, 0, 5888)); __m128i test_mm_mask_sll_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_sll_epi16 // CHECK: @llvm.x86.sse2.psll.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_sll_epi16(__W, __U, __A, __B); } __m128i test_mm_maskz_sll_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_sll_epi16 // CHECK: @llvm.x86.sse2.psll.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_sll_epi16(__U, __A, __B); } __m256i test_mm256_mask_sll_epi16(__m256i __W, __mmask16 __U, __m256i __A, __m128i __B) { // CHECK-LABEL: test_mm256_mask_sll_epi16 // CHECK: @llvm.x86.avx2.psll.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_sll_epi16(__W, __U, __A, __B); } __m256i test_mm256_maskz_sll_epi16(__mmask16 __U, __m256i __A, __m128i __B) { // CHECK-LABEL: test_mm256_maskz_sll_epi16 // CHECK: @llvm.x86.avx2.psll.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_sll_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_slli_epi16((__mmask8)0xAA, (__m128i)(__v8hi){0, 1, 2, 3, 4, 5, 6, 7}, 20), 0, 0, 0, 0, 0, 0, 0, 0)); __m128i test_mm_mask_slli_epi16(__m128i __W, __mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_slli_epi16 // CHECK: @llvm.x86.sse2.pslli.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_slli_epi16(__W, __U, __A, 5); } TEST_CONSTEXPR(match_v8hi(_mm_mask_slli_epi16((__m128i)(__v8hi){100, 101, 102, 103, 104, 105, 106, 107}, (__mmask8)0xAA, (__m128i)(__v8hi){0, 1, 2, 3, 4, 5, 6, 7}, 20), 100, 0, 102, 0, 104, 0, 106, 0)); __m128i test_mm_mask_slli_epi16_2(__m128i __W, __mmask8 __U, __m128i __A, unsigned int __B) { // CHECK-LABEL: test_mm_mask_slli_epi16_2 // CHECK: @llvm.x86.sse2.pslli.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_slli_epi16(__W, __U, __A, __B); } __m128i test_mm_maskz_slli_epi16(__mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_maskz_slli_epi16 // CHECK: @llvm.x86.sse2.pslli.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_slli_epi16(__U, __A, 5); } __m128i test_mm_maskz_slli_epi16_2(__mmask8 __U, __m128i __A, unsigned int __B) { // CHECK-LABEL: test_mm_maskz_slli_epi16_2 // CHECK: @llvm.x86.sse2.pslli.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_slli_epi16(__U, __A, __B); } __m256i test_mm256_mask_slli_epi16(__m256i __W, __mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_mask_slli_epi16 // CHECK: @llvm.x86.avx2.pslli.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_slli_epi16(__W, __U, __A, 5); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_slli_epi16((__m256i)(__v16hi){100, 101, 102, 103, 104, 105, 106, 107, 108, 109, 110, 111, 112, 113, 114, 115}, (__mmask16)0xAAAA, (__m256i)(__v16hi){0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}, 20), 100, 0, 102, 0, 104, 0, 106, 0, 108, 0, 110, 0, 112, 0, 114, 0)); __m256i test_mm256_mask_slli_epi16_2(__m256i __W, __mmask16 __U, __m256i __A, unsigned int __B) { // CHECK-LABEL: test_mm256_mask_slli_epi16_2 // CHECK: @llvm.x86.avx2.pslli.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_slli_epi16(__W, __U, __A, __B); } __m256i test_mm256_maskz_slli_epi16(__mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_slli_epi16 // CHECK: @llvm.x86.avx2.pslli.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_slli_epi16(__U, __A, 5); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_slli_epi16((__mmask16)0x00ffcc71, (__m256i)(__v16hi){0xff, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}, 32), 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_slli_epi16((__mmask16)0, (__m256i)(__v16hi){0xff, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}, 16), 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_slli_epi16((__mmask16)0xffff, (__m256i)(__v16hi){0xff, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}, 1), 0x1fe, 0x2, 0x4, 0x6, 0x8, 0xa, 0xc, 0xe, 0x10, 0x12, 0x14, 0x16, 0x18, 0x1a, 0x1c, 0x1e)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_slli_epi16((__mmask16)0x7, (__m256i)(__v16hi){0xff, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}, 1), 0x1fe, 0x2, 0x4, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_slli_epi16((__mmask16)0x71, (__m256i)(__v16hi){0xff, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}, 1), 0x1fe, 0, 0, 0, 0x8, 0xa, 0xc, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_maskz_slli_epi16_2(__mmask16 __U, __m256i __A, unsigned int __B) { // CHECK-LABEL: test_mm256_maskz_slli_epi16_2 // CHECK: @llvm.x86.avx2.pslli.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_slli_epi16(__U, __A, __B); } __m256i test_mm256_srlv_epi16(__m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_srlv_epi16 // CHECK: @llvm.x86.avx512.psrlv.w.256( return _mm256_srlv_epi16(__A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_srlv_epi16((__m256i)(__v16hi){ -32, 33, -34, 35, -36, -37, 38, -39, -40, -41, 42, 43, 44, -45, -46, -47}, (__m256i)(__v16hi){ 1, -2, 3, 4, 5, 6, -7, 8, -9, -10, 11, -12, 13, -14, 15, 16}), 32752, 0, 8187, 2, 2046, 1023, 0, 255, 0, 0, 0, 0, 0, 0, 1, 0)); __m256i test_mm256_mask_srlv_epi16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_srlv_epi16 // CHECK: @llvm.x86.avx512.psrlv.w.256( // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_srlv_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_srlv_epi16((__m256i)(__v16hi){ 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999}, 0xFF56, (__m256i)(__v16hi){ -32, 33, -34, 35, -36, -37, 38, -39, -40, -41, 42, 43, 44, -45, -46, -47}, (__m256i)(__v16hi){ 1, -2, 3, 4, 5, 6, -7, 8, -9, -10, 11, -12, 13, -14, 15, 16}), 999, 0, 8187, 999, 2046, 999, 0, 999, 0, 0, 0, 0, 0, 0, 1, 0)); __m256i test_mm256_maskz_srlv_epi16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_srlv_epi16 // CHECK: @llvm.x86.avx512.psrlv.w.256( // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_srlv_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_srlv_epi16(0xFF56, (__m256i)(__v16hi){ -32, 33, -34, 35, -36, -37, 38, -39, -40, -41, 42, 43, 44, -45, -46, -47}, (__m256i)(__v16hi){ 1, -2, 3, 4, 5, 6, -7, 8, -9, -10, 11, -12, 13, -14, 15, 16}), 0, 0, 8187, 0, 2046, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0)); __m128i test_mm_srlv_epi16(__m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_srlv_epi16 // CHECK: @llvm.x86.avx512.psrlv.w.128( return _mm_srlv_epi16(__A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_srlv_epi16((__m128i)(__v8hi){ 16, 17, 18, -19, -20, -21, 22, 23}, (__m128i)(__v8hi){ 1, 2, -3, -4, 5, -6, -7, 8}), 8, 4, 0, 0, 2047, 0, 0, 0)); __m128i test_mm_mask_srlv_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_srlv_epi16 // CHECK: @llvm.x86.avx512.psrlv.w.128( // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_srlv_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_srlv_epi16((__m128i)(__v8hi){ 999, 999, 999, 999, 999, 999, 999, 999}, 0x93, (__m128i)(__v8hi){ 16, 17, 18, -19, -20, -21, 22, 23}, (__m128i)(__v8hi){ 1, 2, -3, -4, 5, -6, -7, 8}), 8, 4, 999, 999, 2047, 999, 999, 0)); __m128i test_mm_maskz_srlv_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_srlv_epi16 // CHECK: @llvm.x86.avx512.psrlv.w.128( // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_srlv_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_srlv_epi16(0x93, (__m128i)(__v8hi){ 16, 17, 18, -19, -20, -21, 22, 23}, (__m128i)(__v8hi){ 1, 2, -3, -4, 5, -6, -7, 8}), 8, 4, 0, 0, 2047, 0, 0, 0)); __m128i test_mm_mask_srl_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_srl_epi16 // CHECK: @llvm.x86.sse2.psrl.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_srl_epi16(__W, __U, __A, __B); } __m128i test_mm_maskz_srl_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_srl_epi16 // CHECK: @llvm.x86.sse2.psrl.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_srl_epi16(__U, __A, __B); } __m256i test_mm256_mask_srl_epi16(__m256i __W, __mmask16 __U, __m256i __A, __m128i __B) { // CHECK-LABEL: test_mm256_mask_srl_epi16 // CHECK: @llvm.x86.avx2.psrl.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_srl_epi16(__W, __U, __A, __B); } __m256i test_mm256_maskz_srl_epi16(__mmask16 __U, __m256i __A, __m128i __B) { // CHECK-LABEL: test_mm256_maskz_srl_epi16 // CHECK: @llvm.x86.avx2.psrl.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_srl_epi16(__U, __A, __B); } __m128i test_mm_mask_srli_epi16(__m128i __W, __mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_srli_epi16 // CHECK: @llvm.x86.sse2.psrli.