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https://github.com/RPCS3/llvm-mirror.git
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a59eb7c09c
what it does. Enhance it to return false to optimizing vector sign extensions from vector comparisions, which is the idiom used to get a splatted vector for a vector comparison. Doing this breaks vector-casts.ll, add some compensating transformations to handle the important case they cover without depending on this canonicalization. This fixes rdar://7434900 a serious pessimization of vector compares. llvm-svn: 95855
124 lines
3.4 KiB
LLVM
124 lines
3.4 KiB
LLVM
; RUN: opt < %s -instcombine -S | FileCheck %s
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; This turns into a&1 != 0
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define <2 x i1> @test1(<2 x i64> %a) {
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%t = trunc <2 x i64> %a to <2 x i1>
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ret <2 x i1> %t
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; CHECK: @test1
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; CHECK: and <2 x i64> %a, <i64 1, i64 1>
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; CHECK: icmp ne <2 x i64> %tmp, zeroinitializer
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}
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; The ashr turns into an lshr.
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define <2 x i64> @test2(<2 x i64> %a) {
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%b = and <2 x i64> %a, <i64 65535, i64 65535>
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%t = ashr <2 x i64> %b, <i64 1, i64 1>
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ret <2 x i64> %t
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; CHECK: @test2
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; CHECK: and <2 x i64> %a, <i64 65535, i64 65535>
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; CHECK: lshr <2 x i64> %b, <i64 1, i64 1>
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}
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define <2 x i64> @test3(<4 x float> %a, <4 x float> %b) nounwind readnone {
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entry:
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%cmp = fcmp ord <4 x float> %a, zeroinitializer
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%sext = sext <4 x i1> %cmp to <4 x i32>
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%cmp4 = fcmp ord <4 x float> %b, zeroinitializer
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%sext5 = sext <4 x i1> %cmp4 to <4 x i32>
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%and = and <4 x i32> %sext, %sext5
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%conv = bitcast <4 x i32> %and to <2 x i64>
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ret <2 x i64> %conv
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; CHECK: @test3
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; CHECK: fcmp ord <4 x float> %a, %b
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}
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define <2 x i64> @test4(<4 x float> %a, <4 x float> %b) nounwind readnone {
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entry:
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%cmp = fcmp uno <4 x float> %a, zeroinitializer
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%sext = sext <4 x i1> %cmp to <4 x i32>
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%cmp4 = fcmp uno <4 x float> %b, zeroinitializer
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%sext5 = sext <4 x i1> %cmp4 to <4 x i32>
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%or = or <4 x i32> %sext, %sext5
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%conv = bitcast <4 x i32> %or to <2 x i64>
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ret <2 x i64> %conv
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; CHECK: @test4
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; CHECK: fcmp uno <4 x float> %a, %b
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}
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; rdar://7434900
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define <2 x i64> @test5(<4 x float> %a, <4 x float> %b) nounwind readnone {
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entry:
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%cmp = fcmp ult <4 x float> %a, zeroinitializer
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%sext = sext <4 x i1> %cmp to <4 x i32>
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%cmp4 = fcmp ult <4 x float> %b, zeroinitializer
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%sext5 = sext <4 x i1> %cmp4 to <4 x i32>
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%and = and <4 x i32> %sext, %sext5
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%conv = bitcast <4 x i32> %and to <2 x i64>
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ret <2 x i64> %conv
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; CHECK: @test5
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; CHECK: sext <4 x i1> %cmp to <4 x i32>
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; CHECK: sext <4 x i1> %cmp4 to <4 x i32>
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}
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define void @convert(<2 x i32>* %dst.addr, <2 x i64> %src) nounwind {
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entry:
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%val = trunc <2 x i64> %src to <2 x i32>
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%add = add <2 x i32> %val, <i32 1, i32 1>
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store <2 x i32> %add, <2 x i32>* %dst.addr
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ret void
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}
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define <2 x i65> @foo(<2 x i64> %t) {
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%a = trunc <2 x i64> %t to <2 x i32>
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%b = zext <2 x i32> %a to <2 x i65>
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ret <2 x i65> %b
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}
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define <2 x i64> @bar(<2 x i65> %t) {
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%a = trunc <2 x i65> %t to <2 x i32>
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%b = zext <2 x i32> %a to <2 x i64>
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ret <2 x i64> %b
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}
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define <2 x i65> @foos(<2 x i64> %t) {
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%a = trunc <2 x i64> %t to <2 x i32>
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%b = sext <2 x i32> %a to <2 x i65>
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ret <2 x i65> %b
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}
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define <2 x i64> @bars(<2 x i65> %t) {
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%a = trunc <2 x i65> %t to <2 x i32>
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%b = sext <2 x i32> %a to <2 x i64>
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ret <2 x i64> %b
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}
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define <2 x i64> @quxs(<2 x i64> %t) {
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%a = trunc <2 x i64> %t to <2 x i32>
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%b = sext <2 x i32> %a to <2 x i64>
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ret <2 x i64> %b
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}
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define <2 x i64> @quxt(<2 x i64> %t) {
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%a = shl <2 x i64> %t, <i64 32, i64 32>
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%b = ashr <2 x i64> %a, <i64 32, i64 32>
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ret <2 x i64> %b
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}
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define <2 x double> @fa(<2 x double> %t) {
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%a = fptrunc <2 x double> %t to <2 x float>
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%b = fpext <2 x float> %a to <2 x double>
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ret <2 x double> %b
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}
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define <2 x double> @fb(<2 x double> %t) {
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%a = fptoui <2 x double> %t to <2 x i64>
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%b = uitofp <2 x i64> %a to <2 x double>
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ret <2 x double> %b
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}
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define <2 x double> @fc(<2 x double> %t) {
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%a = fptosi <2 x double> %t to <2 x i64>
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%b = sitofp <2 x i64> %a to <2 x double>
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ret <2 x double> %b
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}
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