forked from OSchip/llvm-project
245 lines
8.7 KiB
LLVM
245 lines
8.7 KiB
LLVM
; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py
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; RUN: llc < %s -fast-isel -mtriple=i386-unknown-unknown -mattr=+avx512f,+avx512bw,+avx512vl | FileCheck %s --check-prefix=ALL --check-prefix=X32
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; RUN: llc < %s -fast-isel -mtriple=x86_64-unknown-unknown -mattr=+avx512f,+avx512bw,+avx512vl | FileCheck %s --check-prefix=ALL --check-prefix=X64
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; NOTE: This should use IR equivalent to what is generated by clang/test/CodeGen/avx512vlbw-builtins.c
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define <2 x i64> @test_mm_broadcastb_epi8(<2 x i64> %a0) {
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; X32-LABEL: test_mm_broadcastb_epi8:
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; X32: # BB#0:
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; X32-NEXT: vpbroadcastb %xmm0, %xmm0
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm_broadcastb_epi8:
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; X64: # BB#0:
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; X64-NEXT: vpbroadcastb %xmm0, %xmm0
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; X64-NEXT: retq
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%arg0 = bitcast <2 x i64> %a0 to <16 x i8>
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%res0 = shufflevector <16 x i8> %arg0, <16 x i8> undef, <16 x i32> zeroinitializer
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%res1 = bitcast <16 x i8> %res0 to <2 x i64>
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ret <2 x i64> %res1
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}
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define <2 x i64> @test_mm_mask_broadcastb_epi8(<2 x i64> %a0, i16 %a1, <2 x i64> %a2) {
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; X32-LABEL: test_mm_mask_broadcastb_epi8:
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; X32: # BB#0:
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; X32-NEXT: movw {{[0-9]+}}(%esp), %ax
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; X32-NEXT: kmovd %eax, %k1
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; X32-NEXT: vpbroadcastb %xmm1, %xmm0 {%k1}
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm_mask_broadcastb_epi8:
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; X64: # BB#0:
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; X64-NEXT: kmovd %edi, %k1
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; X64-NEXT: vpbroadcastb %xmm1, %xmm0 {%k1}
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; X64-NEXT: retq
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%arg0 = bitcast <2 x i64> %a0 to <16 x i8>
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%arg1 = bitcast i16 %a1 to <16 x i1>
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%arg2 = bitcast <2 x i64> %a2 to <16 x i8>
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%res0 = shufflevector <16 x i8> %arg2, <16 x i8> undef, <16 x i32> zeroinitializer
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%res1 = select <16 x i1> %arg1, <16 x i8> %res0, <16 x i8> %arg0
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%res2 = bitcast <16 x i8> %res1 to <2 x i64>
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ret <2 x i64> %res2
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}
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define <2 x i64> @test_mm_maskz_broadcastb_epi8(i16 %a0, <2 x i64> %a1) {
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; X32-LABEL: test_mm_maskz_broadcastb_epi8:
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; X32: # BB#0:
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; X32-NEXT: movw {{[0-9]+}}(%esp), %ax
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; X32-NEXT: kmovd %eax, %k1
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; X32-NEXT: vpbroadcastb %xmm0, %xmm0 {%k1} {z}
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm_maskz_broadcastb_epi8:
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; X64: # BB#0:
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; X64-NEXT: kmovd %edi, %k1
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; X64-NEXT: vpbroadcastb %xmm0, %xmm0 {%k1} {z}
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; X64-NEXT: retq
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%arg0 = bitcast i16 %a0 to <16 x i1>
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%arg1 = bitcast <2 x i64> %a1 to <16 x i8>
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%res0 = shufflevector <16 x i8> %arg1, <16 x i8> undef, <16 x i32> zeroinitializer
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%res1 = select <16 x i1> %arg0, <16 x i8> %res0, <16 x i8> zeroinitializer
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%res2 = bitcast <16 x i8> %res1 to <2 x i64>
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ret <2 x i64> %res2
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}
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define <4 x i64> @test_mm256_broadcastb_epi8(<2 x i64> %a0) {
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; X32-LABEL: test_mm256_broadcastb_epi8:
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; X32: # BB#0:
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; X32-NEXT: vpbroadcastb %xmm0, %ymm0
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm256_broadcastb_epi8:
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; X64: # BB#0:
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; X64-NEXT: vpbroadcastb %xmm0, %ymm0
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; X64-NEXT: retq
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%arg0 = bitcast <2 x i64> %a0 to <16 x i8>
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%res0 = shufflevector <16 x i8> %arg0, <16 x i8> undef, <32 x i32> zeroinitializer
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%res1 = bitcast <32 x i8> %res0 to <4 x i64>
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ret <4 x i64> %res1
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}
