diff --git a/llvm/test/Analysis/CostModel/RISCV/sqrt.ll b/llvm/test/Analysis/CostModel/RISCV/sqrt.ll new file mode 100644 index 00000000000000..9722910224cf49 --- /dev/null +++ b/llvm/test/Analysis/CostModel/RISCV/sqrt.ll @@ -0,0 +1,64 @@ +; NOTE: Assertions have been autogenerated by utils/update_analyze_test_checks.py +; RUN: opt < %s -passes="print" 2>&1 -disable-output -S -mtriple=riscv64 -mattr=+v,+f,+d -riscv-v-vector-bits-min=-1 | FileCheck %s + +define void @sqrt() { +; CHECK-LABEL: 'sqrt' +; CHECK-NEXT: Cost Model: Found an estimated cost of 1 for instruction: %1 = call float @llvm.sqrt.f32(float undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 2 for instruction: %2 = call <2 x float> @llvm.sqrt.v2f32(<2 x float> undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 2 for instruction: %3 = call <4 x float> @llvm.sqrt.v4f32(<4 x float> undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 2 for instruction: %4 = call <8 x float> @llvm.sqrt.v8f32(<8 x float> undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 2 for instruction: %5 = call <16 x float> @llvm.sqrt.v16f32(<16 x float> undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 1 for instruction: %6 = call @llvm.sqrt.nxv2f32( undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 1 for instruction: %7 = call @llvm.sqrt.nxv4f32( undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 1 for instruction: %8 = call @llvm.sqrt.nxv8f32( undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 1 for instruction: %9 = call @llvm.sqrt.nxv16f32( undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 1 for instruction: %10 = call double @llvm.sqrt.f64(double undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 2 for instruction: %11 = call <2 x double> @llvm.sqrt.v2f64(<2 x double> undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 2 for instruction: %12 = call <4 x double> @llvm.sqrt.v4f64(<4 x double> undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 2 for instruction: %13 = call <8 x double> @llvm.sqrt.v8f64(<8 x double> undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 2 for instruction: %14 = call <16 x double> @llvm.sqrt.v16f64(<16 x double> undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 1 for instruction: %15 = call @llvm.sqrt.nxv1f64( undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 1 for instruction: %16 = call @llvm.sqrt.nxv2f64( undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 1 for instruction: %17 = call @llvm.sqrt.nxv4f64( undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 1 for instruction: %18 = call @llvm.sqrt.nxv8f64( undef) +; CHECK-NEXT: Cost Model: Found an estimated cost of 1 for instruction: ret void +; + call float @llvm.sqrt.f32(float undef) + call <2 x float> @llvm.sqrt.v2f32(<2 x float> undef) + call <4 x float> @llvm.sqrt.v4f32(<4 x float> undef) + call <8 x float> @llvm.sqrt.v8f32(<8 x float> undef) + call <16 x float> @llvm.sqrt.v16f32(<16 x float> undef) + call @llvm.sqrt.nvx2f32( undef) + call @llvm.sqrt.nvx4f32( undef) + call @llvm.sqrt.nvx8f32( undef) + call @llvm.sqrt.nvx16f32( undef) + call double @llvm.sqrt.f64(double undef) + call <2 x double> @llvm.sqrt.v2f64(<2 x double> undef) + call <4 x double> @llvm.sqrt.v4f64(<4 x double> undef) + call <8 x double> @llvm.sqrt.v8f64(<8 x double> undef) + call <16 x double> @llvm.sqrt.v16f64(<16 x double> undef) + call @llvm.sqrt.nvx1f64( undef) + call @llvm.sqrt.nvx2f64( undef) + call @llvm.sqrt.nvx4f64( undef) + call @llvm.sqrt.nvx8f64( undef) + ret void +} + +declare float @llvm.sqrt.f32(float) +declare <2 x float> @llvm.sqrt.v2f32(<2 x float>) +declare <4 x float> @llvm.sqrt.v4f32(<4 x float>) +declare <8 x float> @llvm.sqrt.v8f32(<8 x float>) +declare <16 x float> @llvm.sqrt.v16f32(<16 x float>) +declare @llvm.sqrt.nvx2f32() +declare @llvm.sqrt.nvx4f32() +declare @llvm.sqrt.nvx8f32() +declare @llvm.sqrt.nvx16f32() +declare double @llvm.sqrt.f64(double) +declare <2 x double> @llvm.sqrt.v2f64(<2 x double>) +declare <4 x double> @llvm.sqrt.v4f64(<4 x double>) +declare <8 x double> @llvm.sqrt.v8f64(<8 x double>) +declare <16 x double> @llvm.sqrt.v16f64(<16 x double>) +declare @llvm.sqrt.nvx1f64() +declare @llvm.sqrt.nvx2f64() +declare @llvm.sqrt.nvx4f64() +declare @llvm.sqrt.nvx8f64()