280 lines
7.6 KiB
LLVM
280 lines
7.6 KiB
LLVM
; RUN: opt < %s -aa-pipeline=basic-aa -passes=gvn,instcombine -S 2>&1 | FileCheck %s
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target datalayout = "e-p:32:32:32-p1:16:16:16-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:32:64-f32:32:32-f64:32:64-v64:64:64-v128:128:128-a0:0:64-f80:128:128"
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; Make sure that basicaa thinks R and r are must aliases.
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define i32 @test1(ptr %P) {
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entry:
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%R = getelementptr {i32, i32}, ptr %P, i32 0, i32 1
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%S = load i32, ptr %R
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%r = getelementptr {i32, i32}, ptr %P, i32 0, i32 1
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%s = load i32, ptr %r
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%t = sub i32 %S, %s
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ret i32 %t
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; CHECK-LABEL: @test1(
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; CHECK: ret i32 0
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}
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define i32 @test2(ptr %P) {
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entry:
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%R = getelementptr {i32, i32, i32}, ptr %P, i32 0, i32 1
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%S = load i32, ptr %R
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%r = getelementptr {i32, i32, i32}, ptr %P, i32 0, i32 2
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store i32 42, ptr %r
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%s = load i32, ptr %R
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%t = sub i32 %S, %s
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ret i32 %t
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; CHECK-LABEL: @test2(
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; CHECK: ret i32 0
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}
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; This was a miscompilation.
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define i32 @test3(ptr %P) {
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entry:
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%P2 = getelementptr {float, {i32, i32, i32}}, ptr %P, i32 0, i32 1
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%R = getelementptr {i32, i32, i32}, ptr %P2, i32 0, i32 1
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%S = load i32, ptr %R
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%r = getelementptr {i32, i32, i32}, ptr %P2, i32 0, i32 2
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store i32 42, ptr %r
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%s = load i32, ptr %R
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%t = sub i32 %S, %s
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ret i32 %t
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; CHECK-LABEL: @test3(
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; CHECK: ret i32 0
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}
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;; This is reduced from the SmallPtrSet constructor.
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%SmallPtrSetImpl = type { ptr, i32, i32, i32, [1 x ptr] }
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%SmallPtrSet64 = type { %SmallPtrSetImpl, [64 x ptr] }
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define i32 @test4(ptr %P) {
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entry:
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%tmp2 = getelementptr inbounds %SmallPtrSet64, ptr %P, i64 0, i32 0, i32 1
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store i32 64, ptr %tmp2, align 8
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%tmp3 = getelementptr inbounds %SmallPtrSet64, ptr %P, i64 0, i32 0, i32 4, i64 64
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store ptr null, ptr %tmp3, align 8
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%tmp4 = load i32, ptr %tmp2, align 8
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ret i32 %tmp4
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; CHECK-LABEL: @test4(
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; CHECK: ret i32 64
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}
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; P[i] != p[i+1]
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define i32 @test5(ptr %p, i64 %i) {
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%pi = getelementptr i32, ptr %p, i64 %i
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%i.next = add i64 %i, 1
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%pi.next = getelementptr i32, ptr %p, i64 %i.next
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%x = load i32, ptr %pi
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store i32 42, ptr %pi.next
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%y = load i32, ptr %pi
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%z = sub i32 %x, %y
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ret i32 %z
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; CHECK-LABEL: @test5(
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; CHECK: ret i32 0
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}
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define i32 @test5_as1_smaller_size(ptr addrspace(1) %p, i8 %i) {
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%pi = getelementptr i32, ptr addrspace(1) %p, i8 %i
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%i.next = add i8 %i, 1
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%pi.next = getelementptr i32, ptr addrspace(1) %p, i8 %i.next
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%x = load i32, ptr addrspace(1) %pi
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store i32 42, ptr addrspace(1) %pi.next
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%y = load i32, ptr addrspace(1) %pi
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%z = sub i32 %x, %y
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ret i32 %z
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; CHECK-LABEL: @test5_as1_smaller_size(
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; CHECK: sext
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; CHECK: ret i32 0
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}
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define i32 @test5_as1_same_size(ptr addrspace(1) %p, i16 %i) {
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%pi = getelementptr i32, ptr addrspace(1) %p, i16 %i
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%i.next = add i16 %i, 1
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%pi.next = getelementptr i32, ptr addrspace(1) %p, i16 %i.next
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%x = load i32, ptr addrspace(1) %pi
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store i32 42, ptr addrspace(1) %pi.next
