llvm/test/Transforms/InstCombine/pow-4.ll
Sanjay Patel a9c8e55a04 [LibCallSimplifier] use instruction-level fast-math-flags to transform pow(x, [small integer]) calls
This is a continuation of adding FMF to call instructions:
http://reviews.llvm.org/rL255555

As with D15937, the intent of the patch is to preserve the current behavior of the transform
except that we use the pow call's 'fast' attribute as a trigger rather than a function-level
attribute.

The TODO comment notes a potential follow-on patch that would propagate FMF to the new
instructions.

Differential Revision: http://reviews.llvm.org/D16122



git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@258153 91177308-0d34-0410-b5e6-96231b3b80d8
2016-01-19 18:15:12 +00:00

120 lines
3.5 KiB
LLVM

; Test that the pow library call simplifier works correctly.
; RUN: opt -instcombine -S < %s | FileCheck %s
; Function Attrs: nounwind readnone
declare double @llvm.pow.f64(double, double)
declare float @llvm.pow.f32(float, float)
; pow(x, 4.0f)
define float @test_simplify_4f(float %x) {
; CHECK-LABEL: @test_simplify_4f(
; CHECK-NOT: pow
; CHECK-NEXT: %1 = fmul float %x, %x
; CHECK-NEXT: %2 = fmul float %1, %1
; CHECK-NEXT: ret float %2
%1 = call fast float @llvm.pow.f32(float %x, float 4.000000e+00)
ret float %1
}
; pow(x, 3.0)
define double @test_simplify_3(double %x) {
; CHECK-LABEL: @test_simplify_3(
; CHECK-NOT: pow
; CHECK-NEXT: %1 = fmul double %x, %x
; CHECK-NEXT: %2 = fmul double %1, %x
; CHECK-NEXT: ret double %2
%1 = call fast double @llvm.pow.f64(double %x, double 3.000000e+00)
ret double %1
}
; pow(x, 4.0)
define double @test_simplify_4(double %x) {
; CHECK-LABEL: @test_simplify_4(
; CHECK-NOT: pow
; CHECK-NEXT: %1 = fmul double %x, %x
; CHECK-NEXT: %2 = fmul double %1, %1
; CHECK-NEXT: ret double %2
%1 = call fast double @llvm.pow.f64(double %x, double 4.000000e+00)
ret double %1
}
; pow(x, 15.0)
define double @test_simplify_15(double %x) {
; CHECK-LABEL: @test_simplify_15(
; CHECK-NOT: pow
; CHECK-NEXT: %1 = fmul double %x, %x
; CHECK-NEXT: %2 = fmul double %1, %x
; CHECK-NEXT: %3 = fmul double %2, %2
; CHECK-NEXT: %4 = fmul double %3, %3
; CHECK-NEXT: %5 = fmul double %2, %4
; CHECK-NEXT: ret double %5
%1 = call fast double @llvm.pow.f64(double %x, double 1.500000e+01)
ret double %1
}
; pow(x, -7.0)
define double @test_simplify_neg_7(double %x) {
; CHECK-LABEL: @test_simplify_neg_7(
; CHECK-NOT: pow
; CHECK-NEXT: %1 = fmul double %x, %x
; CHECK-NEXT: %2 = fmul double %1, %x
; CHECK-NEXT: %3 = fmul double %1, %2
; CHECK-NEXT: %4 = fmul double %1, %3
; CHECK-NEXT: %5 = fdiv double 1.000000e+00, %4
; CHECK-NEXT: ret double %5
%1 = call fast double @llvm.pow.f64(double %x, double -7.000000e+00)
ret double %1
}
; pow(x, -19.0)
define double @test_simplify_neg_19(double %x) {
; CHECK-LABEL: @test_simplify_neg_19(
; CHECK-NOT: pow
; CHECK-NEXT: %1 = fmul double %x, %x
; CHECK-NEXT: %2 = fmul double %1, %1
; CHECK-NEXT: %3 = fmul double %2, %2
; CHECK-NEXT: %4 = fmul double %3, %3
; CHECK-NEXT: %5 = fmul double %1, %4
; CHECK-NEXT: %6 = fmul double %5, %x
; CHECK-NEXT: %7 = fdiv double 1.000000e+00, %6
; CHECK-NEXT: ret double %7
%1 = call fast double @llvm.pow.f64(double %x, double -1.900000e+01)
ret double %1
}
; pow(x, 11.23)
define double @test_simplify_11_23(double %x) {
; CHECK-LABEL: @test_simplify_11_23(
; CHECK-NOT: fmul
; CHECK-NEXT: %1 = call fast double @llvm.pow.f64(double %x, double 1.123000e+01)
; CHECK-NEXT: ret double %1
%1 = call fast double @llvm.pow.f64(double %x, double 1.123000e+01)
ret double %1
}
; pow(x, 32.0)
define double @test_simplify_32(double %x) {
; CHECK-LABEL: @test_simplify_32(
; CHECK-NOT: pow
; CHECK-NEXT: %1 = fmul double %x, %x
; CHECK-NEXT: %2 = fmul double %1, %1
; CHECK-NEXT: %3 = fmul double %2, %2
; CHECK-NEXT: %4 = fmul double %3, %3
; CHECK-NEXT: %5 = fmul double %4, %4
; CHECK-NEXT: ret double %5
%1 = call fast double @llvm.pow.f64(double %x, double 3.200000e+01)
ret double %1
}
; pow(x, 33.0)
define double @test_simplify_33(double %x) {
; CHECK-LABEL: @test_simplify_33(
; CHECK-NOT: fmul
; CHECK-NEXT: %1 = call fast double @llvm.pow.f64(double %x, double 3.300000e+01)
; CHECK-NEXT: ret double %1
%1 = call fast double @llvm.pow.f64(double %x, double 3.300000e+01)
ret double %1
}