; NOTE: Assertions have been autogenerated by utils/update_test_checks.py UTC_ARGS: --version 2 ; RUN: opt -S -mtriple=amdgcn-amd-amdhsa -passes=amdgpu-simplifylib %s | FileCheck %s target datalayout = "e-p:64:64-p1:64:64-p2:32:32-p3:32:32-p4:64:64-p5:32:32-p6:32:32-p7:160:256:256:32-p8:128:128-i64:64-v16:16-v24:32-v32:32-v48:64-v96:128-v192:256-v256:256-v512:512-v1024:1024-v2048:2048-n32:64-S32-A5-G1-ni:7:8:9" declare float @_Z4fabsf(float) declare <2 x float> @_Z4fabsDv2_f(<2 x float>) declare <3 x float> @_Z4fabsDv3_f(<3 x float>) declare <4 x float> @_Z4fabsDv4_f(<4 x float>) declare <8 x float> @_Z4fabsDv8_f(<8 x float>) declare <16 x float> @_Z4fabsDv16_f(<16 x float>) declare double @_Z4fabsd(double) declare <2 x double> @_Z4fabsDv2_d(<2 x double>) declare <3 x double> @_Z4fabsDv3_d(<3 x double>) declare <4 x double> @_Z4fabsDv4_d(<4 x double>) declare <8 x double> @_Z4fabsDv8_d(<8 x double>) declare <16 x double> @_Z4fabsDv16_d(<16 x double>) declare half @_Z4fabsDh(half) declare <2 x half> @_Z4fabsDv2_Dh(<2 x half>) declare <3 x half> @_Z4fabsDv3_Dh(<3 x half>) declare <4 x half> @_Z4fabsDv4_Dh(<4 x half>) declare <8 x half> @_Z4fabsDv8_Dh(<8 x half>) declare <16 x half> @_Z4fabsDv16_Dh(<16 x half>) define float @test_fabs_f32(float %arg) { ; CHECK-LABEL: define float @test_fabs_f32 ; CHECK-SAME: (float [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call float @llvm.fabs.f32(float [[ARG]]) ; CHECK-NEXT: ret float [[FABS]] ; %fabs = tail call float @_Z4fabsf(float %arg) ret float %fabs } define <2 x float> @test_fabs_v2f32(<2 x float> %arg) { ; CHECK-LABEL: define <2 x float> @test_fabs_v2f32 ; CHECK-SAME: (<2 x float> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <2 x float> @llvm.fabs.v2f32(<2 x float> [[ARG]]) ; CHECK-NEXT: ret <2 x float> [[FABS]] ; %fabs = tail call <2 x float> @_Z4fabsDv2_f(<2 x float> %arg) ret <2 x float> %fabs } define <3 x float> @test_fabs_v3f32(<3 x float> %arg) { ; CHECK-LABEL: define <3 x float> @test_fabs_v3f32 ; CHECK-SAME: (<3 x float> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <3 x float> @llvm.fabs.v3f32(<3 x float> [[ARG]]) ; CHECK-NEXT: ret <3 x float> [[FABS]] ; %fabs = tail call <3 x float> @_Z4fabsDv3_f(<3 x float> %arg) ret <3 x float> %fabs } define <4 x float> @test_fabs_v4f32(<4 x float> %arg) { ; CHECK-LABEL: define <4 x float> @test_fabs_v4f32 ; CHECK-SAME: (<4 x float> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <4 x float> @llvm.fabs.v4f32(<4 x float> [[ARG]]) ; CHECK-NEXT: ret <4 x float> [[FABS]] ; %fabs = tail call <4 x float> @_Z4fabsDv4_f(<4 x float> %arg) ret <4 x float> %fabs } define <8 x float> @test_fabs_v8f32(<8 x float> %arg) { ; CHECK-LABEL: define <8 x float> @test_fabs_v8f32 ; CHECK-SAME: (<8 x float> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <8 x float> @llvm.fabs.v8f32(<8 x float> [[ARG]]) ; CHECK-NEXT: ret <8 x float> [[FABS]] ; %fabs = tail call <8 x float> @_Z4fabsDv8_f(<8 x float> %arg) ret <8 x float> %fabs } define <16 x float> @test_fabs_v16f32(<16 