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%y = load i32, ptr addrspace(1) %pi
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%z = sub i32 %x, %y
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ret i32 %z
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; CHECK-LABEL: @test5_as1_same_size(
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; CHECK: ret i32 0
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}
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; P[i] != p[(i*4)|1]
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define i32 @test6(ptr %p, i64 %i1) {
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%i = shl i64 %i1, 2
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%pi = getelementptr i32, ptr %p, i64 %i
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%i.next = or disjoint i64 %i, 1
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%pi.next = getelementptr i32, ptr %p, i64 %i.next
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%x = load i32, ptr %pi
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store i32 42, ptr %pi.next
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%y = load i32, ptr %pi
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%z = sub i32 %x, %y
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ret i32 %z
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; CHECK-LABEL: @test6(
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; CHECK: ret i32 0
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}
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; P[i] != p[(i*4)|2048] with disjoint or
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define i32 @test6_higheror(ptr %p, i64 %i1) {
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%i = shl nuw nsw i64 %i1, 2
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%pi = getelementptr i32, ptr %p, i64 %i
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%i.next = or disjoint i64 %i, 2048
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%pi.next = getelementptr i32, ptr %p, i64 %i.next
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%x = load i32, ptr %pi
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store i32 42, ptr %pi.next
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%y = load i32, ptr %pi
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%z = sub i32 %x, %y
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ret i32 %z
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; CHECK-LABEL: @test6_higheror(
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; CHECK: ret i32 0
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}
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; P[1] != P[i*4]
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define i32 @test7(ptr %p, i64 %i) {
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%pi = getelementptr i32, ptr %p, i64 1
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%i.next = shl i64 %i, 2
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%pi.next = getelementptr i32, ptr %p, i64 %i.next
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%x = load i32, ptr %pi
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store i32 42, ptr %pi.next
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%y = load i32, ptr %pi
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%z = sub i32 %x, %y
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ret i32 %z
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; CHECK-LABEL: @test7(
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; CHECK: ret i32 0
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}
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; P[zext(i)] != p[zext(i+1)]
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; PR1143
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define i32 @test8(ptr %p, i16 %i) {
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%i1 = zext i16 %i to i32
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%pi = getelementptr i32, ptr %p, i32 %i1
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%i.next = add i16 %i, 1
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%i.next2 = zext i16 %i.next to i32
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%pi.next = getelementptr i32, ptr %p, i32 %i.next2
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%x = load i32, ptr %pi
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store i32 42, ptr %pi.next
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%y = load i32, ptr %pi
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%z = sub i32 %x, %y
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ret i32 %z
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; CHECK-LABEL: @test8(
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; CHECK: ret i32 0
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}
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define i8 @test9(ptr %P, i32 %i, i32 %j) {
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%i2 = shl i32 %i, 2
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%i3 = add i32 %i2, 1
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; P2 = P + 1 + 4*i
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%P2 = getelementptr [4 x i8], ptr %P, i32 0, i32 %i3
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%j2 = shl i32 %j, 2
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; P4 = P + 4*j
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%P4 = getelementptr [4 x i8], ptr %P, i32 0, i32 %j2
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%x = load i8, ptr %P2
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store i8 42, ptr %P4
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%y = load i8, ptr %P2
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%z = sub i8 %x, %y
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ret i8 %z
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; CHECK-LABEL: @test9(
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; CHECK: ret i8 0
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}
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define i8 @test10(ptr %P, i32 %i) {
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%i2 = shl i32 %i, 2
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%i3 = add i32 %i2, 4
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; P2 = P + 4 + 4*i
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%P2 = getelementptr [4 x i8], ptr %P, i32 0, i32 %i3
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; P4 = P + 4*i
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%P4 = getelementptr [4 x i8], ptr %P, i32 0, i32 %i2
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%x = load i8, ptr %P2
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store i8 42, ptr %P4
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%y = load i8, ptr %P2
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%z = sub i8 %x, %y
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ret i8 %z
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; CHECK-LABEL: @test10(
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; CHECK: ret i8 0
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}
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; (This was a miscompilation.)
