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[x86] update fma test with deprecated intrinsics; NFC
All of the CHECK lines should be identical to before, but without any of the x86-specific calls that were replaced with generic FMA long ago. The file still has value because it shows a miscompile as demonstrated in D90901, but we probably need to add tests with FMF to make that explicit without losing coverage.
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@ -2,158 +2,149 @@
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; RUN: llc < %s -mtriple=i686-unknown-unknown -mattr=+avx2,+fma | FileCheck %s --check-prefix=X32
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; RUN: llc < %s -mtriple=x86_64-unknown-unknown -mattr=+avx2,+fma | FileCheck %s --check-prefix=X64
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declare <8 x float> @llvm.fma.v8f32(<8 x float>, <8 x float>, <8 x float>)
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declare <4 x float> @llvm.fma.v4f32(<4 x float>, <4 x float>, <4 x float>)
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declare float @llvm.fma.f32(float, float, float)
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declare <2 x double> @llvm.fma.v2f64(<2 x double>, <2 x double>, <2 x double>)
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; This test checks combinations of FNEG and FMA intrinsics
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define <8 x float> @test1(<8 x float> %a, <8 x float> %b, <8 x float> %c) {
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; X32-LABEL: test1:
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; X32: # %bb.0: # %entry
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; X32: # %bb.0:
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; X32-NEXT: vfmsub213ps {{.*#+}} ymm0 = (ymm1 * ymm0) - ymm2
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; X32-NEXT: retl
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;
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; X64-LABEL: test1:
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; X64: # %bb.0: # %entry
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; X64: # %bb.0:
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; X64-NEXT: vfmsub213ps {{.*#+}} ymm0 = (ymm1 * ymm0) - ymm2
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; X64-NEXT: retq
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entry:
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%sub.i = fsub <8 x float> <float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00>, %c
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%0 = tail call <8 x float> @llvm.x86.fma.vfmadd.ps.256(<8 x float> %a, <8 x float> %b, <8 x float> %sub.i) #2
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ret <8 x float> %0
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%sub.i = fsub <8 x float> <float -0.0, float -0.0, float -0.0, float -0.0, float -0.0, float -0.0, float -0.0, float -0.0>, %c
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%r = tail call <8 x float> @llvm.fma.v8f32(<8 x float> %a, <8 x float> %b, <8 x float> %sub.i) #2
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ret <8 x float> %r
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}
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declare <8 x float> @llvm.x86.fma.vfmadd.ps.256(<8 x float>, <8 x float>, <8 x float>)
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define <4 x float> @test2(<4 x float> %a, <4 x float> %b, <4 x float> %c) {
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; X32-LABEL: test2:
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; X32: # %bb.0: # %entry
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; X32: # %bb.0:
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; X32-NEXT: vfnmsub213ps {{.*#+}} xmm0 = -(xmm1 * xmm0) - xmm2
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; X32-NEXT: retl
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;
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; X64-LABEL: test2:
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; X64: # %bb.0: # %entry
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; X64: # %bb.0:
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; X64-NEXT: vfnmsub213ps {{.*#+}} xmm0 = -(xmm1 * xmm0) - xmm2
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; X64-NEXT: retq
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entry:
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%0 = tail call <4 x float> @llvm.x86.fma.vfmadd.ps(<4 x float> %a, <4 x float> %b, <4 x float> %c) #2
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%sub.i = fsub <4 x float> <float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00>, %0
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%t0 = tail call <4 x float> @llvm.fma.v4f32(<4 x float> %a, <4 x float> %b, <4 x float> %c) #2
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%sub.i = fsub <4 x float> <float -0.0, float -0.0, float -0.0, float -0.0>, %t0
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ret <4 x float> %sub.i
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}
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declare <4 x float> @llvm.x86.fma.vfmadd.ps(<4 x float> %a, <4 x float> %b, <4 x float> %c)
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define <4 x float> @test3(<4 x float> %a, <4 x float> %b, <4 x float> %c) {
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; X32-LABEL: test3:
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; X32: # %bb.0: # %entry
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; X32: # %bb.0:
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; X32-NEXT: vfnmadd213ss {{.*#+}} xmm0 = -(xmm1 * xmm0) + xmm2
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; X32-NEXT: vbroadcastss {{.*#+}} xmm1 = [-0.0E+0,-0.0E+0,-0.0E+0,-0.0E+0]
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; X32-NEXT: vxorps %xmm1, %xmm0, %xmm0
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; X32-NEXT: retl
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;
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; X64-LABEL: test3:
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; X64: # %bb.0: # %entry
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; X64: # %bb.0:
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; X64-NEXT: vfnmadd213ss {{.*#+}} xmm0 = -(xmm1 * xmm0) + xmm2
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; X64-NEXT: vbroadcastss {{.*#+}} xmm1 = [-0.0E+0,-0.0E+0,-0.0E+0,-0.0E+0]
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; X64-NEXT: vxorps %xmm1, %xmm0, %xmm0
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; X64-NEXT: retq
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entry:
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%0 = tail call <4 x float> @llvm.x86.fma.vfnmadd.ss(<4 x float> %a, <4 x float> %b, <4 x float> %c) #2
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%sub.i = fsub <4 x float> <float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00>, %0
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%a0 = extractelement <4 x float> %a, i64 0
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%b0 = extractelement <4 x float> %b, i64 0
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%c0 = extractelement <4 x float> %c, i64 0
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%negb0 = fneg float %b0
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%t0 = tail call float @llvm.fma.f32(float %a0, float %negb0, float %c0) #2
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%i = insertelement <4 x float> %a, float %t0, i64 0
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%sub.i = fsub <4 x float> <float -0.0, float -0.0, float -0.0, float -0.0>, %i
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ret <4 x float> %sub.i
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}
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declare <4 x float> @llvm.x86.fma.vfnmadd.ss(<4 x float> %a, <4 x float> %b, <4 x float> %c)
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define <8 x float> @test4(<8 x float> %a, <8 x float> %b, <8 x float> %c) {
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; X32-LABEL: test4:
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; X32: # %bb.0: # %entry
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; X32: # %bb.0:
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; X32-NEXT: vfnmadd213ps {{.*#+}} ymm0 = -(ymm1 * ymm0) + ymm2
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; X32-NEXT: retl
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;
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; X64-LABEL: test4:
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; X64: # %bb.0: # %entry
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; X64: # %bb.0:
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; X64-NEXT: vfnmadd213ps {{.*#+}} ymm0 = -(ymm1 * ymm0) + ymm2
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; X64-NEXT: retq
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entry:
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%0 = tail call <8 x float> @llvm.x86.fma.vfmsub.ps.256(<8 x float> %a, <8 x float> %b, <8 x float> %c) #2
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%sub.i = fsub <8 x float> <float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00>, %0
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%negc = fneg <8 x float> %c
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%t0 = tail call <8 x float> @llvm.fma.v8f32(<8 x float> %a, <8 x float> %b, <8 x float> %negc) #2
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%sub.i = fsub <8 x float> <float -0.0, float -0.0, float -0.0, float -0.0, float -0.0, float -0.0, float -0.0, float -0.0>, %t0
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ret <8 x float> %sub.i
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}
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define <8 x float> @test5(<8 x float> %a, <8 x float> %b, <8 x float> %c) {
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; X32-LABEL: test5:
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; X32: # %bb.0: # %entry
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; X32: # %bb.0:
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; X32-NEXT: vfmadd213ps {{.*#+}} ymm0 = (ymm1 * ymm0) + ymm2
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; X32-NEXT: retl
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;
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; X64-LABEL: test5:
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; X64: # %bb.0: # %entry
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; X64: # %bb.0:
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; X64-NEXT: vfmadd213ps {{.*#+}} ymm0 = (ymm1 * ymm0) + ymm2
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; X64-NEXT: retq
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entry:
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%sub.c = fsub <8 x float> <float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00>, %c
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%0 = tail call <8 x float> @llvm.x86.fma.vfmsub.ps.256(<8 x float> %a, <8 x float> %b, <8 x float> %sub.c) #2
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ret <8 x float> %0
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%sub.c = fsub <8 x float> <float -0.0, float -0.0, float -0.0, float -0.0, float -0.0, float -0.0, float -0.0, float -0.0>, %c
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%negsubc = fneg <8 x float> %sub.c
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%t0 = tail call <8 x float> @llvm.fma.v8f32(<8 x float> %a, <8 x float> %b, <8 x float> %negsubc) #2
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ret <8 x float> %t0
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}
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declare <8 x float> @llvm.x86.fma.vfmsub.ps.256(<8 x float>, <8 x float>, <8 x float>)
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define <2 x double> @test6(<2 x double> %a, <2 x double> %b, <2 x double> %c) {
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; X32-LABEL: test6:
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; X32: # %bb.0: # %entry
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; X32: # %bb.0:
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; X32-NEXT: vfnmsub213pd {{.*#+}} xmm0 = -(xmm1 * xmm0) - xmm2
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; X32-NEXT: retl
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;
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; X64-LABEL: test6:
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; X64: # %bb.0: # %entry
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; X64: # %bb.0:
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; X64-NEXT: vfnmsub213pd {{.*#+}} xmm0 = -(xmm1 * xmm0) - xmm2
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; X64-NEXT: retq
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entry:
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%0 = tail call <2 x double> @llvm.x86.fma.vfmadd.pd(<2 x double> %a, <2 x double> %b, <2 x double> %c) #2
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%sub.i = fsub <2 x double> <double -0.000000e+00, double -0.000000e+00>, %0
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%t0 = tail call <2 x double> @llvm.fma.v2f64(<2 x double> %a, <2 x double> %b, <2 x double> %c) #2
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%sub.i = fsub <2 x double> <double -0.0, double -0.0>, %t0
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ret <2 x double> %sub.i
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}
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declare <2 x double> @llvm.x86.fma.vfmadd.pd(<2 x double> %a, <2 x double> %b, <2 x double> %c)
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define <8 x float> @test7(float %a, <8 x float> %b, <8 x float> %c) {
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; X32-LABEL: test7:
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; X32: # %bb.0: # %entry
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; X32: # %bb.0:
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; X32-NEXT: vbroadcastss {{[0-9]+}}(%esp), %ymm2
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; X32-NEXT: vfnmadd213ps {{.*#+}} ymm0 = -(ymm2 * ymm0) + ymm1
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; X32-NEXT: retl
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;
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; X64-LABEL: test7:
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; X64: # %bb.0: # %entry
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; X64: # %bb.0:
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; X64-NEXT: vbroadcastss %xmm0, %ymm0
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; X64-NEXT: vfnmadd213ps {{.*#+}} ymm0 = -(ymm1 * ymm0) + ymm2
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; X64-NEXT: retq
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entry:
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%0 = insertelement <8 x float> undef, float %a, i32 0
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%1 = fsub <8 x float> <float -0.000000e+00, float undef, float undef, float undef, float undef, float undef, float undef, float undef>, %0
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%2 = shufflevector <8 x float> %1, <8 x float> undef, <8 x i32> zeroinitializer
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%3 = tail call <8 x float> @llvm.fma.v8f32(<8 x float> %2, <8 x float> %b, <8 x float> %c)
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ret <8 x float> %3
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%t0 = insertelement <8 x float> undef, float %a, i32 0
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%t1 = fsub <8 x float> <float -0.0, float undef, float undef, float undef, float undef, float undef, float undef, float undef>, %t0
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%t2 = shufflevector <8 x float> %t1, <8 x float> undef, <8 x i32> zeroinitializer
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%t3 = tail call <8 x float> @llvm.fma.v8f32(<8 x float> %t2, <8 x float> %b, <8 x float> %c)
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ret <8 x float> %t3
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}
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define <8 x float> @test8(float %a, <8 x float> %b, <8 x float> %c) {
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; X32-LABEL: test8:
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; X32: # %bb.0: # %entry
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; X32: # %bb.0:
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; X32-NEXT: vbroadcastss {{[0-9]+}}(%esp), %ymm2
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; X32-NEXT: vfnmadd213ps {{.*#+}} ymm0 = -(ymm2 * ymm0) + ymm1
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; X32-NEXT: retl
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;
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; X64-LABEL: test8:
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; X64: # %bb.0: # %entry
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; X64: # %bb.0:
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; X64-NEXT: vbroadcastss %xmm0, %ymm0
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; X64-NEXT: vfnmadd213ps {{.*#+}} ymm0 = -(ymm1 * ymm0) + ymm2
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; X64-NEXT: retq
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entry:
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%0 = fsub float -0.0, %a
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%1 = insertelement <8 x float> undef, float %0, i32 0
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%2 = shufflevector <8 x float> %1, <8 x float> undef, <8 x i32> zeroinitializer
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%3 = tail call <8 x float> @llvm.fma.v8f32(<8 x float> %2, <8 x float> %b, <8 x float> %c)
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ret <8 x float> %3
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%t0 = fsub float -0.0, %a
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%t1 = insertelement <8 x float> undef, float %t0, i32 0
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%t2 = shufflevector <8 x float> %t1, <8 x float> undef, <8 x i32> zeroinitializer
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%t3 = tail call <8 x float> @llvm.fma.v8f32(<8 x float> %t2, <8 x float> %b, <8 x float> %c)
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ret <8 x float> %t3
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}
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declare <8 x float> @llvm.fma.v8f32(<8 x float> %a, <8 x float> %b, <8 x float> %c)
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