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define <4 x i64> @test_mm256_mask_broadcastb_epi8(<4 x i64> %a0, i32 %a1, <2 x i64> %a2) {
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; X32-LABEL: test_mm256_mask_broadcastb_epi8:
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; X32: # BB#0:
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; X32-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X32-NEXT: kmovd %eax, %k1
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; X32-NEXT: vpbroadcastb %xmm1, %ymm0 {%k1}
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm256_mask_broadcastb_epi8:
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; X64: # BB#0:
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; X64-NEXT: kmovd %edi, %k1
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; X64-NEXT: vpbroadcastb %xmm1, %ymm0 {%k1}
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; X64-NEXT: retq
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%arg0 = bitcast <4 x i64> %a0 to <32 x i8>
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%arg1 = bitcast i32 %a1 to <32 x i1>
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%arg2 = bitcast <2 x i64> %a2 to <16 x i8>
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%res0 = shufflevector <16 x i8> %arg2, <16 x i8> undef, <32 x i32> zeroinitializer
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%res1 = select <32 x i1> %arg1, <32 x i8> %res0, <32 x i8> %arg0
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%res2 = bitcast <32 x i8> %res1 to <4 x i64>
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ret <4 x i64> %res2
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}
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define <4 x i64> @test_mm256_maskz_broadcastb_epi8(i32 %a0, <2 x i64> %a1) {
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; X32-LABEL: test_mm256_maskz_broadcastb_epi8:
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; X32: # BB#0:
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; X32-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X32-NEXT: kmovd %eax, %k1
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; X32-NEXT: vpbroadcastb %xmm0, %ymm0 {%k1} {z}
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm256_maskz_broadcastb_epi8:
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; X64: # BB#0:
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; X64-NEXT: kmovd %edi, %k1
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; X64-NEXT: vpbroadcastb %xmm0, %ymm0 {%k1} {z}
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; X64-NEXT: retq
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%arg0 = bitcast i32 %a0 to <32 x i1>
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%arg1 = bitcast <2 x i64> %a1 to <16 x i8>
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%res0 = shufflevector <16 x i8> %arg1, <16 x i8> undef, <32 x i32> zeroinitializer
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%res1 = select <32 x i1> %arg0, <32 x i8> %res0, <32 x i8> zeroinitializer
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%res2 = bitcast <32 x i8> %res1 to <4 x i64>
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ret <4 x i64> %res2
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}
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define <2 x i64> @test_mm_broadcastw_epi16(<2 x i64> %a0) {
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; X32-LABEL: test_mm_broadcastw_epi16:
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; X32: # BB#0:
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; X32-NEXT: vpbroadcastw %xmm0, %xmm0
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm_broadcastw_epi16:
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; X64: # BB#0:
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; X64-NEXT: vpbroadcastw %xmm0, %xmm0
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; X64-NEXT: retq
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%arg0 = bitcast <2 x i64> %a0 to <8 x i16>
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%res0 = shufflevector <8 x i16> %arg0, <8 x i16> undef, <8 x i32> zeroinitializer
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%res1 = bitcast <8 x i16> %res0 to <2 x i64>
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ret <2 x i64> %res1
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}
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define <2 x i64> @test_mm_mask_broadcastw_epi16(<2 x i64> %a0, i8 %a1, <2 x i64> %a2) {
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; X32-LABEL: test_mm_mask_broadcastw_epi16:
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; X32: # BB#0:
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; X32-NEXT: movb {{[0-9]+}}(%esp), %al
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; X32-NEXT: kmovd %eax, %k1
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; X32-NEXT: vpbroadcastw %xmm1, %xmm0 {%k1}
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm_mask_broadcastw_epi16:
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; X64: # BB#0:
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; X64-NEXT: kmovd %edi, %k1
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; X64-NEXT: vpbroadcastw %xmm1, %xmm0 {%k1}
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; X64-NEXT: retq
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%arg0 = bitcast <2 x i64> %a0 to <8 x i16>
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%arg1 = bitcast i8 %a1 to <8 x i1>
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%arg2 = bitcast <2 x i64> %a2 to <8 x i16>
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%res0 = shufflevector <8 x i16> %arg2, <8 x i16> undef, <8 x i32> zeroinitializer
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%res1 = select <8 x i1> %arg1, <8 x i16> %res0, <8 x i16> %arg0
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%res2 = bitcast <8 x i16> %res1 to <2 x i64>
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ret <2 x i64> %res2
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}
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define <2 x i64> @test_mm_maskz_broadcastw_epi16(i8 %a0, <2 x i64> %a1) {