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_srli_epi16(__W, __U, __A, 5); } __m128i test_mm_mask_srli_epi16_2(__m128i __W, __mmask8 __U, __m128i __A, int __B) { // CHECK-LABEL: test_mm_mask_srli_epi16_2 // CHECK: @llvm.x86.sse2.psrli.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_srli_epi16(__W, __U, __A, __B); } __m128i test_mm_maskz_srli_epi16(__mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_maskz_srli_epi16 // CHECK: @llvm.x86.sse2.psrli.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_srli_epi16(__U, __A, 5); } __m128i test_mm_maskz_srli_epi16_2(__mmask8 __U, __m128i __A, int __B) { // CHECK-LABEL: test_mm_maskz_srli_epi16_2 // CHECK: @llvm.x86.sse2.psrli.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_srli_epi16(__U, __A, __B); } __m256i test_mm256_mask_srli_epi16(__m256i __W, __mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_mask_srli_epi16 // CHECK: @llvm.x86.avx2.psrli.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_srli_epi16(__W, __U, __A, 5); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_srli_epi16((__m256i)(__v16hi){100, 101, 102, 103, 104, 105, 106, 107, 108, 109, 110, 111, 112, 113, 114, 115}, (__mmask16)0xAAAA, (__m256i)(__v16hi){0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}, 20), 100, 0, 102, 0, 104, 0, 106, 0, 108, 0, 110, 0, 112, 0, 114, 0)); TEST_CONSTEXPR(match_v16hi(_mm256_mask_srli_epi16((__m256i)(__v16hi){100, 101, 102, 103, 104, 105, 106, 107, 108, 109, 110, 111, 112, 113, 114, 115}, (__mmask16)0xAAAA, (__m256i)(__v16hi){0, 32, 64, 96, 128, 160, 192, 224, 256, 288, 320, 352, 384, 416, 448, 480}, 5), 100, 1, 102, 3, 104, 5, 106, 7, 108, 9, 110, 11, 112, 13, 114, 15)); __m256i test_mm256_mask_srli_epi16_2(__m256i __W, __mmask16 __U, __m256i __A, int __B) { // CHECK-LABEL: test_mm256_mask_srli_epi16_2 // CHECK: @llvm.x86.avx2.psrli.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_srli_epi16(__W, __U, __A, __B); } __m256i test_mm256_maskz_srli_epi16(__mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_srli_epi16 // CHECK: @llvm.x86.avx2.psrli.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_srli_epi16(__U, __A, 5); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_srli_epi16((__mmask16)0x71, (__m256i)(__v16hi){0xff, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}, 1), 0x7f, 0, 0, 0, 0x2, 0x2, 0x3, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_maskz_srli_epi16_2(__mmask16 __U, __m256i __A, int __B) { // CHECK-LABEL: test_mm256_maskz_srli_epi16_2 // CHECK: @llvm.x86.avx2.psrli.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_srli_epi16(__U, __A, __B); } __m256i test_mm256_srav_epi16(__m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_srav_epi16 // CHECK: @llvm.x86.avx512.psrav.w.256( return _mm256_srav_epi16(__A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_srav_epi16((__m256i)(__v16hi){ -32, 33, -34, 35, -36, -37, 38, -39, -40, -41, 42, 43, 44, -45, -46, -47}, (__m256i)(__v16hi){ 1, -2, 3, 4, 5, 6, -7, 8, -9, -10, 11, -12, 13, -14, 15, 16}), -16, 0, -5, 2, -2, -1, 0, -1, -1, -1, 0, 0, 0, -1, -1, -1)); __m256i test_mm256_mask_srav_epi16(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_srav_epi16 // CHECK: @llvm.x86.avx512.psrav.w.256( // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_srav_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_srav_epi16((__m256i)(__v16hi){ 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999, 999}, 0xFF56, (__m256i)(__v16hi){ -32, 33, -34, 35, -36, -37, 38, -39, -40, -41, 42, 43, 44, -45, -46, -47}, (__m256i)(__v16hi){ 1, -2, 3, 4, 5, 6, -7, 8, -9, -10, 11, -12, 13, -14, 15, 16}), 999, 0, -5, 999, -2, 999, 0, 999, -1, -1, 0, 0, 0, -1, -1, -1)); __m256i test_mm256_maskz_srav_epi16(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_srav_epi16 // CHECK: @llvm.x86.avx512.psrav.w.256( // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_srav_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_srav_epi16(0xFF56, (__m256i)(__v16hi){ -32, 33, -34, 35, -36, -37, 38, -39, -40, -41, 42, 43, 44, -45, -46, -47}, (__m256i)(__v16hi){ 1, -2, 3, 4, 5, 6, -7, 8, -9, -10, 11, -12, 13, -14, 15, 16}), 0, 0, -5, 0, -2, 0, 0, 0, -1, -1, 0, 0, 0, -1, -1, -1)); __m128i test_mm_srav_epi16(__m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_srav_epi16 // CHECK: @llvm.x86.avx512.psrav.w.128( return _mm_srav_epi16(__A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_srav_epi16((__m128i)(__v8hi){ 16, 17, 18, -19, -20, -21, 22, 23}, (__m128i)(__v8hi){ 1, 2, -3, -4, 5, -6, -7, 8}), 8, 4, 0, -1, -1, -1, 0, 0)); __m128i test_mm_mask_srav_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_srav_epi16 // CHECK: @llvm.x86.avx512.psrav.w.128( // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_srav_epi16(__W, __U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_srav_epi16((__m128i)(__v8hi){ 999, 999, 999, 999, 999, 999, 999, 999}, 0x93, (__m128i)(__v8hi){ 16, 17, 18, -19, -20, -21, 22, 23}, (__m128i)(__v8hi){ 1, 2, -3, -4, 5, -6, -7, 8}), 8, 4, 999, 999, -1, 999, 999, 0)); __m128i test_mm_maskz_srav_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_srav_epi16 // CHECK: @llvm.x86.avx512.psrav.w.128( // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_srav_epi16(__U, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_srav_epi16(0x93, (__m128i)(__v8hi){ 16, 17, 18, -19, -20, -21, 22, 23}, (__m128i)(__v8hi){ 1, 2, -3, -4, 5, -6, -7, 8}), 8, 4, 0, 0, -1, 0, 0, 0)); __m128i test_mm_mask_sra_epi16(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_sra_epi16 // CHECK: @llvm.x86.sse2.psra.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_sra_epi16(__W, __U, __A, __B); } __m128i test_mm_maskz_sra_epi16(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_sra_epi16 // CHECK: @llvm.x86.sse2.psra.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_sra_epi16(__U, __A, __B); } __m256i test_mm256_mask_sra_epi16(__m256i __W, __mmask16 __U, __m256i __A, __m128i __B) { // CHECK-LABEL: test_mm256_mask_sra_epi16 // CHECK: @llvm.x86.avx2.psra.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_sra_epi16(__W, __U, __A, __B); } __m256i test_mm256_maskz_sra_epi16(__mmask16 __U, __m256i __A, __m128i __B) { // CHECK-LABEL: test_mm256_maskz_sra_epi16 // CHECK: @llvm.x86.avx2.psra.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_sra_epi16(__U, __A, __B); } __m128i test_mm_mask_srai_epi16(__m128i __W, __mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_srai_epi16 // CHECK: @llvm.x86.sse2.psrai.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_srai_epi16(__W, __U, __A, 5); } __m128i test_mm_mask_srai_epi16_2(__m128i __W, __mmask8 __U, __m128i __A, unsigned int __B) { // CHECK-LABEL: test_mm_mask_srai_epi16_2 // CHECK: @llvm.x86.sse2.psrai.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_srai_epi16(__W, __U, __A, __B); } __m128i test_mm_maskz_srai_epi16(__mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_maskz_srai_epi16 // CHECK: @llvm.x86.sse2.psrai.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_srai_epi16(__U, __A, 5); } __m128i test_mm_maskz_srai_epi16_2(__mmask8 __U, __m128i __A, unsigned int __B) { // CHECK-LABEL: test_mm_maskz_srai_epi16_2 // CHECK: @llvm.x86.sse2.psrai.w // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_srai_epi16(__U, __A, __B); } __m256i test_mm256_mask_srai_epi16(__m256i __W, __mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_mask_srai_epi16 // CHECK: @llvm.x86.avx2.psrai.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_srai_epi16(__W, __U, __A, 5); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_srai_epi16((__m256i)(__v16hi){100, 101, 102, 103, 104, 105, 106, 107, 108, 109, 110, 111, 112, 113, 114, 115}, (__mmask16)0xAAAA, (__m256i)(__v16hi){0, -1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}, 20), 100, 0Xffff, 102, 0, 104, 0, 106, 0, 108, 0, 110, 0, 112, 0, 114, 0)); __m256i test_mm256_mask_srai_epi16_2(__m256i __W, __mmask16 __U, __m256i __A, unsigned int __B) { // CHECK-LABEL: test_mm256_mask_srai_epi16_2 // CHECK: @llvm.x86.avx2.psrai.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_srai_epi16(__W, __U, __A, __B); } __m256i test_mm256_maskz_srai_epi16(__mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_srai_epi16 // CHECK: @llvm.x86.avx2.psrai.