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https://github.com/c64scene-ar/llvm-6502.git
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5ee67e8e76
PowerPC has a conditional branch to the link register (return) instruction: BCLR. This should be used any time when we'd otherwise have a conditional branch to a return. This adds a small pass, PPCEarlyReturn, which runs just prior to the branch selection pass (and, importantly, after block placement) to generate these conditional returns when possible. It will also eliminate unconditional branches to returns (these happen rarely; most of the time these have already been tail duplicated by the time PPCEarlyReturn is invoked). This is a nice optimization for small functions that do not maintain a stack frame. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@179026 91177308-0d34-0410-b5e6-96231b3b80d8
148 lines
3.3 KiB
LLVM
148 lines
3.3 KiB
LLVM
; RUN: llc < %s -mtriple=powerpc64-unknown-linux-gnu -mcpu=pwr7 | FileCheck %s
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; RUN: llc < %s -mtriple=powerpc64-unknown-linux-gnu -mcpu=pwr7 -enable-unsafe-fp-math | FileCheck -check-prefix=CHECK-FM %s
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target datalayout = "E-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:64:64-f32:32:32-f64:64:64-f128:128:128-v128:128:128-n32:64"
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target triple = "powerpc64-unknown-linux-gnu"
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define float @test1(float %x) nounwind {
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%call = tail call float @floorf(float %x) nounwind readnone
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ret float %call
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; CHECK: test1:
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; CHECK: frim 1, 1
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; CHECK-FM: test1:
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; CHECK-FM: frim 1, 1
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}
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declare float @floorf(float) nounwind readnone
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define double @test2(double %x) nounwind {
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%call = tail call double @floor(double %x) nounwind readnone
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ret double %call
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; CHECK: test2:
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; CHECK: frim 1, 1
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; CHECK-FM: test2:
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; CHECK-FM: frim 1, 1
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}
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declare double @floor(double) nounwind readnone
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define float @test3(float %x) nounwind {
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%call = tail call float @nearbyintf(float %x) nounwind readnone
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ret float %call
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; CHECK: test3:
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; CHECK-NOT: frin
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; CHECK-FM: test3:
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; CHECK-FM: frin 1, 1
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}
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declare float @nearbyintf(float) nounwind readnone
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define double @test4(double %x) nounwind {
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%call = tail call double @nearbyint(double %x) nounwind readnone
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ret double %call
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; CHECK: test4:
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; CHECK-NOT: frin
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; CHECK-FM: test4:
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; CHECK-FM: frin 1, 1
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}
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declare double @nearbyint(double) nounwind readnone
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define float @test5(float %x) nounwind {
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%call = tail call float @ceilf(float %x) nounwind readnone
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ret float %call
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; CHECK: test5:
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; CHECK: frip 1, 1
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; CHECK-FM: test5:
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; CHECK-FM: frip 1, 1
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}
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declare float @ceilf(float) nounwind readnone
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define double @test6(double %x) nounwind {
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%call = tail call double @ceil(double %x) nounwind readnone
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ret double %call
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; CHECK: test6:
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; CHECK: frip 1, 1
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; CHECK-FM: test6:
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; CHECK-FM: frip 1, 1
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}
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declare double @ceil(double) nounwind readnone
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define float @test9(float %x) nounwind {
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%call = tail call float @truncf(float %x) nounwind readnone
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ret float %call
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; CHECK: test9:
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; CHECK: friz 1, 1
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; CHECK-FM: test9:
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; CHECK-FM: friz 1, 1
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}
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declare float @truncf(float) nounwind readnone
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define double @test10(double %x) nounwind {
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%call = tail call double @trunc(double %x) nounwind readnone
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ret double %call
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; CHECK: test10:
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; CHECK: friz 1, 1
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; CHECK-FM: test10:
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; CHECK-FM: friz 1, 1
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}
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declare double @trunc(double) nounwind readnone
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define void @test11(float %x, float* %y) nounwind {
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%call = tail call float @rintf(float %x) nounwind readnone
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store float %call, float* %y
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ret void
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; CHECK: test11:
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; CHECK-NOT: frin
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; CHECK-FM: test11:
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; CHECK-FM: frin [[R2:[0-9]+]], [[R1:[0-9]+]]
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; CHECK-FM: fcmpu [[CR:[0-9]+]], [[R2]], [[R1]]
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; CHECK-FM: beq [[CR]], .LBB[[BB:[0-9]+]]_2
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; CHECK-FM: mtfsb1 6
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; CHECK-FM: .LBB[[BB]]_2:
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; CHECK-FM: blr
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}
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declare float @rintf(float) nounwind readnone
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define void @test12(double %x, double* %y) nounwind {
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%call = tail call double @rint(double %x) nounwind readnone
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store double %call, double* %y
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ret void
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; CHECK: test12:
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; CHECK-NOT: frin
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; CHECK-FM: test12:
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; CHECK-FM: frin [[R2:[0-9]+]], [[R1:[0-9]+]]
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; CHECK-FM: fcmpu [[CR:[0-9]+]], [[R2]], [[R1]]
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; CHECK-FM: beq [[CR]], .LBB[[BB:[0-9]+]]_2
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; CHECK-FM: mtfsb1 6
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; CHECK-FM: .LBB[[BB]]_2:
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; CHECK-FM: blr
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}
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declare double @rint(double) nounwind readnone
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