forked from OSchip/llvm-project
[X86][AVX] concat_vectors(scalar_to_vector(x),scalar_to_vector(x)) --> broadcast(x)
For AVX1, limit this to i32/f32/i64/f64 loading cases only. llvm-svn: 354730
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31793733a0
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@ -41961,6 +41961,13 @@ static SDValue combineInsertSubvector(SDNode *N, SelectionDAG &DAG,
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SubVec.getOpcode() == X86ISD::SUBV_BROADCAST))
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return DAG.getNode(SubVec.getOpcode(), dl, OpVT, SubVec.getOperand(0));
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// concat_vectors(scalar_to_vector(x),scalar_to_vector(x)) -> broadcast(x)
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if (SubVec == SubVec2 && SubVec.getOpcode() == ISD::SCALAR_TO_VECTOR &&
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(Subtarget.hasAVX2() || (OpVT.getScalarSizeInBits() >= 32 &&
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MayFoldLoad(SubVec.getOperand(0)))) &&
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SubVec.getOperand(0).getValueType() == OpVT.getScalarType())
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return DAG.getNode(X86ISD::VBROADCAST, dl, OpVT, SubVec.getOperand(0));
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// If we're inserting all zeros into the upper half, change this to
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// an insert into an all zeros vector. We will match this to a move
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// with implicit upper bit zeroing during isel.
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@ -2718,10 +2718,9 @@ define <8 x i32>@test_int_x86_avx512_mask_broadcasti32x2_256(<4 x i32> %x0, <8 x
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; X64-LABEL: test_int_x86_avx512_mask_broadcasti32x2_256:
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; X64: # %bb.0:
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; X64-NEXT: # kill: def $xmm0 killed $xmm0 def $ymm0
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; X64-NEXT: vmovq (%rsi), %xmm2 # EVEX TO VEX Compression encoding: [0xc5,0xfa,0x7e,0x16]
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; X64-NEXT: # xmm2 = mem[0],zero
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; X64-NEXT: kmovw %edi, %k1 # encoding: [0xc5,0xf8,0x92,0xcf]
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; X64-NEXT: vinserti32x4 $1, %xmm2, %ymm2, %ymm1 {%k1} # encoding: [0x62,0xf3,0x6d,0x29,0x38,0xca,0x01]
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; X64-NEXT: vbroadcasti32x2 (%rsi), %ymm1 {%k1} # encoding: [0x62,0xf2,0x7d,0x29,0x59,0x0e]
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; X64-NEXT: # ymm1 {%k1} = mem[0,1,0,1,0,1,0,1]
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; X64-NEXT: vinserti128 $1, %xmm0, %ymm0, %ymm2 # EVEX TO VEX Compression encoding: [0xc4,0xe3,0x7d,0x38,0xd0,0x01]
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; X64-NEXT: vinserti32x4 $1, %xmm0, %ymm0, %ymm0 {%k1} {z} # encoding: [0x62,0xf3,0x7d,0xa9,0x38,0xc0,0x01]
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; X64-NEXT: vpaddd %ymm2, %ymm0, %ymm0 # EVEX TO VEX Compression encoding: [0xc5,0xfd,0xfe,0xc2]
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@ -1657,46 +1657,18 @@ define <4 x double> @broadcast_v4f64_v2f64_4u61(<2 x double>* %vp, <4 x double>
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}
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define <8 x float> @broadcast_v8f32_v2f32_u1uu0uEu(<2 x float>* %vp, <8 x float> %default) {
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; X32-AVX1-LABEL: broadcast_v8f32_v2f32_u1uu0uEu:
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; X32-AVX1: # %bb.0:
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; X32-AVX1-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X32-AVX1-NEXT: vmovsd {{.*#+}} xmm1 = mem[0],zero
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; X32-AVX1-NEXT: vinsertf128 $1, %xmm1, %ymm1, %ymm1
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; X32-AVX1-NEXT: vblendps {{.*#+}} ymm0 = ymm1[0,1,2,3,4,5],ymm0[6,7]
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; X32-AVX1-NEXT: retl
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; X32-LABEL: broadcast_v8f32_v2f32_u1uu0uEu:
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; X32: # %bb.0:
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; X32-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X32-NEXT: vbroadcastsd (%eax), %ymm1
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; X32-NEXT: vblendps {{.*#+}} ymm0 = ymm1[0,1,2,3,4,5],ymm0[6,7]
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; X32-NEXT: retl
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;
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; X32-AVX2-LABEL: broadcast_v8f32_v2f32_u1uu0uEu:
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; X32-AVX2: # %bb.0:
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; X32-AVX2-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X32-AVX2-NEXT: vbroadcastsd (%eax), %ymm1
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; X32-AVX2-NEXT: vblendps {{.*#+}} ymm0 = ymm1[0,1,2,3,4,5],ymm0[6,7]
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; X32-AVX2-NEXT: retl
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;
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; X32-AVX512-LABEL: broadcast_v8f32_v2f32_u1uu0uEu:
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; X32-AVX512: # %bb.0:
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; X32-AVX512-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X32-AVX512-NEXT: vbroadcastsd (%eax), %ymm1
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; X32-AVX512-NEXT: vblendps {{.*#+}} ymm0 = ymm1[0,1,2,3,4,5],ymm0[6,7]
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; X32-AVX512-NEXT: retl
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;
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; X64-AVX1-LABEL: broadcast_v8f32_v2f32_u1uu0uEu:
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; X64-AVX1: # %bb.0:
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; X64-AVX1-NEXT: vmovsd {{.*#+}} xmm1 = mem[0],zero
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; X64-AVX1-NEXT: vinsertf128 $1, %xmm1, %ymm1, %ymm1
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; X64-AVX1-NEXT: vblendps {{.*#+}} ymm0 = ymm1[0,1,2,3,4,5],ymm0[6,7]
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; X64-AVX1-NEXT: retq
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;
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; X64-AVX2-LABEL: broadcast_v8f32_v2f32_u1uu0uEu:
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; X64-AVX2: # %bb.0:
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; X64-AVX2-NEXT: vbroadcastsd (%rdi), %ymm1
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; X64-AVX2-NEXT: vblendps {{.*#+}} ymm0 = ymm1[0,1,2,3,4,5],ymm0[6,7]
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; X64-AVX2-NEXT: retq
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;
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; X64-AVX512-LABEL: broadcast_v8f32_v2f32_u1uu0uEu:
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; X64-AVX512: # %bb.0:
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; X64-AVX512-NEXT: vbroadcastsd (%rdi), %ymm1
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; X64-AVX512-NEXT: vblendps {{.*#+}} ymm0 = ymm1[0,1,2,3,4,5],ymm0[6,7]
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; X64-AVX512-NEXT: retq
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; X64-LABEL: broadcast_v8f32_v2f32_u1uu0uEu:
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; X64: # %bb.0:
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; X64-NEXT: vbroadcastsd (%rdi), %ymm1
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; X64-NEXT: vblendps {{.*#+}} ymm0 = ymm1[0,1,2,3,4,5],ymm0[6,7]
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; X64-NEXT: retq
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%vec = load <2 x float>, <2 x float>* %vp
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%shuf = shufflevector <2 x float> %vec, <2 x float> undef, <8 x i32> <i32 undef, i32 1, i32 undef, i32 undef, i32 0, i32 2, i32 3, i32 undef>
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%res = select <8 x i1> <i1 1, i1 1, i1 1, i1 1, i1 1, i1 1, i1 0, i1 1>, <8 x float> %shuf, <8 x float> %default
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