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_srai_epi16(__U, __A, 5); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_srai_epi16((__mmask16)0x71, (__m256i)(__v16hi){0xff, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15}, 1), 0x7f, 0, 0, 0, 0x2, 0x2, 0x3, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_maskz_srai_epi16_2(__mmask16 __U, __m256i __A, unsigned int __B) { // CHECK-LABEL: test_mm256_maskz_srai_epi16_2 // CHECK: @llvm.x86.avx2.psrai.w // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_srai_epi16(__U, __A, __B); } __m128i test_mm_mask_mov_epi16(__m128i __W, __mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_mov_epi16 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_mov_epi16(__W, __U, __A); } __m128i test_mm_maskz_mov_epi16(__mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_maskz_mov_epi16 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_mov_epi16(__U, __A); } __m256i test_mm256_mask_mov_epi16(__m256i __W, __mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_mask_mov_epi16 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_mov_epi16(__W, __U, __A); } __m256i test_mm256_maskz_mov_epi16(__mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_mov_epi16 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_mov_epi16(__U, __A); } __m128i test_mm_mask_mov_epi8(__m128i __W, __mmask16 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_mov_epi8 // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_mov_epi8(__W, __U, __A); } __m128i test_mm_maskz_mov_epi8(__mmask16 __U, __m128i __A) { // CHECK-LABEL: test_mm_maskz_mov_epi8 // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_mov_epi8(__U, __A); } __m256i test_mm256_mask_mov_epi8(__m256i __W, __mmask32 __U, __m256i __A) { // CHECK-LABEL: test_mm256_mask_mov_epi8 // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_mov_epi8(__W, __U, __A); } __m256i test_mm256_maskz_mov_epi8(__mmask32 __U, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_mov_epi8 // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_mov_epi8(__U, __A); } __m128i test_mm_loadu_epi16(void const *__P) { // CHECK-LABEL: test_mm_loadu_epi16 // CHECK: load <2 x i64>, ptr %{{.*}}, align 1{{$}} return _mm_loadu_epi16(__P); } __m128i test_mm_mask_loadu_epi16(__m128i __W, __mmask8 __U, void const *__P) { // CHECK-LABEL: test_mm_mask_loadu_epi16 // CHECK: @llvm.masked.load.v8i16.p0(ptr align 1 %{{.*}}, <8 x i1> %{{.*}}, <8 x i16> %{{.*}}) return _mm_mask_loadu_epi16(__W, __U, __P); } __m128i test_mm_maskz_loadu_epi16(__mmask8 __U, void const *__P) { // CHECK-LABEL: test_mm_maskz_loadu_epi16 // CHECK: @llvm.masked.load.v8i16.p0(ptr align 1 %{{.*}}, <8 x i1> %{{.*}}, <8 x i16> %{{.*}}) return _mm_maskz_loadu_epi16(__U, __P); } __m256i test_mm256_loadu_epi16(void const *__P) { // CHECK-LABEL: test_mm256_loadu_epi16 // CHECK: load <4 x i64>, ptr %{{.*}}, align 1{{$}} return _mm256_loadu_epi16(__P); } __m256i test_mm256_mask_loadu_epi16(__m256i __W, __mmask16 __U, void const *__P) { // CHECK-LABEL: test_mm256_mask_loadu_epi16 // CHECK: @llvm.masked.load.v16i16.p0(ptr align 1 %{{.*}}, <16 x i1> %{{.*}}, <16 x i16> %{{.*}}) return _mm256_mask_loadu_epi16(__W, __U, __P); } __m256i test_mm256_maskz_loadu_epi16(__mmask16 __U, void const *__P) { // CHECK-LABEL: test_mm256_maskz_loadu_epi16 // CHECK: @llvm.masked.load.v16i16.p0(ptr align 1 %{{.*}}, <16 x i1> %{{.*}}, <16 x i16> %{{.*}}) return _mm256_maskz_loadu_epi16(__U, __P); } __m128i test_mm_loadu_epi8(void const *__P) { // CHECK-LABEL: test_mm_loadu_epi8 // CHECK: load <2 x i64>, ptr %{{.*}}, align 1{{$}} return _mm_loadu_epi8(__P); } __m128i test_mm_mask_loadu_epi8(__m128i __W, __mmask16 __U, void const *__P) { // CHECK-LABEL: test_mm_mask_loadu_epi8 // CHECK: @llvm.masked.load.v16i8.p0(ptr align 1 %{{.*}}, <16 x i1> %{{.*}}, <16 x i8> %{{.*}}) return _mm_mask_loadu_epi8(__W, __U, __P); } __m128i test_mm_maskz_loadu_epi8(__mmask16 __U, void const *__P) { // CHECK-LABEL: test_mm_maskz_loadu_epi8 // CHECK: @llvm.masked.load.v16i8.p0(ptr align 1 %{{.*}}, <16 x i1> %{{.*}}, <16 x i8> %{{.*}}) return _mm_maskz_loadu_epi8(__U, __P); } __m256i test_mm256_loadu_epi8(void const *__P) { // CHECK-LABEL: test_mm256_loadu_epi8 // CHECK: load <4 x i64>, ptr %{{.*}}, align 1{{$}} return _mm256_loadu_epi8(__P); } __m256i test_mm256_mask_loadu_epi8(__m256i __W, __mmask32 __U, void const *__P) { // CHECK-LABEL: test_mm256_mask_loadu_epi8 // CHECK: @llvm.masked.load.v32i8.p0(ptr align 1 %{{.*}}, <32 x i1> %{{.*}}, <32 x i8> %{{.*}}) return _mm256_mask_loadu_epi8(__W, __U, __P); } __m256i test_mm256_maskz_loadu_epi8(__mmask32 __U, void const *__P) { // CHECK-LABEL: test_mm256_maskz_loadu_epi8 // CHECK: @llvm.masked.load.v32i8.p0(ptr align 1 %{{.*}}, <32 x i1> %{{.*}}, <32 x i8> %{{.*}}) return _mm256_maskz_loadu_epi8(__U, __P); } void test_mm_storeu_epi16(void *__p, __m128i __a) { // CHECK-LABEL: test_mm_storeu_epi16 // check: store <2 x i64> %{{.*}}, ptr %{{.*}}, align 1{{$}} return _mm_storeu_epi16(__p, __a); } void test_mm_mask_storeu_epi16(void *__P, __mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_storeu_epi16 // CHECK: @llvm.masked.store.v8i16.p0(<8 x i16> %{{.*}}, ptr align 1 %{{.*}}, <8 x i1> %{{.*}}) return _mm_mask_storeu_epi16(__P, __U, __A); } void test_mm256_storeu_epi16(void *__P, __m256i __A) { // CHECK-LABEL: test_mm256_storeu_epi16 // CHECK: store <4 x i64> %{{.*}}, ptr %{{.*}}, align 1{{$}} return _mm256_storeu_epi16(__P, __A); } void test_mm256_mask_storeu_epi16(void *__P, __mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_mask_storeu_epi16 // CHECK: @llvm.masked.store.v16i16.p0(<16 x i16> %{{.*}}, ptr align 1 %{{.*}}, <16 x i1> %{{.*}}) return _mm256_mask_storeu_epi16(__P, __U, __A); } void test_mm_storeu_epi8(void *__p, __m128i __a) { // CHECK-LABEL: test_mm_storeu_epi8 // check: store <2 x i64> %{{.*}}, ptr %{{.*}}, align 1{{$}} return _mm_storeu_epi8(__p, __a); } void test_mm_mask_storeu_epi8(void *__P, __mmask16 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_storeu_epi8 // CHECK: @llvm.masked.store.v16i8.p0(<16 x i8> %{{.*}}, ptr align 1 %{{.*}}, <16 x i1> %{{.*}}) return _mm_mask_storeu_epi8(__P, __U, __A); } void test_mm256_storeu_epi8(void *__P, __m256i __A) { // CHECK-LABEL: test_mm256_storeu_epi8 // CHECK: store <4 x i64> %{{.*}}, ptr %{{.*}}, align 1{{$}} return _mm256_storeu_epi8(__P, __A); } void test_mm256_mask_storeu_epi8(void *__P, __mmask32 __U, __m256i __A) { // CHECK-LABEL: test_mm256_mask_storeu_epi8 // CHECK: @llvm.masked.store.v32i8.p0(<32 x i8> %{{.*}}, ptr align 1 %{{.*}}, <32 x i1> %{{.*}}) return _mm256_mask_storeu_epi8(__P, __U, __A); } __mmask16 test_mm_test_epi8_mask(__m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_test_epi8_mask // CHECK: and <2 x i64> %{{.*}}, %{{.*}} // CHECK: icmp ne <16 x i8> %{{.*}}, %{{.*}} return _mm_test_epi8_mask(__A, __B); } TEST_CONSTEXPR(_mm_test_epi8_mask( (__m128i)(__v16qi){1, 2, 2, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m128i)(__v16qi){1, 2, 4, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16} ) == (__mmask16)0xfffb); __mmask16 test_mm_mask_test_epi8_mask(__mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_test_epi8_mask // CHECK: and <2 x i64> %{{.*}}, %{{.*}} // CHECK: icmp ne <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return _mm_mask_test_epi8_mask(__U, __A, __B); } TEST_CONSTEXPR(_mm_mask_test_epi8_mask( 0xFFFF, (__m128i)(__v16qi){1, 2, 2, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m128i)(__v16qi){1, 2, 4, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16} ) == (__mmask16)0xfffb); __mmask32 test_mm256_test_epi8_mask(__m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_test_epi8_mask // CHECK: and <4 x i64> %{{.*}}, %{{.*}} // CHECK: icmp ne <32 x i8> %{{.*}}, %{{.*}} return _mm256_test_epi8_mask(__A, __B); } TEST_CONSTEXPR(_mm256_test_epi8_mask( (__m256i)(__v32qi){1, 2, 2, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 1, 2, 2, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}, (__m256i)(__v32qi){1, 2, 4, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 1, 2, 4, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16} ) == (__mmask32)0xfffbfffb); __mmask32 test_mm256_mask_test_epi8_mask(__mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_test_epi8_mask // CHECK: and <4 x i64> %{{.*}}, %{{.*}} // CHECK: icmp ne <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return _mm256_mask_test_epi8_mask(__U, __A, __B); } __mmask8 test_mm_test_epi16_mask(__m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_test_epi16_mask // CHECK: and <2 x i64> %{{.