x float> %arg) { ; CHECK-LABEL: define <16 x float> @test_fabs_v16f32 ; CHECK-SAME: (<16 x float> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <16 x float> @llvm.fabs.v16f32(<16 x float> [[ARG]]) ; CHECK-NEXT: ret <16 x float> [[FABS]] ; %fabs = tail call <16 x float> @_Z4fabsDv16_f(<16 x float> %arg) ret <16 x float> %fabs } define double @test_fabs_f64(double %arg) { ; CHECK-LABEL: define double @test_fabs_f64 ; CHECK-SAME: (double [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call double @llvm.fabs.f64(double [[ARG]]) ; CHECK-NEXT: ret double [[FABS]] ; %fabs = tail call double @_Z4fabsd(double %arg) ret double %fabs } define <2 x double> @test_fabs_v2f64(<2 x double> %arg) { ; CHECK-LABEL: define <2 x double> @test_fabs_v2f64 ; CHECK-SAME: (<2 x double> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <2 x double> @llvm.fabs.v2f64(<2 x double> [[ARG]]) ; CHECK-NEXT: ret <2 x double> [[FABS]] ; %fabs = tail call <2 x double> @_Z4fabsDv2_d(<2 x double> %arg) ret <2 x double> %fabs } define <3 x double> @test_fabs_v3f64(<3 x double> %arg) { ; CHECK-LABEL: define <3 x double> @test_fabs_v3f64 ; CHECK-SAME: (<3 x double> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <3 x double> @llvm.fabs.v3f64(<3 x double> [[ARG]]) ; CHECK-NEXT: ret <3 x double> [[FABS]] ; %fabs = tail call <3 x double> @_Z4fabsDv3_d(<3 x double> %arg) ret <3 x double> %fabs } define <4 x double> @test_fabs_v4f64(<4 x double> %arg) { ; CHECK-LABEL: define <4 x double> @test_fabs_v4f64 ; CHECK-SAME: (<4 x double> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <4 x double> @llvm.fabs.v4f64(<4 x double> [[ARG]]) ; CHECK-NEXT: ret <4 x double> [[FABS]] ; %fabs = tail call <4 x double> @_Z4fabsDv4_d(<4 x double> %arg) ret <4 x double> %fabs } define <8 x double> @test_fabs_v8f64(<8 x double> %arg) { ; CHECK-LABEL: define <8 x double> @test_fabs_v8f64 ; CHECK-SAME: (<8 x double> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <8 x double> @llvm.fabs.v8f64(<8 x double> [[ARG]]) ; CHECK-NEXT: ret <8 x double> [[FABS]] ; %fabs = tail call <8 x double> @_Z4fabsDv8_d(<8 x double> %arg) ret <8 x double> %fabs } define <16 x double> @test_fabs_v16f64(<16 x double> %arg) { ; CHECK-LABEL: define <16 x double> @test_fabs_v16f64 ; CHECK-SAME: (<16 x double> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <16 x double> @llvm.fabs.v16f64(<16 x double> [[ARG]]) ; CHECK-NEXT: ret <16 x double> [[FABS]] ; %fabs = tail call <16 x double> @_Z4fabsDv16_d(<16 x double> %arg) ret <16 x double> %fabs } define half @test_fabs_f16(half %arg) { ; CHECK-LABEL: define half @test_fabs_f16 ; CHECK-SAME: (half [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call half @llvm.fabs.f16(half [[ARG]]) ; CHECK-NEXT: ret half [[FABS]] ; %fabs = tail call half @_Z4fabsDh(half %arg) ret half %fabs } define <2 x half> @test_fabs_v2f16(<2 x half> %arg) { ; CHECK-LABEL: define <2 x half> @test_fabs_v2f16 ; CHECK-SAME: (<2 x half> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <2 