forked from OSchip/llvm-project
WebAssembly: add basic floating-point tests
Summary: I somehow forgot to add these when I added the basic floating-point opcodes. Also remove ceil/floor/trunc/nearestint for now, and add them only when properly tested. Subscribers: llvm-commits, sunfish, jfb Differential Revision: http://reviews.llvm.org/D11927 llvm-svn: 244562
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@ -19,10 +19,14 @@ defm FDIV : BinaryFP<fdiv>;
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defm FABS : UnaryFP<fabs>;
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defm FNEG : UnaryFP<fneg>;
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defm COPYSIGN : BinaryFP<fcopysign>;
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defm CEIL : UnaryFP<fceil>;
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defm FLOOR : UnaryFP<ffloor>;
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defm TRUNC : UnaryFP<ftrunc>;
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defm NEARESTINT : UnaryFP<fnearbyint>;
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/*
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* TODO(jfb): add and test these:
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* defm CEIL : UnaryFP<fceil>;
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* defm FLOOR : UnaryFP<ffloor>;
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* defm TRUNC : UnaryFP<ftrunc>;
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* defm NEARESTINT : UnaryFP<fnearbyint>;
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*/
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/*
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* TODO(jfb): Add the following for 32-bit and 64-bit.
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@ -0,0 +1,69 @@
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; RUN: llc < %s -asm-verbose=false | FileCheck %s
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; Test that basic 32-bit floating-point operations assemble as expected.
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target datalayout = "e-p:32:32-i64:64-v128:8:128-n32:64-S128"
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target triple = "wasm32-unknown-unknown"
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declare float @llvm.fabs.f32(float)
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declare float @llvm.copysign.f32(float, float)
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declare float @llvm.sqrt.f32(float)
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; CHECK-LABEL: fadd32:
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; CHECK-NEXT: (setlocal @0 (argument 1))
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; CHECK-NEXT: (setlocal @1 (argument 0))
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; CHECK-NEXT: (setlocal @2 (fadd @1 @0))
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; CHECK-NEXT: (return @2)
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define float @fadd32(float %x, float %y) {
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%a = fadd float %x, %y
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ret float %a
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}
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; CHECK-LABEL: fsub32:
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; CHECK: (setlocal @2 (fsub @1 @0))
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define float @fsub32(float %x, float %y) {
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%a = fsub float %x, %y
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ret float %a
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}
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; CHECK-LABEL: fmul32:
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; CHECK: (setlocal @2 (fmul @1 @0))
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define float @fmul32(float %x, float %y) {
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%a = fmul float %x, %y
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ret float %a
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}
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; CHECK-LABEL: fdiv32:
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; CHECK: (setlocal @2 (fdiv @1 @0))
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define float @fdiv32(float %x, float %y) {
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%a = fdiv float %x, %y
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ret float %a
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}
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; CHECK-LABEL: fabs32:
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; CHECK: (setlocal @1 (fabs @0))
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define float @fabs32(float %x) {
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%a = call float @llvm.fabs.f32(float %x)
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ret float %a
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}
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; CHECK-LABEL: fneg32:
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; CHECK: (setlocal @1 (fneg @0))
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define float @fneg32(float %x) {
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%a = fsub float -0., %x
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ret float %a
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}
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; CHECK-LABEL: copysign32:
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; CHECK: (setlocal @2 (copysign @1 @0))
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define float @copysign32(float %x, float %y) {
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%a = call float @llvm.copysign.f32(float %x, float %y)
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ret float %a
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}
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; CHECK-LABEL: sqrt32:
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; CHECK: (setlocal @1 (sqrt @0))
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define float @sqrt32(float %x) {
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%a = call float @llvm.sqrt.f32(float %x)
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ret float %a
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}
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@ -0,0 +1,69 @@
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; RUN: llc < %s -asm-verbose=false | FileCheck %s
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; Test that basic 64-bit floating-point operations assemble as expected.
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target datalayout = "e-p:32:32-i64:64-v128:8:128-n32:64-S128"
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target triple = "wasm32-unknown-unknown"
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declare double @llvm.fabs.f64(double)
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declare double @llvm.copysign.f64(double, double)
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declare double @llvm.sqrt.f64(double)
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; CHECK-LABEL: fadd64:
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; CHECK-NEXT: (setlocal @0 (argument 1))
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; CHECK-NEXT: (setlocal @1 (argument 0))
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; CHECK-NEXT: (setlocal @2 (fadd @1 @0))
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; CHECK-NEXT: (return @2)
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define double @fadd64(double %x, double %y) {
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%a = fadd double %x, %y
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ret double %a
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}
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; CHECK-LABEL: fsub64:
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; CHECK: (setlocal @2 (fsub @1 @0))
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define double @fsub64(double %x, double %y) {
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%a = fsub double %x, %y
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ret double %a
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}
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; CHECK-LABEL: fmul64:
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; CHECK: (setlocal @2 (fmul @1 @0))
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define double @fmul64(double %x, double %y) {
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%a = fmul double %x, %y
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ret double %a
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}
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; CHECK-LABEL: fdiv64:
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; CHECK: (setlocal @2 (fdiv @1 @0))
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define double @fdiv64(double %x, double %y) {
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%a = fdiv double %x, %y
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ret double %a
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}
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; CHECK-LABEL: fabs64:
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; CHECK: (setlocal @1 (fabs @0))
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define double @fabs64(double %x) {
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%a = call double @llvm.fabs.f64(double %x)
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ret double %a
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}
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; CHECK-LABEL: fneg64:
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; CHECK: (setlocal @1 (fneg @0))
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define double @fneg64(double %x) {
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%a = fsub double -0., %x
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ret double %a
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}
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; CHECK-LABEL: copysign64:
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; CHECK: (setlocal @2 (copysign @1 @0))
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define double @copysign64(double %x, double %y) {
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%a = call double @llvm.copysign.f64(double %x, double %y)
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ret double %a
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}
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; CHECK-LABEL: sqrt64:
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; CHECK: (setlocal @1 (sqrt @0))
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define double @sqrt64(double %x) {
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%a = call double @llvm.sqrt.f64(double %x)
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ret double %a
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}
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