*}}, %{{.*}} // CHECK: icmp ne <8 x i16> %{{.*}}, %{{.*}} return _mm_test_epi16_mask(__A, __B); } __mmask8 test_mm_mask_test_epi16_mask(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_test_epi16_mask // CHECK: and <2 x i64> %{{.*}}, %{{.*}} // CHECK: icmp ne <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return _mm_mask_test_epi16_mask(__U, __A, __B); } __mmask16 test_mm256_test_epi16_mask(__m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_test_epi16_mask // CHECK: and <4 x i64> %{{.*}}, %{{.*}} // CHECK: icmp ne <16 x i16> %{{.*}}, %{{.*}} return _mm256_test_epi16_mask(__A, __B); } __mmask16 test_mm256_mask_test_epi16_mask(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_test_epi16_mask // CHECK: and <4 x i64> %{{.*}}, %{{.*}} // CHECK: icmp ne <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return _mm256_mask_test_epi16_mask(__U, __A, __B); } __mmask16 test_mm_testn_epi8_mask(__m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_testn_epi8_mask // CHECK: and <2 x i64> %{{.*}}, %{{.*}} // CHECK: icmp eq <16 x i8> %{{.*}}, %{{.*}} return _mm_testn_epi8_mask(__A, __B); } TEST_CONSTEXPR(_mm_testn_epi8_mask( (__m128i)(__v16qi){1, 2, 77, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 1, 16, 16}, (__m128i)(__v16qi){2, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 15} ) == (__mmask16)0xe001); __mmask16 test_mm_mask_testn_epi8_mask(__mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_testn_epi8_mask // CHECK: and <2 x i64> %{{.*}}, %{{.*}} // CHECK: icmp eq <16 x i8> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return _mm_mask_testn_epi8_mask(__U, __A, __B); } __mmask32 test_mm256_testn_epi8_mask(__m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_testn_epi8_mask // CHECK: and <4 x i64> %{{.*}}, %{{.*}} // CHECK: icmp eq <32 x i8> %{{.*}}, %{{.*}} return _mm256_testn_epi8_mask(__A, __B); } __mmask32 test_mm256_mask_testn_epi8_mask(__mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_testn_epi8_mask // CHECK: and <4 x i64> %{{.*}}, %{{.*}} // CHECK: icmp eq <32 x i8> %{{.*}}, %{{.*}} // CHECK: and <32 x i1> %{{.*}}, %{{.*}} return _mm256_mask_testn_epi8_mask(__U, __A, __B); } __mmask8 test_mm_testn_epi16_mask(__m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_testn_epi16_mask // CHECK: and <2 x i64> %{{.*}}, %{{.*}} // CHECK: icmp eq <8 x i16> %{{.*}}, %{{.*}} return _mm_testn_epi16_mask(__A, __B); } __mmask8 test_mm_mask_testn_epi16_mask(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_testn_epi16_mask // CHECK: and <2 x i64> %{{.*}}, %{{.*}} // CHECK: icmp eq <8 x i16> %{{.*}}, %{{.*}} // CHECK: and <8 x i1> %{{.*}}, %{{.*}} return _mm_mask_testn_epi16_mask(__U, __A, __B); } __mmask16 test_mm256_testn_epi16_mask(__m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_testn_epi16_mask // CHECK: and <4 x i64> %{{.*}}, %{{.*}} // CHECK: icmp eq <16 x i16> %{{.*}}, %{{.*}} return _mm256_testn_epi16_mask(__A, __B); } __mmask16 test_mm256_mask_testn_epi16_mask(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_testn_epi16_mask // CHECK: and <4 x i64> %{{.*}}, %{{.*}} // CHECK: icmp eq <16 x i16> %{{.*}}, %{{.*}} // CHECK: and <16 x i1> %{{.*}}, %{{.*}} return _mm256_mask_testn_epi16_mask(__U, __A, __B); } __mmask16 test_mm_movepi8_mask(__m128i __A) { // CHECK-LABEL: test_mm_movepi8_mask // CHECK: [[CMP:%.*]] = icmp slt <16 x i8> %{{.*}}, zeroinitializer return _mm_movepi8_mask(__A); } TEST_CONSTEXPR(_mm_movepi8_mask( ((__m128i)(__v16qi){0, 1, char(129), 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15})) == (__mmask16)0x0004); __mmask32 test_mm256_movepi8_mask(__m256i __A) { // CHECK-LABEL: test_mm256_movepi8_mask // CHECK: [[CMP:%.*]] = icmp slt <32 x i8> %{{.*}}, zeroinitializer return _mm256_movepi8_mask(__A); } TEST_CONSTEXPR(_mm256_movepi8_mask( ((__m256i)(__v32qi){0, 1, char(255), 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, char(128)}) ) == (__mmask32)0x80000004); __m128i test_mm_movm_epi8(__mmask16 __A) { // CHECK-LABEL: test_mm_movm_epi8 // CHECK: %{{.*}} = bitcast i16 %{{.*}} to <16 x i1> // CHECK: %vpmovm2.i = sext <16 x i1> %{{.*}} to <16 x i8> return _mm_movm_epi8(__A); } __m256i test_mm256_movm_epi8(__mmask32 __A) { // CHECK-LABEL: test_mm256_movm_epi8 // CHECK: %{{.*}} = bitcast i32 %{{.*}} to <32 x i1> // CHECK: %vpmovm2.i = sext <32 x i1> %{{.*}} to <32 x i8> return _mm256_movm_epi8(__A); } __m128i test_mm_movm_epi16(__mmask8 __A) { // CHECK-LABEL: test_mm_movm_epi16 // CHECK: %{{.*}} = bitcast i8 %{{.*}} to <8 x i1> // CHECK: %vpmovm2.i = sext <8 x i1> %{{.*}} to <8 x i16> return _mm_movm_epi16(__A); } __m256i test_mm256_movm_epi16(__mmask16 __A) { // CHECK-LABEL: test_mm256_movm_epi16 // CHECK: %{{.*}} = bitcast i16 %{{.*}} to <16 x i1> // CHECK: %vpmovm2.i = sext <16 x i1> %{{.*}} to <16 x i16> return _mm256_movm_epi16(__A); } __m128i test_mm_mask_broadcastb_epi8(__m128i __O, __mmask16 __M, __m128i __A) { // CHECK-LABEL: test_mm_mask_broadcastb_epi8 // CHECK: shufflevector <16 x i8> %{{.*}}, <16 x i8> %{{.*}}, <16 x i32> zeroinitializer // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_broadcastb_epi8(__O, __M, __A); } TEST_CONSTEXPR(match_v16qi(_mm_mask_broadcastb_epi8((__m128i)(__v16qs){0,1,2,3,4,5,6,7,56,57,58,59,60,61,62,63},(__mmask16)0xAAAA,(__m128i)(__v16qs){-120,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),0,-120,2,-120,4,-120,6,-120,56,-120,58,-120,60,-120,62,-120)); __m128i test_mm_maskz_broadcastb_epi8(__mmask16 __M, __m128i __A) { // CHECK-LABEL: test_mm_maskz_broadcastb_epi8 // CHECK: shufflevector <16 x i8> %{{.*}}, <16 x i8> %{{.*}}, <16 x i32> zeroinitializer // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_broadcastb_epi8(__M, __A); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_broadcastb_epi8((__mmask16)0xAAAA,(__m128i)(__v16qs){-120,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120)); __m256i test_mm256_mask_broadcastb_epi8(__m256i __O, __mmask32 __M, __m128i __A) { // CHECK-LABEL: test_mm256_mask_broadcastb_epi8 // CHECK: shufflevector <16 x i8> %{{.*}}, <16 x i8> %{{.*}}, <32 x i32> zeroinitializer // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_broadcastb_epi8(__O, __M, __A); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_broadcastb_epi8((__m256i)(__v32qs){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,48,49,50,51,52,53,54,55,56,57,58,59,60,61,62,63},(__mmask32)0xAAAAAAAA,(__m128i)(__v16qs){-120,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),0,-120,2,-120,4,-120,6,-120,8,-120,10,-120,12,-120,14,-120,48,-120,50,-120,52,-120,54,-120,56,-120,58,-120,60,-120,62,-120)); __m256i test_mm256_maskz_broadcastb_epi8(__mmask32 __M, __m128i __A) { // CHECK-LABEL: test_mm256_maskz_broadcastb_epi8 // CHECK: shufflevector <16 x i8> %{{.*}}, <16 x i8> %{{.*}}, <32 x i32> zeroinitializer // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_broadcastb_epi8(__M, __A); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_broadcastb_epi8((__mmask32)0xAAAAAAAA,(__m128i)(__v16qs){-120,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120)); __m128i test_mm_mask_broadcastw_epi16(__m128i __O, __mmask8 __M, __m128i __A) { // CHECK-LABEL: test_mm_mask_broadcastw_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> %{{.*}}, <8 x i32> zeroinitializer // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_broadcastw_epi16(__O, __M, __A); } TEST_CONSTEXPR(match_v8hi(_mm_mask_broadcastw_epi16((__m128i)(__v8hi){0,1,2,3,4,5,6,7},(__mmask8)0xAA,(__m128i)(__v8hi){-120,1,2,3,4,5,6,7}),0,-120,2,-120,4,-120,6,-120)); __m128i test_mm_maskz_broadcastw_epi16(__mmask8 __M, __m128i __A) { // CHECK-LABEL: test_mm_maskz_broadcastw_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> %{{.*}}, <8 x i32> zeroinitializer // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_broadcastw_epi16(__M, __A); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_broadcastw_epi16((__mmask8)0xAA,(__m128i)(__v8hi){-120,1,2,3,4,5,6,7}),0,-120,0,-120,0,-120,0,-120)); __m256i test_mm256_mask_broadcastw_epi16(__m256i __O, __mmask16 __M, __m128i __A) { // CHECK-LABEL: test_mm256_mask_broadcastw_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> %{{.