x half> @llvm.fabs.v2f16(<2 x half> [[ARG]]) ; CHECK-NEXT: ret <2 x half> [[FABS]] ; %fabs = tail call <2 x half> @_Z4fabsDv2_Dh(<2 x half> %arg) ret <2 x half> %fabs } define <3 x half> @test_fabs_v3f16(<3 x half> %arg) { ; CHECK-LABEL: define <3 x half> @test_fabs_v3f16 ; CHECK-SAME: (<3 x half> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <3 x half> @llvm.fabs.v3f16(<3 x half> [[ARG]]) ; CHECK-NEXT: ret <3 x half> [[FABS]] ; %fabs = tail call <3 x half> @_Z4fabsDv3_Dh(<3 x half> %arg) ret <3 x half> %fabs } define <4 x half> @test_fabs_v4f16(<4 x half> %arg) { ; CHECK-LABEL: define <4 x half> @test_fabs_v4f16 ; CHECK-SAME: (<4 x half> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <4 x half> @llvm.fabs.v4f16(<4 x half> [[ARG]]) ; CHECK-NEXT: ret <4 x half> [[FABS]] ; %fabs = tail call <4 x half> @_Z4fabsDv4_Dh(<4 x half> %arg) ret <4 x half> %fabs } define <8 x half> @test_fabs_v8f16(<8 x half> %arg) { ; CHECK-LABEL: define <8 x half> @test_fabs_v8f16 ; CHECK-SAME: (<8 x half> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <8 x half> @llvm.fabs.v8f16(<8 x half> [[ARG]]) ; CHECK-NEXT: ret <8 x half> [[FABS]] ; %fabs = tail call <8 x half> @_Z4fabsDv8_Dh(<8 x half> %arg) ret <8 x half> %fabs } define <16 x half> @test_fabs_v16f16(<16 x half> %arg) { ; CHECK-LABEL: define <16 x half> @test_fabs_v16f16 ; CHECK-SAME: (<16 x half> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <16 x half> @llvm.fabs.v16f16(<16 x half> [[ARG]]) ; CHECK-NEXT: ret <16 x half> [[FABS]] ; %fabs = tail call <16 x half> @_Z4fabsDv16_Dh(<16 x half> %arg) ret <16 x half> %fabs } define float @test_fabs_f32_nobuiltin_callsite(float %arg) { ; CHECK-LABEL: define float @test_fabs_f32_nobuiltin_callsite ; CHECK-SAME: (float [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call float @_Z4fabsf(float [[ARG]]) #[[ATTR4:[0-9]+]] ; CHECK-NEXT: ret float [[FABS]] ; %fabs = tail call float @_Z4fabsf(float %arg) #0 ret float %fabs } define <2 x float> @test_fabs_v2f32_nobuiltin_callsite(<2 x float> %arg) { ; CHECK-LABEL: define <2 x float> @test_fabs_v2f32_nobuiltin_callsite ; CHECK-SAME: (<2 x float> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call <2 x float> @_Z4fabsDv2_f(<2 x float> [[ARG]]) #[[ATTR4]] ; CHECK-NEXT: ret <2 x float> [[FABS]] ; %fabs = tail call <2 x float> @_Z4fabsDv2_f(<2 x float> %arg) #0 ret <2 x float> %fabs } ; "no-builtins" should be ignored define float @test_fabs_f32_nobuiltins(float %arg) #1 { ; CHECK-LABEL: define float @test_fabs_f32_nobuiltins ; CHECK-SAME: (float [[ARG:%.*]]) #[[ATTR0:[0-9]+]] { ; CHECK-NEXT: [[FABS:%.*]] = tail call float @_Z4fabsf(float [[ARG]]) #[[ATTR4]] ; CHECK-NEXT: ret float [[FABS]] ; %fabs = tail call float @_Z4fabsf(float %arg) #0 ret float %fabs } define <2 x float> @test_fabs_v2f32_nobuiltins(<2 x float> %arg) #1 { ; CHECK-LABEL: define <2 x float> @test_fabs_v2f32_nobuiltins ; CHECK-SAME: (<2 x float> [[ARG:%.*]]) #[[ATTR0]] { ; CHECK-NEXT: [[FABS:%.