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[X86][SSE] matchBinaryPermuteShuffle - split INSERTPS combines
We need to prefer INSERTPS with zeros over SHUFPS, but fallback to INSERTPS if that fails. llvm-svn: 368292
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@ -31901,16 +31901,16 @@ static bool matchBinaryPermuteShuffle(
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}
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}
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// Attempt to combine to INSERTPS.
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// Attempt to combine to INSERTPS, but only if it has elements that need to
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// be set to zero.
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if (AllowFloatDomain && EltSizeInBits == 32 && Subtarget.hasSSE41() &&
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MaskVT.is128BitVector()) {
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if (Zeroable.getBoolValue() &&
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MaskVT.is128BitVector() &&
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llvm::any_of(Mask, [](int M) { return M == SM_SentinelZero; }) &&
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matchShuffleAsInsertPS(V1, V2, PermuteImm, Zeroable, Mask, DAG)) {
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Shuffle = X86ISD::INSERTPS;
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ShuffleVT = MVT::v4f32;
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return true;
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}
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}
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// Attempt to combine to SHUFPD.
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if (AllowFloatDomain && EltSizeInBits == 64 &&
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@ -31971,6 +31971,15 @@ static bool matchBinaryPermuteShuffle(
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}
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}
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// Attempt to combine to INSERTPS more generally if X86ISD::SHUFP failed.
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if (AllowFloatDomain && EltSizeInBits == 32 && Subtarget.hasSSE41() &&
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MaskVT.is128BitVector() &&
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matchShuffleAsInsertPS(V1, V2, PermuteImm, Zeroable, Mask, DAG)) {
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Shuffle = X86ISD::INSERTPS;
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ShuffleVT = MVT::v4f32;
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return true;
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}
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return false;
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}
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@ -1240,40 +1240,38 @@ define void @interleave_24i32_out(<24 x i32>* %p, <8 x i32>* %q1, <8 x i32>* %q2
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;
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; SSE42-LABEL: interleave_24i32_out:
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; SSE42: # %bb.0:
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; SSE42-NEXT: movdqu 80(%rdi), %xmm9
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; SSE42-NEXT: movdqu 64(%rdi), %xmm10
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; SSE42-NEXT: movups 80(%rdi), %xmm8
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; SSE42-NEXT: movdqu 64(%rdi), %xmm9
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; SSE42-NEXT: movdqu (%rdi), %xmm4
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; SSE42-NEXT: movdqu 16(%rdi), %xmm2
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; SSE42-NEXT: movdqu 32(%rdi), %xmm11
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; SSE42-NEXT: movups 32(%rdi), %xmm10
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; SSE42-NEXT: movdqu 48(%rdi), %xmm5
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; SSE42-NEXT: pshufd {{.*#+}} xmm8 = xmm11[0,1,0,1]
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; SSE42-NEXT: movdqa %xmm2, %xmm7
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; SSE42-NEXT: pblendw {{.*#+}} xmm7 = xmm7[0,1],xmm4[2,3],xmm7[4,5,6,7]
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; SSE42-NEXT: pshufd {{.*#+}} xmm6 = xmm4[2,3,0,1]
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; SSE42-NEXT: movdqa %xmm2, %xmm6
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; SSE42-NEXT: pblendw {{.*#+}} xmm6 = xmm6[0,1],xmm4[2,3],xmm6[4,5,6,7]
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; SSE42-NEXT: pshufd {{.*#+}} xmm7 = xmm4[2,3,0,1]
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; SSE42-NEXT: shufps {{.*#+}} xmm4 = xmm4[0,3],xmm2[2,3]
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; SSE42-NEXT: blendps {{.*#+}} xmm4 = xmm4[0,1,2],xmm8[3]
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; SSE42-NEXT: movdqa %xmm10, %xmm1
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; SSE42-NEXT: insertps {{.*#+}} xmm4 = xmm4[0,1,2],xmm10[1]
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; SSE42-NEXT: movdqa %xmm9, %xmm1