*}}, <16 x i32> zeroinitializer // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_broadcastw_epi16(__O, __M, __A); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_broadcastw_epi16((__m256i)(__v16hi){0,1,2,3,4,5,6,7,24,25,26,27,28,29,30,31},(__mmask16)0xAAAA,(__m128i)(__v8hi){-120,1,2,3,4,5,6,7}),0,-120,2,-120,4,-120,6,-120,24,-120,26,-120,28,-120,30,-120)); __m256i test_mm256_maskz_broadcastw_epi16(__mmask16 __M, __m128i __A) { // CHECK-LABEL: test_mm256_maskz_broadcastw_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> %{{.*}}, <16 x i32> zeroinitializer // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_broadcastw_epi16(__M, __A); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_broadcastw_epi16((__mmask16)0xAAAA,(__m128i)(__v8hi){-120,1,2,3,4,5,6,7}),0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120,0,-120)); __m128i test_mm_mask_set1_epi8 (__m128i __O, __mmask16 __M, char __A){ // CHECK-LABEL: test_mm_mask_set1_epi8 // CHECK: insertelement <16 x i8> poison, i8 %{{.*}}, i32 0 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 1 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 2 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 3 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 4 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 5 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 6 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 7 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 8 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 9 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 10 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 11 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 12 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 13 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 14 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 15 // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_set1_epi8(__O, __M, __A); } TEST_CONSTEXPR(match_v16qi(_mm_mask_set1_epi8((__m128i)(__v16qi){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16},(__mmask16)0xAAAA,(char)42),1,42,3,42,5,42,7,42,9,42,11,42,13,42,15,42)); __m128i test_mm_maskz_set1_epi8 ( __mmask16 __M, char __A){ // CHECK-LABEL: test_mm_maskz_set1_epi8 // CHECK: insertelement <16 x i8> poison, i8 %{{.*}}, i32 0 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 1 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 2 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 3 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 4 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 5 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 6 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 7 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 8 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 9 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 10 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 11 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 12 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 13 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 14 // CHECK: insertelement <16 x i8> %{{.*}}, i8 %{{.*}}, i32 15 // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_set1_epi8( __M, __A); } TEST_CONSTEXPR(match_v16qi(_mm_maskz_set1_epi8((__mmask16)0xAAAA,(char)42),0,42,0,42,0,42,0,42,0,42,0,42,0,42,0,42)); __m256i test_mm256_mask_set1_epi8(__m256i __O, __mmask32 __M, char __A) { // CHECK-LABEL: test_mm256_mask_set1_epi8 // CHECK: insertelement <32 x i8> poison, i8 %{{.*}}, i32 0 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 1 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 2 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 3 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 4 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 5 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 6 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 7 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 8 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 9 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 10 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 11 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 12 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 13 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 14 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 15 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 16 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 17 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 18 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 19 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 20 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 21 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 22 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 23 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 24 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 25 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 26 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 27 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 28 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 29 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 30 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 31 // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_set1_epi8(__O, __M, __A); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_set1_epi8((__m256i)(__v32qi){1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,49,50,51,52,53,54,55,56,57,58,59,60,61,62,63,64},(__mmask32)0xAAAAAAAA,(char)42),1,42,3,42,5,42,7,42,9,42,11,42,13,42,15,42,49,42,51,42,53,42,55,42,57,42,59,42,61,42,63,42)); __m256i test_mm256_maskz_set1_epi8( __mmask32 __M, char __A) { // CHECK-LABEL: test_mm256_maskz_set1_epi8 // CHECK: insertelement <32 x i8> poison, i8 %{{.*}}, i32 0 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 1 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 2 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 3 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 4 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 5 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 6 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 7 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 8 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 9 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 10 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 11 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 12 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 13 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 14 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 15 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 16 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 17 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 18 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 19 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 20 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 21 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 22 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 23 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 24 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 25 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 26 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 27 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 28 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 29 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 30 // CHECK: insertelement <32 x i8> %{{.*}}, i8 %{{.*}}, i32 31 // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_set1_epi8( __M, __A); } TEST_CONSTEXPR( match_v32qi( _mm256_maskz_set1_epi8( (__mmask32)0xAAAAAAAA, (char)42 ), 0, 42, 0, 42, 0, 42, 0, 42, 0, 42, 0, 42, 0, 42, 0, 42, 0, 42, 0, 42, 0, 42, 0, 42, 0, 42, 0, 42, 0, 42, 0, 42 ) ); __m256i test_mm256_mask_set1_epi16(__m256i __O, __mmask16 __M, short __A) { // CHECK-LABEL: test_mm256_mask_set1_epi16 // CHECK: insertelement <16 x i16> poison, i16 %{{.