*]] = tail call <2 x float> @_Z4fabsDv2_f(<2 x float> [[ARG]]) #[[ATTR4]] ; CHECK-NEXT: ret <2 x float> [[FABS]] ; %fabs = tail call <2 x float> @_Z4fabsDv2_f(<2 x float> %arg) #0 ret <2 x float> %fabs } define float @test_fabs_f32_preserve_flags(float %arg) { ; CHECK-LABEL: define float @test_fabs_f32_preserve_flags ; CHECK-SAME: (float [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call nnan ninf float @llvm.fabs.f32(float [[ARG]]) ; CHECK-NEXT: ret float [[FABS]] ; %fabs = tail call nnan ninf float @_Z4fabsf(float %arg) ret float %fabs } define <2 x float> @test_fabs_v2f32_preserve_flags(<2 x float> %arg) { ; CHECK-LABEL: define <2 x float> @test_fabs_v2f32_preserve_flags ; CHECK-SAME: (<2 x float> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call nnan nsz contract <2 x float> @llvm.fabs.v2f32(<2 x float> [[ARG]]) ; CHECK-NEXT: ret <2 x float> [[FABS]] ; %fabs = tail call contract nsz nnan <2 x float> @_Z4fabsDv2_f(<2 x float> %arg) ret <2 x float> %fabs } define float @test_fabs_f32_preserve_flags_md(float %arg) { ; CHECK-LABEL: define float @test_fabs_f32_preserve_flags_md ; CHECK-SAME: (float [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call nnan ninf float @llvm.fabs.f32(float [[ARG]]), !foo !0 ; CHECK-NEXT: ret float [[FABS]] ; %fabs = tail call nnan ninf float @_Z4fabsf(float %arg), !foo !0 ret float %fabs } define <2 x float> @test_fabs_v2f32_preserve_flags_md(<2 x float> %arg) { ; CHECK-LABEL: define <2 x float> @test_fabs_v2f32_preserve_flags_md ; CHECK-SAME: (<2 x float> [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call nnan nsz contract <2 x float> @llvm.fabs.v2f32(<2 x float> [[ARG]]), !foo !0 ; CHECK-NEXT: ret <2 x float> [[FABS]] ; %fabs = tail call contract nsz nnan <2 x float> @_Z4fabsDv2_f(<2 x float> %arg), !foo !0 ret <2 x float> %fabs } ; Test the libm name, not a recognized opencl builtin. declare float @fabsf(float) #2 declare double @fabs(double) #2 define float @test_libm_fabs_f32(float %arg) { ; CHECK-LABEL: define float @test_libm_fabs_f32 ; CHECK-SAME: (float [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call float @fabsf(float [[ARG]]) ; CHECK-NEXT: ret float [[FABS]] ; %fabs = tail call float @fabsf(float %arg) ret float %fabs } define double @test_libm_fabs_f64(double %arg) { ; CHECK-LABEL: define double @test_libm_fabs_f64 ; CHECK-SAME: (double [[ARG:%.*]]) { ; CHECK-NEXT: [[FABS:%.*]] = tail call double @fabs(double [[ARG]]) ; CHECK-NEXT: ret double [[FABS]] ; %fabs = tail call double @fabs(double %arg) ret double %fabs } define float @test_fabs_f32_strictfp(float %arg) #3 { ; CHECK-LABEL: define float @test_fabs_f32_strictfp ; CHECK-SAME: (float [[ARG:%.*]]) #[[ATTR2:[0-9]+]] { ; CHECK-NEXT: [[FABS:%.*]] = tail call nnan float @llvm.fabs.f32(float [[ARG]]) #[[ATTR2]] ; CHECK-NEXT: ret float [[FABS]] ; %fabs = tail call nnan float @_Z4fabsf(float %arg) #3 ret float %fabs } attributes #0 = { nobuiltin } attributes #1 = { "no-builtins" } attributes #2 = { nounwind memory(none) } attributes #3 = { strictfp } !0 = !{i32 1234}