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105 lines
4.5 KiB
105 lines
4.5 KiB
; NOTE: Assertions have been autogenerated by utils/update_test_checks.py
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; RUN: opt -S -O2 -preserve-alignment-assumptions-during-inlining=0 < %s | FileCheck %s --check-prefixes=CHECK,ASSUMPTIONS-OFF
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; RUN: opt -S -O2 -preserve-alignment-assumptions-during-inlining=1 < %s | FileCheck %s --check-prefixes=CHECK,ASSUMPTIONS-ON
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; RUN: opt -S -O2 < %s | FileCheck %s --check-prefixes=CHECK,ASSUMPTIONS-OFF
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target datalayout = "e-p:64:64-p5:32:32-A5"
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; This illustrates an optimization difference caused by instruction counting
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; heuristics, which are affected by the additional instructions of the
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; alignment assumption.
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define internal i1 @callee1(i1 %c, i64* align 8 %ptr) {
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store volatile i64 0, i64* %ptr
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ret i1 %c
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}
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define void @caller1(i1 %c, i64* align 1 %ptr) {
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; ASSUMPTIONS-OFF-LABEL: @caller1(
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; ASSUMPTIONS-OFF-NEXT: br i1 [[C:%.*]], label [[TRUE2:%.*]], label [[FALSE2:%.*]]
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; ASSUMPTIONS-OFF: true2:
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 0, i64* [[PTR:%.*]], align 8
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 -1, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 -1, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 -1, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 -1, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 -1, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 2, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: ret void
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; ASSUMPTIONS-OFF: false2:
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 1, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 0, i64* [[PTR]], align 8
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 -1, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 -1, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 -1, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 -1, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 -1, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: store volatile i64 3, i64* [[PTR]], align 4
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; ASSUMPTIONS-OFF-NEXT: ret void
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;
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; ASSUMPTIONS-ON-LABEL: @caller1(
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; ASSUMPTIONS-ON-NEXT: br i1 [[C:%.*]], label [[TRUE2_CRITEDGE:%.*]], label [[FALSE1:%.*]]
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; ASSUMPTIONS-ON: false1:
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; ASSUMPTIONS-ON-NEXT: store volatile i64 1, i64* [[PTR:%.*]], align 8
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; ASSUMPTIONS-ON-NEXT: call void @llvm.assume(i1 true) [ "align"(i64* [[PTR]], i64 8) ]
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; ASSUMPTIONS-ON-NEXT: store volatile i64 0, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 -1, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 -1, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 -1, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 -1, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 -1, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 3, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: ret void
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; ASSUMPTIONS-ON: true2.critedge:
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; ASSUMPTIONS-ON-NEXT: call void @llvm.assume(i1 true) [ "align"(i64* [[PTR]], i64 8) ]
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; ASSUMPTIONS-ON-NEXT: store volatile i64 0, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 -1, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 -1, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 -1, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 -1, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 -1, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: store volatile i64 2, i64* [[PTR]], align 8
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; ASSUMPTIONS-ON-NEXT: ret void
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;
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br i1 %c, label %true1, label %false1
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true1:
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%c2 = call i1 @callee1(i1 %c, i64* %ptr)
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store volatile i64 -1, i64* %ptr
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store volatile i64 -1, i64* %ptr
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store volatile i64 -1, i64* %ptr
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store volatile i64 -1, i64* %ptr
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store volatile i64 -1, i64* %ptr
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br i1 %c2, label %true2, label %false2
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false1:
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store volatile i64 1, i64* %ptr
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br label %true1
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true2:
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store volatile i64 2, i64* %ptr
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ret void
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false2:
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store volatile i64 3, i64* %ptr
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ret void
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}
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; This test checks that alignment assumptions do not prevent SROA.
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; See PR45763.
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define internal void @callee2(i64* noalias sret(i64) align 32 %arg) {
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store i64 0, i64* %arg, align 8
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ret void
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}
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define amdgpu_kernel void @caller2() {
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; CHECK-LABEL: @caller2(
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; CHECK-NEXT: ret void
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;
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%alloca = alloca i64, align 8, addrspace(5)
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%cast = addrspacecast i64 addrspace(5)* %alloca to i64*
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call void @callee2(i64* sret(i64) align 32 %cast)
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ret void
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}
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