*}}, i32 0 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 1 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 2 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 3 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 4 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 5 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 6 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 7 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 8 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 9 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 10 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 11 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 12 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 13 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 14 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 15 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_set1_epi16(__O, __M, __A); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_set1_epi16((__m256i)(__v16hi){1,2,3,4,5,6,7,8,25,26,27,28,29,30,31,32},(__mmask16)0xAAAA,42),1,42,3,42,5,42,7,42,25,42,27,42,29,42,31,42)); __m256i test_mm256_maskz_set1_epi16(__mmask16 __M, short __A) { // CHECK-LABEL: test_mm256_maskz_set1_epi16 // CHECK: insertelement <16 x i16> poison, i16 %{{.*}}, i32 0 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 1 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 2 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 3 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 4 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 5 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 6 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 7 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 8 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 9 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 10 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 11 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 12 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 13 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 14 // CHECK: insertelement <16 x i16> %{{.*}}, i16 %{{.*}}, i32 15 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_set1_epi16(__M, __A); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_set1_epi16((__mmask16)0xAAAA,42),0,42,0,42,0,42,0,42,0,42,0,42,0,42,0,42)); __m128i test_mm_mask_set1_epi16(__m128i __O, __mmask8 __M, short __A) { // CHECK-LABEL: test_mm_mask_set1_epi16 // CHECK: insertelement <8 x i16> poison, i16 %{{.*}}, i32 0 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 1 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 2 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 3 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 4 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 5 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 6 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 7 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_set1_epi16(__O, __M, __A); } TEST_CONSTEXPR(match_v8hi(_mm_mask_set1_epi16((__m128i)(__v8hi){1,2,3,4,5,6,7,8},(__mmask8)0xAA,42),1,42,3,42,5,42,7,42)); __m128i test_mm_maskz_set1_epi16(__mmask8 __M, short __A) { // CHECK-LABEL: test_mm_maskz_set1_epi16 // CHECK: insertelement <8 x i16> poison, i16 %{{.*}}, i32 0 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 1 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 2 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 3 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 4 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 5 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 6 // CHECK: insertelement <8 x i16> %{{.*}}, i16 %{{.*}}, i32 7 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_set1_epi16(__M, __A); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_set1_epi16((__mmask8)0xAA,42),0,42,0,42,0,42,0,42)); __m128i test_mm_permutexvar_epi16(__m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_permutexvar_epi16 // CHECK: @llvm.x86.avx512.permvar.hi.128 return _mm_permutexvar_epi16(__A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_permutexvar_epi16((__m128i)(__v8hi){7, 6, 5, 4, 3, 2, 1, 0}, (__m128i)(__v8hi){10, 11, 12, 13, 14, 15, 16, 17}), 17, 16, 15, 14, 13, 12, 11, 10)); TEST_CONSTEXPR(match_v8hi(_mm_permutexvar_epi16((__m128i)(__v8hi){0, 0, 0, 0, 0, 0, 0, 0}, (__m128i)(__v8hi){100, 101, 102, 103, 104, 105, 106, 107}), 100, 100, 100, 100, 100, 100, 100, 100)); __m128i test_mm_maskz_permutexvar_epi16(__mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_permutexvar_epi16 // CHECK: @llvm.x86.avx512.permvar.hi.128 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_permutexvar_epi16(__M, __A, __B); } __m128i test_mm_mask_permutexvar_epi16(__m128i __W, __mmask8 __M, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_permutexvar_epi16 // CHECK: @llvm.x86.avx512.permvar.hi.128 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_permutexvar_epi16(__W, __M, __A, __B); } TEST_CONSTEXPR(match_v8hi(_mm_mask_permutexvar_epi16((__m128i)(__v8hi){99, 99, 99, 99, 99, 99, 99, 99}, 0xFF, (__m128i)(__v8hi){7, 6, 5, 4, 3, 2, 1, 0}, (__m128i)(__v8hi){10, 11, 12, 13, 14, 15, 16, 17}), 17, 16, 15, 14, 13, 12, 11, 10)); TEST_CONSTEXPR(match_v8hi(_mm_mask_permutexvar_epi16((__m128i)(__v8hi){99, 99, 99, 99, 99, 99, 99, 99}, 0xAA, (__m128i)(__v8hi){7, 6, 5, 4, 3, 2, 1, 0}, (__m128i)(__v8hi){10, 11, 12, 13, 14, 15, 16, 17}), 99, 16, 99, 14, 99, 12, 99, 10)); TEST_CONSTEXPR(match_v8hi(_mm_maskz_permutexvar_epi16(0xFF, (__m128i)(__v8hi){7, 6, 5, 4, 3, 2, 1, 0}, (__m128i)(__v8hi){10, 11, 12, 13, 14, 15, 16, 17}), 17, 16, 15, 14, 13, 12, 11, 10)); TEST_CONSTEXPR(match_v8hi(_mm_maskz_permutexvar_epi16(0xAA, (__m128i)(__v8hi){7, 6, 5, 4, 3, 2, 1, 0}, (__m128i)(__v8hi){10, 11, 12, 13, 14, 15, 16, 17}), 0, 16, 0, 14, 0, 12, 0, 10)); __m256i test_mm256_permutexvar_epi16(__m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_permutexvar_epi16 // CHECK: @llvm.x86.avx512.permvar.hi.256 return _mm256_permutexvar_epi16(__A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_permutexvar_epi16((__m256i)(__v16hi){15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0}, (__m256i)(__v16hi){10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25}), 25, 24, 23, 22, 21, 20, 19, 18, 17, 16, 15, 14, 13, 12, 11, 10)); TEST_CONSTEXPR(match_v16hi(_mm256_permutexvar_epi16((__m256i)(__v16hi){0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}, (__m256i)(__v16hi){100, 101, 102, 103, 104, 105, 106, 107, 108, 109, 110, 111, 112, 113, 114, 115}), 100, 100, 100, 100, 100, 100, 100, 100, 100, 100, 100, 100, 100, 100, 100, 100)); __m256i test_mm256_maskz_permutexvar_epi16(__mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_permutexvar_epi16 // CHECK: @llvm.x86.avx512.permvar.hi.256 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_permutexvar_epi16(__M, __A, __B); } __m256i test_mm256_mask_permutexvar_epi16(__m256i __W, __mmask16 __M, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_permutexvar_epi16 // CHECK: @llvm.x86.avx512.permvar.hi.256 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_permutexvar_epi16(__W, __M, __A, __B); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_permutexvar_epi16((__m256i)(__v16hi){99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99}, 0xFFFF, (__m256i)(__v16hi){15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0}, (__m256i)(__v16hi){10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25}), 25, 24, 23, 22, 21, 20, 19, 18, 17, 16, 15, 14, 13, 12, 11, 10)); TEST_CONSTEXPR(match_v16hi(_mm256_mask_permutexvar_epi16((__m256i)(__v16hi){99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99, 99}, 0xAAAA, (__m256i)(__v16hi){15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0}, (__m256i)(__v16hi){10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25}), 99, 24, 99, 22, 99, 20, 99, 18, 99, 16, 99, 14, 99, 12, 99, 10)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_permutexvar_epi16(0xFFFF, (__m256i)(__v16hi){15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0}, (__m256i)(__v16hi){10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25}), 25, 24, 23, 22, 21, 20, 19, 18, 17, 16, 15, 14, 13, 12, 11, 10)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_permutexvar_epi16(0xAAAA, (__m256i)(__v16hi){15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0}, (__m256i)(__v16hi){10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25}), 0, 24, 0, 22, 0, 20, 0, 18, 0, 16, 0, 14, 0, 12, 0, 10)); __m128i test_mm_mask_alignr_epi8(__m128i __W, __mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_alignr_epi8 // CHECK: shufflevector <16 x i8> %{{.*}}, <16 x i8> %{{.