forked from OSchip/llvm-project
150 lines
4.3 KiB
LLVM
150 lines
4.3 KiB
LLVM
; RUN: llc < %s -mtriple=x86_64-apple-macosx10.9.0 -mcpu=core2 | FileCheck %s --check-prefix=OSX_SINCOS
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; RUN: llc < %s -mtriple=x86_64-apple-macosx10.8.0 -mcpu=core2 | FileCheck %s --check-prefix=OSX_NOOPT
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; RUN: llc < %s -mtriple=x86_64-pc-linux-gnu -mcpu=core2 | FileCheck %s --check-prefix=GNU_SINCOS
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; RUN: llc < %s -mtriple=x86_64-pc-linux-gnu -mcpu=core2 -enable-unsafe-fp-math | FileCheck %s --check-prefix=GNU_SINCOS_FASTMATH
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; RUN: llc < %s -mtriple=x86_64-pc-linux-gnux32 -mcpu=core2 -enable-unsafe-fp-math | FileCheck %s --check-prefix=GNU_SINCOS_FASTMATH
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; Combine sin / cos into a single call unless they may write errno (as
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; captured by readnone attrbiute, controlled by clang -fmath-errno
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; setting).
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; rdar://13087969
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; rdar://13599493
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define float @test1(float %x) nounwind {
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entry:
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; GNU_SINCOS-LABEL: test1:
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; GNU_SINCOS: callq sincosf
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; GNU_SINCOS: movss 4(%rsp), %xmm0
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; GNU_SINCOS: addss (%rsp), %xmm0
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; GNU_SINCOS_FASTMATH-LABEL: test1:
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; GNU_SINCOS_FASTMATH: callq sincosf
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; GNU_SINCOS_FASTMATH: movss 4(%{{[re]}}sp), %xmm0
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; GNU_SINCOS_FASTMATH: addss (%{{[re]}}sp), %xmm0
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; OSX_SINCOS-LABEL: test1:
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; OSX_SINCOS: callq ___sincosf_stret
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; OSX_SINCOS: movshdup {{.*}} xmm1 = xmm0[1,1,3,3]
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; OSX_SINCOS: addss %xmm1, %xmm0
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; OSX_NOOPT-LABEL: test1:
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; OSX_NOOPT: callq _sinf
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; OSX_NOOPT: callq _cosf
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%call = tail call float @sinf(float %x) readnone
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%call1 = tail call float @cosf(float %x) readnone
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%add = fadd float %call, %call1
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ret float %add
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}
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define float @test1_errno(float %x) nounwind {
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entry:
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; GNU_SINCOS-LABEL: test1_errno:
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; GNU_SINCOS: callq sinf
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; GNU_SINCOS: callq cosf
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; GNU_SINCOS_FASTMATH-LABEL: test1_errno:
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; GNU_SINCOS_FASTMATH: callq sinf
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; GNU_SINCOS_FASTMATH: callq cosf
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; OSX_SINCOS-LABEL: test1_errno:
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; OSX_SINCOS: callq _sinf
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; OSX_SINCOS: callq _cosf
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; OSX_NOOPT-LABEL: test1_errno:
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; OSX_NOOPT: callq _sinf
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; OSX_NOOPT: callq _cosf
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%call = tail call float @sinf(float %x)
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%call1 = tail call float @cosf(float %x)
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%add = fadd float %call, %call1
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ret float %add
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}
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define double @test2(double %x) nounwind {
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entry:
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; GNU_SINCOS-LABEL: test2:
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; GNU_SINCOS: callq sincos
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; GNU_SINCOS: movsd 16(%rsp), %xmm0
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; GNU_SINCOS: addsd 8(%rsp), %xmm0
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; GNU_SINCOS_FASTMATH-LABEL: test2:
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; GNU_SINCOS_FASTMATH: callq sincos
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; GNU_SINCOS_FASTMATH: movsd 16(%{{[re]}}sp), %xmm0
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; GNU_SINCOS_FASTMATH: addsd 8(%{{[re]}}sp), %xmm0
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; OSX_SINCOS-LABEL: test2:
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; OSX_SINCOS: callq ___sincos_stret
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; OSX_SINCOS: addsd %xmm1, %xmm0
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; OSX_NOOPT-LABEL: test2:
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; OSX_NOOPT: callq _sin
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; OSX_NOOPT: callq _cos
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%call = tail call double @sin(double %x) readnone
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%call1 = tail call double @cos(double %x) readnone
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%add = fadd double %call, %call1
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ret double %add
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}
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define double @test2_errno(double %x) nounwind {
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entry:
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; GNU_SINCOS-LABEL: test2_errno:
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; GNU_SINCOS: callq sin
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; GNU_SINCOS: callq cos
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; GNU_SINCOS_FASTMATH-LABEL: test2_errno:
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; GNU_SINCOS_FASTMATH: callq sin
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; GNU_SINCOS_FASTMATH: callq cos
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; OSX_SINCOS-LABEL: test2_errno:
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; OSX_SINCOS: callq _sin
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; OSX_SINCOS: callq _cos
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; OSX_NOOPT-LABEL: test2_errno:
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; OSX_NOOPT: callq _sin
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; OSX_NOOPT: callq _cos
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%call = tail call double @sin(double %x)
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%call1 = tail call double @cos(double %x)
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%add = fadd double %call, %call1
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ret double %add
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}
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define x86_fp80 @test3(x86_fp80 %x) nounwind {
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entry:
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; GNU_SINCOS-LABEL: test3:
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; GNU_SINCOS: callq sincosl
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; GNU_SINCOS: fldt 16(%rsp)
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; GNU_SINCOS: fldt 32(%rsp)
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; GNU_SINCOS: faddp %st(1)
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; GNU_SINCOS_FASTMATH-LABEL: test3:
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; GNU_SINCOS_FASTMATH: fsin
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; GNU_SINCOS_FASTMATH: fcos
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; GNU_SINCOS_FASTMATH: faddp %st(1)
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; GNU_SINCOS_FASTMATH: ret
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%call = tail call x86_fp80 @sinl(x86_fp80 %x) readnone
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%call1 = tail call x86_fp80 @cosl(x86_fp80 %x) readnone
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%add = fadd x86_fp80 %call, %call1
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ret x86_fp80 %add
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}
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define x86_fp80 @test3_errno(x86_fp80 %x) nounwind {
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entry:
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; GNU_SINCOS-LABEL: test3_errno:
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; GNU_SINCOS: callq sinl
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; GNU_SINCOS: callq cosl
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; GNU_SINCOS_FASTMATH-LABEL: test3_errno:
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; GNU_SINCOS_FASTMATH: callq sinl
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; GNU_SINCOS_FASTMATH: callq cosl
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%call = tail call x86_fp80 @sinl(x86_fp80 %x)
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%call1 = tail call x86_fp80 @cosl(x86_fp80 %x)
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%add = fadd x86_fp80 %call, %call1
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ret x86_fp80 %add
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}
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declare float @sinf(float)
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declare double @sin(double)
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declare float @cosf(float)
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declare double @cos(double)
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declare x86_fp80 @sinl(x86_fp80)
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declare x86_fp80 @cosl(x86_fp80)
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