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; X32-LABEL: test_mm_maskz_broadcastw_epi16:
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; X32: # BB#0:
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; X32-NEXT: movb {{[0-9]+}}(%esp), %al
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; X32-NEXT: kmovd %eax, %k1
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; X32-NEXT: vpbroadcastw %xmm0, %xmm0 {%k1} {z}
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm_maskz_broadcastw_epi16:
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; X64: # BB#0:
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; X64-NEXT: kmovd %edi, %k1
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; X64-NEXT: vpbroadcastw %xmm0, %xmm0 {%k1} {z}
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; X64-NEXT: retq
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%arg0 = bitcast i8 %a0 to <8 x i1>
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%arg1 = bitcast <2 x i64> %a1 to <8 x i16>
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%res0 = shufflevector <8 x i16> %arg1, <8 x i16> undef, <8 x i32> zeroinitializer
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%res1 = select <8 x i1> %arg0, <8 x i16> %res0, <8 x i16> zeroinitializer
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%res2 = bitcast <8 x i16> %res1 to <2 x i64>
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ret <2 x i64> %res2
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}
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define <4 x i64> @test_mm256_broadcastw_epi16(<2 x i64> %a0) {
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; X32-LABEL: test_mm256_broadcastw_epi16:
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; X32: # BB#0:
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; X32-NEXT: vpbroadcastw %xmm0, %ymm0
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm256_broadcastw_epi16:
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; X64: # BB#0:
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; X64-NEXT: vpbroadcastw %xmm0, %ymm0
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; X64-NEXT: retq
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%arg0 = bitcast <2 x i64> %a0 to <8 x i16>
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%res0 = shufflevector <8 x i16> %arg0, <8 x i16> undef, <16 x i32> zeroinitializer
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%res1 = bitcast <16 x i16> %res0 to <4 x i64>
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ret <4 x i64> %res1
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}
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define <4 x i64> @test_mm256_mask_broadcastw_epi16(<4 x i64> %a0, i16 %a1, <2 x i64> %a2) {
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; X32-LABEL: test_mm256_mask_broadcastw_epi16:
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; X32: # BB#0:
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; X32-NEXT: movw {{[0-9]+}}(%esp), %ax
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; X32-NEXT: kmovd %eax, %k1
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; X32-NEXT: vpbroadcastw %xmm1, %ymm0 {%k1}
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm256_mask_broadcastw_epi16:
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; X64: # BB#0:
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; X64-NEXT: kmovd %edi, %k1
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; X64-NEXT: vpbroadcastw %xmm1, %ymm0 {%k1}
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; X64-NEXT: retq
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%arg0 = bitcast <4 x i64> %a0 to <16 x i16>
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%arg1 = bitcast i16 %a1 to <16 x i1>
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%arg2 = bitcast <2 x i64> %a2 to <8 x i16>
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%res0 = shufflevector <8 x i16> %arg2, <8 x i16> undef, <16 x i32> zeroinitializer
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%res1 = select <16 x i1> %arg1, <16 x i16> %res0, <16 x i16> %arg0
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%res2 = bitcast <16 x i16> %res1 to <4 x i64>
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ret <4 x i64> %res2
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}
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define <4 x i64> @test_mm256_maskz_broadcastw_epi16(i16 %a0, <2 x i64> %a1) {
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; X32-LABEL: test_mm256_maskz_broadcastw_epi16:
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; X32: # BB#0:
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; X32-NEXT: movw {{[0-9]+}}(%esp), %ax
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; X32-NEXT: kmovd %eax, %k1
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; X32-NEXT: vpbroadcastw %xmm0, %ymm0 {%k1} {z}
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; X32-NEXT: retl
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;
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; X64-LABEL: test_mm256_maskz_broadcastw_epi16:
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; X64: # BB#0:
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; X64-NEXT: kmovd %edi, %k1
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; X64-NEXT: vpbroadcastw %xmm0, %ymm0 {%k1} {z}
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; X64-NEXT: retq
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%arg0 = bitcast i16 %a0 to <16 x i1>
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%arg1 = bitcast <2 x i64> %a1 to <8 x i16>
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%res0 = shufflevector <8 x i16> %arg1, <8 x i16> undef, <16 x i32> zeroinitializer
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%res1 = select <16 x i1> %arg0, <16 x i16> %res0, <16 x i16> zeroinitializer
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%res2 = bitcast <16 x i16> %res1 to <4 x i64>
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ret <4 x i64> %res2
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}
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!0 = !{i32 1}
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