1 // RUN: %clang_cc1 -fmath-errno -emit-llvm -o - %s -triple i386-unknown-unknown | FileCheck -check-prefix YES %s 2 // RUN: %clang_cc1 -emit-llvm -o - %s -triple i386-unknown-unknown | FileCheck -check-prefix NO %s 3 4 // CHECK-YES: define void @test_sqrt 5 // CHECK-NO: define void @test_sqrt 6 void test_sqrt(float a0, double a1, long double a2) { 7 // Following llvm-gcc's lead, we never emit these as intrinsics; 8 // no-math-errno isn't good enough. We could probably use intrinsics 9 // with appropriate guards if it proves worthwhile. 10 11 // CHECK-YES: call float @sqrtf 12 // CHECK-NO: call float @sqrtf 13 float l0 = sqrtf(a0); 14 15 // CHECK-YES: call double @sqrt 16 // CHECK-NO: call double @sqrt 17 double l1 = sqrt(a1); 18 19 // CHECK-YES: call x86_fp80 @sqrtl 20 // CHECK-NO: call x86_fp80 @sqrtl 21 long double l2 = sqrtl(a2); 22 } 23 24 // CHECK-YES: declare float @sqrtf(float) 25 // CHECK-YES: declare double @sqrt(double) 26 // CHECK-YES: declare x86_fp80 @sqrtl(x86_fp80) 27 // CHECK-NO: declare float @sqrtf(float) nounwind readnone 28 // CHECK-NO: declare double @sqrt(double) nounwind readnone 29 // CHECK-NO: declare x86_fp80 @sqrtl(x86_fp80) nounwind readnone 30 31 // CHECK-YES: define void @test_pow 32 // CHECK-NO: define void @test_pow 33 void test_pow(float a0, double a1, long double a2) { 34 // CHECK-YES: call float @powf 35 // CHECK-NO: call float @llvm.pow.f32 36 float l0 = powf(a0, a0); 37 38 // CHECK-YES: call double @pow 39 // CHECK-NO: call double @llvm.pow.f64 40 double l1 = pow(a1, a1); 41 42 // CHECK-YES: call x86_fp80 @powl 43 // CHECK-NO: call x86_fp80 @llvm.pow.f80 44 long double l2 = powl(a2, a2); 45 } 46 47 // CHECK-YES: declare float @powf(float, float) 48 // CHECK-YES: declare double @pow(double, double) 49 // CHECK-YES: declare x86_fp80 @powl(x86_fp80, x86_fp80) 50 // CHECK-NO: declare float @llvm.pow.f32(float, float) nounwind readonly 51 // CHECK-NO: declare double @llvm.pow.f64(double, double) nounwind readonly 52 // CHECK-NO: declare x86_fp80 @llvm.pow.f80(x86_fp80, x86_fp80) nounwind readonly 53 54 // CHECK-YES: define void @test_fma 55 // CHECK-NO: define void @test_fma 56 void test_fma(float a0, double a1, long double a2) { 57 // CHECK-YES: call float @llvm.fma.f32 58 // CHECK-NO: call float @llvm.fma.f32 59 float l0 = fmaf(a0, a0, a0); 60 61 // CHECK-YES: call double @llvm.fma.f64 62 // CHECK-NO: call double @llvm.fma.f64 63 double l1 = fma(a1, a1, a1); 64 65 // CHECK-YES: call x86_fp80 @llvm.fma.f80 66 // CHECK-NO: call x86_fp80 @llvm.fma.f80 67 long double l2 = fmal(a2, a2, a2); 68 } 69 70 // CHECK-YES: declare float @llvm.fma.f32(float, float, float) nounwind readnone 71 // CHECK-YES: declare double @llvm.fma.f64(double, double, double) nounwind readnone 72 // CHECK-YES: declare x86_fp80 @llvm.fma.f80(x86_fp80, x86_fp80, x86_fp80) nounwind readnone 73 // CHECK-NO: declare float @llvm.fma.f32(float, float, float) nounwind readnone 74 // CHECK-NO: declare double @llvm.fma.f64(double, double, double) nounwind readnone 75 // CHECK-NO: declare x86_fp80 @llvm.fma.f80(x86_fp80, x86_fp80, x86_fp80) nounwind readnone 76