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; SSE42-NEXT: pblendw {{.*#+}} xmm1 = xmm1[0,1],xmm5[2,3],xmm1[4,5,6,7]
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; SSE42-NEXT: pshufd {{.*#+}} xmm0 = xmm5[2,3,0,1]
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; SSE42-NEXT: shufps {{.*#+}} xmm5 = xmm5[0,3],xmm10[2,3]
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; SSE42-NEXT: pshufd {{.*#+}} xmm3 = xmm9[0,1,0,1]
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; SSE42-NEXT: pblendw {{.*#+}} xmm3 = xmm5[0,1,2,3,4,5],xmm3[6,7]
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; SSE42-NEXT: pshufd {{.*#+}} xmm5 = xmm11[0,1,2,2]
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; SSE42-NEXT: pshufd {{.*#+}} xmm7 = xmm7[1,0,3,3]
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; SSE42-NEXT: pblendw {{.*#+}} xmm7 = xmm7[0,1,2,3,4,5],xmm5[6,7]
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; SSE42-NEXT: shufps {{.*#+}} xmm5 = xmm5[0,3],xmm9[2,3]
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; SSE42-NEXT: insertps {{.*#+}} xmm5 = xmm5[0,1,2],xmm8[1]
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; SSE42-NEXT: pshufd {{.*#+}} xmm3 = xmm10[0,1,2,2]
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; SSE42-NEXT: pshufd {{.*#+}} xmm6 = xmm6[1,0,3,3]
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; SSE42-NEXT: pblendw {{.*#+}} xmm6 = xmm6[0,1,2,3,4,5],xmm3[6,7]
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; SSE42-NEXT: pshufd {{.*#+}} xmm1 = xmm1[1,0,3,3]
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; SSE42-NEXT: pshufd {{.*#+}} xmm5 = xmm9[0,1,2,2]
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; SSE42-NEXT: pblendw {{.*#+}} xmm5 = xmm1[0,1,2,3,4,5],xmm5[6,7]
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; SSE42-NEXT: pblendw {{.*#+}} xmm6 = xmm6[0,1],xmm2[2,3],xmm6[4,5,6,7]
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; SSE42-NEXT: pshufd {{.*#+}} xmm1 = xmm11[0,1,0,3]
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; SSE42-NEXT: pblendw {{.*#+}} xmm1 = xmm6[0,1,2,3],xmm1[4,5,6,7]
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; SSE42-NEXT: pblendw {{.*#+}} xmm0 = xmm0[0,1],xmm10[2,3],xmm0[4,5,6,7]
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; SSE42-NEXT: pshufd {{.*#+}} xmm2 = xmm9[0,1,0,3]
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; SSE42-NEXT: pshufd {{.*#+}} xmm3 = xmm8[0,1,2,2]
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; SSE42-NEXT: pblendw {{.*#+}} xmm3 = xmm1[0,1,2,3,4,5],xmm3[6,7]
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; SSE42-NEXT: pblendw {{.*#+}} xmm7 = xmm7[0,1],xmm2[2,3],xmm7[4,5,6,7]
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; SSE42-NEXT: pshufd {{.*#+}} xmm1 = xmm10[0,1,0,3]
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; SSE42-NEXT: pblendw {{.*#+}} xmm1 = xmm7[0,1,2,3],xmm1[4,5,6,7]
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; SSE42-NEXT: pblendw {{.*#+}} xmm0 = xmm0[0,1],xmm9[2,3],xmm0[4,5,6,7]
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; SSE42-NEXT: pshufd {{.*#+}} xmm2 = xmm8[0,1,0,3]
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; SSE42-NEXT: pblendw {{.*#+}} xmm2 = xmm0[0,1,2,3],xmm2[4,5,6,7]
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; SSE42-NEXT: movdqu %xmm3, 16(%rsi)
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; SSE42-NEXT: movups %xmm5, 16(%rsi)
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; SSE42-NEXT: movups %xmm4, (%rsi)
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; SSE42-NEXT: movdqu %xmm5, 16(%rdx)
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; SSE42-NEXT: movdqu %xmm7, (%rdx)
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; SSE42-NEXT: movdqu %xmm3, 16(%rdx)
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; SSE42-NEXT: movdqu %xmm6, (%rdx)
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; SSE42-NEXT: movdqu %xmm2, 16(%rcx)
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; SSE42-NEXT: movdqu %xmm1, (%rcx)
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; SSE42-NEXT: retq
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@ -11,9 +11,9 @@ define <4 x float> @bar(<4 x float>* %a1p, <4 x float>* %a2p, <4 x float> %a3, <
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; CHECK-NEXT: subq $72, %rsp
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; CHECK-NEXT: .cfi_def_cfa_offset 80
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; CHECK-NEXT: vmovaps %xmm1, %xmm9
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; CHECK-NEXT: vbroadcasti32x4 {{.*#+}} zmm15 = [4,22,1,17,4,22,1,17,4,22,1,17,4,22,1,17]
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; CHECK-NEXT: # zmm15 = mem[0,1,2,3,0,1,2,3,0,1,2,3,0,1,2,3]
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; CHECK-NEXT: vpermi2ps %zmm3, %zmm2, %zmm15
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; CHECK-NEXT: vbroadcasti32x4 {{.*#+}} zmm14 = [4,22,1,17,4,22,1,17,4,22,1,17,4,22,1,17]
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; CHECK-NEXT: # zmm14 = mem[0,1,2,3,0,1,2,3,0,1,2,3,0,1,2,3]
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; CHECK-NEXT: vpermi2ps %zmm3, %zmm2, %zmm14
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; CHECK-NEXT: vbroadcasti32x4 {{.*#+}} zmm10 = [4,30,1,22,4,30,1,22,4,30,1,22,4,30,1,22]