*}}, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_mask_alignr_epi8(__W, __U, __A, __B, 2); } TEST_CONSTEXPR(match_v16qi(_mm_mask_alignr_epi8(((__m128i)(__v16qs){127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127}), (__mmask16)0x000f, ((__m128i)(__v16qs){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), ((__m128i)(__v16qs){17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}), 2), 19, 20, 21, 22, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127)); __m128i test_mm_maskz_alignr_epi8(__mmask16 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_alignr_epi8 // CHECK: shufflevector <16 x i8> %{{.*}}, <16 x i8> %{{.*}}, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i8> %{{.*}}, <16 x i8> %{{.*}} return _mm_maskz_alignr_epi8(__U, __A, __B, 2); } TEST_CONSTEXPR(match_v16qi( _mm_maskz_alignr_epi8((__mmask16)0x000f, ((__m128i)(__v16qs){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16}), ((__m128i)(__v16qs){17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}),2), 19, 20, 21, 22, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)); __m256i test_mm256_mask_alignr_epi8(__m256i __W, __mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_alignr_epi8 // CHECK: shufflevector <32 x i8> %{{.*}}, <32 x i8> %{{.*}}, <32 x i32> // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_mask_alignr_epi8(__W, __U, __A, __B, 2); } TEST_CONSTEXPR(match_v32qi(_mm256_mask_alignr_epi8(((__m256i)(__v32qs){127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127}), (__mmask32)0xf000000f, ((__m256i)(__v32qs){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}), ((__m256i)(__v32qs){33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, 62, 63, 64}), 2), 35, 36, 37, 38, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 127, 63, 64, 17, 18)); __m256i test_mm256_maskz_alignr_epi8(__mmask32 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_alignr_epi8 // CHECK: shufflevector <32 x i8> %{{.*}}, <32 x i8> %{{.*}}, <32 x i32> // CHECK: select <32 x i1> %{{.*}}, <32 x i8> %{{.*}}, <32 x i8> %{{.*}} return _mm256_maskz_alignr_epi8(__U, __A, __B, 2); } TEST_CONSTEXPR(match_v32qi(_mm256_maskz_alignr_epi8((__mmask32)0xf000000f, ((__m256i)(__v32qs){1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32}), ((__m256i)(__v32qs){33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, 62, 63, 64}), 2), 35, 36, 37, 38, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 63, 64, 17, 18)); __m128i test_mm_dbsad_epu8(__m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_dbsad_epu8 // CHECK: @llvm.x86.avx512.dbpsadbw.128 return _mm_dbsad_epu8(__A, __B, 170); } __m128i test_mm_mask_dbsad_epu8(__m128i __W, __mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_mask_dbsad_epu8 // CHECK: @llvm.x86.avx512.dbpsadbw.128 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_dbsad_epu8(__W, __U, __A, __B, 170); } __m128i test_mm_maskz_dbsad_epu8(__mmask8 __U, __m128i __A, __m128i __B) { // CHECK-LABEL: test_mm_maskz_dbsad_epu8 // CHECK: @llvm.x86.avx512.dbpsadbw.128 // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_dbsad_epu8(__U, __A, __B, 170); } __m256i test_mm256_dbsad_epu8(__m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_dbsad_epu8 // CHECK: @llvm.x86.avx512.dbpsadbw.256 return _mm256_dbsad_epu8(__A, __B, 170); } __m256i test_mm256_mask_dbsad_epu8(__m256i __W, __mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_mask_dbsad_epu8 // CHECK: @llvm.x86.avx512.dbpsadbw.256 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_dbsad_epu8(__W, __U, __A, __B, 170); } __m256i test_mm256_maskz_dbsad_epu8(__mmask16 __U, __m256i __A, __m256i __B) { // CHECK-LABEL: test_mm256_maskz_dbsad_epu8 // CHECK: @llvm.x86.avx512.dbpsadbw.256 // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_dbsad_epu8(__U, __A, __B, 170); } __mmask8 test_mm_movepi16_mask(__m128i __A) { // CHECK-LABEL: test_mm_movepi16_mask // CHECK: [[CMP:%.*]] = icmp slt <8 x i16> %{{.*}}, zeroinitializer return _mm_movepi16_mask(__A); } TEST_CONSTEXPR(_mm_movepi16_mask(((__m128i)(__v8hi){0, 1, -1, 3, 4, 5, 6, 7})) == (__mmask8)0x04); __mmask16 test_mm256_movepi16_mask(__m256i __A) { // CHECK-LABEL: test_mm256_movepi16_mask // CHECK: [[CMP:%.*]] = icmp slt <16 x i16> %{{.*}}, zeroinitializer return _mm256_movepi16_mask(__A); } TEST_CONSTEXPR(_mm256_movepi16_mask( ((__m256i)(__v16hi){0, 1, short(32769), 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, short(65535)})) == (__mmask16)0x8004); __m128i test_mm_mask_shufflehi_epi16(__m128i __W, __mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_shufflehi_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> poison, <8 x i32> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_shufflehi_epi16(__W, __U, __A, 5); } TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflehi_epi16(((__m128i)(__v8hi){100,101,102,103,104,105,106,107}),0xF0u,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),100,101,102,103,5,5,4,4)); TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflehi_epi16(((__m128i)(__v8hi){100,101,102,103,104,105,106,107}),0x00u,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),100,101,102,103,104,105,106,107)); TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflehi_epi16(((__m128i)(__v8hi){100,101,102,103,104,105,106,107}),0xFFu,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),0,1,2,3,5,5,4,4)); TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflehi_epi16(((__m128i)(__v8hi){100,101,102,103,104,105,106,107}),0x0Fu,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),0,1,2,3,104,105,106,107)); TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflehi_epi16(((__m128i)(__v8hi){100,101,102,103,104,105,106,107}),0x55u,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),0,101,2,103,5,105,4,107)); TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflehi_epi16(((__m128i)(__v8hi){100,101,102,103,104,105,106,107}),0xAAu,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),100,1,102,3,104,5,106,4)); __m128i test_mm_maskz_shufflehi_epi16(__mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_maskz_shufflehi_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> poison, <8 x i32> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_shufflehi_epi16(__U, __A, 5); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_shufflehi_epi16(0xF0u,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),0,0,0,0,5,5,4,4)); TEST_CONSTEXPR(match_v8hi(_mm_maskz_shufflehi_epi16(0x00u,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),0,0,0,0,0,0,0,0)); TEST_CONSTEXPR(match_v8hi(_mm_maskz_shufflehi_epi16(0xFFu,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),0,1,2,3,5,5,4,4)); TEST_CONSTEXPR(match_v8hi(_mm_maskz_shufflehi_epi16(0x0Fu,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),0,1,2,3,0,0,0,0)); TEST_CONSTEXPR(match_v8hi(_mm_maskz_shufflehi_epi16(0x55u,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),0,0,2,0,5,0,4,0)); TEST_CONSTEXPR(match_v8hi(_mm_maskz_shufflehi_epi16(0xAAu,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),0,1,0,3,0,5,0,4)); __m128i test_mm_mask_shufflelo_epi16(__m128i __W, __mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_mask_shufflelo_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> poison, <8 x i32> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_mask_shufflelo_epi16(__W, __U, __A, 5); } TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflelo_epi16(((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),0xFF,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),1,1,0,0,4,5,6,7)); TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflelo_epi16(((__m128i)(__v8hi){100,101,102,103,104,105,106,107}),0x00u,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),100,101,102,103,104,105,106,107)); TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflelo_epi16(((__m128i)(__v8hi){100,101,102,103,104,105,106,107}),0x0Fu,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),1,1,0,0,104,105,106,107)); TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflelo_epi16(((__m128i)(__v8hi){100,101,102,103,104,105,106,107}),0xF0u,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),100,101,102,103,4,5,6,7)); TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflelo_epi16(((__m128i)(__v8hi){100,101,102,103,104,105,106,107}),0xAAu,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),100,1,102,0,104,5,106,7)); TEST_CONSTEXPR(match_v8hi(_mm_mask_shufflelo_epi16(((__m128i)(__v8hi){100,101,102,103,104,105,106,107}),0x55u,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),1,101,0,103,4,105,6,107)); __m128i test_mm_maskz_shufflelo_epi16(__mmask8 __U, __m128i __A) { // CHECK-LABEL: test_mm_maskz_shufflelo_epi16 // CHECK: shufflevector <8 x i16> %{{.