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define float @test11(i32 %indvar, ptr %q) nounwind ssp {
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%tmp = mul i32 %indvar, -1
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%dec = add i32 %tmp, 3
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%scevgep = getelementptr [4 x [2 x float]], ptr %q, i32 0, i32 %dec
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%y29 = getelementptr inbounds [2 x float], ptr %q, i32 0, i32 1
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store float 1.0, ptr %y29, align 4
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store i64 0, ptr %scevgep, align 4
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%tmp30 = load float, ptr %y29, align 4
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ret float %tmp30
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; CHECK-LABEL: @test11(
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; CHECK: ret float %tmp30
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}
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; (This was a miscompilation.)
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define i32 @test12(i32 %x, i32 %y, ptr %p) nounwind {
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%b = getelementptr [13 x i8], ptr %p, i32 %x
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%d = getelementptr [15 x i8], ptr %b, i32 %y, i32 8
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store i32 1, ptr %p
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store i32 0, ptr %d
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%r = load i32, ptr %p
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ret i32 %r
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; CHECK-LABEL: @test12(
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; CHECK: ret i32 %r
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}
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@P = internal global i32 715827882, align 4
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@Q = internal global i32 715827883, align 4
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@.str = private unnamed_addr constant [7 x i8] c"%u %u\0A\00", align 1
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; Make sure we recognize that u[0] and u[Global + Cst] may alias
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; when the addition has wrapping semantic.
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; PR24468.
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; CHECK-LABEL: @test13(
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; Make sure the stores appear before the related loads.
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; CHECK: store i8 42,
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; CHECK: store i8 99,
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; Find the loads and make sure they are used in the arguments to the printf.
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; CHECK: [[T0:%[a-zA-Z0-9_]+]] = load i8, ptr %t, align 1
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; CHECK: [[T0ARG:%[a-zA-Z0-9_]+]] = zext i8 [[T0]] to i32
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; CHECK: [[U0:%[a-zA-Z0-9_]+]] = load i8, ptr %u, align 1
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; CHECK: [[U0ARG:%[a-zA-Z0-9_]+]] = zext i8 [[U0]] to i32
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; CHECK: call i32 (ptr, ...) @printf(ptr noundef nonnull dereferenceable(1) @.str, i32 [[T0ARG]], i32 [[U0ARG]])
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; CHECK: ret
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define void @test13() {
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entry:
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%t = alloca [3 x i8], align 1
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%u = alloca [3 x i8], align 1
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%tmp = load i32, ptr @P, align 4
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%tmp1 = mul i32 %tmp, 3
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%mul = add i32 %tmp1, -2147483646
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%idxprom = zext i32 %mul to i64
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%arrayidx = getelementptr inbounds [3 x i8], ptr %t, i64 0, i64 %idxprom
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store i8 42, ptr %arrayidx, align 1
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%tmp2 = load i32, ptr @Q, align 4
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%tmp3 = mul i32 %tmp2, 3
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%mul2 = add i32 %tmp3, 2147483647
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%idxprom3 = zext i32 %mul2 to i64
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%arrayidx4 = getelementptr inbounds [3 x i8], ptr %u, i64 0, i64 %idxprom3
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store i8 99, ptr %arrayidx4, align 1
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%tmp4 = load i8, ptr %t, align 1
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%conv = zext i8 %tmp4 to i32
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%tmp5 = load i8, ptr %u, align 1
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%conv7 = zext i8 %tmp5 to i32
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%call = call i32 (ptr, ...) @printf(ptr @.str, i32 %conv, i32 %conv7)
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ret void
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}
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declare i32 @printf(ptr, ...)
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