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; CHECK-NEXT: # zmm10 = mem[0,1,2,3,0,1,2,3,0,1,2,3,0,1,2,3]
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; CHECK-NEXT: vpermi2ps %zmm3, %zmm2, %zmm10
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@ -27,7 +27,7 @@ define <4 x float> @bar(<4 x float>* %a1p, <4 x float>* %a2p, <4 x float> %a3, <
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; CHECK-NEXT: vextractf128 $1, %ymm2, %xmm6
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; CHECK-NEXT: vunpcklps {{.*#+}} xmm11 = xmm6[0],xmm5[0],xmm6[1],xmm5[1]
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; CHECK-NEXT: vinsertps {{.*#+}} xmm1 = xmm11[0,1],xmm2[1],xmm11[3]
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; CHECK-NEXT: vinsertps {{.*#+}} xmm14 = xmm1[0,1,2],xmm3[1]
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; CHECK-NEXT: vinsertps {{.*#+}} xmm13 = xmm1[0,1,2],xmm3[1]
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; CHECK-NEXT: vinsertps {{.*#+}} xmm6 = xmm4[0,1,2],xmm3[1]
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; CHECK-NEXT: vmovaps %xmm6, {{[-0-9]+}}(%r{{[sb]}}p) # 16-byte Spill
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; CHECK-NEXT: vextractf32x4 $2, %zmm3, %xmm4
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@ -39,20 +39,19 @@ define <4 x float> @bar(<4 x float>* %a1p, <4 x float>* %a2p, <4 x float> %a3, <
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; CHECK-NEXT: vinsertps {{.*#+}} xmm0 = xmm7[0,1],xmm2[1],xmm7[3]
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; CHECK-NEXT: vblendps {{.*#+}} xmm7 = xmm0[0,1,2],xmm3[3]
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; CHECK-NEXT: vblendps {{.*#+}} xmm12 = xmm1[0,1,2],xmm3[3]
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; CHECK-NEXT: vpermilpd {{.*#+}} xmm13 = xmm3[1,0]
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; CHECK-NEXT: vinsertps {{.*#+}} xmm1 = xmm8[0,1,2],xmm3[1]
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; CHECK-NEXT: vinsertps {{.*#+}} xmm3 = xmm0[0,1,2],xmm3[1]
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; CHECK-NEXT: vaddps %xmm1, %xmm3, %xmm8
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; CHECK-NEXT: vinsertps {{.*#+}} xmm0 = xmm0[0,1,2],xmm3[1]
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; CHECK-NEXT: vaddps %xmm1, %xmm0, %xmm8
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; CHECK-NEXT: vinsertps {{.*#+}} xmm2 = xmm11[0,1],xmm2[3],xmm11[3]
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; CHECK-NEXT: vinsertps {{.*#+}} xmm2 = xmm2[0,1,2],xmm13[0]
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; CHECK-NEXT: vaddps %xmm15, %xmm2, %xmm2
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; CHECK-NEXT: vmovaps %xmm14, %xmm1
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; CHECK-NEXT: vmovaps %xmm14, {{[-0-9]+}}(%r{{[sb]}}p) # 16-byte Spill
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; CHECK-NEXT: vaddps %xmm10, %xmm14, %xmm10
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; CHECK-NEXT: vaddps %xmm14, %xmm14, %xmm3
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; CHECK-NEXT: vaddps %xmm12, %xmm15, %xmm0
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; CHECK-NEXT: vinsertps {{.*#+}} xmm2 = xmm2[0,1,2],xmm3[2]
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; CHECK-NEXT: vaddps %xmm14, %xmm2, %xmm2
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; CHECK-NEXT: vmovaps %xmm13, %xmm1
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; CHECK-NEXT: vmovaps %xmm13, {{[-0-9]+}}(%r{{[sb]}}p) # 16-byte Spill
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; CHECK-NEXT: vaddps %xmm10, %xmm13, %xmm10
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; CHECK-NEXT: vaddps %xmm13, %xmm13, %xmm3
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; CHECK-NEXT: vaddps %xmm12, %xmm14, %xmm0
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; CHECK-NEXT: vaddps %xmm8, %xmm0, %xmm0
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; CHECK-NEXT: vaddps %xmm0, %xmm14, %xmm0
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; CHECK-NEXT: vaddps %xmm0, %xmm13, %xmm0
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; CHECK-NEXT: vmovaps %xmm3, {{[0-9]+}}(%rsp)
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; CHECK-NEXT: vmovaps %xmm10, (%rsp)
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; CHECK-NEXT: vmovaps %xmm9, %xmm3
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@ -65,7 +64,6 @@ define <4 x float> @bar(<4 x float>* %a1p, <4 x float>* %a2p, <4 x float> %a3, <
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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%a1 = shufflevector <16 x float>%c1, <16 x float>%c2, <4 x i32> <i32 4, i32 20, i32 1, i32 17>
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%a2 = shufflevector <16 x float>%c1, <16 x float>%c2, <4 x i32> <i32 4, i32 21, i32 1, i32 17>
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%a5 = shufflevector <16 x float>%c1, <16 x float>%c2, <4 x i32> <i32 4, i32 20, i32 1, i32 27>
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%a6 = shufflevector <16 x float>%c1, <16 x float>%c2, <4 x i32> <i32 3, i32 20, i32 1, i32 17>
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