*}}, <8 x i16> poison, <8 x i32> // CHECK: select <8 x i1> %{{.*}}, <8 x i16> %{{.*}}, <8 x i16> %{{.*}} return _mm_maskz_shufflelo_epi16(__U, __A, 5); } TEST_CONSTEXPR(match_v8hi(_mm_maskz_shufflelo_epi16(0xFF,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),1,1,0,0,4,5,6,7)); TEST_CONSTEXPR(match_v8hi(_mm_maskz_shufflelo_epi16(0x0Fu,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),1,1,0,0,0,0,0,0)); TEST_CONSTEXPR(match_v8hi(_mm_maskz_shufflelo_epi16(0xF0u,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),0,0,0,0,4,5,6,7)); TEST_CONSTEXPR(match_v8hi(_mm_maskz_shufflelo_epi16(0xAAu,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),0,1,0,0,0,5,0,7)); TEST_CONSTEXPR(match_v8hi(_mm_maskz_shufflelo_epi16(0x55u,((__m128i)(__v8hi){0,1,2,3,4,5,6,7}),5),1,0,0,0,4,0,6,0)); __m256i test_mm256_mask_shufflehi_epi16(__m256i __W, __mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_mask_shufflehi_epi16 // CHECK: shufflevector <16 x i16> %{{.*}}, <16 x i16> poison, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_shufflehi_epi16(__W, __U, __A, 5); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_shufflehi_epi16(((__m256i)(__v16hi){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115}),0xFF00u,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),100,101,102,103,104,105,106,107,8,9,10,11,13,13,12,12)); TEST_CONSTEXPR(match_v16hi(_mm256_mask_shufflehi_epi16(((__m256i)(__v16hi){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115}),0x0000u,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115)); TEST_CONSTEXPR(match_v16hi(_mm256_mask_shufflehi_epi16(((__m256i)(__v16hi){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115}),0xFFFFu,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),0,1,2,3,5,5,4,4,8,9,10,11,13,13,12,12)); TEST_CONSTEXPR(match_v16hi(_mm256_mask_shufflehi_epi16(((__m256i)(__v16hi){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115}),0x00FFu,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),0,1,2,3,5,5,4,4,108,109,110,111,112,113,114,115)); TEST_CONSTEXPR(match_v16hi(_mm256_mask_shufflehi_epi16(((__m256i)(__v16hi){100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115}),0x5555u,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),0,101,2,103,5,105,4,107,8,109,10,111,13,113,12,115)); __m256i test_mm256_maskz_shufflehi_epi16(__mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_shufflehi_epi16 // CHECK: shufflevector <16 x i16> %{{.*}}, <16 x i16> poison, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_shufflehi_epi16(__U, __A, 5); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_shufflehi_epi16(0x0000u,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_shufflehi_epi16(0xFFFFu,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),0,1,2,3,5,5,4,4,8,9,10,11,13,13,12,12)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_shufflehi_epi16(0x00FFu,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),0,1,2,3,5,5,4,4,0,0,0,0,0,0,0,0)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_shufflehi_epi16(0xFF00u,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),0,0,0,0,0,0,0,0,8,9,10,11,13,13,12,12)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_shufflehi_epi16(0x5555u,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),0,0,2,0,5,0,4,0,8,0,10,0,13,0,12,0)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_shufflehi_epi16(0xAAAAu,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),0,1,0,3,0,5,0,4,0,9,0,11,0,13,0,12)); __m256i test_mm256_mask_shufflelo_epi16(__m256i __W, __mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_mask_shufflelo_epi16 // CHECK: shufflevector <16 x i16> %{{.*}}, <16 x i16> poison, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_mask_shufflelo_epi16(__W, __U, __A, 5); } TEST_CONSTEXPR(match_v16hi(_mm256_mask_shufflelo_epi16(((__m256i)(__v16hi){100,101,102,103,104,105,106,107,200,201,202,203,204,205,206,207}),0xFFFF,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),1,1,0,0,4,5,6,7,9,9,8,8,12,13,14,15)); TEST_CONSTEXPR(match_v16hi(_mm256_mask_shufflelo_epi16(((__m256i)(__v16hi){100,101,102,103,104,105,106,107,200,201,202,203,204,205,206,207}),0x000Fu,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),1,1,0,0,104,105,106,107,200,201,202,203,204,205,206,207)); TEST_CONSTEXPR(match_v16hi(_mm256_mask_shufflelo_epi16(((__m256i)(__v16hi){100,101,102,103,104,105,106,107,200,201,202,203,204,205,206,207}),0x00FFu,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),1,1,0,0,4,5,6,7,200,201,202,203,204,205,206,207)); TEST_CONSTEXPR(match_v16hi(_mm256_mask_shufflelo_epi16(((__m256i)(__v16hi){100,101,102,103,104,105,106,107,200,201,202,203,204,205,206,207}),0xF00Fu,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),1,1,0,0,104,105,106,107,200,201,202,203,12,13,14,15)); __m256i test_mm256_maskz_shufflelo_epi16(__mmask16 __U, __m256i __A) { // CHECK-LABEL: test_mm256_maskz_shufflelo_epi16 // CHECK: shufflevector <16 x i16> %{{.*}}, <16 x i16> poison, <16 x i32> // CHECK: select <16 x i1> %{{.*}}, <16 x i16> %{{.*}}, <16 x i16> %{{.*}} return _mm256_maskz_shufflelo_epi16(__U, __A, 5); } TEST_CONSTEXPR(match_v16hi(_mm256_maskz_shufflelo_epi16(0xFFFF,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),1,1,0,0,4,5,6,7,9,9,8,8,12,13,14,15)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_shufflelo_epi16(0x000Fu,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),1,1,0,0,0,0,0,0,0,0,0,0,0,0,0,0)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_shufflelo_epi16(0x00FFu,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),1,1,0,0,4,5,6,7,0,0,0,0,0,0,0,0)); TEST_CONSTEXPR(match_v16hi(_mm256_maskz_shufflelo_epi16(0xF0F0u,((__m256i)(__v16hi){0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15}),5),0,0,0,0,4,5,6,7,0,0,0,0,12,13,14,15)); void test_mm_mask_cvtepi16_storeu_epi8 (void * __P, __mmask8 __M, __m128i __A) { // CHECK-LABEL: test_mm_mask_cvtepi16_storeu_epi8 // CHECK: @llvm.x86.avx512.mask.pmov.wb.mem.128 _mm_mask_cvtepi16_storeu_epi8 (__P, __M, __A); } void test_mm_mask_cvtsepi16_storeu_epi8 (void * __P, __mmask8 __M, __m128i __A) { // CHECK-LABEL: test_mm_mask_cvtsepi16_storeu_epi8 // CHECK: @llvm.x86.avx512.mask.pmovs.wb.mem.128 _mm_mask_cvtsepi16_storeu_epi8 ( __P, __M, __A); } void test_mm_mask_cvtusepi16_storeu_epi8 (void * __P, __mmask8 __M, __m128i __A) { // CHECK-LABEL: test_mm_mask_cvtusepi16_storeu_epi8 // CHECK: @llvm.x86.avx512.mask.pmovus.wb.mem.128 _mm_mask_cvtusepi16_storeu_epi8 (__P, __M, __A); } void test_mm256_mask_cvtusepi16_storeu_epi8 (void * __P, __mmask16 __M, __m256i __A) { // CHECK-LABEL: test_mm256_mask_cvtusepi16_storeu_epi8 // CHECK: @llvm.x86.avx512.mask.pmovus.wb.mem.256 _mm256_mask_cvtusepi16_storeu_epi8 ( __P, __M, __A); } void test_mm256_mask_cvtepi16_storeu_epi8 (void * __P, __mmask16 __M, __m256i __A) { // CHECK-LABEL: test_mm256_mask_cvtepi16_storeu_epi8 // CHECK: @llvm.x86.avx512.mask.pmov.wb.mem.256 _mm256_mask_cvtepi16_storeu_epi8 ( __P, __M, __A); } void test_mm256_mask_cvtsepi16_storeu_epi8 (void * __P, __mmask16 __M, __m256i __A) { // CHECK-LABEL: test_mm256_mask_cvtsepi16_storeu_epi8 // CHECK: @llvm.x86.avx512.mask.pmovs.wb.mem.256 _mm256_mask_cvtsepi16_storeu_epi8 ( __P, __M, __A); } TEST_CONSTEXPR(match_v16qu( _mm_permutex2var_epi8((__m128i)(__v16qu){0, 10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 110, 120, 127, 126, 125}, (__m128i)(__v16qu){0, 16, 1, 17, 2, 18, 3, 19, 4, 20, 5, 21, 6, 22, 7, 23}, (__m128i)(__v16qu){100, 110, 120, 130, 140, 150, 160, 170, 180, 190, 200, 210, 220, 230, 240, 250}), 0, 100, 10, 110, 20, 120, 30, 130, 40, 140, 50, 150, 60, 160, 70, 170)); TEST_CONSTEXPR(match_v32qu( _mm256_permutex2var_epi8((__m256i)(__v32qu){0, 10, 20, 30, 40, 50, 60, 70, 80, 90, 100, 110, 120, 127, 126, 125, 124, 123, 122, 121, 120, 119, 118, 117, 116, 115, 114, 113, 112, 111, 110, 109}, (__m256i)(__v32qu){0, 32, 1, 33, 2, 34, 3, 35, 4, 36, 5, 37, 6, 38, 7, 39, 8, 40, 9, 41, 10, 42, 11, 43, 12, 44, 13, 45, 14, 46, 15, 47}, (__m256i)(__v32qu){200, 201, 202, 203, 204, 205, 206, 207, 208, 209, 210, 211, 212, 213, 214, 215, 216, 217, 218, 219, 220, 221, 222, 223, 224, 225, 226, 227, 228, 229, 230, 231}), 0, 200, 10, 201, 20, 202, 30, 203, 40, 204, 50, 205, 60, 206, 70, 207, 80, 208, 90, 209, 100, 210, 110, 211, 120, 212, 127, 213, 126, 214, 125, 215));