forked from OSchip/llvm-project
57 lines
1.4 KiB
LLVM
57 lines
1.4 KiB
LLVM
; RUN: llc < %s -march=ptx32 -mattr=+ptx20 | FileCheck %s
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define ptx_device float @test_sqrt_f32(float %x) {
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entry:
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; CHECK: sqrt.rn.f32 %ret{{[0-9]+}}, %f{{[0-9]+}};
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; CHECK: ret;
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%y = call float @llvm.sqrt.f32(float %x)
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ret float %y
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}
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define ptx_device double @test_sqrt_f64(double %x) {
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entry:
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; CHECK: sqrt.rn.f64 %ret{{[0-9]+}}, %fd{{[0-9]+}};
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; CHECK: ret;
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%y = call double @llvm.sqrt.f64(double %x)
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ret double %y
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}
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define ptx_device float @test_sin_f32(float %x) {
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entry:
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; CHECK: sin.approx.f32 %ret{{[0-9]+}}, %f{{[0-9]+}};
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; CHECK: ret;
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%y = call float @llvm.sin.f32(float %x)
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ret float %y
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}
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define ptx_device double @test_sin_f64(double %x) {
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entry:
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; CHECK: sin.approx.f64 %ret{{[0-9]+}}, %fd{{[0-9]+}};
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; CHECK: ret;
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%y = call double @llvm.sin.f64(double %x)
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ret double %y
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}
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define ptx_device float @test_cos_f32(float %x) {
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entry:
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; CHECK: cos.approx.f32 %ret{{[0-9]+}}, %f{{[0-9]+}};
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; CHECK: ret;
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%y = call float @llvm.cos.f32(float %x)
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ret float %y
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}
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define ptx_device double @test_cos_f64(double %x) {
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entry:
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; CHECK: cos.approx.f64 %ret{{[0-9]+}}, %fd{{[0-9]+}};
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; CHECK: ret;
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%y = call double @llvm.cos.f64(double %x)
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ret double %y
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}
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declare float @llvm.sqrt.f32(float)
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declare double @llvm.sqrt.f64(double)
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declare float @llvm.sin.f32(float)
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declare double @llvm.sin.f64(double)
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declare float @llvm.cos.f32(float)
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declare double @llvm.cos.f64(double)
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